battery.c 25 KB

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  1. /*
  2. * battery.c - ACPI Battery Driver (Revision: 2.0)
  3. *
  4. * Copyright (C) 2007 Alexey Starikovskiy <astarikovskiy@suse.de>
  5. * Copyright (C) 2004-2007 Vladimir Lebedev <vladimir.p.lebedev@intel.com>
  6. * Copyright (C) 2001, 2002 Andy Grover <andrew.grover@intel.com>
  7. * Copyright (C) 2001, 2002 Paul Diefenbaugh <paul.s.diefenbaugh@intel.com>
  8. *
  9. * ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
  10. *
  11. * This program is free software; you can redistribute it and/or modify
  12. * it under the terms of the GNU General Public License as published by
  13. * the Free Software Foundation; either version 2 of the License, or (at
  14. * your option) any later version.
  15. *
  16. * This program is distributed in the hope that it will be useful, but
  17. * WITHOUT ANY WARRANTY; without even the implied warranty of
  18. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  19. * General Public License for more details.
  20. *
  21. * You should have received a copy of the GNU General Public License along
  22. * with this program; if not, write to the Free Software Foundation, Inc.,
  23. * 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA.
  24. *
  25. * ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
  26. */
  27. #include <linux/kernel.h>
  28. #include <linux/module.h>
  29. #include <linux/init.h>
  30. #include <linux/types.h>
  31. #include <linux/jiffies.h>
  32. #ifdef CONFIG_ACPI_PROCFS_POWER
  33. #include <linux/proc_fs.h>
  34. #include <linux/seq_file.h>
  35. #include <asm/uaccess.h>
  36. #endif
  37. #include <acpi/acpi_bus.h>
  38. #include <acpi/acpi_drivers.h>
  39. #ifdef CONFIG_ACPI_SYSFS_POWER
  40. #include <linux/power_supply.h>
  41. #endif
  42. #define ACPI_BATTERY_VALUE_UNKNOWN 0xFFFFFFFF
  43. #define ACPI_BATTERY_COMPONENT 0x00040000
  44. #define ACPI_BATTERY_CLASS "battery"
  45. #define ACPI_BATTERY_DEVICE_NAME "Battery"
  46. #define ACPI_BATTERY_NOTIFY_STATUS 0x80
  47. #define ACPI_BATTERY_NOTIFY_INFO 0x81
  48. #define _COMPONENT ACPI_BATTERY_COMPONENT
  49. ACPI_MODULE_NAME("battery");
  50. MODULE_AUTHOR("Paul Diefenbaugh");
  51. MODULE_AUTHOR("Alexey Starikovskiy <astarikovskiy@suse.de>");
  52. MODULE_DESCRIPTION("ACPI Battery Driver");
  53. MODULE_LICENSE("GPL");
  54. static unsigned int cache_time = 1000;
  55. module_param(cache_time, uint, 0644);
  56. MODULE_PARM_DESC(cache_time, "cache time in milliseconds");
  57. #ifdef CONFIG_ACPI_PROCFS_POWER
  58. extern struct proc_dir_entry *acpi_lock_battery_dir(void);
  59. extern void *acpi_unlock_battery_dir(struct proc_dir_entry *acpi_battery_dir);
  60. enum acpi_battery_files {
  61. info_tag = 0,
  62. state_tag,
  63. alarm_tag,
  64. ACPI_BATTERY_NUMFILES,
  65. };
  66. #endif
  67. static const struct acpi_device_id battery_device_ids[] = {
  68. {"PNP0C0A", 0},
  69. {"", 0},
  70. };
  71. MODULE_DEVICE_TABLE(acpi, battery_device_ids);
  72. struct acpi_battery {
  73. struct mutex lock;
  74. #ifdef CONFIG_ACPI_SYSFS_POWER
  75. struct power_supply bat;
  76. #endif
  77. struct acpi_device *device;
  78. unsigned long update_time;
  79. int current_now;
  80. int capacity_now;
  81. int voltage_now;
  82. int design_capacity;
  83. int full_charge_capacity;
  84. int technology;
  85. int design_voltage;
  86. int design_capacity_warning;
  87. int design_capacity_low;
  88. int capacity_granularity_1;
  89. int capacity_granularity_2;
  90. int alarm;
  91. char model_number[32];
  92. char serial_number[32];
  93. char type[32];
  94. char oem_info[32];
  95. int state;
  96. int power_unit;
  97. u8 alarm_present;
  98. };
  99. #define to_acpi_battery(x) container_of(x, struct acpi_battery, bat);
  100. inline int acpi_battery_present(struct acpi_battery *battery)
  101. {
  102. return battery->device->status.battery_present;
  103. }
  104. #ifdef CONFIG_ACPI_SYSFS_POWER
  105. static int acpi_battery_technology(struct acpi_battery *battery)
  106. {
  107. if (!strcasecmp("NiCd", battery->type))
  108. return POWER_SUPPLY_TECHNOLOGY_NiCd;
  109. if (!strcasecmp("NiMH", battery->type))
  110. return POWER_SUPPLY_TECHNOLOGY_NiMH;
  111. if (!strcasecmp("LION", battery->type))
  112. return POWER_SUPPLY_TECHNOLOGY_LION;
  113. if (!strncasecmp("LI-ION", battery->type, 6))
  114. return POWER_SUPPLY_TECHNOLOGY_LION;
  115. if (!strcasecmp("LiP", battery->type))
  116. return POWER_SUPPLY_TECHNOLOGY_LIPO;
  117. return POWER_SUPPLY_TECHNOLOGY_UNKNOWN;
  118. }
  119. static int acpi_battery_get_state(struct acpi_battery *battery);
  120. static int acpi_battery_get_property(struct power_supply *psy,
  121. enum power_supply_property psp,
  122. union power_supply_propval *val)
  123. {
  124. struct acpi_battery *battery = to_acpi_battery(psy);
  125. if (acpi_battery_present(battery)) {
  126. /* run battery update only if it is present */
  127. acpi_battery_get_state(battery);
  128. } else if (psp != POWER_SUPPLY_PROP_PRESENT)
  129. return -ENODEV;
  130. switch (psp) {
  131. case POWER_SUPPLY_PROP_STATUS:
  132. if (battery->state & 0x01)
  133. val->intval = POWER_SUPPLY_STATUS_DISCHARGING;
  134. else if (battery->state & 0x02)
  135. val->intval = POWER_SUPPLY_STATUS_CHARGING;
  136. else if (battery->state == 0)
  137. val->intval = POWER_SUPPLY_STATUS_FULL;
  138. else
  139. val->intval = POWER_SUPPLY_STATUS_UNKNOWN;
  140. break;
  141. case POWER_SUPPLY_PROP_PRESENT:
  142. val->intval = acpi_battery_present(battery);
  143. break;
  144. case POWER_SUPPLY_PROP_TECHNOLOGY:
  145. val->intval = acpi_battery_technology(battery);
  146. break;
  147. case POWER_SUPPLY_PROP_VOLTAGE_MIN_DESIGN:
  148. val->intval = battery->design_voltage * 1000;
  149. break;
  150. case POWER_SUPPLY_PROP_VOLTAGE_NOW:
  151. val->intval = battery->voltage_now * 1000;
  152. break;
  153. case POWER_SUPPLY_PROP_CURRENT_NOW:
  154. val->intval = battery->current_now * 1000;
  155. break;
  156. case POWER_SUPPLY_PROP_CHARGE_FULL_DESIGN:
  157. case POWER_SUPPLY_PROP_ENERGY_FULL_DESIGN:
  158. val->intval = battery->design_capacity * 1000;
  159. break;
  160. case POWER_SUPPLY_PROP_CHARGE_FULL:
  161. case POWER_SUPPLY_PROP_ENERGY_FULL:
  162. val->intval = battery->full_charge_capacity * 1000;
  163. break;
  164. case POWER_SUPPLY_PROP_CHARGE_NOW:
  165. case POWER_SUPPLY_PROP_ENERGY_NOW:
  166. val->intval = battery->capacity_now * 1000;
  167. break;
  168. case POWER_SUPPLY_PROP_MODEL_NAME:
  169. val->strval = battery->model_number;
  170. break;
  171. case POWER_SUPPLY_PROP_MANUFACTURER:
  172. val->strval = battery->oem_info;
  173. break;
  174. case POWER_SUPPLY_PROP_SERIAL_NUMBER:
  175. val->strval = battery->serial_number;
  176. break;
  177. default:
  178. return -EINVAL;
  179. }
  180. return 0;
  181. }
  182. static enum power_supply_property charge_battery_props[] = {
  183. POWER_SUPPLY_PROP_STATUS,
  184. POWER_SUPPLY_PROP_PRESENT,
  185. POWER_SUPPLY_PROP_TECHNOLOGY,
  186. POWER_SUPPLY_PROP_VOLTAGE_MIN_DESIGN,
  187. POWER_SUPPLY_PROP_VOLTAGE_NOW,
  188. POWER_SUPPLY_PROP_CURRENT_NOW,
  189. POWER_SUPPLY_PROP_CHARGE_FULL_DESIGN,
  190. POWER_SUPPLY_PROP_CHARGE_FULL,
  191. POWER_SUPPLY_PROP_CHARGE_NOW,
  192. POWER_SUPPLY_PROP_MODEL_NAME,
  193. POWER_SUPPLY_PROP_MANUFACTURER,
  194. POWER_SUPPLY_PROP_SERIAL_NUMBER,
  195. };
  196. static enum power_supply_property energy_battery_props[] = {
  197. POWER_SUPPLY_PROP_STATUS,
  198. POWER_SUPPLY_PROP_PRESENT,
  199. POWER_SUPPLY_PROP_TECHNOLOGY,
  200. POWER_SUPPLY_PROP_VOLTAGE_MIN_DESIGN,
  201. POWER_SUPPLY_PROP_VOLTAGE_NOW,
  202. POWER_SUPPLY_PROP_CURRENT_NOW,
  203. POWER_SUPPLY_PROP_ENERGY_FULL_DESIGN,
  204. POWER_SUPPLY_PROP_ENERGY_FULL,
  205. POWER_SUPPLY_PROP_ENERGY_NOW,
  206. POWER_SUPPLY_PROP_MODEL_NAME,
  207. POWER_SUPPLY_PROP_MANUFACTURER,
  208. POWER_SUPPLY_PROP_SERIAL_NUMBER,
  209. };
  210. #endif
  211. #ifdef CONFIG_ACPI_PROCFS_POWER
  212. inline char *acpi_battery_units(struct acpi_battery *battery)
  213. {
  214. return (battery->power_unit)?"mA":"mW";
  215. }
  216. #endif
  217. /* --------------------------------------------------------------------------
  218. Battery Management
  219. -------------------------------------------------------------------------- */
  220. struct acpi_offsets {
  221. size_t offset; /* offset inside struct acpi_sbs_battery */
  222. u8 mode; /* int or string? */
  223. };
  224. static struct acpi_offsets state_offsets[] = {
  225. {offsetof(struct acpi_battery, state), 0},
  226. {offsetof(struct acpi_battery, current_now), 0},
  227. {offsetof(struct acpi_battery, capacity_now), 0},
  228. {offsetof(struct acpi_battery, voltage_now), 0},
  229. };
  230. static struct acpi_offsets info_offsets[] = {
  231. {offsetof(struct acpi_battery, power_unit), 0},
  232. {offsetof(struct acpi_battery, design_capacity), 0},
  233. {offsetof(struct acpi_battery, full_charge_capacity), 0},
  234. {offsetof(struct acpi_battery, technology), 0},
  235. {offsetof(struct acpi_battery, design_voltage), 0},
  236. {offsetof(struct acpi_battery, design_capacity_warning), 0},
  237. {offsetof(struct acpi_battery, design_capacity_low), 0},
  238. {offsetof(struct acpi_battery, capacity_granularity_1), 0},
  239. {offsetof(struct acpi_battery, capacity_granularity_2), 0},
  240. {offsetof(struct acpi_battery, model_number), 1},
  241. {offsetof(struct acpi_battery, serial_number), 1},
  242. {offsetof(struct acpi_battery, type), 1},
  243. {offsetof(struct acpi_battery, oem_info), 1},
  244. };
  245. static int extract_package(struct acpi_battery *battery,
  246. union acpi_object *package,
  247. struct acpi_offsets *offsets, int num)
  248. {
  249. int i;
  250. union acpi_object *element;
  251. if (package->type != ACPI_TYPE_PACKAGE)
  252. return -EFAULT;
  253. for (i = 0; i < num; ++i) {
  254. if (package->package.count <= i)
  255. return -EFAULT;
  256. element = &package->package.elements[i];
  257. if (offsets[i].mode) {
  258. u8 *ptr = (u8 *)battery + offsets[i].offset;
  259. if (element->type == ACPI_TYPE_STRING ||
  260. element->type == ACPI_TYPE_BUFFER)
  261. strncpy(ptr, element->string.pointer, 32);
  262. else if (element->type == ACPI_TYPE_INTEGER) {
  263. strncpy(ptr, (u8 *)&element->integer.value,
  264. sizeof(acpi_integer));
  265. ptr[sizeof(acpi_integer)] = 0;
  266. } else
  267. *ptr = 0; /* don't have value */
  268. } else {
  269. int *x = (int *)((u8 *)battery + offsets[i].offset);
  270. *x = (element->type == ACPI_TYPE_INTEGER) ?
  271. element->integer.value : -1;
  272. }
  273. }
  274. return 0;
  275. }
  276. static int acpi_battery_get_status(struct acpi_battery *battery)
  277. {
  278. if (acpi_bus_get_status(battery->device)) {
  279. ACPI_EXCEPTION((AE_INFO, AE_ERROR, "Evaluating _STA"));
  280. return -ENODEV;
  281. }
  282. return 0;
  283. }
  284. static int acpi_battery_get_info(struct acpi_battery *battery)
  285. {
  286. int result = -EFAULT;
  287. acpi_status status = 0;
  288. struct acpi_buffer buffer = { ACPI_ALLOCATE_BUFFER, NULL };
  289. if (!acpi_battery_present(battery))
  290. return 0;
  291. mutex_lock(&battery->lock);
  292. status = acpi_evaluate_object(battery->device->handle, "_BIF",
  293. NULL, &buffer);
  294. mutex_unlock(&battery->lock);
  295. if (ACPI_FAILURE(status)) {
  296. ACPI_EXCEPTION((AE_INFO, status, "Evaluating _BIF"));
  297. return -ENODEV;
  298. }
  299. result = extract_package(battery, buffer.pointer,
  300. info_offsets, ARRAY_SIZE(info_offsets));
  301. kfree(buffer.pointer);
  302. return result;
  303. }
  304. static int acpi_battery_get_state(struct acpi_battery *battery)
  305. {
  306. int result = 0;
  307. acpi_status status = 0;
  308. struct acpi_buffer buffer = { ACPI_ALLOCATE_BUFFER, NULL };
  309. if (!acpi_battery_present(battery))
  310. return 0;
  311. if (battery->update_time &&
  312. time_before(jiffies, battery->update_time +
  313. msecs_to_jiffies(cache_time)))
  314. return 0;
  315. mutex_lock(&battery->lock);
  316. status = acpi_evaluate_object(battery->device->handle, "_BST",
  317. NULL, &buffer);
  318. mutex_unlock(&battery->lock);
  319. if (ACPI_FAILURE(status)) {
  320. ACPI_EXCEPTION((AE_INFO, status, "Evaluating _BST"));
  321. return -ENODEV;
  322. }
  323. result = extract_package(battery, buffer.pointer,
  324. state_offsets, ARRAY_SIZE(state_offsets));
  325. battery->update_time = jiffies;
  326. kfree(buffer.pointer);
  327. return result;
  328. }
  329. static int acpi_battery_set_alarm(struct acpi_battery *battery)
  330. {
  331. acpi_status status = 0;
  332. union acpi_object arg0 = { .type = ACPI_TYPE_INTEGER };
  333. struct acpi_object_list arg_list = { 1, &arg0 };
  334. if (!acpi_battery_present(battery)|| !battery->alarm_present)
  335. return -ENODEV;
  336. arg0.integer.value = battery->alarm;
  337. mutex_lock(&battery->lock);
  338. status = acpi_evaluate_object(battery->device->handle, "_BTP",
  339. &arg_list, NULL);
  340. mutex_unlock(&battery->lock);
  341. if (ACPI_FAILURE(status))
  342. return -ENODEV;
  343. ACPI_DEBUG_PRINT((ACPI_DB_INFO, "Alarm set to %d\n", battery->alarm));
  344. return 0;
  345. }
  346. static int acpi_battery_init_alarm(struct acpi_battery *battery)
  347. {
  348. acpi_status status = AE_OK;
  349. acpi_handle handle = NULL;
  350. /* See if alarms are supported, and if so, set default */
  351. status = acpi_get_handle(battery->device->handle, "_BTP", &handle);
  352. if (ACPI_FAILURE(status)) {
  353. battery->alarm_present = 0;
  354. return 0;
  355. }
  356. battery->alarm_present = 1;
  357. if (!battery->alarm)
  358. battery->alarm = battery->design_capacity_warning;
  359. return acpi_battery_set_alarm(battery);
  360. }
  361. #ifdef CONFIG_ACPI_SYSFS_POWER
  362. static ssize_t acpi_battery_alarm_show(struct device *dev,
  363. struct device_attribute *attr,
  364. char *buf)
  365. {
  366. struct acpi_battery *battery = to_acpi_battery(dev_get_drvdata(dev));
  367. return sprintf(buf, "%d\n", battery->alarm * 1000);
  368. }
  369. static ssize_t acpi_battery_alarm_store(struct device *dev,
  370. struct device_attribute *attr,
  371. const char *buf, size_t count)
  372. {
  373. unsigned long x;
  374. struct acpi_battery *battery = to_acpi_battery(dev_get_drvdata(dev));
  375. if (sscanf(buf, "%ld\n", &x) == 1)
  376. battery->alarm = x/1000;
  377. if (acpi_battery_present(battery))
  378. acpi_battery_set_alarm(battery);
  379. return count;
  380. }
  381. static struct device_attribute alarm_attr = {
  382. .attr = {.name = "alarm", .mode = 0644, .owner = THIS_MODULE},
  383. .show = acpi_battery_alarm_show,
  384. .store = acpi_battery_alarm_store,
  385. };
  386. static int sysfs_add_battery(struct acpi_battery *battery)
  387. {
  388. int result;
  389. if (battery->power_unit) {
  390. battery->bat.properties = charge_battery_props;
  391. battery->bat.num_properties =
  392. ARRAY_SIZE(charge_battery_props);
  393. } else {
  394. battery->bat.properties = energy_battery_props;
  395. battery->bat.num_properties =
  396. ARRAY_SIZE(energy_battery_props);
  397. }
  398. battery->bat.name = acpi_device_bid(battery->device);
  399. battery->bat.type = POWER_SUPPLY_TYPE_BATTERY;
  400. battery->bat.get_property = acpi_battery_get_property;
  401. result = power_supply_register(&battery->device->dev, &battery->bat);
  402. if (result)
  403. return result;
  404. return device_create_file(battery->bat.dev, &alarm_attr);
  405. }
  406. static void sysfs_remove_battery(struct acpi_battery *battery)
  407. {
  408. if (!battery->bat.dev)
  409. return;
  410. device_remove_file(battery->bat.dev, &alarm_attr);
  411. power_supply_unregister(&battery->bat);
  412. battery->bat.dev = NULL;
  413. }
  414. #endif
  415. static int acpi_battery_update(struct acpi_battery *battery)
  416. {
  417. int result;
  418. result = acpi_battery_get_status(battery);
  419. if (result)
  420. return result;
  421. #ifdef CONFIG_ACPI_SYSFS_POWER
  422. if (!acpi_battery_present(battery)) {
  423. sysfs_remove_battery(battery);
  424. battery->update_time = 0;
  425. return 0;
  426. }
  427. #endif
  428. if (!battery->update_time) {
  429. result = acpi_battery_get_info(battery);
  430. if (result)
  431. return result;
  432. acpi_battery_init_alarm(battery);
  433. }
  434. #ifdef CONFIG_ACPI_SYSFS_POWER
  435. if (!battery->bat.dev)
  436. sysfs_add_battery(battery);
  437. #endif
  438. return acpi_battery_get_state(battery);
  439. }
  440. /* --------------------------------------------------------------------------
  441. FS Interface (/proc)
  442. -------------------------------------------------------------------------- */
  443. #ifdef CONFIG_ACPI_PROCFS_POWER
  444. static struct proc_dir_entry *acpi_battery_dir;
  445. static int acpi_battery_print_info(struct seq_file *seq, int result)
  446. {
  447. struct acpi_battery *battery = seq->private;
  448. if (result)
  449. goto end;
  450. seq_printf(seq, "present: %s\n",
  451. acpi_battery_present(battery)?"yes":"no");
  452. if (!acpi_battery_present(battery))
  453. goto end;
  454. if (battery->design_capacity == ACPI_BATTERY_VALUE_UNKNOWN)
  455. seq_printf(seq, "design capacity: unknown\n");
  456. else
  457. seq_printf(seq, "design capacity: %d %sh\n",
  458. battery->design_capacity,
  459. acpi_battery_units(battery));
  460. if (battery->full_charge_capacity == ACPI_BATTERY_VALUE_UNKNOWN)
  461. seq_printf(seq, "last full capacity: unknown\n");
  462. else
  463. seq_printf(seq, "last full capacity: %d %sh\n",
  464. battery->full_charge_capacity,
  465. acpi_battery_units(battery));
  466. seq_printf(seq, "battery technology: %srechargeable\n",
  467. (!battery->technology)?"non-":"");
  468. if (battery->design_voltage == ACPI_BATTERY_VALUE_UNKNOWN)
  469. seq_printf(seq, "design voltage: unknown\n");
  470. else
  471. seq_printf(seq, "design voltage: %d mV\n",
  472. battery->design_voltage);
  473. seq_printf(seq, "design capacity warning: %d %sh\n",
  474. battery->design_capacity_warning,
  475. acpi_battery_units(battery));
  476. seq_printf(seq, "design capacity low: %d %sh\n",
  477. battery->design_capacity_low,
  478. acpi_battery_units(battery));
  479. seq_printf(seq, "capacity granularity 1: %d %sh\n",
  480. battery->capacity_granularity_1,
  481. acpi_battery_units(battery));
  482. seq_printf(seq, "capacity granularity 2: %d %sh\n",
  483. battery->capacity_granularity_2,
  484. acpi_battery_units(battery));
  485. seq_printf(seq, "model number: %s\n", battery->model_number);
  486. seq_printf(seq, "serial number: %s\n", battery->serial_number);
  487. seq_printf(seq, "battery type: %s\n", battery->type);
  488. seq_printf(seq, "OEM info: %s\n", battery->oem_info);
  489. end:
  490. if (result)
  491. seq_printf(seq, "ERROR: Unable to read battery info\n");
  492. return result;
  493. }
  494. static int acpi_battery_print_state(struct seq_file *seq, int result)
  495. {
  496. struct acpi_battery *battery = seq->private;
  497. if (result)
  498. goto end;
  499. seq_printf(seq, "present: %s\n",
  500. acpi_battery_present(battery)?"yes":"no");
  501. if (!acpi_battery_present(battery))
  502. goto end;
  503. seq_printf(seq, "capacity state: %s\n",
  504. (battery->state & 0x04)?"critical":"ok");
  505. if ((battery->state & 0x01) && (battery->state & 0x02))
  506. seq_printf(seq,
  507. "charging state: charging/discharging\n");
  508. else if (battery->state & 0x01)
  509. seq_printf(seq, "charging state: discharging\n");
  510. else if (battery->state & 0x02)
  511. seq_printf(seq, "charging state: charging\n");
  512. else
  513. seq_printf(seq, "charging state: charged\n");
  514. if (battery->current_now == ACPI_BATTERY_VALUE_UNKNOWN)
  515. seq_printf(seq, "present rate: unknown\n");
  516. else
  517. seq_printf(seq, "present rate: %d %s\n",
  518. battery->current_now, acpi_battery_units(battery));
  519. if (battery->capacity_now == ACPI_BATTERY_VALUE_UNKNOWN)
  520. seq_printf(seq, "remaining capacity: unknown\n");
  521. else
  522. seq_printf(seq, "remaining capacity: %d %sh\n",
  523. battery->capacity_now, acpi_battery_units(battery));
  524. if (battery->voltage_now == ACPI_BATTERY_VALUE_UNKNOWN)
  525. seq_printf(seq, "present voltage: unknown\n");
  526. else
  527. seq_printf(seq, "present voltage: %d mV\n",
  528. battery->voltage_now);
  529. end:
  530. if (result)
  531. seq_printf(seq, "ERROR: Unable to read battery state\n");
  532. return result;
  533. }
  534. static int acpi_battery_print_alarm(struct seq_file *seq, int result)
  535. {
  536. struct acpi_battery *battery = seq->private;
  537. if (result)
  538. goto end;
  539. if (!acpi_battery_present(battery)) {
  540. seq_printf(seq, "present: no\n");
  541. goto end;
  542. }
  543. seq_printf(seq, "alarm: ");
  544. if (!battery->alarm)
  545. seq_printf(seq, "unsupported\n");
  546. else
  547. seq_printf(seq, "%u %sh\n", battery->alarm,
  548. acpi_battery_units(battery));
  549. end:
  550. if (result)
  551. seq_printf(seq, "ERROR: Unable to read battery alarm\n");
  552. return result;
  553. }
  554. static ssize_t acpi_battery_write_alarm(struct file *file,
  555. const char __user * buffer,
  556. size_t count, loff_t * ppos)
  557. {
  558. int result = 0;
  559. char alarm_string[12] = { '\0' };
  560. struct seq_file *m = file->private_data;
  561. struct acpi_battery *battery = m->private;
  562. if (!battery || (count > sizeof(alarm_string) - 1))
  563. return -EINVAL;
  564. if (!acpi_battery_present(battery)) {
  565. result = -ENODEV;
  566. goto end;
  567. }
  568. if (copy_from_user(alarm_string, buffer, count)) {
  569. result = -EFAULT;
  570. goto end;
  571. }
  572. alarm_string[count] = '\0';
  573. battery->alarm = simple_strtol(alarm_string, NULL, 0);
  574. result = acpi_battery_set_alarm(battery);
  575. end:
  576. if (!result)
  577. return count;
  578. return result;
  579. }
  580. typedef int(*print_func)(struct seq_file *seq, int result);
  581. static print_func acpi_print_funcs[ACPI_BATTERY_NUMFILES] = {
  582. acpi_battery_print_info,
  583. acpi_battery_print_state,
  584. acpi_battery_print_alarm,
  585. };
  586. static int acpi_battery_read(int fid, struct seq_file *seq)
  587. {
  588. struct acpi_battery *battery = seq->private;
  589. int result = acpi_battery_update(battery);
  590. return acpi_print_funcs[fid](seq, result);
  591. }
  592. #define DECLARE_FILE_FUNCTIONS(_name) \
  593. static int acpi_battery_read_##_name(struct seq_file *seq, void *offset) \
  594. { \
  595. return acpi_battery_read(_name##_tag, seq); \
  596. } \
  597. static int acpi_battery_##_name##_open_fs(struct inode *inode, struct file *file) \
  598. { \
  599. return single_open(file, acpi_battery_read_##_name, PDE(inode)->data); \
  600. }
  601. DECLARE_FILE_FUNCTIONS(info);
  602. DECLARE_FILE_FUNCTIONS(state);
  603. DECLARE_FILE_FUNCTIONS(alarm);
  604. #undef DECLARE_FILE_FUNCTIONS
  605. #define FILE_DESCRIPTION_RO(_name) \
  606. { \
  607. .name = __stringify(_name), \
  608. .mode = S_IRUGO, \
  609. .ops = { \
  610. .open = acpi_battery_##_name##_open_fs, \
  611. .read = seq_read, \
  612. .llseek = seq_lseek, \
  613. .release = single_release, \
  614. .owner = THIS_MODULE, \
  615. }, \
  616. }
  617. #define FILE_DESCRIPTION_RW(_name) \
  618. { \
  619. .name = __stringify(_name), \
  620. .mode = S_IFREG | S_IRUGO | S_IWUSR, \
  621. .ops = { \
  622. .open = acpi_battery_##_name##_open_fs, \
  623. .read = seq_read, \
  624. .llseek = seq_lseek, \
  625. .write = acpi_battery_write_##_name, \
  626. .release = single_release, \
  627. .owner = THIS_MODULE, \
  628. }, \
  629. }
  630. static struct battery_file {
  631. struct file_operations ops;
  632. mode_t mode;
  633. char *name;
  634. } acpi_battery_file[] = {
  635. FILE_DESCRIPTION_RO(info),
  636. FILE_DESCRIPTION_RO(state),
  637. FILE_DESCRIPTION_RW(alarm),
  638. };
  639. #undef FILE_DESCRIPTION_RO
  640. #undef FILE_DESCRIPTION_RW
  641. static int acpi_battery_add_fs(struct acpi_device *device)
  642. {
  643. struct proc_dir_entry *entry = NULL;
  644. int i;
  645. if (!acpi_device_dir(device)) {
  646. acpi_device_dir(device) = proc_mkdir(acpi_device_bid(device),
  647. acpi_battery_dir);
  648. if (!acpi_device_dir(device))
  649. return -ENODEV;
  650. acpi_device_dir(device)->owner = THIS_MODULE;
  651. }
  652. for (i = 0; i < ACPI_BATTERY_NUMFILES; ++i) {
  653. entry = proc_create_data(acpi_battery_file[i].name,
  654. acpi_battery_file[i].mode,
  655. acpi_device_dir(device),
  656. &acpi_battery_file[i].ops,
  657. acpi_driver_data(device));
  658. if (!entry)
  659. return -ENODEV;
  660. }
  661. return 0;
  662. }
  663. static void acpi_battery_remove_fs(struct acpi_device *device)
  664. {
  665. int i;
  666. if (!acpi_device_dir(device))
  667. return;
  668. for (i = 0; i < ACPI_BATTERY_NUMFILES; ++i)
  669. remove_proc_entry(acpi_battery_file[i].name,
  670. acpi_device_dir(device));
  671. remove_proc_entry(acpi_device_bid(device), acpi_battery_dir);
  672. acpi_device_dir(device) = NULL;
  673. }
  674. #endif
  675. /* --------------------------------------------------------------------------
  676. Driver Interface
  677. -------------------------------------------------------------------------- */
  678. static void acpi_battery_notify(acpi_handle handle, u32 event, void *data)
  679. {
  680. struct acpi_battery *battery = data;
  681. struct acpi_device *device;
  682. if (!battery)
  683. return;
  684. device = battery->device;
  685. acpi_battery_update(battery);
  686. acpi_bus_generate_proc_event(device, event,
  687. acpi_battery_present(battery));
  688. acpi_bus_generate_netlink_event(device->pnp.device_class,
  689. device->dev.bus_id, event,
  690. acpi_battery_present(battery));
  691. #ifdef CONFIG_ACPI_SYSFS_POWER
  692. /* acpi_batter_update could remove power_supply object */
  693. if (battery->bat.dev)
  694. kobject_uevent(&battery->bat.dev->kobj, KOBJ_CHANGE);
  695. #endif
  696. }
  697. static int acpi_battery_add(struct acpi_device *device)
  698. {
  699. int result = 0;
  700. acpi_status status = 0;
  701. struct acpi_battery *battery = NULL;
  702. if (!device)
  703. return -EINVAL;
  704. battery = kzalloc(sizeof(struct acpi_battery), GFP_KERNEL);
  705. if (!battery)
  706. return -ENOMEM;
  707. battery->device = device;
  708. strcpy(acpi_device_name(device), ACPI_BATTERY_DEVICE_NAME);
  709. strcpy(acpi_device_class(device), ACPI_BATTERY_CLASS);
  710. acpi_driver_data(device) = battery;
  711. mutex_init(&battery->lock);
  712. acpi_battery_update(battery);
  713. #ifdef CONFIG_ACPI_PROCFS_POWER
  714. result = acpi_battery_add_fs(device);
  715. if (result)
  716. goto end;
  717. #endif
  718. status = acpi_install_notify_handler(device->handle,
  719. ACPI_ALL_NOTIFY,
  720. acpi_battery_notify, battery);
  721. if (ACPI_FAILURE(status)) {
  722. ACPI_EXCEPTION((AE_INFO, status, "Installing notify handler"));
  723. result = -ENODEV;
  724. goto end;
  725. }
  726. printk(KERN_INFO PREFIX "%s Slot [%s] (battery %s)\n",
  727. ACPI_BATTERY_DEVICE_NAME, acpi_device_bid(device),
  728. device->status.battery_present ? "present" : "absent");
  729. end:
  730. if (result) {
  731. #ifdef CONFIG_ACPI_PROCFS_POWER
  732. acpi_battery_remove_fs(device);
  733. #endif
  734. kfree(battery);
  735. }
  736. return result;
  737. }
  738. static int acpi_battery_remove(struct acpi_device *device, int type)
  739. {
  740. acpi_status status = 0;
  741. struct acpi_battery *battery = NULL;
  742. if (!device || !acpi_driver_data(device))
  743. return -EINVAL;
  744. battery = acpi_driver_data(device);
  745. status = acpi_remove_notify_handler(device->handle,
  746. ACPI_ALL_NOTIFY,
  747. acpi_battery_notify);
  748. #ifdef CONFIG_ACPI_PROCFS_POWER
  749. acpi_battery_remove_fs(device);
  750. #endif
  751. #ifdef CONFIG_ACPI_SYSFS_POWER
  752. sysfs_remove_battery(battery);
  753. #endif
  754. mutex_destroy(&battery->lock);
  755. kfree(battery);
  756. return 0;
  757. }
  758. /* this is needed to learn about changes made in suspended state */
  759. static int acpi_battery_resume(struct acpi_device *device)
  760. {
  761. struct acpi_battery *battery;
  762. if (!device)
  763. return -EINVAL;
  764. battery = acpi_driver_data(device);
  765. battery->update_time = 0;
  766. acpi_battery_update(battery);
  767. return 0;
  768. }
  769. static struct acpi_driver acpi_battery_driver = {
  770. .name = "battery",
  771. .class = ACPI_BATTERY_CLASS,
  772. .ids = battery_device_ids,
  773. .ops = {
  774. .add = acpi_battery_add,
  775. .resume = acpi_battery_resume,
  776. .remove = acpi_battery_remove,
  777. },
  778. };
  779. static int __init acpi_battery_init(void)
  780. {
  781. if (acpi_disabled)
  782. return -ENODEV;
  783. #ifdef CONFIG_ACPI_PROCFS_POWER
  784. acpi_battery_dir = acpi_lock_battery_dir();
  785. if (!acpi_battery_dir)
  786. return -ENODEV;
  787. #endif
  788. if (acpi_bus_register_driver(&acpi_battery_driver) < 0) {
  789. #ifdef CONFIG_ACPI_PROCFS_POWER
  790. acpi_unlock_battery_dir(acpi_battery_dir);
  791. #endif
  792. return -ENODEV;
  793. }
  794. return 0;
  795. }
  796. static void __exit acpi_battery_exit(void)
  797. {
  798. acpi_bus_unregister_driver(&acpi_battery_driver);
  799. #ifdef CONFIG_ACPI_PROCFS_POWER
  800. acpi_unlock_battery_dir(acpi_battery_dir);
  801. #endif
  802. }
  803. module_init(acpi_battery_init);
  804. module_exit(acpi_battery_exit);