/* IRQs */
#define MAX_ASIC_ISR_LOOPS 20
-#define ASIC3_GPIO_Base_INCR \
- (ASIC3_GPIO_B_Base - ASIC3_GPIO_A_Base)
+#define ASIC3_GPIO_BASE_INCR \
+ (ASIC3_GPIO_B_BASE - ASIC3_GPIO_A_BASE)
static void asic3_irq_flip_edge(struct asic3 *asic,
u32 base, int bit)
spin_lock_irqsave(&asic->lock, flags);
edge = asic3_read_register(asic,
- base + ASIC3_GPIO_EdgeTrigger);
+ base + ASIC3_GPIO_EDGE_TRIGGER);
edge ^= bit;
asic3_write_register(asic,
- base + ASIC3_GPIO_EdgeTrigger, edge);
+ base + ASIC3_GPIO_EDGE_TRIGGER, edge);
spin_unlock_irqrestore(&asic->lock, flags);
}
spin_lock_irqsave(&asic->lock, flags);
status = asic3_read_register(asic,
- ASIC3_OFFSET(INTR, PIntStat));
+ ASIC3_OFFSET(INTR, P_INT_STAT));
spin_unlock_irqrestore(&asic->lock, flags);
/* Check all ten register bits */
if (status & (1 << bank)) {
unsigned long base, istat;
- base = ASIC3_GPIO_A_Base
- + bank * ASIC3_GPIO_Base_INCR;
+ base = ASIC3_GPIO_A_BASE
+ + bank * ASIC3_GPIO_BASE_INCR;
spin_lock_irqsave(&asic->lock, flags);
istat = asic3_read_register(asic,
base +
- ASIC3_GPIO_IntStatus);
+ ASIC3_GPIO_INT_STATUS);
/* Clearing IntStatus */
asic3_write_register(asic,
base +
- ASIC3_GPIO_IntStatus, 0);
+ ASIC3_GPIO_INT_STATUS, 0);
spin_unlock_irqrestore(&asic->lock, flags);
for (i = 0; i < ASIC3_GPIOS_PER_BANK; i++) {
for (i = ASIC3_NUM_GPIOS; i < ASIC3_NR_IRQS; i++) {
/* They start at bit 4 and go up */
if (status & (1 << (i - ASIC3_NUM_GPIOS + 4))) {
- desc = irq_desc + + i;
+ desc = irq_desc + asic->irq_base + i;
desc->handle_irq(asic->irq_base + i,
desc);
}
}
if (iter >= MAX_ASIC_ISR_LOOPS)
- printk(KERN_ERR "%s: interrupt processing overrun\n",
- __func__);
+ dev_err(asic->dev, "interrupt processing overrun\n");
}
static inline int asic3_irq_to_bank(struct asic3 *asic, int irq)
n = (irq - asic->irq_base) >> 4;
- return (n * (ASIC3_GPIO_B_Base - ASIC3_GPIO_A_Base));
+ return (n * (ASIC3_GPIO_B_BASE - ASIC3_GPIO_A_BASE));
}
static inline int asic3_irq_to_index(struct asic3 *asic, int irq)
index = asic3_irq_to_index(asic, irq);
spin_lock_irqsave(&asic->lock, flags);
- val = asic3_read_register(asic, bank + ASIC3_GPIO_Mask);
+ val = asic3_read_register(asic, bank + ASIC3_GPIO_MASK);
val |= 1 << index;
- asic3_write_register(asic, bank + ASIC3_GPIO_Mask, val);
+ asic3_write_register(asic, bank + ASIC3_GPIO_MASK, val);
spin_unlock_irqrestore(&asic->lock, flags);
}
spin_lock_irqsave(&asic->lock, flags);
regval = asic3_read_register(asic,
- ASIC3_INTR_Base +
- ASIC3_INTR_IntMask);
+ ASIC3_INTR_BASE +
+ ASIC3_INTR_INT_MASK);
regval &= ~(ASIC3_INTMASK_MASK0 <<
(irq - (asic->irq_base + ASIC3_NUM_GPIOS)));
asic3_write_register(asic,
- ASIC3_INTR_Base +
- ASIC3_INTR_IntMask,
+ ASIC3_INTR_BASE +
+ ASIC3_INTR_INT_MASK,
regval);
spin_unlock_irqrestore(&asic->lock, flags);
}
index = asic3_irq_to_index(asic, irq);
spin_lock_irqsave(&asic->lock, flags);
- val = asic3_read_register(asic, bank + ASIC3_GPIO_Mask);
+ val = asic3_read_register(asic, bank + ASIC3_GPIO_MASK);
val &= ~(1 << index);
- asic3_write_register(asic, bank + ASIC3_GPIO_Mask, val);
+ asic3_write_register(asic, bank + ASIC3_GPIO_MASK, val);
spin_unlock_irqrestore(&asic->lock, flags);
}
spin_lock_irqsave(&asic->lock, flags);
regval = asic3_read_register(asic,
- ASIC3_INTR_Base +
- ASIC3_INTR_IntMask);
+ ASIC3_INTR_BASE +
+ ASIC3_INTR_INT_MASK);
regval |= (ASIC3_INTMASK_MASK0 <<
(irq - (asic->irq_base + ASIC3_NUM_GPIOS)));
asic3_write_register(asic,
- ASIC3_INTR_Base +
- ASIC3_INTR_IntMask,
+ ASIC3_INTR_BASE +
+ ASIC3_INTR_INT_MASK,
regval);
spin_unlock_irqrestore(&asic->lock, flags);
}
spin_lock_irqsave(&asic->lock, flags);
level = asic3_read_register(asic,
- bank + ASIC3_GPIO_LevelTrigger);
+ bank + ASIC3_GPIO_LEVEL_TRIGGER);
edge = asic3_read_register(asic,
- bank + ASIC3_GPIO_EdgeTrigger);
+ bank + ASIC3_GPIO_EDGE_TRIGGER);
trigger = asic3_read_register(asic,
- bank + ASIC3_GPIO_TriggerType);
+ bank + ASIC3_GPIO_TRIGGER_TYPE);
asic->irq_bothedge[(irq - asic->irq_base) >> 4] &= ~bit;
- if (type == IRQT_RISING) {
+ if (type == IRQ_TYPE_EDGE_RISING) {
trigger |= bit;
edge |= bit;
- } else if (type == IRQT_FALLING) {
+ } else if (type == IRQ_TYPE_EDGE_FALLING) {
trigger |= bit;
edge &= ~bit;
- } else if (type == IRQT_BOTHEDGE) {
+ } else if (type == IRQ_TYPE_EDGE_BOTH) {
trigger |= bit;
if (asic3_gpio_get(&asic->gpio, irq - asic->irq_base))
edge &= ~bit;
else
edge |= bit;
asic->irq_bothedge[(irq - asic->irq_base) >> 4] |= bit;
- } else if (type == IRQT_LOW) {
+ } else if (type == IRQ_TYPE_LEVEL_LOW) {
trigger &= ~bit;
level &= ~bit;
- } else if (type == IRQT_HIGH) {
+ } else if (type == IRQ_TYPE_LEVEL_HIGH) {
trigger &= ~bit;
level |= bit;
} else {
/*
- * if type == IRQT_NOEDGE, we should mask interrupts, but
+ * if type == IRQ_TYPE_NONE, we should mask interrupts, but
* be careful to not unmask them if mask was also called.
* Probably need internal state for mask.
*/
- printk(KERN_NOTICE "asic3: irq type not changed.\n");
+ dev_notice(asic->dev, "irq type not changed\n");
}
- asic3_write_register(asic, bank + ASIC3_GPIO_LevelTrigger,
+ asic3_write_register(asic, bank + ASIC3_GPIO_LEVEL_TRIGGER,
level);
- asic3_write_register(asic, bank + ASIC3_GPIO_EdgeTrigger,
+ asic3_write_register(asic, bank + ASIC3_GPIO_EDGE_TRIGGER,
edge);
- asic3_write_register(asic, bank + ASIC3_GPIO_TriggerType,
+ asic3_write_register(asic, bank + ASIC3_GPIO_TRIGGER_TYPE,
trigger);
spin_unlock_irqrestore(&asic->lock, flags);
return 0;
.unmask = asic3_unmask_irq,
};
-static int asic3_irq_probe(struct platform_device *pdev)
+static int __init asic3_irq_probe(struct platform_device *pdev)
{
struct asic3 *asic = platform_get_drvdata(pdev);
unsigned long clksel = 0;
unsigned int irq, irq_base;
+ int map_size;
+ int ret;
- asic->irq_nr = platform_get_irq(pdev, 0);
- if (asic->irq_nr < 0)
- return asic->irq_nr;
+ ret = platform_get_irq(pdev, 0);
+ if (ret < 0)
+ return ret;
+ asic->irq_nr = ret;
/* turn on clock to IRQ controller */
clksel |= CLOCK_SEL_CX;
set_irq_flags(irq, IRQF_VALID | IRQF_PROBE);
}
- asic3_write_register(asic, ASIC3_OFFSET(INTR, IntMask),
+ asic3_write_register(asic, ASIC3_OFFSET(INTR, INT_MASK),
ASIC3_INTMASK_GINTMASK);
set_irq_chained_handler(asic->irq_nr, asic3_irq_demux);
- set_irq_type(asic->irq_nr, IRQT_RISING);
+ set_irq_type(asic->irq_nr, IRQ_TYPE_EDGE_RISING);
set_irq_data(asic->irq_nr, asic);
return 0;
asic = container_of(chip, struct asic3, gpio);
gpio_base = ASIC3_GPIO_TO_BASE(offset);
- if (gpio_base > ASIC3_GPIO_D_Base) {
- printk(KERN_ERR "Invalid base (0x%x) for gpio %d\n",
- gpio_base, offset);
+ if (gpio_base > ASIC3_GPIO_D_BASE) {
+ dev_err(asic->dev, "Invalid base (0x%x) for gpio %d\n",
+ gpio_base, offset);
return -EINVAL;
}
spin_lock_irqsave(&asic->lock, flags);
- out_reg = asic3_read_register(asic, gpio_base + ASIC3_GPIO_Direction);
+ out_reg = asic3_read_register(asic, gpio_base + ASIC3_GPIO_DIRECTION);
/* Input is 0, Output is 1 */
if (out)
else
out_reg &= ~mask;
- asic3_write_register(asic, gpio_base + ASIC3_GPIO_Direction, out_reg);
+ asic3_write_register(asic, gpio_base + ASIC3_GPIO_DIRECTION, out_reg);
spin_unlock_irqrestore(&asic->lock, flags);
asic = container_of(chip, struct asic3, gpio);
gpio_base = ASIC3_GPIO_TO_BASE(offset);
- if (gpio_base > ASIC3_GPIO_D_Base) {
- printk(KERN_ERR "Invalid base (0x%x) for gpio %d\n",
- gpio_base, offset);
+ if (gpio_base > ASIC3_GPIO_D_BASE) {
+ dev_err(asic->dev, "Invalid base (0x%x) for gpio %d\n",
+ gpio_base, offset);
return -EINVAL;
}
- return asic3_read_register(asic, gpio_base + ASIC3_GPIO_Status) & mask;
+ return asic3_read_register(asic, gpio_base + ASIC3_GPIO_STATUS) & mask;
}
static void asic3_gpio_set(struct gpio_chip *chip,
asic = container_of(chip, struct asic3, gpio);
gpio_base = ASIC3_GPIO_TO_BASE(offset);
- if (gpio_base > ASIC3_GPIO_D_Base) {
- printk(KERN_ERR "Invalid base (0x%x) for gpio %d\n",
- gpio_base, offset);
+ if (gpio_base > ASIC3_GPIO_D_BASE) {
+ dev_err(asic->dev, "Invalid base (0x%x) for gpio %d\n",
+ gpio_base, offset);
return;
}
spin_lock_irqsave(&asic->lock, flags);
- out_reg = asic3_read_register(asic, gpio_base + ASIC3_GPIO_Out);
+ out_reg = asic3_read_register(asic, gpio_base + ASIC3_GPIO_OUT);
if (value)
out_reg |= mask;
else
out_reg &= ~mask;
- asic3_write_register(asic, gpio_base + ASIC3_GPIO_Out, out_reg);
+ asic3_write_register(asic, gpio_base + ASIC3_GPIO_OUT, out_reg);
spin_unlock_irqrestore(&asic->lock, flags);
return;
}
-static inline u32 asic3_get_gpio(struct asic3 *asic, unsigned int base,
- unsigned int function)
-{
- return asic3_read_register(asic, base + function);
-}
-
-static void asic3_set_gpio(struct asic3 *asic, unsigned int base,
- unsigned int function, u32 bits, u32 val)
+static __init int asic3_gpio_probe(struct platform_device *pdev,
+ u16 *gpio_config, int num)
{
- unsigned long flags;
-
- spin_lock_irqsave(&asic->lock, flags);
- val |= (asic3_read_register(asic, base + function) & ~bits);
-
- asic3_write_register(asic, base + function, val);
- spin_unlock_irqrestore(&asic->lock, flags);
-}
-
-#define asic3_set_gpio_a(asic, fn, bits, val) \
- asic3_set_gpio(asic, ASIC3_GPIO_A_Base, ASIC3_GPIO_##fn, bits, val)
-#define asic3_set_gpio_b(asic, fn, bits, val) \
- asic3_set_gpio(asic, ASIC3_GPIO_B_Base, ASIC3_GPIO_##fn, bits, val)
-#define asic3_set_gpio_c(asic, fn, bits, val) \
- asic3_set_gpio(asic, ASIC3_GPIO_C_Base, ASIC3_GPIO_##fn, bits, val)
-#define asic3_set_gpio_d(asic, fn, bits, val) \
- asic3_set_gpio(asic, ASIC3_GPIO_D_Base, ASIC3_GPIO_##fn, bits, val)
-
-#define asic3_set_gpio_banks(asic, fn, bits, pdata, field) \
- do { \
- asic3_set_gpio_a((asic), fn, (bits), (pdata)->gpio_a.field); \
- asic3_set_gpio_b((asic), fn, (bits), (pdata)->gpio_b.field); \
- asic3_set_gpio_c((asic), fn, (bits), (pdata)->gpio_c.field); \
- asic3_set_gpio_d((asic), fn, (bits), (pdata)->gpio_d.field); \
- } while (0)
-
-
-static int asic3_gpio_probe(struct platform_device *pdev)
-{
- struct asic3_platform_data *pdata = pdev->dev.platform_data;
struct asic3 *asic = platform_get_drvdata(pdev);
+ u16 alt_reg[ASIC3_NUM_GPIO_BANKS];
+ u16 out_reg[ASIC3_NUM_GPIO_BANKS];
+ u16 dir_reg[ASIC3_NUM_GPIO_BANKS];
+ int i;
+
+ memzero(alt_reg, ASIC3_NUM_GPIO_BANKS * sizeof(u16));
+ memzero(out_reg, ASIC3_NUM_GPIO_BANKS * sizeof(u16));
+ memzero(dir_reg, ASIC3_NUM_GPIO_BANKS * sizeof(u16));
+
+ /* Enable all GPIOs */
+ asic3_write_register(asic, ASIC3_GPIO_OFFSET(A, MASK), 0xffff);
+ asic3_write_register(asic, ASIC3_GPIO_OFFSET(B, MASK), 0xffff);
+ asic3_write_register(asic, ASIC3_GPIO_OFFSET(C, MASK), 0xffff);
+ asic3_write_register(asic, ASIC3_GPIO_OFFSET(D, MASK), 0xffff);
+
+ for (i = 0; i < num; i++) {
+ u8 alt, pin, dir, init, bank_num, bit_num;
+ u16 config = gpio_config[i];
+
+ pin = ASIC3_CONFIG_GPIO_PIN(config);
+ alt = ASIC3_CONFIG_GPIO_ALT(config);
+ dir = ASIC3_CONFIG_GPIO_DIR(config);
+ init = ASIC3_CONFIG_GPIO_INIT(config);
+
+ bank_num = ASIC3_GPIO_TO_BANK(pin);
+ bit_num = ASIC3_GPIO_TO_BIT(pin);
+
+ alt_reg[bank_num] |= (alt << bit_num);
+ out_reg[bank_num] |= (init << bit_num);
+ dir_reg[bank_num] |= (dir << bit_num);
+ }
- asic3_write_register(asic, ASIC3_GPIO_OFFSET(A, Mask), 0xffff);
- asic3_write_register(asic, ASIC3_GPIO_OFFSET(B, Mask), 0xffff);
- asic3_write_register(asic, ASIC3_GPIO_OFFSET(C, Mask), 0xffff);
- asic3_write_register(asic, ASIC3_GPIO_OFFSET(D, Mask), 0xffff);
-
- asic3_set_gpio_a(asic, SleepMask, 0xffff, 0xffff);
- asic3_set_gpio_b(asic, SleepMask, 0xffff, 0xffff);
- asic3_set_gpio_c(asic, SleepMask, 0xffff, 0xffff);
- asic3_set_gpio_d(asic, SleepMask, 0xffff, 0xffff);
-
- if (pdata) {
- asic3_set_gpio_banks(asic, Out, 0xffff, pdata, init);
- asic3_set_gpio_banks(asic, Direction, 0xffff, pdata, dir);
- asic3_set_gpio_banks(asic, SleepMask, 0xffff, pdata,
- sleep_mask);
- asic3_set_gpio_banks(asic, SleepOut, 0xffff, pdata, sleep_out);
- asic3_set_gpio_banks(asic, BattFaultOut, 0xffff, pdata,
- batt_fault_out);
- asic3_set_gpio_banks(asic, SleepConf, 0xffff, pdata,
- sleep_conf);
- asic3_set_gpio_banks(asic, AltFunction, 0xffff, pdata,
- alt_function);
+ for (i = 0; i < ASIC3_NUM_GPIO_BANKS; i++) {
+ asic3_write_register(asic,
+ ASIC3_BANK_TO_BASE(i) +
+ ASIC3_GPIO_DIRECTION,
+ dir_reg[i]);
+ asic3_write_register(asic,
+ ASIC3_BANK_TO_BASE(i) + ASIC3_GPIO_OUT,
+ out_reg[i]);
+ asic3_write_register(asic,
+ ASIC3_BANK_TO_BASE(i) +
+ ASIC3_GPIO_ALT_FUNCTION,
+ alt_reg[i]);
}
return gpiochip_add(&asic->gpio);
/* Core */
-static int asic3_probe(struct platform_device *pdev)
+static int __init asic3_probe(struct platform_device *pdev)
{
struct asic3_platform_data *pdata = pdev->dev.platform_data;
struct asic3 *asic;
mem = platform_get_resource(pdev, IORESOURCE_MEM, 0);
if (!mem) {
ret = -ENOMEM;
- printk(KERN_ERR "asic3: no MEM resource\n");
+ dev_err(asic->dev, "no MEM resource\n");
goto out_free;
}
-
- asic->mapping = ioremap(mem->start, PAGE_SIZE);
+ map_size = mem->end - mem->start + 1;
+ asic->mapping = ioremap(mem->start, map_size);
if (!asic->mapping) {
ret = -ENOMEM;
- printk(KERN_ERR "asic3: couldn't ioremap\n");
+ dev_err(asic->dev, "Couldn't ioremap\n");
goto out_free;
}
asic->irq_base = pdata->irq_base;
- if (pdata && pdata->bus_shift)
- asic->bus_shift = 2 - pdata->bus_shift;
- else
- asic->bus_shift = 0;
+ /* calculate bus shift from mem resource */
+ asic->bus_shift = 2 - (map_size >> 12);
clksel = 0;
asic3_write_register(asic, ASIC3_OFFSET(CLOCK, SEL), clksel);
ret = asic3_irq_probe(pdev);
if (ret < 0) {
- printk(KERN_ERR "asic3: couldn't probe IRQs\n");
+ dev_err(asic->dev, "Couldn't probe IRQs\n");
goto out_unmap;
}
asic->gpio.direction_input = asic3_gpio_direction_input;
asic->gpio.direction_output = asic3_gpio_direction_output;
- ret = asic3_gpio_probe(pdev);
+ ret = asic3_gpio_probe(pdev,
+ pdata->gpio_config,
+ pdata->gpio_config_num);
if (ret < 0) {
- printk(KERN_ERR "GPIO probe failed\n");
+ dev_err(asic->dev, "GPIO probe failed\n");
goto out_irq;
}
- if (pdata->children) {
- int i;
- for (i = 0; i < pdata->n_children; i++) {
- pdata->children[i]->dev.parent = &pdev->dev;
- platform_device_register(pdata->children[i]);
- }
- }
-
- printk(KERN_INFO "ASIC3 Core driver\n");
+ dev_info(asic->dev, "ASIC3 Core driver\n");
return 0;
.driver = {
.name = "asic3",
},
- .probe = asic3_probe,
.remove = __devexit_p(asic3_remove),
.shutdown = asic3_shutdown,
};
static int __init asic3_init(void)
{
int retval = 0;
- retval = platform_driver_register(&asic3_device_driver);
+ retval = platform_driver_probe(&asic3_device_driver, asic3_probe);
return retval;
}