perf_counter: Optimize context switch between identical inherited contexts
[deliverable/linux.git] / include / linux / perf_counter.h
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1/*
2 * Performance counters:
3 *
4 * Copyright(C) 2008, Thomas Gleixner <tglx@linutronix.de>
5 * Copyright(C) 2008, Red Hat, Inc., Ingo Molnar
6 *
7 * Data type definitions, declarations, prototypes.
8 *
9 * Started by: Thomas Gleixner and Ingo Molnar
10 *
11 * For licencing details see kernel-base/COPYING
12 */
13#ifndef _LINUX_PERF_COUNTER_H
14#define _LINUX_PERF_COUNTER_H
15
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16#include <linux/types.h>
17#include <linux/ioctl.h>
9aaa131a 18#include <asm/byteorder.h>
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19
20/*
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21 * User-space ABI bits:
22 */
23
24/*
b8e83514 25 * hw_event.type
0793a61d 26 */
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27enum perf_event_types {
28 PERF_TYPE_HARDWARE = 0,
29 PERF_TYPE_SOFTWARE = 1,
30 PERF_TYPE_TRACEPOINT = 2,
31
0793a61d 32 /*
b8e83514 33 * available TYPE space, raw is the max value.
0793a61d 34 */
9f66a381 35
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36 PERF_TYPE_RAW = 128,
37};
6c594c21 38
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39/*
40 * Generalized performance counter event types, used by the hw_event.event_id
41 * parameter of the sys_perf_counter_open() syscall:
42 */
43enum hw_event_ids {
9f66a381 44 /*
b8e83514 45 * Common hardware events, generalized by the kernel:
9f66a381 46 */
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47 PERF_COUNT_CPU_CYCLES = 0,
48 PERF_COUNT_INSTRUCTIONS = 1,
49 PERF_COUNT_CACHE_REFERENCES = 2,
50 PERF_COUNT_CACHE_MISSES = 3,
51 PERF_COUNT_BRANCH_INSTRUCTIONS = 4,
52 PERF_COUNT_BRANCH_MISSES = 5,
53 PERF_COUNT_BUS_CYCLES = 6,
54
55 PERF_HW_EVENTS_MAX = 7,
56};
e077df4f 57
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58/*
59 * Special "software" counters provided by the kernel, even if the hardware
60 * does not support performance counters. These counters measure various
61 * physical and sw events of the kernel (and allow the profiling of them as
62 * well):
63 */
64enum sw_event_ids {
65 PERF_COUNT_CPU_CLOCK = 0,
66 PERF_COUNT_TASK_CLOCK = 1,
67 PERF_COUNT_PAGE_FAULTS = 2,
68 PERF_COUNT_CONTEXT_SWITCHES = 3,
69 PERF_COUNT_CPU_MIGRATIONS = 4,
70 PERF_COUNT_PAGE_FAULTS_MIN = 5,
71 PERF_COUNT_PAGE_FAULTS_MAJ = 6,
72
73 PERF_SW_EVENTS_MAX = 7,
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74};
75
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76#define __PERF_COUNTER_MASK(name) \
77 (((1ULL << PERF_COUNTER_##name##_BITS) - 1) << \
78 PERF_COUNTER_##name##_SHIFT)
79
80#define PERF_COUNTER_RAW_BITS 1
81#define PERF_COUNTER_RAW_SHIFT 63
82#define PERF_COUNTER_RAW_MASK __PERF_COUNTER_MASK(RAW)
83
84#define PERF_COUNTER_CONFIG_BITS 63
85#define PERF_COUNTER_CONFIG_SHIFT 0
86#define PERF_COUNTER_CONFIG_MASK __PERF_COUNTER_MASK(CONFIG)
87
88#define PERF_COUNTER_TYPE_BITS 7
89#define PERF_COUNTER_TYPE_SHIFT 56
90#define PERF_COUNTER_TYPE_MASK __PERF_COUNTER_MASK(TYPE)
91
92#define PERF_COUNTER_EVENT_BITS 56
93#define PERF_COUNTER_EVENT_SHIFT 0
94#define PERF_COUNTER_EVENT_MASK __PERF_COUNTER_MASK(EVENT)
95
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96/*
97 * Bits that can be set in hw_event.record_type to request information
98 * in the overflow packets.
99 */
100enum perf_counter_record_format {
101 PERF_RECORD_IP = 1U << 0,
102 PERF_RECORD_TID = 1U << 1,
4d855457 103 PERF_RECORD_TIME = 1U << 2,
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104 PERF_RECORD_ADDR = 1U << 3,
105 PERF_RECORD_GROUP = 1U << 4,
106 PERF_RECORD_CALLCHAIN = 1U << 5,
a85f61ab 107 PERF_RECORD_CONFIG = 1U << 6,
f370e1e2 108 PERF_RECORD_CPU = 1U << 7,
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109};
110
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111/*
112 * Bits that can be set in hw_event.read_format to request that
113 * reads on the counter should return the indicated quantities,
114 * in increasing order of bit value, after the counter value.
115 */
116enum perf_counter_read_format {
117 PERF_FORMAT_TOTAL_TIME_ENABLED = 1,
118 PERF_FORMAT_TOTAL_TIME_RUNNING = 2,
119};
120
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121/*
122 * Hardware event to monitor via a performance monitoring counter:
123 */
124struct perf_counter_hw_event {
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125 /*
126 * The MSB of the config word signifies if the rest contains cpu
127 * specific (raw) counter configuration data, if unset, the next
128 * 7 bits are an event type and the rest of the bits are the event
129 * identifier.
130 */
131 __u64 config;
9f66a381 132
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133 union {
134 __u64 irq_period;
135 __u64 irq_freq;
136 };
137
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138 __u32 record_type;
139 __u32 read_format;
9f66a381 140
2743a5b0 141 __u64 disabled : 1, /* off by default */
0475f9ea 142 nmi : 1, /* NMI sampling */
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143 inherit : 1, /* children inherit it */
144 pinned : 1, /* must always be on PMU */
145 exclusive : 1, /* only group on PMU */
146 exclude_user : 1, /* don't count user */
147 exclude_kernel : 1, /* ditto kernel */
148 exclude_hv : 1, /* ditto hypervisor */
2743a5b0 149 exclude_idle : 1, /* don't count when idle */
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150 mmap : 1, /* include mmap data */
151 munmap : 1, /* include munmap data */
8d1b2d93 152 comm : 1, /* include comm data */
60db5e09 153 freq : 1, /* use freq, not period */
0475f9ea 154
60db5e09 155 __reserved_1 : 51;
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156
157 __u32 extra_config_len;
c457810a 158 __u32 wakeup_events; /* wakeup every n events */
9f66a381 159
f3dfd265 160 __u64 __reserved_2;
2743a5b0 161 __u64 __reserved_3;
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162};
163
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164/*
165 * Ioctls that can be done on a perf counter fd:
166 */
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167#define PERF_COUNTER_IOC_ENABLE _IOW('$', 0, u32)
168#define PERF_COUNTER_IOC_DISABLE _IOW('$', 1, u32)
79f14641 169#define PERF_COUNTER_IOC_REFRESH _IOW('$', 2, u32)
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170#define PERF_COUNTER_IOC_RESET _IOW('$', 3, u32)
171
172enum perf_counter_ioc_flags {
173 PERF_IOC_FLAG_GROUP = 1U << 0,
174};
d859e29f 175
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176/*
177 * Structure of the page that can be mapped via mmap
178 */
179struct perf_counter_mmap_page {
180 __u32 version; /* version number of this structure */
181 __u32 compat_version; /* lowest version this is compat with */
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182
183 /*
184 * Bits needed to read the hw counters in user-space.
185 *
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186 * u32 seq;
187 * s64 count;
38ff667b 188 *
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189 * do {
190 * seq = pc->lock;
38ff667b 191 *
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192 * barrier()
193 * if (pc->index) {
194 * count = pmc_read(pc->index - 1);
195 * count += pc->offset;
196 * } else
197 * goto regular_read;
38ff667b 198 *
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199 * barrier();
200 * } while (pc->lock != seq);
38ff667b 201 *
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202 * NOTE: for obvious reason this only works on self-monitoring
203 * processes.
38ff667b 204 */
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205 __u32 lock; /* seqlock for synchronization */
206 __u32 index; /* hardware counter identifier */
207 __s64 offset; /* add to hardware counter value */
7b732a75 208
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209 /*
210 * Control data for the mmap() data buffer.
211 *
212 * User-space reading this value should issue an rmb(), on SMP capable
213 * platforms, after reading this value -- see perf_counter_wakeup().
214 */
7b732a75 215 __u32 data_head; /* head in the data section */
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216};
217
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218#define PERF_EVENT_MISC_CPUMODE_MASK (3 << 0)
219#define PERF_EVENT_MISC_CPUMODE_UNKNOWN (0 << 0)
6b6e5486 220#define PERF_EVENT_MISC_KERNEL (1 << 0)
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221#define PERF_EVENT_MISC_USER (2 << 0)
222#define PERF_EVENT_MISC_HYPERVISOR (3 << 0)
6b6e5486 223#define PERF_EVENT_MISC_OVERFLOW (1 << 2)
6fab0192 224
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225struct perf_event_header {
226 __u32 type;
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227 __u16 misc;
228 __u16 size;
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229};
230
231enum perf_event_type {
5ed00415 232
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233 /*
234 * The MMAP events record the PROT_EXEC mappings so that we can
235 * correlate userspace IPs to code. They have the following structure:
236 *
237 * struct {
238 * struct perf_event_header header;
239 *
240 * u32 pid, tid;
241 * u64 addr;
242 * u64 len;
243 * u64 pgoff;
244 * char filename[];
245 * };
246 */
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247 PERF_EVENT_MMAP = 1,
248 PERF_EVENT_MUNMAP = 2,
0a4a9391 249
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250 /*
251 * struct {
252 * struct perf_event_header header;
253 *
254 * u32 pid, tid;
255 * char comm[];
256 * };
257 */
258 PERF_EVENT_COMM = 3,
259
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260 /*
261 * struct {
262 * struct perf_event_header header;
263 * u64 irq_period;
264 * };
265 */
266 PERF_EVENT_PERIOD = 4,
267
8a057d84 268 /*
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269 * When header.misc & PERF_EVENT_MISC_OVERFLOW the event_type field
270 * will be PERF_RECORD_*
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271 *
272 * struct {
273 * struct perf_event_header header;
274 *
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275 * { u64 ip; } && PERF_RECORD_IP
276 * { u32 pid, tid; } && PERF_RECORD_TID
4d855457 277 * { u64 time; } && PERF_RECORD_TIME
78f13e95 278 * { u64 addr; } && PERF_RECORD_ADDR
a85f61ab 279 * { u64 config; } && PERF_RECORD_CONFIG
f370e1e2 280 * { u32 cpu, res; } && PERF_RECORD_CPU
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281 *
282 * { u64 nr;
6b6e5486 283 * { u64 event, val; } cnt[nr]; } && PERF_RECORD_GROUP
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284 *
285 * { u16 nr,
286 * hv,
287 * kernel,
288 * user;
6b6e5486 289 * u64 ips[nr]; } && PERF_RECORD_CALLCHAIN
0c593b34 290 * };
8a057d84 291 */
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292};
293
f3dfd265 294#ifdef __KERNEL__
9f66a381 295/*
f3dfd265 296 * Kernel-internal data types and definitions:
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297 */
298
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299#ifdef CONFIG_PERF_COUNTERS
300# include <asm/perf_counter.h>
301#endif
302
303#include <linux/list.h>
304#include <linux/mutex.h>
305#include <linux/rculist.h>
306#include <linux/rcupdate.h>
307#include <linux/spinlock.h>
d6d020e9 308#include <linux/hrtimer.h>
3c446b3d 309#include <linux/fs.h>
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310#include <asm/atomic.h>
311
312struct task_struct;
313
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314static inline u64 perf_event_raw(struct perf_counter_hw_event *hw_event)
315{
316 return hw_event->config & PERF_COUNTER_RAW_MASK;
317}
318
319static inline u64 perf_event_config(struct perf_counter_hw_event *hw_event)
320{
321 return hw_event->config & PERF_COUNTER_CONFIG_MASK;
322}
323
324static inline u64 perf_event_type(struct perf_counter_hw_event *hw_event)
325{
326 return (hw_event->config & PERF_COUNTER_TYPE_MASK) >>
327 PERF_COUNTER_TYPE_SHIFT;
328}
329
330static inline u64 perf_event_id(struct perf_counter_hw_event *hw_event)
331{
332 return hw_event->config & PERF_COUNTER_EVENT_MASK;
333}
334
0793a61d 335/**
9f66a381 336 * struct hw_perf_counter - performance counter hardware details:
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337 */
338struct hw_perf_counter {
ee06094f 339#ifdef CONFIG_PERF_COUNTERS
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340 union {
341 struct { /* hardware */
342 u64 config;
343 unsigned long config_base;
344 unsigned long counter_base;
345 int nmi;
6f00cada 346 int idx;
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347 };
348 union { /* software */
349 atomic64_t count;
350 struct hrtimer hrtimer;
351 };
352 };
ee06094f 353 atomic64_t prev_count;
9f66a381 354 u64 irq_period;
ee06094f 355 atomic64_t period_left;
60db5e09 356 u64 interrupts;
ee06094f 357#endif
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358};
359
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360struct perf_counter;
361
362/**
4aeb0b42 363 * struct pmu - generic performance monitoring unit
621a01ea 364 */
4aeb0b42 365struct pmu {
95cdd2e7 366 int (*enable) (struct perf_counter *counter);
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367 void (*disable) (struct perf_counter *counter);
368 void (*read) (struct perf_counter *counter);
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369};
370
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371/**
372 * enum perf_counter_active_state - the states of a counter
373 */
374enum perf_counter_active_state {
3b6f9e5c 375 PERF_COUNTER_STATE_ERROR = -2,
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376 PERF_COUNTER_STATE_OFF = -1,
377 PERF_COUNTER_STATE_INACTIVE = 0,
378 PERF_COUNTER_STATE_ACTIVE = 1,
379};
380
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381struct file;
382
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383struct perf_mmap_data {
384 struct rcu_head rcu_head;
8740f941 385 int nr_pages; /* nr of data pages */
c5078f78 386 int nr_locked; /* nr pages mlocked */
8740f941 387
c33a0bc4 388 atomic_t poll; /* POLL_ for wakeups */
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389 atomic_t head; /* write position */
390 atomic_t events; /* event limit */
391
c66de4a5 392 atomic_t done_head; /* completed head */
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393 atomic_t lock; /* concurrent writes */
394
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395 atomic_t wakeup; /* needs a wakeup */
396
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397 struct perf_counter_mmap_page *user_page;
398 void *data_pages[0];
399};
400
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401struct perf_pending_entry {
402 struct perf_pending_entry *next;
403 void (*func)(struct perf_pending_entry *);
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404};
405
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406/**
407 * struct perf_counter - performance counter kernel representation:
408 */
409struct perf_counter {
ee06094f 410#ifdef CONFIG_PERF_COUNTERS
04289bb9 411 struct list_head list_entry;
592903cd 412 struct list_head event_entry;
04289bb9 413 struct list_head sibling_list;
5c148194 414 int nr_siblings;
04289bb9 415 struct perf_counter *group_leader;
4aeb0b42 416 const struct pmu *pmu;
04289bb9 417
6a930700 418 enum perf_counter_active_state state;
c07c99b6 419 enum perf_counter_active_state prev_state;
0793a61d 420 atomic64_t count;
ee06094f 421
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422 /*
423 * These are the total time in nanoseconds that the counter
424 * has been enabled (i.e. eligible to run, and the task has
425 * been scheduled in, if this is a per-task counter)
426 * and running (scheduled onto the CPU), respectively.
427 *
428 * They are computed from tstamp_enabled, tstamp_running and
429 * tstamp_stopped when the counter is in INACTIVE or ACTIVE state.
430 */
431 u64 total_time_enabled;
432 u64 total_time_running;
433
434 /*
435 * These are timestamps used for computing total_time_enabled
436 * and total_time_running when the counter is in INACTIVE or
437 * ACTIVE state, measured in nanoseconds from an arbitrary point
438 * in time.
439 * tstamp_enabled: the notional time when the counter was enabled
440 * tstamp_running: the notional time when the counter was scheduled on
441 * tstamp_stopped: in INACTIVE state, the notional time when the
442 * counter was scheduled off.
443 */
444 u64 tstamp_enabled;
445 u64 tstamp_running;
446 u64 tstamp_stopped;
447
9f66a381 448 struct perf_counter_hw_event hw_event;
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449 struct hw_perf_counter hw;
450
451 struct perf_counter_context *ctx;
9b51f66d 452 struct file *filp;
0793a61d 453
9b51f66d 454 struct perf_counter *parent;
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455 struct list_head child_list;
456
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457 /*
458 * These accumulate total time (in nanoseconds) that children
459 * counters have been enabled and running, respectively.
460 */
461 atomic64_t child_total_time_enabled;
462 atomic64_t child_total_time_running;
463
0793a61d 464 /*
d859e29f 465 * Protect attach/detach and child_list:
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466 */
467 struct mutex mutex;
468
469 int oncpu;
470 int cpu;
471
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472 /* mmap bits */
473 struct mutex mmap_mutex;
474 atomic_t mmap_count;
475 struct perf_mmap_data *data;
37d81828 476
7b732a75 477 /* poll related */
0793a61d 478 wait_queue_head_t waitq;
3c446b3d 479 struct fasync_struct *fasync;
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480
481 /* delayed work for NMIs and such */
482 int pending_wakeup;
4c9e2542 483 int pending_kill;
79f14641 484 int pending_disable;
671dec5d 485 struct perf_pending_entry pending;
592903cd 486
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487 atomic_t event_limit;
488
e077df4f 489 void (*destroy)(struct perf_counter *);
592903cd 490 struct rcu_head rcu_head;
ee06094f 491#endif
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492};
493
494/**
495 * struct perf_counter_context - counter context structure
496 *
497 * Used as a container for task counters and CPU counters as well:
498 */
499struct perf_counter_context {
0793a61d 500 /*
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501 * Protect the states of the counters in the list,
502 * nr_active, and the list:
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503 */
504 spinlock_t lock;
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505 /*
506 * Protect the list of counters. Locking either mutex or lock
507 * is sufficient to ensure the list doesn't change; to change
508 * the list you need to lock both the mutex and the spinlock.
509 */
510 struct mutex mutex;
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511
512 struct list_head counter_list;
592903cd 513 struct list_head event_list;
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514 int nr_counters;
515 int nr_active;
564c2b21 516 int nr_enabled;
d859e29f 517 int is_active;
a63eaf34 518 atomic_t refcount;
0793a61d 519 struct task_struct *task;
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520
521 /*
4af4998b 522 * Context clock, runs when context enabled.
53cfbf59 523 */
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524 u64 time;
525 u64 timestamp;
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526
527 /*
528 * These fields let us detect when two contexts have both
529 * been cloned (inherited) from a common ancestor.
530 */
531 struct perf_counter_context *parent_ctx;
532 u32 parent_gen;
533 u32 generation;
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534};
535
536/**
537 * struct perf_counter_cpu_context - per cpu counter context structure
538 */
539struct perf_cpu_context {
540 struct perf_counter_context ctx;
541 struct perf_counter_context *task_ctx;
542 int active_oncpu;
543 int max_pertask;
3b6f9e5c 544 int exclusive;
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545
546 /*
547 * Recursion avoidance:
548 *
549 * task, softirq, irq, nmi context
550 */
551 int recursion[4];
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552};
553
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554#ifdef CONFIG_PERF_COUNTERS
555
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556/*
557 * Set by architecture code:
558 */
559extern int perf_max_counters;
560
4aeb0b42 561extern const struct pmu *hw_perf_counter_init(struct perf_counter *counter);
621a01ea 562
0793a61d 563extern void perf_counter_task_sched_in(struct task_struct *task, int cpu);
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564extern void perf_counter_task_sched_out(struct task_struct *task,
565 struct task_struct *next, int cpu);
0793a61d 566extern void perf_counter_task_tick(struct task_struct *task, int cpu);
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567extern void perf_counter_init_task(struct task_struct *child);
568extern void perf_counter_exit_task(struct task_struct *child);
925d519a 569extern void perf_counter_do_pending(void);
0793a61d 570extern void perf_counter_print_debug(void);
1b023a96 571extern void perf_counter_unthrottle(void);
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572extern void __perf_disable(void);
573extern bool __perf_enable(void);
574extern void perf_disable(void);
575extern void perf_enable(void);
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576extern int perf_counter_task_disable(void);
577extern int perf_counter_task_enable(void);
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578extern int hw_perf_group_sched_in(struct perf_counter *group_leader,
579 struct perf_cpu_context *cpuctx,
580 struct perf_counter_context *ctx, int cpu);
37d81828 581extern void perf_counter_update_userpage(struct perf_counter *counter);
5c92d124 582
f6c7d5fe 583extern int perf_counter_overflow(struct perf_counter *counter,
78f13e95 584 int nmi, struct pt_regs *regs, u64 addr);
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585/*
586 * Return 1 for a software counter, 0 for a hardware counter
587 */
588static inline int is_software_counter(struct perf_counter *counter)
589{
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590 return !perf_event_raw(&counter->hw_event) &&
591 perf_event_type(&counter->hw_event) != PERF_TYPE_HARDWARE;
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592}
593
78f13e95 594extern void perf_swcounter_event(u32, u64, int, struct pt_regs *, u64);
15dbf27c 595
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596extern void perf_counter_mmap(unsigned long addr, unsigned long len,
597 unsigned long pgoff, struct file *file);
598
599extern void perf_counter_munmap(unsigned long addr, unsigned long len,
600 unsigned long pgoff, struct file *file);
601
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602extern void perf_counter_comm(struct task_struct *tsk);
603
9c03d88e 604#define MAX_STACK_DEPTH 255
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605
606struct perf_callchain_entry {
9c03d88e 607 u16 nr, hv, kernel, user;
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608 u64 ip[MAX_STACK_DEPTH];
609};
610
611extern struct perf_callchain_entry *perf_callchain(struct pt_regs *regs);
612
1ccd1549 613extern int sysctl_perf_counter_priv;
c5078f78 614extern int sysctl_perf_counter_mlock;
1ccd1549 615
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616extern void perf_counter_init(void);
617
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618#ifndef perf_misc_flags
619#define perf_misc_flags(regs) (user_mode(regs) ? PERF_EVENT_MISC_USER : \
620 PERF_EVENT_MISC_KERNEL)
621#define perf_instruction_pointer(regs) instruction_pointer(regs)
622#endif
623
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624#else
625static inline void
626perf_counter_task_sched_in(struct task_struct *task, int cpu) { }
627static inline void
628perf_counter_task_sched_out(struct task_struct *task, int cpu) { }
629static inline void
630perf_counter_task_tick(struct task_struct *task, int cpu) { }
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631static inline void perf_counter_init_task(struct task_struct *child) { }
632static inline void perf_counter_exit_task(struct task_struct *child) { }
925d519a 633static inline void perf_counter_do_pending(void) { }
0793a61d 634static inline void perf_counter_print_debug(void) { }
1b023a96 635static inline void perf_counter_unthrottle(void) { }
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636static inline void perf_disable(void) { }
637static inline void perf_enable(void) { }
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638static inline int perf_counter_task_disable(void) { return -EINVAL; }
639static inline int perf_counter_task_enable(void) { return -EINVAL; }
15dbf27c 640
925d519a 641static inline void
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642perf_swcounter_event(u32 event, u64 nr, int nmi,
643 struct pt_regs *regs, u64 addr) { }
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644
645static inline void
646perf_counter_mmap(unsigned long addr, unsigned long len,
647 unsigned long pgoff, struct file *file) { }
648
649static inline void
650perf_counter_munmap(unsigned long addr, unsigned long len,
0d905bca 651 unsigned long pgoff, struct file *file) { }
0a4a9391 652
8d1b2d93 653static inline void perf_counter_comm(struct task_struct *tsk) { }
0d905bca 654static inline void perf_counter_init(void) { }
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655#endif
656
f3dfd265 657#endif /* __KERNEL__ */
0793a61d 658#endif /* _LINUX_PERF_COUNTER_H */
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