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- /* Copyright Statement:
- *
- * This software/firmware and related documentation ("MediaTek Software") are
- * protected under relevant copyright laws. The information contained herein
- * is confidential and proprietary to MediaTek Inc. and/or its licensors.
- * Without the prior written permission of MediaTek inc. and/or its licensors,
- * any reproduction, modification, use or disclosure of MediaTek Software,
- * and information contained herein, in whole or in part, shall be strictly prohibited.
- */
- /* MediaTek Inc. (C) 2015. All rights reserved.
- *
- * BY OPENING THIS FILE, RECEIVER HEREBY UNEQUIVOCALLY ACKNOWLEDGES AND AGREES
- * THAT THE SOFTWARE/FIRMWARE AND ITS DOCUMENTATIONS ("MEDIATEK SOFTWARE")
- * RECEIVED FROM MEDIATEK AND/OR ITS REPRESENTATIVES ARE PROVIDED TO RECEIVER ON
- * AN "AS-IS" BASIS ONLY. MEDIATEK EXPRESSLY DISCLAIMS ANY AND ALL WARRANTIES,
- * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE IMPLIED WARRANTIES OF
- * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE OR NONINFRINGEMENT.
- * NEITHER DOES MEDIATEK PROVIDE ANY WARRANTY WHATSOEVER WITH RESPECT TO THE
- * SOFTWARE OF ANY THIRD PARTY WHICH MAY BE USED BY, INCORPORATED IN, OR
- * SUPPLIED WITH THE MEDIATEK SOFTWARE, AND RECEIVER AGREES TO LOOK ONLY TO SUCH
- * THIRD PARTY FOR ANY WARRANTY CLAIM RELATING THERETO. RECEIVER EXPRESSLY ACKNOWLEDGES
- * THAT IT IS RECEIVER'S SOLE RESPONSIBILITY TO OBTAIN FROM ANY THIRD PARTY ALL PROPER LICENSES
- * CONTAINED IN MEDIATEK SOFTWARE. MEDIATEK SHALL ALSO NOT BE RESPONSIBLE FOR ANY MEDIATEK
- * SOFTWARE RELEASES MADE TO RECEIVER'S SPECIFICATION OR TO CONFORM TO A PARTICULAR
- * STANDARD OR OPEN FORUM. RECEIVER'S SOLE AND EXCLUSIVE REMEDY AND MEDIATEK'S ENTIRE AND
- * CUMULATIVE LIABILITY WITH RESPECT TO THE MEDIATEK SOFTWARE RELEASED HEREUNDER WILL BE,
- * AT MEDIATEK'S OPTION, TO REVISE OR REPLACE THE MEDIATEK SOFTWARE AT ISSUE,
- * OR REFUND ANY SOFTWARE LICENSE FEES OR SERVICE CHARGE PAID BY RECEIVER TO
- * MEDIATEK FOR SUCH MEDIATEK SOFTWARE AT ISSUE.
- */
- #include <platform/mt_reg_base.h>
- #include <platform/mt_typedefs.h>
- #include <platform/mt_pwm.h>
- #include <platform/mt_gpio.h>
- #include <platform/mt_leds.h>
- #include <platform/mt_i2c.h>
- #include <platform/mt_pmic.h>
- #include <platform/upmu_common.h>
- #include <platform/upmu_hw.h>
- #include <platform/mt_pmic_wrap_init.h>
- #include <platform/mt_gpt.h>
- #include <platform/primary_display.h>
- #include <platform/ddp_bls.h>
- #include <libfdt.h>
- struct cust_mt65xx_led *get_cust_led_dtsi(void);
- struct cust_mt65xx_led pled_dtsi[MT65XX_LED_TYPE_TOTAL];
- extern void *g_fdt;
- char *leds_name[MT65XX_LED_TYPE_TOTAL] = {
- "red",
- "green",
- "blue",
- "jogball-backlight",
- "keyboard-backlight",
- "button-backlight",
- "lcd-backlight",
- };
- char *leds_node[MT65XX_LED_TYPE_TOTAL] = {
- "/led0:led@0",
- "/led0:led@1",
- "/led0:led@2",
- "/led0:led@3",
- "/led0:led@4",
- "/led0:led@5",
- "/led0:led@6",
- };
- /**
- * If the property is not found or the value is not set,
- * return default value 0.
- */
- unsigned int led_fdt_getprop_u32(const void *fdt, int nodeoffset,
- const char *name)
- {
- const void *data = NULL;
- int len = 0;
- data = fdt_getprop(fdt, nodeoffset, name, &len);
- if (len > 0 && data)
- return fdt32_to_cpu(*(unsigned int *)data);
- else
- return 0;
- }
- /**
- * If the property is not found or the value is not set,
- * use default value 0.
- */
- void led_fdt_getprop_char_array(const void *fdt, int nodeoffset,
- const char *name, char *out_value)
- {
- const void *data = NULL;
- int len = 0;
- data = fdt_getprop(fdt, nodeoffset, name, &len);
- if (len > 0 && data)
- memcpy(out_value, data, len);
- else
- memset(out_value, 0, len);
- }
- /****************************************************************************
- * DEBUG MACROS
- ***************************************************************************/
- int debug_enable = 1;
- #define LEDS_DEBUG(format, args...) do{ \
- if(debug_enable) \
- {\
- dprintf(CRITICAL,format,##args);\
- }\
- }while(0)
- #define LEDS_INFO LEDS_DEBUG
- /****************************************************************************
- * structures
- ***************************************************************************/
- static int g_lastlevel[MT65XX_LED_TYPE_TOTAL] = {-1, -1, -1, -1, -1, -1, -1};
- int backlight_PWM_div = CLK_DIV1;
- // Use Old Mode of PWM to suppoort 256 backlight level
- #define BACKLIGHT_LEVEL_PWM_256_SUPPORT 256
- extern unsigned int Cust_GetBacklightLevelSupport_byPWM(void);
- /****************************************************************************
- * function prototypes
- ***************************************************************************/
- /* internal functions */
- static int brightness_set_pwm(int pwm_num, enum led_brightness level,struct PWM_config *config_data);
- static int led_set_pwm(int pwm_num, enum led_brightness level);
- static int brightness_set_pmic(enum mt65xx_led_pmic pmic_type, enum led_brightness level);
- //static int brightness_set_gpio(int gpio_num, enum led_brightness level);
- static int mt65xx_led_set_cust(struct cust_mt65xx_led *cust, int level);
- /****************************************************************************
- * global variables
- ***************************************************************************/
- /****************************************************************************
- * internal functions
- ***************************************************************************/
- #if defined(MTK_RT5081_PMU_BLED_SUPPORT) // for rt5081 backlight support
- struct rt5081_bled_config_t {
- u8 addr;
- u8 val;
- };
- static struct rt5081_bled_config_t rt5081_bled_settings[8] = {
- {.addr = 0xA1, .val = 0x89},
- {.addr = 0xA2, .val = 0x04},
- {.addr = 0xA3, .val = 0x00},
- {.addr = 0xA4, .val = 0x00},
- {.addr = 0xA5, .val = 0x00},
- {.addr = 0xA6, .val = 0x00},
- {.addr = 0xA7, .val = 0x00},
- {.addr = 0xA0, .val = 0x42}
- };
- // 5081 default pwm setting, used when dts not found
- static struct rt5081_bled_config_t rt5081_bled_settings_default_pwm[8] = {
- {.addr = 0xA1, .val = 0xed},
- {.addr = 0xA2, .val = 0xb4},
- {.addr = 0xA3, .val = 0x30},
- {.addr = 0xA4, .val = 0x07},
- {.addr = 0xA5, .val = 0x3f},
- {.addr = 0xA6, .val = 0x00},
- {.addr = 0xA7, .val = 0x08},
- {.addr = 0xA0, .val = 0x7e}
- };
- static struct mt_i2c_t rt5081_bled_i2c = {
- .id = I2C_APPM,
- .addr = 0x34,
- .mode = HS_MODE,
- .speed = 3400,
- };
- static void rt5081_i2c_write_byte(struct mt_i2c_t *i2c, u8 cmd, u8 data)
- {
- unsigned int ret = I2C_OK;
- unsigned char write_buf[2] = {cmd, data};
- ret = i2c_write(i2c, write_buf, 2);
- if (ret != I2C_OK)
- LEDS_DEBUG("[LEDS] %s: I2CW[0x%02X] = 0x%02X failed, code = %d\n", __func__, cmd, data, ret);
- }
- static unsigned int led_fdt_getprop_bool(const void *fdt, int nodeoffset,
- const char *name)
- {
- const void *data = NULL;
- int len = 0;
- data = fdt_getprop(fdt, nodeoffset, name, &len);
- if (data)
- return true;
- else
- return false;
- }
- #define RT5081_BLED_EN (0x40)
- #define RT5081_BLED_EXTEN (0x80)
- #define RT5081_BLED_CHANENSHFT 2
- #define RT5081_BLED_MAPLINEAR (0x02)
- #define RT5081_BLED_OVPSHFT (5)
- #define RT5081_BLED_OCPSHFT (1)
- #define RT5081_BLED_PWMSHIFT (7)
- #define RT5081_BLED_PWMDSHFT (5)
- #define RT5081_BLED_PWMFSHFT (3)
- #define RT5081_BLFLRAMP_SHFT (3)
- #define RT5081_BLED_RAMPTSHFT (4)
- static void rt5081_bled_parsing_dts(void *fdt)
- {
- int offset, sub_offset;
- uint32_t val;
- #if defined(CFG_DTB_EARLY_LOADER_SUPPORT)
- offset = fdt_path_offset(g_fdt, "/rt5081_pmu_dts");
- sub_offset = fdt_subnode_offset(g_fdt, offset, "bled");
- if (offset >= 0 && sub_offset >= 0) {
- val = led_fdt_getprop_bool(g_fdt, sub_offset, "rt,ext_en_pin");
- LEDS_INFO("[LEDS] rt,ext_en_pin val = %d\n", val);
- if (val) {
- rt5081_bled_settings[7].val &= ~(RT5081_BLED_EN | RT5081_BLED_EXTEN);
- rt5081_bled_settings[7].val |= RT5081_BLED_EXTEN;
- }
- val = led_fdt_getprop_u32(g_fdt, sub_offset, "rt,chan_en");
- LEDS_INFO("[LEDS] rt,chan_en val = %d\n", val);
- if (val)
- rt5081_bled_settings[7].val |= (val << RT5081_BLED_CHANENSHFT);
- val = led_fdt_getprop_bool(g_fdt, sub_offset, "rt,map_linear");
- LEDS_INFO("[LEDS] rt,map_linear = %d\n", val);
- if (!val)
- rt5081_bled_settings[7].val &= ~(RT5081_BLED_MAPLINEAR);
- val = led_fdt_getprop_u32(g_fdt, sub_offset, "rt,bl_ovp_level");
- LEDS_INFO("[LEDS] rt,bl_ovp_level = %d\n", val);
- if (val)
- rt5081_bled_settings[0].val |= (val << RT5081_BLED_OVPSHFT);
- val = led_fdt_getprop_u32(g_fdt, sub_offset, "rt,bl_ocp_level");
- LEDS_INFO("[LEDS] rt,bl_ocp_level = %d\n", val);
- if (val)
- rt5081_bled_settings[0].val |= (val << RT5081_BLED_OCPSHFT);
- val = led_fdt_getprop_bool(g_fdt, sub_offset, "rt,use_pwm");
- LEDS_INFO("[LEDS] rt,use_pwm = %d\n", val);
- if (val)
- rt5081_bled_settings[1].val |= (val << RT5081_BLED_PWMSHIFT);
- val = led_fdt_getprop_u32(g_fdt, sub_offset, "rt,pwm_fsample");
- LEDS_INFO("[LEDS] rt,pwm_fsample = %d\n", val);
- if (val)
- rt5081_bled_settings[1].val |= (val << RT5081_BLED_PWMFSHFT);
- val = led_fdt_getprop_u32(g_fdt, sub_offset, "rt,pwm_deglitch");
- LEDS_INFO("[LEDS] rt,pwm_deglitch = %d\n", val);
- if (val)
- rt5081_bled_settings[1].val |= (val << RT5081_BLED_PWMDSHFT);
- val = led_fdt_getprop_u32(g_fdt, sub_offset, "rt,bled_ramptime");
- LEDS_INFO("[LEDS] rt,bled_ramptime = %d\n", val);
- if (val)
- rt5081_bled_settings[2].val |= (val << RT5081_BLED_RAMPTSHFT);
- val = led_fdt_getprop_u32(g_fdt, sub_offset, "rt,bled_flash_ramp");
- LEDS_INFO("[LEDS] rt,bled_flash_ramp = %d\n", val);
- if (val)
- rt5081_bled_settings[6].val |= (val << RT5081_BLFLRAMP_SHFT);
- val = led_fdt_getprop_u32(g_fdt, sub_offset, "rt,max_bled_brightness");
- LEDS_INFO("[LEDS] rt,max_bled_brightness = %d\n", val);
- if (val) {
- val = ((u64)val * 255) >> 8;
- rt5081_bled_settings[3].val |= (val & 0x7);
- rt5081_bled_settings[4].val |= ((val >> 3) & 0xff);
- }
- }
- else
- #endif
- {
- memcpy(rt5081_bled_settings, rt5081_bled_settings_default_pwm, sizeof(rt5081_bled_settings));
- LEDS_INFO("[LEDS] cannot read settings from dts, using default setting\n");
- }
- }
- static void rt5081_init_bled()
- {
- unsigned int i;
- LEDS_INFO("[LEDS]LK: %s\n", __func__);
- rt5081_bled_parsing_dts(g_fdt);
- for (i = 0; i < sizeof(rt5081_bled_settings) / sizeof(struct rt5081_bled_config_t); i++) {
- LEDS_INFO("[LEDS] set addr 0x%02X = 0x%02x\n", rt5081_bled_settings[i].addr, rt5081_bled_settings[i].val);
- rt5081_i2c_write_byte(&rt5081_bled_i2c, rt5081_bled_settings[i].addr, rt5081_bled_settings[i].val);
- }
- }
- #endif
- static int brightness_mapto64(int level)
- {
- if (level < 30)
- return (level >> 1) + 7;
- else if (level <= 120)
- return (level >> 2) + 14;
- else if (level <= 160)
- return level / 5 + 20;
- else
- return (level >> 3) + 33;
- }
- unsigned int brightness_mapping(unsigned int level)
- {
- unsigned int mapped_level;
- mapped_level = level;
- return mapped_level;
- }
- static int brightness_set_pwm(int pwm_num, enum led_brightness level,struct PWM_config *config_data)
- {
- struct pwm_spec_config pwm_setting;
- unsigned int BacklightLevelSupport = Cust_GetBacklightLevelSupport_byPWM();
- pwm_setting.pwm_no = pwm_num;
- if (BacklightLevelSupport == BACKLIGHT_LEVEL_PWM_256_SUPPORT)
- pwm_setting.mode = PWM_MODE_OLD;
- else
- pwm_setting.mode = PWM_MODE_FIFO; // New mode fifo and periodical mode
- pwm_setting.pmic_pad = config_data->pmic_pad;
- if (config_data->div) {
- pwm_setting.clk_div = config_data->div;
- backlight_PWM_div = config_data->div;
- } else
- pwm_setting.clk_div = CLK_DIV1;
- if (BacklightLevelSupport== BACKLIGHT_LEVEL_PWM_256_SUPPORT) {
- if (config_data->clock_source) {
- pwm_setting.clk_src = PWM_CLK_OLD_MODE_BLOCK;
- } else {
- pwm_setting.clk_src = PWM_CLK_OLD_MODE_32K; // actually. it's block/1625 = 26M/1625 = 16KHz @ MT6571
- }
- pwm_setting.pwm_mode.PWM_MODE_OLD_REGS.IDLE_VALUE = 0;
- pwm_setting.pwm_mode.PWM_MODE_OLD_REGS.GUARD_VALUE = 0;
- pwm_setting.pwm_mode.PWM_MODE_OLD_REGS.GDURATION = 0;
- pwm_setting.pwm_mode.PWM_MODE_OLD_REGS.WAVE_NUM = 0;
- pwm_setting.pwm_mode.PWM_MODE_OLD_REGS.DATA_WIDTH = 255; // 256 level
- pwm_setting.pwm_mode.PWM_MODE_OLD_REGS.THRESH = level;
- LEDS_DEBUG("[LEDS][%d] LK: backlight_set_pwm:duty is %d/%d\n", BacklightLevelSupport, level, pwm_setting.pwm_mode.PWM_MODE_OLD_REGS.DATA_WIDTH);
- LEDS_DEBUG("[LEDS][%d] LK: backlight_set_pwm:clk_src/div is %d%d\n", BacklightLevelSupport, pwm_setting.clk_src, pwm_setting.clk_div);
- if (level >0 && level < 256) {
- pwm_set_spec_config(&pwm_setting);
- LEDS_DEBUG("[LEDS][%d] LK: backlight_set_pwm: old mode: thres/data_width is %d/%d\n", BacklightLevelSupport, pwm_setting.pwm_mode.PWM_MODE_OLD_REGS.THRESH, pwm_setting.pwm_mode.PWM_MODE_OLD_REGS.DATA_WIDTH);
- } else {
- LEDS_DEBUG("[LEDS][%d] LK: Error level in backlight\n", BacklightLevelSupport);
- mt_pwm_disable(pwm_setting.pwm_no, config_data->pmic_pad);
- }
- return 0;
- } else {
- if (config_data->clock_source) {
- pwm_setting.clk_src = PWM_CLK_NEW_MODE_BLOCK;
- } else {
- pwm_setting.clk_src = PWM_CLK_NEW_MODE_BLOCK_DIV_BY_1625;
- }
- if (config_data->High_duration && config_data->low_duration) {
- pwm_setting.pwm_mode.PWM_MODE_FIFO_REGS.HDURATION = config_data->High_duration;
- pwm_setting.pwm_mode.PWM_MODE_FIFO_REGS.LDURATION = pwm_setting.pwm_mode.PWM_MODE_FIFO_REGS.HDURATION;
- } else {
- pwm_setting.pwm_mode.PWM_MODE_FIFO_REGS.HDURATION = 4;
- pwm_setting.pwm_mode.PWM_MODE_FIFO_REGS.LDURATION = 4;
- }
- pwm_setting.pwm_mode.PWM_MODE_FIFO_REGS.IDLE_VALUE = 0;
- pwm_setting.pwm_mode.PWM_MODE_FIFO_REGS.GUARD_VALUE = 0;
- pwm_setting.pwm_mode.PWM_MODE_FIFO_REGS.STOP_BITPOS_VALUE = 31;
- pwm_setting.pwm_mode.PWM_MODE_FIFO_REGS.GDURATION = (pwm_setting.pwm_mode.PWM_MODE_FIFO_REGS.HDURATION + 1) * 32 - 1;
- pwm_setting.pwm_mode.PWM_MODE_FIFO_REGS.WAVE_NUM = 0;
- LEDS_DEBUG("[LEDS] LK: backlight_set_pwm:duty is %d\n", level);
- LEDS_DEBUG("[LEDS] LK: backlight_set_pwm:clk_src/div/high/low is %d%d%d%d\n", pwm_setting.clk_src, pwm_setting.clk_div, pwm_setting.pwm_mode.PWM_MODE_FIFO_REGS.HDURATION, pwm_setting.pwm_mode.PWM_MODE_FIFO_REGS.LDURATION);
- if (level > 0 && level <= 32) {
- pwm_setting.pwm_mode.PWM_MODE_FIFO_REGS.GUARD_VALUE = 0;
- pwm_setting.pwm_mode.PWM_MODE_FIFO_REGS.SEND_DATA0 = (1 << level) - 1;
- pwm_set_spec_config(&pwm_setting);
- } else if (level > 32 && level <= 64) {
- pwm_setting.pwm_mode.PWM_MODE_FIFO_REGS.GUARD_VALUE = 1;
- level -= 32;
- pwm_setting.pwm_mode.PWM_MODE_FIFO_REGS.SEND_DATA0 = (1 << level) - 1 ;
- pwm_set_spec_config(&pwm_setting);
- } else {
- LEDS_DEBUG("[LEDS] LK: Error level in backlight\n");
- mt_pwm_disable(pwm_setting.pwm_no, config_data->pmic_pad);
- }
- return 0;
- }
- }
- static int led_set_pwm(int pwm_num, enum led_brightness level)
- {
- struct pwm_spec_config pwm_setting;
- pwm_setting.pwm_no = pwm_num;
- pwm_setting.clk_div = CLK_DIV1;
- pwm_setting.pwm_mode.PWM_MODE_OLD_REGS.DATA_WIDTH = 50;
- // We won't choose 32K to be the clock src of old mode because of system performance.
- // The setting here will be clock src = 26MHz, CLKSEL = 26M/1625 (i.e. 16K)
- pwm_setting.clk_src = PWM_CLK_OLD_MODE_32K;
- if (level) {
- pwm_setting.pwm_mode.PWM_MODE_OLD_REGS.THRESH = 15;
- } else {
- pwm_setting.pwm_mode.PWM_MODE_OLD_REGS.THRESH = 0;
- }
- LEDS_INFO("[LEDS]LK: brightness_set_pwm: level=%d, clk=%d \n\r", level, pwm_setting.clk_src);
- pwm_set_spec_config(&pwm_setting);
- return 0;
- }
- static int brightness_set_pmic(enum mt65xx_led_pmic pmic_type, enum led_brightness level)
- {
- LEDS_INFO("[LEDS]LK: PMIC Type: %d, Level: %d\n", pmic_type, level);
- #if defined(PMIC_CHIP_MT6355)
- LEDS_INFO("[LEDS]LK: MT6355 driver not ready");
- #else
- // Note that: the ISINK for Backlight is not support anymore
- if (pmic_type == MT65XX_LED_PMIC_NLED_ISINK0) {
- pmic_set_register_value(PMIC_RG_DRV_32K_CK_PDN,0x0); // Disable power down
- pmic_set_register_value(PMIC_RG_DRV_ISINK0_CK_PDN,0);
- pmic_set_register_value(PMIC_RG_DRV_ISINK0_CK_CKSEL,0);
- pmic_set_register_value(PMIC_ISINK_CH0_MODE,ISINK_PWM_MODE);
- pmic_set_register_value(PMIC_ISINK_CH0_STEP,ISINK_3);//16mA
- pmic_set_register_value(PMIC_ISINK_DIM0_DUTY,15);
- pmic_set_register_value(PMIC_ISINK_DIM0_FSEL,ISINK_1KHZ);//1KHz
- if (level) {
- pmic_set_register_value(PMIC_RG_DRV_32K_CK_PDN,0x0); // Disable power down
- pmic_set_register_value(PMIC_ISINK_CH0_EN,0x1); // Turn on ISINK Channel 0
- } else {
- pmic_set_register_value(PMIC_ISINK_CH0_EN,0x0); // Turn off ISINK Channel 0
- }
- return 0;
- } else if (pmic_type == MT65XX_LED_PMIC_NLED_ISINK1) {
- pmic_set_register_value(PMIC_RG_DRV_32K_CK_PDN,0x0); // Disable power down
- pmic_set_register_value(PMIC_RG_DRV_ISINK1_CK_PDN,0);
- pmic_set_register_value(PMIC_RG_DRV_ISINK1_CK_CKSEL,0);
- pmic_set_register_value(PMIC_ISINK_CH1_MODE,ISINK_PWM_MODE);
- pmic_set_register_value(PMIC_ISINK_CH1_STEP,ISINK_3);//16mA
- pmic_set_register_value(PMIC_ISINK_DIM1_DUTY,15);
- pmic_set_register_value(PMIC_ISINK_DIM1_FSEL,ISINK_1KHZ);//1KHz
- if (level) {
- pmic_set_register_value(PMIC_RG_DRV_32K_CK_PDN,0x0); // Disable power down
- pmic_set_register_value(PMIC_ISINK_CH1_EN,0x1); // Turn on ISINK Channel 0
- } else {
- pmic_set_register_value(PMIC_ISINK_CH1_EN,0x0); // Turn off ISINK Channel 0
- }
- return 0;
- } else if (pmic_type == MT65XX_LED_PMIC_NLED_ISINK2) {
- pmic_set_register_value(PMIC_RG_DRV_32K_CK_PDN, 0x0); /* Disable power down */
- pmic_set_register_value(PMIC_RG_DRV_ISINK4_CK_PDN, 0);
- pmic_set_register_value(PMIC_RG_DRV_ISINK4_CK_CKSEL, 0);
- pmic_set_register_value(PMIC_ISINK_CH4_MODE, ISINK_PWM_MODE);
- pmic_set_register_value(PMIC_ISINK_CH4_STEP, ISINK_3); /* 16mA */
- pmic_set_register_value(PMIC_ISINK_DIM4_DUTY, 15);
- pmic_set_register_value(PMIC_ISINK_DIM4_FSEL, ISINK_1KHZ); /* 1KHz */
- if (level) {
- pmic_set_register_value(PMIC_RG_DRV_32K_CK_PDN, 0x0); /* Disable power down */
- pmic_set_register_value(PMIC_ISINK_CH4_EN, 0x1); /* Turn on ISINK Channel 4 */
- } else {
- pmic_set_register_value(PMIC_ISINK_CH4_EN, 0x0); /* Turn off ISINK Channel 4 */
- }
- return 0;
- } else if (pmic_type == MT65XX_LED_PMIC_NLED_ISINK3) {
- pmic_set_register_value(PMIC_RG_DRV_32K_CK_PDN, 0x0); /* Disable power down */
- pmic_set_register_value(PMIC_RG_DRV_ISINK5_CK_PDN, 0);
- pmic_set_register_value(PMIC_RG_DRV_ISINK5_CK_CKSEL, 0);
- pmic_set_register_value(PMIC_ISINK_CH5_MODE, ISINK_PWM_MODE);
- pmic_set_register_value(PMIC_ISINK_CH5_STEP, ISINK_3); /* 16mA */
- pmic_set_register_value(PMIC_ISINK_DIM5_DUTY, 15);
- pmic_set_register_value(PMIC_ISINK_DIM5_FSEL, ISINK_1KHZ); /* 1KHz */
- if (level) {
- pmic_set_register_value(PMIC_RG_DRV_32K_CK_PDN, 0x0); /* Disable power down */
- pmic_set_register_value(PMIC_ISINK_CH5_EN, 0x1); /* Turn on ISINK Channel 5 */
- } else {
- pmic_set_register_value(PMIC_ISINK_CH5_EN, 0x0); /* Turn off ISINK Channel 5 */
- }
- return 0;
- }
- #endif
- return -1;
- }
- static int mt65xx_led_set_cust(struct cust_mt65xx_led *cust, int level)
- {
- unsigned int BacklightLevelSupport = Cust_GetBacklightLevelSupport_byPWM();
- if (level > LED_FULL)
- level = LED_FULL;
- else if (level < 0)
- level = 0;
- switch (cust->mode) {
- case MT65XX_LED_MODE_PWM:
- if (level == 0) {
- //LEDS_INFO("[LEDS]LK: mt65xx_leds_set_cust: enter mt_pwm_disable()\n");
- mt_pwm_disable(cust->data, cust->config_data.pmic_pad);
- return 1;
- }
- if (strcmp(cust->name,"lcd-backlight") == 0) {
- if (BacklightLevelSupport == BACKLIGHT_LEVEL_PWM_256_SUPPORT)
- level = brightness_mapping(level);
- else
- level = brightness_mapto64(level);
- return brightness_set_pwm(cust->data, level,&cust->config_data);
- } else {
- return led_set_pwm(cust->data, level);
- }
- case MT65XX_LED_MODE_GPIO:
- return ((cust_brightness_set)(cust->data))(level);
- case MT65XX_LED_MODE_PMIC:
- return brightness_set_pmic(cust->data, level);
- case MT65XX_LED_MODE_CUST_LCM:
- return ((cust_brightness_set)(cust->data))(level);
- case MT65XX_LED_MODE_CUST_BLS_PWM:
- return ((cust_brightness_set)(cust->data))(level);
- case MT65XX_LED_MODE_NONE:
- default:
- break;
- }
- return -1;
- }
- /****************************************************************************
- * external functions
- ***************************************************************************/
- int mt65xx_leds_brightness_set(enum mt65xx_led_type type, enum led_brightness level)
- {
- struct cust_mt65xx_led *cust_led_list = get_cust_led_dtsi();
- if (cust_led_list == NULL) {
- cust_led_list = get_cust_led_list();
- LEDS_DEBUG("Cannot not get the LED info from device tree. \n");
- }
- if (type >= MT65XX_LED_TYPE_TOTAL)
- return -1;
- if (level > LED_FULL)
- level = LED_FULL;
- // else if (level < 0) //level cannot < 0
- // level = 0;
- if (g_lastlevel[type] != (int)level) {
- g_lastlevel[type] = level;
- dprintf(CRITICAL,"[LEDS]LK: %s level is %d \n\r", cust_led_list[type].name, level);
- return mt65xx_led_set_cust(&cust_led_list[type], level);
- } else {
- return -1;
- }
- }
- void leds_battery_full_charging(void)
- {
- mt65xx_leds_brightness_set(MT65XX_LED_TYPE_RED, LED_OFF);
- mt65xx_leds_brightness_set(MT65XX_LED_TYPE_GREEN, LED_FULL);
- mt65xx_leds_brightness_set(MT65XX_LED_TYPE_BLUE, LED_OFF);
- }
- void leds_battery_low_charging(void)
- {
- mt65xx_leds_brightness_set(MT65XX_LED_TYPE_RED, LED_FULL);
- mt65xx_leds_brightness_set(MT65XX_LED_TYPE_GREEN, LED_OFF);
- mt65xx_leds_brightness_set(MT65XX_LED_TYPE_BLUE, LED_OFF);
- }
- void leds_battery_medium_charging(void)
- {
- mt65xx_leds_brightness_set(MT65XX_LED_TYPE_RED, LED_FULL);
- mt65xx_leds_brightness_set(MT65XX_LED_TYPE_GREEN, LED_OFF);
- mt65xx_leds_brightness_set(MT65XX_LED_TYPE_BLUE, LED_OFF);
- }
- void leds_init(void)
- {
- #if defined(MTK_RT5081_PMU_BLED_SUPPORT) // for rt5081 backlight support
- rt5081_init_bled();
- #endif
- LEDS_INFO("[LEDS]LK: leds_init: mt65xx_backlight_off \n\r");
- mt65xx_backlight_off();
- }
- void leds_deinit(void)
- {
- LEDS_INFO("[LEDS]LK: leds_deinit: LEDS off \n\r");
- mt65xx_leds_brightness_set(MT65XX_LED_TYPE_RED, LED_OFF);
- mt65xx_leds_brightness_set(MT65XX_LED_TYPE_GREEN, LED_OFF);
- mt65xx_leds_brightness_set(MT65XX_LED_TYPE_BLUE, LED_OFF);
- }
- void mt65xx_backlight_on(void)
- {
- enum led_brightness backlight_level = get_cust_led_default_level();
- LEDS_INFO("[LEDS]LK: mt65xx_backlight_on:level = %d\n\r",backlight_level);
- mt65xx_leds_brightness_set(MT65XX_LED_TYPE_LCD, backlight_level);
- }
- void mt65xx_backlight_off(void)
- {
- LEDS_INFO("[LEDS]LK: mt65xx_backlight_off \n\r");
- mt65xx_leds_brightness_set(MT65XX_LED_TYPE_LCD, LED_OFF);
- }
- struct cust_mt65xx_led *get_cust_led_dtsi(void)
- {
- static bool isDTinited = false;
- int i, offset;
- int pwm_config[5] = {0};
- #if defined(CFG_DTB_EARLY_LOADER_SUPPORT)
- if ( isDTinited == true )
- goto out;
- for (i = 0; i < MT65XX_LED_TYPE_TOTAL; i++) {
- pled_dtsi[i].name = leds_name[i];
- offset = fdt_path_offset(g_fdt, leds_node[i]);
- if (offset < 0) {
- LEDS_DEBUG("[LEDS]LK:Cannot find LED node from dts\n");
- pled_dtsi[i].mode = 0;
- pled_dtsi[i].data = -1;
- } else {
- isDTinited = true;
- pled_dtsi[i].mode = led_fdt_getprop_u32(g_fdt, offset, "led_mode");
- pled_dtsi[i].data = led_fdt_getprop_u32(g_fdt, offset, "data");
- led_fdt_getprop_char_array(g_fdt, offset, "pwm_config", (char *)pwm_config);
- pled_dtsi[i].config_data.clock_source = pwm_config[0];
- pled_dtsi[i].config_data.div = pwm_config[1];
- pled_dtsi[i].config_data.low_duration = pwm_config[2];
- pled_dtsi[i].config_data.High_duration = pwm_config[3];
- pled_dtsi[i].config_data.pmic_pad = pwm_config[4];
- switch (pled_dtsi[i].mode) {
- case MT65XX_LED_MODE_CUST_LCM:
- pled_dtsi[i].data = (long)primary_display_setbacklight;
- LEDS_DEBUG("[LEDS]LK:The backlight hw mode is LCM.\n");
- break;
- case MT65XX_LED_MODE_CUST_BLS_PWM:
- pled_dtsi[i].data = (long)disp_bls_set_backlight;
- LEDS_DEBUG("[LEDS]LK:The backlight hw mode is BLS.\n");
- break;
- default:
- break;
- }
- LEDS_INFO("[LEDS]LK:led[%d] offset is %d,mode is %d,data is %d .\n", \
- i,offset,pled_dtsi[i].mode,pled_dtsi[i].data);
- }
- }
- #endif
- if ( isDTinited == false )
- return NULL;
- out:
- return pled_dtsi;
- }
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