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irqchip/aspeed-scu-ic: Refactor driver to support variant-based initialization

The SCU IC driver handles each AST2600 instance with separate
initialization functions and hardcoded register definitions, which is
inflexible and creates duplicated code.

Consolidate the implementation by introducing a variant-based structure,
selected via compatible string, and use a unified init path and MMIO access
via of_iomap().  This simplifies the code and prepares for upcoming SoCs
like AST2700, which require split register handling.

[ tglx: Cleaned up coding style and massaged change log ]

Signed-off-by: Ryan Chen <ryan_chen@aspeedtech.com>
Signed-off-by: Thomas Gleixner <tglx@linutronix.de>
Link: https://lore.kernel.org/all/20250908011812.1033858-2-ryan_chen@aspeedtech.com
This commit is contained in:
Ryan Chen
2025-09-08 09:18:09 +08:00
committed by Thomas Gleixner
parent a186120c78
commit 86cd4301c2

View File

@@ -7,55 +7,56 @@
*/ */
#include <linux/bitops.h> #include <linux/bitops.h>
#include <linux/io.h>
#include <linux/irq.h> #include <linux/irq.h>
#include <linux/irqchip.h> #include <linux/irqchip.h>
#include <linux/irqchip/chained_irq.h> #include <linux/irqchip/chained_irq.h>
#include <linux/irqdomain.h> #include <linux/irqdomain.h>
#include <linux/mfd/syscon.h> #include <linux/of_address.h>
#include <linux/of_irq.h> #include <linux/of_irq.h>
#include <linux/regmap.h>
#define ASPEED_SCU_IC_REG 0x018
#define ASPEED_SCU_IC_SHIFT 0
#define ASPEED_SCU_IC_ENABLE GENMASK(15, ASPEED_SCU_IC_SHIFT)
#define ASPEED_SCU_IC_NUM_IRQS 7
#define ASPEED_SCU_IC_STATUS GENMASK(28, 16) #define ASPEED_SCU_IC_STATUS GENMASK(28, 16)
#define ASPEED_SCU_IC_STATUS_SHIFT 16 #define ASPEED_SCU_IC_STATUS_SHIFT 16
#define ASPEED_AST2600_SCU_IC0_REG 0x560 struct aspeed_scu_ic_variant {
#define ASPEED_AST2600_SCU_IC0_SHIFT 0 const char *compatible;
#define ASPEED_AST2600_SCU_IC0_ENABLE \ unsigned long irq_enable;
GENMASK(5, ASPEED_AST2600_SCU_IC0_SHIFT) unsigned long irq_shift;
#define ASPEED_AST2600_SCU_IC0_NUM_IRQS 6 unsigned int num_irqs;
};
#define ASPEED_AST2600_SCU_IC1_REG 0x570 #define SCU_VARIANT(_compat, _shift, _enable, _num) { \
#define ASPEED_AST2600_SCU_IC1_SHIFT 4 .compatible = _compat, \
#define ASPEED_AST2600_SCU_IC1_ENABLE \ .irq_shift = _shift, \
GENMASK(5, ASPEED_AST2600_SCU_IC1_SHIFT) .irq_enable = _enable, \
#define ASPEED_AST2600_SCU_IC1_NUM_IRQS 2 .num_irqs = _num, \
}
static const struct aspeed_scu_ic_variant scu_ic_variants[] __initconst = {
SCU_VARIANT("aspeed,ast2400-scu-ic", 0, GENMASK(15, 0), 7),
SCU_VARIANT("aspeed,ast2500-scu-ic", 0, GENMASK(15, 0), 7),
SCU_VARIANT("aspeed,ast2600-scu-ic0", 0, GENMASK(5, 0), 6),
SCU_VARIANT("aspeed,ast2600-scu-ic1", 4, GENMASK(5, 4), 2),
};
struct aspeed_scu_ic { struct aspeed_scu_ic {
unsigned long irq_enable; unsigned long irq_enable;
unsigned long irq_shift; unsigned long irq_shift;
unsigned int num_irqs; unsigned int num_irqs;
unsigned int reg; void __iomem *base;
struct regmap *scu; struct irq_domain *irq_domain;
struct irq_domain *irq_domain;
}; };
static void aspeed_scu_ic_irq_handler(struct irq_desc *desc) static void aspeed_scu_ic_irq_handler(struct irq_desc *desc)
{ {
unsigned int sts;
unsigned long bit;
unsigned long enabled;
unsigned long max;
unsigned long status;
struct aspeed_scu_ic *scu_ic = irq_desc_get_handler_data(desc); struct aspeed_scu_ic *scu_ic = irq_desc_get_handler_data(desc);
struct irq_chip *chip = irq_desc_get_chip(desc); struct irq_chip *chip = irq_desc_get_chip(desc);
unsigned int mask = scu_ic->irq_enable << ASPEED_SCU_IC_STATUS_SHIFT; unsigned long bit, enabled, max, status;
unsigned int sts, mask;
chained_irq_enter(chip, desc); chained_irq_enter(chip, desc);
mask = scu_ic->irq_enable << ASPEED_SCU_IC_STATUS_SHIFT;
/* /*
* The SCU IC has just one register to control its operation and read * The SCU IC has just one register to control its operation and read
* status. The interrupt enable bits occupy the lower 16 bits of the * status. The interrupt enable bits occupy the lower 16 bits of the
@@ -66,7 +67,7 @@ static void aspeed_scu_ic_irq_handler(struct irq_desc *desc)
* shifting the status down to get the mapping and then back up to * shifting the status down to get the mapping and then back up to
* clear the bit. * clear the bit.
*/ */
regmap_read(scu_ic->scu, scu_ic->reg, &sts); sts = readl(scu_ic->base);
enabled = sts & scu_ic->irq_enable; enabled = sts & scu_ic->irq_enable;
status = (sts >> ASPEED_SCU_IC_STATUS_SHIFT) & enabled; status = (sts >> ASPEED_SCU_IC_STATUS_SHIFT) & enabled;
@@ -74,11 +75,9 @@ static void aspeed_scu_ic_irq_handler(struct irq_desc *desc)
max = scu_ic->num_irqs + bit; max = scu_ic->num_irqs + bit;
for_each_set_bit_from(bit, &status, max) { for_each_set_bit_from(bit, &status, max) {
generic_handle_domain_irq(scu_ic->irq_domain, generic_handle_domain_irq(scu_ic->irq_domain, bit - scu_ic->irq_shift);
bit - scu_ic->irq_shift); writel((readl(scu_ic->base) & ~mask) | BIT(bit + ASPEED_SCU_IC_STATUS_SHIFT),
scu_ic->base);
regmap_write_bits(scu_ic->scu, scu_ic->reg, mask,
BIT(bit + ASPEED_SCU_IC_STATUS_SHIFT));
} }
chained_irq_exit(chip, desc); chained_irq_exit(chip, desc);
@@ -87,30 +86,29 @@ static void aspeed_scu_ic_irq_handler(struct irq_desc *desc)
static void aspeed_scu_ic_irq_mask(struct irq_data *data) static void aspeed_scu_ic_irq_mask(struct irq_data *data)
{ {
struct aspeed_scu_ic *scu_ic = irq_data_get_irq_chip_data(data); struct aspeed_scu_ic *scu_ic = irq_data_get_irq_chip_data(data);
unsigned int mask = BIT(data->hwirq + scu_ic->irq_shift) | unsigned int bit = BIT(data->hwirq + scu_ic->irq_shift);
(scu_ic->irq_enable << ASPEED_SCU_IC_STATUS_SHIFT); unsigned int mask = bit | (scu_ic->irq_enable << ASPEED_SCU_IC_STATUS_SHIFT);
/* /*
* Status bits are cleared by writing 1. In order to prevent the mask * Status bits are cleared by writing 1. In order to prevent the mask
* operation from clearing the status bits, they should be under the * operation from clearing the status bits, they should be under the
* mask and written with 0. * mask and written with 0.
*/ */
regmap_update_bits(scu_ic->scu, scu_ic->reg, mask, 0); writel(readl(scu_ic->base) & ~mask, scu_ic->base);
} }
static void aspeed_scu_ic_irq_unmask(struct irq_data *data) static void aspeed_scu_ic_irq_unmask(struct irq_data *data)
{ {
struct aspeed_scu_ic *scu_ic = irq_data_get_irq_chip_data(data); struct aspeed_scu_ic *scu_ic = irq_data_get_irq_chip_data(data);
unsigned int bit = BIT(data->hwirq + scu_ic->irq_shift); unsigned int bit = BIT(data->hwirq + scu_ic->irq_shift);
unsigned int mask = bit | unsigned int mask = bit | (scu_ic->irq_enable << ASPEED_SCU_IC_STATUS_SHIFT);
(scu_ic->irq_enable << ASPEED_SCU_IC_STATUS_SHIFT);
/* /*
* Status bits are cleared by writing 1. In order to prevent the unmask * Status bits are cleared by writing 1. In order to prevent the unmask
* operation from clearing the status bits, they should be under the * operation from clearing the status bits, they should be under the
* mask and written with 0. * mask and written with 0.
*/ */
regmap_update_bits(scu_ic->scu, scu_ic->reg, mask, bit); writel((readl(scu_ic->base) & ~mask) | bit, scu_ic->base);
} }
static int aspeed_scu_ic_irq_set_affinity(struct irq_data *data, static int aspeed_scu_ic_irq_set_affinity(struct irq_data *data,
@@ -143,21 +141,15 @@ static const struct irq_domain_ops aspeed_scu_ic_domain_ops = {
static int aspeed_scu_ic_of_init_common(struct aspeed_scu_ic *scu_ic, static int aspeed_scu_ic_of_init_common(struct aspeed_scu_ic *scu_ic,
struct device_node *node) struct device_node *node)
{ {
int irq; int irq, rc = 0;
int rc = 0;
if (!node->parent) { scu_ic->base = of_iomap(node, 0);
rc = -ENODEV; if (IS_ERR(scu_ic->base)) {
rc = PTR_ERR(scu_ic->base);
goto err; goto err;
} }
writel(ASPEED_SCU_IC_STATUS, scu_ic->base);
scu_ic->scu = syscon_node_to_regmap(node->parent); writel(0, scu_ic->base);
if (IS_ERR(scu_ic->scu)) {
rc = PTR_ERR(scu_ic->scu);
goto err;
}
regmap_write_bits(scu_ic->scu, scu_ic->reg, ASPEED_SCU_IC_STATUS, ASPEED_SCU_IC_STATUS);
regmap_write_bits(scu_ic->scu, scu_ic->reg, ASPEED_SCU_IC_ENABLE, 0);
irq = irq_of_parse_and_map(node, 0); irq = irq_of_parse_and_map(node, 0);
if (!irq) { if (!irq) {
@@ -166,8 +158,7 @@ static int aspeed_scu_ic_of_init_common(struct aspeed_scu_ic *scu_ic,
} }
scu_ic->irq_domain = irq_domain_create_linear(of_fwnode_handle(node), scu_ic->num_irqs, scu_ic->irq_domain = irq_domain_create_linear(of_fwnode_handle(node), scu_ic->num_irqs,
&aspeed_scu_ic_domain_ops, &aspeed_scu_ic_domain_ops, scu_ic);
scu_ic);
if (!scu_ic->irq_domain) { if (!scu_ic->irq_domain) {
rc = -ENOMEM; rc = -ENOMEM;
goto err; goto err;
@@ -180,61 +171,39 @@ static int aspeed_scu_ic_of_init_common(struct aspeed_scu_ic *scu_ic,
err: err:
kfree(scu_ic); kfree(scu_ic);
return rc; return rc;
} }
static int __init aspeed_scu_ic_of_init(struct device_node *node, static const struct aspeed_scu_ic_variant *aspeed_scu_ic_find_variant(struct device_node *np)
struct device_node *parent)
{ {
struct aspeed_scu_ic *scu_ic = kzalloc(sizeof(*scu_ic), GFP_KERNEL); for (int i = 0; i < ARRAY_SIZE(scu_ic_variants); i++) {
if (of_device_is_compatible(np, scu_ic_variants[i].compatible))
if (!scu_ic) return &scu_ic_variants[i];
return -ENOMEM; }
return NULL;
scu_ic->irq_enable = ASPEED_SCU_IC_ENABLE;
scu_ic->irq_shift = ASPEED_SCU_IC_SHIFT;
scu_ic->num_irqs = ASPEED_SCU_IC_NUM_IRQS;
scu_ic->reg = ASPEED_SCU_IC_REG;
return aspeed_scu_ic_of_init_common(scu_ic, node);
} }
static int __init aspeed_ast2600_scu_ic0_of_init(struct device_node *node, static int __init aspeed_scu_ic_of_init(struct device_node *node, struct device_node *parent)
struct device_node *parent)
{ {
struct aspeed_scu_ic *scu_ic = kzalloc(sizeof(*scu_ic), GFP_KERNEL); const struct aspeed_scu_ic_variant *variant;
struct aspeed_scu_ic *scu_ic;
variant = aspeed_scu_ic_find_variant(node);
if (!variant)
return -ENODEV;
scu_ic = kzalloc(sizeof(*scu_ic), GFP_KERNEL);
if (!scu_ic) if (!scu_ic)
return -ENOMEM; return -ENOMEM;
scu_ic->irq_enable = ASPEED_AST2600_SCU_IC0_ENABLE; scu_ic->irq_enable = variant->irq_enable;
scu_ic->irq_shift = ASPEED_AST2600_SCU_IC0_SHIFT; scu_ic->irq_shift = variant->irq_shift;
scu_ic->num_irqs = ASPEED_AST2600_SCU_IC0_NUM_IRQS; scu_ic->num_irqs = variant->num_irqs;
scu_ic->reg = ASPEED_AST2600_SCU_IC0_REG;
return aspeed_scu_ic_of_init_common(scu_ic, node);
}
static int __init aspeed_ast2600_scu_ic1_of_init(struct device_node *node,
struct device_node *parent)
{
struct aspeed_scu_ic *scu_ic = kzalloc(sizeof(*scu_ic), GFP_KERNEL);
if (!scu_ic)
return -ENOMEM;
scu_ic->irq_enable = ASPEED_AST2600_SCU_IC1_ENABLE;
scu_ic->irq_shift = ASPEED_AST2600_SCU_IC1_SHIFT;
scu_ic->num_irqs = ASPEED_AST2600_SCU_IC1_NUM_IRQS;
scu_ic->reg = ASPEED_AST2600_SCU_IC1_REG;
return aspeed_scu_ic_of_init_common(scu_ic, node); return aspeed_scu_ic_of_init_common(scu_ic, node);
} }
IRQCHIP_DECLARE(ast2400_scu_ic, "aspeed,ast2400-scu-ic", aspeed_scu_ic_of_init); IRQCHIP_DECLARE(ast2400_scu_ic, "aspeed,ast2400-scu-ic", aspeed_scu_ic_of_init);
IRQCHIP_DECLARE(ast2500_scu_ic, "aspeed,ast2500-scu-ic", aspeed_scu_ic_of_init); IRQCHIP_DECLARE(ast2500_scu_ic, "aspeed,ast2500-scu-ic", aspeed_scu_ic_of_init);
IRQCHIP_DECLARE(ast2600_scu_ic0, "aspeed,ast2600-scu-ic0", IRQCHIP_DECLARE(ast2600_scu_ic0, "aspeed,ast2600-scu-ic0", aspeed_scu_ic_of_init);
aspeed_ast2600_scu_ic0_of_init); IRQCHIP_DECLARE(ast2600_scu_ic1, "aspeed,ast2600-scu-ic1", aspeed_scu_ic_of_init);
IRQCHIP_DECLARE(ast2600_scu_ic1, "aspeed,ast2600-scu-ic1",
aspeed_ast2600_scu_ic1_of_init);