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36edc939 1// SPDX-License-Identifier: GPL-2.0-only
75cb2e1d
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2/*
3 * Copyright 2011 bct electronic GmbH
af67384f 4 * Copyright 2013 Qtechnology/AS
75cb2e1d
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5 *
6 * Author: Peter Meerwald <p.meerwald@bct-electronic.com>
cea0fad0 7 * Author: Ricardo Ribalda <ribalda@kernel.org>
75cb2e1d
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8 *
9 * Based on leds-pca955x.c
10 *
75cb2e1d 11 * LED driver for the PCA9633 I2C LED driver (7-bit slave address 0x62)
3dfedb9d 12 * LED driver for the PCA9634/5 I2C LED driver (7-bit slave address set by hw.)
75cb2e1d 13 *
8465b018
MG
14 * Note that hardware blinking violates the leds infrastructure driver
15 * interface since the hardware only supports blinking all LEDs with the
16 * same delay_on/delay_off rates. That is, only the LEDs that are set to
17 * blink will actually blink but all LEDs that are set to blink will blink
18 * in identical fashion. The delay_on/delay_off values of the last LED
19 * that is set to blink will be used for all of the blinking LEDs.
20 * Hardware blinking is disabled by default but can be enabled by setting
56a1740c 21 * the 'blink_type' member in the platform_data struct to 'PCA963X_HW_BLINK'
8465b018 22 * or by adding the 'nxp,hw-blink' property to the DTS.
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23 */
24
25#include <linux/module.h>
26#include <linux/delay.h>
27#include <linux/string.h>
28#include <linux/ctype.h>
29#include <linux/leds.h>
30#include <linux/err.h>
31#include <linux/i2c.h>
0b6034d8 32#include <linux/property.h>
75cb2e1d 33#include <linux/slab.h>
81d22878 34#include <linux/of.h>
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35
36/* LED select registers determine the source that drives LED outputs */
56a1740c
RR
37#define PCA963X_LED_OFF 0x0 /* LED driver off */
38#define PCA963X_LED_ON 0x1 /* LED driver on */
39#define PCA963X_LED_PWM 0x2 /* Controlled through PWM */
40#define PCA963X_LED_GRP_PWM 0x3 /* Controlled through PWM/GRPPWM */
75cb2e1d 41
69752909
ZP
42#define PCA963X_MODE2_OUTDRV 0x04 /* Open-drain or totem pole */
43#define PCA963X_MODE2_INVRT 0x10 /* Normal or inverted direction */
56a1740c 44#define PCA963X_MODE2_DMBLNK 0x20 /* Enable blinking */
8465b018 45
56a1740c
RR
46#define PCA963X_MODE1 0x00
47#define PCA963X_MODE2 0x01
48#define PCA963X_PWM_BASE 0x02
af67384f 49
56a1740c 50enum pca963x_type {
af67384f
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51 pca9633,
52 pca9634,
3dfedb9d 53 pca9635,
af67384f
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54};
55
56a1740c 56struct pca963x_chipdef {
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57 u8 grppwm;
58 u8 grpfreq;
59 u8 ledout_base;
60 int n_leds;
35c7d301 61 unsigned int scaling;
af67384f
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62};
63
56a1740c 64static struct pca963x_chipdef pca963x_chipdefs[] = {
af67384f
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65 [pca9633] = {
66 .grppwm = 0x6,
67 .grpfreq = 0x7,
68 .ledout_base = 0x8,
69 .n_leds = 4,
70 },
71 [pca9634] = {
72 .grppwm = 0xa,
73 .grpfreq = 0xb,
74 .ledout_base = 0xc,
75 .n_leds = 8,
76 },
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77 [pca9635] = {
78 .grppwm = 0x12,
79 .grpfreq = 0x13,
80 .ledout_base = 0x14,
81 .n_leds = 16,
82 },
af67384f 83};
75cb2e1d 84
8465b018 85/* Total blink period in milliseconds */
56a1740c
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86#define PCA963X_BLINK_PERIOD_MIN 42
87#define PCA963X_BLINK_PERIOD_MAX 10667
8465b018 88
56a1740c 89static const struct i2c_device_id pca963x_id[] = {
af67384f
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90 { "pca9632", pca9633 },
91 { "pca9633", pca9633 },
92 { "pca9634", pca9634 },
3dfedb9d 93 { "pca9635", pca9635 },
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94 { }
95};
56a1740c 96MODULE_DEVICE_TABLE(i2c, pca963x_id);
75cb2e1d 97
b5a3b44f 98struct pca963x;
a7d0e988 99
56a1740c
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100struct pca963x_led {
101 struct pca963x *chip;
75cb2e1d 102 struct led_classdev led_cdev;
3dfedb9d 103 int led_num; /* 0 .. 15 potentially */
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104 u8 gdc;
105 u8 gfrq;
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106};
107
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108struct pca963x {
109 struct pca963x_chipdef *chipdef;
110 struct mutex mutex;
111 struct i2c_client *client;
112 unsigned long leds_on;
113 struct pca963x_led leds[];
114};
115
5db85093 116static int pca963x_brightness(struct pca963x_led *led,
39118499 117 enum led_brightness brightness)
75cb2e1d 118{
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119 struct i2c_client *client = led->chip->client;
120 struct pca963x_chipdef *chipdef = led->chip->chipdef;
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121 u8 ledout_addr, ledout, mask, val;
122 int shift;
5029a2e3 123 int ret;
75cb2e1d 124
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125 ledout_addr = chipdef->ledout_base + (led->led_num / 4);
126 shift = 2 * (led->led_num % 4);
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127 mask = 0x3 << shift;
128 ledout = i2c_smbus_read_byte_data(client, ledout_addr);
129
5029a2e3 130 switch (brightness) {
75cb2e1d 131 case LED_FULL:
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132 val = (ledout & ~mask) | (PCA963X_LED_ON << shift);
133 ret = i2c_smbus_write_byte_data(client, ledout_addr, val);
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134 break;
135 case LED_OFF:
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136 val = ledout & ~mask;
137 ret = i2c_smbus_write_byte_data(client, ledout_addr, val);
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138 break;
139 default:
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140 ret = i2c_smbus_write_byte_data(client,
141 PCA963X_PWM_BASE +
5db85093 142 led->led_num,
39118499 143 brightness);
5029a2e3 144 if (ret < 0)
a8c170b0 145 return ret;
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146
147 val = (ledout & ~mask) | (PCA963X_LED_PWM << shift);
148 ret = i2c_smbus_write_byte_data(client, ledout_addr, val);
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149 break;
150 }
a8c170b0 151
5029a2e3 152 return ret;
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153}
154
5db85093 155static void pca963x_blink(struct pca963x_led *led)
8465b018 156{
5db85093
MB
157 struct i2c_client *client = led->chip->client;
158 struct pca963x_chipdef *chipdef = led->chip->chipdef;
39118499
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159 u8 ledout_addr, ledout, mask, val, mode2;
160 int shift;
161
5db85093
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162 ledout_addr = chipdef->ledout_base + (led->led_num / 4);
163 shift = 2 * (led->led_num % 4);
39118499
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164 mask = 0x3 << shift;
165 mode2 = i2c_smbus_read_byte_data(client, PCA963X_MODE2);
8465b018 166
5db85093 167 i2c_smbus_write_byte_data(client, chipdef->grppwm, led->gdc);
8465b018 168
5db85093 169 i2c_smbus_write_byte_data(client, chipdef->grpfreq, led->gfrq);
8465b018 170
56a1740c 171 if (!(mode2 & PCA963X_MODE2_DMBLNK))
39118499
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172 i2c_smbus_write_byte_data(client, PCA963X_MODE2,
173 mode2 | PCA963X_MODE2_DMBLNK);
8465b018 174
5db85093 175 mutex_lock(&led->chip->mutex);
39118499
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176
177 ledout = i2c_smbus_read_byte_data(client, ledout_addr);
178 if ((ledout & mask) != (PCA963X_LED_GRP_PWM << shift)) {
179 val = (ledout & ~mask) | (PCA963X_LED_GRP_PWM << shift);
180 i2c_smbus_write_byte_data(client, ledout_addr, val);
181 }
182
5db85093 183 mutex_unlock(&led->chip->mutex);
8465b018
MG
184}
185
5db85093 186static int pca963x_power_state(struct pca963x_led *led)
a8c170b0 187{
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188 struct i2c_client *client = led->chip->client;
189 unsigned long *leds_on = &led->chip->leds_on;
39118499 190 unsigned long cached_leds = *leds_on;
a8c170b0 191
5db85093
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192 if (led->led_cdev.brightness)
193 set_bit(led->led_num, leds_on);
a8c170b0 194 else
5db85093 195 clear_bit(led->led_num, leds_on);
a8c170b0
MR
196
197 if (!(*leds_on) != !cached_leds)
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198 return i2c_smbus_write_byte_data(client, PCA963X_MODE1,
199 *leds_on ? 0 : BIT(4));
a8c170b0
MR
200
201 return 0;
202}
203
5029a2e3 204static int pca963x_led_set(struct led_classdev *led_cdev,
39118499 205 enum led_brightness value)
75cb2e1d 206{
5db85093 207 struct pca963x_led *led;
a8c170b0 208 int ret;
75cb2e1d 209
5db85093 210 led = container_of(led_cdev, struct pca963x_led, led_cdev);
75cb2e1d 211
5db85093 212 mutex_lock(&led->chip->mutex);
a8c170b0 213
5db85093 214 ret = pca963x_brightness(led, value);
a8c170b0
MR
215 if (ret < 0)
216 goto unlock;
5db85093 217 ret = pca963x_power_state(led);
a8c170b0
MR
218
219unlock:
5db85093 220 mutex_unlock(&led->chip->mutex);
a8c170b0 221 return ret;
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222}
223
5db85093 224static unsigned int pca963x_period_scale(struct pca963x_led *led,
39118499 225 unsigned int val)
35c7d301 226{
5db85093 227 unsigned int scaling = led->chip->chipdef->scaling;
35c7d301
MR
228
229 return scaling ? DIV_ROUND_CLOSEST(val * scaling, 1000) : val;
230}
231
56a1740c 232static int pca963x_blink_set(struct led_classdev *led_cdev,
39118499 233 unsigned long *delay_on, unsigned long *delay_off)
8465b018 234{
8465b018 235 unsigned long time_on, time_off, period;
5db85093 236 struct pca963x_led *led;
8465b018
MG
237 u8 gdc, gfrq;
238
5db85093 239 led = container_of(led_cdev, struct pca963x_led, led_cdev);
8465b018
MG
240
241 time_on = *delay_on;
242 time_off = *delay_off;
243
244 /* If both zero, pick reasonable defaults of 500ms each */
245 if (!time_on && !time_off) {
246 time_on = 500;
247 time_off = 500;
248 }
249
5db85093 250 period = pca963x_period_scale(led, time_on + time_off);
8465b018
MG
251
252 /* If period not supported by hardware, default to someting sane. */
56a1740c
RR
253 if ((period < PCA963X_BLINK_PERIOD_MIN) ||
254 (period > PCA963X_BLINK_PERIOD_MAX)) {
8465b018
MG
255 time_on = 500;
256 time_off = 500;
5db85093 257 period = pca963x_period_scale(led, 1000);
8465b018
MG
258 }
259
260 /*
261 * From manual: duty cycle = (GDC / 256) ->
262 * (time_on / period) = (GDC / 256) ->
263 * GDC = ((time_on * 256) / period)
264 */
5db85093 265 gdc = (pca963x_period_scale(led, time_on) * 256) / period;
8465b018
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266
267 /*
268 * From manual: period = ((GFRQ + 1) / 24) in seconds.
269 * So, period (in ms) = (((GFRQ + 1) / 24) * 1000) ->
270 * GFRQ = ((period * 24 / 1000) - 1)
271 */
272 gfrq = (period * 24 / 1000) - 1;
273
5db85093
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274 led->gdc = gdc;
275 led->gfrq = gfrq;
8465b018 276
5db85093 277 pca963x_blink(led);
8465b018
MG
278
279 *delay_on = time_on;
280 *delay_off = time_off;
281
282 return 0;
283}
284
85fc8efe
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285static int pca963x_register_leds(struct i2c_client *client,
286 struct pca963x *chip)
81d22878 287{
85fc8efe
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288 struct pca963x_chipdef *chipdef = chip->chipdef;
289 struct pca963x_led *led = chip->leds;
290 struct device *dev = &client->dev;
0b6034d8 291 struct fwnode_handle *child;
85fc8efe
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292 bool hw_blink;
293 s32 mode2;
294 u32 reg;
295 int ret;
81d22878 296
85fc8efe
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297 if (device_property_read_u32(dev, "nxp,period-scale",
298 &chipdef->scaling))
299 chipdef->scaling = 1000;
81d22878 300
85fc8efe 301 hw_blink = device_property_read_bool(dev, "nxp,hw-blink");
81d22878 302
85fc8efe
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303 mode2 = i2c_smbus_read_byte_data(client, PCA963X_MODE2);
304 if (mode2 < 0)
305 return mode2;
81d22878 306
85fc8efe
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307 /* default to open-drain unless totem pole (push-pull) is specified */
308 if (device_property_read_bool(dev, "nxp,totem-pole"))
309 mode2 |= PCA963X_MODE2_OUTDRV;
310 else
311 mode2 &= ~PCA963X_MODE2_OUTDRV;
0b6034d8 312
85fc8efe
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313 /* default to non-inverted output, unless inverted is specified */
314 if (device_property_read_bool(dev, "nxp,inverted-out"))
315 mode2 |= PCA963X_MODE2_INVRT;
316 else
317 mode2 &= ~PCA963X_MODE2_INVRT;
0b6034d8 318
85fc8efe
MB
319 ret = i2c_smbus_write_byte_data(client, PCA963X_MODE2, mode2);
320 if (ret < 0)
321 return ret;
0b6034d8 322
85fc8efe 323 device_for_each_child_node(dev, child) {
564ead12
MB
324 struct led_init_data init_data = {};
325 char default_label[32];
326
85fc8efe
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327 ret = fwnode_property_read_u32(child, "reg", &reg);
328 if (ret || reg >= chipdef->n_leds) {
329 dev_err(dev, "Invalid 'reg' property for node %pfw\n",
330 child);
331 ret = -EINVAL;
332 goto err;
333 }
81d22878 334
85fc8efe
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335 led->led_num = reg;
336 led->chip = chip;
85fc8efe
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337 led->led_cdev.brightness_set_blocking = pca963x_led_set;
338 if (hw_blink)
339 led->led_cdev.blink_set = pca963x_blink_set;
8465b018 340
564ead12
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341 init_data.fwnode = child;
342 /* for backwards compatibility */
343 init_data.devicename = "pca963x";
344 snprintf(default_label, sizeof(default_label), "%d:%.2x:%u",
345 client->adapter->nr, client->addr, reg);
346 init_data.default_label = default_label;
347
348 ret = devm_led_classdev_register_ext(dev, &led->led_cdev,
349 &init_data);
85fc8efe
MB
350 if (ret) {
351 dev_err(dev, "Failed to register LED for node %pfw\n",
352 child);
353 goto err;
354 }
35c7d301 355
85fc8efe
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356 ++led;
357 }
bb29b9cc 358
85fc8efe
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359 return 0;
360err:
361 fwnode_handle_put(child);
362 return ret;
81d22878
TL
363}
364
56a1740c 365static const struct of_device_id of_pca963x_match[] = {
af67384f
RR
366 { .compatible = "nxp,pca9632", },
367 { .compatible = "nxp,pca9633", },
368 { .compatible = "nxp,pca9634", },
3dfedb9d 369 { .compatible = "nxp,pca9635", },
81d22878
TL
370 {},
371};
4d59ed85 372MODULE_DEVICE_TABLE(of, of_pca963x_match);
81d22878 373
56a1740c 374static int pca963x_probe(struct i2c_client *client,
39118499 375 const struct i2c_device_id *id)
75cb2e1d 376{
39118499 377 struct device *dev = &client->dev;
fc0b1eca 378 struct pca963x_chipdef *chipdef;
fc0b1eca 379 struct pca963x *chip;
85fc8efe 380 int i, count;
75cb2e1d 381
fc0b1eca 382 chipdef = &pca963x_chipdefs[id->driver_data];
75cb2e1d 383
85fc8efe
MB
384 count = device_get_child_node_count(dev);
385 if (!count || count > chipdef->n_leds) {
386 dev_err(dev, "Node %pfw must define between 1 and %d LEDs\n",
387 dev_fwnode(dev), chipdef->n_leds);
af67384f 388 return -EINVAL;
75cb2e1d
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389 }
390
85fc8efe 391 chip = devm_kzalloc(dev, struct_size(chip, leds, count), GFP_KERNEL);
fc0b1eca 392 if (!chip)
a7d0e988 393 return -ENOMEM;
75cb2e1d 394
fc0b1eca 395 i2c_set_clientdata(client, chip);
a7d0e988 396
fc0b1eca
MB
397 mutex_init(&chip->mutex);
398 chip->chipdef = chipdef;
399 chip->client = client;
a7d0e988
RR
400
401 /* Turn off LEDs by default*/
fc0b1eca
MB
402 for (i = 0; i < chipdef->n_leds / 4; i++)
403 i2c_smbus_write_byte_data(client, chipdef->ledout_base + i, 0x00);
75cb2e1d 404
a8c170b0
MR
405 /* Disable LED all-call address, and power down initially */
406 i2c_smbus_write_byte_data(client, PCA963X_MODE1, BIT(4));
75cb2e1d 407
85fc8efe 408 return pca963x_register_leds(client, chip);
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409}
410
56a1740c 411static struct i2c_driver pca963x_driver = {
75cb2e1d 412 .driver = {
56a1740c 413 .name = "leds-pca963x",
0b6034d8 414 .of_match_table = of_pca963x_match,
75cb2e1d 415 },
56a1740c 416 .probe = pca963x_probe,
56a1740c 417 .id_table = pca963x_id,
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418};
419
56a1740c 420module_i2c_driver(pca963x_driver);
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421
422MODULE_AUTHOR("Peter Meerwald <p.meerwald@bct-electronic.com>");
56a1740c 423MODULE_DESCRIPTION("PCA963X LED driver");
75cb2e1d 424MODULE_LICENSE("GPL v2");