sleep.c 20 KB

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  1. /*
  2. * sleep.c - ACPI sleep support.
  3. *
  4. * Copyright (c) 2005 Alexey Starikovskiy <alexey.y.starikovskiy@intel.com>
  5. * Copyright (c) 2004 David Shaohua Li <shaohua.li@intel.com>
  6. * Copyright (c) 2000-2003 Patrick Mochel
  7. * Copyright (c) 2003 Open Source Development Lab
  8. *
  9. * This file is released under the GPLv2.
  10. *
  11. */
  12. #include <linux/delay.h>
  13. #include <linux/irq.h>
  14. #include <linux/dmi.h>
  15. #include <linux/device.h>
  16. #include <linux/suspend.h>
  17. #include <linux/reboot.h>
  18. #include <asm/io.h>
  19. #include <acpi/acpi_bus.h>
  20. #include <acpi/acpi_drivers.h>
  21. #include "internal.h"
  22. #include "sleep.h"
  23. static u8 sleep_states[ACPI_S_STATE_COUNT];
  24. static void acpi_sleep_tts_switch(u32 acpi_state)
  25. {
  26. union acpi_object in_arg = { ACPI_TYPE_INTEGER };
  27. struct acpi_object_list arg_list = { 1, &in_arg };
  28. acpi_status status = AE_OK;
  29. in_arg.integer.value = acpi_state;
  30. status = acpi_evaluate_object(NULL, "\\_TTS", &arg_list, NULL);
  31. if (ACPI_FAILURE(status) && status != AE_NOT_FOUND) {
  32. /*
  33. * OS can't evaluate the _TTS object correctly. Some warning
  34. * message will be printed. But it won't break anything.
  35. */
  36. printk(KERN_NOTICE "Failure in evaluating _TTS object\n");
  37. }
  38. }
  39. static int tts_notify_reboot(struct notifier_block *this,
  40. unsigned long code, void *x)
  41. {
  42. acpi_sleep_tts_switch(ACPI_STATE_S5);
  43. return NOTIFY_DONE;
  44. }
  45. static struct notifier_block tts_notifier = {
  46. .notifier_call = tts_notify_reboot,
  47. .next = NULL,
  48. .priority = 0,
  49. };
  50. static int acpi_sleep_prepare(u32 acpi_state)
  51. {
  52. #ifdef CONFIG_ACPI_SLEEP
  53. /* do we have a wakeup address for S2 and S3? */
  54. if (acpi_state == ACPI_STATE_S3) {
  55. if (!acpi_wakeup_address) {
  56. return -EFAULT;
  57. }
  58. acpi_set_firmware_waking_vector(
  59. (acpi_physical_address)acpi_wakeup_address);
  60. }
  61. ACPI_FLUSH_CPU_CACHE();
  62. #endif
  63. printk(KERN_INFO PREFIX "Preparing to enter system sleep state S%d\n",
  64. acpi_state);
  65. acpi_enable_wakeup_devices(acpi_state);
  66. acpi_enter_sleep_state_prep(acpi_state);
  67. return 0;
  68. }
  69. #ifdef CONFIG_ACPI_SLEEP
  70. static u32 acpi_target_sleep_state = ACPI_STATE_S0;
  71. /*
  72. * The ACPI specification wants us to save NVS memory regions during hibernation
  73. * and to restore them during the subsequent resume. Windows does that also for
  74. * suspend to RAM. However, it is known that this mechanism does not work on
  75. * all machines, so we allow the user to disable it with the help of the
  76. * 'acpi_sleep=nonvs' kernel command line option.
  77. */
  78. static bool nvs_nosave;
  79. void __init acpi_nvs_nosave(void)
  80. {
  81. nvs_nosave = true;
  82. }
  83. /*
  84. * ACPI 1.0 wants us to execute _PTS before suspending devices, so we allow the
  85. * user to request that behavior by using the 'acpi_old_suspend_ordering'
  86. * kernel command line option that causes the following variable to be set.
  87. */
  88. static bool old_suspend_ordering;
  89. void __init acpi_old_suspend_ordering(void)
  90. {
  91. old_suspend_ordering = true;
  92. }
  93. /**
  94. * acpi_pm_freeze - Disable the GPEs and suspend EC transactions.
  95. */
  96. static int acpi_pm_freeze(void)
  97. {
  98. acpi_disable_all_gpes();
  99. acpi_os_wait_events_complete(NULL);
  100. acpi_ec_block_transactions();
  101. return 0;
  102. }
  103. /**
  104. * acpi_pre_suspend - Enable wakeup devices, "freeze" EC and save NVS.
  105. */
  106. static int acpi_pm_pre_suspend(void)
  107. {
  108. acpi_pm_freeze();
  109. suspend_nvs_save();
  110. return 0;
  111. }
  112. /**
  113. * __acpi_pm_prepare - Prepare the platform to enter the target state.
  114. *
  115. * If necessary, set the firmware waking vector and do arch-specific
  116. * nastiness to get the wakeup code to the waking vector.
  117. */
  118. static int __acpi_pm_prepare(void)
  119. {
  120. int error = acpi_sleep_prepare(acpi_target_sleep_state);
  121. if (error)
  122. acpi_target_sleep_state = ACPI_STATE_S0;
  123. return error;
  124. }
  125. /**
  126. * acpi_pm_prepare - Prepare the platform to enter the target sleep
  127. * state and disable the GPEs.
  128. */
  129. static int acpi_pm_prepare(void)
  130. {
  131. int error = __acpi_pm_prepare();
  132. if (!error)
  133. acpi_pm_pre_suspend();
  134. return error;
  135. }
  136. /**
  137. * acpi_pm_finish - Instruct the platform to leave a sleep state.
  138. *
  139. * This is called after we wake back up (or if entering the sleep state
  140. * failed).
  141. */
  142. static void acpi_pm_finish(void)
  143. {
  144. u32 acpi_state = acpi_target_sleep_state;
  145. acpi_ec_unblock_transactions();
  146. if (acpi_state == ACPI_STATE_S0)
  147. return;
  148. printk(KERN_INFO PREFIX "Waking up from system sleep state S%d\n",
  149. acpi_state);
  150. acpi_disable_wakeup_devices(acpi_state);
  151. acpi_leave_sleep_state(acpi_state);
  152. /* reset firmware waking vector */
  153. acpi_set_firmware_waking_vector((acpi_physical_address) 0);
  154. acpi_target_sleep_state = ACPI_STATE_S0;
  155. }
  156. /**
  157. * acpi_pm_end - Finish up suspend sequence.
  158. */
  159. static void acpi_pm_end(void)
  160. {
  161. suspend_nvs_free();
  162. /*
  163. * This is necessary in case acpi_pm_finish() is not called during a
  164. * failing transition to a sleep state.
  165. */
  166. acpi_target_sleep_state = ACPI_STATE_S0;
  167. acpi_sleep_tts_switch(acpi_target_sleep_state);
  168. }
  169. #else /* !CONFIG_ACPI_SLEEP */
  170. #define acpi_target_sleep_state ACPI_STATE_S0
  171. #endif /* CONFIG_ACPI_SLEEP */
  172. #ifdef CONFIG_SUSPEND
  173. extern void do_suspend_lowlevel(void);
  174. static u32 acpi_suspend_states[] = {
  175. [PM_SUSPEND_ON] = ACPI_STATE_S0,
  176. [PM_SUSPEND_STANDBY] = ACPI_STATE_S1,
  177. [PM_SUSPEND_MEM] = ACPI_STATE_S3,
  178. [PM_SUSPEND_MAX] = ACPI_STATE_S5
  179. };
  180. /**
  181. * acpi_suspend_begin - Set the target system sleep state to the state
  182. * associated with given @pm_state, if supported.
  183. */
  184. static int acpi_suspend_begin(suspend_state_t pm_state)
  185. {
  186. u32 acpi_state = acpi_suspend_states[pm_state];
  187. int error = 0;
  188. error = nvs_nosave ? 0 : suspend_nvs_alloc();
  189. if (error)
  190. return error;
  191. if (sleep_states[acpi_state]) {
  192. acpi_target_sleep_state = acpi_state;
  193. acpi_sleep_tts_switch(acpi_target_sleep_state);
  194. } else {
  195. printk(KERN_ERR "ACPI does not support this state: %d\n",
  196. pm_state);
  197. error = -ENOSYS;
  198. }
  199. return error;
  200. }
  201. /**
  202. * acpi_suspend_enter - Actually enter a sleep state.
  203. * @pm_state: ignored
  204. *
  205. * Flush caches and go to sleep. For STR we have to call arch-specific
  206. * assembly, which in turn call acpi_enter_sleep_state().
  207. * It's unfortunate, but it works. Please fix if you're feeling frisky.
  208. */
  209. static int acpi_suspend_enter(suspend_state_t pm_state)
  210. {
  211. acpi_status status = AE_OK;
  212. unsigned long flags = 0;
  213. u32 acpi_state = acpi_target_sleep_state;
  214. ACPI_FLUSH_CPU_CACHE();
  215. /* Do arch specific saving of state. */
  216. if (acpi_state == ACPI_STATE_S3) {
  217. int error = acpi_save_state_mem();
  218. if (error)
  219. return error;
  220. }
  221. local_irq_save(flags);
  222. switch (acpi_state) {
  223. case ACPI_STATE_S1:
  224. barrier();
  225. status = acpi_enter_sleep_state(acpi_state);
  226. break;
  227. case ACPI_STATE_S3:
  228. do_suspend_lowlevel();
  229. break;
  230. }
  231. /* This violates the spec but is required for bug compatibility. */
  232. acpi_write_bit_register(ACPI_BITREG_SCI_ENABLE, 1);
  233. /* Reprogram control registers and execute _BFS */
  234. acpi_leave_sleep_state_prep(acpi_state);
  235. /* ACPI 3.0 specs (P62) says that it's the responsibility
  236. * of the OSPM to clear the status bit [ implying that the
  237. * POWER_BUTTON event should not reach userspace ]
  238. */
  239. if (ACPI_SUCCESS(status) && (acpi_state == ACPI_STATE_S3))
  240. acpi_clear_event(ACPI_EVENT_POWER_BUTTON);
  241. /*
  242. * Disable and clear GPE status before interrupt is enabled. Some GPEs
  243. * (like wakeup GPE) haven't handler, this can avoid such GPE misfire.
  244. * acpi_leave_sleep_state will reenable specific GPEs later
  245. */
  246. acpi_disable_all_gpes();
  247. /* Allow EC transactions to happen. */
  248. acpi_ec_unblock_transactions_early();
  249. local_irq_restore(flags);
  250. printk(KERN_DEBUG "Back to C!\n");
  251. /* restore processor state */
  252. if (acpi_state == ACPI_STATE_S3)
  253. acpi_restore_state_mem();
  254. suspend_nvs_restore();
  255. return ACPI_SUCCESS(status) ? 0 : -EFAULT;
  256. }
  257. static int acpi_suspend_state_valid(suspend_state_t pm_state)
  258. {
  259. u32 acpi_state;
  260. switch (pm_state) {
  261. case PM_SUSPEND_ON:
  262. case PM_SUSPEND_STANDBY:
  263. case PM_SUSPEND_MEM:
  264. acpi_state = acpi_suspend_states[pm_state];
  265. return sleep_states[acpi_state];
  266. default:
  267. return 0;
  268. }
  269. }
  270. static struct platform_suspend_ops acpi_suspend_ops = {
  271. .valid = acpi_suspend_state_valid,
  272. .begin = acpi_suspend_begin,
  273. .prepare_late = acpi_pm_prepare,
  274. .enter = acpi_suspend_enter,
  275. .wake = acpi_pm_finish,
  276. .end = acpi_pm_end,
  277. };
  278. /**
  279. * acpi_suspend_begin_old - Set the target system sleep state to the
  280. * state associated with given @pm_state, if supported, and
  281. * execute the _PTS control method. This function is used if the
  282. * pre-ACPI 2.0 suspend ordering has been requested.
  283. */
  284. static int acpi_suspend_begin_old(suspend_state_t pm_state)
  285. {
  286. int error = acpi_suspend_begin(pm_state);
  287. if (!error)
  288. error = __acpi_pm_prepare();
  289. return error;
  290. }
  291. /*
  292. * The following callbacks are used if the pre-ACPI 2.0 suspend ordering has
  293. * been requested.
  294. */
  295. static struct platform_suspend_ops acpi_suspend_ops_old = {
  296. .valid = acpi_suspend_state_valid,
  297. .begin = acpi_suspend_begin_old,
  298. .prepare_late = acpi_pm_pre_suspend,
  299. .enter = acpi_suspend_enter,
  300. .wake = acpi_pm_finish,
  301. .end = acpi_pm_end,
  302. .recover = acpi_pm_finish,
  303. };
  304. static int __init init_old_suspend_ordering(const struct dmi_system_id *d)
  305. {
  306. old_suspend_ordering = true;
  307. return 0;
  308. }
  309. static int __init init_nvs_nosave(const struct dmi_system_id *d)
  310. {
  311. acpi_nvs_nosave();
  312. return 0;
  313. }
  314. static struct dmi_system_id __initdata acpisleep_dmi_table[] = {
  315. {
  316. .callback = init_old_suspend_ordering,
  317. .ident = "Abit KN9 (nForce4 variant)",
  318. .matches = {
  319. DMI_MATCH(DMI_BOARD_VENDOR, "http://www.abit.com.tw/"),
  320. DMI_MATCH(DMI_BOARD_NAME, "KN9 Series(NF-CK804)"),
  321. },
  322. },
  323. {
  324. .callback = init_old_suspend_ordering,
  325. .ident = "HP xw4600 Workstation",
  326. .matches = {
  327. DMI_MATCH(DMI_SYS_VENDOR, "Hewlett-Packard"),
  328. DMI_MATCH(DMI_PRODUCT_NAME, "HP xw4600 Workstation"),
  329. },
  330. },
  331. {
  332. .callback = init_old_suspend_ordering,
  333. .ident = "Asus Pundit P1-AH2 (M2N8L motherboard)",
  334. .matches = {
  335. DMI_MATCH(DMI_BOARD_VENDOR, "ASUSTek Computer INC."),
  336. DMI_MATCH(DMI_BOARD_NAME, "M2N8L"),
  337. },
  338. },
  339. {
  340. .callback = init_old_suspend_ordering,
  341. .ident = "Panasonic CF51-2L",
  342. .matches = {
  343. DMI_MATCH(DMI_BOARD_VENDOR,
  344. "Matsushita Electric Industrial Co.,Ltd."),
  345. DMI_MATCH(DMI_BOARD_NAME, "CF51-2L"),
  346. },
  347. },
  348. {
  349. .callback = init_nvs_nosave,
  350. .ident = "Sony Vaio VGN-SR11M",
  351. .matches = {
  352. DMI_MATCH(DMI_SYS_VENDOR, "Sony Corporation"),
  353. DMI_MATCH(DMI_PRODUCT_NAME, "VGN-SR11M"),
  354. },
  355. },
  356. {
  357. .callback = init_nvs_nosave,
  358. .ident = "Everex StepNote Series",
  359. .matches = {
  360. DMI_MATCH(DMI_SYS_VENDOR, "Everex Systems, Inc."),
  361. DMI_MATCH(DMI_PRODUCT_NAME, "Everex StepNote Series"),
  362. },
  363. },
  364. {},
  365. };
  366. #endif /* CONFIG_SUSPEND */
  367. #ifdef CONFIG_HIBERNATION
  368. static unsigned long s4_hardware_signature;
  369. static struct acpi_table_facs *facs;
  370. static bool nosigcheck;
  371. void __init acpi_no_s4_hw_signature(void)
  372. {
  373. nosigcheck = true;
  374. }
  375. static int acpi_hibernation_begin(void)
  376. {
  377. int error;
  378. error = nvs_nosave ? 0 : suspend_nvs_alloc();
  379. if (!error) {
  380. acpi_target_sleep_state = ACPI_STATE_S4;
  381. acpi_sleep_tts_switch(acpi_target_sleep_state);
  382. }
  383. return error;
  384. }
  385. static int acpi_hibernation_enter(void)
  386. {
  387. acpi_status status = AE_OK;
  388. unsigned long flags = 0;
  389. ACPI_FLUSH_CPU_CACHE();
  390. local_irq_save(flags);
  391. /* This shouldn't return. If it returns, we have a problem */
  392. status = acpi_enter_sleep_state(ACPI_STATE_S4);
  393. /* Reprogram control registers and execute _BFS */
  394. acpi_leave_sleep_state_prep(ACPI_STATE_S4);
  395. local_irq_restore(flags);
  396. return ACPI_SUCCESS(status) ? 0 : -EFAULT;
  397. }
  398. static void acpi_hibernation_leave(void)
  399. {
  400. /*
  401. * If ACPI is not enabled by the BIOS and the boot kernel, we need to
  402. * enable it here.
  403. */
  404. acpi_enable();
  405. /* Reprogram control registers and execute _BFS */
  406. acpi_leave_sleep_state_prep(ACPI_STATE_S4);
  407. /* Check the hardware signature */
  408. if (facs && s4_hardware_signature != facs->hardware_signature) {
  409. printk(KERN_EMERG "ACPI: Hardware changed while hibernated, "
  410. "cannot resume!\n");
  411. panic("ACPI S4 hardware signature mismatch");
  412. }
  413. /* Restore the NVS memory area */
  414. suspend_nvs_restore();
  415. /* Allow EC transactions to happen. */
  416. acpi_ec_unblock_transactions_early();
  417. }
  418. static void acpi_pm_thaw(void)
  419. {
  420. acpi_ec_unblock_transactions();
  421. acpi_enable_all_runtime_gpes();
  422. }
  423. static struct platform_hibernation_ops acpi_hibernation_ops = {
  424. .begin = acpi_hibernation_begin,
  425. .end = acpi_pm_end,
  426. .pre_snapshot = acpi_pm_prepare,
  427. .finish = acpi_pm_finish,
  428. .prepare = acpi_pm_prepare,
  429. .enter = acpi_hibernation_enter,
  430. .leave = acpi_hibernation_leave,
  431. .pre_restore = acpi_pm_freeze,
  432. .restore_cleanup = acpi_pm_thaw,
  433. };
  434. /**
  435. * acpi_hibernation_begin_old - Set the target system sleep state to
  436. * ACPI_STATE_S4 and execute the _PTS control method. This
  437. * function is used if the pre-ACPI 2.0 suspend ordering has been
  438. * requested.
  439. */
  440. static int acpi_hibernation_begin_old(void)
  441. {
  442. int error;
  443. /*
  444. * The _TTS object should always be evaluated before the _PTS object.
  445. * When the old_suspended_ordering is true, the _PTS object is
  446. * evaluated in the acpi_sleep_prepare.
  447. */
  448. acpi_sleep_tts_switch(ACPI_STATE_S4);
  449. error = acpi_sleep_prepare(ACPI_STATE_S4);
  450. if (!error) {
  451. if (!nvs_nosave)
  452. error = suspend_nvs_alloc();
  453. if (!error)
  454. acpi_target_sleep_state = ACPI_STATE_S4;
  455. }
  456. return error;
  457. }
  458. /*
  459. * The following callbacks are used if the pre-ACPI 2.0 suspend ordering has
  460. * been requested.
  461. */
  462. static struct platform_hibernation_ops acpi_hibernation_ops_old = {
  463. .begin = acpi_hibernation_begin_old,
  464. .end = acpi_pm_end,
  465. .pre_snapshot = acpi_pm_pre_suspend,
  466. .prepare = acpi_pm_freeze,
  467. .finish = acpi_pm_finish,
  468. .enter = acpi_hibernation_enter,
  469. .leave = acpi_hibernation_leave,
  470. .pre_restore = acpi_pm_freeze,
  471. .restore_cleanup = acpi_pm_thaw,
  472. .recover = acpi_pm_finish,
  473. };
  474. #endif /* CONFIG_HIBERNATION */
  475. int acpi_suspend(u32 acpi_state)
  476. {
  477. suspend_state_t states[] = {
  478. [1] = PM_SUSPEND_STANDBY,
  479. [3] = PM_SUSPEND_MEM,
  480. [5] = PM_SUSPEND_MAX
  481. };
  482. if (acpi_state < 6 && states[acpi_state])
  483. return pm_suspend(states[acpi_state]);
  484. if (acpi_state == 4)
  485. return hibernate();
  486. return -EINVAL;
  487. }
  488. #ifdef CONFIG_PM_SLEEP
  489. /**
  490. * acpi_pm_device_sleep_state - return preferred power state of ACPI device
  491. * in the system sleep state given by %acpi_target_sleep_state
  492. * @dev: device to examine; its driver model wakeup flags control
  493. * whether it should be able to wake up the system
  494. * @d_min_p: used to store the upper limit of allowed states range
  495. * Return value: preferred power state of the device on success, -ENODEV on
  496. * failure (ie. if there's no 'struct acpi_device' for @dev)
  497. *
  498. * Find the lowest power (highest number) ACPI device power state that
  499. * device @dev can be in while the system is in the sleep state represented
  500. * by %acpi_target_sleep_state. If @wake is nonzero, the device should be
  501. * able to wake up the system from this sleep state. If @d_min_p is set,
  502. * the highest power (lowest number) device power state of @dev allowed
  503. * in this system sleep state is stored at the location pointed to by it.
  504. *
  505. * The caller must ensure that @dev is valid before using this function.
  506. * The caller is also responsible for figuring out if the device is
  507. * supposed to be able to wake up the system and passing this information
  508. * via @wake.
  509. */
  510. int acpi_pm_device_sleep_state(struct device *dev, int *d_min_p)
  511. {
  512. acpi_handle handle = DEVICE_ACPI_HANDLE(dev);
  513. struct acpi_device *adev;
  514. char acpi_method[] = "_SxD";
  515. unsigned long long d_min, d_max;
  516. if (!handle || ACPI_FAILURE(acpi_bus_get_device(handle, &adev))) {
  517. printk(KERN_DEBUG "ACPI handle has no context!\n");
  518. return -ENODEV;
  519. }
  520. acpi_method[2] = '0' + acpi_target_sleep_state;
  521. /*
  522. * If the sleep state is S0, we will return D3, but if the device has
  523. * _S0W, we will use the value from _S0W
  524. */
  525. d_min = ACPI_STATE_D0;
  526. d_max = ACPI_STATE_D3;
  527. /*
  528. * If present, _SxD methods return the minimum D-state (highest power
  529. * state) we can use for the corresponding S-states. Otherwise, the
  530. * minimum D-state is D0 (ACPI 3.x).
  531. *
  532. * NOTE: We rely on acpi_evaluate_integer() not clobbering the integer
  533. * provided -- that's our fault recovery, we ignore retval.
  534. */
  535. if (acpi_target_sleep_state > ACPI_STATE_S0)
  536. acpi_evaluate_integer(handle, acpi_method, NULL, &d_min);
  537. /*
  538. * If _PRW says we can wake up the system from the target sleep state,
  539. * the D-state returned by _SxD is sufficient for that (we assume a
  540. * wakeup-aware driver if wake is set). Still, if _SxW exists
  541. * (ACPI 3.x), it should return the maximum (lowest power) D-state that
  542. * can wake the system. _S0W may be valid, too.
  543. */
  544. if (acpi_target_sleep_state == ACPI_STATE_S0 ||
  545. (device_may_wakeup(dev) && adev->wakeup.state.enabled &&
  546. adev->wakeup.sleep_state <= acpi_target_sleep_state)) {
  547. acpi_status status;
  548. acpi_method[3] = 'W';
  549. status = acpi_evaluate_integer(handle, acpi_method, NULL,
  550. &d_max);
  551. if (ACPI_FAILURE(status)) {
  552. d_max = d_min;
  553. } else if (d_max < d_min) {
  554. /* Warn the user of the broken DSDT */
  555. printk(KERN_WARNING "ACPI: Wrong value from %s\n",
  556. acpi_method);
  557. /* Sanitize it */
  558. d_min = d_max;
  559. }
  560. }
  561. if (d_min_p)
  562. *d_min_p = d_min;
  563. return d_max;
  564. }
  565. /**
  566. * acpi_pm_device_sleep_wake - enable or disable the system wake-up
  567. * capability of given device
  568. * @dev: device to handle
  569. * @enable: 'true' - enable, 'false' - disable the wake-up capability
  570. */
  571. int acpi_pm_device_sleep_wake(struct device *dev, bool enable)
  572. {
  573. acpi_handle handle;
  574. struct acpi_device *adev;
  575. int error;
  576. if (!device_can_wakeup(dev))
  577. return -EINVAL;
  578. handle = DEVICE_ACPI_HANDLE(dev);
  579. if (!handle || ACPI_FAILURE(acpi_bus_get_device(handle, &adev))) {
  580. dev_dbg(dev, "ACPI handle has no context in %s!\n", __func__);
  581. return -ENODEV;
  582. }
  583. error = enable ?
  584. acpi_enable_wakeup_device_power(adev, acpi_target_sleep_state) :
  585. acpi_disable_wakeup_device_power(adev);
  586. if (!error)
  587. dev_info(dev, "wake-up capability %s by ACPI\n",
  588. enable ? "enabled" : "disabled");
  589. return error;
  590. }
  591. #endif
  592. static void acpi_power_off_prepare(void)
  593. {
  594. /* Prepare to power off the system */
  595. acpi_sleep_prepare(ACPI_STATE_S5);
  596. acpi_disable_all_gpes();
  597. }
  598. static void acpi_power_off(void)
  599. {
  600. /* acpi_sleep_prepare(ACPI_STATE_S5) should have already been called */
  601. printk(KERN_DEBUG "%s called\n", __func__);
  602. local_irq_disable();
  603. acpi_enter_sleep_state(ACPI_STATE_S5);
  604. }
  605. /*
  606. * ACPI 2.0 created the optional _GTS and _BFS,
  607. * but industry adoption has been neither rapid nor broad.
  608. *
  609. * Linux gets into trouble when it executes poorly validated
  610. * paths through the BIOS, so disable _GTS and _BFS by default,
  611. * but do speak up and offer the option to enable them.
  612. */
  613. static void __init acpi_gts_bfs_check(void)
  614. {
  615. acpi_handle dummy;
  616. if (ACPI_SUCCESS(acpi_get_handle(ACPI_ROOT_OBJECT, METHOD_NAME__GTS, &dummy)))
  617. {
  618. printk(KERN_NOTICE PREFIX "BIOS offers _GTS\n");
  619. printk(KERN_NOTICE PREFIX "If \"acpi.gts=1\" improves suspend, "
  620. "please notify linux-acpi@vger.kernel.org\n");
  621. }
  622. if (ACPI_SUCCESS(acpi_get_handle(ACPI_ROOT_OBJECT, METHOD_NAME__BFS, &dummy)))
  623. {
  624. printk(KERN_NOTICE PREFIX "BIOS offers _BFS\n");
  625. printk(KERN_NOTICE PREFIX "If \"acpi.bfs=1\" improves resume, "
  626. "please notify linux-acpi@vger.kernel.org\n");
  627. }
  628. }
  629. int __init acpi_sleep_init(void)
  630. {
  631. acpi_status status;
  632. u8 type_a, type_b;
  633. #ifdef CONFIG_SUSPEND
  634. int i = 0;
  635. dmi_check_system(acpisleep_dmi_table);
  636. #endif
  637. if (acpi_disabled)
  638. return 0;
  639. sleep_states[ACPI_STATE_S0] = 1;
  640. printk(KERN_INFO PREFIX "(supports S0");
  641. #ifdef CONFIG_SUSPEND
  642. for (i = ACPI_STATE_S1; i < ACPI_STATE_S4; i++) {
  643. status = acpi_get_sleep_type_data(i, &type_a, &type_b);
  644. if (ACPI_SUCCESS(status)) {
  645. sleep_states[i] = 1;
  646. printk(" S%d", i);
  647. }
  648. }
  649. suspend_set_ops(old_suspend_ordering ?
  650. &acpi_suspend_ops_old : &acpi_suspend_ops);
  651. #endif
  652. #ifdef CONFIG_HIBERNATION
  653. status = acpi_get_sleep_type_data(ACPI_STATE_S4, &type_a, &type_b);
  654. if (ACPI_SUCCESS(status)) {
  655. hibernation_set_ops(old_suspend_ordering ?
  656. &acpi_hibernation_ops_old : &acpi_hibernation_ops);
  657. sleep_states[ACPI_STATE_S4] = 1;
  658. printk(" S4");
  659. if (!nosigcheck) {
  660. acpi_get_table(ACPI_SIG_FACS, 1,
  661. (struct acpi_table_header **)&facs);
  662. if (facs)
  663. s4_hardware_signature =
  664. facs->hardware_signature;
  665. }
  666. }
  667. #endif
  668. status = acpi_get_sleep_type_data(ACPI_STATE_S5, &type_a, &type_b);
  669. if (ACPI_SUCCESS(status)) {
  670. sleep_states[ACPI_STATE_S5] = 1;
  671. printk(" S5");
  672. pm_power_off_prepare = acpi_power_off_prepare;
  673. pm_power_off = acpi_power_off;
  674. }
  675. printk(")\n");
  676. /*
  677. * Register the tts_notifier to reboot notifier list so that the _TTS
  678. * object can also be evaluated when the system enters S5.
  679. */
  680. register_reboot_notifier(&tts_notifier);
  681. acpi_gts_bfs_check();
  682. return 0;
  683. }