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path: root/drivers/pwm/pwm-pca9685.c
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Diffstat (limited to 'drivers/pwm/pwm-pca9685.c')
-rw-r--r--drivers/pwm/pwm-pca9685.c590
1 files changed, 246 insertions, 344 deletions
diff --git a/drivers/pwm/pwm-pca9685.c b/drivers/pwm/pwm-pca9685.c
index 3ed5a48ca581..107bebec3546 100644
--- a/drivers/pwm/pwm-pca9685.c
+++ b/drivers/pwm/pwm-pca9685.c
@@ -8,7 +8,6 @@
* based on the pwm-twl-led.c driver
*/
-#include <linux/acpi.h>
#include <linux/gpio/driver.h>
#include <linux/i2c.h>
#include <linux/module.h>
@@ -27,7 +26,6 @@
* that is enabled is allowed to change the prescale register.
* PWM channels requested afterwards must use a period that results in the same
* prescale setting as the one set by the first requested channel.
- * GPIOs do not count as enabled PWMs as they are not using the prescaler.
*/
#define PCA9685_MODE1 0x00
@@ -51,7 +49,14 @@
#define PCA9685_PRESCALE_MAX 0xFF /* => min. frequency of 24 Hz */
#define PCA9685_COUNTER_RANGE 4096
-#define PCA9685_OSC_CLOCK_MHZ 25 /* Internal oscillator with 25 MHz */
+#define PCA9685_OSC_CLOCK_HZ 25000000 /* Internal oscillator with 25 MHz */
+
+/*
+ * The time value of one counter tick. Note that NSEC_PER_SEC is an integer
+ * multiple of PCA9685_OSC_CLOCK_HZ, so there is no rounding involved and we're
+ * not loosing precision due to the early division.
+ */
+#define PCA9685_QUANTUM_NS(_prescale) ((NSEC_PER_SEC / PCA9685_OSC_CLOCK_HZ) * (_prescale + 1))
#define PCA9685_NUMREGS 0xFF
#define PCA9685_MAXCHAN 0x10
@@ -62,6 +67,8 @@
#define MODE1_SUB2 BIT(2)
#define MODE1_SUB1 BIT(3)
#define MODE1_SLEEP BIT(4)
+#define MODE1_AI BIT(5)
+
#define MODE2_INVRT BIT(4)
#define MODE2_OUTDRV BIT(2)
@@ -76,19 +83,14 @@
#define REG_OFF_L(C) ((C) >= PCA9685_MAXCHAN ? PCA9685_ALL_LED_OFF_L : LED_N_OFF_L((C)))
struct pca9685 {
- struct pwm_chip chip;
struct regmap *regmap;
struct mutex lock;
DECLARE_BITMAP(pwms_enabled, PCA9685_MAXCHAN + 1);
-#if IS_ENABLED(CONFIG_GPIOLIB)
- struct gpio_chip gpio;
- DECLARE_BITMAP(pwms_inuse, PCA9685_MAXCHAN + 1);
-#endif
};
static inline struct pca9685 *to_pca(struct pwm_chip *chip)
{
- return container_of(chip, struct pca9685, chip);
+ return pwmchip_get_drvdata(chip);
}
/* This function is supposed to be called with the lock mutex held */
@@ -107,9 +109,10 @@ static bool pca9685_prescaler_can_change(struct pca9685 *pca, int channel)
return test_bit(channel, pca->pwms_enabled);
}
-static int pca9685_read_reg(struct pca9685 *pca, unsigned int reg, unsigned int *val)
+static int pca9685_read_reg(struct pwm_chip *chip, unsigned int reg, unsigned int *val)
{
- struct device *dev = pca->chip.dev;
+ struct pca9685 *pca = to_pca(chip);
+ struct device *dev = pwmchip_parent(chip);
int err;
err = regmap_read(pca->regmap, reg, val);
@@ -119,9 +122,10 @@ static int pca9685_read_reg(struct pca9685 *pca, unsigned int reg, unsigned int
return err;
}
-static int pca9685_write_reg(struct pca9685 *pca, unsigned int reg, unsigned int val)
+static int pca9685_write_reg(struct pwm_chip *chip, unsigned int reg, unsigned int val)
{
- struct device *dev = pca->chip.dev;
+ struct pca9685 *pca = to_pca(chip);
+ struct device *dev = pwmchip_parent(chip);
int err;
err = regmap_write(pca->regmap, reg, val);
@@ -131,350 +135,232 @@ static int pca9685_write_reg(struct pca9685 *pca, unsigned int reg, unsigned int
return err;
}
-/* Helper function to set the duty cycle ratio to duty/4096 (e.g. duty=2048 -> 50%) */
-static void pca9685_pwm_set_duty(struct pca9685 *pca, int channel, unsigned int duty)
+static int pca9685_write_4reg(struct pwm_chip *chip, unsigned int reg, u8 val[4])
{
- struct pwm_device *pwm = &pca->chip.pwms[channel];
- unsigned int on, off;
-
- if (duty == 0) {
- /* Set the full OFF bit, which has the highest precedence */
- pca9685_write_reg(pca, REG_OFF_H(channel), LED_FULL);
- return;
- } else if (duty >= PCA9685_COUNTER_RANGE) {
- /* Set the full ON bit and clear the full OFF bit */
- pca9685_write_reg(pca, REG_ON_H(channel), LED_FULL);
- pca9685_write_reg(pca, REG_OFF_H(channel), 0);
- return;
- }
+ struct pca9685 *pca = to_pca(chip);
+ struct device *dev = pwmchip_parent(chip);
+ int err;
+ err = regmap_bulk_write(pca->regmap, reg, val, 4);
+ if (err)
+ dev_err(dev, "regmap_write to register 0x%x failed: %pe\n", reg, ERR_PTR(err));
- if (pwm->state.usage_power && channel < PCA9685_MAXCHAN) {
- /*
- * If usage_power is set, the pca9685 driver will phase shift
- * the individual channels relative to their channel number.
- * This improves EMI because the enabled channels no longer
- * turn on at the same time, while still maintaining the
- * configured duty cycle / power output.
- */
- on = channel * PCA9685_COUNTER_RANGE / PCA9685_MAXCHAN;
- } else
- on = 0;
-
- off = (on + duty) % PCA9685_COUNTER_RANGE;
-
- /* Set ON time (clears full ON bit) */
- pca9685_write_reg(pca, REG_ON_L(channel), on & 0xff);
- pca9685_write_reg(pca, REG_ON_H(channel), (on >> 8) & 0xf);
- /* Set OFF time (clears full OFF bit) */
- pca9685_write_reg(pca, REG_OFF_L(channel), off & 0xff);
- pca9685_write_reg(pca, REG_OFF_H(channel), (off >> 8) & 0xf);
+ return err;
}
-static unsigned int pca9685_pwm_get_duty(struct pca9685 *pca, int channel)
+static int pca9685_set_sleep_mode(struct pwm_chip *chip, bool enable)
{
- struct pwm_device *pwm = &pca->chip.pwms[channel];
- unsigned int off = 0, on = 0, val = 0;
-
- if (WARN_ON(channel >= PCA9685_MAXCHAN)) {
- /* HW does not support reading state of "all LEDs" channel */
- return 0;
- }
+ struct pca9685 *pca = to_pca(chip);
+ int err;
- pca9685_read_reg(pca, LED_N_OFF_H(channel), &off);
- if (off & LED_FULL) {
- /* Full OFF bit is set */
- return 0;
- }
+ err = regmap_update_bits(pca->regmap, PCA9685_MODE1,
+ MODE1_SLEEP, enable ? MODE1_SLEEP : 0);
+ if (err)
+ return err;
- pca9685_read_reg(pca, LED_N_ON_H(channel), &on);
- if (on & LED_FULL) {
- /* Full ON bit is set */
- return PCA9685_COUNTER_RANGE;
+ if (!enable) {
+ /* Wait 500us for the oscillator to be back up */
+ udelay(500);
}
- pca9685_read_reg(pca, LED_N_OFF_L(channel), &val);
- off = ((off & 0xf) << 8) | (val & 0xff);
- if (!pwm->state.usage_power)
- return off;
-
- /* Read ON register to calculate duty cycle of staggered output */
- if (pca9685_read_reg(pca, LED_N_ON_L(channel), &val)) {
- /* Reset val to 0 in case reading LED_N_ON_L failed */
- val = 0;
- }
- on = ((on & 0xf) << 8) | (val & 0xff);
- return (off - on) & (PCA9685_COUNTER_RANGE - 1);
+ return 0;
}
-#if IS_ENABLED(CONFIG_GPIOLIB)
-static bool pca9685_pwm_test_and_set_inuse(struct pca9685 *pca, int pwm_idx)
-{
- bool is_inuse;
-
- mutex_lock(&pca->lock);
- if (pwm_idx >= PCA9685_MAXCHAN) {
- /*
- * "All LEDs" channel:
- * pretend already in use if any of the PWMs are requested
- */
- if (!bitmap_empty(pca->pwms_inuse, PCA9685_MAXCHAN)) {
- is_inuse = true;
- goto out;
- }
- } else {
- /*
- * Regular channel:
- * pretend already in use if the "all LEDs" channel is requested
- */
- if (test_bit(PCA9685_MAXCHAN, pca->pwms_inuse)) {
- is_inuse = true;
- goto out;
- }
- }
- is_inuse = test_and_set_bit(pwm_idx, pca->pwms_inuse);
-out:
- mutex_unlock(&pca->lock);
- return is_inuse;
-}
+struct pca9685_waveform {
+ u8 onoff[4];
+ u8 prescale;
+};
-static void pca9685_pwm_clear_inuse(struct pca9685 *pca, int pwm_idx)
+static int pca9685_round_waveform_tohw(struct pwm_chip *chip, struct pwm_device *pwm, const struct pwm_waveform *wf, void *_wfhw)
{
- mutex_lock(&pca->lock);
- clear_bit(pwm_idx, pca->pwms_inuse);
- mutex_unlock(&pca->lock);
-}
+ struct pca9685_waveform *wfhw = _wfhw;
+ struct pca9685 *pca = to_pca(chip);
+ unsigned int best_prescale;
+ u8 prescale;
+ unsigned int period_ns, duty;
+ int ret_tohw = 0;
-static int pca9685_pwm_gpio_request(struct gpio_chip *gpio, unsigned int offset)
-{
- struct pca9685 *pca = gpiochip_get_data(gpio);
+ if (!wf->period_length_ns) {
+ *wfhw = (typeof(*wfhw)){
+ .onoff = { 0, 0, 0, LED_FULL, },
+ .prescale = 0,
+ };
- if (pca9685_pwm_test_and_set_inuse(pca, offset))
- return -EBUSY;
- pm_runtime_get_sync(pca->chip.dev);
- return 0;
-}
+ dev_dbg(&chip->dev, "pwm#%u: %lld/%lld [+%lld] -> [%hhx %hhx %hhx %hhx] PSC:%hhx\n",
+ pwm->hwpwm, wf->duty_length_ns, wf->period_length_ns, wf->duty_offset_ns,
+ wfhw->onoff[0], wfhw->onoff[1], wfhw->onoff[2], wfhw->onoff[3], wfhw->prescale);
-static int pca9685_pwm_gpio_get(struct gpio_chip *gpio, unsigned int offset)
-{
- struct pca9685 *pca = gpiochip_get_data(gpio);
+ return 0;
+ }
- return pca9685_pwm_get_duty(pca, offset) != 0;
-}
+ if (wf->period_length_ns >= PCA9685_COUNTER_RANGE * PCA9685_QUANTUM_NS(255)) {
+ best_prescale = 255;
+ } else if (wf->period_length_ns < PCA9685_COUNTER_RANGE * PCA9685_QUANTUM_NS(3)) {
+ best_prescale = 3;
+ ret_tohw = 1;
+ } else {
+ best_prescale = (unsigned int)wf->period_length_ns / (PCA9685_COUNTER_RANGE * (NSEC_PER_SEC / PCA9685_OSC_CLOCK_HZ)) - 1;
+ }
-static void pca9685_pwm_gpio_set(struct gpio_chip *gpio, unsigned int offset,
- int value)
-{
- struct pca9685 *pca = gpiochip_get_data(gpio);
+ guard(mutex)(&pca->lock);
- pca9685_pwm_set_duty(pca, offset, value ? PCA9685_COUNTER_RANGE : 0);
-}
+ if (!pca9685_prescaler_can_change(pca, pwm->hwpwm)) {
+ unsigned int current_prescale;
+ int ret;
-static void pca9685_pwm_gpio_free(struct gpio_chip *gpio, unsigned int offset)
-{
- struct pca9685 *pca = gpiochip_get_data(gpio);
+ ret = regmap_read(pca->regmap, PCA9685_PRESCALE, &current_prescale);
+ if (ret)
+ return ret;
- pca9685_pwm_set_duty(pca, offset, 0);
- pm_runtime_put(pca->chip.dev);
- pca9685_pwm_clear_inuse(pca, offset);
-}
+ if (current_prescale > best_prescale)
+ ret_tohw = 1;
-static int pca9685_pwm_gpio_get_direction(struct gpio_chip *chip,
- unsigned int offset)
-{
- /* Always out */
- return GPIO_LINE_DIRECTION_OUT;
-}
+ prescale = current_prescale;
+ } else {
+ prescale = best_prescale;
+ }
-static int pca9685_pwm_gpio_direction_input(struct gpio_chip *gpio,
- unsigned int offset)
-{
- return -EINVAL;
-}
+ period_ns = PCA9685_COUNTER_RANGE * PCA9685_QUANTUM_NS(prescale);
-static int pca9685_pwm_gpio_direction_output(struct gpio_chip *gpio,
- unsigned int offset, int value)
-{
- pca9685_pwm_gpio_set(gpio, offset, value);
+ duty = (unsigned)min_t(u64, wf->duty_length_ns, period_ns) / PCA9685_QUANTUM_NS(prescale);
- return 0;
-}
+ if (duty < PCA9685_COUNTER_RANGE) {
+ unsigned int on, off;
-/*
- * The PCA9685 has a bit for turning the PWM output full off or on. Some
- * boards like Intel Galileo actually uses these as normal GPIOs so we
- * expose a GPIO chip here which can exclusively take over the underlying
- * PWM channel.
- */
-static int pca9685_pwm_gpio_probe(struct pca9685 *pca)
-{
- struct device *dev = pca->chip.dev;
-
- pca->gpio.label = dev_name(dev);
- pca->gpio.parent = dev;
- pca->gpio.request = pca9685_pwm_gpio_request;
- pca->gpio.free = pca9685_pwm_gpio_free;
- pca->gpio.get_direction = pca9685_pwm_gpio_get_direction;
- pca->gpio.direction_input = pca9685_pwm_gpio_direction_input;
- pca->gpio.direction_output = pca9685_pwm_gpio_direction_output;
- pca->gpio.get = pca9685_pwm_gpio_get;
- pca->gpio.set = pca9685_pwm_gpio_set;
- pca->gpio.base = -1;
- pca->gpio.ngpio = PCA9685_MAXCHAN;
- pca->gpio.can_sleep = true;
-
- return devm_gpiochip_add_data(dev, &pca->gpio, pca);
-}
-#else
-static inline bool pca9685_pwm_test_and_set_inuse(struct pca9685 *pca,
- int pwm_idx)
-{
- return false;
-}
+ on = (unsigned)min_t(u64, wf->duty_offset_ns, period_ns) / PCA9685_QUANTUM_NS(prescale);
+ off = (on + duty) % PCA9685_COUNTER_RANGE;
-static inline void
-pca9685_pwm_clear_inuse(struct pca9685 *pca, int pwm_idx)
-{
-}
-
-static inline int pca9685_pwm_gpio_probe(struct pca9685 *pca)
-{
- return 0;
-}
-#endif
+ /*
+ * With a zero duty cycle, it doesn't matter if period was
+ * rounded up
+ */
+ if (!duty)
+ ret_tohw = 0;
-static void pca9685_set_sleep_mode(struct pca9685 *pca, bool enable)
-{
- struct device *dev = pca->chip.dev;
- int err = regmap_update_bits(pca->regmap, PCA9685_MODE1,
- MODE1_SLEEP, enable ? MODE1_SLEEP : 0);
- if (err) {
- dev_err(dev, "regmap_update_bits of register 0x%x failed: %pe\n",
- PCA9685_MODE1, ERR_PTR(err));
- return;
+ *wfhw = (typeof(*wfhw)){
+ .onoff = { on & 0xff, (on >> 8) & 0xf, off & 0xff, (off >> 8) & 0xf },
+ .prescale = prescale,
+ };
+ } else {
+ *wfhw = (typeof(*wfhw)){
+ .onoff = { 0, LED_FULL, 0, 0, },
+ .prescale = prescale,
+ };
}
- if (!enable) {
- /* Wait 500us for the oscillator to be back up */
- udelay(500);
- }
+ dev_dbg(&chip->dev, "pwm#%u: %lld/%lld [+%lld] -> %s[%hhx %hhx %hhx %hhx] PSC:%hhx\n",
+ pwm->hwpwm, wf->duty_length_ns, wf->period_length_ns, wf->duty_offset_ns,
+ ret_tohw ? "#" : "", wfhw->onoff[0], wfhw->onoff[1], wfhw->onoff[2], wfhw->onoff[3], wfhw->prescale);
+
+ return ret_tohw;
}
-static int __pca9685_pwm_apply(struct pwm_chip *chip, struct pwm_device *pwm,
- const struct pwm_state *state)
+static int pca9685_round_waveform_fromhw(struct pwm_chip *chip, struct pwm_device *pwm,
+ const void *_wfhw, struct pwm_waveform *wf)
{
+ const struct pca9685_waveform *wfhw = _wfhw;
struct pca9685 *pca = to_pca(chip);
- unsigned long long duty, prescale;
- unsigned int val = 0;
-
- if (state->polarity != PWM_POLARITY_NORMAL)
- return -EINVAL;
+ unsigned int prescale;
- prescale = DIV_ROUND_CLOSEST_ULL(PCA9685_OSC_CLOCK_MHZ * state->period,
- PCA9685_COUNTER_RANGE * 1000) - 1;
- if (prescale < PCA9685_PRESCALE_MIN || prescale > PCA9685_PRESCALE_MAX) {
- dev_err(chip->dev, "pwm not changed: period out of bounds!\n");
- return -EINVAL;
- }
-
- if (!state->enabled) {
- pca9685_pwm_set_duty(pca, pwm->hwpwm, 0);
- return 0;
- }
+ if (wfhw->prescale)
+ prescale = wfhw->prescale;
+ else
+ scoped_guard(mutex, &pca->lock) {
+ int ret;
- pca9685_read_reg(pca, PCA9685_PRESCALE, &val);
- if (prescale != val) {
- if (!pca9685_prescaler_can_change(pca, pwm->hwpwm)) {
- dev_err(chip->dev,
- "pwm not changed: periods of enabled pwms must match!\n");
- return -EBUSY;
+ ret = regmap_read(pca->regmap, PCA9685_PRESCALE, &prescale);
+ if (ret)
+ return ret;
}
- /*
- * Putting the chip briefly into SLEEP mode
- * at this point won't interfere with the
- * pm_runtime framework, because the pm_runtime
- * state is guaranteed active here.
- */
- /* Put chip into sleep mode */
- pca9685_set_sleep_mode(pca, true);
+ wf->period_length_ns = PCA9685_COUNTER_RANGE * PCA9685_QUANTUM_NS(prescale);
- /* Change the chip-wide output frequency */
- pca9685_write_reg(pca, PCA9685_PRESCALE, prescale);
+ if (wfhw->onoff[3] & LED_FULL) {
+ wf->duty_length_ns = 0;
+ wf->duty_offset_ns = 0;
+ } else if (wfhw->onoff[1] & LED_FULL) {
+ wf->duty_length_ns = wf->period_length_ns;
+ wf->duty_offset_ns = 0;
+ } else {
+ unsigned int on = wfhw->onoff[0] | (wfhw->onoff[1] & 0xf) << 8;
+ unsigned int off = wfhw->onoff[2] | (wfhw->onoff[3] & 0xf) << 8;
- /* Wake the chip up */
- pca9685_set_sleep_mode(pca, false);
+ wf->duty_length_ns = (off - on) % PCA9685_COUNTER_RANGE * PCA9685_QUANTUM_NS(prescale);
+ wf->duty_offset_ns = on * PCA9685_QUANTUM_NS(prescale);
}
- duty = PCA9685_COUNTER_RANGE * state->duty_cycle;
- duty = DIV_ROUND_UP_ULL(duty, state->period);
- pca9685_pwm_set_duty(pca, pwm->hwpwm, duty);
+ dev_dbg(&chip->dev, "pwm#%u: [%hhx %hhx %hhx %hhx] PSC:%hhx -> %lld/%lld [+%lld]\n",
+ pwm->hwpwm,
+ wfhw->onoff[0], wfhw->onoff[1], wfhw->onoff[2], wfhw->onoff[3], wfhw->prescale,
+ wf->duty_length_ns, wf->period_length_ns, wf->duty_offset_ns);
+
return 0;
}
-static int pca9685_pwm_apply(struct pwm_chip *chip, struct pwm_device *pwm,
- const struct pwm_state *state)
+static int pca9685_read_waveform(struct pwm_chip *chip, struct pwm_device *pwm, void *_wfhw)
{
+ struct pca9685_waveform *wfhw = _wfhw;
struct pca9685 *pca = to_pca(chip);
+ unsigned int prescale;
int ret;
- mutex_lock(&pca->lock);
- ret = __pca9685_pwm_apply(chip, pwm, state);
- if (ret == 0) {
- if (state->enabled)
- set_bit(pwm->hwpwm, pca->pwms_enabled);
- else
- clear_bit(pwm->hwpwm, pca->pwms_enabled);
- }
- mutex_unlock(&pca->lock);
+ guard(mutex)(&pca->lock);
+
+ ret = regmap_bulk_read(pca->regmap, REG_ON_L(pwm->hwpwm), &wfhw->onoff, 4);
+ if (ret)
+ return ret;
+
+ ret = regmap_read(pca->regmap, PCA9685_PRESCALE, &prescale);
+ if (ret)
+ return ret;
- return ret;
+ wfhw->prescale = prescale;
+
+ return 0;
}
-static int pca9685_pwm_get_state(struct pwm_chip *chip, struct pwm_device *pwm,
- struct pwm_state *state)
+static int pca9685_write_waveform(struct pwm_chip *chip, struct pwm_device *pwm, const void *_wfhw)
{
+ const struct pca9685_waveform *wfhw = _wfhw;
struct pca9685 *pca = to_pca(chip);
- unsigned long long duty;
- unsigned int val = 0;
+ unsigned int current_prescale;
+ int ret;
- /* Calculate (chip-wide) period from prescale value */
- pca9685_read_reg(pca, PCA9685_PRESCALE, &val);
- /*
- * PCA9685_OSC_CLOCK_MHZ is 25, i.e. an integer divider of 1000.
- * The following calculation is therefore only a multiplication
- * and we are not losing precision.
- */
- state->period = (PCA9685_COUNTER_RANGE * 1000 / PCA9685_OSC_CLOCK_MHZ) *
- (val + 1);
+ guard(mutex)(&pca->lock);
- /* The (per-channel) polarity is fixed */
- state->polarity = PWM_POLARITY_NORMAL;
+ if (wfhw->prescale) {
+ ret = regmap_read(pca->regmap, PCA9685_PRESCALE, &current_prescale);
+ if (ret)
+ return ret;
- if (pwm->hwpwm >= PCA9685_MAXCHAN) {
- /*
- * The "all LEDs" channel does not support HW readout
- * Return 0 and disabled for backwards compatibility
- */
- state->duty_cycle = 0;
- state->enabled = false;
- return 0;
- }
+ if (current_prescale != wfhw->prescale) {
+ if (!pca9685_prescaler_can_change(pca, pwm->hwpwm))
+ return -EBUSY;
- state->enabled = true;
- duty = pca9685_pwm_get_duty(pca, pwm->hwpwm);
- state->duty_cycle = DIV_ROUND_DOWN_ULL(duty * state->period, PCA9685_COUNTER_RANGE);
+ /* Put chip into sleep mode */
+ ret = pca9685_set_sleep_mode(chip, true);
+ if (ret)
+ return ret;
- return 0;
+ /* Change the chip-wide output frequency */
+ ret = regmap_write(pca->regmap, PCA9685_PRESCALE, wfhw->prescale);
+ if (ret)
+ return ret;
+
+ /* Wake the chip up */
+ ret = pca9685_set_sleep_mode(chip, false);
+ if (ret)
+ return ret;
+ }
+ }
+
+ return regmap_bulk_write(pca->regmap, REG_ON_L(pwm->hwpwm), &wfhw->onoff, 4);
}
static int pca9685_pwm_request(struct pwm_chip *chip, struct pwm_device *pwm)
{
struct pca9685 *pca = to_pca(chip);
- if (pca9685_pwm_test_and_set_inuse(pca, pwm->hwpwm))
- return -EBUSY;
-
if (pwm->hwpwm < PCA9685_MAXCHAN) {
/* PWMs - except the "all LEDs" channel - default to enabled */
mutex_lock(&pca->lock);
@@ -482,7 +368,7 @@ static int pca9685_pwm_request(struct pwm_chip *chip, struct pwm_device *pwm)
mutex_unlock(&pca->lock);
}
- pm_runtime_get_sync(chip->dev);
+ pm_runtime_get_sync(pwmchip_parent(chip));
return 0;
}
@@ -492,38 +378,66 @@ static void pca9685_pwm_free(struct pwm_chip *chip, struct pwm_device *pwm)
struct pca9685 *pca = to_pca(chip);
mutex_lock(&pca->lock);
- pca9685_pwm_set_duty(pca, pwm->hwpwm, 0);
clear_bit(pwm->hwpwm, pca->pwms_enabled);
mutex_unlock(&pca->lock);
- pm_runtime_put(chip->dev);
- pca9685_pwm_clear_inuse(pca, pwm->hwpwm);
+ pm_runtime_put(pwmchip_parent(chip));
}
static const struct pwm_ops pca9685_pwm_ops = {
- .apply = pca9685_pwm_apply,
- .get_state = pca9685_pwm_get_state,
+ .sizeof_wfhw = sizeof(struct pca9685_waveform),
+ .round_waveform_tohw = pca9685_round_waveform_tohw,
+ .round_waveform_fromhw = pca9685_round_waveform_fromhw,
+ .read_waveform = pca9685_read_waveform,
+ .write_waveform = pca9685_write_waveform,
.request = pca9685_pwm_request,
.free = pca9685_pwm_free,
- .owner = THIS_MODULE,
};
+static bool pca9685_readable_reg(struct device *dev, unsigned int reg)
+{
+ /* The ALL_LED registers are readable but read as zero */
+ return reg <= REG_OFF_H(15) || reg >= PCA9685_PRESCALE;
+}
+
+static bool pca9685_writeable_reg(struct device *dev, unsigned int reg)
+{
+ return reg <= REG_OFF_H(15) || reg >= PCA9685_ALL_LED_ON_L;
+}
+
+static bool pca9685_volatile_reg(struct device *dev, unsigned int reg)
+{
+ /*
+ * Writing to an ALL_LED register affects all LEDi registers, so they
+ * are not cachable. :-\
+ */
+ return reg < PCA9685_PRESCALE;
+}
+
static const struct regmap_config pca9685_regmap_i2c_config = {
.reg_bits = 8,
.val_bits = 8,
+
+ .readable_reg = pca9685_readable_reg,
+ .writeable_reg = pca9685_writeable_reg,
+ .volatile_reg = pca9685_volatile_reg,
+
.max_register = PCA9685_NUMREGS,
- .cache_type = REGCACHE_NONE,
+ .cache_type = REGCACHE_MAPLE,
};
static int pca9685_pwm_probe(struct i2c_client *client)
{
+ struct pwm_chip *chip;
struct pca9685 *pca;
unsigned int reg;
int ret;
- pca = devm_kzalloc(&client->dev, sizeof(*pca), GFP_KERNEL);
- if (!pca)
- return -ENOMEM;
+ /* Add an extra channel for ALL_LED */
+ chip = devm_pwmchip_alloc(&client->dev, PCA9685_MAXCHAN + 1, sizeof(*pca));
+ if (IS_ERR(chip))
+ return PTR_ERR(chip);
+ pca = to_pca(chip);
pca->regmap = devm_regmap_init_i2c(client, &pca9685_regmap_i2c_config);
if (IS_ERR(pca->regmap)) {
@@ -533,13 +447,12 @@ static int pca9685_pwm_probe(struct i2c_client *client)
return ret;
}
- i2c_set_clientdata(client, pca);
+ i2c_set_clientdata(client, chip);
mutex_init(&pca->lock);
- ret = pca9685_read_reg(pca, PCA9685_MODE2, &reg);
- if (ret)
- return ret;
+ /* clear MODE2_OCH */
+ reg = 0;
if (device_property_read_bool(&client->dev, "invert"))
reg |= MODE2_INVRT;
@@ -551,37 +464,30 @@ static int pca9685_pwm_probe(struct i2c_client *client)
else
reg |= MODE2_OUTDRV;
- ret = pca9685_write_reg(pca, PCA9685_MODE2, reg);
+ ret = pca9685_write_reg(chip, PCA9685_MODE2, reg);
if (ret)
return ret;
- /* Disable all LED ALLCALL and SUBx addresses to avoid bus collisions */
- pca9685_read_reg(pca, PCA9685_MODE1, &reg);
+ /*
+ * Disable all LED ALLCALL and SUBx addresses to avoid bus collisions,
+ * enable Auto-Increment.
+ */
+ pca9685_read_reg(chip, PCA9685_MODE1, &reg);
reg &= ~(MODE1_ALLCALL | MODE1_SUB1 | MODE1_SUB2 | MODE1_SUB3);
- pca9685_write_reg(pca, PCA9685_MODE1, reg);
+ reg |= MODE1_AI;
+ pca9685_write_reg(chip, PCA9685_MODE1, reg);
/* Reset OFF/ON registers to POR default */
- pca9685_write_reg(pca, PCA9685_ALL_LED_OFF_L, 0);
- pca9685_write_reg(pca, PCA9685_ALL_LED_OFF_H, LED_FULL);
- pca9685_write_reg(pca, PCA9685_ALL_LED_ON_L, 0);
- pca9685_write_reg(pca, PCA9685_ALL_LED_ON_H, LED_FULL);
-
- pca->chip.ops = &pca9685_pwm_ops;
- /* Add an extra channel for ALL_LED */
- pca->chip.npwm = PCA9685_MAXCHAN + 1;
+ ret = pca9685_write_4reg(chip, PCA9685_ALL_LED_ON_L, (u8[]){ 0, LED_FULL, 0, LED_FULL });
+ if (ret < 0)
+ return dev_err_probe(&client->dev, ret, "Failed to reset ON/OFF registers\n");
- pca->chip.dev = &client->dev;
+ chip->ops = &pca9685_pwm_ops;
- ret = pwmchip_add(&pca->chip);
+ ret = pwmchip_add(chip);
if (ret < 0)
return ret;
- ret = pca9685_pwm_gpio_probe(pca);
- if (ret < 0) {
- pwmchip_remove(&pca->chip);
- return ret;
- }
-
pm_runtime_enable(&client->dev);
if (pm_runtime_enabled(&client->dev)) {
@@ -589,11 +495,11 @@ static int pca9685_pwm_probe(struct i2c_client *client)
* Although the chip comes out of power-up in the sleep state,
* we force it to sleep in case it was woken up before
*/
- pca9685_set_sleep_mode(pca, true);
+ pca9685_set_sleep_mode(chip, true);
pm_runtime_set_suspended(&client->dev);
} else {
/* Wake the chip up if runtime PM is disabled */
- pca9685_set_sleep_mode(pca, false);
+ pca9685_set_sleep_mode(chip, false);
}
return 0;
@@ -601,13 +507,13 @@ static int pca9685_pwm_probe(struct i2c_client *client)
static void pca9685_pwm_remove(struct i2c_client *client)
{
- struct pca9685 *pca = i2c_get_clientdata(client);
+ struct pwm_chip *chip = i2c_get_clientdata(client);
- pwmchip_remove(&pca->chip);
+ pwmchip_remove(chip);
if (!pm_runtime_enabled(&client->dev)) {
/* Put chip in sleep state if runtime PM is disabled */
- pca9685_set_sleep_mode(pca, true);
+ pca9685_set_sleep_mode(chip, true);
}
pm_runtime_disable(&client->dev);
@@ -616,42 +522,38 @@ static void pca9685_pwm_remove(struct i2c_client *client)
static int __maybe_unused pca9685_pwm_runtime_suspend(struct device *dev)
{
struct i2c_client *client = to_i2c_client(dev);
- struct pca9685 *pca = i2c_get_clientdata(client);
+ struct pwm_chip *chip = i2c_get_clientdata(client);
- pca9685_set_sleep_mode(pca, true);
+ pca9685_set_sleep_mode(chip, true);
return 0;
}
static int __maybe_unused pca9685_pwm_runtime_resume(struct device *dev)
{
struct i2c_client *client = to_i2c_client(dev);
- struct pca9685 *pca = i2c_get_clientdata(client);
+ struct pwm_chip *chip = i2c_get_clientdata(client);
- pca9685_set_sleep_mode(pca, false);
+ pca9685_set_sleep_mode(chip, false);
return 0;
}
static const struct i2c_device_id pca9685_id[] = {
- { "pca9685", 0 },
- { /* sentinel */ },
+ { "pca9685" },
+ { /* sentinel */ }
};
MODULE_DEVICE_TABLE(i2c, pca9685_id);
-#ifdef CONFIG_ACPI
static const struct acpi_device_id pca9685_acpi_ids[] = {
{ "INT3492", 0 },
{ /* sentinel */ },
};
MODULE_DEVICE_TABLE(acpi, pca9685_acpi_ids);
-#endif
-#ifdef CONFIG_OF
static const struct of_device_id pca9685_dt_ids[] = {
{ .compatible = "nxp,pca9685-pwm", },
{ /* sentinel */ }
};
MODULE_DEVICE_TABLE(of, pca9685_dt_ids);
-#endif
static const struct dev_pm_ops pca9685_pwm_pm = {
SET_RUNTIME_PM_OPS(pca9685_pwm_runtime_suspend,
@@ -661,11 +563,11 @@ static const struct dev_pm_ops pca9685_pwm_pm = {
static struct i2c_driver pca9685_i2c_driver = {
.driver = {
.name = "pca9685-pwm",
- .acpi_match_table = ACPI_PTR(pca9685_acpi_ids),
- .of_match_table = of_match_ptr(pca9685_dt_ids),
+ .acpi_match_table = pca9685_acpi_ids,
+ .of_match_table = pca9685_dt_ids,
.pm = &pca9685_pwm_pm,
},
- .probe_new = pca9685_pwm_probe,
+ .probe = pca9685_pwm_probe,
.remove = pca9685_pwm_remove,
.id_table = pca9685_id,
};