1 // SPDX-License-Identifier: GPL-2.0-or-later 2 /* 3 * Backlight driver for Analog Devices ADP8860 Backlight Devices 4 * 5 * Copyright 2009-2010 Analog Devices Inc. 6 */ 7 8 #include <linux/module.h> 9 #include <linux/init.h> 10 #include <linux/errno.h> 11 #include <linux/pm.h> 12 #include <linux/platform_device.h> 13 #include <linux/i2c.h> 14 #include <linux/backlight.h> 15 #include <linux/leds.h> 16 #include <linux/slab.h> 17 #include <linux/workqueue.h> 18 19 #include <linux/platform_data/adp8860.h> 20 #define ADP8860_EXT_FEATURES 21 #define ADP8860_USE_LEDS 22 23 #define ADP8860_MFDVID 0x00 /* Manufacturer and device ID */ 24 #define ADP8860_MDCR 0x01 /* Device mode and status */ 25 #define ADP8860_MDCR2 0x02 /* Device mode and Status Register 2 */ 26 #define ADP8860_INTR_EN 0x03 /* Interrupts enable */ 27 #define ADP8860_CFGR 0x04 /* Configuration register */ 28 #define ADP8860_BLSEN 0x05 /* Sink enable backlight or independent */ 29 #define ADP8860_BLOFF 0x06 /* Backlight off timeout */ 30 #define ADP8860_BLDIM 0x07 /* Backlight dim timeout */ 31 #define ADP8860_BLFR 0x08 /* Backlight fade in and out rates */ 32 #define ADP8860_BLMX1 0x09 /* Backlight (Brightness Level 1-daylight) maximum current */ 33 #define ADP8860_BLDM1 0x0A /* Backlight (Brightness Level 1-daylight) dim current */ 34 #define ADP8860_BLMX2 0x0B /* Backlight (Brightness Level 2-office) maximum current */ 35 #define ADP8860_BLDM2 0x0C /* Backlight (Brightness Level 2-office) dim current */ 36 #define ADP8860_BLMX3 0x0D /* Backlight (Brightness Level 3-dark) maximum current */ 37 #define ADP8860_BLDM3 0x0E /* Backlight (Brightness Level 3-dark) dim current */ 38 #define ADP8860_ISCFR 0x0F /* Independent sink current fade control register */ 39 #define ADP8860_ISCC 0x10 /* Independent sink current control register */ 40 #define ADP8860_ISCT1 0x11 /* Independent Sink Current Timer Register LED[7:5] */ 41 #define ADP8860_ISCT2 0x12 /* Independent Sink Current Timer Register LED[4:1] */ 42 #define ADP8860_ISCF 0x13 /* Independent sink current fade register */ 43 #define ADP8860_ISC7 0x14 /* Independent Sink Current LED7 */ 44 #define ADP8860_ISC6 0x15 /* Independent Sink Current LED6 */ 45 #define ADP8860_ISC5 0x16 /* Independent Sink Current LED5 */ 46 #define ADP8860_ISC4 0x17 /* Independent Sink Current LED4 */ 47 #define ADP8860_ISC3 0x18 /* Independent Sink Current LED3 */ 48 #define ADP8860_ISC2 0x19 /* Independent Sink Current LED2 */ 49 #define ADP8860_ISC1 0x1A /* Independent Sink Current LED1 */ 50 #define ADP8860_CCFG 0x1B /* Comparator configuration */ 51 #define ADP8860_CCFG2 0x1C /* Second comparator configuration */ 52 #define ADP8860_L2_TRP 0x1D /* L2 comparator reference */ 53 #define ADP8860_L2_HYS 0x1E /* L2 hysteresis */ 54 #define ADP8860_L3_TRP 0x1F /* L3 comparator reference */ 55 #define ADP8860_L3_HYS 0x20 /* L3 hysteresis */ 56 #define ADP8860_PH1LEVL 0x21 /* First phototransistor ambient light level-low byte register */ 57 #define ADP8860_PH1LEVH 0x22 /* First phototransistor ambient light level-high byte register */ 58 #define ADP8860_PH2LEVL 0x23 /* Second phototransistor ambient light level-low byte register */ 59 #define ADP8860_PH2LEVH 0x24 /* Second phototransistor ambient light level-high byte register */ 60 61 #define ADP8860_MANUFID 0x0 /* Analog Devices ADP8860 Manufacturer ID */ 62 #define ADP8861_MANUFID 0x4 /* Analog Devices ADP8861 Manufacturer ID */ 63 #define ADP8863_MANUFID 0x2 /* Analog Devices ADP8863 Manufacturer ID */ 64 65 #define ADP8860_DEVID(x) ((x) & 0xF) 66 #define ADP8860_MANID(x) ((x) >> 4) 67 68 /* MDCR Device mode and status */ 69 #define INT_CFG (1 << 6) 70 #define NSTBY (1 << 5) 71 #define DIM_EN (1 << 4) 72 #define GDWN_DIS (1 << 3) 73 #define SIS_EN (1 << 2) 74 #define CMP_AUTOEN (1 << 1) 75 #define BLEN (1 << 0) 76 77 /* ADP8860_CCFG Main ALS comparator level enable */ 78 #define L3_EN (1 << 1) 79 #define L2_EN (1 << 0) 80 81 #define CFGR_BLV_SHIFT 3 82 #define CFGR_BLV_MASK 0x3 83 #define ADP8860_FLAG_LED_MASK 0xFF 84 85 #define FADE_VAL(in, out) ((0xF & (in)) | ((0xF & (out)) << 4)) 86 #define BL_CFGR_VAL(law, blv) ((((blv) & CFGR_BLV_MASK) << CFGR_BLV_SHIFT) | ((0x3 & (law)) << 1)) 87 #define ALS_CCFG_VAL(filt) ((0x7 & filt) << 5) 88 89 enum { 90 adp8860, 91 adp8861, 92 adp8863 93 }; 94 95 struct adp8860_led { 96 struct led_classdev cdev; 97 struct work_struct work; 98 struct i2c_client *client; 99 enum led_brightness new_brightness; 100 int id; 101 int flags; 102 }; 103 104 struct adp8860_bl { 105 struct i2c_client *client; 106 struct backlight_device *bl; 107 struct adp8860_led *led; 108 struct adp8860_backlight_platform_data *pdata; 109 struct mutex lock; 110 unsigned long cached_daylight_max; 111 int id; 112 int revid; 113 int current_brightness; 114 unsigned en_ambl_sens:1; 115 unsigned gdwn_dis:1; 116 }; 117 118 static int adp8860_read(struct i2c_client *client, int reg, uint8_t *val) 119 { 120 int ret; 121 122 ret = i2c_smbus_read_byte_data(client, reg); 123 if (ret < 0) { 124 dev_err(&client->dev, "failed reading at 0x%02x\n", reg); 125 return ret; 126 } 127 128 *val = (uint8_t)ret; 129 return 0; 130 } 131 132 static int adp8860_write(struct i2c_client *client, u8 reg, u8 val) 133 { 134 return i2c_smbus_write_byte_data(client, reg, val); 135 } 136 137 static int adp8860_set_bits(struct i2c_client *client, int reg, uint8_t bit_mask) 138 { 139 struct adp8860_bl *data = i2c_get_clientdata(client); 140 uint8_t reg_val; 141 int ret; 142 143 mutex_lock(&data->lock); 144 145 ret = adp8860_read(client, reg, ®_val); 146 147 if (!ret && ((reg_val & bit_mask) != bit_mask)) { 148 reg_val |= bit_mask; 149 ret = adp8860_write(client, reg, reg_val); 150 } 151 152 mutex_unlock(&data->lock); 153 return ret; 154 } 155 156 static int adp8860_clr_bits(struct i2c_client *client, int reg, uint8_t bit_mask) 157 { 158 struct adp8860_bl *data = i2c_get_clientdata(client); 159 uint8_t reg_val; 160 int ret; 161 162 mutex_lock(&data->lock); 163 164 ret = adp8860_read(client, reg, ®_val); 165 166 if (!ret && (reg_val & bit_mask)) { 167 reg_val &= ~bit_mask; 168 ret = adp8860_write(client, reg, reg_val); 169 } 170 171 mutex_unlock(&data->lock); 172 return ret; 173 } 174 175 /* 176 * Independent sink / LED 177 */ 178 #if defined(ADP8860_USE_LEDS) 179 static void adp8860_led_work(struct work_struct *work) 180 { 181 struct adp8860_led *led = container_of(work, struct adp8860_led, work); 182 183 adp8860_write(led->client, ADP8860_ISC1 - led->id + 1, 184 led->new_brightness >> 1); 185 } 186 187 static void adp8860_led_set(struct led_classdev *led_cdev, 188 enum led_brightness value) 189 { 190 struct adp8860_led *led; 191 192 led = container_of(led_cdev, struct adp8860_led, cdev); 193 led->new_brightness = value; 194 schedule_work(&led->work); 195 } 196 197 static int adp8860_led_setup(struct adp8860_led *led) 198 { 199 struct i2c_client *client = led->client; 200 int ret = 0; 201 202 ret = adp8860_write(client, ADP8860_ISC1 - led->id + 1, 0); 203 ret |= adp8860_set_bits(client, ADP8860_ISCC, 1 << (led->id - 1)); 204 205 if (led->id > 4) 206 ret |= adp8860_set_bits(client, ADP8860_ISCT1, 207 (led->flags & 0x3) << ((led->id - 5) * 2)); 208 else 209 ret |= adp8860_set_bits(client, ADP8860_ISCT2, 210 (led->flags & 0x3) << ((led->id - 1) * 2)); 211 212 return ret; 213 } 214 215 static int adp8860_led_probe(struct i2c_client *client) 216 { 217 struct adp8860_backlight_platform_data *pdata = 218 dev_get_platdata(&client->dev); 219 struct adp8860_bl *data = i2c_get_clientdata(client); 220 struct adp8860_led *led, *led_dat; 221 struct led_info *cur_led; 222 int ret, i; 223 224 led = devm_kcalloc(&client->dev, pdata->num_leds, sizeof(*led), 225 GFP_KERNEL); 226 if (led == NULL) 227 return -ENOMEM; 228 229 ret = adp8860_write(client, ADP8860_ISCFR, pdata->led_fade_law); 230 ret = adp8860_write(client, ADP8860_ISCT1, 231 (pdata->led_on_time & 0x3) << 6); 232 ret |= adp8860_write(client, ADP8860_ISCF, 233 FADE_VAL(pdata->led_fade_in, pdata->led_fade_out)); 234 235 if (ret) { 236 dev_err(&client->dev, "failed to write\n"); 237 return ret; 238 } 239 240 for (i = 0; i < pdata->num_leds; ++i) { 241 cur_led = &pdata->leds[i]; 242 led_dat = &led[i]; 243 244 led_dat->id = cur_led->flags & ADP8860_FLAG_LED_MASK; 245 246 if (led_dat->id > 7 || led_dat->id < 1) { 247 dev_err(&client->dev, "Invalid LED ID %d\n", 248 led_dat->id); 249 ret = -EINVAL; 250 goto err; 251 } 252 253 if (pdata->bl_led_assign & (1 << (led_dat->id - 1))) { 254 dev_err(&client->dev, "LED %d used by Backlight\n", 255 led_dat->id); 256 ret = -EBUSY; 257 goto err; 258 } 259 260 led_dat->cdev.name = cur_led->name; 261 led_dat->cdev.default_trigger = cur_led->default_trigger; 262 led_dat->cdev.brightness_set = adp8860_led_set; 263 led_dat->cdev.brightness = LED_OFF; 264 led_dat->flags = cur_led->flags >> FLAG_OFFT_SHIFT; 265 led_dat->client = client; 266 led_dat->new_brightness = LED_OFF; 267 INIT_WORK(&led_dat->work, adp8860_led_work); 268 269 ret = led_classdev_register(&client->dev, &led_dat->cdev); 270 if (ret) { 271 dev_err(&client->dev, "failed to register LED %d\n", 272 led_dat->id); 273 goto err; 274 } 275 276 ret = adp8860_led_setup(led_dat); 277 if (ret) { 278 dev_err(&client->dev, "failed to write\n"); 279 i++; 280 goto err; 281 } 282 } 283 284 data->led = led; 285 286 return 0; 287 288 err: 289 for (i = i - 1; i >= 0; --i) { 290 led_classdev_unregister(&led[i].cdev); 291 cancel_work_sync(&led[i].work); 292 } 293 294 return ret; 295 } 296 297 static int adp8860_led_remove(struct i2c_client *client) 298 { 299 struct adp8860_backlight_platform_data *pdata = 300 dev_get_platdata(&client->dev); 301 struct adp8860_bl *data = i2c_get_clientdata(client); 302 int i; 303 304 for (i = 0; i < pdata->num_leds; i++) { 305 led_classdev_unregister(&data->led[i].cdev); 306 cancel_work_sync(&data->led[i].work); 307 } 308 309 return 0; 310 } 311 #else 312 static int adp8860_led_probe(struct i2c_client *client) 313 { 314 return 0; 315 } 316 317 static int adp8860_led_remove(struct i2c_client *client) 318 { 319 return 0; 320 } 321 #endif 322 323 static int adp8860_bl_set(struct backlight_device *bl, int brightness) 324 { 325 struct adp8860_bl *data = bl_get_data(bl); 326 struct i2c_client *client = data->client; 327 int ret = 0; 328 329 if (data->en_ambl_sens) { 330 if ((brightness > 0) && (brightness < ADP8860_MAX_BRIGHTNESS)) { 331 /* Disable Ambient Light auto adjust */ 332 ret |= adp8860_clr_bits(client, ADP8860_MDCR, 333 CMP_AUTOEN); 334 ret |= adp8860_write(client, ADP8860_BLMX1, brightness); 335 } else { 336 /* 337 * MAX_BRIGHTNESS -> Enable Ambient Light auto adjust 338 * restore daylight l1 sysfs brightness 339 */ 340 ret |= adp8860_write(client, ADP8860_BLMX1, 341 data->cached_daylight_max); 342 ret |= adp8860_set_bits(client, ADP8860_MDCR, 343 CMP_AUTOEN); 344 } 345 } else 346 ret |= adp8860_write(client, ADP8860_BLMX1, brightness); 347 348 if (data->current_brightness && brightness == 0) 349 ret |= adp8860_set_bits(client, 350 ADP8860_MDCR, DIM_EN); 351 else if (data->current_brightness == 0 && brightness) 352 ret |= adp8860_clr_bits(client, 353 ADP8860_MDCR, DIM_EN); 354 355 if (!ret) 356 data->current_brightness = brightness; 357 358 return ret; 359 } 360 361 static int adp8860_bl_update_status(struct backlight_device *bl) 362 { 363 return adp8860_bl_set(bl, backlight_get_brightness(bl)); 364 } 365 366 static int adp8860_bl_get_brightness(struct backlight_device *bl) 367 { 368 struct adp8860_bl *data = bl_get_data(bl); 369 370 return data->current_brightness; 371 } 372 373 static const struct backlight_ops adp8860_bl_ops = { 374 .update_status = adp8860_bl_update_status, 375 .get_brightness = adp8860_bl_get_brightness, 376 }; 377 378 static int adp8860_bl_setup(struct backlight_device *bl) 379 { 380 struct adp8860_bl *data = bl_get_data(bl); 381 struct i2c_client *client = data->client; 382 struct adp8860_backlight_platform_data *pdata = data->pdata; 383 int ret = 0; 384 385 ret |= adp8860_write(client, ADP8860_BLSEN, ~pdata->bl_led_assign); 386 ret |= adp8860_write(client, ADP8860_BLMX1, pdata->l1_daylight_max); 387 ret |= adp8860_write(client, ADP8860_BLDM1, pdata->l1_daylight_dim); 388 389 if (data->en_ambl_sens) { 390 data->cached_daylight_max = pdata->l1_daylight_max; 391 ret |= adp8860_write(client, ADP8860_BLMX2, 392 pdata->l2_office_max); 393 ret |= adp8860_write(client, ADP8860_BLDM2, 394 pdata->l2_office_dim); 395 ret |= adp8860_write(client, ADP8860_BLMX3, 396 pdata->l3_dark_max); 397 ret |= adp8860_write(client, ADP8860_BLDM3, 398 pdata->l3_dark_dim); 399 400 ret |= adp8860_write(client, ADP8860_L2_TRP, pdata->l2_trip); 401 ret |= adp8860_write(client, ADP8860_L2_HYS, pdata->l2_hyst); 402 ret |= adp8860_write(client, ADP8860_L3_TRP, pdata->l3_trip); 403 ret |= adp8860_write(client, ADP8860_L3_HYS, pdata->l3_hyst); 404 ret |= adp8860_write(client, ADP8860_CCFG, L2_EN | L3_EN | 405 ALS_CCFG_VAL(pdata->abml_filt)); 406 } 407 408 ret |= adp8860_write(client, ADP8860_CFGR, 409 BL_CFGR_VAL(pdata->bl_fade_law, 0)); 410 411 ret |= adp8860_write(client, ADP8860_BLFR, FADE_VAL(pdata->bl_fade_in, 412 pdata->bl_fade_out)); 413 414 ret |= adp8860_set_bits(client, ADP8860_MDCR, BLEN | DIM_EN | NSTBY | 415 (data->gdwn_dis ? GDWN_DIS : 0)); 416 417 return ret; 418 } 419 420 static ssize_t adp8860_show(struct device *dev, char *buf, int reg) 421 { 422 struct adp8860_bl *data = dev_get_drvdata(dev); 423 int error; 424 uint8_t reg_val; 425 426 mutex_lock(&data->lock); 427 error = adp8860_read(data->client, reg, ®_val); 428 mutex_unlock(&data->lock); 429 430 if (error < 0) 431 return error; 432 433 return sprintf(buf, "%u\n", reg_val); 434 } 435 436 static ssize_t adp8860_store(struct device *dev, const char *buf, 437 size_t count, int reg) 438 { 439 struct adp8860_bl *data = dev_get_drvdata(dev); 440 unsigned long val; 441 int ret; 442 443 ret = kstrtoul(buf, 10, &val); 444 if (ret) 445 return ret; 446 447 mutex_lock(&data->lock); 448 adp8860_write(data->client, reg, val); 449 mutex_unlock(&data->lock); 450 451 return count; 452 } 453 454 static ssize_t adp8860_bl_l3_dark_max_show(struct device *dev, 455 struct device_attribute *attr, char *buf) 456 { 457 return adp8860_show(dev, buf, ADP8860_BLMX3); 458 } 459 460 static ssize_t adp8860_bl_l3_dark_max_store(struct device *dev, 461 struct device_attribute *attr, const char *buf, size_t count) 462 { 463 return adp8860_store(dev, buf, count, ADP8860_BLMX3); 464 } 465 466 static DEVICE_ATTR(l3_dark_max, 0664, adp8860_bl_l3_dark_max_show, 467 adp8860_bl_l3_dark_max_store); 468 469 static ssize_t adp8860_bl_l2_office_max_show(struct device *dev, 470 struct device_attribute *attr, char *buf) 471 { 472 return adp8860_show(dev, buf, ADP8860_BLMX2); 473 } 474 475 static ssize_t adp8860_bl_l2_office_max_store(struct device *dev, 476 struct device_attribute *attr, const char *buf, size_t count) 477 { 478 return adp8860_store(dev, buf, count, ADP8860_BLMX2); 479 } 480 static DEVICE_ATTR(l2_office_max, 0664, adp8860_bl_l2_office_max_show, 481 adp8860_bl_l2_office_max_store); 482 483 static ssize_t adp8860_bl_l1_daylight_max_show(struct device *dev, 484 struct device_attribute *attr, char *buf) 485 { 486 return adp8860_show(dev, buf, ADP8860_BLMX1); 487 } 488 489 static ssize_t adp8860_bl_l1_daylight_max_store(struct device *dev, 490 struct device_attribute *attr, const char *buf, size_t count) 491 { 492 struct adp8860_bl *data = dev_get_drvdata(dev); 493 int ret = kstrtoul(buf, 10, &data->cached_daylight_max); 494 495 if (ret) 496 return ret; 497 498 return adp8860_store(dev, buf, count, ADP8860_BLMX1); 499 } 500 static DEVICE_ATTR(l1_daylight_max, 0664, adp8860_bl_l1_daylight_max_show, 501 adp8860_bl_l1_daylight_max_store); 502 503 static ssize_t adp8860_bl_l3_dark_dim_show(struct device *dev, 504 struct device_attribute *attr, char *buf) 505 { 506 return adp8860_show(dev, buf, ADP8860_BLDM3); 507 } 508 509 static ssize_t adp8860_bl_l3_dark_dim_store(struct device *dev, 510 struct device_attribute *attr, 511 const char *buf, size_t count) 512 { 513 return adp8860_store(dev, buf, count, ADP8860_BLDM3); 514 } 515 static DEVICE_ATTR(l3_dark_dim, 0664, adp8860_bl_l3_dark_dim_show, 516 adp8860_bl_l3_dark_dim_store); 517 518 static ssize_t adp8860_bl_l2_office_dim_show(struct device *dev, 519 struct device_attribute *attr, char *buf) 520 { 521 return adp8860_show(dev, buf, ADP8860_BLDM2); 522 } 523 524 static ssize_t adp8860_bl_l2_office_dim_store(struct device *dev, 525 struct device_attribute *attr, 526 const char *buf, size_t count) 527 { 528 return adp8860_store(dev, buf, count, ADP8860_BLDM2); 529 } 530 static DEVICE_ATTR(l2_office_dim, 0664, adp8860_bl_l2_office_dim_show, 531 adp8860_bl_l2_office_dim_store); 532 533 static ssize_t adp8860_bl_l1_daylight_dim_show(struct device *dev, 534 struct device_attribute *attr, char *buf) 535 { 536 return adp8860_show(dev, buf, ADP8860_BLDM1); 537 } 538 539 static ssize_t adp8860_bl_l1_daylight_dim_store(struct device *dev, 540 struct device_attribute *attr, 541 const char *buf, size_t count) 542 { 543 return adp8860_store(dev, buf, count, ADP8860_BLDM1); 544 } 545 static DEVICE_ATTR(l1_daylight_dim, 0664, adp8860_bl_l1_daylight_dim_show, 546 adp8860_bl_l1_daylight_dim_store); 547 548 #ifdef ADP8860_EXT_FEATURES 549 static ssize_t adp8860_bl_ambient_light_level_show(struct device *dev, 550 struct device_attribute *attr, char *buf) 551 { 552 struct adp8860_bl *data = dev_get_drvdata(dev); 553 int error; 554 uint8_t reg_val; 555 uint16_t ret_val; 556 557 mutex_lock(&data->lock); 558 error = adp8860_read(data->client, ADP8860_PH1LEVL, ®_val); 559 if (!error) { 560 ret_val = reg_val; 561 error = adp8860_read(data->client, ADP8860_PH1LEVH, ®_val); 562 } 563 mutex_unlock(&data->lock); 564 565 if (error) 566 return error; 567 568 /* Return 13-bit conversion value for the first light sensor */ 569 ret_val += (reg_val & 0x1F) << 8; 570 571 return sprintf(buf, "%u\n", ret_val); 572 } 573 static DEVICE_ATTR(ambient_light_level, 0444, 574 adp8860_bl_ambient_light_level_show, NULL); 575 576 static ssize_t adp8860_bl_ambient_light_zone_show(struct device *dev, 577 struct device_attribute *attr, char *buf) 578 { 579 struct adp8860_bl *data = dev_get_drvdata(dev); 580 int error; 581 uint8_t reg_val; 582 583 mutex_lock(&data->lock); 584 error = adp8860_read(data->client, ADP8860_CFGR, ®_val); 585 mutex_unlock(&data->lock); 586 587 if (error < 0) 588 return error; 589 590 return sprintf(buf, "%u\n", 591 ((reg_val >> CFGR_BLV_SHIFT) & CFGR_BLV_MASK) + 1); 592 } 593 594 static ssize_t adp8860_bl_ambient_light_zone_store(struct device *dev, 595 struct device_attribute *attr, 596 const char *buf, size_t count) 597 { 598 struct adp8860_bl *data = dev_get_drvdata(dev); 599 unsigned long val; 600 uint8_t reg_val; 601 int ret; 602 603 ret = kstrtoul(buf, 10, &val); 604 if (ret) 605 return ret; 606 607 if (val == 0) { 608 /* Enable automatic ambient light sensing */ 609 adp8860_set_bits(data->client, ADP8860_MDCR, CMP_AUTOEN); 610 } else if ((val > 0) && (val <= 3)) { 611 /* Disable automatic ambient light sensing */ 612 adp8860_clr_bits(data->client, ADP8860_MDCR, CMP_AUTOEN); 613 614 /* Set user supplied ambient light zone */ 615 mutex_lock(&data->lock); 616 ret = adp8860_read(data->client, ADP8860_CFGR, ®_val); 617 if (!ret) { 618 reg_val &= ~(CFGR_BLV_MASK << CFGR_BLV_SHIFT); 619 reg_val |= (val - 1) << CFGR_BLV_SHIFT; 620 adp8860_write(data->client, ADP8860_CFGR, reg_val); 621 } 622 mutex_unlock(&data->lock); 623 } 624 625 return count; 626 } 627 static DEVICE_ATTR(ambient_light_zone, 0664, 628 adp8860_bl_ambient_light_zone_show, 629 adp8860_bl_ambient_light_zone_store); 630 #endif 631 632 static struct attribute *adp8860_bl_attributes[] = { 633 &dev_attr_l3_dark_max.attr, 634 &dev_attr_l3_dark_dim.attr, 635 &dev_attr_l2_office_max.attr, 636 &dev_attr_l2_office_dim.attr, 637 &dev_attr_l1_daylight_max.attr, 638 &dev_attr_l1_daylight_dim.attr, 639 #ifdef ADP8860_EXT_FEATURES 640 &dev_attr_ambient_light_level.attr, 641 &dev_attr_ambient_light_zone.attr, 642 #endif 643 NULL 644 }; 645 646 static const struct attribute_group adp8860_bl_attr_group = { 647 .attrs = adp8860_bl_attributes, 648 }; 649 650 static int adp8860_probe(struct i2c_client *client) 651 { 652 const struct i2c_device_id *id = i2c_client_get_device_id(client); 653 struct backlight_device *bl; 654 struct adp8860_bl *data; 655 struct adp8860_backlight_platform_data *pdata = 656 dev_get_platdata(&client->dev); 657 struct backlight_properties props; 658 uint8_t reg_val; 659 int ret; 660 661 if (!i2c_check_functionality(client->adapter, 662 I2C_FUNC_SMBUS_BYTE_DATA)) { 663 dev_err(&client->dev, "SMBUS Byte Data not Supported\n"); 664 return -EIO; 665 } 666 667 if (!pdata) { 668 dev_err(&client->dev, "no platform data?\n"); 669 return -EINVAL; 670 } 671 672 data = devm_kzalloc(&client->dev, sizeof(*data), GFP_KERNEL); 673 if (data == NULL) 674 return -ENOMEM; 675 676 ret = adp8860_read(client, ADP8860_MFDVID, ®_val); 677 if (ret < 0) 678 return ret; 679 680 switch (ADP8860_MANID(reg_val)) { 681 case ADP8863_MANUFID: 682 data->gdwn_dis = !!pdata->gdwn_dis; 683 fallthrough; 684 case ADP8860_MANUFID: 685 data->en_ambl_sens = !!pdata->en_ambl_sens; 686 break; 687 case ADP8861_MANUFID: 688 data->gdwn_dis = !!pdata->gdwn_dis; 689 break; 690 default: 691 dev_err(&client->dev, "failed to probe\n"); 692 return -ENODEV; 693 } 694 695 /* It's confirmed that the DEVID field is actually a REVID */ 696 697 data->revid = ADP8860_DEVID(reg_val); 698 data->client = client; 699 data->pdata = pdata; 700 data->id = id->driver_data; 701 data->current_brightness = 0; 702 i2c_set_clientdata(client, data); 703 704 memset(&props, 0, sizeof(props)); 705 props.type = BACKLIGHT_RAW; 706 props.max_brightness = ADP8860_MAX_BRIGHTNESS; 707 708 mutex_init(&data->lock); 709 710 bl = devm_backlight_device_register(&client->dev, 711 dev_driver_string(&client->dev), 712 &client->dev, data, &adp8860_bl_ops, &props); 713 if (IS_ERR(bl)) { 714 dev_err(&client->dev, "failed to register backlight\n"); 715 return PTR_ERR(bl); 716 } 717 718 bl->props.brightness = ADP8860_MAX_BRIGHTNESS; 719 720 data->bl = bl; 721 722 if (data->en_ambl_sens) 723 ret = sysfs_create_group(&bl->dev.kobj, 724 &adp8860_bl_attr_group); 725 726 if (ret) { 727 dev_err(&client->dev, "failed to register sysfs\n"); 728 return ret; 729 } 730 731 ret = adp8860_bl_setup(bl); 732 if (ret) { 733 ret = -EIO; 734 goto out; 735 } 736 737 backlight_update_status(bl); 738 739 dev_info(&client->dev, "%s Rev.%d Backlight\n", 740 client->name, data->revid); 741 742 if (pdata->num_leds) 743 adp8860_led_probe(client); 744 745 return 0; 746 747 out: 748 if (data->en_ambl_sens) 749 sysfs_remove_group(&data->bl->dev.kobj, 750 &adp8860_bl_attr_group); 751 752 return ret; 753 } 754 755 static void adp8860_remove(struct i2c_client *client) 756 { 757 struct adp8860_bl *data = i2c_get_clientdata(client); 758 759 adp8860_clr_bits(client, ADP8860_MDCR, NSTBY); 760 761 if (data->led) 762 adp8860_led_remove(client); 763 764 if (data->en_ambl_sens) 765 sysfs_remove_group(&data->bl->dev.kobj, 766 &adp8860_bl_attr_group); 767 } 768 769 #ifdef CONFIG_PM_SLEEP 770 static int adp8860_i2c_suspend(struct device *dev) 771 { 772 struct i2c_client *client = to_i2c_client(dev); 773 774 adp8860_clr_bits(client, ADP8860_MDCR, NSTBY); 775 776 return 0; 777 } 778 779 static int adp8860_i2c_resume(struct device *dev) 780 { 781 struct i2c_client *client = to_i2c_client(dev); 782 783 adp8860_set_bits(client, ADP8860_MDCR, NSTBY | BLEN); 784 785 return 0; 786 } 787 #endif 788 789 static SIMPLE_DEV_PM_OPS(adp8860_i2c_pm_ops, adp8860_i2c_suspend, 790 adp8860_i2c_resume); 791 792 static const struct i2c_device_id adp8860_id[] = { 793 { "adp8860", adp8860 }, 794 { "adp8861", adp8861 }, 795 { "adp8863", adp8863 }, 796 { } 797 }; 798 MODULE_DEVICE_TABLE(i2c, adp8860_id); 799 800 static struct i2c_driver adp8860_driver = { 801 .driver = { 802 .name = KBUILD_MODNAME, 803 .pm = &adp8860_i2c_pm_ops, 804 }, 805 .probe = adp8860_probe, 806 .remove = adp8860_remove, 807 .id_table = adp8860_id, 808 }; 809 810 module_i2c_driver(adp8860_driver); 811 812 MODULE_LICENSE("GPL v2"); 813 MODULE_AUTHOR("Michael Hennerich <michael.hennerich@analog.com>"); 814 MODULE_DESCRIPTION("ADP8860 Backlight driver"); 815