1 // SPDX-License-Identifier: GPL-2.0-only
2 /*
3  * sleep.c - ACPI sleep support.
4  *
5  * Copyright (c) 2005 Alexey Starikovskiy <alexey.y.starikovskiy@intel.com>
6  * Copyright (c) 2004 David Shaohua Li <shaohua.li@intel.com>
7  * Copyright (c) 2000-2003 Patrick Mochel
8  * Copyright (c) 2003 Open Source Development Lab
9  */
10 
11 #define pr_fmt(fmt) "ACPI: PM: " fmt
12 
13 #include <linux/delay.h>
14 #include <linux/irq.h>
15 #include <linux/dmi.h>
16 #include <linux/device.h>
17 #include <linux/interrupt.h>
18 #include <linux/suspend.h>
19 #include <linux/reboot.h>
20 #include <linux/acpi.h>
21 #include <linux/module.h>
22 #include <linux/syscore_ops.h>
23 #include <asm/io.h>
24 #include <trace/events/power.h>
25 
26 #include "internal.h"
27 #include "sleep.h"
28 
29 /*
30  * Some HW-full platforms do not have _S5, so they may need
31  * to leverage efi power off for a shutdown.
32  */
33 bool acpi_no_s5;
34 static u8 sleep_states[ACPI_S_STATE_COUNT];
35 
acpi_sleep_tts_switch(u32 acpi_state)36 static void acpi_sleep_tts_switch(u32 acpi_state)
37 {
38 	acpi_status status;
39 
40 	status = acpi_execute_simple_method(NULL, "\\_TTS", acpi_state);
41 	if (ACPI_FAILURE(status) && status != AE_NOT_FOUND) {
42 		/*
43 		 * OS can't evaluate the _TTS object correctly. Some warning
44 		 * message will be printed. But it won't break anything.
45 		 */
46 		pr_notice("Failure in evaluating _TTS object\n");
47 	}
48 }
49 
tts_notify_reboot(struct notifier_block * this,unsigned long code,void * x)50 static int tts_notify_reboot(struct notifier_block *this,
51 			unsigned long code, void *x)
52 {
53 	acpi_sleep_tts_switch(ACPI_STATE_S5);
54 	return NOTIFY_DONE;
55 }
56 
57 static struct notifier_block tts_notifier = {
58 	.notifier_call	= tts_notify_reboot,
59 	.next		= NULL,
60 	.priority	= 0,
61 };
62 
acpi_sleep_prepare(u32 acpi_state)63 static int acpi_sleep_prepare(u32 acpi_state)
64 {
65 #ifdef CONFIG_ACPI_SLEEP
66 	unsigned long acpi_wakeup_address;
67 
68 	/* do we have a wakeup address for S2 and S3? */
69 	if (acpi_state == ACPI_STATE_S3) {
70 		acpi_wakeup_address = acpi_get_wakeup_address();
71 		if (!acpi_wakeup_address)
72 			return -EFAULT;
73 		acpi_set_waking_vector(acpi_wakeup_address);
74 
75 	}
76 	ACPI_FLUSH_CPU_CACHE();
77 #endif
78 	pr_info("Preparing to enter system sleep state S%d\n", acpi_state);
79 	acpi_enable_wakeup_devices(acpi_state);
80 	acpi_enter_sleep_state_prep(acpi_state);
81 	return 0;
82 }
83 
acpi_sleep_state_supported(u8 sleep_state)84 bool acpi_sleep_state_supported(u8 sleep_state)
85 {
86 	acpi_status status;
87 	u8 type_a, type_b;
88 
89 	status = acpi_get_sleep_type_data(sleep_state, &type_a, &type_b);
90 	return ACPI_SUCCESS(status) && (!acpi_gbl_reduced_hardware
91 		|| (acpi_gbl_FADT.sleep_control.address
92 			&& acpi_gbl_FADT.sleep_status.address));
93 }
94 
95 #ifdef CONFIG_ACPI_SLEEP
96 static u32 acpi_target_sleep_state = ACPI_STATE_S0;
97 
acpi_target_system_state(void)98 u32 acpi_target_system_state(void)
99 {
100 	return acpi_target_sleep_state;
101 }
102 EXPORT_SYMBOL_GPL(acpi_target_system_state);
103 
104 static bool pwr_btn_event_pending;
105 
106 /*
107  * The ACPI specification wants us to save NVS memory regions during hibernation
108  * and to restore them during the subsequent resume.  Windows does that also for
109  * suspend to RAM.  However, it is known that this mechanism does not work on
110  * all machines, so we allow the user to disable it with the help of the
111  * 'acpi_sleep=nonvs' kernel command line option.
112  */
113 static bool nvs_nosave;
114 
acpi_nvs_nosave(void)115 void __init acpi_nvs_nosave(void)
116 {
117 	nvs_nosave = true;
118 }
119 
120 /*
121  * The ACPI specification wants us to save NVS memory regions during hibernation
122  * but says nothing about saving NVS during S3.  Not all versions of Windows
123  * save NVS on S3 suspend either, and it is clear that not all systems need
124  * NVS to be saved at S3 time.  To improve suspend/resume time, allow the
125  * user to disable saving NVS on S3 if their system does not require it, but
126  * continue to save/restore NVS for S4 as specified.
127  */
128 static bool nvs_nosave_s3;
129 
acpi_nvs_nosave_s3(void)130 void __init acpi_nvs_nosave_s3(void)
131 {
132 	nvs_nosave_s3 = true;
133 }
134 
init_nvs_save_s3(const struct dmi_system_id * d)135 static int __init init_nvs_save_s3(const struct dmi_system_id *d)
136 {
137 	nvs_nosave_s3 = false;
138 	return 0;
139 }
140 
141 /*
142  * ACPI 1.0 wants us to execute _PTS before suspending devices, so we allow the
143  * user to request that behavior by using the 'acpi_old_suspend_ordering'
144  * kernel command line option that causes the following variable to be set.
145  */
146 static bool old_suspend_ordering;
147 
acpi_old_suspend_ordering(void)148 void __init acpi_old_suspend_ordering(void)
149 {
150 	old_suspend_ordering = true;
151 }
152 
init_old_suspend_ordering(const struct dmi_system_id * d)153 static int __init init_old_suspend_ordering(const struct dmi_system_id *d)
154 {
155 	acpi_old_suspend_ordering();
156 	return 0;
157 }
158 
init_nvs_nosave(const struct dmi_system_id * d)159 static int __init init_nvs_nosave(const struct dmi_system_id *d)
160 {
161 	acpi_nvs_nosave();
162 	return 0;
163 }
164 
165 bool acpi_sleep_default_s3;
166 
init_default_s3(const struct dmi_system_id * d)167 static int __init init_default_s3(const struct dmi_system_id *d)
168 {
169 	acpi_sleep_default_s3 = true;
170 	return 0;
171 }
172 
173 static const struct dmi_system_id acpisleep_dmi_table[] __initconst = {
174 	{
175 	.callback = init_old_suspend_ordering,
176 	.ident = "Abit KN9 (nForce4 variant)",
177 	.matches = {
178 		DMI_MATCH(DMI_BOARD_VENDOR, "http://www.abit.com.tw/"),
179 		DMI_MATCH(DMI_BOARD_NAME, "KN9 Series(NF-CK804)"),
180 		},
181 	},
182 	{
183 	.callback = init_old_suspend_ordering,
184 	.ident = "HP xw4600 Workstation",
185 	.matches = {
186 		DMI_MATCH(DMI_SYS_VENDOR, "Hewlett-Packard"),
187 		DMI_MATCH(DMI_PRODUCT_NAME, "HP xw4600 Workstation"),
188 		},
189 	},
190 	{
191 	.callback = init_old_suspend_ordering,
192 	.ident = "Asus Pundit P1-AH2 (M2N8L motherboard)",
193 	.matches = {
194 		DMI_MATCH(DMI_BOARD_VENDOR, "ASUSTek Computer INC."),
195 		DMI_MATCH(DMI_BOARD_NAME, "M2N8L"),
196 		},
197 	},
198 	{
199 	.callback = init_old_suspend_ordering,
200 	.ident = "Panasonic CF51-2L",
201 	.matches = {
202 		DMI_MATCH(DMI_BOARD_VENDOR,
203 				"Matsushita Electric Industrial Co.,Ltd."),
204 		DMI_MATCH(DMI_BOARD_NAME, "CF51-2L"),
205 		},
206 	},
207 	{
208 	.callback = init_nvs_nosave,
209 	.ident = "Sony Vaio VGN-FW41E_H",
210 	.matches = {
211 		DMI_MATCH(DMI_SYS_VENDOR, "Sony Corporation"),
212 		DMI_MATCH(DMI_PRODUCT_NAME, "VGN-FW41E_H"),
213 		},
214 	},
215 	{
216 	.callback = init_nvs_nosave,
217 	.ident = "Sony Vaio VGN-FW21E",
218 	.matches = {
219 		DMI_MATCH(DMI_SYS_VENDOR, "Sony Corporation"),
220 		DMI_MATCH(DMI_PRODUCT_NAME, "VGN-FW21E"),
221 		},
222 	},
223 	{
224 	.callback = init_nvs_nosave,
225 	.ident = "Sony Vaio VGN-FW21M",
226 	.matches = {
227 		DMI_MATCH(DMI_SYS_VENDOR, "Sony Corporation"),
228 		DMI_MATCH(DMI_PRODUCT_NAME, "VGN-FW21M"),
229 		},
230 	},
231 	{
232 	.callback = init_nvs_nosave,
233 	.ident = "Sony Vaio VPCEB17FX",
234 	.matches = {
235 		DMI_MATCH(DMI_SYS_VENDOR, "Sony Corporation"),
236 		DMI_MATCH(DMI_PRODUCT_NAME, "VPCEB17FX"),
237 		},
238 	},
239 	{
240 	.callback = init_nvs_nosave,
241 	.ident = "Sony Vaio VGN-SR11M",
242 	.matches = {
243 		DMI_MATCH(DMI_SYS_VENDOR, "Sony Corporation"),
244 		DMI_MATCH(DMI_PRODUCT_NAME, "VGN-SR11M"),
245 		},
246 	},
247 	{
248 	.callback = init_nvs_nosave,
249 	.ident = "Everex StepNote Series",
250 	.matches = {
251 		DMI_MATCH(DMI_SYS_VENDOR, "Everex Systems, Inc."),
252 		DMI_MATCH(DMI_PRODUCT_NAME, "Everex StepNote Series"),
253 		},
254 	},
255 	{
256 	.callback = init_nvs_nosave,
257 	.ident = "Sony Vaio VPCEB1Z1E",
258 	.matches = {
259 		DMI_MATCH(DMI_SYS_VENDOR, "Sony Corporation"),
260 		DMI_MATCH(DMI_PRODUCT_NAME, "VPCEB1Z1E"),
261 		},
262 	},
263 	{
264 	.callback = init_nvs_nosave,
265 	.ident = "Sony Vaio VGN-NW130D",
266 	.matches = {
267 		DMI_MATCH(DMI_SYS_VENDOR, "Sony Corporation"),
268 		DMI_MATCH(DMI_PRODUCT_NAME, "VGN-NW130D"),
269 		},
270 	},
271 	{
272 	.callback = init_nvs_nosave,
273 	.ident = "Sony Vaio VPCCW29FX",
274 	.matches = {
275 		DMI_MATCH(DMI_SYS_VENDOR, "Sony Corporation"),
276 		DMI_MATCH(DMI_PRODUCT_NAME, "VPCCW29FX"),
277 		},
278 	},
279 	{
280 	.callback = init_nvs_nosave,
281 	.ident = "Averatec AV1020-ED2",
282 	.matches = {
283 		DMI_MATCH(DMI_SYS_VENDOR, "AVERATEC"),
284 		DMI_MATCH(DMI_PRODUCT_NAME, "1000 Series"),
285 		},
286 	},
287 	{
288 	.callback = init_old_suspend_ordering,
289 	.ident = "Asus A8N-SLI DELUXE",
290 	.matches = {
291 		DMI_MATCH(DMI_BOARD_VENDOR, "ASUSTeK Computer INC."),
292 		DMI_MATCH(DMI_BOARD_NAME, "A8N-SLI DELUXE"),
293 		},
294 	},
295 	{
296 	.callback = init_old_suspend_ordering,
297 	.ident = "Asus A8N-SLI Premium",
298 	.matches = {
299 		DMI_MATCH(DMI_BOARD_VENDOR, "ASUSTeK Computer INC."),
300 		DMI_MATCH(DMI_BOARD_NAME, "A8N-SLI Premium"),
301 		},
302 	},
303 	{
304 	.callback = init_nvs_nosave,
305 	.ident = "Sony Vaio VGN-SR26GN_P",
306 	.matches = {
307 		DMI_MATCH(DMI_SYS_VENDOR, "Sony Corporation"),
308 		DMI_MATCH(DMI_PRODUCT_NAME, "VGN-SR26GN_P"),
309 		},
310 	},
311 	{
312 	.callback = init_nvs_nosave,
313 	.ident = "Sony Vaio VPCEB1S1E",
314 	.matches = {
315 		DMI_MATCH(DMI_SYS_VENDOR, "Sony Corporation"),
316 		DMI_MATCH(DMI_PRODUCT_NAME, "VPCEB1S1E"),
317 		},
318 	},
319 	{
320 	.callback = init_nvs_nosave,
321 	.ident = "Sony Vaio VGN-FW520F",
322 	.matches = {
323 		DMI_MATCH(DMI_SYS_VENDOR, "Sony Corporation"),
324 		DMI_MATCH(DMI_PRODUCT_NAME, "VGN-FW520F"),
325 		},
326 	},
327 	{
328 	.callback = init_nvs_nosave,
329 	.ident = "Asus K54C",
330 	.matches = {
331 		DMI_MATCH(DMI_SYS_VENDOR, "ASUSTeK Computer Inc."),
332 		DMI_MATCH(DMI_PRODUCT_NAME, "K54C"),
333 		},
334 	},
335 	{
336 	.callback = init_nvs_nosave,
337 	.ident = "Asus K54HR",
338 	.matches = {
339 		DMI_MATCH(DMI_SYS_VENDOR, "ASUSTeK Computer Inc."),
340 		DMI_MATCH(DMI_PRODUCT_NAME, "K54HR"),
341 		},
342 	},
343 	{
344 	.callback = init_nvs_save_s3,
345 	.ident = "Asus 1025C",
346 	.matches = {
347 		DMI_MATCH(DMI_SYS_VENDOR, "ASUSTeK COMPUTER INC."),
348 		DMI_MATCH(DMI_PRODUCT_NAME, "1025C"),
349 		},
350 	},
351 	/*
352 	 * https://bugzilla.kernel.org/show_bug.cgi?id=189431
353 	 * Lenovo G50-45 is a platform later than 2012, but needs nvs memory
354 	 * saving during S3.
355 	 */
356 	{
357 	.callback = init_nvs_save_s3,
358 	.ident = "Lenovo G50-45",
359 	.matches = {
360 		DMI_MATCH(DMI_SYS_VENDOR, "LENOVO"),
361 		DMI_MATCH(DMI_PRODUCT_NAME, "80E3"),
362 		},
363 	},
364 	/*
365 	 * ThinkPad X1 Tablet(2016) cannot do suspend-to-idle using
366 	 * the Low Power S0 Idle firmware interface (see
367 	 * https://bugzilla.kernel.org/show_bug.cgi?id=199057).
368 	 */
369 	{
370 	.callback = init_default_s3,
371 	.ident = "ThinkPad X1 Tablet(2016)",
372 	.matches = {
373 		DMI_MATCH(DMI_SYS_VENDOR, "LENOVO"),
374 		DMI_MATCH(DMI_PRODUCT_NAME, "20GGA00L00"),
375 		},
376 	},
377 	{},
378 };
379 
380 static bool ignore_blacklist;
381 
acpi_sleep_no_blacklist(void)382 void __init acpi_sleep_no_blacklist(void)
383 {
384 	ignore_blacklist = true;
385 }
386 
acpi_sleep_dmi_check(void)387 static void __init acpi_sleep_dmi_check(void)
388 {
389 	if (ignore_blacklist)
390 		return;
391 
392 	if (dmi_get_bios_year() >= 2012)
393 		acpi_nvs_nosave_s3();
394 
395 	dmi_check_system(acpisleep_dmi_table);
396 }
397 
398 /**
399  * acpi_pm_freeze - Disable the GPEs and suspend EC transactions.
400  */
acpi_pm_freeze(void)401 static int acpi_pm_freeze(void)
402 {
403 	acpi_disable_all_gpes();
404 	acpi_os_wait_events_complete();
405 	acpi_ec_block_transactions();
406 	return 0;
407 }
408 
409 /**
410  * acpi_pm_pre_suspend - Enable wakeup devices, "freeze" EC and save NVS.
411  */
acpi_pm_pre_suspend(void)412 static int acpi_pm_pre_suspend(void)
413 {
414 	acpi_pm_freeze();
415 	return suspend_nvs_save();
416 }
417 
418 /**
419  *	__acpi_pm_prepare - Prepare the platform to enter the target state.
420  *
421  *	If necessary, set the firmware waking vector and do arch-specific
422  *	nastiness to get the wakeup code to the waking vector.
423  */
__acpi_pm_prepare(void)424 static int __acpi_pm_prepare(void)
425 {
426 	int error = acpi_sleep_prepare(acpi_target_sleep_state);
427 	if (error)
428 		acpi_target_sleep_state = ACPI_STATE_S0;
429 
430 	return error;
431 }
432 
433 /**
434  *	acpi_pm_prepare - Prepare the platform to enter the target sleep
435  *		state and disable the GPEs.
436  */
acpi_pm_prepare(void)437 static int acpi_pm_prepare(void)
438 {
439 	int error = __acpi_pm_prepare();
440 	if (!error)
441 		error = acpi_pm_pre_suspend();
442 
443 	return error;
444 }
445 
446 /**
447  *	acpi_pm_finish - Instruct the platform to leave a sleep state.
448  *
449  *	This is called after we wake back up (or if entering the sleep state
450  *	failed).
451  */
acpi_pm_finish(void)452 static void acpi_pm_finish(void)
453 {
454 	struct acpi_device *pwr_btn_adev;
455 	u32 acpi_state = acpi_target_sleep_state;
456 
457 	acpi_ec_unblock_transactions();
458 	suspend_nvs_free();
459 
460 	if (acpi_state == ACPI_STATE_S0)
461 		return;
462 
463 	pr_info("Waking up from system sleep state S%d\n", acpi_state);
464 	acpi_disable_wakeup_devices(acpi_state);
465 	acpi_leave_sleep_state(acpi_state);
466 
467 	/* reset firmware waking vector */
468 	acpi_set_waking_vector(0);
469 
470 	acpi_target_sleep_state = ACPI_STATE_S0;
471 
472 	acpi_resume_power_resources();
473 
474 	/* If we were woken with the fixed power button, provide a small
475 	 * hint to userspace in the form of a wakeup event on the fixed power
476 	 * button device (if it can be found).
477 	 *
478 	 * We delay the event generation til now, as the PM layer requires
479 	 * timekeeping to be running before we generate events. */
480 	if (!pwr_btn_event_pending)
481 		return;
482 
483 	pwr_btn_event_pending = false;
484 	pwr_btn_adev = acpi_dev_get_first_match_dev(ACPI_BUTTON_HID_POWERF,
485 						    NULL, -1);
486 	if (pwr_btn_adev) {
487 		pm_wakeup_event(&pwr_btn_adev->dev, 0);
488 		acpi_dev_put(pwr_btn_adev);
489 	}
490 }
491 
492 /**
493  * acpi_pm_start - Start system PM transition.
494  */
acpi_pm_start(u32 acpi_state)495 static void acpi_pm_start(u32 acpi_state)
496 {
497 	acpi_target_sleep_state = acpi_state;
498 	acpi_sleep_tts_switch(acpi_target_sleep_state);
499 	acpi_scan_lock_acquire();
500 }
501 
502 /**
503  * acpi_pm_end - Finish up system PM transition.
504  */
acpi_pm_end(void)505 static void acpi_pm_end(void)
506 {
507 	acpi_turn_off_unused_power_resources();
508 	acpi_scan_lock_release();
509 	/*
510 	 * This is necessary in case acpi_pm_finish() is not called during a
511 	 * failing transition to a sleep state.
512 	 */
513 	acpi_target_sleep_state = ACPI_STATE_S0;
514 	acpi_sleep_tts_switch(acpi_target_sleep_state);
515 }
516 #else /* !CONFIG_ACPI_SLEEP */
517 #define sleep_no_lps0	(1)
518 #define acpi_target_sleep_state	ACPI_STATE_S0
519 #define acpi_sleep_default_s3	(1)
acpi_sleep_dmi_check(void)520 static inline void acpi_sleep_dmi_check(void) {}
521 #endif /* CONFIG_ACPI_SLEEP */
522 
523 #ifdef CONFIG_SUSPEND
524 static u32 acpi_suspend_states[] = {
525 	[PM_SUSPEND_ON] = ACPI_STATE_S0,
526 	[PM_SUSPEND_STANDBY] = ACPI_STATE_S1,
527 	[PM_SUSPEND_MEM] = ACPI_STATE_S3,
528 	[PM_SUSPEND_MAX] = ACPI_STATE_S5
529 };
530 
531 /**
532  *	acpi_suspend_begin - Set the target system sleep state to the state
533  *		associated with given @pm_state, if supported.
534  */
acpi_suspend_begin(suspend_state_t pm_state)535 static int acpi_suspend_begin(suspend_state_t pm_state)
536 {
537 	u32 acpi_state = acpi_suspend_states[pm_state];
538 	int error;
539 
540 	error = (nvs_nosave || nvs_nosave_s3) ? 0 : suspend_nvs_alloc();
541 	if (error)
542 		return error;
543 
544 	if (!sleep_states[acpi_state]) {
545 		pr_err("ACPI does not support sleep state S%u\n", acpi_state);
546 		return -ENOSYS;
547 	}
548 	if (acpi_state > ACPI_STATE_S1)
549 		pm_set_suspend_via_firmware();
550 
551 	acpi_pm_start(acpi_state);
552 	return 0;
553 }
554 
555 /**
556  *	acpi_suspend_enter - Actually enter a sleep state.
557  *	@pm_state: ignored
558  *
559  *	Flush caches and go to sleep. For STR we have to call arch-specific
560  *	assembly, which in turn call acpi_enter_sleep_state().
561  *	It's unfortunate, but it works. Please fix if you're feeling frisky.
562  */
acpi_suspend_enter(suspend_state_t pm_state)563 static int acpi_suspend_enter(suspend_state_t pm_state)
564 {
565 	acpi_status status = AE_OK;
566 	u32 acpi_state = acpi_target_sleep_state;
567 	int error;
568 
569 	ACPI_FLUSH_CPU_CACHE();
570 
571 	trace_suspend_resume(TPS("acpi_suspend"), acpi_state, true);
572 	switch (acpi_state) {
573 	case ACPI_STATE_S1:
574 		barrier();
575 		status = acpi_enter_sleep_state(acpi_state);
576 		break;
577 
578 	case ACPI_STATE_S3:
579 		if (!acpi_suspend_lowlevel)
580 			return -ENOSYS;
581 		error = acpi_suspend_lowlevel();
582 		if (error)
583 			return error;
584 		pr_info("Low-level resume complete\n");
585 		pm_set_resume_via_firmware();
586 		break;
587 	}
588 	trace_suspend_resume(TPS("acpi_suspend"), acpi_state, false);
589 
590 	/* This violates the spec but is required for bug compatibility. */
591 	acpi_write_bit_register(ACPI_BITREG_SCI_ENABLE, 1);
592 
593 	/* Reprogram control registers */
594 	acpi_leave_sleep_state_prep(acpi_state);
595 
596 	/* ACPI 3.0 specs (P62) says that it's the responsibility
597 	 * of the OSPM to clear the status bit [ implying that the
598 	 * POWER_BUTTON event should not reach userspace ]
599 	 *
600 	 * However, we do generate a small hint for userspace in the form of
601 	 * a wakeup event. We flag this condition for now and generate the
602 	 * event later, as we're currently too early in resume to be able to
603 	 * generate wakeup events.
604 	 */
605 	if (ACPI_SUCCESS(status) && (acpi_state == ACPI_STATE_S3)) {
606 		acpi_event_status pwr_btn_status = ACPI_EVENT_FLAG_DISABLED;
607 
608 		acpi_get_event_status(ACPI_EVENT_POWER_BUTTON, &pwr_btn_status);
609 
610 		if (pwr_btn_status & ACPI_EVENT_FLAG_STATUS_SET) {
611 			acpi_clear_event(ACPI_EVENT_POWER_BUTTON);
612 			/* Flag for later */
613 			pwr_btn_event_pending = true;
614 		}
615 	}
616 
617 	/*
618 	 * Disable and clear GPE status before interrupt is enabled. Some GPEs
619 	 * (like wakeup GPE) haven't handler, this can avoid such GPE misfire.
620 	 * acpi_leave_sleep_state will reenable specific GPEs later
621 	 */
622 	acpi_disable_all_gpes();
623 	/* Allow EC transactions to happen. */
624 	acpi_ec_unblock_transactions();
625 
626 	suspend_nvs_restore();
627 
628 	return ACPI_SUCCESS(status) ? 0 : -EFAULT;
629 }
630 
acpi_suspend_state_valid(suspend_state_t pm_state)631 static int acpi_suspend_state_valid(suspend_state_t pm_state)
632 {
633 	u32 acpi_state;
634 
635 	switch (pm_state) {
636 	case PM_SUSPEND_ON:
637 	case PM_SUSPEND_STANDBY:
638 	case PM_SUSPEND_MEM:
639 		acpi_state = acpi_suspend_states[pm_state];
640 
641 		return sleep_states[acpi_state];
642 	default:
643 		return 0;
644 	}
645 }
646 
647 static const struct platform_suspend_ops acpi_suspend_ops = {
648 	.valid = acpi_suspend_state_valid,
649 	.begin = acpi_suspend_begin,
650 	.prepare_late = acpi_pm_prepare,
651 	.enter = acpi_suspend_enter,
652 	.wake = acpi_pm_finish,
653 	.end = acpi_pm_end,
654 };
655 
656 /**
657  *	acpi_suspend_begin_old - Set the target system sleep state to the
658  *		state associated with given @pm_state, if supported, and
659  *		execute the _PTS control method.  This function is used if the
660  *		pre-ACPI 2.0 suspend ordering has been requested.
661  */
acpi_suspend_begin_old(suspend_state_t pm_state)662 static int acpi_suspend_begin_old(suspend_state_t pm_state)
663 {
664 	int error = acpi_suspend_begin(pm_state);
665 	if (!error)
666 		error = __acpi_pm_prepare();
667 
668 	return error;
669 }
670 
671 /*
672  * The following callbacks are used if the pre-ACPI 2.0 suspend ordering has
673  * been requested.
674  */
675 static const struct platform_suspend_ops acpi_suspend_ops_old = {
676 	.valid = acpi_suspend_state_valid,
677 	.begin = acpi_suspend_begin_old,
678 	.prepare_late = acpi_pm_pre_suspend,
679 	.enter = acpi_suspend_enter,
680 	.wake = acpi_pm_finish,
681 	.end = acpi_pm_end,
682 	.recover = acpi_pm_finish,
683 };
684 
685 static bool s2idle_wakeup;
686 
acpi_s2idle_begin(void)687 int acpi_s2idle_begin(void)
688 {
689 	acpi_scan_lock_acquire();
690 	return 0;
691 }
692 
acpi_s2idle_prepare(void)693 int acpi_s2idle_prepare(void)
694 {
695 	if (acpi_sci_irq_valid()) {
696 		enable_irq_wake(acpi_sci_irq);
697 		acpi_ec_set_gpe_wake_mask(ACPI_GPE_ENABLE);
698 	}
699 
700 	acpi_enable_wakeup_devices(ACPI_STATE_S0);
701 
702 	/* Change the configuration of GPEs to avoid spurious wakeup. */
703 	acpi_enable_all_wakeup_gpes();
704 	acpi_os_wait_events_complete();
705 
706 	s2idle_wakeup = true;
707 	return 0;
708 }
709 
acpi_s2idle_wake(void)710 bool acpi_s2idle_wake(void)
711 {
712 	if (!acpi_sci_irq_valid())
713 		return pm_wakeup_pending();
714 
715 	while (pm_wakeup_pending()) {
716 		/*
717 		 * If IRQD_WAKEUP_ARMED is set for the SCI at this point, the
718 		 * SCI has not triggered while suspended, so bail out (the
719 		 * wakeup is pending anyway and the SCI is not the source of
720 		 * it).
721 		 */
722 		if (irqd_is_wakeup_armed(irq_get_irq_data(acpi_sci_irq))) {
723 			pm_pr_dbg("Wakeup unrelated to ACPI SCI\n");
724 			return true;
725 		}
726 
727 		/*
728 		 * If the status bit of any enabled fixed event is set, the
729 		 * wakeup is regarded as valid.
730 		 */
731 		if (acpi_any_fixed_event_status_set()) {
732 			pm_pr_dbg("ACPI fixed event wakeup\n");
733 			return true;
734 		}
735 
736 		/* Check wakeups from drivers sharing the SCI. */
737 		if (acpi_check_wakeup_handlers()) {
738 			pm_pr_dbg("ACPI custom handler wakeup\n");
739 			return true;
740 		}
741 
742 		/* Check non-EC GPE wakeups and dispatch the EC GPE. */
743 		if (acpi_ec_dispatch_gpe()) {
744 			pm_pr_dbg("ACPI non-EC GPE wakeup\n");
745 			return true;
746 		}
747 
748 		/*
749 		 * Cancel the SCI wakeup and process all pending events in case
750 		 * there are any wakeup ones in there.
751 		 *
752 		 * Note that if any non-EC GPEs are active at this point, the
753 		 * SCI will retrigger after the rearming below, so no events
754 		 * should be missed by canceling the wakeup here.
755 		 */
756 		pm_system_cancel_wakeup();
757 		acpi_os_wait_events_complete();
758 
759 		/*
760 		 * The SCI is in the "suspended" state now and it cannot produce
761 		 * new wakeup events till the rearming below, so if any of them
762 		 * are pending here, they must be resulting from the processing
763 		 * of EC events above or coming from somewhere else.
764 		 */
765 		if (pm_wakeup_pending()) {
766 			pm_pr_dbg("Wakeup after ACPI Notify sync\n");
767 			return true;
768 		}
769 
770 		rearm_wake_irq(acpi_sci_irq);
771 	}
772 
773 	return false;
774 }
775 
acpi_s2idle_restore(void)776 void acpi_s2idle_restore(void)
777 {
778 	/*
779 	 * Drain pending events before restoring the working-state configuration
780 	 * of GPEs.
781 	 */
782 	acpi_os_wait_events_complete(); /* synchronize GPE processing */
783 	acpi_ec_flush_work(); /* flush the EC driver's workqueues */
784 	acpi_os_wait_events_complete(); /* synchronize Notify handling */
785 
786 	s2idle_wakeup = false;
787 
788 	acpi_enable_all_runtime_gpes();
789 
790 	acpi_disable_wakeup_devices(ACPI_STATE_S0);
791 
792 	if (acpi_sci_irq_valid()) {
793 		acpi_ec_set_gpe_wake_mask(ACPI_GPE_DISABLE);
794 		disable_irq_wake(acpi_sci_irq);
795 	}
796 }
797 
acpi_s2idle_end(void)798 void acpi_s2idle_end(void)
799 {
800 	acpi_scan_lock_release();
801 }
802 
803 static const struct platform_s2idle_ops acpi_s2idle_ops = {
804 	.begin = acpi_s2idle_begin,
805 	.prepare = acpi_s2idle_prepare,
806 	.wake = acpi_s2idle_wake,
807 	.restore = acpi_s2idle_restore,
808 	.end = acpi_s2idle_end,
809 };
810 
acpi_s2idle_setup(void)811 void __weak acpi_s2idle_setup(void)
812 {
813 	s2idle_set_ops(&acpi_s2idle_ops);
814 }
815 
acpi_sleep_suspend_setup(void)816 static void acpi_sleep_suspend_setup(void)
817 {
818 	bool suspend_ops_needed = false;
819 	int i;
820 
821 	for (i = ACPI_STATE_S1; i < ACPI_STATE_S4; i++)
822 		if (acpi_sleep_state_supported(i)) {
823 			sleep_states[i] = 1;
824 			suspend_ops_needed = true;
825 		}
826 
827 	if (suspend_ops_needed)
828 		suspend_set_ops(old_suspend_ordering ?
829 				&acpi_suspend_ops_old : &acpi_suspend_ops);
830 
831 	acpi_s2idle_setup();
832 }
833 
834 #else /* !CONFIG_SUSPEND */
835 #define s2idle_wakeup		(false)
acpi_sleep_suspend_setup(void)836 static inline void acpi_sleep_suspend_setup(void) {}
837 #endif /* !CONFIG_SUSPEND */
838 
acpi_s2idle_wakeup(void)839 bool acpi_s2idle_wakeup(void)
840 {
841 	return s2idle_wakeup;
842 }
843 
844 #ifdef CONFIG_PM_SLEEP
845 static u32 saved_bm_rld;
846 
acpi_save_bm_rld(void)847 static int  acpi_save_bm_rld(void)
848 {
849 	acpi_read_bit_register(ACPI_BITREG_BUS_MASTER_RLD, &saved_bm_rld);
850 	return 0;
851 }
852 
acpi_restore_bm_rld(void)853 static void  acpi_restore_bm_rld(void)
854 {
855 	u32 resumed_bm_rld = 0;
856 
857 	acpi_read_bit_register(ACPI_BITREG_BUS_MASTER_RLD, &resumed_bm_rld);
858 	if (resumed_bm_rld == saved_bm_rld)
859 		return;
860 
861 	acpi_write_bit_register(ACPI_BITREG_BUS_MASTER_RLD, saved_bm_rld);
862 }
863 
864 static struct syscore_ops acpi_sleep_syscore_ops = {
865 	.suspend = acpi_save_bm_rld,
866 	.resume = acpi_restore_bm_rld,
867 };
868 
acpi_sleep_syscore_init(void)869 static void acpi_sleep_syscore_init(void)
870 {
871 	register_syscore_ops(&acpi_sleep_syscore_ops);
872 }
873 #else
acpi_sleep_syscore_init(void)874 static inline void acpi_sleep_syscore_init(void) {}
875 #endif /* CONFIG_PM_SLEEP */
876 
877 #ifdef CONFIG_HIBERNATION
878 static unsigned long s4_hardware_signature;
879 static struct acpi_table_facs *facs;
880 static bool nosigcheck;
881 
acpi_no_s4_hw_signature(void)882 void __init acpi_no_s4_hw_signature(void)
883 {
884 	nosigcheck = true;
885 }
886 
acpi_hibernation_begin(pm_message_t stage)887 static int acpi_hibernation_begin(pm_message_t stage)
888 {
889 	if (!nvs_nosave) {
890 		int error = suspend_nvs_alloc();
891 		if (error)
892 			return error;
893 	}
894 
895 	if (stage.event == PM_EVENT_HIBERNATE)
896 		pm_set_suspend_via_firmware();
897 
898 	acpi_pm_start(ACPI_STATE_S4);
899 	return 0;
900 }
901 
acpi_hibernation_enter(void)902 static int acpi_hibernation_enter(void)
903 {
904 	acpi_status status = AE_OK;
905 
906 	ACPI_FLUSH_CPU_CACHE();
907 
908 	/* This shouldn't return.  If it returns, we have a problem */
909 	status = acpi_enter_sleep_state(ACPI_STATE_S4);
910 	/* Reprogram control registers */
911 	acpi_leave_sleep_state_prep(ACPI_STATE_S4);
912 
913 	return ACPI_SUCCESS(status) ? 0 : -EFAULT;
914 }
915 
acpi_hibernation_leave(void)916 static void acpi_hibernation_leave(void)
917 {
918 	pm_set_resume_via_firmware();
919 	/*
920 	 * If ACPI is not enabled by the BIOS and the boot kernel, we need to
921 	 * enable it here.
922 	 */
923 	acpi_enable();
924 	/* Reprogram control registers */
925 	acpi_leave_sleep_state_prep(ACPI_STATE_S4);
926 	/* Check the hardware signature */
927 	if (facs && s4_hardware_signature != facs->hardware_signature)
928 		pr_crit("Hardware changed while hibernated, success doubtful!\n");
929 	/* Restore the NVS memory area */
930 	suspend_nvs_restore();
931 	/* Allow EC transactions to happen. */
932 	acpi_ec_unblock_transactions();
933 }
934 
acpi_pm_thaw(void)935 static void acpi_pm_thaw(void)
936 {
937 	acpi_ec_unblock_transactions();
938 	acpi_enable_all_runtime_gpes();
939 }
940 
941 static const struct platform_hibernation_ops acpi_hibernation_ops = {
942 	.begin = acpi_hibernation_begin,
943 	.end = acpi_pm_end,
944 	.pre_snapshot = acpi_pm_prepare,
945 	.finish = acpi_pm_finish,
946 	.prepare = acpi_pm_prepare,
947 	.enter = acpi_hibernation_enter,
948 	.leave = acpi_hibernation_leave,
949 	.pre_restore = acpi_pm_freeze,
950 	.restore_cleanup = acpi_pm_thaw,
951 };
952 
953 /**
954  *	acpi_hibernation_begin_old - Set the target system sleep state to
955  *		ACPI_STATE_S4 and execute the _PTS control method.  This
956  *		function is used if the pre-ACPI 2.0 suspend ordering has been
957  *		requested.
958  */
acpi_hibernation_begin_old(pm_message_t stage)959 static int acpi_hibernation_begin_old(pm_message_t stage)
960 {
961 	int error;
962 	/*
963 	 * The _TTS object should always be evaluated before the _PTS object.
964 	 * When the old_suspended_ordering is true, the _PTS object is
965 	 * evaluated in the acpi_sleep_prepare.
966 	 */
967 	acpi_sleep_tts_switch(ACPI_STATE_S4);
968 
969 	error = acpi_sleep_prepare(ACPI_STATE_S4);
970 	if (error)
971 		return error;
972 
973 	if (!nvs_nosave) {
974 		error = suspend_nvs_alloc();
975 		if (error)
976 			return error;
977 	}
978 
979 	if (stage.event == PM_EVENT_HIBERNATE)
980 		pm_set_suspend_via_firmware();
981 
982 	acpi_target_sleep_state = ACPI_STATE_S4;
983 	acpi_scan_lock_acquire();
984 	return 0;
985 }
986 
987 /*
988  * The following callbacks are used if the pre-ACPI 2.0 suspend ordering has
989  * been requested.
990  */
991 static const struct platform_hibernation_ops acpi_hibernation_ops_old = {
992 	.begin = acpi_hibernation_begin_old,
993 	.end = acpi_pm_end,
994 	.pre_snapshot = acpi_pm_pre_suspend,
995 	.prepare = acpi_pm_freeze,
996 	.finish = acpi_pm_finish,
997 	.enter = acpi_hibernation_enter,
998 	.leave = acpi_hibernation_leave,
999 	.pre_restore = acpi_pm_freeze,
1000 	.restore_cleanup = acpi_pm_thaw,
1001 	.recover = acpi_pm_finish,
1002 };
1003 
acpi_sleep_hibernate_setup(void)1004 static void acpi_sleep_hibernate_setup(void)
1005 {
1006 	if (!acpi_sleep_state_supported(ACPI_STATE_S4))
1007 		return;
1008 
1009 	hibernation_set_ops(old_suspend_ordering ?
1010 			&acpi_hibernation_ops_old : &acpi_hibernation_ops);
1011 	sleep_states[ACPI_STATE_S4] = 1;
1012 	if (nosigcheck)
1013 		return;
1014 
1015 	acpi_get_table(ACPI_SIG_FACS, 1, (struct acpi_table_header **)&facs);
1016 	if (facs)
1017 		s4_hardware_signature = facs->hardware_signature;
1018 }
1019 #else /* !CONFIG_HIBERNATION */
acpi_sleep_hibernate_setup(void)1020 static inline void acpi_sleep_hibernate_setup(void) {}
1021 #endif /* !CONFIG_HIBERNATION */
1022 
acpi_power_off_prepare(void)1023 static void acpi_power_off_prepare(void)
1024 {
1025 	/* Prepare to power off the system */
1026 	acpi_sleep_prepare(ACPI_STATE_S5);
1027 	acpi_disable_all_gpes();
1028 	acpi_os_wait_events_complete();
1029 }
1030 
acpi_power_off(void)1031 static void acpi_power_off(void)
1032 {
1033 	/* acpi_sleep_prepare(ACPI_STATE_S5) should have already been called */
1034 	pr_debug("%s called\n", __func__);
1035 	local_irq_disable();
1036 	acpi_enter_sleep_state(ACPI_STATE_S5);
1037 }
1038 
acpi_sleep_init(void)1039 int __init acpi_sleep_init(void)
1040 {
1041 	char supported[ACPI_S_STATE_COUNT * 3 + 1];
1042 	char *pos = supported;
1043 	int i;
1044 
1045 	acpi_sleep_dmi_check();
1046 
1047 	sleep_states[ACPI_STATE_S0] = 1;
1048 
1049 	acpi_sleep_syscore_init();
1050 	acpi_sleep_suspend_setup();
1051 	acpi_sleep_hibernate_setup();
1052 
1053 	if (acpi_sleep_state_supported(ACPI_STATE_S5)) {
1054 		sleep_states[ACPI_STATE_S5] = 1;
1055 		pm_power_off_prepare = acpi_power_off_prepare;
1056 		pm_power_off = acpi_power_off;
1057 	} else {
1058 		acpi_no_s5 = true;
1059 	}
1060 
1061 	supported[0] = 0;
1062 	for (i = 0; i < ACPI_S_STATE_COUNT; i++) {
1063 		if (sleep_states[i])
1064 			pos += sprintf(pos, " S%d", i);
1065 	}
1066 	pr_info("(supports%s)\n", supported);
1067 
1068 	/*
1069 	 * Register the tts_notifier to reboot notifier list so that the _TTS
1070 	 * object can also be evaluated when the system enters S5.
1071 	 */
1072 	register_reboot_notifier(&tts_notifier);
1073 	return 0;
1074 }
1075