1 // SPDX-License-Identifier: GPL-2.0-only 2 /* 3 * kernel/power/suspend.c - Suspend to RAM and standby functionality. 4 * 5 * Copyright (c) 2003 Patrick Mochel 6 * Copyright (c) 2003 Open Source Development Lab 7 * Copyright (c) 2009 Rafael J. Wysocki <rjw@sisk.pl>, Novell Inc. 8 */ 9 10 #define pr_fmt(fmt) "PM: " fmt 11 12 #include <linux/string.h> 13 #include <linux/delay.h> 14 #include <linux/errno.h> 15 #include <linux/init.h> 16 #include <linux/console.h> 17 #include <linux/cpu.h> 18 #include <linux/cpuidle.h> 19 #include <linux/gfp.h> 20 #include <linux/io.h> 21 #include <linux/kernel.h> 22 #include <linux/list.h> 23 #include <linux/mm.h> 24 #include <linux/slab.h> 25 #include <linux/export.h> 26 #include <linux/suspend.h> 27 #include <linux/syscore_ops.h> 28 #include <linux/swait.h> 29 #include <linux/ftrace.h> 30 #include <trace/events/power.h> 31 #include <linux/compiler.h> 32 #include <linux/moduleparam.h> 33 #include <linux/fs.h> 34 35 #include "power.h" 36 37 const char * const pm_labels[] = { 38 [PM_SUSPEND_TO_IDLE] = "freeze", 39 [PM_SUSPEND_STANDBY] = "standby", 40 [PM_SUSPEND_MEM] = "mem", 41 }; 42 const char *pm_states[PM_SUSPEND_MAX]; 43 static const char * const mem_sleep_labels[] = { 44 [PM_SUSPEND_TO_IDLE] = "s2idle", 45 [PM_SUSPEND_STANDBY] = "shallow", 46 [PM_SUSPEND_MEM] = "deep", 47 }; 48 const char *mem_sleep_states[PM_SUSPEND_MAX]; 49 50 suspend_state_t mem_sleep_current = PM_SUSPEND_TO_IDLE; 51 suspend_state_t mem_sleep_default = PM_SUSPEND_MAX; 52 suspend_state_t pm_suspend_target_state; 53 EXPORT_SYMBOL_GPL(pm_suspend_target_state); 54 55 unsigned int pm_suspend_global_flags; 56 EXPORT_SYMBOL_GPL(pm_suspend_global_flags); 57 58 static const struct platform_suspend_ops *suspend_ops; 59 static const struct platform_s2idle_ops *s2idle_ops; 60 static DECLARE_SWAIT_QUEUE_HEAD(s2idle_wait_head); 61 62 enum s2idle_states __read_mostly s2idle_state; 63 static DEFINE_RAW_SPINLOCK(s2idle_lock); 64 65 /** 66 * pm_suspend_default_s2idle - Check if suspend-to-idle is the default suspend. 67 * 68 * Return 'true' if suspend-to-idle has been selected as the default system 69 * suspend method. 70 */ 71 bool pm_suspend_default_s2idle(void) 72 { 73 return mem_sleep_current == PM_SUSPEND_TO_IDLE; 74 } 75 EXPORT_SYMBOL_GPL(pm_suspend_default_s2idle); 76 77 void s2idle_set_ops(const struct platform_s2idle_ops *ops) 78 { 79 unsigned int sleep_flags; 80 81 sleep_flags = lock_system_sleep(); 82 s2idle_ops = ops; 83 unlock_system_sleep(sleep_flags); 84 } 85 86 static void s2idle_begin(void) 87 { 88 s2idle_state = S2IDLE_STATE_NONE; 89 } 90 91 static void s2idle_enter(void) 92 { 93 trace_suspend_resume(TPS("machine_suspend"), PM_SUSPEND_TO_IDLE, true); 94 95 /* 96 * The correctness of the code below depends on the number of online 97 * CPUs being stable, but CPUs cannot be taken offline or put online 98 * while it is running. 99 * 100 * The s2idle_lock must be acquired before the pending wakeup check to 101 * prevent pm_system_wakeup() from running as a whole between that check 102 * and the subsequent s2idle_state update in which case a wakeup event 103 * would get lost. 104 */ 105 raw_spin_lock_irq(&s2idle_lock); 106 if (pm_wakeup_pending()) 107 goto out; 108 109 s2idle_state = S2IDLE_STATE_ENTER; 110 raw_spin_unlock_irq(&s2idle_lock); 111 112 /* Push all the CPUs into the idle loop. */ 113 wake_up_all_idle_cpus(); 114 /* Make the current CPU wait so it can enter the idle loop too. */ 115 swait_event_exclusive(s2idle_wait_head, 116 s2idle_state == S2IDLE_STATE_WAKE); 117 118 /* 119 * Kick all CPUs to ensure that they resume their timers and restore 120 * consistent system state. 121 */ 122 wake_up_all_idle_cpus(); 123 124 raw_spin_lock_irq(&s2idle_lock); 125 126 out: 127 s2idle_state = S2IDLE_STATE_NONE; 128 raw_spin_unlock_irq(&s2idle_lock); 129 130 trace_suspend_resume(TPS("machine_suspend"), PM_SUSPEND_TO_IDLE, false); 131 } 132 133 static void s2idle_loop(void) 134 { 135 pm_pr_dbg("suspend-to-idle\n"); 136 137 /* 138 * Suspend-to-idle equals: 139 * frozen processes + suspended devices + idle processors. 140 * Thus s2idle_enter() should be called right after all devices have 141 * been suspended. 142 * 143 * Wakeups during the noirq suspend of devices may be spurious, so try 144 * to avoid them upfront. 145 */ 146 for (;;) { 147 if (s2idle_ops && s2idle_ops->wake) { 148 if (s2idle_ops->wake()) 149 break; 150 } else if (pm_wakeup_pending()) { 151 break; 152 } 153 154 if (s2idle_ops && s2idle_ops->check) 155 s2idle_ops->check(); 156 157 s2idle_enter(); 158 } 159 160 pm_pr_dbg("resume from suspend-to-idle\n"); 161 } 162 163 void s2idle_wake(void) 164 { 165 unsigned long flags; 166 167 raw_spin_lock_irqsave(&s2idle_lock, flags); 168 if (s2idle_state > S2IDLE_STATE_NONE) { 169 s2idle_state = S2IDLE_STATE_WAKE; 170 swake_up_one(&s2idle_wait_head); 171 } 172 raw_spin_unlock_irqrestore(&s2idle_lock, flags); 173 } 174 EXPORT_SYMBOL_GPL(s2idle_wake); 175 176 static bool valid_state(suspend_state_t state) 177 { 178 /* 179 * The PM_SUSPEND_STANDBY and PM_SUSPEND_MEM states require low-level 180 * support and need to be valid to the low-level implementation. 181 * 182 * No ->valid() or ->enter() callback implies that none are valid. 183 */ 184 return suspend_ops && suspend_ops->valid && suspend_ops->valid(state) && 185 suspend_ops->enter; 186 } 187 188 void __init pm_states_init(void) 189 { 190 /* "mem" and "freeze" are always present in /sys/power/state. */ 191 pm_states[PM_SUSPEND_MEM] = pm_labels[PM_SUSPEND_MEM]; 192 pm_states[PM_SUSPEND_TO_IDLE] = pm_labels[PM_SUSPEND_TO_IDLE]; 193 /* 194 * Suspend-to-idle should be supported even without any suspend_ops, 195 * initialize mem_sleep_states[] accordingly here. 196 */ 197 mem_sleep_states[PM_SUSPEND_TO_IDLE] = mem_sleep_labels[PM_SUSPEND_TO_IDLE]; 198 } 199 200 static int __init mem_sleep_default_setup(char *str) 201 { 202 suspend_state_t state; 203 204 for (state = PM_SUSPEND_TO_IDLE; state <= PM_SUSPEND_MEM; state++) 205 if (mem_sleep_labels[state] && 206 !strcmp(str, mem_sleep_labels[state])) { 207 mem_sleep_default = state; 208 mem_sleep_current = state; 209 break; 210 } 211 212 return 1; 213 } 214 __setup("mem_sleep_default=", mem_sleep_default_setup); 215 216 /** 217 * suspend_set_ops - Set the global suspend method table. 218 * @ops: Suspend operations to use. 219 */ 220 void suspend_set_ops(const struct platform_suspend_ops *ops) 221 { 222 unsigned int sleep_flags; 223 224 sleep_flags = lock_system_sleep(); 225 226 suspend_ops = ops; 227 228 if (valid_state(PM_SUSPEND_STANDBY)) { 229 mem_sleep_states[PM_SUSPEND_STANDBY] = mem_sleep_labels[PM_SUSPEND_STANDBY]; 230 pm_states[PM_SUSPEND_STANDBY] = pm_labels[PM_SUSPEND_STANDBY]; 231 if (mem_sleep_default == PM_SUSPEND_STANDBY) 232 mem_sleep_current = PM_SUSPEND_STANDBY; 233 } 234 if (valid_state(PM_SUSPEND_MEM)) { 235 mem_sleep_states[PM_SUSPEND_MEM] = mem_sleep_labels[PM_SUSPEND_MEM]; 236 if (mem_sleep_default >= PM_SUSPEND_MEM) 237 mem_sleep_current = PM_SUSPEND_MEM; 238 } 239 240 unlock_system_sleep(sleep_flags); 241 } 242 EXPORT_SYMBOL_GPL(suspend_set_ops); 243 244 /** 245 * suspend_valid_only_mem - Generic memory-only valid callback. 246 * @state: Target system sleep state. 247 * 248 * Platform drivers that implement mem suspend only and only need to check for 249 * that in their .valid() callback can use this instead of rolling their own 250 * .valid() callback. 251 */ 252 int suspend_valid_only_mem(suspend_state_t state) 253 { 254 return state == PM_SUSPEND_MEM; 255 } 256 EXPORT_SYMBOL_GPL(suspend_valid_only_mem); 257 258 static bool sleep_state_supported(suspend_state_t state) 259 { 260 return state == PM_SUSPEND_TO_IDLE || 261 (valid_state(state) && !cxl_mem_active()); 262 } 263 264 static int platform_suspend_prepare(suspend_state_t state) 265 { 266 return state != PM_SUSPEND_TO_IDLE && suspend_ops->prepare ? 267 suspend_ops->prepare() : 0; 268 } 269 270 static int platform_suspend_prepare_late(suspend_state_t state) 271 { 272 return state == PM_SUSPEND_TO_IDLE && s2idle_ops && s2idle_ops->prepare ? 273 s2idle_ops->prepare() : 0; 274 } 275 276 static int platform_suspend_prepare_noirq(suspend_state_t state) 277 { 278 if (state == PM_SUSPEND_TO_IDLE) 279 return s2idle_ops && s2idle_ops->prepare_late ? 280 s2idle_ops->prepare_late() : 0; 281 282 return suspend_ops->prepare_late ? suspend_ops->prepare_late() : 0; 283 } 284 285 static void platform_resume_noirq(suspend_state_t state) 286 { 287 if (state == PM_SUSPEND_TO_IDLE) { 288 if (s2idle_ops && s2idle_ops->restore_early) 289 s2idle_ops->restore_early(); 290 } else if (suspend_ops->wake) { 291 suspend_ops->wake(); 292 } 293 } 294 295 static void platform_resume_early(suspend_state_t state) 296 { 297 if (state == PM_SUSPEND_TO_IDLE && s2idle_ops && s2idle_ops->restore) 298 s2idle_ops->restore(); 299 } 300 301 static void platform_resume_finish(suspend_state_t state) 302 { 303 if (state != PM_SUSPEND_TO_IDLE && suspend_ops->finish) 304 suspend_ops->finish(); 305 } 306 307 static int platform_suspend_begin(suspend_state_t state) 308 { 309 if (state == PM_SUSPEND_TO_IDLE && s2idle_ops && s2idle_ops->begin) 310 return s2idle_ops->begin(); 311 else if (suspend_ops && suspend_ops->begin) 312 return suspend_ops->begin(state); 313 else 314 return 0; 315 } 316 317 static void platform_resume_end(suspend_state_t state) 318 { 319 if (state == PM_SUSPEND_TO_IDLE && s2idle_ops && s2idle_ops->end) 320 s2idle_ops->end(); 321 else if (suspend_ops && suspend_ops->end) 322 suspend_ops->end(); 323 } 324 325 static void platform_recover(suspend_state_t state) 326 { 327 if (state != PM_SUSPEND_TO_IDLE && suspend_ops->recover) 328 suspend_ops->recover(); 329 } 330 331 static bool platform_suspend_again(suspend_state_t state) 332 { 333 return state != PM_SUSPEND_TO_IDLE && suspend_ops->suspend_again ? 334 suspend_ops->suspend_again() : false; 335 } 336 337 #ifdef CONFIG_PM_DEBUG 338 static unsigned int pm_test_delay = 5; 339 module_param(pm_test_delay, uint, 0644); 340 MODULE_PARM_DESC(pm_test_delay, 341 "Number of seconds to wait before resuming from suspend test"); 342 #endif 343 344 static int suspend_test(int level) 345 { 346 #ifdef CONFIG_PM_DEBUG 347 int i; 348 349 if (pm_test_level == level) { 350 pr_info("suspend debug: Waiting for %d second(s).\n", 351 pm_test_delay); 352 for (i = 0; i < pm_test_delay && !pm_wakeup_pending(); i++) { 353 if (level > TEST_CORE) 354 msleep(1000); 355 else 356 mdelay(1000); 357 } 358 return 1; 359 } 360 #endif /* !CONFIG_PM_DEBUG */ 361 return 0; 362 } 363 364 /** 365 * suspend_prepare - Prepare for entering system sleep state. 366 * @state: Target system sleep state. 367 * 368 * Common code run for every system sleep state that can be entered (except for 369 * hibernation). Run suspend notifiers, allocate the "suspend" console and 370 * freeze processes. 371 */ 372 static int suspend_prepare(suspend_state_t state) 373 { 374 int error; 375 376 if (!sleep_state_supported(state)) 377 return -EPERM; 378 379 pm_prepare_console(); 380 381 error = pm_notifier_call_chain_robust(PM_SUSPEND_PREPARE, PM_POST_SUSPEND); 382 if (error) 383 goto Restore; 384 385 filesystems_freeze(filesystem_freeze_enabled); 386 trace_suspend_resume(TPS("freeze_processes"), 0, true); 387 error = suspend_freeze_processes(); 388 trace_suspend_resume(TPS("freeze_processes"), 0, false); 389 if (!error) 390 return 0; 391 392 dpm_save_failed_step(SUSPEND_FREEZE); 393 filesystems_thaw(); 394 pm_notifier_call_chain(PM_POST_SUSPEND); 395 Restore: 396 pm_restore_console(); 397 return error; 398 } 399 400 /* default implementation */ 401 void __weak arch_suspend_disable_irqs(void) 402 { 403 local_irq_disable(); 404 } 405 406 /* default implementation */ 407 void __weak arch_suspend_enable_irqs(void) 408 { 409 local_irq_enable(); 410 } 411 412 /** 413 * suspend_enter - Make the system enter the given sleep state. 414 * @state: System sleep state to enter. 415 * @wakeup: Returns information that the sleep state should not be re-entered. 416 * 417 * This function should be called after devices have been suspended. 418 */ 419 static int suspend_enter(suspend_state_t state, bool *wakeup) 420 { 421 int error; 422 423 error = platform_suspend_prepare(state); 424 if (error) 425 goto Platform_finish; 426 427 error = dpm_suspend_late(PMSG_SUSPEND); 428 if (error) { 429 pr_err("late suspend of devices failed\n"); 430 goto Platform_finish; 431 } 432 error = platform_suspend_prepare_late(state); 433 if (error) 434 goto Devices_early_resume; 435 436 error = dpm_suspend_noirq(PMSG_SUSPEND); 437 if (error) { 438 pr_err("noirq suspend of devices failed\n"); 439 goto Platform_early_resume; 440 } 441 error = platform_suspend_prepare_noirq(state); 442 if (error) 443 goto Platform_wake; 444 445 if (suspend_test(TEST_PLATFORM)) 446 goto Platform_wake; 447 448 if (state == PM_SUSPEND_TO_IDLE) { 449 s2idle_loop(); 450 goto Platform_wake; 451 } 452 453 error = pm_sleep_disable_secondary_cpus(); 454 if (error || suspend_test(TEST_CPUS)) 455 goto Enable_cpus; 456 457 arch_suspend_disable_irqs(); 458 BUG_ON(!irqs_disabled()); 459 460 system_state = SYSTEM_SUSPEND; 461 462 error = syscore_suspend(); 463 if (!error) { 464 *wakeup = pm_wakeup_pending(); 465 if (!(suspend_test(TEST_CORE) || *wakeup)) { 466 trace_suspend_resume(TPS("machine_suspend"), 467 state, true); 468 error = suspend_ops->enter(state); 469 trace_suspend_resume(TPS("machine_suspend"), 470 state, false); 471 } else if (*wakeup) { 472 error = -EBUSY; 473 } 474 syscore_resume(); 475 } 476 477 system_state = SYSTEM_RUNNING; 478 479 arch_suspend_enable_irqs(); 480 BUG_ON(irqs_disabled()); 481 482 Enable_cpus: 483 pm_sleep_enable_secondary_cpus(); 484 485 Platform_wake: 486 platform_resume_noirq(state); 487 dpm_resume_noirq(PMSG_RESUME); 488 489 Platform_early_resume: 490 platform_resume_early(state); 491 492 Devices_early_resume: 493 dpm_resume_early(PMSG_RESUME); 494 495 Platform_finish: 496 platform_resume_finish(state); 497 return error; 498 } 499 500 /** 501 * suspend_devices_and_enter - Suspend devices and enter system sleep state. 502 * @state: System sleep state to enter. 503 */ 504 int suspend_devices_and_enter(suspend_state_t state) 505 { 506 int error; 507 bool wakeup = false; 508 509 if (!sleep_state_supported(state)) 510 return -ENOSYS; 511 512 pm_suspend_target_state = state; 513 514 if (state == PM_SUSPEND_TO_IDLE) 515 pm_set_suspend_no_platform(); 516 517 error = platform_suspend_begin(state); 518 if (error) 519 goto Close; 520 521 console_suspend_all(); 522 suspend_test_start(); 523 error = dpm_suspend_start(PMSG_SUSPEND); 524 if (error) { 525 pr_err("Some devices failed to suspend, or early wake event detected\n"); 526 goto Recover_platform; 527 } 528 suspend_test_finish("suspend devices"); 529 if (suspend_test(TEST_DEVICES)) 530 goto Recover_platform; 531 532 do { 533 error = suspend_enter(state, &wakeup); 534 } while (!error && !wakeup && platform_suspend_again(state)); 535 536 Resume_devices: 537 suspend_test_start(); 538 dpm_resume_end(PMSG_RESUME); 539 suspend_test_finish("resume devices"); 540 trace_suspend_resume(TPS("console_resume_all"), state, true); 541 console_resume_all(); 542 trace_suspend_resume(TPS("console_resume_all"), state, false); 543 544 Close: 545 platform_resume_end(state); 546 pm_suspend_target_state = PM_SUSPEND_ON; 547 return error; 548 549 Recover_platform: 550 platform_recover(state); 551 goto Resume_devices; 552 } 553 554 /** 555 * suspend_finish - Clean up before finishing the suspend sequence. 556 * 557 * Call platform code to clean up, restart processes, and free the console that 558 * we've allocated. This routine is not called for hibernation. 559 */ 560 static void suspend_finish(void) 561 { 562 suspend_thaw_processes(); 563 filesystems_thaw(); 564 pm_notifier_call_chain(PM_POST_SUSPEND); 565 pm_restore_console(); 566 } 567 568 /** 569 * enter_state - Do common work needed to enter system sleep state. 570 * @state: System sleep state to enter. 571 * 572 * Make sure that no one else is trying to put the system into a sleep state. 573 * Fail if that's not the case. Otherwise, prepare for system suspend, make the 574 * system enter the given sleep state and clean up after wakeup. 575 */ 576 static int enter_state(suspend_state_t state) 577 { 578 int error; 579 580 trace_suspend_resume(TPS("suspend_enter"), state, true); 581 if (state == PM_SUSPEND_TO_IDLE) { 582 #ifdef CONFIG_PM_DEBUG 583 if (pm_test_level != TEST_NONE && pm_test_level <= TEST_CPUS) { 584 pr_warn("Unsupported test mode for suspend to idle, please choose none/freezer/devices/platform.\n"); 585 return -EAGAIN; 586 } 587 #endif 588 } else if (!valid_state(state)) { 589 return -EINVAL; 590 } 591 if (!mutex_trylock(&system_transition_mutex)) 592 return -EBUSY; 593 594 if (state == PM_SUSPEND_TO_IDLE) 595 s2idle_begin(); 596 597 if (sync_on_suspend_enabled) { 598 trace_suspend_resume(TPS("sync_filesystems"), 0, true); 599 600 error = pm_sleep_fs_sync(); 601 if (error) 602 goto Unlock; 603 604 trace_suspend_resume(TPS("sync_filesystems"), 0, false); 605 } 606 607 pm_pr_dbg("Preparing system for sleep (%s)\n", mem_sleep_labels[state]); 608 pm_suspend_clear_flags(); 609 error = suspend_prepare(state); 610 if (error) 611 goto Unlock; 612 613 if (suspend_test(TEST_FREEZER)) 614 goto Finish; 615 616 trace_suspend_resume(TPS("suspend_enter"), state, false); 617 pm_pr_dbg("Suspending system (%s)\n", mem_sleep_labels[state]); 618 error = suspend_devices_and_enter(state); 619 620 Finish: 621 events_check_enabled = false; 622 pm_pr_dbg("Finishing wakeup.\n"); 623 suspend_finish(); 624 Unlock: 625 mutex_unlock(&system_transition_mutex); 626 return error; 627 } 628 629 /** 630 * pm_suspend - Externally visible function for suspending the system. 631 * @state: System sleep state to enter. 632 * 633 * Check if the value of @state represents one of the supported states, 634 * execute enter_state() and update system suspend statistics. 635 */ 636 int pm_suspend(suspend_state_t state) 637 { 638 int error; 639 640 if (state <= PM_SUSPEND_ON || state >= PM_SUSPEND_MAX) 641 return -EINVAL; 642 643 pr_info("suspend entry (%s)\n", mem_sleep_labels[state]); 644 error = enter_state(state); 645 dpm_save_errno(error); 646 pr_info("suspend exit\n"); 647 return error; 648 } 649 EXPORT_SYMBOL(pm_suspend); 650