1 /* SPDX-License-Identifier: GPL-2.0-only */ 2 /* 3 * linux/include/linux/cpufreq.h 4 * 5 * Copyright (C) 2001 Russell King 6 * (C) 2002 - 2003 Dominik Brodowski <[email protected]> 7 */ 8 #ifndef _LINUX_CPUFREQ_H 9 #define _LINUX_CPUFREQ_H 10 11 #include <linux/clk.h> 12 #include <linux/cpumask.h> 13 #include <linux/completion.h> 14 #include <linux/kobject.h> 15 #include <linux/notifier.h> 16 #include <linux/pm_qos.h> 17 #include <linux/spinlock.h> 18 #include <linux/sysfs.h> 19 20 /********************************************************************* 21 * CPUFREQ INTERFACE * 22 *********************************************************************/ 23 /* 24 * Frequency values here are CPU kHz 25 * 26 * Maximum transition latency is in nanoseconds - if it's unknown, 27 * CPUFREQ_ETERNAL shall be used. 28 */ 29 30 #define CPUFREQ_ETERNAL (-1) 31 #define CPUFREQ_NAME_LEN 16 32 /* Print length for names. Extra 1 space for accommodating '\n' in prints */ 33 #define CPUFREQ_NAME_PLEN (CPUFREQ_NAME_LEN + 1) 34 35 struct cpufreq_governor; 36 37 enum cpufreq_table_sorting { 38 CPUFREQ_TABLE_UNSORTED, 39 CPUFREQ_TABLE_SORTED_ASCENDING, 40 CPUFREQ_TABLE_SORTED_DESCENDING 41 }; 42 43 struct cpufreq_cpuinfo { 44 unsigned int max_freq; 45 unsigned int min_freq; 46 47 /* in 10^(-9) s = nanoseconds */ 48 unsigned int transition_latency; 49 }; 50 51 struct cpufreq_policy { 52 /* CPUs sharing clock, require sw coordination */ 53 cpumask_var_t cpus; /* Online CPUs only */ 54 cpumask_var_t related_cpus; /* Online + Offline CPUs */ 55 cpumask_var_t real_cpus; /* Related and present */ 56 57 unsigned int shared_type; /* ACPI: ANY or ALL affected CPUs 58 should set cpufreq */ 59 unsigned int cpu; /* cpu managing this policy, must be online */ 60 61 struct clk *clk; 62 struct cpufreq_cpuinfo cpuinfo;/* see above */ 63 64 unsigned int min; /* in kHz */ 65 unsigned int max; /* in kHz */ 66 unsigned int cur; /* in kHz, only needed if cpufreq 67 * governors are used */ 68 unsigned int restore_freq; /* = policy->cur before transition */ 69 unsigned int suspend_freq; /* freq to set during suspend */ 70 71 unsigned int policy; /* see above */ 72 unsigned int last_policy; /* policy before unplug */ 73 struct cpufreq_governor *governor; /* see below */ 74 void *governor_data; 75 char last_governor[CPUFREQ_NAME_LEN]; /* last governor used */ 76 77 struct work_struct update; /* if update_policy() needs to be 78 * called, but you're in IRQ context */ 79 80 struct freq_constraints constraints; 81 struct freq_qos_request *min_freq_req; 82 struct freq_qos_request *max_freq_req; 83 84 struct cpufreq_frequency_table *freq_table; 85 enum cpufreq_table_sorting freq_table_sorted; 86 87 struct list_head policy_list; 88 struct kobject kobj; 89 struct completion kobj_unregister; 90 91 /* 92 * The rules for this semaphore: 93 * - Any routine that wants to read from the policy structure will 94 * do a down_read on this semaphore. 95 * - Any routine that will write to the policy structure and/or may take away 96 * the policy altogether (eg. CPU hotplug), will hold this lock in write 97 * mode before doing so. 98 */ 99 struct rw_semaphore rwsem; 100 101 /* 102 * Fast switch flags: 103 * - fast_switch_possible should be set by the driver if it can 104 * guarantee that frequency can be changed on any CPU sharing the 105 * policy and that the change will affect all of the policy CPUs then. 106 * - fast_switch_enabled is to be set by governors that support fast 107 * frequency switching with the help of cpufreq_enable_fast_switch(). 108 */ 109 bool fast_switch_possible; 110 bool fast_switch_enabled; 111 112 /* 113 * Preferred average time interval between consecutive invocations of 114 * the driver to set the frequency for this policy. To be set by the 115 * scaling driver (0, which is the default, means no preference). 116 */ 117 unsigned int transition_delay_us; 118 119 /* 120 * Remote DVFS flag (Not added to the driver structure as we don't want 121 * to access another structure from scheduler hotpath). 122 * 123 * Should be set if CPUs can do DVFS on behalf of other CPUs from 124 * different cpufreq policies. 125 */ 126 bool dvfs_possible_from_any_cpu; 127 128 /* Cached frequency lookup from cpufreq_driver_resolve_freq. */ 129 unsigned int cached_target_freq; 130 unsigned int cached_resolved_idx; 131 132 /* Synchronization for frequency transitions */ 133 bool transition_ongoing; /* Tracks transition status */ 134 spinlock_t transition_lock; 135 wait_queue_head_t transition_wait; 136 struct task_struct *transition_task; /* Task which is doing the transition */ 137 138 /* cpufreq-stats */ 139 struct cpufreq_stats *stats; 140 141 /* For cpufreq driver's internal use */ 142 void *driver_data; 143 144 /* Pointer to the cooling device if used for thermal mitigation */ 145 struct thermal_cooling_device *cdev; 146 147 struct notifier_block nb_min; 148 struct notifier_block nb_max; 149 }; 150 151 /* 152 * Used for passing new cpufreq policy data to the cpufreq driver's ->verify() 153 * callback for sanitization. That callback is only expected to modify the min 154 * and max values, if necessary, and specifically it must not update the 155 * frequency table. 156 */ 157 struct cpufreq_policy_data { 158 struct cpufreq_cpuinfo cpuinfo; 159 struct cpufreq_frequency_table *freq_table; 160 unsigned int cpu; 161 unsigned int min; /* in kHz */ 162 unsigned int max; /* in kHz */ 163 }; 164 165 struct cpufreq_freqs { 166 struct cpufreq_policy *policy; 167 unsigned int old; 168 unsigned int new; 169 u8 flags; /* flags of cpufreq_driver, see below. */ 170 }; 171 172 /* Only for ACPI */ 173 #define CPUFREQ_SHARED_TYPE_NONE (0) /* None */ 174 #define CPUFREQ_SHARED_TYPE_HW (1) /* HW does needed coordination */ 175 #define CPUFREQ_SHARED_TYPE_ALL (2) /* All dependent CPUs should set freq */ 176 #define CPUFREQ_SHARED_TYPE_ANY (3) /* Freq can be set from any dependent CPU*/ 177 178 #ifdef CONFIG_CPU_FREQ 179 struct cpufreq_policy *cpufreq_cpu_get_raw(unsigned int cpu); 180 struct cpufreq_policy *cpufreq_cpu_get(unsigned int cpu); 181 void cpufreq_cpu_put(struct cpufreq_policy *policy); 182 #else 183 static inline struct cpufreq_policy *cpufreq_cpu_get_raw(unsigned int cpu) 184 { 185 return NULL; 186 } 187 static inline struct cpufreq_policy *cpufreq_cpu_get(unsigned int cpu) 188 { 189 return NULL; 190 } 191 static inline void cpufreq_cpu_put(struct cpufreq_policy *policy) { } 192 #endif 193 194 static inline bool policy_is_inactive(struct cpufreq_policy *policy) 195 { 196 return cpumask_empty(policy->cpus); 197 } 198 199 static inline bool policy_is_shared(struct cpufreq_policy *policy) 200 { 201 return cpumask_weight(policy->cpus) > 1; 202 } 203 204 #ifdef CONFIG_CPU_FREQ 205 unsigned int cpufreq_get(unsigned int cpu); 206 unsigned int cpufreq_quick_get(unsigned int cpu); 207 unsigned int cpufreq_quick_get_max(unsigned int cpu); 208 unsigned int cpufreq_get_hw_max_freq(unsigned int cpu); 209 void disable_cpufreq(void); 210 211 u64 get_cpu_idle_time(unsigned int cpu, u64 *wall, int io_busy); 212 213 struct cpufreq_policy *cpufreq_cpu_acquire(unsigned int cpu); 214 void cpufreq_cpu_release(struct cpufreq_policy *policy); 215 int cpufreq_get_policy(struct cpufreq_policy *policy, unsigned int cpu); 216 void refresh_frequency_limits(struct cpufreq_policy *policy); 217 void cpufreq_update_policy(unsigned int cpu); 218 void cpufreq_update_limits(unsigned int cpu); 219 bool have_governor_per_policy(void); 220 struct kobject *get_governor_parent_kobj(struct cpufreq_policy *policy); 221 void cpufreq_enable_fast_switch(struct cpufreq_policy *policy); 222 void cpufreq_disable_fast_switch(struct cpufreq_policy *policy); 223 #else 224 static inline unsigned int cpufreq_get(unsigned int cpu) 225 { 226 return 0; 227 } 228 static inline unsigned int cpufreq_quick_get(unsigned int cpu) 229 { 230 return 0; 231 } 232 static inline unsigned int cpufreq_quick_get_max(unsigned int cpu) 233 { 234 return 0; 235 } 236 static inline unsigned int cpufreq_get_hw_max_freq(unsigned int cpu) 237 { 238 return 0; 239 } 240 static inline void disable_cpufreq(void) { } 241 #endif 242 243 #ifdef CONFIG_CPU_FREQ_STAT 244 void cpufreq_stats_create_table(struct cpufreq_policy *policy); 245 void cpufreq_stats_free_table(struct cpufreq_policy *policy); 246 void cpufreq_stats_record_transition(struct cpufreq_policy *policy, 247 unsigned int new_freq); 248 #else 249 static inline void cpufreq_stats_create_table(struct cpufreq_policy *policy) { } 250 static inline void cpufreq_stats_free_table(struct cpufreq_policy *policy) { } 251 static inline void cpufreq_stats_record_transition(struct cpufreq_policy *policy, 252 unsigned int new_freq) { } 253 #endif /* CONFIG_CPU_FREQ_STAT */ 254 255 /********************************************************************* 256 * CPUFREQ DRIVER INTERFACE * 257 *********************************************************************/ 258 259 #define CPUFREQ_RELATION_L 0 /* lowest frequency at or above target */ 260 #define CPUFREQ_RELATION_H 1 /* highest frequency below or at target */ 261 #define CPUFREQ_RELATION_C 2 /* closest frequency to target */ 262 263 struct freq_attr { 264 struct attribute attr; 265 ssize_t (*show)(struct cpufreq_policy *, char *); 266 ssize_t (*store)(struct cpufreq_policy *, const char *, size_t count); 267 }; 268 269 #define cpufreq_freq_attr_ro(_name) \ 270 static struct freq_attr _name = \ 271 __ATTR(_name, 0444, show_##_name, NULL) 272 273 #define cpufreq_freq_attr_ro_perm(_name, _perm) \ 274 static struct freq_attr _name = \ 275 __ATTR(_name, _perm, show_##_name, NULL) 276 277 #define cpufreq_freq_attr_rw(_name) \ 278 static struct freq_attr _name = \ 279 __ATTR(_name, 0644, show_##_name, store_##_name) 280 281 #define cpufreq_freq_attr_wo(_name) \ 282 static struct freq_attr _name = \ 283 __ATTR(_name, 0200, NULL, store_##_name) 284 285 #define define_one_global_ro(_name) \ 286 static struct kobj_attribute _name = \ 287 __ATTR(_name, 0444, show_##_name, NULL) 288 289 #define define_one_global_rw(_name) \ 290 static struct kobj_attribute _name = \ 291 __ATTR(_name, 0644, show_##_name, store_##_name) 292 293 294 struct cpufreq_driver { 295 char name[CPUFREQ_NAME_LEN]; 296 u8 flags; 297 void *driver_data; 298 299 /* needed by all drivers */ 300 int (*init)(struct cpufreq_policy *policy); 301 int (*verify)(struct cpufreq_policy_data *policy); 302 303 /* define one out of two */ 304 int (*setpolicy)(struct cpufreq_policy *policy); 305 306 /* 307 * On failure, should always restore frequency to policy->restore_freq 308 * (i.e. old freq). 309 */ 310 int (*target)(struct cpufreq_policy *policy, 311 unsigned int target_freq, 312 unsigned int relation); /* Deprecated */ 313 int (*target_index)(struct cpufreq_policy *policy, 314 unsigned int index); 315 unsigned int (*fast_switch)(struct cpufreq_policy *policy, 316 unsigned int target_freq); 317 318 /* 319 * Caches and returns the lowest driver-supported frequency greater than 320 * or equal to the target frequency, subject to any driver limitations. 321 * Does not set the frequency. Only to be implemented for drivers with 322 * target(). 323 */ 324 unsigned int (*resolve_freq)(struct cpufreq_policy *policy, 325 unsigned int target_freq); 326 327 /* 328 * Only for drivers with target_index() and CPUFREQ_ASYNC_NOTIFICATION 329 * unset. 330 * 331 * get_intermediate should return a stable intermediate frequency 332 * platform wants to switch to and target_intermediate() should set CPU 333 * to that frequency, before jumping to the frequency corresponding 334 * to 'index'. Core will take care of sending notifications and driver 335 * doesn't have to handle them in target_intermediate() or 336 * target_index(). 337 * 338 * Drivers can return '0' from get_intermediate() in case they don't 339 * wish to switch to intermediate frequency for some target frequency. 340 * In that case core will directly call ->target_index(). 341 */ 342 unsigned int (*get_intermediate)(struct cpufreq_policy *policy, 343 unsigned int index); 344 int (*target_intermediate)(struct cpufreq_policy *policy, 345 unsigned int index); 346 347 /* should be defined, if possible */ 348 unsigned int (*get)(unsigned int cpu); 349 350 /* Called to update policy limits on firmware notifications. */ 351 void (*update_limits)(unsigned int cpu); 352 353 /* optional */ 354 int (*bios_limit)(int cpu, unsigned int *limit); 355 356 int (*online)(struct cpufreq_policy *policy); 357 int (*offline)(struct cpufreq_policy *policy); 358 int (*exit)(struct cpufreq_policy *policy); 359 void (*stop_cpu)(struct cpufreq_policy *policy); 360 int (*suspend)(struct cpufreq_policy *policy); 361 int (*resume)(struct cpufreq_policy *policy); 362 363 /* Will be called after the driver is fully initialized */ 364 void (*ready)(struct cpufreq_policy *policy); 365 366 struct freq_attr **attr; 367 368 /* platform specific boost support code */ 369 bool boost_enabled; 370 int (*set_boost)(struct cpufreq_policy *policy, int state); 371 }; 372 373 /* flags */ 374 375 /* driver isn't removed even if all ->init() calls failed */ 376 #define CPUFREQ_STICKY BIT(0) 377 378 /* loops_per_jiffy or other kernel "constants" aren't affected by frequency transitions */ 379 #define CPUFREQ_CONST_LOOPS BIT(1) 380 381 /* don't warn on suspend/resume speed mismatches */ 382 #define CPUFREQ_PM_NO_WARN BIT(2) 383 384 /* 385 * This should be set by platforms having multiple clock-domains, i.e. 386 * supporting multiple policies. With this sysfs directories of governor would 387 * be created in cpu/cpu<num>/cpufreq/ directory and so they can use the same 388 * governor with different tunables for different clusters. 389 */ 390 #define CPUFREQ_HAVE_GOVERNOR_PER_POLICY BIT(3) 391 392 /* 393 * Driver will do POSTCHANGE notifications from outside of their ->target() 394 * routine and so must set cpufreq_driver->flags with this flag, so that core 395 * can handle them specially. 396 */ 397 #define CPUFREQ_ASYNC_NOTIFICATION BIT(4) 398 399 /* 400 * Set by drivers which want cpufreq core to check if CPU is running at a 401 * frequency present in freq-table exposed by the driver. For these drivers if 402 * CPU is found running at an out of table freq, we will try to set it to a freq 403 * from the table. And if that fails, we will stop further boot process by 404 * issuing a BUG_ON(). 405 */ 406 #define CPUFREQ_NEED_INITIAL_FREQ_CHECK BIT(5) 407 408 /* 409 * Set by drivers to disallow use of governors with "dynamic_switching" flag 410 * set. 411 */ 412 #define CPUFREQ_NO_AUTO_DYNAMIC_SWITCHING BIT(6) 413 414 /* 415 * Set by drivers that want the core to automatically register the cpufreq 416 * driver as a thermal cooling device. 417 */ 418 #define CPUFREQ_IS_COOLING_DEV BIT(7) 419 420 int cpufreq_register_driver(struct cpufreq_driver *driver_data); 421 int cpufreq_unregister_driver(struct cpufreq_driver *driver_data); 422 423 const char *cpufreq_get_current_driver(void); 424 void *cpufreq_get_driver_data(void); 425 426 static inline int cpufreq_thermal_control_enabled(struct cpufreq_driver *drv) 427 { 428 return IS_ENABLED(CONFIG_CPU_THERMAL) && 429 (drv->flags & CPUFREQ_IS_COOLING_DEV); 430 } 431 432 static inline void cpufreq_verify_within_limits(struct cpufreq_policy_data *policy, 433 unsigned int min, 434 unsigned int max) 435 { 436 if (policy->min < min) 437 policy->min = min; 438 if (policy->max < min) 439 policy->max = min; 440 if (policy->min > max) 441 policy->min = max; 442 if (policy->max > max) 443 policy->max = max; 444 if (policy->min > policy->max) 445 policy->min = policy->max; 446 return; 447 } 448 449 static inline void 450 cpufreq_verify_within_cpu_limits(struct cpufreq_policy_data *policy) 451 { 452 cpufreq_verify_within_limits(policy, policy->cpuinfo.min_freq, 453 policy->cpuinfo.max_freq); 454 } 455 456 #ifdef CONFIG_CPU_FREQ 457 void cpufreq_suspend(void); 458 void cpufreq_resume(void); 459 int cpufreq_generic_suspend(struct cpufreq_policy *policy); 460 #else 461 static inline void cpufreq_suspend(void) {} 462 static inline void cpufreq_resume(void) {} 463 #endif 464 465 /********************************************************************* 466 * CPUFREQ NOTIFIER INTERFACE * 467 *********************************************************************/ 468 469 #define CPUFREQ_TRANSITION_NOTIFIER (0) 470 #define CPUFREQ_POLICY_NOTIFIER (1) 471 472 /* Transition notifiers */ 473 #define CPUFREQ_PRECHANGE (0) 474 #define CPUFREQ_POSTCHANGE (1) 475 476 /* Policy Notifiers */ 477 #define CPUFREQ_CREATE_POLICY (0) 478 #define CPUFREQ_REMOVE_POLICY (1) 479 480 #ifdef CONFIG_CPU_FREQ 481 int cpufreq_register_notifier(struct notifier_block *nb, unsigned int list); 482 int cpufreq_unregister_notifier(struct notifier_block *nb, unsigned int list); 483 484 void cpufreq_freq_transition_begin(struct cpufreq_policy *policy, 485 struct cpufreq_freqs *freqs); 486 void cpufreq_freq_transition_end(struct cpufreq_policy *policy, 487 struct cpufreq_freqs *freqs, int transition_failed); 488 489 #else /* CONFIG_CPU_FREQ */ 490 static inline int cpufreq_register_notifier(struct notifier_block *nb, 491 unsigned int list) 492 { 493 return 0; 494 } 495 static inline int cpufreq_unregister_notifier(struct notifier_block *nb, 496 unsigned int list) 497 { 498 return 0; 499 } 500 #endif /* !CONFIG_CPU_FREQ */ 501 502 /** 503 * cpufreq_scale - "old * mult / div" calculation for large values (32-bit-arch 504 * safe) 505 * @old: old value 506 * @div: divisor 507 * @mult: multiplier 508 * 509 * 510 * new = old * mult / div 511 */ 512 static inline unsigned long cpufreq_scale(unsigned long old, u_int div, 513 u_int mult) 514 { 515 #if BITS_PER_LONG == 32 516 u64 result = ((u64) old) * ((u64) mult); 517 do_div(result, div); 518 return (unsigned long) result; 519 520 #elif BITS_PER_LONG == 64 521 unsigned long result = old * ((u64) mult); 522 result /= div; 523 return result; 524 #endif 525 } 526 527 /********************************************************************* 528 * CPUFREQ GOVERNORS * 529 *********************************************************************/ 530 531 #define CPUFREQ_POLICY_UNKNOWN (0) 532 /* 533 * If (cpufreq_driver->target) exists, the ->governor decides what frequency 534 * within the limits is used. If (cpufreq_driver->setpolicy> exists, these 535 * two generic policies are available: 536 */ 537 #define CPUFREQ_POLICY_POWERSAVE (1) 538 #define CPUFREQ_POLICY_PERFORMANCE (2) 539 540 /* 541 * The polling frequency depends on the capability of the processor. Default 542 * polling frequency is 1000 times the transition latency of the processor. The 543 * ondemand governor will work on any processor with transition latency <= 10ms, 544 * using appropriate sampling rate. 545 */ 546 #define LATENCY_MULTIPLIER (1000) 547 548 struct cpufreq_governor { 549 char name[CPUFREQ_NAME_LEN]; 550 int (*init)(struct cpufreq_policy *policy); 551 void (*exit)(struct cpufreq_policy *policy); 552 int (*start)(struct cpufreq_policy *policy); 553 void (*stop)(struct cpufreq_policy *policy); 554 void (*limits)(struct cpufreq_policy *policy); 555 ssize_t (*show_setspeed) (struct cpufreq_policy *policy, 556 char *buf); 557 int (*store_setspeed) (struct cpufreq_policy *policy, 558 unsigned int freq); 559 /* For governors which change frequency dynamically by themselves */ 560 bool dynamic_switching; 561 struct list_head governor_list; 562 struct module *owner; 563 }; 564 565 /* Pass a target to the cpufreq driver */ 566 unsigned int cpufreq_driver_fast_switch(struct cpufreq_policy *policy, 567 unsigned int target_freq); 568 int cpufreq_driver_target(struct cpufreq_policy *policy, 569 unsigned int target_freq, 570 unsigned int relation); 571 int __cpufreq_driver_target(struct cpufreq_policy *policy, 572 unsigned int target_freq, 573 unsigned int relation); 574 unsigned int cpufreq_driver_resolve_freq(struct cpufreq_policy *policy, 575 unsigned int target_freq); 576 unsigned int cpufreq_policy_transition_delay_us(struct cpufreq_policy *policy); 577 int cpufreq_register_governor(struct cpufreq_governor *governor); 578 void cpufreq_unregister_governor(struct cpufreq_governor *governor); 579 580 #define cpufreq_governor_init(__governor) \ 581 static int __init __governor##_init(void) \ 582 { \ 583 return cpufreq_register_governor(&__governor); \ 584 } \ 585 core_initcall(__governor##_init) 586 587 #define cpufreq_governor_exit(__governor) \ 588 static void __exit __governor##_exit(void) \ 589 { \ 590 return cpufreq_unregister_governor(&__governor); \ 591 } \ 592 module_exit(__governor##_exit) 593 594 struct cpufreq_governor *cpufreq_default_governor(void); 595 struct cpufreq_governor *cpufreq_fallback_governor(void); 596 597 static inline void cpufreq_policy_apply_limits(struct cpufreq_policy *policy) 598 { 599 if (policy->max < policy->cur) 600 __cpufreq_driver_target(policy, policy->max, CPUFREQ_RELATION_H); 601 else if (policy->min > policy->cur) 602 __cpufreq_driver_target(policy, policy->min, CPUFREQ_RELATION_L); 603 } 604 605 /* Governor attribute set */ 606 struct gov_attr_set { 607 struct kobject kobj; 608 struct list_head policy_list; 609 struct mutex update_lock; 610 int usage_count; 611 }; 612 613 /* sysfs ops for cpufreq governors */ 614 extern const struct sysfs_ops governor_sysfs_ops; 615 616 void gov_attr_set_init(struct gov_attr_set *attr_set, struct list_head *list_node); 617 void gov_attr_set_get(struct gov_attr_set *attr_set, struct list_head *list_node); 618 unsigned int gov_attr_set_put(struct gov_attr_set *attr_set, struct list_head *list_node); 619 620 /* Governor sysfs attribute */ 621 struct governor_attr { 622 struct attribute attr; 623 ssize_t (*show)(struct gov_attr_set *attr_set, char *buf); 624 ssize_t (*store)(struct gov_attr_set *attr_set, const char *buf, 625 size_t count); 626 }; 627 628 /********************************************************************* 629 * FREQUENCY TABLE HELPERS * 630 *********************************************************************/ 631 632 /* Special Values of .frequency field */ 633 #define CPUFREQ_ENTRY_INVALID ~0u 634 #define CPUFREQ_TABLE_END ~1u 635 /* Special Values of .flags field */ 636 #define CPUFREQ_BOOST_FREQ (1 << 0) 637 638 struct cpufreq_frequency_table { 639 unsigned int flags; 640 unsigned int driver_data; /* driver specific data, not used by core */ 641 unsigned int frequency; /* kHz - doesn't need to be in ascending 642 * order */ 643 }; 644 645 #if defined(CONFIG_CPU_FREQ) && defined(CONFIG_PM_OPP) 646 int dev_pm_opp_init_cpufreq_table(struct device *dev, 647 struct cpufreq_frequency_table **table); 648 void dev_pm_opp_free_cpufreq_table(struct device *dev, 649 struct cpufreq_frequency_table **table); 650 #else 651 static inline int dev_pm_opp_init_cpufreq_table(struct device *dev, 652 struct cpufreq_frequency_table 653 **table) 654 { 655 return -EINVAL; 656 } 657 658 static inline void dev_pm_opp_free_cpufreq_table(struct device *dev, 659 struct cpufreq_frequency_table 660 **table) 661 { 662 } 663 #endif 664 665 /* 666 * cpufreq_for_each_entry - iterate over a cpufreq_frequency_table 667 * @pos: the cpufreq_frequency_table * to use as a loop cursor. 668 * @table: the cpufreq_frequency_table * to iterate over. 669 */ 670 671 #define cpufreq_for_each_entry(pos, table) \ 672 for (pos = table; pos->frequency != CPUFREQ_TABLE_END; pos++) 673 674 /* 675 * cpufreq_for_each_entry_idx - iterate over a cpufreq_frequency_table 676 * with index 677 * @pos: the cpufreq_frequency_table * to use as a loop cursor. 678 * @table: the cpufreq_frequency_table * to iterate over. 679 * @idx: the table entry currently being processed 680 */ 681 682 #define cpufreq_for_each_entry_idx(pos, table, idx) \ 683 for (pos = table, idx = 0; pos->frequency != CPUFREQ_TABLE_END; \ 684 pos++, idx++) 685 686 /* 687 * cpufreq_for_each_valid_entry - iterate over a cpufreq_frequency_table 688 * excluding CPUFREQ_ENTRY_INVALID frequencies. 689 * @pos: the cpufreq_frequency_table * to use as a loop cursor. 690 * @table: the cpufreq_frequency_table * to iterate over. 691 */ 692 693 #define cpufreq_for_each_valid_entry(pos, table) \ 694 for (pos = table; pos->frequency != CPUFREQ_TABLE_END; pos++) \ 695 if (pos->frequency == CPUFREQ_ENTRY_INVALID) \ 696 continue; \ 697 else 698 699 /* 700 * cpufreq_for_each_valid_entry_idx - iterate with index over a cpufreq 701 * frequency_table excluding CPUFREQ_ENTRY_INVALID frequencies. 702 * @pos: the cpufreq_frequency_table * to use as a loop cursor. 703 * @table: the cpufreq_frequency_table * to iterate over. 704 * @idx: the table entry currently being processed 705 */ 706 707 #define cpufreq_for_each_valid_entry_idx(pos, table, idx) \ 708 cpufreq_for_each_entry_idx(pos, table, idx) \ 709 if (pos->frequency == CPUFREQ_ENTRY_INVALID) \ 710 continue; \ 711 else 712 713 714 int cpufreq_frequency_table_cpuinfo(struct cpufreq_policy *policy, 715 struct cpufreq_frequency_table *table); 716 717 int cpufreq_frequency_table_verify(struct cpufreq_policy_data *policy, 718 struct cpufreq_frequency_table *table); 719 int cpufreq_generic_frequency_table_verify(struct cpufreq_policy_data *policy); 720 721 int cpufreq_table_index_unsorted(struct cpufreq_policy *policy, 722 unsigned int target_freq, 723 unsigned int relation); 724 int cpufreq_frequency_table_get_index(struct cpufreq_policy *policy, 725 unsigned int freq); 726 727 ssize_t cpufreq_show_cpus(const struct cpumask *mask, char *buf); 728 729 #ifdef CONFIG_CPU_FREQ 730 int cpufreq_boost_trigger_state(int state); 731 int cpufreq_boost_enabled(void); 732 int cpufreq_enable_boost_support(void); 733 bool policy_has_boost_freq(struct cpufreq_policy *policy); 734 735 /* Find lowest freq at or above target in a table in ascending order */ 736 static inline int cpufreq_table_find_index_al(struct cpufreq_policy *policy, 737 unsigned int target_freq) 738 { 739 struct cpufreq_frequency_table *table = policy->freq_table; 740 struct cpufreq_frequency_table *pos; 741 unsigned int freq; 742 int idx, best = -1; 743 744 cpufreq_for_each_valid_entry_idx(pos, table, idx) { 745 freq = pos->frequency; 746 747 if (freq >= target_freq) 748 return idx; 749 750 best = idx; 751 } 752 753 return best; 754 } 755 756 /* Find lowest freq at or above target in a table in descending order */ 757 static inline int cpufreq_table_find_index_dl(struct cpufreq_policy *policy, 758 unsigned int target_freq) 759 { 760 struct cpufreq_frequency_table *table = policy->freq_table; 761 struct cpufreq_frequency_table *pos; 762 unsigned int freq; 763 int idx, best = -1; 764 765 cpufreq_for_each_valid_entry_idx(pos, table, idx) { 766 freq = pos->frequency; 767 768 if (freq == target_freq) 769 return idx; 770 771 if (freq > target_freq) { 772 best = idx; 773 continue; 774 } 775 776 /* No freq found above target_freq */ 777 if (best == -1) 778 return idx; 779 780 return best; 781 } 782 783 return best; 784 } 785 786 /* Works only on sorted freq-tables */ 787 static inline int cpufreq_table_find_index_l(struct cpufreq_policy *policy, 788 unsigned int target_freq) 789 { 790 target_freq = clamp_val(target_freq, policy->min, policy->max); 791 792 if (policy->freq_table_sorted == CPUFREQ_TABLE_SORTED_ASCENDING) 793 return cpufreq_table_find_index_al(policy, target_freq); 794 else 795 return cpufreq_table_find_index_dl(policy, target_freq); 796 } 797 798 /* Find highest freq at or below target in a table in ascending order */ 799 static inline int cpufreq_table_find_index_ah(struct cpufreq_policy *policy, 800 unsigned int target_freq) 801 { 802 struct cpufreq_frequency_table *table = policy->freq_table; 803 struct cpufreq_frequency_table *pos; 804 unsigned int freq; 805 int idx, best = -1; 806 807 cpufreq_for_each_valid_entry_idx(pos, table, idx) { 808 freq = pos->frequency; 809 810 if (freq == target_freq) 811 return idx; 812 813 if (freq < target_freq) { 814 best = idx; 815 continue; 816 } 817 818 /* No freq found below target_freq */ 819 if (best == -1) 820 return idx; 821 822 return best; 823 } 824 825 return best; 826 } 827 828 /* Find highest freq at or below target in a table in descending order */ 829 static inline int cpufreq_table_find_index_dh(struct cpufreq_policy *policy, 830 unsigned int target_freq) 831 { 832 struct cpufreq_frequency_table *table = policy->freq_table; 833 struct cpufreq_frequency_table *pos; 834 unsigned int freq; 835 int idx, best = -1; 836 837 cpufreq_for_each_valid_entry_idx(pos, table, idx) { 838 freq = pos->frequency; 839 840 if (freq <= target_freq) 841 return idx; 842 843 best = idx; 844 } 845 846 return best; 847 } 848 849 /* Works only on sorted freq-tables */ 850 static inline int cpufreq_table_find_index_h(struct cpufreq_policy *policy, 851 unsigned int target_freq) 852 { 853 target_freq = clamp_val(target_freq, policy->min, policy->max); 854 855 if (policy->freq_table_sorted == CPUFREQ_TABLE_SORTED_ASCENDING) 856 return cpufreq_table_find_index_ah(policy, target_freq); 857 else 858 return cpufreq_table_find_index_dh(policy, target_freq); 859 } 860 861 /* Find closest freq to target in a table in ascending order */ 862 static inline int cpufreq_table_find_index_ac(struct cpufreq_policy *policy, 863 unsigned int target_freq) 864 { 865 struct cpufreq_frequency_table *table = policy->freq_table; 866 struct cpufreq_frequency_table *pos; 867 unsigned int freq; 868 int idx, best = -1; 869 870 cpufreq_for_each_valid_entry_idx(pos, table, idx) { 871 freq = pos->frequency; 872 873 if (freq == target_freq) 874 return idx; 875 876 if (freq < target_freq) { 877 best = idx; 878 continue; 879 } 880 881 /* No freq found below target_freq */ 882 if (best == -1) 883 return idx; 884 885 /* Choose the closest freq */ 886 if (target_freq - table[best].frequency > freq - target_freq) 887 return idx; 888 889 return best; 890 } 891 892 return best; 893 } 894 895 /* Find closest freq to target in a table in descending order */ 896 static inline int cpufreq_table_find_index_dc(struct cpufreq_policy *policy, 897 unsigned int target_freq) 898 { 899 struct cpufreq_frequency_table *table = policy->freq_table; 900 struct cpufreq_frequency_table *pos; 901 unsigned int freq; 902 int idx, best = -1; 903 904 cpufreq_for_each_valid_entry_idx(pos, table, idx) { 905 freq = pos->frequency; 906 907 if (freq == target_freq) 908 return idx; 909 910 if (freq > target_freq) { 911 best = idx; 912 continue; 913 } 914 915 /* No freq found above target_freq */ 916 if (best == -1) 917 return idx; 918 919 /* Choose the closest freq */ 920 if (table[best].frequency - target_freq > target_freq - freq) 921 return idx; 922 923 return best; 924 } 925 926 return best; 927 } 928 929 /* Works only on sorted freq-tables */ 930 static inline int cpufreq_table_find_index_c(struct cpufreq_policy *policy, 931 unsigned int target_freq) 932 { 933 target_freq = clamp_val(target_freq, policy->min, policy->max); 934 935 if (policy->freq_table_sorted == CPUFREQ_TABLE_SORTED_ASCENDING) 936 return cpufreq_table_find_index_ac(policy, target_freq); 937 else 938 return cpufreq_table_find_index_dc(policy, target_freq); 939 } 940 941 static inline int cpufreq_frequency_table_target(struct cpufreq_policy *policy, 942 unsigned int target_freq, 943 unsigned int relation) 944 { 945 if (unlikely(policy->freq_table_sorted == CPUFREQ_TABLE_UNSORTED)) 946 return cpufreq_table_index_unsorted(policy, target_freq, 947 relation); 948 949 switch (relation) { 950 case CPUFREQ_RELATION_L: 951 return cpufreq_table_find_index_l(policy, target_freq); 952 case CPUFREQ_RELATION_H: 953 return cpufreq_table_find_index_h(policy, target_freq); 954 case CPUFREQ_RELATION_C: 955 return cpufreq_table_find_index_c(policy, target_freq); 956 default: 957 pr_err("%s: Invalid relation: %d\n", __func__, relation); 958 return -EINVAL; 959 } 960 } 961 962 static inline int cpufreq_table_count_valid_entries(const struct cpufreq_policy *policy) 963 { 964 struct cpufreq_frequency_table *pos; 965 int count = 0; 966 967 if (unlikely(!policy->freq_table)) 968 return 0; 969 970 cpufreq_for_each_valid_entry(pos, policy->freq_table) 971 count++; 972 973 return count; 974 } 975 #else 976 static inline int cpufreq_boost_trigger_state(int state) 977 { 978 return 0; 979 } 980 static inline int cpufreq_boost_enabled(void) 981 { 982 return 0; 983 } 984 985 static inline int cpufreq_enable_boost_support(void) 986 { 987 return -EINVAL; 988 } 989 990 static inline bool policy_has_boost_freq(struct cpufreq_policy *policy) 991 { 992 return false; 993 } 994 #endif 995 996 #if defined(CONFIG_ENERGY_MODEL) && defined(CONFIG_CPU_FREQ_GOV_SCHEDUTIL) 997 void sched_cpufreq_governor_change(struct cpufreq_policy *policy, 998 struct cpufreq_governor *old_gov); 999 #else 1000 static inline void sched_cpufreq_governor_change(struct cpufreq_policy *policy, 1001 struct cpufreq_governor *old_gov) { } 1002 #endif 1003 1004 extern void arch_freq_prepare_all(void); 1005 extern unsigned int arch_freq_get_on_cpu(int cpu); 1006 1007 extern void arch_set_freq_scale(struct cpumask *cpus, unsigned long cur_freq, 1008 unsigned long max_freq); 1009 1010 /* the following are really really optional */ 1011 extern struct freq_attr cpufreq_freq_attr_scaling_available_freqs; 1012 extern struct freq_attr cpufreq_freq_attr_scaling_boost_freqs; 1013 extern struct freq_attr *cpufreq_generic_attr[]; 1014 int cpufreq_table_validate_and_sort(struct cpufreq_policy *policy); 1015 1016 unsigned int cpufreq_generic_get(unsigned int cpu); 1017 void cpufreq_generic_init(struct cpufreq_policy *policy, 1018 struct cpufreq_frequency_table *table, 1019 unsigned int transition_latency); 1020 #endif /* _LINUX_CPUFREQ_H */ 1021