Merge branch 'leds-fixes-for-3.19' of git://git.kernel.org/pub/scm/linux/kernel/git...
[deliverable/linux.git] / include / linux / perf_event.h
CommitLineData
0793a61d 1/*
57c0c15b 2 * Performance events:
0793a61d 3 *
a308444c 4 * Copyright (C) 2008-2009, Thomas Gleixner <tglx@linutronix.de>
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5 * Copyright (C) 2008-2011, Red Hat, Inc., Ingo Molnar
6 * Copyright (C) 2008-2011, Red Hat, Inc., Peter Zijlstra
0793a61d 7 *
57c0c15b 8 * Data type definitions, declarations, prototypes.
0793a61d 9 *
a308444c 10 * Started by: Thomas Gleixner and Ingo Molnar
0793a61d 11 *
57c0c15b 12 * For licencing details see kernel-base/COPYING
0793a61d 13 */
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14#ifndef _LINUX_PERF_EVENT_H
15#define _LINUX_PERF_EVENT_H
0793a61d 16
607ca46e 17#include <uapi/linux/perf_event.h>
0793a61d 18
9f66a381 19/*
f3dfd265 20 * Kernel-internal data types and definitions:
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21 */
22
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23#ifdef CONFIG_PERF_EVENTS
24# include <asm/perf_event.h>
7be79236 25# include <asm/local64.h>
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26#endif
27
39447b38 28struct perf_guest_info_callbacks {
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29 int (*is_in_guest)(void);
30 int (*is_user_mode)(void);
31 unsigned long (*get_guest_ip)(void);
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32};
33
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34#ifdef CONFIG_HAVE_HW_BREAKPOINT
35#include <asm/hw_breakpoint.h>
36#endif
37
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38#include <linux/list.h>
39#include <linux/mutex.h>
40#include <linux/rculist.h>
41#include <linux/rcupdate.h>
42#include <linux/spinlock.h>
d6d020e9 43#include <linux/hrtimer.h>
3c446b3d 44#include <linux/fs.h>
709e50cf 45#include <linux/pid_namespace.h>
906010b2 46#include <linux/workqueue.h>
5331d7b8 47#include <linux/ftrace.h>
85cfabbc 48#include <linux/cpu.h>
e360adbe 49#include <linux/irq_work.h>
c5905afb 50#include <linux/static_key.h>
851cf6e7 51#include <linux/jump_label_ratelimit.h>
60063497 52#include <linux/atomic.h>
641cc938 53#include <linux/sysfs.h>
4018994f 54#include <linux/perf_regs.h>
fadfe7be 55#include <linux/workqueue.h>
fa588151 56#include <asm/local.h>
f3dfd265 57
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58struct perf_callchain_entry {
59 __u64 nr;
60 __u64 ip[PERF_MAX_STACK_DEPTH];
61};
62
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63struct perf_raw_record {
64 u32 size;
65 void *data;
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66};
67
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68/*
69 * branch stack layout:
70 * nr: number of taken branches stored in entries[]
71 *
72 * Note that nr can vary from sample to sample
73 * branches (to, from) are stored from most recent
74 * to least recent, i.e., entries[0] contains the most
75 * recent branch.
76 */
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77struct perf_branch_stack {
78 __u64 nr;
79 struct perf_branch_entry entries[0];
80};
81
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82struct task_struct;
83
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84/*
85 * extra PMU register associated with an event
86 */
87struct hw_perf_event_extra {
88 u64 config; /* register value */
89 unsigned int reg; /* register address or index */
90 int alloc; /* extra register already allocated */
91 int idx; /* index in shared_regs->regs[] */
92};
93
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94struct event_constraint;
95
0793a61d 96/**
cdd6c482 97 * struct hw_perf_event - performance event hardware details:
0793a61d 98 */
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99struct hw_perf_event {
100#ifdef CONFIG_PERF_EVENTS
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101 union {
102 struct { /* hardware */
a308444c 103 u64 config;
447a194b 104 u64 last_tag;
a308444c 105 unsigned long config_base;
cdd6c482 106 unsigned long event_base;
c48b6053 107 int event_base_rdpmc;
a308444c 108 int idx;
447a194b 109 int last_cpu;
9fac2cf3 110 int flags;
bce38cd5 111
efc9f05d 112 struct hw_perf_event_extra extra_reg;
bce38cd5 113 struct hw_perf_event_extra branch_reg;
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114
115 struct event_constraint *constraint;
d6d020e9 116 };
721a669b 117 struct { /* software */
a308444c 118 struct hrtimer hrtimer;
d6d020e9 119 };
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120 struct { /* tracepoint */
121 struct task_struct *tp_target;
122 /* for tp_event->class */
123 struct list_head tp_list;
124 };
24f1e32c 125#ifdef CONFIG_HAVE_HW_BREAKPOINT
45a73372 126 struct { /* breakpoint */
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127 /*
128 * Crufty hack to avoid the chicken and egg
129 * problem hw_breakpoint has with context
130 * creation and event initalization.
131 */
132 struct task_struct *bp_target;
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133 struct arch_hw_breakpoint info;
134 struct list_head bp_list;
45a73372 135 };
24f1e32c 136#endif
d6d020e9 137 };
a4eaf7f1 138 int state;
e7850595 139 local64_t prev_count;
b23f3325 140 u64 sample_period;
9e350de3 141 u64 last_period;
e7850595 142 local64_t period_left;
e050e3f0 143 u64 interrupts_seq;
60db5e09 144 u64 interrupts;
6a24ed6c 145
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146 u64 freq_time_stamp;
147 u64 freq_count_stamp;
ee06094f 148#endif
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149};
150
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151/*
152 * hw_perf_event::state flags
153 */
154#define PERF_HES_STOPPED 0x01 /* the counter is stopped */
155#define PERF_HES_UPTODATE 0x02 /* event->count up-to-date */
156#define PERF_HES_ARCH 0x04
157
cdd6c482 158struct perf_event;
621a01ea 159
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160/*
161 * Common implementation detail of pmu::{start,commit,cancel}_txn
162 */
163#define PERF_EVENT_TXN 0x1
6bde9b6c 164
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165/**
166 * pmu::capabilities flags
167 */
168#define PERF_PMU_CAP_NO_INTERRUPT 0x01
169
621a01ea 170/**
4aeb0b42 171 * struct pmu - generic performance monitoring unit
621a01ea 172 */
4aeb0b42 173struct pmu {
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174 struct list_head entry;
175
c464c76e 176 struct module *module;
abe43400 177 struct device *dev;
0c9d42ed 178 const struct attribute_group **attr_groups;
03d8e80b 179 const char *name;
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180 int type;
181
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182 /*
183 * various common per-pmu feature flags
184 */
185 int capabilities;
186
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187 int * __percpu pmu_disable_count;
188 struct perf_cpu_context * __percpu pmu_cpu_context;
8dc85d54 189 int task_ctx_nr;
62b85639 190 int hrtimer_interval_ms;
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191
192 /*
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193 * Fully disable/enable this PMU, can be used to protect from the PMI
194 * as well as for lazy/batch writing of the MSRs.
6bde9b6c 195 */
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196 void (*pmu_enable) (struct pmu *pmu); /* optional */
197 void (*pmu_disable) (struct pmu *pmu); /* optional */
6bde9b6c 198
8d2cacbb 199 /*
a4eaf7f1 200 * Try and initialize the event for this PMU.
24cd7f54 201 * Should return -ENOENT when the @event doesn't match this PMU.
8d2cacbb 202 */
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203 int (*event_init) (struct perf_event *event);
204
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205#define PERF_EF_START 0x01 /* start the counter when adding */
206#define PERF_EF_RELOAD 0x02 /* reload the counter when starting */
207#define PERF_EF_UPDATE 0x04 /* update the counter when stopping */
208
8d2cacbb 209 /*
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210 * Adds/Removes a counter to/from the PMU, can be done inside
211 * a transaction, see the ->*_txn() methods.
212 */
213 int (*add) (struct perf_event *event, int flags);
214 void (*del) (struct perf_event *event, int flags);
215
216 /*
217 * Starts/Stops a counter present on the PMU. The PMI handler
218 * should stop the counter when perf_event_overflow() returns
219 * !0. ->start() will be used to continue.
220 */
221 void (*start) (struct perf_event *event, int flags);
222 void (*stop) (struct perf_event *event, int flags);
223
224 /*
225 * Updates the counter value of the event.
226 */
cdd6c482 227 void (*read) (struct perf_event *event);
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228
229 /*
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230 * Group events scheduling is treated as a transaction, add
231 * group events as a whole and perform one schedulability test.
232 * If the test fails, roll back the whole group
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233 *
234 * Start the transaction, after this ->add() doesn't need to
24cd7f54 235 * do schedulability tests.
8d2cacbb 236 */
e7e7ee2e 237 void (*start_txn) (struct pmu *pmu); /* optional */
8d2cacbb 238 /*
a4eaf7f1 239 * If ->start_txn() disabled the ->add() schedulability test
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240 * then ->commit_txn() is required to perform one. On success
241 * the transaction is closed. On error the transaction is kept
242 * open until ->cancel_txn() is called.
243 */
e7e7ee2e 244 int (*commit_txn) (struct pmu *pmu); /* optional */
8d2cacbb 245 /*
a4eaf7f1 246 * Will cancel the transaction, assumes ->del() is called
25985edc 247 * for each successful ->add() during the transaction.
8d2cacbb 248 */
e7e7ee2e 249 void (*cancel_txn) (struct pmu *pmu); /* optional */
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250
251 /*
252 * Will return the value for perf_event_mmap_page::index for this event,
253 * if no implementation is provided it will default to: event->hw.idx + 1.
254 */
255 int (*event_idx) (struct perf_event *event); /*optional */
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256
257 /*
258 * flush branch stack on context-switches (needed in cpu-wide mode)
259 */
260 void (*flush_branch_stack) (void);
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261};
262
6a930700 263/**
cdd6c482 264 * enum perf_event_active_state - the states of a event
6a930700 265 */
cdd6c482 266enum perf_event_active_state {
179033b3 267 PERF_EVENT_STATE_EXIT = -3,
57c0c15b 268 PERF_EVENT_STATE_ERROR = -2,
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269 PERF_EVENT_STATE_OFF = -1,
270 PERF_EVENT_STATE_INACTIVE = 0,
57c0c15b 271 PERF_EVENT_STATE_ACTIVE = 1,
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272};
273
9b51f66d 274struct file;
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275struct perf_sample_data;
276
a8b0ca17 277typedef void (*perf_overflow_handler_t)(struct perf_event *,
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278 struct perf_sample_data *,
279 struct pt_regs *regs);
280
d6f962b5 281enum perf_group_flag {
e7e7ee2e 282 PERF_GROUP_SOFTWARE = 0x1,
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283};
284
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285#define SWEVENT_HLIST_BITS 8
286#define SWEVENT_HLIST_SIZE (1 << SWEVENT_HLIST_BITS)
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287
288struct swevent_hlist {
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289 struct hlist_head heads[SWEVENT_HLIST_SIZE];
290 struct rcu_head rcu_head;
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291};
292
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293#define PERF_ATTACH_CONTEXT 0x01
294#define PERF_ATTACH_GROUP 0x02
d580ff86 295#define PERF_ATTACH_TASK 0x04
8a49542c 296
877c6856 297struct perf_cgroup;
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298struct ring_buffer;
299
0793a61d 300/**
cdd6c482 301 * struct perf_event - performance event kernel representation:
0793a61d 302 */
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303struct perf_event {
304#ifdef CONFIG_PERF_EVENTS
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305 /*
306 * entry onto perf_event_context::event_list;
307 * modifications require ctx->lock
308 * RCU safe iterations.
309 */
592903cd 310 struct list_head event_entry;
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311
312 /*
313 * XXX: group_entry and sibling_list should be mutually exclusive;
314 * either you're a sibling on a group, or you're the group leader.
315 * Rework the code to always use the same list element.
316 *
317 * Locked for modification by both ctx->mutex and ctx->lock; holding
318 * either sufficies for read.
319 */
320 struct list_head group_entry;
04289bb9 321 struct list_head sibling_list;
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322
323 /*
324 * We need storage to track the entries in perf_pmu_migrate_context; we
325 * cannot use the event_entry because of RCU and we want to keep the
326 * group in tact which avoids us using the other two entries.
327 */
328 struct list_head migrate_entry;
329
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330 struct hlist_node hlist_entry;
331 struct list_head active_entry;
0127c3ea 332 int nr_siblings;
d6f962b5 333 int group_flags;
cdd6c482 334 struct perf_event *group_leader;
a4eaf7f1 335 struct pmu *pmu;
04289bb9 336
cdd6c482 337 enum perf_event_active_state state;
8a49542c 338 unsigned int attach_state;
e7850595 339 local64_t count;
a6e6dea6 340 atomic64_t child_count;
ee06094f 341
53cfbf59 342 /*
cdd6c482 343 * These are the total time in nanoseconds that the event
53cfbf59 344 * has been enabled (i.e. eligible to run, and the task has
cdd6c482 345 * been scheduled in, if this is a per-task event)
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346 * and running (scheduled onto the CPU), respectively.
347 *
348 * They are computed from tstamp_enabled, tstamp_running and
cdd6c482 349 * tstamp_stopped when the event is in INACTIVE or ACTIVE state.
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350 */
351 u64 total_time_enabled;
352 u64 total_time_running;
353
354 /*
355 * These are timestamps used for computing total_time_enabled
cdd6c482 356 * and total_time_running when the event is in INACTIVE or
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357 * ACTIVE state, measured in nanoseconds from an arbitrary point
358 * in time.
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359 * tstamp_enabled: the notional time when the event was enabled
360 * tstamp_running: the notional time when the event was scheduled on
53cfbf59 361 * tstamp_stopped: in INACTIVE state, the notional time when the
cdd6c482 362 * event was scheduled off.
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363 */
364 u64 tstamp_enabled;
365 u64 tstamp_running;
366 u64 tstamp_stopped;
367
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368 /*
369 * timestamp shadows the actual context timing but it can
370 * be safely used in NMI interrupt context. It reflects the
371 * context time as it was when the event was last scheduled in.
372 *
373 * ctx_time already accounts for ctx->timestamp. Therefore to
374 * compute ctx_time for a sample, simply add perf_clock().
375 */
376 u64 shadow_ctx_time;
377
24f1e32c 378 struct perf_event_attr attr;
c320c7b7 379 u16 header_size;
6844c09d 380 u16 id_header_size;
c320c7b7 381 u16 read_size;
cdd6c482 382 struct hw_perf_event hw;
0793a61d 383
cdd6c482 384 struct perf_event_context *ctx;
a6fa941d 385 atomic_long_t refcount;
0793a61d 386
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387 /*
388 * These accumulate total time (in nanoseconds) that children
cdd6c482 389 * events have been enabled and running, respectively.
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390 */
391 atomic64_t child_total_time_enabled;
392 atomic64_t child_total_time_running;
393
0793a61d 394 /*
d859e29f 395 * Protect attach/detach and child_list:
0793a61d 396 */
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397 struct mutex child_mutex;
398 struct list_head child_list;
cdd6c482 399 struct perf_event *parent;
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400
401 int oncpu;
402 int cpu;
403
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404 struct list_head owner_entry;
405 struct task_struct *owner;
406
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407 /* mmap bits */
408 struct mutex mmap_mutex;
409 atomic_t mmap_count;
26cb63ad 410
76369139 411 struct ring_buffer *rb;
10c6db11 412 struct list_head rb_entry;
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413 unsigned long rcu_batches;
414 int rcu_pending;
37d81828 415
7b732a75 416 /* poll related */
0793a61d 417 wait_queue_head_t waitq;
3c446b3d 418 struct fasync_struct *fasync;
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419
420 /* delayed work for NMIs and such */
421 int pending_wakeup;
4c9e2542 422 int pending_kill;
79f14641 423 int pending_disable;
e360adbe 424 struct irq_work pending;
592903cd 425
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426 atomic_t event_limit;
427
cdd6c482 428 void (*destroy)(struct perf_event *);
592903cd 429 struct rcu_head rcu_head;
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430
431 struct pid_namespace *ns;
8e5799b1 432 u64 id;
6fb2915d 433
b326e956 434 perf_overflow_handler_t overflow_handler;
4dc0da86 435 void *overflow_handler_context;
453f19ee 436
07b139c8 437#ifdef CONFIG_EVENT_TRACING
1c024eca 438 struct ftrace_event_call *tp_event;
6fb2915d 439 struct event_filter *filter;
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440#ifdef CONFIG_FUNCTION_TRACER
441 struct ftrace_ops ftrace_ops;
442#endif
ee06094f 443#endif
6fb2915d 444
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445#ifdef CONFIG_CGROUP_PERF
446 struct perf_cgroup *cgrp; /* cgroup event is attach to */
447 int cgrp_defer_enabled;
448#endif
449
6fb2915d 450#endif /* CONFIG_PERF_EVENTS */
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451};
452
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453enum perf_event_context_type {
454 task_context,
455 cpu_context,
456};
457
0793a61d 458/**
cdd6c482 459 * struct perf_event_context - event context structure
0793a61d 460 *
cdd6c482 461 * Used as a container for task events and CPU events as well:
0793a61d 462 */
cdd6c482 463struct perf_event_context {
108b02cf 464 struct pmu *pmu;
ee643c41 465 enum perf_event_context_type type;
0793a61d 466 /*
cdd6c482 467 * Protect the states of the events in the list,
d859e29f 468 * nr_active, and the list:
0793a61d 469 */
e625cce1 470 raw_spinlock_t lock;
d859e29f 471 /*
cdd6c482 472 * Protect the list of events. Locking either mutex or lock
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473 * is sufficient to ensure the list doesn't change; to change
474 * the list you need to lock both the mutex and the spinlock.
475 */
a308444c 476 struct mutex mutex;
04289bb9 477
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478 struct list_head pinned_groups;
479 struct list_head flexible_groups;
a308444c 480 struct list_head event_list;
cdd6c482 481 int nr_events;
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482 int nr_active;
483 int is_active;
bfbd3381 484 int nr_stat;
0f5a2601 485 int nr_freq;
dddd3379 486 int rotate_disable;
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487 atomic_t refcount;
488 struct task_struct *task;
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489
490 /*
4af4998b 491 * Context clock, runs when context enabled.
53cfbf59 492 */
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493 u64 time;
494 u64 timestamp;
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495
496 /*
497 * These fields let us detect when two contexts have both
498 * been cloned (inherited) from a common ancestor.
499 */
cdd6c482 500 struct perf_event_context *parent_ctx;
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501 u64 parent_gen;
502 u64 generation;
503 int pin_count;
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504 int nr_cgroups; /* cgroup evts */
505 int nr_branch_stack; /* branch_stack evt */
28009ce4 506 struct rcu_head rcu_head;
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507
508 struct delayed_work orphans_remove;
509 bool orphans_remove_sched;
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510};
511
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512/*
513 * Number of contexts where an event can trigger:
e7e7ee2e 514 * task, softirq, hardirq, nmi.
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515 */
516#define PERF_NR_CONTEXTS 4
517
0793a61d 518/**
cdd6c482 519 * struct perf_event_cpu_context - per cpu event context structure
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520 */
521struct perf_cpu_context {
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522 struct perf_event_context ctx;
523 struct perf_event_context *task_ctx;
0793a61d 524 int active_oncpu;
3b6f9e5c 525 int exclusive;
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526 struct hrtimer hrtimer;
527 ktime_t hrtimer_interval;
e9d2b064 528 struct list_head rotation_list;
3f1f3320 529 struct pmu *unique_pmu;
e5d1367f 530 struct perf_cgroup *cgrp;
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531};
532
5622f295 533struct perf_output_handle {
57c0c15b 534 struct perf_event *event;
76369139 535 struct ring_buffer *rb;
6d1acfd5 536 unsigned long wakeup;
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537 unsigned long size;
538 void *addr;
539 int page;
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540};
541
cdd6c482 542#ifdef CONFIG_PERF_EVENTS
829b42dd 543
03d8e80b 544extern int perf_pmu_register(struct pmu *pmu, const char *name, int type);
b0a873eb 545extern void perf_pmu_unregister(struct pmu *pmu);
621a01ea 546
3bf101ba 547extern int perf_num_counters(void);
84c79910 548extern const char *perf_pmu_name(void);
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549extern void __perf_event_task_sched_in(struct task_struct *prev,
550 struct task_struct *task);
551extern void __perf_event_task_sched_out(struct task_struct *prev,
552 struct task_struct *next);
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553extern int perf_event_init_task(struct task_struct *child);
554extern void perf_event_exit_task(struct task_struct *child);
555extern void perf_event_free_task(struct task_struct *task);
4e231c79 556extern void perf_event_delayed_put(struct task_struct *task);
cdd6c482 557extern void perf_event_print_debug(void);
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558extern void perf_pmu_disable(struct pmu *pmu);
559extern void perf_pmu_enable(struct pmu *pmu);
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560extern int perf_event_task_disable(void);
561extern int perf_event_task_enable(void);
26ca5c11 562extern int perf_event_refresh(struct perf_event *event, int refresh);
cdd6c482 563extern void perf_event_update_userpage(struct perf_event *event);
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564extern int perf_event_release_kernel(struct perf_event *event);
565extern struct perf_event *
566perf_event_create_kernel_counter(struct perf_event_attr *attr,
567 int cpu,
38a81da2 568 struct task_struct *task,
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569 perf_overflow_handler_t callback,
570 void *context);
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571extern void perf_pmu_migrate_context(struct pmu *pmu,
572 int src_cpu, int dst_cpu);
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573extern u64 perf_event_read_value(struct perf_event *event,
574 u64 *enabled, u64 *running);
5c92d124 575
d010b332 576
df1a132b 577struct perf_sample_data {
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578 /*
579 * Fields set by perf_sample_data_init(), group so as to
580 * minimize the cachelines touched.
581 */
582 u64 addr;
583 struct perf_raw_record *raw;
584 struct perf_branch_stack *br_stack;
585 u64 period;
586 u64 weight;
587 u64 txn;
588 union perf_mem_data_src data_src;
5622f295 589
2565711f
PZ
590 /*
591 * The other fields, optionally {set,used} by
592 * perf_{prepare,output}_sample().
593 */
594 u64 type;
5622f295
MM
595 u64 ip;
596 struct {
597 u32 pid;
598 u32 tid;
599 } tid_entry;
600 u64 time;
5622f295
MM
601 u64 id;
602 u64 stream_id;
603 struct {
604 u32 cpu;
605 u32 reserved;
606 } cpu_entry;
5622f295 607 struct perf_callchain_entry *callchain;
88a7c26a
AL
608
609 /*
610 * regs_user may point to task_pt_regs or to regs_user_copy, depending
611 * on arch details.
612 */
60e2364e 613 struct perf_regs regs_user;
88a7c26a
AL
614 struct pt_regs regs_user_copy;
615
60e2364e 616 struct perf_regs regs_intr;
c5ebcedb 617 u64 stack_user_size;
2565711f 618} ____cacheline_aligned;
df1a132b 619
770eee1f
SE
620/* default value for data source */
621#define PERF_MEM_NA (PERF_MEM_S(OP, NA) |\
622 PERF_MEM_S(LVL, NA) |\
623 PERF_MEM_S(SNOOP, NA) |\
624 PERF_MEM_S(LOCK, NA) |\
625 PERF_MEM_S(TLB, NA))
626
fd0d000b
RR
627static inline void perf_sample_data_init(struct perf_sample_data *data,
628 u64 addr, u64 period)
dc1d628a 629{
fd0d000b 630 /* remaining struct members initialized in perf_prepare_sample() */
dc1d628a
PZ
631 data->addr = addr;
632 data->raw = NULL;
bce38cd5 633 data->br_stack = NULL;
4018994f 634 data->period = period;
c3feedf2 635 data->weight = 0;
770eee1f 636 data->data_src.val = PERF_MEM_NA;
fdfbbd07 637 data->txn = 0;
dc1d628a
PZ
638}
639
5622f295
MM
640extern void perf_output_sample(struct perf_output_handle *handle,
641 struct perf_event_header *header,
642 struct perf_sample_data *data,
cdd6c482 643 struct perf_event *event);
5622f295
MM
644extern void perf_prepare_sample(struct perf_event_header *header,
645 struct perf_sample_data *data,
cdd6c482 646 struct perf_event *event,
5622f295
MM
647 struct pt_regs *regs);
648
a8b0ca17 649extern int perf_event_overflow(struct perf_event *event,
5622f295
MM
650 struct perf_sample_data *data,
651 struct pt_regs *regs);
df1a132b 652
6c7e550f
FBH
653static inline bool is_sampling_event(struct perf_event *event)
654{
655 return event->attr.sample_period != 0;
656}
657
3b6f9e5c 658/*
cdd6c482 659 * Return 1 for a software event, 0 for a hardware event
3b6f9e5c 660 */
cdd6c482 661static inline int is_software_event(struct perf_event *event)
3b6f9e5c 662{
89a1e187 663 return event->pmu->task_ctx_nr == perf_sw_context;
3b6f9e5c
PM
664}
665
c5905afb 666extern struct static_key perf_swevent_enabled[PERF_COUNT_SW_MAX];
f29ac756 667
a8b0ca17 668extern void __perf_sw_event(u32, u64, struct pt_regs *, u64);
f29ac756 669
b0f82b81 670#ifndef perf_arch_fetch_caller_regs
e7e7ee2e 671static inline void perf_arch_fetch_caller_regs(struct pt_regs *regs, unsigned long ip) { }
b0f82b81 672#endif
5331d7b8
FW
673
674/*
675 * Take a snapshot of the regs. Skip ip and frame pointer to
676 * the nth caller. We only need a few of the regs:
677 * - ip for PERF_SAMPLE_IP
678 * - cs for user_mode() tests
679 * - bp for callchains
680 * - eflags, for future purposes, just in case
681 */
b0f82b81 682static inline void perf_fetch_caller_regs(struct pt_regs *regs)
5331d7b8 683{
5331d7b8
FW
684 memset(regs, 0, sizeof(*regs));
685
b0f82b81 686 perf_arch_fetch_caller_regs(regs, CALLER_ADDR0);
5331d7b8
FW
687}
688
7e54a5a0 689static __always_inline void
a8b0ca17 690perf_sw_event(u32 event_id, u64 nr, struct pt_regs *regs, u64 addr)
e49a5bd3 691{
7e54a5a0
PZ
692 struct pt_regs hot_regs;
693
c5905afb 694 if (static_key_false(&perf_swevent_enabled[event_id])) {
d430d3d7
JB
695 if (!regs) {
696 perf_fetch_caller_regs(&hot_regs);
697 regs = &hot_regs;
698 }
a8b0ca17 699 __perf_sw_event(event_id, nr, regs, addr);
e49a5bd3
FW
700 }
701}
702
c5905afb 703extern struct static_key_deferred perf_sched_events;
ee6dcfa4 704
ab0cce56 705static inline void perf_event_task_sched_in(struct task_struct *prev,
a8d757ef 706 struct task_struct *task)
ab0cce56
JO
707{
708 if (static_key_false(&perf_sched_events.key))
709 __perf_event_task_sched_in(prev, task);
710}
711
712static inline void perf_event_task_sched_out(struct task_struct *prev,
713 struct task_struct *next)
ee6dcfa4 714{
a8b0ca17 715 perf_sw_event(PERF_COUNT_SW_CONTEXT_SWITCHES, 1, NULL, 0);
ee6dcfa4 716
c5905afb 717 if (static_key_false(&perf_sched_events.key))
ab0cce56 718 __perf_event_task_sched_out(prev, next);
ee6dcfa4
PZ
719}
720
3af9e859 721extern void perf_event_mmap(struct vm_area_struct *vma);
39447b38 722extern struct perf_guest_info_callbacks *perf_guest_cbs;
dcf46b94
ZY
723extern int perf_register_guest_info_callbacks(struct perf_guest_info_callbacks *callbacks);
724extern int perf_unregister_guest_info_callbacks(struct perf_guest_info_callbacks *callbacks);
39447b38 725
e041e328 726extern void perf_event_exec(void);
82b89778 727extern void perf_event_comm(struct task_struct *tsk, bool exec);
cdd6c482 728extern void perf_event_fork(struct task_struct *tsk);
8d1b2d93 729
56962b44
FW
730/* Callchains */
731DECLARE_PER_CPU(struct perf_callchain_entry, perf_callchain_entry);
732
e7e7ee2e
IM
733extern void perf_callchain_user(struct perf_callchain_entry *entry, struct pt_regs *regs);
734extern void perf_callchain_kernel(struct perf_callchain_entry *entry, struct pt_regs *regs);
394ee076 735
e7e7ee2e 736static inline void perf_callchain_store(struct perf_callchain_entry *entry, u64 ip)
70791ce9
FW
737{
738 if (entry->nr < PERF_MAX_STACK_DEPTH)
739 entry->ip[entry->nr++] = ip;
740}
394ee076 741
cdd6c482
IM
742extern int sysctl_perf_event_paranoid;
743extern int sysctl_perf_event_mlock;
744extern int sysctl_perf_event_sample_rate;
14c63f17
DH
745extern int sysctl_perf_cpu_time_max_percent;
746
747extern void perf_sample_event_took(u64 sample_len_ns);
1ccd1549 748
163ec435
PZ
749extern int perf_proc_update_handler(struct ctl_table *table, int write,
750 void __user *buffer, size_t *lenp,
751 loff_t *ppos);
14c63f17
DH
752extern int perf_cpu_time_max_percent_handler(struct ctl_table *table, int write,
753 void __user *buffer, size_t *lenp,
754 loff_t *ppos);
755
163ec435 756
320ebf09
PZ
757static inline bool perf_paranoid_tracepoint_raw(void)
758{
759 return sysctl_perf_event_paranoid > -1;
760}
761
762static inline bool perf_paranoid_cpu(void)
763{
764 return sysctl_perf_event_paranoid > 0;
765}
766
767static inline bool perf_paranoid_kernel(void)
768{
769 return sysctl_perf_event_paranoid > 1;
770}
771
cdd6c482 772extern void perf_event_init(void);
1c024eca
PZ
773extern void perf_tp_event(u64 addr, u64 count, void *record,
774 int entry_size, struct pt_regs *regs,
e6dab5ff
AV
775 struct hlist_head *head, int rctx,
776 struct task_struct *task);
24f1e32c 777extern void perf_bp_event(struct perf_event *event, void *data);
0d905bca 778
9d23a90a 779#ifndef perf_misc_flags
e7e7ee2e
IM
780# define perf_misc_flags(regs) \
781 (user_mode(regs) ? PERF_RECORD_MISC_USER : PERF_RECORD_MISC_KERNEL)
782# define perf_instruction_pointer(regs) instruction_pointer(regs)
9d23a90a
PM
783#endif
784
bce38cd5
SE
785static inline bool has_branch_stack(struct perf_event *event)
786{
787 return event->attr.sample_type & PERF_SAMPLE_BRANCH_STACK;
788}
789
5622f295 790extern int perf_output_begin(struct perf_output_handle *handle,
a7ac67ea 791 struct perf_event *event, unsigned int size);
5622f295 792extern void perf_output_end(struct perf_output_handle *handle);
91d7753a 793extern unsigned int perf_output_copy(struct perf_output_handle *handle,
5622f295 794 const void *buf, unsigned int len);
5685e0ff
JO
795extern unsigned int perf_output_skip(struct perf_output_handle *handle,
796 unsigned int len);
4ed7c92d
PZ
797extern int perf_swevent_get_recursion_context(void);
798extern void perf_swevent_put_recursion_context(int rctx);
ab573844 799extern u64 perf_swevent_set_period(struct perf_event *event);
44234adc
FW
800extern void perf_event_enable(struct perf_event *event);
801extern void perf_event_disable(struct perf_event *event);
500ad2d8 802extern int __perf_event_disable(void *info);
e9d2b064 803extern void perf_event_task_tick(void);
e041e328 804#else /* !CONFIG_PERF_EVENTS: */
0793a61d 805static inline void
ab0cce56
JO
806perf_event_task_sched_in(struct task_struct *prev,
807 struct task_struct *task) { }
808static inline void
809perf_event_task_sched_out(struct task_struct *prev,
810 struct task_struct *next) { }
cdd6c482
IM
811static inline int perf_event_init_task(struct task_struct *child) { return 0; }
812static inline void perf_event_exit_task(struct task_struct *child) { }
813static inline void perf_event_free_task(struct task_struct *task) { }
4e231c79 814static inline void perf_event_delayed_put(struct task_struct *task) { }
57c0c15b 815static inline void perf_event_print_debug(void) { }
57c0c15b
IM
816static inline int perf_event_task_disable(void) { return -EINVAL; }
817static inline int perf_event_task_enable(void) { return -EINVAL; }
26ca5c11
AK
818static inline int perf_event_refresh(struct perf_event *event, int refresh)
819{
820 return -EINVAL;
821}
15dbf27c 822
925d519a 823static inline void
a8b0ca17 824perf_sw_event(u32 event_id, u64 nr, struct pt_regs *regs, u64 addr) { }
24f1e32c 825static inline void
184f412c 826perf_bp_event(struct perf_event *event, void *data) { }
0a4a9391 827
39447b38 828static inline int perf_register_guest_info_callbacks
e7e7ee2e 829(struct perf_guest_info_callbacks *callbacks) { return 0; }
39447b38 830static inline int perf_unregister_guest_info_callbacks
e7e7ee2e 831(struct perf_guest_info_callbacks *callbacks) { return 0; }
39447b38 832
57c0c15b 833static inline void perf_event_mmap(struct vm_area_struct *vma) { }
e041e328 834static inline void perf_event_exec(void) { }
82b89778 835static inline void perf_event_comm(struct task_struct *tsk, bool exec) { }
cdd6c482
IM
836static inline void perf_event_fork(struct task_struct *tsk) { }
837static inline void perf_event_init(void) { }
184f412c 838static inline int perf_swevent_get_recursion_context(void) { return -1; }
4ed7c92d 839static inline void perf_swevent_put_recursion_context(int rctx) { }
ab573844 840static inline u64 perf_swevent_set_period(struct perf_event *event) { return 0; }
44234adc
FW
841static inline void perf_event_enable(struct perf_event *event) { }
842static inline void perf_event_disable(struct perf_event *event) { }
500ad2d8 843static inline int __perf_event_disable(void *info) { return -1; }
e9d2b064 844static inline void perf_event_task_tick(void) { }
0793a61d
TG
845#endif
846
026249ef
FW
847#if defined(CONFIG_PERF_EVENTS) && defined(CONFIG_NO_HZ_FULL)
848extern bool perf_event_can_stop_tick(void);
849#else
850static inline bool perf_event_can_stop_tick(void) { return true; }
851#endif
852
6c4d3bc9
DR
853#if defined(CONFIG_PERF_EVENTS) && defined(CONFIG_CPU_SUP_INTEL)
854extern void perf_restore_debug_store(void);
855#else
1d9d8639 856static inline void perf_restore_debug_store(void) { }
0793a61d
TG
857#endif
858
e7e7ee2e 859#define perf_output_put(handle, x) perf_output_copy((handle), &(x), sizeof(x))
5622f295 860
3f6da390 861/*
0a0fca9d 862 * This has to have a higher priority than migration_notifier in sched/core.c.
3f6da390 863 */
e7e7ee2e
IM
864#define perf_cpu_notifier(fn) \
865do { \
0db0628d 866 static struct notifier_block fn##_nb = \
e7e7ee2e 867 { .notifier_call = fn, .priority = CPU_PRI_PERF }; \
c13d38e4 868 unsigned long cpu = smp_processor_id(); \
6760bca9 869 unsigned long flags; \
f0bdb5e0
SB
870 \
871 cpu_notifier_register_begin(); \
e7e7ee2e 872 fn(&fn##_nb, (unsigned long)CPU_UP_PREPARE, \
c13d38e4 873 (void *)(unsigned long)cpu); \
6760bca9 874 local_irq_save(flags); \
e7e7ee2e 875 fn(&fn##_nb, (unsigned long)CPU_STARTING, \
c13d38e4 876 (void *)(unsigned long)cpu); \
6760bca9 877 local_irq_restore(flags); \
e7e7ee2e 878 fn(&fn##_nb, (unsigned long)CPU_ONLINE, \
c13d38e4 879 (void *)(unsigned long)cpu); \
f0bdb5e0
SB
880 __register_cpu_notifier(&fn##_nb); \
881 cpu_notifier_register_done(); \
3f6da390
PZ
882} while (0)
883
f0bdb5e0
SB
884/*
885 * Bare-bones version of perf_cpu_notifier(), which doesn't invoke the
886 * callback for already online CPUs.
887 */
888#define __perf_cpu_notifier(fn) \
889do { \
890 static struct notifier_block fn##_nb = \
891 { .notifier_call = fn, .priority = CPU_PRI_PERF }; \
892 \
893 __register_cpu_notifier(&fn##_nb); \
894} while (0)
641cc938 895
2663960c
SB
896struct perf_pmu_events_attr {
897 struct device_attribute attr;
898 u64 id;
3a54aaa0 899 const char *event_str;
2663960c
SB
900};
901
902#define PMU_EVENT_ATTR(_name, _var, _id, _show) \
903static struct perf_pmu_events_attr _var = { \
904 .attr = __ATTR(_name, 0444, _show, NULL), \
905 .id = _id, \
906};
907
641cc938
JO
908#define PMU_FORMAT_ATTR(_name, _format) \
909static ssize_t \
910_name##_show(struct device *dev, \
911 struct device_attribute *attr, \
912 char *page) \
913{ \
914 BUILD_BUG_ON(sizeof(_format) >= PAGE_SIZE); \
915 return sprintf(page, _format "\n"); \
916} \
917 \
918static struct device_attribute format_attr_##_name = __ATTR_RO(_name)
919
cdd6c482 920#endif /* _LINUX_PERF_EVENT_H */
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