1 /* 2 * drivers/extcon/extcon.c - External Connector (extcon) framework. 3 * 4 * External connector (extcon) class driver 5 * 6 * Copyright (C) 2015 Samsung Electronics 7 * Author: Chanwoo Choi <cw00.choi@samsung.com> 8 * 9 * Copyright (C) 2012 Samsung Electronics 10 * Author: Donggeun Kim <dg77.kim@samsung.com> 11 * Author: MyungJoo Ham <myungjoo.ham@samsung.com> 12 * 13 * based on android/drivers/switch/switch_class.c 14 * Copyright (C) 2008 Google, Inc. 15 * Author: Mike Lockwood <lockwood@android.com> 16 * 17 * This software is licensed under the terms of the GNU General Public 18 * License version 2, as published by the Free Software Foundation, and 19 * may be copied, distributed, and modified under those terms. 20 * 21 * This program is distributed in the hope that it will be useful, 22 * but WITHOUT ANY WARRANTY; without even the implied warranty of 23 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the 24 * GNU General Public License for more details. 25 */ 26 27 #include <linux/module.h> 28 #include <linux/types.h> 29 #include <linux/init.h> 30 #include <linux/device.h> 31 #include <linux/fs.h> 32 #include <linux/err.h> 33 #include <linux/extcon.h> 34 #include <linux/of.h> 35 #include <linux/slab.h> 36 #include <linux/sysfs.h> 37 38 #define SUPPORTED_CABLE_MAX 32 39 #define CABLE_NAME_MAX 30 40 41 static const char *extcon_name[] = { 42 [EXTCON_NONE] = "NONE", 43 44 /* USB external connector */ 45 [EXTCON_USB] = "USB", 46 [EXTCON_USB_HOST] = "USB-HOST", 47 48 /* Charger external connector */ 49 [EXTCON_TA] = "TA", 50 [EXTCON_FAST_CHARGER] = "FAST-CHARGER", 51 [EXTCON_SLOW_CHARGER] = "SLOW-CHARGER", 52 [EXTCON_CHARGE_DOWNSTREAM] = "CHARGE-DOWNSTREAM", 53 54 /* Audio/Video external connector */ 55 [EXTCON_LINE_IN] = "LINE-IN", 56 [EXTCON_LINE_OUT] = "LINE-OUT", 57 [EXTCON_MICROPHONE] = "MICROPHONE", 58 [EXTCON_HEADPHONE] = "HEADPHONE", 59 60 [EXTCON_HDMI] = "HDMI", 61 [EXTCON_MHL] = "MHL", 62 [EXTCON_DVI] = "DVI", 63 [EXTCON_VGA] = "VGA", 64 [EXTCON_SPDIF_IN] = "SPDIF-IN", 65 [EXTCON_SPDIF_OUT] = "SPDIF-OUT", 66 [EXTCON_VIDEO_IN] = "VIDEO-IN", 67 [EXTCON_VIDEO_OUT] = "VIDEO-OUT", 68 69 /* Etc external connector */ 70 [EXTCON_DOCK] = "DOCK", 71 [EXTCON_JIG] = "JIG", 72 [EXTCON_MECHANICAL] = "MECHANICAL", 73 74 NULL, 75 }; 76 77 static struct class *extcon_class; 78 #if defined(CONFIG_ANDROID) 79 static struct class_compat *switch_class; 80 #endif /* CONFIG_ANDROID */ 81 82 static LIST_HEAD(extcon_dev_list); 83 static DEFINE_MUTEX(extcon_dev_list_lock); 84 85 /** 86 * check_mutually_exclusive - Check if new_state violates mutually_exclusive 87 * condition. 88 * @edev: the extcon device 89 * @new_state: new cable attach status for @edev 90 * 91 * Returns 0 if nothing violates. Returns the index + 1 for the first 92 * violated condition. 93 */ 94 static int check_mutually_exclusive(struct extcon_dev *edev, u32 new_state) 95 { 96 int i = 0; 97 98 if (!edev->mutually_exclusive) 99 return 0; 100 101 for (i = 0; edev->mutually_exclusive[i]; i++) { 102 int weight; 103 u32 correspondants = new_state & edev->mutually_exclusive[i]; 104 105 /* calculate the total number of bits set */ 106 weight = hweight32(correspondants); 107 if (weight > 1) 108 return i + 1; 109 } 110 111 return 0; 112 } 113 114 static int find_cable_index_by_id(struct extcon_dev *edev, const unsigned int id) 115 { 116 int i; 117 118 /* Find the the index of extcon cable in edev->supported_cable */ 119 for (i = 0; i < edev->max_supported; i++) { 120 if (edev->supported_cable[i] == id) 121 return i; 122 } 123 124 return -EINVAL; 125 } 126 127 static int find_cable_index_by_name(struct extcon_dev *edev, const char *name) 128 { 129 unsigned int id = EXTCON_NONE; 130 int i = 0; 131 132 if (edev->max_supported == 0) 133 return -EINVAL; 134 135 /* Find the the number of extcon cable */ 136 while (extcon_name[i]) { 137 if (!strncmp(extcon_name[i], name, CABLE_NAME_MAX)) { 138 id = i; 139 break; 140 } 141 } 142 143 if (id == EXTCON_NONE) 144 return -EINVAL; 145 146 return find_cable_index_by_id(edev, id); 147 } 148 149 static bool is_extcon_changed(u32 prev, u32 new, int idx, bool *attached) 150 { 151 if (((prev >> idx) & 0x1) != ((new >> idx) & 0x1)) { 152 *attached = new ? true : false; 153 return true; 154 } 155 156 return false; 157 } 158 159 static ssize_t state_show(struct device *dev, struct device_attribute *attr, 160 char *buf) 161 { 162 int i, count = 0; 163 struct extcon_dev *edev = dev_get_drvdata(dev); 164 165 if (edev->print_state) { 166 int ret = edev->print_state(edev, buf); 167 168 if (ret >= 0) 169 return ret; 170 /* Use default if failed */ 171 } 172 173 if (edev->max_supported == 0) 174 return sprintf(buf, "%u\n", edev->state); 175 176 for (i = 0; i < edev->max_supported; i++) { 177 count += sprintf(buf + count, "%s=%d\n", 178 extcon_name[edev->supported_cable[i]], 179 !!(edev->state & (1 << i))); 180 } 181 182 return count; 183 } 184 185 static ssize_t state_store(struct device *dev, struct device_attribute *attr, 186 const char *buf, size_t count) 187 { 188 u32 state; 189 ssize_t ret = 0; 190 struct extcon_dev *edev = dev_get_drvdata(dev); 191 192 ret = sscanf(buf, "0x%x", &state); 193 if (ret == 0) 194 ret = -EINVAL; 195 else 196 ret = extcon_set_state(edev, state); 197 198 if (ret < 0) 199 return ret; 200 201 return count; 202 } 203 static DEVICE_ATTR_RW(state); 204 205 static ssize_t name_show(struct device *dev, struct device_attribute *attr, 206 char *buf) 207 { 208 struct extcon_dev *edev = dev_get_drvdata(dev); 209 210 return sprintf(buf, "%s\n", edev->name); 211 } 212 static DEVICE_ATTR_RO(name); 213 214 static ssize_t cable_name_show(struct device *dev, 215 struct device_attribute *attr, char *buf) 216 { 217 struct extcon_cable *cable = container_of(attr, struct extcon_cable, 218 attr_name); 219 int i = cable->cable_index; 220 221 return sprintf(buf, "%s\n", 222 extcon_name[cable->edev->supported_cable[i]]); 223 } 224 225 static ssize_t cable_state_show(struct device *dev, 226 struct device_attribute *attr, char *buf) 227 { 228 struct extcon_cable *cable = container_of(attr, struct extcon_cable, 229 attr_state); 230 231 return sprintf(buf, "%d\n", 232 extcon_get_cable_state_(cable->edev, 233 cable->cable_index)); 234 } 235 236 /** 237 * extcon_update_state() - Update the cable attach states of the extcon device 238 * only for the masked bits. 239 * @edev: the extcon device 240 * @mask: the bit mask to designate updated bits. 241 * @state: new cable attach status for @edev 242 * 243 * Changing the state sends uevent with environment variable containing 244 * the name of extcon device (envp[0]) and the state output (envp[1]). 245 * Tizen uses this format for extcon device to get events from ports. 246 * Android uses this format as well. 247 * 248 * Note that the notifier provides which bits are changed in the state 249 * variable with the val parameter (second) to the callback. 250 */ 251 int extcon_update_state(struct extcon_dev *edev, u32 mask, u32 state) 252 { 253 char name_buf[120]; 254 char state_buf[120]; 255 char *prop_buf; 256 char *envp[3]; 257 int env_offset = 0; 258 int length; 259 int index; 260 unsigned long flags; 261 bool attached; 262 263 spin_lock_irqsave(&edev->lock, flags); 264 265 if (edev->state != ((edev->state & ~mask) | (state & mask))) { 266 if (check_mutually_exclusive(edev, (edev->state & ~mask) | 267 (state & mask))) { 268 spin_unlock_irqrestore(&edev->lock, flags); 269 return -EPERM; 270 } 271 272 for (index = 0; index < edev->max_supported; index++) { 273 if (is_extcon_changed(edev->state, state, index, &attached)) 274 raw_notifier_call_chain(&edev->nh[index], attached, edev); 275 } 276 277 edev->state &= ~mask; 278 edev->state |= state & mask; 279 280 /* This could be in interrupt handler */ 281 prop_buf = (char *)get_zeroed_page(GFP_ATOMIC); 282 if (prop_buf) { 283 length = name_show(&edev->dev, NULL, prop_buf); 284 if (length > 0) { 285 if (prop_buf[length - 1] == '\n') 286 prop_buf[length - 1] = 0; 287 snprintf(name_buf, sizeof(name_buf), 288 "NAME=%s", prop_buf); 289 envp[env_offset++] = name_buf; 290 } 291 length = state_show(&edev->dev, NULL, prop_buf); 292 if (length > 0) { 293 if (prop_buf[length - 1] == '\n') 294 prop_buf[length - 1] = 0; 295 snprintf(state_buf, sizeof(state_buf), 296 "STATE=%s", prop_buf); 297 envp[env_offset++] = state_buf; 298 } 299 envp[env_offset] = NULL; 300 /* Unlock early before uevent */ 301 spin_unlock_irqrestore(&edev->lock, flags); 302 303 kobject_uevent_env(&edev->dev.kobj, KOBJ_CHANGE, envp); 304 free_page((unsigned long)prop_buf); 305 } else { 306 /* Unlock early before uevent */ 307 spin_unlock_irqrestore(&edev->lock, flags); 308 309 dev_err(&edev->dev, "out of memory in extcon_set_state\n"); 310 kobject_uevent(&edev->dev.kobj, KOBJ_CHANGE); 311 } 312 } else { 313 /* No changes */ 314 spin_unlock_irqrestore(&edev->lock, flags); 315 } 316 317 return 0; 318 } 319 EXPORT_SYMBOL_GPL(extcon_update_state); 320 321 /** 322 * extcon_set_state() - Set the cable attach states of the extcon device. 323 * @edev: the extcon device 324 * @state: new cable attach status for @edev 325 * 326 * Note that notifier provides which bits are changed in the state 327 * variable with the val parameter (second) to the callback. 328 */ 329 int extcon_set_state(struct extcon_dev *edev, u32 state) 330 { 331 return extcon_update_state(edev, 0xffffffff, state); 332 } 333 EXPORT_SYMBOL_GPL(extcon_set_state); 334 335 /** 336 * extcon_get_cable_state_() - Get the status of a specific cable. 337 * @edev: the extcon device that has the cable. 338 * @id: the unique id of each external connector in extcon enumeration. 339 */ 340 int extcon_get_cable_state_(struct extcon_dev *edev, const unsigned int id) 341 { 342 int index; 343 344 index = find_cable_index_by_id(edev, id); 345 if (index < 0) 346 return index; 347 348 if (edev->max_supported && edev->max_supported <= index) 349 return -EINVAL; 350 351 return !!(edev->state & (1 << index)); 352 } 353 EXPORT_SYMBOL_GPL(extcon_get_cable_state_); 354 355 /** 356 * extcon_get_cable_state() - Get the status of a specific cable. 357 * @edev: the extcon device that has the cable. 358 * @cable_name: cable name. 359 * 360 * Note that this is slower than extcon_get_cable_state_. 361 */ 362 int extcon_get_cable_state(struct extcon_dev *edev, const char *cable_name) 363 { 364 return extcon_get_cable_state_(edev, find_cable_index_by_name 365 (edev, cable_name)); 366 } 367 EXPORT_SYMBOL_GPL(extcon_get_cable_state); 368 369 /** 370 * extcon_set_cable_state_() - Set the status of a specific cable. 371 * @edev: the extcon device that has the cable. 372 * @id: the unique id of each external connector 373 * in extcon enumeration. 374 * @state: the new cable status. The default semantics is 375 * true: attached / false: detached. 376 */ 377 int extcon_set_cable_state_(struct extcon_dev *edev, unsigned int id, 378 bool cable_state) 379 { 380 u32 state; 381 int index; 382 383 index = find_cable_index_by_id(edev, id); 384 if (index < 0) 385 return index; 386 387 if (edev->max_supported && edev->max_supported <= index) 388 return -EINVAL; 389 390 state = cable_state ? (1 << index) : 0; 391 return extcon_update_state(edev, 1 << index, state); 392 } 393 EXPORT_SYMBOL_GPL(extcon_set_cable_state_); 394 395 /** 396 * extcon_set_cable_state() - Set the status of a specific cable. 397 * @edev: the extcon device that has the cable. 398 * @cable_name: cable name. 399 * @cable_state: the new cable status. The default semantics is 400 * true: attached / false: detached. 401 * 402 * Note that this is slower than extcon_set_cable_state_. 403 */ 404 int extcon_set_cable_state(struct extcon_dev *edev, 405 const char *cable_name, bool cable_state) 406 { 407 return extcon_set_cable_state_(edev, find_cable_index_by_name 408 (edev, cable_name), cable_state); 409 } 410 EXPORT_SYMBOL_GPL(extcon_set_cable_state); 411 412 /** 413 * extcon_get_extcon_dev() - Get the extcon device instance from the name 414 * @extcon_name: The extcon name provided with extcon_dev_register() 415 */ 416 struct extcon_dev *extcon_get_extcon_dev(const char *extcon_name) 417 { 418 struct extcon_dev *sd; 419 420 mutex_lock(&extcon_dev_list_lock); 421 list_for_each_entry(sd, &extcon_dev_list, entry) { 422 if (!strcmp(sd->name, extcon_name)) 423 goto out; 424 } 425 sd = NULL; 426 out: 427 mutex_unlock(&extcon_dev_list_lock); 428 return sd; 429 } 430 EXPORT_SYMBOL_GPL(extcon_get_extcon_dev); 431 432 /** 433 * extcon_register_interest() - Register a notifier for a state change of a 434 * specific cable, not an entier set of cables of a 435 * extcon device. 436 * @obj: an empty extcon_specific_cable_nb object to be returned. 437 * @extcon_name: the name of extcon device. 438 * if NULL, extcon_register_interest will register 439 * every cable with the target cable_name given. 440 * @cable_name: the target cable name. 441 * @nb: the notifier block to get notified. 442 * 443 * Provide an empty extcon_specific_cable_nb. extcon_register_interest() sets 444 * the struct for you. 445 * 446 * extcon_register_interest is a helper function for those who want to get 447 * notification for a single specific cable's status change. If a user wants 448 * to get notification for any changes of all cables of a extcon device, 449 * he/she should use the general extcon_register_notifier(). 450 * 451 * Note that the second parameter given to the callback of nb (val) is 452 * "old_state", not the current state. The current state can be retrieved 453 * by looking at the third pameter (edev pointer)'s state value. 454 */ 455 int extcon_register_interest(struct extcon_specific_cable_nb *obj, 456 const char *extcon_name, const char *cable_name, 457 struct notifier_block *nb) 458 { 459 unsigned long flags; 460 int ret; 461 462 if (!obj || !cable_name || !nb) 463 return -EINVAL; 464 465 if (extcon_name) { 466 obj->edev = extcon_get_extcon_dev(extcon_name); 467 if (!obj->edev) 468 return -ENODEV; 469 470 obj->cable_index = find_cable_index_by_name(obj->edev, 471 cable_name); 472 if (obj->cable_index < 0) 473 return obj->cable_index; 474 475 obj->user_nb = nb; 476 477 spin_lock_irqsave(&obj->edev->lock, flags); 478 ret = raw_notifier_chain_register( 479 &obj->edev->nh[obj->cable_index], 480 obj->user_nb); 481 spin_unlock_irqrestore(&obj->edev->lock, flags); 482 } else { 483 struct class_dev_iter iter; 484 struct extcon_dev *extd; 485 struct device *dev; 486 487 if (!extcon_class) 488 return -ENODEV; 489 class_dev_iter_init(&iter, extcon_class, NULL, NULL); 490 while ((dev = class_dev_iter_next(&iter))) { 491 extd = dev_get_drvdata(dev); 492 493 if (find_cable_index_by_name(extd, cable_name) < 0) 494 continue; 495 496 class_dev_iter_exit(&iter); 497 return extcon_register_interest(obj, extd->name, 498 cable_name, nb); 499 } 500 501 ret = -ENODEV; 502 } 503 504 return ret; 505 } 506 EXPORT_SYMBOL_GPL(extcon_register_interest); 507 508 /** 509 * extcon_unregister_interest() - Unregister the notifier registered by 510 * extcon_register_interest(). 511 * @obj: the extcon_specific_cable_nb object returned by 512 * extcon_register_interest(). 513 */ 514 int extcon_unregister_interest(struct extcon_specific_cable_nb *obj) 515 { 516 unsigned long flags; 517 int ret; 518 519 if (!obj) 520 return -EINVAL; 521 522 spin_lock_irqsave(&obj->edev->lock, flags); 523 ret = raw_notifier_chain_unregister( 524 &obj->edev->nh[obj->cable_index], obj->user_nb); 525 spin_unlock_irqrestore(&obj->edev->lock, flags); 526 527 return ret; 528 } 529 EXPORT_SYMBOL_GPL(extcon_unregister_interest); 530 531 /** 532 * extcon_register_notifier() - Register a notifiee to get notified by 533 * any attach status changes from the extcon. 534 * @edev: the extcon device that has the external connecotr. 535 * @id: the unique id of each external connector in extcon enumeration. 536 * @nb: a notifier block to be registered. 537 * 538 * Note that the second parameter given to the callback of nb (val) is 539 * "old_state", not the current state. The current state can be retrieved 540 * by looking at the third pameter (edev pointer)'s state value. 541 */ 542 int extcon_register_notifier(struct extcon_dev *edev, unsigned int id, 543 struct notifier_block *nb) 544 { 545 unsigned long flags; 546 int ret, idx; 547 548 idx = find_cable_index_by_id(edev, id); 549 550 spin_lock_irqsave(&edev->lock, flags); 551 ret = raw_notifier_chain_register(&edev->nh[idx], nb); 552 spin_unlock_irqrestore(&edev->lock, flags); 553 554 return ret; 555 } 556 EXPORT_SYMBOL_GPL(extcon_register_notifier); 557 558 /** 559 * extcon_unregister_notifier() - Unregister a notifiee from the extcon device. 560 * @edev: the extcon device that has the external connecotr. 561 * @id: the unique id of each external connector in extcon enumeration. 562 * @nb: a notifier block to be registered. 563 */ 564 int extcon_unregister_notifier(struct extcon_dev *edev, unsigned int id, 565 struct notifier_block *nb) 566 { 567 unsigned long flags; 568 int ret, idx; 569 570 idx = find_cable_index_by_id(edev, id); 571 572 spin_lock_irqsave(&edev->lock, flags); 573 ret = raw_notifier_chain_unregister(&edev->nh[idx], nb); 574 spin_unlock_irqrestore(&edev->lock, flags); 575 576 return ret; 577 } 578 EXPORT_SYMBOL_GPL(extcon_unregister_notifier); 579 580 static struct attribute *extcon_attrs[] = { 581 &dev_attr_state.attr, 582 &dev_attr_name.attr, 583 NULL, 584 }; 585 ATTRIBUTE_GROUPS(extcon); 586 587 static int create_extcon_class(void) 588 { 589 if (!extcon_class) { 590 extcon_class = class_create(THIS_MODULE, "extcon"); 591 if (IS_ERR(extcon_class)) 592 return PTR_ERR(extcon_class); 593 extcon_class->dev_groups = extcon_groups; 594 595 #if defined(CONFIG_ANDROID) 596 switch_class = class_compat_register("switch"); 597 if (WARN(!switch_class, "cannot allocate")) 598 return -ENOMEM; 599 #endif /* CONFIG_ANDROID */ 600 } 601 602 return 0; 603 } 604 605 static void extcon_dev_release(struct device *dev) 606 { 607 } 608 609 static const char *muex_name = "mutually_exclusive"; 610 static void dummy_sysfs_dev_release(struct device *dev) 611 { 612 } 613 614 /* 615 * extcon_dev_allocate() - Allocate the memory of extcon device. 616 * @supported_cable: Array of supported extcon ending with EXTCON_NONE. 617 * If supported_cable is NULL, cable name related APIs 618 * are disabled. 619 * 620 * This function allocates the memory for extcon device without allocating 621 * memory in each extcon provider driver and initialize default setting for 622 * extcon device. 623 * 624 * Return the pointer of extcon device if success or ERR_PTR(err) if fail 625 */ 626 struct extcon_dev *extcon_dev_allocate(const unsigned int *supported_cable) 627 { 628 struct extcon_dev *edev; 629 630 edev = kzalloc(sizeof(*edev), GFP_KERNEL); 631 if (!edev) 632 return ERR_PTR(-ENOMEM); 633 634 edev->max_supported = 0; 635 edev->supported_cable = supported_cable; 636 637 return edev; 638 } 639 640 /* 641 * extcon_dev_free() - Free the memory of extcon device. 642 * @edev: the extcon device to free 643 */ 644 void extcon_dev_free(struct extcon_dev *edev) 645 { 646 kfree(edev); 647 } 648 EXPORT_SYMBOL_GPL(extcon_dev_free); 649 650 static int devm_extcon_dev_match(struct device *dev, void *res, void *data) 651 { 652 struct extcon_dev **r = res; 653 654 if (WARN_ON(!r || !*r)) 655 return 0; 656 657 return *r == data; 658 } 659 660 static void devm_extcon_dev_release(struct device *dev, void *res) 661 { 662 extcon_dev_free(*(struct extcon_dev **)res); 663 } 664 665 /** 666 * devm_extcon_dev_allocate - Allocate managed extcon device 667 * @dev: device owning the extcon device being created 668 * @supported_cable: Array of supported extcon ending with EXTCON_NONE. 669 * If supported_cable is NULL, cable name related APIs 670 * are disabled. 671 * 672 * This function manages automatically the memory of extcon device using device 673 * resource management and simplify the control of freeing the memory of extcon 674 * device. 675 * 676 * Returns the pointer memory of allocated extcon_dev if success 677 * or ERR_PTR(err) if fail 678 */ 679 struct extcon_dev *devm_extcon_dev_allocate(struct device *dev, 680 const unsigned int *supported_cable) 681 { 682 struct extcon_dev **ptr, *edev; 683 684 ptr = devres_alloc(devm_extcon_dev_release, sizeof(*ptr), GFP_KERNEL); 685 if (!ptr) 686 return ERR_PTR(-ENOMEM); 687 688 edev = extcon_dev_allocate(supported_cable); 689 if (IS_ERR(edev)) { 690 devres_free(ptr); 691 return edev; 692 } 693 694 edev->dev.parent = dev; 695 696 *ptr = edev; 697 devres_add(dev, ptr); 698 699 return edev; 700 } 701 EXPORT_SYMBOL_GPL(devm_extcon_dev_allocate); 702 703 void devm_extcon_dev_free(struct device *dev, struct extcon_dev *edev) 704 { 705 WARN_ON(devres_release(dev, devm_extcon_dev_release, 706 devm_extcon_dev_match, edev)); 707 } 708 EXPORT_SYMBOL_GPL(devm_extcon_dev_free); 709 710 /** 711 * extcon_dev_register() - Register a new extcon device 712 * @edev : the new extcon device (should be allocated before calling) 713 * 714 * Among the members of edev struct, please set the "user initializing data" 715 * in any case and set the "optional callbacks" if required. However, please 716 * do not set the values of "internal data", which are initialized by 717 * this function. 718 */ 719 int extcon_dev_register(struct extcon_dev *edev) 720 { 721 int ret, index = 0; 722 static atomic_t edev_no = ATOMIC_INIT(-1); 723 724 if (!extcon_class) { 725 ret = create_extcon_class(); 726 if (ret < 0) 727 return ret; 728 } 729 730 if (!edev->supported_cable) 731 return -EINVAL; 732 733 for (; edev->supported_cable[index] != EXTCON_NONE; index++); 734 735 edev->max_supported = index; 736 if (index > SUPPORTED_CABLE_MAX) { 737 dev_err(&edev->dev, 738 "exceed the maximum number of supported cables\n"); 739 return -EINVAL; 740 } 741 742 edev->dev.class = extcon_class; 743 edev->dev.release = extcon_dev_release; 744 745 edev->name = dev_name(edev->dev.parent); 746 if (IS_ERR_OR_NULL(edev->name)) { 747 dev_err(&edev->dev, 748 "extcon device name is null\n"); 749 return -EINVAL; 750 } 751 dev_set_name(&edev->dev, "extcon%lu", 752 (unsigned long)atomic_inc_return(&edev_no)); 753 754 if (edev->max_supported) { 755 char buf[10]; 756 char *str; 757 struct extcon_cable *cable; 758 759 edev->cables = kzalloc(sizeof(struct extcon_cable) * 760 edev->max_supported, GFP_KERNEL); 761 if (!edev->cables) { 762 ret = -ENOMEM; 763 goto err_sysfs_alloc; 764 } 765 for (index = 0; index < edev->max_supported; index++) { 766 cable = &edev->cables[index]; 767 768 snprintf(buf, 10, "cable.%d", index); 769 str = kzalloc(sizeof(char) * (strlen(buf) + 1), 770 GFP_KERNEL); 771 if (!str) { 772 for (index--; index >= 0; index--) { 773 cable = &edev->cables[index]; 774 kfree(cable->attr_g.name); 775 } 776 ret = -ENOMEM; 777 778 goto err_alloc_cables; 779 } 780 strcpy(str, buf); 781 782 cable->edev = edev; 783 cable->cable_index = index; 784 cable->attrs[0] = &cable->attr_name.attr; 785 cable->attrs[1] = &cable->attr_state.attr; 786 cable->attrs[2] = NULL; 787 cable->attr_g.name = str; 788 cable->attr_g.attrs = cable->attrs; 789 790 sysfs_attr_init(&cable->attr_name.attr); 791 cable->attr_name.attr.name = "name"; 792 cable->attr_name.attr.mode = 0444; 793 cable->attr_name.show = cable_name_show; 794 795 sysfs_attr_init(&cable->attr_state.attr); 796 cable->attr_state.attr.name = "state"; 797 cable->attr_state.attr.mode = 0444; 798 cable->attr_state.show = cable_state_show; 799 } 800 } 801 802 if (edev->max_supported && edev->mutually_exclusive) { 803 char buf[80]; 804 char *name; 805 806 /* Count the size of mutually_exclusive array */ 807 for (index = 0; edev->mutually_exclusive[index]; index++) 808 ; 809 810 edev->attrs_muex = kzalloc(sizeof(struct attribute *) * 811 (index + 1), GFP_KERNEL); 812 if (!edev->attrs_muex) { 813 ret = -ENOMEM; 814 goto err_muex; 815 } 816 817 edev->d_attrs_muex = kzalloc(sizeof(struct device_attribute) * 818 index, GFP_KERNEL); 819 if (!edev->d_attrs_muex) { 820 ret = -ENOMEM; 821 kfree(edev->attrs_muex); 822 goto err_muex; 823 } 824 825 for (index = 0; edev->mutually_exclusive[index]; index++) { 826 sprintf(buf, "0x%x", edev->mutually_exclusive[index]); 827 name = kzalloc(sizeof(char) * (strlen(buf) + 1), 828 GFP_KERNEL); 829 if (!name) { 830 for (index--; index >= 0; index--) { 831 kfree(edev->d_attrs_muex[index].attr. 832 name); 833 } 834 kfree(edev->d_attrs_muex); 835 kfree(edev->attrs_muex); 836 ret = -ENOMEM; 837 goto err_muex; 838 } 839 strcpy(name, buf); 840 sysfs_attr_init(&edev->d_attrs_muex[index].attr); 841 edev->d_attrs_muex[index].attr.name = name; 842 edev->d_attrs_muex[index].attr.mode = 0000; 843 edev->attrs_muex[index] = &edev->d_attrs_muex[index] 844 .attr; 845 } 846 edev->attr_g_muex.name = muex_name; 847 edev->attr_g_muex.attrs = edev->attrs_muex; 848 849 } 850 851 if (edev->max_supported) { 852 edev->extcon_dev_type.groups = 853 kzalloc(sizeof(struct attribute_group *) * 854 (edev->max_supported + 2), GFP_KERNEL); 855 if (!edev->extcon_dev_type.groups) { 856 ret = -ENOMEM; 857 goto err_alloc_groups; 858 } 859 860 edev->extcon_dev_type.name = dev_name(&edev->dev); 861 edev->extcon_dev_type.release = dummy_sysfs_dev_release; 862 863 for (index = 0; index < edev->max_supported; index++) 864 edev->extcon_dev_type.groups[index] = 865 &edev->cables[index].attr_g; 866 if (edev->mutually_exclusive) 867 edev->extcon_dev_type.groups[index] = 868 &edev->attr_g_muex; 869 870 edev->dev.type = &edev->extcon_dev_type; 871 } 872 873 ret = device_register(&edev->dev); 874 if (ret) { 875 put_device(&edev->dev); 876 goto err_dev; 877 } 878 #if defined(CONFIG_ANDROID) 879 if (switch_class) 880 ret = class_compat_create_link(switch_class, &edev->dev, NULL); 881 #endif /* CONFIG_ANDROID */ 882 883 spin_lock_init(&edev->lock); 884 885 edev->nh = devm_kzalloc(&edev->dev, 886 sizeof(*edev->nh) * edev->max_supported, GFP_KERNEL); 887 if (!edev->nh) { 888 ret = -ENOMEM; 889 goto err_dev; 890 } 891 892 for (index = 0; index < edev->max_supported; index++) 893 RAW_INIT_NOTIFIER_HEAD(&edev->nh[index]); 894 895 dev_set_drvdata(&edev->dev, edev); 896 edev->state = 0; 897 898 mutex_lock(&extcon_dev_list_lock); 899 list_add(&edev->entry, &extcon_dev_list); 900 mutex_unlock(&extcon_dev_list_lock); 901 902 return 0; 903 904 err_dev: 905 if (edev->max_supported) 906 kfree(edev->extcon_dev_type.groups); 907 err_alloc_groups: 908 if (edev->max_supported && edev->mutually_exclusive) { 909 for (index = 0; edev->mutually_exclusive[index]; index++) 910 kfree(edev->d_attrs_muex[index].attr.name); 911 kfree(edev->d_attrs_muex); 912 kfree(edev->attrs_muex); 913 } 914 err_muex: 915 for (index = 0; index < edev->max_supported; index++) 916 kfree(edev->cables[index].attr_g.name); 917 err_alloc_cables: 918 if (edev->max_supported) 919 kfree(edev->cables); 920 err_sysfs_alloc: 921 return ret; 922 } 923 EXPORT_SYMBOL_GPL(extcon_dev_register); 924 925 /** 926 * extcon_dev_unregister() - Unregister the extcon device. 927 * @edev: the extcon device instance to be unregistered. 928 * 929 * Note that this does not call kfree(edev) because edev was not allocated 930 * by this class. 931 */ 932 void extcon_dev_unregister(struct extcon_dev *edev) 933 { 934 int index; 935 936 mutex_lock(&extcon_dev_list_lock); 937 list_del(&edev->entry); 938 mutex_unlock(&extcon_dev_list_lock); 939 940 if (IS_ERR_OR_NULL(get_device(&edev->dev))) { 941 dev_err(&edev->dev, "Failed to unregister extcon_dev (%s)\n", 942 dev_name(&edev->dev)); 943 return; 944 } 945 946 device_unregister(&edev->dev); 947 948 if (edev->mutually_exclusive && edev->max_supported) { 949 for (index = 0; edev->mutually_exclusive[index]; 950 index++) 951 kfree(edev->d_attrs_muex[index].attr.name); 952 kfree(edev->d_attrs_muex); 953 kfree(edev->attrs_muex); 954 } 955 956 for (index = 0; index < edev->max_supported; index++) 957 kfree(edev->cables[index].attr_g.name); 958 959 if (edev->max_supported) { 960 kfree(edev->extcon_dev_type.groups); 961 kfree(edev->cables); 962 } 963 964 #if defined(CONFIG_ANDROID) 965 if (switch_class) 966 class_compat_remove_link(switch_class, &edev->dev, NULL); 967 #endif 968 put_device(&edev->dev); 969 } 970 EXPORT_SYMBOL_GPL(extcon_dev_unregister); 971 972 static void devm_extcon_dev_unreg(struct device *dev, void *res) 973 { 974 extcon_dev_unregister(*(struct extcon_dev **)res); 975 } 976 977 /** 978 * devm_extcon_dev_register() - Resource-managed extcon_dev_register() 979 * @dev: device to allocate extcon device 980 * @edev: the new extcon device to register 981 * 982 * Managed extcon_dev_register() function. If extcon device is attached with 983 * this function, that extcon device is automatically unregistered on driver 984 * detach. Internally this function calls extcon_dev_register() function. 985 * To get more information, refer that function. 986 * 987 * If extcon device is registered with this function and the device needs to be 988 * unregistered separately, devm_extcon_dev_unregister() should be used. 989 * 990 * Returns 0 if success or negaive error number if failure. 991 */ 992 int devm_extcon_dev_register(struct device *dev, struct extcon_dev *edev) 993 { 994 struct extcon_dev **ptr; 995 int ret; 996 997 ptr = devres_alloc(devm_extcon_dev_unreg, sizeof(*ptr), GFP_KERNEL); 998 if (!ptr) 999 return -ENOMEM; 1000 1001 ret = extcon_dev_register(edev); 1002 if (ret) { 1003 devres_free(ptr); 1004 return ret; 1005 } 1006 1007 *ptr = edev; 1008 devres_add(dev, ptr); 1009 1010 return 0; 1011 } 1012 EXPORT_SYMBOL_GPL(devm_extcon_dev_register); 1013 1014 /** 1015 * devm_extcon_dev_unregister() - Resource-managed extcon_dev_unregister() 1016 * @dev: device the extcon belongs to 1017 * @edev: the extcon device to unregister 1018 * 1019 * Unregister extcon device that is registered with devm_extcon_dev_register() 1020 * function. 1021 */ 1022 void devm_extcon_dev_unregister(struct device *dev, struct extcon_dev *edev) 1023 { 1024 WARN_ON(devres_release(dev, devm_extcon_dev_unreg, 1025 devm_extcon_dev_match, edev)); 1026 } 1027 EXPORT_SYMBOL_GPL(devm_extcon_dev_unregister); 1028 1029 #ifdef CONFIG_OF 1030 /* 1031 * extcon_get_edev_by_phandle - Get the extcon device from devicetree 1032 * @dev - instance to the given device 1033 * @index - index into list of extcon_dev 1034 * 1035 * return the instance of extcon device 1036 */ 1037 struct extcon_dev *extcon_get_edev_by_phandle(struct device *dev, int index) 1038 { 1039 struct device_node *node; 1040 struct extcon_dev *edev; 1041 1042 if (!dev->of_node) { 1043 dev_err(dev, "device does not have a device node entry\n"); 1044 return ERR_PTR(-EINVAL); 1045 } 1046 1047 node = of_parse_phandle(dev->of_node, "extcon", index); 1048 if (!node) { 1049 dev_err(dev, "failed to get phandle in %s node\n", 1050 dev->of_node->full_name); 1051 return ERR_PTR(-ENODEV); 1052 } 1053 1054 mutex_lock(&extcon_dev_list_lock); 1055 list_for_each_entry(edev, &extcon_dev_list, entry) { 1056 if (edev->dev.parent && edev->dev.parent->of_node == node) { 1057 mutex_unlock(&extcon_dev_list_lock); 1058 return edev; 1059 } 1060 } 1061 mutex_unlock(&extcon_dev_list_lock); 1062 1063 return ERR_PTR(-EPROBE_DEFER); 1064 } 1065 #else 1066 struct extcon_dev *extcon_get_edev_by_phandle(struct device *dev, int index) 1067 { 1068 return ERR_PTR(-ENOSYS); 1069 } 1070 #endif /* CONFIG_OF */ 1071 EXPORT_SYMBOL_GPL(extcon_get_edev_by_phandle); 1072 1073 /** 1074 * extcon_get_edev_name() - Get the name of the extcon device. 1075 * @edev: the extcon device 1076 */ 1077 const char *extcon_get_edev_name(struct extcon_dev *edev) 1078 { 1079 return !edev ? NULL : edev->name; 1080 } 1081 1082 static int __init extcon_class_init(void) 1083 { 1084 return create_extcon_class(); 1085 } 1086 module_init(extcon_class_init); 1087 1088 static void __exit extcon_class_exit(void) 1089 { 1090 #if defined(CONFIG_ANDROID) 1091 class_compat_unregister(switch_class); 1092 #endif 1093 class_destroy(extcon_class); 1094 } 1095 module_exit(extcon_class_exit); 1096 1097 MODULE_AUTHOR("Chanwoo Choi <cw00.choi@samsung.com>"); 1098 MODULE_AUTHOR("Mike Lockwood <lockwood@android.com>"); 1099 MODULE_AUTHOR("Donggeun Kim <dg77.kim@samsung.com>"); 1100 MODULE_AUTHOR("MyungJoo Ham <myungjoo.ham@samsung.com>"); 1101 MODULE_DESCRIPTION("External connector (extcon) class driver"); 1102 MODULE_LICENSE("GPL"); 1103