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leds-qpnp.c
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executable file
·3524 lines (3106 loc) · 89.3 KB
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/* Copyright (c) 2012-2013, The Linux Foundation. All rights reserved.
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 and
* only version 2 as published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#include <linux/kernel.h>
#include <linux/module.h>
#include <linux/init.h>
#include <linux/slab.h>
#include <linux/leds.h>
#include <linux/err.h>
#include <linux/spinlock.h>
#include <linux/of_platform.h>
#include <linux/of_device.h>
#include <linux/spmi.h>
#include <linux/qpnp/pwm.h>
#include <linux/workqueue.h>
#include <linux/ctype.h>
#include <linux/regulator/consumer.h>
#include <linux/delay.h>
#define WLED_MOD_EN_REG(base, n) (base + 0x60 + n*0x10)
#define WLED_IDAC_DLY_REG(base, n) (WLED_MOD_EN_REG(base, n) + 0x01)
#define WLED_FULL_SCALE_REG(base, n) (WLED_IDAC_DLY_REG(base, n) + 0x01)
#define WLED_MOD_SRC_SEL_REG(base, n) (WLED_FULL_SCALE_REG(base, n) + 0x01)
/* wled control registers */
#define WLED_BRIGHTNESS_CNTL_LSB(base, n) (base + 0x40 + 2*n)
#define WLED_BRIGHTNESS_CNTL_MSB(base, n) (base + 0x41 + 2*n)
#define WLED_MOD_CTRL_REG(base) (base + 0x46)
#define WLED_SYNC_REG(base) (base + 0x47)
#define WLED_FDBCK_CTRL_REG(base) (base + 0x48)
#define WLED_SWITCHING_FREQ_REG(base) (base + 0x4C)
#define WLED_OVP_CFG_REG(base) (base + 0x4D)
#define WLED_BOOST_LIMIT_REG(base) (base + 0x4E)
#define WLED_CURR_SINK_REG(base) (base + 0x4F)
#define WLED_HIGH_POLE_CAP_REG(base) (base + 0x58)
#define WLED_CURR_SINK_MASK 0xE0
#define WLED_CURR_SINK_SHFT 0x05
#define WLED_SWITCH_FREQ_MASK 0x02
#define WLED_OVP_VAL_MASK 0x03
#define WLED_OVP_VAL_BIT_SHFT 0x00
#define WLED_BOOST_LIMIT_MASK 0x07
#define WLED_BOOST_LIMIT_BIT_SHFT 0x00
#define WLED_BOOST_ON 0x80
#define WLED_BOOST_OFF 0x00
#define WLED_EN_MASK 0x80
#define WLED_NO_MASK 0x00
#define WLED_CP_SELECT_MAX 0x03
#define WLED_CP_SELECT_MASK 0x02
#define WLED_USE_EXT_GEN_MOD_SRC 0x01
#define WLED_CTL_DLY_STEP 200
#define WLED_CTL_DLY_MAX 1400
#define WLED_MAX_CURR 25
#define WLED_MSB_MASK 0x0F
#define WLED_MAX_CURR_MASK 0x19
#define WLED_OP_FDBCK_MASK 0x07
#define WLED_OP_FDBCK_BIT_SHFT 0x00
#define WLED_OP_FDBCK_DEFAULT 0x00
#define WLED_MAX_LEVEL 4095
#define WLED_8_BIT_MASK 0xFF
#define WLED_4_BIT_MASK 0x0F
#define WLED_8_BIT_SHFT 0x08
#define WLED_MAX_DUTY_CYCLE 0xFFF
#define WLED_SYNC_VAL 0x07
#define WLED_SYNC_RESET_VAL 0x00
#define WLED_DEFAULT_STRINGS 0x01
#define WLED_DEFAULT_OVP_VAL 0x02
#define WLED_BOOST_LIM_DEFAULT 0x03
#define WLED_CP_SEL_DEFAULT 0x00
#define WLED_CTRL_DLY_DEFAULT 0x00
#define WLED_SWITCH_FREQ_DEFAULT 0x02
#define FLASH_SAFETY_TIMER(base) (base + 0x40)
#define FLASH_MAX_CURR(base) (base + 0x41)
#define FLASH_LED_0_CURR(base) (base + 0x42)
#define FLASH_LED_1_CURR(base) (base + 0x43)
#define FLASH_CLAMP_CURR(base) (base + 0x44)
#define FLASH_LED_TMR_CTRL(base) (base + 0x48)
#define FLASH_HEADROOM(base) (base + 0x4A)
#define FLASH_STARTUP_DELAY(base) (base + 0x4B)
#define FLASH_MASK_ENABLE(base) (base + 0x4C)
#define FLASH_VREG_OK_FORCE(base) (base + 0x4F)
#define FLASH_ENABLE_CONTROL(base) (base + 0x46)
#define FLASH_LED_STROBE_CTRL(base) (base + 0x47)
#define FLASH_LED_UNLOCK_SECURE(base) (base + 0xD0)
#define FLASH_LED_TORCH(base) (base + 0xE4)
#define FLASH_FAULT_DETECT(base) (base + 0x51)
#define FLASH_RAMP_RATE(base) (base + 0x54)
#define FLASH_PERIPHERAL_SUBTYPE(base) (base + 0x05)
#define FLASH_VPH_PWR_DROOP(base) (base + 0x5A)
#define FLASH_MAX_LEVEL 0x4F
#define TORCH_MAX_LEVEL 0x0F
#define FLASH_NO_MASK 0x00
#define FLASH_MASK_1 0x20
#define FLASH_MASK_REG_MASK 0xE0
#define FLASH_HEADROOM_MASK 0x03
#define FLASH_SAFETY_TIMER_MASK 0x7F
#define FLASH_CURRENT_MASK 0xFF
#define FLASH_MAX_CURRENT_MASK 0x7F
#define FLASH_TMR_MASK 0x03
#define FLASH_TMR_WATCHDOG 0x03
#define FLASH_TMR_SAFETY 0x00
#define FLASH_FAULT_DETECT_MASK 0X80
#define FLASH_HW_VREG_OK 0x40
#define FLASH_VREG_MASK 0xC0
#define FLASH_STARTUP_DLY_MASK 0x02
#define FLASH_RAMP_RATE_MASK 0xBF
#define FLASH_VPH_PWR_DROOP_MASK 0xF3
#define FLASH_ENABLE_ALL 0xE0
#define FLASH_ENABLE_MODULE 0x80
#define FLASH_ENABLE_MODULE_MASK 0x80
#define FLASH_DISABLE_ALL 0x00
#define FLASH_ENABLE_MASK 0xE0
#define FLASH_ENABLE_LED_0 0xC0
#define FLASH_ENABLE_LED_1 0xA0
#define FLASH_INIT_MASK 0xE0
#define FLASH_SELFCHECK_ENABLE 0x80
#define FLASH_SELFCHECK_DISABLE 0x00
#define FLASH_STROBE_SW 0xC0
#define FLASH_STROBE_HW 0x04
#define FLASH_STROBE_MASK 0xC7
#define FLASH_LED_0_OUTPUT 0x80
#define FLASH_LED_1_OUTPUT 0x40
#define FLASH_CURRENT_PRGM_MIN 1
#define FLASH_CURRENT_PRGM_SHIFT 1
#define FLASH_CURRENT_MAX 0x4F
#define FLASH_CURRENT_TORCH 0x07
#define FLASH_DURATION_200ms 0x13
#define FLASH_CLAMP_200mA 0x0F
#define FLASH_TORCH_MASK 0x03
#define FLASH_LED_TORCH_ENABLE 0x00
#define FLASH_LED_TORCH_DISABLE 0x03
#define FLASH_UNLOCK_SECURE 0xA5
#define FLASH_SECURE_MASK 0xFF
#define FLASH_SUBTYPE_DUAL 0x01
#define FLASH_SUBTYPE_SINGLE 0x02
#define LED_TRIGGER_DEFAULT "none"
#define RGB_LED_SRC_SEL(base) (base + 0x45)
#define RGB_LED_EN_CTL(base) (base + 0x46)
#define RGB_LED_ATC_CTL(base) (base + 0x47)
#define RGB_MAX_LEVEL LED_FULL
#define RGB_LED_ENABLE_RED 0x80
#define RGB_LED_ENABLE_GREEN 0x40
#define RGB_LED_ENABLE_BLUE 0x20
#define RGB_LED_SOURCE_VPH_PWR 0x01
#define RGB_LED_ENABLE_MASK 0xE0
#define RGB_LED_SRC_MASK 0x03
#define QPNP_LED_PWM_FLAGS (PM_PWM_LUT_LOOP | PM_PWM_LUT_RAMP_UP)
#define QPNP_LUT_RAMP_STEP_DEFAULT 255
#define QPNP_LUT_RAMP_STEP_MAX 255
#define QPNP_LUT_RAMP_STEP_MIN 1
#define PWM_LUT_MAX_SIZE 63
#define PWM_GPLED_LUT_MAX_SIZE 31
#define RGB_LED_DISABLE 0x00
#define RGB_LED_MIN_MS 50
#define RGB_LED_MAX_MS 10000
#define RGB_LED_RAMP_STEP_COUNT 5
#define MPP_MAX_LEVEL LED_FULL
#define LED_MPP_MODE_CTRL(base) (base + 0x40)
#define LED_MPP_VIN_CTRL(base) (base + 0x41)
#define LED_MPP_EN_CTRL(base) (base + 0x46)
#define LED_MPP_SINK_CTRL(base) (base + 0x4C)
#define LED_MPP_CURRENT_DEFAULT 5
#define LED_MPP_CURRENT_PER_SETTING 5
#define LED_MPP_SOURCE_SEL_DEFAULT LED_MPP_MODE_ENABLE
#define LED_MPP_SINK_MASK 0x07
#define LED_MPP_MODE_MASK 0x7F
#define LED_MPP_EN_MASK 0x80
#define LED_MPP_SRC_MASK 0x0F
#define LED_MPP_MODE_CTRL_MASK 0x70
#define LED_MPP_MODE_SINK (0x06 << 4)
#define LED_MPP_MODE_ENABLE 0x01
#define LED_MPP_MODE_OUTPUT 0x10
#define LED_MPP_MODE_DISABLE 0x00
#define LED_MPP_EN_ENABLE 0x80
#define LED_MPP_EN_DISABLE 0x00
#define MPP_SOURCE_DTEST1 0x08
#define KPDBL_MAX_LEVEL LED_FULL
#define KPDBL_ROW_SRC_SEL(base) (base + 0x40)
#define KPDBL_ENABLE(base) (base + 0x46)
#define KPDBL_ROW_SRC(base) (base + 0xE5)
#define KPDBL_ROW_SRC_SEL_VAL_MASK 0x0F
#define KPDBL_ROW_SCAN_EN_MASK 0x80
#define KPDBL_ROW_SCAN_VAL_MASK 0x0F
#define KPDBL_ROW_SCAN_EN_SHIFT 7
#define KPDBL_MODULE_EN 0x80
#define KPDBL_MODULE_DIS 0x00
#define KPDBL_MODULE_EN_MASK 0x80
/**
* enum qpnp_leds - QPNP supported led ids
* @QPNP_ID_WLED - White led backlight
*/
enum qpnp_leds {
QPNP_ID_WLED = 0,
QPNP_ID_FLASH1_LED0,
QPNP_ID_FLASH1_LED1,
QPNP_ID_RGB_RED,
QPNP_ID_RGB_GREEN,
QPNP_ID_RGB_BLUE,
QPNP_ID_LED_MPP,
QPNP_ID_KPDBL,
QPNP_ID_MAX,
};
/* current boost limit */
enum wled_current_boost_limit {
WLED_CURR_LIMIT_105mA,
WLED_CURR_LIMIT_385mA,
WLED_CURR_LIMIT_525mA,
WLED_CURR_LIMIT_805mA,
WLED_CURR_LIMIT_980mA,
WLED_CURR_LIMIT_1260mA,
WLED_CURR_LIMIT_1400mA,
WLED_CURR_LIMIT_1680mA,
};
/* over voltage protection threshold */
enum wled_ovp_threshold {
WLED_OVP_35V,
WLED_OVP_32V,
WLED_OVP_29V,
WLED_OVP_37V,
};
/* switch frquency */
enum wled_switch_freq {
WLED_800kHz = 0,
WLED_960kHz,
WLED_1600kHz,
WLED_3200kHz,
};
enum flash_headroom {
HEADROOM_250mV = 0,
HEADROOM_300mV,
HEADROOM_400mV,
HEADROOM_500mV,
};
enum flash_startup_dly {
DELAY_10us = 0,
DELAY_32us,
DELAY_64us,
DELAY_128us,
};
enum led_mode {
PWM_MODE = 0,
LPG_MODE,
MANUAL_MODE,
};
static u8 wled_debug_regs[] = {
/* common registers */
0x46, 0x47, 0x48, 0x49, 0x4a, 0x4b, 0x4c, 0x4d, 0x4d, 0x4e, 0x4f,
0x50, 0x51, 0x52, 0x53, 0x54, 0x55, 0x56, 0x57, 0x58, 0x59,
/* LED1 */
0x60, 0x61, 0x62, 0x63, 0x66,
/* LED2 */
0x70, 0x71, 0x72, 0x73, 0x76,
/* LED3 */
0x80, 0x81, 0x82, 0x83, 0x86,
};
static u8 flash_debug_regs[] = {
0x40, 0x41, 0x42, 0x43, 0x44, 0x48, 0x49, 0x4b, 0x4c,
0x4f, 0x46, 0x47,
};
static u8 rgb_pwm_debug_regs[] = {
0x45, 0x46, 0x47,
};
static u8 mpp_debug_regs[] = {
0x40, 0x41, 0x42, 0x45, 0x46, 0x4c,
};
static u8 kpdbl_debug_regs[] = {
0x40, 0x46, 0xb1, 0xb3, 0xb4, 0xe5,
};
/**
* pwm_config_data - pwm configuration data
* @lut_params - lut parameters to be used by pwm driver
* @pwm_device - pwm device
* @pwm_channel - pwm channel to be configured for led
* @pwm_period_us - period for pwm, in us
* @mode - mode the led operates in
* @old_duty_pcts - storage for duty pcts that may need to be reused
* @default_mode - default mode of LED as set in device tree
* @use_blink - use blink sysfs entry
* @blinking - device is currently blinking w/LPG mode
*/
struct pwm_config_data {
struct lut_params lut_params;
struct pwm_device *pwm_dev;
int pwm_channel;
u32 pwm_period_us;
struct pwm_duty_cycles *duty_cycles;
int *old_duty_pcts;
u8 mode;
u8 default_mode;
bool use_blink;
bool blinking;
};
/**
* wled_config_data - wled configuration data
* @num_strings - number of wled strings supported
* @ovp_val - over voltage protection threshold
* @boost_curr_lim - boot current limit
* @cp_select - high pole capacitance
* @ctrl_delay_us - delay in activation of led
* @dig_mod_gen_en - digital module generator
* @cs_out_en - current sink output enable
* @op_fdbck - selection of output as feedback for the boost
*/
struct wled_config_data {
u8 num_strings;
u8 ovp_val;
u8 boost_curr_lim;
u8 cp_select;
u8 ctrl_delay_us;
u8 switch_freq;
u8 op_fdbck;
bool dig_mod_gen_en;
bool cs_out_en;
};
/**
* mpp_config_data - mpp configuration data
* @pwm_cfg - device pwm configuration
* @current_setting - current setting, 5ma-40ma in 5ma increments
* @source_sel - source selection
* @mode_ctrl - mode control
* @pwm_mode - pwm mode in use
*/
struct mpp_config_data {
struct pwm_config_data *pwm_cfg;
u8 current_setting;
u8 source_sel;
u8 mode_ctrl;
u8 pwm_mode;
};
/**
* flash_config_data - flash configuration data
* @current_prgm - current to be programmed, scaled by max level
* @clamp_curr - clamp current to use
* @headroom - headroom value to use
* @duration - duration of the flash
* @enable_module - enable address for particular flash
* @trigger_flash - trigger flash
* @startup_dly - startup delay for flash
* @strobe_type - select between sw and hw strobe
* @peripheral_subtype - module peripheral subtype
* @current_addr - address to write for current
* @second_addr - address of secondary flash to be written
* @safety_timer - enable safety timer or watchdog timer
* @torch_enable - enable flash LED torch mode
* @flash_reg_get - flash regulator attached or not
* @flash_on - flash status, on or off
* @torch_on - torch status, on or off
* @flash_boost_reg - boost regulator for flash
* @torch_boost_reg - boost regulator for torch
*/
struct flash_config_data {
u8 current_prgm;
u8 clamp_curr;
u8 headroom;
u8 duration;
u8 enable_module;
u8 trigger_flash;
u8 startup_dly;
u8 strobe_type;
u8 peripheral_subtype;
u16 current_addr;
u16 second_addr;
bool safety_timer;
bool torch_enable;
bool flash_reg_get;
bool flash_on;
bool torch_on;
struct regulator *flash_boost_reg;
struct regulator *torch_boost_reg;
};
/**
* kpdbl_config_data - kpdbl configuration data
* @pwm_cfg - device pwm configuration
* @row_src_sel_val - select source, 0 for vph_pwr and 1 for vbst
* @row_scan_en - enable row scan
* @row_scan_val - map to enable needed rows
*/
struct kpdbl_config_data {
struct pwm_config_data *pwm_cfg;
u32 row_src_sel_val;
u32 row_scan_en;
u32 row_scan_val;
};
/**
* rgb_config_data - rgb configuration data
* @pwm_cfg - device pwm configuration
* @enable - bits to enable led
*/
struct rgb_config_data {
struct pwm_config_data *pwm_cfg;
u8 enable;
u32 on_ms;
u32 off_ms;
u8 start;
u32 calibrated_max;
};
/**
* struct qpnp_led_data - internal led data structure
* @led_classdev - led class device
* @delayed_work - delayed work for turning off the LED
* @work - workqueue for led
* @id - led index
* @base_reg - base register given in device tree
* @lock - to protect the transactions
* @reg - cached value of led register
* @num_leds - number of leds in the module
* @max_current - maximum current supported by LED
* @default_on - true: default state max, false, default state 0
* @turn_off_delay_ms - number of msec before turning off the LED
*/
struct qpnp_led_data {
struct led_classdev cdev;
struct spmi_device *spmi_dev;
struct delayed_work dwork;
struct work_struct work;
int id;
u16 base;
u8 reg;
u8 num_leds;
struct mutex lock;
struct wled_config_data *wled_cfg;
struct flash_config_data *flash_cfg;
struct kpdbl_config_data *kpdbl_cfg;
struct rgb_config_data *rgb_cfg;
struct mpp_config_data *mpp_cfg;
int max_current;
bool default_on;
int turn_off_delay_ms;
};
static int
qpnp_led_masked_write(struct qpnp_led_data *led, u16 addr, u8 mask, u8 val)
{
int rc;
u8 reg;
rc = spmi_ext_register_readl(led->spmi_dev->ctrl, led->spmi_dev->sid,
addr, ®, 1);
if (rc) {
dev_err(&led->spmi_dev->dev,
"Unable to read from addr=%x, rc(%d)\n", addr, rc);
}
reg &= ~mask;
reg |= val;
rc = spmi_ext_register_writel(led->spmi_dev->ctrl, led->spmi_dev->sid,
addr, ®, 1);
if (rc)
dev_err(&led->spmi_dev->dev,
"Unable to write to addr=%x, rc(%d)\n", addr, rc);
return rc;
}
static void qpnp_dump_regs(struct qpnp_led_data *led, u8 regs[], u8 array_size)
{
int i;
u8 val;
pr_debug("===== %s LED register dump start =====\n", led->cdev.name);
for (i = 0; i < array_size; i++) {
spmi_ext_register_readl(led->spmi_dev->ctrl,
led->spmi_dev->sid,
led->base + regs[i],
&val, sizeof(val));
pr_debug("%s: 0x%x = 0x%x\n", led->cdev.name,
led->base + regs[i], val);
}
pr_debug("===== %s LED register dump end =====\n", led->cdev.name);
}
static int qpnp_wled_set(struct qpnp_led_data *led)
{
int rc, duty, level;
u8 val, i, num_wled_strings;
level = led->cdev.brightness;
if (level > WLED_MAX_LEVEL)
level = WLED_MAX_LEVEL;
if (level == 0) {
val = WLED_BOOST_OFF;
rc = spmi_ext_register_writel(led->spmi_dev->ctrl,
led->spmi_dev->sid, WLED_MOD_CTRL_REG(led->base),
&val, 1);
if (rc) {
dev_err(&led->spmi_dev->dev,
"WLED write ctrl reg failed(%d)\n", rc);
return rc;
}
} else {
val = WLED_BOOST_ON;
rc = spmi_ext_register_writel(led->spmi_dev->ctrl,
led->spmi_dev->sid, WLED_MOD_CTRL_REG(led->base),
&val, 1);
if (rc) {
dev_err(&led->spmi_dev->dev,
"WLED write ctrl reg failed(%d)\n", rc);
return rc;
}
}
duty = (WLED_MAX_DUTY_CYCLE * level) / WLED_MAX_LEVEL;
num_wled_strings = led->wled_cfg->num_strings;
/* program brightness control registers */
for (i = 0; i < num_wled_strings; i++) {
rc = qpnp_led_masked_write(led,
WLED_BRIGHTNESS_CNTL_MSB(led->base, i), WLED_MSB_MASK,
(duty >> WLED_8_BIT_SHFT) & WLED_4_BIT_MASK);
if (rc) {
dev_err(&led->spmi_dev->dev,
"WLED set brightness MSB failed(%d)\n", rc);
return rc;
}
val = duty & WLED_8_BIT_MASK;
rc = spmi_ext_register_writel(led->spmi_dev->ctrl,
led->spmi_dev->sid,
WLED_BRIGHTNESS_CNTL_LSB(led->base, i), &val, 1);
if (rc) {
dev_err(&led->spmi_dev->dev,
"WLED set brightness LSB failed(%d)\n", rc);
return rc;
}
}
/* sync */
val = WLED_SYNC_VAL;
rc = spmi_ext_register_writel(led->spmi_dev->ctrl, led->spmi_dev->sid,
WLED_SYNC_REG(led->base), &val, 1);
if (rc) {
dev_err(&led->spmi_dev->dev,
"WLED set sync reg failed(%d)\n", rc);
return rc;
}
val = WLED_SYNC_RESET_VAL;
rc = spmi_ext_register_writel(led->spmi_dev->ctrl, led->spmi_dev->sid,
WLED_SYNC_REG(led->base), &val, 1);
if (rc) {
dev_err(&led->spmi_dev->dev,
"WLED reset sync reg failed(%d)\n", rc);
return rc;
}
return 0;
}
static int qpnp_mpp_set(struct qpnp_led_data *led)
{
int rc, val;
int duty_us;
if (led->cdev.brightness) {
if (led->mpp_cfg->pwm_mode != MANUAL_MODE) {
if (!led->mpp_cfg->pwm_cfg->blinking) {
led->mpp_cfg->pwm_cfg->mode =
led->mpp_cfg->pwm_cfg->default_mode;
led->mpp_cfg->pwm_mode =
led->mpp_cfg->pwm_cfg->default_mode;
}
}
if (led->mpp_cfg->pwm_mode == PWM_MODE) {
pwm_disable(led->mpp_cfg->pwm_cfg->pwm_dev);
duty_us = (led->mpp_cfg->pwm_cfg->pwm_period_us *
led->cdev.brightness) / LED_FULL;
/*config pwm for brightness scaling*/
rc = pwm_config(led->mpp_cfg->pwm_cfg->pwm_dev,
duty_us,
led->mpp_cfg->pwm_cfg->pwm_period_us);
if (rc < 0) {
dev_err(&led->spmi_dev->dev, "Failed to " \
"configure pwm for new values\n");
return rc;
}
}
if (led->mpp_cfg->pwm_mode != MANUAL_MODE)
pwm_enable(led->mpp_cfg->pwm_cfg->pwm_dev);
val = (led->mpp_cfg->source_sel & LED_MPP_SRC_MASK) |
(led->mpp_cfg->mode_ctrl & LED_MPP_MODE_CTRL_MASK);
rc = qpnp_led_masked_write(led,
LED_MPP_MODE_CTRL(led->base), LED_MPP_MODE_MASK,
val);
if (rc) {
dev_err(&led->spmi_dev->dev,
"Failed to write led mode reg\n");
return rc;
}
rc = qpnp_led_masked_write(led,
LED_MPP_EN_CTRL(led->base), LED_MPP_EN_MASK,
LED_MPP_EN_ENABLE);
if (rc) {
dev_err(&led->spmi_dev->dev,
"Failed to write led enable " \
"reg\n");
return rc;
}
} else {
if (led->mpp_cfg->pwm_mode != MANUAL_MODE) {
led->mpp_cfg->pwm_cfg->mode =
led->mpp_cfg->pwm_cfg->default_mode;
led->mpp_cfg->pwm_mode =
led->mpp_cfg->pwm_cfg->default_mode;
pwm_disable(led->mpp_cfg->pwm_cfg->pwm_dev);
}
rc = qpnp_led_masked_write(led,
LED_MPP_MODE_CTRL(led->base),
LED_MPP_MODE_MASK,
LED_MPP_MODE_DISABLE);
if (rc) {
dev_err(&led->spmi_dev->dev,
"Failed to write led mode reg\n");
return rc;
}
rc = qpnp_led_masked_write(led,
LED_MPP_EN_CTRL(led->base),
LED_MPP_EN_MASK,
LED_MPP_EN_DISABLE);
if (rc) {
dev_err(&led->spmi_dev->dev,
"Failed to write led enable reg\n");
return rc;
}
}
if (led->mpp_cfg->pwm_mode != MANUAL_MODE)
led->mpp_cfg->pwm_cfg->blinking = false;
qpnp_dump_regs(led, mpp_debug_regs, ARRAY_SIZE(mpp_debug_regs));
return 0;
}
static int qpnp_flash_regulator_operate(struct qpnp_led_data *led, bool on)
{
int rc, i;
struct qpnp_led_data *led_array;
bool regulator_on = false;
led_array = dev_get_drvdata(&led->spmi_dev->dev);
if (!led_array) {
dev_err(&led->spmi_dev->dev,
"Unable to get LED array\n");
return -EINVAL;
}
for (i = 0; i < led->num_leds; i++)
regulator_on |= led_array[i].flash_cfg->flash_on;
if (!on)
goto regulator_turn_off;
if (!regulator_on && !led->flash_cfg->flash_on) {
for (i = 0; i < led->num_leds; i++) {
if (led_array[i].flash_cfg->flash_reg_get) {
rc = regulator_enable(
led_array[i].flash_cfg->\
flash_boost_reg);
if (rc) {
dev_err(&led->spmi_dev->dev,
"Regulator enable failed(%d)\n",
rc);
return rc;
}
led->flash_cfg->flash_on = true;
}
break;
}
}
return 0;
regulator_turn_off:
if (regulator_on && led->flash_cfg->flash_on) {
for (i = 0; i < led->num_leds; i++) {
if (led_array[i].flash_cfg->flash_reg_get) {
rc = qpnp_led_masked_write(led,
FLASH_ENABLE_CONTROL(led->base),
FLASH_ENABLE_MASK,
FLASH_DISABLE_ALL);
if (rc) {
dev_err(&led->spmi_dev->dev,
"Enable reg write failed(%d)\n",
rc);
}
rc = regulator_disable(led_array[i].flash_cfg->\
flash_boost_reg);
if (rc) {
dev_err(&led->spmi_dev->dev,
"Regulator disable failed(%d)\n",
rc);
return rc;
}
led->flash_cfg->flash_on = false;
}
break;
}
}
return 0;
}
static int qpnp_torch_regulator_operate(struct qpnp_led_data *led, bool on)
{
int rc;
if (!on)
goto regulator_turn_off;
if (!led->flash_cfg->torch_on) {
rc = regulator_enable(led->flash_cfg->torch_boost_reg);
if (rc) {
dev_err(&led->spmi_dev->dev,
"Regulator enable failed(%d)\n", rc);
return rc;
}
led->flash_cfg->torch_on = true;
}
return 0;
regulator_turn_off:
if (led->flash_cfg->torch_on) {
rc = qpnp_led_masked_write(led, FLASH_ENABLE_CONTROL(led->base),
FLASH_ENABLE_MODULE_MASK, FLASH_DISABLE_ALL);
if (rc) {
dev_err(&led->spmi_dev->dev,
"Enable reg write failed(%d)\n", rc);
}
rc = regulator_disable(led->flash_cfg->torch_boost_reg);
if (rc) {
dev_err(&led->spmi_dev->dev,
"Regulator disable failed(%d)\n", rc);
return rc;
}
led->flash_cfg->torch_on = false;
}
return 0;
}
static int qpnp_flash_set(struct qpnp_led_data *led)
{
int rc, error;
int val = led->cdev.brightness;
if (led->flash_cfg->torch_enable)
led->flash_cfg->current_prgm =
(val * TORCH_MAX_LEVEL / led->max_current);
else
led->flash_cfg->current_prgm =
(val * FLASH_MAX_LEVEL / led->max_current);
/* Set led current */
if (val > 0) {
if (led->flash_cfg->torch_enable) {
if (led->flash_cfg->peripheral_subtype ==
FLASH_SUBTYPE_DUAL) {
rc = qpnp_torch_regulator_operate(led, true);
if (rc) {
dev_err(&led->spmi_dev->dev,
"Torch regulator operate failed(%d)\n",
rc);
return rc;
}
} else if (led->flash_cfg->peripheral_subtype ==
FLASH_SUBTYPE_SINGLE) {
rc = qpnp_flash_regulator_operate(led, true);
if (rc) {
dev_err(&led->spmi_dev->dev,
"Flash regulator operate failed(%d)\n",
rc);
goto error_flash_set;
}
/*
* Write 0x80 to MODULE_ENABLE before writing
* 0xE0 in order to avoid a hardware bug caused
* by register value going from 0x00 to 0xE0.
*/
rc = qpnp_led_masked_write(led,
FLASH_ENABLE_CONTROL(led->base),
FLASH_ENABLE_MODULE_MASK,
FLASH_ENABLE_MODULE);
if (rc) {
dev_err(&led->spmi_dev->dev,
"Enable reg write failed(%d)\n",
rc);
return rc;
}
}
rc = qpnp_led_masked_write(led,
FLASH_LED_UNLOCK_SECURE(led->base),
FLASH_SECURE_MASK, FLASH_UNLOCK_SECURE);
if (rc) {
dev_err(&led->spmi_dev->dev,
"Secure reg write failed(%d)\n", rc);
goto error_reg_write;
}
rc = qpnp_led_masked_write(led,
FLASH_LED_TORCH(led->base),
FLASH_TORCH_MASK, FLASH_LED_TORCH_ENABLE);
if (rc) {
dev_err(&led->spmi_dev->dev,
"Torch reg write failed(%d)\n", rc);
goto error_reg_write;
}
rc = qpnp_led_masked_write(led,
led->flash_cfg->current_addr,
FLASH_CURRENT_MASK,
led->flash_cfg->current_prgm);
if (rc) {
dev_err(&led->spmi_dev->dev,
"Current reg write failed(%d)\n", rc);
goto error_reg_write;
}
rc = qpnp_led_masked_write(led,
led->flash_cfg->second_addr,
FLASH_CURRENT_MASK,
led->flash_cfg->current_prgm);
if (rc) {
dev_err(&led->spmi_dev->dev,
"2nd Current reg write failed(%d)\n",
rc);
goto error_reg_write;
}
qpnp_led_masked_write(led, FLASH_MAX_CURR(led->base),
FLASH_CURRENT_MASK,
TORCH_MAX_LEVEL);
if (rc) {
dev_err(&led->spmi_dev->dev,
"Max current reg write failed(%d)\n",
rc);
goto error_reg_write;
}
rc = qpnp_led_masked_write(led,
FLASH_ENABLE_CONTROL(led->base),
FLASH_ENABLE_MASK,
led->flash_cfg->enable_module);
if (rc) {
dev_err(&led->spmi_dev->dev,
"Enable reg write failed(%d)\n",
rc);
goto error_reg_write;
}
rc = qpnp_led_masked_write(led,
FLASH_LED_STROBE_CTRL(led->base),
led->flash_cfg->trigger_flash,
led->flash_cfg->trigger_flash);
if (rc) {
dev_err(&led->spmi_dev->dev,
"LED %d strobe reg write failed(%d)\n",
led->id, rc);
goto error_reg_write;
}
} else {
rc = qpnp_flash_regulator_operate(led, true);
if (rc) {
dev_err(&led->spmi_dev->dev,
"Flash regulator operate failed(%d)\n",
rc);
goto error_flash_set;
}
/* Set flash safety timer */
rc = qpnp_led_masked_write(led,
FLASH_SAFETY_TIMER(led->base),
FLASH_SAFETY_TIMER_MASK,
led->flash_cfg->duration);
if (rc) {
dev_err(&led->spmi_dev->dev,
"Safety timer reg write failed(%d)\n",
rc);
goto error_flash_set;
}
/* Set max current */
rc = qpnp_led_masked_write(led,
FLASH_MAX_CURR(led->base), FLASH_CURRENT_MASK,
FLASH_MAX_LEVEL);
if (rc) {
dev_err(&led->spmi_dev->dev,
"Max current reg write failed(%d)\n",
rc);
goto error_flash_set;
}
/* Set clamp current */
rc = qpnp_led_masked_write(led,
FLASH_CLAMP_CURR(led->base),
FLASH_CURRENT_MASK,
led->flash_cfg->clamp_curr);
if (rc) {
dev_err(&led->spmi_dev->dev,
"Clamp current reg write failed(%d)\n",
rc);
goto error_flash_set;
}
rc = qpnp_led_masked_write(led,
led->flash_cfg->current_addr,
FLASH_CURRENT_MASK,
led->flash_cfg->current_prgm);
if (rc) {
dev_err(&led->spmi_dev->dev,
"Current reg write failed(%d)\n", rc);
goto error_flash_set;
}
rc = qpnp_led_masked_write(led,
FLASH_ENABLE_CONTROL(led->base),
led->flash_cfg->enable_module,
led->flash_cfg->enable_module);
if (rc) {
dev_err(&led->spmi_dev->dev,
"Enable reg write failed(%d)\n", rc);
goto error_flash_set;
}
usleep(1000);
if (!led->flash_cfg->strobe_type) {
rc = qpnp_led_masked_write(led,
FLASH_LED_STROBE_CTRL(led->base),
led->flash_cfg->trigger_flash,
led->flash_cfg->trigger_flash);
if (rc) {
dev_err(&led->spmi_dev->dev,
"LED %d strobe reg write failed(%d)\n",
led->id, rc);
goto error_flash_set;
}
} else {
rc = qpnp_led_masked_write(led,
FLASH_LED_STROBE_CTRL(led->base),
(led->flash_cfg->trigger_flash |
FLASH_STROBE_HW),
(led->flash_cfg->trigger_flash |
FLASH_STROBE_HW));