diff --git a/Documentation/admin-guide/hw-vuln/index.rst b/Documentation/admin-guide/hw-vuln/index.rst index ff0b440ef2dc..451874b8135d 100644 --- a/Documentation/admin-guide/hw-vuln/index.rst +++ b/Documentation/admin-guide/hw-vuln/index.rst @@ -22,3 +22,4 @@ are configurable at compile, boot or run time. srso gather_data_sampling reg-file-data-sampling + rsb diff --git a/Documentation/admin-guide/hw-vuln/rsb.rst b/Documentation/admin-guide/hw-vuln/rsb.rst new file mode 100644 index 000000000000..21dbf9cf25f8 --- /dev/null +++ b/Documentation/admin-guide/hw-vuln/rsb.rst @@ -0,0 +1,268 @@ +.. SPDX-License-Identifier: GPL-2.0 + +======================= +RSB-related mitigations +======================= + +.. warning:: + Please keep this document up-to-date, otherwise you will be + volunteered to update it and convert it to a very long comment in + bugs.c! + +Since 2018 there have been many Spectre CVEs related to the Return Stack +Buffer (RSB) (sometimes referred to as the Return Address Stack (RAS) or +Return Address Predictor (RAP) on AMD). + +Information about these CVEs and how to mitigate them is scattered +amongst a myriad of microarchitecture-specific documents. + +This document attempts to consolidate all the relevant information in +once place and clarify the reasoning behind the current RSB-related +mitigations. It's meant to be as concise as possible, focused only on +the current kernel mitigations: what are the RSB-related attack vectors +and how are they currently being mitigated? + +It's *not* meant to describe how the RSB mechanism operates or how the +exploits work. More details about those can be found in the references +below. + +Rather, this is basically a glorified comment, but too long to actually +be one. So when the next CVE comes along, a kernel developer can +quickly refer to this as a refresher to see what we're actually doing +and why. + +At a high level, there are two classes of RSB attacks: RSB poisoning +(Intel and AMD) and RSB underflow (Intel only). They must each be +considered individually for each attack vector (and microarchitecture +where applicable). + +---- + +RSB poisoning (Intel and AMD) +============================= + +SpectreRSB +~~~~~~~~~~ + +RSB poisoning is a technique used by SpectreRSB [#spectre-rsb]_ where +an attacker poisons an RSB entry to cause a victim's return instruction +to speculate to an attacker-controlled address. This can happen when +there are unbalanced CALLs/RETs after a context switch or VMEXIT. + +* All attack vectors can potentially be mitigated by flushing out any + poisoned RSB entries using an RSB filling sequence + [#intel-rsb-filling]_ [#amd-rsb-filling]_ when transitioning between + untrusted and trusted domains. But this has a performance impact and + should be avoided whenever possible. + + .. DANGER:: + **FIXME**: Currently we're flushing 32 entries. However, some CPU + models have more than 32 entries. The loop count needs to be + increased for those. More detailed information is needed about RSB + sizes. + +* On context switch, the user->user mitigation requires ensuring the + RSB gets filled or cleared whenever IBPB gets written [#cond-ibpb]_ + during a context switch: + + * AMD: + On Zen 4+, IBPB (or SBPB [#amd-sbpb]_ if used) clears the RSB. + This is indicated by IBPB_RET in CPUID [#amd-ibpb-rsb]_. + + On Zen < 4, the RSB filling sequence [#amd-rsb-filling]_ must be + always be done in addition to IBPB [#amd-ibpb-no-rsb]_. This is + indicated by X86_BUG_IBPB_NO_RET. + + * Intel: + IBPB always clears the RSB: + + "Software that executed before the IBPB command cannot control + the predicted targets of indirect branches executed after the + command on the same logical processor. The term indirect branch + in this context includes near return instructions, so these + predicted targets may come from the RSB." [#intel-ibpb-rsb]_ + +* On context switch, user->kernel attacks are prevented by SMEP. User + space can only insert user space addresses into the RSB. Even + non-canonical addresses can't be inserted due to the page gap at the + end of the user canonical address space reserved by TASK_SIZE_MAX. + A SMEP #PF at instruction fetch prevents the kernel from speculatively + executing user space. + + * AMD: + "Finally, branches that are predicted as 'ret' instructions get + their predicted targets from the Return Address Predictor (RAP). + AMD recommends software use a RAP stuffing sequence (mitigation + V2-3 in [2]) and/or Supervisor Mode Execution Protection (SMEP) + to ensure that the addresses in the RAP are safe for + speculation. Collectively, we refer to these mitigations as "RAP + Protection"." [#amd-smep-rsb]_ + + * Intel: + "On processors with enhanced IBRS, an RSB overwrite sequence may + not suffice to prevent the predicted target of a near return + from using an RSB entry created in a less privileged predictor + mode. Software can prevent this by enabling SMEP (for + transitions from user mode to supervisor mode) and by having + IA32_SPEC_CTRL.IBRS set during VM exits." [#intel-smep-rsb]_ + +* On VMEXIT, guest->host attacks are mitigated by eIBRS (and PBRSB + mitigation if needed): + + * AMD: + "When Automatic IBRS is enabled, the internal return address + stack used for return address predictions is cleared on VMEXIT." + [#amd-eibrs-vmexit]_ + + * Intel: + "On processors with enhanced IBRS, an RSB overwrite sequence may + not suffice to prevent the predicted target of a near return + from using an RSB entry created in a less privileged predictor + mode. Software can prevent this by enabling SMEP (for + transitions from user mode to supervisor mode) and by having + IA32_SPEC_CTRL.IBRS set during VM exits. Processors with + enhanced IBRS still support the usage model where IBRS is set + only in the OS/VMM for OSes that enable SMEP. To do this, such + processors will ensure that guest behavior cannot control the + RSB after a VM exit once IBRS is set, even if IBRS was not set + at the time of the VM exit." [#intel-eibrs-vmexit]_ + + Note that some Intel CPUs are susceptible to Post-barrier Return + Stack Buffer Predictions (PBRSB) [#intel-pbrsb]_, where the last + CALL from the guest can be used to predict the first unbalanced RET. + In this case the PBRSB mitigation is needed in addition to eIBRS. + +AMD RETBleed / SRSO / Branch Type Confusion +~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ + +On AMD, poisoned RSB entries can also be created by the AMD RETBleed +variant [#retbleed-paper]_ [#amd-btc]_ or by Speculative Return Stack +Overflow [#amd-srso]_ (Inception [#inception-paper]_). The kernel +protects itself by replacing every RET in the kernel with a branch to a +single safe RET. + +---- + +RSB underflow (Intel only) +========================== + +RSB Alternate (RSBA) ("Intel Retbleed") +~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ + +Some Intel Skylake-generation CPUs are susceptible to the Intel variant +of RETBleed [#retbleed-paper]_ (Return Stack Buffer Underflow +[#intel-rsbu]_). If a RET is executed when the RSB buffer is empty due +to mismatched CALLs/RETs or returning from a deep call stack, the branch +predictor can fall back to using the Branch Target Buffer (BTB). If a +user forces a BTB collision then the RET can speculatively branch to a +user-controlled address. + +* Note that RSB filling doesn't fully mitigate this issue. If there + are enough unbalanced RETs, the RSB may still underflow and fall back + to using a poisoned BTB entry. + +* On context switch, user->user underflow attacks are mitigated by the + conditional IBPB [#cond-ibpb]_ on context switch which effectively + clears the BTB: + + * "The indirect branch predictor barrier (IBPB) is an indirect branch + control mechanism that establishes a barrier, preventing software + that executed before the barrier from controlling the predicted + targets of indirect branches executed after the barrier on the same + logical processor." [#intel-ibpb-btb]_ + +* On context switch and VMEXIT, user->kernel and guest->host RSB + underflows are mitigated by IBRS or eIBRS: + + * "Enabling IBRS (including enhanced IBRS) will mitigate the "RSBU" + attack demonstrated by the researchers. As previously documented, + Intel recommends the use of enhanced IBRS, where supported. This + includes any processor that enumerates RRSBA but not RRSBA_DIS_S." + [#intel-rsbu]_ + + However, note that eIBRS and IBRS do not mitigate intra-mode attacks. + Like RRSBA below, this is mitigated by clearing the BHB on kernel + entry. + + As an alternative to classic IBRS, call depth tracking (combined with + retpolines) can be used to track kernel returns and fill the RSB when + it gets close to being empty. + +Restricted RSB Alternate (RRSBA) +~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ + +Some newer Intel CPUs have Restricted RSB Alternate (RRSBA) behavior, +which, similar to RSBA described above, also falls back to using the BTB +on RSB underflow. The only difference is that the predicted targets are +restricted to the current domain when eIBRS is enabled: + +* "Restricted RSB Alternate (RRSBA) behavior allows alternate branch + predictors to be used by near RET instructions when the RSB is + empty. When eIBRS is enabled, the predicted targets of these + alternate predictors are restricted to those belonging to the + indirect branch predictor entries of the current prediction domain. + [#intel-eibrs-rrsba]_ + +When a CPU with RRSBA is vulnerable to Branch History Injection +[#bhi-paper]_ [#intel-bhi]_, an RSB underflow could be used for an +intra-mode BTI attack. This is mitigated by clearing the BHB on +kernel entry. + +However if the kernel uses retpolines instead of eIBRS, it needs to +disable RRSBA: + +* "Where software is using retpoline as a mitigation for BHI or + intra-mode BTI, and the processor both enumerates RRSBA and + enumerates RRSBA_DIS controls, it should disable this behavior." + [#intel-retpoline-rrsba]_ + +---- + +References +========== + +.. [#spectre-rsb] `Spectre Returns! Speculation Attacks using the Return Stack Buffer `_ + +.. [#intel-rsb-filling] "Empty RSB Mitigation on Skylake-generation" in `Retpoline: A Branch Target Injection Mitigation `_ + +.. [#amd-rsb-filling] "Mitigation V2-3" in `Software Techniques for Managing Speculation `_ + +.. [#cond-ibpb] Whether IBPB is written depends on whether the prev and/or next task is protected from Spectre attacks. It typically requires opting in per task or system-wide. For more details see the documentation for the ``spectre_v2_user`` cmdline option in Documentation/admin-guide/kernel-parameters.txt. + +.. [#amd-sbpb] IBPB without flushing of branch type predictions. Only exists for AMD. + +.. [#amd-ibpb-rsb] "Function 8000_0008h -- Processor Capacity Parameters and Extended Feature Identification" in `AMD64 Architecture Programmer's Manual Volume 3: General-Purpose and System Instructions `_. SBPB behaves the same way according to `this email `_. + +.. [#amd-ibpb-no-rsb] `Spectre Attacks: Exploiting Speculative Execution `_ + +.. [#intel-ibpb-rsb] "Introduction" in `Post-barrier Return Stack Buffer Predictions / CVE-2022-26373 / INTEL-SA-00706 `_ + +.. [#amd-smep-rsb] "Existing Mitigations" in `Technical Guidance for Mitigating Branch Type Confusion `_ + +.. [#intel-smep-rsb] "Enhanced IBRS" in `Indirect Branch Restricted Speculation `_ + +.. [#amd-eibrs-vmexit] "Extended Feature Enable Register (EFER)" in `AMD64 Architecture Programmer's Manual Volume 2: System Programming `_ + +.. [#intel-eibrs-vmexit] "Enhanced IBRS" in `Indirect Branch Restricted Speculation `_ + +.. [#intel-pbrsb] `Post-barrier Return Stack Buffer Predictions / CVE-2022-26373 / INTEL-SA-00706 `_ + +.. [#retbleed-paper] `RETBleed: Arbitrary Speculative Code Execution with Return Instruction `_ + +.. [#amd-btc] `Technical Guidance for Mitigating Branch Type Confusion `_ + +.. [#amd-srso] `Technical Update Regarding Speculative Return Stack Overflow `_ + +.. [#inception-paper] `Inception: Exposing New Attack Surfaces with Training in Transient Execution `_ + +.. [#intel-rsbu] `Return Stack Buffer Underflow / Return Stack Buffer Underflow / CVE-2022-29901, CVE-2022-28693 / INTEL-SA-00702 `_ + +.. [#intel-ibpb-btb] `Indirect Branch Predictor Barrier' `_ + +.. [#intel-eibrs-rrsba] "Guidance for RSBU" in `Return Stack Buffer Underflow / Return Stack Buffer Underflow / CVE-2022-29901, CVE-2022-28693 / INTEL-SA-00702 `_ + +.. [#bhi-paper] `Branch History Injection: On the Effectiveness of Hardware Mitigations Against Cross-Privilege Spectre-v2 Attacks `_ + +.. [#intel-bhi] `Branch History Injection and Intra-mode Branch Target Injection / CVE-2022-0001, CVE-2022-0002 / INTEL-SA-00598 `_ + +.. [#intel-retpoline-rrsba] "Retpoline" in `Branch History Injection and Intra-mode Branch Target Injection / CVE-2022-0001, CVE-2022-0002 / INTEL-SA-00598 `_ diff --git a/Documentation/admin-guide/kernel-parameters.txt b/Documentation/admin-guide/kernel-parameters.txt index 76e538c77e31..d9fd26b95b34 100644 --- a/Documentation/admin-guide/kernel-parameters.txt +++ b/Documentation/admin-guide/kernel-parameters.txt @@ -1407,18 +1407,15 @@ earlyprintk=serial[,0x...[,baudrate]] earlyprintk=ttySn[,baudrate] earlyprintk=dbgp[debugController#] + earlyprintk=mmio32,membase[,{nocfg|baudrate}] earlyprintk=pciserial[,force],bus:device.function[,{nocfg|baudrate}] earlyprintk=xdbc[xhciController#] earlyprintk=bios - earlyprintk=mmio,membase[,{nocfg|baudrate}] earlyprintk is useful when the kernel crashes before the normal console is initialized. It is not enabled by default because it has some cosmetic problems. - Only 32-bit memory addresses are supported for "mmio" - and "pciserial" devices. - Use "nocfg" to skip UART configuration, assume BIOS/firmware has configured UART correctly. diff --git a/Documentation/arch/x86/cpuinfo.rst b/Documentation/arch/x86/cpuinfo.rst index 6ef426a52cdc..f80e2a558d2a 100644 --- a/Documentation/arch/x86/cpuinfo.rst +++ b/Documentation/arch/x86/cpuinfo.rst @@ -79,8 +79,9 @@ feature flags. How are feature flags created? ============================== -a: Feature flags can be derived from the contents of CPUID leaves. ------------------------------------------------------------------- +Feature flags can be derived from the contents of CPUID leaves +-------------------------------------------------------------- + These feature definitions are organized mirroring the layout of CPUID leaves and grouped in words with offsets as mapped in enum cpuid_leafs in cpufeatures.h (see arch/x86/include/asm/cpufeatures.h for details). @@ -89,8 +90,9 @@ cpufeatures.h, and if it is detected at run time, the flags will be displayed accordingly in /proc/cpuinfo. For example, the flag "avx2" comes from X86_FEATURE_AVX2 in cpufeatures.h. -b: Flags can be from scattered CPUID-based features. ----------------------------------------------------- +Flags can be from scattered CPUID-based features +------------------------------------------------ + Hardware features enumerated in sparsely populated CPUID leaves get software-defined values. Still, CPUID needs to be queried to determine if a given feature is present. This is done in init_scattered_cpuid_features(). @@ -104,8 +106,9 @@ has only one feature and would waste 31 bits of space in the x86_capability[] array. Since there is a struct cpuinfo_x86 for each possible CPU, the wasted memory is not trivial. -c: Flags can be created synthetically under certain conditions for hardware features. -------------------------------------------------------------------------------------- +Flags can be created synthetically under certain conditions for hardware features +--------------------------------------------------------------------------------- + Examples of conditions include whether certain features are present in MSR_IA32_CORE_CAPS or specific CPU models are identified. If the needed conditions are met, the features are enabled by the set_cpu_cap or @@ -114,8 +117,8 @@ the feature X86_FEATURE_SPLIT_LOCK_DETECT will be enabled and "split_lock_detect" will be displayed. The flag "ring3mwait" will be displayed only when running on INTEL_XEON_PHI_[KNL|KNM] processors. -d: Flags can represent purely software features. ------------------------------------------------- +Flags can represent purely software features +-------------------------------------------- These flags do not represent hardware features. Instead, they represent a software feature implemented in the kernel. For example, Kernel Page Table Isolation is purely software feature and its feature flag X86_FEATURE_PTI is @@ -130,14 +133,18 @@ x86_cap/bug_flags[] arrays in kernel/cpu/capflags.c. The names in the resulting x86_cap/bug_flags[] are used to populate /proc/cpuinfo. The naming of flags in the x86_cap/bug_flags[] are as follows: -a: The name of the flag is from the string in X86_FEATURE_ by default. ----------------------------------------------------------------------------- -By default, the flag in /proc/cpuinfo is extracted from the respective -X86_FEATURE_ in cpufeatures.h. For example, the flag "avx2" is from -X86_FEATURE_AVX2. +Flags do not appear by default in /proc/cpuinfo +----------------------------------------------- + +Feature flags are omitted by default from /proc/cpuinfo as it does not make +sense for the feature to be exposed to userspace in most cases. For example, +X86_FEATURE_ALWAYS is defined in cpufeatures.h but that flag is an internal +kernel feature used in the alternative runtime patching functionality. So the +flag does not appear in /proc/cpuinfo. + +Specify a flag name if absolutely needed +---------------------------------------- -b: The naming can be overridden. --------------------------------- If the comment on the line for the #define X86_FEATURE_* starts with a double-quote character (""), the string inside the double-quote characters will be the name of the flags. For example, the flag "sse4_1" comes from @@ -148,36 +155,31 @@ needed. For instance, /proc/cpuinfo is a userspace interface and must remain constant. If, for some reason, the naming of X86_FEATURE_ changes, one shall override the new naming with the name already used in /proc/cpuinfo. -c: The naming override can be "", which means it will not appear in /proc/cpuinfo. ----------------------------------------------------------------------------------- -The feature shall be omitted from /proc/cpuinfo if it does not make sense for -the feature to be exposed to userspace. For example, X86_FEATURE_ALWAYS is -defined in cpufeatures.h but that flag is an internal kernel feature used -in the alternative runtime patching functionality. So, its name is overridden -with "". Its flag will not appear in /proc/cpuinfo. - Flags are missing when one or more of these happen ================================================== -a: The hardware does not enumerate support for it. --------------------------------------------------- +The hardware does not enumerate support for it +---------------------------------------------- + For example, when a new kernel is running on old hardware or the feature is not enabled by boot firmware. Even if the hardware is new, there might be a problem enabling the feature at run time, the flag will not be displayed. -b: The kernel does not know about the flag. -------------------------------------------- +The kernel does not know about the flag +--------------------------------------- + For example, when an old kernel is running on new hardware. -c: The kernel disabled support for it at compile-time. ------------------------------------------------------- +The kernel disabled support for it at compile-time +-------------------------------------------------- + For example, if 5-level-paging is not enabled when building (i.e., CONFIG_X86_5LEVEL is not selected) the flag "la57" will not show up [#f1]_. Even though the feature will still be detected via CPUID, the kernel disables it by clearing via setup_clear_cpu_cap(X86_FEATURE_LA57). -d: The feature is disabled at boot-time. ----------------------------------------- +The feature is disabled at boot-time +------------------------------------ A feature can be disabled either using a command-line parameter or because it failed to be enabled. The command-line parameter clearcpuid= can be used to disable features using the feature number as defined in @@ -190,8 +192,9 @@ disable specific features. The list of parameters includes, but is not limited to, nofsgsbase, nosgx, noxsave, etc. 5-level paging can also be disabled using "no5lvl". -e: The feature was known to be non-functional. ----------------------------------------------- +The feature was known to be non-functional +------------------------------------------ + The feature was known to be non-functional because a dependency was missing at runtime. For example, AVX flags will not show up if XSAVE feature is disabled since they depend on XSAVE feature. Another example would be broken diff --git a/Documentation/filesystems/ext4/super.rst b/Documentation/filesystems/ext4/super.rst index a1eb4a11a1d0..1b240661bfa3 100644 --- a/Documentation/filesystems/ext4/super.rst +++ b/Documentation/filesystems/ext4/super.rst @@ -328,9 +328,13 @@ The ext4 superblock is laid out as follows in - s_checksum_type - Metadata checksum algorithm type. The only valid value is 1 (crc32c). * - 0x176 - - __le16 - - s_reserved_pad - - + - \_\_u8 + - s\_encryption\_level + - Versioning level for encryption. + * - 0x177 + - \_\_u8 + - s\_reserved\_pad + - Padding to next 32bits. * - 0x178 - __le64 - s_kbytes_written @@ -466,9 +470,13 @@ The ext4 superblock is laid out as follows in - s_last_error_time_hi - Upper 8 bits of the s_last_error_time field. * - 0x27A - - __u8 - - s_pad[2] - - Zero padding. + - \_\_u8 + - s\_first\_error\_errcode + - + * - 0x27B + - \_\_u8 + - s\_last\_error\_errcode + - * - 0x27C - __le16 - s_encoding diff --git a/Documentation/networking/netdevices.rst b/Documentation/networking/netdevices.rst index 6c2d8945f597..eab601ab2db0 100644 --- a/Documentation/networking/netdevices.rst +++ b/Documentation/networking/netdevices.rst @@ -338,10 +338,11 @@ operations directly under the netdev instance lock. Devices drivers are encouraged to rely on the instance lock where possible. For the (mostly software) drivers that need to interact with the core stack, -there are two sets of interfaces: ``dev_xxx`` and ``netif_xxx`` (e.g., -``dev_set_mtu`` and ``netif_set_mtu``). The ``dev_xxx`` functions handle -acquiring the instance lock themselves, while the ``netif_xxx`` functions -assume that the driver has already acquired the instance lock. +there are two sets of interfaces: ``dev_xxx``/``netdev_xxx`` and ``netif_xxx`` +(e.g., ``dev_set_mtu`` and ``netif_set_mtu``). The ``dev_xxx``/``netdev_xxx`` +functions handle acquiring the instance lock themselves, while the +``netif_xxx`` functions assume that the driver has already acquired +the instance lock. Notifiers and netdev instance lock ================================== @@ -354,6 +355,7 @@ For devices with locked ops, currently only the following notifiers are running under the lock: * ``NETDEV_REGISTER`` * ``NETDEV_UP`` +* ``NETDEV_CHANGE`` The following notifiers are running without the lock: * ``NETDEV_UNREGISTER`` diff --git a/Documentation/virt/kvm/api.rst b/Documentation/virt/kvm/api.rst index 1f8625b7646a..47c7c3f92314 100644 --- a/Documentation/virt/kvm/api.rst +++ b/Documentation/virt/kvm/api.rst @@ -7447,6 +7447,75 @@ Unused bitfields in the bitarrays must be set to zero. This capability connects the vcpu to an in-kernel XIVE device. +6.76 KVM_CAP_HYPERV_SYNIC +------------------------- + +:Architectures: x86 +:Target: vcpu + +This capability, if KVM_CHECK_EXTENSION indicates that it is +available, means that the kernel has an implementation of the +Hyper-V Synthetic interrupt controller(SynIC). Hyper-V SynIC is +used to support Windows Hyper-V based guest paravirt drivers(VMBus). + +In order to use SynIC, it has to be activated by setting this +capability via KVM_ENABLE_CAP ioctl on the vcpu fd. Note that this +will disable the use of APIC hardware virtualization even if supported +by the CPU, as it's incompatible with SynIC auto-EOI behavior. + +6.77 KVM_CAP_HYPERV_SYNIC2 +-------------------------- + +:Architectures: x86 +:Target: vcpu + +This capability enables a newer version of Hyper-V Synthetic interrupt +controller (SynIC). The only difference with KVM_CAP_HYPERV_SYNIC is that KVM +doesn't clear SynIC message and event flags pages when they are enabled by +writing to the respective MSRs. + +6.78 KVM_CAP_HYPERV_DIRECT_TLBFLUSH +----------------------------------- + +:Architectures: x86 +:Target: vcpu + +This capability indicates that KVM running on top of Hyper-V hypervisor +enables Direct TLB flush for its guests meaning that TLB flush +hypercalls are handled by Level 0 hypervisor (Hyper-V) bypassing KVM. +Due to the different ABI for hypercall parameters between Hyper-V and +KVM, enabling this capability effectively disables all hypercall +handling by KVM (as some KVM hypercall may be mistakenly treated as TLB +flush hypercalls by Hyper-V) so userspace should disable KVM identification +in CPUID and only exposes Hyper-V identification. In this case, guest +thinks it's running on Hyper-V and only use Hyper-V hypercalls. + +6.79 KVM_CAP_HYPERV_ENFORCE_CPUID +--------------------------------- + +:Architectures: x86 +:Target: vcpu + +When enabled, KVM will disable emulated Hyper-V features provided to the +guest according to the bits Hyper-V CPUID feature leaves. Otherwise, all +currently implemented Hyper-V features are provided unconditionally when +Hyper-V identification is set in the HYPERV_CPUID_INTERFACE (0x40000001) +leaf. + +6.80 KVM_CAP_ENFORCE_PV_FEATURE_CPUID +------------------------------------- + +:Architectures: x86 +:Target: vcpu + +When enabled, KVM will disable paravirtual features provided to the +guest according to the bits in the KVM_CPUID_FEATURES CPUID leaf +(0x40000001). Otherwise, a guest may use the paravirtual features +regardless of what has actually been exposed through the CPUID leaf. + +.. _KVM_CAP_DIRTY_LOG_RING: + + .. _cap_enable_vm: 7. Capabilities that can be enabled on VMs @@ -7927,10 +7996,10 @@ by POWER10 processor. 7.24 KVM_CAP_VM_COPY_ENC_CONTEXT_FROM ------------------------------------- -Architectures: x86 SEV enabled -Type: vm -Parameters: args[0] is the fd of the source vm -Returns: 0 on success; ENOTTY on error +:Architectures: x86 SEV enabled +:Type: vm +:Parameters: args[0] is the fd of the source vm +:Returns: 0 on success; ENOTTY on error This capability enables userspace to copy encryption context from the vm indicated by the fd to the vm this is called on. @@ -7963,24 +8032,6 @@ default. See Documentation/arch/x86/sgx.rst for more details. -7.26 KVM_CAP_PPC_RPT_INVALIDATE -------------------------------- - -:Capability: KVM_CAP_PPC_RPT_INVALIDATE -:Architectures: ppc -:Type: vm - -This capability indicates that the kernel is capable of handling -H_RPT_INVALIDATE hcall. - -In order to enable the use of H_RPT_INVALIDATE in the guest, -user space might have to advertise it for the guest. For example, -IBM pSeries (sPAPR) guest starts using it if "hcall-rpt-invalidate" is -present in the "ibm,hypertas-functions" device-tree property. - -This capability is enabled for hypervisors on platforms like POWER9 -that support radix MMU. - 7.27 KVM_CAP_EXIT_ON_EMULATION_FAILURE -------------------------------------- @@ -8038,24 +8089,9 @@ indicated by the fd to the VM this is called on. This is intended to support intra-host migration of VMs between userspace VMMs, upgrading the VMM process without interrupting the guest. -7.30 KVM_CAP_PPC_AIL_MODE_3 -------------------------------- - -:Capability: KVM_CAP_PPC_AIL_MODE_3 -:Architectures: ppc -:Type: vm - -This capability indicates that the kernel supports the mode 3 setting for the -"Address Translation Mode on Interrupt" aka "Alternate Interrupt Location" -resource that is controlled with the H_SET_MODE hypercall. - -This capability allows a guest kernel to use a better-performance mode for -handling interrupts and system calls. - 7.31 KVM_CAP_DISABLE_QUIRKS2 ---------------------------- -:Capability: KVM_CAP_DISABLE_QUIRKS2 :Parameters: args[0] - set of KVM quirks to disable :Architectures: x86 :Type: vm @@ -8210,27 +8246,6 @@ This capability is aimed to mitigate the threat that malicious VMs can cause CPU stuck (due to event windows don't open up) and make the CPU unavailable to host or other VMs. -7.34 KVM_CAP_MEMORY_FAULT_INFO ------------------------------- - -:Architectures: x86 -:Returns: Informational only, -EINVAL on direct KVM_ENABLE_CAP. - -The presence of this capability indicates that KVM_RUN will fill -kvm_run.memory_fault if KVM cannot resolve a guest page fault VM-Exit, e.g. if -there is a valid memslot but no backing VMA for the corresponding host virtual -address. - -The information in kvm_run.memory_fault is valid if and only if KVM_RUN returns -an error with errno=EFAULT or errno=EHWPOISON *and* kvm_run.exit_reason is set -to KVM_EXIT_MEMORY_FAULT. - -Note: Userspaces which attempt to resolve memory faults so that they can retry -KVM_RUN are encouraged to guard against repeatedly receiving the same -error/annotated fault. - -See KVM_EXIT_MEMORY_FAULT for more information. - 7.35 KVM_CAP_X86_APIC_BUS_CYCLES_NS ----------------------------------- @@ -8248,421 +8263,11 @@ by KVM_CHECK_EXTENSION. Note: Userspace is responsible for correctly configuring CPUID 0x15, a.k.a. the core crystal clock frequency, if a non-zero CPUID 0x15 is exposed to the guest. -7.36 KVM_CAP_X86_GUEST_MODE ------------------------------- - -:Architectures: x86 -:Returns: Informational only, -EINVAL on direct KVM_ENABLE_CAP. - -The presence of this capability indicates that KVM_RUN will update the -KVM_RUN_X86_GUEST_MODE bit in kvm_run.flags to indicate whether the -vCPU was executing nested guest code when it exited. - -KVM exits with the register state of either the L1 or L2 guest -depending on which executed at the time of an exit. Userspace must -take care to differentiate between these cases. - -7.37 KVM_CAP_ARM_WRITABLE_IMP_ID_REGS -------------------------------------- - -:Architectures: arm64 -:Target: VM -:Parameters: None -:Returns: 0 on success, -EINVAL if vCPUs have been created before enabling this - capability. - -This capability changes the behavior of the registers that identify a PE -implementation of the Arm architecture: MIDR_EL1, REVIDR_EL1, and AIDR_EL1. -By default, these registers are visible to userspace but treated as invariant. - -When this capability is enabled, KVM allows userspace to change the -aforementioned registers before the first KVM_RUN. These registers are VM -scoped, meaning that the same set of values are presented on all vCPUs in a -given VM. - -8. Other capabilities. -====================== - -This section lists capabilities that give information about other -features of the KVM implementation. - -8.1 KVM_CAP_PPC_HWRNG ---------------------- - -:Architectures: ppc - -This capability, if KVM_CHECK_EXTENSION indicates that it is -available, means that the kernel has an implementation of the -H_RANDOM hypercall backed by a hardware random-number generator. -If present, the kernel H_RANDOM handler can be enabled for guest use -with the KVM_CAP_PPC_ENABLE_HCALL capability. - -8.2 KVM_CAP_HYPERV_SYNIC ------------------------- - -:Architectures: x86 - -This capability, if KVM_CHECK_EXTENSION indicates that it is -available, means that the kernel has an implementation of the -Hyper-V Synthetic interrupt controller(SynIC). Hyper-V SynIC is -used to support Windows Hyper-V based guest paravirt drivers(VMBus). - -In order to use SynIC, it has to be activated by setting this -capability via KVM_ENABLE_CAP ioctl on the vcpu fd. Note that this -will disable the use of APIC hardware virtualization even if supported -by the CPU, as it's incompatible with SynIC auto-EOI behavior. - -8.3 KVM_CAP_PPC_MMU_RADIX -------------------------- - -:Architectures: ppc - -This capability, if KVM_CHECK_EXTENSION indicates that it is -available, means that the kernel can support guests using the -radix MMU defined in Power ISA V3.00 (as implemented in the POWER9 -processor). - -8.4 KVM_CAP_PPC_MMU_HASH_V3 ---------------------------- - -:Architectures: ppc - -This capability, if KVM_CHECK_EXTENSION indicates that it is -available, means that the kernel can support guests using the -hashed page table MMU defined in Power ISA V3.00 (as implemented in -the POWER9 processor), including in-memory segment tables. - -8.5 KVM_CAP_MIPS_VZ -------------------- - -:Architectures: mips - -This capability, if KVM_CHECK_EXTENSION on the main kvm handle indicates that -it is available, means that full hardware assisted virtualization capabilities -of the hardware are available for use through KVM. An appropriate -KVM_VM_MIPS_* type must be passed to KVM_CREATE_VM to create a VM which -utilises it. - -If KVM_CHECK_EXTENSION on a kvm VM handle indicates that this capability is -available, it means that the VM is using full hardware assisted virtualization -capabilities of the hardware. This is useful to check after creating a VM with -KVM_VM_MIPS_DEFAULT. - -The value returned by KVM_CHECK_EXTENSION should be compared against known -values (see below). All other values are reserved. This is to allow for the -possibility of other hardware assisted virtualization implementations which -may be incompatible with the MIPS VZ ASE. - -== ========================================================================== - 0 The trap & emulate implementation is in use to run guest code in user - mode. Guest virtual memory segments are rearranged to fit the guest in the - user mode address space. - - 1 The MIPS VZ ASE is in use, providing full hardware assisted - virtualization, including standard guest virtual memory segments. -== ========================================================================== - -8.6 KVM_CAP_MIPS_TE -------------------- - -:Architectures: mips - -This capability, if KVM_CHECK_EXTENSION on the main kvm handle indicates that -it is available, means that the trap & emulate implementation is available to -run guest code in user mode, even if KVM_CAP_MIPS_VZ indicates that hardware -assisted virtualisation is also available. KVM_VM_MIPS_TE (0) must be passed -to KVM_CREATE_VM to create a VM which utilises it. - -If KVM_CHECK_EXTENSION on a kvm VM handle indicates that this capability is -available, it means that the VM is using trap & emulate. - -8.7 KVM_CAP_MIPS_64BIT ----------------------- - -:Architectures: mips - -This capability indicates the supported architecture type of the guest, i.e. the -supported register and address width. - -The values returned when this capability is checked by KVM_CHECK_EXTENSION on a -kvm VM handle correspond roughly to the CP0_Config.AT register field, and should -be checked specifically against known values (see below). All other values are -reserved. - -== ======================================================================== - 0 MIPS32 or microMIPS32. - Both registers and addresses are 32-bits wide. - It will only be possible to run 32-bit guest code. - - 1 MIPS64 or microMIPS64 with access only to 32-bit compatibility segments. - Registers are 64-bits wide, but addresses are 32-bits wide. - 64-bit guest code may run but cannot access MIPS64 memory segments. - It will also be possible to run 32-bit guest code. - - 2 MIPS64 or microMIPS64 with access to all address segments. - Both registers and addresses are 64-bits wide. - It will be possible to run 64-bit or 32-bit guest code. -== ======================================================================== - -8.9 KVM_CAP_ARM_USER_IRQ ------------------------- - -:Architectures: arm64 - -This capability, if KVM_CHECK_EXTENSION indicates that it is available, means -that if userspace creates a VM without an in-kernel interrupt controller, it -will be notified of changes to the output level of in-kernel emulated devices, -which can generate virtual interrupts, presented to the VM. -For such VMs, on every return to userspace, the kernel -updates the vcpu's run->s.regs.device_irq_level field to represent the actual -output level of the device. - -Whenever kvm detects a change in the device output level, kvm guarantees at -least one return to userspace before running the VM. This exit could either -be a KVM_EXIT_INTR or any other exit event, like KVM_EXIT_MMIO. This way, -userspace can always sample the device output level and re-compute the state of -the userspace interrupt controller. Userspace should always check the state -of run->s.regs.device_irq_level on every kvm exit. -The value in run->s.regs.device_irq_level can represent both level and edge -triggered interrupt signals, depending on the device. Edge triggered interrupt -signals will exit to userspace with the bit in run->s.regs.device_irq_level -set exactly once per edge signal. - -The field run->s.regs.device_irq_level is available independent of -run->kvm_valid_regs or run->kvm_dirty_regs bits. - -If KVM_CAP_ARM_USER_IRQ is supported, the KVM_CHECK_EXTENSION ioctl returns a -number larger than 0 indicating the version of this capability is implemented -and thereby which bits in run->s.regs.device_irq_level can signal values. - -Currently the following bits are defined for the device_irq_level bitmap:: - - KVM_CAP_ARM_USER_IRQ >= 1: - - KVM_ARM_DEV_EL1_VTIMER - EL1 virtual timer - KVM_ARM_DEV_EL1_PTIMER - EL1 physical timer - KVM_ARM_DEV_PMU - ARM PMU overflow interrupt signal - -Future versions of kvm may implement additional events. These will get -indicated by returning a higher number from KVM_CHECK_EXTENSION and will be -listed above. - -8.10 KVM_CAP_PPC_SMT_POSSIBLE ------------------------------ - -:Architectures: ppc - -Querying this capability returns a bitmap indicating the possible -virtual SMT modes that can be set using KVM_CAP_PPC_SMT. If bit N -(counting from the right) is set, then a virtual SMT mode of 2^N is -available. - -8.11 KVM_CAP_HYPERV_SYNIC2 --------------------------- - -:Architectures: x86 - -This capability enables a newer version of Hyper-V Synthetic interrupt -controller (SynIC). The only difference with KVM_CAP_HYPERV_SYNIC is that KVM -doesn't clear SynIC message and event flags pages when they are enabled by -writing to the respective MSRs. - -8.12 KVM_CAP_HYPERV_VP_INDEX ----------------------------- - -:Architectures: x86 - -This capability indicates that userspace can load HV_X64_MSR_VP_INDEX msr. Its -value is used to denote the target vcpu for a SynIC interrupt. For -compatibility, KVM initializes this msr to KVM's internal vcpu index. When this -capability is absent, userspace can still query this msr's value. - -8.13 KVM_CAP_S390_AIS_MIGRATION -------------------------------- - -:Architectures: s390 -:Parameters: none - -This capability indicates if the flic device will be able to get/set the -AIS states for migration via the KVM_DEV_FLIC_AISM_ALL attribute and allows -to discover this without having to create a flic device. - -8.14 KVM_CAP_S390_PSW ---------------------- - -:Architectures: s390 - -This capability indicates that the PSW is exposed via the kvm_run structure. - -8.15 KVM_CAP_S390_GMAP ----------------------- - -:Architectures: s390 - -This capability indicates that the user space memory used as guest mapping can -be anywhere in the user memory address space, as long as the memory slots are -aligned and sized to a segment (1MB) boundary. - -8.16 KVM_CAP_S390_COW ---------------------- - -:Architectures: s390 - -This capability indicates that the user space memory used as guest mapping can -use copy-on-write semantics as well as dirty pages tracking via read-only page -tables. - -8.17 KVM_CAP_S390_BPB ---------------------- - -:Architectures: s390 - -This capability indicates that kvm will implement the interfaces to handle -reset, migration and nested KVM for branch prediction blocking. The stfle -facility 82 should not be provided to the guest without this capability. - -8.18 KVM_CAP_HYPERV_TLBFLUSH ----------------------------- - -:Architectures: x86 - -This capability indicates that KVM supports paravirtualized Hyper-V TLB Flush -hypercalls: -HvFlushVirtualAddressSpace, HvFlushVirtualAddressSpaceEx, -HvFlushVirtualAddressList, HvFlushVirtualAddressListEx. - -8.19 KVM_CAP_ARM_INJECT_SERROR_ESR ----------------------------------- - -:Architectures: arm64 - -This capability indicates that userspace can specify (via the -KVM_SET_VCPU_EVENTS ioctl) the syndrome value reported to the guest when it -takes a virtual SError interrupt exception. -If KVM advertises this capability, userspace can only specify the ISS field for -the ESR syndrome. Other parts of the ESR, such as the EC are generated by the -CPU when the exception is taken. If this virtual SError is taken to EL1 using -AArch64, this value will be reported in the ISS field of ESR_ELx. - -See KVM_CAP_VCPU_EVENTS for more details. - -8.20 KVM_CAP_HYPERV_SEND_IPI ----------------------------- - -:Architectures: x86 - -This capability indicates that KVM supports paravirtualized Hyper-V IPI send -hypercalls: -HvCallSendSyntheticClusterIpi, HvCallSendSyntheticClusterIpiEx. - -8.21 KVM_CAP_HYPERV_DIRECT_TLBFLUSH ------------------------------------ - -:Architectures: x86 - -This capability indicates that KVM running on top of Hyper-V hypervisor -enables Direct TLB flush for its guests meaning that TLB flush -hypercalls are handled by Level 0 hypervisor (Hyper-V) bypassing KVM. -Due to the different ABI for hypercall parameters between Hyper-V and -KVM, enabling this capability effectively disables all hypercall -handling by KVM (as some KVM hypercall may be mistakenly treated as TLB -flush hypercalls by Hyper-V) so userspace should disable KVM identification -in CPUID and only exposes Hyper-V identification. In this case, guest -thinks it's running on Hyper-V and only use Hyper-V hypercalls. - -8.22 KVM_CAP_S390_VCPU_RESETS ------------------------------ - -:Architectures: s390 - -This capability indicates that the KVM_S390_NORMAL_RESET and -KVM_S390_CLEAR_RESET ioctls are available. - -8.23 KVM_CAP_S390_PROTECTED ---------------------------- - -:Architectures: s390 - -This capability indicates that the Ultravisor has been initialized and -KVM can therefore start protected VMs. -This capability governs the KVM_S390_PV_COMMAND ioctl and the -KVM_MP_STATE_LOAD MP_STATE. KVM_SET_MP_STATE can fail for protected -guests when the state change is invalid. - -8.24 KVM_CAP_STEAL_TIME ------------------------ - -:Architectures: arm64, x86 - -This capability indicates that KVM supports steal time accounting. -When steal time accounting is supported it may be enabled with -architecture-specific interfaces. This capability and the architecture- -specific interfaces must be consistent, i.e. if one says the feature -is supported, than the other should as well and vice versa. For arm64 -see Documentation/virt/kvm/devices/vcpu.rst "KVM_ARM_VCPU_PVTIME_CTRL". -For x86 see Documentation/virt/kvm/x86/msr.rst "MSR_KVM_STEAL_TIME". - -8.25 KVM_CAP_S390_DIAG318 -------------------------- - -:Architectures: s390 - -This capability enables a guest to set information about its control program -(i.e. guest kernel type and version). The information is helpful during -system/firmware service events, providing additional data about the guest -environments running on the machine. - -The information is associated with the DIAGNOSE 0x318 instruction, which sets -an 8-byte value consisting of a one-byte Control Program Name Code (CPNC) and -a 7-byte Control Program Version Code (CPVC). The CPNC determines what -environment the control program is running in (e.g. Linux, z/VM...), and the -CPVC is used for information specific to OS (e.g. Linux version, Linux -distribution...) - -If this capability is available, then the CPNC and CPVC can be synchronized -between KVM and userspace via the sync regs mechanism (KVM_SYNC_DIAG318). - -8.26 KVM_CAP_X86_USER_SPACE_MSR -------------------------------- - -:Architectures: x86 - -This capability indicates that KVM supports deflection of MSR reads and -writes to user space. It can be enabled on a VM level. If enabled, MSR -accesses that would usually trigger a #GP by KVM into the guest will -instead get bounced to user space through the KVM_EXIT_X86_RDMSR and -KVM_EXIT_X86_WRMSR exit notifications. - -8.27 KVM_CAP_X86_MSR_FILTER ---------------------------- - -:Architectures: x86 - -This capability indicates that KVM supports that accesses to user defined MSRs -may be rejected. With this capability exposed, KVM exports new VM ioctl -KVM_X86_SET_MSR_FILTER which user space can call to specify bitmaps of MSR -ranges that KVM should deny access to. - -In combination with KVM_CAP_X86_USER_SPACE_MSR, this allows user space to -trap and emulate MSRs that are outside of the scope of KVM as well as -limit the attack surface on KVM's MSR emulation code. - -8.28 KVM_CAP_ENFORCE_PV_FEATURE_CPUID -------------------------------------- - -Architectures: x86 - -When enabled, KVM will disable paravirtual features provided to the -guest according to the bits in the KVM_CPUID_FEATURES CPUID leaf -(0x40000001). Otherwise, a guest may use the paravirtual features -regardless of what has actually been exposed through the CPUID leaf. - -.. _KVM_CAP_DIRTY_LOG_RING: - -8.29 KVM_CAP_DIRTY_LOG_RING/KVM_CAP_DIRTY_LOG_RING_ACQ_REL +7.36 KVM_CAP_DIRTY_LOG_RING/KVM_CAP_DIRTY_LOG_RING_ACQ_REL ---------------------------------------------------------- :Architectures: x86, arm64 +:Type: vm :Parameters: args[0] - size of the dirty log ring KVM is capable of tracking dirty memory using ring buffers that are @@ -8783,6 +8388,426 @@ command KVM_DEV_ARM_{VGIC_GRP_CTRL, ITS_RESTORE_TABLES} on KVM device vgic3 pending table through KVM_DEV_ARM_VGIC_{GRP_CTRL, SAVE_PENDING_TABLES} command on KVM device "kvm-arm-vgic-v3". +7.37 KVM_CAP_PMU_CAPABILITY +--------------------------- + +:Architectures: x86 +:Type: vm +:Parameters: arg[0] is bitmask of PMU virtualization capabilities. +:Returns: 0 on success, -EINVAL when arg[0] contains invalid bits + +This capability alters PMU virtualization in KVM. + +Calling KVM_CHECK_EXTENSION for this capability returns a bitmask of +PMU virtualization capabilities that can be adjusted on a VM. + +The argument to KVM_ENABLE_CAP is also a bitmask and selects specific +PMU virtualization capabilities to be applied to the VM. This can +only be invoked on a VM prior to the creation of VCPUs. + +At this time, KVM_PMU_CAP_DISABLE is the only capability. Setting +this capability will disable PMU virtualization for that VM. Usermode +should adjust CPUID leaf 0xA to reflect that the PMU is disabled. + +7.38 KVM_CAP_VM_DISABLE_NX_HUGE_PAGES +------------------------------------- + +:Architectures: x86 +:Type: vm +:Parameters: arg[0] must be 0. +:Returns: 0 on success, -EPERM if the userspace process does not + have CAP_SYS_BOOT, -EINVAL if args[0] is not 0 or any vCPUs have been + created. + +This capability disables the NX huge pages mitigation for iTLB MULTIHIT. + +The capability has no effect if the nx_huge_pages module parameter is not set. + +This capability may only be set before any vCPUs are created. + +7.39 KVM_CAP_ARM_EAGER_SPLIT_CHUNK_SIZE +--------------------------------------- + +:Architectures: arm64 +:Type: vm +:Parameters: arg[0] is the new split chunk size. +:Returns: 0 on success, -EINVAL if any memslot was already created. + +This capability sets the chunk size used in Eager Page Splitting. + +Eager Page Splitting improves the performance of dirty-logging (used +in live migrations) when guest memory is backed by huge-pages. It +avoids splitting huge-pages (into PAGE_SIZE pages) on fault, by doing +it eagerly when enabling dirty logging (with the +KVM_MEM_LOG_DIRTY_PAGES flag for a memory region), or when using +KVM_CLEAR_DIRTY_LOG. + +The chunk size specifies how many pages to break at a time, using a +single allocation for each chunk. Bigger the chunk size, more pages +need to be allocated ahead of time. + +The chunk size needs to be a valid block size. The list of acceptable +block sizes is exposed in KVM_CAP_ARM_SUPPORTED_BLOCK_SIZES as a +64-bit bitmap (each bit describing a block size). The default value is +0, to disable the eager page splitting. + +7.40 KVM_CAP_EXIT_HYPERCALL +--------------------------- + +:Architectures: x86 +:Type: vm + +This capability, if enabled, will cause KVM to exit to userspace +with KVM_EXIT_HYPERCALL exit reason to process some hypercalls. + +Calling KVM_CHECK_EXTENSION for this capability will return a bitmask +of hypercalls that can be configured to exit to userspace. +Right now, the only such hypercall is KVM_HC_MAP_GPA_RANGE. + +The argument to KVM_ENABLE_CAP is also a bitmask, and must be a subset +of the result of KVM_CHECK_EXTENSION. KVM will forward to userspace +the hypercalls whose corresponding bit is in the argument, and return +ENOSYS for the others. + +7.41 KVM_CAP_ARM_SYSTEM_SUSPEND +------------------------------- + +:Architectures: arm64 +:Type: vm + +When enabled, KVM will exit to userspace with KVM_EXIT_SYSTEM_EVENT of +type KVM_SYSTEM_EVENT_SUSPEND to process the guest suspend request. + +7.37 KVM_CAP_ARM_WRITABLE_IMP_ID_REGS +------------------------------------- + +:Architectures: arm64 +:Target: VM +:Parameters: None +:Returns: 0 on success, -EINVAL if vCPUs have been created before enabling this + capability. + +This capability changes the behavior of the registers that identify a PE +implementation of the Arm architecture: MIDR_EL1, REVIDR_EL1, and AIDR_EL1. +By default, these registers are visible to userspace but treated as invariant. + +When this capability is enabled, KVM allows userspace to change the +aforementioned registers before the first KVM_RUN. These registers are VM +scoped, meaning that the same set of values are presented on all vCPUs in a +given VM. + +8. Other capabilities. +====================== + +This section lists capabilities that give information about other +features of the KVM implementation. + +8.1 KVM_CAP_PPC_HWRNG +--------------------- + +:Architectures: ppc + +This capability, if KVM_CHECK_EXTENSION indicates that it is +available, means that the kernel has an implementation of the +H_RANDOM hypercall backed by a hardware random-number generator. +If present, the kernel H_RANDOM handler can be enabled for guest use +with the KVM_CAP_PPC_ENABLE_HCALL capability. + +8.3 KVM_CAP_PPC_MMU_RADIX +------------------------- + +:Architectures: ppc + +This capability, if KVM_CHECK_EXTENSION indicates that it is +available, means that the kernel can support guests using the +radix MMU defined in Power ISA V3.00 (as implemented in the POWER9 +processor). + +8.4 KVM_CAP_PPC_MMU_HASH_V3 +--------------------------- + +:Architectures: ppc + +This capability, if KVM_CHECK_EXTENSION indicates that it is +available, means that the kernel can support guests using the +hashed page table MMU defined in Power ISA V3.00 (as implemented in +the POWER9 processor), including in-memory segment tables. + +8.5 KVM_CAP_MIPS_VZ +------------------- + +:Architectures: mips + +This capability, if KVM_CHECK_EXTENSION on the main kvm handle indicates that +it is available, means that full hardware assisted virtualization capabilities +of the hardware are available for use through KVM. An appropriate +KVM_VM_MIPS_* type must be passed to KVM_CREATE_VM to create a VM which +utilises it. + +If KVM_CHECK_EXTENSION on a kvm VM handle indicates that this capability is +available, it means that the VM is using full hardware assisted virtualization +capabilities of the hardware. This is useful to check after creating a VM with +KVM_VM_MIPS_DEFAULT. + +The value returned by KVM_CHECK_EXTENSION should be compared against known +values (see below). All other values are reserved. This is to allow for the +possibility of other hardware assisted virtualization implementations which +may be incompatible with the MIPS VZ ASE. + +== ========================================================================== + 0 The trap & emulate implementation is in use to run guest code in user + mode. Guest virtual memory segments are rearranged to fit the guest in the + user mode address space. + + 1 The MIPS VZ ASE is in use, providing full hardware assisted + virtualization, including standard guest virtual memory segments. +== ========================================================================== + +8.7 KVM_CAP_MIPS_64BIT +---------------------- + +:Architectures: mips + +This capability indicates the supported architecture type of the guest, i.e. the +supported register and address width. + +The values returned when this capability is checked by KVM_CHECK_EXTENSION on a +kvm VM handle correspond roughly to the CP0_Config.AT register field, and should +be checked specifically against known values (see below). All other values are +reserved. + +== ======================================================================== + 0 MIPS32 or microMIPS32. + Both registers and addresses are 32-bits wide. + It will only be possible to run 32-bit guest code. + + 1 MIPS64 or microMIPS64 with access only to 32-bit compatibility segments. + Registers are 64-bits wide, but addresses are 32-bits wide. + 64-bit guest code may run but cannot access MIPS64 memory segments. + It will also be possible to run 32-bit guest code. + + 2 MIPS64 or microMIPS64 with access to all address segments. + Both registers and addresses are 64-bits wide. + It will be possible to run 64-bit or 32-bit guest code. +== ======================================================================== + +8.9 KVM_CAP_ARM_USER_IRQ +------------------------ + +:Architectures: arm64 + +This capability, if KVM_CHECK_EXTENSION indicates that it is available, means +that if userspace creates a VM without an in-kernel interrupt controller, it +will be notified of changes to the output level of in-kernel emulated devices, +which can generate virtual interrupts, presented to the VM. +For such VMs, on every return to userspace, the kernel +updates the vcpu's run->s.regs.device_irq_level field to represent the actual +output level of the device. + +Whenever kvm detects a change in the device output level, kvm guarantees at +least one return to userspace before running the VM. This exit could either +be a KVM_EXIT_INTR or any other exit event, like KVM_EXIT_MMIO. This way, +userspace can always sample the device output level and re-compute the state of +the userspace interrupt controller. Userspace should always check the state +of run->s.regs.device_irq_level on every kvm exit. +The value in run->s.regs.device_irq_level can represent both level and edge +triggered interrupt signals, depending on the device. Edge triggered interrupt +signals will exit to userspace with the bit in run->s.regs.device_irq_level +set exactly once per edge signal. + +The field run->s.regs.device_irq_level is available independent of +run->kvm_valid_regs or run->kvm_dirty_regs bits. + +If KVM_CAP_ARM_USER_IRQ is supported, the KVM_CHECK_EXTENSION ioctl returns a +number larger than 0 indicating the version of this capability is implemented +and thereby which bits in run->s.regs.device_irq_level can signal values. + +Currently the following bits are defined for the device_irq_level bitmap:: + + KVM_CAP_ARM_USER_IRQ >= 1: + + KVM_ARM_DEV_EL1_VTIMER - EL1 virtual timer + KVM_ARM_DEV_EL1_PTIMER - EL1 physical timer + KVM_ARM_DEV_PMU - ARM PMU overflow interrupt signal + +Future versions of kvm may implement additional events. These will get +indicated by returning a higher number from KVM_CHECK_EXTENSION and will be +listed above. + +8.10 KVM_CAP_PPC_SMT_POSSIBLE +----------------------------- + +:Architectures: ppc + +Querying this capability returns a bitmap indicating the possible +virtual SMT modes that can be set using KVM_CAP_PPC_SMT. If bit N +(counting from the right) is set, then a virtual SMT mode of 2^N is +available. + +8.12 KVM_CAP_HYPERV_VP_INDEX +---------------------------- + +:Architectures: x86 + +This capability indicates that userspace can load HV_X64_MSR_VP_INDEX msr. Its +value is used to denote the target vcpu for a SynIC interrupt. For +compatibility, KVM initializes this msr to KVM's internal vcpu index. When this +capability is absent, userspace can still query this msr's value. + +8.13 KVM_CAP_S390_AIS_MIGRATION +------------------------------- + +:Architectures: s390 + +This capability indicates if the flic device will be able to get/set the +AIS states for migration via the KVM_DEV_FLIC_AISM_ALL attribute and allows +to discover this without having to create a flic device. + +8.14 KVM_CAP_S390_PSW +--------------------- + +:Architectures: s390 + +This capability indicates that the PSW is exposed via the kvm_run structure. + +8.15 KVM_CAP_S390_GMAP +---------------------- + +:Architectures: s390 + +This capability indicates that the user space memory used as guest mapping can +be anywhere in the user memory address space, as long as the memory slots are +aligned and sized to a segment (1MB) boundary. + +8.16 KVM_CAP_S390_COW +--------------------- + +:Architectures: s390 + +This capability indicates that the user space memory used as guest mapping can +use copy-on-write semantics as well as dirty pages tracking via read-only page +tables. + +8.17 KVM_CAP_S390_BPB +--------------------- + +:Architectures: s390 + +This capability indicates that kvm will implement the interfaces to handle +reset, migration and nested KVM for branch prediction blocking. The stfle +facility 82 should not be provided to the guest without this capability. + +8.18 KVM_CAP_HYPERV_TLBFLUSH +---------------------------- + +:Architectures: x86 + +This capability indicates that KVM supports paravirtualized Hyper-V TLB Flush +hypercalls: +HvFlushVirtualAddressSpace, HvFlushVirtualAddressSpaceEx, +HvFlushVirtualAddressList, HvFlushVirtualAddressListEx. + +8.19 KVM_CAP_ARM_INJECT_SERROR_ESR +---------------------------------- + +:Architectures: arm64 + +This capability indicates that userspace can specify (via the +KVM_SET_VCPU_EVENTS ioctl) the syndrome value reported to the guest when it +takes a virtual SError interrupt exception. +If KVM advertises this capability, userspace can only specify the ISS field for +the ESR syndrome. Other parts of the ESR, such as the EC are generated by the +CPU when the exception is taken. If this virtual SError is taken to EL1 using +AArch64, this value will be reported in the ISS field of ESR_ELx. + +See KVM_CAP_VCPU_EVENTS for more details. + +8.20 KVM_CAP_HYPERV_SEND_IPI +---------------------------- + +:Architectures: x86 + +This capability indicates that KVM supports paravirtualized Hyper-V IPI send +hypercalls: +HvCallSendSyntheticClusterIpi, HvCallSendSyntheticClusterIpiEx. + +8.22 KVM_CAP_S390_VCPU_RESETS +----------------------------- + +:Architectures: s390 + +This capability indicates that the KVM_S390_NORMAL_RESET and +KVM_S390_CLEAR_RESET ioctls are available. + +8.23 KVM_CAP_S390_PROTECTED +--------------------------- + +:Architectures: s390 + +This capability indicates that the Ultravisor has been initialized and +KVM can therefore start protected VMs. +This capability governs the KVM_S390_PV_COMMAND ioctl and the +KVM_MP_STATE_LOAD MP_STATE. KVM_SET_MP_STATE can fail for protected +guests when the state change is invalid. + +8.24 KVM_CAP_STEAL_TIME +----------------------- + +:Architectures: arm64, x86 + +This capability indicates that KVM supports steal time accounting. +When steal time accounting is supported it may be enabled with +architecture-specific interfaces. This capability and the architecture- +specific interfaces must be consistent, i.e. if one says the feature +is supported, than the other should as well and vice versa. For arm64 +see Documentation/virt/kvm/devices/vcpu.rst "KVM_ARM_VCPU_PVTIME_CTRL". +For x86 see Documentation/virt/kvm/x86/msr.rst "MSR_KVM_STEAL_TIME". + +8.25 KVM_CAP_S390_DIAG318 +------------------------- + +:Architectures: s390 + +This capability enables a guest to set information about its control program +(i.e. guest kernel type and version). The information is helpful during +system/firmware service events, providing additional data about the guest +environments running on the machine. + +The information is associated with the DIAGNOSE 0x318 instruction, which sets +an 8-byte value consisting of a one-byte Control Program Name Code (CPNC) and +a 7-byte Control Program Version Code (CPVC). The CPNC determines what +environment the control program is running in (e.g. Linux, z/VM...), and the +CPVC is used for information specific to OS (e.g. Linux version, Linux +distribution...) + +If this capability is available, then the CPNC and CPVC can be synchronized +between KVM and userspace via the sync regs mechanism (KVM_SYNC_DIAG318). + +8.26 KVM_CAP_X86_USER_SPACE_MSR +------------------------------- + +:Architectures: x86 + +This capability indicates that KVM supports deflection of MSR reads and +writes to user space. It can be enabled on a VM level. If enabled, MSR +accesses that would usually trigger a #GP by KVM into the guest will +instead get bounced to user space through the KVM_EXIT_X86_RDMSR and +KVM_EXIT_X86_WRMSR exit notifications. + +8.27 KVM_CAP_X86_MSR_FILTER +--------------------------- + +:Architectures: x86 + +This capability indicates that KVM supports that accesses to user defined MSRs +may be rejected. With this capability exposed, KVM exports new VM ioctl +KVM_X86_SET_MSR_FILTER which user space can call to specify bitmaps of MSR +ranges that KVM should deny access to. + +In combination with KVM_CAP_X86_USER_SPACE_MSR, this allows user space to +trap and emulate MSRs that are outside of the scope of KVM as well as +limit the attack surface on KVM's MSR emulation code. + 8.30 KVM_CAP_XEN_HVM -------------------- @@ -8847,10 +8872,9 @@ clearing the PVCLOCK_TSC_STABLE_BIT flag in Xen pvclock sources. This will be done when the KVM_CAP_XEN_HVM ioctl sets the KVM_XEN_HVM_CONFIG_PVCLOCK_TSC_UNSTABLE flag. -8.31 KVM_CAP_PPC_MULTITCE -------------------------- +8.31 KVM_CAP_SPAPR_MULTITCE +--------------------------- -:Capability: KVM_CAP_PPC_MULTITCE :Architectures: ppc :Type: vm @@ -8882,72 +8906,9 @@ This capability indicates that the KVM virtual PTP service is supported in the host. A VMM can check whether the service is available to the guest on migration. -8.33 KVM_CAP_HYPERV_ENFORCE_CPUID ---------------------------------- - -Architectures: x86 - -When enabled, KVM will disable emulated Hyper-V features provided to the -guest according to the bits Hyper-V CPUID feature leaves. Otherwise, all -currently implemented Hyper-V features are provided unconditionally when -Hyper-V identification is set in the HYPERV_CPUID_INTERFACE (0x40000001) -leaf. - -8.34 KVM_CAP_EXIT_HYPERCALL ---------------------------- - -:Capability: KVM_CAP_EXIT_HYPERCALL -:Architectures: x86 -:Type: vm - -This capability, if enabled, will cause KVM to exit to userspace -with KVM_EXIT_HYPERCALL exit reason to process some hypercalls. - -Calling KVM_CHECK_EXTENSION for this capability will return a bitmask -of hypercalls that can be configured to exit to userspace. -Right now, the only such hypercall is KVM_HC_MAP_GPA_RANGE. - -The argument to KVM_ENABLE_CAP is also a bitmask, and must be a subset -of the result of KVM_CHECK_EXTENSION. KVM will forward to userspace -the hypercalls whose corresponding bit is in the argument, and return -ENOSYS for the others. - -8.35 KVM_CAP_PMU_CAPABILITY ---------------------------- - -:Capability: KVM_CAP_PMU_CAPABILITY -:Architectures: x86 -:Type: vm -:Parameters: arg[0] is bitmask of PMU virtualization capabilities. -:Returns: 0 on success, -EINVAL when arg[0] contains invalid bits - -This capability alters PMU virtualization in KVM. - -Calling KVM_CHECK_EXTENSION for this capability returns a bitmask of -PMU virtualization capabilities that can be adjusted on a VM. - -The argument to KVM_ENABLE_CAP is also a bitmask and selects specific -PMU virtualization capabilities to be applied to the VM. This can -only be invoked on a VM prior to the creation of VCPUs. - -At this time, KVM_PMU_CAP_DISABLE is the only capability. Setting -this capability will disable PMU virtualization for that VM. Usermode -should adjust CPUID leaf 0xA to reflect that the PMU is disabled. - -8.36 KVM_CAP_ARM_SYSTEM_SUSPEND -------------------------------- - -:Capability: KVM_CAP_ARM_SYSTEM_SUSPEND -:Architectures: arm64 -:Type: vm - -When enabled, KVM will exit to userspace with KVM_EXIT_SYSTEM_EVENT of -type KVM_SYSTEM_EVENT_SUSPEND to process the guest suspend request. - 8.37 KVM_CAP_S390_PROTECTED_DUMP -------------------------------- -:Capability: KVM_CAP_S390_PROTECTED_DUMP :Architectures: s390 :Type: vm @@ -8957,27 +8918,9 @@ PV guests. The `KVM_PV_DUMP` command is available for the dump related UV data. Also the vcpu ioctl `KVM_S390_PV_CPU_COMMAND` is available and supports the `KVM_PV_DUMP_CPU` subcommand. -8.38 KVM_CAP_VM_DISABLE_NX_HUGE_PAGES -------------------------------------- - -:Capability: KVM_CAP_VM_DISABLE_NX_HUGE_PAGES -:Architectures: x86 -:Type: vm -:Parameters: arg[0] must be 0. -:Returns: 0 on success, -EPERM if the userspace process does not - have CAP_SYS_BOOT, -EINVAL if args[0] is not 0 or any vCPUs have been - created. - -This capability disables the NX huge pages mitigation for iTLB MULTIHIT. - -The capability has no effect if the nx_huge_pages module parameter is not set. - -This capability may only be set before any vCPUs are created. - 8.39 KVM_CAP_S390_CPU_TOPOLOGY ------------------------------ -:Capability: KVM_CAP_S390_CPU_TOPOLOGY :Architectures: s390 :Type: vm @@ -8999,37 +8942,9 @@ structure. When getting the Modified Change Topology Report value, the attr->addr must point to a byte where the value will be stored or retrieved from. -8.40 KVM_CAP_ARM_EAGER_SPLIT_CHUNK_SIZE ---------------------------------------- - -:Capability: KVM_CAP_ARM_EAGER_SPLIT_CHUNK_SIZE -:Architectures: arm64 -:Type: vm -:Parameters: arg[0] is the new split chunk size. -:Returns: 0 on success, -EINVAL if any memslot was already created. - -This capability sets the chunk size used in Eager Page Splitting. - -Eager Page Splitting improves the performance of dirty-logging (used -in live migrations) when guest memory is backed by huge-pages. It -avoids splitting huge-pages (into PAGE_SIZE pages) on fault, by doing -it eagerly when enabling dirty logging (with the -KVM_MEM_LOG_DIRTY_PAGES flag for a memory region), or when using -KVM_CLEAR_DIRTY_LOG. - -The chunk size specifies how many pages to break at a time, using a -single allocation for each chunk. Bigger the chunk size, more pages -need to be allocated ahead of time. - -The chunk size needs to be a valid block size. The list of acceptable -block sizes is exposed in KVM_CAP_ARM_SUPPORTED_BLOCK_SIZES as a -64-bit bitmap (each bit describing a block size). The default value is -0, to disable the eager page splitting. - 8.41 KVM_CAP_VM_TYPES --------------------- -:Capability: KVM_CAP_MEMORY_ATTRIBUTES :Architectures: x86 :Type: system ioctl @@ -9046,6 +8961,67 @@ Do not use KVM_X86_SW_PROTECTED_VM for "real" VMs, and especially not in production. The behavior and effective ABI for software-protected VMs is unstable. +8.42 KVM_CAP_PPC_RPT_INVALIDATE +------------------------------- + +:Architectures: ppc + +This capability indicates that the kernel is capable of handling +H_RPT_INVALIDATE hcall. + +In order to enable the use of H_RPT_INVALIDATE in the guest, +user space might have to advertise it for the guest. For example, +IBM pSeries (sPAPR) guest starts using it if "hcall-rpt-invalidate" is +present in the "ibm,hypertas-functions" device-tree property. + +This capability is enabled for hypervisors on platforms like POWER9 +that support radix MMU. + +8.43 KVM_CAP_PPC_AIL_MODE_3 +--------------------------- + +:Architectures: ppc + +This capability indicates that the kernel supports the mode 3 setting for the +"Address Translation Mode on Interrupt" aka "Alternate Interrupt Location" +resource that is controlled with the H_SET_MODE hypercall. + +This capability allows a guest kernel to use a better-performance mode for +handling interrupts and system calls. + +8.44 KVM_CAP_MEMORY_FAULT_INFO +------------------------------ + +:Architectures: x86 + +The presence of this capability indicates that KVM_RUN will fill +kvm_run.memory_fault if KVM cannot resolve a guest page fault VM-Exit, e.g. if +there is a valid memslot but no backing VMA for the corresponding host virtual +address. + +The information in kvm_run.memory_fault is valid if and only if KVM_RUN returns +an error with errno=EFAULT or errno=EHWPOISON *and* kvm_run.exit_reason is set +to KVM_EXIT_MEMORY_FAULT. + +Note: Userspaces which attempt to resolve memory faults so that they can retry +KVM_RUN are encouraged to guard against repeatedly receiving the same +error/annotated fault. + +See KVM_EXIT_MEMORY_FAULT for more information. + +8.45 KVM_CAP_X86_GUEST_MODE +--------------------------- + +:Architectures: x86 + +The presence of this capability indicates that KVM_RUN will update the +KVM_RUN_X86_GUEST_MODE bit in kvm_run.flags to indicate whether the +vCPU was executing nested guest code when it exited. + +KVM exits with the register state of either the L1 or L2 guest +depending on which executed at the time of an exit. Userspace must +take care to differentiate between these cases. + 9. Known KVM API problems ========================= @@ -9076,9 +9052,10 @@ the local APIC. The same is true for the ``KVM_FEATURE_PV_UNHALT`` paravirtualized feature. -CPU[EAX=1]:ECX[24] (TSC_DEADLINE) is not reported by ``KVM_GET_SUPPORTED_CPUID``. -It can be enabled if ``KVM_CAP_TSC_DEADLINE_TIMER`` is present and the kernel -has enabled in-kernel emulation of the local APIC. +On older versions of Linux, CPU[EAX=1]:ECX[24] (TSC_DEADLINE) is not reported by +``KVM_GET_SUPPORTED_CPUID``, but it can be enabled if ``KVM_CAP_TSC_DEADLINE_TIMER`` +is present and the kernel has enabled in-kernel emulation of the local APIC. +On newer versions, ``KVM_GET_SUPPORTED_CPUID`` does report the bit as available. CPU topology ~~~~~~~~~~~~ diff --git a/MAINTAINERS b/MAINTAINERS index a05d21fad0f7..251b1f3d0e92 100644 --- a/MAINTAINERS +++ b/MAINTAINERS @@ -10152,6 +10152,8 @@ F: include/linux/gpio.h F: include/linux/gpio/ F: include/linux/of_gpio.h K: (devm_)?gpio_(request|free|direction|get|set) +K: GPIOD_FLAGS_BIT_NONEXCLUSIVE +K: devm_gpiod_unhinge GPIO UAPI M: Bartosz Golaszewski @@ -11918,13 +11920,10 @@ F: drivers/gpio/gpio-tangier.c F: drivers/gpio/gpio-tangier.h INTEL GVT-g DRIVERS (Intel GPU Virtualization) -M: Zhenyu Wang -M: Zhi Wang -L: intel-gvt-dev@lists.freedesktop.org -L: intel-gfx@lists.freedesktop.org -S: Supported +R: Zhenyu Wang +R: Zhi Wang +S: Odd Fixes W: https://github.com/intel/gvt-linux/wiki -T: git https://github.com/intel/gvt-linux.git F: drivers/gpu/drm/i915/gvt/ INTEL HID EVENT DRIVER diff --git a/Makefile b/Makefile index 38689a0c3605..c91afd55099e 100644 --- a/Makefile +++ b/Makefile @@ -2,7 +2,7 @@ VERSION = 6 PATCHLEVEL = 15 SUBLEVEL = 0 -EXTRAVERSION = -rc1 +EXTRAVERSION = -rc2 NAME = Baby Opossum Posse # *DOCUMENTATION* @@ -1068,6 +1068,9 @@ ifdef CONFIG_CC_IS_GCC KBUILD_CFLAGS += -fconserve-stack endif +# Ensure compilers do not transform certain loops into calls to wcslen() +KBUILD_CFLAGS += -fno-builtin-wcslen + # change __FILE__ to the relative path to the source directory ifdef building_out_of_srctree KBUILD_CPPFLAGS += $(call cc-option,-ffile-prefix-map=$(srcroot)/=) diff --git a/arch/arm/configs/at91_dt_defconfig b/arch/arm/configs/at91_dt_defconfig index f2596a1b2f7d..ff13e1ecf4bb 100644 --- a/arch/arm/configs/at91_dt_defconfig +++ b/arch/arm/configs/at91_dt_defconfig @@ -232,7 +232,6 @@ CONFIG_CRYPTO_USER_API_SKCIPHER=m CONFIG_CRYPTO_DEV_ATMEL_AES=y CONFIG_CRYPTO_DEV_ATMEL_TDES=y CONFIG_CRYPTO_DEV_ATMEL_SHA=y -CONFIG_CRC_CCITT=y CONFIG_FONTS=y CONFIG_FONT_8x8=y CONFIG_FONT_ACORN_8x8=y diff --git a/arch/arm/configs/collie_defconfig b/arch/arm/configs/collie_defconfig index 42cb1c854118..578c6a4af620 100644 --- a/arch/arm/configs/collie_defconfig +++ b/arch/arm/configs/collie_defconfig @@ -78,7 +78,6 @@ CONFIG_ROMFS_FS=y CONFIG_NLS_DEFAULT="cp437" CONFIG_NLS_CODEPAGE_437=y CONFIG_NLS_ISO8859_1=y -CONFIG_CRC_CCITT=y CONFIG_FONTS=y CONFIG_FONT_MINI_4x6=y # CONFIG_DEBUG_BUGVERBOSE is not set diff --git a/arch/arm/configs/davinci_all_defconfig b/arch/arm/configs/davinci_all_defconfig index 3474e475373a..70b8c78386f4 100644 --- a/arch/arm/configs/davinci_all_defconfig +++ b/arch/arm/configs/davinci_all_defconfig @@ -249,7 +249,6 @@ CONFIG_NLS_ASCII=m CONFIG_NLS_ISO8859_1=y CONFIG_NLS_UTF8=m # CONFIG_CRYPTO_HW is not set -CONFIG_CRC_T10DIF=m CONFIG_DMA_CMA=y CONFIG_DEBUG_FS=y CONFIG_DEBUG_RT_MUTEXES=y diff --git a/arch/arm/configs/dove_defconfig b/arch/arm/configs/dove_defconfig index b382a2e175fb..d76eb12d29a7 100644 --- a/arch/arm/configs/dove_defconfig +++ b/arch/arm/configs/dove_defconfig @@ -128,7 +128,6 @@ CONFIG_CRYPTO_DEFLATE=y CONFIG_CRYPTO_LZO=y # CONFIG_CRYPTO_ANSI_CPRNG is not set CONFIG_CRYPTO_DEV_MARVELL_CESA=y -CONFIG_CRC_CCITT=y CONFIG_PRINTK_TIME=y # CONFIG_DEBUG_BUGVERBOSE is not set CONFIG_DEBUG_INFO_DWARF_TOOLCHAIN_DEFAULT=y diff --git a/arch/arm/configs/exynos_defconfig b/arch/arm/configs/exynos_defconfig index 7ad48fdda1da..e81a5d6c1c20 100644 --- a/arch/arm/configs/exynos_defconfig +++ b/arch/arm/configs/exynos_defconfig @@ -370,7 +370,6 @@ CONFIG_CRYPTO_AES_ARM_BS=m CONFIG_CRYPTO_CHACHA20_NEON=m CONFIG_CRYPTO_DEV_EXYNOS_RNG=y CONFIG_CRYPTO_DEV_S5P=y -CONFIG_CRC_CCITT=y CONFIG_DMA_CMA=y CONFIG_CMA_SIZE_MBYTES=96 CONFIG_FONTS=y diff --git a/arch/arm/configs/imx_v6_v7_defconfig b/arch/arm/configs/imx_v6_v7_defconfig index 297c6a7b978a..062c1eb8dd60 100644 --- a/arch/arm/configs/imx_v6_v7_defconfig +++ b/arch/arm/configs/imx_v6_v7_defconfig @@ -481,8 +481,6 @@ CONFIG_SECURITYFS=y CONFIG_CRYPTO_DEV_FSL_CAAM=y CONFIG_CRYPTO_DEV_SAHARA=y CONFIG_CRYPTO_DEV_MXS_DCP=y -CONFIG_CRC_CCITT=m -CONFIG_CRC_T10DIF=y CONFIG_CMA_SIZE_MBYTES=64 CONFIG_FONTS=y CONFIG_FONT_8x8=y diff --git a/arch/arm/configs/lpc18xx_defconfig b/arch/arm/configs/lpc18xx_defconfig index 2aa2ac8c6507..2d489186e945 100644 --- a/arch/arm/configs/lpc18xx_defconfig +++ b/arch/arm/configs/lpc18xx_defconfig @@ -147,7 +147,6 @@ CONFIG_EXT2_FS=y # CONFIG_INOTIFY_USER is not set CONFIG_JFFS2_FS=y # CONFIG_NETWORK_FILESYSTEMS is not set -CONFIG_CRC_ITU_T=y CONFIG_PRINTK_TIME=y # CONFIG_ENABLE_MUST_CHECK is not set # CONFIG_DEBUG_BUGVERBOSE is not set diff --git a/arch/arm/configs/lpc32xx_defconfig b/arch/arm/configs/lpc32xx_defconfig index 98e267213b21..9afccd76446b 100644 --- a/arch/arm/configs/lpc32xx_defconfig +++ b/arch/arm/configs/lpc32xx_defconfig @@ -179,7 +179,6 @@ CONFIG_NLS_ISO8859_1=y CONFIG_NLS_UTF8=y CONFIG_CRYPTO_ANSI_CPRNG=y # CONFIG_CRYPTO_HW is not set -CONFIG_CRC_CCITT=y CONFIG_PRINTK_TIME=y CONFIG_DYNAMIC_DEBUG=y CONFIG_DEBUG_INFO_DWARF_TOOLCHAIN_DEFAULT=y diff --git a/arch/arm/configs/milbeaut_m10v_defconfig b/arch/arm/configs/milbeaut_m10v_defconfig index acd16204f8d7..275ddf7a3a14 100644 --- a/arch/arm/configs/milbeaut_m10v_defconfig +++ b/arch/arm/configs/milbeaut_m10v_defconfig @@ -108,8 +108,6 @@ CONFIG_CRYPTO_AES_ARM_BS=m CONFIG_CRYPTO_AES_ARM_CE=m CONFIG_CRYPTO_CHACHA20_NEON=m # CONFIG_CRYPTO_HW is not set -CONFIG_CRC_CCITT=m -CONFIG_CRC_ITU_T=m CONFIG_DMA_CMA=y CONFIG_CMA_SIZE_MBYTES=64 CONFIG_PRINTK_TIME=y diff --git a/arch/arm/configs/mmp2_defconfig b/arch/arm/configs/mmp2_defconfig index f6f9e135353e..842a989baa27 100644 --- a/arch/arm/configs/mmp2_defconfig +++ b/arch/arm/configs/mmp2_defconfig @@ -67,7 +67,6 @@ CONFIG_NFS_V3=y CONFIG_NFS_V3_ACL=y CONFIG_NFS_V4=y CONFIG_ROOT_NFS=y -CONFIG_CRC_CCITT=y CONFIG_PRINTK_TIME=y CONFIG_DEBUG_KERNEL=y CONFIG_DEBUG_INFO_DWARF_TOOLCHAIN_DEFAULT=y diff --git a/arch/arm/configs/multi_v4t_defconfig b/arch/arm/configs/multi_v4t_defconfig index 27d650635d9b..1a86dc305523 100644 --- a/arch/arm/configs/multi_v4t_defconfig +++ b/arch/arm/configs/multi_v4t_defconfig @@ -91,6 +91,5 @@ CONFIG_MSDOS_FS=y CONFIG_VFAT_FS=y CONFIG_CRAMFS=y CONFIG_MINIX_FS=y -CONFIG_CRC_CCITT=y # CONFIG_FTRACE is not set CONFIG_DEBUG_USER=y diff --git a/arch/arm/configs/multi_v5_defconfig b/arch/arm/configs/multi_v5_defconfig index db81862bdb93..cf6180b4296e 100644 --- a/arch/arm/configs/multi_v5_defconfig +++ b/arch/arm/configs/multi_v5_defconfig @@ -289,7 +289,6 @@ CONFIG_NLS_UTF8=y CONFIG_CRYPTO_CBC=m CONFIG_CRYPTO_PCBC=m CONFIG_CRYPTO_DEV_MARVELL_CESA=y -CONFIG_CRC_CCITT=y CONFIG_DEBUG_KERNEL=y CONFIG_DEBUG_INFO_DWARF_TOOLCHAIN_DEFAULT=y CONFIG_MAGIC_SYSRQ=y diff --git a/arch/arm/configs/mvebu_v5_defconfig b/arch/arm/configs/mvebu_v5_defconfig index a518d4a2581e..23dbb80fcc2e 100644 --- a/arch/arm/configs/mvebu_v5_defconfig +++ b/arch/arm/configs/mvebu_v5_defconfig @@ -187,7 +187,6 @@ CONFIG_NLS_UTF8=y CONFIG_CRYPTO_CBC=m CONFIG_CRYPTO_PCBC=m CONFIG_CRYPTO_DEV_MARVELL_CESA=y -CONFIG_CRC_CCITT=y CONFIG_DEBUG_KERNEL=y CONFIG_DEBUG_INFO_DWARF_TOOLCHAIN_DEFAULT=y CONFIG_MAGIC_SYSRQ=y diff --git a/arch/arm/configs/mxs_defconfig b/arch/arm/configs/mxs_defconfig index d8a6e43c401e..c76d66135abb 100644 --- a/arch/arm/configs/mxs_defconfig +++ b/arch/arm/configs/mxs_defconfig @@ -160,7 +160,6 @@ CONFIG_NLS_CODEPAGE_850=y CONFIG_NLS_ISO8859_1=y CONFIG_NLS_ISO8859_15=y CONFIG_CRYPTO_DEV_MXS_DCP=y -CONFIG_CRC_ITU_T=m CONFIG_FONTS=y CONFIG_PRINTK_TIME=y CONFIG_DEBUG_KERNEL=y diff --git a/arch/arm/configs/omap2plus_defconfig b/arch/arm/configs/omap2plus_defconfig index 113d6dfe5243..75b326bc7830 100644 --- a/arch/arm/configs/omap2plus_defconfig +++ b/arch/arm/configs/omap2plus_defconfig @@ -706,9 +706,6 @@ CONFIG_CRYPTO_DEV_OMAP=m CONFIG_CRYPTO_DEV_OMAP_SHAM=m CONFIG_CRYPTO_DEV_OMAP_AES=m CONFIG_CRYPTO_DEV_OMAP_DES=m -CONFIG_CRC_CCITT=y -CONFIG_CRC_T10DIF=y -CONFIG_CRC_ITU_T=y CONFIG_DMA_CMA=y CONFIG_FONTS=y CONFIG_FONT_8x8=y diff --git a/arch/arm/configs/orion5x_defconfig b/arch/arm/configs/orion5x_defconfig index 0629b088a584..62b9c6102789 100644 --- a/arch/arm/configs/orion5x_defconfig +++ b/arch/arm/configs/orion5x_defconfig @@ -136,7 +136,6 @@ CONFIG_CRYPTO_CBC=m CONFIG_CRYPTO_ECB=m CONFIG_CRYPTO_PCBC=m CONFIG_CRYPTO_DEV_MARVELL_CESA=y -CONFIG_CRC_T10DIF=y # CONFIG_DEBUG_BUGVERBOSE is not set CONFIG_DEBUG_INFO_DWARF_TOOLCHAIN_DEFAULT=y CONFIG_MAGIC_SYSRQ=y diff --git a/arch/arm/configs/pxa168_defconfig b/arch/arm/configs/pxa168_defconfig index ce10fe2104bf..4748c7d33cb8 100644 --- a/arch/arm/configs/pxa168_defconfig +++ b/arch/arm/configs/pxa168_defconfig @@ -41,7 +41,6 @@ CONFIG_NFS_V3=y CONFIG_NFS_V3_ACL=y CONFIG_NFS_V4=y CONFIG_ROOT_NFS=y -CONFIG_CRC_CCITT=y CONFIG_PRINTK_TIME=y CONFIG_DEBUG_KERNEL=y CONFIG_DEBUG_INFO_DWARF_TOOLCHAIN_DEFAULT=y diff --git a/arch/arm/configs/pxa910_defconfig b/arch/arm/configs/pxa910_defconfig index 1f28aea86014..49b59c600ae1 100644 --- a/arch/arm/configs/pxa910_defconfig +++ b/arch/arm/configs/pxa910_defconfig @@ -50,7 +50,6 @@ CONFIG_NFS_V3=y CONFIG_NFS_V3_ACL=y CONFIG_NFS_V4=y CONFIG_ROOT_NFS=y -CONFIG_CRC_CCITT=y CONFIG_PRINTK_TIME=y CONFIG_DEBUG_KERNEL=y CONFIG_DEBUG_INFO_DWARF_TOOLCHAIN_DEFAULT=y diff --git a/arch/arm/configs/pxa_defconfig b/arch/arm/configs/pxa_defconfig index de0ac8f521d7..24fca8608554 100644 --- a/arch/arm/configs/pxa_defconfig +++ b/arch/arm/configs/pxa_defconfig @@ -663,8 +663,6 @@ CONFIG_CRYPTO_SHA1_ARM=m CONFIG_CRYPTO_SHA256_ARM=m CONFIG_CRYPTO_SHA512_ARM=m CONFIG_CRYPTO_AES_ARM=m -CONFIG_CRC_CCITT=y -CONFIG_CRC_T10DIF=m CONFIG_FONTS=y CONFIG_FONT_8x8=y CONFIG_FONT_8x16=y diff --git a/arch/arm/configs/s5pv210_defconfig b/arch/arm/configs/s5pv210_defconfig index 5dbe85c263de..02121eec3658 100644 --- a/arch/arm/configs/s5pv210_defconfig +++ b/arch/arm/configs/s5pv210_defconfig @@ -113,7 +113,6 @@ CONFIG_NLS_CODEPAGE_437=y CONFIG_NLS_ASCII=y CONFIG_NLS_ISO8859_1=y CONFIG_NLS_UTF8=y -CONFIG_CRC_CCITT=y CONFIG_DEBUG_KERNEL=y CONFIG_DEBUG_INFO_DWARF_TOOLCHAIN_DEFAULT=y CONFIG_MAGIC_SYSRQ=y diff --git a/arch/arm/configs/sama7_defconfig b/arch/arm/configs/sama7_defconfig index ea7ddf640ba7..e14720a9a5ac 100644 --- a/arch/arm/configs/sama7_defconfig +++ b/arch/arm/configs/sama7_defconfig @@ -227,8 +227,6 @@ CONFIG_CRYPTO_USER_API_SKCIPHER=m CONFIG_CRYPTO_DEV_ATMEL_AES=y CONFIG_CRYPTO_DEV_ATMEL_TDES=y CONFIG_CRYPTO_DEV_ATMEL_SHA=y -CONFIG_CRC_CCITT=y -CONFIG_CRC_ITU_T=y CONFIG_DMA_CMA=y CONFIG_CMA_SIZE_MBYTES=32 CONFIG_CMA_ALIGNMENT=9 diff --git a/arch/arm/configs/spitz_defconfig b/arch/arm/configs/spitz_defconfig index ac5b7a5aaff6..ffec59e3f49c 100644 --- a/arch/arm/configs/spitz_defconfig +++ b/arch/arm/configs/spitz_defconfig @@ -234,7 +234,6 @@ CONFIG_CRYPTO_MD4=m CONFIG_CRYPTO_MICHAEL_MIC=m CONFIG_CRYPTO_SHA512=m CONFIG_CRYPTO_WP512=m -CONFIG_CRC_CCITT=y CONFIG_FONTS=y CONFIG_FONT_8x8=y CONFIG_FONT_8x16=y diff --git a/arch/arm/configs/stm32_defconfig b/arch/arm/configs/stm32_defconfig index 423bb41c4225..dcd9c316072e 100644 --- a/arch/arm/configs/stm32_defconfig +++ b/arch/arm/configs/stm32_defconfig @@ -74,7 +74,6 @@ CONFIG_EXT3_FS=y # CONFIG_DNOTIFY is not set # CONFIG_INOTIFY_USER is not set CONFIG_NLS=y -CONFIG_CRC_ITU_T=y CONFIG_PRINTK_TIME=y # CONFIG_DEBUG_BUGVERBOSE is not set CONFIG_DEBUG_INFO_DWARF_TOOLCHAIN_DEFAULT=y diff --git a/arch/arm/configs/wpcm450_defconfig b/arch/arm/configs/wpcm450_defconfig index 5e4397f7f828..cd4b3e70ff68 100644 --- a/arch/arm/configs/wpcm450_defconfig +++ b/arch/arm/configs/wpcm450_defconfig @@ -191,8 +191,6 @@ CONFIG_ASYMMETRIC_PUBLIC_KEY_SUBTYPE=y CONFIG_X509_CERTIFICATE_PARSER=y CONFIG_PKCS7_MESSAGE_PARSER=y CONFIG_SYSTEM_TRUSTED_KEYRING=y -CONFIG_CRC_CCITT=y -CONFIG_CRC_ITU_T=m CONFIG_PRINTK_TIME=y CONFIG_DEBUG_KERNEL=y CONFIG_MAGIC_SYSRQ=y diff --git a/arch/arm64/include/asm/esr.h b/arch/arm64/include/asm/esr.h index d1b1a33f9a8b..e4f77757937e 100644 --- a/arch/arm64/include/asm/esr.h +++ b/arch/arm64/include/asm/esr.h @@ -121,6 +121,15 @@ #define ESR_ELx_FSC_SEA_TTW(n) (0x14 + (n)) #define ESR_ELx_FSC_SECC (0x18) #define ESR_ELx_FSC_SECC_TTW(n) (0x1c + (n)) +#define ESR_ELx_FSC_ADDRSZ (0x00) + +/* + * Annoyingly, the negative levels for Address size faults aren't laid out + * contiguously (or in the desired order) + */ +#define ESR_ELx_FSC_ADDRSZ_nL(n) ((n) == -1 ? 0x25 : 0x2C) +#define ESR_ELx_FSC_ADDRSZ_L(n) ((n) < 0 ? ESR_ELx_FSC_ADDRSZ_nL(n) : \ + (ESR_ELx_FSC_ADDRSZ + (n))) /* Status codes for individual page table levels */ #define ESR_ELx_FSC_ACCESS_L(n) (ESR_ELx_FSC_ACCESS + (n)) @@ -161,8 +170,6 @@ #define ESR_ELx_Xs_MASK (GENMASK_ULL(4, 0)) /* ISS field definitions for exceptions taken in to Hyp */ -#define ESR_ELx_FSC_ADDRSZ (0x00) -#define ESR_ELx_FSC_ADDRSZ_L(n) (ESR_ELx_FSC_ADDRSZ + (n)) #define ESR_ELx_CV (UL(1) << 24) #define ESR_ELx_COND_SHIFT (20) #define ESR_ELx_COND_MASK (UL(0xF) << ESR_ELx_COND_SHIFT) @@ -464,6 +471,39 @@ static inline bool esr_fsc_is_access_flag_fault(unsigned long esr) (esr == ESR_ELx_FSC_ACCESS_L(0)); } +static inline bool esr_fsc_is_addr_sz_fault(unsigned long esr) +{ + esr &= ESR_ELx_FSC; + + return (esr == ESR_ELx_FSC_ADDRSZ_L(3)) || + (esr == ESR_ELx_FSC_ADDRSZ_L(2)) || + (esr == ESR_ELx_FSC_ADDRSZ_L(1)) || + (esr == ESR_ELx_FSC_ADDRSZ_L(0)) || + (esr == ESR_ELx_FSC_ADDRSZ_L(-1)); +} + +static inline bool esr_fsc_is_sea_ttw(unsigned long esr) +{ + esr = esr & ESR_ELx_FSC; + + return (esr == ESR_ELx_FSC_SEA_TTW(3)) || + (esr == ESR_ELx_FSC_SEA_TTW(2)) || + (esr == ESR_ELx_FSC_SEA_TTW(1)) || + (esr == ESR_ELx_FSC_SEA_TTW(0)) || + (esr == ESR_ELx_FSC_SEA_TTW(-1)); +} + +static inline bool esr_fsc_is_secc_ttw(unsigned long esr) +{ + esr = esr & ESR_ELx_FSC; + + return (esr == ESR_ELx_FSC_SECC_TTW(3)) || + (esr == ESR_ELx_FSC_SECC_TTW(2)) || + (esr == ESR_ELx_FSC_SECC_TTW(1)) || + (esr == ESR_ELx_FSC_SECC_TTW(0)) || + (esr == ESR_ELx_FSC_SECC_TTW(-1)); +} + /* Indicate whether ESR.EC==0x1A is for an ERETAx instruction */ static inline bool esr_iss_is_eretax(unsigned long esr) { diff --git a/arch/arm64/include/asm/kvm_emulate.h b/arch/arm64/include/asm/kvm_emulate.h index d7cf66573aca..bd020fc28aa9 100644 --- a/arch/arm64/include/asm/kvm_emulate.h +++ b/arch/arm64/include/asm/kvm_emulate.h @@ -305,7 +305,12 @@ static __always_inline unsigned long kvm_vcpu_get_hfar(const struct kvm_vcpu *vc static __always_inline phys_addr_t kvm_vcpu_get_fault_ipa(const struct kvm_vcpu *vcpu) { - return ((phys_addr_t)vcpu->arch.fault.hpfar_el2 & HPFAR_MASK) << 8; + u64 hpfar = vcpu->arch.fault.hpfar_el2; + + if (unlikely(!(hpfar & HPFAR_EL2_NS))) + return INVALID_GPA; + + return FIELD_GET(HPFAR_EL2_FIPA, hpfar) << 12; } static inline u64 kvm_vcpu_get_disr(const struct kvm_vcpu *vcpu) diff --git a/arch/arm64/include/asm/kvm_ras.h b/arch/arm64/include/asm/kvm_ras.h index 87e10d9a635b..9398ade632aa 100644 --- a/arch/arm64/include/asm/kvm_ras.h +++ b/arch/arm64/include/asm/kvm_ras.h @@ -14,7 +14,7 @@ * Was this synchronous external abort a RAS notification? * Returns '0' for errors handled by some RAS subsystem, or -ENOENT. */ -static inline int kvm_handle_guest_sea(phys_addr_t addr, u64 esr) +static inline int kvm_handle_guest_sea(void) { /* apei_claim_sea(NULL) expects to mask interrupts itself */ lockdep_assert_irqs_enabled(); diff --git a/arch/arm64/include/asm/rqspinlock.h b/arch/arm64/include/asm/rqspinlock.h index 5b80785324b6..9ea0a74e5892 100644 --- a/arch/arm64/include/asm/rqspinlock.h +++ b/arch/arm64/include/asm/rqspinlock.h @@ -86,7 +86,7 @@ #endif -#define res_smp_cond_load_acquire_timewait(v, c) smp_cond_load_acquire_timewait(v, c, 0, 1) +#define res_smp_cond_load_acquire(v, c) smp_cond_load_acquire_timewait(v, c, 0, 1) #include diff --git a/arch/arm64/kvm/hyp/include/hyp/fault.h b/arch/arm64/kvm/hyp/include/hyp/fault.h index 17df94570f03..fc573fc767b0 100644 --- a/arch/arm64/kvm/hyp/include/hyp/fault.h +++ b/arch/arm64/kvm/hyp/include/hyp/fault.h @@ -12,6 +12,16 @@ #include #include +static inline bool __fault_safe_to_translate(u64 esr) +{ + u64 fsc = esr & ESR_ELx_FSC; + + if (esr_fsc_is_sea_ttw(esr) || esr_fsc_is_secc_ttw(esr)) + return false; + + return !(fsc == ESR_ELx_FSC_EXTABT && (esr & ESR_ELx_FnV)); +} + static inline bool __translate_far_to_hpfar(u64 far, u64 *hpfar) { int ret; @@ -44,34 +54,50 @@ static inline bool __translate_far_to_hpfar(u64 far, u64 *hpfar) return true; } +/* + * Checks for the conditions when HPFAR_EL2 is written, per ARM ARM R_FKLWR. + */ +static inline bool __hpfar_valid(u64 esr) +{ + /* + * CPUs affected by ARM erratum #834220 may incorrectly report a + * stage-2 translation fault when a stage-1 permission fault occurs. + * + * Re-walk the page tables to determine if a stage-1 fault actually + * occurred. + */ + if (cpus_have_final_cap(ARM64_WORKAROUND_834220) && + esr_fsc_is_translation_fault(esr)) + return false; + + if (esr_fsc_is_translation_fault(esr) || esr_fsc_is_access_flag_fault(esr)) + return true; + + if ((esr & ESR_ELx_S1PTW) && esr_fsc_is_permission_fault(esr)) + return true; + + return esr_fsc_is_addr_sz_fault(esr); +} + static inline bool __get_fault_info(u64 esr, struct kvm_vcpu_fault_info *fault) { - u64 hpfar, far; + u64 hpfar; - far = read_sysreg_el2(SYS_FAR); + fault->far_el2 = read_sysreg_el2(SYS_FAR); + fault->hpfar_el2 = 0; + + if (__hpfar_valid(esr)) + hpfar = read_sysreg(hpfar_el2); + else if (unlikely(!__fault_safe_to_translate(esr))) + return true; + else if (!__translate_far_to_hpfar(fault->far_el2, &hpfar)) + return false; /* - * The HPFAR can be invalid if the stage 2 fault did not - * happen during a stage 1 page table walk (the ESR_EL2.S1PTW - * bit is clear) and one of the two following cases are true: - * 1. The fault was due to a permission fault - * 2. The processor carries errata 834220 - * - * Therefore, for all non S1PTW faults where we either have a - * permission fault or the errata workaround is enabled, we - * resolve the IPA using the AT instruction. + * Hijack HPFAR_EL2.NS (RES0 in Non-secure) to indicate a valid + * HPFAR value. */ - if (!(esr & ESR_ELx_S1PTW) && - (cpus_have_final_cap(ARM64_WORKAROUND_834220) || - esr_fsc_is_permission_fault(esr))) { - if (!__translate_far_to_hpfar(far, &hpfar)) - return false; - } else { - hpfar = read_sysreg(hpfar_el2); - } - - fault->far_el2 = far; - fault->hpfar_el2 = hpfar; + fault->hpfar_el2 = hpfar | HPFAR_EL2_NS; return true; } diff --git a/arch/arm64/kvm/hyp/nvhe/ffa.c b/arch/arm64/kvm/hyp/nvhe/ffa.c index e433dfab882a..3369dd0c4009 100644 --- a/arch/arm64/kvm/hyp/nvhe/ffa.c +++ b/arch/arm64/kvm/hyp/nvhe/ffa.c @@ -730,10 +730,10 @@ static void do_ffa_version(struct arm_smccc_res *res, hyp_ffa_version = ffa_req_version; } - if (hyp_ffa_post_init()) + if (hyp_ffa_post_init()) { res->a0 = FFA_RET_NOT_SUPPORTED; - else { - has_version_negotiated = true; + } else { + smp_store_release(&has_version_negotiated, true); res->a0 = hyp_ffa_version; } unlock: @@ -809,7 +809,8 @@ bool kvm_host_ffa_handler(struct kvm_cpu_context *host_ctxt, u32 func_id) if (!is_ffa_call(func_id)) return false; - if (!has_version_negotiated && func_id != FFA_VERSION) { + if (func_id != FFA_VERSION && + !smp_load_acquire(&has_version_negotiated)) { ffa_to_smccc_error(&res, FFA_RET_INVALID_PARAMETERS); goto out_handled; } diff --git a/arch/arm64/kvm/hyp/nvhe/mem_protect.c b/arch/arm64/kvm/hyp/nvhe/mem_protect.c index f34f11c720d7..2a5284f749b4 100644 --- a/arch/arm64/kvm/hyp/nvhe/mem_protect.c +++ b/arch/arm64/kvm/hyp/nvhe/mem_protect.c @@ -578,7 +578,14 @@ void handle_host_mem_abort(struct kvm_cpu_context *host_ctxt) return; } - addr = (fault.hpfar_el2 & HPFAR_MASK) << 8; + + /* + * Yikes, we couldn't resolve the fault IPA. This should reinject an + * abort into the host when we figure out how to do that. + */ + BUG_ON(!(fault.hpfar_el2 & HPFAR_EL2_NS)); + addr = FIELD_GET(HPFAR_EL2_FIPA, fault.hpfar_el2) << 12; + ret = host_stage2_idmap(addr); BUG_ON(ret && ret != -EAGAIN); } diff --git a/arch/arm64/kvm/mmu.c b/arch/arm64/kvm/mmu.c index 2feb6c6b63af..754f2fe0cc67 100644 --- a/arch/arm64/kvm/mmu.c +++ b/arch/arm64/kvm/mmu.c @@ -1794,9 +1794,28 @@ int kvm_handle_guest_abort(struct kvm_vcpu *vcpu) gfn_t gfn; int ret, idx; + /* Synchronous External Abort? */ + if (kvm_vcpu_abt_issea(vcpu)) { + /* + * For RAS the host kernel may handle this abort. + * There is no need to pass the error into the guest. + */ + if (kvm_handle_guest_sea()) + kvm_inject_vabt(vcpu); + + return 1; + } + esr = kvm_vcpu_get_esr(vcpu); + /* + * The fault IPA should be reliable at this point as we're not dealing + * with an SEA. + */ ipa = fault_ipa = kvm_vcpu_get_fault_ipa(vcpu); + if (KVM_BUG_ON(ipa == INVALID_GPA, vcpu->kvm)) + return -EFAULT; + is_iabt = kvm_vcpu_trap_is_iabt(vcpu); if (esr_fsc_is_translation_fault(esr)) { @@ -1818,18 +1837,6 @@ int kvm_handle_guest_abort(struct kvm_vcpu *vcpu) } } - /* Synchronous External Abort? */ - if (kvm_vcpu_abt_issea(vcpu)) { - /* - * For RAS the host kernel may handle this abort. - * There is no need to pass the error into the guest. - */ - if (kvm_handle_guest_sea(fault_ipa, kvm_vcpu_get_esr(vcpu))) - kvm_inject_vabt(vcpu); - - return 1; - } - trace_kvm_guest_fault(*vcpu_pc(vcpu), kvm_vcpu_get_esr(vcpu), kvm_vcpu_get_hfar(vcpu), fault_ipa); diff --git a/arch/arm64/tools/sysreg b/arch/arm64/tools/sysreg index f9476848a2ed..bdf044c5d11b 100644 --- a/arch/arm64/tools/sysreg +++ b/arch/arm64/tools/sysreg @@ -3536,3 +3536,10 @@ Field 5 F Field 4 P Field 3:0 Align EndSysreg + +Sysreg HPFAR_EL2 3 4 6 0 4 +Field 63 NS +Res0 62:48 +Field 47:4 FIPA +Res0 3:0 +EndSysreg diff --git a/arch/hexagon/configs/comet_defconfig b/arch/hexagon/configs/comet_defconfig index 469c025297c6..c6108f000288 100644 --- a/arch/hexagon/configs/comet_defconfig +++ b/arch/hexagon/configs/comet_defconfig @@ -72,9 +72,6 @@ CONFIG_INET=y CONFIG_CRYPTO_MD5=y # CONFIG_CRYPTO_ANSI_CPRNG is not set # CONFIG_CRYPTO_HW is not set -CONFIG_CRC_CCITT=y -CONFIG_CRC16=y -CONFIG_CRC_T10DIF=y CONFIG_FRAME_WARN=0 CONFIG_MAGIC_SYSRQ=y CONFIG_DEBUG_FS=y diff --git a/arch/m68k/configs/amcore_defconfig b/arch/m68k/configs/amcore_defconfig index 67a0d157122d..110279a64aa4 100644 --- a/arch/m68k/configs/amcore_defconfig +++ b/arch/m68k/configs/amcore_defconfig @@ -89,4 +89,3 @@ CONFIG_PANIC_ON_OOPS=y # CONFIG_CRYPTO_ECHAINIV is not set CONFIG_CRYPTO_ANSI_CPRNG=y # CONFIG_CRYPTO_HW is not set -CONFIG_CRC16=y diff --git a/arch/mips/configs/ath79_defconfig b/arch/mips/configs/ath79_defconfig index 8caa03a41327..cba0b85c6707 100644 --- a/arch/mips/configs/ath79_defconfig +++ b/arch/mips/configs/ath79_defconfig @@ -82,7 +82,6 @@ CONFIG_LEDS_GPIO=y # CONFIG_IOMMU_SUPPORT is not set # CONFIG_DNOTIFY is not set # CONFIG_PROC_PAGE_MONITOR is not set -CONFIG_CRC_ITU_T=m CONFIG_STRIP_ASM_SYMS=y CONFIG_DEBUG_FS=y # CONFIG_SCHED_DEBUG is not set diff --git a/arch/mips/configs/bigsur_defconfig b/arch/mips/configs/bigsur_defconfig index fe282630b51c..8f7c36868204 100644 --- a/arch/mips/configs/bigsur_defconfig +++ b/arch/mips/configs/bigsur_defconfig @@ -238,7 +238,6 @@ CONFIG_CRYPTO_SERPENT=m CONFIG_CRYPTO_TEA=m CONFIG_CRYPTO_TWOFISH=m CONFIG_CRYPTO_LZO=m -CONFIG_CRC_T10DIF=m CONFIG_MAGIC_SYSRQ=y CONFIG_DEBUG_MEMORY_INIT=y CONFIG_DETECT_HUNG_TASK=y diff --git a/arch/mips/configs/fuloong2e_defconfig b/arch/mips/configs/fuloong2e_defconfig index 5ab149cd3178..114fcd67898d 100644 --- a/arch/mips/configs/fuloong2e_defconfig +++ b/arch/mips/configs/fuloong2e_defconfig @@ -218,4 +218,3 @@ CONFIG_CRYPTO_SEED=m CONFIG_CRYPTO_DEFLATE=m CONFIG_CRYPTO_LZO=m # CONFIG_CRYPTO_HW is not set -CONFIG_CRC_CCITT=y diff --git a/arch/mips/configs/ip22_defconfig b/arch/mips/configs/ip22_defconfig index 31ca93d3acc5..f1a8ccf2c459 100644 --- a/arch/mips/configs/ip22_defconfig +++ b/arch/mips/configs/ip22_defconfig @@ -326,5 +326,4 @@ CONFIG_CRYPTO_TEA=m CONFIG_CRYPTO_TWOFISH=m CONFIG_CRYPTO_LZO=m # CONFIG_CRYPTO_HW is not set -CONFIG_CRC_T10DIF=m CONFIG_DEBUG_MEMORY_INIT=y diff --git a/arch/mips/configs/ip27_defconfig b/arch/mips/configs/ip27_defconfig index b8907b3d7a33..5d079941fd20 100644 --- a/arch/mips/configs/ip27_defconfig +++ b/arch/mips/configs/ip27_defconfig @@ -317,4 +317,3 @@ CONFIG_CRYPTO_SERPENT=m CONFIG_CRYPTO_TEA=m CONFIG_CRYPTO_TWOFISH=m CONFIG_CRYPTO_LZO=m -CONFIG_CRC_T10DIF=m diff --git a/arch/mips/configs/ip30_defconfig b/arch/mips/configs/ip30_defconfig index 270181a7320a..a4524e785469 100644 --- a/arch/mips/configs/ip30_defconfig +++ b/arch/mips/configs/ip30_defconfig @@ -179,4 +179,3 @@ CONFIG_CRYPTO_RMD160=m CONFIG_CRYPTO_WP512=m CONFIG_CRYPTO_XCBC=m CONFIG_CRYPTO_LZO=m -CONFIG_CRC_T10DIF=m diff --git a/arch/mips/configs/ip32_defconfig b/arch/mips/configs/ip32_defconfig index 121e7e48fa77..d8ac11427f69 100644 --- a/arch/mips/configs/ip32_defconfig +++ b/arch/mips/configs/ip32_defconfig @@ -177,7 +177,6 @@ CONFIG_CRYPTO_SERPENT=y CONFIG_CRYPTO_TEA=y CONFIG_CRYPTO_TWOFISH=y CONFIG_CRYPTO_DEFLATE=y -CONFIG_CRC_T10DIF=y CONFIG_FONTS=y CONFIG_FONT_8x8=y CONFIG_FONT_8x16=y diff --git a/arch/mips/configs/omega2p_defconfig b/arch/mips/configs/omega2p_defconfig index 128f9abab7fc..e2bcdfd290a1 100644 --- a/arch/mips/configs/omega2p_defconfig +++ b/arch/mips/configs/omega2p_defconfig @@ -111,7 +111,6 @@ CONFIG_NLS_KOI8_U=y CONFIG_NLS_UTF8=y CONFIG_CRYPTO_DEFLATE=y CONFIG_CRYPTO_LZO=y -CONFIG_CRC16=y CONFIG_XZ_DEC=y CONFIG_PRINTK_TIME=y CONFIG_DEBUG_INFO_DWARF_TOOLCHAIN_DEFAULT=y diff --git a/arch/mips/configs/rb532_defconfig b/arch/mips/configs/rb532_defconfig index 0261969a6e45..42b161d587c7 100644 --- a/arch/mips/configs/rb532_defconfig +++ b/arch/mips/configs/rb532_defconfig @@ -155,5 +155,4 @@ CONFIG_JFFS2_COMPRESSION_OPTIONS=y CONFIG_SQUASHFS=y CONFIG_CRYPTO_TEST=m # CONFIG_CRYPTO_HW is not set -CONFIG_CRC16=m CONFIG_STRIP_ASM_SYMS=y diff --git a/arch/mips/configs/rt305x_defconfig b/arch/mips/configs/rt305x_defconfig index 8404e0a9d8b2..8f9701efef19 100644 --- a/arch/mips/configs/rt305x_defconfig +++ b/arch/mips/configs/rt305x_defconfig @@ -128,7 +128,6 @@ CONFIG_SQUASHFS=y # CONFIG_SQUASHFS_ZLIB is not set CONFIG_SQUASHFS_XZ=y CONFIG_CRYPTO_ARC4=m -CONFIG_CRC_ITU_T=m # CONFIG_XZ_DEC_X86 is not set # CONFIG_XZ_DEC_POWERPC is not set # CONFIG_XZ_DEC_IA64 is not set diff --git a/arch/mips/configs/sb1250_swarm_defconfig b/arch/mips/configs/sb1250_swarm_defconfig index ce855b644bb0..ae2afff00e01 100644 --- a/arch/mips/configs/sb1250_swarm_defconfig +++ b/arch/mips/configs/sb1250_swarm_defconfig @@ -99,4 +99,3 @@ CONFIG_CRYPTO_TWOFISH=m CONFIG_CRYPTO_DEFLATE=m CONFIG_CRYPTO_LZO=m # CONFIG_CRYPTO_HW is not set -CONFIG_CRC16=m diff --git a/arch/mips/configs/vocore2_defconfig b/arch/mips/configs/vocore2_defconfig index 917967fed45f..2a9a9b12847d 100644 --- a/arch/mips/configs/vocore2_defconfig +++ b/arch/mips/configs/vocore2_defconfig @@ -111,7 +111,6 @@ CONFIG_NLS_KOI8_U=y CONFIG_NLS_UTF8=y CONFIG_CRYPTO_DEFLATE=y CONFIG_CRYPTO_LZO=y -CONFIG_CRC16=y CONFIG_XZ_DEC=y CONFIG_PRINTK_TIME=y CONFIG_DEBUG_INFO_DWARF_TOOLCHAIN_DEFAULT=y diff --git a/arch/mips/configs/xway_defconfig b/arch/mips/configs/xway_defconfig index 7b91edfe3e07..aae8497b6872 100644 --- a/arch/mips/configs/xway_defconfig +++ b/arch/mips/configs/xway_defconfig @@ -140,7 +140,6 @@ CONFIG_SQUASHFS=y # CONFIG_SQUASHFS_ZLIB is not set CONFIG_SQUASHFS_XZ=y CONFIG_CRYPTO_ARC4=m -CONFIG_CRC_ITU_T=m CONFIG_PRINTK_TIME=y CONFIG_STRIP_ASM_SYMS=y CONFIG_DEBUG_FS=y diff --git a/arch/parisc/configs/generic-32bit_defconfig b/arch/parisc/configs/generic-32bit_defconfig index f5fffc24c3bc..5b65c9859613 100644 --- a/arch/parisc/configs/generic-32bit_defconfig +++ b/arch/parisc/configs/generic-32bit_defconfig @@ -264,8 +264,6 @@ CONFIG_CRYPTO_MICHAEL_MIC=m CONFIG_CRYPTO_SHA1=y CONFIG_CRYPTO_WP512=m CONFIG_CRYPTO_DEFLATE=y -CONFIG_CRC_CCITT=m -CONFIG_CRC_T10DIF=y CONFIG_FONTS=y CONFIG_PRINTK_TIME=y CONFIG_MAGIC_SYSRQ=y diff --git a/arch/parisc/configs/generic-64bit_defconfig b/arch/parisc/configs/generic-64bit_defconfig index 2487765b7be3..ecc9ffcc11cd 100644 --- a/arch/parisc/configs/generic-64bit_defconfig +++ b/arch/parisc/configs/generic-64bit_defconfig @@ -292,7 +292,6 @@ CONFIG_CRYPTO_MD5=y CONFIG_CRYPTO_MICHAEL_MIC=m CONFIG_CRYPTO_DEFLATE=m # CONFIG_CRYPTO_HW is not set -CONFIG_CRC_CCITT=m CONFIG_PRINTK_TIME=y CONFIG_DEBUG_KERNEL=y CONFIG_STRIP_ASM_SYMS=y diff --git a/arch/powerpc/configs/44x/sam440ep_defconfig b/arch/powerpc/configs/44x/sam440ep_defconfig index 2479ab62d12f..98221bda380d 100644 --- a/arch/powerpc/configs/44x/sam440ep_defconfig +++ b/arch/powerpc/configs/44x/sam440ep_defconfig @@ -91,5 +91,4 @@ CONFIG_AFFS_FS=m # CONFIG_NETWORK_FILESYSTEMS is not set CONFIG_NLS_CODEPAGE_437=y CONFIG_NLS_ISO8859_1=y -CONFIG_CRC_T10DIF=y CONFIG_MAGIC_SYSRQ=y diff --git a/arch/powerpc/configs/44x/warp_defconfig b/arch/powerpc/configs/44x/warp_defconfig index 20891c413149..5757625469c4 100644 --- a/arch/powerpc/configs/44x/warp_defconfig +++ b/arch/powerpc/configs/44x/warp_defconfig @@ -85,8 +85,6 @@ CONFIG_NLS_ASCII=y CONFIG_NLS_ISO8859_1=y CONFIG_NLS_ISO8859_15=y CONFIG_NLS_UTF8=y -CONFIG_CRC_CCITT=y -CONFIG_CRC_T10DIF=y CONFIG_PRINTK_TIME=y CONFIG_DEBUG_INFO_DWARF_TOOLCHAIN_DEFAULT=y CONFIG_DEBUG_FS=y diff --git a/arch/powerpc/configs/83xx/mpc832x_rdb_defconfig b/arch/powerpc/configs/83xx/mpc832x_rdb_defconfig index 1715ff547442..b99caba8724a 100644 --- a/arch/powerpc/configs/83xx/mpc832x_rdb_defconfig +++ b/arch/powerpc/configs/83xx/mpc832x_rdb_defconfig @@ -73,6 +73,5 @@ CONFIG_NLS_CODEPAGE_437=y CONFIG_NLS_CODEPAGE_932=y CONFIG_NLS_ISO8859_8=y CONFIG_NLS_ISO8859_1=y -CONFIG_CRC_T10DIF=y CONFIG_CRYPTO_ECB=m CONFIG_CRYPTO_PCBC=m diff --git a/arch/powerpc/configs/83xx/mpc834x_itx_defconfig b/arch/powerpc/configs/83xx/mpc834x_itx_defconfig index e65c0057147f..11163052fdba 100644 --- a/arch/powerpc/configs/83xx/mpc834x_itx_defconfig +++ b/arch/powerpc/configs/83xx/mpc834x_itx_defconfig @@ -80,5 +80,4 @@ CONFIG_TMPFS=y CONFIG_NFS_FS=y CONFIG_NFS_V4=y CONFIG_ROOT_NFS=y -CONFIG_CRC_T10DIF=y CONFIG_CRYPTO_PCBC=m diff --git a/arch/powerpc/configs/83xx/mpc834x_itxgp_defconfig b/arch/powerpc/configs/83xx/mpc834x_itxgp_defconfig index 17714bf0ed40..312d39e4242c 100644 --- a/arch/powerpc/configs/83xx/mpc834x_itxgp_defconfig +++ b/arch/powerpc/configs/83xx/mpc834x_itxgp_defconfig @@ -72,5 +72,4 @@ CONFIG_TMPFS=y CONFIG_NFS_FS=y CONFIG_NFS_V4=y CONFIG_ROOT_NFS=y -CONFIG_CRC_T10DIF=y CONFIG_CRYPTO_PCBC=m diff --git a/arch/powerpc/configs/83xx/mpc837x_rdb_defconfig b/arch/powerpc/configs/83xx/mpc837x_rdb_defconfig index 58fae5131fa7..ac27f99faab8 100644 --- a/arch/powerpc/configs/83xx/mpc837x_rdb_defconfig +++ b/arch/powerpc/configs/83xx/mpc837x_rdb_defconfig @@ -75,6 +75,5 @@ CONFIG_TMPFS=y CONFIG_NFS_FS=y CONFIG_NFS_V4=y CONFIG_ROOT_NFS=y -CONFIG_CRC_T10DIF=y CONFIG_CRYPTO_ECB=m CONFIG_CRYPTO_PCBC=m diff --git a/arch/powerpc/configs/85xx/ge_imp3a_defconfig b/arch/powerpc/configs/85xx/ge_imp3a_defconfig index 6f58ee1edf1f..7beb36a41d45 100644 --- a/arch/powerpc/configs/85xx/ge_imp3a_defconfig +++ b/arch/powerpc/configs/85xx/ge_imp3a_defconfig @@ -221,8 +221,6 @@ CONFIG_NLS_ISO8859_15=y CONFIG_NLS_KOI8_R=m CONFIG_NLS_KOI8_U=m CONFIG_NLS_UTF8=y -CONFIG_CRC_CCITT=y -CONFIG_CRC_T10DIF=y CONFIG_MAGIC_SYSRQ=y CONFIG_CRYPTO_CBC=y CONFIG_CRYPTO_MD5=y diff --git a/arch/powerpc/configs/85xx/stx_gp3_defconfig b/arch/powerpc/configs/85xx/stx_gp3_defconfig index e7080497048d..0a42072fa23c 100644 --- a/arch/powerpc/configs/85xx/stx_gp3_defconfig +++ b/arch/powerpc/configs/85xx/stx_gp3_defconfig @@ -60,8 +60,6 @@ CONFIG_CRAMFS=m CONFIG_NFS_FS=y CONFIG_ROOT_NFS=y CONFIG_NLS=y -CONFIG_CRC_CCITT=y -CONFIG_CRC_T10DIF=m CONFIG_DETECT_HUNG_TASK=y # CONFIG_DEBUG_BUGVERBOSE is not set CONFIG_BDI_SWITCH=y diff --git a/arch/powerpc/configs/85xx/xes_mpc85xx_defconfig b/arch/powerpc/configs/85xx/xes_mpc85xx_defconfig index 3a6381aa9fdc..488d03ae6d6c 100644 --- a/arch/powerpc/configs/85xx/xes_mpc85xx_defconfig +++ b/arch/powerpc/configs/85xx/xes_mpc85xx_defconfig @@ -132,7 +132,6 @@ CONFIG_ROOT_NFS=y CONFIG_NFSD=y CONFIG_NLS_CODEPAGE_437=y CONFIG_NLS_ISO8859_1=y -CONFIG_CRC_T10DIF=y CONFIG_DETECT_HUNG_TASK=y # CONFIG_DEBUG_BUGVERBOSE is not set CONFIG_CRYPTO_HMAC=y diff --git a/arch/powerpc/configs/86xx-hw.config b/arch/powerpc/configs/86xx-hw.config index 0cb24b33c88e..e7bd265fae5a 100644 --- a/arch/powerpc/configs/86xx-hw.config +++ b/arch/powerpc/configs/86xx-hw.config @@ -5,7 +5,6 @@ CONFIG_BROADCOM_PHY=y # CONFIG_CARDBUS is not set CONFIG_CHR_DEV_SG=y CONFIG_CHR_DEV_ST=y -CONFIG_CRC_T10DIF=y CONFIG_CRYPTO_HMAC=y CONFIG_DS1682=y CONFIG_EEPROM_LEGACY=y diff --git a/arch/powerpc/configs/amigaone_defconfig b/arch/powerpc/configs/amigaone_defconfig index 200bb1ecb560..69ef3dc31c4b 100644 --- a/arch/powerpc/configs/amigaone_defconfig +++ b/arch/powerpc/configs/amigaone_defconfig @@ -106,7 +106,6 @@ CONFIG_TMPFS=y CONFIG_AFFS_FS=m CONFIG_NLS_ASCII=y CONFIG_NLS_ISO8859_1=m -CONFIG_CRC_T10DIF=y CONFIG_MAGIC_SYSRQ=y CONFIG_DEBUG_KERNEL=y CONFIG_DEBUG_MUTEXES=y diff --git a/arch/powerpc/configs/chrp32_defconfig b/arch/powerpc/configs/chrp32_defconfig index fb314f75ad4b..b799c95480ae 100644 --- a/arch/powerpc/configs/chrp32_defconfig +++ b/arch/powerpc/configs/chrp32_defconfig @@ -110,7 +110,6 @@ CONFIG_PROC_KCORE=y CONFIG_TMPFS=y CONFIG_NLS_ASCII=y CONFIG_NLS_ISO8859_1=m -CONFIG_CRC_T10DIF=y CONFIG_MAGIC_SYSRQ=y CONFIG_DEBUG_KERNEL=y CONFIG_DEBUG_MUTEXES=y diff --git a/arch/powerpc/configs/fsl-emb-nonhw.config b/arch/powerpc/configs/fsl-emb-nonhw.config index d6d2a458847b..2f81bc2d819e 100644 --- a/arch/powerpc/configs/fsl-emb-nonhw.config +++ b/arch/powerpc/configs/fsl-emb-nonhw.config @@ -15,7 +15,6 @@ CONFIG_CGROUP_CPUACCT=y CONFIG_CGROUP_SCHED=y CONFIG_CGROUPS=y # CONFIG_CORE_DUMP_DEFAULT_ELF_HEADERS is not set -CONFIG_CRC_T10DIF=y CONFIG_CPUSETS=y CONFIG_CRAMFS=y CONFIG_CRYPTO_MD4=y diff --git a/arch/powerpc/configs/g5_defconfig b/arch/powerpc/configs/g5_defconfig index 9215bed53291..7e58f3e6c987 100644 --- a/arch/powerpc/configs/g5_defconfig +++ b/arch/powerpc/configs/g5_defconfig @@ -231,7 +231,6 @@ CONFIG_NLS_ASCII=y CONFIG_NLS_ISO8859_1=y CONFIG_NLS_ISO8859_15=y CONFIG_NLS_UTF8=y -CONFIG_CRC_T10DIF=y CONFIG_MAGIC_SYSRQ=y CONFIG_DEBUG_KERNEL=y CONFIG_DEBUG_MUTEXES=y diff --git a/arch/powerpc/configs/gamecube_defconfig b/arch/powerpc/configs/gamecube_defconfig index d77eeb525366..cdd99657b71b 100644 --- a/arch/powerpc/configs/gamecube_defconfig +++ b/arch/powerpc/configs/gamecube_defconfig @@ -82,7 +82,6 @@ CONFIG_ROOT_NFS=y CONFIG_CIFS=y CONFIG_NLS_CODEPAGE_437=y CONFIG_NLS_ISO8859_1=y -CONFIG_CRC_CCITT=y CONFIG_PRINTK_TIME=y CONFIG_DEBUG_SPINLOCK=y CONFIG_DEBUG_MUTEXES=y diff --git a/arch/powerpc/configs/linkstation_defconfig b/arch/powerpc/configs/linkstation_defconfig index fa707de761be..b564f9e33a0d 100644 --- a/arch/powerpc/configs/linkstation_defconfig +++ b/arch/powerpc/configs/linkstation_defconfig @@ -125,8 +125,6 @@ CONFIG_NLS_CODEPAGE_437=m CONFIG_NLS_CODEPAGE_932=m CONFIG_NLS_ISO8859_1=m CONFIG_NLS_UTF8=m -CONFIG_CRC_CCITT=m -CONFIG_CRC_T10DIF=y CONFIG_MAGIC_SYSRQ=y CONFIG_DEBUG_KERNEL=y CONFIG_DETECT_HUNG_TASK=y diff --git a/arch/powerpc/configs/mpc83xx_defconfig b/arch/powerpc/configs/mpc83xx_defconfig index 83c4710017e9..a815d9e5e3e8 100644 --- a/arch/powerpc/configs/mpc83xx_defconfig +++ b/arch/powerpc/configs/mpc83xx_defconfig @@ -97,7 +97,6 @@ CONFIG_TMPFS=y CONFIG_NFS_FS=y CONFIG_NFS_V4=y CONFIG_ROOT_NFS=y -CONFIG_CRC_T10DIF=y CONFIG_CRYPTO_ECB=m CONFIG_CRYPTO_PCBC=m CONFIG_CRYPTO_SHA512=y diff --git a/arch/powerpc/configs/mpc866_ads_defconfig b/arch/powerpc/configs/mpc866_ads_defconfig index a0d27c59ea78..dfbdd5e8e108 100644 --- a/arch/powerpc/configs/mpc866_ads_defconfig +++ b/arch/powerpc/configs/mpc866_ads_defconfig @@ -38,4 +38,3 @@ CONFIG_TMPFS=y CONFIG_CRAMFS=y CONFIG_NFS_FS=y CONFIG_ROOT_NFS=y -CONFIG_CRC_CCITT=y diff --git a/arch/powerpc/configs/mvme5100_defconfig b/arch/powerpc/configs/mvme5100_defconfig index d1c7fd5bf34b..fa2b3b9c5945 100644 --- a/arch/powerpc/configs/mvme5100_defconfig +++ b/arch/powerpc/configs/mvme5100_defconfig @@ -107,8 +107,6 @@ CONFIG_NLS_CODEPAGE_437=m CONFIG_NLS_CODEPAGE_932=m CONFIG_NLS_ISO8859_1=m CONFIG_NLS_UTF8=m -CONFIG_CRC_CCITT=m -CONFIG_CRC_T10DIF=y CONFIG_XZ_DEC=y CONFIG_MAGIC_SYSRQ=y CONFIG_DEBUG_KERNEL=y diff --git a/arch/powerpc/configs/pasemi_defconfig b/arch/powerpc/configs/pasemi_defconfig index 61993944db40..8bbf51b38480 100644 --- a/arch/powerpc/configs/pasemi_defconfig +++ b/arch/powerpc/configs/pasemi_defconfig @@ -159,7 +159,6 @@ CONFIG_NFSD=y CONFIG_NFSD_V4=y CONFIG_NLS_CODEPAGE_437=y CONFIG_NLS_ISO8859_1=y -CONFIG_CRC_CCITT=y CONFIG_PRINTK_TIME=y CONFIG_MAGIC_SYSRQ=y CONFIG_DEBUG_KERNEL=y diff --git a/arch/powerpc/configs/pmac32_defconfig b/arch/powerpc/configs/pmac32_defconfig index e8b3f67bf3f5..1bc3466bc909 100644 --- a/arch/powerpc/configs/pmac32_defconfig +++ b/arch/powerpc/configs/pmac32_defconfig @@ -276,7 +276,6 @@ CONFIG_NFSD_V3_ACL=y CONFIG_NFSD_V4=y CONFIG_NLS_CODEPAGE_437=m CONFIG_NLS_ISO8859_1=m -CONFIG_CRC_T10DIF=y CONFIG_MAGIC_SYSRQ=y CONFIG_DEBUG_KERNEL=y CONFIG_DETECT_HUNG_TASK=y diff --git a/arch/powerpc/configs/ppc44x_defconfig b/arch/powerpc/configs/ppc44x_defconfig index 8b595f67068c..41c930f74ed4 100644 --- a/arch/powerpc/configs/ppc44x_defconfig +++ b/arch/powerpc/configs/ppc44x_defconfig @@ -90,7 +90,6 @@ CONFIG_NFS_FS=y CONFIG_ROOT_NFS=y CONFIG_NLS_CODEPAGE_437=m CONFIG_NLS_ISO8859_1=m -CONFIG_CRC_T10DIF=m CONFIG_MAGIC_SYSRQ=y CONFIG_DETECT_HUNG_TASK=y CONFIG_CRYPTO_ECB=y diff --git a/arch/powerpc/configs/ppc64e_defconfig b/arch/powerpc/configs/ppc64e_defconfig index 4c05f4e4d505..d2e659a2d8cb 100644 --- a/arch/powerpc/configs/ppc64e_defconfig +++ b/arch/powerpc/configs/ppc64e_defconfig @@ -207,7 +207,6 @@ CONFIG_NLS_CODEPAGE_437=y CONFIG_NLS_ASCII=y CONFIG_NLS_ISO8859_1=y CONFIG_NLS_UTF8=y -CONFIG_CRC_T10DIF=y CONFIG_MAGIC_SYSRQ=y CONFIG_DEBUG_KERNEL=y CONFIG_DEBUG_STACK_USAGE=y diff --git a/arch/powerpc/configs/ps3_defconfig b/arch/powerpc/configs/ps3_defconfig index 2b175ddf82f0..0b48d2b776c4 100644 --- a/arch/powerpc/configs/ps3_defconfig +++ b/arch/powerpc/configs/ps3_defconfig @@ -148,8 +148,6 @@ CONFIG_NLS_ISO8859_1=y CONFIG_CRYPTO_PCBC=m CONFIG_CRYPTO_MICHAEL_MIC=m CONFIG_CRYPTO_LZO=m -CONFIG_CRC_CCITT=m -CONFIG_CRC_T10DIF=y CONFIG_PRINTK_TIME=y CONFIG_DEBUG_INFO_DWARF_TOOLCHAIN_DEFAULT=y CONFIG_MAGIC_SYSRQ=y diff --git a/arch/powerpc/configs/skiroot_defconfig b/arch/powerpc/configs/skiroot_defconfig index 3086c4a12d6d..2b71a6dc399e 100644 --- a/arch/powerpc/configs/skiroot_defconfig +++ b/arch/powerpc/configs/skiroot_defconfig @@ -278,8 +278,6 @@ CONFIG_LOCK_DOWN_KERNEL_FORCE_INTEGRITY=y # CONFIG_INTEGRITY is not set CONFIG_LSM="yama,loadpin,safesetid,integrity" # CONFIG_CRYPTO_HW is not set -CONFIG_CRC16=y -CONFIG_CRC_ITU_T=y # CONFIG_XZ_DEC_X86 is not set # CONFIG_XZ_DEC_IA64 is not set # CONFIG_XZ_DEC_ARM is not set diff --git a/arch/powerpc/configs/storcenter_defconfig b/arch/powerpc/configs/storcenter_defconfig index 7a978d396991..e415222bd839 100644 --- a/arch/powerpc/configs/storcenter_defconfig +++ b/arch/powerpc/configs/storcenter_defconfig @@ -75,4 +75,3 @@ CONFIG_NLS_DEFAULT="utf8" CONFIG_NLS_CODEPAGE_437=y CONFIG_NLS_ISO8859_1=y CONFIG_NLS_UTF8=y -CONFIG_CRC_T10DIF=y diff --git a/arch/powerpc/configs/wii_defconfig b/arch/powerpc/configs/wii_defconfig index 5017a697b67b..7c714a19221e 100644 --- a/arch/powerpc/configs/wii_defconfig +++ b/arch/powerpc/configs/wii_defconfig @@ -114,7 +114,6 @@ CONFIG_ROOT_NFS=y CONFIG_CIFS=m CONFIG_NLS_CODEPAGE_437=y CONFIG_NLS_ISO8859_1=y -CONFIG_CRC_CCITT=y CONFIG_PRINTK_TIME=y CONFIG_MAGIC_SYSRQ=y CONFIG_DEBUG_SPINLOCK=y diff --git a/arch/s390/Kconfig b/arch/s390/Kconfig index db8161ebb43c..99fb986fca6e 100644 --- a/arch/s390/Kconfig +++ b/arch/s390/Kconfig @@ -332,6 +332,10 @@ config HAVE_MARCH_Z16_FEATURES def_bool n select HAVE_MARCH_Z15_FEATURES +config HAVE_MARCH_Z17_FEATURES + def_bool n + select HAVE_MARCH_Z16_FEATURES + choice prompt "Processor type" default MARCH_Z196 @@ -397,6 +401,14 @@ config MARCH_Z16 Select this to enable optimizations for IBM z16 (3931 and 3932 series). +config MARCH_Z17 + bool "IBM z17" + select HAVE_MARCH_Z17_FEATURES + depends on $(cc-option,-march=z17) + help + Select this to enable optimizations for IBM z17 (9175 and + 9176 series). + endchoice config MARCH_Z10_TUNE @@ -420,6 +432,9 @@ config MARCH_Z15_TUNE config MARCH_Z16_TUNE def_bool TUNE_Z16 || MARCH_Z16 && TUNE_DEFAULT +config MARCH_Z17_TUNE + def_bool TUNE_Z17 || MARCH_Z17 && TUNE_DEFAULT + choice prompt "Tune code generation" default TUNE_DEFAULT @@ -464,6 +479,10 @@ config TUNE_Z16 bool "IBM z16" depends on $(cc-option,-mtune=z16) +config TUNE_Z17 + bool "IBM z17" + depends on $(cc-option,-mtune=z17) + endchoice config 64BIT diff --git a/arch/s390/Makefile b/arch/s390/Makefile index b06dc53bfed5..7679bc16b692 100644 --- a/arch/s390/Makefile +++ b/arch/s390/Makefile @@ -48,6 +48,7 @@ mflags-$(CONFIG_MARCH_Z13) := -march=z13 mflags-$(CONFIG_MARCH_Z14) := -march=z14 mflags-$(CONFIG_MARCH_Z15) := -march=z15 mflags-$(CONFIG_MARCH_Z16) := -march=z16 +mflags-$(CONFIG_MARCH_Z17) := -march=z17 export CC_FLAGS_MARCH := $(mflags-y) @@ -61,6 +62,7 @@ cflags-$(CONFIG_MARCH_Z13_TUNE) += -mtune=z13 cflags-$(CONFIG_MARCH_Z14_TUNE) += -mtune=z14 cflags-$(CONFIG_MARCH_Z15_TUNE) += -mtune=z15 cflags-$(CONFIG_MARCH_Z16_TUNE) += -mtune=z16 +cflags-$(CONFIG_MARCH_Z17_TUNE) += -mtune=z17 cflags-y += -Wa,-I$(srctree)/arch/$(ARCH)/include diff --git a/arch/s390/include/asm/march.h b/arch/s390/include/asm/march.h index fd9eef3be44c..11a71bd14954 100644 --- a/arch/s390/include/asm/march.h +++ b/arch/s390/include/asm/march.h @@ -33,6 +33,10 @@ #define MARCH_HAS_Z16_FEATURES 1 #endif +#ifdef CONFIG_HAVE_MARCH_Z17_FEATURES +#define MARCH_HAS_Z17_FEATURES 1 +#endif + #endif /* __DECOMPRESSOR */ #endif /* __ASM_S390_MARCH_H */ diff --git a/arch/s390/kernel/perf_cpum_cf.c b/arch/s390/kernel/perf_cpum_cf.c index 33205dd410e4..e657fad7e376 100644 --- a/arch/s390/kernel/perf_cpum_cf.c +++ b/arch/s390/kernel/perf_cpum_cf.c @@ -442,7 +442,7 @@ static void cpum_cf_make_setsize(enum cpumf_ctr_set ctrset) ctrset_size = 48; else if (cpumf_ctr_info.csvn >= 3 && cpumf_ctr_info.csvn <= 5) ctrset_size = 128; - else if (cpumf_ctr_info.csvn == 6 || cpumf_ctr_info.csvn == 7) + else if (cpumf_ctr_info.csvn >= 6 && cpumf_ctr_info.csvn <= 8) ctrset_size = 160; break; case CPUMF_CTR_SET_MT_DIAG: @@ -858,18 +858,13 @@ static int cpumf_pmu_event_type(struct perf_event *event) static int cpumf_pmu_event_init(struct perf_event *event) { unsigned int type = event->attr.type; - int err; + int err = -ENOENT; if (type == PERF_TYPE_HARDWARE || type == PERF_TYPE_RAW) err = __hw_perf_event_init(event, type); else if (event->pmu->type == type) /* Registered as unknown PMU */ err = __hw_perf_event_init(event, cpumf_pmu_event_type(event)); - else - return -ENOENT; - - if (unlikely(err) && event->destroy) - event->destroy(event); return err; } @@ -1819,8 +1814,6 @@ static int cfdiag_event_init(struct perf_event *event) event->destroy = hw_perf_event_destroy; err = cfdiag_event_init2(event); - if (unlikely(err)) - event->destroy(event); out: return err; } diff --git a/arch/s390/kernel/perf_cpum_cf_events.c b/arch/s390/kernel/perf_cpum_cf_events.c index e4a6bfc91080..690a293eb10d 100644 --- a/arch/s390/kernel/perf_cpum_cf_events.c +++ b/arch/s390/kernel/perf_cpum_cf_events.c @@ -237,7 +237,6 @@ CPUMF_EVENT_ATTR(cf_z14, TX_C_TABORT_NO_SPECIAL, 0x00f4); CPUMF_EVENT_ATTR(cf_z14, TX_C_TABORT_SPECIAL, 0x00f5); CPUMF_EVENT_ATTR(cf_z14, MT_DIAG_CYCLES_ONE_THR_ACTIVE, 0x01c0); CPUMF_EVENT_ATTR(cf_z14, MT_DIAG_CYCLES_TWO_THR_ACTIVE, 0x01c1); - CPUMF_EVENT_ATTR(cf_z15, L1D_RO_EXCL_WRITES, 0x0080); CPUMF_EVENT_ATTR(cf_z15, DTLB2_WRITES, 0x0081); CPUMF_EVENT_ATTR(cf_z15, DTLB2_MISSES, 0x0082); @@ -365,6 +364,83 @@ CPUMF_EVENT_ATTR(cf_z16, NNPA_WAIT_LOCK, 0x010d); CPUMF_EVENT_ATTR(cf_z16, NNPA_HOLD_LOCK, 0x010e); CPUMF_EVENT_ATTR(cf_z16, MT_DIAG_CYCLES_ONE_THR_ACTIVE, 0x01c0); CPUMF_EVENT_ATTR(cf_z16, MT_DIAG_CYCLES_TWO_THR_ACTIVE, 0x01c1); +CPUMF_EVENT_ATTR(cf_z17, L1D_RO_EXCL_WRITES, 0x0080); +CPUMF_EVENT_ATTR(cf_z17, DTLB2_WRITES, 0x0081); +CPUMF_EVENT_ATTR(cf_z17, DTLB2_MISSES, 0x0082); +CPUMF_EVENT_ATTR(cf_z17, CRSTE_1MB_WRITES, 0x0083); +CPUMF_EVENT_ATTR(cf_z17, DTLB2_GPAGE_WRITES, 0x0084); +CPUMF_EVENT_ATTR(cf_z17, ITLB2_WRITES, 0x0086); +CPUMF_EVENT_ATTR(cf_z17, ITLB2_MISSES, 0x0087); +CPUMF_EVENT_ATTR(cf_z17, TLB2_PTE_WRITES, 0x0089); +CPUMF_EVENT_ATTR(cf_z17, TLB2_CRSTE_WRITES, 0x008a); +CPUMF_EVENT_ATTR(cf_z17, TLB2_ENGINES_BUSY, 0x008b); +CPUMF_EVENT_ATTR(cf_z17, TX_C_TEND, 0x008c); +CPUMF_EVENT_ATTR(cf_z17, TX_NC_TEND, 0x008d); +CPUMF_EVENT_ATTR(cf_z17, L1C_TLB2_MISSES, 0x008f); +CPUMF_EVENT_ATTR(cf_z17, DCW_REQ, 0x0091); +CPUMF_EVENT_ATTR(cf_z17, DCW_REQ_IV, 0x0092); +CPUMF_EVENT_ATTR(cf_z17, DCW_REQ_CHIP_HIT, 0x0093); +CPUMF_EVENT_ATTR(cf_z17, DCW_REQ_DRAWER_HIT, 0x0094); +CPUMF_EVENT_ATTR(cf_z17, DCW_ON_CHIP, 0x0095); +CPUMF_EVENT_ATTR(cf_z17, DCW_ON_CHIP_IV, 0x0096); +CPUMF_EVENT_ATTR(cf_z17, DCW_ON_CHIP_CHIP_HIT, 0x0097); +CPUMF_EVENT_ATTR(cf_z17, DCW_ON_CHIP_DRAWER_HIT, 0x0098); +CPUMF_EVENT_ATTR(cf_z17, DCW_ON_MODULE, 0x0099); +CPUMF_EVENT_ATTR(cf_z17, DCW_ON_DRAWER, 0x009a); +CPUMF_EVENT_ATTR(cf_z17, DCW_OFF_DRAWER, 0x009b); +CPUMF_EVENT_ATTR(cf_z17, DCW_ON_CHIP_MEMORY, 0x009c); +CPUMF_EVENT_ATTR(cf_z17, DCW_ON_MODULE_MEMORY, 0x009d); +CPUMF_EVENT_ATTR(cf_z17, DCW_ON_DRAWER_MEMORY, 0x009e); +CPUMF_EVENT_ATTR(cf_z17, DCW_OFF_DRAWER_MEMORY, 0x009f); +CPUMF_EVENT_ATTR(cf_z17, IDCW_ON_MODULE_IV, 0x00a0); +CPUMF_EVENT_ATTR(cf_z17, IDCW_ON_MODULE_CHIP_HIT, 0x00a1); +CPUMF_EVENT_ATTR(cf_z17, IDCW_ON_MODULE_DRAWER_HIT, 0x00a2); +CPUMF_EVENT_ATTR(cf_z17, IDCW_ON_DRAWER_IV, 0x00a3); +CPUMF_EVENT_ATTR(cf_z17, IDCW_ON_DRAWER_CHIP_HIT, 0x00a4); +CPUMF_EVENT_ATTR(cf_z17, IDCW_ON_DRAWER_DRAWER_HIT, 0x00a5); +CPUMF_EVENT_ATTR(cf_z17, IDCW_OFF_DRAWER_IV, 0x00a6); +CPUMF_EVENT_ATTR(cf_z17, IDCW_OFF_DRAWER_CHIP_HIT, 0x00a7); +CPUMF_EVENT_ATTR(cf_z17, IDCW_OFF_DRAWER_DRAWER_HIT, 0x00a8); +CPUMF_EVENT_ATTR(cf_z17, ICW_REQ, 0x00a9); +CPUMF_EVENT_ATTR(cf_z17, ICW_REQ_IV, 0x00aa); +CPUMF_EVENT_ATTR(cf_z17, ICW_REQ_CHIP_HIT, 0x00ab); +CPUMF_EVENT_ATTR(cf_z17, ICW_REQ_DRAWER_HIT, 0x00ac); +CPUMF_EVENT_ATTR(cf_z17, ICW_ON_CHIP, 0x00ad); +CPUMF_EVENT_ATTR(cf_z17, ICW_ON_CHIP_IV, 0x00ae); +CPUMF_EVENT_ATTR(cf_z17, ICW_ON_CHIP_CHIP_HIT, 0x00af); +CPUMF_EVENT_ATTR(cf_z17, ICW_ON_CHIP_DRAWER_HIT, 0x00b0); +CPUMF_EVENT_ATTR(cf_z17, ICW_ON_MODULE, 0x00b1); +CPUMF_EVENT_ATTR(cf_z17, ICW_ON_DRAWER, 0x00b2); +CPUMF_EVENT_ATTR(cf_z17, ICW_OFF_DRAWER, 0x00b3); +CPUMF_EVENT_ATTR(cf_z17, CYCLES_SAMETHRD, 0x00ca); +CPUMF_EVENT_ATTR(cf_z17, CYCLES_DIFFTHRD, 0x00cb); +CPUMF_EVENT_ATTR(cf_z17, INST_SAMETHRD, 0x00cc); +CPUMF_EVENT_ATTR(cf_z17, INST_DIFFTHRD, 0x00cd); +CPUMF_EVENT_ATTR(cf_z17, WRONG_BRANCH_PREDICTION, 0x00ce); +CPUMF_EVENT_ATTR(cf_z17, VX_BCD_EXECUTION_SLOTS, 0x00e1); +CPUMF_EVENT_ATTR(cf_z17, DECIMAL_INSTRUCTIONS, 0x00e2); +CPUMF_EVENT_ATTR(cf_z17, LAST_HOST_TRANSLATIONS, 0x00e8); +CPUMF_EVENT_ATTR(cf_z17, TX_NC_TABORT, 0x00f4); +CPUMF_EVENT_ATTR(cf_z17, TX_C_TABORT_NO_SPECIAL, 0x00f5); +CPUMF_EVENT_ATTR(cf_z17, TX_C_TABORT_SPECIAL, 0x00f6); +CPUMF_EVENT_ATTR(cf_z17, DFLT_ACCESS, 0x00f8); +CPUMF_EVENT_ATTR(cf_z17, DFLT_CYCLES, 0x00fd); +CPUMF_EVENT_ATTR(cf_z17, SORTL, 0x0100); +CPUMF_EVENT_ATTR(cf_z17, DFLT_CC, 0x0109); +CPUMF_EVENT_ATTR(cf_z17, DFLT_CCFINISH, 0x010a); +CPUMF_EVENT_ATTR(cf_z17, NNPA_INVOCATIONS, 0x010b); +CPUMF_EVENT_ATTR(cf_z17, NNPA_COMPLETIONS, 0x010c); +CPUMF_EVENT_ATTR(cf_z17, NNPA_WAIT_LOCK, 0x010d); +CPUMF_EVENT_ATTR(cf_z17, NNPA_HOLD_LOCK, 0x010e); +CPUMF_EVENT_ATTR(cf_z17, NNPA_INST_ONCHIP, 0x0110); +CPUMF_EVENT_ATTR(cf_z17, NNPA_INST_OFFCHIP, 0x0111); +CPUMF_EVENT_ATTR(cf_z17, NNPA_INST_DIFF, 0x0112); +CPUMF_EVENT_ATTR(cf_z17, NNPA_4K_PREFETCH, 0x0114); +CPUMF_EVENT_ATTR(cf_z17, NNPA_COMPL_LOCK, 0x0115); +CPUMF_EVENT_ATTR(cf_z17, NNPA_RETRY_LOCK, 0x0116); +CPUMF_EVENT_ATTR(cf_z17, NNPA_RETRY_LOCK_WITH_PLO, 0x0117); +CPUMF_EVENT_ATTR(cf_z17, MT_DIAG_CYCLES_ONE_THR_ACTIVE, 0x01c0); +CPUMF_EVENT_ATTR(cf_z17, MT_DIAG_CYCLES_TWO_THR_ACTIVE, 0x01c1); static struct attribute *cpumcf_fvn1_pmu_event_attr[] __initdata = { CPUMF_EVENT_PTR(cf_fvn1, CPU_CYCLES), @@ -414,7 +490,7 @@ static struct attribute *cpumcf_svn_12345_pmu_event_attr[] __initdata = { NULL, }; -static struct attribute *cpumcf_svn_67_pmu_event_attr[] __initdata = { +static struct attribute *cpumcf_svn_678_pmu_event_attr[] __initdata = { CPUMF_EVENT_PTR(cf_svn_12345, PRNG_FUNCTIONS), CPUMF_EVENT_PTR(cf_svn_12345, PRNG_CYCLES), CPUMF_EVENT_PTR(cf_svn_12345, PRNG_BLOCKED_FUNCTIONS), @@ -779,6 +855,87 @@ static struct attribute *cpumcf_z16_pmu_event_attr[] __initdata = { NULL, }; +static struct attribute *cpumcf_z17_pmu_event_attr[] __initdata = { + CPUMF_EVENT_PTR(cf_z17, L1D_RO_EXCL_WRITES), + CPUMF_EVENT_PTR(cf_z17, DTLB2_WRITES), + CPUMF_EVENT_PTR(cf_z17, DTLB2_MISSES), + CPUMF_EVENT_PTR(cf_z17, CRSTE_1MB_WRITES), + CPUMF_EVENT_PTR(cf_z17, DTLB2_GPAGE_WRITES), + CPUMF_EVENT_PTR(cf_z17, ITLB2_WRITES), + CPUMF_EVENT_PTR(cf_z17, ITLB2_MISSES), + CPUMF_EVENT_PTR(cf_z17, TLB2_PTE_WRITES), + CPUMF_EVENT_PTR(cf_z17, TLB2_CRSTE_WRITES), + CPUMF_EVENT_PTR(cf_z17, TLB2_ENGINES_BUSY), + CPUMF_EVENT_PTR(cf_z17, TX_C_TEND), + CPUMF_EVENT_PTR(cf_z17, TX_NC_TEND), + CPUMF_EVENT_PTR(cf_z17, L1C_TLB2_MISSES), + CPUMF_EVENT_PTR(cf_z17, DCW_REQ), + CPUMF_EVENT_PTR(cf_z17, DCW_REQ_IV), + CPUMF_EVENT_PTR(cf_z17, DCW_REQ_CHIP_HIT), + CPUMF_EVENT_PTR(cf_z17, DCW_REQ_DRAWER_HIT), + CPUMF_EVENT_PTR(cf_z17, DCW_ON_CHIP), + CPUMF_EVENT_PTR(cf_z17, DCW_ON_CHIP_IV), + CPUMF_EVENT_PTR(cf_z17, DCW_ON_CHIP_CHIP_HIT), + CPUMF_EVENT_PTR(cf_z17, DCW_ON_CHIP_DRAWER_HIT), + CPUMF_EVENT_PTR(cf_z17, DCW_ON_MODULE), + CPUMF_EVENT_PTR(cf_z17, DCW_ON_DRAWER), + CPUMF_EVENT_PTR(cf_z17, DCW_OFF_DRAWER), + CPUMF_EVENT_PTR(cf_z17, DCW_ON_CHIP_MEMORY), + CPUMF_EVENT_PTR(cf_z17, DCW_ON_MODULE_MEMORY), + CPUMF_EVENT_PTR(cf_z17, DCW_ON_DRAWER_MEMORY), + CPUMF_EVENT_PTR(cf_z17, DCW_OFF_DRAWER_MEMORY), + CPUMF_EVENT_PTR(cf_z17, IDCW_ON_MODULE_IV), + CPUMF_EVENT_PTR(cf_z17, IDCW_ON_MODULE_CHIP_HIT), + CPUMF_EVENT_PTR(cf_z17, IDCW_ON_MODULE_DRAWER_HIT), + CPUMF_EVENT_PTR(cf_z17, IDCW_ON_DRAWER_IV), + CPUMF_EVENT_PTR(cf_z17, IDCW_ON_DRAWER_CHIP_HIT), + CPUMF_EVENT_PTR(cf_z17, IDCW_ON_DRAWER_DRAWER_HIT), + CPUMF_EVENT_PTR(cf_z17, IDCW_OFF_DRAWER_IV), + CPUMF_EVENT_PTR(cf_z17, IDCW_OFF_DRAWER_CHIP_HIT), + CPUMF_EVENT_PTR(cf_z17, IDCW_OFF_DRAWER_DRAWER_HIT), + CPUMF_EVENT_PTR(cf_z17, ICW_REQ), + CPUMF_EVENT_PTR(cf_z17, ICW_REQ_IV), + CPUMF_EVENT_PTR(cf_z17, ICW_REQ_CHIP_HIT), + CPUMF_EVENT_PTR(cf_z17, ICW_REQ_DRAWER_HIT), + CPUMF_EVENT_PTR(cf_z17, ICW_ON_CHIP), + CPUMF_EVENT_PTR(cf_z17, ICW_ON_CHIP_IV), + CPUMF_EVENT_PTR(cf_z17, ICW_ON_CHIP_CHIP_HIT), + CPUMF_EVENT_PTR(cf_z17, ICW_ON_CHIP_DRAWER_HIT), + CPUMF_EVENT_PTR(cf_z17, ICW_ON_MODULE), + CPUMF_EVENT_PTR(cf_z17, ICW_ON_DRAWER), + CPUMF_EVENT_PTR(cf_z17, ICW_OFF_DRAWER), + CPUMF_EVENT_PTR(cf_z17, CYCLES_SAMETHRD), + CPUMF_EVENT_PTR(cf_z17, CYCLES_DIFFTHRD), + CPUMF_EVENT_PTR(cf_z17, INST_SAMETHRD), + CPUMF_EVENT_PTR(cf_z17, INST_DIFFTHRD), + CPUMF_EVENT_PTR(cf_z17, WRONG_BRANCH_PREDICTION), + CPUMF_EVENT_PTR(cf_z17, VX_BCD_EXECUTION_SLOTS), + CPUMF_EVENT_PTR(cf_z17, DECIMAL_INSTRUCTIONS), + CPUMF_EVENT_PTR(cf_z17, LAST_HOST_TRANSLATIONS), + CPUMF_EVENT_PTR(cf_z17, TX_NC_TABORT), + CPUMF_EVENT_PTR(cf_z17, TX_C_TABORT_NO_SPECIAL), + CPUMF_EVENT_PTR(cf_z17, TX_C_TABORT_SPECIAL), + CPUMF_EVENT_PTR(cf_z17, DFLT_ACCESS), + CPUMF_EVENT_PTR(cf_z17, DFLT_CYCLES), + CPUMF_EVENT_PTR(cf_z17, SORTL), + CPUMF_EVENT_PTR(cf_z17, DFLT_CC), + CPUMF_EVENT_PTR(cf_z17, DFLT_CCFINISH), + CPUMF_EVENT_PTR(cf_z17, NNPA_INVOCATIONS), + CPUMF_EVENT_PTR(cf_z17, NNPA_COMPLETIONS), + CPUMF_EVENT_PTR(cf_z17, NNPA_WAIT_LOCK), + CPUMF_EVENT_PTR(cf_z17, NNPA_HOLD_LOCK), + CPUMF_EVENT_PTR(cf_z17, NNPA_INST_ONCHIP), + CPUMF_EVENT_PTR(cf_z17, NNPA_INST_OFFCHIP), + CPUMF_EVENT_PTR(cf_z17, NNPA_INST_DIFF), + CPUMF_EVENT_PTR(cf_z17, NNPA_4K_PREFETCH), + CPUMF_EVENT_PTR(cf_z17, NNPA_COMPL_LOCK), + CPUMF_EVENT_PTR(cf_z17, NNPA_RETRY_LOCK), + CPUMF_EVENT_PTR(cf_z17, NNPA_RETRY_LOCK_WITH_PLO), + CPUMF_EVENT_PTR(cf_z17, MT_DIAG_CYCLES_ONE_THR_ACTIVE), + CPUMF_EVENT_PTR(cf_z17, MT_DIAG_CYCLES_TWO_THR_ACTIVE), + NULL, +}; + /* END: CPUM_CF COUNTER DEFINITIONS ===================================== */ static struct attribute_group cpumcf_pmu_events_group = { @@ -859,7 +1016,7 @@ __init const struct attribute_group **cpumf_cf_event_group(void) if (ci.csvn >= 1 && ci.csvn <= 5) csvn = cpumcf_svn_12345_pmu_event_attr; else if (ci.csvn >= 6) - csvn = cpumcf_svn_67_pmu_event_attr; + csvn = cpumcf_svn_678_pmu_event_attr; /* Determine model-specific counter set(s) */ get_cpu_id(&cpu_id); @@ -892,6 +1049,10 @@ __init const struct attribute_group **cpumf_cf_event_group(void) case 0x3932: model = cpumcf_z16_pmu_event_attr; break; + case 0x9175: + case 0x9176: + model = cpumcf_z17_pmu_event_attr; + break; default: model = none; break; diff --git a/arch/s390/kernel/perf_cpum_sf.c b/arch/s390/kernel/perf_cpum_sf.c index 5f60248cb468..ad22799d8a7d 100644 --- a/arch/s390/kernel/perf_cpum_sf.c +++ b/arch/s390/kernel/perf_cpum_sf.c @@ -885,9 +885,6 @@ static int cpumsf_pmu_event_init(struct perf_event *event) event->attr.exclude_idle = 0; err = __hw_perf_event_init(event); - if (unlikely(err)) - if (event->destroy) - event->destroy(event); return err; } diff --git a/arch/s390/kernel/processor.c b/arch/s390/kernel/processor.c index 54e281436a28..80b1f7a29f11 100644 --- a/arch/s390/kernel/processor.c +++ b/arch/s390/kernel/processor.c @@ -294,6 +294,10 @@ static int __init setup_elf_platform(void) case 0x3932: strcpy(elf_platform, "z16"); break; + case 0x9175: + case 0x9176: + strcpy(elf_platform, "z17"); + break; } return 0; } diff --git a/arch/s390/kvm/intercept.c b/arch/s390/kvm/intercept.c index 610dd44a948b..a06a000f196c 100644 --- a/arch/s390/kvm/intercept.c +++ b/arch/s390/kvm/intercept.c @@ -95,7 +95,7 @@ static int handle_validity(struct kvm_vcpu *vcpu) vcpu->stat.exit_validity++; trace_kvm_s390_intercept_validity(vcpu, viwhy); - KVM_EVENT(3, "validity intercept 0x%x for pid %u (kvm 0x%pK)", viwhy, + KVM_EVENT(3, "validity intercept 0x%x for pid %u (kvm 0x%p)", viwhy, current->pid, vcpu->kvm); /* do not warn on invalid runtime instrumentation mode */ diff --git a/arch/s390/kvm/interrupt.c b/arch/s390/kvm/interrupt.c index 2811a6c093b8..60c360c18690 100644 --- a/arch/s390/kvm/interrupt.c +++ b/arch/s390/kvm/interrupt.c @@ -3161,7 +3161,7 @@ void kvm_s390_gisa_clear(struct kvm *kvm) if (!gi->origin) return; gisa_clear_ipm(gi->origin); - VM_EVENT(kvm, 3, "gisa 0x%pK cleared", gi->origin); + VM_EVENT(kvm, 3, "gisa 0x%p cleared", gi->origin); } void kvm_s390_gisa_init(struct kvm *kvm) @@ -3177,7 +3177,7 @@ void kvm_s390_gisa_init(struct kvm *kvm) hrtimer_setup(&gi->timer, gisa_vcpu_kicker, CLOCK_MONOTONIC, HRTIMER_MODE_REL); memset(gi->origin, 0, sizeof(struct kvm_s390_gisa)); gi->origin->next_alert = (u32)virt_to_phys(gi->origin); - VM_EVENT(kvm, 3, "gisa 0x%pK initialized", gi->origin); + VM_EVENT(kvm, 3, "gisa 0x%p initialized", gi->origin); } void kvm_s390_gisa_enable(struct kvm *kvm) @@ -3218,7 +3218,7 @@ void kvm_s390_gisa_destroy(struct kvm *kvm) process_gib_alert_list(); hrtimer_cancel(&gi->timer); gi->origin = NULL; - VM_EVENT(kvm, 3, "gisa 0x%pK destroyed", gisa); + VM_EVENT(kvm, 3, "gisa 0x%p destroyed", gisa); } void kvm_s390_gisa_disable(struct kvm *kvm) @@ -3467,7 +3467,7 @@ int __init kvm_s390_gib_init(u8 nisc) } } - KVM_EVENT(3, "gib 0x%pK (nisc=%d) initialized", gib, gib->nisc); + KVM_EVENT(3, "gib 0x%p (nisc=%d) initialized", gib, gib->nisc); goto out; out_unreg_gal: diff --git a/arch/s390/kvm/kvm-s390.c b/arch/s390/kvm/kvm-s390.c index fff863734975..3f3175193fd7 100644 --- a/arch/s390/kvm/kvm-s390.c +++ b/arch/s390/kvm/kvm-s390.c @@ -1022,7 +1022,7 @@ static int kvm_s390_set_mem_control(struct kvm *kvm, struct kvm_device_attr *att } mutex_unlock(&kvm->lock); VM_EVENT(kvm, 3, "SET: max guest address: %lu", new_limit); - VM_EVENT(kvm, 3, "New guest asce: 0x%pK", + VM_EVENT(kvm, 3, "New guest asce: 0x%p", (void *) kvm->arch.gmap->asce); break; } @@ -3466,7 +3466,7 @@ int kvm_arch_init_vm(struct kvm *kvm, unsigned long type) kvm_s390_gisa_init(kvm); INIT_LIST_HEAD(&kvm->arch.pv.need_cleanup); kvm->arch.pv.set_aside = NULL; - KVM_EVENT(3, "vm 0x%pK created by pid %u", kvm, current->pid); + KVM_EVENT(3, "vm 0x%p created by pid %u", kvm, current->pid); return 0; out_err: @@ -3529,7 +3529,7 @@ void kvm_arch_destroy_vm(struct kvm *kvm) kvm_s390_destroy_adapters(kvm); kvm_s390_clear_float_irqs(kvm); kvm_s390_vsie_destroy(kvm); - KVM_EVENT(3, "vm 0x%pK destroyed", kvm); + KVM_EVENT(3, "vm 0x%p destroyed", kvm); } /* Section: vcpu related */ @@ -3650,7 +3650,7 @@ static int sca_switch_to_extended(struct kvm *kvm) free_page((unsigned long)old_sca); - VM_EVENT(kvm, 2, "Switched to ESCA (0x%pK -> 0x%pK)", + VM_EVENT(kvm, 2, "Switched to ESCA (0x%p -> 0x%p)", old_sca, kvm->arch.sca); return 0; } @@ -4027,7 +4027,7 @@ int kvm_arch_vcpu_create(struct kvm_vcpu *vcpu) goto out_free_sie_block; } - VM_EVENT(vcpu->kvm, 3, "create cpu %d at 0x%pK, sie block at 0x%pK", + VM_EVENT(vcpu->kvm, 3, "create cpu %d at 0x%p, sie block at 0x%p", vcpu->vcpu_id, vcpu, vcpu->arch.sie_block); trace_kvm_s390_create_vcpu(vcpu->vcpu_id, vcpu, vcpu->arch.sie_block); diff --git a/arch/s390/kvm/trace-s390.h b/arch/s390/kvm/trace-s390.h index 9ac92dbf680d..9e28f165c114 100644 --- a/arch/s390/kvm/trace-s390.h +++ b/arch/s390/kvm/trace-s390.h @@ -56,7 +56,7 @@ TRACE_EVENT(kvm_s390_create_vcpu, __entry->sie_block = sie_block; ), - TP_printk("create cpu %d at 0x%pK, sie block at 0x%pK", + TP_printk("create cpu %d at 0x%p, sie block at 0x%p", __entry->id, __entry->vcpu, __entry->sie_block) ); @@ -255,7 +255,7 @@ TRACE_EVENT(kvm_s390_enable_css, __entry->kvm = kvm; ), - TP_printk("enabling channel I/O support (kvm @ %pK)\n", + TP_printk("enabling channel I/O support (kvm @ %p)\n", __entry->kvm) ); diff --git a/arch/s390/tools/gen_facilities.c b/arch/s390/tools/gen_facilities.c index 855f818deb98..d5c68ade71ab 100644 --- a/arch/s390/tools/gen_facilities.c +++ b/arch/s390/tools/gen_facilities.c @@ -53,6 +53,9 @@ static struct facility_def facility_defs[] = { #endif #ifdef CONFIG_HAVE_MARCH_Z15_FEATURES 61, /* miscellaneous-instruction-extension 3 */ +#endif +#ifdef CONFIG_HAVE_MARCH_Z17_FEATURES + 84, /* miscellaneous-instruction-extension 4 */ #endif -1 /* END */ } diff --git a/arch/sh/configs/ap325rxa_defconfig b/arch/sh/configs/ap325rxa_defconfig index 4464a2ad42ed..b6f36c938f1d 100644 --- a/arch/sh/configs/ap325rxa_defconfig +++ b/arch/sh/configs/ap325rxa_defconfig @@ -99,4 +99,3 @@ CONFIG_NLS_ISO8859_1=y CONFIG_CRYPTO=y CONFIG_CRYPTO_CBC=y # CONFIG_CRYPTO_ANSI_CPRNG is not set -CONFIG_CRC_T10DIF=y diff --git a/arch/sh/configs/ecovec24_defconfig b/arch/sh/configs/ecovec24_defconfig index ee1b36682155..e76694aace25 100644 --- a/arch/sh/configs/ecovec24_defconfig +++ b/arch/sh/configs/ecovec24_defconfig @@ -128,4 +128,3 @@ CONFIG_DEBUG_FS=y CONFIG_CRYPTO=y CONFIG_CRYPTO_CBC=y # CONFIG_CRYPTO_ANSI_CPRNG is not set -CONFIG_CRC_T10DIF=y diff --git a/arch/sh/configs/edosk7705_defconfig b/arch/sh/configs/edosk7705_defconfig index 296ed768cbbb..ee3f6db7d8da 100644 --- a/arch/sh/configs/edosk7705_defconfig +++ b/arch/sh/configs/edosk7705_defconfig @@ -33,4 +33,3 @@ CONFIG_CMDLINE_FROM_BOOTLOADER=y # CONFIG_PROC_FS is not set # CONFIG_SYSFS is not set # CONFIG_ENABLE_MUST_CHECK is not set -# CONFIG_CRC32 is not set diff --git a/arch/sh/configs/espt_defconfig b/arch/sh/configs/espt_defconfig index 67716a44463e..da176f100e00 100644 --- a/arch/sh/configs/espt_defconfig +++ b/arch/sh/configs/espt_defconfig @@ -110,4 +110,3 @@ CONFIG_NLS_UTF8=y # CONFIG_ENABLE_MUST_CHECK is not set CONFIG_DEBUG_FS=y # CONFIG_CRYPTO_ANSI_CPRNG is not set -CONFIG_CRC_T10DIF=y diff --git a/arch/sh/configs/hp6xx_defconfig b/arch/sh/configs/hp6xx_defconfig index 77e3185f63e4..3582af15ad86 100644 --- a/arch/sh/configs/hp6xx_defconfig +++ b/arch/sh/configs/hp6xx_defconfig @@ -56,5 +56,3 @@ CONFIG_CRYPTO_PCBC=y CONFIG_CRYPTO_MD5=y # CONFIG_CRYPTO_ANSI_CPRNG is not set # CONFIG_CRYPTO_HW is not set -CONFIG_CRC16=y -CONFIG_CRC_T10DIF=y diff --git a/arch/sh/configs/kfr2r09-romimage_defconfig b/arch/sh/configs/kfr2r09-romimage_defconfig index 42bf34181a3e..88fbb65cb9f9 100644 --- a/arch/sh/configs/kfr2r09-romimage_defconfig +++ b/arch/sh/configs/kfr2r09-romimage_defconfig @@ -49,4 +49,3 @@ CONFIG_TMPFS=y # CONFIG_NETWORK_FILESYSTEMS is not set # CONFIG_ENABLE_MUST_CHECK is not set CONFIG_DEBUG_FS=y -# CONFIG_CRC32 is not set diff --git a/arch/sh/configs/landisk_defconfig b/arch/sh/configs/landisk_defconfig index d871623955c5..924bb3233b0b 100644 --- a/arch/sh/configs/landisk_defconfig +++ b/arch/sh/configs/landisk_defconfig @@ -111,4 +111,3 @@ CONFIG_NLS_CODEPAGE_437=y CONFIG_NLS_CODEPAGE_932=y CONFIG_SH_STANDARD_BIOS=y # CONFIG_CRYPTO_ANSI_CPRNG is not set -CONFIG_CRC_T10DIF=y diff --git a/arch/sh/configs/lboxre2_defconfig b/arch/sh/configs/lboxre2_defconfig index 6a234761bfd7..0307bb2be79f 100644 --- a/arch/sh/configs/lboxre2_defconfig +++ b/arch/sh/configs/lboxre2_defconfig @@ -58,4 +58,3 @@ CONFIG_ROMFS_FS=y CONFIG_NLS_CODEPAGE_437=y CONFIG_SH_STANDARD_BIOS=y # CONFIG_CRYPTO_ANSI_CPRNG is not set -CONFIG_CRC_T10DIF=y diff --git a/arch/sh/configs/magicpanelr2_defconfig b/arch/sh/configs/magicpanelr2_defconfig index 8d443749550e..93b9aa32dc7c 100644 --- a/arch/sh/configs/magicpanelr2_defconfig +++ b/arch/sh/configs/magicpanelr2_defconfig @@ -86,5 +86,3 @@ CONFIG_DEBUG_KERNEL=y CONFIG_DEBUG_KOBJECT=y CONFIG_DEBUG_INFO_DWARF_TOOLCHAIN_DEFAULT=y CONFIG_FRAME_POINTER=y -CONFIG_CRC_CCITT=m -CONFIG_CRC16=m diff --git a/arch/sh/configs/migor_defconfig b/arch/sh/configs/migor_defconfig index 2d1e65cad239..fc2010c241fb 100644 --- a/arch/sh/configs/migor_defconfig +++ b/arch/sh/configs/migor_defconfig @@ -90,4 +90,3 @@ CONFIG_DEBUG_FS=y CONFIG_CRYPTO_MANAGER=y # CONFIG_CRYPTO_ANSI_CPRNG is not set # CONFIG_CRYPTO_HW is not set -CONFIG_CRC_T10DIF=y diff --git a/arch/sh/configs/r7780mp_defconfig b/arch/sh/configs/r7780mp_defconfig index 6bd6c0ae85d7..f28b8c4181c2 100644 --- a/arch/sh/configs/r7780mp_defconfig +++ b/arch/sh/configs/r7780mp_defconfig @@ -105,4 +105,3 @@ CONFIG_CRYPTO_ECB=m CONFIG_CRYPTO_PCBC=m CONFIG_CRYPTO_HMAC=y # CONFIG_CRYPTO_ANSI_CPRNG is not set -CONFIG_CRC_T10DIF=y diff --git a/arch/sh/configs/r7785rp_defconfig b/arch/sh/configs/r7785rp_defconfig index cde668569cc1..3a4239f20ff1 100644 --- a/arch/sh/configs/r7785rp_defconfig +++ b/arch/sh/configs/r7785rp_defconfig @@ -103,4 +103,3 @@ CONFIG_CRYPTO_ECB=m CONFIG_CRYPTO_PCBC=m CONFIG_CRYPTO_HMAC=y # CONFIG_CRYPTO_ANSI_CPRNG is not set -CONFIG_CRC_T10DIF=y diff --git a/arch/sh/configs/rts7751r2d1_defconfig b/arch/sh/configs/rts7751r2d1_defconfig index c863a11c7592..69568cc40396 100644 --- a/arch/sh/configs/rts7751r2d1_defconfig +++ b/arch/sh/configs/rts7751r2d1_defconfig @@ -87,4 +87,3 @@ CONFIG_MINIX_FS=y CONFIG_NLS_CODEPAGE_932=y CONFIG_DEBUG_FS=y # CONFIG_CRYPTO_ANSI_CPRNG is not set -CONFIG_CRC_T10DIF=y diff --git a/arch/sh/configs/rts7751r2dplus_defconfig b/arch/sh/configs/rts7751r2dplus_defconfig index 7e4f710d46c7..ecb4bdb5bb58 100644 --- a/arch/sh/configs/rts7751r2dplus_defconfig +++ b/arch/sh/configs/rts7751r2dplus_defconfig @@ -92,4 +92,3 @@ CONFIG_MINIX_FS=y CONFIG_NLS_CODEPAGE_932=y CONFIG_DEBUG_FS=y # CONFIG_CRYPTO_ANSI_CPRNG is not set -CONFIG_CRC_T10DIF=y diff --git a/arch/sh/configs/sdk7780_defconfig b/arch/sh/configs/sdk7780_defconfig index cd24cf08210e..9870d16d9711 100644 --- a/arch/sh/configs/sdk7780_defconfig +++ b/arch/sh/configs/sdk7780_defconfig @@ -136,4 +136,3 @@ CONFIG_SH_STANDARD_BIOS=y CONFIG_CRYPTO_MD5=y CONFIG_CRYPTO_DES=y # CONFIG_CRYPTO_ANSI_CPRNG is not set -CONFIG_CRC_T10DIF=y diff --git a/arch/sh/configs/se7206_defconfig b/arch/sh/configs/se7206_defconfig index 472fdf365cad..64f9308ee586 100644 --- a/arch/sh/configs/se7206_defconfig +++ b/arch/sh/configs/se7206_defconfig @@ -101,6 +101,3 @@ CONFIG_CRYPTO_DEFLATE=y CONFIG_CRYPTO_LZO=y # CONFIG_CRYPTO_ANSI_CPRNG is not set # CONFIG_CRYPTO_HW is not set -CONFIG_CRC_CCITT=y -CONFIG_CRC16=y -CONFIG_CRC_ITU_T=y diff --git a/arch/sh/configs/se7712_defconfig b/arch/sh/configs/se7712_defconfig index 49a4961889de..8770a72e6a63 100644 --- a/arch/sh/configs/se7712_defconfig +++ b/arch/sh/configs/se7712_defconfig @@ -96,4 +96,3 @@ CONFIG_FRAME_POINTER=y CONFIG_CRYPTO_ECB=m CONFIG_CRYPTO_PCBC=m # CONFIG_CRYPTO_ANSI_CPRNG is not set -CONFIG_CRC_CCITT=y diff --git a/arch/sh/configs/se7721_defconfig b/arch/sh/configs/se7721_defconfig index de293792db84..b15c6406a0e8 100644 --- a/arch/sh/configs/se7721_defconfig +++ b/arch/sh/configs/se7721_defconfig @@ -122,4 +122,3 @@ CONFIG_DEBUG_KERNEL=y CONFIG_DEBUG_INFO_DWARF_TOOLCHAIN_DEFAULT=y CONFIG_FRAME_POINTER=y # CONFIG_CRYPTO_ANSI_CPRNG is not set -CONFIG_CRC_CCITT=y diff --git a/arch/sh/configs/se7724_defconfig b/arch/sh/configs/se7724_defconfig index 96521271758c..9501e69eb886 100644 --- a/arch/sh/configs/se7724_defconfig +++ b/arch/sh/configs/se7724_defconfig @@ -128,4 +128,3 @@ CONFIG_NLS_ISO8859_1=y CONFIG_CRYPTO=y CONFIG_CRYPTO_CBC=y # CONFIG_CRYPTO_ANSI_CPRNG is not set -CONFIG_CRC_T10DIF=y diff --git a/arch/sh/configs/sh03_defconfig b/arch/sh/configs/sh03_defconfig index 48f38ec236b6..4d75c92cac10 100644 --- a/arch/sh/configs/sh03_defconfig +++ b/arch/sh/configs/sh03_defconfig @@ -120,6 +120,5 @@ CONFIG_CRYPTO_HMAC=y CONFIG_CRYPTO_SHA1=y CONFIG_CRYPTO_DEFLATE=y # CONFIG_CRYPTO_ANSI_CPRNG is not set -CONFIG_CRC_CCITT=y CONFIG_RTC_CLASS=y CONFIG_RTC_DRV_GENERIC=y diff --git a/arch/sh/configs/sh2007_defconfig b/arch/sh/configs/sh2007_defconfig index 1b1174a07e36..cc6292b3235a 100644 --- a/arch/sh/configs/sh2007_defconfig +++ b/arch/sh/configs/sh2007_defconfig @@ -193,5 +193,3 @@ CONFIG_CRYPTO_DEFLATE=y CONFIG_CRYPTO_LZO=y # CONFIG_CRYPTO_ANSI_CPRNG is not set # CONFIG_CRYPTO_HW is not set -CONFIG_CRC_CCITT=y -CONFIG_CRC16=y diff --git a/arch/sh/configs/sh7724_generic_defconfig b/arch/sh/configs/sh7724_generic_defconfig index 5440bd0ca4ed..e6298f22623a 100644 --- a/arch/sh/configs/sh7724_generic_defconfig +++ b/arch/sh/configs/sh7724_generic_defconfig @@ -39,4 +39,3 @@ CONFIG_UIO_PDRV_GENIRQ=y # CONFIG_SYSFS is not set # CONFIG_MISC_FILESYSTEMS is not set # CONFIG_ENABLE_MUST_CHECK is not set -# CONFIG_CRC32 is not set diff --git a/arch/sh/configs/sh7763rdp_defconfig b/arch/sh/configs/sh7763rdp_defconfig index 57923c3296cc..b77b3313157e 100644 --- a/arch/sh/configs/sh7763rdp_defconfig +++ b/arch/sh/configs/sh7763rdp_defconfig @@ -112,4 +112,3 @@ CONFIG_NLS_UTF8=y # CONFIG_ENABLE_MUST_CHECK is not set CONFIG_DEBUG_FS=y # CONFIG_CRYPTO_ANSI_CPRNG is not set -CONFIG_CRC_T10DIF=y diff --git a/arch/sh/configs/sh7770_generic_defconfig b/arch/sh/configs/sh7770_generic_defconfig index 4338af8d02d0..2e2b46980b58 100644 --- a/arch/sh/configs/sh7770_generic_defconfig +++ b/arch/sh/configs/sh7770_generic_defconfig @@ -41,4 +41,3 @@ CONFIG_UIO_PDRV_GENIRQ=y # CONFIG_SYSFS is not set # CONFIG_MISC_FILESYSTEMS is not set # CONFIG_ENABLE_MUST_CHECK is not set -# CONFIG_CRC32 is not set diff --git a/arch/sh/configs/titan_defconfig b/arch/sh/configs/titan_defconfig index 8e85f205d8f5..f022ada363b5 100644 --- a/arch/sh/configs/titan_defconfig +++ b/arch/sh/configs/titan_defconfig @@ -264,4 +264,3 @@ CONFIG_CRYPTO_SERPENT=m CONFIG_CRYPTO_TEA=m CONFIG_CRYPTO_TWOFISH=m # CONFIG_CRYPTO_ANSI_CPRNG is not set -CONFIG_CRC16=m diff --git a/arch/sparc/configs/sparc64_defconfig b/arch/sparc/configs/sparc64_defconfig index 01b2bdfbf9a8..f1ba0fefe1f9 100644 --- a/arch/sparc/configs/sparc64_defconfig +++ b/arch/sparc/configs/sparc64_defconfig @@ -229,7 +229,6 @@ CONFIG_CRYPTO_SERPENT=m CONFIG_CRYPTO_TEA=m CONFIG_CRYPTO_TWOFISH=m # CONFIG_CRYPTO_ANSI_CPRNG is not set -CONFIG_CRC16=m CONFIG_VCC=m CONFIG_PATA_CMD64X=y CONFIG_IP_PNP=y diff --git a/arch/x86/entry/entry.S b/arch/x86/entry/entry.S index d3caa31240ed..175958b02f2b 100644 --- a/arch/x86/entry/entry.S +++ b/arch/x86/entry/entry.S @@ -17,19 +17,20 @@ .pushsection .noinstr.text, "ax" -SYM_FUNC_START(entry_ibpb) +/* Clobbers AX, CX, DX */ +SYM_FUNC_START(write_ibpb) ANNOTATE_NOENDBR movl $MSR_IA32_PRED_CMD, %ecx - movl $PRED_CMD_IBPB, %eax + movl _ASM_RIP(x86_pred_cmd), %eax xorl %edx, %edx wrmsr /* Make sure IBPB clears return stack preductions too. */ FILL_RETURN_BUFFER %rax, RSB_CLEAR_LOOPS, X86_BUG_IBPB_NO_RET RET -SYM_FUNC_END(entry_ibpb) +SYM_FUNC_END(write_ibpb) /* For KVM */ -EXPORT_SYMBOL_GPL(entry_ibpb); +EXPORT_SYMBOL_GPL(write_ibpb); .popsection diff --git a/arch/x86/include/asm/kvm_host.h b/arch/x86/include/asm/kvm_host.h index a884ab544335..3bdae454a959 100644 --- a/arch/x86/include/asm/kvm_host.h +++ b/arch/x86/include/asm/kvm_host.h @@ -1472,8 +1472,13 @@ struct kvm_arch { struct once nx_once; #ifdef CONFIG_X86_64 - /* The number of TDP MMU pages across all roots. */ +#ifdef CONFIG_KVM_PROVE_MMU + /* + * The number of TDP MMU pages across all roots. Used only to sanity + * check that KVM isn't leaking TDP MMU pages. + */ atomic64_t tdp_mmu_pages; +#endif /* * List of struct kvm_mmu_pages being used as roots. diff --git a/arch/x86/include/asm/nospec-branch.h b/arch/x86/include/asm/nospec-branch.h index 8a5cc8e70439..5c43f145454d 100644 --- a/arch/x86/include/asm/nospec-branch.h +++ b/arch/x86/include/asm/nospec-branch.h @@ -269,7 +269,7 @@ * typically has NO_MELTDOWN). * * While retbleed_untrain_ret() doesn't clobber anything but requires stack, - * entry_ibpb() will clobber AX, CX, DX. + * write_ibpb() will clobber AX, CX, DX. * * As such, this must be placed after every *SWITCH_TO_KERNEL_CR3 at a point * where we have a stack but before any RET instruction. @@ -279,7 +279,7 @@ VALIDATE_UNRET_END CALL_UNTRAIN_RET ALTERNATIVE_2 "", \ - "call entry_ibpb", \ibpb_feature, \ + "call write_ibpb", \ibpb_feature, \ __stringify(\call_depth_insns), X86_FEATURE_CALL_DEPTH #endif .endm @@ -368,7 +368,7 @@ extern void srso_return_thunk(void); extern void srso_alias_return_thunk(void); extern void entry_untrain_ret(void); -extern void entry_ibpb(void); +extern void write_ibpb(void); #ifdef CONFIG_X86_64 extern void clear_bhb_loop(void); @@ -514,11 +514,11 @@ void alternative_msr_write(unsigned int msr, u64 val, unsigned int feature) : "memory"); } -extern u64 x86_pred_cmd; - static inline void indirect_branch_prediction_barrier(void) { - alternative_msr_write(MSR_IA32_PRED_CMD, x86_pred_cmd, X86_FEATURE_IBPB); + asm_inline volatile(ALTERNATIVE("", "call write_ibpb", X86_FEATURE_IBPB) + : ASM_CALL_CONSTRAINT + :: "rax", "rcx", "rdx", "memory"); } /* The Intel SPEC CTRL MSR base value cache */ diff --git a/arch/x86/include/asm/smap.h b/arch/x86/include/asm/smap.h index 55a5e656e4b9..4f84d421d1cf 100644 --- a/arch/x86/include/asm/smap.h +++ b/arch/x86/include/asm/smap.h @@ -16,23 +16,23 @@ #ifdef __ASSEMBLER__ #define ASM_CLAC \ - ALTERNATIVE __stringify(ANNOTATE_IGNORE_ALTERNATIVE), "clac", X86_FEATURE_SMAP + ALTERNATIVE "", "clac", X86_FEATURE_SMAP #define ASM_STAC \ - ALTERNATIVE __stringify(ANNOTATE_IGNORE_ALTERNATIVE), "stac", X86_FEATURE_SMAP + ALTERNATIVE "", "stac", X86_FEATURE_SMAP #else /* __ASSEMBLER__ */ static __always_inline void clac(void) { /* Note: a barrier is implicit in alternative() */ - alternative(ANNOTATE_IGNORE_ALTERNATIVE "", "clac", X86_FEATURE_SMAP); + alternative("", "clac", X86_FEATURE_SMAP); } static __always_inline void stac(void) { /* Note: a barrier is implicit in alternative() */ - alternative(ANNOTATE_IGNORE_ALTERNATIVE "", "stac", X86_FEATURE_SMAP); + alternative("", "stac", X86_FEATURE_SMAP); } static __always_inline unsigned long smap_save(void) @@ -59,9 +59,9 @@ static __always_inline void smap_restore(unsigned long flags) /* These macros can be used in asm() statements */ #define ASM_CLAC \ - ALTERNATIVE(ANNOTATE_IGNORE_ALTERNATIVE "", "clac", X86_FEATURE_SMAP) + ALTERNATIVE("", "clac", X86_FEATURE_SMAP) #define ASM_STAC \ - ALTERNATIVE(ANNOTATE_IGNORE_ALTERNATIVE "", "stac", X86_FEATURE_SMAP) + ALTERNATIVE("", "stac", X86_FEATURE_SMAP) #define ASM_CLAC_UNSAFE \ ALTERNATIVE("", ANNOTATE_IGNORE_ALTERNATIVE "clac", X86_FEATURE_SMAP) diff --git a/arch/x86/kernel/acpi/boot.c b/arch/x86/kernel/acpi/boot.c index dae6a73be40e..9fa321a95eb3 100644 --- a/arch/x86/kernel/acpi/boot.c +++ b/arch/x86/kernel/acpi/boot.c @@ -23,6 +23,8 @@ #include #include +#include + #include #include #include @@ -1729,6 +1731,15 @@ int __init acpi_mps_check(void) { #if defined(CONFIG_X86_LOCAL_APIC) && !defined(CONFIG_X86_MPPARSE) /* mptable code is not built-in*/ + + /* + * Xen disables ACPI in PV DomU guests but it still emulates APIC and + * supports SMP. Returning early here ensures that APIC is not disabled + * unnecessarily and the guest is not limited to a single vCPU. + */ + if (xen_pv_domain() && !xen_initial_domain()) + return 0; + if (acpi_disabled || acpi_noirq) { pr_warn("MPS support code is not built-in, using acpi=off or acpi=noirq or pci=noacpi may have problem\n"); return 1; diff --git a/arch/x86/kernel/cpu/amd.c b/arch/x86/kernel/cpu/amd.c index 79569f72b8ee..a839ff506f45 100644 --- a/arch/x86/kernel/cpu/amd.c +++ b/arch/x86/kernel/cpu/amd.c @@ -805,6 +805,7 @@ static void init_amd_bd(struct cpuinfo_x86 *c) static const struct x86_cpu_id erratum_1386_microcode[] = { X86_MATCH_VFM_STEPS(VFM_MAKE(X86_VENDOR_AMD, 0x17, 0x01), 0x2, 0x2, 0x0800126e), X86_MATCH_VFM_STEPS(VFM_MAKE(X86_VENDOR_AMD, 0x17, 0x31), 0x0, 0x0, 0x08301052), + {} }; static void fix_erratum_1386(struct cpuinfo_x86 *c) diff --git a/arch/x86/kernel/cpu/bugs.c b/arch/x86/kernel/cpu/bugs.c index 4386aa6c69e1..362602b705cc 100644 --- a/arch/x86/kernel/cpu/bugs.c +++ b/arch/x86/kernel/cpu/bugs.c @@ -59,7 +59,6 @@ DEFINE_PER_CPU(u64, x86_spec_ctrl_current); EXPORT_PER_CPU_SYMBOL_GPL(x86_spec_ctrl_current); u64 x86_pred_cmd __ro_after_init = PRED_CMD_IBPB; -EXPORT_SYMBOL_GPL(x86_pred_cmd); static u64 __ro_after_init x86_arch_cap_msr; @@ -1142,7 +1141,7 @@ do_cmd_auto: setup_clear_cpu_cap(X86_FEATURE_RETHUNK); /* - * There is no need for RSB filling: entry_ibpb() ensures + * There is no need for RSB filling: write_ibpb() ensures * all predictions, including the RSB, are invalidated, * regardless of IBPB implementation. */ @@ -1592,51 +1591,54 @@ static void __init spec_ctrl_disable_kernel_rrsba(void) rrsba_disabled = true; } -static void __init spectre_v2_determine_rsb_fill_type_at_vmexit(enum spectre_v2_mitigation mode) +static void __init spectre_v2_select_rsb_mitigation(enum spectre_v2_mitigation mode) { /* - * Similar to context switches, there are two types of RSB attacks - * after VM exit: + * WARNING! There are many subtleties to consider when changing *any* + * code related to RSB-related mitigations. Before doing so, carefully + * read the following document, and update if necessary: * - * 1) RSB underflow + * Documentation/admin-guide/hw-vuln/rsb.rst * - * 2) Poisoned RSB entry + * In an overly simplified nutshell: * - * When retpoline is enabled, both are mitigated by filling/clearing - * the RSB. + * - User->user RSB attacks are conditionally mitigated during + * context switches by cond_mitigation -> write_ibpb(). * - * When IBRS is enabled, while #1 would be mitigated by the IBRS branch - * prediction isolation protections, RSB still needs to be cleared - * because of #2. Note that SMEP provides no protection here, unlike - * user-space-poisoned RSB entries. + * - User->kernel and guest->host attacks are mitigated by eIBRS or + * RSB filling. * - * eIBRS should protect against RSB poisoning, but if the EIBRS_PBRSB - * bug is present then a LITE version of RSB protection is required, - * just a single call needs to retire before a RET is executed. + * Though, depending on config, note that other alternative + * mitigations may end up getting used instead, e.g., IBPB on + * entry/vmexit, call depth tracking, or return thunks. */ + switch (mode) { case SPECTRE_V2_NONE: - return; + break; - case SPECTRE_V2_EIBRS_LFENCE: case SPECTRE_V2_EIBRS: - if (boot_cpu_has_bug(X86_BUG_EIBRS_PBRSB)) { - setup_force_cpu_cap(X86_FEATURE_RSB_VMEXIT_LITE); - pr_info("Spectre v2 / PBRSB-eIBRS: Retire a single CALL on VMEXIT\n"); - } - return; - + case SPECTRE_V2_EIBRS_LFENCE: case SPECTRE_V2_EIBRS_RETPOLINE: + if (boot_cpu_has_bug(X86_BUG_EIBRS_PBRSB)) { + pr_info("Spectre v2 / PBRSB-eIBRS: Retire a single CALL on VMEXIT\n"); + setup_force_cpu_cap(X86_FEATURE_RSB_VMEXIT_LITE); + } + break; + case SPECTRE_V2_RETPOLINE: case SPECTRE_V2_LFENCE: case SPECTRE_V2_IBRS: + pr_info("Spectre v2 / SpectreRSB: Filling RSB on context switch and VMEXIT\n"); + setup_force_cpu_cap(X86_FEATURE_RSB_CTXSW); setup_force_cpu_cap(X86_FEATURE_RSB_VMEXIT); - pr_info("Spectre v2 / SpectreRSB : Filling RSB on VMEXIT\n"); - return; - } + break; - pr_warn_once("Unknown Spectre v2 mode, disabling RSB mitigation at VM exit"); - dump_stack(); + default: + pr_warn_once("Unknown Spectre v2 mode, disabling RSB mitigation\n"); + dump_stack(); + break; + } } /* @@ -1830,48 +1832,7 @@ static void __init spectre_v2_select_mitigation(void) spectre_v2_enabled = mode; pr_info("%s\n", spectre_v2_strings[mode]); - /* - * If Spectre v2 protection has been enabled, fill the RSB during a - * context switch. In general there are two types of RSB attacks - * across context switches, for which the CALLs/RETs may be unbalanced. - * - * 1) RSB underflow - * - * Some Intel parts have "bottomless RSB". When the RSB is empty, - * speculated return targets may come from the branch predictor, - * which could have a user-poisoned BTB or BHB entry. - * - * AMD has it even worse: *all* returns are speculated from the BTB, - * regardless of the state of the RSB. - * - * When IBRS or eIBRS is enabled, the "user -> kernel" attack - * scenario is mitigated by the IBRS branch prediction isolation - * properties, so the RSB buffer filling wouldn't be necessary to - * protect against this type of attack. - * - * The "user -> user" attack scenario is mitigated by RSB filling. - * - * 2) Poisoned RSB entry - * - * If the 'next' in-kernel return stack is shorter than 'prev', - * 'next' could be tricked into speculating with a user-poisoned RSB - * entry. - * - * The "user -> kernel" attack scenario is mitigated by SMEP and - * eIBRS. - * - * The "user -> user" scenario, also known as SpectreBHB, requires - * RSB clearing. - * - * So to mitigate all cases, unconditionally fill RSB on context - * switches. - * - * FIXME: Is this pointless for retbleed-affected AMD? - */ - setup_force_cpu_cap(X86_FEATURE_RSB_CTXSW); - pr_info("Spectre v2 / SpectreRSB mitigation: Filling RSB on context switch\n"); - - spectre_v2_determine_rsb_fill_type_at_vmexit(mode); + spectre_v2_select_rsb_mitigation(mode); /* * Retpoline protects the kernel, but doesn't protect firmware. IBRS @@ -2676,7 +2637,7 @@ static void __init srso_select_mitigation(void) setup_clear_cpu_cap(X86_FEATURE_RETHUNK); /* - * There is no need for RSB filling: entry_ibpb() ensures + * There is no need for RSB filling: write_ibpb() ensures * all predictions, including the RSB, are invalidated, * regardless of IBPB implementation. */ @@ -2701,7 +2662,7 @@ ibpb_on_vmexit: srso_mitigation = SRSO_MITIGATION_IBPB_ON_VMEXIT; /* - * There is no need for RSB filling: entry_ibpb() ensures + * There is no need for RSB filling: write_ibpb() ensures * all predictions, including the RSB, are invalidated, * regardless of IBPB implementation. */ diff --git a/arch/x86/kernel/cpu/resctrl/rdtgroup.c b/arch/x86/kernel/cpu/resctrl/rdtgroup.c index 93ec829015f1..cc4a54145c83 100644 --- a/arch/x86/kernel/cpu/resctrl/rdtgroup.c +++ b/arch/x86/kernel/cpu/resctrl/rdtgroup.c @@ -3553,6 +3553,22 @@ static void mkdir_rdt_prepare_rmid_free(struct rdtgroup *rgrp) free_rmid(rgrp->closid, rgrp->mon.rmid); } +/* + * We allow creating mon groups only with in a directory called "mon_groups" + * which is present in every ctrl_mon group. Check if this is a valid + * "mon_groups" directory. + * + * 1. The directory should be named "mon_groups". + * 2. The mon group itself should "not" be named "mon_groups". + * This makes sure "mon_groups" directory always has a ctrl_mon group + * as parent. + */ +static bool is_mon_groups(struct kernfs_node *kn, const char *name) +{ + return (!strcmp(rdt_kn_name(kn), "mon_groups") && + strcmp(name, "mon_groups")); +} + static int mkdir_rdt_prepare(struct kernfs_node *parent_kn, const char *name, umode_t mode, enum rdt_group_type rtype, struct rdtgroup **r) @@ -3568,6 +3584,15 @@ static int mkdir_rdt_prepare(struct kernfs_node *parent_kn, goto out_unlock; } + /* + * Check that the parent directory for a monitor group is a "mon_groups" + * directory. + */ + if (rtype == RDTMON_GROUP && !is_mon_groups(parent_kn, name)) { + ret = -EPERM; + goto out_unlock; + } + if (rtype == RDTMON_GROUP && (prdtgrp->mode == RDT_MODE_PSEUDO_LOCKSETUP || prdtgrp->mode == RDT_MODE_PSEUDO_LOCKED)) { @@ -3751,22 +3776,6 @@ out_unlock: return ret; } -/* - * We allow creating mon groups only with in a directory called "mon_groups" - * which is present in every ctrl_mon group. Check if this is a valid - * "mon_groups" directory. - * - * 1. The directory should be named "mon_groups". - * 2. The mon group itself should "not" be named "mon_groups". - * This makes sure "mon_groups" directory always has a ctrl_mon group - * as parent. - */ -static bool is_mon_groups(struct kernfs_node *kn, const char *name) -{ - return (!strcmp(rdt_kn_name(kn), "mon_groups") && - strcmp(name, "mon_groups")); -} - static int rdtgroup_mkdir(struct kernfs_node *parent_kn, const char *name, umode_t mode) { @@ -3782,11 +3791,8 @@ static int rdtgroup_mkdir(struct kernfs_node *parent_kn, const char *name, if (resctrl_arch_alloc_capable() && parent_kn == rdtgroup_default.kn) return rdtgroup_mkdir_ctrl_mon(parent_kn, name, mode); - /* - * If RDT monitoring is supported and the parent directory is a valid - * "mon_groups" directory, add a monitoring subdirectory. - */ - if (resctrl_arch_mon_capable() && is_mon_groups(parent_kn, name)) + /* Else, attempt to add a monitoring subdirectory. */ + if (resctrl_arch_mon_capable()) return rdtgroup_mkdir_mon(parent_kn, name, mode); return -EPERM; diff --git a/arch/x86/kernel/e820.c b/arch/x86/kernel/e820.c index 57120f0749cc..9d8dd8deb2a7 100644 --- a/arch/x86/kernel/e820.c +++ b/arch/x86/kernel/e820.c @@ -753,22 +753,21 @@ void __init e820__memory_setup_extended(u64 phys_addr, u32 data_len) void __init e820__register_nosave_regions(unsigned long limit_pfn) { int i; - unsigned long pfn = 0; + u64 last_addr = 0; for (i = 0; i < e820_table->nr_entries; i++) { struct e820_entry *entry = &e820_table->entries[i]; - if (pfn < PFN_UP(entry->addr)) - register_nosave_region(pfn, PFN_UP(entry->addr)); - - pfn = PFN_DOWN(entry->addr + entry->size); - if (entry->type != E820_TYPE_RAM) - register_nosave_region(PFN_UP(entry->addr), pfn); + continue; - if (pfn >= limit_pfn) - break; + if (last_addr < entry->addr) + register_nosave_region(PFN_DOWN(last_addr), PFN_UP(entry->addr)); + + last_addr = entry->addr + entry->size; } + + register_nosave_region(PFN_DOWN(last_addr), limit_pfn); } #ifdef CONFIG_ACPI diff --git a/arch/x86/kernel/early_printk.c b/arch/x86/kernel/early_printk.c index 611f27e3890c..3aad78bfcb26 100644 --- a/arch/x86/kernel/early_printk.c +++ b/arch/x86/kernel/early_printk.c @@ -389,10 +389,10 @@ static int __init setup_early_printk(char *buf) keep = (strstr(buf, "keep") != NULL); while (*buf != '\0') { - if (!strncmp(buf, "mmio", 4)) { - early_mmio_serial_init(buf + 4); + if (!strncmp(buf, "mmio32", 6)) { + buf += 6; + early_mmio_serial_init(buf); early_console_register(&early_serial_console, keep); - buf += 4; } if (!strncmp(buf, "serial", 6)) { buf += 6; @@ -407,9 +407,9 @@ static int __init setup_early_printk(char *buf) } #ifdef CONFIG_PCI if (!strncmp(buf, "pciserial", 9)) { - early_pci_serial_init(buf + 9); + buf += 9; /* Keep from match the above "pciserial" */ + early_pci_serial_init(buf); early_console_register(&early_serial_console, keep); - buf += 9; /* Keep from match the above "serial" */ } #endif if (!strncmp(buf, "vga", 3) && diff --git a/arch/x86/kvm/cpuid.c b/arch/x86/kvm/cpuid.c index 5e4d4934c0d3..571c906ffcbf 100644 --- a/arch/x86/kvm/cpuid.c +++ b/arch/x86/kvm/cpuid.c @@ -1427,8 +1427,8 @@ static inline int __do_cpuid_func(struct kvm_cpuid_array *array, u32 function) } break; case 0xa: { /* Architectural Performance Monitoring */ - union cpuid10_eax eax; - union cpuid10_edx edx; + union cpuid10_eax eax = { }; + union cpuid10_edx edx = { }; if (!enable_pmu || !static_cpu_has(X86_FEATURE_ARCH_PERFMON)) { entry->eax = entry->ebx = entry->ecx = entry->edx = 0; @@ -1444,8 +1444,6 @@ static inline int __do_cpuid_func(struct kvm_cpuid_array *array, u32 function) if (kvm_pmu_cap.version) edx.split.anythread_deprecated = 1; - edx.split.reserved1 = 0; - edx.split.reserved2 = 0; entry->eax = eax.full; entry->ebx = kvm_pmu_cap.events_mask; @@ -1763,7 +1761,7 @@ static inline int __do_cpuid_func(struct kvm_cpuid_array *array, u32 function) break; /* AMD Extended Performance Monitoring and Debug */ case 0x80000022: { - union cpuid_0x80000022_ebx ebx; + union cpuid_0x80000022_ebx ebx = { }; entry->ecx = entry->edx = 0; if (!enable_pmu || !kvm_cpu_cap_has(X86_FEATURE_PERFMON_V2)) { diff --git a/arch/x86/kvm/mmu/tdp_mmu.c b/arch/x86/kvm/mmu/tdp_mmu.c index 7cc0564f5f97..21a3b8166242 100644 --- a/arch/x86/kvm/mmu/tdp_mmu.c +++ b/arch/x86/kvm/mmu/tdp_mmu.c @@ -40,7 +40,9 @@ void kvm_mmu_uninit_tdp_mmu(struct kvm *kvm) kvm_tdp_mmu_invalidate_roots(kvm, KVM_VALID_ROOTS); kvm_tdp_mmu_zap_invalidated_roots(kvm, false); - WARN_ON(atomic64_read(&kvm->arch.tdp_mmu_pages)); +#ifdef CONFIG_KVM_PROVE_MMU + KVM_MMU_WARN_ON(atomic64_read(&kvm->arch.tdp_mmu_pages)); +#endif WARN_ON(!list_empty(&kvm->arch.tdp_mmu_roots)); /* @@ -325,13 +327,17 @@ static void handle_changed_spte(struct kvm *kvm, int as_id, gfn_t gfn, static void tdp_account_mmu_page(struct kvm *kvm, struct kvm_mmu_page *sp) { kvm_account_pgtable_pages((void *)sp->spt, +1); +#ifdef CONFIG_KVM_PROVE_MMU atomic64_inc(&kvm->arch.tdp_mmu_pages); +#endif } static void tdp_unaccount_mmu_page(struct kvm *kvm, struct kvm_mmu_page *sp) { kvm_account_pgtable_pages((void *)sp->spt, -1); +#ifdef CONFIG_KVM_PROVE_MMU atomic64_dec(&kvm->arch.tdp_mmu_pages); +#endif } /** diff --git a/arch/x86/kvm/vmx/posted_intr.c b/arch/x86/kvm/vmx/posted_intr.c index ec08fa3caf43..51116fe69a50 100644 --- a/arch/x86/kvm/vmx/posted_intr.c +++ b/arch/x86/kvm/vmx/posted_intr.c @@ -31,6 +31,8 @@ static DEFINE_PER_CPU(struct list_head, wakeup_vcpus_on_cpu); */ static DEFINE_PER_CPU(raw_spinlock_t, wakeup_vcpus_on_cpu_lock); +#define PI_LOCK_SCHED_OUT SINGLE_DEPTH_NESTING + static inline struct pi_desc *vcpu_to_pi_desc(struct kvm_vcpu *vcpu) { return &(to_vmx(vcpu)->pi_desc); @@ -89,9 +91,20 @@ void vmx_vcpu_pi_load(struct kvm_vcpu *vcpu, int cpu) * current pCPU if the task was migrated. */ if (pi_desc->nv == POSTED_INTR_WAKEUP_VECTOR) { - raw_spin_lock(&per_cpu(wakeup_vcpus_on_cpu_lock, vcpu->cpu)); + raw_spinlock_t *spinlock = &per_cpu(wakeup_vcpus_on_cpu_lock, vcpu->cpu); + + /* + * In addition to taking the wakeup lock for the regular/IRQ + * context, tell lockdep it is being taken for the "sched out" + * context as well. vCPU loads happens in task context, and + * this is taking the lock of the *previous* CPU, i.e. can race + * with both the scheduler and the wakeup handler. + */ + raw_spin_lock(spinlock); + spin_acquire(&spinlock->dep_map, PI_LOCK_SCHED_OUT, 0, _RET_IP_); list_del(&vmx->pi_wakeup_list); - raw_spin_unlock(&per_cpu(wakeup_vcpus_on_cpu_lock, vcpu->cpu)); + spin_release(&spinlock->dep_map, _RET_IP_); + raw_spin_unlock(spinlock); } dest = cpu_physical_id(cpu); @@ -148,11 +161,23 @@ static void pi_enable_wakeup_handler(struct kvm_vcpu *vcpu) struct pi_desc *pi_desc = vcpu_to_pi_desc(vcpu); struct vcpu_vmx *vmx = to_vmx(vcpu); struct pi_desc old, new; - unsigned long flags; - local_irq_save(flags); + lockdep_assert_irqs_disabled(); - raw_spin_lock(&per_cpu(wakeup_vcpus_on_cpu_lock, vcpu->cpu)); + /* + * Acquire the wakeup lock using the "sched out" context to workaround + * a lockdep false positive. When this is called, schedule() holds + * various per-CPU scheduler locks. When the wakeup handler runs, it + * holds this CPU's wakeup lock while calling try_to_wake_up(), which + * can eventually take the aforementioned scheduler locks, which causes + * lockdep to assume there is deadlock. + * + * Deadlock can't actually occur because IRQs are disabled for the + * entirety of the sched_out critical section, i.e. the wakeup handler + * can't run while the scheduler locks are held. + */ + raw_spin_lock_nested(&per_cpu(wakeup_vcpus_on_cpu_lock, vcpu->cpu), + PI_LOCK_SCHED_OUT); list_add_tail(&vmx->pi_wakeup_list, &per_cpu(wakeup_vcpus_on_cpu, vcpu->cpu)); raw_spin_unlock(&per_cpu(wakeup_vcpus_on_cpu_lock, vcpu->cpu)); @@ -176,8 +201,6 @@ static void pi_enable_wakeup_handler(struct kvm_vcpu *vcpu) */ if (pi_test_on(&new)) __apic_send_IPI_self(POSTED_INTR_WAKEUP_VECTOR); - - local_irq_restore(flags); } static bool vmx_needs_pi_wakeup(struct kvm_vcpu *vcpu) diff --git a/arch/x86/kvm/x86.c b/arch/x86/kvm/x86.c index c841817a914a..3712dde0bf9d 100644 --- a/arch/x86/kvm/x86.c +++ b/arch/x86/kvm/x86.c @@ -11786,6 +11786,8 @@ int kvm_arch_vcpu_ioctl_get_mpstate(struct kvm_vcpu *vcpu, if (kvm_mpx_supported()) kvm_load_guest_fpu(vcpu); + kvm_vcpu_srcu_read_lock(vcpu); + r = kvm_apic_accept_events(vcpu); if (r < 0) goto out; @@ -11799,6 +11801,8 @@ int kvm_arch_vcpu_ioctl_get_mpstate(struct kvm_vcpu *vcpu, mp_state->mp_state = vcpu->arch.mp_state; out: + kvm_vcpu_srcu_read_unlock(vcpu); + if (kvm_mpx_supported()) kvm_put_guest_fpu(vcpu); vcpu_put(vcpu); diff --git a/arch/x86/mm/tlb.c b/arch/x86/mm/tlb.c index e459d97ef397..eb83348f9305 100644 --- a/arch/x86/mm/tlb.c +++ b/arch/x86/mm/tlb.c @@ -667,9 +667,9 @@ static void cond_mitigation(struct task_struct *next) prev_mm = this_cpu_read(cpu_tlbstate.last_user_mm_spec); /* - * Avoid user/user BTB poisoning by flushing the branch predictor - * when switching between processes. This stops one process from - * doing Spectre-v2 attacks on another. + * Avoid user->user BTB/RSB poisoning by flushing them when switching + * between processes. This stops one process from doing Spectre-v2 + * attacks on another. * * Both, the conditional and the always IBPB mode use the mm * pointer to avoid the IBPB when switching between tasks of the diff --git a/arch/x86/power/hibernate_asm_64.S b/arch/x86/power/hibernate_asm_64.S index 8c534c36adfa..66f066b8feda 100644 --- a/arch/x86/power/hibernate_asm_64.S +++ b/arch/x86/power/hibernate_asm_64.S @@ -26,7 +26,7 @@ /* code below belongs to the image kernel */ .align PAGE_SIZE SYM_FUNC_START(restore_registers) - ANNOTATE_NOENDBR + ENDBR /* go back to the original page tables */ movq %r9, %cr3 @@ -120,7 +120,7 @@ SYM_FUNC_END(restore_image) /* code below has been relocated to a safe page */ SYM_FUNC_START(core_restore_code) - ANNOTATE_NOENDBR + ENDBR /* switch to temporary page tables */ movq %rax, %cr3 /* flush TLB */ diff --git a/arch/x86/xen/enlighten.c b/arch/x86/xen/enlighten.c index 43dcd8c7badc..1b7710bd0d05 100644 --- a/arch/x86/xen/enlighten.c +++ b/arch/x86/xen/enlighten.c @@ -70,6 +70,9 @@ EXPORT_SYMBOL(xen_start_flags); */ struct shared_info *HYPERVISOR_shared_info = &xen_dummy_shared_info; +/* Number of pages released from the initial allocation. */ +unsigned long xen_released_pages; + static __ref void xen_get_vendor(void) { init_cpu_devs(); @@ -466,6 +469,13 @@ int __init arch_xen_unpopulated_init(struct resource **res) xen_free_unpopulated_pages(1, &pg); } + /* + * Account for the region being in the physmap but unpopulated. + * The value in xen_released_pages is used by the balloon + * driver to know how much of the physmap is unpopulated and + * set an accurate initial memory target. + */ + xen_released_pages += xen_extra_mem[i].n_pfns; /* Zero so region is not also added to the balloon driver. */ xen_extra_mem[i].n_pfns = 0; } diff --git a/arch/x86/xen/enlighten_pvh.c b/arch/x86/xen/enlighten_pvh.c index 0e3d930bcb89..9d25d9373945 100644 --- a/arch/x86/xen/enlighten_pvh.c +++ b/arch/x86/xen/enlighten_pvh.c @@ -1,5 +1,7 @@ // SPDX-License-Identifier: GPL-2.0 #include +#include +#include #include #include @@ -123,8 +125,23 @@ static void __init pvh_arch_setup(void) { pvh_reserve_extra_memory(); - if (xen_initial_domain()) + if (xen_initial_domain()) { xen_add_preferred_consoles(); + + /* + * Disable usage of CPU idle and frequency drivers: when + * running as hardware domain the exposed native ACPI tables + * causes idle and/or frequency drivers to attach and + * malfunction. It's Xen the entity that controls the idle and + * frequency states. + * + * For unprivileged domains the exposed ACPI tables are + * fabricated and don't contain such data. + */ + disable_cpuidle(); + disable_cpufreq(); + WARN_ON(xen_set_default_idle()); + } } void __init xen_pvh_init(struct boot_params *boot_params) diff --git a/arch/x86/xen/setup.c b/arch/x86/xen/setup.c index c3db71d96c43..3823e52aef52 100644 --- a/arch/x86/xen/setup.c +++ b/arch/x86/xen/setup.c @@ -37,9 +37,6 @@ #define GB(x) ((uint64_t)(x) * 1024 * 1024 * 1024) -/* Number of pages released from the initial allocation. */ -unsigned long xen_released_pages; - /* Memory map would allow PCI passthrough. */ bool xen_pv_pci_possible; diff --git a/arch/x86/xen/xen-asm.S b/arch/x86/xen/xen-asm.S index 109af12f7647..461bb1526502 100644 --- a/arch/x86/xen/xen-asm.S +++ b/arch/x86/xen/xen-asm.S @@ -226,9 +226,7 @@ SYM_CODE_END(xen_early_idt_handler_array) push %rax mov $__HYPERVISOR_iret, %eax syscall /* Do the IRET. */ -#ifdef CONFIG_MITIGATION_SLS - int3 -#endif + ud2 /* The SYSCALL should never return. */ .endm SYM_CODE_START(xen_iret) diff --git a/drivers/accel/ivpu/ivpu_debugfs.c b/drivers/accel/ivpu/ivpu_debugfs.c index 0825851656a2..f0dad0c9ce33 100644 --- a/drivers/accel/ivpu/ivpu_debugfs.c +++ b/drivers/accel/ivpu/ivpu_debugfs.c @@ -332,7 +332,7 @@ ivpu_force_recovery_fn(struct file *file, const char __user *user_buf, size_t si return -EINVAL; ret = ivpu_rpm_get(vdev); - if (ret) + if (ret < 0) return ret; ivpu_pm_trigger_recovery(vdev, "debugfs"); @@ -383,7 +383,7 @@ static int dct_active_set(void *data, u64 active_percent) return -EINVAL; ret = ivpu_rpm_get(vdev); - if (ret) + if (ret < 0) return ret; if (active_percent) diff --git a/drivers/accel/ivpu/ivpu_ipc.c b/drivers/accel/ivpu/ivpu_ipc.c index 0e096fd9b95d..39f83225c181 100644 --- a/drivers/accel/ivpu/ivpu_ipc.c +++ b/drivers/accel/ivpu/ivpu_ipc.c @@ -302,7 +302,8 @@ ivpu_ipc_send_receive_internal(struct ivpu_device *vdev, struct vpu_jsm_msg *req struct ivpu_ipc_consumer cons; int ret; - drm_WARN_ON(&vdev->drm, pm_runtime_status_suspended(vdev->drm.dev)); + drm_WARN_ON(&vdev->drm, pm_runtime_status_suspended(vdev->drm.dev) && + pm_runtime_enabled(vdev->drm.dev)); ivpu_ipc_consumer_add(vdev, &cons, channel, NULL); diff --git a/drivers/accel/ivpu/ivpu_ms.c b/drivers/accel/ivpu/ivpu_ms.c index ffe7b10f8a76..2a043baf10ca 100644 --- a/drivers/accel/ivpu/ivpu_ms.c +++ b/drivers/accel/ivpu/ivpu_ms.c @@ -4,6 +4,7 @@ */ #include +#include #include "ivpu_drv.h" #include "ivpu_gem.h" @@ -44,6 +45,10 @@ int ivpu_ms_start_ioctl(struct drm_device *dev, void *data, struct drm_file *fil args->sampling_period_ns < MS_MIN_SAMPLE_PERIOD_NS) return -EINVAL; + ret = ivpu_rpm_get(vdev); + if (ret < 0) + return ret; + mutex_lock(&file_priv->ms_lock); if (get_instance_by_mask(file_priv, args->metric_group_mask)) { @@ -96,6 +101,8 @@ err_free_ms: kfree(ms); unlock: mutex_unlock(&file_priv->ms_lock); + + ivpu_rpm_put(vdev); return ret; } @@ -160,6 +167,10 @@ int ivpu_ms_get_data_ioctl(struct drm_device *dev, void *data, struct drm_file * if (!args->metric_group_mask) return -EINVAL; + ret = ivpu_rpm_get(vdev); + if (ret < 0) + return ret; + mutex_lock(&file_priv->ms_lock); ms = get_instance_by_mask(file_priv, args->metric_group_mask); @@ -187,6 +198,7 @@ int ivpu_ms_get_data_ioctl(struct drm_device *dev, void *data, struct drm_file * unlock: mutex_unlock(&file_priv->ms_lock); + ivpu_rpm_put(vdev); return ret; } @@ -204,11 +216,17 @@ int ivpu_ms_stop_ioctl(struct drm_device *dev, void *data, struct drm_file *file { struct ivpu_file_priv *file_priv = file->driver_priv; struct drm_ivpu_metric_streamer_stop *args = data; + struct ivpu_device *vdev = file_priv->vdev; struct ivpu_ms_instance *ms; + int ret; if (!args->metric_group_mask) return -EINVAL; + ret = ivpu_rpm_get(vdev); + if (ret < 0) + return ret; + mutex_lock(&file_priv->ms_lock); ms = get_instance_by_mask(file_priv, args->metric_group_mask); @@ -217,6 +235,7 @@ int ivpu_ms_stop_ioctl(struct drm_device *dev, void *data, struct drm_file *file mutex_unlock(&file_priv->ms_lock); + ivpu_rpm_put(vdev); return ms ? 0 : -EINVAL; } @@ -281,6 +300,9 @@ unlock: void ivpu_ms_cleanup(struct ivpu_file_priv *file_priv) { struct ivpu_ms_instance *ms, *tmp; + struct ivpu_device *vdev = file_priv->vdev; + + pm_runtime_get_sync(vdev->drm.dev); mutex_lock(&file_priv->ms_lock); @@ -293,6 +315,8 @@ void ivpu_ms_cleanup(struct ivpu_file_priv *file_priv) free_instance(file_priv, ms); mutex_unlock(&file_priv->ms_lock); + + pm_runtime_put_autosuspend(vdev->drm.dev); } void ivpu_ms_cleanup_all(struct ivpu_device *vdev) diff --git a/drivers/acpi/button.c b/drivers/acpi/button.c index 90b09840536d..0a7026040188 100644 --- a/drivers/acpi/button.c +++ b/drivers/acpi/button.c @@ -458,7 +458,7 @@ static void acpi_button_notify(acpi_handle handle, u32 event, void *data) acpi_pm_wakeup_event(&device->dev); button = acpi_driver_data(device); - if (button->suspended) + if (button->suspended || event == ACPI_BUTTON_NOTIFY_WAKE) return; input = button->input; diff --git a/drivers/acpi/ec.c b/drivers/acpi/ec.c index 8db09d81918f..3c5f34892734 100644 --- a/drivers/acpi/ec.c +++ b/drivers/acpi/ec.c @@ -2301,6 +2301,34 @@ static const struct dmi_system_id acpi_ec_no_wakeup[] = { DMI_MATCH(DMI_PRODUCT_FAMILY, "103C_5336AN HP ZHAN 66 Pro"), }, }, + /* + * Lenovo Legion Go S; touchscreen blocks HW sleep when woken up from EC + * https://gitlab.freedesktop.org/drm/amd/-/issues/3929 + */ + { + .matches = { + DMI_MATCH(DMI_BOARD_VENDOR, "LENOVO"), + DMI_MATCH(DMI_PRODUCT_NAME, "83L3"), + } + }, + { + .matches = { + DMI_MATCH(DMI_BOARD_VENDOR, "LENOVO"), + DMI_MATCH(DMI_PRODUCT_NAME, "83N6"), + } + }, + { + .matches = { + DMI_MATCH(DMI_BOARD_VENDOR, "LENOVO"), + DMI_MATCH(DMI_PRODUCT_NAME, "83Q2"), + } + }, + { + .matches = { + DMI_MATCH(DMI_BOARD_VENDOR, "LENOVO"), + DMI_MATCH(DMI_PRODUCT_NAME, "83Q3"), + } + }, { }, }; diff --git a/drivers/acpi/pptt.c b/drivers/acpi/pptt.c index a35dd0e41c27..f73ce6e13065 100644 --- a/drivers/acpi/pptt.c +++ b/drivers/acpi/pptt.c @@ -229,7 +229,7 @@ static int acpi_pptt_leaf_node(struct acpi_table_header *table_hdr, node_entry = ACPI_PTR_DIFF(node, table_hdr); entry = ACPI_ADD_PTR(struct acpi_subtable_header, table_hdr, sizeof(struct acpi_table_pptt)); - proc_sz = sizeof(struct acpi_pptt_processor *); + proc_sz = sizeof(struct acpi_pptt_processor); while ((unsigned long)entry + proc_sz < table_end) { cpu_node = (struct acpi_pptt_processor *)entry; @@ -270,7 +270,7 @@ static struct acpi_pptt_processor *acpi_find_processor_node(struct acpi_table_he table_end = (unsigned long)table_hdr + table_hdr->length; entry = ACPI_ADD_PTR(struct acpi_subtable_header, table_hdr, sizeof(struct acpi_table_pptt)); - proc_sz = sizeof(struct acpi_pptt_processor *); + proc_sz = sizeof(struct acpi_pptt_processor); /* find the processor structure associated with this cpuid */ while ((unsigned long)entry + proc_sz < table_end) { diff --git a/drivers/ata/pata_pxa.c b/drivers/ata/pata_pxa.c index 434f380114af..03dbaf4a13a7 100644 --- a/drivers/ata/pata_pxa.c +++ b/drivers/ata/pata_pxa.c @@ -223,10 +223,16 @@ static int pxa_ata_probe(struct platform_device *pdev) ap->ioaddr.cmd_addr = devm_ioremap(&pdev->dev, cmd_res->start, resource_size(cmd_res)); + if (!ap->ioaddr.cmd_addr) + return -ENOMEM; ap->ioaddr.ctl_addr = devm_ioremap(&pdev->dev, ctl_res->start, resource_size(ctl_res)); + if (!ap->ioaddr.ctl_addr) + return -ENOMEM; ap->ioaddr.bmdma_addr = devm_ioremap(&pdev->dev, dma_res->start, resource_size(dma_res)); + if (!ap->ioaddr.bmdma_addr) + return -ENOMEM; /* * Adjust register offsets diff --git a/drivers/ata/sata_sx4.c b/drivers/ata/sata_sx4.c index a482741eb181..c3042eca6332 100644 --- a/drivers/ata/sata_sx4.c +++ b/drivers/ata/sata_sx4.c @@ -1117,9 +1117,14 @@ static int pdc20621_prog_dimm0(struct ata_host *host) mmio += PDC_CHIP0_OFS; for (i = 0; i < ARRAY_SIZE(pdc_i2c_read_data); i++) - pdc20621_i2c_read(host, PDC_DIMM0_SPD_DEV_ADDRESS, - pdc_i2c_read_data[i].reg, - &spd0[pdc_i2c_read_data[i].ofs]); + if (!pdc20621_i2c_read(host, PDC_DIMM0_SPD_DEV_ADDRESS, + pdc_i2c_read_data[i].reg, + &spd0[pdc_i2c_read_data[i].ofs])) { + dev_err(host->dev, + "Failed in i2c read at index %d: device=%#x, reg=%#x\n", + i, PDC_DIMM0_SPD_DEV_ADDRESS, pdc_i2c_read_data[i].reg); + return -EIO; + } data |= (spd0[4] - 8) | ((spd0[21] != 0) << 3) | ((spd0[3]-11) << 4); data |= ((spd0[17] / 4) << 6) | ((spd0[5] / 2) << 7) | @@ -1284,6 +1289,8 @@ static unsigned int pdc20621_dimm_init(struct ata_host *host) /* Programming DIMM0 Module Control Register (index_CID0:80h) */ size = pdc20621_prog_dimm0(host); + if (size < 0) + return size; dev_dbg(host->dev, "Local DIMM Size = %dMB\n", size); /* Programming DIMM Module Global Control Register (index_CID0:88h) */ diff --git a/drivers/block/Kconfig b/drivers/block/Kconfig index a97f2c40c640..2551ebf88dda 100644 --- a/drivers/block/Kconfig +++ b/drivers/block/Kconfig @@ -367,7 +367,7 @@ config BLK_DEV_RBD tristate "Rados block device (RBD)" depends on INET && BLOCK select CEPH_LIB - select LIBCRC32C + select CRC32 select CRYPTO_AES select CRYPTO help diff --git a/drivers/block/drbd/Kconfig b/drivers/block/drbd/Kconfig index 6fb4e38fca88..495a72da04c6 100644 --- a/drivers/block/drbd/Kconfig +++ b/drivers/block/drbd/Kconfig @@ -10,7 +10,7 @@ config BLK_DEV_DRBD tristate "DRBD Distributed Replicated Block Device support" depends on PROC_FS && INET select LRU_CACHE - select LIBCRC32C + select CRC32 help NOTE: In order to authenticate connections you have to select diff --git a/drivers/block/null_blk/main.c b/drivers/block/null_blk/main.c index 3bb9cee0a9b5..aa163ae9b2aa 100644 --- a/drivers/block/null_blk/main.c +++ b/drivers/block/null_blk/main.c @@ -2031,7 +2031,7 @@ static int null_add_dev(struct nullb_device *dev) nullb->disk->minors = 1; nullb->disk->fops = &null_ops; nullb->disk->private_data = nullb; - strscpy_pad(nullb->disk->disk_name, nullb->disk_name, DISK_NAME_LEN); + strscpy(nullb->disk->disk_name, nullb->disk_name); if (nullb->dev->zoned) { rv = null_register_zoned_dev(nullb); diff --git a/drivers/block/ublk_drv.c b/drivers/block/ublk_drv.c index 2fd05c1bd30b..cdb1543fa4a9 100644 --- a/drivers/block/ublk_drv.c +++ b/drivers/block/ublk_drv.c @@ -1140,6 +1140,25 @@ static void ublk_complete_rq(struct kref *ref) __ublk_complete_rq(req); } +static void ublk_do_fail_rq(struct request *req) +{ + struct ublk_queue *ubq = req->mq_hctx->driver_data; + + if (ublk_nosrv_should_reissue_outstanding(ubq->dev)) + blk_mq_requeue_request(req, false); + else + __ublk_complete_rq(req); +} + +static void ublk_fail_rq_fn(struct kref *ref) +{ + struct ublk_rq_data *data = container_of(ref, struct ublk_rq_data, + ref); + struct request *req = blk_mq_rq_from_pdu(data); + + ublk_do_fail_rq(req); +} + /* * Since ublk_rq_task_work_cb always fails requests immediately during * exiting, __ublk_fail_req() is only called from abort context during @@ -1153,10 +1172,13 @@ static void __ublk_fail_req(struct ublk_queue *ubq, struct ublk_io *io, { WARN_ON_ONCE(io->flags & UBLK_IO_FLAG_ACTIVE); - if (ublk_nosrv_should_reissue_outstanding(ubq->dev)) - blk_mq_requeue_request(req, false); - else - ublk_put_req_ref(ubq, req); + if (ublk_need_req_ref(ubq)) { + struct ublk_rq_data *data = blk_mq_rq_to_pdu(req); + + kref_put(&data->ref, ublk_fail_rq_fn); + } else { + ublk_do_fail_rq(req); + } } static void ubq_complete_io_cmd(struct ublk_io *io, int res, @@ -1349,7 +1371,8 @@ static enum blk_eh_timer_return ublk_timeout(struct request *rq) return BLK_EH_RESET_TIMER; } -static blk_status_t ublk_prep_req(struct ublk_queue *ubq, struct request *rq) +static blk_status_t ublk_prep_req(struct ublk_queue *ubq, struct request *rq, + bool check_cancel) { blk_status_t res; @@ -1368,7 +1391,7 @@ static blk_status_t ublk_prep_req(struct ublk_queue *ubq, struct request *rq) if (ublk_nosrv_should_queue_io(ubq) && unlikely(ubq->force_abort)) return BLK_STS_IOERR; - if (unlikely(ubq->canceling)) + if (check_cancel && unlikely(ubq->canceling)) return BLK_STS_IOERR; /* fill iod to slot in io cmd buffer */ @@ -1387,7 +1410,7 @@ static blk_status_t ublk_queue_rq(struct blk_mq_hw_ctx *hctx, struct request *rq = bd->rq; blk_status_t res; - res = ublk_prep_req(ubq, rq); + res = ublk_prep_req(ubq, rq, false); if (res != BLK_STS_OK) return res; @@ -1419,7 +1442,7 @@ static void ublk_queue_rqs(struct rq_list *rqlist) ublk_queue_cmd_list(ubq, &submit_list); ubq = this_q; - if (ublk_prep_req(ubq, req) == BLK_STS_OK) + if (ublk_prep_req(ubq, req, true) == BLK_STS_OK) rq_list_add_tail(&submit_list, req); else rq_list_add_tail(&requeue_list, req); @@ -2413,9 +2436,9 @@ static struct ublk_device *ublk_get_device_from_id(int idx) return ub; } -static int ublk_ctrl_start_dev(struct ublk_device *ub, struct io_uring_cmd *cmd) +static int ublk_ctrl_start_dev(struct ublk_device *ub, + const struct ublksrv_ctrl_cmd *header) { - const struct ublksrv_ctrl_cmd *header = io_uring_sqe_cmd(cmd->sqe); const struct ublk_param_basic *p = &ub->params.basic; int ublksrv_pid = (int)header->data[0]; struct queue_limits lim = { @@ -2534,9 +2557,8 @@ out_unlock: } static int ublk_ctrl_get_queue_affinity(struct ublk_device *ub, - struct io_uring_cmd *cmd) + const struct ublksrv_ctrl_cmd *header) { - const struct ublksrv_ctrl_cmd *header = io_uring_sqe_cmd(cmd->sqe); void __user *argp = (void __user *)(unsigned long)header->addr; cpumask_var_t cpumask; unsigned long queue; @@ -2585,9 +2607,8 @@ static inline void ublk_dump_dev_info(struct ublksrv_ctrl_dev_info *info) info->nr_hw_queues, info->queue_depth); } -static int ublk_ctrl_add_dev(struct io_uring_cmd *cmd) +static int ublk_ctrl_add_dev(const struct ublksrv_ctrl_cmd *header) { - const struct ublksrv_ctrl_cmd *header = io_uring_sqe_cmd(cmd->sqe); void __user *argp = (void __user *)(unsigned long)header->addr; struct ublksrv_ctrl_dev_info info; struct ublk_device *ub; @@ -2812,9 +2833,8 @@ static int ublk_ctrl_stop_dev(struct ublk_device *ub) } static int ublk_ctrl_get_dev_info(struct ublk_device *ub, - struct io_uring_cmd *cmd) + const struct ublksrv_ctrl_cmd *header) { - const struct ublksrv_ctrl_cmd *header = io_uring_sqe_cmd(cmd->sqe); void __user *argp = (void __user *)(unsigned long)header->addr; if (header->len < sizeof(struct ublksrv_ctrl_dev_info) || !header->addr) @@ -2843,9 +2863,8 @@ static void ublk_ctrl_fill_params_devt(struct ublk_device *ub) } static int ublk_ctrl_get_params(struct ublk_device *ub, - struct io_uring_cmd *cmd) + const struct ublksrv_ctrl_cmd *header) { - const struct ublksrv_ctrl_cmd *header = io_uring_sqe_cmd(cmd->sqe); void __user *argp = (void __user *)(unsigned long)header->addr; struct ublk_params_header ph; int ret; @@ -2874,9 +2893,8 @@ static int ublk_ctrl_get_params(struct ublk_device *ub, } static int ublk_ctrl_set_params(struct ublk_device *ub, - struct io_uring_cmd *cmd) + const struct ublksrv_ctrl_cmd *header) { - const struct ublksrv_ctrl_cmd *header = io_uring_sqe_cmd(cmd->sqe); void __user *argp = (void __user *)(unsigned long)header->addr; struct ublk_params_header ph; int ret = -EFAULT; @@ -2940,9 +2958,8 @@ static void ublk_queue_reinit(struct ublk_device *ub, struct ublk_queue *ubq) } static int ublk_ctrl_start_recovery(struct ublk_device *ub, - struct io_uring_cmd *cmd) + const struct ublksrv_ctrl_cmd *header) { - const struct ublksrv_ctrl_cmd *header = io_uring_sqe_cmd(cmd->sqe); int ret = -EINVAL; int i; @@ -2988,9 +3005,8 @@ static int ublk_ctrl_start_recovery(struct ublk_device *ub, } static int ublk_ctrl_end_recovery(struct ublk_device *ub, - struct io_uring_cmd *cmd) + const struct ublksrv_ctrl_cmd *header) { - const struct ublksrv_ctrl_cmd *header = io_uring_sqe_cmd(cmd->sqe); int ublksrv_pid = (int)header->data[0]; int ret = -EINVAL; int i; @@ -3037,9 +3053,8 @@ static int ublk_ctrl_end_recovery(struct ublk_device *ub, return ret; } -static int ublk_ctrl_get_features(struct io_uring_cmd *cmd) +static int ublk_ctrl_get_features(const struct ublksrv_ctrl_cmd *header) { - const struct ublksrv_ctrl_cmd *header = io_uring_sqe_cmd(cmd->sqe); void __user *argp = (void __user *)(unsigned long)header->addr; u64 features = UBLK_F_ALL; @@ -3178,7 +3193,7 @@ static int ublk_ctrl_uring_cmd(struct io_uring_cmd *cmd, goto out; if (cmd_op == UBLK_U_CMD_GET_FEATURES) { - ret = ublk_ctrl_get_features(cmd); + ret = ublk_ctrl_get_features(header); goto out; } @@ -3195,17 +3210,17 @@ static int ublk_ctrl_uring_cmd(struct io_uring_cmd *cmd, switch (_IOC_NR(cmd_op)) { case UBLK_CMD_START_DEV: - ret = ublk_ctrl_start_dev(ub, cmd); + ret = ublk_ctrl_start_dev(ub, header); break; case UBLK_CMD_STOP_DEV: ret = ublk_ctrl_stop_dev(ub); break; case UBLK_CMD_GET_DEV_INFO: case UBLK_CMD_GET_DEV_INFO2: - ret = ublk_ctrl_get_dev_info(ub, cmd); + ret = ublk_ctrl_get_dev_info(ub, header); break; case UBLK_CMD_ADD_DEV: - ret = ublk_ctrl_add_dev(cmd); + ret = ublk_ctrl_add_dev(header); break; case UBLK_CMD_DEL_DEV: ret = ublk_ctrl_del_dev(&ub, true); @@ -3214,19 +3229,19 @@ static int ublk_ctrl_uring_cmd(struct io_uring_cmd *cmd, ret = ublk_ctrl_del_dev(&ub, false); break; case UBLK_CMD_GET_QUEUE_AFFINITY: - ret = ublk_ctrl_get_queue_affinity(ub, cmd); + ret = ublk_ctrl_get_queue_affinity(ub, header); break; case UBLK_CMD_GET_PARAMS: - ret = ublk_ctrl_get_params(ub, cmd); + ret = ublk_ctrl_get_params(ub, header); break; case UBLK_CMD_SET_PARAMS: - ret = ublk_ctrl_set_params(ub, cmd); + ret = ublk_ctrl_set_params(ub, header); break; case UBLK_CMD_START_USER_RECOVERY: - ret = ublk_ctrl_start_recovery(ub, cmd); + ret = ublk_ctrl_start_recovery(ub, header); break; case UBLK_CMD_END_USER_RECOVERY: - ret = ublk_ctrl_end_recovery(ub, cmd); + ret = ublk_ctrl_end_recovery(ub, header); break; default: ret = -EOPNOTSUPP; diff --git a/drivers/char/agp/intel-gtt.c b/drivers/char/agp/intel-gtt.c index ef30445527a2..bcc26785175d 100644 --- a/drivers/char/agp/intel-gtt.c +++ b/drivers/char/agp/intel-gtt.c @@ -53,6 +53,7 @@ struct intel_gtt_driver { * of the mmio register file, that's done in the generic code. */ void (*cleanup)(void); void (*write_entry)(dma_addr_t addr, unsigned int entry, unsigned int flags); + dma_addr_t (*read_entry)(unsigned int entry, bool *is_present, bool *is_local); /* Flags is a more or less chipset specific opaque value. * For chipsets that need to support old ums (non-gem) code, this * needs to be identical to the various supported agp memory types! */ @@ -336,6 +337,19 @@ static void i810_write_entry(dma_addr_t addr, unsigned int entry, writel_relaxed(addr | pte_flags, intel_private.gtt + entry); } +static dma_addr_t i810_read_entry(unsigned int entry, + bool *is_present, bool *is_local) +{ + u32 val; + + val = readl(intel_private.gtt + entry); + + *is_present = val & I810_PTE_VALID; + *is_local = val & I810_PTE_LOCAL; + + return val & ~0xfff; +} + static resource_size_t intel_gtt_stolen_size(void) { u16 gmch_ctrl; @@ -741,6 +755,19 @@ static void i830_write_entry(dma_addr_t addr, unsigned int entry, writel_relaxed(addr | pte_flags, intel_private.gtt + entry); } +static dma_addr_t i830_read_entry(unsigned int entry, + bool *is_present, bool *is_local) +{ + u32 val; + + val = readl(intel_private.gtt + entry); + + *is_present = val & I810_PTE_VALID; + *is_local = false; + + return val & ~0xfff; +} + bool intel_gmch_enable_gtt(void) { u8 __iomem *reg; @@ -878,6 +905,13 @@ void intel_gmch_gtt_insert_sg_entries(struct sg_table *st, } EXPORT_SYMBOL(intel_gmch_gtt_insert_sg_entries); +dma_addr_t intel_gmch_gtt_read_entry(unsigned int pg, + bool *is_present, bool *is_local) +{ + return intel_private.driver->read_entry(pg, is_present, is_local); +} +EXPORT_SYMBOL(intel_gmch_gtt_read_entry); + #if IS_ENABLED(CONFIG_AGP_INTEL) static void intel_gmch_gtt_insert_pages(unsigned int first_entry, unsigned int num_entries, @@ -1126,6 +1160,19 @@ static void i965_write_entry(dma_addr_t addr, writel_relaxed(addr | pte_flags, intel_private.gtt + entry); } +static dma_addr_t i965_read_entry(unsigned int entry, + bool *is_present, bool *is_local) +{ + u64 val; + + val = readl(intel_private.gtt + entry); + + *is_present = val & I810_PTE_VALID; + *is_local = false; + + return ((val & 0xf0) << 28) | (val & ~0xfff); +} + static int i9xx_setup(void) { phys_addr_t reg_addr; @@ -1187,6 +1234,7 @@ static const struct intel_gtt_driver i81x_gtt_driver = { .cleanup = i810_cleanup, .check_flags = i830_check_flags, .write_entry = i810_write_entry, + .read_entry = i810_read_entry, }; static const struct intel_gtt_driver i8xx_gtt_driver = { .gen = 2, @@ -1194,6 +1242,7 @@ static const struct intel_gtt_driver i8xx_gtt_driver = { .setup = i830_setup, .cleanup = i830_cleanup, .write_entry = i830_write_entry, + .read_entry = i830_read_entry, .dma_mask_size = 32, .check_flags = i830_check_flags, .chipset_flush = i830_chipset_flush, @@ -1205,6 +1254,7 @@ static const struct intel_gtt_driver i915_gtt_driver = { .cleanup = i9xx_cleanup, /* i945 is the last gpu to need phys mem (for overlay and cursors). */ .write_entry = i830_write_entry, + .read_entry = i830_read_entry, .dma_mask_size = 32, .check_flags = i830_check_flags, .chipset_flush = i9xx_chipset_flush, @@ -1215,6 +1265,7 @@ static const struct intel_gtt_driver g33_gtt_driver = { .setup = i9xx_setup, .cleanup = i9xx_cleanup, .write_entry = i965_write_entry, + .read_entry = i965_read_entry, .dma_mask_size = 36, .check_flags = i830_check_flags, .chipset_flush = i9xx_chipset_flush, @@ -1225,6 +1276,7 @@ static const struct intel_gtt_driver pineview_gtt_driver = { .setup = i9xx_setup, .cleanup = i9xx_cleanup, .write_entry = i965_write_entry, + .read_entry = i965_read_entry, .dma_mask_size = 36, .check_flags = i830_check_flags, .chipset_flush = i9xx_chipset_flush, @@ -1235,6 +1287,7 @@ static const struct intel_gtt_driver i965_gtt_driver = { .setup = i9xx_setup, .cleanup = i9xx_cleanup, .write_entry = i965_write_entry, + .read_entry = i965_read_entry, .dma_mask_size = 36, .check_flags = i830_check_flags, .chipset_flush = i9xx_chipset_flush, @@ -1244,6 +1297,7 @@ static const struct intel_gtt_driver g4x_gtt_driver = { .setup = i9xx_setup, .cleanup = i9xx_cleanup, .write_entry = i965_write_entry, + .read_entry = i965_read_entry, .dma_mask_size = 36, .check_flags = i830_check_flags, .chipset_flush = i9xx_chipset_flush, @@ -1254,6 +1308,7 @@ static const struct intel_gtt_driver ironlake_gtt_driver = { .setup = i9xx_setup, .cleanup = i9xx_cleanup, .write_entry = i965_write_entry, + .read_entry = i965_read_entry, .dma_mask_size = 36, .check_flags = i830_check_flags, .chipset_flush = i9xx_chipset_flush, diff --git a/drivers/dma-buf/udmabuf.c b/drivers/dma-buf/udmabuf.c index 2fa2c9135eac..7eee3eb47a8e 100644 --- a/drivers/dma-buf/udmabuf.c +++ b/drivers/dma-buf/udmabuf.c @@ -392,7 +392,7 @@ static long udmabuf_create(struct miscdevice *device, if (!ubuf) return -ENOMEM; - pglimit = (size_limit_mb * 1024 * 1024) >> PAGE_SHIFT; + pglimit = ((u64)size_limit_mb * 1024 * 1024) >> PAGE_SHIFT; for (i = 0; i < head->count; i++) { pgoff_t subpgcnt; diff --git a/drivers/firmware/smccc/kvm_guest.c b/drivers/firmware/smccc/kvm_guest.c index 5767aed25cdc..a123c05cbc9e 100644 --- a/drivers/firmware/smccc/kvm_guest.c +++ b/drivers/firmware/smccc/kvm_guest.c @@ -95,7 +95,7 @@ void __init kvm_arm_target_impl_cpu_init(void) for (i = 0; i < max_cpus; i++) { arm_smccc_1_1_invoke(ARM_SMCCC_VENDOR_HYP_KVM_DISCOVER_IMPL_CPUS_FUNC_ID, - i, &res); + i, 0, 0, &res); if (res.a0 != SMCCC_RET_SUCCESS) { pr_warn("Discovering target implementation CPUs failed\n"); goto mem_free; @@ -103,7 +103,7 @@ void __init kvm_arm_target_impl_cpu_init(void) target[i].midr = res.a1; target[i].revidr = res.a2; target[i].aidr = res.a3; - }; + } if (!cpu_errata_set_target_impl(max_cpus, target)) { pr_warn("Failed to set target implementation CPUs\n"); diff --git a/drivers/gpio/TODO b/drivers/gpio/TODO index b5f0a7a2e1bf..4b70cbaa1caa 100644 --- a/drivers/gpio/TODO +++ b/drivers/gpio/TODO @@ -186,3 +186,37 @@ their hardware offsets within the chip. Encourage users to switch to using them and eventually remove the existing global export/unexport attribues. + +------------------------------------------------------------------------------- + +Remove GPIOD_FLAGS_BIT_NONEXCLUSIVE + +GPIOs in the linux kernel are meant to be an exclusive resource. This means +that the GPIO descriptors (the software representation of the hardware concept) +are not reference counted and - in general - only one user at a time can +request a GPIO line and control its settings. The consumer API is designed +around full control of the line's state as evidenced by the fact that, for +instance, gpiod_set_value() does indeed drive the line as requested, instead +of bumping an enable counter of some sort. + +A problematic use-case for GPIOs is when two consumers want to use the same +descriptor independently. An example of such a user is the regulator subsystem +which may instantiate several struct regulator_dev instances containing +a struct device but using the same enable GPIO line. + +A workaround was introduced in the form of the GPIOD_FLAGS_BIT_NONEXCLUSIVE +flag but its implementation is problematic: it does not provide any +synchronization of usage nor did it introduce any enable count meaning the +non-exclusive users of the same descriptor will in fact "fight" for the +control over it. This flag should be removed and replaced with a better +solution, possibly based on the new power sequencing subsystem. + +------------------------------------------------------------------------------- + +Remove devm_gpiod_unhinge() + +devm_gpiod_unhinge() is provided as a way to transfer the ownership of managed +enable GPIOs to the regulator core. Rather than doing that however, we should +make it possible for the regulator subsystem to deal with GPIO resources the +lifetime of which it doesn't control as logically, a GPIO obtained by a caller +should also be freed by it. diff --git a/drivers/gpio/gpio-mpc8xxx.c b/drivers/gpio/gpio-mpc8xxx.c index 0cd4c36ae8aa..541517536489 100644 --- a/drivers/gpio/gpio-mpc8xxx.c +++ b/drivers/gpio/gpio-mpc8xxx.c @@ -410,7 +410,9 @@ static int mpc8xxx_probe(struct platform_device *pdev) goto err; } - device_init_wakeup(dev, true); + ret = devm_device_init_wakeup(dev); + if (ret) + return dev_err_probe(dev, ret, "Failed to init wakeup\n"); return 0; err: diff --git a/drivers/gpio/gpio-tegra186.c b/drivers/gpio/gpio-tegra186.c index 6895b65c86af..d27bfac6c9f5 100644 --- a/drivers/gpio/gpio-tegra186.c +++ b/drivers/gpio/gpio-tegra186.c @@ -823,6 +823,7 @@ static int tegra186_gpio_probe(struct platform_device *pdev) struct gpio_irq_chip *irq; struct tegra_gpio *gpio; struct device_node *np; + struct resource *res; char **names; int err; @@ -842,19 +843,19 @@ static int tegra186_gpio_probe(struct platform_device *pdev) gpio->num_banks++; /* get register apertures */ - gpio->secure = devm_platform_ioremap_resource_byname(pdev, "security"); - if (IS_ERR(gpio->secure)) { - gpio->secure = devm_platform_ioremap_resource(pdev, 0); - if (IS_ERR(gpio->secure)) - return PTR_ERR(gpio->secure); - } + res = platform_get_resource_byname(pdev, IORESOURCE_MEM, "security"); + if (!res) + res = platform_get_resource(pdev, IORESOURCE_MEM, 0); + gpio->secure = devm_ioremap_resource(&pdev->dev, res); + if (IS_ERR(gpio->secure)) + return PTR_ERR(gpio->secure); - gpio->base = devm_platform_ioremap_resource_byname(pdev, "gpio"); - if (IS_ERR(gpio->base)) { - gpio->base = devm_platform_ioremap_resource(pdev, 1); - if (IS_ERR(gpio->base)) - return PTR_ERR(gpio->base); - } + res = platform_get_resource_byname(pdev, IORESOURCE_MEM, "gpio"); + if (!res) + res = platform_get_resource(pdev, IORESOURCE_MEM, 1); + gpio->base = devm_ioremap_resource(&pdev->dev, res); + if (IS_ERR(gpio->base)) + return PTR_ERR(gpio->base); err = platform_irq_count(pdev); if (err < 0) diff --git a/drivers/gpio/gpio-zynq.c b/drivers/gpio/gpio-zynq.c index be81fa2b17ab..3dae63f3ea21 100644 --- a/drivers/gpio/gpio-zynq.c +++ b/drivers/gpio/gpio-zynq.c @@ -1011,6 +1011,7 @@ static void zynq_gpio_remove(struct platform_device *pdev) ret = pm_runtime_get_sync(&pdev->dev); if (ret < 0) dev_warn(&pdev->dev, "pm_runtime_get_sync() Failed\n"); + device_init_wakeup(&pdev->dev, 0); gpiochip_remove(&gpio->chip); device_set_wakeup_capable(&pdev->dev, 0); pm_runtime_disable(&pdev->dev); diff --git a/drivers/gpio/gpiolib-devres.c b/drivers/gpio/gpiolib-devres.c index 08205f355ceb..120d1ec5af3b 100644 --- a/drivers/gpio/gpiolib-devres.c +++ b/drivers/gpio/gpiolib-devres.c @@ -317,11 +317,15 @@ EXPORT_SYMBOL_GPL(devm_gpiod_put); * @dev: GPIO consumer * @desc: GPIO descriptor to remove resource management from * + * *DEPRECATED* + * This function should not be used. It's been provided as a workaround for + * resource ownership issues in the regulator framework and should be replaced + * with a better solution. + * * Remove resource management from a GPIO descriptor. This is needed when * you want to hand over lifecycle management of a descriptor to another * mechanism. */ - void devm_gpiod_unhinge(struct device *dev, struct gpio_desc *desc) { int ret; diff --git a/drivers/gpio/gpiolib-of.c b/drivers/gpio/gpiolib-of.c index eb667f8f1ead..65f6a7177b78 100644 --- a/drivers/gpio/gpiolib-of.c +++ b/drivers/gpio/gpiolib-of.c @@ -193,6 +193,8 @@ static void of_gpio_try_fixup_polarity(const struct device_node *np, */ { "himax,hx8357", "gpios-reset", false }, { "himax,hx8369", "gpios-reset", false }, +#endif +#if IS_ENABLED(CONFIG_MTD_NAND_JZ4780) /* * The rb-gpios semantics was undocumented and qi,lb60 (along with * the ingenic driver) got it wrong. The active state encodes the @@ -266,6 +268,9 @@ static void of_gpio_set_polarity_by_property(const struct device_node *np, { "fsl,imx8qm-fec", "phy-reset-gpios", "phy-reset-active-high" }, { "fsl,s32v234-fec", "phy-reset-gpios", "phy-reset-active-high" }, #endif +#if IS_ENABLED(CONFIG_MMC_ATMELMCI) + { "atmel,hsmci", "cd-gpios", "cd-inverted" }, +#endif #if IS_ENABLED(CONFIG_PCI_IMX6) { "fsl,imx6q-pcie", "reset-gpio", "reset-gpio-active-high" }, { "fsl,imx6sx-pcie", "reset-gpio", "reset-gpio-active-high" }, @@ -291,9 +296,6 @@ static void of_gpio_set_polarity_by_property(const struct device_node *np, #if IS_ENABLED(CONFIG_REGULATOR_GPIO) { "regulator-gpio", "enable-gpio", "enable-active-high" }, { "regulator-gpio", "enable-gpios", "enable-active-high" }, -#endif -#if IS_ENABLED(CONFIG_MMC_ATMELMCI) - { "atmel,hsmci", "cd-gpios", "cd-inverted" }, #endif }; unsigned int i; diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu.h b/drivers/gpu/drm/amd/amdgpu/amdgpu.h index 6d83ccfa42ee..2c04ae133848 100644 --- a/drivers/gpu/drm/amd/amdgpu/amdgpu.h +++ b/drivers/gpu/drm/amd/amdgpu/amdgpu.h @@ -353,7 +353,6 @@ enum amdgpu_kiq_irq { AMDGPU_CP_KIQ_IRQ_DRIVER0 = 0, AMDGPU_CP_KIQ_IRQ_LAST }; -#define SRIOV_USEC_TIMEOUT 1200000 /* wait 12 * 100ms for SRIOV */ #define MAX_KIQ_REG_WAIT 5000 /* in usecs, 5ms */ #define MAX_KIQ_REG_BAILOUT_INTERVAL 5 /* in msecs, 5ms */ #define MAX_KIQ_REG_TRY 1000 diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_device.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_device.c index a30111d2c3ea..b34b915203f2 100644 --- a/drivers/gpu/drm/amd/amdgpu/amdgpu_device.c +++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_device.c @@ -3643,6 +3643,13 @@ static int amdgpu_device_ip_suspend_phase2(struct amdgpu_device *adev) adev, adev->ip_blocks[i].version->type)) continue; + /* Since we skip suspend for S0i3, we need to cancel the delayed + * idle work here as the suspend callback never gets called. + */ + if (adev->in_s0ix && + adev->ip_blocks[i].version->type == AMD_IP_BLOCK_TYPE_GFX && + amdgpu_ip_version(adev, GC_HWIP, 0) >= IP_VERSION(10, 0, 0)) + cancel_delayed_work_sync(&adev->gfx.idle_work); /* skip suspend of gfx/mes and psp for S0ix * gfx is in gfxoff state, so on resume it will exit gfxoff just * like at runtime. PSP is also part of the always on hardware diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_discovery.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_discovery.c index dc2713ec95a5..9e738fae2b74 100644 --- a/drivers/gpu/drm/amd/amdgpu/amdgpu_discovery.c +++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_discovery.c @@ -120,6 +120,8 @@ MODULE_FIRMWARE("amdgpu/vega20_ip_discovery.bin"); MODULE_FIRMWARE("amdgpu/raven_ip_discovery.bin"); MODULE_FIRMWARE("amdgpu/raven2_ip_discovery.bin"); MODULE_FIRMWARE("amdgpu/picasso_ip_discovery.bin"); +MODULE_FIRMWARE("amdgpu/arcturus_ip_discovery.bin"); +MODULE_FIRMWARE("amdgpu/aldebaran_ip_discovery.bin"); #define mmIP_DISCOVERY_VERSION 0x16A00 #define mmRCC_CONFIG_MEMSIZE 0xde3 diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_dma_buf.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_dma_buf.c index 9f627caedc3f..667080cc9ae1 100644 --- a/drivers/gpu/drm/amd/amdgpu/amdgpu_dma_buf.c +++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_dma_buf.c @@ -75,11 +75,25 @@ static int amdgpu_dma_buf_attach(struct dma_buf *dmabuf, */ static int amdgpu_dma_buf_pin(struct dma_buf_attachment *attach) { - struct drm_gem_object *obj = attach->dmabuf->priv; - struct amdgpu_bo *bo = gem_to_amdgpu_bo(obj); + struct dma_buf *dmabuf = attach->dmabuf; + struct amdgpu_bo *bo = gem_to_amdgpu_bo(dmabuf->priv); + u32 domains = bo->preferred_domains; - /* pin buffer into GTT */ - return amdgpu_bo_pin(bo, AMDGPU_GEM_DOMAIN_GTT); + dma_resv_assert_held(dmabuf->resv); + + /* + * Try pinning into VRAM to allow P2P with RDMA NICs without ODP + * support if all attachments can do P2P. If any attachment can't do + * P2P just pin into GTT instead. + */ + list_for_each_entry(attach, &dmabuf->attachments, node) + if (!attach->peer2peer) + domains &= ~AMDGPU_GEM_DOMAIN_VRAM; + + if (domains & AMDGPU_GEM_DOMAIN_VRAM) + bo->flags |= AMDGPU_GEM_CREATE_CPU_ACCESS_REQUIRED; + + return amdgpu_bo_pin(bo, domains); } /** @@ -134,9 +148,6 @@ static struct sg_table *amdgpu_dma_buf_map(struct dma_buf_attachment *attach, r = ttm_bo_validate(&bo->tbo, &bo->placement, &ctx); if (r) return ERR_PTR(r); - - } else if (bo->tbo.resource->mem_type != TTM_PL_TT) { - return ERR_PTR(-EBUSY); } switch (bo->tbo.resource->mem_type) { @@ -184,7 +195,7 @@ static void amdgpu_dma_buf_unmap(struct dma_buf_attachment *attach, struct sg_table *sgt, enum dma_data_direction dir) { - if (sgt->sgl->page_link) { + if (sg_page(sgt->sgl)) { dma_unmap_sgtable(attach->dev, sgt, dir, 0); sg_free_table(sgt); kfree(sgt); diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_gmc.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_gmc.c index 464625282872..ecb74ccf1d90 100644 --- a/drivers/gpu/drm/amd/amdgpu/amdgpu_gmc.c +++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_gmc.c @@ -699,12 +699,10 @@ int amdgpu_gmc_flush_gpu_tlb_pasid(struct amdgpu_device *adev, uint16_t pasid, uint32_t flush_type, bool all_hub, uint32_t inst) { - u32 usec_timeout = amdgpu_sriov_vf(adev) ? SRIOV_USEC_TIMEOUT : - adev->usec_timeout; struct amdgpu_ring *ring = &adev->gfx.kiq[inst].ring; struct amdgpu_kiq *kiq = &adev->gfx.kiq[inst]; unsigned int ndw; - int r; + int r, cnt = 0; uint32_t seq; /* @@ -761,10 +759,21 @@ int amdgpu_gmc_flush_gpu_tlb_pasid(struct amdgpu_device *adev, uint16_t pasid, amdgpu_ring_commit(ring); spin_unlock(&adev->gfx.kiq[inst].ring_lock); - if (amdgpu_fence_wait_polling(ring, seq, usec_timeout) < 1) { + + r = amdgpu_fence_wait_polling(ring, seq, MAX_KIQ_REG_WAIT); + + might_sleep(); + while (r < 1 && cnt++ < MAX_KIQ_REG_TRY && + !amdgpu_reset_pending(adev->reset_domain)) { + msleep(MAX_KIQ_REG_BAILOUT_INTERVAL); + r = amdgpu_fence_wait_polling(ring, seq, MAX_KIQ_REG_WAIT); + } + + if (cnt > MAX_KIQ_REG_TRY) { dev_err(adev->dev, "timeout waiting for kiq fence\n"); r = -ETIME; - } + } else + r = 0; } error_unlock_reset: diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_object.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_object.c index 80cd6f5273db..0b9987781f76 100644 --- a/drivers/gpu/drm/amd/amdgpu/amdgpu_object.c +++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_object.c @@ -163,8 +163,8 @@ void amdgpu_bo_placement_from_domain(struct amdgpu_bo *abo, u32 domain) * When GTT is just an alternative to VRAM make sure that we * only use it as fallback and still try to fill up VRAM first. */ - if (domain & abo->preferred_domains & AMDGPU_GEM_DOMAIN_VRAM && - !(adev->flags & AMD_IS_APU)) + if (abo->tbo.resource && !(adev->flags & AMD_IS_APU) && + domain & abo->preferred_domains & AMDGPU_GEM_DOMAIN_VRAM) places[c].flags |= TTM_PL_FLAG_FALLBACK; c++; } diff --git a/drivers/gpu/drm/amd/amdgpu/amdgpu_vram_mgr.c b/drivers/gpu/drm/amd/amdgpu/amdgpu_vram_mgr.c index 6da8994e0469..2d7f82e98df9 100644 --- a/drivers/gpu/drm/amd/amdgpu/amdgpu_vram_mgr.c +++ b/drivers/gpu/drm/amd/amdgpu/amdgpu_vram_mgr.c @@ -24,6 +24,7 @@ #include #include +#include #include "amdgpu.h" #include "amdgpu_vm.h" @@ -907,6 +908,9 @@ int amdgpu_vram_mgr_init(struct amdgpu_device *adev) struct ttm_resource_manager *man = &mgr->manager; int err; + man->cg = drmm_cgroup_register_region(adev_to_drm(adev), "vram", adev->gmc.real_vram_size); + if (IS_ERR(man->cg)) + return PTR_ERR(man->cg); ttm_resource_manager_init(man, &adev->mman.bdev, adev->gmc.real_vram_size); diff --git a/drivers/gpu/drm/amd/amdgpu/mes_v11_0.c b/drivers/gpu/drm/amd/amdgpu/mes_v11_0.c index e65916ada23b..ef9538fbbf53 100644 --- a/drivers/gpu/drm/amd/amdgpu/mes_v11_0.c +++ b/drivers/gpu/drm/amd/amdgpu/mes_v11_0.c @@ -894,6 +894,10 @@ static void mes_v11_0_get_fw_version(struct amdgpu_device *adev) { int pipe; + /* return early if we have already fetched these */ + if (adev->mes.sched_version && adev->mes.kiq_version) + return; + /* get MES scheduler/KIQ versions */ mutex_lock(&adev->srbm_mutex); diff --git a/drivers/gpu/drm/amd/amdgpu/mes_v12_0.c b/drivers/gpu/drm/amd/amdgpu/mes_v12_0.c index 183dd3346da5..e6ab617b9a40 100644 --- a/drivers/gpu/drm/amd/amdgpu/mes_v12_0.c +++ b/drivers/gpu/drm/amd/amdgpu/mes_v12_0.c @@ -1392,17 +1392,20 @@ static int mes_v12_0_queue_init(struct amdgpu_device *adev, mes_v12_0_queue_init_register(ring); } - /* get MES scheduler/KIQ versions */ - mutex_lock(&adev->srbm_mutex); - soc21_grbm_select(adev, 3, pipe, 0, 0); + if (((pipe == AMDGPU_MES_SCHED_PIPE) && !adev->mes.sched_version) || + ((pipe == AMDGPU_MES_KIQ_PIPE) && !adev->mes.kiq_version)) { + /* get MES scheduler/KIQ versions */ + mutex_lock(&adev->srbm_mutex); + soc21_grbm_select(adev, 3, pipe, 0, 0); - if (pipe == AMDGPU_MES_SCHED_PIPE) - adev->mes.sched_version = RREG32_SOC15(GC, 0, regCP_MES_GP3_LO); - else if (pipe == AMDGPU_MES_KIQ_PIPE && adev->enable_mes_kiq) - adev->mes.kiq_version = RREG32_SOC15(GC, 0, regCP_MES_GP3_LO); + if (pipe == AMDGPU_MES_SCHED_PIPE) + adev->mes.sched_version = RREG32_SOC15(GC, 0, regCP_MES_GP3_LO); + else if (pipe == AMDGPU_MES_KIQ_PIPE && adev->enable_mes_kiq) + adev->mes.kiq_version = RREG32_SOC15(GC, 0, regCP_MES_GP3_LO); - soc21_grbm_select(adev, 0, 0, 0, 0); - mutex_unlock(&adev->srbm_mutex); + soc21_grbm_select(adev, 0, 0, 0, 0); + mutex_unlock(&adev->srbm_mutex); + } return 0; } diff --git a/drivers/gpu/drm/amd/amdkfd/kfd_topology.c b/drivers/gpu/drm/amd/amdkfd/kfd_topology.c index e477d7509646..9bbee484d57c 100644 --- a/drivers/gpu/drm/amd/amdkfd/kfd_topology.c +++ b/drivers/gpu/drm/amd/amdkfd/kfd_topology.c @@ -1983,9 +1983,6 @@ static void kfd_topology_set_capabilities(struct kfd_topology_device *dev) if (kfd_dbg_has_ttmps_always_setup(dev->gpu)) dev->node_props.debug_prop |= HSA_DBG_DISPATCH_INFO_ALWAYS_VALID; - if (dev->gpu->adev->sdma.supported_reset & AMDGPU_RESET_TYPE_PER_QUEUE) - dev->node_props.capability2 |= HSA_CAP2_PER_SDMA_QUEUE_RESET_SUPPORTED; - if (KFD_GC_VERSION(dev->gpu) < IP_VERSION(10, 0, 0)) { if (KFD_GC_VERSION(dev->gpu) == IP_VERSION(9, 4, 3) || KFD_GC_VERSION(dev->gpu) == IP_VERSION(9, 4, 4)) @@ -2001,7 +1998,11 @@ static void kfd_topology_set_capabilities(struct kfd_topology_device *dev) dev->node_props.capability |= HSA_CAP_TRAP_DEBUG_PRECISE_MEMORY_OPERATIONS_SUPPORTED; - dev->node_props.capability |= HSA_CAP_PER_QUEUE_RESET_SUPPORTED; + if (!amdgpu_sriov_vf(dev->gpu->adev)) + dev->node_props.capability |= HSA_CAP_PER_QUEUE_RESET_SUPPORTED; + + if (dev->gpu->adev->sdma.supported_reset & AMDGPU_RESET_TYPE_PER_QUEUE) + dev->node_props.capability2 |= HSA_CAP2_PER_SDMA_QUEUE_RESET_SUPPORTED; } else { dev->node_props.debug_prop |= HSA_DBG_WATCH_ADDR_MASK_LO_BIT_GFX10 | HSA_DBG_WATCH_ADDR_MASK_HI_BIT; diff --git a/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm.c b/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm.c index d0d8ad5368c3..9fed4471405f 100644 --- a/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm.c +++ b/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm.c @@ -1722,6 +1722,13 @@ static const struct dmi_system_id dmi_quirk_table[] = { DMI_MATCH(DMI_PRODUCT_NAME, "HP Elite mt645 G8 Mobile Thin Client"), }, }, + { + .callback = edp0_on_dp1_callback, + .matches = { + DMI_MATCH(DMI_SYS_VENDOR, "HP"), + DMI_MATCH(DMI_PRODUCT_NAME, "HP EliteBook 645 14 inch G11 Notebook PC"), + }, + }, { .callback = edp0_on_dp1_callback, .matches = { @@ -1729,6 +1736,20 @@ static const struct dmi_system_id dmi_quirk_table[] = { DMI_MATCH(DMI_PRODUCT_NAME, "HP EliteBook 665 16 inch G11 Notebook PC"), }, }, + { + .callback = edp0_on_dp1_callback, + .matches = { + DMI_MATCH(DMI_SYS_VENDOR, "HP"), + DMI_MATCH(DMI_PRODUCT_NAME, "HP ProBook 445 14 inch G11 Notebook PC"), + }, + }, + { + .callback = edp0_on_dp1_callback, + .matches = { + DMI_MATCH(DMI_SYS_VENDOR, "HP"), + DMI_MATCH(DMI_PRODUCT_NAME, "HP ProBook 465 16 inch G11 Notebook PC"), + }, + }, {} /* TODO: refactor this from a fixed table to a dynamic option */ }; diff --git a/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_crtc.c b/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_crtc.c index 36a830a7440f..e8bdd7f0c460 100644 --- a/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_crtc.c +++ b/drivers/gpu/drm/amd/display/amdgpu_dm/amdgpu_dm_crtc.c @@ -113,6 +113,7 @@ bool amdgpu_dm_crtc_vrr_active(const struct dm_crtc_state *dm_state) * * Panel Replay and PSR SU * - Enable when: + * - VRR is disabled * - vblank counter is disabled * - entry is allowed: usermode demonstrates an adequate number of fast * commits) @@ -131,19 +132,20 @@ static void amdgpu_dm_crtc_set_panel_sr_feature( bool is_sr_active = (link->replay_settings.replay_allow_active || link->psr_settings.psr_allow_active); bool is_crc_window_active = false; + bool vrr_active = amdgpu_dm_crtc_vrr_active_irq(vblank_work->acrtc); #ifdef CONFIG_DRM_AMD_SECURE_DISPLAY is_crc_window_active = amdgpu_dm_crc_window_is_activated(&vblank_work->acrtc->base); #endif - if (link->replay_settings.replay_feature_enabled && + if (link->replay_settings.replay_feature_enabled && !vrr_active && allow_sr_entry && !is_sr_active && !is_crc_window_active) { amdgpu_dm_replay_enable(vblank_work->stream, true); } else if (vblank_enabled) { if (link->psr_settings.psr_version < DC_PSR_VERSION_SU_1 && is_sr_active) amdgpu_dm_psr_disable(vblank_work->stream, false); - } else if (link->psr_settings.psr_feature_enabled && + } else if (link->psr_settings.psr_feature_enabled && !vrr_active && allow_sr_entry && !is_sr_active && !is_crc_window_active) { struct amdgpu_dm_connector *aconn = @@ -244,6 +246,8 @@ static void amdgpu_dm_crtc_vblank_control_worker(struct work_struct *work) struct vblank_control_work *vblank_work = container_of(work, struct vblank_control_work, work); struct amdgpu_display_manager *dm = vblank_work->dm; + struct amdgpu_device *adev = drm_to_adev(dm->ddev); + int r; mutex_lock(&dm->dc_lock); @@ -271,8 +275,15 @@ static void amdgpu_dm_crtc_vblank_control_worker(struct work_struct *work) vblank_work->acrtc->dm_irq_params.allow_sr_entry); } - if (dm->active_vblank_irq_count == 0) + if (dm->active_vblank_irq_count == 0) { + r = amdgpu_dpm_pause_power_profile(adev, true); + if (r) + dev_warn(adev->dev, "failed to set default power profile mode\n"); dc_allow_idle_optimizations(dm->dc, true); + r = amdgpu_dpm_pause_power_profile(adev, false); + if (r) + dev_warn(adev->dev, "failed to restore the power profile mode\n"); + } mutex_unlock(&dm->dc_lock); diff --git a/drivers/gpu/drm/amd/display/dc/dml2/dml21/dml21_wrapper.c b/drivers/gpu/drm/amd/display/dc/dml2/dml21/dml21_wrapper.c index be54f0e696ce..94e99e540691 100644 --- a/drivers/gpu/drm/amd/display/dc/dml2/dml21/dml21_wrapper.c +++ b/drivers/gpu/drm/amd/display/dc/dml2/dml21/dml21_wrapper.c @@ -86,6 +86,8 @@ static void dml21_init(const struct dc *in_dc, struct dml2_context **dml_ctx, co /* Store configuration options */ (*dml_ctx)->config = *config; + DC_FP_START(); + /*Initialize SOCBB and DCNIP params */ dml21_initialize_soc_bb_params(&(*dml_ctx)->v21.dml_init, config, in_dc); dml21_initialize_ip_params(&(*dml_ctx)->v21.dml_init, config, in_dc); @@ -96,6 +98,8 @@ static void dml21_init(const struct dc *in_dc, struct dml2_context **dml_ctx, co /*Initialize DML21 instance */ dml2_initialize_instance(&(*dml_ctx)->v21.dml_init); + + DC_FP_END(); } bool dml21_create(const struct dc *in_dc, struct dml2_context **dml_ctx, const struct dml2_configuration_options *config) @@ -283,11 +287,16 @@ bool dml21_validate(const struct dc *in_dc, struct dc_state *context, struct dml { bool out = false; + DC_FP_START(); + /* Use dml_validate_only for fast_validate path */ - if (fast_validate) { + if (fast_validate) out = dml21_check_mode_support(in_dc, context, dml_ctx); - } else + else out = dml21_mode_check_and_programming(in_dc, context, dml_ctx); + + DC_FP_END(); + return out; } @@ -426,8 +435,12 @@ void dml21_copy(struct dml2_context *dst_dml_ctx, dst_dml_ctx->v21.mode_programming.programming = dst_dml2_programming; + DC_FP_START(); + /* need to initialize copied instance for internal references to be correct */ dml2_initialize_instance(&dst_dml_ctx->v21.dml_init); + + DC_FP_END(); } bool dml21_create_copy(struct dml2_context **dst_dml_ctx, diff --git a/drivers/gpu/drm/amd/display/dc/dml2/dml2_wrapper.c b/drivers/gpu/drm/amd/display/dc/dml2/dml2_wrapper.c index 939ee0708bd2..f549a778f6f1 100644 --- a/drivers/gpu/drm/amd/display/dc/dml2/dml2_wrapper.c +++ b/drivers/gpu/drm/amd/display/dc/dml2/dml2_wrapper.c @@ -732,11 +732,16 @@ bool dml2_validate(const struct dc *in_dc, struct dc_state *context, struct dml2 return out; } + DC_FP_START(); + /* Use dml_validate_only for fast_validate path */ if (fast_validate) out = dml2_validate_only(context); else out = dml2_validate_and_build_resource(in_dc, context); + + DC_FP_END(); + return out; } @@ -779,11 +784,15 @@ static void dml2_init(const struct dc *in_dc, const struct dml2_configuration_op break; } + DC_FP_START(); + initialize_dml2_ip_params(*dml2, in_dc, &(*dml2)->v20.dml_core_ctx.ip); initialize_dml2_soc_bbox(*dml2, in_dc, &(*dml2)->v20.dml_core_ctx.soc); initialize_dml2_soc_states(*dml2, in_dc, &(*dml2)->v20.dml_core_ctx.soc, &(*dml2)->v20.dml_core_ctx.states); + + DC_FP_END(); } bool dml2_create(const struct dc *in_dc, const struct dml2_configuration_options *config, struct dml2_context **dml2) diff --git a/drivers/gpu/drm/amd/include/kgd_pp_interface.h b/drivers/gpu/drm/amd/include/kgd_pp_interface.h index 2a9606118d89..21dc956b5f35 100644 --- a/drivers/gpu/drm/amd/include/kgd_pp_interface.h +++ b/drivers/gpu/drm/amd/include/kgd_pp_interface.h @@ -429,6 +429,7 @@ struct amd_pm_funcs { int (*set_pp_table)(void *handle, const char *buf, size_t size); void (*debugfs_print_current_performance_level)(void *handle, struct seq_file *m); int (*switch_power_profile)(void *handle, enum PP_SMC_POWER_PROFILE type, bool en); + int (*pause_power_profile)(void *handle, bool pause); /* export to amdgpu */ struct amd_vce_state *(*get_vce_clock_state)(void *handle, u32 idx); int (*dispatch_tasks)(void *handle, enum amd_pp_task task_id, diff --git a/drivers/gpu/drm/amd/pm/amdgpu_dpm.c b/drivers/gpu/drm/amd/pm/amdgpu_dpm.c index 81e9b443ca0a..3533d43ed1e7 100644 --- a/drivers/gpu/drm/amd/pm/amdgpu_dpm.c +++ b/drivers/gpu/drm/amd/pm/amdgpu_dpm.c @@ -349,6 +349,25 @@ int amdgpu_dpm_switch_power_profile(struct amdgpu_device *adev, return ret; } +int amdgpu_dpm_pause_power_profile(struct amdgpu_device *adev, + bool pause) +{ + const struct amd_pm_funcs *pp_funcs = adev->powerplay.pp_funcs; + int ret = 0; + + if (amdgpu_sriov_vf(adev)) + return 0; + + if (pp_funcs && pp_funcs->pause_power_profile) { + mutex_lock(&adev->pm.mutex); + ret = pp_funcs->pause_power_profile( + adev->powerplay.pp_handle, pause); + mutex_unlock(&adev->pm.mutex); + } + + return ret; +} + int amdgpu_dpm_set_xgmi_pstate(struct amdgpu_device *adev, uint32_t pstate) { diff --git a/drivers/gpu/drm/amd/pm/inc/amdgpu_dpm.h b/drivers/gpu/drm/amd/pm/inc/amdgpu_dpm.h index f93d287dbf13..4c0f7ad14816 100644 --- a/drivers/gpu/drm/amd/pm/inc/amdgpu_dpm.h +++ b/drivers/gpu/drm/amd/pm/inc/amdgpu_dpm.h @@ -410,6 +410,8 @@ int amdgpu_dpm_set_xgmi_pstate(struct amdgpu_device *adev, int amdgpu_dpm_switch_power_profile(struct amdgpu_device *adev, enum PP_SMC_POWER_PROFILE type, bool en); +int amdgpu_dpm_pause_power_profile(struct amdgpu_device *adev, + bool pause); int amdgpu_dpm_baco_reset(struct amdgpu_device *adev); diff --git a/drivers/gpu/drm/amd/pm/swsmu/amdgpu_smu.c b/drivers/gpu/drm/amd/pm/swsmu/amdgpu_smu.c index 033c3229b555..46cce1d2aaf3 100644 --- a/drivers/gpu/drm/amd/pm/swsmu/amdgpu_smu.c +++ b/drivers/gpu/drm/amd/pm/swsmu/amdgpu_smu.c @@ -2398,7 +2398,11 @@ static int smu_switch_power_profile(void *handle, smu_power_profile_mode_get(smu, type); else smu_power_profile_mode_put(smu, type); - ret = smu_bump_power_profile_mode(smu, NULL, 0); + /* don't switch the active workload when paused */ + if (smu->pause_workload) + ret = 0; + else + ret = smu_bump_power_profile_mode(smu, NULL, 0); if (ret) { if (enable) smu_power_profile_mode_put(smu, type); @@ -2411,6 +2415,35 @@ static int smu_switch_power_profile(void *handle, return 0; } +static int smu_pause_power_profile(void *handle, + bool pause) +{ + struct smu_context *smu = handle; + struct smu_dpm_context *smu_dpm_ctx = &(smu->smu_dpm); + u32 workload_mask = 1 << PP_SMC_POWER_PROFILE_BOOTUP_DEFAULT; + int ret; + + if (!smu->pm_enabled || !smu->adev->pm.dpm_enabled) + return -EOPNOTSUPP; + + if (smu_dpm_ctx->dpm_level != AMD_DPM_FORCED_LEVEL_MANUAL && + smu_dpm_ctx->dpm_level != AMD_DPM_FORCED_LEVEL_PERF_DETERMINISM) { + smu->pause_workload = pause; + + /* force to bootup default profile */ + if (smu->pause_workload && smu->ppt_funcs->set_power_profile_mode) + ret = smu->ppt_funcs->set_power_profile_mode(smu, + workload_mask, + NULL, + 0); + else + ret = smu_bump_power_profile_mode(smu, NULL, 0); + return ret; + } + + return 0; +} + static enum amd_dpm_forced_level smu_get_performance_level(void *handle) { struct smu_context *smu = handle; @@ -3733,6 +3766,7 @@ static const struct amd_pm_funcs swsmu_pm_funcs = { .get_pp_table = smu_sys_get_pp_table, .set_pp_table = smu_sys_set_pp_table, .switch_power_profile = smu_switch_power_profile, + .pause_power_profile = smu_pause_power_profile, /* export to amdgpu */ .dispatch_tasks = smu_handle_dpm_task, .load_firmware = smu_load_microcode, diff --git a/drivers/gpu/drm/amd/pm/swsmu/inc/amdgpu_smu.h b/drivers/gpu/drm/amd/pm/swsmu/inc/amdgpu_smu.h index 3ba169639f54..dd6d0e7aa242 100644 --- a/drivers/gpu/drm/amd/pm/swsmu/inc/amdgpu_smu.h +++ b/drivers/gpu/drm/amd/pm/swsmu/inc/amdgpu_smu.h @@ -558,6 +558,7 @@ struct smu_context { /* asic agnostic workload mask */ uint32_t workload_mask; + bool pause_workload; /* default/user workload preference */ uint32_t power_profile_mode; uint32_t workload_refcount[PP_SMC_POWER_PROFILE_COUNT]; diff --git a/drivers/gpu/drm/amd/pm/swsmu/smu11/smu_v11_0.c b/drivers/gpu/drm/amd/pm/swsmu/smu11/smu_v11_0.c index 78391d8f35a9..25fabf336a64 100644 --- a/drivers/gpu/drm/amd/pm/swsmu/smu11/smu_v11_0.c +++ b/drivers/gpu/drm/amd/pm/swsmu/smu11/smu_v11_0.c @@ -1204,7 +1204,7 @@ int smu_v11_0_set_fan_speed_rpm(struct smu_context *smu, uint32_t crystal_clock_freq = 2500; uint32_t tach_period; - if (speed == 0) + if (!speed || speed > UINT_MAX/8) return -EINVAL; /* * To prevent from possible overheat, some ASICs may have requirement diff --git a/drivers/gpu/drm/i915/Makefile b/drivers/gpu/drm/i915/Makefile index ed05b131ed3a..c8fc271b33b7 100644 --- a/drivers/gpu/drm/i915/Makefile +++ b/drivers/gpu/drm/i915/Makefile @@ -247,6 +247,7 @@ i915-y += \ display/intel_display_power_map.o \ display/intel_display_power_well.o \ display/intel_display_reset.o \ + display/intel_display_rpm.o \ display/intel_display_rps.o \ display/intel_display_snapshot.o \ display/intel_display_wa.o \ diff --git a/drivers/gpu/drm/i915/display/dvo_ch7017.c b/drivers/gpu/drm/i915/display/dvo_ch7017.c index 206818f9ad49..f10c0fb8d2c8 100644 --- a/drivers/gpu/drm/i915/display/dvo_ch7017.c +++ b/drivers/gpu/drm/i915/display/dvo_ch7017.c @@ -25,6 +25,8 @@ * */ +#include + #include "intel_display_types.h" #include "intel_dvo_dev.h" diff --git a/drivers/gpu/drm/i915/display/dvo_ch7xxx.c b/drivers/gpu/drm/i915/display/dvo_ch7xxx.c index 10ab3cc73e58..49f02aca818b 100644 --- a/drivers/gpu/drm/i915/display/dvo_ch7xxx.c +++ b/drivers/gpu/drm/i915/display/dvo_ch7xxx.c @@ -26,6 +26,8 @@ SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. **************************************************************************/ +#include + #include "intel_display_types.h" #include "intel_dvo_dev.h" diff --git a/drivers/gpu/drm/i915/display/dvo_ivch.c b/drivers/gpu/drm/i915/display/dvo_ivch.c index d9c3152d4338..0713b2709412 100644 --- a/drivers/gpu/drm/i915/display/dvo_ivch.c +++ b/drivers/gpu/drm/i915/display/dvo_ivch.c @@ -29,6 +29,8 @@ * */ +#include + #include "intel_display_types.h" #include "intel_dvo_dev.h" diff --git a/drivers/gpu/drm/i915/display/dvo_ns2501.c b/drivers/gpu/drm/i915/display/dvo_ns2501.c index 92d32d6b5bce..80b71bd6a837 100644 --- a/drivers/gpu/drm/i915/display/dvo_ns2501.c +++ b/drivers/gpu/drm/i915/display/dvo_ns2501.c @@ -26,6 +26,8 @@ * */ +#include + #include "intel_display_types.h" #include "intel_dvo_dev.h" diff --git a/drivers/gpu/drm/i915/display/dvo_sil164.c b/drivers/gpu/drm/i915/display/dvo_sil164.c index b42c717085f3..017b617a8069 100644 --- a/drivers/gpu/drm/i915/display/dvo_sil164.c +++ b/drivers/gpu/drm/i915/display/dvo_sil164.c @@ -26,6 +26,8 @@ SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. **************************************************************************/ +#include + #include "intel_display_types.h" #include "intel_dvo_dev.h" diff --git a/drivers/gpu/drm/i915/display/dvo_tfp410.c b/drivers/gpu/drm/i915/display/dvo_tfp410.c index 280699438526..ed560e3438db 100644 --- a/drivers/gpu/drm/i915/display/dvo_tfp410.c +++ b/drivers/gpu/drm/i915/display/dvo_tfp410.c @@ -25,6 +25,8 @@ * */ +#include + #include "intel_display_types.h" #include "intel_dvo_dev.h" diff --git a/drivers/gpu/drm/i915/display/g4x_dp.c b/drivers/gpu/drm/i915/display/g4x_dp.c index 55b9e9bfcc4d..b39aae9165df 100644 --- a/drivers/gpu/drm/i915/display/g4x_dp.c +++ b/drivers/gpu/drm/i915/display/g4x_dp.c @@ -519,7 +519,7 @@ static void intel_disable_dp(struct intel_atomic_state *state, { struct intel_dp *intel_dp = enc_to_intel_dp(encoder); - intel_dp->link_trained = false; + intel_dp->link.active = false; /* * Make sure the panel is off before trying to change the mode. diff --git a/drivers/gpu/drm/i915/display/hsw_ips.c b/drivers/gpu/drm/i915/display/hsw_ips.c index 674a0e5f0858..4307e2ed03d9 100644 --- a/drivers/gpu/drm/i915/display/hsw_ips.c +++ b/drivers/gpu/drm/i915/display/hsw_ips.c @@ -10,6 +10,7 @@ #include "i915_reg.h" #include "intel_color_regs.h" #include "intel_de.h" +#include "intel_display_rpm.h" #include "intel_display_types.h" #include "intel_pcode.h" @@ -344,10 +345,9 @@ static int hsw_ips_debugfs_status_show(struct seq_file *m, void *unused) { struct intel_crtc *crtc = m->private; struct intel_display *display = to_intel_display(crtc); - struct drm_i915_private *i915 = to_i915(crtc->base.dev); - intel_wakeref_t wakeref; + struct ref_tracker *wakeref; - wakeref = intel_runtime_pm_get(&i915->runtime_pm); + wakeref = intel_display_rpm_get(display); seq_printf(m, "Enabled by kernel parameter: %s\n", str_yes_no(display->params.enable_ips)); @@ -361,7 +361,7 @@ static int hsw_ips_debugfs_status_show(struct seq_file *m, void *unused) seq_puts(m, "Currently: disabled\n"); } - intel_runtime_pm_put(&i915->runtime_pm, wakeref); + intel_display_rpm_put(display, wakeref); return 0; } diff --git a/drivers/gpu/drm/i915/display/i9xx_plane.c b/drivers/gpu/drm/i915/display/i9xx_plane.c index 013295f66d56..5e8344fdfc28 100644 --- a/drivers/gpu/drm/i915/display/i9xx_plane.c +++ b/drivers/gpu/drm/i915/display/i9xx_plane.c @@ -630,84 +630,92 @@ vlv_primary_async_flip(struct intel_dsb *dsb, static void bdw_primary_enable_flip_done(struct intel_plane *plane) { + struct intel_display *display = to_intel_display(plane); struct drm_i915_private *i915 = to_i915(plane->base.dev); enum pipe pipe = plane->pipe; spin_lock_irq(&i915->irq_lock); - bdw_enable_pipe_irq(i915, pipe, GEN8_PIPE_PRIMARY_FLIP_DONE); + bdw_enable_pipe_irq(display, pipe, GEN8_PIPE_PRIMARY_FLIP_DONE); spin_unlock_irq(&i915->irq_lock); } static void bdw_primary_disable_flip_done(struct intel_plane *plane) { + struct intel_display *display = to_intel_display(plane); struct drm_i915_private *i915 = to_i915(plane->base.dev); enum pipe pipe = plane->pipe; spin_lock_irq(&i915->irq_lock); - bdw_disable_pipe_irq(i915, pipe, GEN8_PIPE_PRIMARY_FLIP_DONE); + bdw_disable_pipe_irq(display, pipe, GEN8_PIPE_PRIMARY_FLIP_DONE); spin_unlock_irq(&i915->irq_lock); } static void ivb_primary_enable_flip_done(struct intel_plane *plane) { + struct intel_display *display = to_intel_display(plane); struct drm_i915_private *i915 = to_i915(plane->base.dev); spin_lock_irq(&i915->irq_lock); - ilk_enable_display_irq(i915, DE_PLANE_FLIP_DONE_IVB(plane->i9xx_plane)); + ilk_enable_display_irq(display, DE_PLANE_FLIP_DONE_IVB(plane->i9xx_plane)); spin_unlock_irq(&i915->irq_lock); } static void ivb_primary_disable_flip_done(struct intel_plane *plane) { + struct intel_display *display = to_intel_display(plane); struct drm_i915_private *i915 = to_i915(plane->base.dev); spin_lock_irq(&i915->irq_lock); - ilk_disable_display_irq(i915, DE_PLANE_FLIP_DONE_IVB(plane->i9xx_plane)); + ilk_disable_display_irq(display, DE_PLANE_FLIP_DONE_IVB(plane->i9xx_plane)); spin_unlock_irq(&i915->irq_lock); } static void ilk_primary_enable_flip_done(struct intel_plane *plane) { + struct intel_display *display = to_intel_display(plane); struct drm_i915_private *i915 = to_i915(plane->base.dev); spin_lock_irq(&i915->irq_lock); - ilk_enable_display_irq(i915, DE_PLANE_FLIP_DONE(plane->i9xx_plane)); + ilk_enable_display_irq(display, DE_PLANE_FLIP_DONE(plane->i9xx_plane)); spin_unlock_irq(&i915->irq_lock); } static void ilk_primary_disable_flip_done(struct intel_plane *plane) { + struct intel_display *display = to_intel_display(plane); struct drm_i915_private *i915 = to_i915(plane->base.dev); spin_lock_irq(&i915->irq_lock); - ilk_disable_display_irq(i915, DE_PLANE_FLIP_DONE(plane->i9xx_plane)); + ilk_disable_display_irq(display, DE_PLANE_FLIP_DONE(plane->i9xx_plane)); spin_unlock_irq(&i915->irq_lock); } static void vlv_primary_enable_flip_done(struct intel_plane *plane) { + struct intel_display *display = to_intel_display(plane); struct drm_i915_private *i915 = to_i915(plane->base.dev); enum pipe pipe = plane->pipe; spin_lock_irq(&i915->irq_lock); - i915_enable_pipestat(i915, pipe, PLANE_FLIP_DONE_INT_STATUS_VLV); + i915_enable_pipestat(display, pipe, PLANE_FLIP_DONE_INT_STATUS_VLV); spin_unlock_irq(&i915->irq_lock); } static void vlv_primary_disable_flip_done(struct intel_plane *plane) { + struct intel_display *display = to_intel_display(plane); struct drm_i915_private *i915 = to_i915(plane->base.dev); enum pipe pipe = plane->pipe; spin_lock_irq(&i915->irq_lock); - i915_disable_pipestat(i915, pipe, PLANE_FLIP_DONE_INT_STATUS_VLV); + i915_disable_pipestat(display, pipe, PLANE_FLIP_DONE_INT_STATUS_VLV); spin_unlock_irq(&i915->irq_lock); } diff --git a/drivers/gpu/drm/i915/display/i9xx_wm.c b/drivers/gpu/drm/i915/display/i9xx_wm.c index 7c80e37c1c5f..40751f1547b7 100644 --- a/drivers/gpu/drm/i915/display/i9xx_wm.c +++ b/drivers/gpu/drm/i915/display/i9xx_wm.c @@ -9,6 +9,7 @@ #include "i9xx_wm_regs.h" #include "intel_atomic.h" #include "intel_bo.h" +#include "intel_de.h" #include "intel_display.h" #include "intel_display_trace.h" #include "intel_fb.h" @@ -81,13 +82,14 @@ static const struct cxsr_latency cxsr_latency_table[] = { {0, 1, 400, 800, 6042, 36042, 6584, 36584}, /* DDR3-800 SC */ }; -static const struct cxsr_latency *pnv_get_cxsr_latency(struct drm_i915_private *i915) +static const struct cxsr_latency *pnv_get_cxsr_latency(struct intel_display *display) { + struct drm_i915_private *i915 = to_i915(display->drm); int i; for (i = 0; i < ARRAY_SIZE(cxsr_latency_table); i++) { const struct cxsr_latency *latency = &cxsr_latency_table[i]; - bool is_desktop = !IS_MOBILE(i915); + bool is_desktop = !display->platform.mobile; if (is_desktop == latency->is_desktop && i915->is_ddr3 == latency->is_ddr3 && @@ -96,15 +98,16 @@ static const struct cxsr_latency *pnv_get_cxsr_latency(struct drm_i915_private * return latency; } - drm_dbg_kms(&i915->drm, + drm_dbg_kms(display->drm, "Could not find CxSR latency for DDR%s, FSB %u kHz, MEM %u kHz\n", i915->is_ddr3 ? "3" : "2", i915->fsb_freq, i915->mem_freq); return NULL; } -static void chv_set_memory_dvfs(struct drm_i915_private *dev_priv, bool enable) +static void chv_set_memory_dvfs(struct intel_display *display, bool enable) { + struct drm_i915_private *dev_priv = to_i915(display->drm); u32 val; vlv_punit_get(dev_priv); @@ -120,14 +123,15 @@ static void chv_set_memory_dvfs(struct drm_i915_private *dev_priv, bool enable) if (wait_for((vlv_punit_read(dev_priv, PUNIT_REG_DDR_SETUP2) & FORCE_DDR_FREQ_REQ_ACK) == 0, 3)) - drm_err(&dev_priv->drm, + drm_err(display->drm, "timed out waiting for Punit DDR DVFS request\n"); vlv_punit_put(dev_priv); } -static void chv_set_memory_pm5(struct drm_i915_private *dev_priv, bool enable) +static void chv_set_memory_pm5(struct intel_display *display, bool enable) { + struct drm_i915_private *dev_priv = to_i915(display->drm); u32 val; vlv_punit_get(dev_priv); @@ -145,53 +149,52 @@ static void chv_set_memory_pm5(struct drm_i915_private *dev_priv, bool enable) #define FW_WM(value, plane) \ (((value) << DSPFW_ ## plane ## _SHIFT) & DSPFW_ ## plane ## _MASK) -static bool _intel_set_memory_cxsr(struct drm_i915_private *dev_priv, bool enable) +static bool _intel_set_memory_cxsr(struct intel_display *display, bool enable) { - struct intel_display *display = &dev_priv->display; bool was_enabled; u32 val; - if (IS_VALLEYVIEW(dev_priv) || IS_CHERRYVIEW(dev_priv)) { - was_enabled = intel_uncore_read(&dev_priv->uncore, FW_BLC_SELF_VLV) & FW_CSPWRDWNEN; - intel_uncore_write(&dev_priv->uncore, FW_BLC_SELF_VLV, enable ? FW_CSPWRDWNEN : 0); - intel_uncore_posting_read(&dev_priv->uncore, FW_BLC_SELF_VLV); - } else if (IS_G4X(dev_priv) || IS_I965GM(dev_priv)) { - was_enabled = intel_uncore_read(&dev_priv->uncore, FW_BLC_SELF) & FW_BLC_SELF_EN; - intel_uncore_write(&dev_priv->uncore, FW_BLC_SELF, enable ? FW_BLC_SELF_EN : 0); - intel_uncore_posting_read(&dev_priv->uncore, FW_BLC_SELF); - } else if (IS_PINEVIEW(dev_priv)) { - val = intel_uncore_read(&dev_priv->uncore, DSPFW3(dev_priv)); + if (display->platform.valleyview || display->platform.cherryview) { + was_enabled = intel_de_read(display, FW_BLC_SELF_VLV) & FW_CSPWRDWNEN; + intel_de_write(display, FW_BLC_SELF_VLV, enable ? FW_CSPWRDWNEN : 0); + intel_de_posting_read(display, FW_BLC_SELF_VLV); + } else if (display->platform.g4x || display->platform.i965gm) { + was_enabled = intel_de_read(display, FW_BLC_SELF) & FW_BLC_SELF_EN; + intel_de_write(display, FW_BLC_SELF, enable ? FW_BLC_SELF_EN : 0); + intel_de_posting_read(display, FW_BLC_SELF); + } else if (display->platform.pineview) { + val = intel_de_read(display, DSPFW3(display)); was_enabled = val & PINEVIEW_SELF_REFRESH_EN; if (enable) val |= PINEVIEW_SELF_REFRESH_EN; else val &= ~PINEVIEW_SELF_REFRESH_EN; - intel_uncore_write(&dev_priv->uncore, DSPFW3(dev_priv), val); - intel_uncore_posting_read(&dev_priv->uncore, DSPFW3(dev_priv)); - } else if (IS_I945G(dev_priv) || IS_I945GM(dev_priv)) { - was_enabled = intel_uncore_read(&dev_priv->uncore, FW_BLC_SELF) & FW_BLC_SELF_EN; + intel_de_write(display, DSPFW3(display), val); + intel_de_posting_read(display, DSPFW3(display)); + } else if (display->platform.i945g || display->platform.i945gm) { + was_enabled = intel_de_read(display, FW_BLC_SELF) & FW_BLC_SELF_EN; val = enable ? _MASKED_BIT_ENABLE(FW_BLC_SELF_EN) : _MASKED_BIT_DISABLE(FW_BLC_SELF_EN); - intel_uncore_write(&dev_priv->uncore, FW_BLC_SELF, val); - intel_uncore_posting_read(&dev_priv->uncore, FW_BLC_SELF); - } else if (IS_I915GM(dev_priv)) { + intel_de_write(display, FW_BLC_SELF, val); + intel_de_posting_read(display, FW_BLC_SELF); + } else if (display->platform.i915gm) { /* * FIXME can't find a bit like this for 915G, and * yet it does have the related watermark in * FW_BLC_SELF. What's going on? */ - was_enabled = intel_uncore_read(&dev_priv->uncore, INSTPM) & INSTPM_SELF_EN; + was_enabled = intel_de_read(display, INSTPM) & INSTPM_SELF_EN; val = enable ? _MASKED_BIT_ENABLE(INSTPM_SELF_EN) : _MASKED_BIT_DISABLE(INSTPM_SELF_EN); - intel_uncore_write(&dev_priv->uncore, INSTPM, val); - intel_uncore_posting_read(&dev_priv->uncore, INSTPM); + intel_de_write(display, INSTPM, val); + intel_de_posting_read(display, INSTPM); } else { return false; } trace_intel_memory_cxsr(display, was_enabled, enable); - drm_dbg_kms(&dev_priv->drm, "memory self-refresh is %s (was %s)\n", + drm_dbg_kms(display->drm, "memory self-refresh is %s (was %s)\n", str_enabled_disabled(enable), str_enabled_disabled(was_enabled)); @@ -200,7 +203,7 @@ static bool _intel_set_memory_cxsr(struct drm_i915_private *dev_priv, bool enabl /** * intel_set_memory_cxsr - Configure CxSR state - * @dev_priv: i915 device + * @display: display device * @enable: Allow vs. disallow CxSR * * Allow or disallow the system to enter a special CxSR @@ -235,17 +238,17 @@ static bool _intel_set_memory_cxsr(struct drm_i915_private *dev_priv, bool enabl * the hardware w.r.t. HPLL SR when writing to plane registers. * Disallowing just CxSR is sufficient. */ -bool intel_set_memory_cxsr(struct drm_i915_private *dev_priv, bool enable) +bool intel_set_memory_cxsr(struct intel_display *display, bool enable) { bool ret; - mutex_lock(&dev_priv->display.wm.wm_mutex); - ret = _intel_set_memory_cxsr(dev_priv, enable); - if (IS_VALLEYVIEW(dev_priv) || IS_CHERRYVIEW(dev_priv)) - dev_priv->display.wm.vlv.cxsr = enable; - else if (IS_G4X(dev_priv)) - dev_priv->display.wm.g4x.cxsr = enable; - mutex_unlock(&dev_priv->display.wm.wm_mutex); + mutex_lock(&display->wm.wm_mutex); + ret = _intel_set_memory_cxsr(display, enable); + if (display->platform.valleyview || display->platform.cherryview) + display->wm.vlv.cxsr = enable; + else if (display->platform.g4x) + display->wm.g4x.cxsr = enable; + mutex_unlock(&display->wm.wm_mutex); return ret; } @@ -271,8 +274,8 @@ static const int pessimal_latency_ns = 5000; static void vlv_get_fifo_size(struct intel_crtc_state *crtc_state) { + struct intel_display *display = to_intel_display(crtc_state); struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc); - struct drm_i915_private *dev_priv = to_i915(crtc->base.dev); struct vlv_fifo_state *fifo_state = &crtc_state->wm.vlv.fifo_state; enum pipe pipe = crtc->pipe; int sprite0_start, sprite1_start; @@ -280,22 +283,20 @@ static void vlv_get_fifo_size(struct intel_crtc_state *crtc_state) switch (pipe) { case PIPE_A: - dsparb = intel_uncore_read(&dev_priv->uncore, - DSPARB(dev_priv)); - dsparb2 = intel_uncore_read(&dev_priv->uncore, DSPARB2); + dsparb = intel_de_read(display, DSPARB(display)); + dsparb2 = intel_de_read(display, DSPARB2); sprite0_start = VLV_FIFO_START(dsparb, dsparb2, 0, 0); sprite1_start = VLV_FIFO_START(dsparb, dsparb2, 8, 4); break; case PIPE_B: - dsparb = intel_uncore_read(&dev_priv->uncore, - DSPARB(dev_priv)); - dsparb2 = intel_uncore_read(&dev_priv->uncore, DSPARB2); + dsparb = intel_de_read(display, DSPARB(display)); + dsparb2 = intel_de_read(display, DSPARB2); sprite0_start = VLV_FIFO_START(dsparb, dsparb2, 16, 8); sprite1_start = VLV_FIFO_START(dsparb, dsparb2, 24, 12); break; case PIPE_C: - dsparb2 = intel_uncore_read(&dev_priv->uncore, DSPARB2); - dsparb3 = intel_uncore_read(&dev_priv->uncore, DSPARB3); + dsparb2 = intel_de_read(display, DSPARB2); + dsparb3 = intel_de_read(display, DSPARB3); sprite0_start = VLV_FIFO_START(dsparb3, dsparb2, 0, 16); sprite1_start = VLV_FIFO_START(dsparb3, dsparb2, 8, 20); break; @@ -310,26 +311,26 @@ static void vlv_get_fifo_size(struct intel_crtc_state *crtc_state) fifo_state->plane[PLANE_CURSOR] = 63; } -static int i9xx_get_fifo_size(struct drm_i915_private *dev_priv, +static int i9xx_get_fifo_size(struct intel_display *display, enum i9xx_plane_id i9xx_plane) { - u32 dsparb = intel_uncore_read(&dev_priv->uncore, DSPARB(dev_priv)); + u32 dsparb = intel_de_read(display, DSPARB(display)); int size; size = dsparb & 0x7f; if (i9xx_plane == PLANE_B) size = ((dsparb >> DSPARB_CSTART_SHIFT) & 0x7f) - size; - drm_dbg_kms(&dev_priv->drm, "FIFO size - (0x%08x) %c: %d\n", + drm_dbg_kms(display->drm, "FIFO size - (0x%08x) %c: %d\n", dsparb, plane_name(i9xx_plane), size); return size; } -static int i830_get_fifo_size(struct drm_i915_private *dev_priv, +static int i830_get_fifo_size(struct intel_display *display, enum i9xx_plane_id i9xx_plane) { - u32 dsparb = intel_uncore_read(&dev_priv->uncore, DSPARB(dev_priv)); + u32 dsparb = intel_de_read(display, DSPARB(display)); int size; size = dsparb & 0x1ff; @@ -337,22 +338,22 @@ static int i830_get_fifo_size(struct drm_i915_private *dev_priv, size = ((dsparb >> DSPARB_BEND_SHIFT) & 0x1ff) - size; size >>= 1; /* Convert to cachelines */ - drm_dbg_kms(&dev_priv->drm, "FIFO size - (0x%08x) %c: %d\n", + drm_dbg_kms(display->drm, "FIFO size - (0x%08x) %c: %d\n", dsparb, plane_name(i9xx_plane), size); return size; } -static int i845_get_fifo_size(struct drm_i915_private *dev_priv, +static int i845_get_fifo_size(struct intel_display *display, enum i9xx_plane_id i9xx_plane) { - u32 dsparb = intel_uncore_read(&dev_priv->uncore, DSPARB(dev_priv)); + u32 dsparb = intel_de_read(display, DSPARB(display)); int size; size = dsparb & 0x7f; size >>= 2; /* Convert to cachelines */ - drm_dbg_kms(&dev_priv->drm, "FIFO size - (0x%08x) %c: %d\n", + drm_dbg_kms(display->drm, "FIFO size - (0x%08x) %c: %d\n", dsparb, plane_name(i9xx_plane), size); return size; @@ -537,7 +538,7 @@ static unsigned int intel_wm_method2(unsigned int pixel_rate, /** * intel_calculate_wm - calculate watermark level - * @i915: the device + * @display: display device * @pixel_rate: pixel clock * @wm: chip FIFO params * @fifo_size: size of the FIFO buffer @@ -555,7 +556,7 @@ static unsigned int intel_wm_method2(unsigned int pixel_rate, * past the watermark point. If the FIFO drains completely, a FIFO underrun * will occur, and a display engine hang could result. */ -static unsigned int intel_calculate_wm(struct drm_i915_private *i915, +static unsigned int intel_calculate_wm(struct intel_display *display, int pixel_rate, const struct intel_watermark_params *wm, int fifo_size, int cpp, @@ -573,10 +574,10 @@ static unsigned int intel_calculate_wm(struct drm_i915_private *i915, latency_ns / 100); entries = DIV_ROUND_UP(entries, wm->cacheline_size) + wm->guard_size; - drm_dbg_kms(&i915->drm, "FIFO entries required for mode: %d\n", entries); + drm_dbg_kms(display->drm, "FIFO entries required for mode: %d\n", entries); wm_size = fifo_size - entries; - drm_dbg_kms(&i915->drm, "FIFO watermark level: %d\n", wm_size); + drm_dbg_kms(display->drm, "FIFO watermark level: %d\n", wm_size); /* Don't promote wm_size to unsigned... */ if (wm_size > wm->max_wm) @@ -626,11 +627,11 @@ static bool intel_crtc_active(struct intel_crtc *crtc) crtc->config->hw.adjusted_mode.crtc_clock; } -static struct intel_crtc *single_enabled_crtc(struct drm_i915_private *dev_priv) +static struct intel_crtc *single_enabled_crtc(struct intel_display *display) { struct intel_crtc *crtc, *enabled = NULL; - for_each_intel_crtc(&dev_priv->drm, crtc) { + for_each_intel_crtc(display->drm, crtc) { if (intel_crtc_active(crtc)) { if (enabled) return NULL; @@ -641,21 +642,21 @@ static struct intel_crtc *single_enabled_crtc(struct drm_i915_private *dev_priv) return enabled; } -static void pnv_update_wm(struct drm_i915_private *dev_priv) +static void pnv_update_wm(struct intel_display *display) { struct intel_crtc *crtc; const struct cxsr_latency *latency; u32 reg; unsigned int wm; - latency = pnv_get_cxsr_latency(dev_priv); + latency = pnv_get_cxsr_latency(display); if (!latency) { - drm_dbg_kms(&dev_priv->drm, "Unknown FSB/MEM, disabling CxSR\n"); - intel_set_memory_cxsr(dev_priv, false); + drm_dbg_kms(display->drm, "Unknown FSB/MEM, disabling CxSR\n"); + intel_set_memory_cxsr(display, false); return; } - crtc = single_enabled_crtc(dev_priv); + crtc = single_enabled_crtc(display); if (crtc) { const struct drm_framebuffer *fb = crtc->base.primary->state->fb; @@ -663,47 +664,46 @@ static void pnv_update_wm(struct drm_i915_private *dev_priv) int cpp = fb->format->cpp[0]; /* Display SR */ - wm = intel_calculate_wm(dev_priv, pixel_rate, + wm = intel_calculate_wm(display, pixel_rate, &pnv_display_wm, pnv_display_wm.fifo_size, cpp, latency->display_sr); - reg = intel_uncore_read(&dev_priv->uncore, DSPFW1(dev_priv)); + reg = intel_de_read(display, DSPFW1(display)); reg &= ~DSPFW_SR_MASK; reg |= FW_WM(wm, SR); - intel_uncore_write(&dev_priv->uncore, DSPFW1(dev_priv), reg); - drm_dbg_kms(&dev_priv->drm, "DSPFW1 register is %x\n", reg); + intel_de_write(display, DSPFW1(display), reg); + drm_dbg_kms(display->drm, "DSPFW1 register is %x\n", reg); /* cursor SR */ - wm = intel_calculate_wm(dev_priv, pixel_rate, + wm = intel_calculate_wm(display, pixel_rate, &pnv_cursor_wm, pnv_display_wm.fifo_size, 4, latency->cursor_sr); - intel_uncore_rmw(&dev_priv->uncore, DSPFW3(dev_priv), - DSPFW_CURSOR_SR_MASK, - FW_WM(wm, CURSOR_SR)); + intel_de_rmw(display, DSPFW3(display), + DSPFW_CURSOR_SR_MASK, FW_WM(wm, CURSOR_SR)); /* Display HPLL off SR */ - wm = intel_calculate_wm(dev_priv, pixel_rate, + wm = intel_calculate_wm(display, pixel_rate, &pnv_display_hplloff_wm, pnv_display_hplloff_wm.fifo_size, cpp, latency->display_hpll_disable); - intel_uncore_rmw(&dev_priv->uncore, DSPFW3(dev_priv), - DSPFW_HPLL_SR_MASK, FW_WM(wm, HPLL_SR)); + intel_de_rmw(display, DSPFW3(display), + DSPFW_HPLL_SR_MASK, FW_WM(wm, HPLL_SR)); /* cursor HPLL off SR */ - wm = intel_calculate_wm(dev_priv, pixel_rate, + wm = intel_calculate_wm(display, pixel_rate, &pnv_cursor_hplloff_wm, pnv_display_hplloff_wm.fifo_size, 4, latency->cursor_hpll_disable); - reg = intel_uncore_read(&dev_priv->uncore, DSPFW3(dev_priv)); + reg = intel_de_read(display, DSPFW3(display)); reg &= ~DSPFW_HPLL_CURSOR_MASK; reg |= FW_WM(wm, HPLL_CURSOR); - intel_uncore_write(&dev_priv->uncore, DSPFW3(dev_priv), reg); - drm_dbg_kms(&dev_priv->drm, "DSPFW3 register is %x\n", reg); + intel_de_write(display, DSPFW3(display), reg); + drm_dbg_kms(display->drm, "DSPFW3 register is %x\n", reg); - intel_set_memory_cxsr(dev_priv, true); + intel_set_memory_cxsr(display, true); } else { - intel_set_memory_cxsr(dev_priv, false); + intel_set_memory_cxsr(display, false); } } @@ -794,53 +794,51 @@ static unsigned int g4x_tlb_miss_wa(int fifo_size, int width, int cpp) return max(0, tlb_miss); } -static void g4x_write_wm_values(struct drm_i915_private *dev_priv, +static void g4x_write_wm_values(struct intel_display *display, const struct g4x_wm_values *wm) { - struct intel_display *display = &dev_priv->display; enum pipe pipe; - for_each_pipe(dev_priv, pipe) + for_each_pipe(display, pipe) trace_g4x_wm(intel_crtc_for_pipe(display, pipe), wm); - intel_uncore_write(&dev_priv->uncore, DSPFW1(dev_priv), - FW_WM(wm->sr.plane, SR) | - FW_WM(wm->pipe[PIPE_B].plane[PLANE_CURSOR], CURSORB) | - FW_WM(wm->pipe[PIPE_B].plane[PLANE_PRIMARY], PLANEB) | - FW_WM(wm->pipe[PIPE_A].plane[PLANE_PRIMARY], PLANEA)); - intel_uncore_write(&dev_priv->uncore, DSPFW2(dev_priv), - (wm->fbc_en ? DSPFW_FBC_SR_EN : 0) | - FW_WM(wm->sr.fbc, FBC_SR) | - FW_WM(wm->hpll.fbc, FBC_HPLL_SR) | - FW_WM(wm->pipe[PIPE_B].plane[PLANE_SPRITE0], SPRITEB) | - FW_WM(wm->pipe[PIPE_A].plane[PLANE_CURSOR], CURSORA) | - FW_WM(wm->pipe[PIPE_A].plane[PLANE_SPRITE0], SPRITEA)); - intel_uncore_write(&dev_priv->uncore, DSPFW3(dev_priv), - (wm->hpll_en ? DSPFW_HPLL_SR_EN : 0) | - FW_WM(wm->sr.cursor, CURSOR_SR) | - FW_WM(wm->hpll.cursor, HPLL_CURSOR) | - FW_WM(wm->hpll.plane, HPLL_SR)); + intel_de_write(display, DSPFW1(display), + FW_WM(wm->sr.plane, SR) | + FW_WM(wm->pipe[PIPE_B].plane[PLANE_CURSOR], CURSORB) | + FW_WM(wm->pipe[PIPE_B].plane[PLANE_PRIMARY], PLANEB) | + FW_WM(wm->pipe[PIPE_A].plane[PLANE_PRIMARY], PLANEA)); + intel_de_write(display, DSPFW2(display), + (wm->fbc_en ? DSPFW_FBC_SR_EN : 0) | + FW_WM(wm->sr.fbc, FBC_SR) | + FW_WM(wm->hpll.fbc, FBC_HPLL_SR) | + FW_WM(wm->pipe[PIPE_B].plane[PLANE_SPRITE0], SPRITEB) | + FW_WM(wm->pipe[PIPE_A].plane[PLANE_CURSOR], CURSORA) | + FW_WM(wm->pipe[PIPE_A].plane[PLANE_SPRITE0], SPRITEA)); + intel_de_write(display, DSPFW3(display), + (wm->hpll_en ? DSPFW_HPLL_SR_EN : 0) | + FW_WM(wm->sr.cursor, CURSOR_SR) | + FW_WM(wm->hpll.cursor, HPLL_CURSOR) | + FW_WM(wm->hpll.plane, HPLL_SR)); - intel_uncore_posting_read(&dev_priv->uncore, DSPFW1(dev_priv)); + intel_de_posting_read(display, DSPFW1(display)); } #define FW_WM_VLV(value, plane) \ (((value) << DSPFW_ ## plane ## _SHIFT) & DSPFW_ ## plane ## _MASK_VLV) -static void vlv_write_wm_values(struct drm_i915_private *dev_priv, +static void vlv_write_wm_values(struct intel_display *display, const struct vlv_wm_values *wm) { - struct intel_display *display = &dev_priv->display; enum pipe pipe; - for_each_pipe(dev_priv, pipe) { + for_each_pipe(display, pipe) { trace_vlv_wm(intel_crtc_for_pipe(display, pipe), wm); - intel_uncore_write(&dev_priv->uncore, VLV_DDL(pipe), - (wm->ddl[pipe].plane[PLANE_CURSOR] << DDL_CURSOR_SHIFT) | - (wm->ddl[pipe].plane[PLANE_SPRITE1] << DDL_SPRITE_SHIFT(1)) | - (wm->ddl[pipe].plane[PLANE_SPRITE0] << DDL_SPRITE_SHIFT(0)) | - (wm->ddl[pipe].plane[PLANE_PRIMARY] << DDL_PLANE_SHIFT)); + intel_de_write(display, VLV_DDL(pipe), + (wm->ddl[pipe].plane[PLANE_CURSOR] << DDL_CURSOR_SHIFT) | + (wm->ddl[pipe].plane[PLANE_SPRITE1] << DDL_SPRITE_SHIFT(1)) | + (wm->ddl[pipe].plane[PLANE_SPRITE0] << DDL_SPRITE_SHIFT(0)) | + (wm->ddl[pipe].plane[PLANE_PRIMARY] << DDL_PLANE_SHIFT)); } /* @@ -848,72 +846,72 @@ static void vlv_write_wm_values(struct drm_i915_private *dev_priv, * high order bits so that there are no out of bounds values * present in the registers during the reprogramming. */ - intel_uncore_write(&dev_priv->uncore, DSPHOWM, 0); - intel_uncore_write(&dev_priv->uncore, DSPHOWM1, 0); - intel_uncore_write(&dev_priv->uncore, DSPFW4, 0); - intel_uncore_write(&dev_priv->uncore, DSPFW5, 0); - intel_uncore_write(&dev_priv->uncore, DSPFW6, 0); + intel_de_write(display, DSPHOWM, 0); + intel_de_write(display, DSPHOWM1, 0); + intel_de_write(display, DSPFW4, 0); + intel_de_write(display, DSPFW5, 0); + intel_de_write(display, DSPFW6, 0); - intel_uncore_write(&dev_priv->uncore, DSPFW1(dev_priv), - FW_WM(wm->sr.plane, SR) | - FW_WM(wm->pipe[PIPE_B].plane[PLANE_CURSOR], CURSORB) | - FW_WM_VLV(wm->pipe[PIPE_B].plane[PLANE_PRIMARY], PLANEB) | - FW_WM_VLV(wm->pipe[PIPE_A].plane[PLANE_PRIMARY], PLANEA)); - intel_uncore_write(&dev_priv->uncore, DSPFW2(dev_priv), - FW_WM_VLV(wm->pipe[PIPE_A].plane[PLANE_SPRITE1], SPRITEB) | - FW_WM(wm->pipe[PIPE_A].plane[PLANE_CURSOR], CURSORA) | - FW_WM_VLV(wm->pipe[PIPE_A].plane[PLANE_SPRITE0], SPRITEA)); - intel_uncore_write(&dev_priv->uncore, DSPFW3(dev_priv), - FW_WM(wm->sr.cursor, CURSOR_SR)); + intel_de_write(display, DSPFW1(display), + FW_WM(wm->sr.plane, SR) | + FW_WM(wm->pipe[PIPE_B].plane[PLANE_CURSOR], CURSORB) | + FW_WM_VLV(wm->pipe[PIPE_B].plane[PLANE_PRIMARY], PLANEB) | + FW_WM_VLV(wm->pipe[PIPE_A].plane[PLANE_PRIMARY], PLANEA)); + intel_de_write(display, DSPFW2(display), + FW_WM_VLV(wm->pipe[PIPE_A].plane[PLANE_SPRITE1], SPRITEB) | + FW_WM(wm->pipe[PIPE_A].plane[PLANE_CURSOR], CURSORA) | + FW_WM_VLV(wm->pipe[PIPE_A].plane[PLANE_SPRITE0], SPRITEA)); + intel_de_write(display, DSPFW3(display), + FW_WM(wm->sr.cursor, CURSOR_SR)); - if (IS_CHERRYVIEW(dev_priv)) { - intel_uncore_write(&dev_priv->uncore, DSPFW7_CHV, - FW_WM_VLV(wm->pipe[PIPE_B].plane[PLANE_SPRITE1], SPRITED) | - FW_WM_VLV(wm->pipe[PIPE_B].plane[PLANE_SPRITE0], SPRITEC)); - intel_uncore_write(&dev_priv->uncore, DSPFW8_CHV, - FW_WM_VLV(wm->pipe[PIPE_C].plane[PLANE_SPRITE1], SPRITEF) | - FW_WM_VLV(wm->pipe[PIPE_C].plane[PLANE_SPRITE0], SPRITEE)); - intel_uncore_write(&dev_priv->uncore, DSPFW9_CHV, - FW_WM_VLV(wm->pipe[PIPE_C].plane[PLANE_PRIMARY], PLANEC) | - FW_WM(wm->pipe[PIPE_C].plane[PLANE_CURSOR], CURSORC)); - intel_uncore_write(&dev_priv->uncore, DSPHOWM, - FW_WM(wm->sr.plane >> 9, SR_HI) | - FW_WM(wm->pipe[PIPE_C].plane[PLANE_SPRITE1] >> 8, SPRITEF_HI) | - FW_WM(wm->pipe[PIPE_C].plane[PLANE_SPRITE0] >> 8, SPRITEE_HI) | - FW_WM(wm->pipe[PIPE_C].plane[PLANE_PRIMARY] >> 8, PLANEC_HI) | - FW_WM(wm->pipe[PIPE_B].plane[PLANE_SPRITE1] >> 8, SPRITED_HI) | - FW_WM(wm->pipe[PIPE_B].plane[PLANE_SPRITE0] >> 8, SPRITEC_HI) | - FW_WM(wm->pipe[PIPE_B].plane[PLANE_PRIMARY] >> 8, PLANEB_HI) | - FW_WM(wm->pipe[PIPE_A].plane[PLANE_SPRITE1] >> 8, SPRITEB_HI) | - FW_WM(wm->pipe[PIPE_A].plane[PLANE_SPRITE0] >> 8, SPRITEA_HI) | - FW_WM(wm->pipe[PIPE_A].plane[PLANE_PRIMARY] >> 8, PLANEA_HI)); + if (display->platform.cherryview) { + intel_de_write(display, DSPFW7_CHV, + FW_WM_VLV(wm->pipe[PIPE_B].plane[PLANE_SPRITE1], SPRITED) | + FW_WM_VLV(wm->pipe[PIPE_B].plane[PLANE_SPRITE0], SPRITEC)); + intel_de_write(display, DSPFW8_CHV, + FW_WM_VLV(wm->pipe[PIPE_C].plane[PLANE_SPRITE1], SPRITEF) | + FW_WM_VLV(wm->pipe[PIPE_C].plane[PLANE_SPRITE0], SPRITEE)); + intel_de_write(display, DSPFW9_CHV, + FW_WM_VLV(wm->pipe[PIPE_C].plane[PLANE_PRIMARY], PLANEC) | + FW_WM(wm->pipe[PIPE_C].plane[PLANE_CURSOR], CURSORC)); + intel_de_write(display, DSPHOWM, + FW_WM(wm->sr.plane >> 9, SR_HI) | + FW_WM(wm->pipe[PIPE_C].plane[PLANE_SPRITE1] >> 8, SPRITEF_HI) | + FW_WM(wm->pipe[PIPE_C].plane[PLANE_SPRITE0] >> 8, SPRITEE_HI) | + FW_WM(wm->pipe[PIPE_C].plane[PLANE_PRIMARY] >> 8, PLANEC_HI) | + FW_WM(wm->pipe[PIPE_B].plane[PLANE_SPRITE1] >> 8, SPRITED_HI) | + FW_WM(wm->pipe[PIPE_B].plane[PLANE_SPRITE0] >> 8, SPRITEC_HI) | + FW_WM(wm->pipe[PIPE_B].plane[PLANE_PRIMARY] >> 8, PLANEB_HI) | + FW_WM(wm->pipe[PIPE_A].plane[PLANE_SPRITE1] >> 8, SPRITEB_HI) | + FW_WM(wm->pipe[PIPE_A].plane[PLANE_SPRITE0] >> 8, SPRITEA_HI) | + FW_WM(wm->pipe[PIPE_A].plane[PLANE_PRIMARY] >> 8, PLANEA_HI)); } else { - intel_uncore_write(&dev_priv->uncore, DSPFW7, - FW_WM_VLV(wm->pipe[PIPE_B].plane[PLANE_SPRITE1], SPRITED) | - FW_WM_VLV(wm->pipe[PIPE_B].plane[PLANE_SPRITE0], SPRITEC)); - intel_uncore_write(&dev_priv->uncore, DSPHOWM, - FW_WM(wm->sr.plane >> 9, SR_HI) | - FW_WM(wm->pipe[PIPE_B].plane[PLANE_SPRITE1] >> 8, SPRITED_HI) | - FW_WM(wm->pipe[PIPE_B].plane[PLANE_SPRITE0] >> 8, SPRITEC_HI) | - FW_WM(wm->pipe[PIPE_B].plane[PLANE_PRIMARY] >> 8, PLANEB_HI) | - FW_WM(wm->pipe[PIPE_A].plane[PLANE_SPRITE1] >> 8, SPRITEB_HI) | - FW_WM(wm->pipe[PIPE_A].plane[PLANE_SPRITE0] >> 8, SPRITEA_HI) | - FW_WM(wm->pipe[PIPE_A].plane[PLANE_PRIMARY] >> 8, PLANEA_HI)); + intel_de_write(display, DSPFW7, + FW_WM_VLV(wm->pipe[PIPE_B].plane[PLANE_SPRITE1], SPRITED) | + FW_WM_VLV(wm->pipe[PIPE_B].plane[PLANE_SPRITE0], SPRITEC)); + intel_de_write(display, DSPHOWM, + FW_WM(wm->sr.plane >> 9, SR_HI) | + FW_WM(wm->pipe[PIPE_B].plane[PLANE_SPRITE1] >> 8, SPRITED_HI) | + FW_WM(wm->pipe[PIPE_B].plane[PLANE_SPRITE0] >> 8, SPRITEC_HI) | + FW_WM(wm->pipe[PIPE_B].plane[PLANE_PRIMARY] >> 8, PLANEB_HI) | + FW_WM(wm->pipe[PIPE_A].plane[PLANE_SPRITE1] >> 8, SPRITEB_HI) | + FW_WM(wm->pipe[PIPE_A].plane[PLANE_SPRITE0] >> 8, SPRITEA_HI) | + FW_WM(wm->pipe[PIPE_A].plane[PLANE_PRIMARY] >> 8, PLANEA_HI)); } - intel_uncore_posting_read(&dev_priv->uncore, DSPFW1(dev_priv)); + intel_de_posting_read(display, DSPFW1(display)); } #undef FW_WM_VLV -static void g4x_setup_wm_latency(struct drm_i915_private *dev_priv) +static void g4x_setup_wm_latency(struct intel_display *display) { /* all latencies in usec */ - dev_priv->display.wm.pri_latency[G4X_WM_LEVEL_NORMAL] = 5; - dev_priv->display.wm.pri_latency[G4X_WM_LEVEL_SR] = 12; - dev_priv->display.wm.pri_latency[G4X_WM_LEVEL_HPLL] = 35; + display->wm.pri_latency[G4X_WM_LEVEL_NORMAL] = 5; + display->wm.pri_latency[G4X_WM_LEVEL_SR] = 12; + display->wm.pri_latency[G4X_WM_LEVEL_HPLL] = 35; - dev_priv->display.wm.num_levels = G4X_WM_LEVEL_HPLL + 1; + display->wm.num_levels = G4X_WM_LEVEL_HPLL + 1; } static int g4x_plane_fifo_size(enum plane_id plane_id, int level) @@ -962,11 +960,11 @@ static u16 g4x_compute_wm(const struct intel_crtc_state *crtc_state, const struct intel_plane_state *plane_state, int level) { + struct intel_display *display = to_intel_display(plane_state); struct intel_plane *plane = to_intel_plane(plane_state->uapi.plane); - struct drm_i915_private *dev_priv = to_i915(plane->base.dev); const struct drm_display_mode *pipe_mode = &crtc_state->hw.pipe_mode; - unsigned int latency = dev_priv->display.wm.pri_latency[level] * 10; + unsigned int latency = display->wm.pri_latency[level] * 10; unsigned int pixel_rate, htotal, cpp, width, wm; if (latency == 0) @@ -1017,10 +1015,10 @@ static u16 g4x_compute_wm(const struct intel_crtc_state *crtc_state, static bool g4x_raw_plane_wm_set(struct intel_crtc_state *crtc_state, int level, enum plane_id plane_id, u16 value) { - struct drm_i915_private *dev_priv = to_i915(crtc_state->uapi.crtc->dev); + struct intel_display *display = to_intel_display(crtc_state); bool dirty = false; - for (; level < dev_priv->display.wm.num_levels; level++) { + for (; level < display->wm.num_levels; level++) { struct g4x_pipe_wm *raw = &crtc_state->wm.g4x.raw[level]; dirty |= raw->plane[plane_id] != value; @@ -1033,13 +1031,13 @@ static bool g4x_raw_plane_wm_set(struct intel_crtc_state *crtc_state, static bool g4x_raw_fbc_wm_set(struct intel_crtc_state *crtc_state, int level, u16 value) { - struct drm_i915_private *dev_priv = to_i915(crtc_state->uapi.crtc->dev); + struct intel_display *display = to_intel_display(crtc_state); bool dirty = false; /* NORMAL level doesn't have an FBC watermark */ level = max(level, G4X_WM_LEVEL_SR); - for (; level < dev_priv->display.wm.num_levels; level++) { + for (; level < display->wm.num_levels; level++) { struct g4x_pipe_wm *raw = &crtc_state->wm.g4x.raw[level]; dirty |= raw->fbc != value; @@ -1056,8 +1054,8 @@ static u32 ilk_compute_fbc_wm(const struct intel_crtc_state *crtc_state, static bool g4x_raw_plane_wm_compute(struct intel_crtc_state *crtc_state, const struct intel_plane_state *plane_state) { + struct intel_display *display = to_intel_display(crtc_state); struct intel_plane *plane = to_intel_plane(plane_state->uapi.plane); - struct drm_i915_private *dev_priv = to_i915(crtc_state->uapi.crtc->dev); enum plane_id plane_id = plane->id; bool dirty = false; int level; @@ -1069,7 +1067,7 @@ static bool g4x_raw_plane_wm_compute(struct intel_crtc_state *crtc_state, goto out; } - for (level = 0; level < dev_priv->display.wm.num_levels; level++) { + for (level = 0; level < display->wm.num_levels; level++) { struct g4x_pipe_wm *raw = &crtc_state->wm.g4x.raw[level]; int wm, max_wm; @@ -1109,7 +1107,7 @@ static bool g4x_raw_plane_wm_compute(struct intel_crtc_state *crtc_state, out: if (dirty) { - drm_dbg_kms(&dev_priv->drm, + drm_dbg_kms(display->drm, "%s watermarks: normal=%d, SR=%d, HPLL=%d\n", plane->base.name, crtc_state->wm.g4x.raw[G4X_WM_LEVEL_NORMAL].plane[plane_id], @@ -1117,7 +1115,7 @@ static bool g4x_raw_plane_wm_compute(struct intel_crtc_state *crtc_state, crtc_state->wm.g4x.raw[G4X_WM_LEVEL_HPLL].plane[plane_id]); if (plane_id == PLANE_PRIMARY) - drm_dbg_kms(&dev_priv->drm, + drm_dbg_kms(display->drm, "FBC watermarks: SR=%d, HPLL=%d\n", crtc_state->wm.g4x.raw[G4X_WM_LEVEL_SR].fbc, crtc_state->wm.g4x.raw[G4X_WM_LEVEL_HPLL].fbc); @@ -1137,9 +1135,9 @@ static bool g4x_raw_plane_wm_is_valid(const struct intel_crtc_state *crtc_state, static bool g4x_raw_crtc_wm_is_valid(const struct intel_crtc_state *crtc_state, int level) { - struct drm_i915_private *dev_priv = to_i915(crtc_state->uapi.crtc->dev); + struct intel_display *display = to_intel_display(crtc_state); - if (level >= dev_priv->display.wm.num_levels) + if (level >= display->wm.num_levels) return false; return g4x_raw_plane_wm_is_valid(crtc_state, PLANE_PRIMARY, level) && @@ -1281,7 +1279,7 @@ static int g4x_compute_pipe_wm(struct intel_atomic_state *state, static int g4x_compute_intermediate_wm(struct intel_atomic_state *state, struct intel_crtc *crtc) { - struct drm_i915_private *dev_priv = to_i915(crtc->base.dev); + struct intel_display *display = to_intel_display(state); struct intel_crtc_state *new_crtc_state = intel_atomic_get_new_crtc_state(state, crtc); const struct intel_crtc_state *old_crtc_state = @@ -1311,7 +1309,7 @@ static int g4x_compute_intermediate_wm(struct intel_atomic_state *state, max(optimal->wm.plane[plane_id], active->wm.plane[plane_id]); - drm_WARN_ON(&dev_priv->drm, intermediate->wm.plane[plane_id] > + drm_WARN_ON(display->drm, intermediate->wm.plane[plane_id] > g4x_plane_fifo_size(plane_id, G4X_WM_LEVEL_NORMAL)); } @@ -1329,23 +1327,23 @@ static int g4x_compute_intermediate_wm(struct intel_atomic_state *state, intermediate->hpll.fbc = max(optimal->hpll.fbc, active->hpll.fbc); - drm_WARN_ON(&dev_priv->drm, + drm_WARN_ON(display->drm, (intermediate->sr.plane > g4x_plane_fifo_size(PLANE_PRIMARY, G4X_WM_LEVEL_SR) || intermediate->sr.cursor > g4x_plane_fifo_size(PLANE_CURSOR, G4X_WM_LEVEL_SR)) && intermediate->cxsr); - drm_WARN_ON(&dev_priv->drm, + drm_WARN_ON(display->drm, (intermediate->sr.plane > g4x_plane_fifo_size(PLANE_PRIMARY, G4X_WM_LEVEL_HPLL) || intermediate->sr.cursor > g4x_plane_fifo_size(PLANE_CURSOR, G4X_WM_LEVEL_HPLL)) && intermediate->hpll_en); - drm_WARN_ON(&dev_priv->drm, + drm_WARN_ON(display->drm, intermediate->sr.fbc > g4x_fbc_fifo_size(1) && intermediate->fbc_en && intermediate->cxsr); - drm_WARN_ON(&dev_priv->drm, + drm_WARN_ON(display->drm, intermediate->hpll.fbc > g4x_fbc_fifo_size(2) && intermediate->fbc_en && intermediate->hpll_en); @@ -1376,7 +1374,7 @@ static int g4x_compute_watermarks(struct intel_atomic_state *state, return 0; } -static void g4x_merge_wm(struct drm_i915_private *dev_priv, +static void g4x_merge_wm(struct intel_display *display, struct g4x_wm_values *wm) { struct intel_crtc *crtc; @@ -1386,7 +1384,7 @@ static void g4x_merge_wm(struct drm_i915_private *dev_priv, wm->hpll_en = true; wm->fbc_en = true; - for_each_intel_crtc(&dev_priv->drm, crtc) { + for_each_intel_crtc(display->drm, crtc) { const struct g4x_wm_state *wm_state = &crtc->wm.active.g4x; if (!crtc->active) @@ -1408,7 +1406,7 @@ static void g4x_merge_wm(struct drm_i915_private *dev_priv, wm->fbc_en = false; } - for_each_intel_crtc(&dev_priv->drm, crtc) { + for_each_intel_crtc(display->drm, crtc) { const struct g4x_wm_state *wm_state = &crtc->wm.active.g4x; enum pipe pipe = crtc->pipe; @@ -1420,23 +1418,23 @@ static void g4x_merge_wm(struct drm_i915_private *dev_priv, } } -static void g4x_program_watermarks(struct drm_i915_private *dev_priv) +static void g4x_program_watermarks(struct intel_display *display) { - struct g4x_wm_values *old_wm = &dev_priv->display.wm.g4x; + struct g4x_wm_values *old_wm = &display->wm.g4x; struct g4x_wm_values new_wm = {}; - g4x_merge_wm(dev_priv, &new_wm); + g4x_merge_wm(display, &new_wm); if (memcmp(old_wm, &new_wm, sizeof(new_wm)) == 0) return; if (is_disabling(old_wm->cxsr, new_wm.cxsr, true)) - _intel_set_memory_cxsr(dev_priv, false); + _intel_set_memory_cxsr(display, false); - g4x_write_wm_values(dev_priv, &new_wm); + g4x_write_wm_values(display, &new_wm); if (is_enabling(old_wm->cxsr, new_wm.cxsr, true)) - _intel_set_memory_cxsr(dev_priv, true); + _intel_set_memory_cxsr(display, true); *old_wm = new_wm; } @@ -1444,30 +1442,30 @@ static void g4x_program_watermarks(struct drm_i915_private *dev_priv) static void g4x_initial_watermarks(struct intel_atomic_state *state, struct intel_crtc *crtc) { - struct drm_i915_private *dev_priv = to_i915(crtc->base.dev); + struct intel_display *display = to_intel_display(crtc); const struct intel_crtc_state *crtc_state = intel_atomic_get_new_crtc_state(state, crtc); - mutex_lock(&dev_priv->display.wm.wm_mutex); + mutex_lock(&display->wm.wm_mutex); crtc->wm.active.g4x = crtc_state->wm.g4x.intermediate; - g4x_program_watermarks(dev_priv); - mutex_unlock(&dev_priv->display.wm.wm_mutex); + g4x_program_watermarks(display); + mutex_unlock(&display->wm.wm_mutex); } static void g4x_optimize_watermarks(struct intel_atomic_state *state, struct intel_crtc *crtc) { - struct drm_i915_private *dev_priv = to_i915(crtc->base.dev); + struct intel_display *display = to_intel_display(crtc); const struct intel_crtc_state *crtc_state = intel_atomic_get_new_crtc_state(state, crtc); if (!crtc_state->wm.need_postvbl_update) return; - mutex_lock(&dev_priv->display.wm.wm_mutex); + mutex_lock(&display->wm.wm_mutex); crtc->wm.active.g4x = crtc_state->wm.g4x.optimal; - g4x_program_watermarks(dev_priv); - mutex_unlock(&dev_priv->display.wm.wm_mutex); + g4x_program_watermarks(display); + mutex_unlock(&display->wm.wm_mutex); } /* latency must be in 0.1us units. */ @@ -1486,18 +1484,18 @@ static unsigned int vlv_wm_method2(unsigned int pixel_rate, return ret; } -static void vlv_setup_wm_latency(struct drm_i915_private *dev_priv) +static void vlv_setup_wm_latency(struct intel_display *display) { /* all latencies in usec */ - dev_priv->display.wm.pri_latency[VLV_WM_LEVEL_PM2] = 3; + display->wm.pri_latency[VLV_WM_LEVEL_PM2] = 3; - dev_priv->display.wm.num_levels = VLV_WM_LEVEL_PM2 + 1; + display->wm.num_levels = VLV_WM_LEVEL_PM2 + 1; - if (IS_CHERRYVIEW(dev_priv)) { - dev_priv->display.wm.pri_latency[VLV_WM_LEVEL_PM5] = 12; - dev_priv->display.wm.pri_latency[VLV_WM_LEVEL_DDR_DVFS] = 33; + if (display->platform.cherryview) { + display->wm.pri_latency[VLV_WM_LEVEL_PM5] = 12; + display->wm.pri_latency[VLV_WM_LEVEL_DDR_DVFS] = 33; - dev_priv->display.wm.num_levels = VLV_WM_LEVEL_DDR_DVFS + 1; + display->wm.num_levels = VLV_WM_LEVEL_DDR_DVFS + 1; } } @@ -1505,13 +1503,13 @@ static u16 vlv_compute_wm_level(const struct intel_crtc_state *crtc_state, const struct intel_plane_state *plane_state, int level) { + struct intel_display *display = to_intel_display(plane_state); struct intel_plane *plane = to_intel_plane(plane_state->uapi.plane); - struct drm_i915_private *dev_priv = to_i915(plane->base.dev); const struct drm_display_mode *pipe_mode = &crtc_state->hw.pipe_mode; unsigned int pixel_rate, htotal, cpp, width, wm; - if (dev_priv->display.wm.pri_latency[level] == 0) + if (display->wm.pri_latency[level] == 0) return USHRT_MAX; if (!intel_wm_plane_visible(crtc_state, plane_state)) @@ -1532,7 +1530,7 @@ static u16 vlv_compute_wm_level(const struct intel_crtc_state *crtc_state, wm = 63; } else { wm = vlv_wm_method2(pixel_rate, htotal, width, cpp, - dev_priv->display.wm.pri_latency[level] * 10); + display->wm.pri_latency[level] * 10); } return min_t(unsigned int, wm, USHRT_MAX); @@ -1546,8 +1544,8 @@ static bool vlv_need_sprite0_fifo_workaround(unsigned int active_planes) static int vlv_compute_fifo(struct intel_crtc_state *crtc_state) { + struct intel_display *display = to_intel_display(crtc_state); struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc); - struct drm_i915_private *dev_priv = to_i915(crtc->base.dev); const struct g4x_pipe_wm *raw = &crtc_state->wm.vlv.raw[VLV_WM_LEVEL_PM2]; struct vlv_fifo_state *fifo_state = &crtc_state->wm.vlv.fifo_state; @@ -1616,11 +1614,11 @@ static int vlv_compute_fifo(struct intel_crtc_state *crtc_state) fifo_left -= plane_extra; } - drm_WARN_ON(&dev_priv->drm, active_planes != 0 && fifo_left != 0); + drm_WARN_ON(display->drm, active_planes != 0 && fifo_left != 0); /* give it all to the first plane if none are active */ if (active_planes == 0) { - drm_WARN_ON(&dev_priv->drm, fifo_left != fifo_size); + drm_WARN_ON(display->drm, fifo_left != fifo_size); fifo_state->plane[PLANE_PRIMARY] = fifo_left; } @@ -1631,9 +1629,9 @@ static int vlv_compute_fifo(struct intel_crtc_state *crtc_state) static void vlv_invalidate_wms(struct intel_crtc *crtc, struct vlv_wm_state *wm_state, int level) { - struct drm_i915_private *dev_priv = to_i915(crtc->base.dev); + struct intel_display *display = to_intel_display(crtc); - for (; level < dev_priv->display.wm.num_levels; level++) { + for (; level < display->wm.num_levels; level++) { enum plane_id plane_id; for_each_plane_id_on_crtc(crtc, plane_id) @@ -1659,10 +1657,10 @@ static u16 vlv_invert_wm_value(u16 wm, u16 fifo_size) static bool vlv_raw_plane_wm_set(struct intel_crtc_state *crtc_state, int level, enum plane_id plane_id, u16 value) { - struct drm_i915_private *dev_priv = to_i915(crtc_state->uapi.crtc->dev); + struct intel_display *display = to_intel_display(crtc_state); bool dirty = false; - for (; level < dev_priv->display.wm.num_levels; level++) { + for (; level < display->wm.num_levels; level++) { struct g4x_pipe_wm *raw = &crtc_state->wm.vlv.raw[level]; dirty |= raw->plane[plane_id] != value; @@ -1675,8 +1673,8 @@ static bool vlv_raw_plane_wm_set(struct intel_crtc_state *crtc_state, static bool vlv_raw_plane_wm_compute(struct intel_crtc_state *crtc_state, const struct intel_plane_state *plane_state) { + struct intel_display *display = to_intel_display(crtc_state); struct intel_plane *plane = to_intel_plane(plane_state->uapi.plane); - struct drm_i915_private *dev_priv = to_i915(crtc_state->uapi.crtc->dev); enum plane_id plane_id = plane->id; int level; bool dirty = false; @@ -1686,7 +1684,7 @@ static bool vlv_raw_plane_wm_compute(struct intel_crtc_state *crtc_state, goto out; } - for (level = 0; level < dev_priv->display.wm.num_levels; level++) { + for (level = 0; level < display->wm.num_levels; level++) { struct g4x_pipe_wm *raw = &crtc_state->wm.vlv.raw[level]; int wm = vlv_compute_wm_level(crtc_state, plane_state, level); int max_wm = plane_id == PLANE_CURSOR ? 63 : 511; @@ -1703,7 +1701,7 @@ static bool vlv_raw_plane_wm_compute(struct intel_crtc_state *crtc_state, out: if (dirty) - drm_dbg_kms(&dev_priv->drm, + drm_dbg_kms(display->drm, "%s watermarks: PM2=%d, PM5=%d, DDR DVFS=%d\n", plane->base.name, crtc_state->wm.vlv.raw[VLV_WM_LEVEL_PM2].plane[plane_id], @@ -1734,8 +1732,8 @@ static bool vlv_raw_crtc_wm_is_valid(const struct intel_crtc_state *crtc_state, static int _vlv_compute_pipe_wm(struct intel_crtc_state *crtc_state) { + struct intel_display *display = to_intel_display(crtc_state); struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc); - struct drm_i915_private *dev_priv = to_i915(crtc->base.dev); struct vlv_wm_state *wm_state = &crtc_state->wm.vlv.optimal; const struct vlv_fifo_state *fifo_state = &crtc_state->wm.vlv.fifo_state; @@ -1745,7 +1743,7 @@ static int _vlv_compute_pipe_wm(struct intel_crtc_state *crtc_state) int level; /* initially allow all levels */ - wm_state->num_levels = dev_priv->display.wm.num_levels; + wm_state->num_levels = display->wm.num_levels; /* * Note that enabling cxsr with no primary/sprite planes * enabled can wedge the pipe. Hence we only allow cxsr @@ -1755,7 +1753,7 @@ static int _vlv_compute_pipe_wm(struct intel_crtc_state *crtc_state) for (level = 0; level < wm_state->num_levels; level++) { const struct g4x_pipe_wm *raw = &crtc_state->wm.vlv.raw[level]; - const int sr_fifo_size = INTEL_NUM_PIPES(dev_priv) * 512 - 1; + const int sr_fifo_size = INTEL_NUM_PIPES(display) * 512 - 1; if (!vlv_raw_crtc_wm_is_valid(crtc_state, level)) break; @@ -1855,6 +1853,7 @@ static int vlv_compute_pipe_wm(struct intel_atomic_state *state, static void vlv_atomic_update_fifo(struct intel_atomic_state *state, struct intel_crtc *crtc) { + struct intel_display *display = to_intel_display(crtc); struct drm_i915_private *dev_priv = to_i915(crtc->base.dev); struct intel_uncore *uncore = &dev_priv->uncore; const struct intel_crtc_state *crtc_state = @@ -1871,8 +1870,8 @@ static void vlv_atomic_update_fifo(struct intel_atomic_state *state, sprite1_start = fifo_state->plane[PLANE_SPRITE0] + sprite0_start; fifo_size = fifo_state->plane[PLANE_SPRITE1] + sprite1_start; - drm_WARN_ON(&dev_priv->drm, fifo_state->plane[PLANE_CURSOR] != 63); - drm_WARN_ON(&dev_priv->drm, fifo_size != 511); + drm_WARN_ON(display->drm, fifo_state->plane[PLANE_CURSOR] != 63); + drm_WARN_ON(display->drm, fifo_size != 511); trace_vlv_fifo_size(crtc, sprite0_start, sprite1_start, fifo_size); @@ -1889,8 +1888,8 @@ static void vlv_atomic_update_fifo(struct intel_atomic_state *state, switch (crtc->pipe) { case PIPE_A: - dsparb = intel_uncore_read_fw(uncore, DSPARB(dev_priv)); - dsparb2 = intel_uncore_read_fw(uncore, DSPARB2); + dsparb = intel_de_read_fw(display, DSPARB(display)); + dsparb2 = intel_de_read_fw(display, DSPARB2); dsparb &= ~(VLV_FIFO(SPRITEA, 0xff) | VLV_FIFO(SPRITEB, 0xff)); @@ -1902,12 +1901,12 @@ static void vlv_atomic_update_fifo(struct intel_atomic_state *state, dsparb2 |= (VLV_FIFO(SPRITEA_HI, sprite0_start >> 8) | VLV_FIFO(SPRITEB_HI, sprite1_start >> 8)); - intel_uncore_write_fw(uncore, DSPARB(dev_priv), dsparb); - intel_uncore_write_fw(uncore, DSPARB2, dsparb2); + intel_de_write_fw(display, DSPARB(display), dsparb); + intel_de_write_fw(display, DSPARB2, dsparb2); break; case PIPE_B: - dsparb = intel_uncore_read_fw(uncore, DSPARB(dev_priv)); - dsparb2 = intel_uncore_read_fw(uncore, DSPARB2); + dsparb = intel_de_read_fw(display, DSPARB(display)); + dsparb2 = intel_de_read_fw(display, DSPARB2); dsparb &= ~(VLV_FIFO(SPRITEC, 0xff) | VLV_FIFO(SPRITED, 0xff)); @@ -1919,12 +1918,12 @@ static void vlv_atomic_update_fifo(struct intel_atomic_state *state, dsparb2 |= (VLV_FIFO(SPRITEC_HI, sprite0_start >> 8) | VLV_FIFO(SPRITED_HI, sprite1_start >> 8)); - intel_uncore_write_fw(uncore, DSPARB(dev_priv), dsparb); - intel_uncore_write_fw(uncore, DSPARB2, dsparb2); + intel_de_write_fw(display, DSPARB(display), dsparb); + intel_de_write_fw(display, DSPARB2, dsparb2); break; case PIPE_C: - dsparb3 = intel_uncore_read_fw(uncore, DSPARB3); - dsparb2 = intel_uncore_read_fw(uncore, DSPARB2); + dsparb3 = intel_de_read_fw(display, DSPARB3); + dsparb2 = intel_de_read_fw(display, DSPARB2); dsparb3 &= ~(VLV_FIFO(SPRITEE, 0xff) | VLV_FIFO(SPRITEF, 0xff)); @@ -1936,14 +1935,14 @@ static void vlv_atomic_update_fifo(struct intel_atomic_state *state, dsparb2 |= (VLV_FIFO(SPRITEE_HI, sprite0_start >> 8) | VLV_FIFO(SPRITEF_HI, sprite1_start >> 8)); - intel_uncore_write_fw(uncore, DSPARB3, dsparb3); - intel_uncore_write_fw(uncore, DSPARB2, dsparb2); + intel_de_write_fw(display, DSPARB3, dsparb3); + intel_de_write_fw(display, DSPARB2, dsparb2); break; default: break; } - intel_uncore_posting_read_fw(uncore, DSPARB(dev_priv)); + intel_de_read_fw(display, DSPARB(display)); spin_unlock(&uncore->lock); } @@ -2018,16 +2017,16 @@ static int vlv_compute_watermarks(struct intel_atomic_state *state, return 0; } -static void vlv_merge_wm(struct drm_i915_private *dev_priv, +static void vlv_merge_wm(struct intel_display *display, struct vlv_wm_values *wm) { struct intel_crtc *crtc; int num_active_pipes = 0; - wm->level = dev_priv->display.wm.num_levels - 1; + wm->level = display->wm.num_levels - 1; wm->cxsr = true; - for_each_intel_crtc(&dev_priv->drm, crtc) { + for_each_intel_crtc(display->drm, crtc) { const struct vlv_wm_state *wm_state = &crtc->wm.active.vlv; if (!crtc->active) @@ -2046,7 +2045,7 @@ static void vlv_merge_wm(struct drm_i915_private *dev_priv, if (num_active_pipes > 1) wm->level = VLV_WM_LEVEL_PM2; - for_each_intel_crtc(&dev_priv->drm, crtc) { + for_each_intel_crtc(display->drm, crtc) { const struct vlv_wm_state *wm_state = &crtc->wm.active.vlv; enum pipe pipe = crtc->pipe; @@ -2061,35 +2060,35 @@ static void vlv_merge_wm(struct drm_i915_private *dev_priv, } } -static void vlv_program_watermarks(struct drm_i915_private *dev_priv) +static void vlv_program_watermarks(struct intel_display *display) { - struct vlv_wm_values *old_wm = &dev_priv->display.wm.vlv; + struct vlv_wm_values *old_wm = &display->wm.vlv; struct vlv_wm_values new_wm = {}; - vlv_merge_wm(dev_priv, &new_wm); + vlv_merge_wm(display, &new_wm); if (memcmp(old_wm, &new_wm, sizeof(new_wm)) == 0) return; if (is_disabling(old_wm->level, new_wm.level, VLV_WM_LEVEL_DDR_DVFS)) - chv_set_memory_dvfs(dev_priv, false); + chv_set_memory_dvfs(display, false); if (is_disabling(old_wm->level, new_wm.level, VLV_WM_LEVEL_PM5)) - chv_set_memory_pm5(dev_priv, false); + chv_set_memory_pm5(display, false); if (is_disabling(old_wm->cxsr, new_wm.cxsr, true)) - _intel_set_memory_cxsr(dev_priv, false); + _intel_set_memory_cxsr(display, false); - vlv_write_wm_values(dev_priv, &new_wm); + vlv_write_wm_values(display, &new_wm); if (is_enabling(old_wm->cxsr, new_wm.cxsr, true)) - _intel_set_memory_cxsr(dev_priv, true); + _intel_set_memory_cxsr(display, true); if (is_enabling(old_wm->level, new_wm.level, VLV_WM_LEVEL_PM5)) - chv_set_memory_pm5(dev_priv, true); + chv_set_memory_pm5(display, true); if (is_enabling(old_wm->level, new_wm.level, VLV_WM_LEVEL_DDR_DVFS)) - chv_set_memory_dvfs(dev_priv, true); + chv_set_memory_dvfs(display, true); *old_wm = new_wm; } @@ -2097,33 +2096,33 @@ static void vlv_program_watermarks(struct drm_i915_private *dev_priv) static void vlv_initial_watermarks(struct intel_atomic_state *state, struct intel_crtc *crtc) { - struct drm_i915_private *dev_priv = to_i915(crtc->base.dev); + struct intel_display *display = to_intel_display(crtc); const struct intel_crtc_state *crtc_state = intel_atomic_get_new_crtc_state(state, crtc); - mutex_lock(&dev_priv->display.wm.wm_mutex); + mutex_lock(&display->wm.wm_mutex); crtc->wm.active.vlv = crtc_state->wm.vlv.intermediate; - vlv_program_watermarks(dev_priv); - mutex_unlock(&dev_priv->display.wm.wm_mutex); + vlv_program_watermarks(display); + mutex_unlock(&display->wm.wm_mutex); } static void vlv_optimize_watermarks(struct intel_atomic_state *state, struct intel_crtc *crtc) { - struct drm_i915_private *dev_priv = to_i915(crtc->base.dev); + struct intel_display *display = to_intel_display(crtc); const struct intel_crtc_state *crtc_state = intel_atomic_get_new_crtc_state(state, crtc); if (!crtc_state->wm.need_postvbl_update) return; - mutex_lock(&dev_priv->display.wm.wm_mutex); + mutex_lock(&display->wm.wm_mutex); crtc->wm.active.vlv = crtc_state->wm.vlv.optimal; - vlv_program_watermarks(dev_priv); - mutex_unlock(&dev_priv->display.wm.wm_mutex); + vlv_program_watermarks(display); + mutex_unlock(&display->wm.wm_mutex); } -static void i965_update_wm(struct drm_i915_private *dev_priv) +static void i965_update_wm(struct intel_display *display) { struct intel_crtc *crtc; int srwm = 1; @@ -2131,7 +2130,7 @@ static void i965_update_wm(struct drm_i915_private *dev_priv) bool cxsr_enabled; /* Calc sr entries for one plane configs */ - crtc = single_enabled_crtc(dev_priv); + crtc = single_enabled_crtc(display); if (crtc) { /* self-refresh has much higher latency */ static const int sr_latency_ns = 12000; @@ -2152,7 +2151,7 @@ static void i965_update_wm(struct drm_i915_private *dev_priv) if (srwm < 0) srwm = 1; srwm &= 0x1ff; - drm_dbg_kms(&dev_priv->drm, + drm_dbg_kms(display->drm, "self-refresh entries: %d, wm: %d\n", entries, srwm); @@ -2167,7 +2166,7 @@ static void i965_update_wm(struct drm_i915_private *dev_priv) if (cursor_sr > i965_cursor_wm_info.max_wm) cursor_sr = i965_cursor_wm_info.max_wm; - drm_dbg_kms(&dev_priv->drm, + drm_dbg_kms(display->drm, "self-refresh watermark: display plane %d " "cursor %d\n", srwm, cursor_sr); @@ -2175,39 +2174,38 @@ static void i965_update_wm(struct drm_i915_private *dev_priv) } else { cxsr_enabled = false; /* Turn off self refresh if both pipes are enabled */ - intel_set_memory_cxsr(dev_priv, false); + intel_set_memory_cxsr(display, false); } - drm_dbg_kms(&dev_priv->drm, + drm_dbg_kms(display->drm, "Setting FIFO watermarks - A: 8, B: 8, C: 8, SR %d\n", srwm); /* 965 has limitations... */ - intel_uncore_write(&dev_priv->uncore, DSPFW1(dev_priv), - FW_WM(srwm, SR) | - FW_WM(8, CURSORB) | - FW_WM(8, PLANEB) | - FW_WM(8, PLANEA)); - intel_uncore_write(&dev_priv->uncore, DSPFW2(dev_priv), - FW_WM(8, CURSORA) | - FW_WM(8, PLANEC_OLD)); + intel_de_write(display, DSPFW1(display), + FW_WM(srwm, SR) | + FW_WM(8, CURSORB) | + FW_WM(8, PLANEB) | + FW_WM(8, PLANEA)); + intel_de_write(display, DSPFW2(display), + FW_WM(8, CURSORA) | + FW_WM(8, PLANEC_OLD)); /* update cursor SR watermark */ - intel_uncore_write(&dev_priv->uncore, DSPFW3(dev_priv), - FW_WM(cursor_sr, CURSOR_SR)); + intel_de_write(display, DSPFW3(display), + FW_WM(cursor_sr, CURSOR_SR)); if (cxsr_enabled) - intel_set_memory_cxsr(dev_priv, true); + intel_set_memory_cxsr(display, true); } #undef FW_WM -static struct intel_crtc *intel_crtc_for_plane(struct drm_i915_private *i915, +static struct intel_crtc *intel_crtc_for_plane(struct intel_display *display, enum i9xx_plane_id i9xx_plane) { - struct intel_display *display = &i915->display; struct intel_plane *plane; - for_each_intel_plane(&i915->drm, plane) { + for_each_intel_plane(display->drm, plane) { if (plane->id == PLANE_PRIMARY && plane->i9xx_plane == i9xx_plane) return intel_crtc_for_pipe(display, plane->pipe); @@ -2216,7 +2214,7 @@ static struct intel_crtc *intel_crtc_for_plane(struct drm_i915_private *i915, return NULL; } -static void i9xx_update_wm(struct drm_i915_private *dev_priv) +static void i9xx_update_wm(struct intel_display *display) { const struct intel_watermark_params *wm_info; u32 fwater_lo; @@ -2226,29 +2224,29 @@ static void i9xx_update_wm(struct drm_i915_private *dev_priv) int planea_wm, planeb_wm; struct intel_crtc *crtc; - if (IS_I945GM(dev_priv)) + if (display->platform.i945gm) wm_info = &i945_wm_info; - else if (DISPLAY_VER(dev_priv) != 2) + else if (DISPLAY_VER(display) != 2) wm_info = &i915_wm_info; else wm_info = &i830_a_wm_info; - if (DISPLAY_VER(dev_priv) == 2) - fifo_size = i830_get_fifo_size(dev_priv, PLANE_A); + if (DISPLAY_VER(display) == 2) + fifo_size = i830_get_fifo_size(display, PLANE_A); else - fifo_size = i9xx_get_fifo_size(dev_priv, PLANE_A); - crtc = intel_crtc_for_plane(dev_priv, PLANE_A); + fifo_size = i9xx_get_fifo_size(display, PLANE_A); + crtc = intel_crtc_for_plane(display, PLANE_A); if (intel_crtc_active(crtc)) { const struct drm_framebuffer *fb = crtc->base.primary->state->fb; int cpp; - if (DISPLAY_VER(dev_priv) == 2) + if (DISPLAY_VER(display) == 2) cpp = 4; else cpp = fb->format->cpp[0]; - planea_wm = intel_calculate_wm(dev_priv, crtc->config->pixel_rate, + planea_wm = intel_calculate_wm(display, crtc->config->pixel_rate, wm_info, fifo_size, cpp, pessimal_latency_ns); } else { @@ -2257,25 +2255,25 @@ static void i9xx_update_wm(struct drm_i915_private *dev_priv) planea_wm = wm_info->max_wm; } - if (DISPLAY_VER(dev_priv) == 2) + if (DISPLAY_VER(display) == 2) wm_info = &i830_bc_wm_info; - if (DISPLAY_VER(dev_priv) == 2) - fifo_size = i830_get_fifo_size(dev_priv, PLANE_B); + if (DISPLAY_VER(display) == 2) + fifo_size = i830_get_fifo_size(display, PLANE_B); else - fifo_size = i9xx_get_fifo_size(dev_priv, PLANE_B); - crtc = intel_crtc_for_plane(dev_priv, PLANE_B); + fifo_size = i9xx_get_fifo_size(display, PLANE_B); + crtc = intel_crtc_for_plane(display, PLANE_B); if (intel_crtc_active(crtc)) { const struct drm_framebuffer *fb = crtc->base.primary->state->fb; int cpp; - if (DISPLAY_VER(dev_priv) == 2) + if (DISPLAY_VER(display) == 2) cpp = 4; else cpp = fb->format->cpp[0]; - planeb_wm = intel_calculate_wm(dev_priv, crtc->config->pixel_rate, + planeb_wm = intel_calculate_wm(display, crtc->config->pixel_rate, wm_info, fifo_size, cpp, pessimal_latency_ns); } else { @@ -2284,11 +2282,11 @@ static void i9xx_update_wm(struct drm_i915_private *dev_priv) planeb_wm = wm_info->max_wm; } - drm_dbg_kms(&dev_priv->drm, + drm_dbg_kms(display->drm, "FIFO watermarks - A: %d, B: %d\n", planea_wm, planeb_wm); - crtc = single_enabled_crtc(dev_priv); - if (IS_I915GM(dev_priv) && crtc) { + crtc = single_enabled_crtc(display); + if (display->platform.i915gm && crtc) { struct drm_gem_object *obj; obj = intel_fb_bo(crtc->base.primary->state->fb); @@ -2304,10 +2302,10 @@ static void i9xx_update_wm(struct drm_i915_private *dev_priv) cwm = 2; /* Play safe and disable self-refresh before adjusting watermarks. */ - intel_set_memory_cxsr(dev_priv, false); + intel_set_memory_cxsr(display, false); /* Calc sr entries for one plane configs */ - if (HAS_FW_BLC(dev_priv) && crtc) { + if (HAS_FW_BLC(display) && crtc) { /* self-refresh has much higher latency */ static const int sr_latency_ns = 6000; const struct drm_display_mode *pipe_mode = @@ -2320,7 +2318,7 @@ static void i9xx_update_wm(struct drm_i915_private *dev_priv) int cpp; int entries; - if (IS_I915GM(dev_priv) || IS_I945GM(dev_priv)) + if (display->platform.i915gm || display->platform.i945gm) cpp = 4; else cpp = fb->format->cpp[0]; @@ -2328,20 +2326,20 @@ static void i9xx_update_wm(struct drm_i915_private *dev_priv) entries = intel_wm_method2(pixel_rate, htotal, width, cpp, sr_latency_ns / 100); entries = DIV_ROUND_UP(entries, wm_info->cacheline_size); - drm_dbg_kms(&dev_priv->drm, + drm_dbg_kms(display->drm, "self-refresh entries: %d\n", entries); srwm = wm_info->fifo_size - entries; if (srwm < 0) srwm = 1; - if (IS_I945G(dev_priv) || IS_I945GM(dev_priv)) - intel_uncore_write(&dev_priv->uncore, FW_BLC_SELF, - FW_BLC_SELF_FIFO_MASK | (srwm & 0xff)); + if (display->platform.i945g || display->platform.i945gm) + intel_de_write(display, FW_BLC_SELF, + FW_BLC_SELF_FIFO_MASK | (srwm & 0xff)); else - intel_uncore_write(&dev_priv->uncore, FW_BLC_SELF, srwm & 0x3f); + intel_de_write(display, FW_BLC_SELF, srwm & 0x3f); } - drm_dbg_kms(&dev_priv->drm, + drm_dbg_kms(display->drm, "Setting FIFO watermarks - A: %d, B: %d, C: %d, SR %d\n", planea_wm, planeb_wm, cwm, srwm); @@ -2352,34 +2350,34 @@ static void i9xx_update_wm(struct drm_i915_private *dev_priv) fwater_lo = fwater_lo | (1 << 24) | (1 << 8); fwater_hi = fwater_hi | (1 << 8); - intel_uncore_write(&dev_priv->uncore, FW_BLC, fwater_lo); - intel_uncore_write(&dev_priv->uncore, FW_BLC2, fwater_hi); + intel_de_write(display, FW_BLC, fwater_lo); + intel_de_write(display, FW_BLC2, fwater_hi); if (crtc) - intel_set_memory_cxsr(dev_priv, true); + intel_set_memory_cxsr(display, true); } -static void i845_update_wm(struct drm_i915_private *dev_priv) +static void i845_update_wm(struct intel_display *display) { struct intel_crtc *crtc; u32 fwater_lo; int planea_wm; - crtc = single_enabled_crtc(dev_priv); + crtc = single_enabled_crtc(display); if (crtc == NULL) return; - planea_wm = intel_calculate_wm(dev_priv, crtc->config->pixel_rate, + planea_wm = intel_calculate_wm(display, crtc->config->pixel_rate, &i845_wm_info, - i845_get_fifo_size(dev_priv, PLANE_A), + i845_get_fifo_size(display, PLANE_A), 4, pessimal_latency_ns); - fwater_lo = intel_uncore_read(&dev_priv->uncore, FW_BLC) & ~0xfff; + fwater_lo = intel_de_read(display, FW_BLC) & ~0xfff; fwater_lo |= (3<<8) | planea_wm; - drm_dbg_kms(&dev_priv->drm, + drm_dbg_kms(display->drm, "Setting FIFO watermarks - A: %d\n", planea_wm); - intel_uncore_write(&dev_priv->uncore, FW_BLC, fwater_lo); + intel_de_write(display, FW_BLC, fwater_lo); } /* latency must be in 0.1us units. */ @@ -2534,24 +2532,24 @@ static u32 ilk_compute_fbc_wm(const struct intel_crtc_state *crtc_state, } static unsigned int -ilk_display_fifo_size(const struct drm_i915_private *dev_priv) +ilk_display_fifo_size(struct intel_display *display) { - if (DISPLAY_VER(dev_priv) >= 8) + if (DISPLAY_VER(display) >= 8) return 3072; - else if (DISPLAY_VER(dev_priv) >= 7) + else if (DISPLAY_VER(display) >= 7) return 768; else return 512; } static unsigned int -ilk_plane_wm_reg_max(const struct drm_i915_private *dev_priv, +ilk_plane_wm_reg_max(struct intel_display *display, int level, bool is_sprite) { - if (DISPLAY_VER(dev_priv) >= 8) + if (DISPLAY_VER(display) >= 8) /* BDW primary/sprite plane watermarks */ return level == 0 ? 255 : 2047; - else if (DISPLAY_VER(dev_priv) >= 7) + else if (DISPLAY_VER(display) >= 7) /* IVB/HSW primary/sprite plane watermarks */ return level == 0 ? 127 : 1023; else if (!is_sprite) @@ -2563,30 +2561,30 @@ ilk_plane_wm_reg_max(const struct drm_i915_private *dev_priv, } static unsigned int -ilk_cursor_wm_reg_max(const struct drm_i915_private *dev_priv, int level) +ilk_cursor_wm_reg_max(struct intel_display *display, int level) { - if (DISPLAY_VER(dev_priv) >= 7) + if (DISPLAY_VER(display) >= 7) return level == 0 ? 63 : 255; else return level == 0 ? 31 : 63; } -static unsigned int ilk_fbc_wm_reg_max(const struct drm_i915_private *dev_priv) +static unsigned int ilk_fbc_wm_reg_max(struct intel_display *display) { - if (DISPLAY_VER(dev_priv) >= 8) + if (DISPLAY_VER(display) >= 8) return 31; else return 15; } /* Calculate the maximum primary/sprite plane watermark */ -static unsigned int ilk_plane_wm_max(const struct drm_i915_private *dev_priv, +static unsigned int ilk_plane_wm_max(struct intel_display *display, int level, const struct intel_wm_config *config, enum intel_ddb_partitioning ddb_partitioning, bool is_sprite) { - unsigned int fifo_size = ilk_display_fifo_size(dev_priv); + unsigned int fifo_size = ilk_display_fifo_size(display); /* if sprites aren't enabled, sprites get nothing */ if (is_sprite && !config->sprites_enabled) @@ -2594,14 +2592,14 @@ static unsigned int ilk_plane_wm_max(const struct drm_i915_private *dev_priv, /* HSW allows LP1+ watermarks even with multiple pipes */ if (level == 0 || config->num_pipes_active > 1) { - fifo_size /= INTEL_NUM_PIPES(dev_priv); + fifo_size /= INTEL_NUM_PIPES(display); /* * For some reason the non self refresh * FIFO size is only half of the self * refresh FIFO size on ILK/SNB. */ - if (DISPLAY_VER(dev_priv) < 7) + if (DISPLAY_VER(display) < 7) fifo_size /= 2; } @@ -2617,11 +2615,11 @@ static unsigned int ilk_plane_wm_max(const struct drm_i915_private *dev_priv, } /* clamp to max that the registers can hold */ - return min(fifo_size, ilk_plane_wm_reg_max(dev_priv, level, is_sprite)); + return min(fifo_size, ilk_plane_wm_reg_max(display, level, is_sprite)); } /* Calculate the maximum cursor plane watermark */ -static unsigned int ilk_cursor_wm_max(const struct drm_i915_private *dev_priv, +static unsigned int ilk_cursor_wm_max(struct intel_display *display, int level, const struct intel_wm_config *config) { @@ -2630,32 +2628,32 @@ static unsigned int ilk_cursor_wm_max(const struct drm_i915_private *dev_priv, return 64; /* otherwise just report max that registers can hold */ - return ilk_cursor_wm_reg_max(dev_priv, level); + return ilk_cursor_wm_reg_max(display, level); } -static void ilk_compute_wm_maximums(const struct drm_i915_private *dev_priv, +static void ilk_compute_wm_maximums(struct intel_display *display, int level, const struct intel_wm_config *config, enum intel_ddb_partitioning ddb_partitioning, struct ilk_wm_maximums *max) { - max->pri = ilk_plane_wm_max(dev_priv, level, config, ddb_partitioning, false); - max->spr = ilk_plane_wm_max(dev_priv, level, config, ddb_partitioning, true); - max->cur = ilk_cursor_wm_max(dev_priv, level, config); - max->fbc = ilk_fbc_wm_reg_max(dev_priv); + max->pri = ilk_plane_wm_max(display, level, config, ddb_partitioning, false); + max->spr = ilk_plane_wm_max(display, level, config, ddb_partitioning, true); + max->cur = ilk_cursor_wm_max(display, level, config); + max->fbc = ilk_fbc_wm_reg_max(display); } -static void ilk_compute_wm_reg_maximums(const struct drm_i915_private *dev_priv, +static void ilk_compute_wm_reg_maximums(struct intel_display *display, int level, struct ilk_wm_maximums *max) { - max->pri = ilk_plane_wm_reg_max(dev_priv, level, false); - max->spr = ilk_plane_wm_reg_max(dev_priv, level, true); - max->cur = ilk_cursor_wm_reg_max(dev_priv, level); - max->fbc = ilk_fbc_wm_reg_max(dev_priv); + max->pri = ilk_plane_wm_reg_max(display, level, false); + max->spr = ilk_plane_wm_reg_max(display, level, true); + max->cur = ilk_cursor_wm_reg_max(display, level); + max->fbc = ilk_fbc_wm_reg_max(display); } -static bool ilk_validate_wm_level(struct drm_i915_private *i915, +static bool ilk_validate_wm_level(struct intel_display *display, int level, const struct ilk_wm_maximums *max, struct intel_wm_level *result) @@ -2679,15 +2677,15 @@ static bool ilk_validate_wm_level(struct drm_i915_private *i915, */ if (level == 0 && !result->enable) { if (result->pri_val > max->pri) - drm_dbg_kms(&i915->drm, + drm_dbg_kms(display->drm, "Primary WM%d too large %u (max %u)\n", level, result->pri_val, max->pri); if (result->spr_val > max->spr) - drm_dbg_kms(&i915->drm, + drm_dbg_kms(display->drm, "Sprite WM%d too large %u (max %u)\n", level, result->spr_val, max->spr); if (result->cur_val > max->cur) - drm_dbg_kms(&i915->drm, + drm_dbg_kms(display->drm, "Cursor WM%d too large %u (max %u)\n", level, result->cur_val, max->cur); @@ -2700,7 +2698,7 @@ static bool ilk_validate_wm_level(struct drm_i915_private *i915, return ret; } -static void ilk_compute_wm_level(const struct drm_i915_private *dev_priv, +static void ilk_compute_wm_level(struct intel_display *display, const struct intel_crtc *crtc, int level, struct intel_crtc_state *crtc_state, @@ -2709,9 +2707,9 @@ static void ilk_compute_wm_level(const struct drm_i915_private *dev_priv, const struct intel_plane_state *curstate, struct intel_wm_level *result) { - u16 pri_latency = dev_priv->display.wm.pri_latency[level]; - u16 spr_latency = dev_priv->display.wm.spr_latency[level]; - u16 cur_latency = dev_priv->display.wm.cur_latency[level]; + u16 pri_latency = display->wm.pri_latency[level]; + u16 spr_latency = display->wm.spr_latency[level]; + u16 cur_latency = display->wm.cur_latency[level]; /* WM1+ latency values stored in 0.5us units */ if (level > 0) { @@ -2735,11 +2733,12 @@ static void ilk_compute_wm_level(const struct drm_i915_private *dev_priv, result->enable = true; } -static void hsw_read_wm_latency(struct drm_i915_private *i915, u16 wm[]) +static void hsw_read_wm_latency(struct intel_display *display, u16 wm[]) { + struct drm_i915_private *i915 = to_i915(display->drm); u64 sskpd; - i915->display.wm.num_levels = 5; + display->wm.num_levels = 5; sskpd = intel_uncore_read64(&i915->uncore, MCH_SSKPD); @@ -2752,11 +2751,12 @@ static void hsw_read_wm_latency(struct drm_i915_private *i915, u16 wm[]) wm[4] = REG_FIELD_GET64(SSKPD_WM4_MASK_HSW, sskpd); } -static void snb_read_wm_latency(struct drm_i915_private *i915, u16 wm[]) +static void snb_read_wm_latency(struct intel_display *display, u16 wm[]) { + struct drm_i915_private *i915 = to_i915(display->drm); u32 sskpd; - i915->display.wm.num_levels = 4; + display->wm.num_levels = 4; sskpd = intel_uncore_read(&i915->uncore, MCH_SSKPD); @@ -2766,11 +2766,12 @@ static void snb_read_wm_latency(struct drm_i915_private *i915, u16 wm[]) wm[3] = REG_FIELD_GET(SSKPD_WM3_MASK_SNB, sskpd); } -static void ilk_read_wm_latency(struct drm_i915_private *i915, u16 wm[]) +static void ilk_read_wm_latency(struct intel_display *display, u16 wm[]) { + struct drm_i915_private *i915 = to_i915(display->drm); u32 mltr; - i915->display.wm.num_levels = 3; + display->wm.num_levels = 3; mltr = intel_uncore_read(&i915->uncore, MLTR_ILK); @@ -2780,24 +2781,21 @@ static void ilk_read_wm_latency(struct drm_i915_private *i915, u16 wm[]) wm[2] = REG_FIELD_GET(MLTR_WM2_MASK, mltr); } -static void intel_fixup_spr_wm_latency(struct drm_i915_private *dev_priv, - u16 wm[5]) +static void intel_fixup_spr_wm_latency(struct intel_display *display, u16 wm[5]) { /* ILK sprite LP0 latency is 1300 ns */ - if (DISPLAY_VER(dev_priv) == 5) + if (DISPLAY_VER(display) == 5) wm[0] = 13; } -static void intel_fixup_cur_wm_latency(struct drm_i915_private *dev_priv, - u16 wm[5]) +static void intel_fixup_cur_wm_latency(struct intel_display *display, u16 wm[5]) { /* ILK cursor LP0 latency is 1300 ns */ - if (DISPLAY_VER(dev_priv) == 5) + if (DISPLAY_VER(display) == 5) wm[0] = 13; } -static bool ilk_increase_wm_latency(struct drm_i915_private *dev_priv, - u16 wm[5], u16 min) +static bool ilk_increase_wm_latency(struct intel_display *display, u16 wm[5], u16 min) { int level; @@ -2805,13 +2803,13 @@ static bool ilk_increase_wm_latency(struct drm_i915_private *dev_priv, return false; wm[0] = max(wm[0], min); - for (level = 1; level < dev_priv->display.wm.num_levels; level++) + for (level = 1; level < display->wm.num_levels; level++) wm[level] = max_t(u16, wm[level], DIV_ROUND_UP(min, 5)); return true; } -static void snb_wm_latency_quirk(struct drm_i915_private *dev_priv) +static void snb_wm_latency_quirk(struct intel_display *display) { bool changed; @@ -2819,21 +2817,21 @@ static void snb_wm_latency_quirk(struct drm_i915_private *dev_priv) * The BIOS provided WM memory latency values are often * inadequate for high resolution displays. Adjust them. */ - changed = ilk_increase_wm_latency(dev_priv, dev_priv->display.wm.pri_latency, 12); - changed |= ilk_increase_wm_latency(dev_priv, dev_priv->display.wm.spr_latency, 12); - changed |= ilk_increase_wm_latency(dev_priv, dev_priv->display.wm.cur_latency, 12); + changed = ilk_increase_wm_latency(display, display->wm.pri_latency, 12); + changed |= ilk_increase_wm_latency(display, display->wm.spr_latency, 12); + changed |= ilk_increase_wm_latency(display, display->wm.cur_latency, 12); if (!changed) return; - drm_dbg_kms(&dev_priv->drm, + drm_dbg_kms(display->drm, "WM latency values increased to avoid potential underruns\n"); - intel_print_wm_latency(dev_priv, "Primary", dev_priv->display.wm.pri_latency); - intel_print_wm_latency(dev_priv, "Sprite", dev_priv->display.wm.spr_latency); - intel_print_wm_latency(dev_priv, "Cursor", dev_priv->display.wm.cur_latency); + intel_print_wm_latency(display, "Primary", display->wm.pri_latency); + intel_print_wm_latency(display, "Sprite", display->wm.spr_latency); + intel_print_wm_latency(display, "Cursor", display->wm.cur_latency); } -static void snb_wm_lp3_irq_quirk(struct drm_i915_private *dev_priv) +static void snb_wm_lp3_irq_quirk(struct intel_display *display) { /* * On some SNB machines (Thinkpad X220 Tablet at least) @@ -2846,50 +2844,50 @@ static void snb_wm_lp3_irq_quirk(struct drm_i915_private *dev_priv) * interrupts only. To play it safe we disable LP3 * watermarks entirely. */ - if (dev_priv->display.wm.pri_latency[3] == 0 && - dev_priv->display.wm.spr_latency[3] == 0 && - dev_priv->display.wm.cur_latency[3] == 0) + if (display->wm.pri_latency[3] == 0 && + display->wm.spr_latency[3] == 0 && + display->wm.cur_latency[3] == 0) return; - dev_priv->display.wm.pri_latency[3] = 0; - dev_priv->display.wm.spr_latency[3] = 0; - dev_priv->display.wm.cur_latency[3] = 0; + display->wm.pri_latency[3] = 0; + display->wm.spr_latency[3] = 0; + display->wm.cur_latency[3] = 0; - drm_dbg_kms(&dev_priv->drm, + drm_dbg_kms(display->drm, "LP3 watermarks disabled due to potential for lost interrupts\n"); - intel_print_wm_latency(dev_priv, "Primary", dev_priv->display.wm.pri_latency); - intel_print_wm_latency(dev_priv, "Sprite", dev_priv->display.wm.spr_latency); - intel_print_wm_latency(dev_priv, "Cursor", dev_priv->display.wm.cur_latency); + intel_print_wm_latency(display, "Primary", display->wm.pri_latency); + intel_print_wm_latency(display, "Sprite", display->wm.spr_latency); + intel_print_wm_latency(display, "Cursor", display->wm.cur_latency); } -static void ilk_setup_wm_latency(struct drm_i915_private *dev_priv) +static void ilk_setup_wm_latency(struct intel_display *display) { - if (IS_BROADWELL(dev_priv) || IS_HASWELL(dev_priv)) - hsw_read_wm_latency(dev_priv, dev_priv->display.wm.pri_latency); - else if (DISPLAY_VER(dev_priv) >= 6) - snb_read_wm_latency(dev_priv, dev_priv->display.wm.pri_latency); + if (display->platform.broadwell || display->platform.haswell) + hsw_read_wm_latency(display, display->wm.pri_latency); + else if (DISPLAY_VER(display) >= 6) + snb_read_wm_latency(display, display->wm.pri_latency); else - ilk_read_wm_latency(dev_priv, dev_priv->display.wm.pri_latency); + ilk_read_wm_latency(display, display->wm.pri_latency); - memcpy(dev_priv->display.wm.spr_latency, dev_priv->display.wm.pri_latency, - sizeof(dev_priv->display.wm.pri_latency)); - memcpy(dev_priv->display.wm.cur_latency, dev_priv->display.wm.pri_latency, - sizeof(dev_priv->display.wm.pri_latency)); + memcpy(display->wm.spr_latency, display->wm.pri_latency, + sizeof(display->wm.pri_latency)); + memcpy(display->wm.cur_latency, display->wm.pri_latency, + sizeof(display->wm.pri_latency)); - intel_fixup_spr_wm_latency(dev_priv, dev_priv->display.wm.spr_latency); - intel_fixup_cur_wm_latency(dev_priv, dev_priv->display.wm.cur_latency); + intel_fixup_spr_wm_latency(display, display->wm.spr_latency); + intel_fixup_cur_wm_latency(display, display->wm.cur_latency); - intel_print_wm_latency(dev_priv, "Primary", dev_priv->display.wm.pri_latency); - intel_print_wm_latency(dev_priv, "Sprite", dev_priv->display.wm.spr_latency); - intel_print_wm_latency(dev_priv, "Cursor", dev_priv->display.wm.cur_latency); + intel_print_wm_latency(display, "Primary", display->wm.pri_latency); + intel_print_wm_latency(display, "Sprite", display->wm.spr_latency); + intel_print_wm_latency(display, "Cursor", display->wm.cur_latency); - if (DISPLAY_VER(dev_priv) == 6) { - snb_wm_latency_quirk(dev_priv); - snb_wm_lp3_irq_quirk(dev_priv); + if (DISPLAY_VER(display) == 6) { + snb_wm_latency_quirk(display); + snb_wm_lp3_irq_quirk(display); } } -static bool ilk_validate_pipe_wm(struct drm_i915_private *dev_priv, +static bool ilk_validate_pipe_wm(struct intel_display *display, struct intel_pipe_wm *pipe_wm) { /* LP0 watermark maximums depend on this pipe alone */ @@ -2901,11 +2899,11 @@ static bool ilk_validate_pipe_wm(struct drm_i915_private *dev_priv, struct ilk_wm_maximums max; /* LP0 watermarks always use 1/2 DDB partitioning */ - ilk_compute_wm_maximums(dev_priv, 0, &config, INTEL_DDB_PART_1_2, &max); + ilk_compute_wm_maximums(display, 0, &config, INTEL_DDB_PART_1_2, &max); /* At least LP0 must be valid */ - if (!ilk_validate_wm_level(dev_priv, 0, &max, &pipe_wm->wm[0])) { - drm_dbg_kms(&dev_priv->drm, "LP0 watermark invalid\n"); + if (!ilk_validate_wm_level(display, 0, &max, &pipe_wm->wm[0])) { + drm_dbg_kms(display->drm, "LP0 watermark invalid\n"); return false; } @@ -2916,7 +2914,7 @@ static bool ilk_validate_pipe_wm(struct drm_i915_private *dev_priv, static int ilk_compute_pipe_wm(struct intel_atomic_state *state, struct intel_crtc *crtc) { - struct drm_i915_private *dev_priv = to_i915(state->base.dev); + struct intel_display *display = to_intel_display(state); struct intel_crtc_state *crtc_state = intel_atomic_get_new_crtc_state(state, crtc); struct intel_pipe_wm *pipe_wm; @@ -2943,10 +2941,10 @@ static int ilk_compute_pipe_wm(struct intel_atomic_state *state, pipe_wm->sprites_enabled = crtc_state->active_planes & BIT(PLANE_SPRITE0); pipe_wm->sprites_scaled = crtc_state->scaled_planes & BIT(PLANE_SPRITE0); - usable_level = dev_priv->display.wm.num_levels - 1; + usable_level = display->wm.num_levels - 1; /* ILK/SNB: LP2+ watermarks only w/o sprites */ - if (DISPLAY_VER(dev_priv) < 7 && pipe_wm->sprites_enabled) + if (DISPLAY_VER(display) < 7 && pipe_wm->sprites_enabled) usable_level = 1; /* ILK/SNB/IVB: LP1+ watermarks only w/o scaling */ @@ -2954,18 +2952,18 @@ static int ilk_compute_pipe_wm(struct intel_atomic_state *state, usable_level = 0; memset(&pipe_wm->wm, 0, sizeof(pipe_wm->wm)); - ilk_compute_wm_level(dev_priv, crtc, 0, crtc_state, + ilk_compute_wm_level(display, crtc, 0, crtc_state, pristate, sprstate, curstate, &pipe_wm->wm[0]); - if (!ilk_validate_pipe_wm(dev_priv, pipe_wm)) + if (!ilk_validate_pipe_wm(display, pipe_wm)) return -EINVAL; - ilk_compute_wm_reg_maximums(dev_priv, 1, &max); + ilk_compute_wm_reg_maximums(display, 1, &max); for (level = 1; level <= usable_level; level++) { struct intel_wm_level *wm = &pipe_wm->wm[level]; - ilk_compute_wm_level(dev_priv, crtc, level, crtc_state, + ilk_compute_wm_level(display, crtc, level, crtc_state, pristate, sprstate, curstate, wm); /* @@ -2973,7 +2971,7 @@ static int ilk_compute_pipe_wm(struct intel_atomic_state *state, * register maximums since such watermarks are * always invalid. */ - if (!ilk_validate_wm_level(dev_priv, level, &max, wm)) { + if (!ilk_validate_wm_level(display, level, &max, wm)) { memset(wm, 0, sizeof(*wm)); break; } @@ -2990,7 +2988,7 @@ static int ilk_compute_pipe_wm(struct intel_atomic_state *state, static int ilk_compute_intermediate_wm(struct intel_atomic_state *state, struct intel_crtc *crtc) { - struct drm_i915_private *dev_priv = to_i915(crtc->base.dev); + struct intel_display *display = to_intel_display(crtc); struct intel_crtc_state *new_crtc_state = intel_atomic_get_new_crtc_state(state, crtc); const struct intel_crtc_state *old_crtc_state = @@ -3015,7 +3013,7 @@ static int ilk_compute_intermediate_wm(struct intel_atomic_state *state, intermediate->sprites_enabled |= active->sprites_enabled; intermediate->sprites_scaled |= active->sprites_scaled; - for (level = 0; level < dev_priv->display.wm.num_levels; level++) { + for (level = 0; level < display->wm.num_levels; level++) { struct intel_wm_level *intermediate_wm = &intermediate->wm[level]; const struct intel_wm_level *active_wm = &active->wm[level]; @@ -3036,7 +3034,7 @@ static int ilk_compute_intermediate_wm(struct intel_atomic_state *state, * there's no safe way to transition from the old state to * the new state, so we need to fail the atomic transaction. */ - if (!ilk_validate_pipe_wm(dev_priv, intermediate)) + if (!ilk_validate_pipe_wm(display, intermediate)) return -EINVAL; /* @@ -3068,7 +3066,7 @@ static int ilk_compute_watermarks(struct intel_atomic_state *state, /* * Merge the watermarks from all active pipes for a specific level. */ -static void ilk_merge_wm_level(struct drm_i915_private *dev_priv, +static void ilk_merge_wm_level(struct intel_display *display, int level, struct intel_wm_level *ret_wm) { @@ -3076,7 +3074,7 @@ static void ilk_merge_wm_level(struct drm_i915_private *dev_priv, ret_wm->enable = true; - for_each_intel_crtc(&dev_priv->drm, crtc) { + for_each_intel_crtc(display->drm, crtc) { const struct intel_pipe_wm *active = &crtc->wm.active.ilk; const struct intel_wm_level *wm = &active->wm[level]; @@ -3101,31 +3099,31 @@ static void ilk_merge_wm_level(struct drm_i915_private *dev_priv, /* * Merge all low power watermarks for all active pipes. */ -static void ilk_wm_merge(struct drm_i915_private *dev_priv, +static void ilk_wm_merge(struct intel_display *display, const struct intel_wm_config *config, const struct ilk_wm_maximums *max, struct intel_pipe_wm *merged) { - int level, num_levels = dev_priv->display.wm.num_levels; + int level, num_levels = display->wm.num_levels; int last_enabled_level = num_levels - 1; /* ILK/SNB/IVB: LP1+ watermarks only w/ single pipe */ - if ((DISPLAY_VER(dev_priv) < 7 || IS_IVYBRIDGE(dev_priv)) && + if ((DISPLAY_VER(display) < 7 || display->platform.ivybridge) && config->num_pipes_active > 1) last_enabled_level = 0; /* ILK: FBC WM must be disabled always */ - merged->fbc_wm_enabled = DISPLAY_VER(dev_priv) >= 6; + merged->fbc_wm_enabled = DISPLAY_VER(display) >= 6; /* merge each WM1+ level */ for (level = 1; level < num_levels; level++) { struct intel_wm_level *wm = &merged->wm[level]; - ilk_merge_wm_level(dev_priv, level, wm); + ilk_merge_wm_level(display, level, wm); if (level > last_enabled_level) wm->enable = false; - else if (!ilk_validate_wm_level(dev_priv, level, max, wm)) + else if (!ilk_validate_wm_level(display, level, max, wm)) /* make sure all following levels get disabled */ last_enabled_level = level - 1; @@ -3141,8 +3139,8 @@ static void ilk_wm_merge(struct drm_i915_private *dev_priv, } /* ILK: LP2+ must be disabled when FBC WM is disabled but FBC enabled */ - if (DISPLAY_VER(dev_priv) == 5 && HAS_FBC(dev_priv) && - dev_priv->display.params.enable_fbc && !merged->fbc_wm_enabled) { + if (DISPLAY_VER(display) == 5 && HAS_FBC(display) && + display->params.enable_fbc && !merged->fbc_wm_enabled) { for (level = 2; level < num_levels; level++) { struct intel_wm_level *wm = &merged->wm[level]; @@ -3158,16 +3156,16 @@ static int ilk_wm_lp_to_level(int wm_lp, const struct intel_pipe_wm *pipe_wm) } /* The value we need to program into the WM_LPx latency field */ -static unsigned int ilk_wm_lp_latency(struct drm_i915_private *dev_priv, +static unsigned int ilk_wm_lp_latency(struct intel_display *display, int level) { - if (IS_HASWELL(dev_priv) || IS_BROADWELL(dev_priv)) + if (display->platform.haswell || display->platform.broadwell) return 2 * level; else - return dev_priv->display.wm.pri_latency[level]; + return display->wm.pri_latency[level]; } -static void ilk_compute_wm_results(struct drm_i915_private *dev_priv, +static void ilk_compute_wm_results(struct intel_display *display, const struct intel_pipe_wm *merged, enum intel_ddb_partitioning partitioning, struct ilk_wm_values *results) @@ -3191,14 +3189,14 @@ static void ilk_compute_wm_results(struct drm_i915_private *dev_priv, * disabled. Doing otherwise could cause underruns. */ results->wm_lp[wm_lp - 1] = - WM_LP_LATENCY(ilk_wm_lp_latency(dev_priv, level)) | + WM_LP_LATENCY(ilk_wm_lp_latency(display, level)) | WM_LP_PRIMARY(r->pri_val) | WM_LP_CURSOR(r->cur_val); if (r->enable) results->wm_lp[wm_lp - 1] |= WM_LP_ENABLE; - if (DISPLAY_VER(dev_priv) >= 8) + if (DISPLAY_VER(display) >= 8) results->wm_lp[wm_lp - 1] |= WM_LP_FBC_BDW(r->fbc_val); else results->wm_lp[wm_lp - 1] |= WM_LP_FBC_ILK(r->fbc_val); @@ -3209,19 +3207,19 @@ static void ilk_compute_wm_results(struct drm_i915_private *dev_priv, * Always set WM_LP_SPRITE_EN when spr_val != 0, even if the * level is disabled. Doing otherwise could cause underruns. */ - if (DISPLAY_VER(dev_priv) < 7 && r->spr_val) { - drm_WARN_ON(&dev_priv->drm, wm_lp != 1); + if (DISPLAY_VER(display) < 7 && r->spr_val) { + drm_WARN_ON(display->drm, wm_lp != 1); results->wm_lp_spr[wm_lp - 1] |= WM_LP_SPRITE_ENABLE; } } /* LP0 register values */ - for_each_intel_crtc(&dev_priv->drm, crtc) { + for_each_intel_crtc(display->drm, crtc) { enum pipe pipe = crtc->pipe; const struct intel_pipe_wm *pipe_wm = &crtc->wm.active.ilk; const struct intel_wm_level *r = &pipe_wm->wm[0]; - if (drm_WARN_ON(&dev_priv->drm, !r->enable)) + if (drm_WARN_ON(display->drm, !r->enable)) continue; results->wm_pipe[pipe] = @@ -3236,13 +3234,13 @@ static void ilk_compute_wm_results(struct drm_i915_private *dev_priv, * case both are at the same level. Prefer r1 in case they're the same. */ static struct intel_pipe_wm * -ilk_find_best_result(struct drm_i915_private *dev_priv, +ilk_find_best_result(struct intel_display *display, struct intel_pipe_wm *r1, struct intel_pipe_wm *r2) { int level, level1 = 0, level2 = 0; - for (level = 1; level < dev_priv->display.wm.num_levels; level++) { + for (level = 1; level < display->wm.num_levels; level++) { if (r1->wm[level].enable) level1 = level; if (r2->wm[level].enable) @@ -3268,7 +3266,7 @@ ilk_find_best_result(struct drm_i915_private *dev_priv, #define WM_DIRTY_FBC (1 << 24) #define WM_DIRTY_DDB (1 << 25) -static unsigned int ilk_compute_wm_dirty(struct drm_i915_private *dev_priv, +static unsigned int ilk_compute_wm_dirty(struct intel_display *display, const struct ilk_wm_values *old, const struct ilk_wm_values *new) { @@ -3276,7 +3274,7 @@ static unsigned int ilk_compute_wm_dirty(struct drm_i915_private *dev_priv, enum pipe pipe; int wm_lp; - for_each_pipe(dev_priv, pipe) { + for_each_pipe(display, pipe) { if (old->wm_pipe[pipe] != new->wm_pipe[pipe]) { dirty |= WM_DIRTY_PIPE(pipe); /* Must disable LP1+ watermarks too */ @@ -3314,25 +3312,25 @@ static unsigned int ilk_compute_wm_dirty(struct drm_i915_private *dev_priv, return dirty; } -static bool _ilk_disable_lp_wm(struct drm_i915_private *dev_priv, +static bool _ilk_disable_lp_wm(struct intel_display *display, unsigned int dirty) { - struct ilk_wm_values *previous = &dev_priv->display.wm.hw; + struct ilk_wm_values *previous = &display->wm.hw; bool changed = false; if (dirty & WM_DIRTY_LP(3) && previous->wm_lp[2] & WM_LP_ENABLE) { previous->wm_lp[2] &= ~WM_LP_ENABLE; - intel_uncore_write(&dev_priv->uncore, WM3_LP_ILK, previous->wm_lp[2]); + intel_de_write(display, WM3_LP_ILK, previous->wm_lp[2]); changed = true; } if (dirty & WM_DIRTY_LP(2) && previous->wm_lp[1] & WM_LP_ENABLE) { previous->wm_lp[1] &= ~WM_LP_ENABLE; - intel_uncore_write(&dev_priv->uncore, WM2_LP_ILK, previous->wm_lp[1]); + intel_de_write(display, WM2_LP_ILK, previous->wm_lp[1]); changed = true; } if (dirty & WM_DIRTY_LP(1) && previous->wm_lp[0] & WM_LP_ENABLE) { previous->wm_lp[0] &= ~WM_LP_ENABLE; - intel_uncore_write(&dev_priv->uncore, WM1_LP_ILK, previous->wm_lp[0]); + intel_de_write(display, WM1_LP_ILK, previous->wm_lp[0]); changed = true; } @@ -3348,73 +3346,73 @@ static bool _ilk_disable_lp_wm(struct drm_i915_private *dev_priv, * The spec says we shouldn't write when we don't need, because every write * causes WMs to be re-evaluated, expending some power. */ -static void ilk_write_wm_values(struct drm_i915_private *dev_priv, +static void ilk_write_wm_values(struct intel_display *display, struct ilk_wm_values *results) { - struct ilk_wm_values *previous = &dev_priv->display.wm.hw; + struct ilk_wm_values *previous = &display->wm.hw; unsigned int dirty; - dirty = ilk_compute_wm_dirty(dev_priv, previous, results); + dirty = ilk_compute_wm_dirty(display, previous, results); if (!dirty) return; - _ilk_disable_lp_wm(dev_priv, dirty); + _ilk_disable_lp_wm(display, dirty); if (dirty & WM_DIRTY_PIPE(PIPE_A)) - intel_uncore_write(&dev_priv->uncore, WM0_PIPE_ILK(PIPE_A), results->wm_pipe[0]); + intel_de_write(display, WM0_PIPE_ILK(PIPE_A), results->wm_pipe[0]); if (dirty & WM_DIRTY_PIPE(PIPE_B)) - intel_uncore_write(&dev_priv->uncore, WM0_PIPE_ILK(PIPE_B), results->wm_pipe[1]); + intel_de_write(display, WM0_PIPE_ILK(PIPE_B), results->wm_pipe[1]); if (dirty & WM_DIRTY_PIPE(PIPE_C)) - intel_uncore_write(&dev_priv->uncore, WM0_PIPE_ILK(PIPE_C), results->wm_pipe[2]); + intel_de_write(display, WM0_PIPE_ILK(PIPE_C), results->wm_pipe[2]); if (dirty & WM_DIRTY_DDB) { - if (IS_HASWELL(dev_priv) || IS_BROADWELL(dev_priv)) - intel_uncore_rmw(&dev_priv->uncore, WM_MISC, WM_MISC_DATA_PARTITION_5_6, - results->partitioning == INTEL_DDB_PART_1_2 ? 0 : - WM_MISC_DATA_PARTITION_5_6); + if (display->platform.haswell || display->platform.broadwell) + intel_de_rmw(display, WM_MISC, WM_MISC_DATA_PARTITION_5_6, + results->partitioning == INTEL_DDB_PART_1_2 ? 0 : + WM_MISC_DATA_PARTITION_5_6); else - intel_uncore_rmw(&dev_priv->uncore, DISP_ARB_CTL2, DISP_DATA_PARTITION_5_6, - results->partitioning == INTEL_DDB_PART_1_2 ? 0 : - DISP_DATA_PARTITION_5_6); + intel_de_rmw(display, DISP_ARB_CTL2, DISP_DATA_PARTITION_5_6, + results->partitioning == INTEL_DDB_PART_1_2 ? 0 : + DISP_DATA_PARTITION_5_6); } if (dirty & WM_DIRTY_FBC) - intel_uncore_rmw(&dev_priv->uncore, DISP_ARB_CTL, DISP_FBC_WM_DIS, - results->enable_fbc_wm ? 0 : DISP_FBC_WM_DIS); + intel_de_rmw(display, DISP_ARB_CTL, DISP_FBC_WM_DIS, + results->enable_fbc_wm ? 0 : DISP_FBC_WM_DIS); if (dirty & WM_DIRTY_LP(1) && previous->wm_lp_spr[0] != results->wm_lp_spr[0]) - intel_uncore_write(&dev_priv->uncore, WM1S_LP_ILK, results->wm_lp_spr[0]); + intel_de_write(display, WM1S_LP_ILK, results->wm_lp_spr[0]); - if (DISPLAY_VER(dev_priv) >= 7) { + if (DISPLAY_VER(display) >= 7) { if (dirty & WM_DIRTY_LP(2) && previous->wm_lp_spr[1] != results->wm_lp_spr[1]) - intel_uncore_write(&dev_priv->uncore, WM2S_LP_IVB, results->wm_lp_spr[1]); + intel_de_write(display, WM2S_LP_IVB, results->wm_lp_spr[1]); if (dirty & WM_DIRTY_LP(3) && previous->wm_lp_spr[2] != results->wm_lp_spr[2]) - intel_uncore_write(&dev_priv->uncore, WM3S_LP_IVB, results->wm_lp_spr[2]); + intel_de_write(display, WM3S_LP_IVB, results->wm_lp_spr[2]); } if (dirty & WM_DIRTY_LP(1) && previous->wm_lp[0] != results->wm_lp[0]) - intel_uncore_write(&dev_priv->uncore, WM1_LP_ILK, results->wm_lp[0]); + intel_de_write(display, WM1_LP_ILK, results->wm_lp[0]); if (dirty & WM_DIRTY_LP(2) && previous->wm_lp[1] != results->wm_lp[1]) - intel_uncore_write(&dev_priv->uncore, WM2_LP_ILK, results->wm_lp[1]); + intel_de_write(display, WM2_LP_ILK, results->wm_lp[1]); if (dirty & WM_DIRTY_LP(3) && previous->wm_lp[2] != results->wm_lp[2]) - intel_uncore_write(&dev_priv->uncore, WM3_LP_ILK, results->wm_lp[2]); + intel_de_write(display, WM3_LP_ILK, results->wm_lp[2]); - dev_priv->display.wm.hw = *results; + display->wm.hw = *results; } -bool ilk_disable_cxsr(struct drm_i915_private *dev_priv) +bool ilk_disable_cxsr(struct intel_display *display) { - return _ilk_disable_lp_wm(dev_priv, WM_DIRTY_LP_ALL); + return _ilk_disable_lp_wm(display, WM_DIRTY_LP_ALL); } -static void ilk_compute_wm_config(struct drm_i915_private *dev_priv, +static void ilk_compute_wm_config(struct intel_display *display, struct intel_wm_config *config) { struct intel_crtc *crtc; /* Compute the currently _active_ config */ - for_each_intel_crtc(&dev_priv->drm, crtc) { + for_each_intel_crtc(display->drm, crtc) { const struct intel_pipe_wm *wm = &crtc->wm.active.ilk; if (!wm->pipe_enabled) @@ -3426,7 +3424,7 @@ static void ilk_compute_wm_config(struct drm_i915_private *dev_priv, } } -static void ilk_program_watermarks(struct drm_i915_private *dev_priv) +static void ilk_program_watermarks(struct intel_display *display) { struct intel_pipe_wm lp_wm_1_2 = {}, lp_wm_5_6 = {}, *best_lp_wm; struct ilk_wm_maximums max; @@ -3434,18 +3432,18 @@ static void ilk_program_watermarks(struct drm_i915_private *dev_priv) struct ilk_wm_values results = {}; enum intel_ddb_partitioning partitioning; - ilk_compute_wm_config(dev_priv, &config); + ilk_compute_wm_config(display, &config); - ilk_compute_wm_maximums(dev_priv, 1, &config, INTEL_DDB_PART_1_2, &max); - ilk_wm_merge(dev_priv, &config, &max, &lp_wm_1_2); + ilk_compute_wm_maximums(display, 1, &config, INTEL_DDB_PART_1_2, &max); + ilk_wm_merge(display, &config, &max, &lp_wm_1_2); /* 5/6 split only in single pipe config on IVB+ */ - if (DISPLAY_VER(dev_priv) >= 7 && + if (DISPLAY_VER(display) >= 7 && config.num_pipes_active == 1 && config.sprites_enabled) { - ilk_compute_wm_maximums(dev_priv, 1, &config, INTEL_DDB_PART_5_6, &max); - ilk_wm_merge(dev_priv, &config, &max, &lp_wm_5_6); + ilk_compute_wm_maximums(display, 1, &config, INTEL_DDB_PART_5_6, &max); + ilk_wm_merge(display, &config, &max, &lp_wm_5_6); - best_lp_wm = ilk_find_best_result(dev_priv, &lp_wm_1_2, &lp_wm_5_6); + best_lp_wm = ilk_find_best_result(display, &lp_wm_1_2, &lp_wm_5_6); } else { best_lp_wm = &lp_wm_1_2; } @@ -3453,50 +3451,49 @@ static void ilk_program_watermarks(struct drm_i915_private *dev_priv) partitioning = (best_lp_wm == &lp_wm_1_2) ? INTEL_DDB_PART_1_2 : INTEL_DDB_PART_5_6; - ilk_compute_wm_results(dev_priv, best_lp_wm, partitioning, &results); + ilk_compute_wm_results(display, best_lp_wm, partitioning, &results); - ilk_write_wm_values(dev_priv, &results); + ilk_write_wm_values(display, &results); } static void ilk_initial_watermarks(struct intel_atomic_state *state, struct intel_crtc *crtc) { - struct drm_i915_private *dev_priv = to_i915(crtc->base.dev); + struct intel_display *display = to_intel_display(crtc); const struct intel_crtc_state *crtc_state = intel_atomic_get_new_crtc_state(state, crtc); - mutex_lock(&dev_priv->display.wm.wm_mutex); + mutex_lock(&display->wm.wm_mutex); crtc->wm.active.ilk = crtc_state->wm.ilk.intermediate; - ilk_program_watermarks(dev_priv); - mutex_unlock(&dev_priv->display.wm.wm_mutex); + ilk_program_watermarks(display); + mutex_unlock(&display->wm.wm_mutex); } static void ilk_optimize_watermarks(struct intel_atomic_state *state, struct intel_crtc *crtc) { - struct drm_i915_private *dev_priv = to_i915(crtc->base.dev); + struct intel_display *display = to_intel_display(crtc); const struct intel_crtc_state *crtc_state = intel_atomic_get_new_crtc_state(state, crtc); if (!crtc_state->wm.need_postvbl_update) return; - mutex_lock(&dev_priv->display.wm.wm_mutex); + mutex_lock(&display->wm.wm_mutex); crtc->wm.active.ilk = crtc_state->wm.ilk.optimal; - ilk_program_watermarks(dev_priv); - mutex_unlock(&dev_priv->display.wm.wm_mutex); + ilk_program_watermarks(display); + mutex_unlock(&display->wm.wm_mutex); } static void ilk_pipe_wm_get_hw_state(struct intel_crtc *crtc) { - struct drm_device *dev = crtc->base.dev; - struct drm_i915_private *dev_priv = to_i915(dev); - struct ilk_wm_values *hw = &dev_priv->display.wm.hw; + struct intel_display *display = to_intel_display(crtc); + struct ilk_wm_values *hw = &display->wm.hw; struct intel_crtc_state *crtc_state = to_intel_crtc_state(crtc->base.state); struct intel_pipe_wm *active = &crtc_state->wm.ilk.optimal; enum pipe pipe = crtc->pipe; - hw->wm_pipe[pipe] = intel_uncore_read(&dev_priv->uncore, WM0_PIPE_ILK(pipe)); + hw->wm_pipe[pipe] = intel_de_read(display, WM0_PIPE_ILK(pipe)); memset(active, 0, sizeof(*active)); @@ -3523,7 +3520,7 @@ static void ilk_pipe_wm_get_hw_state(struct intel_crtc *crtc) * should be marked as enabled but zeroed, * which is what we'd compute them to. */ - for (level = 0; level < dev_priv->display.wm.num_levels; level++) + for (level = 0; level < display->wm.num_levels; level++) active->wm[level].enable = true; } @@ -3572,7 +3569,7 @@ static int ilk_sanitize_watermarks_add_affected(struct drm_atomic_state *state) * through the atomic check code to calculate new watermark values in the * state object. */ -void ilk_wm_sanitize(struct drm_i915_private *dev_priv) +void ilk_wm_sanitize(struct intel_display *display) { struct drm_atomic_state *state; struct intel_atomic_state *intel_state; @@ -3583,14 +3580,14 @@ void ilk_wm_sanitize(struct drm_i915_private *dev_priv) int i; /* Only supported on platforms that use atomic watermark design */ - if (!dev_priv->display.funcs.wm->optimize_watermarks) + if (!display->funcs.wm->optimize_watermarks) return; - if (drm_WARN_ON(&dev_priv->drm, DISPLAY_VER(dev_priv) >= 9)) + if (drm_WARN_ON(display->drm, DISPLAY_VER(display) >= 9)) return; - state = drm_atomic_state_alloc(&dev_priv->drm); - if (drm_WARN_ON(&dev_priv->drm, !state)) + state = drm_atomic_state_alloc(display->drm); + if (drm_WARN_ON(display->drm, !state)) return; intel_state = to_intel_atomic_state(state); @@ -3606,14 +3603,14 @@ retry: * intermediate watermarks (since we don't trust the current * watermarks). */ - if (!HAS_GMCH(dev_priv)) + if (!HAS_GMCH(display)) intel_state->skip_intermediate_wm = true; ret = ilk_sanitize_watermarks_add_affected(state); if (ret) goto fail; - ret = intel_atomic_check(&dev_priv->drm, state); + ret = intel_atomic_check(display->drm, state); if (ret) goto fail; @@ -3643,7 +3640,7 @@ fail: * If this actually happens, we'll have to just leave the * BIOS-programmed watermarks untouched and hope for the best. */ - drm_WARN(&dev_priv->drm, ret, + drm_WARN(display->drm, ret, "Could not determine valid watermarks for inherited state\n"); drm_atomic_state_put(state); @@ -3657,18 +3654,18 @@ fail: #define _FW_WM_VLV(value, plane) \ (((value) & DSPFW_ ## plane ## _MASK_VLV) >> DSPFW_ ## plane ## _SHIFT) -static void g4x_read_wm_values(struct drm_i915_private *dev_priv, +static void g4x_read_wm_values(struct intel_display *display, struct g4x_wm_values *wm) { u32 tmp; - tmp = intel_uncore_read(&dev_priv->uncore, DSPFW1(dev_priv)); + tmp = intel_de_read(display, DSPFW1(display)); wm->sr.plane = _FW_WM(tmp, SR); wm->pipe[PIPE_B].plane[PLANE_CURSOR] = _FW_WM(tmp, CURSORB); wm->pipe[PIPE_B].plane[PLANE_PRIMARY] = _FW_WM(tmp, PLANEB); wm->pipe[PIPE_A].plane[PLANE_PRIMARY] = _FW_WM(tmp, PLANEA); - tmp = intel_uncore_read(&dev_priv->uncore, DSPFW2(dev_priv)); + tmp = intel_de_read(display, DSPFW2(display)); wm->fbc_en = tmp & DSPFW_FBC_SR_EN; wm->sr.fbc = _FW_WM(tmp, FBC_SR); wm->hpll.fbc = _FW_WM(tmp, FBC_HPLL_SR); @@ -3676,21 +3673,21 @@ static void g4x_read_wm_values(struct drm_i915_private *dev_priv, wm->pipe[PIPE_A].plane[PLANE_CURSOR] = _FW_WM(tmp, CURSORA); wm->pipe[PIPE_A].plane[PLANE_SPRITE0] = _FW_WM(tmp, SPRITEA); - tmp = intel_uncore_read(&dev_priv->uncore, DSPFW3(dev_priv)); + tmp = intel_de_read(display, DSPFW3(display)); wm->hpll_en = tmp & DSPFW_HPLL_SR_EN; wm->sr.cursor = _FW_WM(tmp, CURSOR_SR); wm->hpll.cursor = _FW_WM(tmp, HPLL_CURSOR); wm->hpll.plane = _FW_WM(tmp, HPLL_SR); } -static void vlv_read_wm_values(struct drm_i915_private *dev_priv, +static void vlv_read_wm_values(struct intel_display *display, struct vlv_wm_values *wm) { enum pipe pipe; u32 tmp; - for_each_pipe(dev_priv, pipe) { - tmp = intel_uncore_read(&dev_priv->uncore, VLV_DDL(pipe)); + for_each_pipe(display, pipe) { + tmp = intel_de_read(display, VLV_DDL(pipe)); wm->ddl[pipe].plane[PLANE_PRIMARY] = (tmp >> DDL_PLANE_SHIFT) & (DDL_PRECISION_HIGH | DRAIN_LATENCY_MASK); @@ -3702,34 +3699,34 @@ static void vlv_read_wm_values(struct drm_i915_private *dev_priv, (tmp >> DDL_SPRITE_SHIFT(1)) & (DDL_PRECISION_HIGH | DRAIN_LATENCY_MASK); } - tmp = intel_uncore_read(&dev_priv->uncore, DSPFW1(dev_priv)); + tmp = intel_de_read(display, DSPFW1(display)); wm->sr.plane = _FW_WM(tmp, SR); wm->pipe[PIPE_B].plane[PLANE_CURSOR] = _FW_WM(tmp, CURSORB); wm->pipe[PIPE_B].plane[PLANE_PRIMARY] = _FW_WM_VLV(tmp, PLANEB); wm->pipe[PIPE_A].plane[PLANE_PRIMARY] = _FW_WM_VLV(tmp, PLANEA); - tmp = intel_uncore_read(&dev_priv->uncore, DSPFW2(dev_priv)); + tmp = intel_de_read(display, DSPFW2(display)); wm->pipe[PIPE_A].plane[PLANE_SPRITE1] = _FW_WM_VLV(tmp, SPRITEB); wm->pipe[PIPE_A].plane[PLANE_CURSOR] = _FW_WM(tmp, CURSORA); wm->pipe[PIPE_A].plane[PLANE_SPRITE0] = _FW_WM_VLV(tmp, SPRITEA); - tmp = intel_uncore_read(&dev_priv->uncore, DSPFW3(dev_priv)); + tmp = intel_de_read(display, DSPFW3(display)); wm->sr.cursor = _FW_WM(tmp, CURSOR_SR); - if (IS_CHERRYVIEW(dev_priv)) { - tmp = intel_uncore_read(&dev_priv->uncore, DSPFW7_CHV); + if (display->platform.cherryview) { + tmp = intel_de_read(display, DSPFW7_CHV); wm->pipe[PIPE_B].plane[PLANE_SPRITE1] = _FW_WM_VLV(tmp, SPRITED); wm->pipe[PIPE_B].plane[PLANE_SPRITE0] = _FW_WM_VLV(tmp, SPRITEC); - tmp = intel_uncore_read(&dev_priv->uncore, DSPFW8_CHV); + tmp = intel_de_read(display, DSPFW8_CHV); wm->pipe[PIPE_C].plane[PLANE_SPRITE1] = _FW_WM_VLV(tmp, SPRITEF); wm->pipe[PIPE_C].plane[PLANE_SPRITE0] = _FW_WM_VLV(tmp, SPRITEE); - tmp = intel_uncore_read(&dev_priv->uncore, DSPFW9_CHV); + tmp = intel_de_read(display, DSPFW9_CHV); wm->pipe[PIPE_C].plane[PLANE_PRIMARY] = _FW_WM_VLV(tmp, PLANEC); wm->pipe[PIPE_C].plane[PLANE_CURSOR] = _FW_WM(tmp, CURSORC); - tmp = intel_uncore_read(&dev_priv->uncore, DSPHOWM); + tmp = intel_de_read(display, DSPHOWM); wm->sr.plane |= _FW_WM(tmp, SR_HI) << 9; wm->pipe[PIPE_C].plane[PLANE_SPRITE1] |= _FW_WM(tmp, SPRITEF_HI) << 8; wm->pipe[PIPE_C].plane[PLANE_SPRITE0] |= _FW_WM(tmp, SPRITEE_HI) << 8; @@ -3741,11 +3738,11 @@ static void vlv_read_wm_values(struct drm_i915_private *dev_priv, wm->pipe[PIPE_A].plane[PLANE_SPRITE0] |= _FW_WM(tmp, SPRITEA_HI) << 8; wm->pipe[PIPE_A].plane[PLANE_PRIMARY] |= _FW_WM(tmp, PLANEA_HI) << 8; } else { - tmp = intel_uncore_read(&dev_priv->uncore, DSPFW7); + tmp = intel_de_read(display, DSPFW7); wm->pipe[PIPE_B].plane[PLANE_SPRITE1] = _FW_WM_VLV(tmp, SPRITED); wm->pipe[PIPE_B].plane[PLANE_SPRITE0] = _FW_WM_VLV(tmp, SPRITEC); - tmp = intel_uncore_read(&dev_priv->uncore, DSPHOWM); + tmp = intel_de_read(display, DSPHOWM); wm->sr.plane |= _FW_WM(tmp, SR_HI) << 9; wm->pipe[PIPE_B].plane[PLANE_SPRITE1] |= _FW_WM(tmp, SPRITED_HI) << 8; wm->pipe[PIPE_B].plane[PLANE_SPRITE0] |= _FW_WM(tmp, SPRITEC_HI) << 8; @@ -3759,16 +3756,16 @@ static void vlv_read_wm_values(struct drm_i915_private *dev_priv, #undef _FW_WM #undef _FW_WM_VLV -static void g4x_wm_get_hw_state(struct drm_i915_private *dev_priv) +static void g4x_wm_get_hw_state(struct intel_display *display) { - struct g4x_wm_values *wm = &dev_priv->display.wm.g4x; + struct g4x_wm_values *wm = &display->wm.g4x; struct intel_crtc *crtc; - g4x_read_wm_values(dev_priv, wm); + g4x_read_wm_values(display, wm); - wm->cxsr = intel_uncore_read(&dev_priv->uncore, FW_BLC_SELF) & FW_BLC_SELF_EN; + wm->cxsr = intel_de_read(display, FW_BLC_SELF) & FW_BLC_SELF_EN; - for_each_intel_crtc(&dev_priv->drm, crtc) { + for_each_intel_crtc(display->drm, crtc) { struct intel_crtc_state *crtc_state = to_intel_crtc_state(crtc->base.state); struct g4x_wm_state *active = &crtc->wm.active.g4x; @@ -3833,7 +3830,7 @@ static void g4x_wm_get_hw_state(struct drm_i915_private *dev_priv) crtc_state->wm.g4x.optimal = *active; crtc_state->wm.g4x.intermediate = *active; - drm_dbg_kms(&dev_priv->drm, + drm_dbg_kms(display->drm, "Initial watermarks: pipe %c, plane=%d, cursor=%d, sprite=%d\n", pipe_name(pipe), wm->pipe[pipe].plane[PLANE_PRIMARY], @@ -3841,26 +3838,25 @@ static void g4x_wm_get_hw_state(struct drm_i915_private *dev_priv) wm->pipe[pipe].plane[PLANE_SPRITE0]); } - drm_dbg_kms(&dev_priv->drm, + drm_dbg_kms(display->drm, "Initial SR watermarks: plane=%d, cursor=%d fbc=%d\n", wm->sr.plane, wm->sr.cursor, wm->sr.fbc); - drm_dbg_kms(&dev_priv->drm, + drm_dbg_kms(display->drm, "Initial HPLL watermarks: plane=%d, SR cursor=%d fbc=%d\n", wm->hpll.plane, wm->hpll.cursor, wm->hpll.fbc); - drm_dbg_kms(&dev_priv->drm, "Initial SR=%s HPLL=%s FBC=%s\n", + drm_dbg_kms(display->drm, "Initial SR=%s HPLL=%s FBC=%s\n", str_yes_no(wm->cxsr), str_yes_no(wm->hpll_en), str_yes_no(wm->fbc_en)); } -static void g4x_wm_sanitize(struct drm_i915_private *dev_priv) +static void g4x_wm_sanitize(struct intel_display *display) { - struct intel_display *display = &dev_priv->display; struct intel_plane *plane; struct intel_crtc *crtc; - mutex_lock(&dev_priv->display.wm.wm_mutex); + mutex_lock(&display->wm.wm_mutex); - for_each_intel_plane(&dev_priv->drm, plane) { + for_each_intel_plane(display->drm, plane) { struct intel_crtc *crtc = intel_crtc_for_pipe(display, plane->pipe); struct intel_crtc_state *crtc_state = @@ -3873,7 +3869,7 @@ static void g4x_wm_sanitize(struct drm_i915_private *dev_priv) if (plane_state->uapi.visible) continue; - for (level = 0; level < dev_priv->display.wm.num_levels; level++) { + for (level = 0; level < display->wm.num_levels; level++) { struct g4x_pipe_wm *raw = &crtc_state->wm.g4x.raw[level]; @@ -3884,36 +3880,37 @@ static void g4x_wm_sanitize(struct drm_i915_private *dev_priv) } } - for_each_intel_crtc(&dev_priv->drm, crtc) { + for_each_intel_crtc(display->drm, crtc) { struct intel_crtc_state *crtc_state = to_intel_crtc_state(crtc->base.state); int ret; ret = _g4x_compute_pipe_wm(crtc_state); - drm_WARN_ON(&dev_priv->drm, ret); + drm_WARN_ON(display->drm, ret); crtc_state->wm.g4x.intermediate = crtc_state->wm.g4x.optimal; crtc->wm.active.g4x = crtc_state->wm.g4x.optimal; } - g4x_program_watermarks(dev_priv); + g4x_program_watermarks(display); - mutex_unlock(&dev_priv->display.wm.wm_mutex); + mutex_unlock(&display->wm.wm_mutex); } -static void vlv_wm_get_hw_state(struct drm_i915_private *dev_priv) +static void vlv_wm_get_hw_state(struct intel_display *display) { - struct vlv_wm_values *wm = &dev_priv->display.wm.vlv; + struct drm_i915_private *dev_priv = to_i915(display->drm); + struct vlv_wm_values *wm = &display->wm.vlv; struct intel_crtc *crtc; u32 val; - vlv_read_wm_values(dev_priv, wm); + vlv_read_wm_values(display, wm); - wm->cxsr = intel_uncore_read(&dev_priv->uncore, FW_BLC_SELF_VLV) & FW_CSPWRDWNEN; + wm->cxsr = intel_de_read(display, FW_BLC_SELF_VLV) & FW_CSPWRDWNEN; wm->level = VLV_WM_LEVEL_PM2; - if (IS_CHERRYVIEW(dev_priv)) { + if (display->platform.cherryview) { vlv_punit_get(dev_priv); val = vlv_punit_read(dev_priv, PUNIT_REG_DSPSSPM); @@ -3935,10 +3932,10 @@ static void vlv_wm_get_hw_state(struct drm_i915_private *dev_priv) if (wait_for((vlv_punit_read(dev_priv, PUNIT_REG_DDR_SETUP2) & FORCE_DDR_FREQ_REQ_ACK) == 0, 3)) { - drm_dbg_kms(&dev_priv->drm, + drm_dbg_kms(display->drm, "Punit not acking DDR DVFS request, " "assuming DDR DVFS is disabled\n"); - dev_priv->display.wm.num_levels = VLV_WM_LEVEL_PM5 + 1; + display->wm.num_levels = VLV_WM_LEVEL_PM5 + 1; } else { val = vlv_punit_read(dev_priv, PUNIT_REG_DDR_SETUP2); if ((val & FORCE_DDR_HIGH_FREQ) == 0) @@ -3948,7 +3945,7 @@ static void vlv_wm_get_hw_state(struct drm_i915_private *dev_priv) vlv_punit_put(dev_priv); } - for_each_intel_crtc(&dev_priv->drm, crtc) { + for_each_intel_crtc(display->drm, crtc) { struct intel_crtc_state *crtc_state = to_intel_crtc_state(crtc->base.state); struct vlv_wm_state *active = &crtc->wm.active.vlv; @@ -3988,7 +3985,7 @@ static void vlv_wm_get_hw_state(struct drm_i915_private *dev_priv) crtc_state->wm.vlv.optimal = *active; crtc_state->wm.vlv.intermediate = *active; - drm_dbg_kms(&dev_priv->drm, + drm_dbg_kms(display->drm, "Initial watermarks: pipe %c, plane=%d, cursor=%d, sprite0=%d, sprite1=%d\n", pipe_name(pipe), wm->pipe[pipe].plane[PLANE_PRIMARY], @@ -3997,20 +3994,19 @@ static void vlv_wm_get_hw_state(struct drm_i915_private *dev_priv) wm->pipe[pipe].plane[PLANE_SPRITE1]); } - drm_dbg_kms(&dev_priv->drm, + drm_dbg_kms(display->drm, "Initial watermarks: SR plane=%d, SR cursor=%d level=%d cxsr=%d\n", wm->sr.plane, wm->sr.cursor, wm->level, wm->cxsr); } -static void vlv_wm_sanitize(struct drm_i915_private *dev_priv) +static void vlv_wm_sanitize(struct intel_display *display) { - struct intel_display *display = &dev_priv->display; struct intel_plane *plane; struct intel_crtc *crtc; - mutex_lock(&dev_priv->display.wm.wm_mutex); + mutex_lock(&display->wm.wm_mutex); - for_each_intel_plane(&dev_priv->drm, plane) { + for_each_intel_plane(display->drm, plane) { struct intel_crtc *crtc = intel_crtc_for_pipe(display, plane->pipe); struct intel_crtc_state *crtc_state = @@ -4023,7 +4019,7 @@ static void vlv_wm_sanitize(struct drm_i915_private *dev_priv) if (plane_state->uapi.visible) continue; - for (level = 0; level < dev_priv->display.wm.num_levels; level++) { + for (level = 0; level < display->wm.num_levels; level++) { struct g4x_pipe_wm *raw = &crtc_state->wm.vlv.raw[level]; @@ -4031,33 +4027,33 @@ static void vlv_wm_sanitize(struct drm_i915_private *dev_priv) } } - for_each_intel_crtc(&dev_priv->drm, crtc) { + for_each_intel_crtc(display->drm, crtc) { struct intel_crtc_state *crtc_state = to_intel_crtc_state(crtc->base.state); int ret; ret = _vlv_compute_pipe_wm(crtc_state); - drm_WARN_ON(&dev_priv->drm, ret); + drm_WARN_ON(display->drm, ret); crtc_state->wm.vlv.intermediate = crtc_state->wm.vlv.optimal; crtc->wm.active.vlv = crtc_state->wm.vlv.optimal; } - vlv_program_watermarks(dev_priv); + vlv_program_watermarks(display); - mutex_unlock(&dev_priv->display.wm.wm_mutex); + mutex_unlock(&display->wm.wm_mutex); } /* * FIXME should probably kill this and improve * the real watermark readout/sanitation instead */ -static void ilk_init_lp_watermarks(struct drm_i915_private *dev_priv) +static void ilk_init_lp_watermarks(struct intel_display *display) { - intel_uncore_rmw(&dev_priv->uncore, WM3_LP_ILK, WM_LP_ENABLE, 0); - intel_uncore_rmw(&dev_priv->uncore, WM2_LP_ILK, WM_LP_ENABLE, 0); - intel_uncore_rmw(&dev_priv->uncore, WM1_LP_ILK, WM_LP_ENABLE, 0); + intel_de_rmw(display, WM3_LP_ILK, WM_LP_ENABLE, 0); + intel_de_rmw(display, WM2_LP_ILK, WM_LP_ENABLE, 0); + intel_de_rmw(display, WM1_LP_ILK, WM_LP_ENABLE, 0); /* * Don't touch WM_LP_SPRITE_ENABLE here. @@ -4065,37 +4061,37 @@ static void ilk_init_lp_watermarks(struct drm_i915_private *dev_priv) */ } -static void ilk_wm_get_hw_state(struct drm_i915_private *dev_priv) +static void ilk_wm_get_hw_state(struct intel_display *display) { - struct ilk_wm_values *hw = &dev_priv->display.wm.hw; + struct ilk_wm_values *hw = &display->wm.hw; struct intel_crtc *crtc; - ilk_init_lp_watermarks(dev_priv); + ilk_init_lp_watermarks(display); - for_each_intel_crtc(&dev_priv->drm, crtc) + for_each_intel_crtc(display->drm, crtc) ilk_pipe_wm_get_hw_state(crtc); - hw->wm_lp[0] = intel_uncore_read(&dev_priv->uncore, WM1_LP_ILK); - hw->wm_lp[1] = intel_uncore_read(&dev_priv->uncore, WM2_LP_ILK); - hw->wm_lp[2] = intel_uncore_read(&dev_priv->uncore, WM3_LP_ILK); + hw->wm_lp[0] = intel_de_read(display, WM1_LP_ILK); + hw->wm_lp[1] = intel_de_read(display, WM2_LP_ILK); + hw->wm_lp[2] = intel_de_read(display, WM3_LP_ILK); - hw->wm_lp_spr[0] = intel_uncore_read(&dev_priv->uncore, WM1S_LP_ILK); - if (DISPLAY_VER(dev_priv) >= 7) { - hw->wm_lp_spr[1] = intel_uncore_read(&dev_priv->uncore, WM2S_LP_IVB); - hw->wm_lp_spr[2] = intel_uncore_read(&dev_priv->uncore, WM3S_LP_IVB); + hw->wm_lp_spr[0] = intel_de_read(display, WM1S_LP_ILK); + if (DISPLAY_VER(display) >= 7) { + hw->wm_lp_spr[1] = intel_de_read(display, WM2S_LP_IVB); + hw->wm_lp_spr[2] = intel_de_read(display, WM3S_LP_IVB); } - if (IS_HASWELL(dev_priv) || IS_BROADWELL(dev_priv)) - hw->partitioning = (intel_uncore_read(&dev_priv->uncore, WM_MISC) & + if (display->platform.haswell || display->platform.broadwell) + hw->partitioning = (intel_de_read(display, WM_MISC) & WM_MISC_DATA_PARTITION_5_6) ? INTEL_DDB_PART_5_6 : INTEL_DDB_PART_1_2; - else if (IS_IVYBRIDGE(dev_priv)) - hw->partitioning = (intel_uncore_read(&dev_priv->uncore, DISP_ARB_CTL2) & + else if (display->platform.ivybridge) + hw->partitioning = (intel_de_read(display, DISP_ARB_CTL2) & DISP_DATA_PARTITION_5_6) ? INTEL_DDB_PART_5_6 : INTEL_DDB_PART_1_2; hw->enable_fbc_wm = - !(intel_uncore_read(&dev_priv->uncore, DISP_ARB_CTL) & DISP_FBC_WM_DIS); + !(intel_de_read(display, DISP_ARB_CTL) & DISP_FBC_WM_DIS); } static const struct intel_wm_funcs ilk_wm_funcs = { @@ -4145,39 +4141,41 @@ static const struct intel_wm_funcs i845_wm_funcs = { static const struct intel_wm_funcs nop_funcs = { }; -void i9xx_wm_init(struct drm_i915_private *dev_priv) +void i9xx_wm_init(struct intel_display *display) { + struct drm_i915_private *dev_priv = to_i915(display->drm); + /* For FIFO watermark updates */ if (HAS_PCH_SPLIT(dev_priv)) { - ilk_setup_wm_latency(dev_priv); - dev_priv->display.funcs.wm = &ilk_wm_funcs; - } else if (IS_VALLEYVIEW(dev_priv) || IS_CHERRYVIEW(dev_priv)) { - vlv_setup_wm_latency(dev_priv); - dev_priv->display.funcs.wm = &vlv_wm_funcs; - } else if (IS_G4X(dev_priv)) { - g4x_setup_wm_latency(dev_priv); - dev_priv->display.funcs.wm = &g4x_wm_funcs; - } else if (IS_PINEVIEW(dev_priv)) { - if (!pnv_get_cxsr_latency(dev_priv)) { - drm_info(&dev_priv->drm, "Unknown FSB/MEM, disabling CxSR\n"); + ilk_setup_wm_latency(display); + display->funcs.wm = &ilk_wm_funcs; + } else if (display->platform.valleyview || display->platform.cherryview) { + vlv_setup_wm_latency(display); + display->funcs.wm = &vlv_wm_funcs; + } else if (display->platform.g4x) { + g4x_setup_wm_latency(display); + display->funcs.wm = &g4x_wm_funcs; + } else if (display->platform.pineview) { + if (!pnv_get_cxsr_latency(display)) { + drm_info(display->drm, "Unknown FSB/MEM, disabling CxSR\n"); /* Disable CxSR and never update its watermark again */ - intel_set_memory_cxsr(dev_priv, false); - dev_priv->display.funcs.wm = &nop_funcs; + intel_set_memory_cxsr(display, false); + display->funcs.wm = &nop_funcs; } else { - dev_priv->display.funcs.wm = &pnv_wm_funcs; + display->funcs.wm = &pnv_wm_funcs; } - } else if (DISPLAY_VER(dev_priv) == 4) { - dev_priv->display.funcs.wm = &i965_wm_funcs; - } else if (DISPLAY_VER(dev_priv) == 3) { - dev_priv->display.funcs.wm = &i9xx_wm_funcs; - } else if (DISPLAY_VER(dev_priv) == 2) { - if (INTEL_NUM_PIPES(dev_priv) == 1) - dev_priv->display.funcs.wm = &i845_wm_funcs; + } else if (DISPLAY_VER(display) == 4) { + display->funcs.wm = &i965_wm_funcs; + } else if (DISPLAY_VER(display) == 3) { + display->funcs.wm = &i9xx_wm_funcs; + } else if (DISPLAY_VER(display) == 2) { + if (INTEL_NUM_PIPES(display) == 1) + display->funcs.wm = &i845_wm_funcs; else - dev_priv->display.funcs.wm = &i9xx_wm_funcs; + display->funcs.wm = &i9xx_wm_funcs; } else { - drm_err(&dev_priv->drm, + drm_err(display->drm, "unexpected fall-through in %s\n", __func__); - dev_priv->display.funcs.wm = &nop_funcs; + display->funcs.wm = &nop_funcs; } } diff --git a/drivers/gpu/drm/i915/display/i9xx_wm.h b/drivers/gpu/drm/i915/display/i9xx_wm.h index 06ac37c6c94b..7bb363b2a756 100644 --- a/drivers/gpu/drm/i915/display/i9xx_wm.h +++ b/drivers/gpu/drm/i915/display/i9xx_wm.h @@ -8,28 +8,28 @@ #include -struct drm_i915_private; struct intel_crtc_state; +struct intel_display; struct intel_plane_state; #ifdef I915 -bool ilk_disable_cxsr(struct drm_i915_private *i915); -void ilk_wm_sanitize(struct drm_i915_private *i915); -bool intel_set_memory_cxsr(struct drm_i915_private *i915, bool enable); -void i9xx_wm_init(struct drm_i915_private *i915); +bool ilk_disable_cxsr(struct intel_display *display); +void ilk_wm_sanitize(struct intel_display *display); +bool intel_set_memory_cxsr(struct intel_display *display, bool enable); +void i9xx_wm_init(struct intel_display *display); #else -static inline bool ilk_disable_cxsr(struct drm_i915_private *i915) +static inline bool ilk_disable_cxsr(struct intel_display *display) { return false; } -static inline void ilk_wm_sanitize(struct drm_i915_private *i915) +static inline void ilk_wm_sanitize(struct intel_display *display) { } -static inline bool intel_set_memory_cxsr(struct drm_i915_private *i915, bool enable) +static inline bool intel_set_memory_cxsr(struct intel_display *display, bool enable) { return false; } -static inline void i9xx_wm_init(struct drm_i915_private *i915) +static inline void i9xx_wm_init(struct intel_display *display) { } #endif diff --git a/drivers/gpu/drm/i915/display/icl_dsi.c b/drivers/gpu/drm/i915/display/icl_dsi.c index 402b7b2e1829..ca7033251e91 100644 --- a/drivers/gpu/drm/i915/display/icl_dsi.c +++ b/drivers/gpu/drm/i915/display/icl_dsi.c @@ -29,6 +29,7 @@ #include #include #include +#include #include #include "i915_reg.h" @@ -1826,107 +1827,56 @@ static const struct mipi_dsi_host_ops gen11_dsi_host_ops = { .transfer = gen11_dsi_host_transfer, }; -#define ICL_PREPARE_CNT_MAX 0x7 -#define ICL_CLK_ZERO_CNT_MAX 0xf -#define ICL_TRAIL_CNT_MAX 0x7 -#define ICL_TCLK_PRE_CNT_MAX 0x3 -#define ICL_TCLK_POST_CNT_MAX 0x7 -#define ICL_HS_ZERO_CNT_MAX 0xf -#define ICL_EXIT_ZERO_CNT_MAX 0x7 - static void icl_dphy_param_init(struct intel_dsi *intel_dsi) { - struct intel_display *display = to_intel_display(&intel_dsi->base); struct intel_connector *connector = intel_dsi->attached_connector; struct mipi_config *mipi_config = connector->panel.vbt.dsi.config; u32 tlpx_ns; - u32 prepare_cnt, exit_zero_cnt, clk_zero_cnt, trail_cnt; - u32 ths_prepare_ns, tclk_trail_ns; - u32 hs_zero_cnt; - u32 tclk_pre_cnt; + u32 tclk_prepare_esc_clk, tclk_zero_esc_clk, tclk_pre_esc_clk; + u32 ths_prepare_esc_clk, ths_zero_esc_clk, ths_exit_esc_clk; tlpx_ns = intel_dsi_tlpx_ns(intel_dsi); - tclk_trail_ns = max(mipi_config->tclk_trail, mipi_config->ths_trail); - ths_prepare_ns = max(mipi_config->ths_prepare, - mipi_config->tclk_prepare); - /* - * prepare cnt in escape clocks - * this field represents a hexadecimal value with a precision - * of 1.2 – i.e. the most significant bit is the integer - * and the least significant 2 bits are fraction bits. - * so, the field can represent a range of 0.25 to 1.75 + * The clock and data lane prepare timing parameters are in expressed in + * units of 1/4 escape clocks, and all the other timings parameters in + * escape clocks. */ - prepare_cnt = DIV_ROUND_UP(ths_prepare_ns * 4, tlpx_ns); - if (prepare_cnt > ICL_PREPARE_CNT_MAX) { - drm_dbg_kms(display->drm, "prepare_cnt out of range (%d)\n", - prepare_cnt); - prepare_cnt = ICL_PREPARE_CNT_MAX; - } + tclk_prepare_esc_clk = DIV_ROUND_UP(mipi_config->tclk_prepare * 4, tlpx_ns); + tclk_prepare_esc_clk = min(tclk_prepare_esc_clk, 7); - /* clk zero count in escape clocks */ - clk_zero_cnt = DIV_ROUND_UP(mipi_config->tclk_prepare_clkzero - - ths_prepare_ns, tlpx_ns); - if (clk_zero_cnt > ICL_CLK_ZERO_CNT_MAX) { - drm_dbg_kms(display->drm, - "clk_zero_cnt out of range (%d)\n", clk_zero_cnt); - clk_zero_cnt = ICL_CLK_ZERO_CNT_MAX; - } + tclk_zero_esc_clk = DIV_ROUND_UP(mipi_config->tclk_prepare_clkzero - + mipi_config->tclk_prepare, tlpx_ns); + tclk_zero_esc_clk = min(tclk_zero_esc_clk, 15); - /* trail cnt in escape clocks*/ - trail_cnt = DIV_ROUND_UP(tclk_trail_ns, tlpx_ns); - if (trail_cnt > ICL_TRAIL_CNT_MAX) { - drm_dbg_kms(display->drm, "trail_cnt out of range (%d)\n", - trail_cnt); - trail_cnt = ICL_TRAIL_CNT_MAX; - } + tclk_pre_esc_clk = DIV_ROUND_UP(mipi_config->tclk_pre, tlpx_ns); + tclk_pre_esc_clk = min(tclk_pre_esc_clk, 3); - /* tclk pre count in escape clocks */ - tclk_pre_cnt = DIV_ROUND_UP(mipi_config->tclk_pre, tlpx_ns); - if (tclk_pre_cnt > ICL_TCLK_PRE_CNT_MAX) { - drm_dbg_kms(display->drm, - "tclk_pre_cnt out of range (%d)\n", tclk_pre_cnt); - tclk_pre_cnt = ICL_TCLK_PRE_CNT_MAX; - } + ths_prepare_esc_clk = DIV_ROUND_UP(mipi_config->ths_prepare * 4, tlpx_ns); + ths_prepare_esc_clk = min(ths_prepare_esc_clk, 7); - /* hs zero cnt in escape clocks */ - hs_zero_cnt = DIV_ROUND_UP(mipi_config->ths_prepare_hszero - - ths_prepare_ns, tlpx_ns); - if (hs_zero_cnt > ICL_HS_ZERO_CNT_MAX) { - drm_dbg_kms(display->drm, "hs_zero_cnt out of range (%d)\n", - hs_zero_cnt); - hs_zero_cnt = ICL_HS_ZERO_CNT_MAX; - } + ths_zero_esc_clk = DIV_ROUND_UP(mipi_config->ths_prepare_hszero - + mipi_config->ths_prepare, tlpx_ns); + ths_zero_esc_clk = min(ths_zero_esc_clk, 15); - /* hs exit zero cnt in escape clocks */ - exit_zero_cnt = DIV_ROUND_UP(mipi_config->ths_exit, tlpx_ns); - if (exit_zero_cnt > ICL_EXIT_ZERO_CNT_MAX) { - drm_dbg_kms(display->drm, - "exit_zero_cnt out of range (%d)\n", - exit_zero_cnt); - exit_zero_cnt = ICL_EXIT_ZERO_CNT_MAX; - } + ths_exit_esc_clk = DIV_ROUND_UP(mipi_config->ths_exit, tlpx_ns); + ths_exit_esc_clk = min(ths_exit_esc_clk, 7); /* clock lane dphy timings */ intel_dsi->dphy_reg = (CLK_PREPARE_OVERRIDE | - CLK_PREPARE(prepare_cnt) | + CLK_PREPARE(tclk_prepare_esc_clk) | CLK_ZERO_OVERRIDE | - CLK_ZERO(clk_zero_cnt) | + CLK_ZERO(tclk_zero_esc_clk) | CLK_PRE_OVERRIDE | - CLK_PRE(tclk_pre_cnt) | - CLK_TRAIL_OVERRIDE | - CLK_TRAIL(trail_cnt)); + CLK_PRE(tclk_pre_esc_clk)); /* data lanes dphy timings */ intel_dsi->dphy_data_lane_reg = (HS_PREPARE_OVERRIDE | - HS_PREPARE(prepare_cnt) | + HS_PREPARE(ths_prepare_esc_clk) | HS_ZERO_OVERRIDE | - HS_ZERO(hs_zero_cnt) | - HS_TRAIL_OVERRIDE | - HS_TRAIL(trail_cnt) | + HS_ZERO(ths_zero_esc_clk) | HS_EXIT_OVERRIDE | - HS_EXIT(exit_zero_cnt)); + HS_EXIT(ths_exit_esc_clk)); intel_dsi_log_params(intel_dsi); } diff --git a/drivers/gpu/drm/i915/display/intel_atomic.c b/drivers/gpu/drm/i915/display/intel_atomic.c index 03dc54c802d3..e83feca5c9c9 100644 --- a/drivers/gpu/drm/i915/display/intel_atomic.c +++ b/drivers/gpu/drm/i915/display/intel_atomic.c @@ -33,16 +33,17 @@ #include #include #include +#include -#include "i915_drv.h" #include "intel_atomic.h" #include "intel_cdclk.h" +#include "intel_display_core.h" #include "intel_display_types.h" #include "intel_dp_tunnel.h" +#include "intel_fb.h" #include "intel_global_state.h" #include "intel_hdcp.h" #include "intel_psr.h" -#include "intel_fb.h" #include "skl_universal_plane.h" /** @@ -59,17 +60,16 @@ int intel_digital_connector_atomic_get_property(struct drm_connector *connector, struct drm_property *property, u64 *val) { - struct drm_device *dev = connector->dev; - struct drm_i915_private *dev_priv = to_i915(dev); + struct intel_display *display = to_intel_display(connector->dev); const struct intel_digital_connector_state *intel_conn_state = to_intel_digital_connector_state(state); - if (property == dev_priv->display.properties.force_audio) + if (property == display->properties.force_audio) *val = intel_conn_state->force_audio; - else if (property == dev_priv->display.properties.broadcast_rgb) + else if (property == display->properties.broadcast_rgb) *val = intel_conn_state->broadcast_rgb; else { - drm_dbg_atomic(&dev_priv->drm, + drm_dbg_atomic(display->drm, "Unknown property [PROP:%d:%s]\n", property->base.id, property->name); return -EINVAL; @@ -92,22 +92,21 @@ int intel_digital_connector_atomic_set_property(struct drm_connector *connector, struct drm_property *property, u64 val) { - struct drm_device *dev = connector->dev; - struct drm_i915_private *dev_priv = to_i915(dev); + struct intel_display *display = to_intel_display(connector->dev); struct intel_digital_connector_state *intel_conn_state = to_intel_digital_connector_state(state); - if (property == dev_priv->display.properties.force_audio) { + if (property == display->properties.force_audio) { intel_conn_state->force_audio = val; return 0; } - if (property == dev_priv->display.properties.broadcast_rgb) { + if (property == display->properties.broadcast_rgb) { intel_conn_state->broadcast_rgb = val; return 0; } - drm_dbg_atomic(&dev_priv->drm, "Unknown property [PROP:%d:%s]\n", + drm_dbg_atomic(display->drm, "Unknown property [PROP:%d:%s]\n", property->base.id, property->name); return -EINVAL; } diff --git a/drivers/gpu/drm/i915/display/intel_backlight.c b/drivers/gpu/drm/i915/display/intel_backlight.c index 178dc6c8de80..4f3fa966c537 100644 --- a/drivers/gpu/drm/i915/display/intel_backlight.c +++ b/drivers/gpu/drm/i915/display/intel_backlight.c @@ -16,6 +16,7 @@ #include "intel_backlight_regs.h" #include "intel_connector.h" #include "intel_de.h" +#include "intel_display_rpm.h" #include "intel_display_types.h" #include "intel_dp_aux_backlight.h" #include "intel_dsi_dcs_backlight.h" @@ -901,11 +902,9 @@ static int intel_backlight_device_get_brightness(struct backlight_device *bd) { struct intel_connector *connector = bl_get_data(bd); struct intel_display *display = to_intel_display(connector); - struct drm_i915_private *i915 = to_i915(connector->base.dev); - intel_wakeref_t wakeref; int ret = 0; - with_intel_runtime_pm(&i915->runtime_pm, wakeref) { + with_intel_display_rpm(display) { u32 hw_level; drm_modeset_lock(&display->drm->mode_config.connection_mutex, NULL); diff --git a/drivers/gpu/drm/i915/display/intel_bios.c b/drivers/gpu/drm/i915/display/intel_bios.c index a8d08d7d82b3..fabfcf2caa69 100644 --- a/drivers/gpu/drm/i915/display/intel_bios.c +++ b/drivers/gpu/drm/i915/display/intel_bios.c @@ -37,6 +37,7 @@ #include "i915_drv.h" #include "intel_display.h" +#include "intel_display_rpm.h" #include "intel_display_types.h" #include "intel_gmbus.h" @@ -3115,7 +3116,6 @@ static const struct vbt_header *intel_bios_get_vbt(struct intel_display *display { struct drm_i915_private *i915 = to_i915(display->drm); const struct vbt_header *vbt = NULL; - intel_wakeref_t wakeref; vbt = firmware_get_vbt(display, sizep); @@ -3127,11 +3127,11 @@ static const struct vbt_header *intel_bios_get_vbt(struct intel_display *display * through MMIO or PCI mapping */ if (!vbt && IS_DGFX(i915)) - with_intel_runtime_pm(&i915->runtime_pm, wakeref) + with_intel_display_rpm(display) vbt = oprom_get_vbt(display, intel_rom_spi(i915), sizep, "SPI flash"); if (!vbt) - with_intel_runtime_pm(&i915->runtime_pm, wakeref) + with_intel_display_rpm(display) vbt = oprom_get_vbt(display, intel_rom_pci(i915), sizep, "PCI ROM"); return vbt; diff --git a/drivers/gpu/drm/i915/display/intel_bw.c b/drivers/gpu/drm/i915/display/intel_bw.c index 048be2872247..a5dd2932b852 100644 --- a/drivers/gpu/drm/i915/display/intel_bw.c +++ b/drivers/gpu/drm/i915/display/intel_bw.c @@ -39,14 +39,15 @@ struct intel_qgv_info { u8 deinterleave; }; -static int dg1_mchbar_read_qgv_point_info(struct drm_i915_private *dev_priv, +static int dg1_mchbar_read_qgv_point_info(struct intel_display *display, struct intel_qgv_point *sp, int point) { + struct drm_i915_private *i915 = to_i915(display->drm); u32 dclk_ratio, dclk_reference; u32 val; - val = intel_uncore_read(&dev_priv->uncore, SA_PERF_STATUS_0_0_0_MCHBAR_PC); + val = intel_uncore_read(&i915->uncore, SA_PERF_STATUS_0_0_0_MCHBAR_PC); dclk_ratio = REG_FIELD_GET(DG1_QCLK_RATIO_MASK, val); if (val & DG1_QCLK_REFERENCE) dclk_reference = 6; /* 6 * 16.666 MHz = 100 MHz */ @@ -54,18 +55,18 @@ static int dg1_mchbar_read_qgv_point_info(struct drm_i915_private *dev_priv, dclk_reference = 8; /* 8 * 16.666 MHz = 133 MHz */ sp->dclk = DIV_ROUND_UP((16667 * dclk_ratio * dclk_reference) + 500, 1000); - val = intel_uncore_read(&dev_priv->uncore, SKL_MC_BIOS_DATA_0_0_0_MCHBAR_PCU); + val = intel_uncore_read(&i915->uncore, SKL_MC_BIOS_DATA_0_0_0_MCHBAR_PCU); if (val & DG1_GEAR_TYPE) sp->dclk *= 2; if (sp->dclk == 0) return -EINVAL; - val = intel_uncore_read(&dev_priv->uncore, MCHBAR_CH0_CR_TC_PRE_0_0_0_MCHBAR); + val = intel_uncore_read(&i915->uncore, MCHBAR_CH0_CR_TC_PRE_0_0_0_MCHBAR); sp->t_rp = REG_FIELD_GET(DG1_DRAM_T_RP_MASK, val); sp->t_rdpre = REG_FIELD_GET(DG1_DRAM_T_RDPRE_MASK, val); - val = intel_uncore_read(&dev_priv->uncore, MCHBAR_CH0_CR_TC_PRE_0_0_0_MCHBAR_HIGH); + val = intel_uncore_read(&i915->uncore, MCHBAR_CH0_CR_TC_PRE_0_0_0_MCHBAR_HIGH); sp->t_rcd = REG_FIELD_GET(DG1_DRAM_T_RCD_MASK, val); sp->t_ras = REG_FIELD_GET(DG1_DRAM_T_RAS_MASK, val); @@ -74,22 +75,23 @@ static int dg1_mchbar_read_qgv_point_info(struct drm_i915_private *dev_priv, return 0; } -static int icl_pcode_read_qgv_point_info(struct drm_i915_private *dev_priv, +static int icl_pcode_read_qgv_point_info(struct intel_display *display, struct intel_qgv_point *sp, int point) { + struct drm_i915_private *i915 = to_i915(display->drm); u32 val = 0, val2 = 0; u16 dclk; int ret; - ret = snb_pcode_read(&dev_priv->uncore, ICL_PCODE_MEM_SUBSYSYSTEM_INFO | + ret = snb_pcode_read(&i915->uncore, ICL_PCODE_MEM_SUBSYSYSTEM_INFO | ICL_PCODE_MEM_SS_READ_QGV_POINT_INFO(point), &val, &val2); if (ret) return ret; dclk = val & 0xffff; - sp->dclk = DIV_ROUND_UP((16667 * dclk) + (DISPLAY_VER(dev_priv) >= 12 ? 500 : 0), + sp->dclk = DIV_ROUND_UP((16667 * dclk) + (DISPLAY_VER(display) >= 12 ? 500 : 0), 1000); sp->t_rp = (val & 0xff0000) >> 16; sp->t_rcd = (val & 0xff000000) >> 24; @@ -102,14 +104,15 @@ static int icl_pcode_read_qgv_point_info(struct drm_i915_private *dev_priv, return 0; } -static int adls_pcode_read_psf_gv_point_info(struct drm_i915_private *dev_priv, - struct intel_psf_gv_point *points) +static int adls_pcode_read_psf_gv_point_info(struct intel_display *display, + struct intel_psf_gv_point *points) { + struct drm_i915_private *i915 = to_i915(display->drm); u32 val = 0; int ret; int i; - ret = snb_pcode_read(&dev_priv->uncore, ICL_PCODE_MEM_SUBSYSYSTEM_INFO | + ret = snb_pcode_read(&i915->uncore, ICL_PCODE_MEM_SUBSYSYSTEM_INFO | ADL_PCODE_MEM_SS_READ_PSF_GV_INFO, &val, NULL); if (ret) return ret; @@ -122,10 +125,10 @@ static int adls_pcode_read_psf_gv_point_info(struct drm_i915_private *dev_priv, return 0; } -static u16 icl_qgv_points_mask(struct drm_i915_private *i915) +static u16 icl_qgv_points_mask(struct intel_display *display) { - unsigned int num_psf_gv_points = i915->display.bw.max[0].num_psf_gv_points; - unsigned int num_qgv_points = i915->display.bw.max[0].num_qgv_points; + unsigned int num_psf_gv_points = display->bw.max[0].num_psf_gv_points; + unsigned int num_qgv_points = display->bw.max[0].num_qgv_points; u16 qgv_points = 0, psf_points = 0; /* @@ -142,49 +145,51 @@ static u16 icl_qgv_points_mask(struct drm_i915_private *i915) return ICL_PCODE_REQ_QGV_PT(qgv_points) | ADLS_PCODE_REQ_PSF_PT(psf_points); } -static bool is_sagv_enabled(struct drm_i915_private *i915, u16 points_mask) +static bool is_sagv_enabled(struct intel_display *display, u16 points_mask) { - return !is_power_of_2(~points_mask & icl_qgv_points_mask(i915) & + return !is_power_of_2(~points_mask & icl_qgv_points_mask(display) & ICL_PCODE_REQ_QGV_PT_MASK); } -int icl_pcode_restrict_qgv_points(struct drm_i915_private *dev_priv, +int icl_pcode_restrict_qgv_points(struct intel_display *display, u32 points_mask) { + struct drm_i915_private *i915 = to_i915(display->drm); int ret; - if (DISPLAY_VER(dev_priv) >= 14) + if (DISPLAY_VER(display) >= 14) return 0; /* bspec says to keep retrying for at least 1 ms */ - ret = skl_pcode_request(&dev_priv->uncore, ICL_PCODE_SAGV_DE_MEM_SS_CONFIG, + ret = skl_pcode_request(&i915->uncore, ICL_PCODE_SAGV_DE_MEM_SS_CONFIG, points_mask, ICL_PCODE_REP_QGV_MASK | ADLS_PCODE_REP_PSF_MASK, ICL_PCODE_REP_QGV_SAFE | ADLS_PCODE_REP_PSF_SAFE, 1); if (ret < 0) { - drm_err(&dev_priv->drm, + drm_err(display->drm, "Failed to disable qgv points (0x%x) points: 0x%x\n", ret, points_mask); return ret; } - dev_priv->display.sagv.status = is_sagv_enabled(dev_priv, points_mask) ? + display->sagv.status = is_sagv_enabled(display, points_mask) ? I915_SAGV_ENABLED : I915_SAGV_DISABLED; return 0; } -static int mtl_read_qgv_point_info(struct drm_i915_private *dev_priv, +static int mtl_read_qgv_point_info(struct intel_display *display, struct intel_qgv_point *sp, int point) { + struct drm_i915_private *i915 = to_i915(display->drm); u32 val, val2; u16 dclk; - val = intel_uncore_read(&dev_priv->uncore, + val = intel_uncore_read(&i915->uncore, MTL_MEM_SS_INFO_QGV_POINT_LOW(point)); - val2 = intel_uncore_read(&dev_priv->uncore, + val2 = intel_uncore_read(&i915->uncore, MTL_MEM_SS_INFO_QGV_POINT_HIGH(point)); dclk = REG_FIELD_GET(MTL_DCLK_MASK, val); sp->dclk = DIV_ROUND_CLOSEST(16667 * dclk, 1000); @@ -200,29 +205,30 @@ static int mtl_read_qgv_point_info(struct drm_i915_private *dev_priv, } static int -intel_read_qgv_point_info(struct drm_i915_private *dev_priv, +intel_read_qgv_point_info(struct intel_display *display, struct intel_qgv_point *sp, int point) { - if (DISPLAY_VER(dev_priv) >= 14) - return mtl_read_qgv_point_info(dev_priv, sp, point); - else if (IS_DG1(dev_priv)) - return dg1_mchbar_read_qgv_point_info(dev_priv, sp, point); + if (DISPLAY_VER(display) >= 14) + return mtl_read_qgv_point_info(display, sp, point); + else if (display->platform.dg1) + return dg1_mchbar_read_qgv_point_info(display, sp, point); else - return icl_pcode_read_qgv_point_info(dev_priv, sp, point); + return icl_pcode_read_qgv_point_info(display, sp, point); } -static int icl_get_qgv_points(struct drm_i915_private *dev_priv, +static int icl_get_qgv_points(struct intel_display *display, struct intel_qgv_info *qi, bool is_y_tile) { - const struct dram_info *dram_info = &dev_priv->dram_info; + struct drm_i915_private *i915 = to_i915(display->drm); + const struct dram_info *dram_info = &i915->dram_info; int i, ret; qi->num_points = dram_info->num_qgv_points; qi->num_psf_points = dram_info->num_psf_gv_points; - if (DISPLAY_VER(dev_priv) >= 14) { + if (DISPLAY_VER(display) >= 14) { switch (dram_info->type) { case INTEL_DRAM_DDR4: qi->t_bl = 4; @@ -244,13 +250,14 @@ static int icl_get_qgv_points(struct drm_i915_private *dev_priv, qi->deinterleave = 4; break; case INTEL_DRAM_GDDR: + case INTEL_DRAM_GDDR_ECC: qi->channel_width = 32; break; default: MISSING_CASE(dram_info->type); return -EINVAL; } - } else if (DISPLAY_VER(dev_priv) >= 12) { + } else if (DISPLAY_VER(display) >= 12) { switch (dram_info->type) { case INTEL_DRAM_DDR4: qi->t_bl = is_y_tile ? 8 : 4; @@ -265,7 +272,7 @@ static int icl_get_qgv_points(struct drm_i915_private *dev_priv, qi->deinterleave = is_y_tile ? 1 : 2; break; case INTEL_DRAM_LPDDR4: - if (IS_ROCKETLAKE(dev_priv)) { + if (display->platform.rocketlake) { qi->t_bl = 8; qi->max_numchannels = 4; qi->channel_width = 32; @@ -284,39 +291,39 @@ static int icl_get_qgv_points(struct drm_i915_private *dev_priv, qi->max_numchannels = 1; break; } - } else if (DISPLAY_VER(dev_priv) == 11) { - qi->t_bl = dev_priv->dram_info.type == INTEL_DRAM_DDR4 ? 4 : 8; + } else if (DISPLAY_VER(display) == 11) { + qi->t_bl = dram_info->type == INTEL_DRAM_DDR4 ? 4 : 8; qi->max_numchannels = 1; } - if (drm_WARN_ON(&dev_priv->drm, + if (drm_WARN_ON(display->drm, qi->num_points > ARRAY_SIZE(qi->points))) qi->num_points = ARRAY_SIZE(qi->points); for (i = 0; i < qi->num_points; i++) { struct intel_qgv_point *sp = &qi->points[i]; - ret = intel_read_qgv_point_info(dev_priv, sp, i); + ret = intel_read_qgv_point_info(display, sp, i); if (ret) { - drm_dbg_kms(&dev_priv->drm, "Could not read QGV %d info\n", i); + drm_dbg_kms(display->drm, "Could not read QGV %d info\n", i); return ret; } - drm_dbg_kms(&dev_priv->drm, + drm_dbg_kms(display->drm, "QGV %d: DCLK=%d tRP=%d tRDPRE=%d tRAS=%d tRCD=%d tRC=%d\n", i, sp->dclk, sp->t_rp, sp->t_rdpre, sp->t_ras, sp->t_rcd, sp->t_rc); } if (qi->num_psf_points > 0) { - ret = adls_pcode_read_psf_gv_point_info(dev_priv, qi->psf_points); + ret = adls_pcode_read_psf_gv_point_info(display, qi->psf_points); if (ret) { - drm_err(&dev_priv->drm, "Failed to read PSF point data; PSF points will not be considered in bandwidth calculations.\n"); + drm_err(display->drm, "Failed to read PSF point data; PSF points will not be considered in bandwidth calculations.\n"); qi->num_psf_points = 0; } for (i = 0; i < qi->num_psf_points; i++) - drm_dbg_kms(&dev_priv->drm, + drm_dbg_kms(display->drm, "PSF GV %d: CLK=%d \n", i, qi->psf_points[i].clk); } @@ -398,20 +405,34 @@ static const struct intel_sa_info xe2_hpd_sa_info = { /* Other values not used by simplified algorithm */ }; -static int icl_get_bw_info(struct drm_i915_private *dev_priv, const struct intel_sa_info *sa) +static const struct intel_sa_info xe2_hpd_ecc_sa_info = { + .derating = 45, + .deprogbwlimit = 53, + /* Other values not used by simplified algorithm */ +}; + +static const struct intel_sa_info xe3lpd_sa_info = { + .deburst = 32, + .deprogbwlimit = 65, /* GB/s */ + .displayrtids = 256, + .derating = 10, +}; + +static int icl_get_bw_info(struct intel_display *display, const struct intel_sa_info *sa) { + struct drm_i915_private *i915 = to_i915(display->drm); struct intel_qgv_info qi = {}; bool is_y_tile = true; /* assume y tile may be used */ - int num_channels = max_t(u8, 1, dev_priv->dram_info.num_channels); + int num_channels = max_t(u8, 1, i915->dram_info.num_channels); int ipqdepth, ipqdepthpch = 16; int dclk_max; int maxdebw; - int num_groups = ARRAY_SIZE(dev_priv->display.bw.max); + int num_groups = ARRAY_SIZE(display->bw.max); int i, ret; - ret = icl_get_qgv_points(dev_priv, &qi, is_y_tile); + ret = icl_get_qgv_points(display, &qi, is_y_tile); if (ret) { - drm_dbg_kms(&dev_priv->drm, + drm_dbg_kms(display->drm, "Failed to get memory subsystem information, ignoring bandwidth limits"); return ret; } @@ -422,7 +443,7 @@ static int icl_get_bw_info(struct drm_i915_private *dev_priv, const struct intel qi.deinterleave = DIV_ROUND_UP(num_channels, is_y_tile ? 4 : 2); for (i = 0; i < num_groups; i++) { - struct intel_bw_info *bi = &dev_priv->display.bw.max[i]; + struct intel_bw_info *bi = &display->bw.max[i]; int clpchgroup; int j; @@ -449,7 +470,7 @@ static int icl_get_bw_info(struct drm_i915_private *dev_priv, const struct intel bi->deratedbw[j] = min(maxdebw, bw * (100 - sa->derating) / 100); - drm_dbg_kms(&dev_priv->drm, + drm_dbg_kms(display->drm, "BW%d / QGV %d: num_planes=%d deratedbw=%u\n", i, j, bi->num_planes, bi->deratedbw[j]); } @@ -460,44 +481,45 @@ static int icl_get_bw_info(struct drm_i915_private *dev_priv, const struct intel * as it will fail and pointless anyway. */ if (qi.num_points == 1) - dev_priv->display.sagv.status = I915_SAGV_NOT_CONTROLLED; + display->sagv.status = I915_SAGV_NOT_CONTROLLED; else - dev_priv->display.sagv.status = I915_SAGV_ENABLED; + display->sagv.status = I915_SAGV_ENABLED; return 0; } -static int tgl_get_bw_info(struct drm_i915_private *dev_priv, const struct intel_sa_info *sa) +static int tgl_get_bw_info(struct intel_display *display, const struct intel_sa_info *sa) { + struct drm_i915_private *i915 = to_i915(display->drm); struct intel_qgv_info qi = {}; - const struct dram_info *dram_info = &dev_priv->dram_info; + const struct dram_info *dram_info = &i915->dram_info; bool is_y_tile = true; /* assume y tile may be used */ - int num_channels = max_t(u8, 1, dev_priv->dram_info.num_channels); + int num_channels = max_t(u8, 1, dram_info->num_channels); int ipqdepth, ipqdepthpch = 16; int dclk_max; int maxdebw, peakbw; int clperchgroup; - int num_groups = ARRAY_SIZE(dev_priv->display.bw.max); + int num_groups = ARRAY_SIZE(display->bw.max); int i, ret; - ret = icl_get_qgv_points(dev_priv, &qi, is_y_tile); + ret = icl_get_qgv_points(display, &qi, is_y_tile); if (ret) { - drm_dbg_kms(&dev_priv->drm, + drm_dbg_kms(display->drm, "Failed to get memory subsystem information, ignoring bandwidth limits"); return ret; } - if (DISPLAY_VER(dev_priv) < 14 && + if (DISPLAY_VER(display) < 14 && (dram_info->type == INTEL_DRAM_LPDDR4 || dram_info->type == INTEL_DRAM_LPDDR5)) num_channels *= 2; qi.deinterleave = qi.deinterleave ? : DIV_ROUND_UP(num_channels, is_y_tile ? 4 : 2); - if (num_channels < qi.max_numchannels && DISPLAY_VER(dev_priv) >= 12) + if (num_channels < qi.max_numchannels && DISPLAY_VER(display) >= 12) qi.deinterleave = max(DIV_ROUND_UP(qi.deinterleave, 2), 1); - if (DISPLAY_VER(dev_priv) >= 12 && num_channels > qi.max_numchannels) - drm_warn(&dev_priv->drm, "Number of channels exceeds max number of channels."); + if (DISPLAY_VER(display) >= 12 && num_channels > qi.max_numchannels) + drm_warn(display->drm, "Number of channels exceeds max number of channels."); if (qi.max_numchannels != 0) num_channels = min_t(u8, num_channels, qi.max_numchannels); @@ -514,7 +536,7 @@ static int tgl_get_bw_info(struct drm_i915_private *dev_priv, const struct intel clperchgroup = 4 * DIV_ROUND_UP(8, num_channels) * qi.deinterleave; for (i = 0; i < num_groups; i++) { - struct intel_bw_info *bi = &dev_priv->display.bw.max[i]; + struct intel_bw_info *bi = &display->bw.max[i]; struct intel_bw_info *bi_next; int clpchgroup; int j; @@ -522,7 +544,7 @@ static int tgl_get_bw_info(struct drm_i915_private *dev_priv, const struct intel clpchgroup = (sa->deburst * qi.deinterleave / num_channels) << i; if (i < num_groups - 1) { - bi_next = &dev_priv->display.bw.max[i + 1]; + bi_next = &display->bw.max[i + 1]; if (clpchgroup < clperchgroup) bi_next->num_planes = (ipqdepth - clpchgroup) / @@ -554,7 +576,7 @@ static int tgl_get_bw_info(struct drm_i915_private *dev_priv, const struct intel num_channels * qi.channel_width, 8); - drm_dbg_kms(&dev_priv->drm, + drm_dbg_kms(display->drm, "BW%d / QGV %d: num_planes=%d deratedbw=%u peakbw: %u\n", i, j, bi->num_planes, bi->deratedbw[j], bi->peakbw[j]); @@ -565,7 +587,7 @@ static int tgl_get_bw_info(struct drm_i915_private *dev_priv, const struct intel bi->psf_bw[j] = adl_calc_psf_bw(sp->clk); - drm_dbg_kms(&dev_priv->drm, + drm_dbg_kms(display->drm, "BW%d / PSF GV %d: num_planes=%d bw=%u\n", i, j, bi->num_planes, bi->psf_bw[j]); } @@ -577,17 +599,17 @@ static int tgl_get_bw_info(struct drm_i915_private *dev_priv, const struct intel * as it will fail and pointless anyway. */ if (qi.num_points == 1) - dev_priv->display.sagv.status = I915_SAGV_NOT_CONTROLLED; + display->sagv.status = I915_SAGV_NOT_CONTROLLED; else - dev_priv->display.sagv.status = I915_SAGV_ENABLED; + display->sagv.status = I915_SAGV_ENABLED; return 0; } -static void dg2_get_bw_info(struct drm_i915_private *i915) +static void dg2_get_bw_info(struct intel_display *display) { - unsigned int deratedbw = IS_DG2_G11(i915) ? 38000 : 50000; - int num_groups = ARRAY_SIZE(i915->display.bw.max); + unsigned int deratedbw = display->platform.dg2_g11 ? 38000 : 50000; + int num_groups = ARRAY_SIZE(display->bw.max); int i; /* @@ -598,7 +620,7 @@ static void dg2_get_bw_info(struct drm_i915_private *i915) * whereas DG2-G11 platforms have 38 GB/s. */ for (i = 0; i < num_groups; i++) { - struct intel_bw_info *bi = &i915->display.bw.max[i]; + struct intel_bw_info *bi = &display->bw.max[i]; bi->num_planes = 1; /* Need only one dummy QGV point per group */ @@ -606,20 +628,21 @@ static void dg2_get_bw_info(struct drm_i915_private *i915) bi->deratedbw[0] = deratedbw; } - i915->display.sagv.status = I915_SAGV_NOT_CONTROLLED; + display->sagv.status = I915_SAGV_NOT_CONTROLLED; } -static int xe2_hpd_get_bw_info(struct drm_i915_private *i915, +static int xe2_hpd_get_bw_info(struct intel_display *display, const struct intel_sa_info *sa) { + struct drm_i915_private *i915 = to_i915(display->drm); struct intel_qgv_info qi = {}; int num_channels = i915->dram_info.num_channels; int peakbw, maxdebw; int ret, i; - ret = icl_get_qgv_points(i915, &qi, true); + ret = icl_get_qgv_points(display, &qi, true); if (ret) { - drm_dbg_kms(&i915->drm, + drm_dbg_kms(display->drm, "Failed to get memory subsystem information, ignoring bandwidth limits"); return ret; } @@ -631,33 +654,33 @@ static int xe2_hpd_get_bw_info(struct drm_i915_private *i915, const struct intel_qgv_point *point = &qi.points[i]; int bw = num_channels * (qi.channel_width / 8) * point->dclk; - i915->display.bw.max[0].deratedbw[i] = + display->bw.max[0].deratedbw[i] = min(maxdebw, (100 - sa->derating) * bw / 100); - i915->display.bw.max[0].peakbw[i] = bw; + display->bw.max[0].peakbw[i] = bw; - drm_dbg_kms(&i915->drm, "QGV %d: deratedbw=%u peakbw: %u\n", - i, i915->display.bw.max[0].deratedbw[i], - i915->display.bw.max[0].peakbw[i]); + drm_dbg_kms(display->drm, "QGV %d: deratedbw=%u peakbw: %u\n", + i, display->bw.max[0].deratedbw[i], + display->bw.max[0].peakbw[i]); } /* Bandwidth does not depend on # of planes; set all groups the same */ - i915->display.bw.max[0].num_planes = 1; - i915->display.bw.max[0].num_qgv_points = qi.num_points; - for (i = 1; i < ARRAY_SIZE(i915->display.bw.max); i++) - memcpy(&i915->display.bw.max[i], &i915->display.bw.max[0], - sizeof(i915->display.bw.max[0])); + display->bw.max[0].num_planes = 1; + display->bw.max[0].num_qgv_points = qi.num_points; + for (i = 1; i < ARRAY_SIZE(display->bw.max); i++) + memcpy(&display->bw.max[i], &display->bw.max[0], + sizeof(display->bw.max[0])); /* * Xe2_HPD should always have exactly two QGV points representing * battery and plugged-in operation. */ - drm_WARN_ON(&i915->drm, qi.num_points != 2); - i915->display.sagv.status = I915_SAGV_ENABLED; + drm_WARN_ON(display->drm, qi.num_points != 2); + display->sagv.status = I915_SAGV_ENABLED; return 0; } -static unsigned int icl_max_bw_index(struct drm_i915_private *dev_priv, +static unsigned int icl_max_bw_index(struct intel_display *display, int num_planes, int qgv_point) { int i; @@ -667,9 +690,9 @@ static unsigned int icl_max_bw_index(struct drm_i915_private *dev_priv, */ num_planes = max(1, num_planes); - for (i = 0; i < ARRAY_SIZE(dev_priv->display.bw.max); i++) { + for (i = 0; i < ARRAY_SIZE(display->bw.max); i++) { const struct intel_bw_info *bi = - &dev_priv->display.bw.max[i]; + &display->bw.max[i]; /* * Pcode will not expose all QGV points when @@ -685,7 +708,7 @@ static unsigned int icl_max_bw_index(struct drm_i915_private *dev_priv, return UINT_MAX; } -static unsigned int tgl_max_bw_index(struct drm_i915_private *dev_priv, +static unsigned int tgl_max_bw_index(struct intel_display *display, int num_planes, int qgv_point) { int i; @@ -695,9 +718,9 @@ static unsigned int tgl_max_bw_index(struct drm_i915_private *dev_priv, */ num_planes = max(1, num_planes); - for (i = ARRAY_SIZE(dev_priv->display.bw.max) - 1; i >= 0; i--) { + for (i = ARRAY_SIZE(display->bw.max) - 1; i >= 0; i--) { const struct intel_bw_info *bi = - &dev_priv->display.bw.max[i]; + &display->bw.max[i]; /* * Pcode will not expose all QGV points when @@ -713,52 +736,59 @@ static unsigned int tgl_max_bw_index(struct drm_i915_private *dev_priv, return 0; } -static unsigned int adl_psf_bw(struct drm_i915_private *dev_priv, +static unsigned int adl_psf_bw(struct intel_display *display, int psf_gv_point) { const struct intel_bw_info *bi = - &dev_priv->display.bw.max[0]; + &display->bw.max[0]; return bi->psf_bw[psf_gv_point]; } -static unsigned int icl_qgv_bw(struct drm_i915_private *i915, +static unsigned int icl_qgv_bw(struct intel_display *display, int num_active_planes, int qgv_point) { unsigned int idx; - if (DISPLAY_VER(i915) >= 12) - idx = tgl_max_bw_index(i915, num_active_planes, qgv_point); + if (DISPLAY_VER(display) >= 12) + idx = tgl_max_bw_index(display, num_active_planes, qgv_point); else - idx = icl_max_bw_index(i915, num_active_planes, qgv_point); + idx = icl_max_bw_index(display, num_active_planes, qgv_point); - if (idx >= ARRAY_SIZE(i915->display.bw.max)) + if (idx >= ARRAY_SIZE(display->bw.max)) return 0; - return i915->display.bw.max[idx].deratedbw[qgv_point]; + return display->bw.max[idx].deratedbw[qgv_point]; } -void intel_bw_init_hw(struct drm_i915_private *dev_priv) +void intel_bw_init_hw(struct intel_display *display) { - if (!HAS_DISPLAY(dev_priv)) + const struct dram_info *dram_info = &to_i915(display->drm)->dram_info; + + if (!HAS_DISPLAY(display)) return; - if (DISPLAY_VERx100(dev_priv) >= 1401 && IS_DGFX(dev_priv)) - xe2_hpd_get_bw_info(dev_priv, &xe2_hpd_sa_info); - else if (DISPLAY_VER(dev_priv) >= 14) - tgl_get_bw_info(dev_priv, &mtl_sa_info); - else if (IS_DG2(dev_priv)) - dg2_get_bw_info(dev_priv); - else if (IS_ALDERLAKE_P(dev_priv)) - tgl_get_bw_info(dev_priv, &adlp_sa_info); - else if (IS_ALDERLAKE_S(dev_priv)) - tgl_get_bw_info(dev_priv, &adls_sa_info); - else if (IS_ROCKETLAKE(dev_priv)) - tgl_get_bw_info(dev_priv, &rkl_sa_info); - else if (DISPLAY_VER(dev_priv) == 12) - tgl_get_bw_info(dev_priv, &tgl_sa_info); - else if (DISPLAY_VER(dev_priv) == 11) - icl_get_bw_info(dev_priv, &icl_sa_info); + if (DISPLAY_VER(display) >= 30) + tgl_get_bw_info(display, &xe3lpd_sa_info); + else if (DISPLAY_VERx100(display) >= 1401 && display->platform.dgfx && + dram_info->type == INTEL_DRAM_GDDR_ECC) + xe2_hpd_get_bw_info(display, &xe2_hpd_ecc_sa_info); + else if (DISPLAY_VERx100(display) >= 1401 && display->platform.dgfx) + xe2_hpd_get_bw_info(display, &xe2_hpd_sa_info); + else if (DISPLAY_VER(display) >= 14) + tgl_get_bw_info(display, &mtl_sa_info); + else if (display->platform.dg2) + dg2_get_bw_info(display); + else if (display->platform.alderlake_p) + tgl_get_bw_info(display, &adlp_sa_info); + else if (display->platform.alderlake_s) + tgl_get_bw_info(display, &adls_sa_info); + else if (display->platform.rocketlake) + tgl_get_bw_info(display, &rkl_sa_info); + else if (DISPLAY_VER(display) == 12) + tgl_get_bw_info(display, &tgl_sa_info); + else if (DISPLAY_VER(display) == 11) + icl_get_bw_info(display, &icl_sa_info); } static unsigned int intel_bw_crtc_num_active_planes(const struct intel_crtc_state *crtc_state) @@ -772,8 +802,8 @@ static unsigned int intel_bw_crtc_num_active_planes(const struct intel_crtc_stat static unsigned int intel_bw_crtc_data_rate(const struct intel_crtc_state *crtc_state) { + struct intel_display *display = to_intel_display(crtc_state); struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc); - struct drm_i915_private *i915 = to_i915(crtc->base.dev); unsigned int data_rate = 0; enum plane_id plane_id; @@ -787,7 +817,7 @@ static unsigned int intel_bw_crtc_data_rate(const struct intel_crtc_state *crtc_ data_rate += crtc_state->data_rate[plane_id]; - if (DISPLAY_VER(i915) < 11) + if (DISPLAY_VER(display) < 11) data_rate += crtc_state->data_rate_y[plane_id]; } @@ -795,39 +825,38 @@ static unsigned int intel_bw_crtc_data_rate(const struct intel_crtc_state *crtc_ } /* "Maximum Pipe Read Bandwidth" */ -static int intel_bw_crtc_min_cdclk(const struct intel_crtc_state *crtc_state) +static int intel_bw_crtc_min_cdclk(struct intel_display *display, + unsigned int data_rate) { - struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc); - struct drm_i915_private *i915 = to_i915(crtc->base.dev); - - if (DISPLAY_VER(i915) < 12) + if (DISPLAY_VER(display) < 12) return 0; - return DIV_ROUND_UP_ULL(mul_u32_u32(intel_bw_crtc_data_rate(crtc_state), 10), 512); + return DIV_ROUND_UP_ULL(mul_u32_u32(data_rate, 10), 512); } -static unsigned int intel_bw_num_active_planes(struct drm_i915_private *dev_priv, +static unsigned int intel_bw_num_active_planes(struct intel_display *display, const struct intel_bw_state *bw_state) { unsigned int num_active_planes = 0; enum pipe pipe; - for_each_pipe(dev_priv, pipe) + for_each_pipe(display, pipe) num_active_planes += bw_state->num_active_planes[pipe]; return num_active_planes; } -static unsigned int intel_bw_data_rate(struct drm_i915_private *dev_priv, +static unsigned int intel_bw_data_rate(struct intel_display *display, const struct intel_bw_state *bw_state) { + struct drm_i915_private *i915 = to_i915(display->drm); unsigned int data_rate = 0; enum pipe pipe; - for_each_pipe(dev_priv, pipe) + for_each_pipe(display, pipe) data_rate += bw_state->data_rate[pipe]; - if (DISPLAY_VER(dev_priv) >= 13 && i915_vtd_active(dev_priv)) + if (DISPLAY_VER(display) >= 13 && i915_vtd_active(i915)) data_rate = DIV_ROUND_UP(data_rate * 105, 100); return data_rate; @@ -836,10 +865,10 @@ static unsigned int intel_bw_data_rate(struct drm_i915_private *dev_priv, struct intel_bw_state * intel_atomic_get_old_bw_state(struct intel_atomic_state *state) { - struct drm_i915_private *dev_priv = to_i915(state->base.dev); + struct intel_display *display = to_intel_display(state); struct intel_global_state *bw_state; - bw_state = intel_atomic_get_old_global_obj_state(state, &dev_priv->display.bw.obj); + bw_state = intel_atomic_get_old_global_obj_state(state, &display->bw.obj); return to_intel_bw_state(bw_state); } @@ -847,10 +876,10 @@ intel_atomic_get_old_bw_state(struct intel_atomic_state *state) struct intel_bw_state * intel_atomic_get_new_bw_state(struct intel_atomic_state *state) { - struct drm_i915_private *dev_priv = to_i915(state->base.dev); + struct intel_display *display = to_intel_display(state); struct intel_global_state *bw_state; - bw_state = intel_atomic_get_new_global_obj_state(state, &dev_priv->display.bw.obj); + bw_state = intel_atomic_get_new_global_obj_state(state, &display->bw.obj); return to_intel_bw_state(bw_state); } @@ -858,27 +887,27 @@ intel_atomic_get_new_bw_state(struct intel_atomic_state *state) struct intel_bw_state * intel_atomic_get_bw_state(struct intel_atomic_state *state) { - struct drm_i915_private *dev_priv = to_i915(state->base.dev); + struct intel_display *display = to_intel_display(state); struct intel_global_state *bw_state; - bw_state = intel_atomic_get_global_obj_state(state, &dev_priv->display.bw.obj); + bw_state = intel_atomic_get_global_obj_state(state, &display->bw.obj); if (IS_ERR(bw_state)) return ERR_CAST(bw_state); return to_intel_bw_state(bw_state); } -static unsigned int icl_max_bw_qgv_point_mask(struct drm_i915_private *i915, +static unsigned int icl_max_bw_qgv_point_mask(struct intel_display *display, int num_active_planes) { - unsigned int num_qgv_points = i915->display.bw.max[0].num_qgv_points; + unsigned int num_qgv_points = display->bw.max[0].num_qgv_points; unsigned int max_bw_point = 0; unsigned int max_bw = 0; int i; for (i = 0; i < num_qgv_points; i++) { unsigned int max_data_rate = - icl_qgv_bw(i915, num_active_planes, i); + icl_qgv_bw(display, num_active_planes, i); /* * We need to know which qgv point gives us @@ -897,23 +926,23 @@ static unsigned int icl_max_bw_qgv_point_mask(struct drm_i915_private *i915, return max_bw_point; } -static u16 icl_prepare_qgv_points_mask(struct drm_i915_private *i915, +static u16 icl_prepare_qgv_points_mask(struct intel_display *display, unsigned int qgv_points, unsigned int psf_points) { return ~(ICL_PCODE_REQ_QGV_PT(qgv_points) | - ADLS_PCODE_REQ_PSF_PT(psf_points)) & icl_qgv_points_mask(i915); + ADLS_PCODE_REQ_PSF_PT(psf_points)) & icl_qgv_points_mask(display); } -static unsigned int icl_max_bw_psf_gv_point_mask(struct drm_i915_private *i915) +static unsigned int icl_max_bw_psf_gv_point_mask(struct intel_display *display) { - unsigned int num_psf_gv_points = i915->display.bw.max[0].num_psf_gv_points; + unsigned int num_psf_gv_points = display->bw.max[0].num_psf_gv_points; unsigned int max_bw_point_mask = 0; unsigned int max_bw = 0; int i; for (i = 0; i < num_psf_gv_points; i++) { - unsigned int max_data_rate = adl_psf_bw(i915, i); + unsigned int max_data_rate = adl_psf_bw(display, i); if (max_data_rate > max_bw) { max_bw_point_mask = BIT(i); @@ -926,29 +955,29 @@ static unsigned int icl_max_bw_psf_gv_point_mask(struct drm_i915_private *i915) return max_bw_point_mask; } -static void icl_force_disable_sagv(struct drm_i915_private *i915, +static void icl_force_disable_sagv(struct intel_display *display, struct intel_bw_state *bw_state) { - unsigned int qgv_points = icl_max_bw_qgv_point_mask(i915, 0); - unsigned int psf_points = icl_max_bw_psf_gv_point_mask(i915); + unsigned int qgv_points = icl_max_bw_qgv_point_mask(display, 0); + unsigned int psf_points = icl_max_bw_psf_gv_point_mask(display); - bw_state->qgv_points_mask = icl_prepare_qgv_points_mask(i915, + bw_state->qgv_points_mask = icl_prepare_qgv_points_mask(display, qgv_points, psf_points); - drm_dbg_kms(&i915->drm, "Forcing SAGV disable: mask 0x%x\n", + drm_dbg_kms(display->drm, "Forcing SAGV disable: mask 0x%x\n", bw_state->qgv_points_mask); - icl_pcode_restrict_qgv_points(i915, bw_state->qgv_points_mask); + icl_pcode_restrict_qgv_points(display, bw_state->qgv_points_mask); } -static int mtl_find_qgv_points(struct drm_i915_private *i915, +static int mtl_find_qgv_points(struct intel_display *display, unsigned int data_rate, unsigned int num_active_planes, struct intel_bw_state *new_bw_state) { unsigned int best_rate = UINT_MAX; - unsigned int num_qgv_points = i915->display.bw.max[0].num_qgv_points; + unsigned int num_qgv_points = display->bw.max[0].num_qgv_points; unsigned int qgv_peak_bw = 0; int i; int ret; @@ -962,9 +991,9 @@ static int mtl_find_qgv_points(struct drm_i915_private *i915, * for qgv peak bw in PM Demand request. So assign UINT_MAX if SAGV is * not enabled. PM Demand code will clamp the value for the register */ - if (!intel_can_enable_sagv(i915, new_bw_state)) { + if (!intel_can_enable_sagv(display, new_bw_state)) { new_bw_state->qgv_point_peakbw = U16_MAX; - drm_dbg_kms(&i915->drm, "No SAGV, use UINT_MAX as peak bw."); + drm_dbg_kms(display->drm, "No SAGV, use UINT_MAX as peak bw."); return 0; } @@ -974,27 +1003,27 @@ static int mtl_find_qgv_points(struct drm_i915_private *i915, */ for (i = 0; i < num_qgv_points; i++) { unsigned int bw_index = - tgl_max_bw_index(i915, num_active_planes, i); + tgl_max_bw_index(display, num_active_planes, i); unsigned int max_data_rate; - if (bw_index >= ARRAY_SIZE(i915->display.bw.max)) + if (bw_index >= ARRAY_SIZE(display->bw.max)) continue; - max_data_rate = i915->display.bw.max[bw_index].deratedbw[i]; + max_data_rate = display->bw.max[bw_index].deratedbw[i]; if (max_data_rate < data_rate) continue; if (max_data_rate - data_rate < best_rate) { best_rate = max_data_rate - data_rate; - qgv_peak_bw = i915->display.bw.max[bw_index].peakbw[i]; + qgv_peak_bw = display->bw.max[bw_index].peakbw[i]; } - drm_dbg_kms(&i915->drm, "QGV point %d: max bw %d required %d qgv_peak_bw: %d\n", + drm_dbg_kms(display->drm, "QGV point %d: max bw %d required %d qgv_peak_bw: %d\n", i, max_data_rate, data_rate, qgv_peak_bw); } - drm_dbg_kms(&i915->drm, "Matching peaks QGV bw: %d for required data rate: %d\n", + drm_dbg_kms(display->drm, "Matching peaks QGV bw: %d for required data rate: %d\n", qgv_peak_bw, data_rate); /* @@ -1002,7 +1031,7 @@ static int mtl_find_qgv_points(struct drm_i915_private *i915, * satisfying the required data rate is found */ if (qgv_peak_bw == 0) { - drm_dbg_kms(&i915->drm, "No QGV points for bw %d for display configuration(%d active planes).\n", + drm_dbg_kms(display->drm, "No QGV points for bw %d for display configuration(%d active planes).\n", data_rate, num_active_planes); return -EINVAL; } @@ -1013,14 +1042,14 @@ static int mtl_find_qgv_points(struct drm_i915_private *i915, return 0; } -static int icl_find_qgv_points(struct drm_i915_private *i915, +static int icl_find_qgv_points(struct intel_display *display, unsigned int data_rate, unsigned int num_active_planes, const struct intel_bw_state *old_bw_state, struct intel_bw_state *new_bw_state) { - unsigned int num_psf_gv_points = i915->display.bw.max[0].num_psf_gv_points; - unsigned int num_qgv_points = i915->display.bw.max[0].num_qgv_points; + unsigned int num_psf_gv_points = display->bw.max[0].num_psf_gv_points; + unsigned int num_qgv_points = display->bw.max[0].num_qgv_points; u16 psf_points = 0; u16 qgv_points = 0; int i; @@ -1031,22 +1060,22 @@ static int icl_find_qgv_points(struct drm_i915_private *i915, return ret; for (i = 0; i < num_qgv_points; i++) { - unsigned int max_data_rate = icl_qgv_bw(i915, + unsigned int max_data_rate = icl_qgv_bw(display, num_active_planes, i); if (max_data_rate >= data_rate) qgv_points |= BIT(i); - drm_dbg_kms(&i915->drm, "QGV point %d: max bw %d required %d\n", + drm_dbg_kms(display->drm, "QGV point %d: max bw %d required %d\n", i, max_data_rate, data_rate); } for (i = 0; i < num_psf_gv_points; i++) { - unsigned int max_data_rate = adl_psf_bw(i915, i); + unsigned int max_data_rate = adl_psf_bw(display, i); if (max_data_rate >= data_rate) psf_points |= BIT(i); - drm_dbg_kms(&i915->drm, "PSF GV point %d: max bw %d" + drm_dbg_kms(display->drm, "PSF GV point %d: max bw %d" " required %d\n", i, max_data_rate, data_rate); } @@ -1057,14 +1086,14 @@ static int icl_find_qgv_points(struct drm_i915_private *i915, * reasons. */ if (qgv_points == 0) { - drm_dbg_kms(&i915->drm, "No QGV points provide sufficient memory" + drm_dbg_kms(display->drm, "No QGV points provide sufficient memory" " bandwidth %d for display configuration(%d active planes).\n", data_rate, num_active_planes); return -EINVAL; } if (num_psf_gv_points > 0 && psf_points == 0) { - drm_dbg_kms(&i915->drm, "No PSF GV points provide sufficient memory" + drm_dbg_kms(display->drm, "No PSF GV points provide sufficient memory" " bandwidth %d for display configuration(%d active planes).\n", data_rate, num_active_planes); return -EINVAL; @@ -1075,9 +1104,9 @@ static int icl_find_qgv_points(struct drm_i915_private *i915, * we can't enable SAGV due to the increased memory latency it may * cause. */ - if (!intel_can_enable_sagv(i915, new_bw_state)) { - qgv_points = icl_max_bw_qgv_point_mask(i915, num_active_planes); - drm_dbg_kms(&i915->drm, "No SAGV, using single QGV point mask 0x%x\n", + if (!intel_can_enable_sagv(display, new_bw_state)) { + qgv_points = icl_max_bw_qgv_point_mask(display, num_active_planes); + drm_dbg_kms(display->drm, "No SAGV, using single QGV point mask 0x%x\n", qgv_points); } @@ -1085,7 +1114,7 @@ static int icl_find_qgv_points(struct drm_i915_private *i915, * We store the ones which need to be masked as that is what PCode * actually accepts as a parameter. */ - new_bw_state->qgv_points_mask = icl_prepare_qgv_points_mask(i915, + new_bw_state->qgv_points_mask = icl_prepare_qgv_points_mask(display, qgv_points, psf_points); /* @@ -1101,80 +1130,90 @@ static int icl_find_qgv_points(struct drm_i915_private *i915, return 0; } -static int intel_bw_check_qgv_points(struct drm_i915_private *i915, +static int intel_bw_check_qgv_points(struct intel_display *display, const struct intel_bw_state *old_bw_state, struct intel_bw_state *new_bw_state) { - unsigned int data_rate = intel_bw_data_rate(i915, new_bw_state); + unsigned int data_rate = intel_bw_data_rate(display, new_bw_state); unsigned int num_active_planes = - intel_bw_num_active_planes(i915, new_bw_state); + intel_bw_num_active_planes(display, new_bw_state); data_rate = DIV_ROUND_UP(data_rate, 1000); - if (DISPLAY_VER(i915) >= 14) - return mtl_find_qgv_points(i915, data_rate, num_active_planes, + if (DISPLAY_VER(display) >= 14) + return mtl_find_qgv_points(display, data_rate, num_active_planes, new_bw_state); else - return icl_find_qgv_points(i915, data_rate, num_active_planes, + return icl_find_qgv_points(display, data_rate, num_active_planes, old_bw_state, new_bw_state); } -static bool intel_bw_state_changed(struct drm_i915_private *i915, - const struct intel_bw_state *old_bw_state, - const struct intel_bw_state *new_bw_state) +static bool intel_dbuf_bw_changed(struct intel_display *display, + const struct intel_dbuf_bw *old_dbuf_bw, + const struct intel_dbuf_bw *new_dbuf_bw) { - enum pipe pipe; + enum dbuf_slice slice; - for_each_pipe(i915, pipe) { - const struct intel_dbuf_bw *old_crtc_bw = - &old_bw_state->dbuf_bw[pipe]; - const struct intel_dbuf_bw *new_crtc_bw = - &new_bw_state->dbuf_bw[pipe]; - enum dbuf_slice slice; - - for_each_dbuf_slice(i915, slice) { - if (old_crtc_bw->max_bw[slice] != new_crtc_bw->max_bw[slice] || - old_crtc_bw->active_planes[slice] != new_crtc_bw->active_planes[slice]) - return true; - } - - if (old_bw_state->min_cdclk[pipe] != new_bw_state->min_cdclk[pipe]) + for_each_dbuf_slice(display, slice) { + if (old_dbuf_bw->max_bw[slice] != new_dbuf_bw->max_bw[slice] || + old_dbuf_bw->active_planes[slice] != new_dbuf_bw->active_planes[slice]) return true; } return false; } -static void skl_plane_calc_dbuf_bw(struct intel_bw_state *bw_state, +static bool intel_bw_state_changed(struct intel_display *display, + const struct intel_bw_state *old_bw_state, + const struct intel_bw_state *new_bw_state) +{ + enum pipe pipe; + + for_each_pipe(display, pipe) { + const struct intel_dbuf_bw *old_dbuf_bw = + &old_bw_state->dbuf_bw[pipe]; + const struct intel_dbuf_bw *new_dbuf_bw = + &new_bw_state->dbuf_bw[pipe]; + + if (intel_dbuf_bw_changed(display, old_dbuf_bw, new_dbuf_bw)) + return true; + + if (intel_bw_crtc_min_cdclk(display, old_bw_state->data_rate[pipe]) != + intel_bw_crtc_min_cdclk(display, new_bw_state->data_rate[pipe])) + return true; + } + + return false; +} + +static void skl_plane_calc_dbuf_bw(struct intel_dbuf_bw *dbuf_bw, struct intel_crtc *crtc, enum plane_id plane_id, const struct skl_ddb_entry *ddb, unsigned int data_rate) { - struct drm_i915_private *i915 = to_i915(crtc->base.dev); - struct intel_dbuf_bw *crtc_bw = &bw_state->dbuf_bw[crtc->pipe]; - unsigned int dbuf_mask = skl_ddb_dbuf_slice_mask(i915, ddb); + struct intel_display *display = to_intel_display(crtc); + unsigned int dbuf_mask = skl_ddb_dbuf_slice_mask(display, ddb); enum dbuf_slice slice; /* * The arbiter can only really guarantee an * equal share of the total bw to each plane. */ - for_each_dbuf_slice_in_mask(i915, slice, dbuf_mask) { - crtc_bw->max_bw[slice] = max(crtc_bw->max_bw[slice], data_rate); - crtc_bw->active_planes[slice] |= BIT(plane_id); + for_each_dbuf_slice_in_mask(display, slice, dbuf_mask) { + dbuf_bw->max_bw[slice] = max(dbuf_bw->max_bw[slice], data_rate); + dbuf_bw->active_planes[slice] |= BIT(plane_id); } } -static void skl_crtc_calc_dbuf_bw(struct intel_bw_state *bw_state, +static void skl_crtc_calc_dbuf_bw(struct intel_dbuf_bw *dbuf_bw, const struct intel_crtc_state *crtc_state) { + struct intel_display *display = to_intel_display(crtc_state); struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc); - struct drm_i915_private *i915 = to_i915(crtc->base.dev); - struct intel_dbuf_bw *crtc_bw = &bw_state->dbuf_bw[crtc->pipe]; enum plane_id plane_id; - memset(crtc_bw, 0, sizeof(*crtc_bw)); + memset(dbuf_bw, 0, sizeof(*dbuf_bw)); if (!crtc_state->hw.active) return; @@ -1187,12 +1226,12 @@ static void skl_crtc_calc_dbuf_bw(struct intel_bw_state *bw_state, if (plane_id == PLANE_CURSOR) continue; - skl_plane_calc_dbuf_bw(bw_state, crtc, plane_id, + skl_plane_calc_dbuf_bw(dbuf_bw, crtc, plane_id, &crtc_state->wm.skl.plane_ddb[plane_id], crtc_state->data_rate[plane_id]); - if (DISPLAY_VER(i915) < 11) - skl_plane_calc_dbuf_bw(bw_state, crtc, plane_id, + if (DISPLAY_VER(display) < 11) + skl_plane_calc_dbuf_bw(dbuf_bw, crtc, plane_id, &crtc_state->wm.skl.plane_ddb_y[plane_id], crtc_state->data_rate[plane_id]); } @@ -1200,13 +1239,13 @@ static void skl_crtc_calc_dbuf_bw(struct intel_bw_state *bw_state, /* "Maximum Data Buffer Bandwidth" */ static int -intel_bw_dbuf_min_cdclk(struct drm_i915_private *i915, +intel_bw_dbuf_min_cdclk(struct intel_display *display, const struct intel_bw_state *bw_state) { unsigned int total_max_bw = 0; enum dbuf_slice slice; - for_each_dbuf_slice(i915, slice) { + for_each_dbuf_slice(display, slice) { int num_active_planes = 0; unsigned int max_bw = 0; enum pipe pipe; @@ -1215,11 +1254,11 @@ intel_bw_dbuf_min_cdclk(struct drm_i915_private *i915, * The arbiter can only really guarantee an * equal share of the total bw to each plane. */ - for_each_pipe(i915, pipe) { - const struct intel_dbuf_bw *crtc_bw = &bw_state->dbuf_bw[pipe]; + for_each_pipe(display, pipe) { + const struct intel_dbuf_bw *dbuf_bw = &bw_state->dbuf_bw[pipe]; - max_bw = max(crtc_bw->max_bw[slice], max_bw); - num_active_planes += hweight8(crtc_bw->active_planes[slice]); + max_bw = max(dbuf_bw->max_bw[slice], max_bw); + num_active_planes += hweight8(dbuf_bw->active_planes[slice]); } max_bw *= num_active_planes; @@ -1229,16 +1268,18 @@ intel_bw_dbuf_min_cdclk(struct drm_i915_private *i915, return DIV_ROUND_UP(total_max_bw, 64); } -int intel_bw_min_cdclk(struct drm_i915_private *i915, +int intel_bw_min_cdclk(struct intel_display *display, const struct intel_bw_state *bw_state) { enum pipe pipe; int min_cdclk; - min_cdclk = intel_bw_dbuf_min_cdclk(i915, bw_state); + min_cdclk = intel_bw_dbuf_min_cdclk(display, bw_state); - for_each_pipe(i915, pipe) - min_cdclk = max(min_cdclk, bw_state->min_cdclk[pipe]); + for_each_pipe(display, pipe) + min_cdclk = max(min_cdclk, + intel_bw_crtc_min_cdclk(display, + bw_state->data_rate[pipe])); return min_cdclk; } @@ -1246,42 +1287,49 @@ int intel_bw_min_cdclk(struct drm_i915_private *i915, int intel_bw_calc_min_cdclk(struct intel_atomic_state *state, bool *need_cdclk_calc) { - struct drm_i915_private *dev_priv = to_i915(state->base.dev); + struct intel_display *display = to_intel_display(state); struct intel_bw_state *new_bw_state = NULL; const struct intel_bw_state *old_bw_state = NULL; const struct intel_cdclk_state *cdclk_state; - const struct intel_crtc_state *crtc_state; + const struct intel_crtc_state *old_crtc_state; + const struct intel_crtc_state *new_crtc_state; int old_min_cdclk, new_min_cdclk; struct intel_crtc *crtc; int i; - if (DISPLAY_VER(dev_priv) < 9) + if (DISPLAY_VER(display) < 9) return 0; - for_each_new_intel_crtc_in_state(state, crtc, crtc_state, i) { + for_each_oldnew_intel_crtc_in_state(state, crtc, old_crtc_state, + new_crtc_state, i) { + struct intel_dbuf_bw old_dbuf_bw, new_dbuf_bw; + + skl_crtc_calc_dbuf_bw(&old_dbuf_bw, old_crtc_state); + skl_crtc_calc_dbuf_bw(&new_dbuf_bw, new_crtc_state); + + if (!intel_dbuf_bw_changed(display, &old_dbuf_bw, &new_dbuf_bw)) + continue; + new_bw_state = intel_atomic_get_bw_state(state); if (IS_ERR(new_bw_state)) return PTR_ERR(new_bw_state); old_bw_state = intel_atomic_get_old_bw_state(state); - skl_crtc_calc_dbuf_bw(new_bw_state, crtc_state); - - new_bw_state->min_cdclk[crtc->pipe] = - intel_bw_crtc_min_cdclk(crtc_state); + new_bw_state->dbuf_bw[crtc->pipe] = new_dbuf_bw; } if (!old_bw_state) return 0; - if (intel_bw_state_changed(dev_priv, old_bw_state, new_bw_state)) { + if (intel_bw_state_changed(display, old_bw_state, new_bw_state)) { int ret = intel_atomic_lock_global_state(&new_bw_state->base); if (ret) return ret; } - old_min_cdclk = intel_bw_min_cdclk(dev_priv, old_bw_state); - new_min_cdclk = intel_bw_min_cdclk(dev_priv, new_bw_state); + old_min_cdclk = intel_bw_min_cdclk(display, old_bw_state); + new_min_cdclk = intel_bw_min_cdclk(display, new_bw_state); /* * No need to check against the cdclk state if @@ -1309,7 +1357,7 @@ int intel_bw_calc_min_cdclk(struct intel_atomic_state *state, if (new_min_cdclk <= cdclk_state->bw_min_cdclk) return 0; - drm_dbg_kms(&dev_priv->drm, + drm_dbg_kms(display->drm, "new bandwidth min cdclk (%d kHz) > old min cdclk (%d kHz)\n", new_min_cdclk, cdclk_state->bw_min_cdclk); *need_cdclk_calc = true; @@ -1319,7 +1367,7 @@ int intel_bw_calc_min_cdclk(struct intel_atomic_state *state, static int intel_bw_check_data_rate(struct intel_atomic_state *state, bool *changed) { - struct drm_i915_private *i915 = to_i915(state->base.dev); + struct intel_display *display = to_intel_display(state); const struct intel_crtc_state *new_crtc_state, *old_crtc_state; struct intel_crtc *crtc; int i; @@ -1353,7 +1401,7 @@ static int intel_bw_check_data_rate(struct intel_atomic_state *state, bool *chan *changed = true; - drm_dbg_kms(&i915->drm, + drm_dbg_kms(display->drm, "[CRTC:%d:%s] data rate %u num active planes %u\n", crtc->base.base.id, crtc->base.name, new_bw_state->data_rate[crtc->pipe], @@ -1363,16 +1411,103 @@ static int intel_bw_check_data_rate(struct intel_atomic_state *state, bool *chan return 0; } -int intel_bw_atomic_check(struct intel_atomic_state *state) +static int intel_bw_modeset_checks(struct intel_atomic_state *state) { + struct intel_display *display = to_intel_display(state); + const struct intel_bw_state *old_bw_state; + struct intel_bw_state *new_bw_state; + + if (DISPLAY_VER(display) < 9) + return 0; + + new_bw_state = intel_atomic_get_bw_state(state); + if (IS_ERR(new_bw_state)) + return PTR_ERR(new_bw_state); + + old_bw_state = intel_atomic_get_old_bw_state(state); + + new_bw_state->active_pipes = + intel_calc_active_pipes(state, old_bw_state->active_pipes); + + if (new_bw_state->active_pipes != old_bw_state->active_pipes) { + int ret; + + ret = intel_atomic_lock_global_state(&new_bw_state->base); + if (ret) + return ret; + } + + return 0; +} + +static int intel_bw_check_sagv_mask(struct intel_atomic_state *state) +{ + struct intel_display *display = to_intel_display(state); + const struct intel_crtc_state *old_crtc_state; + const struct intel_crtc_state *new_crtc_state; + const struct intel_bw_state *old_bw_state = NULL; + struct intel_bw_state *new_bw_state = NULL; + struct intel_crtc *crtc; + int ret, i; + + for_each_oldnew_intel_crtc_in_state(state, crtc, old_crtc_state, + new_crtc_state, i) { + if (intel_crtc_can_enable_sagv(old_crtc_state) == + intel_crtc_can_enable_sagv(new_crtc_state)) + continue; + + new_bw_state = intel_atomic_get_bw_state(state); + if (IS_ERR(new_bw_state)) + return PTR_ERR(new_bw_state); + + old_bw_state = intel_atomic_get_old_bw_state(state); + + if (intel_crtc_can_enable_sagv(new_crtc_state)) + new_bw_state->pipe_sagv_reject &= ~BIT(crtc->pipe); + else + new_bw_state->pipe_sagv_reject |= BIT(crtc->pipe); + } + + if (!new_bw_state) + return 0; + + if (intel_can_enable_sagv(display, new_bw_state) != + intel_can_enable_sagv(display, old_bw_state)) { + ret = intel_atomic_serialize_global_state(&new_bw_state->base); + if (ret) + return ret; + } else if (new_bw_state->pipe_sagv_reject != old_bw_state->pipe_sagv_reject) { + ret = intel_atomic_lock_global_state(&new_bw_state->base); + if (ret) + return ret; + } + + return 0; +} + +int intel_bw_atomic_check(struct intel_atomic_state *state, bool any_ms) +{ + struct intel_display *display = to_intel_display(state); bool changed = false; - struct drm_i915_private *i915 = to_i915(state->base.dev); struct intel_bw_state *new_bw_state; const struct intel_bw_state *old_bw_state; int ret; + if (DISPLAY_VER(display) < 9) + return 0; + + if (any_ms) { + ret = intel_bw_modeset_checks(state); + if (ret) + return ret; + } + + ret = intel_bw_check_sagv_mask(state); + if (ret) + return ret; + /* FIXME earlier gens need some checks too */ - if (DISPLAY_VER(i915) < 11) + if (DISPLAY_VER(display) < 11) return 0; ret = intel_bw_check_data_rate(state, &changed); @@ -1383,9 +1518,8 @@ int intel_bw_atomic_check(struct intel_atomic_state *state) new_bw_state = intel_atomic_get_new_bw_state(state); if (new_bw_state && - (intel_can_enable_sagv(i915, old_bw_state) != - intel_can_enable_sagv(i915, new_bw_state) || - new_bw_state->force_check_qgv)) + intel_can_enable_sagv(display, old_bw_state) != + intel_can_enable_sagv(display, new_bw_state)) changed = true; /* @@ -1395,28 +1529,25 @@ int intel_bw_atomic_check(struct intel_atomic_state *state) if (!changed) return 0; - ret = intel_bw_check_qgv_points(i915, old_bw_state, new_bw_state); + ret = intel_bw_check_qgv_points(display, old_bw_state, new_bw_state); if (ret) return ret; - new_bw_state->force_check_qgv = false; - return 0; } static void intel_bw_crtc_update(struct intel_bw_state *bw_state, const struct intel_crtc_state *crtc_state) { + struct intel_display *display = to_intel_display(crtc_state); struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc); - struct drm_i915_private *i915 = to_i915(crtc->base.dev); bw_state->data_rate[crtc->pipe] = intel_bw_crtc_data_rate(crtc_state); bw_state->num_active_planes[crtc->pipe] = intel_bw_crtc_num_active_planes(crtc_state); - bw_state->force_check_qgv = true; - drm_dbg_kms(&i915->drm, "pipe %c data rate %u num active planes %u\n", + drm_dbg_kms(display->drm, "pipe %c data rate %u num active planes %u\n", pipe_name(crtc->pipe), bw_state->data_rate[crtc->pipe], bw_state->num_active_planes[crtc->pipe]); @@ -1432,6 +1563,7 @@ void intel_bw_update_hw_state(struct intel_display *display) return; bw_state->active_pipes = 0; + bw_state->pipe_sagv_reject = 0; for_each_intel_crtc(display->drm, crtc) { const struct intel_crtc_state *crtc_state = @@ -1443,6 +1575,11 @@ void intel_bw_update_hw_state(struct intel_display *display) if (DISPLAY_VER(display) >= 11) intel_bw_crtc_update(bw_state, crtc_state); + + skl_crtc_calc_dbuf_bw(&bw_state->dbuf_bw[pipe], crtc_state); + + /* initially SAGV has been forced off */ + bw_state->pipe_sagv_reject |= BIT(pipe); } } @@ -1458,6 +1595,7 @@ void intel_bw_crtc_disable_noatomic(struct intel_crtc *crtc) bw_state->data_rate[pipe] = 0; bw_state->num_active_planes[pipe] = 0; + memset(&bw_state->dbuf_bw[pipe], 0, sizeof(bw_state->dbuf_bw[pipe])); } static struct intel_global_state * @@ -1483,9 +1621,8 @@ static const struct intel_global_state_funcs intel_bw_funcs = { .atomic_destroy_state = intel_bw_destroy_state, }; -int intel_bw_init(struct drm_i915_private *i915) +int intel_bw_init(struct intel_display *display) { - struct intel_display *display = &i915->display; struct intel_bw_state *state; state = kzalloc(sizeof(*state), GFP_KERNEL); @@ -1499,8 +1636,8 @@ int intel_bw_init(struct drm_i915_private *i915) * Limit this only if we have SAGV. And for Display version 14 onwards * sagv is handled though pmdemand requests */ - if (intel_has_sagv(i915) && IS_DISPLAY_VER(i915, 11, 13)) - icl_force_disable_sagv(i915, state); + if (intel_has_sagv(display) && IS_DISPLAY_VER(display, 11, 13)) + icl_force_disable_sagv(display, state); return 0; } diff --git a/drivers/gpu/drm/i915/display/intel_bw.h b/drivers/gpu/drm/i915/display/intel_bw.h index 3313e4eac4f0..eb2cc883e9c1 100644 --- a/drivers/gpu/drm/i915/display/intel_bw.h +++ b/drivers/gpu/drm/i915/display/intel_bw.h @@ -12,7 +12,6 @@ #include "intel_display_power.h" #include "intel_global_state.h" -struct drm_i915_private; struct intel_atomic_state; struct intel_crtc; struct intel_crtc_state; @@ -49,13 +48,6 @@ struct intel_bw_state { */ u16 qgv_points_mask; - /* - * Flag to force the QGV comparison in atomic check right after the - * hw state readout - */ - bool force_check_qgv; - - int min_cdclk[I915_MAX_PIPES]; unsigned int data_rate[I915_MAX_PIPES]; u8 num_active_planes[I915_MAX_PIPES]; }; @@ -72,14 +64,14 @@ intel_atomic_get_new_bw_state(struct intel_atomic_state *state); struct intel_bw_state * intel_atomic_get_bw_state(struct intel_atomic_state *state); -void intel_bw_init_hw(struct drm_i915_private *dev_priv); -int intel_bw_init(struct drm_i915_private *dev_priv); -int intel_bw_atomic_check(struct intel_atomic_state *state); -int icl_pcode_restrict_qgv_points(struct drm_i915_private *dev_priv, +void intel_bw_init_hw(struct intel_display *display); +int intel_bw_init(struct intel_display *display); +int intel_bw_atomic_check(struct intel_atomic_state *state, bool any_ms); +int icl_pcode_restrict_qgv_points(struct intel_display *display, u32 points_mask); int intel_bw_calc_min_cdclk(struct intel_atomic_state *state, bool *need_cdclk_calc); -int intel_bw_min_cdclk(struct drm_i915_private *i915, +int intel_bw_min_cdclk(struct intel_display *display, const struct intel_bw_state *bw_state); void intel_bw_update_hw_state(struct intel_display *display); void intel_bw_crtc_disable_noatomic(struct intel_crtc *crtc); diff --git a/drivers/gpu/drm/i915/display/intel_cdclk.c b/drivers/gpu/drm/i915/display/intel_cdclk.c index 2a8749a0213e..6830950aae3f 100644 --- a/drivers/gpu/drm/i915/display/intel_cdclk.c +++ b/drivers/gpu/drm/i915/display/intel_cdclk.c @@ -1972,9 +1972,7 @@ int intel_mdclk_cdclk_ratio(struct intel_display *display, static void xe2lpd_mdclk_cdclk_ratio_program(struct intel_display *display, const struct intel_cdclk_config *cdclk_config) { - struct drm_i915_private *i915 = to_i915(display->drm); - - intel_dbuf_mdclk_cdclk_ratio_update(i915, + intel_dbuf_mdclk_cdclk_ratio_update(display, intel_mdclk_cdclk_ratio(display, cdclk_config), cdclk_config->joined_mbus); } @@ -2808,7 +2806,6 @@ static int intel_crtc_compute_min_cdclk(const struct intel_crtc_state *crtc_stat static int intel_compute_min_cdclk(struct intel_atomic_state *state) { struct intel_display *display = to_intel_display(state); - struct drm_i915_private *dev_priv = to_i915(display->drm); struct intel_cdclk_state *cdclk_state = intel_atomic_get_new_cdclk_state(state); const struct intel_bw_state *bw_state; @@ -2836,7 +2833,7 @@ static int intel_compute_min_cdclk(struct intel_atomic_state *state) bw_state = intel_atomic_get_new_bw_state(state); if (bw_state) { - min_cdclk = intel_bw_min_cdclk(dev_priv, bw_state); + min_cdclk = intel_bw_min_cdclk(display, bw_state); if (cdclk_state->bw_min_cdclk != min_cdclk) { int ret; @@ -3342,6 +3339,8 @@ int intel_modeset_calc_cdclk(struct intel_atomic_state *state) void intel_cdclk_update_hw_state(struct intel_display *display) { + const struct intel_bw_state *bw_state = + to_intel_bw_state(display->bw.obj.state); struct intel_cdclk_state *cdclk_state = to_intel_cdclk_state(display->cdclk.obj.state); struct intel_crtc *crtc; @@ -3359,6 +3358,8 @@ void intel_cdclk_update_hw_state(struct intel_display *display) cdclk_state->min_cdclk[pipe] = intel_crtc_compute_min_cdclk(crtc_state); cdclk_state->min_voltage_level[pipe] = crtc_state->min_voltage_level; } + + cdclk_state->bw_min_cdclk = intel_bw_min_cdclk(display, bw_state); } void intel_cdclk_crtc_disable_noatomic(struct intel_crtc *crtc) diff --git a/drivers/gpu/drm/i915/display/intel_color.c b/drivers/gpu/drm/i915/display/intel_color.c index cfe14162231d..98dddf72c0eb 100644 --- a/drivers/gpu/drm/i915/display/intel_color.c +++ b/drivers/gpu/drm/i915/display/intel_color.c @@ -22,7 +22,9 @@ * */ -#include "i915_drv.h" +#include + +#include "i915_utils.h" #include "i9xx_plane_regs.h" #include "intel_color.h" #include "intel_color_regs.h" @@ -405,14 +407,13 @@ static void icl_read_csc(struct intel_crtc_state *crtc_state) static bool ilk_limited_range(const struct intel_crtc_state *crtc_state) { struct intel_display *display = to_intel_display(crtc_state); - struct drm_i915_private *i915 = to_i915(display->drm); /* icl+ have dedicated output CSC */ if (DISPLAY_VER(display) >= 11) return false; /* pre-hsw have TRANSCONF_COLOR_RANGE_SELECT */ - if (DISPLAY_VER(display) < 7 || IS_IVYBRIDGE(i915)) + if (DISPLAY_VER(display) < 7 || display->platform.ivybridge) return false; return crtc_state->limited_color_range; @@ -516,7 +517,6 @@ static void ilk_csc_convert_ctm(const struct intel_crtc_state *crtc_state, static void ilk_assign_csc(struct intel_crtc_state *crtc_state) { struct intel_display *display = to_intel_display(crtc_state); - struct drm_i915_private *i915 = to_i915(display->drm); bool limited_color_range = ilk_csc_limited_range(crtc_state); if (crtc_state->hw.ctm) { @@ -538,7 +538,7 @@ static void ilk_assign_csc(struct intel_crtc_state *crtc_state) * LUT is needed but CSC is not we need to load an * identity matrix. */ - drm_WARN_ON(display->drm, !IS_GEMINILAKE(i915)); + drm_WARN_ON(display->drm, !display->platform.geminilake); ilk_csc_copy(display, &crtc_state->csc, &ilk_csc_matrix_identity); } else { @@ -3983,12 +3983,10 @@ int intel_color_init(struct intel_display *display) void intel_color_init_hooks(struct intel_display *display) { - struct drm_i915_private *i915 = to_i915(display->drm); - if (HAS_GMCH(display)) { - if (IS_CHERRYVIEW(i915)) + if (display->platform.cherryview) display->funcs.color = &chv_color_funcs; - else if (IS_VALLEYVIEW(i915)) + else if (display->platform.valleyview) display->funcs.color = &vlv_color_funcs; else if (DISPLAY_VER(display) >= 4) display->funcs.color = &i965_color_funcs; @@ -4005,7 +4003,7 @@ void intel_color_init_hooks(struct intel_display *display) display->funcs.color = &skl_color_funcs; else if (DISPLAY_VER(display) == 8) display->funcs.color = &bdw_color_funcs; - else if (IS_HASWELL(i915)) + else if (display->platform.haswell) display->funcs.color = &hsw_color_funcs; else if (DISPLAY_VER(display) == 7) display->funcs.color = &ivb_color_funcs; diff --git a/drivers/gpu/drm/i915/display/intel_combo_phy.c b/drivers/gpu/drm/i915/display/intel_combo_phy.c index 17eea244cc83..f5cc38dbe559 100644 --- a/drivers/gpu/drm/i915/display/intel_combo_phy.c +++ b/drivers/gpu/drm/i915/display/intel_combo_phy.c @@ -3,6 +3,8 @@ * Copyright © 2018 Intel Corporation */ +#include + #include "i915_reg.h" #include "i915_utils.h" #include "intel_combo_phy.h" diff --git a/drivers/gpu/drm/i915/display/intel_connector.c b/drivers/gpu/drm/i915/display/intel_connector.c index e42357bd9e80..6c81c9f2fd09 100644 --- a/drivers/gpu/drm/i915/display/intel_connector.c +++ b/drivers/gpu/drm/i915/display/intel_connector.c @@ -31,8 +31,10 @@ #include #include "i915_drv.h" +#include "i915_utils.h" #include "intel_backlight.h" #include "intel_connector.h" +#include "intel_display_core.h" #include "intel_display_debugfs.h" #include "intel_display_types.h" #include "intel_hdcp.h" @@ -154,13 +156,14 @@ void intel_connector_destroy(struct drm_connector *connector) int intel_connector_register(struct drm_connector *connector) { struct intel_connector *intel_connector = to_intel_connector(connector); + struct drm_i915_private *i915 = to_i915(connector->dev); int ret; ret = intel_backlight_device_register(intel_connector); if (ret) goto err; - if (i915_inject_probe_failure(to_i915(connector->dev))) { + if (i915_inject_probe_failure(i915)) { ret = -EFAULT; goto err_backlight; } @@ -204,10 +207,10 @@ bool intel_connector_get_hw_state(struct intel_connector *connector) enum pipe intel_connector_get_pipe(struct intel_connector *connector) { - struct drm_device *dev = connector->base.dev; + struct intel_display *display = to_intel_display(connector); - drm_WARN_ON(dev, - !drm_modeset_is_locked(&dev->mode_config.connection_mutex)); + drm_WARN_ON(display->drm, + !drm_modeset_is_locked(&display->drm->mode_config.connection_mutex)); if (!connector->base.state->crtc) return INVALID_PIPE; @@ -264,20 +267,19 @@ static const struct drm_prop_enum_list force_audio_names[] = { void intel_attach_force_audio_property(struct drm_connector *connector) { - struct drm_device *dev = connector->dev; - struct drm_i915_private *dev_priv = to_i915(dev); + struct intel_display *display = to_intel_display(connector->dev); struct drm_property *prop; - prop = dev_priv->display.properties.force_audio; + prop = display->properties.force_audio; if (prop == NULL) { - prop = drm_property_create_enum(dev, 0, - "audio", - force_audio_names, - ARRAY_SIZE(force_audio_names)); + prop = drm_property_create_enum(display->drm, 0, + "audio", + force_audio_names, + ARRAY_SIZE(force_audio_names)); if (prop == NULL) return; - dev_priv->display.properties.force_audio = prop; + display->properties.force_audio = prop; } drm_object_attach_property(&connector->base, prop, 0); } @@ -291,20 +293,19 @@ static const struct drm_prop_enum_list broadcast_rgb_names[] = { void intel_attach_broadcast_rgb_property(struct drm_connector *connector) { - struct drm_device *dev = connector->dev; - struct drm_i915_private *dev_priv = to_i915(dev); + struct intel_display *display = to_intel_display(connector->dev); struct drm_property *prop; - prop = dev_priv->display.properties.broadcast_rgb; + prop = display->properties.broadcast_rgb; if (prop == NULL) { - prop = drm_property_create_enum(dev, DRM_MODE_PROP_ENUM, - "Broadcast RGB", - broadcast_rgb_names, - ARRAY_SIZE(broadcast_rgb_names)); + prop = drm_property_create_enum(display->drm, DRM_MODE_PROP_ENUM, + "Broadcast RGB", + broadcast_rgb_names, + ARRAY_SIZE(broadcast_rgb_names)); if (prop == NULL) return; - dev_priv->display.properties.broadcast_rgb = prop; + display->properties.broadcast_rgb = prop; } drm_object_attach_property(&connector->base, prop, 0); @@ -336,14 +337,14 @@ intel_attach_dp_colorspace_property(struct drm_connector *connector) void intel_attach_scaling_mode_property(struct drm_connector *connector) { - struct drm_i915_private *i915 = to_i915(connector->dev); + struct intel_display *display = to_intel_display(connector->dev); u32 scaling_modes; scaling_modes = BIT(DRM_MODE_SCALE_ASPECT) | BIT(DRM_MODE_SCALE_FULLSCREEN); /* On GMCH platforms borders are only possible on the LVDS port */ - if (!HAS_GMCH(i915) || connector->connector_type == DRM_MODE_CONNECTOR_LVDS) + if (!HAS_GMCH(display) || connector->connector_type == DRM_MODE_CONNECTOR_LVDS) scaling_modes |= BIT(DRM_MODE_SCALE_CENTER); drm_connector_attach_scaling_mode_property(connector, scaling_modes); diff --git a/drivers/gpu/drm/i915/display/intel_crt.c b/drivers/gpu/drm/i915/display/intel_crt.c index 76ffb3f8467c..cca22d2402e8 100644 --- a/drivers/gpu/drm/i915/display/intel_crt.c +++ b/drivers/gpu/drm/i915/display/intel_crt.c @@ -532,8 +532,6 @@ static bool valleyview_crt_detect_hotplug(struct drm_connector *connector) { struct intel_display *display = to_intel_display(connector->dev); struct intel_crt *crt = intel_attached_crt(to_intel_connector(connector)); - struct drm_i915_private *dev_priv = to_i915(connector->dev); - bool reenable_hpd; u32 adpa; bool ret; u32 save_adpa; @@ -550,7 +548,7 @@ static bool valleyview_crt_detect_hotplug(struct drm_connector *connector) * * Just disable HPD interrupts here to prevent this */ - reenable_hpd = intel_hpd_disable(dev_priv, crt->base.hpd_pin); + intel_hpd_block(&crt->base); save_adpa = adpa = intel_de_read(display, crt->adpa_reg); drm_dbg_kms(display->drm, @@ -577,8 +575,7 @@ static bool valleyview_crt_detect_hotplug(struct drm_connector *connector) drm_dbg_kms(display->drm, "valleyview hotplug adpa=0x%x, result %d\n", adpa, ret); - if (reenable_hpd) - intel_hpd_enable(dev_priv, crt->base.hpd_pin); + intel_hpd_clear_and_unblock(&crt->base); return ret; } @@ -609,7 +606,7 @@ static bool intel_crt_detect_hotplug(struct drm_connector *connector) for (i = 0; i < tries ; i++) { /* turn on the FORCE_DETECT */ - i915_hotplug_interrupt_update(dev_priv, + i915_hotplug_interrupt_update(display, CRT_HOTPLUG_FORCE_DETECT, CRT_HOTPLUG_FORCE_DETECT); /* wait for FORCE_DETECT to go off */ @@ -627,7 +624,7 @@ static bool intel_crt_detect_hotplug(struct drm_connector *connector) intel_de_write(display, PORT_HOTPLUG_STAT(display), CRT_HOTPLUG_INT_STATUS); - i915_hotplug_interrupt_update(dev_priv, CRT_HOTPLUG_FORCE_DETECT, 0); + i915_hotplug_interrupt_update(display, CRT_HOTPLUG_FORCE_DETECT, 0); return ret; } @@ -880,7 +877,7 @@ intel_crt_detect(struct drm_connector *connector, wakeref = intel_display_power_get(display, encoder->power_domain); - if (I915_HAS_HOTPLUG(display)) { + if (HAS_HOTPLUG(display)) { /* We can not rely on the HPD pin always being correctly wired * up, for example many KVM do not pass it through, and so * only trust an assertion that the monitor is connected. @@ -904,7 +901,7 @@ intel_crt_detect(struct drm_connector *connector, * broken monitor (without edid) to work behind a broken kvm (that fails * to have the right resistors for HP detection) needs to fix this up. * For now just bail out. */ - if (I915_HAS_HOTPLUG(display)) { + if (HAS_HOTPLUG(display)) { status = connector_status_disconnected; goto out; } @@ -1084,7 +1081,7 @@ void intel_crt_init(struct intel_display *display) crt->base.power_domain = POWER_DOMAIN_PORT_CRT; - if (I915_HAS_HOTPLUG(display) && + if (HAS_HOTPLUG(display) && !dmi_check_system(intel_spurious_crt_detect)) { crt->base.hpd_pin = HPD_CRT; crt->base.hotplug = intel_encoder_hotplug; diff --git a/drivers/gpu/drm/i915/display/intel_crtc_state_dump.c b/drivers/gpu/drm/i915/display/intel_crtc_state_dump.c index 599ddce96371..0c7f91046996 100644 --- a/drivers/gpu/drm/i915/display/intel_crtc_state_dump.c +++ b/drivers/gpu/drm/i915/display/intel_crtc_state_dump.c @@ -5,9 +5,10 @@ #include #include +#include -#include "i915_drv.h" #include "intel_crtc_state_dump.h" +#include "intel_display_core.h" #include "intel_display_types.h" #include "intel_hdmi.h" #include "intel_vblank.h" @@ -42,13 +43,13 @@ intel_dump_m_n_config(struct drm_printer *p, } static void -intel_dump_infoframe(struct drm_i915_private *i915, +intel_dump_infoframe(struct intel_display *display, const union hdmi_infoframe *frame) { if (!drm_debug_enabled(DRM_UT_KMS)) return; - hdmi_infoframe_log(KERN_DEBUG, i915->drm.dev, frame); + hdmi_infoframe_log(KERN_DEBUG, display->drm->dev, frame); } #define OUTPUT_TYPE(x) [INTEL_OUTPUT_ ## x] = #x @@ -136,7 +137,7 @@ static void intel_dump_plane_state(struct drm_printer *p, } static void -ilk_dump_csc(struct drm_i915_private *i915, +ilk_dump_csc(struct intel_display *display, struct drm_printer *p, const char *name, const struct intel_csc_matrix *csc) @@ -152,7 +153,7 @@ ilk_dump_csc(struct drm_i915_private *i915, csc->coeff[3 * i + 1], csc->coeff[3 * i + 2]); - if (DISPLAY_VER(i915) < 7) + if (DISPLAY_VER(display) < 7) return; drm_printf(p, "%s: post offsets: 0x%04x 0x%04x 0x%04x\n", name, @@ -178,7 +179,6 @@ void intel_crtc_state_dump(const struct intel_crtc_state *pipe_config, { struct intel_display *display = to_intel_display(pipe_config); struct intel_crtc *crtc = to_intel_crtc(pipe_config->uapi.crtc); - struct drm_i915_private *i915 = to_i915(crtc->base.dev); const struct intel_plane_state *plane_state; struct intel_plane *plane; struct drm_printer p; @@ -188,7 +188,7 @@ void intel_crtc_state_dump(const struct intel_crtc_state *pipe_config, if (!drm_debug_enabled(DRM_UT_KMS)) return; - p = drm_dbg_printer(&i915->drm, DRM_UT_KMS, NULL); + p = drm_dbg_printer(display->drm, DRM_UT_KMS, NULL); drm_printf(&p, "[CRTC:%d:%s] enable: %s [%s]\n", crtc->base.base.id, crtc->base.name, @@ -262,19 +262,19 @@ void intel_crtc_state_dump(const struct intel_crtc_state *pipe_config, drm_printf(&p, "GCP: 0x%x\n", pipe_config->infoframes.gcp); if (pipe_config->infoframes.enable & intel_hdmi_infoframe_enable(HDMI_INFOFRAME_TYPE_AVI)) - intel_dump_infoframe(i915, &pipe_config->infoframes.avi); + intel_dump_infoframe(display, &pipe_config->infoframes.avi); if (pipe_config->infoframes.enable & intel_hdmi_infoframe_enable(HDMI_INFOFRAME_TYPE_SPD)) - intel_dump_infoframe(i915, &pipe_config->infoframes.spd); + intel_dump_infoframe(display, &pipe_config->infoframes.spd); if (pipe_config->infoframes.enable & intel_hdmi_infoframe_enable(HDMI_INFOFRAME_TYPE_VENDOR)) - intel_dump_infoframe(i915, &pipe_config->infoframes.hdmi); + intel_dump_infoframe(display, &pipe_config->infoframes.hdmi); if (pipe_config->infoframes.enable & intel_hdmi_infoframe_enable(HDMI_INFOFRAME_TYPE_DRM)) - intel_dump_infoframe(i915, &pipe_config->infoframes.drm); + intel_dump_infoframe(display, &pipe_config->infoframes.drm); if (pipe_config->infoframes.enable & intel_hdmi_infoframe_enable(HDMI_PACKET_TYPE_GAMUT_METADATA)) - intel_dump_infoframe(i915, &pipe_config->infoframes.drm); + intel_dump_infoframe(display, &pipe_config->infoframes.drm); if (pipe_config->infoframes.enable & intel_hdmi_infoframe_enable(DP_SDP_VSC)) drm_dp_vsc_sdp_log(&p, &pipe_config->infoframes.vsc); @@ -294,8 +294,9 @@ void intel_crtc_state_dump(const struct intel_crtc_state *pipe_config, pipe_config->hw.adjusted_mode.crtc_vdisplay, pipe_config->framestart_delay, pipe_config->msa_timing_delay); - drm_printf(&p, "vrr: %s, vmin: %d, vmax: %d, flipline: %d, pipeline full: %d, guardband: %d vsync start: %d, vsync end: %d\n", + drm_printf(&p, "vrr: %s, fixed rr: %s, vmin: %d, vmax: %d, flipline: %d, pipeline full: %d, guardband: %d vsync start: %d, vsync end: %d\n", str_yes_no(pipe_config->vrr.enable), + str_yes_no(intel_vrr_is_fixed_rr(pipe_config)), pipe_config->vrr.vmin, pipe_config->vrr.vmax, pipe_config->vrr.flipline, pipe_config->vrr.pipeline_full, pipe_config->vrr.guardband, pipe_config->vrr.vsync_start, pipe_config->vrr.vsync_end); @@ -319,14 +320,14 @@ void intel_crtc_state_dump(const struct intel_crtc_state *pipe_config, drm_printf(&p, "linetime: %d, ips linetime: %d\n", pipe_config->linetime, pipe_config->ips_linetime); - if (DISPLAY_VER(i915) >= 9) + if (DISPLAY_VER(display) >= 9) drm_printf(&p, "num_scalers: %d, scaler_users: 0x%x, scaler_id: %d, scaling_filter: %d\n", crtc->num_scalers, pipe_config->scaler_state.scaler_users, pipe_config->scaler_state.scaler_id, pipe_config->hw.scaling_filter); - if (HAS_GMCH(i915)) + if (HAS_GMCH(display)) drm_printf(&p, "gmch pfit: control: 0x%08x, ratios: 0x%08x, lvds border: 0x%08x\n", pipe_config->gmch_pfit.control, pipe_config->gmch_pfit.pgm_ratios, @@ -343,7 +344,7 @@ void intel_crtc_state_dump(const struct intel_crtc_state *pipe_config, intel_dpll_dump_hw_state(display, &p, &pipe_config->dpll_hw_state); - if (IS_CHERRYVIEW(i915)) + if (display->platform.cherryview) drm_printf(&p, "cgm_mode: 0x%x gamma_mode: 0x%x gamma_enable: %d csc_enable: %d\n", pipe_config->cgm_mode, pipe_config->gamma_mode, pipe_config->gamma_enable, pipe_config->csc_enable); @@ -354,20 +355,20 @@ void intel_crtc_state_dump(const struct intel_crtc_state *pipe_config, drm_printf(&p, "pre csc lut: %s%d entries, post csc lut: %d entries\n", pipe_config->pre_csc_lut && pipe_config->pre_csc_lut == - i915->display.color.glk_linear_degamma_lut ? "(linear) " : "", + display->color.glk_linear_degamma_lut ? "(linear) " : "", pipe_config->pre_csc_lut ? drm_color_lut_size(pipe_config->pre_csc_lut) : 0, pipe_config->post_csc_lut ? drm_color_lut_size(pipe_config->post_csc_lut) : 0); - if (DISPLAY_VER(i915) >= 11) - ilk_dump_csc(i915, &p, "output csc", &pipe_config->output_csc); + if (DISPLAY_VER(display) >= 11) + ilk_dump_csc(display, &p, "output csc", &pipe_config->output_csc); - if (!HAS_GMCH(i915)) - ilk_dump_csc(i915, &p, "pipe csc", &pipe_config->csc); - else if (IS_CHERRYVIEW(i915)) + if (!HAS_GMCH(display)) + ilk_dump_csc(display, &p, "pipe csc", &pipe_config->csc); + else if (display->platform.cherryview) vlv_dump_csc(&p, "cgm csc", &pipe_config->csc); - else if (IS_VALLEYVIEW(i915)) + else if (display->platform.valleyview) vlv_dump_csc(&p, "wgc csc", &pipe_config->csc); intel_vdsc_state_dump(&p, 0, pipe_config); diff --git a/drivers/gpu/drm/i915/display/intel_ddi.c b/drivers/gpu/drm/i915/display/intel_ddi.c index f38c998935b9..b48ed5df7a96 100644 --- a/drivers/gpu/drm/i915/display/intel_ddi.c +++ b/drivers/gpu/drm/i915/display/intel_ddi.c @@ -78,6 +78,7 @@ #include "intel_tc.h" #include "intel_vdsc.h" #include "intel_vdsc_regs.h" +#include "intel_vrr.h" #include "skl_scaler.h" #include "skl_universal_plane.h" @@ -106,14 +107,14 @@ static int intel_ddi_hdmi_level(struct intel_encoder *encoder, return level; } -static bool has_buf_trans_select(struct drm_i915_private *i915) +static bool has_buf_trans_select(struct intel_display *display) { - return DISPLAY_VER(i915) < 10 && !IS_BROXTON(i915); + return DISPLAY_VER(display) < 10 && !display->platform.broxton; } -static bool has_iboost(struct drm_i915_private *i915) +static bool has_iboost(struct intel_display *display) { - return DISPLAY_VER(i915) == 9 && !IS_BROXTON(i915); + return DISPLAY_VER(display) == 9 && !display->platform.broxton; } /* @@ -124,25 +125,25 @@ static bool has_iboost(struct drm_i915_private *i915) void hsw_prepare_dp_ddi_buffers(struct intel_encoder *encoder, const struct intel_crtc_state *crtc_state) { - struct drm_i915_private *dev_priv = to_i915(encoder->base.dev); + struct intel_display *display = to_intel_display(encoder); u32 iboost_bit = 0; int i, n_entries; enum port port = encoder->port; const struct intel_ddi_buf_trans *trans; trans = encoder->get_buf_trans(encoder, crtc_state, &n_entries); - if (drm_WARN_ON_ONCE(&dev_priv->drm, !trans)) + if (drm_WARN_ON_ONCE(display->drm, !trans)) return; /* If we're boosting the current, set bit 31 of trans1 */ - if (has_iboost(dev_priv) && + if (has_iboost(display) && intel_bios_dp_boost_level(encoder->devdata)) iboost_bit = DDI_BUF_BALANCE_LEG_ENABLE; for (i = 0; i < n_entries; i++) { - intel_de_write(dev_priv, DDI_BUF_TRANS_LO(port, i), + intel_de_write(display, DDI_BUF_TRANS_LO(port, i), trans->entries[i].hsw.trans1 | iboost_bit); - intel_de_write(dev_priv, DDI_BUF_TRANS_HI(port, i), + intel_de_write(display, DDI_BUF_TRANS_HI(port, i), trans->entries[i].hsw.trans2); } } @@ -155,7 +156,7 @@ void hsw_prepare_dp_ddi_buffers(struct intel_encoder *encoder, static void hsw_prepare_hdmi_ddi_buffers(struct intel_encoder *encoder, const struct intel_crtc_state *crtc_state) { - struct drm_i915_private *dev_priv = to_i915(encoder->base.dev); + struct intel_display *display = to_intel_display(encoder); int level = intel_ddi_level(encoder, crtc_state, 0); u32 iboost_bit = 0; int n_entries; @@ -163,27 +164,25 @@ static void hsw_prepare_hdmi_ddi_buffers(struct intel_encoder *encoder, const struct intel_ddi_buf_trans *trans; trans = encoder->get_buf_trans(encoder, crtc_state, &n_entries); - if (drm_WARN_ON_ONCE(&dev_priv->drm, !trans)) + if (drm_WARN_ON_ONCE(display->drm, !trans)) return; /* If we're boosting the current, set bit 31 of trans1 */ - if (has_iboost(dev_priv) && + if (has_iboost(display) && intel_bios_hdmi_boost_level(encoder->devdata)) iboost_bit = DDI_BUF_BALANCE_LEG_ENABLE; /* Entry 9 is for HDMI: */ - intel_de_write(dev_priv, DDI_BUF_TRANS_LO(port, 9), + intel_de_write(display, DDI_BUF_TRANS_LO(port, 9), trans->entries[level].hsw.trans1 | iboost_bit); - intel_de_write(dev_priv, DDI_BUF_TRANS_HI(port, 9), + intel_de_write(display, DDI_BUF_TRANS_HI(port, 9), trans->entries[level].hsw.trans2); } static i915_reg_t intel_ddi_buf_status_reg(struct intel_display *display, enum port port) { - struct drm_i915_private *i915 = to_i915(display->drm); - if (DISPLAY_VER(display) >= 14) - return XELPDP_PORT_BUF_CTL1(i915, port); + return XELPDP_PORT_BUF_CTL1(display, port); else return DDI_BUF_CTL(port); } @@ -346,7 +345,6 @@ static void intel_ddi_init_dp_buf_reg(struct intel_encoder *encoder, const struct intel_crtc_state *crtc_state) { struct intel_display *display = to_intel_display(encoder); - struct drm_i915_private *i915 = to_i915(encoder->base.dev); struct intel_dp *intel_dp = enc_to_intel_dp(encoder); struct intel_digital_port *dig_port = enc_to_dig_port(encoder); @@ -359,14 +357,14 @@ static void intel_ddi_init_dp_buf_reg(struct intel_encoder *encoder, if (dig_port->ddi_a_4_lanes) intel_dp->DP |= DDI_A_4_LANES; - if (DISPLAY_VER(i915) >= 14) { + if (DISPLAY_VER(display) >= 14) { if (intel_dp_is_uhbr(crtc_state)) intel_dp->DP |= DDI_BUF_PORT_DATA_40BIT; else intel_dp->DP |= DDI_BUF_PORT_DATA_10BIT; } - if (IS_ALDERLAKE_P(i915) && intel_encoder_is_tc(encoder)) { + if (display->platform.alderlake_p && intel_encoder_is_tc(encoder)) { intel_dp->DP |= ddi_buf_phy_link_rate(crtc_state->port_clock); if (!intel_tc_port_in_tbt_alt_mode(dig_port)) intel_dp->DP |= DDI_BUF_CTL_TC_PHY_OWNERSHIP; @@ -379,8 +377,7 @@ static void intel_ddi_init_dp_buf_reg(struct intel_encoder *encoder, } } -static int icl_calc_tbt_pll_link(struct intel_display *display, - enum port port) +static int icl_calc_tbt_pll_link(struct intel_display *display, enum port port) { u32 val = intel_de_read(display, DDI_CLK_SEL(port)) & DDI_CLK_SEL_MASK; @@ -414,15 +411,14 @@ static void ddi_dotclock_get(struct intel_crtc_state *pipe_config) void intel_ddi_set_dp_msa(const struct intel_crtc_state *crtc_state, const struct drm_connector_state *conn_state) { - struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc); - struct drm_i915_private *dev_priv = to_i915(crtc->base.dev); + struct intel_display *display = to_intel_display(crtc_state); enum transcoder cpu_transcoder = crtc_state->cpu_transcoder; u32 temp; if (!intel_crtc_has_dp_encoder(crtc_state)) return; - drm_WARN_ON(&dev_priv->drm, transcoder_is_dsi(cpu_transcoder)); + drm_WARN_ON(display->drm, transcoder_is_dsi(cpu_transcoder)); temp = DP_MSA_MISC_SYNC_CLOCK; @@ -445,7 +441,7 @@ void intel_ddi_set_dp_msa(const struct intel_crtc_state *crtc_state, } /* nonsense combination */ - drm_WARN_ON(&dev_priv->drm, crtc_state->limited_color_range && + drm_WARN_ON(display->drm, crtc_state->limited_color_range && crtc_state->output_format != INTEL_OUTPUT_FORMAT_RGB); if (crtc_state->limited_color_range) @@ -468,7 +464,7 @@ void intel_ddi_set_dp_msa(const struct intel_crtc_state *crtc_state, if (intel_dp_needs_vsc_sdp(crtc_state, conn_state)) temp |= DP_MSA_MISC_COLOR_VSC_SDP; - intel_de_write(dev_priv, TRANS_MSA_MISC(dev_priv, cpu_transcoder), + intel_de_write(display, TRANS_MSA_MISC(display, cpu_transcoder), temp); } @@ -507,8 +503,8 @@ static u32 intel_ddi_transcoder_func_reg_val_get(struct intel_encoder *encoder, const struct intel_crtc_state *crtc_state) { + struct intel_display *display = to_intel_display(crtc_state); struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc); - struct drm_i915_private *dev_priv = to_i915(crtc->base.dev); enum pipe pipe = crtc->pipe; enum transcoder cpu_transcoder = crtc_state->cpu_transcoder; enum port port = encoder->port; @@ -516,7 +512,7 @@ intel_ddi_transcoder_func_reg_val_get(struct intel_encoder *encoder, /* Enable TRANS_DDI_FUNC_CTL for the pipe to work in HDMI mode */ temp = TRANS_DDI_FUNC_ENABLE; - if (DISPLAY_VER(dev_priv) >= 12) + if (DISPLAY_VER(display) >= 12) temp |= TGL_TRANS_DDI_SELECT_PORT(port); else temp |= TRANS_DDI_SELECT_PORT(port); @@ -578,7 +574,7 @@ intel_ddi_transcoder_func_reg_val_get(struct intel_encoder *encoder, temp |= TRANS_DDI_HDMI_SCRAMBLING; if (crtc_state->hdmi_high_tmds_clock_ratio) temp |= TRANS_DDI_HIGH_TMDS_CHAR_RATE; - if (DISPLAY_VER(dev_priv) >= 14) + if (DISPLAY_VER(display) >= 14) temp |= TRANS_DDI_PORT_WIDTH(crtc_state->lane_count); } else if (intel_crtc_has_type(crtc_state, INTEL_OUTPUT_ANALOG)) { temp |= TRANS_DDI_MODE_SELECT_FDI_OR_128B132B; @@ -591,11 +587,11 @@ intel_ddi_transcoder_func_reg_val_get(struct intel_encoder *encoder, temp |= TRANS_DDI_MODE_SELECT_DP_MST; temp |= DDI_PORT_WIDTH(crtc_state->lane_count); - if (DISPLAY_VER(dev_priv) >= 12) { + if (DISPLAY_VER(display) >= 12) { enum transcoder master; master = crtc_state->mst_master_transcoder; - drm_WARN_ON(&dev_priv->drm, + drm_WARN_ON(display->drm, master == INVALID_TRANSCODER); temp |= TRANS_DDI_MST_TRANSPORT_SELECT(master); } @@ -604,7 +600,7 @@ intel_ddi_transcoder_func_reg_val_get(struct intel_encoder *encoder, temp |= DDI_PORT_WIDTH(crtc_state->lane_count); } - if (IS_DISPLAY_VER(dev_priv, 8, 10) && + if (IS_DISPLAY_VER(display, 8, 10) && crtc_state->master_transcoder != INVALID_TRANSCODER) { u8 master_select = bdw_trans_port_sync_master_select(crtc_state->master_transcoder); @@ -619,11 +615,10 @@ intel_ddi_transcoder_func_reg_val_get(struct intel_encoder *encoder, void intel_ddi_enable_transcoder_func(struct intel_encoder *encoder, const struct intel_crtc_state *crtc_state) { - struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc); - struct drm_i915_private *dev_priv = to_i915(crtc->base.dev); + struct intel_display *display = to_intel_display(crtc_state); enum transcoder cpu_transcoder = crtc_state->cpu_transcoder; - if (DISPLAY_VER(dev_priv) >= 11) { + if (DISPLAY_VER(display) >= 11) { enum transcoder master_transcoder = crtc_state->master_transcoder; u32 ctl2 = 0; @@ -635,12 +630,12 @@ void intel_ddi_enable_transcoder_func(struct intel_encoder *encoder, PORT_SYNC_MODE_MASTER_SELECT(master_select); } - intel_de_write(dev_priv, - TRANS_DDI_FUNC_CTL2(dev_priv, cpu_transcoder), + intel_de_write(display, + TRANS_DDI_FUNC_CTL2(display, cpu_transcoder), ctl2); } - intel_de_write(dev_priv, TRANS_DDI_FUNC_CTL(dev_priv, cpu_transcoder), + intel_de_write(display, TRANS_DDI_FUNC_CTL(display, cpu_transcoder), intel_ddi_transcoder_func_reg_val_get(encoder, crtc_state)); } @@ -654,8 +649,7 @@ void intel_ddi_config_transcoder_func(struct intel_encoder *encoder, const struct intel_crtc_state *crtc_state) { - struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc); - struct drm_i915_private *dev_priv = to_i915(crtc->base.dev); + struct intel_display *display = to_intel_display(crtc_state); enum transcoder cpu_transcoder = crtc_state->cpu_transcoder; u32 ctl; @@ -663,7 +657,7 @@ intel_ddi_config_transcoder_func(struct intel_encoder *encoder, ctl = intel_ddi_transcoder_func_reg_val_get(encoder, crtc_state); ctl &= ~TRANS_DDI_FUNC_ENABLE; - intel_de_write(dev_priv, TRANS_DDI_FUNC_CTL(dev_priv, cpu_transcoder), + intel_de_write(display, TRANS_DDI_FUNC_CTL(display, cpu_transcoder), ctl); } @@ -677,27 +671,26 @@ void intel_ddi_disable_transcoder_func(const struct intel_crtc_state *crtc_state { struct intel_display *display = to_intel_display(crtc_state); struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc); - struct drm_i915_private *dev_priv = to_i915(crtc->base.dev); enum transcoder cpu_transcoder = crtc_state->cpu_transcoder; u32 ctl; - if (DISPLAY_VER(dev_priv) >= 11) - intel_de_write(dev_priv, - TRANS_DDI_FUNC_CTL2(dev_priv, cpu_transcoder), + if (DISPLAY_VER(display) >= 11) + intel_de_write(display, + TRANS_DDI_FUNC_CTL2(display, cpu_transcoder), 0); - ctl = intel_de_read(dev_priv, - TRANS_DDI_FUNC_CTL(dev_priv, cpu_transcoder)); + ctl = intel_de_read(display, + TRANS_DDI_FUNC_CTL(display, cpu_transcoder)); drm_WARN_ON(crtc->base.dev, ctl & TRANS_DDI_HDCP_SIGNALLING); ctl &= ~TRANS_DDI_FUNC_ENABLE; - if (IS_DISPLAY_VER(dev_priv, 8, 10)) + if (IS_DISPLAY_VER(display, 8, 10)) ctl &= ~(TRANS_DDI_PORT_SYNC_ENABLE | TRANS_DDI_PORT_SYNC_MASTER_SELECT_MASK); - if (DISPLAY_VER(dev_priv) >= 12) { + if (DISPLAY_VER(display) >= 12) { if (!intel_dp_mst_is_master_trans(crtc_state)) { ctl &= ~(TGL_TRANS_DDI_PORT_MASK | TRANS_DDI_MODE_SELECT_MASK); @@ -706,7 +699,7 @@ void intel_ddi_disable_transcoder_func(const struct intel_crtc_state *crtc_state ctl &= ~(TRANS_DDI_PORT_MASK | TRANS_DDI_MODE_SELECT_MASK); } - intel_de_write(dev_priv, TRANS_DDI_FUNC_CTL(dev_priv, cpu_transcoder), + intel_de_write(display, TRANS_DDI_FUNC_CTL(display, cpu_transcoder), ctl); if (intel_dp_mst_is_slave_trans(crtc_state)) @@ -725,17 +718,15 @@ int intel_ddi_toggle_hdcp_bits(struct intel_encoder *intel_encoder, bool enable, u32 hdcp_mask) { struct intel_display *display = to_intel_display(intel_encoder); - struct drm_device *dev = intel_encoder->base.dev; - struct drm_i915_private *dev_priv = to_i915(dev); intel_wakeref_t wakeref; int ret = 0; wakeref = intel_display_power_get_if_enabled(display, intel_encoder->power_domain); - if (drm_WARN_ON(dev, !wakeref)) + if (drm_WARN_ON(display->drm, !wakeref)) return -ENXIO; - intel_de_rmw(dev_priv, TRANS_DDI_FUNC_CTL(dev_priv, cpu_transcoder), + intel_de_rmw(display, TRANS_DDI_FUNC_CTL(display, cpu_transcoder), hdcp_mask, enable ? hdcp_mask : 0); intel_display_power_put(display, intel_encoder->power_domain, wakeref); return ret; @@ -744,7 +735,6 @@ int intel_ddi_toggle_hdcp_bits(struct intel_encoder *intel_encoder, bool intel_ddi_connector_get_hw_state(struct intel_connector *intel_connector) { struct intel_display *display = to_intel_display(intel_connector); - struct drm_i915_private *dev_priv = to_i915(display->drm); struct intel_encoder *encoder = intel_attached_encoder(intel_connector); int type = intel_connector->base.connector_type; enum port port = encoder->port; @@ -765,12 +755,12 @@ bool intel_ddi_connector_get_hw_state(struct intel_connector *intel_connector) goto out; } - if (HAS_TRANSCODER(dev_priv, TRANSCODER_EDP) && port == PORT_A) + if (HAS_TRANSCODER(display, TRANSCODER_EDP) && port == PORT_A) cpu_transcoder = TRANSCODER_EDP; else cpu_transcoder = (enum transcoder) pipe; - ddi_mode = intel_de_read(dev_priv, TRANS_DDI_FUNC_CTL(dev_priv, cpu_transcoder)) & + ddi_mode = intel_de_read(display, TRANS_DDI_FUNC_CTL(display, cpu_transcoder)) & TRANS_DDI_MODE_SELECT_MASK; if (ddi_mode == TRANS_DDI_MODE_SELECT_HDMI || @@ -804,7 +794,6 @@ static void intel_ddi_get_encoder_pipes(struct intel_encoder *encoder, u8 *pipe_mask, bool *is_dp_mst) { struct intel_display *display = to_intel_display(encoder); - struct drm_i915_private *dev_priv = to_i915(display->drm); enum port port = encoder->port; intel_wakeref_t wakeref; enum pipe p; @@ -819,13 +808,13 @@ static void intel_ddi_get_encoder_pipes(struct intel_encoder *encoder, if (!wakeref) return; - tmp = intel_de_read(dev_priv, DDI_BUF_CTL(port)); + tmp = intel_de_read(display, DDI_BUF_CTL(port)); if (!(tmp & DDI_BUF_CTL_ENABLE)) goto out; - if (HAS_TRANSCODER(dev_priv, TRANSCODER_EDP) && port == PORT_A) { - tmp = intel_de_read(dev_priv, - TRANS_DDI_FUNC_CTL(dev_priv, TRANSCODER_EDP)); + if (HAS_TRANSCODER(display, TRANSCODER_EDP) && port == PORT_A) { + tmp = intel_de_read(display, + TRANS_DDI_FUNC_CTL(display, TRANSCODER_EDP)); switch (tmp & TRANS_DDI_EDP_INPUT_MASK) { default: @@ -846,7 +835,7 @@ static void intel_ddi_get_encoder_pipes(struct intel_encoder *encoder, goto out; } - for_each_pipe(dev_priv, p) { + for_each_pipe(display, p) { enum transcoder cpu_transcoder = (enum transcoder)p; u32 port_mask, ddi_select, ddi_mode; intel_wakeref_t trans_wakeref; @@ -856,7 +845,7 @@ static void intel_ddi_get_encoder_pipes(struct intel_encoder *encoder, if (!trans_wakeref) continue; - if (DISPLAY_VER(dev_priv) >= 12) { + if (DISPLAY_VER(display) >= 12) { port_mask = TGL_TRANS_DDI_PORT_MASK; ddi_select = TGL_TRANS_DDI_SELECT_PORT(port); } else { @@ -864,8 +853,8 @@ static void intel_ddi_get_encoder_pipes(struct intel_encoder *encoder, ddi_select = TRANS_DDI_SELECT_PORT(port); } - tmp = intel_de_read(dev_priv, - TRANS_DDI_FUNC_CTL(dev_priv, cpu_transcoder)); + tmp = intel_de_read(display, + TRANS_DDI_FUNC_CTL(display, cpu_transcoder)); intel_display_power_put(display, POWER_DOMAIN_TRANSCODER(cpu_transcoder), trans_wakeref); @@ -883,12 +872,12 @@ static void intel_ddi_get_encoder_pipes(struct intel_encoder *encoder, } if (!*pipe_mask) - drm_dbg_kms(&dev_priv->drm, + drm_dbg_kms(display->drm, "No pipe for [ENCODER:%d:%s] found\n", encoder->base.base.id, encoder->base.name); if (!mst_pipe_mask && dp128b132b_pipe_mask) { - struct intel_digital_port *dig_port = enc_to_dig_port(encoder); + struct intel_dp *intel_dp = enc_to_intel_dp(encoder); /* * If we don't have 8b/10b MST, but have more than one @@ -901,12 +890,12 @@ static void intel_ddi_get_encoder_pipes(struct intel_encoder *encoder, * can assume it's SST. */ if (hweight8(dp128b132b_pipe_mask) > 1 || - intel_dp_mst_encoder_active_links(dig_port)) + intel_dp_mst_active_streams(intel_dp)) mst_pipe_mask = dp128b132b_pipe_mask; } if (!mst_pipe_mask && hweight8(*pipe_mask) > 1) { - drm_dbg_kms(&dev_priv->drm, + drm_dbg_kms(display->drm, "Multiple pipes for [ENCODER:%d:%s] (pipe_mask %02x)\n", encoder->base.base.id, encoder->base.name, *pipe_mask); @@ -914,7 +903,7 @@ static void intel_ddi_get_encoder_pipes(struct intel_encoder *encoder, } if (mst_pipe_mask && mst_pipe_mask != *pipe_mask) - drm_dbg_kms(&dev_priv->drm, + drm_dbg_kms(display->drm, "Conflicting MST and non-MST state for [ENCODER:%d:%s] (pipe masks: all %02x, MST %02x, 128b/132b %02x)\n", encoder->base.base.id, encoder->base.name, *pipe_mask, mst_pipe_mask, dp128b132b_pipe_mask); @@ -922,12 +911,12 @@ static void intel_ddi_get_encoder_pipes(struct intel_encoder *encoder, *is_dp_mst = mst_pipe_mask; out: - if (*pipe_mask && (IS_GEMINILAKE(dev_priv) || IS_BROXTON(dev_priv))) { - tmp = intel_de_read(dev_priv, BXT_PHY_CTL(port)); + if (*pipe_mask && (display->platform.geminilake || display->platform.broxton)) { + tmp = intel_de_read(display, BXT_PHY_CTL(port)); if ((tmp & (BXT_PHY_CMNLANE_POWERDOWN_ACK | BXT_PHY_LANE_POWERDOWN_ACK | BXT_PHY_LANE_ENABLED)) != BXT_PHY_LANE_ENABLED) - drm_err(&dev_priv->drm, + drm_err(display->drm, "[ENCODER:%d:%s] enabled but PHY powered down? (PHY_CTL %08x)\n", encoder->base.base.id, encoder->base.name, tmp); } @@ -1041,8 +1030,7 @@ static void intel_ddi_get_power_domains(struct intel_encoder *encoder, void intel_ddi_enable_transcoder_clock(struct intel_encoder *encoder, const struct intel_crtc_state *crtc_state) { - struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc); - struct drm_i915_private *dev_priv = to_i915(crtc->base.dev); + struct intel_display *display = to_intel_display(crtc_state); enum transcoder cpu_transcoder = crtc_state->cpu_transcoder; enum phy phy = intel_encoder_to_phy(encoder); u32 val; @@ -1050,53 +1038,53 @@ void intel_ddi_enable_transcoder_clock(struct intel_encoder *encoder, if (cpu_transcoder == TRANSCODER_EDP) return; - if (DISPLAY_VER(dev_priv) >= 13) + if (DISPLAY_VER(display) >= 13) val = TGL_TRANS_CLK_SEL_PORT(phy); - else if (DISPLAY_VER(dev_priv) >= 12) + else if (DISPLAY_VER(display) >= 12) val = TGL_TRANS_CLK_SEL_PORT(encoder->port); else val = TRANS_CLK_SEL_PORT(encoder->port); - intel_de_write(dev_priv, TRANS_CLK_SEL(cpu_transcoder), val); + intel_de_write(display, TRANS_CLK_SEL(cpu_transcoder), val); } void intel_ddi_disable_transcoder_clock(const struct intel_crtc_state *crtc_state) { - struct drm_i915_private *dev_priv = to_i915(crtc_state->uapi.crtc->dev); + struct intel_display *display = to_intel_display(crtc_state); enum transcoder cpu_transcoder = crtc_state->cpu_transcoder; u32 val; if (cpu_transcoder == TRANSCODER_EDP) return; - if (DISPLAY_VER(dev_priv) >= 12) + if (DISPLAY_VER(display) >= 12) val = TGL_TRANS_CLK_SEL_DISABLED; else val = TRANS_CLK_SEL_DISABLED; - intel_de_write(dev_priv, TRANS_CLK_SEL(cpu_transcoder), val); + intel_de_write(display, TRANS_CLK_SEL(cpu_transcoder), val); } -static void _skl_ddi_set_iboost(struct drm_i915_private *dev_priv, +static void _skl_ddi_set_iboost(struct intel_display *display, enum port port, u8 iboost) { u32 tmp; - tmp = intel_de_read(dev_priv, DISPIO_CR_TX_BMU_CR0); + tmp = intel_de_read(display, DISPIO_CR_TX_BMU_CR0); tmp &= ~(BALANCE_LEG_MASK(port) | BALANCE_LEG_DISABLE(port)); if (iboost) tmp |= iboost << BALANCE_LEG_SHIFT(port); else tmp |= BALANCE_LEG_DISABLE(port); - intel_de_write(dev_priv, DISPIO_CR_TX_BMU_CR0, tmp); + intel_de_write(display, DISPIO_CR_TX_BMU_CR0, tmp); } static void skl_ddi_set_iboost(struct intel_encoder *encoder, const struct intel_crtc_state *crtc_state, int level) { + struct intel_display *display = to_intel_display(encoder); struct intel_digital_port *dig_port = enc_to_dig_port(encoder); - struct drm_i915_private *dev_priv = to_i915(encoder->base.dev); u8 iboost; if (intel_crtc_has_type(crtc_state, INTEL_OUTPUT_HDMI)) @@ -1109,7 +1097,7 @@ static void skl_ddi_set_iboost(struct intel_encoder *encoder, int n_entries; trans = encoder->get_buf_trans(encoder, crtc_state, &n_entries); - if (drm_WARN_ON_ONCE(&dev_priv->drm, !trans)) + if (drm_WARN_ON_ONCE(display->drm, !trans)) return; iboost = trans->entries[level].hsw.i_boost; @@ -1117,28 +1105,28 @@ static void skl_ddi_set_iboost(struct intel_encoder *encoder, /* Make sure that the requested I_boost is valid */ if (iboost && iboost != 0x1 && iboost != 0x3 && iboost != 0x7) { - drm_err(&dev_priv->drm, "Invalid I_boost value %u\n", iboost); + drm_err(display->drm, "Invalid I_boost value %u\n", iboost); return; } - _skl_ddi_set_iboost(dev_priv, encoder->port, iboost); + _skl_ddi_set_iboost(display, encoder->port, iboost); if (encoder->port == PORT_A && dig_port->max_lanes == 4) - _skl_ddi_set_iboost(dev_priv, PORT_E, iboost); + _skl_ddi_set_iboost(display, PORT_E, iboost); } static u8 intel_ddi_dp_voltage_max(struct intel_dp *intel_dp, const struct intel_crtc_state *crtc_state) { + struct intel_display *display = to_intel_display(intel_dp); struct intel_encoder *encoder = &dp_to_dig_port(intel_dp)->base; - struct drm_i915_private *dev_priv = to_i915(encoder->base.dev); int n_entries; encoder->get_buf_trans(encoder, crtc_state, &n_entries); - if (drm_WARN_ON(&dev_priv->drm, n_entries < 1)) + if (drm_WARN_ON(display->drm, n_entries < 1)) n_entries = 1; - if (drm_WARN_ON(&dev_priv->drm, + if (drm_WARN_ON(display->drm, n_entries > ARRAY_SIZE(index_to_dp_signal_levels))) n_entries = ARRAY_SIZE(index_to_dp_signal_levels); @@ -1171,14 +1159,14 @@ static u32 icl_combo_phy_loadgen_select(const struct intel_crtc_state *crtc_stat static void icl_ddi_combo_vswing_program(struct intel_encoder *encoder, const struct intel_crtc_state *crtc_state) { - struct drm_i915_private *dev_priv = to_i915(encoder->base.dev); + struct intel_display *display = to_intel_display(encoder); const struct intel_ddi_buf_trans *trans; enum phy phy = intel_encoder_to_phy(encoder); int n_entries, ln; u32 val; trans = encoder->get_buf_trans(encoder, crtc_state, &n_entries); - if (drm_WARN_ON_ONCE(&dev_priv->drm, !trans)) + if (drm_WARN_ON_ONCE(display->drm, !trans)) return; if (intel_crtc_has_type(crtc_state, INTEL_OUTPUT_EDP)) { @@ -1186,25 +1174,25 @@ static void icl_ddi_combo_vswing_program(struct intel_encoder *encoder, val = EDP4K2K_MODE_OVRD_EN | EDP4K2K_MODE_OVRD_OPTIMIZED; intel_dp->hobl_active = is_hobl_buf_trans(trans); - intel_de_rmw(dev_priv, ICL_PORT_CL_DW10(phy), val, + intel_de_rmw(display, ICL_PORT_CL_DW10(phy), val, intel_dp->hobl_active ? val : 0); } /* Set PORT_TX_DW5 */ - val = intel_de_read(dev_priv, ICL_PORT_TX_DW5_LN(0, phy)); + val = intel_de_read(display, ICL_PORT_TX_DW5_LN(0, phy)); val &= ~(SCALING_MODE_SEL_MASK | RTERM_SELECT_MASK | COEFF_POLARITY | CURSOR_PROGRAM | TAP2_DISABLE | TAP3_DISABLE); val |= SCALING_MODE_SEL(0x2); val |= RTERM_SELECT(0x6); val |= TAP3_DISABLE; - intel_de_write(dev_priv, ICL_PORT_TX_DW5_GRP(phy), val); + intel_de_write(display, ICL_PORT_TX_DW5_GRP(phy), val); /* Program PORT_TX_DW2 */ for (ln = 0; ln < 4; ln++) { int level = intel_ddi_level(encoder, crtc_state, ln); - intel_de_rmw(dev_priv, ICL_PORT_TX_DW2_LN(ln, phy), + intel_de_rmw(display, ICL_PORT_TX_DW2_LN(ln, phy), SWING_SEL_UPPER_MASK | SWING_SEL_LOWER_MASK | RCOMP_SCALAR_MASK, SWING_SEL_UPPER(trans->entries[level].icl.dw2_swing_sel) | SWING_SEL_LOWER(trans->entries[level].icl.dw2_swing_sel) | @@ -1216,7 +1204,7 @@ static void icl_ddi_combo_vswing_program(struct intel_encoder *encoder, for (ln = 0; ln < 4; ln++) { int level = intel_ddi_level(encoder, crtc_state, ln); - intel_de_rmw(dev_priv, ICL_PORT_TX_DW4_LN(ln, phy), + intel_de_rmw(display, ICL_PORT_TX_DW4_LN(ln, phy), POST_CURSOR_1_MASK | POST_CURSOR_2_MASK | CURSOR_COEFF_MASK, POST_CURSOR_1(trans->entries[level].icl.dw4_post_cursor_1) | POST_CURSOR_2(trans->entries[level].icl.dw4_post_cursor_2) | @@ -1227,7 +1215,7 @@ static void icl_ddi_combo_vswing_program(struct intel_encoder *encoder, for (ln = 0; ln < 4; ln++) { int level = intel_ddi_level(encoder, crtc_state, ln); - intel_de_rmw(dev_priv, ICL_PORT_TX_DW7_LN(ln, phy), + intel_de_rmw(display, ICL_PORT_TX_DW7_LN(ln, phy), N_SCALAR_MASK, N_SCALAR(trans->entries[level].icl.dw7_n_scalar)); } @@ -1236,7 +1224,7 @@ static void icl_ddi_combo_vswing_program(struct intel_encoder *encoder, static void icl_combo_phy_set_signal_levels(struct intel_encoder *encoder, const struct intel_crtc_state *crtc_state) { - struct drm_i915_private *dev_priv = to_i915(encoder->base.dev); + struct intel_display *display = to_intel_display(encoder); enum phy phy = intel_encoder_to_phy(encoder); u32 val; int ln; @@ -1246,12 +1234,12 @@ static void icl_combo_phy_set_signal_levels(struct intel_encoder *encoder, * set PORT_PCS_DW1 cmnkeeper_enable to 1b, * else clear to 0b. */ - val = intel_de_read(dev_priv, ICL_PORT_PCS_DW1_LN(0, phy)); + val = intel_de_read(display, ICL_PORT_PCS_DW1_LN(0, phy)); if (intel_crtc_has_type(crtc_state, INTEL_OUTPUT_HDMI)) val &= ~COMMON_KEEPER_EN; else val |= COMMON_KEEPER_EN; - intel_de_write(dev_priv, ICL_PORT_PCS_DW1_GRP(phy), val); + intel_de_write(display, ICL_PORT_PCS_DW1_GRP(phy), val); /* 2. Program loadgen select */ /* @@ -1261,33 +1249,33 @@ static void icl_combo_phy_set_signal_levels(struct intel_encoder *encoder, * > 6 GHz (LN0=0, LN1=0, LN2=0, LN3=0) */ for (ln = 0; ln < 4; ln++) { - intel_de_rmw(dev_priv, ICL_PORT_TX_DW4_LN(ln, phy), + intel_de_rmw(display, ICL_PORT_TX_DW4_LN(ln, phy), LOADGEN_SELECT, icl_combo_phy_loadgen_select(crtc_state, ln)); } /* 3. Set PORT_CL_DW5 SUS Clock Config to 11b */ - intel_de_rmw(dev_priv, ICL_PORT_CL_DW5(phy), + intel_de_rmw(display, ICL_PORT_CL_DW5(phy), 0, SUS_CLOCK_CONFIG); /* 4. Clear training enable to change swing values */ - val = intel_de_read(dev_priv, ICL_PORT_TX_DW5_LN(0, phy)); + val = intel_de_read(display, ICL_PORT_TX_DW5_LN(0, phy)); val &= ~TX_TRAINING_EN; - intel_de_write(dev_priv, ICL_PORT_TX_DW5_GRP(phy), val); + intel_de_write(display, ICL_PORT_TX_DW5_GRP(phy), val); /* 5. Program swing and de-emphasis */ icl_ddi_combo_vswing_program(encoder, crtc_state); /* 6. Set training enable to trigger update */ - val = intel_de_read(dev_priv, ICL_PORT_TX_DW5_LN(0, phy)); + val = intel_de_read(display, ICL_PORT_TX_DW5_LN(0, phy)); val |= TX_TRAINING_EN; - intel_de_write(dev_priv, ICL_PORT_TX_DW5_GRP(phy), val); + intel_de_write(display, ICL_PORT_TX_DW5_GRP(phy), val); } static void icl_mg_phy_set_signal_levels(struct intel_encoder *encoder, const struct intel_crtc_state *crtc_state) { - struct drm_i915_private *dev_priv = to_i915(encoder->base.dev); + struct intel_display *display = to_intel_display(encoder); enum tc_port tc_port = intel_encoder_to_tc(encoder); const struct intel_ddi_buf_trans *trans; int n_entries, ln; @@ -1296,13 +1284,13 @@ static void icl_mg_phy_set_signal_levels(struct intel_encoder *encoder, return; trans = encoder->get_buf_trans(encoder, crtc_state, &n_entries); - if (drm_WARN_ON_ONCE(&dev_priv->drm, !trans)) + if (drm_WARN_ON_ONCE(display->drm, !trans)) return; for (ln = 0; ln < 2; ln++) { - intel_de_rmw(dev_priv, MG_TX1_LINK_PARAMS(ln, tc_port), + intel_de_rmw(display, MG_TX1_LINK_PARAMS(ln, tc_port), CRI_USE_FS32, 0); - intel_de_rmw(dev_priv, MG_TX2_LINK_PARAMS(ln, tc_port), + intel_de_rmw(display, MG_TX2_LINK_PARAMS(ln, tc_port), CRI_USE_FS32, 0); } @@ -1312,13 +1300,13 @@ static void icl_mg_phy_set_signal_levels(struct intel_encoder *encoder, level = intel_ddi_level(encoder, crtc_state, 2*ln+0); - intel_de_rmw(dev_priv, MG_TX1_SWINGCTRL(ln, tc_port), + intel_de_rmw(display, MG_TX1_SWINGCTRL(ln, tc_port), CRI_TXDEEMPH_OVERRIDE_17_12_MASK, CRI_TXDEEMPH_OVERRIDE_17_12(trans->entries[level].mg.cri_txdeemph_override_17_12)); level = intel_ddi_level(encoder, crtc_state, 2*ln+1); - intel_de_rmw(dev_priv, MG_TX2_SWINGCTRL(ln, tc_port), + intel_de_rmw(display, MG_TX2_SWINGCTRL(ln, tc_port), CRI_TXDEEMPH_OVERRIDE_17_12_MASK, CRI_TXDEEMPH_OVERRIDE_17_12(trans->entries[level].mg.cri_txdeemph_override_17_12)); } @@ -1329,7 +1317,7 @@ static void icl_mg_phy_set_signal_levels(struct intel_encoder *encoder, level = intel_ddi_level(encoder, crtc_state, 2*ln+0); - intel_de_rmw(dev_priv, MG_TX1_DRVCTRL(ln, tc_port), + intel_de_rmw(display, MG_TX1_DRVCTRL(ln, tc_port), CRI_TXDEEMPH_OVERRIDE_11_6_MASK | CRI_TXDEEMPH_OVERRIDE_5_0_MASK, CRI_TXDEEMPH_OVERRIDE_11_6(trans->entries[level].mg.cri_txdeemph_override_11_6) | @@ -1338,7 +1326,7 @@ static void icl_mg_phy_set_signal_levels(struct intel_encoder *encoder, level = intel_ddi_level(encoder, crtc_state, 2*ln+1); - intel_de_rmw(dev_priv, MG_TX2_DRVCTRL(ln, tc_port), + intel_de_rmw(display, MG_TX2_DRVCTRL(ln, tc_port), CRI_TXDEEMPH_OVERRIDE_11_6_MASK | CRI_TXDEEMPH_OVERRIDE_5_0_MASK, CRI_TXDEEMPH_OVERRIDE_11_6(trans->entries[level].mg.cri_txdeemph_override_11_6) | @@ -1354,21 +1342,21 @@ static void icl_mg_phy_set_signal_levels(struct intel_encoder *encoder, * values from table for which TX1 and TX2 enabled. */ for (ln = 0; ln < 2; ln++) { - intel_de_rmw(dev_priv, MG_CLKHUB(ln, tc_port), + intel_de_rmw(display, MG_CLKHUB(ln, tc_port), CFG_LOW_RATE_LKREN_EN, crtc_state->port_clock < 300000 ? CFG_LOW_RATE_LKREN_EN : 0); } /* Program the MG_TX_DCC based on the link frequency */ for (ln = 0; ln < 2; ln++) { - intel_de_rmw(dev_priv, MG_TX1_DCC(ln, tc_port), + intel_de_rmw(display, MG_TX1_DCC(ln, tc_port), CFG_AMI_CK_DIV_OVERRIDE_VAL_MASK | CFG_AMI_CK_DIV_OVERRIDE_EN, crtc_state->port_clock > 500000 ? CFG_AMI_CK_DIV_OVERRIDE_VAL(1) | CFG_AMI_CK_DIV_OVERRIDE_EN : 0); - intel_de_rmw(dev_priv, MG_TX2_DCC(ln, tc_port), + intel_de_rmw(display, MG_TX2_DCC(ln, tc_port), CFG_AMI_CK_DIV_OVERRIDE_VAL_MASK | CFG_AMI_CK_DIV_OVERRIDE_EN, crtc_state->port_clock > 500000 ? @@ -1378,9 +1366,9 @@ static void icl_mg_phy_set_signal_levels(struct intel_encoder *encoder, /* Program MG_TX_PISO_READLOAD with values from vswing table */ for (ln = 0; ln < 2; ln++) { - intel_de_rmw(dev_priv, MG_TX1_PISO_READLOAD(ln, tc_port), + intel_de_rmw(display, MG_TX1_PISO_READLOAD(ln, tc_port), 0, CRI_CALCINIT); - intel_de_rmw(dev_priv, MG_TX2_PISO_READLOAD(ln, tc_port), + intel_de_rmw(display, MG_TX2_PISO_READLOAD(ln, tc_port), 0, CRI_CALCINIT); } } @@ -1490,12 +1478,12 @@ int intel_ddi_level(struct intel_encoder *encoder, const struct intel_crtc_state *crtc_state, int lane) { - struct drm_i915_private *i915 = to_i915(encoder->base.dev); + struct intel_display *display = to_intel_display(encoder); const struct intel_ddi_buf_trans *trans; int level, n_entries; trans = encoder->get_buf_trans(encoder, crtc_state, &n_entries); - if (drm_WARN_ON_ONCE(&i915->drm, !trans)) + if (drm_WARN_ON_ONCE(display->drm, !trans)) return 0; if (intel_crtc_has_type(crtc_state, INTEL_OUTPUT_HDMI)) @@ -1504,7 +1492,7 @@ int intel_ddi_level(struct intel_encoder *encoder, level = intel_ddi_dp_level(enc_to_intel_dp(encoder), crtc_state, lane); - if (drm_WARN_ON_ONCE(&i915->drm, level >= n_entries)) + if (drm_WARN_ON_ONCE(display->drm, level >= n_entries)) level = n_entries - 1; return level; @@ -1514,13 +1502,13 @@ static void hsw_set_signal_levels(struct intel_encoder *encoder, const struct intel_crtc_state *crtc_state) { - struct drm_i915_private *dev_priv = to_i915(encoder->base.dev); + struct intel_display *display = to_intel_display(encoder); struct intel_dp *intel_dp = enc_to_intel_dp(encoder); int level = intel_ddi_level(encoder, crtc_state, 0); enum port port = encoder->port; u32 signal_levels; - if (has_iboost(dev_priv)) + if (has_iboost(display)) skl_ddi_set_iboost(encoder, crtc_state, level); /* HDMI ignores the rest */ @@ -1529,46 +1517,46 @@ hsw_set_signal_levels(struct intel_encoder *encoder, signal_levels = DDI_BUF_TRANS_SELECT(level); - drm_dbg_kms(&dev_priv->drm, "Using signal levels %08x\n", + drm_dbg_kms(display->drm, "Using signal levels %08x\n", signal_levels); intel_dp->DP &= ~DDI_BUF_EMP_MASK; intel_dp->DP |= signal_levels; - intel_de_write(dev_priv, DDI_BUF_CTL(port), intel_dp->DP); - intel_de_posting_read(dev_priv, DDI_BUF_CTL(port)); + intel_de_write(display, DDI_BUF_CTL(port), intel_dp->DP); + intel_de_posting_read(display, DDI_BUF_CTL(port)); } -static void _icl_ddi_enable_clock(struct drm_i915_private *i915, i915_reg_t reg, +static void _icl_ddi_enable_clock(struct intel_display *display, i915_reg_t reg, u32 clk_sel_mask, u32 clk_sel, u32 clk_off) { - mutex_lock(&i915->display.dpll.lock); + mutex_lock(&display->dpll.lock); - intel_de_rmw(i915, reg, clk_sel_mask, clk_sel); + intel_de_rmw(display, reg, clk_sel_mask, clk_sel); /* * "This step and the step before must be * done with separate register writes." */ - intel_de_rmw(i915, reg, clk_off, 0); + intel_de_rmw(display, reg, clk_off, 0); - mutex_unlock(&i915->display.dpll.lock); + mutex_unlock(&display->dpll.lock); } -static void _icl_ddi_disable_clock(struct drm_i915_private *i915, i915_reg_t reg, +static void _icl_ddi_disable_clock(struct intel_display *display, i915_reg_t reg, u32 clk_off) { - mutex_lock(&i915->display.dpll.lock); + mutex_lock(&display->dpll.lock); - intel_de_rmw(i915, reg, 0, clk_off); + intel_de_rmw(display, reg, 0, clk_off); - mutex_unlock(&i915->display.dpll.lock); + mutex_unlock(&display->dpll.lock); } -static bool _icl_ddi_is_clock_enabled(struct drm_i915_private *i915, i915_reg_t reg, +static bool _icl_ddi_is_clock_enabled(struct intel_display *display, i915_reg_t reg, u32 clk_off) { - return !(intel_de_read(i915, reg) & clk_off); + return !(intel_de_read(display, reg) & clk_off); } static struct intel_shared_dpll * @@ -1585,14 +1573,14 @@ _icl_ddi_get_pll(struct intel_display *display, i915_reg_t reg, static void adls_ddi_enable_clock(struct intel_encoder *encoder, const struct intel_crtc_state *crtc_state) { - struct drm_i915_private *i915 = to_i915(encoder->base.dev); + struct intel_display *display = to_intel_display(encoder); const struct intel_shared_dpll *pll = crtc_state->shared_dpll; enum phy phy = intel_encoder_to_phy(encoder); - if (drm_WARN_ON(&i915->drm, !pll)) + if (drm_WARN_ON(display->drm, !pll)) return; - _icl_ddi_enable_clock(i915, ADLS_DPCLKA_CFGCR(phy), + _icl_ddi_enable_clock(display, ADLS_DPCLKA_CFGCR(phy), ADLS_DPCLKA_CFGCR_DDI_CLK_SEL_MASK(phy), pll->info->id << ADLS_DPCLKA_CFGCR_DDI_SHIFT(phy), ICL_DPCLKA_CFGCR0_DDI_CLK_OFF(phy)); @@ -1600,19 +1588,19 @@ static void adls_ddi_enable_clock(struct intel_encoder *encoder, static void adls_ddi_disable_clock(struct intel_encoder *encoder) { - struct drm_i915_private *i915 = to_i915(encoder->base.dev); + struct intel_display *display = to_intel_display(encoder); enum phy phy = intel_encoder_to_phy(encoder); - _icl_ddi_disable_clock(i915, ADLS_DPCLKA_CFGCR(phy), + _icl_ddi_disable_clock(display, ADLS_DPCLKA_CFGCR(phy), ICL_DPCLKA_CFGCR0_DDI_CLK_OFF(phy)); } static bool adls_ddi_is_clock_enabled(struct intel_encoder *encoder) { - struct drm_i915_private *i915 = to_i915(encoder->base.dev); + struct intel_display *display = to_intel_display(encoder); enum phy phy = intel_encoder_to_phy(encoder); - return _icl_ddi_is_clock_enabled(i915, ADLS_DPCLKA_CFGCR(phy), + return _icl_ddi_is_clock_enabled(display, ADLS_DPCLKA_CFGCR(phy), ICL_DPCLKA_CFGCR0_DDI_CLK_OFF(phy)); } @@ -1629,14 +1617,14 @@ static struct intel_shared_dpll *adls_ddi_get_pll(struct intel_encoder *encoder) static void rkl_ddi_enable_clock(struct intel_encoder *encoder, const struct intel_crtc_state *crtc_state) { - struct drm_i915_private *i915 = to_i915(encoder->base.dev); + struct intel_display *display = to_intel_display(encoder); const struct intel_shared_dpll *pll = crtc_state->shared_dpll; enum phy phy = intel_encoder_to_phy(encoder); - if (drm_WARN_ON(&i915->drm, !pll)) + if (drm_WARN_ON(display->drm, !pll)) return; - _icl_ddi_enable_clock(i915, ICL_DPCLKA_CFGCR0, + _icl_ddi_enable_clock(display, ICL_DPCLKA_CFGCR0, RKL_DPCLKA_CFGCR0_DDI_CLK_SEL_MASK(phy), RKL_DPCLKA_CFGCR0_DDI_CLK_SEL(pll->info->id, phy), RKL_DPCLKA_CFGCR0_DDI_CLK_OFF(phy)); @@ -1644,19 +1632,19 @@ static void rkl_ddi_enable_clock(struct intel_encoder *encoder, static void rkl_ddi_disable_clock(struct intel_encoder *encoder) { - struct drm_i915_private *i915 = to_i915(encoder->base.dev); + struct intel_display *display = to_intel_display(encoder); enum phy phy = intel_encoder_to_phy(encoder); - _icl_ddi_disable_clock(i915, ICL_DPCLKA_CFGCR0, + _icl_ddi_disable_clock(display, ICL_DPCLKA_CFGCR0, RKL_DPCLKA_CFGCR0_DDI_CLK_OFF(phy)); } static bool rkl_ddi_is_clock_enabled(struct intel_encoder *encoder) { - struct drm_i915_private *i915 = to_i915(encoder->base.dev); + struct intel_display *display = to_intel_display(encoder); enum phy phy = intel_encoder_to_phy(encoder); - return _icl_ddi_is_clock_enabled(i915, ICL_DPCLKA_CFGCR0, + return _icl_ddi_is_clock_enabled(display, ICL_DPCLKA_CFGCR0, RKL_DPCLKA_CFGCR0_DDI_CLK_OFF(phy)); } @@ -1673,23 +1661,23 @@ static struct intel_shared_dpll *rkl_ddi_get_pll(struct intel_encoder *encoder) static void dg1_ddi_enable_clock(struct intel_encoder *encoder, const struct intel_crtc_state *crtc_state) { - struct drm_i915_private *i915 = to_i915(encoder->base.dev); + struct intel_display *display = to_intel_display(encoder); const struct intel_shared_dpll *pll = crtc_state->shared_dpll; enum phy phy = intel_encoder_to_phy(encoder); - if (drm_WARN_ON(&i915->drm, !pll)) + if (drm_WARN_ON(display->drm, !pll)) return; /* * If we fail this, something went very wrong: first 2 PLLs should be * used by first 2 phys and last 2 PLLs by last phys */ - if (drm_WARN_ON(&i915->drm, + if (drm_WARN_ON(display->drm, (pll->info->id < DPLL_ID_DG1_DPLL2 && phy >= PHY_C) || (pll->info->id >= DPLL_ID_DG1_DPLL2 && phy < PHY_C))) return; - _icl_ddi_enable_clock(i915, DG1_DPCLKA_CFGCR0(phy), + _icl_ddi_enable_clock(display, DG1_DPCLKA_CFGCR0(phy), DG1_DPCLKA_CFGCR0_DDI_CLK_SEL_MASK(phy), DG1_DPCLKA_CFGCR0_DDI_CLK_SEL(pll->info->id, phy), DG1_DPCLKA_CFGCR0_DDI_CLK_OFF(phy)); @@ -1697,19 +1685,19 @@ static void dg1_ddi_enable_clock(struct intel_encoder *encoder, static void dg1_ddi_disable_clock(struct intel_encoder *encoder) { - struct drm_i915_private *i915 = to_i915(encoder->base.dev); + struct intel_display *display = to_intel_display(encoder); enum phy phy = intel_encoder_to_phy(encoder); - _icl_ddi_disable_clock(i915, DG1_DPCLKA_CFGCR0(phy), + _icl_ddi_disable_clock(display, DG1_DPCLKA_CFGCR0(phy), DG1_DPCLKA_CFGCR0_DDI_CLK_OFF(phy)); } static bool dg1_ddi_is_clock_enabled(struct intel_encoder *encoder) { - struct drm_i915_private *i915 = to_i915(encoder->base.dev); + struct intel_display *display = to_intel_display(encoder); enum phy phy = intel_encoder_to_phy(encoder); - return _icl_ddi_is_clock_enabled(i915, DG1_DPCLKA_CFGCR0(phy), + return _icl_ddi_is_clock_enabled(display, DG1_DPCLKA_CFGCR0(phy), DG1_DPCLKA_CFGCR0_DDI_CLK_OFF(phy)); } @@ -1739,14 +1727,14 @@ static struct intel_shared_dpll *dg1_ddi_get_pll(struct intel_encoder *encoder) static void icl_ddi_combo_enable_clock(struct intel_encoder *encoder, const struct intel_crtc_state *crtc_state) { - struct drm_i915_private *i915 = to_i915(encoder->base.dev); + struct intel_display *display = to_intel_display(encoder); const struct intel_shared_dpll *pll = crtc_state->shared_dpll; enum phy phy = intel_encoder_to_phy(encoder); - if (drm_WARN_ON(&i915->drm, !pll)) + if (drm_WARN_ON(display->drm, !pll)) return; - _icl_ddi_enable_clock(i915, ICL_DPCLKA_CFGCR0, + _icl_ddi_enable_clock(display, ICL_DPCLKA_CFGCR0, ICL_DPCLKA_CFGCR0_DDI_CLK_SEL_MASK(phy), ICL_DPCLKA_CFGCR0_DDI_CLK_SEL(pll->info->id, phy), ICL_DPCLKA_CFGCR0_DDI_CLK_OFF(phy)); @@ -1754,19 +1742,19 @@ static void icl_ddi_combo_enable_clock(struct intel_encoder *encoder, static void icl_ddi_combo_disable_clock(struct intel_encoder *encoder) { - struct drm_i915_private *i915 = to_i915(encoder->base.dev); + struct intel_display *display = to_intel_display(encoder); enum phy phy = intel_encoder_to_phy(encoder); - _icl_ddi_disable_clock(i915, ICL_DPCLKA_CFGCR0, + _icl_ddi_disable_clock(display, ICL_DPCLKA_CFGCR0, ICL_DPCLKA_CFGCR0_DDI_CLK_OFF(phy)); } static bool icl_ddi_combo_is_clock_enabled(struct intel_encoder *encoder) { - struct drm_i915_private *i915 = to_i915(encoder->base.dev); + struct intel_display *display = to_intel_display(encoder); enum phy phy = intel_encoder_to_phy(encoder); - return _icl_ddi_is_clock_enabled(i915, ICL_DPCLKA_CFGCR0, + return _icl_ddi_is_clock_enabled(display, ICL_DPCLKA_CFGCR0, ICL_DPCLKA_CFGCR0_DDI_CLK_OFF(phy)); } @@ -1783,39 +1771,39 @@ struct intel_shared_dpll *icl_ddi_combo_get_pll(struct intel_encoder *encoder) static void jsl_ddi_tc_enable_clock(struct intel_encoder *encoder, const struct intel_crtc_state *crtc_state) { - struct drm_i915_private *i915 = to_i915(encoder->base.dev); + struct intel_display *display = to_intel_display(encoder); const struct intel_shared_dpll *pll = crtc_state->shared_dpll; enum port port = encoder->port; - if (drm_WARN_ON(&i915->drm, !pll)) + if (drm_WARN_ON(display->drm, !pll)) return; /* * "For DDIC and DDID, program DDI_CLK_SEL to map the MG clock to the port. * MG does not exist, but the programming is required to ungate DDIC and DDID." */ - intel_de_write(i915, DDI_CLK_SEL(port), DDI_CLK_SEL_MG); + intel_de_write(display, DDI_CLK_SEL(port), DDI_CLK_SEL_MG); icl_ddi_combo_enable_clock(encoder, crtc_state); } static void jsl_ddi_tc_disable_clock(struct intel_encoder *encoder) { - struct drm_i915_private *i915 = to_i915(encoder->base.dev); + struct intel_display *display = to_intel_display(encoder); enum port port = encoder->port; icl_ddi_combo_disable_clock(encoder); - intel_de_write(i915, DDI_CLK_SEL(port), DDI_CLK_SEL_NONE); + intel_de_write(display, DDI_CLK_SEL(port), DDI_CLK_SEL_NONE); } static bool jsl_ddi_tc_is_clock_enabled(struct intel_encoder *encoder) { - struct drm_i915_private *i915 = to_i915(encoder->base.dev); + struct intel_display *display = to_intel_display(encoder); enum port port = encoder->port; u32 tmp; - tmp = intel_de_read(i915, DDI_CLK_SEL(port)); + tmp = intel_de_read(display, DDI_CLK_SEL(port)); if ((tmp & DDI_CLK_SEL_MASK) == DDI_CLK_SEL_NONE) return false; @@ -1826,54 +1814,54 @@ static bool jsl_ddi_tc_is_clock_enabled(struct intel_encoder *encoder) static void icl_ddi_tc_enable_clock(struct intel_encoder *encoder, const struct intel_crtc_state *crtc_state) { - struct drm_i915_private *i915 = to_i915(encoder->base.dev); + struct intel_display *display = to_intel_display(encoder); const struct intel_shared_dpll *pll = crtc_state->shared_dpll; enum tc_port tc_port = intel_encoder_to_tc(encoder); enum port port = encoder->port; - if (drm_WARN_ON(&i915->drm, !pll)) + if (drm_WARN_ON(display->drm, !pll)) return; - intel_de_write(i915, DDI_CLK_SEL(port), + intel_de_write(display, DDI_CLK_SEL(port), icl_pll_to_ddi_clk_sel(encoder, crtc_state)); - mutex_lock(&i915->display.dpll.lock); + mutex_lock(&display->dpll.lock); - intel_de_rmw(i915, ICL_DPCLKA_CFGCR0, + intel_de_rmw(display, ICL_DPCLKA_CFGCR0, ICL_DPCLKA_CFGCR0_TC_CLK_OFF(tc_port), 0); - mutex_unlock(&i915->display.dpll.lock); + mutex_unlock(&display->dpll.lock); } static void icl_ddi_tc_disable_clock(struct intel_encoder *encoder) { - struct drm_i915_private *i915 = to_i915(encoder->base.dev); + struct intel_display *display = to_intel_display(encoder); enum tc_port tc_port = intel_encoder_to_tc(encoder); enum port port = encoder->port; - mutex_lock(&i915->display.dpll.lock); + mutex_lock(&display->dpll.lock); - intel_de_rmw(i915, ICL_DPCLKA_CFGCR0, + intel_de_rmw(display, ICL_DPCLKA_CFGCR0, 0, ICL_DPCLKA_CFGCR0_TC_CLK_OFF(tc_port)); - mutex_unlock(&i915->display.dpll.lock); + mutex_unlock(&display->dpll.lock); - intel_de_write(i915, DDI_CLK_SEL(port), DDI_CLK_SEL_NONE); + intel_de_write(display, DDI_CLK_SEL(port), DDI_CLK_SEL_NONE); } static bool icl_ddi_tc_is_clock_enabled(struct intel_encoder *encoder) { - struct drm_i915_private *i915 = to_i915(encoder->base.dev); + struct intel_display *display = to_intel_display(encoder); enum tc_port tc_port = intel_encoder_to_tc(encoder); enum port port = encoder->port; u32 tmp; - tmp = intel_de_read(i915, DDI_CLK_SEL(port)); + tmp = intel_de_read(display, DDI_CLK_SEL(port)); if ((tmp & DDI_CLK_SEL_MASK) == DDI_CLK_SEL_NONE) return false; - tmp = intel_de_read(i915, ICL_DPCLKA_CFGCR0); + tmp = intel_de_read(display, ICL_DPCLKA_CFGCR0); return !(tmp & ICL_DPCLKA_CFGCR0_TC_CLK_OFF(tc_port)); } @@ -1934,47 +1922,47 @@ static struct intel_shared_dpll *bxt_ddi_get_pll(struct intel_encoder *encoder) static void skl_ddi_enable_clock(struct intel_encoder *encoder, const struct intel_crtc_state *crtc_state) { - struct drm_i915_private *i915 = to_i915(encoder->base.dev); + struct intel_display *display = to_intel_display(encoder); const struct intel_shared_dpll *pll = crtc_state->shared_dpll; enum port port = encoder->port; - if (drm_WARN_ON(&i915->drm, !pll)) + if (drm_WARN_ON(display->drm, !pll)) return; - mutex_lock(&i915->display.dpll.lock); + mutex_lock(&display->dpll.lock); - intel_de_rmw(i915, DPLL_CTRL2, + intel_de_rmw(display, DPLL_CTRL2, DPLL_CTRL2_DDI_CLK_OFF(port) | DPLL_CTRL2_DDI_CLK_SEL_MASK(port), DPLL_CTRL2_DDI_CLK_SEL(pll->info->id, port) | DPLL_CTRL2_DDI_SEL_OVERRIDE(port)); - mutex_unlock(&i915->display.dpll.lock); + mutex_unlock(&display->dpll.lock); } static void skl_ddi_disable_clock(struct intel_encoder *encoder) { - struct drm_i915_private *i915 = to_i915(encoder->base.dev); + struct intel_display *display = to_intel_display(encoder); enum port port = encoder->port; - mutex_lock(&i915->display.dpll.lock); + mutex_lock(&display->dpll.lock); - intel_de_rmw(i915, DPLL_CTRL2, + intel_de_rmw(display, DPLL_CTRL2, 0, DPLL_CTRL2_DDI_CLK_OFF(port)); - mutex_unlock(&i915->display.dpll.lock); + mutex_unlock(&display->dpll.lock); } static bool skl_ddi_is_clock_enabled(struct intel_encoder *encoder) { - struct drm_i915_private *i915 = to_i915(encoder->base.dev); + struct intel_display *display = to_intel_display(encoder); enum port port = encoder->port; /* * FIXME Not sure if the override affects both * the PLL selection and the CLK_OFF bit. */ - return !(intel_de_read(i915, DPLL_CTRL2) & DPLL_CTRL2_DDI_CLK_OFF(port)); + return !(intel_de_read(display, DPLL_CTRL2) & DPLL_CTRL2_DDI_CLK_OFF(port)); } static struct intel_shared_dpll *skl_ddi_get_pll(struct intel_encoder *encoder) @@ -2002,30 +1990,30 @@ static struct intel_shared_dpll *skl_ddi_get_pll(struct intel_encoder *encoder) void hsw_ddi_enable_clock(struct intel_encoder *encoder, const struct intel_crtc_state *crtc_state) { - struct drm_i915_private *i915 = to_i915(encoder->base.dev); + struct intel_display *display = to_intel_display(encoder); const struct intel_shared_dpll *pll = crtc_state->shared_dpll; enum port port = encoder->port; - if (drm_WARN_ON(&i915->drm, !pll)) + if (drm_WARN_ON(display->drm, !pll)) return; - intel_de_write(i915, PORT_CLK_SEL(port), hsw_pll_to_ddi_pll_sel(pll)); + intel_de_write(display, PORT_CLK_SEL(port), hsw_pll_to_ddi_pll_sel(pll)); } void hsw_ddi_disable_clock(struct intel_encoder *encoder) { - struct drm_i915_private *i915 = to_i915(encoder->base.dev); + struct intel_display *display = to_intel_display(encoder); enum port port = encoder->port; - intel_de_write(i915, PORT_CLK_SEL(port), PORT_CLK_SEL_NONE); + intel_de_write(display, PORT_CLK_SEL(port), PORT_CLK_SEL_NONE); } bool hsw_ddi_is_clock_enabled(struct intel_encoder *encoder) { - struct drm_i915_private *i915 = to_i915(encoder->base.dev); + struct intel_display *display = to_intel_display(encoder); enum port port = encoder->port; - return intel_de_read(i915, PORT_CLK_SEL(port)) != PORT_CLK_SEL_NONE; + return intel_de_read(display, PORT_CLK_SEL(port)) != PORT_CLK_SEL_NONE; } static struct intel_shared_dpll *hsw_ddi_get_pll(struct intel_encoder *encoder) @@ -2081,7 +2069,7 @@ void intel_ddi_disable_clock(struct intel_encoder *encoder) void intel_ddi_sanitize_encoder_pll_mapping(struct intel_encoder *encoder) { - struct drm_i915_private *i915 = to_i915(encoder->base.dev); + struct intel_display *display = to_intel_display(encoder); u32 port_mask; bool ddi_clk_needed; @@ -2101,7 +2089,7 @@ void intel_ddi_sanitize_encoder_pll_mapping(struct intel_encoder *encoder) * In the unlikely case that BIOS enables DP in MST mode, just * warn since our MST HW readout is incomplete. */ - if (drm_WARN_ON(&i915->drm, is_mst)) + if (drm_WARN_ON(display->drm, is_mst)) return; } @@ -2116,11 +2104,11 @@ void intel_ddi_sanitize_encoder_pll_mapping(struct intel_encoder *encoder) * Sanity check that we haven't incorrectly registered another * encoder using any of the ports of this DSI encoder. */ - for_each_intel_encoder(&i915->drm, other_encoder) { + for_each_intel_encoder(display->drm, other_encoder) { if (other_encoder == encoder) continue; - if (drm_WARN_ON(&i915->drm, + if (drm_WARN_ON(display->drm, port_mask & BIT(other_encoder->port))) return; } @@ -2135,7 +2123,7 @@ void intel_ddi_sanitize_encoder_pll_mapping(struct intel_encoder *encoder) !encoder->is_clock_enabled(encoder)) return; - drm_dbg_kms(&i915->drm, + drm_dbg_kms(display->drm, "[ENCODER:%d:%s] is disabled/in DSI mode with an ungated DDI clock, gate it\n", encoder->base.base.id, encoder->base.name); @@ -2255,10 +2243,10 @@ tgl_dp_tp_transcoder(const struct intel_crtc_state *crtc_state) i915_reg_t dp_tp_ctl_reg(struct intel_encoder *encoder, const struct intel_crtc_state *crtc_state) { - struct drm_i915_private *dev_priv = to_i915(encoder->base.dev); + struct intel_display *display = to_intel_display(encoder); - if (DISPLAY_VER(dev_priv) >= 12) - return TGL_DP_TP_CTL(dev_priv, + if (DISPLAY_VER(display) >= 12) + return TGL_DP_TP_CTL(display, tgl_dp_tp_transcoder(crtc_state)); else return DP_TP_CTL(encoder->port); @@ -2267,10 +2255,10 @@ i915_reg_t dp_tp_ctl_reg(struct intel_encoder *encoder, static i915_reg_t dp_tp_status_reg(struct intel_encoder *encoder, const struct intel_crtc_state *crtc_state) { - struct drm_i915_private *dev_priv = to_i915(encoder->base.dev); + struct intel_display *display = to_intel_display(encoder); - if (DISPLAY_VER(dev_priv) >= 12) - return TGL_DP_TP_STATUS(dev_priv, + if (DISPLAY_VER(display) >= 12) + return TGL_DP_TP_STATUS(display, tgl_dp_tp_transcoder(crtc_state)); else return DP_TP_STATUS(encoder->port); @@ -2445,14 +2433,14 @@ static void intel_ddi_enable_fec(struct intel_encoder *encoder, static void intel_ddi_disable_fec(struct intel_encoder *encoder, const struct intel_crtc_state *crtc_state) { - struct drm_i915_private *dev_priv = to_i915(encoder->base.dev); + struct intel_display *display = to_intel_display(encoder); if (!crtc_state->fec_enable) return; - intel_de_rmw(dev_priv, dp_tp_ctl_reg(encoder, crtc_state), + intel_de_rmw(display, dp_tp_ctl_reg(encoder, crtc_state), DP_TP_CTL_FEC_ENABLE, 0); - intel_de_posting_read(dev_priv, dp_tp_ctl_reg(encoder, crtc_state)); + intel_de_posting_read(display, dp_tp_ctl_reg(encoder, crtc_state)); } static void intel_ddi_power_up_lanes(struct intel_encoder *encoder, @@ -2474,11 +2462,11 @@ static void intel_ddi_power_up_lanes(struct intel_encoder *encoder, * Splitter enable for eDP MSO is limited to certain pipes, on certain * platforms. */ -static u8 intel_ddi_splitter_pipe_mask(struct drm_i915_private *i915) +static u8 intel_ddi_splitter_pipe_mask(struct intel_display *display) { - if (DISPLAY_VER(i915) > 20) + if (DISPLAY_VER(display) > 20) return ~0; - else if (IS_ALDERLAKE_P(i915)) + else if (display->platform.alderlake_p) return BIT(PIPE_A) | BIT(PIPE_B); else return BIT(PIPE_A); @@ -2487,28 +2475,28 @@ static u8 intel_ddi_splitter_pipe_mask(struct drm_i915_private *i915) static void intel_ddi_mso_get_config(struct intel_encoder *encoder, struct intel_crtc_state *pipe_config) { + struct intel_display *display = to_intel_display(pipe_config); struct intel_crtc *crtc = to_intel_crtc(pipe_config->uapi.crtc); - struct drm_i915_private *i915 = to_i915(crtc->base.dev); enum pipe pipe = crtc->pipe; u32 dss1; - if (!HAS_MSO(i915)) + if (!HAS_MSO(display)) return; - dss1 = intel_de_read(i915, ICL_PIPE_DSS_CTL1(pipe)); + dss1 = intel_de_read(display, ICL_PIPE_DSS_CTL1(pipe)); pipe_config->splitter.enable = dss1 & SPLITTER_ENABLE; if (!pipe_config->splitter.enable) return; - if (drm_WARN_ON(&i915->drm, !(intel_ddi_splitter_pipe_mask(i915) & BIT(pipe)))) { + if (drm_WARN_ON(display->drm, !(intel_ddi_splitter_pipe_mask(display) & BIT(pipe)))) { pipe_config->splitter.enable = false; return; } switch (dss1 & SPLITTER_CONFIGURATION_MASK) { default: - drm_WARN(&i915->drm, true, + drm_WARN(display->drm, true, "Invalid splitter configuration, dss1=0x%08x\n", dss1); fallthrough; case SPLITTER_CONFIGURATION_2_SEGMENT: @@ -2524,12 +2512,12 @@ static void intel_ddi_mso_get_config(struct intel_encoder *encoder, static void intel_ddi_mso_configure(const struct intel_crtc_state *crtc_state) { + struct intel_display *display = to_intel_display(crtc_state); struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc); - struct drm_i915_private *i915 = to_i915(crtc->base.dev); enum pipe pipe = crtc->pipe; u32 dss1 = 0; - if (!HAS_MSO(i915)) + if (!HAS_MSO(display)) return; if (crtc_state->splitter.enable) { @@ -2541,7 +2529,7 @@ static void intel_ddi_mso_configure(const struct intel_crtc_state *crtc_state) dss1 |= SPLITTER_CONFIGURATION_4_SEGMENT; } - intel_de_rmw(i915, ICL_PIPE_DSS_CTL1(pipe), + intel_de_rmw(display, ICL_PIPE_DSS_CTL1(pipe), SPLITTER_ENABLE | SPLITTER_CONFIGURATION_MASK | OVERLAP_PIXELS_MASK, dss1); } @@ -2549,27 +2537,27 @@ static void intel_ddi_mso_configure(const struct intel_crtc_state *crtc_state) static void mtl_ddi_enable_d2d(struct intel_encoder *encoder) { - struct drm_i915_private *dev_priv = to_i915(encoder->base.dev); + struct intel_display *display = to_intel_display(encoder); enum port port = encoder->port; i915_reg_t reg; u32 set_bits, wait_bits; - if (DISPLAY_VER(dev_priv) < 14) + if (DISPLAY_VER(display) < 14) return; - if (DISPLAY_VER(dev_priv) >= 20) { + if (DISPLAY_VER(display) >= 20) { reg = DDI_BUF_CTL(port); set_bits = XE2LPD_DDI_BUF_D2D_LINK_ENABLE; wait_bits = XE2LPD_DDI_BUF_D2D_LINK_STATE; } else { - reg = XELPDP_PORT_BUF_CTL1(dev_priv, port); + reg = XELPDP_PORT_BUF_CTL1(display, port); set_bits = XELPDP_PORT_BUF_D2D_LINK_ENABLE; wait_bits = XELPDP_PORT_BUF_D2D_LINK_STATE; } - intel_de_rmw(dev_priv, reg, 0, set_bits); - if (wait_for_us(intel_de_read(dev_priv, reg) & wait_bits, 100)) { - drm_err(&dev_priv->drm, "Timeout waiting for D2D Link enable for DDI/PORT_BUF_CTL %c\n", + intel_de_rmw(display, reg, 0, set_bits); + if (wait_for_us(intel_de_read(display, reg) & wait_bits, 100)) { + drm_err(display->drm, "Timeout waiting for D2D Link enable for DDI/PORT_BUF_CTL %c\n", port_name(port)); } } @@ -2599,13 +2587,13 @@ static void mtl_port_buf_ctl_program(struct intel_encoder *encoder, static void mtl_port_buf_ctl_io_selection(struct intel_encoder *encoder) { - struct drm_i915_private *i915 = to_i915(encoder->base.dev); + struct intel_display *display = to_intel_display(encoder); struct intel_digital_port *dig_port = enc_to_dig_port(encoder); u32 val; val = intel_tc_port_in_tbt_alt_mode(dig_port) ? XELPDP_PORT_BUF_IO_SELECT_TBT : 0; - intel_de_rmw(i915, XELPDP_PORT_BUF_CTL1(i915, encoder->port), + intel_de_rmw(display, XELPDP_PORT_BUF_CTL1(display, encoder->port), XELPDP_PORT_BUF_IO_SELECT_TBT, val); } @@ -2734,7 +2722,6 @@ static void tgl_ddi_pre_enable_dp(struct intel_atomic_state *state, { struct intel_display *display = to_intel_display(encoder); struct intel_dp *intel_dp = enc_to_intel_dp(encoder); - struct drm_i915_private *dev_priv = to_i915(encoder->base.dev); struct intel_digital_port *dig_port = enc_to_dig_port(encoder); bool is_mst = intel_crtc_has_type(crtc_state, INTEL_OUTPUT_DP_MST); int ret; @@ -2778,7 +2765,7 @@ static void tgl_ddi_pre_enable_dp(struct intel_atomic_state *state, /* 5. If IO power is controlled through PWR_WELL_CTL, Enable IO Power */ if (!intel_tc_port_in_tbt_alt_mode(dig_port)) { - drm_WARN_ON(&dev_priv->drm, dig_port->ddi_io_wakeref); + drm_WARN_ON(display->drm, dig_port->ddi_io_wakeref); dig_port->ddi_io_wakeref = intel_display_power_get(display, dig_port->ddi_io_power_domain); } @@ -2882,16 +2869,15 @@ static void hsw_ddi_pre_enable_dp(struct intel_atomic_state *state, { struct intel_display *display = to_intel_display(encoder); struct intel_dp *intel_dp = enc_to_intel_dp(encoder); - struct drm_i915_private *dev_priv = to_i915(encoder->base.dev); enum port port = encoder->port; struct intel_digital_port *dig_port = enc_to_dig_port(encoder); bool is_mst = intel_crtc_has_type(crtc_state, INTEL_OUTPUT_DP_MST); - if (DISPLAY_VER(dev_priv) < 11) - drm_WARN_ON(&dev_priv->drm, + if (DISPLAY_VER(display) < 11) + drm_WARN_ON(display->drm, is_mst && (port == PORT_A || port == PORT_E)); else - drm_WARN_ON(&dev_priv->drm, is_mst && port == PORT_A); + drm_WARN_ON(display->drm, is_mst && port == PORT_A); intel_dp_set_link_params(intel_dp, crtc_state->port_clock, @@ -2908,14 +2894,14 @@ static void hsw_ddi_pre_enable_dp(struct intel_atomic_state *state, intel_ddi_enable_clock(encoder, crtc_state); if (!intel_tc_port_in_tbt_alt_mode(dig_port)) { - drm_WARN_ON(&dev_priv->drm, dig_port->ddi_io_wakeref); + drm_WARN_ON(display->drm, dig_port->ddi_io_wakeref); dig_port->ddi_io_wakeref = intel_display_power_get(display, dig_port->ddi_io_power_domain); } icl_program_mg_dp_mode(dig_port, crtc_state); - if (has_buf_trans_select(dev_priv)) + if (has_buf_trans_select(display)) hsw_prepare_dp_ddi_buffers(encoder, crtc_state); encoder->set_signal_levels(encoder, crtc_state); @@ -2931,7 +2917,7 @@ static void hsw_ddi_pre_enable_dp(struct intel_atomic_state *state, crtc_state); intel_dp_sink_set_fec_ready(intel_dp, crtc_state, true); intel_dp_start_link_train(state, intel_dp, crtc_state); - if ((port != PORT_A || DISPLAY_VER(dev_priv) >= 9) && + if ((port != PORT_A || DISPLAY_VER(display) >= 9) && !is_trans_port_sync_mode(crtc_state)) intel_dp_stop_link_train(intel_dp, crtc_state); @@ -2979,12 +2965,11 @@ static void intel_ddi_pre_enable_hdmi(struct intel_atomic_state *state, struct intel_display *display = to_intel_display(encoder); struct intel_digital_port *dig_port = enc_to_dig_port(encoder); struct intel_hdmi *intel_hdmi = &dig_port->hdmi; - struct drm_i915_private *dev_priv = to_i915(encoder->base.dev); intel_dp_dual_mode_set_tmds_output(intel_hdmi, true); intel_ddi_enable_clock(encoder, crtc_state); - drm_WARN_ON(&dev_priv->drm, dig_port->ddi_io_wakeref); + drm_WARN_ON(display->drm, dig_port->ddi_io_wakeref); dig_port->ddi_io_wakeref = intel_display_power_get(display, dig_port->ddi_io_power_domain); @@ -3022,10 +3007,9 @@ static void intel_ddi_pre_enable(struct intel_atomic_state *state, { struct intel_display *display = to_intel_display(state); struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc); - struct drm_i915_private *dev_priv = to_i915(crtc->base.dev); enum pipe pipe = crtc->pipe; - drm_WARN_ON(&dev_priv->drm, crtc_state->has_pch_encoder); + drm_WARN_ON(display->drm, crtc_state->has_pch_encoder); intel_set_cpu_fifo_underrun_reporting(display, pipe, true); @@ -3050,27 +3034,27 @@ static void intel_ddi_pre_enable(struct intel_atomic_state *state, static void mtl_ddi_disable_d2d(struct intel_encoder *encoder) { - struct drm_i915_private *dev_priv = to_i915(encoder->base.dev); + struct intel_display *display = to_intel_display(encoder); enum port port = encoder->port; i915_reg_t reg; u32 clr_bits, wait_bits; - if (DISPLAY_VER(dev_priv) < 14) + if (DISPLAY_VER(display) < 14) return; - if (DISPLAY_VER(dev_priv) >= 20) { + if (DISPLAY_VER(display) >= 20) { reg = DDI_BUF_CTL(port); clr_bits = XE2LPD_DDI_BUF_D2D_LINK_ENABLE; wait_bits = XE2LPD_DDI_BUF_D2D_LINK_STATE; } else { - reg = XELPDP_PORT_BUF_CTL1(dev_priv, port); + reg = XELPDP_PORT_BUF_CTL1(display, port); clr_bits = XELPDP_PORT_BUF_D2D_LINK_ENABLE; wait_bits = XELPDP_PORT_BUF_D2D_LINK_STATE; } - intel_de_rmw(dev_priv, reg, clr_bits, 0); - if (wait_for_us(!(intel_de_read(dev_priv, reg) & wait_bits), 100)) - drm_err(&dev_priv->drm, "Timeout waiting for D2D Link disable for DDI/PORT_BUF_CTL %c\n", + intel_de_rmw(display, reg, clr_bits, 0); + if (wait_for_us(!(intel_de_read(display, reg) & wait_bits), 100)) + drm_err(display->drm, "Timeout waiting for D2D Link disable for DDI/PORT_BUF_CTL %c\n", port_name(port)); } @@ -3089,10 +3073,9 @@ static void intel_ddi_buf_disable(struct intel_encoder *encoder, const struct intel_crtc_state *crtc_state) { struct intel_display *display = to_intel_display(encoder); - struct drm_i915_private *dev_priv = to_i915(encoder->base.dev); enum port port = encoder->port; - intel_de_rmw(dev_priv, DDI_BUF_CTL(port), DDI_BUF_CTL_ENABLE, 0); + intel_de_rmw(display, DDI_BUF_CTL(port), DDI_BUF_CTL_ENABLE, 0); if (DISPLAY_VER(display) >= 14) intel_wait_ddi_buf_idle(display, port); @@ -3100,7 +3083,7 @@ static void intel_ddi_buf_disable(struct intel_encoder *encoder, mtl_ddi_disable_d2d(encoder); if (intel_crtc_has_dp_encoder(crtc_state)) { - intel_de_rmw(dev_priv, dp_tp_ctl_reg(encoder, crtc_state), + intel_de_rmw(display, dp_tp_ctl_reg(encoder, crtc_state), DP_TP_CTL_ENABLE, 0); } @@ -3118,7 +3101,6 @@ static void intel_ddi_post_disable_dp(struct intel_atomic_state *state, const struct drm_connector_state *old_conn_state) { struct intel_display *display = to_intel_display(encoder); - struct drm_i915_private *dev_priv = to_i915(encoder->base.dev); struct intel_digital_port *dig_port = enc_to_dig_port(encoder); struct intel_dp *intel_dp = &dig_port->dp; intel_wakeref_t wakeref; @@ -3135,12 +3117,12 @@ static void intel_ddi_post_disable_dp(struct intel_atomic_state *state, */ intel_dp_set_power(intel_dp, DP_SET_POWER_D3); - if (DISPLAY_VER(dev_priv) >= 12) { + if (DISPLAY_VER(display) >= 12) { if (is_mst || intel_dp_is_uhbr(old_crtc_state)) { enum transcoder cpu_transcoder = old_crtc_state->cpu_transcoder; - intel_de_rmw(dev_priv, - TRANS_DDI_FUNC_CTL(dev_priv, cpu_transcoder), + intel_de_rmw(display, + TRANS_DDI_FUNC_CTL(display, cpu_transcoder), TGL_TRANS_DDI_PORT_MASK | TRANS_DDI_MODE_SELECT_MASK, 0); } @@ -3160,7 +3142,7 @@ static void intel_ddi_post_disable_dp(struct intel_atomic_state *state, * Configure Transcoder Clock select to direct no clock to the * transcoder" */ - if (DISPLAY_VER(dev_priv) >= 12) + if (DISPLAY_VER(display) >= 12) intel_ddi_disable_transcoder_clock(old_crtc_state); intel_pps_vdd_on(intel_dp); @@ -3176,8 +3158,8 @@ static void intel_ddi_post_disable_dp(struct intel_atomic_state *state, intel_ddi_disable_clock(encoder); /* De-select Thunderbolt */ - if (DISPLAY_VER(dev_priv) >= 14) - intel_de_rmw(dev_priv, XELPDP_PORT_BUF_CTL1(dev_priv, encoder->port), + if (DISPLAY_VER(display) >= 14) + intel_de_rmw(display, XELPDP_PORT_BUF_CTL1(display, encoder->port), XELPDP_PORT_BUF_IO_SELECT_TBT, 0); } @@ -3187,7 +3169,6 @@ static void intel_ddi_post_disable_hdmi(struct intel_atomic_state *state, const struct drm_connector_state *old_conn_state) { struct intel_display *display = to_intel_display(encoder); - struct drm_i915_private *dev_priv = to_i915(encoder->base.dev); struct intel_digital_port *dig_port = enc_to_dig_port(encoder); struct intel_hdmi *intel_hdmi = &dig_port->hdmi; intel_wakeref_t wakeref; @@ -3195,12 +3176,12 @@ static void intel_ddi_post_disable_hdmi(struct intel_atomic_state *state, dig_port->set_infoframes(encoder, false, old_crtc_state, old_conn_state); - if (DISPLAY_VER(dev_priv) < 12) + if (DISPLAY_VER(display) < 12) intel_ddi_disable_transcoder_clock(old_crtc_state); intel_ddi_buf_disable(encoder, old_crtc_state); - if (DISPLAY_VER(dev_priv) >= 12) + if (DISPLAY_VER(display) >= 12) intel_ddi_disable_transcoder_clock(old_crtc_state); wakeref = fetch_and_zero(&dig_port->ddi_io_wakeref); @@ -3220,7 +3201,6 @@ static void intel_ddi_post_disable_hdmi_or_sst(struct intel_atomic_state *state, const struct drm_connector_state *old_conn_state) { struct intel_display *display = to_intel_display(encoder); - struct drm_i915_private *dev_priv = to_i915(encoder->base.dev); struct intel_dp *intel_dp = enc_to_intel_dp(encoder); struct intel_crtc *pipe_crtc; bool is_hdmi = intel_crtc_has_type(old_crtc_state, INTEL_OUTPUT_HDMI); @@ -3249,6 +3229,8 @@ static void intel_ddi_post_disable_hdmi_or_sst(struct intel_atomic_state *state, drm_dp_dpcd_poll_act_handled(&intel_dp->aux, 0); } + intel_vrr_transcoder_disable(old_crtc_state); + intel_ddi_disable_transcoder_func(old_crtc_state); for_each_pipe_crtc_modeset_disable(display, pipe_crtc, old_crtc_state, i) { @@ -3257,7 +3239,7 @@ static void intel_ddi_post_disable_hdmi_or_sst(struct intel_atomic_state *state, intel_dsc_disable(old_pipe_crtc_state); - if (DISPLAY_VER(dev_priv) >= 9) + if (DISPLAY_VER(display) >= 9) skl_scaler_disable(old_pipe_crtc_state); else ilk_pfit_disable(old_pipe_crtc_state); @@ -3359,12 +3341,12 @@ static void intel_ddi_enable_dp(struct intel_atomic_state *state, const struct intel_crtc_state *crtc_state, const struct drm_connector_state *conn_state) { - struct drm_i915_private *dev_priv = to_i915(encoder->base.dev); + struct intel_display *display = to_intel_display(encoder); struct intel_dp *intel_dp = enc_to_intel_dp(encoder); struct intel_digital_port *dig_port = enc_to_dig_port(encoder); enum port port = encoder->port; - if (port == PORT_A && DISPLAY_VER(dev_priv) < 9) + if (port == PORT_A && DISPLAY_VER(display) < 9) intel_dp_stop_link_train(intel_dp, crtc_state); drm_connector_update_privacy_screen(conn_state); @@ -3401,7 +3383,6 @@ static void intel_ddi_enable_hdmi(struct intel_atomic_state *state, const struct drm_connector_state *conn_state) { struct intel_display *display = to_intel_display(encoder); - struct drm_i915_private *dev_priv = to_i915(encoder->base.dev); struct intel_digital_port *dig_port = enc_to_dig_port(encoder); struct drm_connector *connector = conn_state->connector; enum port port = encoder->port; @@ -3410,11 +3391,11 @@ static void intel_ddi_enable_hdmi(struct intel_atomic_state *state, if (!intel_hdmi_handle_sink_scrambling(encoder, connector, crtc_state->hdmi_high_tmds_clock_ratio, crtc_state->hdmi_scrambling)) - drm_dbg_kms(&dev_priv->drm, + drm_dbg_kms(display->drm, "[CONNECTOR:%d:%s] Failed to configure sink scrambling/TMDS bit clock ratio\n", connector->base.id, connector->name); - if (has_buf_trans_select(dev_priv)) + if (has_buf_trans_select(display)) hsw_prepare_hdmi_ddi_buffers(encoder, crtc_state); /* e. Enable D2D Link for C10/C20 Phy */ @@ -3423,7 +3404,7 @@ static void intel_ddi_enable_hdmi(struct intel_atomic_state *state, encoder->set_signal_levels(encoder, crtc_state); /* Display WA #1143: skl,kbl,cfl */ - if (DISPLAY_VER(dev_priv) == 9 && !IS_BROXTON(dev_priv)) { + if (DISPLAY_VER(display) == 9 && !display->platform.broxton) { /* * For some reason these chicken bits have been * stuffed into a transcoder register, event though @@ -3433,7 +3414,7 @@ static void intel_ddi_enable_hdmi(struct intel_atomic_state *state, i915_reg_t reg = gen9_chicken_trans_reg_by_port(display, port); u32 val; - val = intel_de_read(dev_priv, reg); + val = intel_de_read(display, reg); if (port == PORT_E) val |= DDIE_TRAINING_OVERRIDE_ENABLE | @@ -3442,8 +3423,8 @@ static void intel_ddi_enable_hdmi(struct intel_atomic_state *state, val |= DDI_TRAINING_OVERRIDE_ENABLE | DDI_TRAINING_OVERRIDE_VALUE; - intel_de_write(dev_priv, reg, val); - intel_de_posting_read(dev_priv, reg); + intel_de_write(display, reg, val); + intel_de_posting_read(display, reg); udelay(1); @@ -3454,7 +3435,7 @@ static void intel_ddi_enable_hdmi(struct intel_atomic_state *state, val &= ~(DDI_TRAINING_OVERRIDE_ENABLE | DDI_TRAINING_OVERRIDE_VALUE); - intel_de_write(dev_priv, reg, val); + intel_de_write(display, reg, val); } intel_ddi_power_up_lanes(encoder, crtc_state); @@ -3475,7 +3456,7 @@ static void intel_ddi_enable_hdmi(struct intel_atomic_state *state, if (dig_port->ddi_a_4_lanes) buf_ctl |= DDI_A_4_LANES; - if (DISPLAY_VER(dev_priv) >= 14) { + if (DISPLAY_VER(display) >= 14) { u32 port_buf = 0; port_buf |= XELPDP_PORT_WIDTH(crtc_state->lane_count); @@ -3483,15 +3464,15 @@ static void intel_ddi_enable_hdmi(struct intel_atomic_state *state, if (dig_port->lane_reversal) port_buf |= XELPDP_PORT_REVERSAL; - intel_de_rmw(dev_priv, XELPDP_PORT_BUF_CTL1(dev_priv, port), + intel_de_rmw(display, XELPDP_PORT_BUF_CTL1(display, port), XELPDP_PORT_WIDTH_MASK | XELPDP_PORT_REVERSAL, port_buf); buf_ctl |= DDI_PORT_WIDTH(crtc_state->lane_count); - if (DISPLAY_VER(dev_priv) >= 20) + if (DISPLAY_VER(display) >= 20) buf_ctl |= XE2LPD_DDI_BUF_D2D_LINK_ENABLE; - } else if (IS_ALDERLAKE_P(dev_priv) && intel_encoder_is_tc(encoder)) { - drm_WARN_ON(&dev_priv->drm, !intel_tc_port_in_legacy_mode(dig_port)); + } else if (display->platform.alderlake_p && intel_encoder_is_tc(encoder)) { + drm_WARN_ON(display->drm, !intel_tc_port_in_legacy_mode(dig_port)); buf_ctl |= DDI_BUF_CTL_TC_PHY_OWNERSHIP; } @@ -3522,6 +3503,8 @@ static void intel_ddi_enable(struct intel_atomic_state *state, intel_ddi_enable_transcoder_func(encoder, crtc_state); + intel_vrr_transcoder_enable(crtc_state); + /* Enable/Disable DP2.0 SDP split config before transcoder */ intel_audio_sdp_split_update(crtc_state); @@ -3567,7 +3550,7 @@ static void intel_ddi_disable_dp(struct intel_atomic_state *state, struct intel_connector *connector = to_intel_connector(old_conn_state->connector); - intel_dp->link_trained = false; + intel_dp->link.active = false; intel_psr_disable(intel_dp, old_crtc_state); intel_edp_backlight_off(old_conn_state); @@ -3584,12 +3567,12 @@ static void intel_ddi_disable_hdmi(struct intel_atomic_state *state, const struct intel_crtc_state *old_crtc_state, const struct drm_connector_state *old_conn_state) { - struct drm_i915_private *i915 = to_i915(encoder->base.dev); + struct intel_display *display = to_intel_display(encoder); struct drm_connector *connector = old_conn_state->connector; if (!intel_hdmi_handle_sink_scrambling(encoder, connector, false, false)) - drm_dbg_kms(&i915->drm, + drm_dbg_kms(display->drm, "[CONNECTOR:%d:%s] Failed to reset sink scrambling/TMDS bit clock ratio\n", connector->base.id, connector->name); } @@ -3653,16 +3636,16 @@ void intel_ddi_update_active_dpll(struct intel_atomic_state *state, struct intel_encoder *encoder, struct intel_crtc *crtc) { - struct drm_i915_private *i915 = to_i915(encoder->base.dev); + struct intel_display *display = to_intel_display(encoder); const struct intel_crtc_state *crtc_state = intel_atomic_get_new_crtc_state(state, crtc); struct intel_crtc *pipe_crtc; /* FIXME: Add MTL pll_mgr */ - if (DISPLAY_VER(i915) >= 14 || !intel_encoder_is_tc(encoder)) + if (DISPLAY_VER(display) >= 14 || !intel_encoder_is_tc(encoder)) return; - for_each_intel_crtc_in_pipe_mask(&i915->drm, pipe_crtc, + for_each_intel_crtc_in_pipe_mask(display->drm, pipe_crtc, intel_crtc_joined_pipe_mask(crtc_state)) intel_update_active_dpll(state, pipe_crtc, encoder); } @@ -3678,7 +3661,7 @@ intel_ddi_pre_pll_enable(struct intel_atomic_state *state, const struct intel_crtc_state *crtc_state, const struct drm_connector_state *conn_state) { - struct drm_i915_private *dev_priv = to_i915(encoder->base.dev); + struct intel_display *display = to_intel_display(encoder); struct intel_digital_port *dig_port = enc_to_dig_port(encoder); bool is_tc_port = intel_encoder_is_tc(encoder); @@ -3697,7 +3680,7 @@ intel_ddi_pre_pll_enable(struct intel_atomic_state *state, * Type-C ports. Skip this step for TBT. */ intel_tc_port_set_fia_lane_count(dig_port, crtc_state->lane_count); - else if (IS_GEMINILAKE(dev_priv) || IS_BROXTON(dev_priv)) + else if (display->platform.geminilake || display->platform.broxton) bxt_dpio_phy_set_lane_optim_mask(encoder, crtc_state->lane_lat_optim_mask); } @@ -3765,10 +3748,9 @@ static void intel_ddi_prepare_link_retrain(struct intel_dp *intel_dp, struct intel_display *display = to_intel_display(intel_dp); struct intel_digital_port *dig_port = dp_to_dig_port(intel_dp); struct intel_encoder *encoder = &dig_port->base; - struct drm_i915_private *dev_priv = to_i915(encoder->base.dev); u32 dp_tp_ctl; - dp_tp_ctl = intel_de_read(dev_priv, dp_tp_ctl_reg(encoder, crtc_state)); + dp_tp_ctl = intel_de_read(display, dp_tp_ctl_reg(encoder, crtc_state)); drm_WARN_ON(display->drm, dp_tp_ctl & DP_TP_CTL_ENABLE); @@ -3781,10 +3763,10 @@ static void intel_ddi_prepare_link_retrain(struct intel_dp *intel_dp, if (crtc_state->enhanced_framing) dp_tp_ctl |= DP_TP_CTL_ENHANCED_FRAME_ENABLE; } - intel_de_write(dev_priv, dp_tp_ctl_reg(encoder, crtc_state), dp_tp_ctl); - intel_de_posting_read(dev_priv, dp_tp_ctl_reg(encoder, crtc_state)); + intel_de_write(display, dp_tp_ctl_reg(encoder, crtc_state), dp_tp_ctl); + intel_de_posting_read(display, dp_tp_ctl_reg(encoder, crtc_state)); - if (IS_ALDERLAKE_P(dev_priv) && + if (display->platform.alderlake_p && (intel_tc_port_in_dp_alt_mode(dig_port) || intel_tc_port_in_legacy_mode(dig_port))) adlp_tbt_to_dp_alt_switch_wa(encoder); @@ -3796,11 +3778,11 @@ static void intel_ddi_set_link_train(struct intel_dp *intel_dp, const struct intel_crtc_state *crtc_state, u8 dp_train_pat) { + struct intel_display *display = to_intel_display(intel_dp); struct intel_encoder *encoder = &dp_to_dig_port(intel_dp)->base; - struct drm_i915_private *dev_priv = to_i915(encoder->base.dev); u32 temp; - temp = intel_de_read(dev_priv, dp_tp_ctl_reg(encoder, crtc_state)); + temp = intel_de_read(display, dp_tp_ctl_reg(encoder, crtc_state)); temp &= ~DP_TP_CTL_LINK_TRAIN_MASK; switch (intel_dp_training_pattern_symbol(dp_train_pat)) { @@ -3821,17 +3803,17 @@ static void intel_ddi_set_link_train(struct intel_dp *intel_dp, break; } - intel_de_write(dev_priv, dp_tp_ctl_reg(encoder, crtc_state), temp); + intel_de_write(display, dp_tp_ctl_reg(encoder, crtc_state), temp); } static void intel_ddi_set_idle_link_train(struct intel_dp *intel_dp, const struct intel_crtc_state *crtc_state) { + struct intel_display *display = to_intel_display(intel_dp); struct intel_encoder *encoder = &dp_to_dig_port(intel_dp)->base; - struct drm_i915_private *dev_priv = to_i915(encoder->base.dev); enum port port = encoder->port; - intel_de_rmw(dev_priv, dp_tp_ctl_reg(encoder, crtc_state), + intel_de_rmw(display, dp_tp_ctl_reg(encoder, crtc_state), DP_TP_CTL_LINK_TRAIN_MASK, DP_TP_CTL_LINK_TRAIN_IDLE); /* @@ -3841,28 +3823,26 @@ static void intel_ddi_set_idle_link_train(struct intel_dp *intel_dp, * In this case there is requirement to wait for a minimum number of * idle patterns to be sent. */ - if (port == PORT_A && DISPLAY_VER(dev_priv) < 12) + if (port == PORT_A && DISPLAY_VER(display) < 12) return; - if (intel_de_wait_for_set(dev_priv, + if (intel_de_wait_for_set(display, dp_tp_status_reg(encoder, crtc_state), DP_TP_STATUS_IDLE_DONE, 2)) - drm_err(&dev_priv->drm, + drm_err(display->drm, "Timed out waiting for DP idle patterns\n"); } -static bool intel_ddi_is_audio_enabled(struct drm_i915_private *dev_priv, +static bool intel_ddi_is_audio_enabled(struct intel_display *display, enum transcoder cpu_transcoder) { - struct intel_display *display = &dev_priv->display; - if (cpu_transcoder == TRANSCODER_EDP) return false; if (!intel_display_power_is_enabled(display, POWER_DOMAIN_AUDIO_MMIO)) return false; - return intel_de_read(dev_priv, HSW_AUD_PIN_ELD_CP_VLD) & + return intel_de_read(display, HSW_AUD_PIN_ELD_CP_VLD) & AUDIO_OUTPUT_ENABLE(cpu_transcoder); } @@ -3892,34 +3872,34 @@ static int icl_ddi_min_voltage_level(const struct intel_crtc_state *crtc_state) void intel_ddi_compute_min_voltage_level(struct intel_crtc_state *crtc_state) { - struct drm_i915_private *dev_priv = to_i915(crtc_state->uapi.crtc->dev); + struct intel_display *display = to_intel_display(crtc_state); - if (DISPLAY_VER(dev_priv) >= 14) + if (DISPLAY_VER(display) >= 14) crtc_state->min_voltage_level = icl_ddi_min_voltage_level(crtc_state); - else if (DISPLAY_VER(dev_priv) >= 12) + else if (DISPLAY_VER(display) >= 12) crtc_state->min_voltage_level = tgl_ddi_min_voltage_level(crtc_state); - else if (IS_JASPERLAKE(dev_priv) || IS_ELKHARTLAKE(dev_priv)) + else if (display->platform.jasperlake || display->platform.elkhartlake) crtc_state->min_voltage_level = jsl_ddi_min_voltage_level(crtc_state); - else if (DISPLAY_VER(dev_priv) >= 11) + else if (DISPLAY_VER(display) >= 11) crtc_state->min_voltage_level = icl_ddi_min_voltage_level(crtc_state); } -static enum transcoder bdw_transcoder_master_readout(struct drm_i915_private *dev_priv, +static enum transcoder bdw_transcoder_master_readout(struct intel_display *display, enum transcoder cpu_transcoder) { u32 master_select; - if (DISPLAY_VER(dev_priv) >= 11) { - u32 ctl2 = intel_de_read(dev_priv, - TRANS_DDI_FUNC_CTL2(dev_priv, cpu_transcoder)); + if (DISPLAY_VER(display) >= 11) { + u32 ctl2 = intel_de_read(display, + TRANS_DDI_FUNC_CTL2(display, cpu_transcoder)); if ((ctl2 & PORT_SYNC_MODE_ENABLE) == 0) return INVALID_TRANSCODER; master_select = REG_FIELD_GET(PORT_SYNC_MODE_MASTER_SELECT_MASK, ctl2); } else { - u32 ctl = intel_de_read(dev_priv, - TRANS_DDI_FUNC_CTL(dev_priv, cpu_transcoder)); + u32 ctl = intel_de_read(display, + TRANS_DDI_FUNC_CTL(display, cpu_transcoder)); if ((ctl & TRANS_DDI_PORT_SYNC_ENABLE) == 0) return INVALID_TRANSCODER; @@ -3936,15 +3916,14 @@ static enum transcoder bdw_transcoder_master_readout(struct drm_i915_private *de static void bdw_get_trans_port_sync_config(struct intel_crtc_state *crtc_state) { struct intel_display *display = to_intel_display(crtc_state); - struct drm_i915_private *dev_priv = to_i915(crtc_state->uapi.crtc->dev); u32 transcoders = BIT(TRANSCODER_A) | BIT(TRANSCODER_B) | BIT(TRANSCODER_C) | BIT(TRANSCODER_D); enum transcoder cpu_transcoder; crtc_state->master_transcoder = - bdw_transcoder_master_readout(dev_priv, crtc_state->cpu_transcoder); + bdw_transcoder_master_readout(display, crtc_state->cpu_transcoder); - for_each_cpu_transcoder_masked(dev_priv, cpu_transcoder, transcoders) { + for_each_cpu_transcoder_masked(display, cpu_transcoder, transcoders) { enum intel_display_power_domain power_domain; intel_wakeref_t trans_wakeref; @@ -3955,14 +3934,14 @@ static void bdw_get_trans_port_sync_config(struct intel_crtc_state *crtc_state) if (!trans_wakeref) continue; - if (bdw_transcoder_master_readout(dev_priv, cpu_transcoder) == + if (bdw_transcoder_master_readout(display, cpu_transcoder) == crtc_state->cpu_transcoder) crtc_state->sync_mode_slaves_mask |= BIT(cpu_transcoder); intel_display_power_put(display, power_domain, trans_wakeref); } - drm_WARN_ON(&dev_priv->drm, + drm_WARN_ON(display->drm, crtc_state->master_transcoder != INVALID_TRANSCODER && crtc_state->sync_mode_slaves_mask); } @@ -4085,11 +4064,10 @@ static void intel_ddi_read_func_ctl(struct intel_encoder *encoder, struct intel_crtc_state *pipe_config) { struct intel_display *display = to_intel_display(encoder); - struct drm_i915_private *dev_priv = to_i915(encoder->base.dev); enum transcoder cpu_transcoder = pipe_config->cpu_transcoder; u32 ddi_func_ctl, ddi_mode, flags = 0; - ddi_func_ctl = intel_de_read(dev_priv, TRANS_DDI_FUNC_CTL(dev_priv, cpu_transcoder)); + ddi_func_ctl = intel_de_read(display, TRANS_DDI_FUNC_CTL(display, cpu_transcoder)); if (ddi_func_ctl & TRANS_DDI_PHSYNC) flags |= DRM_MODE_FLAG_PHSYNC; else @@ -4131,13 +4109,13 @@ static void intel_ddi_read_func_ctl(struct intel_encoder *encoder, } else if (ddi_mode == TRANS_DDI_MODE_SELECT_DP_MST) { intel_ddi_read_func_ctl_dp_mst(encoder, pipe_config, ddi_func_ctl); } else if (ddi_mode == TRANS_DDI_MODE_SELECT_FDI_OR_128B132B && HAS_DP20(display)) { - struct intel_digital_port *dig_port = enc_to_dig_port(encoder); + struct intel_dp *intel_dp = enc_to_intel_dp(encoder); /* * If this is true, we know we're being called from mst stream * encoder's ->get_config(). */ - if (intel_dp_mst_encoder_active_links(dig_port)) + if (intel_dp_mst_active_streams(intel_dp)) intel_ddi_read_func_ctl_dp_mst(encoder, pipe_config, ddi_func_ctl); else intel_ddi_read_func_ctl_dp_sst(encoder, pipe_config, ddi_func_ctl); @@ -4152,11 +4130,11 @@ static void intel_ddi_read_func_ctl(struct intel_encoder *encoder, static void intel_ddi_get_config(struct intel_encoder *encoder, struct intel_crtc_state *pipe_config) { - struct drm_i915_private *dev_priv = to_i915(encoder->base.dev); + struct intel_display *display = to_intel_display(encoder); enum transcoder cpu_transcoder = pipe_config->cpu_transcoder; /* XXX: DSI transcoder paranoia */ - if (drm_WARN_ON(&dev_priv->drm, transcoder_is_dsi(cpu_transcoder))) + if (drm_WARN_ON(display->drm, transcoder_is_dsi(cpu_transcoder))) return; intel_ddi_read_func_ctl(encoder, pipe_config); @@ -4164,14 +4142,14 @@ static void intel_ddi_get_config(struct intel_encoder *encoder, intel_ddi_mso_get_config(encoder, pipe_config); pipe_config->has_audio = - intel_ddi_is_audio_enabled(dev_priv, cpu_transcoder); + intel_ddi_is_audio_enabled(display, cpu_transcoder); if (encoder->type == INTEL_OUTPUT_EDP) intel_edp_fixup_vbt_bpp(encoder, pipe_config->pipe_bpp); ddi_dotclock_get(pipe_config); - if (IS_GEMINILAKE(dev_priv) || IS_BROXTON(dev_priv)) + if (display->platform.geminilake || display->platform.broxton) pipe_config->lane_lat_optim_mask = bxt_dpio_phy_get_lane_lat_optim_mask(encoder); @@ -4192,7 +4170,7 @@ static void intel_ddi_get_config(struct intel_encoder *encoder, HDMI_INFOFRAME_TYPE_DRM, &pipe_config->infoframes.drm); - if (DISPLAY_VER(dev_priv) >= 8) + if (DISPLAY_VER(display) >= 8) bdw_get_trans_port_sync_config(pipe_config); intel_psr_get_config(encoder, pipe_config); @@ -4285,10 +4263,10 @@ static enum icl_port_dpll_id icl_ddi_tc_port_pll_type(struct intel_encoder *encoder, const struct intel_crtc_state *crtc_state) { - struct drm_i915_private *i915 = to_i915(encoder->base.dev); + struct intel_display *display = to_intel_display(encoder); const struct intel_shared_dpll *pll = crtc_state->shared_dpll; - if (drm_WARN_ON(&i915->drm, !pll)) + if (drm_WARN_ON(display->drm, !pll)) return ICL_PORT_DPLL_DEFAULT; if (icl_ddi_tc_pll_is_tbt(pll)) @@ -4382,11 +4360,11 @@ static void intel_ddi_sync_state(struct intel_encoder *encoder, static bool intel_ddi_initial_fastset_check(struct intel_encoder *encoder, struct intel_crtc_state *crtc_state) { - struct drm_i915_private *i915 = to_i915(encoder->base.dev); + struct intel_display *display = to_intel_display(encoder); bool fastset = true; if (intel_encoder_is_tc(encoder)) { - drm_dbg_kms(&i915->drm, "[ENCODER:%d:%s] Forcing full modeset to compute TC port DPLLs\n", + drm_dbg_kms(display->drm, "[ENCODER:%d:%s] Forcing full modeset to compute TC port DPLLs\n", encoder->base.base.id, encoder->base.name); crtc_state->uapi.mode_changed = true; fastset = false; @@ -4421,12 +4399,12 @@ static int intel_ddi_compute_config(struct intel_encoder *encoder, struct intel_crtc_state *pipe_config, struct drm_connector_state *conn_state) { + struct intel_display *display = to_intel_display(encoder); struct intel_crtc *crtc = to_intel_crtc(pipe_config->uapi.crtc); - struct drm_i915_private *dev_priv = to_i915(encoder->base.dev); enum port port = encoder->port; int ret; - if (HAS_TRANSCODER(dev_priv, TRANSCODER_EDP) && port == PORT_A) + if (HAS_TRANSCODER(display, TRANSCODER_EDP) && port == PORT_A) pipe_config->cpu_transcoder = TRANSCODER_EDP; if (intel_crtc_has_type(pipe_config, INTEL_OUTPUT_HDMI)) { @@ -4441,13 +4419,13 @@ static int intel_ddi_compute_config(struct intel_encoder *encoder, if (ret) return ret; - if (IS_HASWELL(dev_priv) && crtc->pipe == PIPE_A && + if (display->platform.haswell && crtc->pipe == PIPE_A && pipe_config->cpu_transcoder == TRANSCODER_EDP) pipe_config->pch_pfit.force_thru = pipe_config->pch_pfit.enabled || pipe_config->crc_enabled; - if (IS_GEMINILAKE(dev_priv) || IS_BROXTON(dev_priv)) + if (display->platform.geminilake || display->platform.broxton) pipe_config->lane_lat_optim_mask = bxt_dpio_phy_calc_lane_lat_optim_mask(pipe_config->lane_count); @@ -4498,9 +4476,9 @@ static u8 intel_ddi_port_sync_transcoders(const struct intel_crtc_state *ref_crtc_state, int tile_group_id) { + struct intel_display *display = to_intel_display(ref_crtc_state); struct drm_connector *connector; const struct drm_connector_state *conn_state; - struct drm_i915_private *dev_priv = to_i915(ref_crtc_state->uapi.crtc->dev); struct intel_atomic_state *state = to_intel_atomic_state(ref_crtc_state->uapi.state); u8 transcoders = 0; @@ -4510,7 +4488,7 @@ intel_ddi_port_sync_transcoders(const struct intel_crtc_state *ref_crtc_state, * We don't enable port sync on BDW due to missing w/as and * due to not having adjusted the modeset sequence appropriately. */ - if (DISPLAY_VER(dev_priv) < 9) + if (DISPLAY_VER(display) < 9) return 0; if (!intel_crtc_has_type(ref_crtc_state, INTEL_OUTPUT_DP)) @@ -4542,11 +4520,11 @@ static int intel_ddi_compute_config_late(struct intel_encoder *encoder, struct intel_crtc_state *crtc_state, struct drm_connector_state *conn_state) { - struct drm_i915_private *i915 = to_i915(encoder->base.dev); + struct intel_display *display = to_intel_display(encoder); struct drm_connector *connector = conn_state->connector; u8 port_sync_transcoders = 0; - drm_dbg_kms(&i915->drm, "[ENCODER:%d:%s] [CRTC:%d:%s]\n", + drm_dbg_kms(display->drm, "[ENCODER:%d:%s] [CRTC:%d:%s]\n", encoder->base.base.id, encoder->base.name, crtc_state->uapi.crtc->base.id, crtc_state->uapi.crtc->name); @@ -4618,7 +4596,7 @@ static const struct drm_encoder_funcs intel_ddi_funcs = { static int intel_ddi_init_dp_connector(struct intel_digital_port *dig_port) { - struct drm_i915_private *i915 = to_i915(dig_port->base.base.dev); + struct intel_display *display = to_intel_display(dig_port); struct intel_connector *connector; enum port port = dig_port->base.port; @@ -4627,7 +4605,7 @@ static int intel_ddi_init_dp_connector(struct intel_digital_port *dig_port) return -ENOMEM; dig_port->dp.output_reg = DDI_BUF_CTL(port); - if (DISPLAY_VER(i915) >= 14) + if (DISPLAY_VER(display) >= 14) dig_port->dp.prepare_link_retrain = mtl_ddi_prepare_link_retrain; else dig_port->dp.prepare_link_retrain = intel_ddi_prepare_link_retrain; @@ -4643,15 +4621,14 @@ static int intel_ddi_init_dp_connector(struct intel_digital_port *dig_port) } if (dig_port->base.type == INTEL_OUTPUT_EDP) { - struct drm_device *dev = dig_port->base.base.dev; struct drm_privacy_screen *privacy_screen; - privacy_screen = drm_privacy_screen_get(dev->dev, NULL); + privacy_screen = drm_privacy_screen_get(display->drm->dev, NULL); if (!IS_ERR(privacy_screen)) { drm_connector_attach_privacy_screen_provider(&connector->base, privacy_screen); } else if (PTR_ERR(privacy_screen) != -ENODEV) { - drm_warn(dev, "Error getting privacy-screen\n"); + drm_warn(display->drm, "Error getting privacy-screen\n"); } } @@ -4662,7 +4639,6 @@ static int intel_hdmi_reset_link(struct intel_encoder *encoder, struct drm_modeset_acquire_ctx *ctx) { struct intel_display *display = to_intel_display(encoder); - struct drm_i915_private *dev_priv = to_i915(encoder->base.dev); struct intel_hdmi *hdmi = enc_to_intel_hdmi(encoder); struct intel_connector *connector = hdmi->attached_connector; struct i2c_adapter *ddc = connector->base.ddc; @@ -4675,7 +4651,7 @@ static int intel_hdmi_reset_link(struct intel_encoder *encoder, if (connector->base.status != connector_status_connected) return 0; - ret = drm_modeset_lock(&dev_priv->drm.mode_config.connection_mutex, + ret = drm_modeset_lock(&display->drm->mode_config.connection_mutex, ctx); if (ret) return ret; @@ -4692,7 +4668,7 @@ static int intel_hdmi_reset_link(struct intel_encoder *encoder, crtc_state = to_intel_crtc_state(crtc->base.state); - drm_WARN_ON(&dev_priv->drm, + drm_WARN_ON(display->drm, !intel_crtc_has_type(crtc_state, INTEL_OUTPUT_HDMI)); if (!crtc_state->hw.active) @@ -4708,7 +4684,7 @@ static int intel_hdmi_reset_link(struct intel_encoder *encoder, ret = drm_scdc_readb(ddc, SCDC_TMDS_CONFIG, &config); if (ret < 0) { - drm_err(&dev_priv->drm, "[CONNECTOR:%d:%s] Failed to read TMDS config: %d\n", + drm_err(display->drm, "[CONNECTOR:%d:%s] Failed to read TMDS config: %d\n", connector->base.base.id, connector->base.name, ret); return 0; } @@ -4733,11 +4709,11 @@ static int intel_hdmi_reset_link(struct intel_encoder *encoder, static void intel_ddi_link_check(struct intel_encoder *encoder) { - struct drm_i915_private *i915 = to_i915(encoder->base.dev); + struct intel_display *display = to_intel_display(encoder); struct intel_digital_port *dig_port = enc_to_dig_port(encoder); /* TODO: Move checking the HDMI link state here as well. */ - drm_WARN_ON(&i915->drm, !dig_port->dp.attached_connector); + drm_WARN_ON(display->drm, !dig_port->dp.attached_connector); intel_dp_link_check(encoder); } @@ -4800,26 +4776,26 @@ intel_ddi_hotplug(struct intel_encoder *encoder, static bool lpt_digital_port_connected(struct intel_encoder *encoder) { - struct drm_i915_private *dev_priv = to_i915(encoder->base.dev); - u32 bit = dev_priv->display.hotplug.pch_hpd[encoder->hpd_pin]; + struct intel_display *display = to_intel_display(encoder); + u32 bit = display->hotplug.pch_hpd[encoder->hpd_pin]; - return intel_de_read(dev_priv, SDEISR) & bit; + return intel_de_read(display, SDEISR) & bit; } static bool hsw_digital_port_connected(struct intel_encoder *encoder) { - struct drm_i915_private *dev_priv = to_i915(encoder->base.dev); - u32 bit = dev_priv->display.hotplug.hpd[encoder->hpd_pin]; + struct intel_display *display = to_intel_display(encoder); + u32 bit = display->hotplug.hpd[encoder->hpd_pin]; - return intel_de_read(dev_priv, DEISR) & bit; + return intel_de_read(display, DEISR) & bit; } static bool bdw_digital_port_connected(struct intel_encoder *encoder) { - struct drm_i915_private *dev_priv = to_i915(encoder->base.dev); - u32 bit = dev_priv->display.hotplug.hpd[encoder->hpd_pin]; + struct intel_display *display = to_intel_display(encoder); + u32 bit = display->hotplug.hpd[encoder->hpd_pin]; - return intel_de_read(dev_priv, GEN8_DE_PORT_ISR) & bit; + return intel_de_read(display, GEN8_DE_PORT_ISR) & bit; } static int intel_ddi_init_hdmi_connector(struct intel_digital_port *dig_port) @@ -4848,7 +4824,7 @@ static int intel_ddi_init_hdmi_connector(struct intel_digital_port *dig_port) static bool intel_ddi_a_force_4_lanes(struct intel_digital_port *dig_port) { - struct drm_i915_private *dev_priv = to_i915(dig_port->base.base.dev); + struct intel_display *display = to_intel_display(dig_port); if (dig_port->base.port != PORT_A) return false; @@ -4859,7 +4835,7 @@ static bool intel_ddi_a_force_4_lanes(struct intel_digital_port *dig_port) /* Broxton/Geminilake: Bspec says that DDI_A_4_LANES is the only * supported configuration */ - if (IS_GEMINILAKE(dev_priv) || IS_BROXTON(dev_priv)) + if (display->platform.geminilake || display->platform.broxton) return true; return false; @@ -4868,15 +4844,15 @@ static bool intel_ddi_a_force_4_lanes(struct intel_digital_port *dig_port) static int intel_ddi_max_lanes(struct intel_digital_port *dig_port) { - struct drm_i915_private *dev_priv = to_i915(dig_port->base.base.dev); + struct intel_display *display = to_intel_display(dig_port); enum port port = dig_port->base.port; int max_lanes = 4; - if (DISPLAY_VER(dev_priv) >= 11) + if (DISPLAY_VER(display) >= 11) return max_lanes; if (port == PORT_A || port == PORT_E) { - if (intel_de_read(dev_priv, DDI_BUF_CTL(PORT_A)) & DDI_A_4_LANES) + if (intel_de_read(display, DDI_BUF_CTL(PORT_A)) & DDI_A_4_LANES) max_lanes = port == PORT_A ? 4 : 0; else /* Both A and E share 2 lanes */ @@ -4889,7 +4865,7 @@ intel_ddi_max_lanes(struct intel_digital_port *dig_port) * so we use the proper lane count for our calculations. */ if (intel_ddi_a_force_4_lanes(dig_port)) { - drm_dbg_kms(&dev_priv->drm, + drm_dbg_kms(display->drm, "Forcing DDI_A_4_LANES for port A\n"); dig_port->ddi_a_4_lanes = true; max_lanes = 4; @@ -4898,8 +4874,7 @@ intel_ddi_max_lanes(struct intel_digital_port *dig_port) return max_lanes; } -static enum hpd_pin xelpd_hpd_pin(struct drm_i915_private *dev_priv, - enum port port) +static enum hpd_pin xelpd_hpd_pin(struct intel_display *display, enum port port) { if (port >= PORT_D_XELPD) return HPD_PORT_D + port - PORT_D_XELPD; @@ -4909,8 +4884,7 @@ static enum hpd_pin xelpd_hpd_pin(struct drm_i915_private *dev_priv, return HPD_PORT_A + port - PORT_A; } -static enum hpd_pin dg1_hpd_pin(struct drm_i915_private *dev_priv, - enum port port) +static enum hpd_pin dg1_hpd_pin(struct intel_display *display, enum port port) { if (port >= PORT_TC1) return HPD_PORT_C + port - PORT_TC1; @@ -4918,8 +4892,7 @@ static enum hpd_pin dg1_hpd_pin(struct drm_i915_private *dev_priv, return HPD_PORT_A + port - PORT_A; } -static enum hpd_pin tgl_hpd_pin(struct drm_i915_private *dev_priv, - enum port port) +static enum hpd_pin tgl_hpd_pin(struct intel_display *display, enum port port) { if (port >= PORT_TC1) return HPD_PORT_TC1 + port - PORT_TC1; @@ -4927,11 +4900,12 @@ static enum hpd_pin tgl_hpd_pin(struct drm_i915_private *dev_priv, return HPD_PORT_A + port - PORT_A; } -static enum hpd_pin rkl_hpd_pin(struct drm_i915_private *dev_priv, - enum port port) +static enum hpd_pin rkl_hpd_pin(struct intel_display *display, enum port port) { + struct drm_i915_private *dev_priv = to_i915(display->drm); + if (HAS_PCH_TGP(dev_priv)) - return tgl_hpd_pin(dev_priv, port); + return tgl_hpd_pin(display, port); if (port >= PORT_TC1) return HPD_PORT_C + port - PORT_TC1; @@ -4939,8 +4913,7 @@ static enum hpd_pin rkl_hpd_pin(struct drm_i915_private *dev_priv, return HPD_PORT_A + port - PORT_A; } -static enum hpd_pin icl_hpd_pin(struct drm_i915_private *dev_priv, - enum port port) +static enum hpd_pin icl_hpd_pin(struct intel_display *display, enum port port) { if (port >= PORT_C) return HPD_PORT_TC1 + port - PORT_C; @@ -4948,31 +4921,34 @@ static enum hpd_pin icl_hpd_pin(struct drm_i915_private *dev_priv, return HPD_PORT_A + port - PORT_A; } -static enum hpd_pin ehl_hpd_pin(struct drm_i915_private *dev_priv, - enum port port) +static enum hpd_pin ehl_hpd_pin(struct intel_display *display, enum port port) { + struct drm_i915_private *dev_priv = to_i915(display->drm); + if (port == PORT_D) return HPD_PORT_A; if (HAS_PCH_TGP(dev_priv)) - return icl_hpd_pin(dev_priv, port); + return icl_hpd_pin(display, port); return HPD_PORT_A + port - PORT_A; } -static enum hpd_pin skl_hpd_pin(struct drm_i915_private *dev_priv, enum port port) +static enum hpd_pin skl_hpd_pin(struct intel_display *display, enum port port) { + struct drm_i915_private *dev_priv = to_i915(display->drm); + if (HAS_PCH_TGP(dev_priv)) - return icl_hpd_pin(dev_priv, port); + return icl_hpd_pin(display, port); return HPD_PORT_A + port - PORT_A; } -static bool intel_ddi_is_tc(struct drm_i915_private *i915, enum port port) +static bool intel_ddi_is_tc(struct intel_display *display, enum port port) { - if (DISPLAY_VER(i915) >= 12) + if (DISPLAY_VER(display) >= 12) return port >= PORT_TC1; - else if (DISPLAY_VER(i915) >= 11) + else if (DISPLAY_VER(display) >= 11) return port >= PORT_C; else return false; @@ -5015,21 +4991,21 @@ static void intel_ddi_tc_encoder_shutdown_complete(struct intel_encoder *encoder #define port_tc_name(port) ((port) - PORT_TC1 + '1') #define tc_port_name(tc_port) ((tc_port) - TC_PORT_1 + '1') -static bool port_strap_detected(struct drm_i915_private *i915, enum port port) +static bool port_strap_detected(struct intel_display *display, enum port port) { /* straps not used on skl+ */ - if (DISPLAY_VER(i915) >= 9) + if (DISPLAY_VER(display) >= 9) return true; switch (port) { case PORT_A: - return intel_de_read(i915, DDI_BUF_CTL(PORT_A)) & DDI_INIT_DISPLAY_DETECTED; + return intel_de_read(display, DDI_BUF_CTL(PORT_A)) & DDI_INIT_DISPLAY_DETECTED; case PORT_B: - return intel_de_read(i915, SFUSE_STRAP) & SFUSE_STRAP_DDIB_DETECTED; + return intel_de_read(display, SFUSE_STRAP) & SFUSE_STRAP_DDIB_DETECTED; case PORT_C: - return intel_de_read(i915, SFUSE_STRAP) & SFUSE_STRAP_DDIC_DETECTED; + return intel_de_read(display, SFUSE_STRAP) & SFUSE_STRAP_DDIC_DETECTED; case PORT_D: - return intel_de_read(i915, SFUSE_STRAP) & SFUSE_STRAP_DDID_DETECTED; + return intel_de_read(display, SFUSE_STRAP) & SFUSE_STRAP_DDID_DETECTED; case PORT_E: return true; /* no strap for DDI-E */ default: @@ -5043,18 +5019,18 @@ static bool need_aux_ch(struct intel_encoder *encoder, bool init_dp) return init_dp || intel_encoder_is_tc(encoder); } -static bool assert_has_icl_dsi(struct drm_i915_private *i915) +static bool assert_has_icl_dsi(struct intel_display *display) { - return !drm_WARN(&i915->drm, !IS_ALDERLAKE_P(i915) && - !IS_TIGERLAKE(i915) && DISPLAY_VER(i915) != 11, + return !drm_WARN(display->drm, !display->platform.alderlake_p && + !display->platform.tigerlake && DISPLAY_VER(display) != 11, "Platform does not support DSI\n"); } -static bool port_in_use(struct drm_i915_private *i915, enum port port) +static bool port_in_use(struct intel_display *display, enum port port) { struct intel_encoder *encoder; - for_each_intel_encoder(&i915->drm, encoder) { + for_each_intel_encoder(display->drm, encoder) { /* FIXME what about second port for dual link DSI? */ if (encoder->port == port) return true; @@ -5066,7 +5042,6 @@ static bool port_in_use(struct drm_i915_private *i915, enum port port) void intel_ddi_init(struct intel_display *display, const struct intel_bios_encoder_data *devdata) { - struct drm_i915_private *dev_priv = to_i915(display->drm); struct intel_digital_port *dig_port; struct intel_encoder *encoder; bool init_hdmi, init_dp; @@ -5078,8 +5053,8 @@ void intel_ddi_init(struct intel_display *display, if (port == PORT_NONE) return; - if (!port_strap_detected(dev_priv, port)) { - drm_dbg_kms(&dev_priv->drm, + if (!port_strap_detected(display, port)) { + drm_dbg_kms(display->drm, "Port %c strap not detected\n", port_name(port)); return; } @@ -5087,15 +5062,15 @@ void intel_ddi_init(struct intel_display *display, if (!assert_port_valid(display, port)) return; - if (port_in_use(dev_priv, port)) { - drm_dbg_kms(&dev_priv->drm, + if (port_in_use(display, port)) { + drm_dbg_kms(display->drm, "Port %c already claimed\n", port_name(port)); return; } if (intel_bios_encoder_supports_dsi(devdata)) { /* BXT/GLK handled elsewhere, for now at least */ - if (!assert_has_icl_dsi(dev_priv)) + if (!assert_has_icl_dsi(display)) return; icl_dsi_init(display, devdata); @@ -5111,7 +5086,7 @@ void intel_ddi_init(struct intel_display *display, * outputs. */ if (intel_hti_uses_phy(display, phy)) { - drm_dbg_kms(&dev_priv->drm, "PORT %c / PHY %c reserved by HTI\n", + drm_dbg_kms(display->drm, "PORT %c / PHY %c reserved by HTI\n", port_name(port), phy_name(phy)); return; } @@ -5128,20 +5103,20 @@ void intel_ddi_init(struct intel_display *display, */ init_dp = true; init_hdmi = false; - drm_dbg_kms(&dev_priv->drm, "VBT says port %c has lspcon\n", + drm_dbg_kms(display->drm, "VBT says port %c has lspcon\n", port_name(port)); } if (!init_dp && !init_hdmi) { - drm_dbg_kms(&dev_priv->drm, + drm_dbg_kms(display->drm, "VBT says port %c is not DVI/HDMI/DP compatible, respect it\n", port_name(port)); return; } if (intel_phy_is_snps(display, phy) && - dev_priv->display.snps.phy_failed_calibration & BIT(phy)) { - drm_dbg_kms(&dev_priv->drm, + display->snps.phy_failed_calibration & BIT(phy)) { + drm_dbg_kms(display->drm, "SNPS PHY %c failed to calibrate, proceeding anyway\n", phy_name(phy)); } @@ -5155,26 +5130,26 @@ void intel_ddi_init(struct intel_display *display, encoder = &dig_port->base; encoder->devdata = devdata; - if (DISPLAY_VER(dev_priv) >= 13 && port >= PORT_D_XELPD) { - drm_encoder_init(&dev_priv->drm, &encoder->base, &intel_ddi_funcs, + if (DISPLAY_VER(display) >= 13 && port >= PORT_D_XELPD) { + drm_encoder_init(display->drm, &encoder->base, &intel_ddi_funcs, DRM_MODE_ENCODER_TMDS, "DDI %c/PHY %c", port_name(port - PORT_D_XELPD + PORT_D), phy_name(phy)); - } else if (DISPLAY_VER(dev_priv) >= 12) { + } else if (DISPLAY_VER(display) >= 12) { enum tc_port tc_port = intel_port_to_tc(display, port); - drm_encoder_init(&dev_priv->drm, &encoder->base, &intel_ddi_funcs, + drm_encoder_init(display->drm, &encoder->base, &intel_ddi_funcs, DRM_MODE_ENCODER_TMDS, "DDI %s%c/PHY %s%c", port >= PORT_TC1 ? "TC" : "", port >= PORT_TC1 ? port_tc_name(port) : port_name(port), tc_port != TC_PORT_NONE ? "TC" : "", tc_port != TC_PORT_NONE ? tc_port_name(tc_port) : phy_name(phy)); - } else if (DISPLAY_VER(dev_priv) >= 11) { + } else if (DISPLAY_VER(display) >= 11) { enum tc_port tc_port = intel_port_to_tc(display, port); - drm_encoder_init(&dev_priv->drm, &encoder->base, &intel_ddi_funcs, + drm_encoder_init(display->drm, &encoder->base, &intel_ddi_funcs, DRM_MODE_ENCODER_TMDS, "DDI %c%s/PHY %s%c", port_name(port), @@ -5182,7 +5157,7 @@ void intel_ddi_init(struct intel_display *display, tc_port != TC_PORT_NONE ? "TC" : "", tc_port != TC_PORT_NONE ? tc_port_name(tc_port) : phy_name(phy)); } else { - drm_encoder_init(&dev_priv->drm, &encoder->base, &intel_ddi_funcs, + drm_encoder_init(display->drm, &encoder->base, &intel_ddi_funcs, DRM_MODE_ENCODER_TMDS, "DDI %c/PHY %c", port_name(port), phy_name(phy)); } @@ -5218,32 +5193,32 @@ void intel_ddi_init(struct intel_display *display, encoder->cloneable = 0; encoder->pipe_mask = ~0; - if (DISPLAY_VER(dev_priv) >= 14) { + if (DISPLAY_VER(display) >= 14) { encoder->enable_clock = intel_mtl_pll_enable; encoder->disable_clock = intel_mtl_pll_disable; encoder->port_pll_type = intel_mtl_port_pll_type; encoder->get_config = mtl_ddi_get_config; - } else if (IS_DG2(dev_priv)) { + } else if (display->platform.dg2) { encoder->enable_clock = intel_mpllb_enable; encoder->disable_clock = intel_mpllb_disable; encoder->get_config = dg2_ddi_get_config; - } else if (IS_ALDERLAKE_S(dev_priv)) { + } else if (display->platform.alderlake_s) { encoder->enable_clock = adls_ddi_enable_clock; encoder->disable_clock = adls_ddi_disable_clock; encoder->is_clock_enabled = adls_ddi_is_clock_enabled; encoder->get_config = adls_ddi_get_config; - } else if (IS_ROCKETLAKE(dev_priv)) { + } else if (display->platform.rocketlake) { encoder->enable_clock = rkl_ddi_enable_clock; encoder->disable_clock = rkl_ddi_disable_clock; encoder->is_clock_enabled = rkl_ddi_is_clock_enabled; encoder->get_config = rkl_ddi_get_config; - } else if (IS_DG1(dev_priv)) { + } else if (display->platform.dg1) { encoder->enable_clock = dg1_ddi_enable_clock; encoder->disable_clock = dg1_ddi_disable_clock; encoder->is_clock_enabled = dg1_ddi_is_clock_enabled; encoder->get_config = dg1_ddi_get_config; - } else if (IS_JASPERLAKE(dev_priv) || IS_ELKHARTLAKE(dev_priv)) { - if (intel_ddi_is_tc(dev_priv, port)) { + } else if (display->platform.jasperlake || display->platform.elkhartlake) { + if (intel_ddi_is_tc(display, port)) { encoder->enable_clock = jsl_ddi_tc_enable_clock; encoder->disable_clock = jsl_ddi_tc_disable_clock; encoder->is_clock_enabled = jsl_ddi_tc_is_clock_enabled; @@ -5255,8 +5230,8 @@ void intel_ddi_init(struct intel_display *display, encoder->is_clock_enabled = icl_ddi_combo_is_clock_enabled; encoder->get_config = icl_ddi_combo_get_config; } - } else if (DISPLAY_VER(dev_priv) >= 11) { - if (intel_ddi_is_tc(dev_priv, port)) { + } else if (DISPLAY_VER(display) >= 11) { + if (intel_ddi_is_tc(display, port)) { encoder->enable_clock = icl_ddi_tc_enable_clock; encoder->disable_clock = icl_ddi_tc_disable_clock; encoder->is_clock_enabled = icl_ddi_tc_is_clock_enabled; @@ -5268,36 +5243,36 @@ void intel_ddi_init(struct intel_display *display, encoder->is_clock_enabled = icl_ddi_combo_is_clock_enabled; encoder->get_config = icl_ddi_combo_get_config; } - } else if (IS_GEMINILAKE(dev_priv) || IS_BROXTON(dev_priv)) { + } else if (display->platform.geminilake || display->platform.broxton) { /* BXT/GLK have fixed PLL->port mapping */ encoder->get_config = bxt_ddi_get_config; - } else if (DISPLAY_VER(dev_priv) == 9) { + } else if (DISPLAY_VER(display) == 9) { encoder->enable_clock = skl_ddi_enable_clock; encoder->disable_clock = skl_ddi_disable_clock; encoder->is_clock_enabled = skl_ddi_is_clock_enabled; encoder->get_config = skl_ddi_get_config; - } else if (IS_BROADWELL(dev_priv) || IS_HASWELL(dev_priv)) { + } else if (display->platform.broadwell || display->platform.haswell) { encoder->enable_clock = hsw_ddi_enable_clock; encoder->disable_clock = hsw_ddi_disable_clock; encoder->is_clock_enabled = hsw_ddi_is_clock_enabled; encoder->get_config = hsw_ddi_get_config; } - if (DISPLAY_VER(dev_priv) >= 14) { + if (DISPLAY_VER(display) >= 14) { encoder->set_signal_levels = intel_cx0_phy_set_signal_levels; - } else if (IS_DG2(dev_priv)) { + } else if (display->platform.dg2) { encoder->set_signal_levels = intel_snps_phy_set_signal_levels; - } else if (DISPLAY_VER(dev_priv) >= 12) { + } else if (DISPLAY_VER(display) >= 12) { if (intel_encoder_is_combo(encoder)) encoder->set_signal_levels = icl_combo_phy_set_signal_levels; else encoder->set_signal_levels = tgl_dkl_phy_set_signal_levels; - } else if (DISPLAY_VER(dev_priv) >= 11) { + } else if (DISPLAY_VER(display) >= 11) { if (intel_encoder_is_combo(encoder)) encoder->set_signal_levels = icl_combo_phy_set_signal_levels; else encoder->set_signal_levels = icl_mg_phy_set_signal_levels; - } else if (IS_GEMINILAKE(dev_priv) || IS_BROXTON(dev_priv)) { + } else if (display->platform.geminilake || display->platform.broxton) { encoder->set_signal_levels = bxt_dpio_phy_set_signal_levels; } else { encoder->set_signal_levels = hsw_set_signal_levels; @@ -5305,29 +5280,29 @@ void intel_ddi_init(struct intel_display *display, intel_ddi_buf_trans_init(encoder); - if (DISPLAY_VER(dev_priv) >= 13) - encoder->hpd_pin = xelpd_hpd_pin(dev_priv, port); - else if (IS_DG1(dev_priv)) - encoder->hpd_pin = dg1_hpd_pin(dev_priv, port); - else if (IS_ROCKETLAKE(dev_priv)) - encoder->hpd_pin = rkl_hpd_pin(dev_priv, port); - else if (DISPLAY_VER(dev_priv) >= 12) - encoder->hpd_pin = tgl_hpd_pin(dev_priv, port); - else if (IS_JASPERLAKE(dev_priv) || IS_ELKHARTLAKE(dev_priv)) - encoder->hpd_pin = ehl_hpd_pin(dev_priv, port); - else if (DISPLAY_VER(dev_priv) == 11) - encoder->hpd_pin = icl_hpd_pin(dev_priv, port); - else if (DISPLAY_VER(dev_priv) == 9 && !IS_BROXTON(dev_priv)) - encoder->hpd_pin = skl_hpd_pin(dev_priv, port); + if (DISPLAY_VER(display) >= 13) + encoder->hpd_pin = xelpd_hpd_pin(display, port); + else if (display->platform.dg1) + encoder->hpd_pin = dg1_hpd_pin(display, port); + else if (display->platform.rocketlake) + encoder->hpd_pin = rkl_hpd_pin(display, port); + else if (DISPLAY_VER(display) >= 12) + encoder->hpd_pin = tgl_hpd_pin(display, port); + else if (display->platform.jasperlake || display->platform.elkhartlake) + encoder->hpd_pin = ehl_hpd_pin(display, port); + else if (DISPLAY_VER(display) == 11) + encoder->hpd_pin = icl_hpd_pin(display, port); + else if (DISPLAY_VER(display) == 9 && !display->platform.broxton) + encoder->hpd_pin = skl_hpd_pin(display, port); else encoder->hpd_pin = intel_hpd_pin_default(port); - ddi_buf_ctl = intel_de_read(dev_priv, DDI_BUF_CTL(port)); + ddi_buf_ctl = intel_de_read(display, DDI_BUF_CTL(port)); dig_port->lane_reversal = intel_bios_encoder_lane_reversal(devdata) || ddi_buf_ctl & DDI_BUF_PORT_REVERSAL; - dig_port->ddi_a_4_lanes = DISPLAY_VER(dev_priv) < 11 && ddi_buf_ctl & DDI_A_4_LANES; + dig_port->ddi_a_4_lanes = DISPLAY_VER(display) < 11 && ddi_buf_ctl & DDI_A_4_LANES; dig_port->dp.output_reg = INVALID_MMIO_REG; dig_port->max_lanes = intel_ddi_max_lanes(dig_port); @@ -5346,7 +5321,7 @@ void intel_ddi_init(struct intel_display *display, if (!is_legacy && init_hdmi) { is_legacy = !init_dp; - drm_dbg_kms(&dev_priv->drm, + drm_dbg_kms(display->drm, "VBT says port %c is non-legacy TC and has HDMI (with DP: %s), assume it's %s\n", port_name(port), str_yes_no(init_dp), @@ -5363,24 +5338,24 @@ void intel_ddi_init(struct intel_display *display, goto err; } - drm_WARN_ON(&dev_priv->drm, port > PORT_I); + drm_WARN_ON(display->drm, port > PORT_I); dig_port->ddi_io_power_domain = intel_display_power_ddi_io_domain(display, port); - if (DISPLAY_VER(dev_priv) >= 11) { + if (DISPLAY_VER(display) >= 11) { if (intel_encoder_is_tc(encoder)) dig_port->connected = intel_tc_port_connected; else dig_port->connected = lpt_digital_port_connected; - } else if (IS_GEMINILAKE(dev_priv) || IS_BROXTON(dev_priv)) { + } else if (display->platform.geminilake || display->platform.broxton) { dig_port->connected = bdw_digital_port_connected; - } else if (DISPLAY_VER(dev_priv) == 9) { + } else if (DISPLAY_VER(display) == 9) { dig_port->connected = lpt_digital_port_connected; - } else if (IS_BROADWELL(dev_priv)) { + } else if (display->platform.broadwell) { if (port == PORT_A) dig_port->connected = bdw_digital_port_connected; else dig_port->connected = lpt_digital_port_connected; - } else if (IS_HASWELL(dev_priv)) { + } else if (display->platform.haswell) { if (port == PORT_A) dig_port->connected = hsw_digital_port_connected; else @@ -5396,7 +5371,7 @@ void intel_ddi_init(struct intel_display *display, dig_port->hpd_pulse = intel_dp_hpd_pulse; if (dig_port->dp.mso_link_count) - encoder->pipe_mask = intel_ddi_splitter_pipe_mask(dev_priv); + encoder->pipe_mask = intel_ddi_splitter_pipe_mask(display); } /* diff --git a/drivers/gpu/drm/i915/display/intel_de.h b/drivers/gpu/drm/i915/display/intel_de.h index b7399e9d11cc..655467a6ba87 100644 --- a/drivers/gpu/drm/i915/display/intel_de.h +++ b/drivers/gpu/drm/i915/display/intel_de.h @@ -181,20 +181,18 @@ intel_de_wait_custom(struct intel_display *display, i915_reg_t reg, } static inline int -__intel_de_wait_for_set(struct intel_display *display, i915_reg_t reg, - u32 mask, unsigned int timeout) +intel_de_wait_for_set(struct intel_display *display, i915_reg_t reg, + u32 mask, unsigned int timeout) { return intel_de_wait(display, reg, mask, mask, timeout); } -#define intel_de_wait_for_set(p,...) __intel_de_wait_for_set(__to_intel_display(p), __VA_ARGS__) static inline int -__intel_de_wait_for_clear(struct intel_display *display, i915_reg_t reg, - u32 mask, unsigned int timeout) +intel_de_wait_for_clear(struct intel_display *display, i915_reg_t reg, + u32 mask, unsigned int timeout) { return intel_de_wait(display, reg, mask, 0, timeout); } -#define intel_de_wait_for_clear(p,...) __intel_de_wait_for_clear(__to_intel_display(p), __VA_ARGS__) /* * Unlocked mmio-accessors, think carefully before using these. @@ -205,7 +203,7 @@ __intel_de_wait_for_clear(struct intel_display *display, i915_reg_t reg, * a more localised lock guarding all access to that bank of registers. */ static inline u32 -__intel_de_read_fw(struct intel_display *display, i915_reg_t reg) +intel_de_read_fw(struct intel_display *display, i915_reg_t reg) { u32 val; @@ -214,15 +212,13 @@ __intel_de_read_fw(struct intel_display *display, i915_reg_t reg) return val; } -#define intel_de_read_fw(p,...) __intel_de_read_fw(__to_intel_display(p), __VA_ARGS__) static inline void -__intel_de_write_fw(struct intel_display *display, i915_reg_t reg, u32 val) +intel_de_write_fw(struct intel_display *display, i915_reg_t reg, u32 val) { trace_i915_reg_rw(true, reg, val, sizeof(val), true); intel_uncore_write_fw(__to_uncore(display), reg, val); } -#define intel_de_write_fw(p,...) __intel_de_write_fw(__to_intel_display(p), __VA_ARGS__) static inline u32 intel_de_read_notrace(struct intel_display *display, i915_reg_t reg) diff --git a/drivers/gpu/drm/i915/display/intel_display.c b/drivers/gpu/drm/i915/display/intel_display.c index 3afb85fe8536..db524d01e574 100644 --- a/drivers/gpu/drm/i915/display/intel_display.c +++ b/drivers/gpu/drm/i915/display/intel_display.c @@ -73,6 +73,7 @@ #include "intel_de.h" #include "intel_display_driver.h" #include "intel_display_power.h" +#include "intel_display_rpm.h" #include "intel_display_types.h" #include "intel_dmc.h" #include "intel_dp.h" @@ -663,7 +664,6 @@ void intel_plane_disable_noatomic(struct intel_crtc *crtc, struct intel_plane *plane) { struct intel_display *display = to_intel_display(crtc); - struct drm_i915_private *dev_priv = to_i915(crtc->base.dev); struct intel_crtc_state *crtc_state = to_intel_crtc_state(crtc->base.state); struct intel_plane_state *plane_state = @@ -696,7 +696,7 @@ void intel_plane_disable_noatomic(struct intel_crtc *crtc, * wait-for-vblank between disabling the plane and the pipe. */ if (HAS_GMCH(display) && - intel_set_memory_cxsr(dev_priv, false)) + intel_set_memory_cxsr(display, false)) intel_plane_initial_vblank_wait(crtc); /* @@ -968,7 +968,9 @@ static bool vrr_params_changed(const struct intel_crtc_state *old_crtc_state, old_crtc_state->vrr.vmin != new_crtc_state->vrr.vmin || old_crtc_state->vrr.vmax != new_crtc_state->vrr.vmax || old_crtc_state->vrr.guardband != new_crtc_state->vrr.guardband || - old_crtc_state->vrr.pipeline_full != new_crtc_state->vrr.pipeline_full; + old_crtc_state->vrr.pipeline_full != new_crtc_state->vrr.pipeline_full || + old_crtc_state->vrr.vsync_start != new_crtc_state->vrr.vsync_start || + old_crtc_state->vrr.vsync_end != new_crtc_state->vrr.vsync_end; } static bool cmrr_params_changed(const struct intel_crtc_state *old_crtc_state, @@ -1048,12 +1050,10 @@ static void intel_post_plane_update(struct intel_atomic_state *state, intel_atomic_get_new_crtc_state(state, crtc); enum pipe pipe = crtc->pipe; - intel_psr_post_plane_update(state, crtc); - intel_frontbuffer_flip(dev_priv, new_crtc_state->fb_bits); if (new_crtc_state->update_wm_post && new_crtc_state->hw.active) - intel_update_watermarks(dev_priv); + intel_update_watermarks(display); intel_fbc_post_update(state, crtc); @@ -1078,6 +1078,8 @@ static void intel_post_plane_update(struct intel_atomic_state *state, if (audio_enabling(old_crtc_state, new_crtc_state)) intel_encoders_audio_enable(state, crtc); + + intel_psr_post_plane_update(state, crtc); } static void intel_post_plane_update_after_readout(struct intel_atomic_state *state, @@ -1166,13 +1168,14 @@ static void intel_pre_plane_update(struct intel_atomic_state *state, struct intel_crtc *crtc) { struct intel_display *display = to_intel_display(state); - struct drm_i915_private *dev_priv = to_i915(state->base.dev); const struct intel_crtc_state *old_crtc_state = intel_atomic_get_old_crtc_state(state, crtc); const struct intel_crtc_state *new_crtc_state = intel_atomic_get_new_crtc_state(state, crtc); enum pipe pipe = crtc->pipe; + intel_psr_pre_plane_update(state, crtc); + if (intel_crtc_vrr_disabling(state, crtc)) { intel_vrr_disable(old_crtc_state); intel_crtc_update_active_timings(old_crtc_state, false); @@ -1183,8 +1186,6 @@ static void intel_pre_plane_update(struct intel_atomic_state *state, intel_drrs_deactivate(old_crtc_state); - intel_psr_pre_plane_update(state, crtc); - if (hsw_ips_pre_update(state, crtc)) intel_crtc_wait_for_next_vblank(crtc); @@ -1220,7 +1221,7 @@ static void intel_pre_plane_update(struct intel_atomic_state *state, * wait-for-vblank between disabling the plane and the pipe. */ if (HAS_GMCH(display) && old_crtc_state->hw.active && - new_crtc_state->disable_cxsr && intel_set_memory_cxsr(dev_priv, false)) + new_crtc_state->disable_cxsr && intel_set_memory_cxsr(display, false)) intel_crtc_wait_for_next_vblank(crtc); /* @@ -1231,7 +1232,7 @@ static void intel_pre_plane_update(struct intel_atomic_state *state, * WaCxSRDisabledForSpriteScaling:ivb */ if (!HAS_GMCH(display) && old_crtc_state->hw.active && - new_crtc_state->disable_cxsr && ilk_disable_cxsr(dev_priv)) + new_crtc_state->disable_cxsr && ilk_disable_cxsr(display)) intel_crtc_wait_for_next_vblank(crtc); /* @@ -1255,7 +1256,7 @@ static void intel_pre_plane_update(struct intel_atomic_state *state, */ if (!intel_initial_watermarks(state, crtc)) if (new_crtc_state->update_wm_pre) - intel_update_watermarks(dev_priv); + intel_update_watermarks(display); } /* @@ -1660,13 +1661,8 @@ static void hsw_crtc_enable(struct intel_atomic_state *state, intel_encoders_pre_pll_enable(state, crtc); - for_each_pipe_crtc_modeset_enable(display, pipe_crtc, new_crtc_state, i) { - const struct intel_crtc_state *pipe_crtc_state = - intel_atomic_get_new_crtc_state(state, pipe_crtc); - - if (pipe_crtc_state->shared_dpll) - intel_enable_shared_dpll(pipe_crtc_state); - } + if (new_crtc_state->shared_dpll) + intel_enable_shared_dpll(new_crtc_state); intel_encoders_pre_enable(state, crtc); @@ -1777,8 +1773,6 @@ static void ilk_crtc_disable(struct intel_atomic_state *state, intel_set_cpu_fifo_underrun_reporting(display, pipe, true); intel_set_pch_fifo_underrun_reporting(display, pipe, true); - - intel_disable_shared_dpll(old_crtc_state); } static void hsw_crtc_disable(struct intel_atomic_state *state, @@ -1797,12 +1791,7 @@ static void hsw_crtc_disable(struct intel_atomic_state *state, intel_encoders_disable(state, crtc); intel_encoders_post_disable(state, crtc); - for_each_pipe_crtc_modeset_disable(display, pipe_crtc, old_crtc_state, i) { - const struct intel_crtc_state *old_pipe_crtc_state = - intel_atomic_get_old_crtc_state(state, pipe_crtc); - - intel_disable_shared_dpll(old_pipe_crtc_state); - } + intel_disable_shared_dpll(old_crtc_state); intel_encoders_post_pll_disable(state, crtc); @@ -2081,7 +2070,6 @@ static void i9xx_crtc_enable(struct intel_atomic_state *state, struct intel_display *display = to_intel_display(crtc); const struct intel_crtc_state *new_crtc_state = intel_atomic_get_new_crtc_state(state, crtc); - struct drm_i915_private *dev_priv = to_i915(crtc->base.dev); enum pipe pipe = crtc->pipe; if (drm_WARN_ON(display->drm, crtc->active)) @@ -2105,7 +2093,7 @@ static void i9xx_crtc_enable(struct intel_atomic_state *state, intel_color_modeset(new_crtc_state); if (!intel_initial_watermarks(state, crtc)) - intel_update_watermarks(dev_priv); + intel_update_watermarks(display); intel_enable_transcoder(new_crtc_state); intel_crtc_vblank_on(new_crtc_state); @@ -2121,7 +2109,6 @@ static void i9xx_crtc_disable(struct intel_atomic_state *state, struct intel_crtc *crtc) { struct intel_display *display = to_intel_display(state); - struct drm_i915_private *dev_priv = to_i915(display->drm); struct intel_crtc_state *old_crtc_state = intel_atomic_get_old_crtc_state(state, crtc); enum pipe pipe = crtc->pipe; @@ -2145,9 +2132,9 @@ static void i9xx_crtc_disable(struct intel_atomic_state *state, if (!intel_crtc_has_type(old_crtc_state, INTEL_OUTPUT_DSI)) { if (display->platform.cherryview) - chv_disable_pll(dev_priv, pipe); + chv_disable_pll(display, pipe); else if (display->platform.valleyview) - vlv_disable_pll(dev_priv, pipe); + vlv_disable_pll(display, pipe); else i9xx_disable_pll(old_crtc_state); } @@ -2158,7 +2145,7 @@ static void i9xx_crtc_disable(struct intel_atomic_state *state, intel_set_cpu_fifo_underrun_reporting(display, pipe, false); if (!display->funcs.wm->initial_watermarks) - intel_update_watermarks(dev_priv); + intel_update_watermarks(display); /* clock the pipe down to 640x480@60 to potentially save power */ if (display->platform.i830) @@ -2341,7 +2328,6 @@ static int intel_crtc_compute_pipe_src(struct intel_crtc_state *crtc_state) { struct intel_display *display = to_intel_display(crtc_state); struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc); - struct drm_i915_private *i915 = to_i915(crtc->base.dev); intel_joiner_compute_pipe_src(crtc_state); @@ -2360,7 +2346,7 @@ static int intel_crtc_compute_pipe_src(struct intel_crtc_state *crtc_state) } if (intel_crtc_has_type(crtc_state, INTEL_OUTPUT_LVDS) && - intel_is_dual_link_lvds(i915)) { + intel_is_dual_link_lvds(display)) { drm_dbg_kms(display->drm, "[CRTC:%d:%s] Odd pipe source width not supported with dual link LVDS\n", crtc->base.base.id, crtc->base.name); @@ -2637,6 +2623,15 @@ void intel_cpu_transcoder_set_m2_n2(struct intel_crtc *crtc, PIPE_LINK_N2(display, transcoder)); } +static bool +transcoder_has_vrr(const struct intel_crtc_state *crtc_state) +{ + struct intel_display *display = to_intel_display(crtc_state); + enum transcoder cpu_transcoder = crtc_state->cpu_transcoder; + + return HAS_VRR(display) && !transcoder_is_dsi(cpu_transcoder); +} + static void intel_set_transcoder_timings(const struct intel_crtc_state *crtc_state) { struct intel_display *display = to_intel_display(crtc_state); @@ -2701,6 +2696,15 @@ static void intel_set_transcoder_timings(const struct intel_crtc_state *crtc_sta HSYNC_START(adjusted_mode->crtc_hsync_start - 1) | HSYNC_END(adjusted_mode->crtc_hsync_end - 1)); + /* + * For platforms that always use VRR Timing Generator, the VTOTAL.Vtotal + * bits are not required. Since the support for these bits is going to + * be deprecated in upcoming platforms, avoid writing these bits for the + * platforms that do not use legacy Timing Generator. + */ + if (intel_vrr_always_use_vrr_tg(display)) + crtc_vtotal = 1; + intel_de_write(display, TRANS_VTOTAL(display, cpu_transcoder), VACTIVE(crtc_vdisplay - 1) | VTOTAL(crtc_vtotal - 1)); @@ -2761,6 +2765,15 @@ static void intel_set_transcoder_timings_lrr(const struct intel_crtc_state *crtc intel_de_write(display, TRANS_VBLANK(display, cpu_transcoder), VBLANK_START(crtc_vblank_start - 1) | VBLANK_END(crtc_vblank_end - 1)); + /* + * For platforms that always use VRR Timing Generator, the VTOTAL.Vtotal + * bits are not required. Since the support for these bits is going to + * be deprecated in upcoming platforms, avoid writing these bits for the + * platforms that do not use legacy Timing Generator. + */ + if (intel_vrr_always_use_vrr_tg(display)) + crtc_vtotal = 1; + /* * The double buffer latch point for TRANS_VTOTAL * is the transcoder's undelayed vblank. @@ -2768,6 +2781,9 @@ static void intel_set_transcoder_timings_lrr(const struct intel_crtc_state *crtc intel_de_write(display, TRANS_VTOTAL(display, cpu_transcoder), VACTIVE(crtc_vdisplay - 1) | VTOTAL(crtc_vtotal - 1)); + + intel_vrr_set_fixed_rr_timings(crtc_state); + intel_vrr_transcoder_enable(crtc_state); } static void intel_set_pipe_src_size(const struct intel_crtc_state *crtc_state) @@ -3833,7 +3849,6 @@ static bool bxt_get_dsi_transcoder_state(struct intel_crtc *crtc, struct intel_display_power_domain_set *power_domain_set) { struct intel_display *display = to_intel_display(crtc); - struct drm_i915_private *dev_priv = to_i915(crtc->base.dev); enum transcoder cpu_transcoder; enum port port; u32 tmp; @@ -3855,7 +3870,7 @@ static bool bxt_get_dsi_transcoder_state(struct intel_crtc *crtc, * registers/MIPI[BXT]. We can break out here early, since we * need the same DSI PLL to be enabled for both DSI ports. */ - if (!bxt_dsi_pll_is_enabled(dev_priv)) + if (!bxt_dsi_pll_is_enabled(display)) break; /* XXX: this works for video mode only */ @@ -3918,7 +3933,7 @@ static bool hsw_get_pipe_config(struct intel_crtc *crtc, DISPLAY_VER(display) >= 11) intel_get_transcoder_timings(crtc, pipe_config); - if (HAS_VRR(display) && !transcoder_is_dsi(pipe_config->cpu_transcoder)) + if (transcoder_has_vrr(pipe_config)) intel_vrr_get_config(pipe_config); intel_get_pipe_src_size(crtc, pipe_config); @@ -4145,8 +4160,6 @@ static u16 hsw_ips_linetime_wm(const struct intel_crtc_state *crtc_state, static u16 skl_linetime_wm(const struct intel_crtc_state *crtc_state) { struct intel_display *display = to_intel_display(crtc_state); - struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc); - struct drm_i915_private *dev_priv = to_i915(crtc->base.dev); const struct drm_display_mode *pipe_mode = &crtc_state->hw.pipe_mode; int linetime_wm; @@ -4159,7 +4172,7 @@ static u16 skl_linetime_wm(const struct intel_crtc_state *crtc_state) /* Display WA #1135: BXT:ALL GLK:ALL */ if ((display->platform.geminilake || display->platform.broxton) && - skl_watermark_ipc_enabled(dev_priv)) + skl_watermark_ipc_enabled(display)) linetime_wm /= 2; return min(linetime_wm, 0x1ff); @@ -5385,8 +5398,6 @@ intel_pipe_config_compare(const struct intel_crtc_state *current_config, PIPE_CONF_CHECK_I(vrr.vmin); PIPE_CONF_CHECK_I(vrr.vmax); PIPE_CONF_CHECK_I(vrr.flipline); - PIPE_CONF_CHECK_I(vrr.pipeline_full); - PIPE_CONF_CHECK_I(vrr.guardband); PIPE_CONF_CHECK_I(vrr.vsync_start); PIPE_CONF_CHECK_I(vrr.vsync_end); PIPE_CONF_CHECK_LLI(cmrr.cmrr_m); @@ -5394,6 +5405,11 @@ intel_pipe_config_compare(const struct intel_crtc_state *current_config, PIPE_CONF_CHECK_BOOL(cmrr.enable); } + if (!fastset || intel_vrr_always_use_vrr_tg(display)) { + PIPE_CONF_CHECK_I(vrr.pipeline_full); + PIPE_CONF_CHECK_I(vrr.guardband); + } + #undef PIPE_CONF_CHECK_X #undef PIPE_CONF_CHECK_I #undef PIPE_CONF_CHECK_LLI @@ -6427,7 +6443,7 @@ int intel_atomic_check(struct drm_device *dev, if (ret) goto fail; - ret = intel_bw_atomic_check(state); + ret = intel_bw_atomic_check(state, any_ms); if (ret) goto fail; @@ -7229,7 +7245,7 @@ static void intel_atomic_dsb_finish(struct intel_atomic_state *state, static void intel_atomic_commit_tail(struct intel_atomic_state *state) { struct intel_display *display = to_intel_display(state); - struct drm_i915_private *dev_priv = to_i915(display->drm); + struct drm_i915_private __maybe_unused *dev_priv = to_i915(display->drm); struct intel_crtc_state *new_crtc_state, *old_crtc_state; struct intel_crtc *crtc; struct intel_power_domain_mask put_domains[I915_MAX_PIPES] = {}; @@ -7443,7 +7459,7 @@ static void intel_atomic_commit_tail(struct intel_atomic_state *state) * toggling overhead at and above 60 FPS. */ intel_display_power_put_async_delay(display, POWER_DOMAIN_DC_OFF, wakeref, 17); - intel_runtime_pm_put(&dev_priv->runtime_pm, state->wakeref); + intel_display_rpm_put(display, state->wakeref); /* * Defer the cleanup of the old state to a separate worker to not @@ -7515,10 +7531,9 @@ int intel_atomic_commit(struct drm_device *dev, struct drm_atomic_state *_state, { struct intel_display *display = to_intel_display(dev); struct intel_atomic_state *state = to_intel_atomic_state(_state); - struct drm_i915_private *dev_priv = to_i915(dev); int ret = 0; - state->wakeref = intel_runtime_pm_get(&dev_priv->runtime_pm); + state->wakeref = intel_display_rpm_get(display); /* * The intel_legacy_cursor_update() fast path takes care @@ -7552,7 +7567,7 @@ int intel_atomic_commit(struct drm_device *dev, struct drm_atomic_state *_state, if (ret) { drm_dbg_atomic(display->drm, "Preparing state failed with %i\n", ret); - intel_runtime_pm_put(&dev_priv->runtime_pm, state->wakeref); + intel_display_rpm_put(display, state->wakeref); return ret; } @@ -7562,7 +7577,7 @@ int intel_atomic_commit(struct drm_device *dev, struct drm_atomic_state *_state, if (ret) { drm_atomic_helper_unprepare_planes(dev, &state->base); - intel_runtime_pm_put(&dev_priv->runtime_pm, state->wakeref); + intel_display_rpm_put(display, state->wakeref); return ret; } @@ -7670,7 +7685,7 @@ void intel_setup_outputs(struct intel_display *display) intel_bios_for_each_encoder(display, intel_ddi_init); if (display->platform.geminilake || display->platform.broxton) - vlv_dsi_init(dev_priv); + vlv_dsi_init(display); } else if (HAS_PCH_SPLIT(dev_priv)) { int found; @@ -7679,7 +7694,7 @@ void intel_setup_outputs(struct intel_display *display) * to prevent the registration of both eDP and LVDS and the * incorrect sharing of the PPS. */ - intel_lvds_init(dev_priv); + intel_lvds_init(display); intel_crt_init(display); dpd_is_edp = intel_dp_is_port_edp(display, PORT_D); @@ -7754,15 +7769,15 @@ void intel_setup_outputs(struct intel_display *display) g4x_hdmi_init(display, CHV_HDMID, PORT_D); } - vlv_dsi_init(dev_priv); + vlv_dsi_init(display); } else if (display->platform.pineview) { - intel_lvds_init(dev_priv); + intel_lvds_init(display); intel_crt_init(display); } else if (IS_DISPLAY_VER(display, 3, 4)) { bool found = false; if (display->platform.mobile) - intel_lvds_init(dev_priv); + intel_lvds_init(display); intel_crt_init(display); @@ -7804,10 +7819,10 @@ void intel_setup_outputs(struct intel_display *display) intel_tv_init(display); } else if (DISPLAY_VER(display) == 2) { if (display->platform.i85x) - intel_lvds_init(dev_priv); + intel_lvds_init(display); intel_crt_init(display); - intel_dvo_init(dev_priv); + intel_dvo_init(display); } for_each_intel_encoder(display->drm, encoder) { @@ -7817,7 +7832,7 @@ void intel_setup_outputs(struct intel_display *display) intel_encoder_possible_clones(encoder); } - intel_init_pch_refclk(dev_priv); + intel_init_pch_refclk(display); drm_helper_move_panel_connectors_to_head(display->drm); } @@ -8081,6 +8096,9 @@ retry: goto out; } + if (!crtc_state->hw.active) + crtc_state->inherited = false; + if (crtc_state->hw.active) { struct intel_encoder *encoder; diff --git a/drivers/gpu/drm/i915/display/intel_display_core.h b/drivers/gpu/drm/i915/display/intel_display_core.h index eeb7ae3eaea8..eb6d6f2d0f75 100644 --- a/drivers/gpu/drm/i915/display/intel_display_core.h +++ b/drivers/gpu/drm/i915/display/intel_display_core.h @@ -80,7 +80,7 @@ struct intel_display_funcs { /* functions used for watermark calcs for display. */ struct intel_wm_funcs { /* update_wm is for legacy wm management */ - void (*update_wm)(struct drm_i915_private *dev_priv); + void (*update_wm)(struct intel_display *display); int (*compute_watermarks)(struct intel_atomic_state *state, struct intel_crtc *crtc); void (*initial_watermarks)(struct intel_atomic_state *state, @@ -90,8 +90,8 @@ struct intel_wm_funcs { void (*optimize_watermarks)(struct intel_atomic_state *state, struct intel_crtc *crtc); int (*compute_global_watermarks)(struct intel_atomic_state *state); - void (*get_hw_state)(struct drm_i915_private *i915); - void (*sanitize)(struct drm_i915_private *i915); + void (*get_hw_state)(struct intel_display *display); + void (*sanitize)(struct intel_display *display); }; struct intel_audio_state { @@ -160,6 +160,7 @@ struct intel_hotplug { struct { unsigned long last_jiffies; int count; + int blocked_count; enum { HPD_ENABLED = 0, HPD_DISABLED = 1, @@ -170,8 +171,8 @@ struct intel_hotplug { u32 retry_bits; struct delayed_work reenable_work; - u32 long_port_mask; - u32 short_port_mask; + u32 long_hpd_pin_mask; + u32 short_hpd_pin_mask; struct work_struct dig_port_work; struct work_struct poll_init_work; diff --git a/drivers/gpu/drm/i915/display/intel_display_debugfs.c b/drivers/gpu/drm/i915/display/intel_display_debugfs.c index fdedf65bee53..4c208fdb9137 100644 --- a/drivers/gpu/drm/i915/display/intel_display_debugfs.c +++ b/drivers/gpu/drm/i915/display/intel_display_debugfs.c @@ -24,6 +24,7 @@ #include "intel_display_debugfs_params.h" #include "intel_display_power.h" #include "intel_display_power_well.h" +#include "intel_display_rpm.h" #include "intel_display_types.h" #include "intel_dmc.h" #include "intel_dp.h" @@ -52,8 +53,11 @@ static struct intel_display *node_to_intel_display(struct drm_info_node *node) static int intel_display_caps(struct seq_file *m, void *data) { struct intel_display *display = node_to_intel_display(m->private); + struct drm_i915_private *i915 = to_i915(display->drm); struct drm_printer p = drm_seq_file_printer(m); + drm_printf(&p, "PCH type: %d\n", INTEL_PCH_TYPE(i915)); + intel_display_device_info_print(DISPLAY_INFO(display), DISPLAY_RUNTIME_INFO(display), &p); intel_display_params_dump(&display->params, display->drm->driver->name, &p); @@ -580,13 +584,12 @@ static void intel_crtc_info(struct seq_file *m, struct intel_crtc *crtc) static int i915_display_info(struct seq_file *m, void *unused) { struct intel_display *display = node_to_intel_display(m->private); - struct drm_i915_private *dev_priv = to_i915(display->drm); struct intel_crtc *crtc; struct drm_connector *connector; struct drm_connector_list_iter conn_iter; - intel_wakeref_t wakeref; + struct ref_tracker *wakeref; - wakeref = intel_runtime_pm_get(&dev_priv->runtime_pm); + wakeref = intel_display_rpm_get(display); drm_modeset_lock_all(display->drm); @@ -605,18 +608,7 @@ static int i915_display_info(struct seq_file *m, void *unused) drm_modeset_unlock_all(display->drm); - intel_runtime_pm_put(&dev_priv->runtime_pm, wakeref); - - return 0; -} - -static int i915_display_capabilities(struct seq_file *m, void *unused) -{ - struct intel_display *display = node_to_intel_display(m->private); - struct drm_printer p = drm_seq_file_printer(m); - - intel_display_device_info_print(DISPLAY_INFO(display), - DISPLAY_RUNTIME_INFO(display), &p); + intel_display_rpm_put(display, wakeref); return 0; } @@ -690,14 +682,11 @@ static bool intel_lpsp_power_well_enabled(struct intel_display *display, enum i915_power_well_id power_well_id) { - struct drm_i915_private *i915 = to_i915(display->drm); - intel_wakeref_t wakeref; bool is_enabled; - wakeref = intel_runtime_pm_get(&i915->runtime_pm); - is_enabled = intel_display_power_well_is_enabled(display, - power_well_id); - intel_runtime_pm_put(&i915->runtime_pm, wakeref); + with_intel_display_rpm(display) + is_enabled = intel_display_power_well_is_enabled(display, + power_well_id); return is_enabled; } @@ -820,7 +809,6 @@ static const struct drm_info_list intel_display_debugfs_list[] = { {"i915_gem_framebuffer", i915_gem_framebuffer_info, 0}, {"i915_power_domain_info", i915_power_domain_info, 0}, {"i915_display_info", i915_display_info, 0}, - {"i915_display_capabilities", i915_display_capabilities, 0}, {"i915_shared_dplls_info", i915_shared_dplls_info, 0}, {"i915_dp_mst_info", i915_dp_mst_info, 0}, {"i915_ddb_info", i915_ddb_info, 0}, @@ -829,7 +817,6 @@ static const struct drm_info_list intel_display_debugfs_list[] = { void intel_display_debugfs_register(struct intel_display *display) { - struct drm_i915_private *i915 = to_i915(display->drm); struct drm_minor *minor = display->drm->primary; debugfs_create_file("i915_fifo_underrun_reset", 0644, minor->debugfs_root, @@ -844,10 +831,10 @@ void intel_display_debugfs_register(struct intel_display *display) intel_dmc_debugfs_register(display); intel_dp_test_debugfs_register(display); intel_fbc_debugfs_register(display); - intel_hpd_debugfs_register(i915); + intel_hpd_debugfs_register(display); intel_opregion_debugfs_register(display); intel_psr_debugfs_register(display); - intel_wm_debugfs_register(i915); + intel_wm_debugfs_register(display); intel_display_debugfs_params(display); } diff --git a/drivers/gpu/drm/i915/display/intel_display_device.h b/drivers/gpu/drm/i915/display/intel_display_device.h index 717286981687..368b0d3417c2 100644 --- a/drivers/gpu/drm/i915/display/intel_display_device.h +++ b/drivers/gpu/drm/i915/display/intel_display_device.h @@ -143,9 +143,11 @@ struct intel_display_platforms { #define HAS_4TILE(__display) ((__display)->platform.dg2 || DISPLAY_VER(__display) >= 14) #define HAS_ASYNC_FLIPS(__display) (DISPLAY_VER(__display) >= 5) +#define HAS_AS_SDP(__display) (DISPLAY_VER(__display) >= 13) #define HAS_BIGJOINER(__display) (DISPLAY_VER(__display) >= 11 && HAS_DSC(__display)) #define HAS_CDCLK_CRAWL(__display) (DISPLAY_INFO(__display)->has_cdclk_crawl) #define HAS_CDCLK_SQUASH(__display) (DISPLAY_INFO(__display)->has_cdclk_squash) +#define HAS_CMRR(__display) (DISPLAY_VER(__display) >= 20) #define HAS_CMTG(__display) (!(__display)->platform.dg2 && DISPLAY_VER(__display) >= 13) #define HAS_CUR_FBC(__display) (!HAS_GMCH(__display) && IS_DISPLAY_VER(__display, 7, 13)) #define HAS_D12_PLANE_MINIMIZATION(__display) ((__display)->platform.rocketlake || (__display)->platform.alderlake_s) @@ -156,9 +158,9 @@ struct intel_display_platforms { #define HAS_DMC_WAKELOCK(__display) (DISPLAY_VER(__display) >= 20) #define HAS_DOUBLE_BUFFERED_M_N(__display) (DISPLAY_VER(__display) >= 9 || (__display)->platform.broadwell) #define HAS_DOUBLE_WIDE(__display) (DISPLAY_VER(__display) < 4) -#define HAS_DP_MST(__display) (DISPLAY_INFO(__display)->has_dp_mst) #define HAS_DP20(__display) ((__display)->platform.dg2 || DISPLAY_VER(__display) >= 14) #define HAS_DPT(__display) (DISPLAY_VER(__display) >= 13) +#define HAS_DP_MST(__display) (DISPLAY_INFO(__display)->has_dp_mst) #define HAS_DSB(__display) (DISPLAY_INFO(__display)->has_dsb) #define HAS_DSC(__display) (DISPLAY_RUNTIME_INFO(__display)->has_dsc) #define HAS_DSC_MST(__display) (DISPLAY_VER(__display) >= 12 && HAS_DSC(__display)) @@ -166,9 +168,10 @@ struct intel_display_platforms { #define HAS_FBC_DIRTY_RECT(__display) (DISPLAY_VER(__display) >= 30) #define HAS_FPGA_DBG_UNCLAIMED(__display) (DISPLAY_INFO(__display)->has_fpga_dbg) #define HAS_FW_BLC(__display) (DISPLAY_VER(__display) >= 3) -#define HAS_GMBUS_IRQ(__display) (DISPLAY_VER(__display) >= 4) #define HAS_GMBUS_BURST_READ(__display) (DISPLAY_VER(__display) >= 10 || (__display)->platform.kabylake) +#define HAS_GMBUS_IRQ(__display) (DISPLAY_VER(__display) >= 4) #define HAS_GMCH(__display) (DISPLAY_INFO(__display)->has_gmch) +#define HAS_HOTPLUG(__display) (DISPLAY_INFO(__display)->has_hotplug) #define HAS_HW_SAGV_WM(__display) (DISPLAY_VER(__display) >= 13 && !(__display)->platform.dgfx) #define HAS_IPC(__display) (DISPLAY_INFO(__display)->has_ipc) #define HAS_IPS(__display) ((__display)->platform.haswell_ult || (__display)->platform.broadwell) @@ -189,10 +192,7 @@ struct intel_display_platforms { ((__display)->platform.dgfx && DISPLAY_VER(__display) == 14)) && \ HAS_DSC(__display)) #define HAS_VRR(__display) (DISPLAY_VER(__display) >= 11) -#define HAS_AS_SDP(__display) (DISPLAY_VER(__display) >= 13) -#define HAS_CMRR(__display) (DISPLAY_VER(__display) >= 20) #define INTEL_NUM_PIPES(__display) (hweight8(DISPLAY_RUNTIME_INFO(__display)->pipe_mask)) -#define I915_HAS_HOTPLUG(__display) (DISPLAY_INFO(__display)->has_hotplug) #define OVERLAY_NEEDS_PHYSICAL(__display) (DISPLAY_INFO(__display)->overlay_needs_physical) #define SUPPORTS_TV(__display) (DISPLAY_INFO(__display)->supports_tv) diff --git a/drivers/gpu/drm/i915/display/intel_display_driver.c b/drivers/gpu/drm/i915/display/intel_display_driver.c index 31740a677dd8..efee8925987e 100644 --- a/drivers/gpu/drm/i915/display/intel_display_driver.c +++ b/drivers/gpu/drm/i915/display/intel_display_driver.c @@ -82,7 +82,6 @@ bool intel_display_driver_probe_defer(struct pci_dev *pdev) void intel_display_driver_init_hw(struct intel_display *display) { - struct drm_i915_private *i915 = to_i915(display->drm); struct intel_cdclk_state *cdclk_state; if (!HAS_DISPLAY(display)) @@ -94,7 +93,7 @@ void intel_display_driver_init_hw(struct intel_display *display) intel_cdclk_dump_config(display, &display->cdclk.hw, "Current CDCLK"); cdclk_state->logical = cdclk_state->actual = display->cdclk.hw; - intel_display_wa_apply(i915); + intel_display_wa_apply(display); } static const struct drm_mode_config_funcs intel_mode_funcs = { @@ -181,8 +180,6 @@ static void intel_plane_possible_crtcs_init(struct intel_display *display) void intel_display_driver_early_probe(struct intel_display *display) { - struct drm_i915_private *i915 = to_i915(display->drm); - if (!HAS_DISPLAY(display)) return; @@ -193,12 +190,12 @@ void intel_display_driver_early_probe(struct intel_display *display) mutex_init(&display->pps.mutex); mutex_init(&display->hdcp.hdcp_mutex); - intel_display_irq_init(i915); + intel_display_irq_init(display); intel_dkl_phy_init(display); intel_color_init_hooks(display); intel_init_cdclk_hooks(display); intel_audio_hooks_init(display); - intel_dpll_init_clock_hook(i915); + intel_dpll_init_clock_hook(display); intel_init_display_hooks(display); intel_fdi_init_hook(display); intel_dmc_wl_init(display); @@ -255,11 +252,11 @@ int intel_display_driver_probe_noirq(struct intel_display *display) if (ret) goto cleanup_vga_client_pw_domain_dmc; - ret = intel_dbuf_init(i915); + ret = intel_dbuf_init(display); if (ret) goto cleanup_vga_client_pw_domain_dmc; - ret = intel_bw_init(i915); + ret = intel_bw_init(display); if (ret) goto cleanup_vga_client_pw_domain_dmc; @@ -315,11 +312,9 @@ static void set_display_access(struct intel_display *display, */ void intel_display_driver_enable_user_access(struct intel_display *display) { - struct drm_i915_private *i915 = to_i915(display->drm); - set_display_access(display, true, NULL); - intel_hpd_enable_detection_work(i915); + intel_hpd_enable_detection_work(display); } /** @@ -341,9 +336,7 @@ void intel_display_driver_enable_user_access(struct intel_display *display) */ void intel_display_driver_disable_user_access(struct intel_display *display) { - struct drm_i915_private *i915 = to_i915(display->drm); - - intel_hpd_disable_detection_work(i915); + intel_hpd_disable_detection_work(display); set_display_access(display, false, current); } @@ -429,7 +422,7 @@ int intel_display_driver_probe_nogem(struct intel_display *display) if (!HAS_DISPLAY(display)) return 0; - intel_wm_init(i915); + intel_wm_init(display); intel_panel_sanitize_ssc(display); @@ -483,7 +476,7 @@ int intel_display_driver_probe_nogem(struct intel_display *display) * since the watermark calculation done here will use pstate->fb. */ if (!HAS_GMCH(display)) - ilk_wm_sanitize(i915); + ilk_wm_sanitize(display); return 0; @@ -498,7 +491,6 @@ err_mode_config: /* part #3: call after gem init */ int intel_display_driver_probe(struct intel_display *display) { - struct drm_i915_private *i915 = to_i915(display->drm); int ret; if (!HAS_DISPLAY(display)) @@ -524,9 +516,9 @@ int intel_display_driver_probe(struct intel_display *display) intel_overlay_setup(display); /* Only enable hotplug handling once the fbdev is fully set up. */ - intel_hpd_init(i915); + intel_hpd_init(display); - skl_watermark_ipc_init(i915); + skl_watermark_ipc_init(display); return 0; } @@ -558,7 +550,7 @@ void intel_display_driver_register(struct intel_display *display) * fbdev->async_cookie. */ drm_kms_helper_poll_init(display->drm); - intel_hpd_poll_disable(i915); + intel_hpd_poll_disable(display); intel_fbdev_setup(i915); @@ -600,7 +592,7 @@ void intel_display_driver_remove_noirq(struct intel_display *display) * Due to the hpd irq storm handling the hotplug work can re-arm the * poll handlers. Hence disable polling after hpd handling is shut down. */ - intel_hpd_poll_fini(i915); + intel_hpd_poll_fini(display); intel_unregister_dsm_handler(); @@ -733,7 +725,6 @@ __intel_display_driver_resume(struct intel_display *display, void intel_display_driver_resume(struct intel_display *display) { - struct drm_i915_private *i915 = to_i915(display->drm); struct drm_atomic_state *state = display->restore.modeset_state; struct drm_modeset_acquire_ctx ctx; int ret; @@ -761,7 +752,7 @@ void intel_display_driver_resume(struct intel_display *display) if (!ret) ret = __intel_display_driver_resume(display, state, &ctx); - skl_watermark_ipc_update(i915); + skl_watermark_ipc_update(display); drm_modeset_drop_locks(&ctx); drm_modeset_acquire_fini(&ctx); diff --git a/drivers/gpu/drm/i915/display/intel_display_irq.c b/drivers/gpu/drm/i915/display/intel_display_irq.c index aa23bb817805..d2a35e3630b1 100644 --- a/drivers/gpu/drm/i915/display/intel_display_irq.c +++ b/drivers/gpu/drm/i915/display/intel_display_irq.c @@ -14,6 +14,7 @@ #include "intel_crtc.h" #include "intel_de.h" #include "intel_display_irq.h" +#include "intel_display_rpm.h" #include "intel_display_trace.h" #include "intel_display_types.h" #include "intel_dmc_wl.h" @@ -115,9 +116,8 @@ static void intel_pipe_fault_irq_handler(struct intel_display *display, } static void -intel_handle_vblank(struct drm_i915_private *dev_priv, enum pipe pipe) +intel_handle_vblank(struct intel_display *display, enum pipe pipe) { - struct intel_display *display = &dev_priv->display; struct intel_crtc *crtc = intel_crtc_for_pipe(display, pipe); drm_crtc_handle_vblank(&crtc->base); @@ -125,59 +125,59 @@ intel_handle_vblank(struct drm_i915_private *dev_priv, enum pipe pipe) /** * ilk_update_display_irq - update DEIMR - * @dev_priv: driver private + * @display: display device * @interrupt_mask: mask of interrupt bits to update * @enabled_irq_mask: mask of interrupt bits to enable */ -void ilk_update_display_irq(struct drm_i915_private *dev_priv, +void ilk_update_display_irq(struct intel_display *display, u32 interrupt_mask, u32 enabled_irq_mask) { - struct intel_display *display = &dev_priv->display; + struct drm_i915_private *dev_priv = to_i915(display->drm); u32 new_val; lockdep_assert_held(&dev_priv->irq_lock); - drm_WARN_ON(&dev_priv->drm, enabled_irq_mask & ~interrupt_mask); + drm_WARN_ON(display->drm, enabled_irq_mask & ~interrupt_mask); new_val = dev_priv->irq_mask; new_val &= ~interrupt_mask; new_val |= (~enabled_irq_mask & interrupt_mask); if (new_val != dev_priv->irq_mask && - !drm_WARN_ON(&dev_priv->drm, !intel_irqs_enabled(dev_priv))) { + !drm_WARN_ON(display->drm, !intel_irqs_enabled(dev_priv))) { dev_priv->irq_mask = new_val; intel_de_write(display, DEIMR, dev_priv->irq_mask); intel_de_posting_read(display, DEIMR); } } -void ilk_enable_display_irq(struct drm_i915_private *i915, u32 bits) +void ilk_enable_display_irq(struct intel_display *display, u32 bits) { - ilk_update_display_irq(i915, bits, bits); + ilk_update_display_irq(display, bits, bits); } -void ilk_disable_display_irq(struct drm_i915_private *i915, u32 bits) +void ilk_disable_display_irq(struct intel_display *display, u32 bits) { - ilk_update_display_irq(i915, bits, 0); + ilk_update_display_irq(display, bits, 0); } /** * bdw_update_port_irq - update DE port interrupt - * @dev_priv: driver private + * @display: display device * @interrupt_mask: mask of interrupt bits to update * @enabled_irq_mask: mask of interrupt bits to enable */ -void bdw_update_port_irq(struct drm_i915_private *dev_priv, +void bdw_update_port_irq(struct intel_display *display, u32 interrupt_mask, u32 enabled_irq_mask) { - struct intel_display *display = &dev_priv->display; + struct drm_i915_private *dev_priv = to_i915(display->drm); u32 new_val; u32 old_val; lockdep_assert_held(&dev_priv->irq_lock); - drm_WARN_ON(&dev_priv->drm, enabled_irq_mask & ~interrupt_mask); + drm_WARN_ON(display->drm, enabled_irq_mask & ~interrupt_mask); - if (drm_WARN_ON(&dev_priv->drm, !intel_irqs_enabled(dev_priv))) + if (drm_WARN_ON(display->drm, !intel_irqs_enabled(dev_priv))) return; old_val = intel_de_read(display, GEN8_DE_PORT_IMR); @@ -194,83 +194,83 @@ void bdw_update_port_irq(struct drm_i915_private *dev_priv, /** * bdw_update_pipe_irq - update DE pipe interrupt - * @dev_priv: driver private + * @display: display device * @pipe: pipe whose interrupt to update * @interrupt_mask: mask of interrupt bits to update * @enabled_irq_mask: mask of interrupt bits to enable */ -static void bdw_update_pipe_irq(struct drm_i915_private *dev_priv, +static void bdw_update_pipe_irq(struct intel_display *display, enum pipe pipe, u32 interrupt_mask, u32 enabled_irq_mask) { - struct intel_display *display = &dev_priv->display; + struct drm_i915_private *dev_priv = to_i915(display->drm); u32 new_val; lockdep_assert_held(&dev_priv->irq_lock); - drm_WARN_ON(&dev_priv->drm, enabled_irq_mask & ~interrupt_mask); + drm_WARN_ON(display->drm, enabled_irq_mask & ~interrupt_mask); - if (drm_WARN_ON(&dev_priv->drm, !intel_irqs_enabled(dev_priv))) + if (drm_WARN_ON(display->drm, !intel_irqs_enabled(dev_priv))) return; - new_val = dev_priv->display.irq.de_irq_mask[pipe]; + new_val = display->irq.de_irq_mask[pipe]; new_val &= ~interrupt_mask; new_val |= (~enabled_irq_mask & interrupt_mask); - if (new_val != dev_priv->display.irq.de_irq_mask[pipe]) { - dev_priv->display.irq.de_irq_mask[pipe] = new_val; + if (new_val != display->irq.de_irq_mask[pipe]) { + display->irq.de_irq_mask[pipe] = new_val; intel_de_write(display, GEN8_DE_PIPE_IMR(pipe), display->irq.de_irq_mask[pipe]); intel_de_posting_read(display, GEN8_DE_PIPE_IMR(pipe)); } } -void bdw_enable_pipe_irq(struct drm_i915_private *i915, +void bdw_enable_pipe_irq(struct intel_display *display, enum pipe pipe, u32 bits) { - bdw_update_pipe_irq(i915, pipe, bits, bits); + bdw_update_pipe_irq(display, pipe, bits, bits); } -void bdw_disable_pipe_irq(struct drm_i915_private *i915, +void bdw_disable_pipe_irq(struct intel_display *display, enum pipe pipe, u32 bits) { - bdw_update_pipe_irq(i915, pipe, bits, 0); + bdw_update_pipe_irq(display, pipe, bits, 0); } /** * ibx_display_interrupt_update - update SDEIMR - * @dev_priv: driver private + * @display: display device * @interrupt_mask: mask of interrupt bits to update * @enabled_irq_mask: mask of interrupt bits to enable */ -void ibx_display_interrupt_update(struct drm_i915_private *dev_priv, +void ibx_display_interrupt_update(struct intel_display *display, u32 interrupt_mask, u32 enabled_irq_mask) { - struct intel_display *display = &dev_priv->display; + struct drm_i915_private *dev_priv = to_i915(display->drm); u32 sdeimr = intel_de_read(display, SDEIMR); sdeimr &= ~interrupt_mask; sdeimr |= (~enabled_irq_mask & interrupt_mask); - drm_WARN_ON(&dev_priv->drm, enabled_irq_mask & ~interrupt_mask); + drm_WARN_ON(display->drm, enabled_irq_mask & ~interrupt_mask); lockdep_assert_held(&dev_priv->irq_lock); - if (drm_WARN_ON(&dev_priv->drm, !intel_irqs_enabled(dev_priv))) + if (drm_WARN_ON(display->drm, !intel_irqs_enabled(dev_priv))) return; intel_de_write(display, SDEIMR, sdeimr); intel_de_posting_read(display, SDEIMR); } -void ibx_enable_display_interrupt(struct drm_i915_private *i915, u32 bits) +void ibx_enable_display_interrupt(struct intel_display *display, u32 bits) { - ibx_display_interrupt_update(i915, bits, bits); + ibx_display_interrupt_update(display, bits, bits); } -void ibx_disable_display_interrupt(struct drm_i915_private *i915, u32 bits) +void ibx_disable_display_interrupt(struct intel_display *display, u32 bits) { - ibx_display_interrupt_update(i915, bits, 0); + ibx_display_interrupt_update(display, bits, 0); } u32 i915_pipestat_enable_mask(struct intel_display *display, @@ -318,48 +318,48 @@ out: return enable_mask; } -void i915_enable_pipestat(struct drm_i915_private *dev_priv, +void i915_enable_pipestat(struct intel_display *display, enum pipe pipe, u32 status_mask) { - struct intel_display *display = &dev_priv->display; - i915_reg_t reg = PIPESTAT(dev_priv, pipe); + struct drm_i915_private *dev_priv = to_i915(display->drm); + i915_reg_t reg = PIPESTAT(display, pipe); u32 enable_mask; - drm_WARN_ONCE(&dev_priv->drm, status_mask & ~PIPESTAT_INT_STATUS_MASK, + drm_WARN_ONCE(display->drm, status_mask & ~PIPESTAT_INT_STATUS_MASK, "pipe %c: status_mask=0x%x\n", pipe_name(pipe), status_mask); lockdep_assert_held(&dev_priv->irq_lock); - drm_WARN_ON(&dev_priv->drm, !intel_irqs_enabled(dev_priv)); + drm_WARN_ON(display->drm, !intel_irqs_enabled(dev_priv)); - if ((dev_priv->display.irq.pipestat_irq_mask[pipe] & status_mask) == status_mask) + if ((display->irq.pipestat_irq_mask[pipe] & status_mask) == status_mask) return; - dev_priv->display.irq.pipestat_irq_mask[pipe] |= status_mask; + display->irq.pipestat_irq_mask[pipe] |= status_mask; enable_mask = i915_pipestat_enable_mask(display, pipe); intel_de_write(display, reg, enable_mask | status_mask); intel_de_posting_read(display, reg); } -void i915_disable_pipestat(struct drm_i915_private *dev_priv, +void i915_disable_pipestat(struct intel_display *display, enum pipe pipe, u32 status_mask) { - struct intel_display *display = &dev_priv->display; - i915_reg_t reg = PIPESTAT(dev_priv, pipe); + struct drm_i915_private *dev_priv = to_i915(display->drm); + i915_reg_t reg = PIPESTAT(display, pipe); u32 enable_mask; - drm_WARN_ONCE(&dev_priv->drm, status_mask & ~PIPESTAT_INT_STATUS_MASK, + drm_WARN_ONCE(display->drm, status_mask & ~PIPESTAT_INT_STATUS_MASK, "pipe %c: status_mask=0x%x\n", pipe_name(pipe), status_mask); lockdep_assert_held(&dev_priv->irq_lock); - drm_WARN_ON(&dev_priv->drm, !intel_irqs_enabled(dev_priv)); + drm_WARN_ON(display->drm, !intel_irqs_enabled(dev_priv)); - if ((dev_priv->display.irq.pipestat_irq_mask[pipe] & status_mask) == 0) + if ((display->irq.pipestat_irq_mask[pipe] & status_mask) == 0) return; - dev_priv->display.irq.pipestat_irq_mask[pipe] &= ~status_mask; + display->irq.pipestat_irq_mask[pipe] &= ~status_mask; enable_mask = i915_pipestat_enable_mask(display, pipe); intel_de_write(display, reg, enable_mask | status_mask); @@ -368,24 +368,22 @@ void i915_disable_pipestat(struct drm_i915_private *dev_priv, static bool i915_has_legacy_blc_interrupt(struct intel_display *display) { - struct drm_i915_private *i915 = to_i915(display->drm); - - if (IS_I85X(i915)) + if (display->platform.i85x) return true; - if (IS_PINEVIEW(i915)) + if (display->platform.pineview) return true; - return IS_DISPLAY_VER(display, 3, 4) && IS_MOBILE(i915); + return IS_DISPLAY_VER(display, 3, 4) && display->platform.mobile; } /** * i915_enable_asle_pipestat - enable ASLE pipestat for OpRegion - * @dev_priv: i915 device private + * @display: display device */ -void i915_enable_asle_pipestat(struct drm_i915_private *dev_priv) +void i915_enable_asle_pipestat(struct intel_display *display) { - struct intel_display *display = &dev_priv->display; + struct drm_i915_private *dev_priv = to_i915(display->drm); if (!intel_opregion_asle_present(display)) return; @@ -395,22 +393,21 @@ void i915_enable_asle_pipestat(struct drm_i915_private *dev_priv) spin_lock_irq(&dev_priv->irq_lock); - i915_enable_pipestat(dev_priv, PIPE_B, PIPE_LEGACY_BLC_EVENT_STATUS); - if (DISPLAY_VER(dev_priv) >= 4) - i915_enable_pipestat(dev_priv, PIPE_A, + i915_enable_pipestat(display, PIPE_B, PIPE_LEGACY_BLC_EVENT_STATUS); + if (DISPLAY_VER(display) >= 4) + i915_enable_pipestat(display, PIPE_A, PIPE_LEGACY_BLC_EVENT_STATUS); spin_unlock_irq(&dev_priv->irq_lock); } #if IS_ENABLED(CONFIG_DEBUG_FS) -static void display_pipe_crc_irq_handler(struct drm_i915_private *dev_priv, +static void display_pipe_crc_irq_handler(struct intel_display *display, enum pipe pipe, u32 crc0, u32 crc1, u32 crc2, u32 crc3, u32 crc4) { - struct intel_display *display = &dev_priv->display; struct intel_crtc *crtc = intel_crtc_for_pipe(display, pipe); struct intel_pipe_crc *pipe_crc = &crtc->pipe_crc; u32 crcs[5] = { crc0, crc1, crc2, crc3, crc4 }; @@ -427,7 +424,7 @@ static void display_pipe_crc_irq_handler(struct drm_i915_private *dev_priv, * don't trust that one either. */ if (pipe_crc->skipped <= 0 || - (DISPLAY_VER(dev_priv) >= 8 && pipe_crc->skipped == 1)) { + (DISPLAY_VER(display) >= 8 && pipe_crc->skipped == 1)) { pipe_crc->skipped++; spin_unlock(&pipe_crc->lock); return; @@ -440,20 +437,19 @@ static void display_pipe_crc_irq_handler(struct drm_i915_private *dev_priv, } #else static inline void -display_pipe_crc_irq_handler(struct drm_i915_private *dev_priv, +display_pipe_crc_irq_handler(struct intel_display *display, enum pipe pipe, u32 crc0, u32 crc1, u32 crc2, u32 crc3, u32 crc4) {} #endif -static void flip_done_handler(struct drm_i915_private *i915, +static void flip_done_handler(struct intel_display *display, enum pipe pipe) { - struct intel_display *display = &i915->display; struct intel_crtc *crtc = intel_crtc_for_pipe(display, pipe); - spin_lock(&i915->drm.event_lock); + spin_lock(&display->drm->event_lock); if (crtc->flip_done_event) { trace_intel_crtc_flip_done(crtc); @@ -461,25 +457,21 @@ static void flip_done_handler(struct drm_i915_private *i915, crtc->flip_done_event = NULL; } - spin_unlock(&i915->drm.event_lock); + spin_unlock(&display->drm->event_lock); } -static void hsw_pipe_crc_irq_handler(struct drm_i915_private *dev_priv, +static void hsw_pipe_crc_irq_handler(struct intel_display *display, enum pipe pipe) { - struct intel_display *display = &dev_priv->display; - - display_pipe_crc_irq_handler(dev_priv, pipe, + display_pipe_crc_irq_handler(display, pipe, intel_de_read(display, PIPE_CRC_RES_HSW(pipe)), 0, 0, 0, 0); } -static void ivb_pipe_crc_irq_handler(struct drm_i915_private *dev_priv, +static void ivb_pipe_crc_irq_handler(struct intel_display *display, enum pipe pipe) { - struct intel_display *display = &dev_priv->display; - - display_pipe_crc_irq_handler(dev_priv, pipe, + display_pipe_crc_irq_handler(display, pipe, intel_de_read(display, PIPE_CRC_RES_1_IVB(pipe)), intel_de_read(display, PIPE_CRC_RES_2_IVB(pipe)), intel_de_read(display, PIPE_CRC_RES_3_IVB(pipe)), @@ -487,58 +479,56 @@ static void ivb_pipe_crc_irq_handler(struct drm_i915_private *dev_priv, intel_de_read(display, PIPE_CRC_RES_5_IVB(pipe))); } -static void i9xx_pipe_crc_irq_handler(struct drm_i915_private *dev_priv, +static void i9xx_pipe_crc_irq_handler(struct intel_display *display, enum pipe pipe) { - struct intel_display *display = &dev_priv->display; u32 res1, res2; - if (DISPLAY_VER(dev_priv) >= 3) - res1 = intel_de_read(display, PIPE_CRC_RES_RES1_I915(dev_priv, pipe)); + if (DISPLAY_VER(display) >= 3) + res1 = intel_de_read(display, PIPE_CRC_RES_RES1_I915(display, pipe)); else res1 = 0; - if (DISPLAY_VER(dev_priv) >= 5 || IS_G4X(dev_priv)) - res2 = intel_de_read(display, PIPE_CRC_RES_RES2_G4X(dev_priv, pipe)); + if (DISPLAY_VER(display) >= 5 || display->platform.g4x) + res2 = intel_de_read(display, PIPE_CRC_RES_RES2_G4X(display, pipe)); else res2 = 0; - display_pipe_crc_irq_handler(dev_priv, pipe, - intel_de_read(display, PIPE_CRC_RES_RED(dev_priv, pipe)), - intel_de_read(display, PIPE_CRC_RES_GREEN(dev_priv, pipe)), - intel_de_read(display, PIPE_CRC_RES_BLUE(dev_priv, pipe)), + display_pipe_crc_irq_handler(display, pipe, + intel_de_read(display, PIPE_CRC_RES_RED(display, pipe)), + intel_de_read(display, PIPE_CRC_RES_GREEN(display, pipe)), + intel_de_read(display, PIPE_CRC_RES_BLUE(display, pipe)), res1, res2); } -static void i9xx_pipestat_irq_reset(struct drm_i915_private *dev_priv) +static void i9xx_pipestat_irq_reset(struct intel_display *display) { - struct intel_display *display = &dev_priv->display; enum pipe pipe; - for_each_pipe(dev_priv, pipe) { + for_each_pipe(display, pipe) { intel_de_write(display, - PIPESTAT(dev_priv, pipe), + PIPESTAT(display, pipe), PIPESTAT_INT_STATUS_MASK | PIPE_FIFO_UNDERRUN_STATUS); - dev_priv->display.irq.pipestat_irq_mask[pipe] = 0; + display->irq.pipestat_irq_mask[pipe] = 0; } } -void i9xx_pipestat_irq_ack(struct drm_i915_private *dev_priv, +void i9xx_pipestat_irq_ack(struct intel_display *display, u32 iir, u32 pipe_stats[I915_MAX_PIPES]) { - struct intel_display *display = &dev_priv->display; + struct drm_i915_private *dev_priv = to_i915(display->drm); enum pipe pipe; spin_lock(&dev_priv->irq_lock); - if ((IS_VALLEYVIEW(dev_priv) || IS_CHERRYVIEW(dev_priv)) && - !dev_priv->display.irq.vlv_display_irqs_enabled) { + if ((display->platform.valleyview || display->platform.cherryview) && + !display->irq.vlv_display_irqs_enabled) { spin_unlock(&dev_priv->irq_lock); return; } - for_each_pipe(dev_priv, pipe) { + for_each_pipe(display, pipe) { i915_reg_t reg; u32 status_mask, enable_mask, iir_bit = 0; @@ -566,12 +556,12 @@ void i9xx_pipestat_irq_ack(struct drm_i915_private *dev_priv, break; } if (iir & iir_bit) - status_mask |= dev_priv->display.irq.pipestat_irq_mask[pipe]; + status_mask |= display->irq.pipestat_irq_mask[pipe]; if (!status_mask) continue; - reg = PIPESTAT(dev_priv, pipe); + reg = PIPESTAT(display, pipe); pipe_stats[pipe] = intel_de_read(display, reg) & status_mask; enable_mask = i915_pipestat_enable_mask(display, pipe); @@ -592,22 +582,21 @@ void i9xx_pipestat_irq_ack(struct drm_i915_private *dev_priv, spin_unlock(&dev_priv->irq_lock); } -void i915_pipestat_irq_handler(struct drm_i915_private *dev_priv, +void i915_pipestat_irq_handler(struct intel_display *display, u32 iir, u32 pipe_stats[I915_MAX_PIPES]) { - struct intel_display *display = &dev_priv->display; bool blc_event = false; enum pipe pipe; - for_each_pipe(dev_priv, pipe) { + for_each_pipe(display, pipe) { if (pipe_stats[pipe] & PIPE_VBLANK_INTERRUPT_STATUS) - intel_handle_vblank(dev_priv, pipe); + intel_handle_vblank(display, pipe); if (pipe_stats[pipe] & PIPE_LEGACY_BLC_EVENT_STATUS) blc_event = true; if (pipe_stats[pipe] & PIPE_CRC_DONE_INTERRUPT_STATUS) - i9xx_pipe_crc_irq_handler(dev_priv, pipe); + i9xx_pipe_crc_irq_handler(display, pipe); if (pipe_stats[pipe] & PIPE_FIFO_UNDERRUN_STATUS) intel_cpu_fifo_underrun_irq_handler(display, pipe); @@ -617,22 +606,21 @@ void i915_pipestat_irq_handler(struct drm_i915_private *dev_priv, intel_opregion_asle_intr(display); } -void i965_pipestat_irq_handler(struct drm_i915_private *dev_priv, +void i965_pipestat_irq_handler(struct intel_display *display, u32 iir, u32 pipe_stats[I915_MAX_PIPES]) { - struct intel_display *display = &dev_priv->display; bool blc_event = false; enum pipe pipe; - for_each_pipe(dev_priv, pipe) { + for_each_pipe(display, pipe) { if (pipe_stats[pipe] & PIPE_START_VBLANK_INTERRUPT_STATUS) - intel_handle_vblank(dev_priv, pipe); + intel_handle_vblank(display, pipe); if (pipe_stats[pipe] & PIPE_LEGACY_BLC_EVENT_STATUS) blc_event = true; if (pipe_stats[pipe] & PIPE_CRC_DONE_INTERRUPT_STATUS) - i9xx_pipe_crc_irq_handler(dev_priv, pipe); + i9xx_pipe_crc_irq_handler(display, pipe); if (pipe_stats[pipe] & PIPE_FIFO_UNDERRUN_STATUS) intel_cpu_fifo_underrun_irq_handler(display, pipe); @@ -645,21 +633,20 @@ void i965_pipestat_irq_handler(struct drm_i915_private *dev_priv, intel_gmbus_irq_handler(display); } -void valleyview_pipestat_irq_handler(struct drm_i915_private *dev_priv, +void valleyview_pipestat_irq_handler(struct intel_display *display, u32 pipe_stats[I915_MAX_PIPES]) { - struct intel_display *display = &dev_priv->display; enum pipe pipe; - for_each_pipe(dev_priv, pipe) { + for_each_pipe(display, pipe) { if (pipe_stats[pipe] & PIPE_START_VBLANK_INTERRUPT_STATUS) - intel_handle_vblank(dev_priv, pipe); + intel_handle_vblank(display, pipe); if (pipe_stats[pipe] & PLANE_FLIP_DONE_INT_STATUS_VLV) - flip_done_handler(dev_priv, pipe); + flip_done_handler(display, pipe); if (pipe_stats[pipe] & PIPE_CRC_DONE_INTERRUPT_STATUS) - i9xx_pipe_crc_irq_handler(dev_priv, pipe); + i9xx_pipe_crc_irq_handler(display, pipe); if (pipe_stats[pipe] & PIPE_FIFO_UNDERRUN_STATUS) intel_cpu_fifo_underrun_irq_handler(display, pipe); @@ -669,18 +656,17 @@ void valleyview_pipestat_irq_handler(struct drm_i915_private *dev_priv, intel_gmbus_irq_handler(display); } -static void ibx_irq_handler(struct drm_i915_private *dev_priv, u32 pch_iir) +static void ibx_irq_handler(struct intel_display *display, u32 pch_iir) { - struct intel_display *display = &dev_priv->display; enum pipe pipe; u32 hotplug_trigger = pch_iir & SDE_HOTPLUG_MASK; - ibx_hpd_irq_handler(dev_priv, hotplug_trigger); + ibx_hpd_irq_handler(display, hotplug_trigger); if (pch_iir & SDE_AUDIO_POWER_MASK) { int port = ffs((pch_iir & SDE_AUDIO_POWER_MASK) >> SDE_AUDIO_POWER_SHIFT); - drm_dbg(&dev_priv->drm, "PCH audio power change on port %d\n", + drm_dbg(display->drm, "PCH audio power change on port %d\n", port_name(port)); } @@ -691,26 +677,26 @@ static void ibx_irq_handler(struct drm_i915_private *dev_priv, u32 pch_iir) intel_gmbus_irq_handler(display); if (pch_iir & SDE_AUDIO_HDCP_MASK) - drm_dbg(&dev_priv->drm, "PCH HDCP audio interrupt\n"); + drm_dbg(display->drm, "PCH HDCP audio interrupt\n"); if (pch_iir & SDE_AUDIO_TRANS_MASK) - drm_dbg(&dev_priv->drm, "PCH transcoder audio interrupt\n"); + drm_dbg(display->drm, "PCH transcoder audio interrupt\n"); if (pch_iir & SDE_POISON) - drm_err(&dev_priv->drm, "PCH poison interrupt\n"); + drm_err(display->drm, "PCH poison interrupt\n"); if (pch_iir & SDE_FDI_MASK) { - for_each_pipe(dev_priv, pipe) - drm_dbg(&dev_priv->drm, " pipe %c FDI IIR: 0x%08x\n", + for_each_pipe(display, pipe) + drm_dbg(display->drm, " pipe %c FDI IIR: 0x%08x\n", pipe_name(pipe), intel_de_read(display, FDI_RX_IIR(pipe))); } if (pch_iir & (SDE_TRANSB_CRC_DONE | SDE_TRANSA_CRC_DONE)) - drm_dbg(&dev_priv->drm, "PCH transcoder CRC done interrupt\n"); + drm_dbg(display->drm, "PCH transcoder CRC done interrupt\n"); if (pch_iir & (SDE_TRANSB_CRC_ERR | SDE_TRANSA_CRC_ERR)) - drm_dbg(&dev_priv->drm, + drm_dbg(display->drm, "PCH transcoder CRC error interrupt\n"); if (pch_iir & SDE_TRANSA_FIFO_UNDER) @@ -753,14 +739,13 @@ static const struct pipe_fault_handler ivb_pipe_fault_handlers[] = { {} }; -static void ivb_err_int_handler(struct drm_i915_private *dev_priv) +static void ivb_err_int_handler(struct intel_display *display) { - struct intel_display *display = &dev_priv->display; u32 err_int = intel_de_read(display, GEN7_ERR_INT); enum pipe pipe; if (err_int & ERR_INT_POISON) - drm_err(&dev_priv->drm, "Poison interrupt\n"); + drm_err(display->drm, "Poison interrupt\n"); if (err_int & ERR_INT_INVALID_GTT_PTE) drm_err_ratelimited(display->drm, "Invalid GTT PTE\n"); @@ -768,17 +753,17 @@ static void ivb_err_int_handler(struct drm_i915_private *dev_priv) if (err_int & ERR_INT_INVALID_PTE_DATA) drm_err_ratelimited(display->drm, "Invalid PTE data\n"); - for_each_pipe(dev_priv, pipe) { + for_each_pipe(display, pipe) { u32 fault_errors; if (err_int & ERR_INT_FIFO_UNDERRUN(pipe)) intel_cpu_fifo_underrun_irq_handler(display, pipe); if (err_int & ERR_INT_PIPE_CRC_DONE(pipe)) { - if (IS_IVYBRIDGE(dev_priv)) - ivb_pipe_crc_irq_handler(dev_priv, pipe); + if (display->platform.ivybridge) + ivb_pipe_crc_irq_handler(display, pipe); else - hsw_pipe_crc_irq_handler(dev_priv, pipe); + hsw_pipe_crc_irq_handler(display, pipe); } fault_errors = err_int & ivb_err_int_pipe_fault_mask(pipe); @@ -790,34 +775,32 @@ static void ivb_err_int_handler(struct drm_i915_private *dev_priv) intel_de_write(display, GEN7_ERR_INT, err_int); } -static void cpt_serr_int_handler(struct drm_i915_private *dev_priv) +static void cpt_serr_int_handler(struct intel_display *display) { - struct intel_display *display = &dev_priv->display; u32 serr_int = intel_de_read(display, SERR_INT); enum pipe pipe; if (serr_int & SERR_INT_POISON) - drm_err(&dev_priv->drm, "PCH poison interrupt\n"); + drm_err(display->drm, "PCH poison interrupt\n"); - for_each_pipe(dev_priv, pipe) + for_each_pipe(display, pipe) if (serr_int & SERR_INT_TRANS_FIFO_UNDERRUN(pipe)) intel_pch_fifo_underrun_irq_handler(display, pipe); intel_de_write(display, SERR_INT, serr_int); } -static void cpt_irq_handler(struct drm_i915_private *dev_priv, u32 pch_iir) +static void cpt_irq_handler(struct intel_display *display, u32 pch_iir) { - struct intel_display *display = &dev_priv->display; enum pipe pipe; u32 hotplug_trigger = pch_iir & SDE_HOTPLUG_MASK_CPT; - ibx_hpd_irq_handler(dev_priv, hotplug_trigger); + ibx_hpd_irq_handler(display, hotplug_trigger); if (pch_iir & SDE_AUDIO_POWER_MASK_CPT) { int port = ffs((pch_iir & SDE_AUDIO_POWER_MASK_CPT) >> SDE_AUDIO_POWER_SHIFT_CPT); - drm_dbg(&dev_priv->drm, "PCH audio power change on port %c\n", + drm_dbg(display->drm, "PCH audio power change on port %c\n", port_name(port)); } @@ -828,20 +811,20 @@ static void cpt_irq_handler(struct drm_i915_private *dev_priv, u32 pch_iir) intel_gmbus_irq_handler(display); if (pch_iir & SDE_AUDIO_CP_REQ_CPT) - drm_dbg(&dev_priv->drm, "Audio CP request interrupt\n"); + drm_dbg(display->drm, "Audio CP request interrupt\n"); if (pch_iir & SDE_AUDIO_CP_CHG_CPT) - drm_dbg(&dev_priv->drm, "Audio CP change interrupt\n"); + drm_dbg(display->drm, "Audio CP change interrupt\n"); if (pch_iir & SDE_FDI_MASK_CPT) { - for_each_pipe(dev_priv, pipe) - drm_dbg(&dev_priv->drm, " pipe %c FDI IIR: 0x%08x\n", + for_each_pipe(display, pipe) + drm_dbg(display->drm, " pipe %c FDI IIR: 0x%08x\n", pipe_name(pipe), intel_de_read(display, FDI_RX_IIR(pipe))); } if (pch_iir & SDE_ERROR_CPT) - cpt_serr_int_handler(dev_priv); + cpt_serr_int_handler(display); } static u32 ilk_gtt_fault_pipe_fault_mask(enum pipe pipe) @@ -894,14 +877,14 @@ static void ilk_gtt_fault_irq_handler(struct intel_display *display) } } -void ilk_display_irq_handler(struct drm_i915_private *dev_priv, u32 de_iir) +void ilk_display_irq_handler(struct intel_display *display, u32 de_iir) { - struct intel_display *display = &dev_priv->display; + struct drm_i915_private *dev_priv = to_i915(display->drm); enum pipe pipe; u32 hotplug_trigger = de_iir & DE_DP_A_HOTPLUG; if (hotplug_trigger) - ilk_hpd_irq_handler(dev_priv, hotplug_trigger); + ilk_hpd_irq_handler(display, hotplug_trigger); if (de_iir & DE_AUX_CHANNEL_A) intel_dp_aux_irq_handler(display); @@ -910,23 +893,23 @@ void ilk_display_irq_handler(struct drm_i915_private *dev_priv, u32 de_iir) intel_opregion_asle_intr(display); if (de_iir & DE_POISON) - drm_err(&dev_priv->drm, "Poison interrupt\n"); + drm_err(display->drm, "Poison interrupt\n"); if (de_iir & DE_GTT_FAULT) ilk_gtt_fault_irq_handler(display); - for_each_pipe(dev_priv, pipe) { + for_each_pipe(display, pipe) { if (de_iir & DE_PIPE_VBLANK(pipe)) - intel_handle_vblank(dev_priv, pipe); + intel_handle_vblank(display, pipe); if (de_iir & DE_PLANE_FLIP_DONE(pipe)) - flip_done_handler(dev_priv, pipe); + flip_done_handler(display, pipe); if (de_iir & DE_PIPE_FIFO_UNDERRUN(pipe)) intel_cpu_fifo_underrun_irq_handler(display, pipe); if (de_iir & DE_PIPE_CRC_DONE(pipe)) - i9xx_pipe_crc_irq_handler(dev_priv, pipe); + i9xx_pipe_crc_irq_handler(display, pipe); } /* check event from PCH */ @@ -934,34 +917,34 @@ void ilk_display_irq_handler(struct drm_i915_private *dev_priv, u32 de_iir) u32 pch_iir = intel_de_read(display, SDEIIR); if (HAS_PCH_CPT(dev_priv)) - cpt_irq_handler(dev_priv, pch_iir); + cpt_irq_handler(display, pch_iir); else - ibx_irq_handler(dev_priv, pch_iir); + ibx_irq_handler(display, pch_iir); /* should clear PCH hotplug event before clear CPU irq */ intel_de_write(display, SDEIIR, pch_iir); } - if (DISPLAY_VER(dev_priv) == 5 && de_iir & DE_PCU_EVENT) + if (DISPLAY_VER(display) == 5 && de_iir & DE_PCU_EVENT) gen5_rps_irq_handler(&to_gt(dev_priv)->rps); } -void ivb_display_irq_handler(struct drm_i915_private *dev_priv, u32 de_iir) +void ivb_display_irq_handler(struct intel_display *display, u32 de_iir) { - struct intel_display *display = &dev_priv->display; + struct drm_i915_private *dev_priv = to_i915(display->drm); enum pipe pipe; u32 hotplug_trigger = de_iir & DE_DP_A_HOTPLUG_IVB; if (hotplug_trigger) - ilk_hpd_irq_handler(dev_priv, hotplug_trigger); + ilk_hpd_irq_handler(display, hotplug_trigger); if (de_iir & DE_ERR_INT_IVB) - ivb_err_int_handler(dev_priv); + ivb_err_int_handler(display); if (de_iir & DE_EDP_PSR_INT_HSW) { struct intel_encoder *encoder; - for_each_intel_encoder_with_psr(&dev_priv->drm, encoder) { + for_each_intel_encoder_with_psr(display->drm, encoder) { struct intel_dp *intel_dp = enc_to_intel_dp(encoder); u32 psr_iir; @@ -977,35 +960,35 @@ void ivb_display_irq_handler(struct drm_i915_private *dev_priv, u32 de_iir) if (de_iir & DE_GSE_IVB) intel_opregion_asle_intr(display); - for_each_pipe(dev_priv, pipe) { + for_each_pipe(display, pipe) { if (de_iir & DE_PIPE_VBLANK_IVB(pipe)) - intel_handle_vblank(dev_priv, pipe); + intel_handle_vblank(display, pipe); if (de_iir & DE_PLANE_FLIP_DONE_IVB(pipe)) - flip_done_handler(dev_priv, pipe); + flip_done_handler(display, pipe); } /* check event from PCH */ if (!HAS_PCH_NOP(dev_priv) && (de_iir & DE_PCH_EVENT_IVB)) { u32 pch_iir = intel_de_read(display, SDEIIR); - cpt_irq_handler(dev_priv, pch_iir); + cpt_irq_handler(display, pch_iir); /* clear PCH hotplug event before clear CPU irq */ intel_de_write(display, SDEIIR, pch_iir); } } -static u32 gen8_de_port_aux_mask(struct drm_i915_private *dev_priv) +static u32 gen8_de_port_aux_mask(struct intel_display *display) { u32 mask; - if (DISPLAY_VER(dev_priv) >= 20) + if (DISPLAY_VER(display) >= 20) return 0; - else if (DISPLAY_VER(dev_priv) >= 14) + else if (DISPLAY_VER(display) >= 14) return TGL_DE_PORT_AUX_DDIA | TGL_DE_PORT_AUX_DDIB; - else if (DISPLAY_VER(dev_priv) >= 13) + else if (DISPLAY_VER(display) >= 13) return TGL_DE_PORT_AUX_DDIA | TGL_DE_PORT_AUX_DDIB | TGL_DE_PORT_AUX_DDIC | @@ -1015,7 +998,7 @@ static u32 gen8_de_port_aux_mask(struct drm_i915_private *dev_priv) TGL_DE_PORT_AUX_USBC2 | TGL_DE_PORT_AUX_USBC3 | TGL_DE_PORT_AUX_USBC4; - else if (DISPLAY_VER(dev_priv) >= 12) + else if (DISPLAY_VER(display) >= 12) return TGL_DE_PORT_AUX_DDIA | TGL_DE_PORT_AUX_DDIB | TGL_DE_PORT_AUX_DDIC | @@ -1027,12 +1010,12 @@ static u32 gen8_de_port_aux_mask(struct drm_i915_private *dev_priv) TGL_DE_PORT_AUX_USBC6; mask = GEN8_AUX_CHANNEL_A; - if (DISPLAY_VER(dev_priv) >= 9) + if (DISPLAY_VER(display) >= 9) mask |= GEN9_AUX_CHANNEL_B | GEN9_AUX_CHANNEL_C | GEN9_AUX_CHANNEL_D; - if (DISPLAY_VER(dev_priv) == 11) { + if (DISPLAY_VER(display) == 11) { mask |= ICL_AUX_CHANNEL_F; mask |= ICL_AUX_CHANNEL_E; } @@ -1040,10 +1023,8 @@ static u32 gen8_de_port_aux_mask(struct drm_i915_private *dev_priv) return mask; } -static u32 gen8_de_pipe_fault_mask(struct drm_i915_private *dev_priv) +static u32 gen8_de_pipe_fault_mask(struct intel_display *display) { - struct intel_display *display = &dev_priv->display; - if (DISPLAY_VER(display) >= 14) return MTL_PIPEDMC_ATS_FAULT | MTL_PLANE_ATS_FAULT | @@ -1195,15 +1176,14 @@ gen8_pipe_fault_handlers(struct intel_display *display) return bdw_pipe_fault_handlers; } -static void intel_pmdemand_irq_handler(struct drm_i915_private *dev_priv) +static void intel_pmdemand_irq_handler(struct intel_display *display) { - wake_up_all(&dev_priv->display.pmdemand.waitqueue); + wake_up_all(&display->pmdemand.waitqueue); } static void -gen8_de_misc_irq_handler(struct drm_i915_private *dev_priv, u32 iir) +gen8_de_misc_irq_handler(struct intel_display *display, u32 iir) { - struct intel_display *display = &dev_priv->display; bool found = false; if (HAS_DBUF_OVERLAP_DETECTION(display)) { @@ -1213,20 +1193,20 @@ gen8_de_misc_irq_handler(struct drm_i915_private *dev_priv, u32 iir) } } - if (DISPLAY_VER(dev_priv) >= 14) { + if (DISPLAY_VER(display) >= 14) { if (iir & (XELPDP_PMDEMAND_RSP | XELPDP_PMDEMAND_RSPTOUT_ERR)) { if (iir & XELPDP_PMDEMAND_RSPTOUT_ERR) - drm_dbg(&dev_priv->drm, + drm_dbg(display->drm, "Error waiting for Punit PM Demand Response\n"); - intel_pmdemand_irq_handler(dev_priv); + intel_pmdemand_irq_handler(display); found = true; } if (iir & XELPDP_RM_TIMEOUT) { u32 val = intel_de_read(display, RM_TIMEOUT_REG_CAPTURE); - drm_warn(&dev_priv->drm, "Register Access Timeout = 0x%x\n", val); + drm_warn(display->drm, "Register Access Timeout = 0x%x\n", val); found = true; } } else if (iir & GEN8_DE_MISC_GSE) { @@ -1239,12 +1219,12 @@ gen8_de_misc_irq_handler(struct drm_i915_private *dev_priv, u32 iir) u32 psr_iir; i915_reg_t iir_reg; - for_each_intel_encoder_with_psr(&dev_priv->drm, encoder) { + for_each_intel_encoder_with_psr(display->drm, encoder) { struct intel_dp *intel_dp = enc_to_intel_dp(encoder); - if (DISPLAY_VER(dev_priv) >= 12) - iir_reg = TRANS_PSR_IIR(dev_priv, - intel_dp->psr.transcoder); + if (DISPLAY_VER(display) >= 12) + iir_reg = TRANS_PSR_IIR(display, + intel_dp->psr.transcoder); else iir_reg = EDP_PSR_IIR; @@ -1256,19 +1236,18 @@ gen8_de_misc_irq_handler(struct drm_i915_private *dev_priv, u32 iir) intel_psr_irq_handler(intel_dp, psr_iir); /* prior GEN12 only have one EDP PSR */ - if (DISPLAY_VER(dev_priv) < 12) + if (DISPLAY_VER(display) < 12) break; } } if (!found) - drm_err(&dev_priv->drm, "Unexpected DE Misc interrupt: 0x%08x\n", iir); + drm_err(display->drm, "Unexpected DE Misc interrupt: 0x%08x\n", iir); } -static void gen11_dsi_te_interrupt_handler(struct drm_i915_private *dev_priv, +static void gen11_dsi_te_interrupt_handler(struct intel_display *display, u32 te_trigger) { - struct intel_display *display = &dev_priv->display; enum pipe pipe = INVALID_PIPE; enum transcoder dsi_trans; enum port port; @@ -1278,7 +1257,7 @@ static void gen11_dsi_te_interrupt_handler(struct drm_i915_private *dev_priv, * Incase of dual link, TE comes from DSI_1 * this is to check if dual link is enabled */ - val = intel_de_read(display, TRANS_DDI_FUNC_CTL2(dev_priv, TRANSCODER_DSI_0)); + val = intel_de_read(display, TRANS_DDI_FUNC_CTL2(display, TRANSCODER_DSI_0)); val &= PORT_SYNC_MODE_ENABLE; /* @@ -1294,12 +1273,12 @@ static void gen11_dsi_te_interrupt_handler(struct drm_i915_private *dev_priv, val = val & OP_MODE_MASK; if (val != CMD_MODE_NO_GATE && val != CMD_MODE_TE_GATE) { - drm_err(&dev_priv->drm, "DSI trancoder not configured in command mode\n"); + drm_err(display->drm, "DSI trancoder not configured in command mode\n"); return; } /* Get PIPE for handling VBLANK event */ - val = intel_de_read(display, TRANS_DDI_FUNC_CTL(dev_priv, dsi_trans)); + val = intel_de_read(display, TRANS_DDI_FUNC_CTL(display, dsi_trans)); switch (val & TRANS_DDI_EDP_INPUT_MASK) { case TRANS_DDI_EDP_INPUT_A_ON: pipe = PIPE_A; @@ -1311,28 +1290,28 @@ static void gen11_dsi_te_interrupt_handler(struct drm_i915_private *dev_priv, pipe = PIPE_C; break; default: - drm_err(&dev_priv->drm, "Invalid PIPE\n"); + drm_err(display->drm, "Invalid PIPE\n"); return; } - intel_handle_vblank(dev_priv, pipe); + intel_handle_vblank(display, pipe); /* clear TE in dsi IIR */ port = (te_trigger & DSI1_TE) ? PORT_B : PORT_A; intel_de_rmw(display, DSI_INTR_IDENT_REG(port), 0, 0); } -static u32 gen8_de_pipe_flip_done_mask(struct drm_i915_private *i915) +static u32 gen8_de_pipe_flip_done_mask(struct intel_display *display) { - if (DISPLAY_VER(i915) >= 9) + if (DISPLAY_VER(display) >= 9) return GEN9_PIPE_PLANE1_FLIP_DONE; else return GEN8_PIPE_PRIMARY_FLIP_DONE; } -static void gen8_read_and_ack_pch_irqs(struct drm_i915_private *i915, u32 *pch_iir, u32 *pica_iir) +static void gen8_read_and_ack_pch_irqs(struct intel_display *display, u32 *pch_iir, u32 *pica_iir) { - struct intel_display *display = &i915->display; + struct drm_i915_private *i915 = to_i915(display->drm); u32 pica_ier = 0; *pica_iir = 0; @@ -1346,7 +1325,7 @@ static void gen8_read_and_ack_pch_irqs(struct drm_i915_private *i915, u32 *pch_i * their flags both in the PICA and SDE IIR. */ if (*pch_iir & SDE_PICAINTERRUPT) { - drm_WARN_ON(&i915->drm, INTEL_PCH_TYPE(i915) < PCH_MTL); + drm_WARN_ON(display->drm, INTEL_PCH_TYPE(i915) < PCH_MTL); pica_ier = intel_de_rmw(display, PICAINTERRUPT_IER, ~0, 0); *pica_iir = intel_de_read(display, PICAINTERRUPT_IIR); @@ -1359,32 +1338,32 @@ static void gen8_read_and_ack_pch_irqs(struct drm_i915_private *i915, u32 *pch_i intel_de_write(display, PICAINTERRUPT_IER, pica_ier); } -void gen8_de_irq_handler(struct drm_i915_private *dev_priv, u32 master_ctl) +void gen8_de_irq_handler(struct intel_display *display, u32 master_ctl) { - struct intel_display *display = &dev_priv->display; + struct drm_i915_private *dev_priv = to_i915(display->drm); u32 iir; enum pipe pipe; - drm_WARN_ON_ONCE(&dev_priv->drm, !HAS_DISPLAY(dev_priv)); + drm_WARN_ON_ONCE(display->drm, !HAS_DISPLAY(display)); if (master_ctl & GEN8_DE_MISC_IRQ) { iir = intel_de_read(display, GEN8_DE_MISC_IIR); if (iir) { intel_de_write(display, GEN8_DE_MISC_IIR, iir); - gen8_de_misc_irq_handler(dev_priv, iir); + gen8_de_misc_irq_handler(display, iir); } else { - drm_err_ratelimited(&dev_priv->drm, + drm_err_ratelimited(display->drm, "The master control interrupt lied (DE MISC)!\n"); } } - if (DISPLAY_VER(dev_priv) >= 11 && (master_ctl & GEN11_DE_HPD_IRQ)) { + if (DISPLAY_VER(display) >= 11 && (master_ctl & GEN11_DE_HPD_IRQ)) { iir = intel_de_read(display, GEN11_DE_HPD_IIR); if (iir) { intel_de_write(display, GEN11_DE_HPD_IIR, iir); - gen11_hpd_irq_handler(dev_priv, iir); + gen11_hpd_irq_handler(display, iir); } else { - drm_err_ratelimited(&dev_priv->drm, + drm_err_ratelimited(display->drm, "The master control interrupt lied, (DE HPD)!\n"); } } @@ -1396,52 +1375,52 @@ void gen8_de_irq_handler(struct drm_i915_private *dev_priv, u32 master_ctl) intel_de_write(display, GEN8_DE_PORT_IIR, iir); - if (iir & gen8_de_port_aux_mask(dev_priv)) { + if (iir & gen8_de_port_aux_mask(display)) { intel_dp_aux_irq_handler(display); found = true; } - if (IS_GEMINILAKE(dev_priv) || IS_BROXTON(dev_priv)) { + if (display->platform.geminilake || display->platform.broxton) { u32 hotplug_trigger = iir & BXT_DE_PORT_HOTPLUG_MASK; if (hotplug_trigger) { - bxt_hpd_irq_handler(dev_priv, hotplug_trigger); + bxt_hpd_irq_handler(display, hotplug_trigger); found = true; } - } else if (IS_BROADWELL(dev_priv)) { + } else if (display->platform.broadwell) { u32 hotplug_trigger = iir & BDW_DE_PORT_HOTPLUG_MASK; if (hotplug_trigger) { - ilk_hpd_irq_handler(dev_priv, hotplug_trigger); + ilk_hpd_irq_handler(display, hotplug_trigger); found = true; } } - if ((IS_GEMINILAKE(dev_priv) || IS_BROXTON(dev_priv)) && + if ((display->platform.geminilake || display->platform.broxton) && (iir & BXT_DE_PORT_GMBUS)) { intel_gmbus_irq_handler(display); found = true; } - if (DISPLAY_VER(dev_priv) >= 11) { + if (DISPLAY_VER(display) >= 11) { u32 te_trigger = iir & (DSI0_TE | DSI1_TE); if (te_trigger) { - gen11_dsi_te_interrupt_handler(dev_priv, te_trigger); + gen11_dsi_te_interrupt_handler(display, te_trigger); found = true; } } if (!found) - drm_err_ratelimited(&dev_priv->drm, + drm_err_ratelimited(display->drm, "Unexpected DE Port interrupt\n"); } else { - drm_err_ratelimited(&dev_priv->drm, + drm_err_ratelimited(display->drm, "The master control interrupt lied (DE PORT)!\n"); } } - for_each_pipe(dev_priv, pipe) { + for_each_pipe(display, pipe) { u32 fault_errors; if (!(master_ctl & GEN8_DE_PIPE_IRQ(pipe))) @@ -1449,7 +1428,7 @@ void gen8_de_irq_handler(struct drm_i915_private *dev_priv, u32 master_ctl) iir = intel_de_read(display, GEN8_DE_PIPE_IIR(pipe)); if (!iir) { - drm_err_ratelimited(&dev_priv->drm, + drm_err_ratelimited(display->drm, "The master control interrupt lied (DE PIPE)!\n"); continue; } @@ -1457,29 +1436,29 @@ void gen8_de_irq_handler(struct drm_i915_private *dev_priv, u32 master_ctl) intel_de_write(display, GEN8_DE_PIPE_IIR(pipe), iir); if (iir & GEN8_PIPE_VBLANK) - intel_handle_vblank(dev_priv, pipe); + intel_handle_vblank(display, pipe); - if (iir & gen8_de_pipe_flip_done_mask(dev_priv)) - flip_done_handler(dev_priv, pipe); + if (iir & gen8_de_pipe_flip_done_mask(display)) + flip_done_handler(display, pipe); - if (HAS_DSB(dev_priv)) { + if (HAS_DSB(display)) { if (iir & GEN12_DSB_INT(INTEL_DSB_0)) - intel_dsb_irq_handler(&dev_priv->display, pipe, INTEL_DSB_0); + intel_dsb_irq_handler(display, pipe, INTEL_DSB_0); if (iir & GEN12_DSB_INT(INTEL_DSB_1)) - intel_dsb_irq_handler(&dev_priv->display, pipe, INTEL_DSB_1); + intel_dsb_irq_handler(display, pipe, INTEL_DSB_1); if (iir & GEN12_DSB_INT(INTEL_DSB_2)) - intel_dsb_irq_handler(&dev_priv->display, pipe, INTEL_DSB_2); + intel_dsb_irq_handler(display, pipe, INTEL_DSB_2); } if (iir & GEN8_PIPE_CDCLK_CRC_DONE) - hsw_pipe_crc_irq_handler(dev_priv, pipe); + hsw_pipe_crc_irq_handler(display, pipe); if (iir & GEN8_PIPE_FIFO_UNDERRUN) intel_cpu_fifo_underrun_irq_handler(display, pipe); - fault_errors = iir & gen8_de_pipe_fault_mask(dev_priv); + fault_errors = iir & gen8_de_pipe_fault_mask(display); if (fault_errors) intel_pipe_fault_irq_handler(display, gen8_pipe_fault_handlers(display), @@ -1495,31 +1474,30 @@ void gen8_de_irq_handler(struct drm_i915_private *dev_priv, u32 master_ctl) * scheme also closed the SDE interrupt handling race we've seen * on older pch-split platforms. But this needs testing. */ - gen8_read_and_ack_pch_irqs(dev_priv, &iir, &pica_iir); + gen8_read_and_ack_pch_irqs(display, &iir, &pica_iir); if (iir) { if (pica_iir) - xelpdp_pica_irq_handler(dev_priv, pica_iir); + xelpdp_pica_irq_handler(display, pica_iir); if (INTEL_PCH_TYPE(dev_priv) >= PCH_ICP) - icp_irq_handler(dev_priv, iir); + icp_irq_handler(display, iir); else if (INTEL_PCH_TYPE(dev_priv) >= PCH_SPT) - spt_irq_handler(dev_priv, iir); + spt_irq_handler(display, iir); else - cpt_irq_handler(dev_priv, iir); + cpt_irq_handler(display, iir); } else { /* * Like on previous PCH there seems to be something * fishy going on with forwarding PCH interrupts. */ - drm_dbg(&dev_priv->drm, + drm_dbg(display->drm, "The master control interrupt lied (SDE)!\n"); } } } -u32 gen11_gu_misc_irq_ack(struct drm_i915_private *i915, const u32 master_ctl) +u32 gen11_gu_misc_irq_ack(struct intel_display *display, const u32 master_ctl) { - struct intel_display *display = &i915->display; u32 iir; if (!(master_ctl & GEN11_GU_MISC_IRQ)) @@ -1532,20 +1510,17 @@ u32 gen11_gu_misc_irq_ack(struct drm_i915_private *i915, const u32 master_ctl) return iir; } -void gen11_gu_misc_irq_handler(struct drm_i915_private *i915, const u32 iir) +void gen11_gu_misc_irq_handler(struct intel_display *display, const u32 iir) { - struct intel_display *display = &i915->display; - if (iir & GEN11_GU_MISC_GSE) intel_opregion_asle_intr(display); } -void gen11_display_irq_handler(struct drm_i915_private *i915) +void gen11_display_irq_handler(struct intel_display *display) { - struct intel_display *display = &i915->display; u32 disp_ctl; - disable_rpm_wakeref_asserts(&i915->runtime_pm); + intel_display_rpm_assert_block(display); /* * GEN11_DISPLAY_INT_CTL has same format as GEN8_MASTER_IRQ * for the display related bits. @@ -1553,16 +1528,15 @@ void gen11_display_irq_handler(struct drm_i915_private *i915) disp_ctl = intel_de_read(display, GEN11_DISPLAY_INT_CTL); intel_de_write(display, GEN11_DISPLAY_INT_CTL, 0); - gen8_de_irq_handler(i915, disp_ctl); + gen8_de_irq_handler(display, disp_ctl); intel_de_write(display, GEN11_DISPLAY_INT_CTL, GEN11_DISPLAY_IRQ_ENABLE); - enable_rpm_wakeref_asserts(&i915->runtime_pm); + intel_display_rpm_assert_unblock(display); } -static void i915gm_irq_cstate_wa_enable(struct drm_i915_private *i915) +static void i915gm_irq_cstate_wa_enable(struct intel_display *display) { - struct intel_display *display = &i915->display; - lockdep_assert_held(&i915->drm.vblank_time_lock); + lockdep_assert_held(&display->drm->vblank_time_lock); /* * Vblank/CRC interrupts fail to wake the device up from C2+. @@ -1570,41 +1544,41 @@ static void i915gm_irq_cstate_wa_enable(struct drm_i915_private *i915) * the problem. There is a small power cost so we do this * only when vblank/CRC interrupts are actually enabled. */ - if (i915->display.irq.vblank_enabled++ == 0) + if (display->irq.vblank_enabled++ == 0) intel_de_write(display, SCPD0, _MASKED_BIT_ENABLE(CSTATE_RENDER_CLOCK_GATE_DISABLE)); } -static void i915gm_irq_cstate_wa_disable(struct drm_i915_private *i915) +static void i915gm_irq_cstate_wa_disable(struct intel_display *display) { - struct intel_display *display = &i915->display; - lockdep_assert_held(&i915->drm.vblank_time_lock); + lockdep_assert_held(&display->drm->vblank_time_lock); - if (--i915->display.irq.vblank_enabled == 0) + if (--display->irq.vblank_enabled == 0) intel_de_write(display, SCPD0, _MASKED_BIT_DISABLE(CSTATE_RENDER_CLOCK_GATE_DISABLE)); } -void i915gm_irq_cstate_wa(struct drm_i915_private *i915, bool enable) +void i915gm_irq_cstate_wa(struct intel_display *display, bool enable) { - spin_lock_irq(&i915->drm.vblank_time_lock); + spin_lock_irq(&display->drm->vblank_time_lock); if (enable) - i915gm_irq_cstate_wa_enable(i915); + i915gm_irq_cstate_wa_enable(display); else - i915gm_irq_cstate_wa_disable(i915); + i915gm_irq_cstate_wa_disable(display); - spin_unlock_irq(&i915->drm.vblank_time_lock); + spin_unlock_irq(&display->drm->vblank_time_lock); } int i8xx_enable_vblank(struct drm_crtc *crtc) { + struct intel_display *display = to_intel_display(crtc->dev); struct drm_i915_private *dev_priv = to_i915(crtc->dev); enum pipe pipe = to_intel_crtc(crtc)->pipe; unsigned long irqflags; spin_lock_irqsave(&dev_priv->irq_lock, irqflags); - i915_enable_pipestat(dev_priv, pipe, PIPE_VBLANK_INTERRUPT_STATUS); + i915_enable_pipestat(display, pipe, PIPE_VBLANK_INTERRUPT_STATUS); spin_unlock_irqrestore(&dev_priv->irq_lock, irqflags); return 0; @@ -1612,41 +1586,43 @@ int i8xx_enable_vblank(struct drm_crtc *crtc) void i8xx_disable_vblank(struct drm_crtc *crtc) { + struct intel_display *display = to_intel_display(crtc->dev); struct drm_i915_private *dev_priv = to_i915(crtc->dev); enum pipe pipe = to_intel_crtc(crtc)->pipe; unsigned long irqflags; spin_lock_irqsave(&dev_priv->irq_lock, irqflags); - i915_disable_pipestat(dev_priv, pipe, PIPE_VBLANK_INTERRUPT_STATUS); + i915_disable_pipestat(display, pipe, PIPE_VBLANK_INTERRUPT_STATUS); spin_unlock_irqrestore(&dev_priv->irq_lock, irqflags); } int i915gm_enable_vblank(struct drm_crtc *crtc) { - struct drm_i915_private *i915 = to_i915(crtc->dev); + struct intel_display *display = to_intel_display(crtc->dev); - i915gm_irq_cstate_wa_enable(i915); + i915gm_irq_cstate_wa_enable(display); return i8xx_enable_vblank(crtc); } void i915gm_disable_vblank(struct drm_crtc *crtc) { - struct drm_i915_private *i915 = to_i915(crtc->dev); + struct intel_display *display = to_intel_display(crtc->dev); i8xx_disable_vblank(crtc); - i915gm_irq_cstate_wa_disable(i915); + i915gm_irq_cstate_wa_disable(display); } int i965_enable_vblank(struct drm_crtc *crtc) { + struct intel_display *display = to_intel_display(crtc->dev); struct drm_i915_private *dev_priv = to_i915(crtc->dev); enum pipe pipe = to_intel_crtc(crtc)->pipe; unsigned long irqflags; spin_lock_irqsave(&dev_priv->irq_lock, irqflags); - i915_enable_pipestat(dev_priv, pipe, + i915_enable_pipestat(display, pipe, PIPE_START_VBLANK_INTERRUPT_STATUS); spin_unlock_irqrestore(&dev_priv->irq_lock, irqflags); @@ -1655,32 +1631,34 @@ int i965_enable_vblank(struct drm_crtc *crtc) void i965_disable_vblank(struct drm_crtc *crtc) { + struct intel_display *display = to_intel_display(crtc->dev); struct drm_i915_private *dev_priv = to_i915(crtc->dev); enum pipe pipe = to_intel_crtc(crtc)->pipe; unsigned long irqflags; spin_lock_irqsave(&dev_priv->irq_lock, irqflags); - i915_disable_pipestat(dev_priv, pipe, + i915_disable_pipestat(display, pipe, PIPE_START_VBLANK_INTERRUPT_STATUS); spin_unlock_irqrestore(&dev_priv->irq_lock, irqflags); } int ilk_enable_vblank(struct drm_crtc *crtc) { + struct intel_display *display = to_intel_display(crtc->dev); struct drm_i915_private *dev_priv = to_i915(crtc->dev); enum pipe pipe = to_intel_crtc(crtc)->pipe; unsigned long irqflags; - u32 bit = DISPLAY_VER(dev_priv) >= 7 ? + u32 bit = DISPLAY_VER(display) >= 7 ? DE_PIPE_VBLANK_IVB(pipe) : DE_PIPE_VBLANK(pipe); spin_lock_irqsave(&dev_priv->irq_lock, irqflags); - ilk_enable_display_irq(dev_priv, bit); + ilk_enable_display_irq(display, bit); spin_unlock_irqrestore(&dev_priv->irq_lock, irqflags); /* Even though there is no DMC, frame counter can get stuck when * PSR is active as no frames are generated. */ - if (HAS_PSR(dev_priv)) + if (HAS_PSR(display)) drm_crtc_vblank_restore(crtc); return 0; @@ -1688,14 +1666,15 @@ int ilk_enable_vblank(struct drm_crtc *crtc) void ilk_disable_vblank(struct drm_crtc *crtc) { + struct intel_display *display = to_intel_display(crtc->dev); struct drm_i915_private *dev_priv = to_i915(crtc->dev); enum pipe pipe = to_intel_crtc(crtc)->pipe; unsigned long irqflags; - u32 bit = DISPLAY_VER(dev_priv) >= 7 ? + u32 bit = DISPLAY_VER(display) >= 7 ? DE_PIPE_VBLANK_IVB(pipe) : DE_PIPE_VBLANK(pipe); spin_lock_irqsave(&dev_priv->irq_lock, irqflags); - ilk_disable_display_irq(dev_priv, bit); + ilk_disable_display_irq(display, bit); spin_unlock_irqrestore(&dev_priv->irq_lock, irqflags); } @@ -1753,13 +1732,13 @@ int bdw_enable_vblank(struct drm_crtc *_crtc) schedule_work(&display->irq.vblank_dc_work); spin_lock_irqsave(&dev_priv->irq_lock, irqflags); - bdw_enable_pipe_irq(dev_priv, pipe, GEN8_PIPE_VBLANK); + bdw_enable_pipe_irq(display, pipe, GEN8_PIPE_VBLANK); spin_unlock_irqrestore(&dev_priv->irq_lock, irqflags); /* Even if there is no DMC, frame counter can get stuck when * PSR is active as no frames are generated, so check only for PSR. */ - if (HAS_PSR(dev_priv)) + if (HAS_PSR(display)) drm_crtc_vblank_restore(&crtc->base); return 0; @@ -1777,7 +1756,7 @@ void bdw_disable_vblank(struct drm_crtc *_crtc) return; spin_lock_irqsave(&dev_priv->irq_lock, irqflags); - bdw_disable_pipe_irq(dev_priv, pipe, GEN8_PIPE_VBLANK); + bdw_disable_pipe_irq(display, pipe, GEN8_PIPE_VBLANK); spin_unlock_irqrestore(&dev_priv->irq_lock, irqflags); if (crtc->block_dc_for_vblank && --display->irq.vblank_wa_num_pipes == 0) @@ -1892,11 +1871,11 @@ void vlv_display_error_irq_handler(struct intel_display *display, vlv_page_table_error_irq_handler(display, dpinvgtt); } -static void _vlv_display_irq_reset(struct drm_i915_private *dev_priv) +static void _vlv_display_irq_reset(struct intel_display *display) { - struct intel_display *display = &dev_priv->display; + struct drm_i915_private *dev_priv = to_i915(display->drm); - if (IS_CHERRYVIEW(dev_priv)) + if (display->platform.cherryview) intel_de_write(display, DPINVGTT, DPINVGTT_STATUS_MASK_CHV); else intel_de_write(display, DPINVGTT, DPINVGTT_STATUS_MASK_VLV); @@ -1904,31 +1883,29 @@ static void _vlv_display_irq_reset(struct drm_i915_private *dev_priv) gen2_error_reset(to_intel_uncore(display->drm), VLV_ERROR_REGS); - i915_hotplug_interrupt_update_locked(dev_priv, 0xffffffff, 0); - intel_de_rmw(display, PORT_HOTPLUG_STAT(dev_priv), 0, 0); + i915_hotplug_interrupt_update_locked(display, 0xffffffff, 0); + intel_de_rmw(display, PORT_HOTPLUG_STAT(display), 0, 0); - i9xx_pipestat_irq_reset(dev_priv); + i9xx_pipestat_irq_reset(display); intel_display_irq_regs_reset(display, VLV_IRQ_REGS); dev_priv->irq_mask = ~0u; } -void vlv_display_irq_reset(struct drm_i915_private *dev_priv) +void vlv_display_irq_reset(struct intel_display *display) { - if (dev_priv->display.irq.vlv_display_irqs_enabled) - _vlv_display_irq_reset(dev_priv); + if (display->irq.vlv_display_irqs_enabled) + _vlv_display_irq_reset(display); } -void i9xx_display_irq_reset(struct drm_i915_private *i915) +void i9xx_display_irq_reset(struct intel_display *display) { - struct intel_display *display = &i915->display; - - if (I915_HAS_HOTPLUG(i915)) { - i915_hotplug_interrupt_update(i915, 0xffffffff, 0); - intel_de_rmw(display, PORT_HOTPLUG_STAT(i915), 0, 0); + if (HAS_HOTPLUG(display)) { + i915_hotplug_interrupt_update(display, 0xffffffff, 0); + intel_de_rmw(display, PORT_HOTPLUG_STAT(display), 0, 0); } - i9xx_pipestat_irq_reset(i915); + i9xx_pipestat_irq_reset(display); } static u32 vlv_error_mask(void) @@ -1937,17 +1914,17 @@ static u32 vlv_error_mask(void) return VLV_ERROR_PAGE_TABLE; } -void vlv_display_irq_postinstall(struct drm_i915_private *dev_priv) +void vlv_display_irq_postinstall(struct intel_display *display) { - struct intel_display *display = &dev_priv->display; + struct drm_i915_private *dev_priv = to_i915(display->drm); u32 pipestat_mask; u32 enable_mask; enum pipe pipe; - if (!dev_priv->display.irq.vlv_display_irqs_enabled) + if (!display->irq.vlv_display_irqs_enabled) return; - if (IS_CHERRYVIEW(dev_priv)) + if (display->platform.cherryview) intel_de_write(display, DPINVGTT, DPINVGTT_STATUS_MASK_CHV | DPINVGTT_EN_MASK_CHV); @@ -1961,9 +1938,9 @@ void vlv_display_irq_postinstall(struct drm_i915_private *dev_priv) pipestat_mask = PIPE_CRC_DONE_INTERRUPT_STATUS; - i915_enable_pipestat(dev_priv, PIPE_A, PIPE_GMBUS_INTERRUPT_STATUS); - for_each_pipe(dev_priv, pipe) - i915_enable_pipestat(dev_priv, pipe, pipestat_mask); + i915_enable_pipestat(display, PIPE_A, PIPE_GMBUS_INTERRUPT_STATUS); + for_each_pipe(display, pipe) + i915_enable_pipestat(display, pipe, pipestat_mask); enable_mask = I915_DISPLAY_PORT_INTERRUPT | I915_DISPLAY_PIPE_A_EVENT_INTERRUPT | @@ -1972,29 +1949,28 @@ void vlv_display_irq_postinstall(struct drm_i915_private *dev_priv) I915_LPE_PIPE_B_INTERRUPT | I915_MASTER_ERROR_INTERRUPT; - if (IS_CHERRYVIEW(dev_priv)) + if (display->platform.cherryview) enable_mask |= I915_DISPLAY_PIPE_C_EVENT_INTERRUPT | I915_LPE_PIPE_C_INTERRUPT; - drm_WARN_ON(&dev_priv->drm, dev_priv->irq_mask != ~0u); + drm_WARN_ON(display->drm, dev_priv->irq_mask != ~0u); dev_priv->irq_mask = ~enable_mask; intel_display_irq_regs_init(display, VLV_IRQ_REGS, dev_priv->irq_mask, enable_mask); } -void gen8_display_irq_reset(struct drm_i915_private *dev_priv) +void gen8_display_irq_reset(struct intel_display *display) { - struct intel_display *display = &dev_priv->display; enum pipe pipe; - if (!HAS_DISPLAY(dev_priv)) + if (!HAS_DISPLAY(display)) return; intel_de_write(display, EDP_PSR_IMR, 0xffffffff); intel_de_write(display, EDP_PSR_IIR, 0xffffffff); - for_each_pipe(dev_priv, pipe) + for_each_pipe(display, pipe) if (intel_display_power_is_enabled(display, POWER_DOMAIN_PIPE(pipe))) intel_display_irq_regs_reset(display, GEN8_DE_PIPE_IRQ_REGS(pipe)); @@ -2003,22 +1979,22 @@ void gen8_display_irq_reset(struct drm_i915_private *dev_priv) intel_display_irq_regs_reset(display, GEN8_DE_MISC_IRQ_REGS); } -void gen11_display_irq_reset(struct drm_i915_private *dev_priv) +void gen11_display_irq_reset(struct intel_display *display) { - struct intel_display *display = &dev_priv->display; + struct drm_i915_private *dev_priv = to_i915(display->drm); enum pipe pipe; u32 trans_mask = BIT(TRANSCODER_A) | BIT(TRANSCODER_B) | BIT(TRANSCODER_C) | BIT(TRANSCODER_D); - if (!HAS_DISPLAY(dev_priv)) + if (!HAS_DISPLAY(display)) return; intel_de_write(display, GEN11_DISPLAY_INT_CTL, 0); - if (DISPLAY_VER(dev_priv) >= 12) { + if (DISPLAY_VER(display) >= 12) { enum transcoder trans; - for_each_cpu_transcoder_masked(dev_priv, trans, trans_mask) { + for_each_cpu_transcoder_masked(display, trans, trans_mask) { enum intel_display_power_domain domain; domain = POWER_DOMAIN_TRANSCODER(trans); @@ -2026,10 +2002,10 @@ void gen11_display_irq_reset(struct drm_i915_private *dev_priv) continue; intel_de_write(display, - TRANS_PSR_IMR(dev_priv, trans), + TRANS_PSR_IMR(display, trans), 0xffffffff); intel_de_write(display, - TRANS_PSR_IIR(dev_priv, trans), + TRANS_PSR_IIR(display, trans), 0xffffffff); } } else { @@ -2037,7 +2013,7 @@ void gen11_display_irq_reset(struct drm_i915_private *dev_priv) intel_de_write(display, EDP_PSR_IIR, 0xffffffff); } - for_each_pipe(dev_priv, pipe) + for_each_pipe(display, pipe) if (intel_display_power_is_enabled(display, POWER_DOMAIN_PIPE(pipe))) intel_display_irq_regs_reset(display, GEN8_DE_PIPE_IRQ_REGS(pipe)); @@ -2045,7 +2021,7 @@ void gen11_display_irq_reset(struct drm_i915_private *dev_priv) intel_display_irq_regs_reset(display, GEN8_DE_PORT_IRQ_REGS); intel_display_irq_regs_reset(display, GEN8_DE_MISC_IRQ_REGS); - if (DISPLAY_VER(dev_priv) >= 14) + if (DISPLAY_VER(display) >= 14) intel_display_irq_regs_reset(display, PICAINTERRUPT_IRQ_REGS); else intel_display_irq_regs_reset(display, GEN11_DE_HPD_IRQ_REGS); @@ -2054,12 +2030,12 @@ void gen11_display_irq_reset(struct drm_i915_private *dev_priv) intel_display_irq_regs_reset(display, SDE_IRQ_REGS); } -void gen8_irq_power_well_post_enable(struct drm_i915_private *dev_priv, +void gen8_irq_power_well_post_enable(struct intel_display *display, u8 pipe_mask) { - struct intel_display *display = &dev_priv->display; + struct drm_i915_private *dev_priv = to_i915(display->drm); u32 extra_ier = GEN8_PIPE_VBLANK | GEN8_PIPE_FIFO_UNDERRUN | - gen8_de_pipe_flip_done_mask(dev_priv); + gen8_de_pipe_flip_done_mask(display); enum pipe pipe; spin_lock_irq(&dev_priv->irq_lock); @@ -2069,18 +2045,18 @@ void gen8_irq_power_well_post_enable(struct drm_i915_private *dev_priv, return; } - for_each_pipe_masked(dev_priv, pipe, pipe_mask) + for_each_pipe_masked(display, pipe, pipe_mask) intel_display_irq_regs_init(display, GEN8_DE_PIPE_IRQ_REGS(pipe), - dev_priv->display.irq.de_irq_mask[pipe], - ~dev_priv->display.irq.de_irq_mask[pipe] | extra_ier); + display->irq.de_irq_mask[pipe], + ~display->irq.de_irq_mask[pipe] | extra_ier); spin_unlock_irq(&dev_priv->irq_lock); } -void gen8_irq_power_well_pre_disable(struct drm_i915_private *dev_priv, +void gen8_irq_power_well_pre_disable(struct intel_display *display, u8 pipe_mask) { - struct intel_display *display = &dev_priv->display; + struct drm_i915_private *dev_priv = to_i915(display->drm); enum pipe pipe; spin_lock_irq(&dev_priv->irq_lock); @@ -2090,7 +2066,7 @@ void gen8_irq_power_well_pre_disable(struct drm_i915_private *dev_priv, return; } - for_each_pipe_masked(dev_priv, pipe, pipe_mask) + for_each_pipe_masked(display, pipe, pipe_mask) intel_display_irq_regs_reset(display, GEN8_DE_PIPE_IRQ_REGS(pipe)); spin_unlock_irq(&dev_priv->irq_lock); @@ -2110,9 +2086,9 @@ void gen8_irq_power_well_pre_disable(struct drm_i915_private *dev_priv, * to avoid races with the irq handler, assuming we have MSI. Shared legacy * interrupts could still race. */ -static void ibx_irq_postinstall(struct drm_i915_private *dev_priv) +static void ibx_irq_postinstall(struct intel_display *display) { - struct intel_display *display = &dev_priv->display; + struct drm_i915_private *dev_priv = to_i915(display->drm); u32 mask; if (HAS_PCH_NOP(dev_priv)) @@ -2128,40 +2104,45 @@ static void ibx_irq_postinstall(struct drm_i915_private *dev_priv) intel_display_irq_regs_init(display, SDE_IRQ_REGS, ~mask, 0xffffffff); } -void valleyview_enable_display_irqs(struct drm_i915_private *dev_priv) +void valleyview_enable_display_irqs(struct intel_display *display) { + struct drm_i915_private *dev_priv = to_i915(display->drm); + lockdep_assert_held(&dev_priv->irq_lock); - if (dev_priv->display.irq.vlv_display_irqs_enabled) + if (display->irq.vlv_display_irqs_enabled) return; - dev_priv->display.irq.vlv_display_irqs_enabled = true; + display->irq.vlv_display_irqs_enabled = true; if (intel_irqs_enabled(dev_priv)) { - _vlv_display_irq_reset(dev_priv); - vlv_display_irq_postinstall(dev_priv); + _vlv_display_irq_reset(display); + vlv_display_irq_postinstall(display); } } -void valleyview_disable_display_irqs(struct drm_i915_private *dev_priv) +void valleyview_disable_display_irqs(struct intel_display *display) { + struct drm_i915_private *dev_priv = to_i915(display->drm); + lockdep_assert_held(&dev_priv->irq_lock); - if (!dev_priv->display.irq.vlv_display_irqs_enabled) + if (!display->irq.vlv_display_irqs_enabled) return; - dev_priv->display.irq.vlv_display_irqs_enabled = false; + display->irq.vlv_display_irqs_enabled = false; if (intel_irqs_enabled(dev_priv)) - _vlv_display_irq_reset(dev_priv); + _vlv_display_irq_reset(display); } -void ilk_de_irq_postinstall(struct drm_i915_private *i915) +void ilk_de_irq_postinstall(struct intel_display *display) { - struct intel_display *display = &i915->display; + struct drm_i915_private *i915 = to_i915(display->drm); + u32 display_mask, extra_mask; - if (DISPLAY_VER(i915) >= 7) { + if (DISPLAY_VER(display) >= 7) { display_mask = (DE_MASTER_IRQ_CONTROL | DE_GSE_IVB | DE_PCH_EVENT_IVB | DE_AUX_CHANNEL_A_IVB); extra_mask = (DE_PIPEC_VBLANK_IVB | DE_PIPEB_VBLANK_IVB | @@ -2182,59 +2163,59 @@ void ilk_de_irq_postinstall(struct drm_i915_private *i915) DE_DP_A_HOTPLUG); } - if (IS_HASWELL(i915)) { + if (display->platform.haswell) { intel_display_irq_regs_assert_irr_is_zero(display, EDP_PSR_IIR); display_mask |= DE_EDP_PSR_INT_HSW; } - if (IS_IRONLAKE_M(i915)) + if (display->platform.ironlake && display->platform.mobile) extra_mask |= DE_PCU_EVENT; i915->irq_mask = ~display_mask; - ibx_irq_postinstall(i915); + ibx_irq_postinstall(display); intel_display_irq_regs_init(display, DE_IRQ_REGS, i915->irq_mask, display_mask | extra_mask); } -static void mtp_irq_postinstall(struct drm_i915_private *i915); -static void icp_irq_postinstall(struct drm_i915_private *i915); +static void mtp_irq_postinstall(struct intel_display *display); +static void icp_irq_postinstall(struct intel_display *display); -void gen8_de_irq_postinstall(struct drm_i915_private *dev_priv) +void gen8_de_irq_postinstall(struct intel_display *display) { - struct intel_display *display = &dev_priv->display; + struct drm_i915_private *dev_priv = to_i915(display->drm); - u32 de_pipe_masked = gen8_de_pipe_fault_mask(dev_priv) | + u32 de_pipe_masked = gen8_de_pipe_fault_mask(display) | GEN8_PIPE_CDCLK_CRC_DONE; u32 de_pipe_enables; - u32 de_port_masked = gen8_de_port_aux_mask(dev_priv); + u32 de_port_masked = gen8_de_port_aux_mask(display); u32 de_port_enables; u32 de_misc_masked = GEN8_DE_EDP_PSR; u32 trans_mask = BIT(TRANSCODER_A) | BIT(TRANSCODER_B) | BIT(TRANSCODER_C) | BIT(TRANSCODER_D); enum pipe pipe; - if (!HAS_DISPLAY(dev_priv)) + if (!HAS_DISPLAY(display)) return; - if (DISPLAY_VER(dev_priv) >= 14) - mtp_irq_postinstall(dev_priv); + if (DISPLAY_VER(display) >= 14) + mtp_irq_postinstall(display); else if (INTEL_PCH_TYPE(dev_priv) >= PCH_ICP) - icp_irq_postinstall(dev_priv); + icp_irq_postinstall(display); else if (HAS_PCH_SPLIT(dev_priv)) - ibx_irq_postinstall(dev_priv); + ibx_irq_postinstall(display); - if (DISPLAY_VER(dev_priv) < 11) + if (DISPLAY_VER(display) < 11) de_misc_masked |= GEN8_DE_MISC_GSE; - if (IS_GEMINILAKE(dev_priv) || IS_BROXTON(dev_priv)) + if (display->platform.geminilake || display->platform.broxton) de_port_masked |= BXT_DE_PORT_GMBUS; - if (DISPLAY_VER(dev_priv) >= 14) { + if (DISPLAY_VER(display) >= 14) { de_misc_masked |= XELPDP_PMDEMAND_RSPTOUT_ERR | XELPDP_PMDEMAND_RSP | XELPDP_RM_TIMEOUT; - } else if (DISPLAY_VER(dev_priv) >= 11) { + } else if (DISPLAY_VER(display) >= 11) { enum port port; if (intel_bios_is_dsi_present(display, &port)) @@ -2244,25 +2225,25 @@ void gen8_de_irq_postinstall(struct drm_i915_private *dev_priv) if (HAS_DBUF_OVERLAP_DETECTION(display)) de_misc_masked |= XE2LPD_DBUF_OVERLAP_DETECTED; - if (HAS_DSB(dev_priv)) + if (HAS_DSB(display)) de_pipe_masked |= GEN12_DSB_INT(INTEL_DSB_0) | GEN12_DSB_INT(INTEL_DSB_1) | GEN12_DSB_INT(INTEL_DSB_2); de_pipe_enables = de_pipe_masked | GEN8_PIPE_VBLANK | GEN8_PIPE_FIFO_UNDERRUN | - gen8_de_pipe_flip_done_mask(dev_priv); + gen8_de_pipe_flip_done_mask(display); de_port_enables = de_port_masked; - if (IS_GEMINILAKE(dev_priv) || IS_BROXTON(dev_priv)) + if (display->platform.geminilake || display->platform.broxton) de_port_enables |= BXT_DE_PORT_HOTPLUG_MASK; - else if (IS_BROADWELL(dev_priv)) + else if (display->platform.broadwell) de_port_enables |= BDW_DE_PORT_HOTPLUG_MASK; - if (DISPLAY_VER(dev_priv) >= 12) { + if (DISPLAY_VER(display) >= 12) { enum transcoder trans; - for_each_cpu_transcoder_masked(dev_priv, trans, trans_mask) { + for_each_cpu_transcoder_masked(display, trans, trans_mask) { enum intel_display_power_domain domain; domain = POWER_DOMAIN_TRANSCODER(trans); @@ -2270,19 +2251,19 @@ void gen8_de_irq_postinstall(struct drm_i915_private *dev_priv) continue; intel_display_irq_regs_assert_irr_is_zero(display, - TRANS_PSR_IIR(dev_priv, trans)); + TRANS_PSR_IIR(display, trans)); } } else { intel_display_irq_regs_assert_irr_is_zero(display, EDP_PSR_IIR); } - for_each_pipe(dev_priv, pipe) { - dev_priv->display.irq.de_irq_mask[pipe] = ~de_pipe_masked; + for_each_pipe(display, pipe) { + display->irq.de_irq_mask[pipe] = ~de_pipe_masked; if (intel_display_power_is_enabled(display, POWER_DOMAIN_PIPE(pipe))) intel_display_irq_regs_init(display, GEN8_DE_PIPE_IRQ_REGS(pipe), - dev_priv->display.irq.de_irq_mask[pipe], + display->irq.de_irq_mask[pipe], de_pipe_enables); } @@ -2291,7 +2272,7 @@ void gen8_de_irq_postinstall(struct drm_i915_private *dev_priv) intel_display_irq_regs_init(display, GEN8_DE_MISC_IRQ_REGS, ~de_misc_masked, de_misc_masked); - if (IS_DISPLAY_VER(dev_priv, 11, 13)) { + if (IS_DISPLAY_VER(display, 11, 13)) { u32 de_hpd_masked = 0; u32 de_hpd_enables = GEN11_DE_TC_HOTPLUG_MASK | GEN11_DE_TBT_HOTPLUG_MASK; @@ -2301,9 +2282,8 @@ void gen8_de_irq_postinstall(struct drm_i915_private *dev_priv) } } -static void mtp_irq_postinstall(struct drm_i915_private *i915) +static void mtp_irq_postinstall(struct intel_display *display) { - struct intel_display *display = &i915->display; u32 sde_mask = SDE_GMBUS_ICP | SDE_PICAINTERRUPT; u32 de_hpd_mask = XELPDP_AUX_TC_MASK; u32 de_hpd_enables = de_hpd_mask | XELPDP_DP_ALT_HOTPLUG_MASK | @@ -2315,43 +2295,37 @@ static void mtp_irq_postinstall(struct drm_i915_private *i915) intel_display_irq_regs_init(display, SDE_IRQ_REGS, ~sde_mask, 0xffffffff); } -static void icp_irq_postinstall(struct drm_i915_private *dev_priv) +static void icp_irq_postinstall(struct intel_display *display) { - struct intel_display *display = &dev_priv->display; u32 mask = SDE_GMBUS_ICP; intel_display_irq_regs_init(display, SDE_IRQ_REGS, ~mask, 0xffffffff); } -void gen11_de_irq_postinstall(struct drm_i915_private *dev_priv) +void gen11_de_irq_postinstall(struct intel_display *display) { - struct intel_display *display = &dev_priv->display; - - if (!HAS_DISPLAY(dev_priv)) + if (!HAS_DISPLAY(display)) return; - gen8_de_irq_postinstall(dev_priv); + gen8_de_irq_postinstall(display); intel_de_write(display, GEN11_DISPLAY_INT_CTL, GEN11_DISPLAY_IRQ_ENABLE); } -void dg1_de_irq_postinstall(struct drm_i915_private *i915) +void dg1_de_irq_postinstall(struct intel_display *display) { - struct intel_display *display = &i915->display; - - if (!HAS_DISPLAY(i915)) + if (!HAS_DISPLAY(display)) return; - gen8_de_irq_postinstall(i915); + gen8_de_irq_postinstall(display); intel_de_write(display, GEN11_DISPLAY_INT_CTL, GEN11_DISPLAY_IRQ_ENABLE); } -void intel_display_irq_init(struct drm_i915_private *i915) +void intel_display_irq_init(struct intel_display *display) { - i915->drm.vblank_disable_immediate = true; + display->drm->vblank_disable_immediate = true; - intel_hotplug_irq_init(i915); + intel_hotplug_irq_init(display); - INIT_WORK(&i915->display.irq.vblank_dc_work, - intel_display_vblank_dc_work); + INIT_WORK(&display->irq.vblank_dc_work, intel_display_vblank_dc_work); } diff --git a/drivers/gpu/drm/i915/display/intel_display_irq.h b/drivers/gpu/drm/i915/display/intel_display_irq.h index d9867cd0a220..f72727768351 100644 --- a/drivers/gpu/drm/i915/display/intel_display_irq.h +++ b/drivers/gpu/drm/i915/display/intel_display_irq.h @@ -12,28 +12,27 @@ enum pipe; struct drm_crtc; -struct drm_i915_private; struct intel_display; -void valleyview_enable_display_irqs(struct drm_i915_private *i915); -void valleyview_disable_display_irqs(struct drm_i915_private *i915); +void valleyview_enable_display_irqs(struct intel_display *display); +void valleyview_disable_display_irqs(struct intel_display *display); -void ilk_update_display_irq(struct drm_i915_private *i915, +void ilk_update_display_irq(struct intel_display *display, u32 interrupt_mask, u32 enabled_irq_mask); -void ilk_enable_display_irq(struct drm_i915_private *i915, u32 bits); -void ilk_disable_display_irq(struct drm_i915_private *i915, u32 bits); +void ilk_enable_display_irq(struct intel_display *display, u32 bits); +void ilk_disable_display_irq(struct intel_display *display, u32 bits); -void bdw_update_port_irq(struct drm_i915_private *i915, u32 interrupt_mask, u32 enabled_irq_mask); -void bdw_enable_pipe_irq(struct drm_i915_private *i915, enum pipe pipe, u32 bits); -void bdw_disable_pipe_irq(struct drm_i915_private *i915, enum pipe pipe, u32 bits); +void bdw_update_port_irq(struct intel_display *display, u32 interrupt_mask, u32 enabled_irq_mask); +void bdw_enable_pipe_irq(struct intel_display *display, enum pipe pipe, u32 bits); +void bdw_disable_pipe_irq(struct intel_display *display, enum pipe pipe, u32 bits); -void ibx_display_interrupt_update(struct drm_i915_private *i915, +void ibx_display_interrupt_update(struct intel_display *display, u32 interrupt_mask, u32 enabled_irq_mask); -void ibx_enable_display_interrupt(struct drm_i915_private *i915, u32 bits); -void ibx_disable_display_interrupt(struct drm_i915_private *i915, u32 bits); +void ibx_enable_display_interrupt(struct intel_display *display, u32 bits); +void ibx_disable_display_interrupt(struct intel_display *display, u32 bits); -void gen8_irq_power_well_post_enable(struct drm_i915_private *i915, u8 pipe_mask); -void gen8_irq_power_well_pre_disable(struct drm_i915_private *i915, u8 pipe_mask); +void gen8_irq_power_well_post_enable(struct intel_display *display, u8 pipe_mask); +void gen8_irq_power_well_pre_disable(struct intel_display *display, u8 pipe_mask); int i8xx_enable_vblank(struct drm_crtc *crtc); int i915gm_enable_vblank(struct drm_crtc *crtc); @@ -46,41 +45,41 @@ void i965_disable_vblank(struct drm_crtc *crtc); void ilk_disable_vblank(struct drm_crtc *crtc); void bdw_disable_vblank(struct drm_crtc *crtc); -void ivb_display_irq_handler(struct drm_i915_private *i915, u32 de_iir); -void ilk_display_irq_handler(struct drm_i915_private *i915, u32 de_iir); -void gen8_de_irq_handler(struct drm_i915_private *i915, u32 master_ctl); -void gen11_display_irq_handler(struct drm_i915_private *i915); +void ivb_display_irq_handler(struct intel_display *display, u32 de_iir); +void ilk_display_irq_handler(struct intel_display *display, u32 de_iir); +void gen8_de_irq_handler(struct intel_display *display, u32 master_ctl); +void gen11_display_irq_handler(struct intel_display *display); -u32 gen11_gu_misc_irq_ack(struct drm_i915_private *i915, const u32 master_ctl); -void gen11_gu_misc_irq_handler(struct drm_i915_private *i915, const u32 iir); +u32 gen11_gu_misc_irq_ack(struct intel_display *display, const u32 master_ctl); +void gen11_gu_misc_irq_handler(struct intel_display *display, const u32 iir); -void i9xx_display_irq_reset(struct drm_i915_private *i915); -void vlv_display_irq_reset(struct drm_i915_private *i915); -void gen8_display_irq_reset(struct drm_i915_private *i915); -void gen11_display_irq_reset(struct drm_i915_private *i915); +void i9xx_display_irq_reset(struct intel_display *display); +void vlv_display_irq_reset(struct intel_display *display); +void gen8_display_irq_reset(struct intel_display *display); +void gen11_display_irq_reset(struct intel_display *display); -void vlv_display_irq_postinstall(struct drm_i915_private *i915); -void ilk_de_irq_postinstall(struct drm_i915_private *i915); -void gen8_de_irq_postinstall(struct drm_i915_private *i915); -void gen11_de_irq_postinstall(struct drm_i915_private *i915); -void dg1_de_irq_postinstall(struct drm_i915_private *i915); +void vlv_display_irq_postinstall(struct intel_display *display); +void ilk_de_irq_postinstall(struct intel_display *display); +void gen8_de_irq_postinstall(struct intel_display *display); +void gen11_de_irq_postinstall(struct intel_display *display); +void dg1_de_irq_postinstall(struct intel_display *display); u32 i915_pipestat_enable_mask(struct intel_display *display, enum pipe pipe); -void i915_enable_pipestat(struct drm_i915_private *i915, enum pipe pipe, u32 status_mask); -void i915_disable_pipestat(struct drm_i915_private *i915, enum pipe pipe, u32 status_mask); -void i915_enable_asle_pipestat(struct drm_i915_private *i915); +void i915_enable_pipestat(struct intel_display *display, enum pipe pipe, u32 status_mask); +void i915_disable_pipestat(struct intel_display *display, enum pipe pipe, u32 status_mask); +void i915_enable_asle_pipestat(struct intel_display *display); -void i9xx_pipestat_irq_ack(struct drm_i915_private *i915, u32 iir, u32 pipe_stats[I915_MAX_PIPES]); +void i9xx_pipestat_irq_ack(struct intel_display *display, u32 iir, u32 pipe_stats[I915_MAX_PIPES]); -void i915_pipestat_irq_handler(struct drm_i915_private *i915, u32 iir, u32 pipe_stats[I915_MAX_PIPES]); -void i965_pipestat_irq_handler(struct drm_i915_private *i915, u32 iir, u32 pipe_stats[I915_MAX_PIPES]); -void valleyview_pipestat_irq_handler(struct drm_i915_private *i915, u32 pipe_stats[I915_MAX_PIPES]); +void i915_pipestat_irq_handler(struct intel_display *display, u32 iir, u32 pipe_stats[I915_MAX_PIPES]); +void i965_pipestat_irq_handler(struct intel_display *display, u32 iir, u32 pipe_stats[I915_MAX_PIPES]); +void valleyview_pipestat_irq_handler(struct intel_display *display, u32 pipe_stats[I915_MAX_PIPES]); void vlv_display_error_irq_ack(struct intel_display *display, u32 *eir, u32 *dpinvgtt); void vlv_display_error_irq_handler(struct intel_display *display, u32 eir, u32 dpinvgtt); -void intel_display_irq_init(struct drm_i915_private *i915); +void intel_display_irq_init(struct intel_display *display); -void i915gm_irq_cstate_wa(struct drm_i915_private *i915, bool enable); +void i915gm_irq_cstate_wa(struct intel_display *display, bool enable); #endif /* __INTEL_DISPLAY_IRQ_H__ */ diff --git a/drivers/gpu/drm/i915/display/intel_display_power.c b/drivers/gpu/drm/i915/display/intel_display_power.c index f7171e6932dc..c78315eb44fa 100644 --- a/drivers/gpu/drm/i915/display/intel_display_power.c +++ b/drivers/gpu/drm/i915/display/intel_display_power.c @@ -16,6 +16,7 @@ #include "intel_display_power.h" #include "intel_display_power_map.h" #include "intel_display_power_well.h" +#include "intel_display_rpm.h" #include "intel_display_types.h" #include "intel_dmc.h" #include "intel_mchbar_regs.h" @@ -204,7 +205,7 @@ static bool __intel_display_power_is_enabled(struct intel_display *display, struct i915_power_well *power_well; bool is_enabled; - if (pm_runtime_suspended(display->drm->dev)) + if (intel_display_rpm_suspended(display)) return false; is_enabled = true; @@ -455,7 +456,6 @@ static bool intel_display_power_grab_async_put_ref(struct intel_display *display, enum intel_display_power_domain domain) { - struct drm_i915_private *dev_priv = to_i915(display->drm); struct i915_power_domains *power_domains = &display->power.domains; struct intel_power_domain_mask async_put_mask; bool ret = false; @@ -473,8 +473,8 @@ intel_display_power_grab_async_put_ref(struct intel_display *display, goto out_verify; cancel_async_put_work(power_domains, false); - intel_runtime_pm_put_raw(&dev_priv->runtime_pm, - fetch_and_zero(&power_domains->async_put_wakeref)); + intel_display_rpm_put_raw(display, + fetch_and_zero(&power_domains->async_put_wakeref)); out_verify: verify_async_put_domains_state(power_domains); @@ -512,9 +512,10 @@ __intel_display_power_get_domain(struct intel_display *display, intel_wakeref_t intel_display_power_get(struct intel_display *display, enum intel_display_power_domain domain) { - struct drm_i915_private *dev_priv = to_i915(display->drm); struct i915_power_domains *power_domains = &display->power.domains; - intel_wakeref_t wakeref = intel_runtime_pm_get(&dev_priv->runtime_pm); + struct ref_tracker *wakeref; + + wakeref = intel_display_rpm_get(display); mutex_lock(&power_domains->lock); __intel_display_power_get_domain(display, domain); @@ -539,12 +540,11 @@ intel_wakeref_t intel_display_power_get_if_enabled(struct intel_display *display, enum intel_display_power_domain domain) { - struct drm_i915_private *dev_priv = to_i915(display->drm); struct i915_power_domains *power_domains = &display->power.domains; - intel_wakeref_t wakeref; + struct ref_tracker *wakeref; bool is_enabled; - wakeref = intel_runtime_pm_get_if_in_use(&dev_priv->runtime_pm); + wakeref = intel_display_rpm_get_if_in_use(display); if (!wakeref) return NULL; @@ -560,7 +560,7 @@ intel_display_power_get_if_enabled(struct intel_display *display, mutex_unlock(&power_domains->lock); if (!is_enabled) { - intel_runtime_pm_put(&dev_priv->runtime_pm, wakeref); + intel_display_rpm_put(display, wakeref); wakeref = NULL; } @@ -623,12 +623,10 @@ release_async_put_domains(struct i915_power_domains *power_domains, struct intel_display *display = container_of(power_domains, struct intel_display, power.domains); - struct drm_i915_private *dev_priv = to_i915(display->drm); - struct intel_runtime_pm *rpm = &dev_priv->runtime_pm; enum intel_display_power_domain domain; - intel_wakeref_t wakeref; + struct ref_tracker *wakeref; - wakeref = intel_runtime_pm_get_noresume(rpm); + wakeref = intel_display_rpm_get_noresume(display); for_each_power_domain(domain, mask) { /* Clear before put, so put's sanity check is happy. */ @@ -636,7 +634,7 @@ release_async_put_domains(struct i915_power_domains *power_domains, __intel_display_power_put_domain(display, domain); } - intel_runtime_pm_put(rpm, wakeref); + intel_display_rpm_put(display, wakeref); } static void @@ -644,11 +642,10 @@ intel_display_power_put_async_work(struct work_struct *work) { struct intel_display *display = container_of(work, struct intel_display, power.domains.async_put_work.work); - struct drm_i915_private *dev_priv = to_i915(display->drm); struct i915_power_domains *power_domains = &display->power.domains; - struct intel_runtime_pm *rpm = &dev_priv->runtime_pm; - intel_wakeref_t new_work_wakeref = intel_runtime_pm_get_raw(rpm); - intel_wakeref_t old_work_wakeref = NULL; + struct ref_tracker *new_work_wakeref, *old_work_wakeref = NULL; + + new_work_wakeref = intel_display_rpm_get_raw(display); mutex_lock(&power_domains->lock); @@ -688,9 +685,9 @@ out_verify: mutex_unlock(&power_domains->lock); if (old_work_wakeref) - intel_runtime_pm_put_raw(rpm, old_work_wakeref); + intel_display_rpm_put_raw(display, old_work_wakeref); if (new_work_wakeref) - intel_runtime_pm_put_raw(rpm, new_work_wakeref); + intel_display_rpm_put_raw(display, new_work_wakeref); } /** @@ -711,10 +708,10 @@ void __intel_display_power_put_async(struct intel_display *display, intel_wakeref_t wakeref, int delay_ms) { - struct drm_i915_private *i915 = to_i915(display->drm); struct i915_power_domains *power_domains = &display->power.domains; - struct intel_runtime_pm *rpm = &i915->runtime_pm; - intel_wakeref_t work_wakeref = intel_runtime_pm_get_raw(rpm); + struct ref_tracker *work_wakeref; + + work_wakeref = intel_display_rpm_get_raw(display); delay_ms = delay_ms >= 0 ? delay_ms : 100; @@ -746,9 +743,9 @@ out_verify: mutex_unlock(&power_domains->lock); if (work_wakeref) - intel_runtime_pm_put_raw(rpm, work_wakeref); + intel_display_rpm_put_raw(display, work_wakeref); - intel_runtime_pm_put(rpm, wakeref); + intel_display_rpm_put(display, wakeref); } /** @@ -765,7 +762,6 @@ out_verify: */ void intel_display_power_flush_work(struct intel_display *display) { - struct drm_i915_private *i915 = to_i915(display->drm); struct i915_power_domains *power_domains = &display->power.domains; struct intel_power_domain_mask async_put_mask; intel_wakeref_t work_wakeref; @@ -786,7 +782,7 @@ out_verify: mutex_unlock(&power_domains->lock); if (work_wakeref) - intel_runtime_pm_put_raw(&i915->runtime_pm, work_wakeref); + intel_display_rpm_put_raw(display, work_wakeref); } /** @@ -824,10 +820,8 @@ void intel_display_power_put(struct intel_display *display, enum intel_display_power_domain domain, intel_wakeref_t wakeref) { - struct drm_i915_private *dev_priv = to_i915(display->drm); - __intel_display_power_put(display, domain); - intel_runtime_pm_put(&dev_priv->runtime_pm, wakeref); + intel_display_rpm_put(display, wakeref); } #else /** @@ -846,10 +840,8 @@ void intel_display_power_put(struct intel_display *display, void intel_display_power_put_unchecked(struct intel_display *display, enum intel_display_power_domain domain) { - struct drm_i915_private *dev_priv = to_i915(display->drm); - __intel_display_power_put(display, domain); - intel_runtime_pm_put_unchecked(&dev_priv->runtime_pm); + intel_display_rpm_put_unchecked(display); } #endif @@ -1381,18 +1373,18 @@ static void hsw_enable_pc8(struct intel_display *display) intel_de_rmw(display, SOUTH_DSPCLK_GATE_D, PCH_LP_PARTITION_LEVEL_DISABLE, 0); - lpt_disable_clkout_dp(dev_priv); + lpt_disable_clkout_dp(display); hsw_disable_lcpll(display, true, true); } static void hsw_disable_pc8(struct intel_display *display) { - struct drm_i915_private *dev_priv = to_i915(display->drm); + struct drm_i915_private __maybe_unused *dev_priv = to_i915(display->drm); drm_dbg_kms(display->drm, "Disabling package C8+\n"); hsw_restore_lcpll(display); - intel_init_pch_refclk(dev_priv); + intel_init_pch_refclk(display); /* Many display registers don't survive PC8+ */ #ifdef I915 /* FIXME */ @@ -1979,7 +1971,6 @@ void intel_power_domains_init_hw(struct intel_display *display, bool resume) */ void intel_power_domains_driver_remove(struct intel_display *display) { - struct drm_i915_private *i915 = to_i915(display->drm); intel_wakeref_t wakeref __maybe_unused = fetch_and_zero(&display->power.domains.init_wakeref); @@ -1993,7 +1984,7 @@ void intel_power_domains_driver_remove(struct intel_display *display) intel_power_domains_verify_state(display); /* Keep the power well enabled, but cancel its rpm wakeref. */ - intel_runtime_pm_put(&i915->runtime_pm, wakeref); + intel_display_rpm_put(display, wakeref); } /** diff --git a/drivers/gpu/drm/i915/display/intel_display_power_map.c b/drivers/gpu/drm/i915/display/intel_display_power_map.c index e80e1fd611ca..ab1163744bc5 100644 --- a/drivers/gpu/drm/i915/display/intel_display_power_map.c +++ b/drivers/gpu/drm/i915/display/intel_display_power_map.c @@ -1696,6 +1696,7 @@ I915_DECL_PW_DOMAINS(xe3lpd_pwdoms_dc_off, XE3LPD_PW_C_POWER_DOMAINS, XE3LPD_PW_D_POWER_DOMAINS, POWER_DOMAIN_AUDIO_MMIO, + POWER_DOMAIN_AUDIO_PLAYBACK, POWER_DOMAIN_INIT); static const struct i915_power_well_desc xe3lpd_power_wells_dcoff[] = { diff --git a/drivers/gpu/drm/i915/display/intel_display_power_well.c b/drivers/gpu/drm/i915/display/intel_display_power_well.c index 8ec87ffd87d2..b9b4359751cc 100644 --- a/drivers/gpu/drm/i915/display/intel_display_power_well.c +++ b/drivers/gpu/drm/i915/display/intel_display_power_well.c @@ -13,6 +13,7 @@ #include "intel_de.h" #include "intel_display_irq.h" #include "intel_display_power_well.h" +#include "intel_display_rpm.h" #include "intel_display_types.h" #include "intel_dkl_phy.h" #include "intel_dkl_phy_regs.h" @@ -186,22 +187,18 @@ int intel_power_well_refcount(struct i915_power_well *power_well) static void hsw_power_well_post_enable(struct intel_display *display, u8 irq_pipe_mask, bool has_vga) { - struct drm_i915_private *dev_priv = to_i915(display->drm); - if (has_vga) intel_vga_reset_io_mem(display); if (irq_pipe_mask) - gen8_irq_power_well_post_enable(dev_priv, irq_pipe_mask); + gen8_irq_power_well_post_enable(display, irq_pipe_mask); } static void hsw_power_well_pre_disable(struct intel_display *display, u8 irq_pipe_mask) { - struct drm_i915_private *dev_priv = to_i915(display->drm); - if (irq_pipe_mask) - gen8_irq_power_well_pre_disable(dev_priv, irq_pipe_mask); + gen8_irq_power_well_pre_disable(display, irq_pipe_mask); } #define ICL_AUX_PW_TO_PHY(pw_idx) \ @@ -752,8 +749,9 @@ void gen9_sanitize_dc_state(struct intel_display *display) void gen9_set_dc_state(struct intel_display *display, u32 state) { struct i915_power_domains *power_domains = &display->power.domains; - u32 val; + bool dc6_was_enabled, enable_dc6; u32 mask; + u32 val; if (!HAS_DISPLAY(display)) return; @@ -772,11 +770,19 @@ void gen9_set_dc_state(struct intel_display *display, u32 state) drm_err(display->drm, "DC state mismatch (0x%x -> 0x%x)\n", power_domains->dc_state, val & mask); + enable_dc6 = state & DC_STATE_EN_UPTO_DC6; + dc6_was_enabled = val & DC_STATE_EN_UPTO_DC6; + if (!dc6_was_enabled && enable_dc6) + intel_dmc_update_dc6_allowed_count(display, true); + val &= ~mask; val |= state; gen9_write_dc_state(display, val); + if (!enable_dc6 && dc6_was_enabled) + intel_dmc_update_dc6_allowed_count(display, false); + power_domains->dc_state = val & mask; } @@ -816,7 +822,8 @@ static void assert_can_enable_dc5(struct intel_display *display) (intel_de_read(display, DC_STATE_EN) & DC_STATE_EN_UPTO_DC5), "DC5 already programmed to be enabled.\n"); - assert_rpm_wakelock_held(&dev_priv->runtime_pm); + + assert_display_rpm_held(display); assert_dmc_loaded(display); } @@ -1226,7 +1233,7 @@ static void vlv_display_power_well_init(struct intel_display *display) vlv_init_display_clock_gating(display); spin_lock_irq(&dev_priv->irq_lock); - valleyview_enable_display_irqs(dev_priv); + valleyview_enable_display_irqs(display); spin_unlock_irq(&dev_priv->irq_lock); /* @@ -1236,8 +1243,8 @@ static void vlv_display_power_well_init(struct intel_display *display) if (display->power.domains.initializing) return; - intel_hpd_init(dev_priv); - intel_hpd_poll_disable(dev_priv); + intel_hpd_init(display); + intel_hpd_poll_disable(display); /* Re-enable the ADPA, if we have one */ for_each_intel_encoder(display->drm, encoder) { @@ -1255,7 +1262,7 @@ static void vlv_display_power_well_deinit(struct intel_display *display) struct drm_i915_private *dev_priv = to_i915(display->drm); spin_lock_irq(&dev_priv->irq_lock); - valleyview_disable_display_irqs(dev_priv); + valleyview_disable_display_irqs(display); spin_unlock_irq(&dev_priv->irq_lock); /* make sure we're done processing display irqs */ @@ -1265,7 +1272,7 @@ static void vlv_display_power_well_deinit(struct intel_display *display) /* Prevent us from re-enabling polling on accident in late suspend */ if (!display->drm->dev->power.is_suspended) - intel_hpd_poll_enable(dev_priv); + intel_hpd_poll_enable(display); } static void vlv_display_power_well_enable(struct intel_display *display, diff --git a/drivers/gpu/drm/i915/display/intel_display_reset.c b/drivers/gpu/drm/i915/display/intel_display_reset.c index 1f2798404f2c..1dbd3e841df3 100644 --- a/drivers/gpu/drm/i915/display/intel_display_reset.c +++ b/drivers/gpu/drm/i915/display/intel_display_reset.c @@ -107,14 +107,14 @@ void intel_display_reset_finish(struct intel_display *display, bool test_only) intel_display_driver_init_hw(display); intel_clock_gating_init(i915); intel_cx0_pll_power_save_wa(display); - intel_hpd_init(i915); + intel_hpd_init(display); ret = __intel_display_driver_resume(display, state, ctx); if (ret) drm_err(display->drm, "Restoring old state failed with %i\n", ret); - intel_hpd_poll_disable(i915); + intel_hpd_poll_disable(display); } drm_atomic_state_put(state); diff --git a/drivers/gpu/drm/i915/display/intel_display_rpm.c b/drivers/gpu/drm/i915/display/intel_display_rpm.c new file mode 100644 index 000000000000..48da67dd0136 --- /dev/null +++ b/drivers/gpu/drm/i915/display/intel_display_rpm.c @@ -0,0 +1,68 @@ +// SPDX-License-Identifier: MIT +/* Copyright © 2025 Intel Corporation */ + +#include "i915_drv.h" +#include "intel_display_rpm.h" +#include "intel_runtime_pm.h" + +static struct intel_runtime_pm *display_to_rpm(struct intel_display *display) +{ + struct drm_i915_private *i915 = to_i915(display->drm); + + return &i915->runtime_pm; +} + +struct ref_tracker *intel_display_rpm_get_raw(struct intel_display *display) +{ + return intel_runtime_pm_get_raw(display_to_rpm(display)); +} + +void intel_display_rpm_put_raw(struct intel_display *display, struct ref_tracker *wakeref) +{ + intel_runtime_pm_put_raw(display_to_rpm(display), wakeref); +} + +struct ref_tracker *intel_display_rpm_get(struct intel_display *display) +{ + return intel_runtime_pm_get(display_to_rpm(display)); +} + +struct ref_tracker *intel_display_rpm_get_if_in_use(struct intel_display *display) +{ + return intel_runtime_pm_get_if_in_use(display_to_rpm(display)); +} + +struct ref_tracker *intel_display_rpm_get_noresume(struct intel_display *display) +{ + return intel_runtime_pm_get_noresume(display_to_rpm(display)); +} + +void intel_display_rpm_put(struct intel_display *display, struct ref_tracker *wakeref) +{ + intel_runtime_pm_put(display_to_rpm(display), wakeref); +} + +void intel_display_rpm_put_unchecked(struct intel_display *display) +{ + intel_runtime_pm_put_unchecked(display_to_rpm(display)); +} + +bool intel_display_rpm_suspended(struct intel_display *display) +{ + return intel_runtime_pm_suspended(display_to_rpm(display)); +} + +void assert_display_rpm_held(struct intel_display *display) +{ + assert_rpm_wakelock_held(display_to_rpm(display)); +} + +void intel_display_rpm_assert_block(struct intel_display *display) +{ + disable_rpm_wakeref_asserts(display_to_rpm(display)); +} + +void intel_display_rpm_assert_unblock(struct intel_display *display) +{ + enable_rpm_wakeref_asserts(display_to_rpm(display)); +} diff --git a/drivers/gpu/drm/i915/display/intel_display_rpm.h b/drivers/gpu/drm/i915/display/intel_display_rpm.h new file mode 100644 index 000000000000..6ef48515f84b --- /dev/null +++ b/drivers/gpu/drm/i915/display/intel_display_rpm.h @@ -0,0 +1,37 @@ +/* SPDX-License-Identifier: MIT */ +/* Copyright © 2025 Intel Corporation */ + +#ifndef __INTEL_DISPLAY_RPM__ +#define __INTEL_DISPLAY_RPM__ + +#include + +struct intel_display; +struct ref_tracker; + +struct ref_tracker *intel_display_rpm_get(struct intel_display *display); +void intel_display_rpm_put(struct intel_display *display, struct ref_tracker *wakeref); + +#define __with_intel_display_rpm(__display, __wakeref) \ + for (struct ref_tracker *(__wakeref) = intel_display_rpm_get(__display); (__wakeref); \ + intel_display_rpm_put((__display), (__wakeref)), (__wakeref) = NULL) + +#define with_intel_display_rpm(__display) \ + __with_intel_display_rpm((__display), __UNIQUE_ID(wakeref)) + +/* Only for special cases. */ +bool intel_display_rpm_suspended(struct intel_display *display); + +void assert_display_rpm_held(struct intel_display *display); +void intel_display_rpm_assert_block(struct intel_display *display); +void intel_display_rpm_assert_unblock(struct intel_display *display); + +/* Only for display power implementation. */ +struct ref_tracker *intel_display_rpm_get_raw(struct intel_display *display); +void intel_display_rpm_put_raw(struct intel_display *display, struct ref_tracker *wakeref); + +struct ref_tracker *intel_display_rpm_get_if_in_use(struct intel_display *display); +struct ref_tracker *intel_display_rpm_get_noresume(struct intel_display *display); +void intel_display_rpm_put_unchecked(struct intel_display *display); + +#endif /* __INTEL_DISPLAY_RPM__ */ diff --git a/drivers/gpu/drm/i915/display/intel_display_types.h b/drivers/gpu/drm/i915/display/intel_display_types.h index 99a6fd2900b9..94468a9d2e0d 100644 --- a/drivers/gpu/drm/i915/display/intel_display_types.h +++ b/drivers/gpu/drm/i915/display/intel_display_types.h @@ -581,7 +581,7 @@ struct dpll { struct intel_atomic_state { struct drm_atomic_state base; - intel_wakeref_t wakeref; + struct ref_tracker *wakeref; struct __intel_global_objs_state *global_objs; int num_global_objs; @@ -1620,7 +1620,7 @@ struct intel_psr { bool sink_support; bool source_support; bool enabled; - bool paused; + int pause_counter; enum pipe pipe; enum transcoder transcoder; bool active; @@ -1658,7 +1658,6 @@ struct intel_dp { int link_rate; u8 lane_count; u8 sink_count; - bool link_trained; bool needs_modeset_retry; bool use_max_params; u8 dpcd[DP_RECEIVER_CAP_SIZE]; @@ -1683,6 +1682,7 @@ struct intel_dp { int common_rates[DP_MAX_SUPPORTED_RATES]; struct { /* TODO: move the rest of link specific fields to here */ + bool active; /* common rate,lane_count configs in bw order */ int num_configs; #define INTEL_DP_MAX_LANE_COUNT 4 @@ -1739,7 +1739,7 @@ struct intel_dp { struct { struct intel_dp_mst_encoder *stream_encoders[I915_MAX_PIPES]; struct drm_dp_mst_topology_mgr mgr; - int active_links; + int active_streams; } mst; u32 (*get_aux_clock_divider)(struct intel_dp *dp, int index); diff --git a/drivers/gpu/drm/i915/display/intel_display_wa.c b/drivers/gpu/drm/i915/display/intel_display_wa.c index e5a8022db664..da429c332914 100644 --- a/drivers/gpu/drm/i915/display/intel_display_wa.c +++ b/drivers/gpu/drm/i915/display/intel_display_wa.c @@ -3,38 +3,38 @@ * Copyright © 2023 Intel Corporation */ -#include "i915_drv.h" #include "i915_reg.h" #include "intel_de.h" +#include "intel_display_core.h" #include "intel_display_wa.h" -static void gen11_display_wa_apply(struct drm_i915_private *i915) +static void gen11_display_wa_apply(struct intel_display *display) { /* Wa_14010594013 */ - intel_de_rmw(i915, GEN8_CHICKEN_DCPR_1, 0, ICL_DELAY_PMRSP); + intel_de_rmw(display, GEN8_CHICKEN_DCPR_1, 0, ICL_DELAY_PMRSP); } -static void xe_d_display_wa_apply(struct drm_i915_private *i915) +static void xe_d_display_wa_apply(struct intel_display *display) { /* Wa_14013723622 */ - intel_de_rmw(i915, CLKREQ_POLICY, CLKREQ_POLICY_MEM_UP_OVRD, 0); + intel_de_rmw(display, CLKREQ_POLICY, CLKREQ_POLICY_MEM_UP_OVRD, 0); } -static void adlp_display_wa_apply(struct drm_i915_private *i915) +static void adlp_display_wa_apply(struct intel_display *display) { /* Wa_22011091694:adlp */ - intel_de_rmw(i915, GEN9_CLKGATE_DIS_5, 0, DPCE_GATING_DIS); + intel_de_rmw(display, GEN9_CLKGATE_DIS_5, 0, DPCE_GATING_DIS); /* Bspec/49189 Initialize Sequence */ - intel_de_rmw(i915, GEN8_CHICKEN_DCPR_1, DDI_CLOCK_REG_ACCESS, 0); + intel_de_rmw(display, GEN8_CHICKEN_DCPR_1, DDI_CLOCK_REG_ACCESS, 0); } -void intel_display_wa_apply(struct drm_i915_private *i915) +void intel_display_wa_apply(struct intel_display *display) { - if (IS_ALDERLAKE_P(i915)) - adlp_display_wa_apply(i915); - else if (DISPLAY_VER(i915) == 12) - xe_d_display_wa_apply(i915); - else if (DISPLAY_VER(i915) == 11) - gen11_display_wa_apply(i915); + if (display->platform.alderlake_p) + adlp_display_wa_apply(display); + else if (DISPLAY_VER(display) == 12) + xe_d_display_wa_apply(display); + else if (DISPLAY_VER(display) == 11) + gen11_display_wa_apply(display); } diff --git a/drivers/gpu/drm/i915/display/intel_display_wa.h b/drivers/gpu/drm/i915/display/intel_display_wa.h index be644ab6ae00..babd9d16603d 100644 --- a/drivers/gpu/drm/i915/display/intel_display_wa.h +++ b/drivers/gpu/drm/i915/display/intel_display_wa.h @@ -8,14 +8,17 @@ #include -struct drm_i915_private; +struct intel_display; -void intel_display_wa_apply(struct drm_i915_private *i915); +void intel_display_wa_apply(struct intel_display *display); #ifdef I915 -static inline bool intel_display_needs_wa_16023588340(struct drm_i915_private *i915) { return false; } +static inline bool intel_display_needs_wa_16023588340(struct intel_display *display) +{ + return false; +} #else -bool intel_display_needs_wa_16023588340(struct drm_i915_private *i915); +bool intel_display_needs_wa_16023588340(struct intel_display *display); #endif #endif diff --git a/drivers/gpu/drm/i915/display/intel_dkl_phy.c b/drivers/gpu/drm/i915/display/intel_dkl_phy.c index 0813fb9b5823..dad7192132ad 100644 --- a/drivers/gpu/drm/i915/display/intel_dkl_phy.c +++ b/drivers/gpu/drm/i915/display/intel_dkl_phy.c @@ -4,6 +4,7 @@ */ #include +#include #include "intel_de.h" #include "intel_display.h" diff --git a/drivers/gpu/drm/i915/display/intel_dmc.c b/drivers/gpu/drm/i915/display/intel_dmc.c index fa6944e55d95..98f80a6c63e8 100644 --- a/drivers/gpu/drm/i915/display/intel_dmc.c +++ b/drivers/gpu/drm/i915/display/intel_dmc.c @@ -28,6 +28,8 @@ #include "i915_drv.h" #include "i915_reg.h" #include "intel_de.h" +#include "intel_display_rpm.h" +#include "intel_display_power_well.h" #include "intel_dmc.h" #include "intel_dmc_regs.h" #include "intel_step.h" @@ -57,6 +59,10 @@ struct intel_dmc { const char *fw_path; u32 max_fw_size; /* bytes */ u32 version; + struct { + u32 dc5_start; + u32 count; + } dc6_allowed; struct dmc_fw_info { u32 mmio_count; i915_reg_t mmioaddr[20]; @@ -595,7 +601,7 @@ void intel_dmc_load_program(struct intel_display *display) disable_all_event_handlers(display); - assert_rpm_wakelock_held(&i915->runtime_pm); + assert_display_rpm_held(display); preempt_disable(); @@ -1232,18 +1238,57 @@ void intel_dmc_snapshot_print(const struct intel_dmc_snapshot *snapshot, struct DMC_VERSION_MINOR(snapshot->version)); } +void intel_dmc_update_dc6_allowed_count(struct intel_display *display, + bool start_tracking) +{ + struct intel_dmc *dmc = display_to_dmc(display); + u32 dc5_cur_count; + + if (DISPLAY_VER(dmc->display) < 14) + return; + + dc5_cur_count = intel_de_read(dmc->display, DG1_DMC_DEBUG_DC5_COUNT); + + if (!start_tracking) + dmc->dc6_allowed.count += dc5_cur_count - dmc->dc6_allowed.dc5_start; + + dmc->dc6_allowed.dc5_start = dc5_cur_count; +} + +static bool intel_dmc_get_dc6_allowed_count(struct intel_display *display, u32 *count) +{ + struct i915_power_domains *power_domains = &display->power.domains; + struct intel_dmc *dmc = display_to_dmc(display); + bool dc6_enabled; + + if (DISPLAY_VER(display) < 14) + return false; + + mutex_lock(&power_domains->lock); + dc6_enabled = intel_de_read(display, DC_STATE_EN) & + DC_STATE_EN_UPTO_DC6; + if (dc6_enabled) + intel_dmc_update_dc6_allowed_count(display, false); + + *count = dmc->dc6_allowed.count; + mutex_unlock(&power_domains->lock); + + return true; +} + static int intel_dmc_debugfs_status_show(struct seq_file *m, void *unused) { struct intel_display *display = m->private; struct drm_i915_private *i915 = to_i915(display->drm); struct intel_dmc *dmc = display_to_dmc(display); - intel_wakeref_t wakeref; + struct ref_tracker *wakeref; i915_reg_t dc5_reg, dc6_reg = INVALID_MMIO_REG; + u32 dc6_allowed_count; if (!HAS_DMC(display)) return -ENODEV; - wakeref = intel_runtime_pm_get(&i915->runtime_pm); + wakeref = intel_display_rpm_get(display); seq_printf(m, "DMC initialized: %s\n", str_yes_no(dmc)); seq_printf(m, "fw loaded: %s\n", @@ -1287,7 +1332,11 @@ static int intel_dmc_debugfs_status_show(struct seq_file *m, void *unused) } seq_printf(m, "DC3 -> DC5 count: %d\n", intel_de_read(display, dc5_reg)); - if (i915_mmio_reg_valid(dc6_reg)) + + if (intel_dmc_get_dc6_allowed_count(display, &dc6_allowed_count)) + seq_printf(m, "DC5 -> DC6 allowed count: %d\n", + dc6_allowed_count); + else if (i915_mmio_reg_valid(dc6_reg)) seq_printf(m, "DC5 -> DC6 count: %d\n", intel_de_read(display, dc6_reg)); @@ -1299,7 +1348,7 @@ out: intel_de_read(display, DMC_SSP_BASE)); seq_printf(m, "htp: 0x%08x\n", intel_de_read(display, DMC_HTP_SKL)); - intel_runtime_pm_put(&i915->runtime_pm, wakeref); + intel_display_rpm_put(display, wakeref); return 0; } diff --git a/drivers/gpu/drm/i915/display/intel_dmc.h b/drivers/gpu/drm/i915/display/intel_dmc.h index 44cecef98e73..c78426eb4cd5 100644 --- a/drivers/gpu/drm/i915/display/intel_dmc.h +++ b/drivers/gpu/drm/i915/display/intel_dmc.h @@ -26,6 +26,7 @@ void intel_dmc_debugfs_register(struct intel_display *display); struct intel_dmc_snapshot *intel_dmc_snapshot_capture(struct intel_display *display); void intel_dmc_snapshot_print(const struct intel_dmc_snapshot *snapshot, struct drm_printer *p); +void intel_dmc_update_dc6_allowed_count(struct intel_display *display, bool start_tracking); void assert_dmc_loaded(struct intel_display *display); diff --git a/drivers/gpu/drm/i915/display/intel_dp.c b/drivers/gpu/drm/i915/display/intel_dp.c index a236b5fc7a3d..aeb14a5455fd 100644 --- a/drivers/gpu/drm/i915/display/intel_dp.c +++ b/drivers/gpu/drm/i915/display/intel_dp.c @@ -62,6 +62,7 @@ #include "intel_ddi.h" #include "intel_de.h" #include "intel_display_driver.h" +#include "intel_display_rpm.h" #include "intel_display_types.h" #include "intel_dp.h" #include "intel_dp_aux.h" @@ -87,7 +88,6 @@ #include "intel_pfit.h" #include "intel_pps.h" #include "intel_psr.h" -#include "intel_runtime_pm.h" #include "intel_quirks.h" #include "intel_tc.h" #include "intel_vdsc.h" @@ -172,10 +172,28 @@ int intel_dp_link_symbol_clock(int rate) static int max_dprx_rate(struct intel_dp *intel_dp) { - if (intel_dp_tunnel_bw_alloc_is_enabled(intel_dp)) - return drm_dp_tunnel_max_dprx_rate(intel_dp->tunnel); + struct intel_display *display = to_intel_display(intel_dp); + struct intel_encoder *encoder = &dp_to_dig_port(intel_dp)->base; + int max_rate; - return drm_dp_bw_code_to_link_rate(intel_dp->dpcd[DP_MAX_LINK_RATE]); + if (intel_dp_tunnel_bw_alloc_is_enabled(intel_dp)) + max_rate = drm_dp_tunnel_max_dprx_rate(intel_dp->tunnel); + else + max_rate = drm_dp_bw_code_to_link_rate(intel_dp->dpcd[DP_MAX_LINK_RATE]); + + /* + * Some broken eDP sinks illegally declare support for + * HBR3 without TPS4, and are unable to produce a stable + * output. Reject HBR3 when TPS4 is not available. + */ + if (max_rate >= 810000 && !drm_dp_tps4_supported(intel_dp->dpcd)) { + drm_dbg_kms(display->drm, + "[ENCODER:%d:%s] Rejecting HBR3 due to missing TPS4 support\n", + encoder->base.base.id, encoder->base.name); + max_rate = 540000; + } + + return max_rate; } static int max_dprx_lane_count(struct intel_dp *intel_dp) @@ -3204,7 +3222,7 @@ void intel_dp_set_link_params(struct intel_dp *intel_dp, int link_rate, int lane_count) { memset(intel_dp->train_set, 0, sizeof(intel_dp->train_set)); - intel_dp->link_trained = false; + intel_dp->link.active = false; intel_dp->needs_modeset_retry = false; intel_dp->link_rate = link_rate; intel_dp->lane_count = lane_count; @@ -3568,7 +3586,7 @@ void intel_dp_sync_state(struct intel_encoder *encoder, if (crtc_state) { intel_dp_reset_link_params(intel_dp); intel_dp_set_link_params(intel_dp, crtc_state->port_clock, crtc_state->lane_count); - intel_dp->link_trained = true; + intel_dp->link.active = true; } } @@ -4170,6 +4188,9 @@ static void intel_edp_mso_init(struct intel_dp *intel_dp) static void intel_edp_set_sink_rates(struct intel_dp *intel_dp) { + struct intel_display *display = to_intel_display(intel_dp); + struct intel_encoder *encoder = &dp_to_dig_port(intel_dp)->base; + intel_dp->num_sink_rates = 0; if (intel_dp->edp_dpcd[0] >= DP_EDP_14) { @@ -4180,10 +4201,7 @@ intel_edp_set_sink_rates(struct intel_dp *intel_dp) sink_rates, sizeof(sink_rates)); for (i = 0; i < ARRAY_SIZE(sink_rates); i++) { - int val = le16_to_cpu(sink_rates[i]); - - if (val == 0) - break; + int rate; /* Value read multiplied by 200kHz gives the per-lane * link rate in kHz. The source rates are, however, @@ -4191,7 +4209,24 @@ intel_edp_set_sink_rates(struct intel_dp *intel_dp) * back to symbols is * (val * 200kHz)*(8/10 ch. encoding)*(1/8 bit to Byte) */ - intel_dp->sink_rates[i] = (val * 200) / 10; + rate = le16_to_cpu(sink_rates[i]) * 200 / 10; + + if (rate == 0) + break; + + /* + * Some broken eDP sinks illegally declare support for + * HBR3 without TPS4, and are unable to produce a stable + * output. Reject HBR3 when TPS4 is not available. + */ + if (rate >= 810000 && !drm_dp_tps4_supported(intel_dp->dpcd)) { + drm_dbg_kms(display->drm, + "[ENCODER:%d:%s] Rejecting HBR3 due to missing TPS4 support\n", + encoder->base.base.id, encoder->base.name); + break; + } + + intel_dp->sink_rates[i] = rate; } intel_dp->num_sink_rates = i; } @@ -4969,8 +5004,6 @@ intel_dp_check_mst_status(struct intel_dp *intel_dp) bool link_ok = true; bool reprobe_needed = false; - drm_WARN_ON_ONCE(display->drm, intel_dp->mst.active_links < 0); - for (;;) { u8 esi[4] = {}; u8 ack[4] = {}; @@ -4985,7 +5018,7 @@ intel_dp_check_mst_status(struct intel_dp *intel_dp) drm_dbg_kms(display->drm, "DPRX ESI: %4ph\n", esi); - if (intel_dp->mst.active_links > 0 && link_ok && + if (intel_dp_mst_active_streams(intel_dp) > 0 && link_ok && esi[3] & LINK_STATUS_CHANGED) { if (!intel_dp_mst_link_status(intel_dp)) link_ok = false; @@ -5046,7 +5079,7 @@ intel_dp_needs_link_retrain(struct intel_dp *intel_dp) { u8 link_status[DP_LINK_STATUS_SIZE]; - if (!intel_dp->link_trained) + if (!intel_dp->link.active) return false; /* @@ -6117,7 +6150,7 @@ static void intel_dp_oob_hotplug_event(struct drm_connector *connector, spin_unlock_irq(&i915->irq_lock); if (need_work) - intel_hpd_schedule_detection(i915); + intel_hpd_schedule_detection(display); } static const struct drm_connector_funcs intel_dp_connector_funcs = { @@ -6144,13 +6177,12 @@ enum irqreturn intel_dp_hpd_pulse(struct intel_digital_port *dig_port, bool long_hpd) { struct intel_display *display = to_intel_display(dig_port); - struct drm_i915_private *i915 = to_i915(dig_port->base.base.dev); struct intel_dp *intel_dp = &dig_port->dp; u8 dpcd[DP_RECEIVER_CAP_SIZE]; if (dig_port->base.type == INTEL_OUTPUT_EDP && (long_hpd || - intel_runtime_pm_suspended(&i915->runtime_pm) || + intel_display_rpm_suspended(display) || !intel_pps_have_panel_power_or_vdd(intel_dp))) { /* * vdd off can generate a long/short pulse on eDP which @@ -6326,7 +6358,7 @@ static bool intel_edp_init_connector(struct intel_dp *intel_dp, * eDP and LVDS bail out early in this case to prevent interfering * with an already powered-on LVDS power sequencer. */ - if (intel_get_lvds_encoder(dev_priv)) { + if (intel_get_lvds_encoder(display)) { drm_WARN_ON(display->drm, !(HAS_PCH_IBX(dev_priv) || HAS_PCH_CPT(dev_priv))); drm_info(display->drm, diff --git a/drivers/gpu/drm/i915/display/intel_dp_aux.c b/drivers/gpu/drm/i915/display/intel_dp_aux.c index ec27bbd70bcf..0496061203fb 100644 --- a/drivers/gpu/drm/i915/display/intel_dp_aux.c +++ b/drivers/gpu/drm/i915/display/intel_dp_aux.c @@ -247,7 +247,7 @@ intel_dp_aux_xfer(struct intel_dp *intel_dp, u32 aux_clock_divider; enum intel_display_power_domain aux_domain; intel_wakeref_t aux_wakeref; - intel_wakeref_t pps_wakeref; + intel_wakeref_t pps_wakeref = NULL; int i, ret, recv_bytes; int try, clock = 0; u32 status; @@ -272,7 +272,20 @@ intel_dp_aux_xfer(struct intel_dp *intel_dp, aux_domain = intel_aux_power_domain(dig_port); aux_wakeref = intel_display_power_get(display, aux_domain); - pps_wakeref = intel_pps_lock(intel_dp); + + /* + * The PPS state needs to be locked for: + * - eDP on all platforms, since AUX transfers on eDP need VDD power + * (either forced or via panel power) which depends on the PPS + * state. + * - non-eDP on platforms where the PPS is a pipe instance (VLV/CHV), + * since changing the PPS state (via a parallel modeset for + * instance) may interfere with the AUX transfers on a non-eDP + * output as well. + */ + if (intel_dp_is_edp(intel_dp) || + display->platform.valleyview || display->platform.cherryview) + pps_wakeref = intel_pps_lock(intel_dp); /* * We will be called with VDD already enabled for dpcd/edid/oui reads. @@ -430,7 +443,9 @@ out: if (vdd) intel_pps_vdd_off_unlocked(intel_dp, false); - intel_pps_unlock(intel_dp, pps_wakeref); + if (pps_wakeref) + intel_pps_unlock(intel_dp, pps_wakeref); + intel_display_power_put_async(display, aux_domain, aux_wakeref); out_unlock: intel_digital_port_unlock(encoder); diff --git a/drivers/gpu/drm/i915/display/intel_dp_link_training.c b/drivers/gpu/drm/i915/display/intel_dp_link_training.c index 2966f5b39392..a479b63112ea 100644 --- a/drivers/gpu/drm/i915/display/intel_dp_link_training.c +++ b/drivers/gpu/drm/i915/display/intel_dp_link_training.c @@ -56,6 +56,8 @@ lt_dbg(_intel_dp, _dp_phy, "Sink disconnected: " _format, ## __VA_ARGS__); \ } while (0) +#define MAX_SEQ_TRAIN_FAILURES 2 + static void intel_dp_reset_lttpr_common_caps(struct intel_dp *intel_dp) { memset(intel_dp->lttpr_common_caps, 0, sizeof(intel_dp->lttpr_common_caps)); @@ -164,7 +166,7 @@ static int intel_dp_init_lttpr_phys(struct intel_dp *intel_dp, const u8 dpcd[DP_ * resetting its internal state when the mode is changed from * non-transparent to transparent. */ - if (intel_dp->link_trained) { + if (intel_dp->link.active) { if (lttpr_count < 0 || intel_dp_lttpr_transparent_mode_enabled(intel_dp)) goto out_reset_lttpr_count; @@ -711,8 +713,21 @@ void intel_dp_link_training_set_mode(struct intel_dp *intel_dp, int link_rate, b static void intel_dp_update_downspread_ctrl(struct intel_dp *intel_dp, const struct intel_crtc_state *crtc_state) { + /* + * Currently, we set the MSA ignore bit based on vrr.in_range. + * We can't really read that out during driver load since we don't have + * the connector information read in yet. So if we do end up doing a + * modeset during initial_commit() we'll clear the MSA ignore bit. + * GOP likely wouldn't have set this bit so after the initial commit, + * if there are no modesets and we enable VRR mode seamlessly + * (without a full modeset), the MSA ignore bit might never get set. + * + * #TODO: Implement readout of vrr.in_range. + * We need fastset support for setting the MSA ignore bit in DPCD, + * especially on the first real commit when clearing the inherited flag. + */ intel_dp_link_training_set_mode(intel_dp, - crtc_state->port_clock, crtc_state->vrr.flipline); + crtc_state->port_clock, crtc_state->vrr.in_range); } void intel_dp_link_training_set_bw(struct intel_dp *intel_dp, @@ -1110,7 +1125,10 @@ intel_dp_128b132b_intra_hop(struct intel_dp *intel_dp, void intel_dp_stop_link_train(struct intel_dp *intel_dp, const struct intel_crtc_state *crtc_state) { - intel_dp->link_trained = true; + struct intel_display *display = to_intel_display(intel_dp); + struct intel_encoder *encoder = &dp_to_dig_port(intel_dp)->base; + + intel_dp->link.active = true; intel_dp_disable_dpcd_training_pattern(intel_dp, DP_PHY_DPRX); intel_dp_program_link_training_pattern(intel_dp, crtc_state, DP_PHY_DPRX, @@ -1120,6 +1138,15 @@ void intel_dp_stop_link_train(struct intel_dp *intel_dp, wait_for(intel_dp_128b132b_intra_hop(intel_dp, crtc_state) == 0, 500)) { lt_dbg(intel_dp, DP_PHY_DPRX, "128b/132b intra-hop not clearing\n"); } + + intel_hpd_unblock(encoder); + + if (!display->hotplug.ignore_long_hpd && + intel_dp->link.seq_train_failures < MAX_SEQ_TRAIN_FAILURES) { + int delay_ms = intel_dp->link.seq_train_failures ? 0 : 2000; + + intel_encoder_link_check_queue_work(encoder, delay_ms); + } } static bool @@ -1602,7 +1629,11 @@ void intel_dp_start_link_train(struct intel_atomic_state *state, * non-transparent mode. During an earlier LTTPR detection this * could've been prevented by an active link. */ - int lttpr_count = intel_dp_init_lttpr_and_dprx_caps(intel_dp); + int lttpr_count; + + intel_hpd_block(encoder); + + lttpr_count = intel_dp_init_lttpr_and_dprx_caps(intel_dp); if (lttpr_count < 0) /* Still continue with enabling the port and link training. */ @@ -1620,7 +1651,6 @@ void intel_dp_start_link_train(struct intel_atomic_state *state, lt_dbg(intel_dp, DP_PHY_DPRX, "Forcing link training failure\n"); } else if (passed) { intel_dp->link.seq_train_failures = 0; - intel_encoder_link_check_queue_work(encoder, 2000); return; } @@ -1643,10 +1673,8 @@ void intel_dp_start_link_train(struct intel_atomic_state *state, return; } - if (intel_dp->link.seq_train_failures < 2) { - intel_encoder_link_check_queue_work(encoder, 0); + if (intel_dp->link.seq_train_failures < MAX_SEQ_TRAIN_FAILURES) return; - } if (intel_dp_schedule_fallback_link_training(state, intel_dp, crtc_state)) return; @@ -1693,7 +1721,7 @@ static int i915_dp_force_link_rate_show(struct seq_file *m, void *data) if (err) return err; - if (intel_dp->link_trained) + if (intel_dp->link.active) current_rate = intel_dp->link_rate; force_rate = intel_dp->link.force_rate; @@ -1791,7 +1819,7 @@ static int i915_dp_force_lane_count_show(struct seq_file *m, void *data) if (err) return err; - if (intel_dp->link_trained) + if (intel_dp->link.active) current_lane_count = intel_dp->lane_count; force_lane_count = intel_dp->link.force_lane_count; diff --git a/drivers/gpu/drm/i915/display/intel_dp_mst.c b/drivers/gpu/drm/i915/display/intel_dp_mst.c index 02f95108c637..4c15dcb103aa 100644 --- a/drivers/gpu/drm/i915/display/intel_dp_mst.c +++ b/drivers/gpu/drm/i915/display/intel_dp_mst.c @@ -52,6 +52,7 @@ #include "intel_pfit.h" #include "intel_psr.h" #include "intel_vdsc.h" +#include "intel_vrr.h" #include "skl_scaler.h" /* @@ -104,6 +105,34 @@ static struct intel_dp *to_primary_dp(struct intel_encoder *encoder) return &dig_port->dp; } +int intel_dp_mst_active_streams(struct intel_dp *intel_dp) +{ + return intel_dp->mst.active_streams; +} + +static bool intel_dp_mst_dec_active_streams(struct intel_dp *intel_dp) +{ + struct intel_display *display = to_intel_display(intel_dp); + + drm_dbg_kms(display->drm, "active MST streams %d -> %d\n", + intel_dp->mst.active_streams, intel_dp->mst.active_streams - 1); + + if (drm_WARN_ON(display->drm, intel_dp->mst.active_streams == 0)) + return true; + + return --intel_dp->mst.active_streams == 0; +} + +static bool intel_dp_mst_inc_active_streams(struct intel_dp *intel_dp) +{ + struct intel_display *display = to_intel_display(intel_dp); + + drm_dbg_kms(display->drm, "active MST streams %d -> %d\n", + intel_dp->mst.active_streams, intel_dp->mst.active_streams + 1); + + return intel_dp->mst.active_streams++ == 0; +} + static int intel_dp_mst_max_dpt_bpp(const struct intel_crtc_state *crtc_state, bool dsc) { @@ -710,6 +739,8 @@ static int mst_stream_compute_config(struct intel_encoder *encoder, pipe_config->lane_lat_optim_mask = bxt_dpio_phy_calc_lane_lat_optim_mask(pipe_config->lane_count); + intel_vrr_compute_config(pipe_config, conn_state); + intel_dp_audio_compute_config(encoder, pipe_config, conn_state); intel_ddi_compute_min_voltage_level(pipe_config); @@ -997,11 +1028,8 @@ static void mst_stream_disable(struct intel_atomic_state *state, to_intel_connector(old_conn_state->connector); enum transcoder trans = old_crtc_state->cpu_transcoder; - drm_dbg_kms(display->drm, "active links %d\n", - intel_dp->mst.active_links); - - if (intel_dp->mst.active_links == 1) - intel_dp->link_trained = false; + if (intel_dp_mst_active_streams(intel_dp) == 1) + intel_dp->link.active = false; intel_hdcp_disable(intel_mst->connector); @@ -1034,8 +1062,8 @@ static void mst_stream_post_disable(struct intel_atomic_state *state, bool last_mst_stream; int i; - intel_dp->mst.active_links--; - last_mst_stream = intel_dp->mst.active_links == 0; + last_mst_stream = intel_dp_mst_dec_active_streams(intel_dp); + drm_WARN_ON(display->drm, DISPLAY_VER(display) >= 12 && last_mst_stream && !intel_dp_mst_is_master_trans(old_crtc_state)); @@ -1062,6 +1090,8 @@ static void mst_stream_post_disable(struct intel_atomic_state *state, drm_dp_remove_payload_part2(&intel_dp->mst.mgr, new_mst_state, old_payload, new_payload); + intel_vrr_transcoder_disable(old_crtc_state); + intel_ddi_disable_transcoder_func(old_crtc_state); for_each_pipe_crtc_modeset_disable(display, pipe_crtc, old_crtc_state, i) { @@ -1104,8 +1134,6 @@ static void mst_stream_post_disable(struct intel_atomic_state *state, primary_encoder->post_disable(state, primary_encoder, old_crtc_state, NULL); - drm_dbg_kms(display->drm, "active links %d\n", - intel_dp->mst.active_links); } static void mst_stream_post_pll_disable(struct intel_atomic_state *state, @@ -1116,7 +1144,7 @@ static void mst_stream_post_pll_disable(struct intel_atomic_state *state, struct intel_encoder *primary_encoder = to_primary_encoder(encoder); struct intel_dp *intel_dp = to_primary_dp(encoder); - if (intel_dp->mst.active_links == 0 && + if (intel_dp_mst_active_streams(intel_dp) == 0 && primary_encoder->post_pll_disable) primary_encoder->post_pll_disable(state, primary_encoder, old_crtc_state, old_conn_state); } @@ -1129,7 +1157,7 @@ static void mst_stream_pre_pll_enable(struct intel_atomic_state *state, struct intel_encoder *primary_encoder = to_primary_encoder(encoder); struct intel_dp *intel_dp = to_primary_dp(encoder); - if (intel_dp->mst.active_links == 0) + if (intel_dp_mst_active_streams(intel_dp) == 0) primary_encoder->pre_pll_enable(state, primary_encoder, pipe_config, NULL); else @@ -1189,13 +1217,11 @@ static void mst_stream_pre_enable(struct intel_atomic_state *state, */ connector->encoder = encoder; intel_mst->connector = connector; - first_mst_stream = intel_dp->mst.active_links == 0; + + first_mst_stream = intel_dp_mst_inc_active_streams(intel_dp); drm_WARN_ON(display->drm, DISPLAY_VER(display) >= 12 && first_mst_stream && !intel_dp_mst_is_master_trans(pipe_config)); - drm_dbg_kms(display->drm, "active links %d\n", - intel_dp->mst.active_links); - if (first_mst_stream) intel_dp_set_power(intel_dp, DP_SET_POWER_D0); @@ -1210,8 +1236,6 @@ static void mst_stream_pre_enable(struct intel_atomic_state *state, intel_mst_reprobe_topology(intel_dp, pipe_config); } - intel_dp->mst.active_links++; - ret = drm_dp_add_payload_part1(&intel_dp->mst.mgr, mst_state, drm_atomic_get_mst_payload_state(mst_state, connector->mst.port)); if (ret < 0) @@ -1279,7 +1303,7 @@ static void mst_stream_enable(struct intel_atomic_state *state, struct drm_dp_mst_topology_state *mst_state = drm_atomic_get_new_mst_topology_state(&state->base, &intel_dp->mst.mgr); enum transcoder trans = pipe_config->cpu_transcoder; - bool first_mst_stream = intel_dp->mst.active_links == 1; + bool first_mst_stream = intel_dp_mst_active_streams(intel_dp) == 1; struct intel_crtc *pipe_crtc; int ret, i, min_hblank; @@ -1323,14 +1347,13 @@ static void mst_stream_enable(struct intel_atomic_state *state, intel_ddi_enable_transcoder_func(encoder, pipe_config); + intel_vrr_transcoder_enable(pipe_config); + intel_ddi_clear_act_sent(encoder, pipe_config); intel_de_rmw(display, TRANS_DDI_FUNC_CTL(display, trans), 0, TRANS_DDI_DP_VC_PAYLOAD_ALLOC); - drm_dbg_kms(display->drm, "active links %d\n", - intel_dp->mst.active_links); - intel_ddi_wait_for_act_sent(encoder, pipe_config); drm_dp_check_act_status(&intel_dp->mst.mgr); @@ -1869,12 +1892,6 @@ mst_stream_encoders_create(struct intel_digital_port *dig_port) return true; } -int -intel_dp_mst_encoder_active_links(struct intel_digital_port *dig_port) -{ - return dig_port->dp.mst.active_links; -} - int intel_dp_mst_encoder_init(struct intel_digital_port *dig_port, int conn_base_id) { @@ -2101,7 +2118,7 @@ void intel_dp_mst_prepare_probe(struct intel_dp *intel_dp) u8 rate_select; u8 link_bw; - if (intel_dp->link_trained) + if (intel_dp->link.active) return; if (intel_mst_probed_link_params_valid(intel_dp, link_rate, lane_count)) diff --git a/drivers/gpu/drm/i915/display/intel_dp_mst.h b/drivers/gpu/drm/i915/display/intel_dp_mst.h index c1bbfeb02ca9..ab09b487c6bb 100644 --- a/drivers/gpu/drm/i915/display/intel_dp_mst.h +++ b/drivers/gpu/drm/i915/display/intel_dp_mst.h @@ -18,7 +18,7 @@ struct intel_link_bw_limits; int intel_dp_mst_encoder_init(struct intel_digital_port *dig_port, int conn_id); void intel_dp_mst_encoder_cleanup(struct intel_digital_port *dig_port); -int intel_dp_mst_encoder_active_links(struct intel_digital_port *dig_port); +int intel_dp_mst_active_streams(struct intel_dp *intel_dp); bool intel_dp_mst_is_master_trans(const struct intel_crtc_state *crtc_state); bool intel_dp_mst_is_slave_trans(const struct intel_crtc_state *crtc_state); bool intel_dp_mst_source_support(struct intel_dp *intel_dp); diff --git a/drivers/gpu/drm/i915/display/intel_dpll.c b/drivers/gpu/drm/i915/display/intel_dpll.c index 08a30e5aafce..0481b1365b85 100644 --- a/drivers/gpu/drm/i915/display/intel_dpll.c +++ b/drivers/gpu/drm/i915/display/intel_dpll.c @@ -373,14 +373,15 @@ int chv_calc_dpll_params(int refclk, struct dpll *clock) static int i9xx_pll_refclk(const struct intel_crtc_state *crtc_state) { + struct intel_display *display = to_intel_display(crtc_state); struct drm_i915_private *i915 = to_i915(crtc_state->uapi.crtc->dev); const struct i9xx_dpll_hw_state *hw_state = &crtc_state->dpll_hw_state.i9xx; if ((hw_state->dpll & PLL_REF_INPUT_MASK) == PLLB_REF_INPUT_SPREADSPECTRUMIN) - return i915->display.vbt.lvds_ssc_freq; + return display->vbt.lvds_ssc_freq; else if (HAS_PCH_SPLIT(i915)) return 120000; - else if (DISPLAY_VER(i915) != 2) + else if (DISPLAY_VER(display) != 2) return 96000; else return 48000; @@ -389,27 +390,27 @@ static int i9xx_pll_refclk(const struct intel_crtc_state *crtc_state) void i9xx_dpll_get_hw_state(struct intel_crtc *crtc, struct intel_dpll_hw_state *dpll_hw_state) { - struct drm_i915_private *dev_priv = to_i915(crtc->base.dev); + struct intel_display *display = to_intel_display(crtc); struct i9xx_dpll_hw_state *hw_state = &dpll_hw_state->i9xx; - if (DISPLAY_VER(dev_priv) >= 4) { + if (DISPLAY_VER(display) >= 4) { u32 tmp; /* No way to read it out on pipes B and C */ - if (IS_CHERRYVIEW(dev_priv) && crtc->pipe != PIPE_A) - tmp = dev_priv->display.state.chv_dpll_md[crtc->pipe]; + if (display->platform.cherryview && crtc->pipe != PIPE_A) + tmp = display->state.chv_dpll_md[crtc->pipe]; else - tmp = intel_de_read(dev_priv, - DPLL_MD(dev_priv, crtc->pipe)); + tmp = intel_de_read(display, + DPLL_MD(display, crtc->pipe)); hw_state->dpll_md = tmp; } - hw_state->dpll = intel_de_read(dev_priv, DPLL(dev_priv, crtc->pipe)); + hw_state->dpll = intel_de_read(display, DPLL(display, crtc->pipe)); - if (!IS_VALLEYVIEW(dev_priv) && !IS_CHERRYVIEW(dev_priv)) { - hw_state->fp0 = intel_de_read(dev_priv, FP0(crtc->pipe)); - hw_state->fp1 = intel_de_read(dev_priv, FP1(crtc->pipe)); + if (!display->platform.valleyview && !display->platform.cherryview) { + hw_state->fp0 = intel_de_read(display, FP0(crtc->pipe)); + hw_state->fp1 = intel_de_read(display, FP1(crtc->pipe)); } else { /* Mask out read-only status bits. */ hw_state->dpll &= ~(DPLL_LOCK_VLV | @@ -421,8 +422,8 @@ void i9xx_dpll_get_hw_state(struct intel_crtc *crtc, /* Returns the clock of the currently programmed mode of the given pipe. */ void i9xx_crtc_clock_get(struct intel_crtc_state *crtc_state) { + struct intel_display *display = to_intel_display(crtc_state); struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc); - struct drm_i915_private *dev_priv = to_i915(crtc->base.dev); const struct i9xx_dpll_hw_state *hw_state = &crtc_state->dpll_hw_state.i9xx; u32 dpll = hw_state->dpll; u32 fp; @@ -436,7 +437,7 @@ void i9xx_crtc_clock_get(struct intel_crtc_state *crtc_state) fp = hw_state->fp1; clock.m1 = (fp & FP_M1_DIV_MASK) >> FP_M1_DIV_SHIFT; - if (IS_PINEVIEW(dev_priv)) { + if (display->platform.pineview) { clock.n = ffs((fp & FP_N_PINEVIEW_DIV_MASK) >> FP_N_DIV_SHIFT) - 1; clock.m2 = (fp & FP_M2_PINEVIEW_DIV_MASK) >> FP_M2_DIV_SHIFT; } else { @@ -444,8 +445,8 @@ void i9xx_crtc_clock_get(struct intel_crtc_state *crtc_state) clock.m2 = (fp & FP_M2_DIV_MASK) >> FP_M2_DIV_SHIFT; } - if (DISPLAY_VER(dev_priv) != 2) { - if (IS_PINEVIEW(dev_priv)) + if (DISPLAY_VER(display) != 2) { + if (display->platform.pineview) clock.p1 = ffs((dpll & DPLL_FPA01_P1_POST_DIV_MASK_PINEVIEW) >> DPLL_FPA01_P1_POST_DIV_SHIFT_PINEVIEW); else @@ -462,23 +463,23 @@ void i9xx_crtc_clock_get(struct intel_crtc_state *crtc_state) 7 : 14; break; default: - drm_dbg_kms(&dev_priv->drm, + drm_dbg_kms(display->drm, "Unknown DPLL mode %08x in programmed " "mode\n", (int)(dpll & DPLL_MODE_MASK)); return; } - if (IS_PINEVIEW(dev_priv)) + if (display->platform.pineview) port_clock = pnv_calc_dpll_params(refclk, &clock); else port_clock = i9xx_calc_dpll_params(refclk, &clock); } else { enum pipe lvds_pipe; - if (IS_I85X(dev_priv) && - intel_lvds_port_enabled(dev_priv, LVDS, &lvds_pipe) && + if (display->platform.i85x && + intel_lvds_port_enabled(display, LVDS, &lvds_pipe) && lvds_pipe == crtc->pipe) { - u32 lvds = intel_de_read(dev_priv, LVDS); + u32 lvds = intel_de_read(display, LVDS); clock.p1 = ffs((dpll & DPLL_FPA01_P1_POST_DIV_MASK_I830_LVDS) >> DPLL_FPA01_P1_POST_DIV_SHIFT); @@ -577,7 +578,7 @@ void chv_crtc_clock_get(struct intel_crtc_state *crtc_state) * Returns whether the given set of divisors are valid for a given refclk with * the given connectors. */ -static bool intel_pll_is_valid(struct drm_i915_private *dev_priv, +static bool intel_pll_is_valid(struct intel_display *display, const struct intel_limit *limit, const struct dpll *clock) { @@ -590,14 +591,14 @@ static bool intel_pll_is_valid(struct drm_i915_private *dev_priv, if (clock->m1 < limit->m1.min || limit->m1.max < clock->m1) return false; - if (!IS_PINEVIEW(dev_priv) && - !IS_VALLEYVIEW(dev_priv) && !IS_CHERRYVIEW(dev_priv) && - !IS_BROXTON(dev_priv) && !IS_GEMINILAKE(dev_priv)) + if (!display->platform.pineview && + !display->platform.valleyview && !display->platform.cherryview && + !display->platform.broxton && !display->platform.geminilake) if (clock->m1 <= clock->m2) return false; - if (!IS_VALLEYVIEW(dev_priv) && !IS_CHERRYVIEW(dev_priv) && - !IS_BROXTON(dev_priv) && !IS_GEMINILAKE(dev_priv)) { + if (!display->platform.valleyview && !display->platform.cherryview && + !display->platform.broxton && !display->platform.geminilake) { if (clock->p < limit->p.min || limit->p.max < clock->p) return false; if (clock->m < limit->m.min || limit->m.max < clock->m) @@ -620,7 +621,7 @@ i9xx_select_p2_div(const struct intel_limit *limit, const struct intel_crtc_state *crtc_state, int target) { - struct drm_i915_private *dev_priv = to_i915(crtc_state->uapi.crtc->dev); + struct intel_display *display = to_intel_display(crtc_state); if (intel_crtc_has_type(crtc_state, INTEL_OUTPUT_LVDS)) { /* @@ -628,7 +629,7 @@ i9xx_select_p2_div(const struct intel_limit *limit, * We haven't figured out how to reliably set up different * single/dual channel state, if we even can. */ - if (intel_is_dual_link_lvds(dev_priv)) + if (intel_is_dual_link_lvds(display)) return limit->p2.p2_fast; else return limit->p2.p2_slow; @@ -656,7 +657,7 @@ i9xx_find_best_dpll(const struct intel_limit *limit, const struct dpll *match_clock, struct dpll *best_clock) { - struct drm_device *dev = crtc_state->uapi.crtc->dev; + struct intel_display *display = to_intel_display(crtc_state); struct dpll clock; int err = target; @@ -677,7 +678,7 @@ i9xx_find_best_dpll(const struct intel_limit *limit, int this_err; i9xx_calc_dpll_params(refclk, &clock); - if (!intel_pll_is_valid(to_i915(dev), + if (!intel_pll_is_valid(display, limit, &clock)) continue; @@ -714,7 +715,7 @@ pnv_find_best_dpll(const struct intel_limit *limit, const struct dpll *match_clock, struct dpll *best_clock) { - struct drm_device *dev = crtc_state->uapi.crtc->dev; + struct intel_display *display = to_intel_display(crtc_state); struct dpll clock; int err = target; @@ -733,7 +734,7 @@ pnv_find_best_dpll(const struct intel_limit *limit, int this_err; pnv_calc_dpll_params(refclk, &clock); - if (!intel_pll_is_valid(to_i915(dev), + if (!intel_pll_is_valid(display, limit, &clock)) continue; @@ -770,7 +771,7 @@ g4x_find_best_dpll(const struct intel_limit *limit, const struct dpll *match_clock, struct dpll *best_clock) { - struct drm_device *dev = crtc_state->uapi.crtc->dev; + struct intel_display *display = to_intel_display(crtc_state); struct dpll clock; int max_n; bool found = false; @@ -794,7 +795,7 @@ g4x_find_best_dpll(const struct intel_limit *limit, int this_err; i9xx_calc_dpll_params(refclk, &clock); - if (!intel_pll_is_valid(to_i915(dev), + if (!intel_pll_is_valid(display, limit, &clock)) continue; @@ -817,7 +818,7 @@ g4x_find_best_dpll(const struct intel_limit *limit, * Check if the calculated PLL configuration is more optimal compared to the * best configuration and error found so far. Return the calculated error. */ -static bool vlv_PLL_is_optimal(struct drm_device *dev, int target_freq, +static bool vlv_PLL_is_optimal(struct intel_display *display, int target_freq, const struct dpll *calculated_clock, const struct dpll *best_clock, unsigned int best_error_ppm, @@ -827,13 +828,13 @@ static bool vlv_PLL_is_optimal(struct drm_device *dev, int target_freq, * For CHV ignore the error and consider only the P value. * Prefer a bigger P value based on HW requirements. */ - if (IS_CHERRYVIEW(to_i915(dev))) { + if (display->platform.cherryview) { *error_ppm = 0; return calculated_clock->p > best_clock->p; } - if (drm_WARN_ON_ONCE(dev, !target_freq)) + if (drm_WARN_ON_ONCE(display->drm, !target_freq)) return false; *error_ppm = div_u64(1000000ULL * @@ -864,8 +865,7 @@ vlv_find_best_dpll(const struct intel_limit *limit, const struct dpll *match_clock, struct dpll *best_clock) { - struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc); - struct drm_device *dev = crtc->base.dev; + struct intel_display *display = to_intel_display(crtc_state); struct dpll clock; unsigned int bestppm = 1000000; /* min update 19.2 MHz */ @@ -889,12 +889,12 @@ vlv_find_best_dpll(const struct intel_limit *limit, vlv_calc_dpll_params(refclk, &clock); - if (!intel_pll_is_valid(to_i915(dev), + if (!intel_pll_is_valid(display, limit, &clock)) continue; - if (!vlv_PLL_is_optimal(dev, target, + if (!vlv_PLL_is_optimal(display, target, &clock, best_clock, bestppm, &ppm)) @@ -922,8 +922,7 @@ chv_find_best_dpll(const struct intel_limit *limit, const struct dpll *match_clock, struct dpll *best_clock) { - struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc); - struct drm_device *dev = crtc->base.dev; + struct intel_display *display = to_intel_display(crtc_state); unsigned int best_error_ppm; struct dpll clock; u64 m2; @@ -958,10 +957,10 @@ chv_find_best_dpll(const struct intel_limit *limit, chv_calc_dpll_params(refclk, &clock); - if (!intel_pll_is_valid(to_i915(dev), limit, &clock)) + if (!intel_pll_is_valid(display, limit, &clock)) continue; - if (!vlv_PLL_is_optimal(dev, target, &clock, best_clock, + if (!vlv_PLL_is_optimal(display, target, &clock, best_clock, best_error_ppm, &error_ppm)) continue; @@ -1005,8 +1004,6 @@ static u32 i9xx_dpll(const struct intel_crtc_state *crtc_state, const struct dpll *reduced_clock) { struct intel_display *display = to_intel_display(crtc_state); - struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc); - struct drm_i915_private *dev_priv = to_i915(crtc->base.dev); u32 dpll; dpll = DPLL_VCO_ENABLE | DPLL_VGA_MODE_DIS; @@ -1016,8 +1013,8 @@ static u32 i9xx_dpll(const struct intel_crtc_state *crtc_state, else dpll |= DPLLB_MODE_DAC_SERIAL; - if (IS_I945G(dev_priv) || IS_I945GM(dev_priv) || - IS_G33(dev_priv) || IS_PINEVIEW(dev_priv)) { + if (display->platform.i945g || display->platform.i945gm || + display->platform.g33 || display->platform.pineview) { dpll |= (crtc_state->pixel_multiplier - 1) << SDVO_MULTIPLIER_SHIFT_HIRES; } @@ -1030,10 +1027,10 @@ static u32 i9xx_dpll(const struct intel_crtc_state *crtc_state, dpll |= DPLL_SDVO_HIGH_SPEED; /* compute bitmask from p1 value */ - if (IS_G4X(dev_priv)) { + if (display->platform.g4x) { dpll |= (1 << (clock->p1 - 1)) << DPLL_FPA01_P1_POST_DIV_SHIFT; dpll |= (1 << (reduced_clock->p1 - 1)) << DPLL_FPA1_P1_POST_DIV_SHIFT; - } else if (IS_PINEVIEW(dev_priv)) { + } else if (display->platform.pineview) { dpll |= (1 << (clock->p1 - 1)) << DPLL_FPA01_P1_POST_DIV_SHIFT_PINEVIEW; WARN_ON(reduced_clock->p1 != clock->p1); } else { @@ -1057,7 +1054,7 @@ static u32 i9xx_dpll(const struct intel_crtc_state *crtc_state, } WARN_ON(reduced_clock->p2 != clock->p2); - if (DISPLAY_VER(dev_priv) >= 4) + if (DISPLAY_VER(display) >= 4) dpll |= (6 << PLL_LOAD_PULSE_PHASE_SHIFT); if (crtc_state->sdvo_tv_clock) @@ -1075,11 +1072,10 @@ static void i9xx_compute_dpll(struct intel_crtc_state *crtc_state, const struct dpll *clock, const struct dpll *reduced_clock) { - struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc); - struct drm_i915_private *dev_priv = to_i915(crtc->base.dev); + struct intel_display *display = to_intel_display(crtc_state); struct i9xx_dpll_hw_state *hw_state = &crtc_state->dpll_hw_state.i9xx; - if (IS_PINEVIEW(dev_priv)) { + if (display->platform.pineview) { hw_state->fp0 = pnv_dpll_compute_fp(clock); hw_state->fp1 = pnv_dpll_compute_fp(reduced_clock); } else { @@ -1089,7 +1085,7 @@ static void i9xx_compute_dpll(struct intel_crtc_state *crtc_state, hw_state->dpll = i9xx_dpll(crtc_state, clock, reduced_clock); - if (DISPLAY_VER(dev_priv) >= 4) + if (DISPLAY_VER(display) >= 4) hw_state->dpll_md = i965_dpll_md(crtc_state); } @@ -1098,8 +1094,6 @@ static u32 i8xx_dpll(const struct intel_crtc_state *crtc_state, const struct dpll *reduced_clock) { struct intel_display *display = to_intel_display(crtc_state); - struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc); - struct drm_i915_private *dev_priv = to_i915(crtc->base.dev); u32 dpll; dpll = DPLL_VCO_ENABLE | DPLL_VGA_MODE_DIS; @@ -1129,7 +1123,7 @@ static u32 i8xx_dpll(const struct intel_crtc_state *crtc_state, * both DPLLS. The spec says we should disable the DVO 2X clock * when not needed, but this seems to work fine in practice. */ - if (IS_I830(dev_priv) || + if (display->platform.i830 || intel_crtc_has_type(crtc_state, INTEL_OUTPUT_DVO)) dpll |= DPLL_DVO_2X_MODE; @@ -1157,14 +1151,14 @@ static void i8xx_compute_dpll(struct intel_crtc_state *crtc_state, static int hsw_crtc_compute_clock(struct intel_atomic_state *state, struct intel_crtc *crtc) { - struct drm_i915_private *dev_priv = to_i915(state->base.dev); + struct intel_display *display = to_intel_display(state); struct intel_crtc_state *crtc_state = intel_atomic_get_new_crtc_state(state, crtc); struct intel_encoder *encoder = intel_get_crtc_new_encoder(state, crtc_state); int ret; - if (DISPLAY_VER(dev_priv) < 11 && + if (DISPLAY_VER(display) < 11 && intel_crtc_has_type(crtc_state, INTEL_OUTPUT_DSI)) return 0; @@ -1186,13 +1180,13 @@ static int hsw_crtc_compute_clock(struct intel_atomic_state *state, static int hsw_crtc_get_shared_dpll(struct intel_atomic_state *state, struct intel_crtc *crtc) { - struct drm_i915_private *dev_priv = to_i915(state->base.dev); + struct intel_display *display = to_intel_display(state); struct intel_crtc_state *crtc_state = intel_atomic_get_new_crtc_state(state, crtc); struct intel_encoder *encoder = intel_get_crtc_new_encoder(state, crtc_state); - if (DISPLAY_VER(dev_priv) < 11 && + if (DISPLAY_VER(display) < 11 && intel_crtc_has_type(crtc_state, INTEL_OUTPUT_DSI)) return 0; @@ -1245,8 +1239,8 @@ static int ilk_fb_cb_factor(const struct intel_crtc_state *crtc_state) struct drm_i915_private *i915 = to_i915(crtc->base.dev); if (intel_crtc_has_type(crtc_state, INTEL_OUTPUT_LVDS) && - ((intel_panel_use_ssc(display) && i915->display.vbt.lvds_ssc_freq == 100000) || - (HAS_PCH_IBX(i915) && intel_is_dual_link_lvds(i915)))) + ((intel_panel_use_ssc(display) && display->vbt.lvds_ssc_freq == 100000) || + (HAS_PCH_IBX(i915) && intel_is_dual_link_lvds(display)))) return 25; if (crtc_state->sdvo_tv_clock) @@ -1276,8 +1270,6 @@ static u32 ilk_dpll(const struct intel_crtc_state *crtc_state, const struct dpll *reduced_clock) { struct intel_display *display = to_intel_display(crtc_state); - struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc); - struct drm_i915_private *dev_priv = to_i915(crtc->base.dev); u32 dpll; dpll = DPLL_VCO_ENABLE; @@ -1311,7 +1303,7 @@ static u32 ilk_dpll(const struct intel_crtc_state *crtc_state, * clear if it''s a win or loss power wise. No point in doing * this on ILK at all since it has a fixed DPLL<->pipe mapping. */ - if (INTEL_NUM_PIPES(dev_priv) == 3 && + if (INTEL_NUM_PIPES(display) == 3 && intel_crtc_has_type(crtc_state, INTEL_OUTPUT_ANALOG)) dpll |= DPLL_SDVO_HIGH_SPEED; @@ -1362,7 +1354,6 @@ static int ilk_crtc_compute_clock(struct intel_atomic_state *state, struct intel_crtc *crtc) { struct intel_display *display = to_intel_display(state); - struct drm_i915_private *dev_priv = to_i915(state->base.dev); struct intel_crtc_state *crtc_state = intel_atomic_get_new_crtc_state(state, crtc); const struct intel_limit *limit; @@ -1375,13 +1366,13 @@ static int ilk_crtc_compute_clock(struct intel_atomic_state *state, if (intel_crtc_has_type(crtc_state, INTEL_OUTPUT_LVDS)) { if (intel_panel_use_ssc(display)) { - drm_dbg_kms(&dev_priv->drm, + drm_dbg_kms(display->drm, "using SSC reference clock of %d kHz\n", - dev_priv->display.vbt.lvds_ssc_freq); - refclk = dev_priv->display.vbt.lvds_ssc_freq; + display->vbt.lvds_ssc_freq); + refclk = display->vbt.lvds_ssc_freq; } - if (intel_is_dual_link_lvds(dev_priv)) { + if (intel_is_dual_link_lvds(display)) { if (refclk == 100000) limit = &ilk_limits_dual_lvds_100m; else @@ -1539,7 +1530,6 @@ static int g4x_crtc_compute_clock(struct intel_atomic_state *state, struct intel_crtc *crtc) { struct intel_display *display = to_intel_display(state); - struct drm_i915_private *dev_priv = to_i915(state->base.dev); struct intel_crtc_state *crtc_state = intel_atomic_get_new_crtc_state(state, crtc); const struct intel_limit *limit; @@ -1547,13 +1537,13 @@ static int g4x_crtc_compute_clock(struct intel_atomic_state *state, if (intel_crtc_has_type(crtc_state, INTEL_OUTPUT_LVDS)) { if (intel_panel_use_ssc(display)) { - refclk = dev_priv->display.vbt.lvds_ssc_freq; - drm_dbg_kms(&dev_priv->drm, + refclk = display->vbt.lvds_ssc_freq; + drm_dbg_kms(display->drm, "using SSC reference clock of %d kHz\n", refclk); } - if (intel_is_dual_link_lvds(dev_priv)) + if (intel_is_dual_link_lvds(display)) limit = &intel_limits_g4x_dual_channel_lvds; else limit = &intel_limits_g4x_single_channel_lvds; @@ -1589,7 +1579,6 @@ static int pnv_crtc_compute_clock(struct intel_atomic_state *state, struct intel_crtc *crtc) { struct intel_display *display = to_intel_display(state); - struct drm_i915_private *dev_priv = to_i915(state->base.dev); struct intel_crtc_state *crtc_state = intel_atomic_get_new_crtc_state(state, crtc); const struct intel_limit *limit; @@ -1597,8 +1586,8 @@ static int pnv_crtc_compute_clock(struct intel_atomic_state *state, if (intel_crtc_has_type(crtc_state, INTEL_OUTPUT_LVDS)) { if (intel_panel_use_ssc(display)) { - refclk = dev_priv->display.vbt.lvds_ssc_freq; - drm_dbg_kms(&dev_priv->drm, + refclk = display->vbt.lvds_ssc_freq; + drm_dbg_kms(display->drm, "using SSC reference clock of %d kHz\n", refclk); } @@ -1628,7 +1617,6 @@ static int i9xx_crtc_compute_clock(struct intel_atomic_state *state, struct intel_crtc *crtc) { struct intel_display *display = to_intel_display(state); - struct drm_i915_private *dev_priv = to_i915(state->base.dev); struct intel_crtc_state *crtc_state = intel_atomic_get_new_crtc_state(state, crtc); const struct intel_limit *limit; @@ -1636,8 +1624,8 @@ static int i9xx_crtc_compute_clock(struct intel_atomic_state *state, if (intel_crtc_has_type(crtc_state, INTEL_OUTPUT_LVDS)) { if (intel_panel_use_ssc(display)) { - refclk = dev_priv->display.vbt.lvds_ssc_freq; - drm_dbg_kms(&dev_priv->drm, + refclk = display->vbt.lvds_ssc_freq; + drm_dbg_kms(display->drm, "using SSC reference clock of %d kHz\n", refclk); } @@ -1669,7 +1657,6 @@ static int i8xx_crtc_compute_clock(struct intel_atomic_state *state, struct intel_crtc *crtc) { struct intel_display *display = to_intel_display(state); - struct drm_i915_private *dev_priv = to_i915(state->base.dev); struct intel_crtc_state *crtc_state = intel_atomic_get_new_crtc_state(state, crtc); const struct intel_limit *limit; @@ -1677,8 +1664,8 @@ static int i8xx_crtc_compute_clock(struct intel_atomic_state *state, if (intel_crtc_has_type(crtc_state, INTEL_OUTPUT_LVDS)) { if (intel_panel_use_ssc(display)) { - refclk = dev_priv->display.vbt.lvds_ssc_freq; - drm_dbg_kms(&dev_priv->drm, + refclk = display->vbt.lvds_ssc_freq; + drm_dbg_kms(display->drm, "using SSC reference clock of %d kHz\n", refclk); } @@ -1751,12 +1738,12 @@ static const struct intel_dpll_funcs i8xx_dpll_funcs = { int intel_dpll_crtc_compute_clock(struct intel_atomic_state *state, struct intel_crtc *crtc) { - struct drm_i915_private *i915 = to_i915(state->base.dev); + struct intel_display *display = to_intel_display(state); struct intel_crtc_state *crtc_state = intel_atomic_get_new_crtc_state(state, crtc); int ret; - drm_WARN_ON(&i915->drm, !intel_crtc_needs_modeset(crtc_state)); + drm_WARN_ON(display->drm, !intel_crtc_needs_modeset(crtc_state)); memset(&crtc_state->dpll_hw_state, 0, sizeof(crtc_state->dpll_hw_state)); @@ -1764,9 +1751,9 @@ int intel_dpll_crtc_compute_clock(struct intel_atomic_state *state, if (!crtc_state->hw.enable) return 0; - ret = i915->display.funcs.dpll->crtc_compute_clock(state, crtc); + ret = display->funcs.dpll->crtc_compute_clock(state, crtc); if (ret) { - drm_dbg_kms(&i915->drm, "[CRTC:%d:%s] Couldn't calculate DPLL settings\n", + drm_dbg_kms(display->drm, "[CRTC:%d:%s] Couldn't calculate DPLL settings\n", crtc->base.base.id, crtc->base.name); return ret; } @@ -1777,23 +1764,23 @@ int intel_dpll_crtc_compute_clock(struct intel_atomic_state *state, int intel_dpll_crtc_get_shared_dpll(struct intel_atomic_state *state, struct intel_crtc *crtc) { - struct drm_i915_private *i915 = to_i915(state->base.dev); + struct intel_display *display = to_intel_display(state); struct intel_crtc_state *crtc_state = intel_atomic_get_new_crtc_state(state, crtc); int ret; - drm_WARN_ON(&i915->drm, !intel_crtc_needs_modeset(crtc_state)); - drm_WARN_ON(&i915->drm, !crtc_state->hw.enable && crtc_state->shared_dpll); + drm_WARN_ON(display->drm, !intel_crtc_needs_modeset(crtc_state)); + drm_WARN_ON(display->drm, !crtc_state->hw.enable && crtc_state->shared_dpll); if (!crtc_state->hw.enable || crtc_state->shared_dpll) return 0; - if (!i915->display.funcs.dpll->crtc_get_shared_dpll) + if (!display->funcs.dpll->crtc_get_shared_dpll) return 0; - ret = i915->display.funcs.dpll->crtc_get_shared_dpll(state, crtc); + ret = display->funcs.dpll->crtc_get_shared_dpll(state, crtc); if (ret) { - drm_dbg_kms(&i915->drm, "[CRTC:%d:%s] Couldn't get a shared DPLL\n", + drm_dbg_kms(display->drm, "[CRTC:%d:%s] Couldn't get a shared DPLL\n", crtc->base.base.id, crtc->base.name); return ret; } @@ -1802,43 +1789,44 @@ int intel_dpll_crtc_get_shared_dpll(struct intel_atomic_state *state, } void -intel_dpll_init_clock_hook(struct drm_i915_private *dev_priv) +intel_dpll_init_clock_hook(struct intel_display *display) { - if (DISPLAY_VER(dev_priv) >= 14) - dev_priv->display.funcs.dpll = &mtl_dpll_funcs; - else if (IS_DG2(dev_priv)) - dev_priv->display.funcs.dpll = &dg2_dpll_funcs; - else if (DISPLAY_VER(dev_priv) >= 9 || HAS_DDI(dev_priv)) - dev_priv->display.funcs.dpll = &hsw_dpll_funcs; + struct drm_i915_private *dev_priv = to_i915(display->drm); + + if (DISPLAY_VER(display) >= 14) + display->funcs.dpll = &mtl_dpll_funcs; + else if (display->platform.dg2) + display->funcs.dpll = &dg2_dpll_funcs; + else if (DISPLAY_VER(display) >= 9 || HAS_DDI(display)) + display->funcs.dpll = &hsw_dpll_funcs; else if (HAS_PCH_SPLIT(dev_priv)) - dev_priv->display.funcs.dpll = &ilk_dpll_funcs; - else if (IS_CHERRYVIEW(dev_priv)) - dev_priv->display.funcs.dpll = &chv_dpll_funcs; - else if (IS_VALLEYVIEW(dev_priv)) - dev_priv->display.funcs.dpll = &vlv_dpll_funcs; - else if (IS_G4X(dev_priv)) - dev_priv->display.funcs.dpll = &g4x_dpll_funcs; - else if (IS_PINEVIEW(dev_priv)) - dev_priv->display.funcs.dpll = &pnv_dpll_funcs; - else if (DISPLAY_VER(dev_priv) != 2) - dev_priv->display.funcs.dpll = &i9xx_dpll_funcs; + display->funcs.dpll = &ilk_dpll_funcs; + else if (display->platform.cherryview) + display->funcs.dpll = &chv_dpll_funcs; + else if (display->platform.valleyview) + display->funcs.dpll = &vlv_dpll_funcs; + else if (display->platform.g4x) + display->funcs.dpll = &g4x_dpll_funcs; + else if (display->platform.pineview) + display->funcs.dpll = &pnv_dpll_funcs; + else if (DISPLAY_VER(display) != 2) + display->funcs.dpll = &i9xx_dpll_funcs; else - dev_priv->display.funcs.dpll = &i8xx_dpll_funcs; + display->funcs.dpll = &i8xx_dpll_funcs; } -static bool i9xx_has_pps(struct drm_i915_private *dev_priv) +static bool i9xx_has_pps(struct intel_display *display) { - if (IS_I830(dev_priv)) + if (display->platform.i830) return false; - return IS_PINEVIEW(dev_priv) || IS_MOBILE(dev_priv); + return display->platform.pineview || display->platform.mobile; } void i9xx_enable_pll(const struct intel_crtc_state *crtc_state) { struct intel_display *display = to_intel_display(crtc_state); struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc); - struct drm_i915_private *dev_priv = to_i915(crtc->base.dev); const struct i9xx_dpll_hw_state *hw_state = &crtc_state->dpll_hw_state.i9xx; enum pipe pipe = crtc->pipe; int i; @@ -1846,27 +1834,27 @@ void i9xx_enable_pll(const struct intel_crtc_state *crtc_state) assert_transcoder_disabled(display, crtc_state->cpu_transcoder); /* PLL is protected by panel, make sure we can write it */ - if (i9xx_has_pps(dev_priv)) + if (i9xx_has_pps(display)) assert_pps_unlocked(display, pipe); - intel_de_write(dev_priv, FP0(pipe), hw_state->fp0); - intel_de_write(dev_priv, FP1(pipe), hw_state->fp1); + intel_de_write(display, FP0(pipe), hw_state->fp0); + intel_de_write(display, FP1(pipe), hw_state->fp1); /* * Apparently we need to have VGA mode enabled prior to changing * the P1/P2 dividers. Otherwise the DPLL will keep using the old * dividers, even though the register value does change. */ - intel_de_write(dev_priv, DPLL(dev_priv, pipe), + intel_de_write(display, DPLL(display, pipe), hw_state->dpll & ~DPLL_VGA_MODE_DIS); - intel_de_write(dev_priv, DPLL(dev_priv, pipe), hw_state->dpll); + intel_de_write(display, DPLL(display, pipe), hw_state->dpll); /* Wait for the clocks to stabilize. */ - intel_de_posting_read(dev_priv, DPLL(dev_priv, pipe)); + intel_de_posting_read(display, DPLL(display, pipe)); udelay(150); - if (DISPLAY_VER(dev_priv) >= 4) { - intel_de_write(dev_priv, DPLL_MD(dev_priv, pipe), + if (DISPLAY_VER(display) >= 4) { + intel_de_write(display, DPLL_MD(display, pipe), hw_state->dpll_md); } else { /* The pixel multiplier can only be updated once the @@ -1874,20 +1862,21 @@ void i9xx_enable_pll(const struct intel_crtc_state *crtc_state) * * So write it again. */ - intel_de_write(dev_priv, DPLL(dev_priv, pipe), hw_state->dpll); + intel_de_write(display, DPLL(display, pipe), hw_state->dpll); } /* We do this three times for luck */ for (i = 0; i < 3; i++) { - intel_de_write(dev_priv, DPLL(dev_priv, pipe), hw_state->dpll); - intel_de_posting_read(dev_priv, DPLL(dev_priv, pipe)); + intel_de_write(display, DPLL(display, pipe), hw_state->dpll); + intel_de_posting_read(display, DPLL(display, pipe)); udelay(150); /* wait for warmup */ } } -static void vlv_pllb_recal_opamp(struct drm_i915_private *dev_priv, +static void vlv_pllb_recal_opamp(struct intel_display *display, enum dpio_phy phy, enum dpio_channel ch) { + struct drm_i915_private *dev_priv = to_i915(display->drm); u32 tmp; /* @@ -1916,6 +1905,7 @@ static void vlv_pllb_recal_opamp(struct drm_i915_private *dev_priv, static void vlv_prepare_pll(const struct intel_crtc_state *crtc_state) { + struct intel_display *display = to_intel_display(crtc_state); struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc); struct drm_i915_private *dev_priv = to_i915(crtc->base.dev); const struct dpll *clock = &crtc_state->dpll; @@ -1930,7 +1920,7 @@ static void vlv_prepare_pll(const struct intel_crtc_state *crtc_state) /* PLL B needs special handling */ if (pipe == PIPE_B) - vlv_pllb_recal_opamp(dev_priv, phy, ch); + vlv_pllb_recal_opamp(display, phy, ch); /* Set up Tx target for periodic Rcomp update */ vlv_dpio_write(dev_priv, phy, VLV_PCS_DW17_BCAST, 0x0100000f); @@ -2003,24 +1993,23 @@ static void vlv_prepare_pll(const struct intel_crtc_state *crtc_state) static void _vlv_enable_pll(const struct intel_crtc_state *crtc_state) { + struct intel_display *display = to_intel_display(crtc_state); struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc); - struct drm_i915_private *dev_priv = to_i915(crtc->base.dev); const struct i9xx_dpll_hw_state *hw_state = &crtc_state->dpll_hw_state.i9xx; enum pipe pipe = crtc->pipe; - intel_de_write(dev_priv, DPLL(dev_priv, pipe), hw_state->dpll); - intel_de_posting_read(dev_priv, DPLL(dev_priv, pipe)); + intel_de_write(display, DPLL(display, pipe), hw_state->dpll); + intel_de_posting_read(display, DPLL(display, pipe)); udelay(150); - if (intel_de_wait_for_set(dev_priv, DPLL(dev_priv, pipe), DPLL_LOCK_VLV, 1)) - drm_err(&dev_priv->drm, "DPLL %d failed to lock\n", pipe); + if (intel_de_wait_for_set(display, DPLL(display, pipe), DPLL_LOCK_VLV, 1)) + drm_err(display->drm, "DPLL %d failed to lock\n", pipe); } void vlv_enable_pll(const struct intel_crtc_state *crtc_state) { struct intel_display *display = to_intel_display(crtc_state); struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc); - struct drm_i915_private *dev_priv = to_i915(crtc->base.dev); const struct i9xx_dpll_hw_state *hw_state = &crtc_state->dpll_hw_state.i9xx; enum pipe pipe = crtc->pipe; @@ -2030,7 +2019,7 @@ void vlv_enable_pll(const struct intel_crtc_state *crtc_state) assert_pps_unlocked(display, pipe); /* Enable Refclk */ - intel_de_write(dev_priv, DPLL(dev_priv, pipe), + intel_de_write(display, DPLL(display, pipe), hw_state->dpll & ~(DPLL_VCO_ENABLE | DPLL_EXT_BUFFER_ENABLE_VLV)); if (hw_state->dpll & DPLL_VCO_ENABLE) { @@ -2038,8 +2027,8 @@ void vlv_enable_pll(const struct intel_crtc_state *crtc_state) _vlv_enable_pll(crtc_state); } - intel_de_write(dev_priv, DPLL_MD(dev_priv, pipe), hw_state->dpll_md); - intel_de_posting_read(dev_priv, DPLL_MD(dev_priv, pipe)); + intel_de_write(display, DPLL_MD(display, pipe), hw_state->dpll_md); + intel_de_posting_read(display, DPLL_MD(display, pipe)); } static void chv_prepare_pll(const struct intel_crtc_state *crtc_state) @@ -2133,6 +2122,7 @@ static void chv_prepare_pll(const struct intel_crtc_state *crtc_state) static void _chv_enable_pll(const struct intel_crtc_state *crtc_state) { + struct intel_display *display = to_intel_display(crtc_state); struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc); struct drm_i915_private *dev_priv = to_i915(crtc->base.dev); const struct i9xx_dpll_hw_state *hw_state = &crtc_state->dpll_hw_state.i9xx; @@ -2156,18 +2146,17 @@ static void _chv_enable_pll(const struct intel_crtc_state *crtc_state) udelay(1); /* Enable PLL */ - intel_de_write(dev_priv, DPLL(dev_priv, pipe), hw_state->dpll); + intel_de_write(display, DPLL(display, pipe), hw_state->dpll); /* Check PLL is locked */ - if (intel_de_wait_for_set(dev_priv, DPLL(dev_priv, pipe), DPLL_LOCK_VLV, 1)) - drm_err(&dev_priv->drm, "PLL %d failed to lock\n", pipe); + if (intel_de_wait_for_set(display, DPLL(display, pipe), DPLL_LOCK_VLV, 1)) + drm_err(display->drm, "PLL %d failed to lock\n", pipe); } void chv_enable_pll(const struct intel_crtc_state *crtc_state) { struct intel_display *display = to_intel_display(crtc_state); struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc); - struct drm_i915_private *dev_priv = to_i915(crtc->base.dev); const struct i9xx_dpll_hw_state *hw_state = &crtc_state->dpll_hw_state.i9xx; enum pipe pipe = crtc->pipe; @@ -2177,7 +2166,7 @@ void chv_enable_pll(const struct intel_crtc_state *crtc_state) assert_pps_unlocked(display, pipe); /* Enable Refclk and SSC */ - intel_de_write(dev_priv, DPLL(dev_priv, pipe), + intel_de_write(display, DPLL(display, pipe), hw_state->dpll & ~DPLL_VCO_ENABLE); if (hw_state->dpll & DPLL_VCO_ENABLE) { @@ -2192,29 +2181,29 @@ void chv_enable_pll(const struct intel_crtc_state *crtc_state) * DPLLCMD is AWOL. Use chicken bits to propagate * the value from DPLLBMD to either pipe B or C. */ - intel_de_write(dev_priv, CBR4_VLV, CBR_DPLLBMD_PIPE(pipe)); - intel_de_write(dev_priv, DPLL_MD(dev_priv, PIPE_B), + intel_de_write(display, CBR4_VLV, CBR_DPLLBMD_PIPE(pipe)); + intel_de_write(display, DPLL_MD(display, PIPE_B), hw_state->dpll_md); - intel_de_write(dev_priv, CBR4_VLV, 0); - dev_priv->display.state.chv_dpll_md[pipe] = hw_state->dpll_md; + intel_de_write(display, CBR4_VLV, 0); + display->state.chv_dpll_md[pipe] = hw_state->dpll_md; /* * DPLLB VGA mode also seems to cause problems. * We should always have it disabled. */ - drm_WARN_ON(&dev_priv->drm, - (intel_de_read(dev_priv, DPLL(dev_priv, PIPE_B)) & + drm_WARN_ON(display->drm, + (intel_de_read(display, DPLL(display, PIPE_B)) & DPLL_VGA_MODE_DIS) == 0); } else { - intel_de_write(dev_priv, DPLL_MD(dev_priv, pipe), + intel_de_write(display, DPLL_MD(display, pipe), hw_state->dpll_md); - intel_de_posting_read(dev_priv, DPLL_MD(dev_priv, pipe)); + intel_de_posting_read(display, DPLL_MD(display, pipe)); } } /** * vlv_force_pll_on - forcibly enable just the PLL - * @dev_priv: i915 private structure + * @display: display device * @pipe: pipe PLL to enable * @dpll: PLL configuration * @@ -2222,10 +2211,9 @@ void chv_enable_pll(const struct intel_crtc_state *crtc_state) * in cases where we need the PLL enabled even when @pipe is not going to * be enabled. */ -int vlv_force_pll_on(struct drm_i915_private *dev_priv, enum pipe pipe, +int vlv_force_pll_on(struct intel_display *display, enum pipe pipe, const struct dpll *dpll) { - struct intel_display *display = &dev_priv->display; struct intel_crtc *crtc = intel_crtc_for_pipe(display, pipe); struct intel_crtc_state *crtc_state; @@ -2238,7 +2226,7 @@ int vlv_force_pll_on(struct drm_i915_private *dev_priv, enum pipe pipe, crtc_state->dpll = *dpll; crtc_state->output_types = BIT(INTEL_OUTPUT_EDP); - if (IS_CHERRYVIEW(dev_priv)) { + if (display->platform.cherryview) { chv_compute_dpll(crtc_state); chv_enable_pll(crtc_state); } else { @@ -2251,9 +2239,8 @@ int vlv_force_pll_on(struct drm_i915_private *dev_priv, enum pipe pipe, return 0; } -void vlv_disable_pll(struct drm_i915_private *dev_priv, enum pipe pipe) +void vlv_disable_pll(struct intel_display *display, enum pipe pipe) { - struct intel_display *display = &dev_priv->display; u32 val; /* Make sure the pipe isn't still relying on us */ @@ -2268,9 +2255,9 @@ void vlv_disable_pll(struct drm_i915_private *dev_priv, enum pipe pipe) intel_de_posting_read(display, DPLL(display, pipe)); } -void chv_disable_pll(struct drm_i915_private *dev_priv, enum pipe pipe) +void chv_disable_pll(struct intel_display *display, enum pipe pipe) { - struct intel_display *display = &dev_priv->display; + struct drm_i915_private *dev_priv = to_i915(display->drm); enum dpio_channel ch = vlv_pipe_to_channel(pipe); enum dpio_phy phy = vlv_pipe_to_phy(pipe); u32 val; @@ -2316,18 +2303,18 @@ void i9xx_disable_pll(const struct intel_crtc_state *crtc_state) /** * vlv_force_pll_off - forcibly disable just the PLL - * @dev_priv: i915 private structure + * @display: display device * @pipe: pipe PLL to disable * * Disable the PLL for @pipe. To be used in cases where we need * the PLL enabled even when @pipe is not going to be enabled. */ -void vlv_force_pll_off(struct drm_i915_private *dev_priv, enum pipe pipe) +void vlv_force_pll_off(struct intel_display *display, enum pipe pipe) { - if (IS_CHERRYVIEW(dev_priv)) - chv_disable_pll(dev_priv, pipe); + if (display->platform.cherryview) + chv_disable_pll(display, pipe); else - vlv_disable_pll(dev_priv, pipe); + vlv_disable_pll(display, pipe); } /* Only for pre-ILK configs */ diff --git a/drivers/gpu/drm/i915/display/intel_dpll.h b/drivers/gpu/drm/i915/display/intel_dpll.h index 21d06cbd2ce7..280e90a57c87 100644 --- a/drivers/gpu/drm/i915/display/intel_dpll.h +++ b/drivers/gpu/drm/i915/display/intel_dpll.h @@ -8,16 +8,15 @@ #include +enum pipe; struct dpll; -struct drm_i915_private; struct intel_atomic_state; struct intel_crtc; struct intel_crtc_state; struct intel_display; struct intel_dpll_hw_state; -enum pipe; -void intel_dpll_init_clock_hook(struct drm_i915_private *dev_priv); +void intel_dpll_init_clock_hook(struct intel_display *display); int intel_dpll_crtc_compute_clock(struct intel_atomic_state *state, struct intel_crtc *crtc); int intel_dpll_crtc_get_shared_dpll(struct intel_atomic_state *state, @@ -29,14 +28,14 @@ void i9xx_dpll_get_hw_state(struct intel_crtc *crtc, void vlv_compute_dpll(struct intel_crtc_state *crtc_state); void chv_compute_dpll(struct intel_crtc_state *crtc_state); -int vlv_force_pll_on(struct drm_i915_private *dev_priv, enum pipe pipe, +int vlv_force_pll_on(struct intel_display *display, enum pipe pipe, const struct dpll *dpll); -void vlv_force_pll_off(struct drm_i915_private *dev_priv, enum pipe pipe); +void vlv_force_pll_off(struct intel_display *display, enum pipe pipe); void chv_enable_pll(const struct intel_crtc_state *crtc_state); -void chv_disable_pll(struct drm_i915_private *dev_priv, enum pipe pipe); +void chv_disable_pll(struct intel_display *display, enum pipe pipe); void vlv_enable_pll(const struct intel_crtc_state *crtc_state); -void vlv_disable_pll(struct drm_i915_private *dev_priv, enum pipe pipe); +void vlv_disable_pll(struct intel_display *display, enum pipe pipe); void i9xx_enable_pll(const struct intel_crtc_state *crtc_state); void i9xx_disable_pll(const struct intel_crtc_state *crtc_state); bool bxt_find_best_dpll(struct intel_crtc_state *crtc_state, diff --git a/drivers/gpu/drm/i915/display/intel_dpll_mgr.c b/drivers/gpu/drm/i915/display/intel_dpll_mgr.c index c825a507b905..84df41086a89 100644 --- a/drivers/gpu/drm/i915/display/intel_dpll_mgr.c +++ b/drivers/gpu/drm/i915/display/intel_dpll_mgr.c @@ -257,7 +257,7 @@ void intel_enable_shared_dpll(const struct intel_crtc_state *crtc_state) struct intel_display *display = to_intel_display(crtc_state); struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc); struct intel_shared_dpll *pll = crtc_state->shared_dpll; - unsigned int pipe_mask = BIT(crtc->pipe); + unsigned int pipe_mask = intel_crtc_joined_pipe_mask(crtc_state); unsigned int old_mask; if (drm_WARN_ON(display->drm, !pll)) @@ -303,7 +303,7 @@ void intel_disable_shared_dpll(const struct intel_crtc_state *crtc_state) struct intel_display *display = to_intel_display(crtc_state); struct intel_crtc *crtc = to_intel_crtc(crtc_state->uapi.crtc); struct intel_shared_dpll *pll = crtc_state->shared_dpll; - unsigned int pipe_mask = BIT(crtc->pipe); + unsigned int pipe_mask = intel_crtc_joined_pipe_mask(crtc_state); /* PCH only available on ILK+ */ if (DISPLAY_VER(display) < 5) @@ -715,7 +715,6 @@ static void hsw_ddi_spll_enable(struct intel_display *display, static void hsw_ddi_wrpll_disable(struct intel_display *display, struct intel_shared_dpll *pll) { - struct drm_i915_private *i915 = to_i915(display->drm); const enum intel_dpll_id id = pll->info->id; intel_de_rmw(display, WRPLL_CTL(id), WRPLL_PLL_ENABLE, 0); @@ -726,13 +725,12 @@ static void hsw_ddi_wrpll_disable(struct intel_display *display, * that depend on it have been shut down. */ if (display->dpll.pch_ssc_use & BIT(id)) - intel_init_pch_refclk(i915); + intel_init_pch_refclk(display); } static void hsw_ddi_spll_disable(struct intel_display *display, struct intel_shared_dpll *pll) { - struct drm_i915_private *i915 = to_i915(display->drm); enum intel_dpll_id id = pll->info->id; intel_de_rmw(display, SPLL_CTL, SPLL_PLL_ENABLE, 0); @@ -743,7 +741,7 @@ static void hsw_ddi_spll_disable(struct intel_display *display, * that depend on it have been shut down. */ if (display->dpll.pch_ssc_use & BIT(id)) - intel_init_pch_refclk(i915); + intel_init_pch_refclk(display); } static bool hsw_ddi_wrpll_get_hw_state(struct intel_display *display, @@ -2606,10 +2604,8 @@ ehl_combo_pll_div_frac_wa_needed(struct intel_display *display) { return ((display->platform.elkhartlake && IS_DISPLAY_STEP(display, STEP_B0, STEP_FOREVER)) || - display->platform.tigerlake || - display->platform.alderlake_s || - display->platform.alderlake_p) && - display->dpll.ref_clks.nssc == 38400; + DISPLAY_VER(display) >= 12) && + display->dpll.ref_clks.nssc == 38400; } struct icl_combo_pll_params { diff --git a/drivers/gpu/drm/i915/display/intel_dpt.c b/drivers/gpu/drm/i915/display/intel_dpt.c index 0d8ebe38226e..43bd97e4f589 100644 --- a/drivers/gpu/drm/i915/display/intel_dpt.c +++ b/drivers/gpu/drm/i915/display/intel_dpt.c @@ -9,6 +9,7 @@ #include "gt/gen8_ppgtt.h" #include "i915_drv.h" +#include "intel_display_rpm.h" #include "intel_display_types.h" #include "intel_dpt.h" #include "intel_fb.h" @@ -127,7 +128,7 @@ struct i915_vma *intel_dpt_pin_to_ggtt(struct i915_address_space *vm, struct drm_i915_private *i915 = vm->i915; struct intel_display *display = &i915->display; struct i915_dpt *dpt = i915_vm_to_dpt(vm); - intel_wakeref_t wakeref; + struct ref_tracker *wakeref; struct i915_vma *vma; void __iomem *iomem; struct i915_gem_ww_ctx ww; @@ -137,7 +138,7 @@ struct i915_vma *intel_dpt_pin_to_ggtt(struct i915_address_space *vm, if (i915_gem_object_is_stolen(dpt->obj)) pin_flags |= PIN_MAPPABLE; - wakeref = intel_runtime_pm_get(&i915->runtime_pm); + wakeref = intel_display_rpm_get(display); atomic_inc(&display->restore.pending_fb_pin); for_i915_gem_ww(&ww, err, true) { @@ -169,7 +170,7 @@ struct i915_vma *intel_dpt_pin_to_ggtt(struct i915_address_space *vm, dpt->obj->mm.dirty = true; atomic_dec(&display->restore.pending_fb_pin); - intel_runtime_pm_put(&i915->runtime_pm, wakeref); + intel_display_rpm_put(display, wakeref); return err ? ERR_PTR(err) : vma; } diff --git a/drivers/gpu/drm/i915/display/intel_dsb.c b/drivers/gpu/drm/i915/display/intel_dsb.c index 9fc4003d1579..72fe390c5af2 100644 --- a/drivers/gpu/drm/i915/display/intel_dsb.c +++ b/drivers/gpu/drm/i915/display/intel_dsb.c @@ -11,6 +11,7 @@ #include "i915_reg.h" #include "intel_crtc.h" #include "intel_de.h" +#include "intel_display_rpm.h" #include "intel_display_types.h" #include "intel_dsb.h" #include "intel_dsb_buffer.h" @@ -142,10 +143,10 @@ static int dsb_vtotal(struct intel_atomic_state *state, static int dsb_dewake_scanline_start(struct intel_atomic_state *state, struct intel_crtc *crtc) { + struct intel_display *display = to_intel_display(state); const struct intel_crtc_state *crtc_state = intel_pre_commit_crtc_state(state, crtc); - struct drm_i915_private *i915 = to_i915(state->base.dev); - unsigned int latency = skl_watermark_max_latency(i915, 0); + unsigned int latency = skl_watermark_max_latency(display, 0); return intel_mode_vdisplay(&crtc_state->hw.adjusted_mode) - intel_usecs_to_scanlines(&crtc_state->hw.adjusted_mode, latency); @@ -795,22 +796,22 @@ struct intel_dsb *intel_dsb_prepare(struct intel_atomic_state *state, enum intel_dsb_id dsb_id, unsigned int max_cmds) { - struct drm_i915_private *i915 = to_i915(state->base.dev); - intel_wakeref_t wakeref; + struct intel_display *display = to_intel_display(state); + struct ref_tracker *wakeref; struct intel_dsb *dsb; unsigned int size; - if (!HAS_DSB(i915)) + if (!HAS_DSB(display)) return NULL; - if (!i915->display.params.enable_dsb) + if (!display->params.enable_dsb) return NULL; dsb = kzalloc(sizeof(*dsb), GFP_KERNEL); if (!dsb) goto out; - wakeref = intel_runtime_pm_get(&i915->runtime_pm); + wakeref = intel_display_rpm_get(display); /* ~1 qword per instruction, full cachelines */ size = ALIGN(max_cmds * 8, CACHELINE_BYTES); @@ -818,7 +819,7 @@ struct intel_dsb *intel_dsb_prepare(struct intel_atomic_state *state, if (!intel_dsb_buffer_create(crtc, &dsb->dsb_buf, size)) goto out_put_rpm; - intel_runtime_pm_put(&i915->runtime_pm, wakeref); + intel_display_rpm_put(display, wakeref); dsb->id = dsb_id; dsb->crtc = crtc; @@ -831,10 +832,10 @@ struct intel_dsb *intel_dsb_prepare(struct intel_atomic_state *state, return dsb; out_put_rpm: - intel_runtime_pm_put(&i915->runtime_pm, wakeref); + intel_display_rpm_put(display, wakeref); kfree(dsb); out: - drm_info_once(&i915->drm, + drm_info_once(display->drm, "[CRTC:%d:%s] DSB %d queue setup failed, will fallback to MMIO for display HW programming\n", crtc->base.base.id, crtc->base.name, dsb_id); diff --git a/drivers/gpu/drm/i915/display/intel_dsi_dcs_backlight.c b/drivers/gpu/drm/i915/display/intel_dsi_dcs_backlight.c index 049443245310..b3c453bf7d5c 100644 --- a/drivers/gpu/drm/i915/display/intel_dsi_dcs_backlight.c +++ b/drivers/gpu/drm/i915/display/intel_dsi_dcs_backlight.c @@ -24,9 +24,10 @@ */ #include +#include #include