xref: /openbmc/linux/drivers/leds/leds-lp8860.c (revision c6b218c9c0d686486dcc39a1d80aff90801ca6fc)
17a8685acSDan Murphy /*
27a8685acSDan Murphy  * TI LP8860 4-Channel LED Driver
37a8685acSDan Murphy  *
47a8685acSDan Murphy  * Copyright (C) 2014 Texas Instruments
57a8685acSDan Murphy  *
67a8685acSDan Murphy  * Author: Dan Murphy <dmurphy@ti.com>
77a8685acSDan Murphy  *
87a8685acSDan Murphy  * This program is free software; you can redistribute it and/or
97a8685acSDan Murphy  * modify it under the terms of the GNU General Public License
107a8685acSDan Murphy  * version 2 as published by the Free Software Foundation.
117a8685acSDan Murphy  *
127a8685acSDan Murphy  */
137a8685acSDan Murphy 
147a8685acSDan Murphy #include <linux/i2c.h>
157a8685acSDan Murphy #include <linux/init.h>
167a8685acSDan Murphy #include <linux/leds.h>
177a8685acSDan Murphy #include <linux/regmap.h>
187a8685acSDan Murphy #include <linux/regulator/consumer.h>
197a8685acSDan Murphy #include <linux/module.h>
207a8685acSDan Murphy #include <linux/mutex.h>
217a8685acSDan Murphy #include <linux/of.h>
227a8685acSDan Murphy #include <linux/of_gpio.h>
237a8685acSDan Murphy #include <linux/gpio/consumer.h>
247a8685acSDan Murphy #include <linux/slab.h>
25*c6b218c9SDan Murphy #include <uapi/linux/uleds.h>
267a8685acSDan Murphy 
277a8685acSDan Murphy #define LP8860_DISP_CL1_BRT_MSB		0x00
287a8685acSDan Murphy #define LP8860_DISP_CL1_BRT_LSB		0x01
297a8685acSDan Murphy #define LP8860_DISP_CL1_CURR_MSB	0x02
307a8685acSDan Murphy #define LP8860_DISP_CL1_CURR_LSB	0x03
317a8685acSDan Murphy #define LP8860_CL2_BRT_MSB		0x04
327a8685acSDan Murphy #define LP8860_CL2_BRT_LSB		0x05
337a8685acSDan Murphy #define LP8860_CL2_CURRENT		0x06
347a8685acSDan Murphy #define LP8860_CL3_BRT_MSB		0x07
357a8685acSDan Murphy #define LP8860_CL3_BRT_LSB		0x08
367a8685acSDan Murphy #define LP8860_CL3_CURRENT		0x09
377a8685acSDan Murphy #define LP8860_CL4_BRT_MSB		0x0a
387a8685acSDan Murphy #define LP8860_CL4_BRT_LSB		0x0b
397a8685acSDan Murphy #define LP8860_CL4_CURRENT		0x0c
407a8685acSDan Murphy #define LP8860_CONFIG			0x0d
417a8685acSDan Murphy #define LP8860_STATUS			0x0e
427a8685acSDan Murphy #define LP8860_FAULT			0x0f
437a8685acSDan Murphy #define LP8860_LED_FAULT		0x10
447a8685acSDan Murphy #define LP8860_FAULT_CLEAR		0x11
457a8685acSDan Murphy #define LP8860_ID			0x12
467a8685acSDan Murphy #define LP8860_TEMP_MSB			0x13
477a8685acSDan Murphy #define LP8860_TEMP_LSB			0x14
487a8685acSDan Murphy #define LP8860_DISP_LED_CURR_MSB	0x15
497a8685acSDan Murphy #define LP8860_DISP_LED_CURR_LSB	0x16
507a8685acSDan Murphy #define LP8860_DISP_LED_PWM_MSB		0x17
517a8685acSDan Murphy #define LP8860_DISP_LED_PWM_LSB		0x18
527a8685acSDan Murphy #define LP8860_EEPROM_CNTRL		0x19
537a8685acSDan Murphy #define LP8860_EEPROM_UNLOCK		0x1a
547a8685acSDan Murphy 
557a8685acSDan Murphy #define LP8860_EEPROM_REG_0		0x60
567a8685acSDan Murphy #define LP8860_EEPROM_REG_1		0x61
577a8685acSDan Murphy #define LP8860_EEPROM_REG_2		0x62
587a8685acSDan Murphy #define LP8860_EEPROM_REG_3		0x63
597a8685acSDan Murphy #define LP8860_EEPROM_REG_4		0x64
607a8685acSDan Murphy #define LP8860_EEPROM_REG_5		0x65
617a8685acSDan Murphy #define LP8860_EEPROM_REG_6		0x66
627a8685acSDan Murphy #define LP8860_EEPROM_REG_7		0x67
637a8685acSDan Murphy #define LP8860_EEPROM_REG_8		0x68
647a8685acSDan Murphy #define LP8860_EEPROM_REG_9		0x69
657a8685acSDan Murphy #define LP8860_EEPROM_REG_10		0x6a
667a8685acSDan Murphy #define LP8860_EEPROM_REG_11		0x6b
677a8685acSDan Murphy #define LP8860_EEPROM_REG_12		0x6c
687a8685acSDan Murphy #define LP8860_EEPROM_REG_13		0x6d
697a8685acSDan Murphy #define LP8860_EEPROM_REG_14		0x6e
707a8685acSDan Murphy #define LP8860_EEPROM_REG_15		0x6f
717a8685acSDan Murphy #define LP8860_EEPROM_REG_16		0x70
727a8685acSDan Murphy #define LP8860_EEPROM_REG_17		0x71
737a8685acSDan Murphy #define LP8860_EEPROM_REG_18		0x72
747a8685acSDan Murphy #define LP8860_EEPROM_REG_19		0x73
757a8685acSDan Murphy #define LP8860_EEPROM_REG_20		0x74
767a8685acSDan Murphy #define LP8860_EEPROM_REG_21		0x75
777a8685acSDan Murphy #define LP8860_EEPROM_REG_22		0x76
787a8685acSDan Murphy #define LP8860_EEPROM_REG_23		0x77
797a8685acSDan Murphy #define LP8860_EEPROM_REG_24		0x78
807a8685acSDan Murphy 
817a8685acSDan Murphy #define LP8860_LOCK_EEPROM		0x00
827a8685acSDan Murphy #define LP8860_UNLOCK_EEPROM		0x01
837a8685acSDan Murphy #define LP8860_PROGRAM_EEPROM		0x02
847a8685acSDan Murphy #define LP8860_EEPROM_CODE_1		0x08
857a8685acSDan Murphy #define LP8860_EEPROM_CODE_2		0xba
867a8685acSDan Murphy #define LP8860_EEPROM_CODE_3		0xef
877a8685acSDan Murphy 
887a8685acSDan Murphy #define LP8860_CLEAR_FAULTS		0x01
897a8685acSDan Murphy 
907a8685acSDan Murphy /**
917a8685acSDan Murphy  * struct lp8860_led -
927a8685acSDan Murphy  * @lock - Lock for reading/writing the device
937a8685acSDan Murphy  * @client - Pointer to the I2C client
947a8685acSDan Murphy  * @led_dev - led class device pointer
957a8685acSDan Murphy  * @regmap - Devices register map
967a8685acSDan Murphy  * @eeprom_regmap - EEPROM register map
977a8685acSDan Murphy  * @enable_gpio - VDDIO/EN gpio to enable communication interface
987a8685acSDan Murphy  * @regulator - LED supply regulator pointer
997a8685acSDan Murphy  * @label - LED label
1008a7a76c8SDan Murphy  */
1017a8685acSDan Murphy struct lp8860_led {
1027a8685acSDan Murphy 	struct mutex lock;
1037a8685acSDan Murphy 	struct i2c_client *client;
1047a8685acSDan Murphy 	struct led_classdev led_dev;
1057a8685acSDan Murphy 	struct regmap *regmap;
1067a8685acSDan Murphy 	struct regmap *eeprom_regmap;
1077a8685acSDan Murphy 	struct gpio_desc *enable_gpio;
1087a8685acSDan Murphy 	struct regulator *regulator;
109*c6b218c9SDan Murphy 	char label[LED_MAX_NAME_SIZE];
1107a8685acSDan Murphy };
1117a8685acSDan Murphy 
1127a8685acSDan Murphy struct lp8860_eeprom_reg {
1137a8685acSDan Murphy 	uint8_t reg;
1147a8685acSDan Murphy 	uint8_t value;
1157a8685acSDan Murphy };
1167a8685acSDan Murphy 
1177a8685acSDan Murphy static struct lp8860_eeprom_reg lp8860_eeprom_disp_regs[] = {
1187a8685acSDan Murphy 	{ LP8860_EEPROM_REG_0, 0xed },
1197a8685acSDan Murphy 	{ LP8860_EEPROM_REG_1, 0xdf },
1207a8685acSDan Murphy 	{ LP8860_EEPROM_REG_2, 0xdc },
1217a8685acSDan Murphy 	{ LP8860_EEPROM_REG_3, 0xf0 },
1227a8685acSDan Murphy 	{ LP8860_EEPROM_REG_4, 0xdf },
1237a8685acSDan Murphy 	{ LP8860_EEPROM_REG_5, 0xe5 },
1247a8685acSDan Murphy 	{ LP8860_EEPROM_REG_6, 0xf2 },
1257a8685acSDan Murphy 	{ LP8860_EEPROM_REG_7, 0x77 },
1267a8685acSDan Murphy 	{ LP8860_EEPROM_REG_8, 0x77 },
1277a8685acSDan Murphy 	{ LP8860_EEPROM_REG_9, 0x71 },
1287a8685acSDan Murphy 	{ LP8860_EEPROM_REG_10, 0x3f },
1297a8685acSDan Murphy 	{ LP8860_EEPROM_REG_11, 0xb7 },
1307a8685acSDan Murphy 	{ LP8860_EEPROM_REG_12, 0x17 },
1317a8685acSDan Murphy 	{ LP8860_EEPROM_REG_13, 0xef },
1327a8685acSDan Murphy 	{ LP8860_EEPROM_REG_14, 0xb0 },
1337a8685acSDan Murphy 	{ LP8860_EEPROM_REG_15, 0x87 },
1347a8685acSDan Murphy 	{ LP8860_EEPROM_REG_16, 0xce },
1357a8685acSDan Murphy 	{ LP8860_EEPROM_REG_17, 0x72 },
1367a8685acSDan Murphy 	{ LP8860_EEPROM_REG_18, 0xe5 },
1377a8685acSDan Murphy 	{ LP8860_EEPROM_REG_19, 0xdf },
1387a8685acSDan Murphy 	{ LP8860_EEPROM_REG_20, 0x35 },
1397a8685acSDan Murphy 	{ LP8860_EEPROM_REG_21, 0x06 },
1407a8685acSDan Murphy 	{ LP8860_EEPROM_REG_22, 0xdc },
1417a8685acSDan Murphy 	{ LP8860_EEPROM_REG_23, 0x88 },
1427a8685acSDan Murphy 	{ LP8860_EEPROM_REG_24, 0x3E },
1437a8685acSDan Murphy };
1447a8685acSDan Murphy 
1457a8685acSDan Murphy static int lp8860_unlock_eeprom(struct lp8860_led *led, int lock)
1467a8685acSDan Murphy {
1477a8685acSDan Murphy 	int ret;
1487a8685acSDan Murphy 
1497a8685acSDan Murphy 	mutex_lock(&led->lock);
1507a8685acSDan Murphy 
1517a8685acSDan Murphy 	if (lock == LP8860_UNLOCK_EEPROM) {
1527a8685acSDan Murphy 		ret = regmap_write(led->regmap,
1537a8685acSDan Murphy 			LP8860_EEPROM_UNLOCK,
1547a8685acSDan Murphy 			LP8860_EEPROM_CODE_1);
1557a8685acSDan Murphy 		if (ret) {
1567a8685acSDan Murphy 			dev_err(&led->client->dev, "EEPROM Unlock failed\n");
1577a8685acSDan Murphy 			goto out;
1587a8685acSDan Murphy 		}
1597a8685acSDan Murphy 
1607a8685acSDan Murphy 		ret = regmap_write(led->regmap,
1617a8685acSDan Murphy 			LP8860_EEPROM_UNLOCK,
1627a8685acSDan Murphy 			LP8860_EEPROM_CODE_2);
1637a8685acSDan Murphy 		if (ret) {
1647a8685acSDan Murphy 			dev_err(&led->client->dev, "EEPROM Unlock failed\n");
1657a8685acSDan Murphy 			goto out;
1667a8685acSDan Murphy 		}
1677a8685acSDan Murphy 		ret = regmap_write(led->regmap,
1687a8685acSDan Murphy 			LP8860_EEPROM_UNLOCK,
1697a8685acSDan Murphy 			LP8860_EEPROM_CODE_3);
1707a8685acSDan Murphy 		if (ret) {
1717a8685acSDan Murphy 			dev_err(&led->client->dev, "EEPROM Unlock failed\n");
1727a8685acSDan Murphy 			goto out;
1737a8685acSDan Murphy 		}
1747a8685acSDan Murphy 	} else {
1757a8685acSDan Murphy 		ret = regmap_write(led->regmap,
1767a8685acSDan Murphy 			LP8860_EEPROM_UNLOCK,
1777a8685acSDan Murphy 			LP8860_LOCK_EEPROM);
1787a8685acSDan Murphy 	}
1797a8685acSDan Murphy 
1807a8685acSDan Murphy out:
1817a8685acSDan Murphy 	mutex_unlock(&led->lock);
1827a8685acSDan Murphy 	return ret;
1837a8685acSDan Murphy }
1847a8685acSDan Murphy 
1857a8685acSDan Murphy static int lp8860_fault_check(struct lp8860_led *led)
1867a8685acSDan Murphy {
1877a8685acSDan Murphy 	int ret, fault;
1887a8685acSDan Murphy 	unsigned int read_buf;
1897a8685acSDan Murphy 
1907a8685acSDan Murphy 	ret = regmap_read(led->regmap, LP8860_LED_FAULT, &read_buf);
1917a8685acSDan Murphy 	if (ret)
1927a8685acSDan Murphy 		goto out;
1937a8685acSDan Murphy 
1947a8685acSDan Murphy 	fault = read_buf;
1957a8685acSDan Murphy 
1967a8685acSDan Murphy 	ret = regmap_read(led->regmap, LP8860_FAULT, &read_buf);
1977a8685acSDan Murphy 	if (ret)
1987a8685acSDan Murphy 		goto out;
1997a8685acSDan Murphy 
2007a8685acSDan Murphy 	fault |= read_buf;
2017a8685acSDan Murphy 
2027a8685acSDan Murphy 	/* Attempt to clear any faults */
2037a8685acSDan Murphy 	if (fault)
2047a8685acSDan Murphy 		ret = regmap_write(led->regmap, LP8860_FAULT_CLEAR,
2057a8685acSDan Murphy 			LP8860_CLEAR_FAULTS);
2067a8685acSDan Murphy out:
2077a8685acSDan Murphy 	return ret;
2087a8685acSDan Murphy }
2097a8685acSDan Murphy 
2107c4b10a2SAndrew Lunn static int lp8860_brightness_set(struct led_classdev *led_cdev,
2117c4b10a2SAndrew Lunn 				enum led_brightness brt_val)
2127a8685acSDan Murphy {
2137c4b10a2SAndrew Lunn 	struct lp8860_led *led =
2147c4b10a2SAndrew Lunn 			container_of(led_cdev, struct lp8860_led, led_dev);
2157c4b10a2SAndrew Lunn 	int disp_brightness = brt_val * 255;
2167a8685acSDan Murphy 	int ret;
2177a8685acSDan Murphy 
2187a8685acSDan Murphy 	mutex_lock(&led->lock);
2197a8685acSDan Murphy 
2207a8685acSDan Murphy 	ret = lp8860_fault_check(led);
2217a8685acSDan Murphy 	if (ret) {
2227a8685acSDan Murphy 		dev_err(&led->client->dev, "Cannot read/clear faults\n");
2237a8685acSDan Murphy 		goto out;
2247a8685acSDan Murphy 	}
2257a8685acSDan Murphy 
2267a8685acSDan Murphy 	ret = regmap_write(led->regmap, LP8860_DISP_CL1_BRT_MSB,
2277a8685acSDan Murphy 			(disp_brightness & 0xff00) >> 8);
2287a8685acSDan Murphy 	if (ret) {
2297a8685acSDan Murphy 		dev_err(&led->client->dev, "Cannot write CL1 MSB\n");
2307a8685acSDan Murphy 		goto out;
2317a8685acSDan Murphy 	}
2327a8685acSDan Murphy 
2337a8685acSDan Murphy 	ret = regmap_write(led->regmap, LP8860_DISP_CL1_BRT_LSB,
2347a8685acSDan Murphy 			disp_brightness & 0xff);
2357a8685acSDan Murphy 	if (ret) {
2367a8685acSDan Murphy 		dev_err(&led->client->dev, "Cannot write CL1 LSB\n");
2377a8685acSDan Murphy 		goto out;
2387a8685acSDan Murphy 	}
2397a8685acSDan Murphy out:
2407a8685acSDan Murphy 	mutex_unlock(&led->lock);
2417c4b10a2SAndrew Lunn 	return ret;
2427a8685acSDan Murphy }
2437a8685acSDan Murphy 
2447a8685acSDan Murphy static int lp8860_init(struct lp8860_led *led)
2457a8685acSDan Murphy {
2467a8685acSDan Murphy 	unsigned int read_buf;
2477a8685acSDan Murphy 	int ret, i, reg_count;
2487a8685acSDan Murphy 
249b12ef03aSDan Murphy 	if (led->regulator) {
250b12ef03aSDan Murphy 		ret = regulator_enable(led->regulator);
251b12ef03aSDan Murphy 		if (ret) {
252b12ef03aSDan Murphy 			dev_err(&led->client->dev,
253b12ef03aSDan Murphy 				"Failed to enable regulator\n");
254b12ef03aSDan Murphy 			return ret;
255b12ef03aSDan Murphy 		}
256b12ef03aSDan Murphy 	}
257b12ef03aSDan Murphy 
2587a8685acSDan Murphy 	if (led->enable_gpio)
2597a8685acSDan Murphy 		gpiod_direction_output(led->enable_gpio, 1);
2607a8685acSDan Murphy 
2617a8685acSDan Murphy 	ret = lp8860_fault_check(led);
2627a8685acSDan Murphy 	if (ret)
2637a8685acSDan Murphy 		goto out;
2647a8685acSDan Murphy 
2657a8685acSDan Murphy 	ret = regmap_read(led->regmap, LP8860_STATUS, &read_buf);
2667a8685acSDan Murphy 	if (ret)
2677a8685acSDan Murphy 		goto out;
2687a8685acSDan Murphy 
2697a8685acSDan Murphy 	ret = lp8860_unlock_eeprom(led, LP8860_UNLOCK_EEPROM);
2707a8685acSDan Murphy 	if (ret) {
2717a8685acSDan Murphy 		dev_err(&led->client->dev, "Failed unlocking EEPROM\n");
2727a8685acSDan Murphy 		goto out;
2737a8685acSDan Murphy 	}
2747a8685acSDan Murphy 
2757a8685acSDan Murphy 	reg_count = ARRAY_SIZE(lp8860_eeprom_disp_regs) / sizeof(lp8860_eeprom_disp_regs[0]);
2767a8685acSDan Murphy 	for (i = 0; i < reg_count; i++) {
2777a8685acSDan Murphy 		ret = regmap_write(led->eeprom_regmap,
2787a8685acSDan Murphy 				lp8860_eeprom_disp_regs[i].reg,
2797a8685acSDan Murphy 				lp8860_eeprom_disp_regs[i].value);
2807a8685acSDan Murphy 		if (ret) {
2817a8685acSDan Murphy 			dev_err(&led->client->dev, "Failed writing EEPROM\n");
2827a8685acSDan Murphy 			goto out;
2837a8685acSDan Murphy 		}
2847a8685acSDan Murphy 	}
2857a8685acSDan Murphy 
2867a8685acSDan Murphy 	ret = lp8860_unlock_eeprom(led, LP8860_LOCK_EEPROM);
2877a8685acSDan Murphy 	if (ret)
2887a8685acSDan Murphy 		goto out;
2897a8685acSDan Murphy 
2907a8685acSDan Murphy 	ret = regmap_write(led->regmap,
2917a8685acSDan Murphy 			LP8860_EEPROM_CNTRL,
2927a8685acSDan Murphy 			LP8860_PROGRAM_EEPROM);
293b12ef03aSDan Murphy 	if (ret) {
2947a8685acSDan Murphy 		dev_err(&led->client->dev, "Failed programming EEPROM\n");
295b12ef03aSDan Murphy 		goto out;
296b12ef03aSDan Murphy 	}
297b12ef03aSDan Murphy 
298b12ef03aSDan Murphy 	return ret;
299b12ef03aSDan Murphy 
3007a8685acSDan Murphy out:
3017a8685acSDan Murphy 	if (ret)
3027a8685acSDan Murphy 		if (led->enable_gpio)
3037a8685acSDan Murphy 			gpiod_direction_output(led->enable_gpio, 0);
304b12ef03aSDan Murphy 
305b12ef03aSDan Murphy 	if (led->regulator) {
306b12ef03aSDan Murphy 		ret = regulator_disable(led->regulator);
307b12ef03aSDan Murphy 		if (ret)
308b12ef03aSDan Murphy 			dev_err(&led->client->dev,
309b12ef03aSDan Murphy 				"Failed to disable regulator\n");
310b12ef03aSDan Murphy 	}
311b12ef03aSDan Murphy 
3127a8685acSDan Murphy 	return ret;
3137a8685acSDan Murphy }
3147a8685acSDan Murphy 
315de88e71aSAxel Lin static const struct reg_default lp8860_reg_defs[] = {
3167a8685acSDan Murphy 	{ LP8860_DISP_CL1_BRT_MSB, 0x00},
3177a8685acSDan Murphy 	{ LP8860_DISP_CL1_BRT_LSB, 0x00},
3187a8685acSDan Murphy 	{ LP8860_DISP_CL1_CURR_MSB, 0x00},
3197a8685acSDan Murphy 	{ LP8860_DISP_CL1_CURR_LSB, 0x00},
3207a8685acSDan Murphy 	{ LP8860_CL2_BRT_MSB, 0x00},
3217a8685acSDan Murphy 	{ LP8860_CL2_BRT_LSB, 0x00},
3227a8685acSDan Murphy 	{ LP8860_CL2_CURRENT, 0x00},
3237a8685acSDan Murphy 	{ LP8860_CL3_BRT_MSB, 0x00},
3247a8685acSDan Murphy 	{ LP8860_CL3_BRT_LSB, 0x00},
3257a8685acSDan Murphy 	{ LP8860_CL3_CURRENT, 0x00},
3267a8685acSDan Murphy 	{ LP8860_CL4_BRT_MSB, 0x00},
3277a8685acSDan Murphy 	{ LP8860_CL4_BRT_LSB, 0x00},
3287a8685acSDan Murphy 	{ LP8860_CL4_CURRENT, 0x00},
3297a8685acSDan Murphy 	{ LP8860_CONFIG, 0x00},
3307a8685acSDan Murphy 	{ LP8860_FAULT_CLEAR, 0x00},
3317a8685acSDan Murphy 	{ LP8860_EEPROM_CNTRL, 0x80},
3327a8685acSDan Murphy 	{ LP8860_EEPROM_UNLOCK, 0x00},
3337a8685acSDan Murphy };
3347a8685acSDan Murphy 
3357a8685acSDan Murphy static const struct regmap_config lp8860_regmap_config = {
3367a8685acSDan Murphy 	.reg_bits = 8,
3377a8685acSDan Murphy 	.val_bits = 8,
3387a8685acSDan Murphy 
3397a8685acSDan Murphy 	.max_register = LP8860_EEPROM_UNLOCK,
3407a8685acSDan Murphy 	.reg_defaults = lp8860_reg_defs,
3417a8685acSDan Murphy 	.num_reg_defaults = ARRAY_SIZE(lp8860_reg_defs),
3427a8685acSDan Murphy 	.cache_type = REGCACHE_NONE,
3437a8685acSDan Murphy };
3447a8685acSDan Murphy 
345de88e71aSAxel Lin static const struct reg_default lp8860_eeprom_defs[] = {
3467a8685acSDan Murphy 	{ LP8860_EEPROM_REG_0, 0x00 },
3477a8685acSDan Murphy 	{ LP8860_EEPROM_REG_1, 0x00 },
3487a8685acSDan Murphy 	{ LP8860_EEPROM_REG_2, 0x00 },
3497a8685acSDan Murphy 	{ LP8860_EEPROM_REG_3, 0x00 },
3507a8685acSDan Murphy 	{ LP8860_EEPROM_REG_4, 0x00 },
3517a8685acSDan Murphy 	{ LP8860_EEPROM_REG_5, 0x00 },
3527a8685acSDan Murphy 	{ LP8860_EEPROM_REG_6, 0x00 },
3537a8685acSDan Murphy 	{ LP8860_EEPROM_REG_7, 0x00 },
3547a8685acSDan Murphy 	{ LP8860_EEPROM_REG_8, 0x00 },
3557a8685acSDan Murphy 	{ LP8860_EEPROM_REG_9, 0x00 },
3567a8685acSDan Murphy 	{ LP8860_EEPROM_REG_10, 0x00 },
3577a8685acSDan Murphy 	{ LP8860_EEPROM_REG_11, 0x00 },
3587a8685acSDan Murphy 	{ LP8860_EEPROM_REG_12, 0x00 },
3597a8685acSDan Murphy 	{ LP8860_EEPROM_REG_13, 0x00 },
3607a8685acSDan Murphy 	{ LP8860_EEPROM_REG_14, 0x00 },
3617a8685acSDan Murphy 	{ LP8860_EEPROM_REG_15, 0x00 },
3627a8685acSDan Murphy 	{ LP8860_EEPROM_REG_16, 0x00 },
3637a8685acSDan Murphy 	{ LP8860_EEPROM_REG_17, 0x00 },
3647a8685acSDan Murphy 	{ LP8860_EEPROM_REG_18, 0x00 },
3657a8685acSDan Murphy 	{ LP8860_EEPROM_REG_19, 0x00 },
3667a8685acSDan Murphy 	{ LP8860_EEPROM_REG_20, 0x00 },
3677a8685acSDan Murphy 	{ LP8860_EEPROM_REG_21, 0x00 },
3687a8685acSDan Murphy 	{ LP8860_EEPROM_REG_22, 0x00 },
3697a8685acSDan Murphy 	{ LP8860_EEPROM_REG_23, 0x00 },
3707a8685acSDan Murphy 	{ LP8860_EEPROM_REG_24, 0x00 },
3717a8685acSDan Murphy };
3727a8685acSDan Murphy 
3737a8685acSDan Murphy static const struct regmap_config lp8860_eeprom_regmap_config = {
3747a8685acSDan Murphy 	.reg_bits = 8,
3757a8685acSDan Murphy 	.val_bits = 8,
3767a8685acSDan Murphy 
3777a8685acSDan Murphy 	.max_register = LP8860_EEPROM_REG_24,
3787a8685acSDan Murphy 	.reg_defaults = lp8860_eeprom_defs,
3797a8685acSDan Murphy 	.num_reg_defaults = ARRAY_SIZE(lp8860_eeprom_defs),
3807a8685acSDan Murphy 	.cache_type = REGCACHE_NONE,
3817a8685acSDan Murphy };
3827a8685acSDan Murphy 
3837a8685acSDan Murphy static int lp8860_probe(struct i2c_client *client,
3847a8685acSDan Murphy 			const struct i2c_device_id *id)
3857a8685acSDan Murphy {
3867a8685acSDan Murphy 	int ret;
3877a8685acSDan Murphy 	struct lp8860_led *led;
3887a8685acSDan Murphy 	struct device_node *np = client->dev.of_node;
389*c6b218c9SDan Murphy 	struct device_node *child_node;
390*c6b218c9SDan Murphy 	const char *name;
3917a8685acSDan Murphy 
3927a8685acSDan Murphy 	led = devm_kzalloc(&client->dev, sizeof(*led), GFP_KERNEL);
3937a8685acSDan Murphy 	if (!led)
3947a8685acSDan Murphy 		return -ENOMEM;
3957a8685acSDan Murphy 
396*c6b218c9SDan Murphy 	for_each_available_child_of_node(np, child_node) {
397*c6b218c9SDan Murphy 		ret = of_property_read_string(child_node, "label", &name);
398*c6b218c9SDan Murphy 		if (!ret)
399*c6b218c9SDan Murphy 			snprintf(led->label, sizeof(led->label), "%s:%s",
400*c6b218c9SDan Murphy 				 id->name, name);
401*c6b218c9SDan Murphy 		else
402*c6b218c9SDan Murphy 			snprintf(led->label, sizeof(led->label),
403*c6b218c9SDan Murphy 				"%s::display_cluster", id->name);
4047a8685acSDan Murphy 	}
4057a8685acSDan Murphy 
406eb2294c3SUwe Kleine-König 	led->enable_gpio = devm_gpiod_get_optional(&client->dev,
407eb2294c3SUwe Kleine-König 						   "enable", GPIOD_OUT_LOW);
408eb2294c3SUwe Kleine-König 	if (IS_ERR(led->enable_gpio)) {
409eb2294c3SUwe Kleine-König 		ret = PTR_ERR(led->enable_gpio);
410eb2294c3SUwe Kleine-König 		dev_err(&client->dev, "Failed to get enable gpio: %d\n", ret);
411eb2294c3SUwe Kleine-König 		return ret;
412eb2294c3SUwe Kleine-König 	}
4137a8685acSDan Murphy 
4147a8685acSDan Murphy 	led->regulator = devm_regulator_get(&client->dev, "vled");
4157a8685acSDan Murphy 	if (IS_ERR(led->regulator))
4167a8685acSDan Murphy 		led->regulator = NULL;
4177a8685acSDan Murphy 
4187a8685acSDan Murphy 	led->client = client;
4197a8685acSDan Murphy 	led->led_dev.name = led->label;
4207a8685acSDan Murphy 	led->led_dev.max_brightness = LED_FULL;
4217c4b10a2SAndrew Lunn 	led->led_dev.brightness_set_blocking = lp8860_brightness_set;
4227a8685acSDan Murphy 
4237a8685acSDan Murphy 	mutex_init(&led->lock);
4247a8685acSDan Murphy 
4257a8685acSDan Murphy 	i2c_set_clientdata(client, led);
4267a8685acSDan Murphy 
4277a8685acSDan Murphy 	led->regmap = devm_regmap_init_i2c(client, &lp8860_regmap_config);
4287a8685acSDan Murphy 	if (IS_ERR(led->regmap)) {
4297a8685acSDan Murphy 		ret = PTR_ERR(led->regmap);
4307a8685acSDan Murphy 		dev_err(&client->dev, "Failed to allocate register map: %d\n",
4317a8685acSDan Murphy 			ret);
4327a8685acSDan Murphy 		return ret;
4337a8685acSDan Murphy 	}
4347a8685acSDan Murphy 
4357a8685acSDan Murphy 	led->eeprom_regmap = devm_regmap_init_i2c(client, &lp8860_eeprom_regmap_config);
4367a8685acSDan Murphy 	if (IS_ERR(led->eeprom_regmap)) {
4377a8685acSDan Murphy 		ret = PTR_ERR(led->eeprom_regmap);
4387a8685acSDan Murphy 		dev_err(&client->dev, "Failed to allocate register map: %d\n",
4397a8685acSDan Murphy 			ret);
4407a8685acSDan Murphy 		return ret;
4417a8685acSDan Murphy 	}
4427a8685acSDan Murphy 
4437a8685acSDan Murphy 	ret = lp8860_init(led);
4447a8685acSDan Murphy 	if (ret)
4457a8685acSDan Murphy 		return ret;
4467a8685acSDan Murphy 
4477a8685acSDan Murphy 	ret = led_classdev_register(&client->dev, &led->led_dev);
4487a8685acSDan Murphy 	if (ret) {
4497a8685acSDan Murphy 		dev_err(&client->dev, "led register err: %d\n", ret);
4507a8685acSDan Murphy 		return ret;
4517a8685acSDan Murphy 	}
4527a8685acSDan Murphy 
4537a8685acSDan Murphy 	return 0;
4547a8685acSDan Murphy }
4557a8685acSDan Murphy 
4567a8685acSDan Murphy static int lp8860_remove(struct i2c_client *client)
4577a8685acSDan Murphy {
4587a8685acSDan Murphy 	struct lp8860_led *led = i2c_get_clientdata(client);
4597a8685acSDan Murphy 	int ret;
4607a8685acSDan Murphy 
4617a8685acSDan Murphy 	led_classdev_unregister(&led->led_dev);
4627a8685acSDan Murphy 
4637a8685acSDan Murphy 	if (led->enable_gpio)
4647a8685acSDan Murphy 		gpiod_direction_output(led->enable_gpio, 0);
4657a8685acSDan Murphy 
4667a8685acSDan Murphy 	if (led->regulator) {
4677a8685acSDan Murphy 		ret = regulator_disable(led->regulator);
4687a8685acSDan Murphy 		if (ret)
4697a8685acSDan Murphy 			dev_err(&led->client->dev,
4707a8685acSDan Murphy 				"Failed to disable regulator\n");
4717a8685acSDan Murphy 	}
4727a8685acSDan Murphy 
4737a8685acSDan Murphy 	return 0;
4747a8685acSDan Murphy }
4757a8685acSDan Murphy 
4767a8685acSDan Murphy static const struct i2c_device_id lp8860_id[] = {
4777a8685acSDan Murphy 	{ "lp8860", 0 },
4787a8685acSDan Murphy 	{ }
4797a8685acSDan Murphy };
4807a8685acSDan Murphy MODULE_DEVICE_TABLE(i2c, lp8860_id);
4817a8685acSDan Murphy 
4827a8685acSDan Murphy #ifdef CONFIG_OF
4837a8685acSDan Murphy static const struct of_device_id of_lp8860_leds_match[] = {
4847a8685acSDan Murphy 	{ .compatible = "ti,lp8860", },
4857a8685acSDan Murphy 	{},
4867a8685acSDan Murphy };
4877a8685acSDan Murphy MODULE_DEVICE_TABLE(of, of_lp8860_leds_match);
4887a8685acSDan Murphy #endif
4897a8685acSDan Murphy 
4907a8685acSDan Murphy static struct i2c_driver lp8860_driver = {
4917a8685acSDan Murphy 	.driver = {
4927a8685acSDan Murphy 		.name	= "lp8860",
4937a8685acSDan Murphy 		.of_match_table = of_match_ptr(of_lp8860_leds_match),
4947a8685acSDan Murphy 	},
4957a8685acSDan Murphy 	.probe		= lp8860_probe,
4967a8685acSDan Murphy 	.remove		= lp8860_remove,
4977a8685acSDan Murphy 	.id_table	= lp8860_id,
4987a8685acSDan Murphy };
4997a8685acSDan Murphy module_i2c_driver(lp8860_driver);
5007a8685acSDan Murphy 
5015ee047fbSMasanari Iida MODULE_DESCRIPTION("Texas Instruments LP8860 LED driver");
5027a8685acSDan Murphy MODULE_AUTHOR("Dan Murphy <dmurphy@ti.com>");
5037a8685acSDan Murphy MODULE_LICENSE("GPL");
504