1 // SPDX-License-Identifier: GPL-2.0-only 2 /* 3 * LED Class Core 4 * 5 * Copyright (C) 2005 John Lenz <lenz@cs.wisc.edu> 6 * Copyright (C) 2005-2007 Richard Purdie <rpurdie@openedhand.com> 7 */ 8 9 #include <linux/ctype.h> 10 #include <linux/device.h> 11 #include <linux/err.h> 12 #include <linux/init.h> 13 #include <linux/kernel.h> 14 #include <linux/leds.h> 15 #include <linux/list.h> 16 #include <linux/module.h> 17 #include <linux/property.h> 18 #include <linux/slab.h> 19 #include <linux/spinlock.h> 20 #include <linux/timer.h> 21 #include <uapi/linux/uleds.h> 22 #include <linux/of.h> 23 #include "leds.h" 24 25 static DEFINE_MUTEX(leds_lookup_lock); 26 static LIST_HEAD(leds_lookup_list); 27 28 static ssize_t brightness_show(struct device *dev, 29 struct device_attribute *attr, char *buf) 30 { 31 struct led_classdev *led_cdev = dev_get_drvdata(dev); 32 33 /* no lock needed for this */ 34 led_update_brightness(led_cdev); 35 36 return sprintf(buf, "%u\n", led_cdev->brightness); 37 } 38 39 static ssize_t brightness_store(struct device *dev, 40 struct device_attribute *attr, const char *buf, size_t size) 41 { 42 struct led_classdev *led_cdev = dev_get_drvdata(dev); 43 unsigned long state; 44 ssize_t ret; 45 46 mutex_lock(&led_cdev->led_access); 47 48 if (led_sysfs_is_disabled(led_cdev)) { 49 ret = -EBUSY; 50 goto unlock; 51 } 52 53 ret = kstrtoul(buf, 10, &state); 54 if (ret) 55 goto unlock; 56 57 if (state == LED_OFF) 58 led_trigger_remove(led_cdev); 59 /* flush out any request to disable blinking */ 60 flush_work(&led_cdev->set_brightness_work); 61 led_set_brightness(led_cdev, state); 62 flush_work(&led_cdev->set_brightness_work); 63 64 ret = size; 65 unlock: 66 mutex_unlock(&led_cdev->led_access); 67 return ret; 68 } 69 static DEVICE_ATTR_RW(brightness); 70 71 static ssize_t max_brightness_show(struct device *dev, 72 struct device_attribute *attr, char *buf) 73 { 74 struct led_classdev *led_cdev = dev_get_drvdata(dev); 75 76 return sprintf(buf, "%u\n", led_cdev->max_brightness); 77 } 78 static DEVICE_ATTR_RO(max_brightness); 79 80 static ssize_t color_show(struct device *dev, 81 struct device_attribute *attr, char *buf) 82 { 83 const char *color_text = "invalid"; 84 struct led_classdev *led_cdev = dev_get_drvdata(dev); 85 86 if (led_cdev->color < LED_COLOR_ID_MAX) 87 color_text = led_colors[led_cdev->color]; 88 89 return sysfs_emit(buf, "%s\n", color_text); 90 } 91 static DEVICE_ATTR_RO(color); 92 93 #ifdef CONFIG_LEDS_TRIGGERS 94 static BIN_ATTR(trigger, 0644, led_trigger_read, led_trigger_write, 0); 95 static struct bin_attribute *led_trigger_bin_attrs[] = { 96 &bin_attr_trigger, 97 NULL, 98 }; 99 static const struct attribute_group led_trigger_group = { 100 .bin_attrs = led_trigger_bin_attrs, 101 }; 102 #endif 103 104 static struct attribute *led_class_attrs[] = { 105 &dev_attr_brightness.attr, 106 &dev_attr_max_brightness.attr, 107 &dev_attr_color.attr, 108 NULL, 109 }; 110 111 static const struct attribute_group led_group = { 112 .attrs = led_class_attrs, 113 }; 114 115 static const struct attribute_group *led_groups[] = { 116 &led_group, 117 #ifdef CONFIG_LEDS_TRIGGERS 118 &led_trigger_group, 119 #endif 120 NULL, 121 }; 122 123 #ifdef CONFIG_LEDS_BRIGHTNESS_HW_CHANGED 124 static ssize_t brightness_hw_changed_show(struct device *dev, 125 struct device_attribute *attr, char *buf) 126 { 127 struct led_classdev *led_cdev = dev_get_drvdata(dev); 128 129 if (led_cdev->brightness_hw_changed == -1) 130 return -ENODATA; 131 132 return sprintf(buf, "%u\n", led_cdev->brightness_hw_changed); 133 } 134 135 static DEVICE_ATTR_RO(brightness_hw_changed); 136 137 static int led_add_brightness_hw_changed(struct led_classdev *led_cdev) 138 { 139 struct device *dev = led_cdev->dev; 140 int ret; 141 142 ret = device_create_file(dev, &dev_attr_brightness_hw_changed); 143 if (ret) { 144 dev_err(dev, "Error creating brightness_hw_changed\n"); 145 return ret; 146 } 147 148 led_cdev->brightness_hw_changed_kn = 149 sysfs_get_dirent(dev->kobj.sd, "brightness_hw_changed"); 150 if (!led_cdev->brightness_hw_changed_kn) { 151 dev_err(dev, "Error getting brightness_hw_changed kn\n"); 152 device_remove_file(dev, &dev_attr_brightness_hw_changed); 153 return -ENXIO; 154 } 155 156 return 0; 157 } 158 159 static void led_remove_brightness_hw_changed(struct led_classdev *led_cdev) 160 { 161 sysfs_put(led_cdev->brightness_hw_changed_kn); 162 device_remove_file(led_cdev->dev, &dev_attr_brightness_hw_changed); 163 } 164 165 void led_classdev_notify_brightness_hw_changed(struct led_classdev *led_cdev, unsigned int brightness) 166 { 167 if (WARN_ON(!led_cdev->brightness_hw_changed_kn)) 168 return; 169 170 led_cdev->brightness_hw_changed = brightness; 171 sysfs_notify_dirent(led_cdev->brightness_hw_changed_kn); 172 } 173 EXPORT_SYMBOL_GPL(led_classdev_notify_brightness_hw_changed); 174 #else 175 static int led_add_brightness_hw_changed(struct led_classdev *led_cdev) 176 { 177 return 0; 178 } 179 static void led_remove_brightness_hw_changed(struct led_classdev *led_cdev) 180 { 181 } 182 #endif 183 184 /** 185 * led_classdev_suspend - suspend an led_classdev. 186 * @led_cdev: the led_classdev to suspend. 187 */ 188 void led_classdev_suspend(struct led_classdev *led_cdev) 189 { 190 led_cdev->flags |= LED_SUSPENDED; 191 led_set_brightness_nopm(led_cdev, 0); 192 flush_work(&led_cdev->set_brightness_work); 193 } 194 EXPORT_SYMBOL_GPL(led_classdev_suspend); 195 196 /** 197 * led_classdev_resume - resume an led_classdev. 198 * @led_cdev: the led_classdev to resume. 199 */ 200 void led_classdev_resume(struct led_classdev *led_cdev) 201 { 202 led_set_brightness_nopm(led_cdev, led_cdev->brightness); 203 204 if (led_cdev->flash_resume) 205 led_cdev->flash_resume(led_cdev); 206 207 led_cdev->flags &= ~LED_SUSPENDED; 208 } 209 EXPORT_SYMBOL_GPL(led_classdev_resume); 210 211 #ifdef CONFIG_PM_SLEEP 212 static int led_suspend(struct device *dev) 213 { 214 struct led_classdev *led_cdev = dev_get_drvdata(dev); 215 216 if (led_cdev->flags & LED_CORE_SUSPENDRESUME) 217 led_classdev_suspend(led_cdev); 218 219 return 0; 220 } 221 222 static int led_resume(struct device *dev) 223 { 224 struct led_classdev *led_cdev = dev_get_drvdata(dev); 225 226 if (led_cdev->flags & LED_CORE_SUSPENDRESUME) 227 led_classdev_resume(led_cdev); 228 229 return 0; 230 } 231 #endif 232 233 static SIMPLE_DEV_PM_OPS(leds_class_dev_pm_ops, led_suspend, led_resume); 234 235 static struct led_classdev *led_module_get(struct device *led_dev) 236 { 237 struct led_classdev *led_cdev; 238 239 if (!led_dev) 240 return ERR_PTR(-EPROBE_DEFER); 241 242 led_cdev = dev_get_drvdata(led_dev); 243 244 if (!try_module_get(led_cdev->dev->parent->driver->owner)) { 245 put_device(led_cdev->dev); 246 return ERR_PTR(-ENODEV); 247 } 248 249 return led_cdev; 250 } 251 252 static const struct class leds_class = { 253 .name = "leds", 254 .dev_groups = led_groups, 255 .pm = &leds_class_dev_pm_ops, 256 }; 257 258 /** 259 * of_led_get() - request a LED device via the LED framework 260 * @np: device node to get the LED device from 261 * @index: the index of the LED 262 * 263 * Returns the LED device parsed from the phandle specified in the "leds" 264 * property of a device tree node or a negative error-code on failure. 265 */ 266 struct led_classdev *of_led_get(struct device_node *np, int index) 267 { 268 struct device *led_dev; 269 struct device_node *led_node; 270 271 led_node = of_parse_phandle(np, "leds", index); 272 if (!led_node) 273 return ERR_PTR(-ENOENT); 274 275 led_dev = class_find_device_by_of_node(&leds_class, led_node); 276 of_node_put(led_node); 277 put_device(led_dev); 278 279 return led_module_get(led_dev); 280 } 281 EXPORT_SYMBOL_GPL(of_led_get); 282 283 /** 284 * led_put() - release a LED device 285 * @led_cdev: LED device 286 */ 287 void led_put(struct led_classdev *led_cdev) 288 { 289 module_put(led_cdev->dev->parent->driver->owner); 290 put_device(led_cdev->dev); 291 } 292 EXPORT_SYMBOL_GPL(led_put); 293 294 static void devm_led_release(struct device *dev, void *res) 295 { 296 struct led_classdev **p = res; 297 298 led_put(*p); 299 } 300 301 static struct led_classdev *__devm_led_get(struct device *dev, struct led_classdev *led) 302 { 303 struct led_classdev **dr; 304 305 dr = devres_alloc(devm_led_release, sizeof(struct led_classdev *), GFP_KERNEL); 306 if (!dr) { 307 led_put(led); 308 return ERR_PTR(-ENOMEM); 309 } 310 311 *dr = led; 312 devres_add(dev, dr); 313 314 return led; 315 } 316 317 /** 318 * devm_of_led_get - Resource-managed request of a LED device 319 * @dev: LED consumer 320 * @index: index of the LED to obtain in the consumer 321 * 322 * The device node of the device is parse to find the request LED device. 323 * The LED device returned from this function is automatically released 324 * on driver detach. 325 * 326 * @return a pointer to a LED device or ERR_PTR(errno) on failure. 327 */ 328 struct led_classdev *__must_check devm_of_led_get(struct device *dev, 329 int index) 330 { 331 struct led_classdev *led; 332 333 if (!dev) 334 return ERR_PTR(-EINVAL); 335 336 led = of_led_get(dev->of_node, index); 337 if (IS_ERR(led)) 338 return led; 339 340 return __devm_led_get(dev, led); 341 } 342 EXPORT_SYMBOL_GPL(devm_of_led_get); 343 344 /** 345 * led_get() - request a LED device via the LED framework 346 * @dev: device for which to get the LED device 347 * @con_id: name of the LED from the device's point of view 348 * 349 * @return a pointer to a LED device or ERR_PTR(errno) on failure. 350 */ 351 struct led_classdev *led_get(struct device *dev, char *con_id) 352 { 353 struct led_lookup_data *lookup; 354 const char *provider = NULL; 355 struct device *led_dev; 356 357 mutex_lock(&leds_lookup_lock); 358 list_for_each_entry(lookup, &leds_lookup_list, list) { 359 if (!strcmp(lookup->dev_id, dev_name(dev)) && 360 !strcmp(lookup->con_id, con_id)) { 361 provider = kstrdup_const(lookup->provider, GFP_KERNEL); 362 break; 363 } 364 } 365 mutex_unlock(&leds_lookup_lock); 366 367 if (!provider) 368 return ERR_PTR(-ENOENT); 369 370 led_dev = class_find_device_by_name(&leds_class, provider); 371 kfree_const(provider); 372 373 return led_module_get(led_dev); 374 } 375 EXPORT_SYMBOL_GPL(led_get); 376 377 /** 378 * devm_led_get() - request a LED device via the LED framework 379 * @dev: device for which to get the LED device 380 * @con_id: name of the LED from the device's point of view 381 * 382 * The LED device returned from this function is automatically released 383 * on driver detach. 384 * 385 * @return a pointer to a LED device or ERR_PTR(errno) on failure. 386 */ 387 struct led_classdev *devm_led_get(struct device *dev, char *con_id) 388 { 389 struct led_classdev *led; 390 391 led = led_get(dev, con_id); 392 if (IS_ERR(led)) 393 return led; 394 395 return __devm_led_get(dev, led); 396 } 397 EXPORT_SYMBOL_GPL(devm_led_get); 398 399 /** 400 * led_add_lookup() - Add a LED lookup table entry 401 * @led_lookup: the lookup table entry to add 402 * 403 * Add a LED lookup table entry. On systems without devicetree the lookup table 404 * is used by led_get() to find LEDs. 405 */ 406 void led_add_lookup(struct led_lookup_data *led_lookup) 407 { 408 mutex_lock(&leds_lookup_lock); 409 list_add_tail(&led_lookup->list, &leds_lookup_list); 410 mutex_unlock(&leds_lookup_lock); 411 } 412 EXPORT_SYMBOL_GPL(led_add_lookup); 413 414 /** 415 * led_remove_lookup() - Remove a LED lookup table entry 416 * @led_lookup: the lookup table entry to remove 417 */ 418 void led_remove_lookup(struct led_lookup_data *led_lookup) 419 { 420 mutex_lock(&leds_lookup_lock); 421 list_del(&led_lookup->list); 422 mutex_unlock(&leds_lookup_lock); 423 } 424 EXPORT_SYMBOL_GPL(led_remove_lookup); 425 426 /** 427 * devm_of_led_get_optional - Resource-managed request of an optional LED device 428 * @dev: LED consumer 429 * @index: index of the LED to obtain in the consumer 430 * 431 * The device node of the device is parsed to find the requested LED device. 432 * The LED device returned from this function is automatically released 433 * on driver detach. 434 * 435 * @return a pointer to a LED device, ERR_PTR(errno) on failure and NULL if the 436 * led was not found. 437 */ 438 struct led_classdev *__must_check devm_of_led_get_optional(struct device *dev, 439 int index) 440 { 441 struct led_classdev *led; 442 443 led = devm_of_led_get(dev, index); 444 if (IS_ERR(led) && PTR_ERR(led) == -ENOENT) 445 return NULL; 446 447 return led; 448 } 449 EXPORT_SYMBOL_GPL(devm_of_led_get_optional); 450 451 static int led_classdev_next_name(const char *init_name, char *name, 452 size_t len) 453 { 454 unsigned int i = 0; 455 int ret = 0; 456 struct device *dev; 457 458 strscpy(name, init_name, len); 459 460 while ((ret < len) && 461 (dev = class_find_device_by_name(&leds_class, name))) { 462 put_device(dev); 463 ret = snprintf(name, len, "%s_%u", init_name, ++i); 464 } 465 466 if (ret >= len) 467 return -ENOMEM; 468 469 return i; 470 } 471 472 /** 473 * led_classdev_register_ext - register a new object of led_classdev class 474 * with init data. 475 * 476 * @parent: parent of LED device 477 * @led_cdev: the led_classdev structure for this device. 478 * @init_data: LED class device initialization data 479 */ 480 int led_classdev_register_ext(struct device *parent, 481 struct led_classdev *led_cdev, 482 struct led_init_data *init_data) 483 { 484 char composed_name[LED_MAX_NAME_SIZE]; 485 char final_name[LED_MAX_NAME_SIZE]; 486 const char *proposed_name = composed_name; 487 int ret; 488 489 if (init_data) { 490 if (init_data->devname_mandatory && !init_data->devicename) { 491 dev_err(parent, "Mandatory device name is missing"); 492 return -EINVAL; 493 } 494 ret = led_compose_name(parent, init_data, composed_name); 495 if (ret < 0) 496 return ret; 497 498 if (init_data->fwnode) { 499 fwnode_property_read_string(init_data->fwnode, 500 "linux,default-trigger", 501 &led_cdev->default_trigger); 502 503 if (fwnode_property_present(init_data->fwnode, 504 "retain-state-shutdown")) 505 led_cdev->flags |= LED_RETAIN_AT_SHUTDOWN; 506 507 fwnode_property_read_u32(init_data->fwnode, 508 "max-brightness", 509 &led_cdev->max_brightness); 510 511 if (fwnode_property_present(init_data->fwnode, "color")) 512 fwnode_property_read_u32(init_data->fwnode, "color", 513 &led_cdev->color); 514 } 515 } else { 516 proposed_name = led_cdev->name; 517 } 518 519 ret = led_classdev_next_name(proposed_name, final_name, sizeof(final_name)); 520 if (ret < 0) 521 return ret; 522 523 if (led_cdev->color >= LED_COLOR_ID_MAX) 524 dev_warn(parent, "LED %s color identifier out of range\n", final_name); 525 526 mutex_init(&led_cdev->led_access); 527 mutex_lock(&led_cdev->led_access); 528 led_cdev->dev = device_create_with_groups(&leds_class, parent, 0, 529 led_cdev, led_cdev->groups, "%s", final_name); 530 if (IS_ERR(led_cdev->dev)) { 531 mutex_unlock(&led_cdev->led_access); 532 return PTR_ERR(led_cdev->dev); 533 } 534 if (init_data && init_data->fwnode) 535 device_set_node(led_cdev->dev, init_data->fwnode); 536 537 if (ret) 538 dev_warn(parent, "Led %s renamed to %s due to name collision", 539 proposed_name, dev_name(led_cdev->dev)); 540 541 if (led_cdev->flags & LED_BRIGHT_HW_CHANGED) { 542 ret = led_add_brightness_hw_changed(led_cdev); 543 if (ret) { 544 device_unregister(led_cdev->dev); 545 led_cdev->dev = NULL; 546 mutex_unlock(&led_cdev->led_access); 547 return ret; 548 } 549 } 550 551 led_cdev->work_flags = 0; 552 #ifdef CONFIG_LEDS_TRIGGERS 553 init_rwsem(&led_cdev->trigger_lock); 554 #endif 555 #ifdef CONFIG_LEDS_BRIGHTNESS_HW_CHANGED 556 led_cdev->brightness_hw_changed = -1; 557 #endif 558 /* add to the list of leds */ 559 down_write(&leds_list_lock); 560 list_add_tail(&led_cdev->node, &leds_list); 561 up_write(&leds_list_lock); 562 563 if (!led_cdev->max_brightness) 564 led_cdev->max_brightness = LED_FULL; 565 566 led_update_brightness(led_cdev); 567 568 led_init_core(led_cdev); 569 570 #ifdef CONFIG_LEDS_TRIGGERS 571 led_trigger_set_default(led_cdev); 572 #endif 573 574 mutex_unlock(&led_cdev->led_access); 575 576 dev_dbg(parent, "Registered led device: %s\n", 577 led_cdev->name); 578 579 return 0; 580 } 581 EXPORT_SYMBOL_GPL(led_classdev_register_ext); 582 583 /** 584 * led_classdev_unregister - unregisters a object of led_properties class. 585 * @led_cdev: the led device to unregister 586 * 587 * Unregisters a previously registered via led_classdev_register object. 588 */ 589 void led_classdev_unregister(struct led_classdev *led_cdev) 590 { 591 if (IS_ERR_OR_NULL(led_cdev->dev)) 592 return; 593 594 #ifdef CONFIG_LEDS_TRIGGERS 595 down_write(&led_cdev->trigger_lock); 596 if (led_cdev->trigger) 597 led_trigger_set(led_cdev, NULL); 598 up_write(&led_cdev->trigger_lock); 599 #endif 600 601 led_cdev->flags |= LED_UNREGISTERING; 602 603 /* Stop blinking */ 604 led_stop_software_blink(led_cdev); 605 606 if (!(led_cdev->flags & LED_RETAIN_AT_SHUTDOWN)) 607 led_set_brightness(led_cdev, LED_OFF); 608 609 flush_work(&led_cdev->set_brightness_work); 610 611 if (led_cdev->flags & LED_BRIGHT_HW_CHANGED) 612 led_remove_brightness_hw_changed(led_cdev); 613 614 device_unregister(led_cdev->dev); 615 616 down_write(&leds_list_lock); 617 list_del(&led_cdev->node); 618 up_write(&leds_list_lock); 619 620 mutex_destroy(&led_cdev->led_access); 621 } 622 EXPORT_SYMBOL_GPL(led_classdev_unregister); 623 624 static void devm_led_classdev_release(struct device *dev, void *res) 625 { 626 led_classdev_unregister(*(struct led_classdev **)res); 627 } 628 629 /** 630 * devm_led_classdev_register_ext - resource managed led_classdev_register_ext() 631 * 632 * @parent: parent of LED device 633 * @led_cdev: the led_classdev structure for this device. 634 * @init_data: LED class device initialization data 635 */ 636 int devm_led_classdev_register_ext(struct device *parent, 637 struct led_classdev *led_cdev, 638 struct led_init_data *init_data) 639 { 640 struct led_classdev **dr; 641 int rc; 642 643 dr = devres_alloc(devm_led_classdev_release, sizeof(*dr), GFP_KERNEL); 644 if (!dr) 645 return -ENOMEM; 646 647 rc = led_classdev_register_ext(parent, led_cdev, init_data); 648 if (rc) { 649 devres_free(dr); 650 return rc; 651 } 652 653 *dr = led_cdev; 654 devres_add(parent, dr); 655 656 return 0; 657 } 658 EXPORT_SYMBOL_GPL(devm_led_classdev_register_ext); 659 660 static int devm_led_classdev_match(struct device *dev, void *res, void *data) 661 { 662 struct led_classdev **p = res; 663 664 if (WARN_ON(!p || !*p)) 665 return 0; 666 667 return *p == data; 668 } 669 670 /** 671 * devm_led_classdev_unregister() - resource managed led_classdev_unregister() 672 * @dev: The device to unregister. 673 * @led_cdev: the led_classdev structure for this device. 674 */ 675 void devm_led_classdev_unregister(struct device *dev, 676 struct led_classdev *led_cdev) 677 { 678 WARN_ON(devres_release(dev, 679 devm_led_classdev_release, 680 devm_led_classdev_match, led_cdev)); 681 } 682 EXPORT_SYMBOL_GPL(devm_led_classdev_unregister); 683 684 static int __init leds_init(void) 685 { 686 return class_register(&leds_class); 687 } 688 689 static void __exit leds_exit(void) 690 { 691 class_unregister(&leds_class); 692 } 693 694 subsys_initcall(leds_init); 695 module_exit(leds_exit); 696 697 MODULE_AUTHOR("John Lenz, Richard Purdie"); 698 MODULE_LICENSE("GPL"); 699 MODULE_DESCRIPTION("LED Class Interface"); 700