1 /* 2 * Universal power supply monitor class 3 * 4 * Copyright © 2007 Anton Vorontsov <cbou@mail.ru> 5 * Copyright © 2004 Szabolcs Gyurko 6 * Copyright © 2003 Ian Molton <spyro@f2s.com> 7 * 8 * Modified: 2004, Oct Szabolcs Gyurko 9 * 10 * You may use this code as per GPL version 2 11 */ 12 13 #include <linux/module.h> 14 #include <linux/types.h> 15 #include <linux/init.h> 16 #include <linux/slab.h> 17 #include <linux/delay.h> 18 #include <linux/device.h> 19 #include <linux/notifier.h> 20 #include <linux/err.h> 21 #include <linux/of.h> 22 #include <linux/power_supply.h> 23 #include <linux/property.h> 24 #include <linux/thermal.h> 25 #include "power_supply.h" 26 27 /* exported for the APM Power driver, APM emulation */ 28 struct class *power_supply_class; 29 EXPORT_SYMBOL_GPL(power_supply_class); 30 31 ATOMIC_NOTIFIER_HEAD(power_supply_notifier); 32 EXPORT_SYMBOL_GPL(power_supply_notifier); 33 34 static struct device_type power_supply_dev_type; 35 36 #define POWER_SUPPLY_DEFERRED_REGISTER_TIME msecs_to_jiffies(10) 37 38 static bool __power_supply_is_supplied_by(struct power_supply *supplier, 39 struct power_supply *supply) 40 { 41 int i; 42 43 if (!supply->supplied_from && !supplier->supplied_to) 44 return false; 45 46 /* Support both supplied_to and supplied_from modes */ 47 if (supply->supplied_from) { 48 if (!supplier->desc->name) 49 return false; 50 for (i = 0; i < supply->num_supplies; i++) 51 if (!strcmp(supplier->desc->name, supply->supplied_from[i])) 52 return true; 53 } else { 54 if (!supply->desc->name) 55 return false; 56 for (i = 0; i < supplier->num_supplicants; i++) 57 if (!strcmp(supplier->supplied_to[i], supply->desc->name)) 58 return true; 59 } 60 61 return false; 62 } 63 64 static int __power_supply_changed_work(struct device *dev, void *data) 65 { 66 struct power_supply *psy = data; 67 struct power_supply *pst = dev_get_drvdata(dev); 68 69 if (__power_supply_is_supplied_by(psy, pst)) { 70 if (pst->desc->external_power_changed) 71 pst->desc->external_power_changed(pst); 72 } 73 74 return 0; 75 } 76 77 static void power_supply_changed_work(struct work_struct *work) 78 { 79 unsigned long flags; 80 struct power_supply *psy = container_of(work, struct power_supply, 81 changed_work); 82 83 dev_dbg(&psy->dev, "%s\n", __func__); 84 85 spin_lock_irqsave(&psy->changed_lock, flags); 86 /* 87 * Check 'changed' here to avoid issues due to race between 88 * power_supply_changed() and this routine. In worst case 89 * power_supply_changed() can be called again just before we take above 90 * lock. During the first call of this routine we will mark 'changed' as 91 * false and it will stay false for the next call as well. 92 */ 93 if (likely(psy->changed)) { 94 psy->changed = false; 95 spin_unlock_irqrestore(&psy->changed_lock, flags); 96 class_for_each_device(power_supply_class, NULL, psy, 97 __power_supply_changed_work); 98 power_supply_update_leds(psy); 99 atomic_notifier_call_chain(&power_supply_notifier, 100 PSY_EVENT_PROP_CHANGED, psy); 101 kobject_uevent(&psy->dev.kobj, KOBJ_CHANGE); 102 spin_lock_irqsave(&psy->changed_lock, flags); 103 } 104 105 /* 106 * Hold the wakeup_source until all events are processed. 107 * power_supply_changed() might have called again and have set 'changed' 108 * to true. 109 */ 110 if (likely(!psy->changed)) 111 pm_relax(&psy->dev); 112 spin_unlock_irqrestore(&psy->changed_lock, flags); 113 } 114 115 void power_supply_changed(struct power_supply *psy) 116 { 117 unsigned long flags; 118 119 dev_dbg(&psy->dev, "%s\n", __func__); 120 121 spin_lock_irqsave(&psy->changed_lock, flags); 122 psy->changed = true; 123 pm_stay_awake(&psy->dev); 124 spin_unlock_irqrestore(&psy->changed_lock, flags); 125 schedule_work(&psy->changed_work); 126 } 127 EXPORT_SYMBOL_GPL(power_supply_changed); 128 129 /* 130 * Notify that power supply was registered after parent finished the probing. 131 * 132 * Often power supply is registered from driver's probe function. However 133 * calling power_supply_changed() directly from power_supply_register() 134 * would lead to execution of get_property() function provided by the driver 135 * too early - before the probe ends. 136 * 137 * Avoid that by waiting on parent's mutex. 138 */ 139 static void power_supply_deferred_register_work(struct work_struct *work) 140 { 141 struct power_supply *psy = container_of(work, struct power_supply, 142 deferred_register_work.work); 143 144 if (psy->dev.parent) { 145 while (!mutex_trylock(&psy->dev.parent->mutex)) { 146 if (psy->removing) 147 return; 148 msleep(10); 149 } 150 } 151 152 power_supply_changed(psy); 153 154 if (psy->dev.parent) 155 mutex_unlock(&psy->dev.parent->mutex); 156 } 157 158 #ifdef CONFIG_OF 159 #include <linux/of.h> 160 161 static int __power_supply_populate_supplied_from(struct device *dev, 162 void *data) 163 { 164 struct power_supply *psy = data; 165 struct power_supply *epsy = dev_get_drvdata(dev); 166 struct device_node *np; 167 int i = 0; 168 169 do { 170 np = of_parse_phandle(psy->of_node, "power-supplies", i++); 171 if (!np) 172 break; 173 174 if (np == epsy->of_node) { 175 dev_info(&psy->dev, "%s: Found supply : %s\n", 176 psy->desc->name, epsy->desc->name); 177 psy->supplied_from[i-1] = (char *)epsy->desc->name; 178 psy->num_supplies++; 179 of_node_put(np); 180 break; 181 } 182 of_node_put(np); 183 } while (np); 184 185 return 0; 186 } 187 188 static int power_supply_populate_supplied_from(struct power_supply *psy) 189 { 190 int error; 191 192 error = class_for_each_device(power_supply_class, NULL, psy, 193 __power_supply_populate_supplied_from); 194 195 dev_dbg(&psy->dev, "%s %d\n", __func__, error); 196 197 return error; 198 } 199 200 static int __power_supply_find_supply_from_node(struct device *dev, 201 void *data) 202 { 203 struct device_node *np = data; 204 struct power_supply *epsy = dev_get_drvdata(dev); 205 206 /* returning non-zero breaks out of class_for_each_device loop */ 207 if (epsy->of_node == np) 208 return 1; 209 210 return 0; 211 } 212 213 static int power_supply_find_supply_from_node(struct device_node *supply_node) 214 { 215 int error; 216 217 /* 218 * class_for_each_device() either returns its own errors or values 219 * returned by __power_supply_find_supply_from_node(). 220 * 221 * __power_supply_find_supply_from_node() will return 0 (no match) 222 * or 1 (match). 223 * 224 * We return 0 if class_for_each_device() returned 1, -EPROBE_DEFER if 225 * it returned 0, or error as returned by it. 226 */ 227 error = class_for_each_device(power_supply_class, NULL, supply_node, 228 __power_supply_find_supply_from_node); 229 230 return error ? (error == 1 ? 0 : error) : -EPROBE_DEFER; 231 } 232 233 static int power_supply_check_supplies(struct power_supply *psy) 234 { 235 struct device_node *np; 236 int cnt = 0; 237 238 /* If there is already a list honor it */ 239 if (psy->supplied_from && psy->num_supplies > 0) 240 return 0; 241 242 /* No device node found, nothing to do */ 243 if (!psy->of_node) 244 return 0; 245 246 do { 247 int ret; 248 249 np = of_parse_phandle(psy->of_node, "power-supplies", cnt++); 250 if (!np) 251 break; 252 253 ret = power_supply_find_supply_from_node(np); 254 of_node_put(np); 255 256 if (ret) { 257 dev_dbg(&psy->dev, "Failed to find supply!\n"); 258 return ret; 259 } 260 } while (np); 261 262 /* Missing valid "power-supplies" entries */ 263 if (cnt == 1) 264 return 0; 265 266 /* All supplies found, allocate char ** array for filling */ 267 psy->supplied_from = devm_kzalloc(&psy->dev, sizeof(psy->supplied_from), 268 GFP_KERNEL); 269 if (!psy->supplied_from) 270 return -ENOMEM; 271 272 *psy->supplied_from = devm_kcalloc(&psy->dev, 273 cnt - 1, sizeof(char *), 274 GFP_KERNEL); 275 if (!*psy->supplied_from) 276 return -ENOMEM; 277 278 return power_supply_populate_supplied_from(psy); 279 } 280 #else 281 static int power_supply_check_supplies(struct power_supply *psy) 282 { 283 int nval, ret; 284 285 if (!psy->dev.parent) 286 return 0; 287 288 nval = device_property_read_string_array(psy->dev.parent, 289 "supplied-from", NULL, 0); 290 if (nval <= 0) 291 return 0; 292 293 psy->supplied_from = devm_kmalloc_array(&psy->dev, nval, 294 sizeof(char *), GFP_KERNEL); 295 if (!psy->supplied_from) 296 return -ENOMEM; 297 298 ret = device_property_read_string_array(psy->dev.parent, 299 "supplied-from", (const char **)psy->supplied_from, nval); 300 if (ret < 0) 301 return ret; 302 303 psy->num_supplies = nval; 304 305 return 0; 306 } 307 #endif 308 309 struct psy_am_i_supplied_data { 310 struct power_supply *psy; 311 unsigned int count; 312 }; 313 314 static int __power_supply_am_i_supplied(struct device *dev, void *_data) 315 { 316 union power_supply_propval ret = {0,}; 317 struct power_supply *epsy = dev_get_drvdata(dev); 318 struct psy_am_i_supplied_data *data = _data; 319 320 if (__power_supply_is_supplied_by(epsy, data->psy)) { 321 data->count++; 322 if (!epsy->desc->get_property(epsy, POWER_SUPPLY_PROP_ONLINE, 323 &ret)) 324 return ret.intval; 325 } 326 327 return 0; 328 } 329 330 int power_supply_am_i_supplied(struct power_supply *psy) 331 { 332 struct psy_am_i_supplied_data data = { psy, 0 }; 333 int error; 334 335 error = class_for_each_device(power_supply_class, NULL, &data, 336 __power_supply_am_i_supplied); 337 338 dev_dbg(&psy->dev, "%s count %u err %d\n", __func__, data.count, error); 339 340 if (data.count == 0) 341 return -ENODEV; 342 343 return error; 344 } 345 EXPORT_SYMBOL_GPL(power_supply_am_i_supplied); 346 347 static int __power_supply_is_system_supplied(struct device *dev, void *data) 348 { 349 union power_supply_propval ret = {0,}; 350 struct power_supply *psy = dev_get_drvdata(dev); 351 unsigned int *count = data; 352 353 (*count)++; 354 if (psy->desc->type != POWER_SUPPLY_TYPE_BATTERY) 355 if (!psy->desc->get_property(psy, POWER_SUPPLY_PROP_ONLINE, 356 &ret)) 357 return ret.intval; 358 359 return 0; 360 } 361 362 int power_supply_is_system_supplied(void) 363 { 364 int error; 365 unsigned int count = 0; 366 367 error = class_for_each_device(power_supply_class, NULL, &count, 368 __power_supply_is_system_supplied); 369 370 /* 371 * If no power class device was found at all, most probably we are 372 * running on a desktop system, so assume we are on mains power. 373 */ 374 if (count == 0) 375 return 1; 376 377 return error; 378 } 379 EXPORT_SYMBOL_GPL(power_supply_is_system_supplied); 380 381 static int __power_supply_get_supplier_max_current(struct device *dev, 382 void *data) 383 { 384 union power_supply_propval ret = {0,}; 385 struct power_supply *epsy = dev_get_drvdata(dev); 386 struct power_supply *psy = data; 387 388 if (__power_supply_is_supplied_by(epsy, psy)) 389 if (!epsy->desc->get_property(epsy, 390 POWER_SUPPLY_PROP_CURRENT_MAX, 391 &ret)) 392 return ret.intval; 393 394 return 0; 395 } 396 397 int power_supply_set_input_current_limit_from_supplier(struct power_supply *psy) 398 { 399 union power_supply_propval val = {0,}; 400 int curr; 401 402 if (!psy->desc->set_property) 403 return -EINVAL; 404 405 /* 406 * This function is not intended for use with a supply with multiple 407 * suppliers, we simply pick the first supply to report a non 0 408 * max-current. 409 */ 410 curr = class_for_each_device(power_supply_class, NULL, psy, 411 __power_supply_get_supplier_max_current); 412 if (curr <= 0) 413 return (curr == 0) ? -ENODEV : curr; 414 415 val.intval = curr; 416 417 return psy->desc->set_property(psy, 418 POWER_SUPPLY_PROP_INPUT_CURRENT_LIMIT, &val); 419 } 420 EXPORT_SYMBOL_GPL(power_supply_set_input_current_limit_from_supplier); 421 422 int power_supply_set_battery_charged(struct power_supply *psy) 423 { 424 if (atomic_read(&psy->use_cnt) >= 0 && 425 psy->desc->type == POWER_SUPPLY_TYPE_BATTERY && 426 psy->desc->set_charged) { 427 psy->desc->set_charged(psy); 428 return 0; 429 } 430 431 return -EINVAL; 432 } 433 EXPORT_SYMBOL_GPL(power_supply_set_battery_charged); 434 435 static int power_supply_match_device_by_name(struct device *dev, const void *data) 436 { 437 const char *name = data; 438 struct power_supply *psy = dev_get_drvdata(dev); 439 440 return strcmp(psy->desc->name, name) == 0; 441 } 442 443 /** 444 * power_supply_get_by_name() - Search for a power supply and returns its ref 445 * @name: Power supply name to fetch 446 * 447 * If power supply was found, it increases reference count for the 448 * internal power supply's device. The user should power_supply_put() 449 * after usage. 450 * 451 * Return: On success returns a reference to a power supply with 452 * matching name equals to @name, a NULL otherwise. 453 */ 454 struct power_supply *power_supply_get_by_name(const char *name) 455 { 456 struct power_supply *psy = NULL; 457 struct device *dev = class_find_device(power_supply_class, NULL, name, 458 power_supply_match_device_by_name); 459 460 if (dev) { 461 psy = dev_get_drvdata(dev); 462 atomic_inc(&psy->use_cnt); 463 } 464 465 return psy; 466 } 467 EXPORT_SYMBOL_GPL(power_supply_get_by_name); 468 469 /** 470 * power_supply_put() - Drop reference obtained with power_supply_get_by_name 471 * @psy: Reference to put 472 * 473 * The reference to power supply should be put before unregistering 474 * the power supply. 475 */ 476 void power_supply_put(struct power_supply *psy) 477 { 478 might_sleep(); 479 480 atomic_dec(&psy->use_cnt); 481 put_device(&psy->dev); 482 } 483 EXPORT_SYMBOL_GPL(power_supply_put); 484 485 #ifdef CONFIG_OF 486 static int power_supply_match_device_node(struct device *dev, const void *data) 487 { 488 return dev->parent && dev->parent->of_node == data; 489 } 490 491 /** 492 * power_supply_get_by_phandle() - Search for a power supply and returns its ref 493 * @np: Pointer to device node holding phandle property 494 * @property: Name of property holding a power supply name 495 * 496 * If power supply was found, it increases reference count for the 497 * internal power supply's device. The user should power_supply_put() 498 * after usage. 499 * 500 * Return: On success returns a reference to a power supply with 501 * matching name equals to value under @property, NULL or ERR_PTR otherwise. 502 */ 503 struct power_supply *power_supply_get_by_phandle(struct device_node *np, 504 const char *property) 505 { 506 struct device_node *power_supply_np; 507 struct power_supply *psy = NULL; 508 struct device *dev; 509 510 power_supply_np = of_parse_phandle(np, property, 0); 511 if (!power_supply_np) 512 return ERR_PTR(-ENODEV); 513 514 dev = class_find_device(power_supply_class, NULL, power_supply_np, 515 power_supply_match_device_node); 516 517 of_node_put(power_supply_np); 518 519 if (dev) { 520 psy = dev_get_drvdata(dev); 521 atomic_inc(&psy->use_cnt); 522 } 523 524 return psy; 525 } 526 EXPORT_SYMBOL_GPL(power_supply_get_by_phandle); 527 528 static void devm_power_supply_put(struct device *dev, void *res) 529 { 530 struct power_supply **psy = res; 531 532 power_supply_put(*psy); 533 } 534 535 /** 536 * devm_power_supply_get_by_phandle() - Resource managed version of 537 * power_supply_get_by_phandle() 538 * @dev: Pointer to device holding phandle property 539 * @property: Name of property holding a power supply phandle 540 * 541 * Return: On success returns a reference to a power supply with 542 * matching name equals to value under @property, NULL or ERR_PTR otherwise. 543 */ 544 struct power_supply *devm_power_supply_get_by_phandle(struct device *dev, 545 const char *property) 546 { 547 struct power_supply **ptr, *psy; 548 549 if (!dev->of_node) 550 return ERR_PTR(-ENODEV); 551 552 ptr = devres_alloc(devm_power_supply_put, sizeof(*ptr), GFP_KERNEL); 553 if (!ptr) 554 return ERR_PTR(-ENOMEM); 555 556 psy = power_supply_get_by_phandle(dev->of_node, property); 557 if (IS_ERR_OR_NULL(psy)) { 558 devres_free(ptr); 559 } else { 560 *ptr = psy; 561 devres_add(dev, ptr); 562 } 563 return psy; 564 } 565 EXPORT_SYMBOL_GPL(devm_power_supply_get_by_phandle); 566 #endif /* CONFIG_OF */ 567 568 int power_supply_get_battery_info(struct power_supply *psy, 569 struct power_supply_battery_info *info) 570 { 571 struct device_node *battery_np; 572 const char *value; 573 int err; 574 575 info->energy_full_design_uwh = -EINVAL; 576 info->charge_full_design_uah = -EINVAL; 577 info->voltage_min_design_uv = -EINVAL; 578 info->precharge_current_ua = -EINVAL; 579 info->charge_term_current_ua = -EINVAL; 580 info->constant_charge_current_max_ua = -EINVAL; 581 info->constant_charge_voltage_max_uv = -EINVAL; 582 583 if (!psy->of_node) { 584 dev_warn(&psy->dev, "%s currently only supports devicetree\n", 585 __func__); 586 return -ENXIO; 587 } 588 589 battery_np = of_parse_phandle(psy->of_node, "monitored-battery", 0); 590 if (!battery_np) 591 return -ENODEV; 592 593 err = of_property_read_string(battery_np, "compatible", &value); 594 if (err) 595 return err; 596 597 if (strcmp("simple-battery", value)) 598 return -ENODEV; 599 600 /* The property and field names below must correspond to elements 601 * in enum power_supply_property. For reasoning, see 602 * Documentation/power/power_supply_class.txt. 603 */ 604 605 of_property_read_u32(battery_np, "energy-full-design-microwatt-hours", 606 &info->energy_full_design_uwh); 607 of_property_read_u32(battery_np, "charge-full-design-microamp-hours", 608 &info->charge_full_design_uah); 609 of_property_read_u32(battery_np, "voltage-min-design-microvolt", 610 &info->voltage_min_design_uv); 611 of_property_read_u32(battery_np, "precharge-current-microamp", 612 &info->precharge_current_ua); 613 of_property_read_u32(battery_np, "charge-term-current-microamp", 614 &info->charge_term_current_ua); 615 of_property_read_u32(battery_np, "constant_charge_current_max_microamp", 616 &info->constant_charge_current_max_ua); 617 of_property_read_u32(battery_np, "constant_charge_voltage_max_microvolt", 618 &info->constant_charge_voltage_max_uv); 619 620 return 0; 621 } 622 EXPORT_SYMBOL_GPL(power_supply_get_battery_info); 623 624 int power_supply_get_property(struct power_supply *psy, 625 enum power_supply_property psp, 626 union power_supply_propval *val) 627 { 628 if (atomic_read(&psy->use_cnt) <= 0) { 629 if (!psy->initialized) 630 return -EAGAIN; 631 return -ENODEV; 632 } 633 634 return psy->desc->get_property(psy, psp, val); 635 } 636 EXPORT_SYMBOL_GPL(power_supply_get_property); 637 638 int power_supply_set_property(struct power_supply *psy, 639 enum power_supply_property psp, 640 const union power_supply_propval *val) 641 { 642 if (atomic_read(&psy->use_cnt) <= 0 || !psy->desc->set_property) 643 return -ENODEV; 644 645 return psy->desc->set_property(psy, psp, val); 646 } 647 EXPORT_SYMBOL_GPL(power_supply_set_property); 648 649 int power_supply_property_is_writeable(struct power_supply *psy, 650 enum power_supply_property psp) 651 { 652 if (atomic_read(&psy->use_cnt) <= 0 || 653 !psy->desc->property_is_writeable) 654 return -ENODEV; 655 656 return psy->desc->property_is_writeable(psy, psp); 657 } 658 EXPORT_SYMBOL_GPL(power_supply_property_is_writeable); 659 660 void power_supply_external_power_changed(struct power_supply *psy) 661 { 662 if (atomic_read(&psy->use_cnt) <= 0 || 663 !psy->desc->external_power_changed) 664 return; 665 666 psy->desc->external_power_changed(psy); 667 } 668 EXPORT_SYMBOL_GPL(power_supply_external_power_changed); 669 670 int power_supply_powers(struct power_supply *psy, struct device *dev) 671 { 672 return sysfs_create_link(&psy->dev.kobj, &dev->kobj, "powers"); 673 } 674 EXPORT_SYMBOL_GPL(power_supply_powers); 675 676 static void power_supply_dev_release(struct device *dev) 677 { 678 struct power_supply *psy = to_power_supply(dev); 679 dev_dbg(dev, "%s\n", __func__); 680 kfree(psy); 681 } 682 683 int power_supply_reg_notifier(struct notifier_block *nb) 684 { 685 return atomic_notifier_chain_register(&power_supply_notifier, nb); 686 } 687 EXPORT_SYMBOL_GPL(power_supply_reg_notifier); 688 689 void power_supply_unreg_notifier(struct notifier_block *nb) 690 { 691 atomic_notifier_chain_unregister(&power_supply_notifier, nb); 692 } 693 EXPORT_SYMBOL_GPL(power_supply_unreg_notifier); 694 695 #ifdef CONFIG_THERMAL 696 static int power_supply_read_temp(struct thermal_zone_device *tzd, 697 int *temp) 698 { 699 struct power_supply *psy; 700 union power_supply_propval val; 701 int ret; 702 703 WARN_ON(tzd == NULL); 704 psy = tzd->devdata; 705 ret = power_supply_get_property(psy, POWER_SUPPLY_PROP_TEMP, &val); 706 if (ret) 707 return ret; 708 709 /* Convert tenths of degree Celsius to milli degree Celsius. */ 710 *temp = val.intval * 100; 711 712 return ret; 713 } 714 715 static struct thermal_zone_device_ops psy_tzd_ops = { 716 .get_temp = power_supply_read_temp, 717 }; 718 719 static int psy_register_thermal(struct power_supply *psy) 720 { 721 int i; 722 723 if (psy->desc->no_thermal) 724 return 0; 725 726 /* Register battery zone device psy reports temperature */ 727 for (i = 0; i < psy->desc->num_properties; i++) { 728 if (psy->desc->properties[i] == POWER_SUPPLY_PROP_TEMP) { 729 psy->tzd = thermal_zone_device_register(psy->desc->name, 730 0, 0, psy, &psy_tzd_ops, NULL, 0, 0); 731 return PTR_ERR_OR_ZERO(psy->tzd); 732 } 733 } 734 return 0; 735 } 736 737 static void psy_unregister_thermal(struct power_supply *psy) 738 { 739 if (IS_ERR_OR_NULL(psy->tzd)) 740 return; 741 thermal_zone_device_unregister(psy->tzd); 742 } 743 744 /* thermal cooling device callbacks */ 745 static int ps_get_max_charge_cntl_limit(struct thermal_cooling_device *tcd, 746 unsigned long *state) 747 { 748 struct power_supply *psy; 749 union power_supply_propval val; 750 int ret; 751 752 psy = tcd->devdata; 753 ret = power_supply_get_property(psy, 754 POWER_SUPPLY_PROP_CHARGE_CONTROL_LIMIT_MAX, &val); 755 if (ret) 756 return ret; 757 758 *state = val.intval; 759 760 return ret; 761 } 762 763 static int ps_get_cur_chrage_cntl_limit(struct thermal_cooling_device *tcd, 764 unsigned long *state) 765 { 766 struct power_supply *psy; 767 union power_supply_propval val; 768 int ret; 769 770 psy = tcd->devdata; 771 ret = power_supply_get_property(psy, 772 POWER_SUPPLY_PROP_CHARGE_CONTROL_LIMIT, &val); 773 if (ret) 774 return ret; 775 776 *state = val.intval; 777 778 return ret; 779 } 780 781 static int ps_set_cur_charge_cntl_limit(struct thermal_cooling_device *tcd, 782 unsigned long state) 783 { 784 struct power_supply *psy; 785 union power_supply_propval val; 786 int ret; 787 788 psy = tcd->devdata; 789 val.intval = state; 790 ret = psy->desc->set_property(psy, 791 POWER_SUPPLY_PROP_CHARGE_CONTROL_LIMIT, &val); 792 793 return ret; 794 } 795 796 static const struct thermal_cooling_device_ops psy_tcd_ops = { 797 .get_max_state = ps_get_max_charge_cntl_limit, 798 .get_cur_state = ps_get_cur_chrage_cntl_limit, 799 .set_cur_state = ps_set_cur_charge_cntl_limit, 800 }; 801 802 static int psy_register_cooler(struct power_supply *psy) 803 { 804 int i; 805 806 /* Register for cooling device if psy can control charging */ 807 for (i = 0; i < psy->desc->num_properties; i++) { 808 if (psy->desc->properties[i] == 809 POWER_SUPPLY_PROP_CHARGE_CONTROL_LIMIT) { 810 psy->tcd = thermal_cooling_device_register( 811 (char *)psy->desc->name, 812 psy, &psy_tcd_ops); 813 return PTR_ERR_OR_ZERO(psy->tcd); 814 } 815 } 816 return 0; 817 } 818 819 static void psy_unregister_cooler(struct power_supply *psy) 820 { 821 if (IS_ERR_OR_NULL(psy->tcd)) 822 return; 823 thermal_cooling_device_unregister(psy->tcd); 824 } 825 #else 826 static int psy_register_thermal(struct power_supply *psy) 827 { 828 return 0; 829 } 830 831 static void psy_unregister_thermal(struct power_supply *psy) 832 { 833 } 834 835 static int psy_register_cooler(struct power_supply *psy) 836 { 837 return 0; 838 } 839 840 static void psy_unregister_cooler(struct power_supply *psy) 841 { 842 } 843 #endif 844 845 static struct power_supply *__must_check 846 __power_supply_register(struct device *parent, 847 const struct power_supply_desc *desc, 848 const struct power_supply_config *cfg, 849 bool ws) 850 { 851 struct device *dev; 852 struct power_supply *psy; 853 int i, rc; 854 855 if (!parent) 856 pr_warn("%s: Expected proper parent device for '%s'\n", 857 __func__, desc->name); 858 859 if (!desc || !desc->name || !desc->properties || !desc->num_properties) 860 return ERR_PTR(-EINVAL); 861 862 for (i = 0; i < desc->num_properties; ++i) { 863 if ((desc->properties[i] == POWER_SUPPLY_PROP_USB_TYPE) && 864 (!desc->usb_types || !desc->num_usb_types)) 865 return ERR_PTR(-EINVAL); 866 } 867 868 psy = kzalloc(sizeof(*psy), GFP_KERNEL); 869 if (!psy) 870 return ERR_PTR(-ENOMEM); 871 872 dev = &psy->dev; 873 874 device_initialize(dev); 875 876 dev->class = power_supply_class; 877 dev->type = &power_supply_dev_type; 878 dev->parent = parent; 879 dev->release = power_supply_dev_release; 880 dev_set_drvdata(dev, psy); 881 psy->desc = desc; 882 if (cfg) { 883 psy->drv_data = cfg->drv_data; 884 psy->of_node = 885 cfg->fwnode ? to_of_node(cfg->fwnode) : cfg->of_node; 886 psy->supplied_to = cfg->supplied_to; 887 psy->num_supplicants = cfg->num_supplicants; 888 } 889 890 rc = dev_set_name(dev, "%s", desc->name); 891 if (rc) 892 goto dev_set_name_failed; 893 894 INIT_WORK(&psy->changed_work, power_supply_changed_work); 895 INIT_DELAYED_WORK(&psy->deferred_register_work, 896 power_supply_deferred_register_work); 897 898 rc = power_supply_check_supplies(psy); 899 if (rc) { 900 dev_info(dev, "Not all required supplies found, defer probe\n"); 901 goto check_supplies_failed; 902 } 903 904 spin_lock_init(&psy->changed_lock); 905 rc = device_init_wakeup(dev, ws); 906 if (rc) 907 goto wakeup_init_failed; 908 909 rc = device_add(dev); 910 if (rc) 911 goto device_add_failed; 912 913 rc = psy_register_thermal(psy); 914 if (rc) 915 goto register_thermal_failed; 916 917 rc = psy_register_cooler(psy); 918 if (rc) 919 goto register_cooler_failed; 920 921 rc = power_supply_create_triggers(psy); 922 if (rc) 923 goto create_triggers_failed; 924 925 /* 926 * Update use_cnt after any uevents (most notably from device_add()). 927 * We are here still during driver's probe but 928 * the power_supply_uevent() calls back driver's get_property 929 * method so: 930 * 1. Driver did not assigned the returned struct power_supply, 931 * 2. Driver could not finish initialization (anything in its probe 932 * after calling power_supply_register()). 933 */ 934 atomic_inc(&psy->use_cnt); 935 psy->initialized = true; 936 937 queue_delayed_work(system_power_efficient_wq, 938 &psy->deferred_register_work, 939 POWER_SUPPLY_DEFERRED_REGISTER_TIME); 940 941 return psy; 942 943 create_triggers_failed: 944 psy_unregister_cooler(psy); 945 register_cooler_failed: 946 psy_unregister_thermal(psy); 947 register_thermal_failed: 948 device_del(dev); 949 device_add_failed: 950 wakeup_init_failed: 951 check_supplies_failed: 952 dev_set_name_failed: 953 put_device(dev); 954 return ERR_PTR(rc); 955 } 956 957 /** 958 * power_supply_register() - Register new power supply 959 * @parent: Device to be a parent of power supply's device, usually 960 * the device which probe function calls this 961 * @desc: Description of power supply, must be valid through whole 962 * lifetime of this power supply 963 * @cfg: Run-time specific configuration accessed during registering, 964 * may be NULL 965 * 966 * Return: A pointer to newly allocated power_supply on success 967 * or ERR_PTR otherwise. 968 * Use power_supply_unregister() on returned power_supply pointer to release 969 * resources. 970 */ 971 struct power_supply *__must_check power_supply_register(struct device *parent, 972 const struct power_supply_desc *desc, 973 const struct power_supply_config *cfg) 974 { 975 return __power_supply_register(parent, desc, cfg, true); 976 } 977 EXPORT_SYMBOL_GPL(power_supply_register); 978 979 /** 980 * power_supply_register_no_ws() - Register new non-waking-source power supply 981 * @parent: Device to be a parent of power supply's device, usually 982 * the device which probe function calls this 983 * @desc: Description of power supply, must be valid through whole 984 * lifetime of this power supply 985 * @cfg: Run-time specific configuration accessed during registering, 986 * may be NULL 987 * 988 * Return: A pointer to newly allocated power_supply on success 989 * or ERR_PTR otherwise. 990 * Use power_supply_unregister() on returned power_supply pointer to release 991 * resources. 992 */ 993 struct power_supply *__must_check 994 power_supply_register_no_ws(struct device *parent, 995 const struct power_supply_desc *desc, 996 const struct power_supply_config *cfg) 997 { 998 return __power_supply_register(parent, desc, cfg, false); 999 } 1000 EXPORT_SYMBOL_GPL(power_supply_register_no_ws); 1001 1002 static void devm_power_supply_release(struct device *dev, void *res) 1003 { 1004 struct power_supply **psy = res; 1005 1006 power_supply_unregister(*psy); 1007 } 1008 1009 /** 1010 * devm_power_supply_register() - Register managed power supply 1011 * @parent: Device to be a parent of power supply's device, usually 1012 * the device which probe function calls this 1013 * @desc: Description of power supply, must be valid through whole 1014 * lifetime of this power supply 1015 * @cfg: Run-time specific configuration accessed during registering, 1016 * may be NULL 1017 * 1018 * Return: A pointer to newly allocated power_supply on success 1019 * or ERR_PTR otherwise. 1020 * The returned power_supply pointer will be automatically unregistered 1021 * on driver detach. 1022 */ 1023 struct power_supply *__must_check 1024 devm_power_supply_register(struct device *parent, 1025 const struct power_supply_desc *desc, 1026 const struct power_supply_config *cfg) 1027 { 1028 struct power_supply **ptr, *psy; 1029 1030 ptr = devres_alloc(devm_power_supply_release, sizeof(*ptr), GFP_KERNEL); 1031 1032 if (!ptr) 1033 return ERR_PTR(-ENOMEM); 1034 psy = __power_supply_register(parent, desc, cfg, true); 1035 if (IS_ERR(psy)) { 1036 devres_free(ptr); 1037 } else { 1038 *ptr = psy; 1039 devres_add(parent, ptr); 1040 } 1041 return psy; 1042 } 1043 EXPORT_SYMBOL_GPL(devm_power_supply_register); 1044 1045 /** 1046 * devm_power_supply_register_no_ws() - Register managed non-waking-source power supply 1047 * @parent: Device to be a parent of power supply's device, usually 1048 * the device which probe function calls this 1049 * @desc: Description of power supply, must be valid through whole 1050 * lifetime of this power supply 1051 * @cfg: Run-time specific configuration accessed during registering, 1052 * may be NULL 1053 * 1054 * Return: A pointer to newly allocated power_supply on success 1055 * or ERR_PTR otherwise. 1056 * The returned power_supply pointer will be automatically unregistered 1057 * on driver detach. 1058 */ 1059 struct power_supply *__must_check 1060 devm_power_supply_register_no_ws(struct device *parent, 1061 const struct power_supply_desc *desc, 1062 const struct power_supply_config *cfg) 1063 { 1064 struct power_supply **ptr, *psy; 1065 1066 ptr = devres_alloc(devm_power_supply_release, sizeof(*ptr), GFP_KERNEL); 1067 1068 if (!ptr) 1069 return ERR_PTR(-ENOMEM); 1070 psy = __power_supply_register(parent, desc, cfg, false); 1071 if (IS_ERR(psy)) { 1072 devres_free(ptr); 1073 } else { 1074 *ptr = psy; 1075 devres_add(parent, ptr); 1076 } 1077 return psy; 1078 } 1079 EXPORT_SYMBOL_GPL(devm_power_supply_register_no_ws); 1080 1081 /** 1082 * power_supply_unregister() - Remove this power supply from system 1083 * @psy: Pointer to power supply to unregister 1084 * 1085 * Remove this power supply from the system. The resources of power supply 1086 * will be freed here or on last power_supply_put() call. 1087 */ 1088 void power_supply_unregister(struct power_supply *psy) 1089 { 1090 WARN_ON(atomic_dec_return(&psy->use_cnt)); 1091 psy->removing = true; 1092 cancel_work_sync(&psy->changed_work); 1093 cancel_delayed_work_sync(&psy->deferred_register_work); 1094 sysfs_remove_link(&psy->dev.kobj, "powers"); 1095 power_supply_remove_triggers(psy); 1096 psy_unregister_cooler(psy); 1097 psy_unregister_thermal(psy); 1098 device_init_wakeup(&psy->dev, false); 1099 device_unregister(&psy->dev); 1100 } 1101 EXPORT_SYMBOL_GPL(power_supply_unregister); 1102 1103 void *power_supply_get_drvdata(struct power_supply *psy) 1104 { 1105 return psy->drv_data; 1106 } 1107 EXPORT_SYMBOL_GPL(power_supply_get_drvdata); 1108 1109 static int __init power_supply_class_init(void) 1110 { 1111 power_supply_class = class_create(THIS_MODULE, "power_supply"); 1112 1113 if (IS_ERR(power_supply_class)) 1114 return PTR_ERR(power_supply_class); 1115 1116 power_supply_class->dev_uevent = power_supply_uevent; 1117 power_supply_init_attrs(&power_supply_dev_type); 1118 1119 return 0; 1120 } 1121 1122 static void __exit power_supply_class_exit(void) 1123 { 1124 class_destroy(power_supply_class); 1125 } 1126 1127 subsys_initcall(power_supply_class_init); 1128 module_exit(power_supply_class_exit); 1129 1130 MODULE_DESCRIPTION("Universal power supply monitor class"); 1131 MODULE_AUTHOR("Ian Molton <spyro@f2s.com>, " 1132 "Szabolcs Gyurko, " 1133 "Anton Vorontsov <cbou@mail.ru>"); 1134 MODULE_LICENSE("GPL"); 1135