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Ingo Molnarcdd6c482009-09-21 12:02:48 +02001/*
Ingo Molnar57c0c152009-09-21 12:20:38 +02002 * Performance events core code:
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003 *
4 * Copyright (C) 2008 Thomas Gleixner <tglx@linutronix.de>
Ingo Molnare7e7ee22011-05-04 08:42:29 +02005 * Copyright (C) 2008-2011 Red Hat, Inc., Ingo Molnar
6 * Copyright (C) 2008-2011 Red Hat, Inc., Peter Zijlstra <pzijlstr@redhat.com>
Al Virod36b6912011-12-29 17:09:01 -05007 * Copyright © 2009 Paul Mackerras, IBM Corp. <paulus@au1.ibm.com>
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008 *
Ingo Molnar57c0c152009-09-21 12:20:38 +02009 * For licensing details see kernel-base/COPYING
Ingo Molnarcdd6c482009-09-21 12:02:48 +020010 */
11
12#include <linux/fs.h>
13#include <linux/mm.h>
14#include <linux/cpu.h>
15#include <linux/smp.h>
Peter Zijlstra2e80a822010-11-17 23:17:36 +010016#include <linux/idr.h>
Ingo Molnarcdd6c482009-09-21 12:02:48 +020017#include <linux/file.h>
18#include <linux/poll.h>
Tejun Heo5a0e3ad2010-03-24 17:04:11 +090019#include <linux/slab.h>
Frederic Weisbecker76e1d902010-04-05 15:35:57 +020020#include <linux/hash.h>
Frederic Weisbecker12351ef2013-04-20 15:48:22 +020021#include <linux/tick.h>
Ingo Molnarcdd6c482009-09-21 12:02:48 +020022#include <linux/sysfs.h>
23#include <linux/dcache.h>
24#include <linux/percpu.h>
25#include <linux/ptrace.h>
Peter Zijlstrac2774432010-12-08 15:29:02 +010026#include <linux/reboot.h>
Ingo Molnarcdd6c482009-09-21 12:02:48 +020027#include <linux/vmstat.h>
Peter Zijlstraabe43402010-11-17 23:17:37 +010028#include <linux/device.h>
Paul Gortmaker6e5fdee2011-05-26 16:00:52 -040029#include <linux/export.h>
Peter Zijlstra906010b2009-09-21 16:08:49 +020030#include <linux/vmalloc.h>
Ingo Molnarcdd6c482009-09-21 12:02:48 +020031#include <linux/hardirq.h>
32#include <linux/rculist.h>
33#include <linux/uaccess.h>
34#include <linux/syscalls.h>
35#include <linux/anon_inodes.h>
36#include <linux/kernel_stat.h>
Matt Fleming39bed6c2015-01-23 18:45:40 +000037#include <linux/cgroup.h>
Ingo Molnarcdd6c482009-09-21 12:02:48 +020038#include <linux/perf_event.h>
Steven Rostedt (Red Hat)af658dc2015-04-29 14:36:05 -040039#include <linux/trace_events.h>
Jason Wessel3c502e72010-11-04 17:33:01 -050040#include <linux/hw_breakpoint.h>
Jiri Olsac5ebced2012-08-07 15:20:40 +020041#include <linux/mm_types.h>
Yan, Zhengc464c762014-03-18 16:56:41 +080042#include <linux/module.h>
Peter Zijlstraf972eb62014-05-19 15:13:47 -040043#include <linux/mman.h>
Pawel Mollb3f20782014-06-13 16:03:32 +010044#include <linux/compat.h>
Alexei Starovoitov25415172015-03-25 12:49:20 -070045#include <linux/bpf.h>
46#include <linux/filter.h>
Ingo Molnarcdd6c482009-09-21 12:02:48 +020047
Frederic Weisbecker76369132011-05-19 19:55:04 +020048#include "internal.h"
49
Ingo Molnarcdd6c482009-09-21 12:02:48 +020050#include <asm/irq_regs.h>
51
Jiri Olsafadfe7b2014-08-01 14:33:02 +020052static struct workqueue_struct *perf_wq;
53
Peter Zijlstra272325c2015-04-15 11:41:58 +020054typedef int (*remote_function_f)(void *);
55
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +010056struct remote_function_call {
Ingo Molnare7e7ee22011-05-04 08:42:29 +020057 struct task_struct *p;
Peter Zijlstra272325c2015-04-15 11:41:58 +020058 remote_function_f func;
Ingo Molnare7e7ee22011-05-04 08:42:29 +020059 void *info;
60 int ret;
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +010061};
62
63static void remote_function(void *data)
64{
65 struct remote_function_call *tfc = data;
66 struct task_struct *p = tfc->p;
67
68 if (p) {
69 tfc->ret = -EAGAIN;
70 if (task_cpu(p) != smp_processor_id() || !task_curr(p))
71 return;
72 }
73
74 tfc->ret = tfc->func(tfc->info);
75}
76
77/**
78 * task_function_call - call a function on the cpu on which a task runs
79 * @p: the task to evaluate
80 * @func: the function to be called
81 * @info: the function call argument
82 *
83 * Calls the function @func when the task is currently running. This might
84 * be on the current CPU, which just calls the function directly
85 *
86 * returns: @func return value, or
87 * -ESRCH - when the process isn't running
88 * -EAGAIN - when the process moved away
89 */
90static int
Peter Zijlstra272325c2015-04-15 11:41:58 +020091task_function_call(struct task_struct *p, remote_function_f func, void *info)
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +010092{
93 struct remote_function_call data = {
Ingo Molnare7e7ee22011-05-04 08:42:29 +020094 .p = p,
95 .func = func,
96 .info = info,
97 .ret = -ESRCH, /* No such (running) process */
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +010098 };
99
100 if (task_curr(p))
101 smp_call_function_single(task_cpu(p), remote_function, &data, 1);
102
103 return data.ret;
104}
105
106/**
107 * cpu_function_call - call a function on the cpu
108 * @func: the function to be called
109 * @info: the function call argument
110 *
111 * Calls the function @func on the remote cpu.
112 *
113 * returns: @func return value or -ENXIO when the cpu is offline
114 */
Peter Zijlstra272325c2015-04-15 11:41:58 +0200115static int cpu_function_call(int cpu, remote_function_f func, void *info)
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +0100116{
117 struct remote_function_call data = {
Ingo Molnare7e7ee22011-05-04 08:42:29 +0200118 .p = NULL,
119 .func = func,
120 .info = info,
121 .ret = -ENXIO, /* No such CPU */
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +0100122 };
123
124 smp_call_function_single(cpu, remote_function, &data, 1);
125
126 return data.ret;
127}
128
Jiri Olsaf8697762014-08-01 14:33:01 +0200129#define EVENT_OWNER_KERNEL ((void *) -1)
130
131static bool is_kernel_event(struct perf_event *event)
132{
133 return event->owner == EVENT_OWNER_KERNEL;
134}
135
Stephane Eraniane5d13672011-02-14 11:20:01 +0200136#define PERF_FLAG_ALL (PERF_FLAG_FD_NO_GROUP |\
137 PERF_FLAG_FD_OUTPUT |\
Yann Droneauda21b0b32014-01-05 21:36:33 +0100138 PERF_FLAG_PID_CGROUP |\
139 PERF_FLAG_FD_CLOEXEC)
Stephane Eraniane5d13672011-02-14 11:20:01 +0200140
Stephane Eranianbce38cd2012-02-09 23:20:51 +0100141/*
142 * branch priv levels that need permission checks
143 */
144#define PERF_SAMPLE_BRANCH_PERM_PLM \
145 (PERF_SAMPLE_BRANCH_KERNEL |\
146 PERF_SAMPLE_BRANCH_HV)
147
Stephane Eranian0b3fcf12011-01-03 18:20:01 +0200148enum event_type_t {
149 EVENT_FLEXIBLE = 0x1,
150 EVENT_PINNED = 0x2,
151 EVENT_ALL = EVENT_FLEXIBLE | EVENT_PINNED,
152};
153
Stephane Eraniane5d13672011-02-14 11:20:01 +0200154/*
155 * perf_sched_events : >0 events exist
156 * perf_cgroup_events: >0 per-cpu cgroup events exist on this cpu
157 */
Ingo Molnarc5905af2012-02-24 08:31:31 +0100158struct static_key_deferred perf_sched_events __read_mostly;
Stephane Eraniane5d13672011-02-14 11:20:01 +0200159static DEFINE_PER_CPU(atomic_t, perf_cgroup_events);
Yan, Zhengba532502014-11-04 21:55:58 -0500160static DEFINE_PER_CPU(int, perf_sched_cb_usages);
Stephane Eraniane5d13672011-02-14 11:20:01 +0200161
Ingo Molnarcdd6c482009-09-21 12:02:48 +0200162static atomic_t nr_mmap_events __read_mostly;
163static atomic_t nr_comm_events __read_mostly;
164static atomic_t nr_task_events __read_mostly;
Frederic Weisbecker948b26b2013-08-02 18:29:55 +0200165static atomic_t nr_freq_events __read_mostly;
Adrian Hunter45ac1402015-07-21 12:44:02 +0300166static atomic_t nr_switch_events __read_mostly;
Ingo Molnarcdd6c482009-09-21 12:02:48 +0200167
Peter Zijlstra108b02c2010-09-06 14:32:03 +0200168static LIST_HEAD(pmus);
169static DEFINE_MUTEX(pmus_lock);
170static struct srcu_struct pmus_srcu;
171
Ingo Molnarcdd6c482009-09-21 12:02:48 +0200172/*
173 * perf event paranoia level:
174 * -1 - not paranoid at all
175 * 0 - disallow raw tracepoint access for unpriv
176 * 1 - disallow cpu events for unpriv
177 * 2 - disallow kernel profiling for unpriv
178 */
179int sysctl_perf_event_paranoid __read_mostly = 1;
180
Frederic Weisbecker20443382011-03-31 03:33:29 +0200181/* Minimum for 512 kiB + 1 user control page */
182int sysctl_perf_event_mlock __read_mostly = 512 + (PAGE_SIZE / 1024); /* 'free' kiB per user */
Ingo Molnarcdd6c482009-09-21 12:02:48 +0200183
184/*
185 * max perf event sample rate
186 */
Dave Hansen14c63f12013-06-21 08:51:36 -0700187#define DEFAULT_MAX_SAMPLE_RATE 100000
188#define DEFAULT_SAMPLE_PERIOD_NS (NSEC_PER_SEC / DEFAULT_MAX_SAMPLE_RATE)
189#define DEFAULT_CPU_TIME_MAX_PERCENT 25
190
191int sysctl_perf_event_sample_rate __read_mostly = DEFAULT_MAX_SAMPLE_RATE;
192
193static int max_samples_per_tick __read_mostly = DIV_ROUND_UP(DEFAULT_MAX_SAMPLE_RATE, HZ);
194static int perf_sample_period_ns __read_mostly = DEFAULT_SAMPLE_PERIOD_NS;
195
Peter Zijlstrad9494cb2013-10-17 15:36:19 +0200196static int perf_sample_allowed_ns __read_mostly =
197 DEFAULT_SAMPLE_PERIOD_NS * DEFAULT_CPU_TIME_MAX_PERCENT / 100;
Dave Hansen14c63f12013-06-21 08:51:36 -0700198
199void update_perf_cpu_limits(void)
200{
201 u64 tmp = perf_sample_period_ns;
202
203 tmp *= sysctl_perf_cpu_time_max_percent;
Stephane Eraniane5302922013-07-05 00:30:11 +0200204 do_div(tmp, 100);
Peter Zijlstrad9494cb2013-10-17 15:36:19 +0200205 ACCESS_ONCE(perf_sample_allowed_ns) = tmp;
Dave Hansen14c63f12013-06-21 08:51:36 -0700206}
Peter Zijlstra163ec432011-02-16 11:22:34 +0100207
Stephane Eranian9e630202013-04-03 14:21:33 +0200208static int perf_rotate_context(struct perf_cpu_context *cpuctx);
209
Peter Zijlstra163ec432011-02-16 11:22:34 +0100210int perf_proc_update_handler(struct ctl_table *table, int write,
211 void __user *buffer, size_t *lenp,
212 loff_t *ppos)
213{
Knut Petersen723478c2013-09-25 14:29:37 +0200214 int ret = proc_dointvec_minmax(table, write, buffer, lenp, ppos);
Peter Zijlstra163ec432011-02-16 11:22:34 +0100215
216 if (ret || !write)
217 return ret;
218
219 max_samples_per_tick = DIV_ROUND_UP(sysctl_perf_event_sample_rate, HZ);
Dave Hansen14c63f12013-06-21 08:51:36 -0700220 perf_sample_period_ns = NSEC_PER_SEC / sysctl_perf_event_sample_rate;
221 update_perf_cpu_limits();
Peter Zijlstra163ec432011-02-16 11:22:34 +0100222
223 return 0;
224}
Ingo Molnarcdd6c482009-09-21 12:02:48 +0200225
Dave Hansen14c63f12013-06-21 08:51:36 -0700226int sysctl_perf_cpu_time_max_percent __read_mostly = DEFAULT_CPU_TIME_MAX_PERCENT;
227
228int perf_cpu_time_max_percent_handler(struct ctl_table *table, int write,
229 void __user *buffer, size_t *lenp,
230 loff_t *ppos)
231{
232 int ret = proc_dointvec(table, write, buffer, lenp, ppos);
233
234 if (ret || !write)
235 return ret;
236
237 update_perf_cpu_limits();
238
239 return 0;
240}
241
242/*
243 * perf samples are done in some very critical code paths (NMIs).
244 * If they take too much CPU time, the system can lock up and not
245 * get any real work done. This will drop the sample rate when
246 * we detect that events are taking too long.
247 */
248#define NR_ACCUMULATED_SAMPLES 128
Peter Zijlstrad9494cb2013-10-17 15:36:19 +0200249static DEFINE_PER_CPU(u64, running_sample_length);
Dave Hansen14c63f12013-06-21 08:51:36 -0700250
Peter Zijlstra6a02ad662014-02-03 18:11:08 +0100251static void perf_duration_warn(struct irq_work *w)
Dave Hansen14c63f12013-06-21 08:51:36 -0700252{
Peter Zijlstra6a02ad662014-02-03 18:11:08 +0100253 u64 allowed_ns = ACCESS_ONCE(perf_sample_allowed_ns);
Dave Hansen14c63f12013-06-21 08:51:36 -0700254 u64 avg_local_sample_len;
Stephane Eraniane5302922013-07-05 00:30:11 +0200255 u64 local_samples_len;
Peter Zijlstra6a02ad662014-02-03 18:11:08 +0100256
Christoph Lameter4a32fea2014-08-17 12:30:27 -0500257 local_samples_len = __this_cpu_read(running_sample_length);
Peter Zijlstra6a02ad662014-02-03 18:11:08 +0100258 avg_local_sample_len = local_samples_len/NR_ACCUMULATED_SAMPLES;
259
260 printk_ratelimited(KERN_WARNING
261 "perf interrupt took too long (%lld > %lld), lowering "
262 "kernel.perf_event_max_sample_rate to %d\n",
Peter Zijlstracd578ab2014-02-11 16:01:16 +0100263 avg_local_sample_len, allowed_ns >> 1,
Peter Zijlstra6a02ad662014-02-03 18:11:08 +0100264 sysctl_perf_event_sample_rate);
265}
266
267static DEFINE_IRQ_WORK(perf_duration_work, perf_duration_warn);
268
269void perf_sample_event_took(u64 sample_len_ns)
270{
Peter Zijlstrad9494cb2013-10-17 15:36:19 +0200271 u64 allowed_ns = ACCESS_ONCE(perf_sample_allowed_ns);
Peter Zijlstra6a02ad662014-02-03 18:11:08 +0100272 u64 avg_local_sample_len;
273 u64 local_samples_len;
Dave Hansen14c63f12013-06-21 08:51:36 -0700274
Peter Zijlstrad9494cb2013-10-17 15:36:19 +0200275 if (allowed_ns == 0)
Dave Hansen14c63f12013-06-21 08:51:36 -0700276 return;
277
278 /* decay the counter by 1 average sample */
Christoph Lameter4a32fea2014-08-17 12:30:27 -0500279 local_samples_len = __this_cpu_read(running_sample_length);
Dave Hansen14c63f12013-06-21 08:51:36 -0700280 local_samples_len -= local_samples_len/NR_ACCUMULATED_SAMPLES;
281 local_samples_len += sample_len_ns;
Christoph Lameter4a32fea2014-08-17 12:30:27 -0500282 __this_cpu_write(running_sample_length, local_samples_len);
Dave Hansen14c63f12013-06-21 08:51:36 -0700283
284 /*
285 * note: this will be biased artifically low until we have
286 * seen NR_ACCUMULATED_SAMPLES. Doing it this way keeps us
287 * from having to maintain a count.
288 */
289 avg_local_sample_len = local_samples_len/NR_ACCUMULATED_SAMPLES;
290
Peter Zijlstrad9494cb2013-10-17 15:36:19 +0200291 if (avg_local_sample_len <= allowed_ns)
Dave Hansen14c63f12013-06-21 08:51:36 -0700292 return;
293
294 if (max_samples_per_tick <= 1)
295 return;
296
297 max_samples_per_tick = DIV_ROUND_UP(max_samples_per_tick, 2);
298 sysctl_perf_event_sample_rate = max_samples_per_tick * HZ;
299 perf_sample_period_ns = NSEC_PER_SEC / sysctl_perf_event_sample_rate;
300
Dave Hansen14c63f12013-06-21 08:51:36 -0700301 update_perf_cpu_limits();
Peter Zijlstra6a02ad662014-02-03 18:11:08 +0100302
Peter Zijlstracd578ab2014-02-11 16:01:16 +0100303 if (!irq_work_queue(&perf_duration_work)) {
304 early_printk("perf interrupt took too long (%lld > %lld), lowering "
305 "kernel.perf_event_max_sample_rate to %d\n",
306 avg_local_sample_len, allowed_ns >> 1,
307 sysctl_perf_event_sample_rate);
308 }
Dave Hansen14c63f12013-06-21 08:51:36 -0700309}
310
Ingo Molnarcdd6c482009-09-21 12:02:48 +0200311static atomic64_t perf_event_id;
312
Stephane Eranian0b3fcf12011-01-03 18:20:01 +0200313static void cpu_ctx_sched_out(struct perf_cpu_context *cpuctx,
314 enum event_type_t event_type);
315
316static void cpu_ctx_sched_in(struct perf_cpu_context *cpuctx,
Stephane Eraniane5d13672011-02-14 11:20:01 +0200317 enum event_type_t event_type,
318 struct task_struct *task);
319
320static void update_context_time(struct perf_event_context *ctx);
321static u64 perf_event_time(struct perf_event *event);
Stephane Eranian0b3fcf12011-01-03 18:20:01 +0200322
Ingo Molnarcdd6c482009-09-21 12:02:48 +0200323void __weak perf_event_print_debug(void) { }
324
Matt Fleming84c79912010-10-03 21:41:13 +0100325extern __weak const char *perf_pmu_name(void)
Ingo Molnarcdd6c482009-09-21 12:02:48 +0200326{
Matt Fleming84c79912010-10-03 21:41:13 +0100327 return "pmu";
Ingo Molnarcdd6c482009-09-21 12:02:48 +0200328}
329
Stephane Eranian0b3fcf12011-01-03 18:20:01 +0200330static inline u64 perf_clock(void)
331{
332 return local_clock();
333}
334
Peter Zijlstra34f43922015-02-20 14:05:38 +0100335static inline u64 perf_event_clock(struct perf_event *event)
336{
337 return event->clock();
338}
339
Stephane Eraniane5d13672011-02-14 11:20:01 +0200340static inline struct perf_cpu_context *
341__get_cpu_context(struct perf_event_context *ctx)
342{
343 return this_cpu_ptr(ctx->pmu->pmu_cpu_context);
344}
345
Peter Zijlstrafacc4302011-04-09 21:17:42 +0200346static void perf_ctx_lock(struct perf_cpu_context *cpuctx,
347 struct perf_event_context *ctx)
348{
349 raw_spin_lock(&cpuctx->ctx.lock);
350 if (ctx)
351 raw_spin_lock(&ctx->lock);
352}
353
354static void perf_ctx_unlock(struct perf_cpu_context *cpuctx,
355 struct perf_event_context *ctx)
356{
357 if (ctx)
358 raw_spin_unlock(&ctx->lock);
359 raw_spin_unlock(&cpuctx->ctx.lock);
360}
361
Stephane Eraniane5d13672011-02-14 11:20:01 +0200362#ifdef CONFIG_CGROUP_PERF
363
Stephane Eraniane5d13672011-02-14 11:20:01 +0200364static inline bool
365perf_cgroup_match(struct perf_event *event)
366{
367 struct perf_event_context *ctx = event->ctx;
368 struct perf_cpu_context *cpuctx = __get_cpu_context(ctx);
369
Tejun Heoef824fa2013-04-08 19:00:38 -0700370 /* @event doesn't care about cgroup */
371 if (!event->cgrp)
372 return true;
373
374 /* wants specific cgroup scope but @cpuctx isn't associated with any */
375 if (!cpuctx->cgrp)
376 return false;
377
378 /*
379 * Cgroup scoping is recursive. An event enabled for a cgroup is
380 * also enabled for all its descendant cgroups. If @cpuctx's
381 * cgroup is a descendant of @event's (the test covers identity
382 * case), it's a match.
383 */
384 return cgroup_is_descendant(cpuctx->cgrp->css.cgroup,
385 event->cgrp->css.cgroup);
Stephane Eraniane5d13672011-02-14 11:20:01 +0200386}
387
Stephane Eraniane5d13672011-02-14 11:20:01 +0200388static inline void perf_detach_cgroup(struct perf_event *event)
389{
Zefan Li4e2ba652014-09-19 16:53:14 +0800390 css_put(&event->cgrp->css);
Stephane Eraniane5d13672011-02-14 11:20:01 +0200391 event->cgrp = NULL;
392}
393
394static inline int is_cgroup_event(struct perf_event *event)
395{
396 return event->cgrp != NULL;
397}
398
399static inline u64 perf_cgroup_event_time(struct perf_event *event)
400{
401 struct perf_cgroup_info *t;
402
403 t = per_cpu_ptr(event->cgrp->info, event->cpu);
404 return t->time;
405}
406
407static inline void __update_cgrp_time(struct perf_cgroup *cgrp)
408{
409 struct perf_cgroup_info *info;
410 u64 now;
411
412 now = perf_clock();
413
414 info = this_cpu_ptr(cgrp->info);
415
416 info->time += now - info->timestamp;
417 info->timestamp = now;
418}
419
420static inline void update_cgrp_time_from_cpuctx(struct perf_cpu_context *cpuctx)
421{
422 struct perf_cgroup *cgrp_out = cpuctx->cgrp;
423 if (cgrp_out)
424 __update_cgrp_time(cgrp_out);
425}
426
427static inline void update_cgrp_time_from_event(struct perf_event *event)
428{
Stephane Eranian3f7cce32011-02-18 14:40:01 +0200429 struct perf_cgroup *cgrp;
430
Stephane Eraniane5d13672011-02-14 11:20:01 +0200431 /*
Stephane Eranian3f7cce32011-02-18 14:40:01 +0200432 * ensure we access cgroup data only when needed and
433 * when we know the cgroup is pinned (css_get)
Stephane Eraniane5d13672011-02-14 11:20:01 +0200434 */
Stephane Eranian3f7cce32011-02-18 14:40:01 +0200435 if (!is_cgroup_event(event))
Stephane Eraniane5d13672011-02-14 11:20:01 +0200436 return;
437
Stephane Eranian3f7cce32011-02-18 14:40:01 +0200438 cgrp = perf_cgroup_from_task(current);
439 /*
440 * Do not update time when cgroup is not active
441 */
442 if (cgrp == event->cgrp)
443 __update_cgrp_time(event->cgrp);
Stephane Eraniane5d13672011-02-14 11:20:01 +0200444}
445
446static inline void
Stephane Eranian3f7cce32011-02-18 14:40:01 +0200447perf_cgroup_set_timestamp(struct task_struct *task,
448 struct perf_event_context *ctx)
Stephane Eraniane5d13672011-02-14 11:20:01 +0200449{
450 struct perf_cgroup *cgrp;
451 struct perf_cgroup_info *info;
452
Stephane Eranian3f7cce32011-02-18 14:40:01 +0200453 /*
454 * ctx->lock held by caller
455 * ensure we do not access cgroup data
456 * unless we have the cgroup pinned (css_get)
457 */
458 if (!task || !ctx->nr_cgroups)
Stephane Eraniane5d13672011-02-14 11:20:01 +0200459 return;
460
461 cgrp = perf_cgroup_from_task(task);
462 info = this_cpu_ptr(cgrp->info);
Stephane Eranian3f7cce32011-02-18 14:40:01 +0200463 info->timestamp = ctx->timestamp;
Stephane Eraniane5d13672011-02-14 11:20:01 +0200464}
465
466#define PERF_CGROUP_SWOUT 0x1 /* cgroup switch out every event */
467#define PERF_CGROUP_SWIN 0x2 /* cgroup switch in events based on task */
468
469/*
470 * reschedule events based on the cgroup constraint of task.
471 *
472 * mode SWOUT : schedule out everything
473 * mode SWIN : schedule in based on cgroup for next
474 */
475void perf_cgroup_switch(struct task_struct *task, int mode)
476{
477 struct perf_cpu_context *cpuctx;
478 struct pmu *pmu;
479 unsigned long flags;
480
481 /*
482 * disable interrupts to avoid geting nr_cgroup
483 * changes via __perf_event_disable(). Also
484 * avoids preemption.
485 */
486 local_irq_save(flags);
487
488 /*
489 * we reschedule only in the presence of cgroup
490 * constrained events.
491 */
492 rcu_read_lock();
493
494 list_for_each_entry_rcu(pmu, &pmus, entry) {
Stephane Eraniane5d13672011-02-14 11:20:01 +0200495 cpuctx = this_cpu_ptr(pmu->pmu_cpu_context);
Peter Zijlstra95cf59e2012-10-02 15:41:23 +0200496 if (cpuctx->unique_pmu != pmu)
497 continue; /* ensure we process each cpuctx once */
Stephane Eraniane5d13672011-02-14 11:20:01 +0200498
Stephane Eraniane5d13672011-02-14 11:20:01 +0200499 /*
500 * perf_cgroup_events says at least one
501 * context on this CPU has cgroup events.
502 *
503 * ctx->nr_cgroups reports the number of cgroup
504 * events for a context.
505 */
506 if (cpuctx->ctx.nr_cgroups > 0) {
Peter Zijlstrafacc4302011-04-09 21:17:42 +0200507 perf_ctx_lock(cpuctx, cpuctx->task_ctx);
508 perf_pmu_disable(cpuctx->ctx.pmu);
Stephane Eraniane5d13672011-02-14 11:20:01 +0200509
510 if (mode & PERF_CGROUP_SWOUT) {
511 cpu_ctx_sched_out(cpuctx, EVENT_ALL);
512 /*
513 * must not be done before ctxswout due
514 * to event_filter_match() in event_sched_out()
515 */
516 cpuctx->cgrp = NULL;
517 }
518
519 if (mode & PERF_CGROUP_SWIN) {
Stephane Eraniane566b762011-04-06 02:54:54 +0200520 WARN_ON_ONCE(cpuctx->cgrp);
Peter Zijlstra95cf59e2012-10-02 15:41:23 +0200521 /*
522 * set cgrp before ctxsw in to allow
523 * event_filter_match() to not have to pass
524 * task around
Stephane Eraniane5d13672011-02-14 11:20:01 +0200525 */
526 cpuctx->cgrp = perf_cgroup_from_task(task);
527 cpu_ctx_sched_in(cpuctx, EVENT_ALL, task);
528 }
Peter Zijlstrafacc4302011-04-09 21:17:42 +0200529 perf_pmu_enable(cpuctx->ctx.pmu);
530 perf_ctx_unlock(cpuctx, cpuctx->task_ctx);
Stephane Eraniane5d13672011-02-14 11:20:01 +0200531 }
Stephane Eraniane5d13672011-02-14 11:20:01 +0200532 }
533
534 rcu_read_unlock();
535
536 local_irq_restore(flags);
537}
538
Stephane Eraniana8d757e2011-08-25 15:58:03 +0200539static inline void perf_cgroup_sched_out(struct task_struct *task,
540 struct task_struct *next)
Stephane Eraniane5d13672011-02-14 11:20:01 +0200541{
Stephane Eraniana8d757e2011-08-25 15:58:03 +0200542 struct perf_cgroup *cgrp1;
543 struct perf_cgroup *cgrp2 = NULL;
544
545 /*
546 * we come here when we know perf_cgroup_events > 0
547 */
548 cgrp1 = perf_cgroup_from_task(task);
549
550 /*
551 * next is NULL when called from perf_event_enable_on_exec()
552 * that will systematically cause a cgroup_switch()
553 */
554 if (next)
555 cgrp2 = perf_cgroup_from_task(next);
556
557 /*
558 * only schedule out current cgroup events if we know
559 * that we are switching to a different cgroup. Otherwise,
560 * do no touch the cgroup events.
561 */
562 if (cgrp1 != cgrp2)
563 perf_cgroup_switch(task, PERF_CGROUP_SWOUT);
Stephane Eraniane5d13672011-02-14 11:20:01 +0200564}
565
Stephane Eraniana8d757e2011-08-25 15:58:03 +0200566static inline void perf_cgroup_sched_in(struct task_struct *prev,
567 struct task_struct *task)
Stephane Eraniane5d13672011-02-14 11:20:01 +0200568{
Stephane Eraniana8d757e2011-08-25 15:58:03 +0200569 struct perf_cgroup *cgrp1;
570 struct perf_cgroup *cgrp2 = NULL;
571
572 /*
573 * we come here when we know perf_cgroup_events > 0
574 */
575 cgrp1 = perf_cgroup_from_task(task);
576
577 /* prev can never be NULL */
578 cgrp2 = perf_cgroup_from_task(prev);
579
580 /*
581 * only need to schedule in cgroup events if we are changing
582 * cgroup during ctxsw. Cgroup events were not scheduled
583 * out of ctxsw out if that was not the case.
584 */
585 if (cgrp1 != cgrp2)
586 perf_cgroup_switch(task, PERF_CGROUP_SWIN);
Stephane Eraniane5d13672011-02-14 11:20:01 +0200587}
588
589static inline int perf_cgroup_connect(int fd, struct perf_event *event,
590 struct perf_event_attr *attr,
591 struct perf_event *group_leader)
592{
593 struct perf_cgroup *cgrp;
594 struct cgroup_subsys_state *css;
Al Viro2903ff02012-08-28 12:52:22 -0400595 struct fd f = fdget(fd);
596 int ret = 0;
Stephane Eraniane5d13672011-02-14 11:20:01 +0200597
Al Viro2903ff02012-08-28 12:52:22 -0400598 if (!f.file)
Stephane Eraniane5d13672011-02-14 11:20:01 +0200599 return -EBADF;
600
Al Virob5830432014-10-31 01:22:04 -0400601 css = css_tryget_online_from_dir(f.file->f_path.dentry,
Tejun Heoec903c02014-05-13 12:11:01 -0400602 &perf_event_cgrp_subsys);
Li Zefan3db272c2011-03-03 14:25:37 +0800603 if (IS_ERR(css)) {
604 ret = PTR_ERR(css);
605 goto out;
606 }
Stephane Eraniane5d13672011-02-14 11:20:01 +0200607
608 cgrp = container_of(css, struct perf_cgroup, css);
609 event->cgrp = cgrp;
610
611 /*
612 * all events in a group must monitor
613 * the same cgroup because a task belongs
614 * to only one perf cgroup at a time
615 */
616 if (group_leader && group_leader->cgrp != cgrp) {
617 perf_detach_cgroup(event);
618 ret = -EINVAL;
Stephane Eraniane5d13672011-02-14 11:20:01 +0200619 }
Li Zefan3db272c2011-03-03 14:25:37 +0800620out:
Al Viro2903ff02012-08-28 12:52:22 -0400621 fdput(f);
Stephane Eraniane5d13672011-02-14 11:20:01 +0200622 return ret;
623}
624
625static inline void
626perf_cgroup_set_shadow_time(struct perf_event *event, u64 now)
627{
628 struct perf_cgroup_info *t;
629 t = per_cpu_ptr(event->cgrp->info, event->cpu);
630 event->shadow_ctx_time = now - t->timestamp;
631}
632
633static inline void
634perf_cgroup_defer_enabled(struct perf_event *event)
635{
636 /*
637 * when the current task's perf cgroup does not match
638 * the event's, we need to remember to call the
639 * perf_mark_enable() function the first time a task with
640 * a matching perf cgroup is scheduled in.
641 */
642 if (is_cgroup_event(event) && !perf_cgroup_match(event))
643 event->cgrp_defer_enabled = 1;
644}
645
646static inline void
647perf_cgroup_mark_enabled(struct perf_event *event,
648 struct perf_event_context *ctx)
649{
650 struct perf_event *sub;
651 u64 tstamp = perf_event_time(event);
652
653 if (!event->cgrp_defer_enabled)
654 return;
655
656 event->cgrp_defer_enabled = 0;
657
658 event->tstamp_enabled = tstamp - event->total_time_enabled;
659 list_for_each_entry(sub, &event->sibling_list, group_entry) {
660 if (sub->state >= PERF_EVENT_STATE_INACTIVE) {
661 sub->tstamp_enabled = tstamp - sub->total_time_enabled;
662 sub->cgrp_defer_enabled = 0;
663 }
664 }
665}
666#else /* !CONFIG_CGROUP_PERF */
667
668static inline bool
669perf_cgroup_match(struct perf_event *event)
670{
671 return true;
672}
673
674static inline void perf_detach_cgroup(struct perf_event *event)
675{}
676
677static inline int is_cgroup_event(struct perf_event *event)
678{
679 return 0;
680}
681
682static inline u64 perf_cgroup_event_cgrp_time(struct perf_event *event)
683{
684 return 0;
685}
686
687static inline void update_cgrp_time_from_event(struct perf_event *event)
688{
689}
690
691static inline void update_cgrp_time_from_cpuctx(struct perf_cpu_context *cpuctx)
692{
693}
694
Stephane Eraniana8d757e2011-08-25 15:58:03 +0200695static inline void perf_cgroup_sched_out(struct task_struct *task,
696 struct task_struct *next)
Stephane Eraniane5d13672011-02-14 11:20:01 +0200697{
698}
699
Stephane Eraniana8d757e2011-08-25 15:58:03 +0200700static inline void perf_cgroup_sched_in(struct task_struct *prev,
701 struct task_struct *task)
Stephane Eraniane5d13672011-02-14 11:20:01 +0200702{
703}
704
705static inline int perf_cgroup_connect(pid_t pid, struct perf_event *event,
706 struct perf_event_attr *attr,
707 struct perf_event *group_leader)
708{
709 return -EINVAL;
710}
711
712static inline void
Stephane Eranian3f7cce32011-02-18 14:40:01 +0200713perf_cgroup_set_timestamp(struct task_struct *task,
714 struct perf_event_context *ctx)
Stephane Eraniane5d13672011-02-14 11:20:01 +0200715{
716}
717
718void
719perf_cgroup_switch(struct task_struct *task, struct task_struct *next)
720{
721}
722
723static inline void
724perf_cgroup_set_shadow_time(struct perf_event *event, u64 now)
725{
726}
727
728static inline u64 perf_cgroup_event_time(struct perf_event *event)
729{
730 return 0;
731}
732
733static inline void
734perf_cgroup_defer_enabled(struct perf_event *event)
735{
736}
737
738static inline void
739perf_cgroup_mark_enabled(struct perf_event *event,
740 struct perf_event_context *ctx)
741{
742}
743#endif
744
Stephane Eranian9e630202013-04-03 14:21:33 +0200745/*
746 * set default to be dependent on timer tick just
747 * like original code
748 */
749#define PERF_CPU_HRTIMER (1000 / HZ)
750/*
751 * function must be called with interrupts disbled
752 */
Peter Zijlstra272325c2015-04-15 11:41:58 +0200753static enum hrtimer_restart perf_mux_hrtimer_handler(struct hrtimer *hr)
Stephane Eranian9e630202013-04-03 14:21:33 +0200754{
755 struct perf_cpu_context *cpuctx;
Stephane Eranian9e630202013-04-03 14:21:33 +0200756 int rotations = 0;
757
758 WARN_ON(!irqs_disabled());
759
760 cpuctx = container_of(hr, struct perf_cpu_context, hrtimer);
Stephane Eranian9e630202013-04-03 14:21:33 +0200761 rotations = perf_rotate_context(cpuctx);
762
Peter Zijlstra4cfafd32015-05-14 12:23:11 +0200763 raw_spin_lock(&cpuctx->hrtimer_lock);
764 if (rotations)
Stephane Eranian9e630202013-04-03 14:21:33 +0200765 hrtimer_forward_now(hr, cpuctx->hrtimer_interval);
Peter Zijlstra4cfafd32015-05-14 12:23:11 +0200766 else
767 cpuctx->hrtimer_active = 0;
768 raw_spin_unlock(&cpuctx->hrtimer_lock);
Stephane Eranian9e630202013-04-03 14:21:33 +0200769
Peter Zijlstra4cfafd32015-05-14 12:23:11 +0200770 return rotations ? HRTIMER_RESTART : HRTIMER_NORESTART;
Stephane Eranian9e630202013-04-03 14:21:33 +0200771}
772
Peter Zijlstra272325c2015-04-15 11:41:58 +0200773static void __perf_mux_hrtimer_init(struct perf_cpu_context *cpuctx, int cpu)
Stephane Eranian9e630202013-04-03 14:21:33 +0200774{
Peter Zijlstra272325c2015-04-15 11:41:58 +0200775 struct hrtimer *timer = &cpuctx->hrtimer;
Stephane Eranian9e630202013-04-03 14:21:33 +0200776 struct pmu *pmu = cpuctx->ctx.pmu;
Peter Zijlstra272325c2015-04-15 11:41:58 +0200777 u64 interval;
Stephane Eranian9e630202013-04-03 14:21:33 +0200778
779 /* no multiplexing needed for SW PMU */
780 if (pmu->task_ctx_nr == perf_sw_context)
781 return;
782
Stephane Eranian62b85632013-04-03 14:21:34 +0200783 /*
784 * check default is sane, if not set then force to
785 * default interval (1/tick)
786 */
Peter Zijlstra272325c2015-04-15 11:41:58 +0200787 interval = pmu->hrtimer_interval_ms;
788 if (interval < 1)
789 interval = pmu->hrtimer_interval_ms = PERF_CPU_HRTIMER;
Stephane Eranian62b85632013-04-03 14:21:34 +0200790
Peter Zijlstra272325c2015-04-15 11:41:58 +0200791 cpuctx->hrtimer_interval = ns_to_ktime(NSEC_PER_MSEC * interval);
Stephane Eranian9e630202013-04-03 14:21:33 +0200792
Peter Zijlstra4cfafd32015-05-14 12:23:11 +0200793 raw_spin_lock_init(&cpuctx->hrtimer_lock);
794 hrtimer_init(timer, CLOCK_MONOTONIC, HRTIMER_MODE_ABS_PINNED);
Peter Zijlstra272325c2015-04-15 11:41:58 +0200795 timer->function = perf_mux_hrtimer_handler;
Stephane Eranian9e630202013-04-03 14:21:33 +0200796}
797
Peter Zijlstra272325c2015-04-15 11:41:58 +0200798static int perf_mux_hrtimer_restart(struct perf_cpu_context *cpuctx)
Stephane Eranian9e630202013-04-03 14:21:33 +0200799{
Peter Zijlstra272325c2015-04-15 11:41:58 +0200800 struct hrtimer *timer = &cpuctx->hrtimer;
Stephane Eranian9e630202013-04-03 14:21:33 +0200801 struct pmu *pmu = cpuctx->ctx.pmu;
Peter Zijlstra4cfafd32015-05-14 12:23:11 +0200802 unsigned long flags;
Stephane Eranian9e630202013-04-03 14:21:33 +0200803
804 /* not for SW PMU */
805 if (pmu->task_ctx_nr == perf_sw_context)
Peter Zijlstra272325c2015-04-15 11:41:58 +0200806 return 0;
Stephane Eranian9e630202013-04-03 14:21:33 +0200807
Peter Zijlstra4cfafd32015-05-14 12:23:11 +0200808 raw_spin_lock_irqsave(&cpuctx->hrtimer_lock, flags);
809 if (!cpuctx->hrtimer_active) {
810 cpuctx->hrtimer_active = 1;
811 hrtimer_forward_now(timer, cpuctx->hrtimer_interval);
812 hrtimer_start_expires(timer, HRTIMER_MODE_ABS_PINNED);
813 }
814 raw_spin_unlock_irqrestore(&cpuctx->hrtimer_lock, flags);
Stephane Eranian9e630202013-04-03 14:21:33 +0200815
Peter Zijlstra272325c2015-04-15 11:41:58 +0200816 return 0;
Stephane Eranian9e630202013-04-03 14:21:33 +0200817}
818
Peter Zijlstra33696fc2010-06-14 08:49:00 +0200819void perf_pmu_disable(struct pmu *pmu)
Ingo Molnarcdd6c482009-09-21 12:02:48 +0200820{
Peter Zijlstra33696fc2010-06-14 08:49:00 +0200821 int *count = this_cpu_ptr(pmu->pmu_disable_count);
822 if (!(*count)++)
823 pmu->pmu_disable(pmu);
Ingo Molnarcdd6c482009-09-21 12:02:48 +0200824}
825
Peter Zijlstra33696fc2010-06-14 08:49:00 +0200826void perf_pmu_enable(struct pmu *pmu)
Ingo Molnarcdd6c482009-09-21 12:02:48 +0200827{
Peter Zijlstra33696fc2010-06-14 08:49:00 +0200828 int *count = this_cpu_ptr(pmu->pmu_disable_count);
829 if (!--(*count))
830 pmu->pmu_enable(pmu);
Ingo Molnarcdd6c482009-09-21 12:02:48 +0200831}
832
Mark Rutland2fde4f92015-01-07 15:01:54 +0000833static DEFINE_PER_CPU(struct list_head, active_ctx_list);
Peter Zijlstrae9d2b062010-09-17 11:28:50 +0200834
835/*
Mark Rutland2fde4f92015-01-07 15:01:54 +0000836 * perf_event_ctx_activate(), perf_event_ctx_deactivate(), and
837 * perf_event_task_tick() are fully serialized because they're strictly cpu
838 * affine and perf_event_ctx{activate,deactivate} are called with IRQs
839 * disabled, while perf_event_task_tick is called from IRQ context.
Peter Zijlstrae9d2b062010-09-17 11:28:50 +0200840 */
Mark Rutland2fde4f92015-01-07 15:01:54 +0000841static void perf_event_ctx_activate(struct perf_event_context *ctx)
Peter Zijlstrab5ab4cd2010-09-06 16:32:21 +0200842{
Mark Rutland2fde4f92015-01-07 15:01:54 +0000843 struct list_head *head = this_cpu_ptr(&active_ctx_list);
Peter Zijlstrab5ab4cd2010-09-06 16:32:21 +0200844
Peter Zijlstrae9d2b062010-09-17 11:28:50 +0200845 WARN_ON(!irqs_disabled());
Peter Zijlstrab5ab4cd2010-09-06 16:32:21 +0200846
Mark Rutland2fde4f92015-01-07 15:01:54 +0000847 WARN_ON(!list_empty(&ctx->active_ctx_list));
848
849 list_add(&ctx->active_ctx_list, head);
850}
851
852static void perf_event_ctx_deactivate(struct perf_event_context *ctx)
853{
854 WARN_ON(!irqs_disabled());
855
856 WARN_ON(list_empty(&ctx->active_ctx_list));
857
858 list_del_init(&ctx->active_ctx_list);
Ingo Molnarcdd6c482009-09-21 12:02:48 +0200859}
860
861static void get_ctx(struct perf_event_context *ctx)
862{
863 WARN_ON(!atomic_inc_not_zero(&ctx->refcount));
864}
865
Yan, Zheng4af57ef2014-11-04 21:56:01 -0500866static void free_ctx(struct rcu_head *head)
867{
868 struct perf_event_context *ctx;
869
870 ctx = container_of(head, struct perf_event_context, rcu_head);
871 kfree(ctx->task_ctx_data);
872 kfree(ctx);
873}
874
Ingo Molnarcdd6c482009-09-21 12:02:48 +0200875static void put_ctx(struct perf_event_context *ctx)
876{
877 if (atomic_dec_and_test(&ctx->refcount)) {
878 if (ctx->parent_ctx)
879 put_ctx(ctx->parent_ctx);
880 if (ctx->task)
881 put_task_struct(ctx->task);
Yan, Zheng4af57ef2014-11-04 21:56:01 -0500882 call_rcu(&ctx->rcu_head, free_ctx);
Ingo Molnarcdd6c482009-09-21 12:02:48 +0200883 }
884}
885
Peter Zijlstra211de6e2014-09-30 19:23:08 +0200886/*
Peter Zijlstraf63a8da2015-01-23 12:24:14 +0100887 * Because of perf_event::ctx migration in sys_perf_event_open::move_group and
888 * perf_pmu_migrate_context() we need some magic.
889 *
890 * Those places that change perf_event::ctx will hold both
891 * perf_event_ctx::mutex of the 'old' and 'new' ctx value.
892 *
Peter Zijlstra8b10c5e2015-05-01 16:08:46 +0200893 * Lock ordering is by mutex address. There are two other sites where
894 * perf_event_context::mutex nests and those are:
895 *
896 * - perf_event_exit_task_context() [ child , 0 ]
897 * __perf_event_exit_task()
898 * sync_child_event()
899 * put_event() [ parent, 1 ]
900 *
901 * - perf_event_init_context() [ parent, 0 ]
902 * inherit_task_group()
903 * inherit_group()
904 * inherit_event()
905 * perf_event_alloc()
906 * perf_init_event()
907 * perf_try_init_event() [ child , 1 ]
908 *
909 * While it appears there is an obvious deadlock here -- the parent and child
910 * nesting levels are inverted between the two. This is in fact safe because
911 * life-time rules separate them. That is an exiting task cannot fork, and a
912 * spawning task cannot (yet) exit.
913 *
914 * But remember that that these are parent<->child context relations, and
915 * migration does not affect children, therefore these two orderings should not
916 * interact.
Peter Zijlstraf63a8da2015-01-23 12:24:14 +0100917 *
918 * The change in perf_event::ctx does not affect children (as claimed above)
919 * because the sys_perf_event_open() case will install a new event and break
920 * the ctx parent<->child relation, and perf_pmu_migrate_context() is only
921 * concerned with cpuctx and that doesn't have children.
922 *
923 * The places that change perf_event::ctx will issue:
924 *
925 * perf_remove_from_context();
926 * synchronize_rcu();
927 * perf_install_in_context();
928 *
929 * to affect the change. The remove_from_context() + synchronize_rcu() should
930 * quiesce the event, after which we can install it in the new location. This
931 * means that only external vectors (perf_fops, prctl) can perturb the event
932 * while in transit. Therefore all such accessors should also acquire
933 * perf_event_context::mutex to serialize against this.
934 *
935 * However; because event->ctx can change while we're waiting to acquire
936 * ctx->mutex we must be careful and use the below perf_event_ctx_lock()
937 * function.
938 *
939 * Lock order:
940 * task_struct::perf_event_mutex
941 * perf_event_context::mutex
942 * perf_event_context::lock
943 * perf_event::child_mutex;
944 * perf_event::mmap_mutex
945 * mmap_sem
946 */
Peter Zijlstraa83fe282015-01-29 14:44:34 +0100947static struct perf_event_context *
948perf_event_ctx_lock_nested(struct perf_event *event, int nesting)
Peter Zijlstraf63a8da2015-01-23 12:24:14 +0100949{
950 struct perf_event_context *ctx;
951
952again:
953 rcu_read_lock();
954 ctx = ACCESS_ONCE(event->ctx);
955 if (!atomic_inc_not_zero(&ctx->refcount)) {
956 rcu_read_unlock();
957 goto again;
958 }
959 rcu_read_unlock();
960
Peter Zijlstraa83fe282015-01-29 14:44:34 +0100961 mutex_lock_nested(&ctx->mutex, nesting);
Peter Zijlstraf63a8da2015-01-23 12:24:14 +0100962 if (event->ctx != ctx) {
963 mutex_unlock(&ctx->mutex);
964 put_ctx(ctx);
965 goto again;
966 }
967
968 return ctx;
969}
970
Peter Zijlstraa83fe282015-01-29 14:44:34 +0100971static inline struct perf_event_context *
972perf_event_ctx_lock(struct perf_event *event)
973{
974 return perf_event_ctx_lock_nested(event, 0);
975}
976
Peter Zijlstraf63a8da2015-01-23 12:24:14 +0100977static void perf_event_ctx_unlock(struct perf_event *event,
978 struct perf_event_context *ctx)
979{
980 mutex_unlock(&ctx->mutex);
981 put_ctx(ctx);
982}
983
984/*
Peter Zijlstra211de6e2014-09-30 19:23:08 +0200985 * This must be done under the ctx->lock, such as to serialize against
986 * context_equiv(), therefore we cannot call put_ctx() since that might end up
987 * calling scheduler related locks and ctx->lock nests inside those.
988 */
989static __must_check struct perf_event_context *
990unclone_ctx(struct perf_event_context *ctx)
Ingo Molnarcdd6c482009-09-21 12:02:48 +0200991{
Peter Zijlstra211de6e2014-09-30 19:23:08 +0200992 struct perf_event_context *parent_ctx = ctx->parent_ctx;
993
994 lockdep_assert_held(&ctx->lock);
995
996 if (parent_ctx)
Ingo Molnarcdd6c482009-09-21 12:02:48 +0200997 ctx->parent_ctx = NULL;
Peter Zijlstra5a3126d2013-10-07 17:12:48 +0200998 ctx->generation++;
Peter Zijlstra211de6e2014-09-30 19:23:08 +0200999
1000 return parent_ctx;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001001}
1002
Arnaldo Carvalho de Melo6844c092010-12-03 16:36:35 -02001003static u32 perf_event_pid(struct perf_event *event, struct task_struct *p)
1004{
1005 /*
1006 * only top level events have the pid namespace they were created in
1007 */
1008 if (event->parent)
1009 event = event->parent;
1010
1011 return task_tgid_nr_ns(p, event->ns);
1012}
1013
1014static u32 perf_event_tid(struct perf_event *event, struct task_struct *p)
1015{
1016 /*
1017 * only top level events have the pid namespace they were created in
1018 */
1019 if (event->parent)
1020 event = event->parent;
1021
1022 return task_pid_nr_ns(p, event->ns);
1023}
1024
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001025/*
1026 * If we inherit events we want to return the parent event id
1027 * to userspace.
1028 */
1029static u64 primary_event_id(struct perf_event *event)
1030{
1031 u64 id = event->id;
1032
1033 if (event->parent)
1034 id = event->parent->id;
1035
1036 return id;
1037}
1038
1039/*
1040 * Get the perf_event_context for a task and lock it.
1041 * This has to cope with with the fact that until it is locked,
1042 * the context could get moved to another task.
1043 */
1044static struct perf_event_context *
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02001045perf_lock_task_context(struct task_struct *task, int ctxn, unsigned long *flags)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001046{
1047 struct perf_event_context *ctx;
1048
Peter Zijlstra9ed60602010-06-11 17:36:35 +02001049retry:
Peter Zijlstra058ebd02013-07-12 11:08:33 +02001050 /*
1051 * One of the few rules of preemptible RCU is that one cannot do
1052 * rcu_read_unlock() while holding a scheduler (or nested) lock when
1053 * part of the read side critical section was preemptible -- see
1054 * rcu_read_unlock_special().
1055 *
1056 * Since ctx->lock nests under rq->lock we must ensure the entire read
1057 * side critical section is non-preemptible.
1058 */
1059 preempt_disable();
1060 rcu_read_lock();
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02001061 ctx = rcu_dereference(task->perf_event_ctxp[ctxn]);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001062 if (ctx) {
1063 /*
1064 * If this context is a clone of another, it might
1065 * get swapped for another underneath us by
1066 * perf_event_task_sched_out, though the
1067 * rcu_read_lock() protects us from any context
1068 * getting freed. Lock the context and check if it
1069 * got swapped before we could get the lock, and retry
1070 * if so. If we locked the right context, then it
1071 * can't get swapped on us any more.
1072 */
Thomas Gleixnere625cce12009-11-17 18:02:06 +01001073 raw_spin_lock_irqsave(&ctx->lock, *flags);
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02001074 if (ctx != rcu_dereference(task->perf_event_ctxp[ctxn])) {
Thomas Gleixnere625cce12009-11-17 18:02:06 +01001075 raw_spin_unlock_irqrestore(&ctx->lock, *flags);
Peter Zijlstra058ebd02013-07-12 11:08:33 +02001076 rcu_read_unlock();
1077 preempt_enable();
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001078 goto retry;
1079 }
1080
1081 if (!atomic_inc_not_zero(&ctx->refcount)) {
Thomas Gleixnere625cce12009-11-17 18:02:06 +01001082 raw_spin_unlock_irqrestore(&ctx->lock, *flags);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001083 ctx = NULL;
1084 }
1085 }
1086 rcu_read_unlock();
Peter Zijlstra058ebd02013-07-12 11:08:33 +02001087 preempt_enable();
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001088 return ctx;
1089}
1090
1091/*
1092 * Get the context for a task and increment its pin_count so it
1093 * can't get swapped to another task. This also increments its
1094 * reference count so that the context can't get freed.
1095 */
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02001096static struct perf_event_context *
1097perf_pin_task_context(struct task_struct *task, int ctxn)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001098{
1099 struct perf_event_context *ctx;
1100 unsigned long flags;
1101
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02001102 ctx = perf_lock_task_context(task, ctxn, &flags);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001103 if (ctx) {
1104 ++ctx->pin_count;
Thomas Gleixnere625cce12009-11-17 18:02:06 +01001105 raw_spin_unlock_irqrestore(&ctx->lock, flags);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001106 }
1107 return ctx;
1108}
1109
1110static void perf_unpin_context(struct perf_event_context *ctx)
1111{
1112 unsigned long flags;
1113
Thomas Gleixnere625cce12009-11-17 18:02:06 +01001114 raw_spin_lock_irqsave(&ctx->lock, flags);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001115 --ctx->pin_count;
Thomas Gleixnere625cce12009-11-17 18:02:06 +01001116 raw_spin_unlock_irqrestore(&ctx->lock, flags);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001117}
1118
Peter Zijlstraf67218c2009-11-23 11:37:27 +01001119/*
1120 * Update the record of the current time in a context.
1121 */
1122static void update_context_time(struct perf_event_context *ctx)
1123{
1124 u64 now = perf_clock();
1125
1126 ctx->time += now - ctx->timestamp;
1127 ctx->timestamp = now;
1128}
1129
Stephane Eranian41587552011-01-03 18:20:01 +02001130static u64 perf_event_time(struct perf_event *event)
1131{
1132 struct perf_event_context *ctx = event->ctx;
Stephane Eraniane5d13672011-02-14 11:20:01 +02001133
1134 if (is_cgroup_event(event))
1135 return perf_cgroup_event_time(event);
1136
Stephane Eranian41587552011-01-03 18:20:01 +02001137 return ctx ? ctx->time : 0;
1138}
1139
Peter Zijlstraf67218c2009-11-23 11:37:27 +01001140/*
1141 * Update the total_time_enabled and total_time_running fields for a event.
Eric B Munsonb7526f02011-06-23 16:34:37 -04001142 * The caller of this function needs to hold the ctx->lock.
Peter Zijlstraf67218c2009-11-23 11:37:27 +01001143 */
1144static void update_event_times(struct perf_event *event)
1145{
1146 struct perf_event_context *ctx = event->ctx;
1147 u64 run_end;
1148
1149 if (event->state < PERF_EVENT_STATE_INACTIVE ||
1150 event->group_leader->state < PERF_EVENT_STATE_INACTIVE)
1151 return;
Stephane Eraniane5d13672011-02-14 11:20:01 +02001152 /*
1153 * in cgroup mode, time_enabled represents
1154 * the time the event was enabled AND active
1155 * tasks were in the monitored cgroup. This is
1156 * independent of the activity of the context as
1157 * there may be a mix of cgroup and non-cgroup events.
1158 *
1159 * That is why we treat cgroup events differently
1160 * here.
1161 */
1162 if (is_cgroup_event(event))
Namhyung Kim46cd6a7f2012-01-20 10:12:46 +09001163 run_end = perf_cgroup_event_time(event);
Stephane Eraniane5d13672011-02-14 11:20:01 +02001164 else if (ctx->is_active)
1165 run_end = ctx->time;
Peter Zijlstraacd1d7c2009-11-23 15:00:36 +01001166 else
1167 run_end = event->tstamp_stopped;
1168
1169 event->total_time_enabled = run_end - event->tstamp_enabled;
Peter Zijlstraf67218c2009-11-23 11:37:27 +01001170
1171 if (event->state == PERF_EVENT_STATE_INACTIVE)
1172 run_end = event->tstamp_stopped;
1173 else
Stephane Eranian41587552011-01-03 18:20:01 +02001174 run_end = perf_event_time(event);
Peter Zijlstraf67218c2009-11-23 11:37:27 +01001175
1176 event->total_time_running = run_end - event->tstamp_running;
Stephane Eraniane5d13672011-02-14 11:20:01 +02001177
Peter Zijlstraf67218c2009-11-23 11:37:27 +01001178}
1179
Peter Zijlstra96c21a42010-05-11 16:19:10 +02001180/*
1181 * Update total_time_enabled and total_time_running for all events in a group.
1182 */
1183static void update_group_times(struct perf_event *leader)
1184{
1185 struct perf_event *event;
1186
1187 update_event_times(leader);
1188 list_for_each_entry(event, &leader->sibling_list, group_entry)
1189 update_event_times(event);
1190}
1191
Frederic Weisbecker889ff012010-01-09 20:04:47 +01001192static struct list_head *
1193ctx_group_list(struct perf_event *event, struct perf_event_context *ctx)
1194{
1195 if (event->attr.pinned)
1196 return &ctx->pinned_groups;
1197 else
1198 return &ctx->flexible_groups;
1199}
1200
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001201/*
1202 * Add a event from the lists for its context.
1203 * Must be called with ctx->mutex and ctx->lock held.
1204 */
1205static void
1206list_add_event(struct perf_event *event, struct perf_event_context *ctx)
1207{
Peter Zijlstra8a495422010-05-27 15:47:49 +02001208 WARN_ON_ONCE(event->attach_state & PERF_ATTACH_CONTEXT);
1209 event->attach_state |= PERF_ATTACH_CONTEXT;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001210
1211 /*
Peter Zijlstra8a495422010-05-27 15:47:49 +02001212 * If we're a stand alone event or group leader, we go to the context
1213 * list, group events are kept attached to the group so that
1214 * perf_group_detach can, at all times, locate all siblings.
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001215 */
Peter Zijlstra8a495422010-05-27 15:47:49 +02001216 if (event->group_leader == event) {
Frederic Weisbecker889ff012010-01-09 20:04:47 +01001217 struct list_head *list;
1218
Frederic Weisbeckerd6f962b2010-01-10 01:25:51 +01001219 if (is_software_event(event))
1220 event->group_flags |= PERF_GROUP_SOFTWARE;
1221
Frederic Weisbecker889ff012010-01-09 20:04:47 +01001222 list = ctx_group_list(event, ctx);
1223 list_add_tail(&event->group_entry, list);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001224 }
1225
Peter Zijlstra08309372011-03-03 11:31:20 +01001226 if (is_cgroup_event(event))
Stephane Eraniane5d13672011-02-14 11:20:01 +02001227 ctx->nr_cgroups++;
Stephane Eraniane5d13672011-02-14 11:20:01 +02001228
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001229 list_add_rcu(&event->event_entry, &ctx->event_list);
1230 ctx->nr_events++;
1231 if (event->attr.inherit_stat)
1232 ctx->nr_stat++;
Peter Zijlstra5a3126d2013-10-07 17:12:48 +02001233
1234 ctx->generation++;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001235}
1236
Arnaldo Carvalho de Meloc320c7b2010-10-20 12:50:11 -02001237/*
Jiri Olsa0231bb52013-02-01 11:23:45 +01001238 * Initialize event state based on the perf_event_attr::disabled.
1239 */
1240static inline void perf_event__state_init(struct perf_event *event)
1241{
1242 event->state = event->attr.disabled ? PERF_EVENT_STATE_OFF :
1243 PERF_EVENT_STATE_INACTIVE;
1244}
1245
1246/*
Arnaldo Carvalho de Meloc320c7b2010-10-20 12:50:11 -02001247 * Called at perf_event creation and when events are attached/detached from a
1248 * group.
1249 */
1250static void perf_event__read_size(struct perf_event *event)
1251{
1252 int entry = sizeof(u64); /* value */
1253 int size = 0;
1254 int nr = 1;
1255
1256 if (event->attr.read_format & PERF_FORMAT_TOTAL_TIME_ENABLED)
1257 size += sizeof(u64);
1258
1259 if (event->attr.read_format & PERF_FORMAT_TOTAL_TIME_RUNNING)
1260 size += sizeof(u64);
1261
1262 if (event->attr.read_format & PERF_FORMAT_ID)
1263 entry += sizeof(u64);
1264
1265 if (event->attr.read_format & PERF_FORMAT_GROUP) {
1266 nr += event->group_leader->nr_siblings;
1267 size += sizeof(u64);
1268 }
1269
1270 size += entry * nr;
1271 event->read_size = size;
1272}
1273
1274static void perf_event__header_size(struct perf_event *event)
1275{
1276 struct perf_sample_data *data;
1277 u64 sample_type = event->attr.sample_type;
1278 u16 size = 0;
1279
1280 perf_event__read_size(event);
1281
1282 if (sample_type & PERF_SAMPLE_IP)
1283 size += sizeof(data->ip);
1284
Arnaldo Carvalho de Melo6844c092010-12-03 16:36:35 -02001285 if (sample_type & PERF_SAMPLE_ADDR)
1286 size += sizeof(data->addr);
1287
1288 if (sample_type & PERF_SAMPLE_PERIOD)
1289 size += sizeof(data->period);
1290
Andi Kleenc3feedf2013-01-24 16:10:28 +01001291 if (sample_type & PERF_SAMPLE_WEIGHT)
1292 size += sizeof(data->weight);
1293
Arnaldo Carvalho de Melo6844c092010-12-03 16:36:35 -02001294 if (sample_type & PERF_SAMPLE_READ)
1295 size += event->read_size;
1296
Stephane Eraniand6be9ad2013-01-24 16:10:31 +01001297 if (sample_type & PERF_SAMPLE_DATA_SRC)
1298 size += sizeof(data->data_src.val);
1299
Andi Kleenfdfbbd02013-09-20 07:40:39 -07001300 if (sample_type & PERF_SAMPLE_TRANSACTION)
1301 size += sizeof(data->txn);
1302
Arnaldo Carvalho de Melo6844c092010-12-03 16:36:35 -02001303 event->header_size = size;
1304}
1305
1306static void perf_event__id_header_size(struct perf_event *event)
1307{
1308 struct perf_sample_data *data;
1309 u64 sample_type = event->attr.sample_type;
1310 u16 size = 0;
1311
Arnaldo Carvalho de Meloc320c7b2010-10-20 12:50:11 -02001312 if (sample_type & PERF_SAMPLE_TID)
1313 size += sizeof(data->tid_entry);
1314
1315 if (sample_type & PERF_SAMPLE_TIME)
1316 size += sizeof(data->time);
1317
Adrian Hunterff3d5272013-08-27 11:23:07 +03001318 if (sample_type & PERF_SAMPLE_IDENTIFIER)
1319 size += sizeof(data->id);
1320
Arnaldo Carvalho de Meloc320c7b2010-10-20 12:50:11 -02001321 if (sample_type & PERF_SAMPLE_ID)
1322 size += sizeof(data->id);
1323
1324 if (sample_type & PERF_SAMPLE_STREAM_ID)
1325 size += sizeof(data->stream_id);
1326
1327 if (sample_type & PERF_SAMPLE_CPU)
1328 size += sizeof(data->cpu_entry);
1329
Arnaldo Carvalho de Melo6844c092010-12-03 16:36:35 -02001330 event->id_header_size = size;
Arnaldo Carvalho de Meloc320c7b2010-10-20 12:50:11 -02001331}
1332
Peter Zijlstra8a495422010-05-27 15:47:49 +02001333static void perf_group_attach(struct perf_event *event)
1334{
Arnaldo Carvalho de Meloc320c7b2010-10-20 12:50:11 -02001335 struct perf_event *group_leader = event->group_leader, *pos;
Peter Zijlstra8a495422010-05-27 15:47:49 +02001336
Peter Zijlstra74c33372010-10-15 11:40:29 +02001337 /*
1338 * We can have double attach due to group movement in perf_event_open.
1339 */
1340 if (event->attach_state & PERF_ATTACH_GROUP)
1341 return;
1342
Peter Zijlstra8a495422010-05-27 15:47:49 +02001343 event->attach_state |= PERF_ATTACH_GROUP;
1344
1345 if (group_leader == event)
1346 return;
1347
Peter Zijlstra652884f2015-01-23 11:20:10 +01001348 WARN_ON_ONCE(group_leader->ctx != event->ctx);
1349
Peter Zijlstra8a495422010-05-27 15:47:49 +02001350 if (group_leader->group_flags & PERF_GROUP_SOFTWARE &&
1351 !is_software_event(event))
1352 group_leader->group_flags &= ~PERF_GROUP_SOFTWARE;
1353
1354 list_add_tail(&event->group_entry, &group_leader->sibling_list);
1355 group_leader->nr_siblings++;
Arnaldo Carvalho de Meloc320c7b2010-10-20 12:50:11 -02001356
1357 perf_event__header_size(group_leader);
1358
1359 list_for_each_entry(pos, &group_leader->sibling_list, group_entry)
1360 perf_event__header_size(pos);
Peter Zijlstra8a495422010-05-27 15:47:49 +02001361}
1362
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001363/*
1364 * Remove a event from the lists for its context.
1365 * Must be called with ctx->mutex and ctx->lock held.
1366 */
1367static void
1368list_del_event(struct perf_event *event, struct perf_event_context *ctx)
1369{
Stephane Eranian68cacd22011-03-23 16:03:06 +01001370 struct perf_cpu_context *cpuctx;
Peter Zijlstra652884f2015-01-23 11:20:10 +01001371
1372 WARN_ON_ONCE(event->ctx != ctx);
1373 lockdep_assert_held(&ctx->lock);
1374
Peter Zijlstra8a495422010-05-27 15:47:49 +02001375 /*
1376 * We can have double detach due to exit/hot-unplug + close.
1377 */
1378 if (!(event->attach_state & PERF_ATTACH_CONTEXT))
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001379 return;
Peter Zijlstra8a495422010-05-27 15:47:49 +02001380
1381 event->attach_state &= ~PERF_ATTACH_CONTEXT;
1382
Stephane Eranian68cacd22011-03-23 16:03:06 +01001383 if (is_cgroup_event(event)) {
Stephane Eraniane5d13672011-02-14 11:20:01 +02001384 ctx->nr_cgroups--;
Stephane Eranian68cacd22011-03-23 16:03:06 +01001385 cpuctx = __get_cpu_context(ctx);
1386 /*
1387 * if there are no more cgroup events
1388 * then cler cgrp to avoid stale pointer
1389 * in update_cgrp_time_from_cpuctx()
1390 */
1391 if (!ctx->nr_cgroups)
1392 cpuctx->cgrp = NULL;
1393 }
Stephane Eraniane5d13672011-02-14 11:20:01 +02001394
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001395 ctx->nr_events--;
1396 if (event->attr.inherit_stat)
1397 ctx->nr_stat--;
1398
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001399 list_del_rcu(&event->event_entry);
1400
Peter Zijlstra8a495422010-05-27 15:47:49 +02001401 if (event->group_leader == event)
1402 list_del_init(&event->group_entry);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001403
Peter Zijlstra96c21a42010-05-11 16:19:10 +02001404 update_group_times(event);
Stephane Eranianb2e74a22009-11-26 09:24:30 -08001405
1406 /*
1407 * If event was in error state, then keep it
1408 * that way, otherwise bogus counts will be
1409 * returned on read(). The only way to get out
1410 * of error state is by explicit re-enabling
1411 * of the event
1412 */
1413 if (event->state > PERF_EVENT_STATE_OFF)
1414 event->state = PERF_EVENT_STATE_OFF;
Peter Zijlstra5a3126d2013-10-07 17:12:48 +02001415
1416 ctx->generation++;
Peter Zijlstra050735b2010-05-11 11:51:53 +02001417}
1418
Peter Zijlstra8a495422010-05-27 15:47:49 +02001419static void perf_group_detach(struct perf_event *event)
Peter Zijlstra050735b2010-05-11 11:51:53 +02001420{
1421 struct perf_event *sibling, *tmp;
Peter Zijlstra8a495422010-05-27 15:47:49 +02001422 struct list_head *list = NULL;
1423
1424 /*
1425 * We can have double detach due to exit/hot-unplug + close.
1426 */
1427 if (!(event->attach_state & PERF_ATTACH_GROUP))
1428 return;
1429
1430 event->attach_state &= ~PERF_ATTACH_GROUP;
1431
1432 /*
1433 * If this is a sibling, remove it from its group.
1434 */
1435 if (event->group_leader != event) {
1436 list_del_init(&event->group_entry);
1437 event->group_leader->nr_siblings--;
Arnaldo Carvalho de Meloc320c7b2010-10-20 12:50:11 -02001438 goto out;
Peter Zijlstra8a495422010-05-27 15:47:49 +02001439 }
1440
1441 if (!list_empty(&event->group_entry))
1442 list = &event->group_entry;
Peter Zijlstra2e2af502009-11-23 11:37:25 +01001443
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001444 /*
1445 * If this was a group event with sibling events then
1446 * upgrade the siblings to singleton events by adding them
Peter Zijlstra8a495422010-05-27 15:47:49 +02001447 * to whatever list we are on.
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001448 */
1449 list_for_each_entry_safe(sibling, tmp, &event->sibling_list, group_entry) {
Peter Zijlstra8a495422010-05-27 15:47:49 +02001450 if (list)
1451 list_move_tail(&sibling->group_entry, list);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001452 sibling->group_leader = sibling;
Frederic Weisbeckerd6f962b2010-01-10 01:25:51 +01001453
1454 /* Inherit group flags from the previous leader */
1455 sibling->group_flags = event->group_flags;
Peter Zijlstra652884f2015-01-23 11:20:10 +01001456
1457 WARN_ON_ONCE(sibling->ctx != event->ctx);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001458 }
Arnaldo Carvalho de Meloc320c7b2010-10-20 12:50:11 -02001459
1460out:
1461 perf_event__header_size(event->group_leader);
1462
1463 list_for_each_entry(tmp, &event->group_leader->sibling_list, group_entry)
1464 perf_event__header_size(tmp);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001465}
1466
Jiri Olsafadfe7b2014-08-01 14:33:02 +02001467/*
1468 * User event without the task.
1469 */
1470static bool is_orphaned_event(struct perf_event *event)
1471{
1472 return event && !is_kernel_event(event) && !event->owner;
1473}
1474
1475/*
1476 * Event has a parent but parent's task finished and it's
1477 * alive only because of children holding refference.
1478 */
1479static bool is_orphaned_child(struct perf_event *event)
1480{
1481 return is_orphaned_event(event->parent);
1482}
1483
1484static void orphans_remove_work(struct work_struct *work);
1485
1486static void schedule_orphans_remove(struct perf_event_context *ctx)
1487{
1488 if (!ctx->task || ctx->orphans_remove_sched || !perf_wq)
1489 return;
1490
1491 if (queue_delayed_work(perf_wq, &ctx->orphans_remove, 1)) {
1492 get_ctx(ctx);
1493 ctx->orphans_remove_sched = true;
1494 }
1495}
1496
1497static int __init perf_workqueue_init(void)
1498{
1499 perf_wq = create_singlethread_workqueue("perf");
1500 WARN(!perf_wq, "failed to create perf workqueue\n");
1501 return perf_wq ? 0 : -1;
1502}
1503
1504core_initcall(perf_workqueue_init);
1505
Mark Rutland66eb5792015-05-13 17:12:23 +01001506static inline int pmu_filter_match(struct perf_event *event)
1507{
1508 struct pmu *pmu = event->pmu;
1509 return pmu->filter_match ? pmu->filter_match(event) : 1;
1510}
1511
Stephane Eranianfa66f072010-08-26 16:40:01 +02001512static inline int
1513event_filter_match(struct perf_event *event)
1514{
Stephane Eraniane5d13672011-02-14 11:20:01 +02001515 return (event->cpu == -1 || event->cpu == smp_processor_id())
Mark Rutland66eb5792015-05-13 17:12:23 +01001516 && perf_cgroup_match(event) && pmu_filter_match(event);
Stephane Eranianfa66f072010-08-26 16:40:01 +02001517}
1518
Stephane Eranian9ffcfa62010-10-20 15:25:01 +02001519static void
1520event_sched_out(struct perf_event *event,
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001521 struct perf_cpu_context *cpuctx,
1522 struct perf_event_context *ctx)
1523{
Stephane Eranian41587552011-01-03 18:20:01 +02001524 u64 tstamp = perf_event_time(event);
Stephane Eranianfa66f072010-08-26 16:40:01 +02001525 u64 delta;
Peter Zijlstra652884f2015-01-23 11:20:10 +01001526
1527 WARN_ON_ONCE(event->ctx != ctx);
1528 lockdep_assert_held(&ctx->lock);
1529
Stephane Eranianfa66f072010-08-26 16:40:01 +02001530 /*
1531 * An event which could not be activated because of
1532 * filter mismatch still needs to have its timings
1533 * maintained, otherwise bogus information is return
1534 * via read() for time_enabled, time_running:
1535 */
1536 if (event->state == PERF_EVENT_STATE_INACTIVE
1537 && !event_filter_match(event)) {
Stephane Eraniane5d13672011-02-14 11:20:01 +02001538 delta = tstamp - event->tstamp_stopped;
Stephane Eranianfa66f072010-08-26 16:40:01 +02001539 event->tstamp_running += delta;
Stephane Eranian41587552011-01-03 18:20:01 +02001540 event->tstamp_stopped = tstamp;
Stephane Eranianfa66f072010-08-26 16:40:01 +02001541 }
1542
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001543 if (event->state != PERF_EVENT_STATE_ACTIVE)
Stephane Eranian9ffcfa62010-10-20 15:25:01 +02001544 return;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001545
Alexander Shishkin44377272013-12-16 14:17:36 +02001546 perf_pmu_disable(event->pmu);
1547
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001548 event->state = PERF_EVENT_STATE_INACTIVE;
1549 if (event->pending_disable) {
1550 event->pending_disable = 0;
1551 event->state = PERF_EVENT_STATE_OFF;
1552 }
Stephane Eranian41587552011-01-03 18:20:01 +02001553 event->tstamp_stopped = tstamp;
Peter Zijlstraa4eaf7f2010-06-16 14:37:10 +02001554 event->pmu->del(event, 0);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001555 event->oncpu = -1;
1556
1557 if (!is_software_event(event))
1558 cpuctx->active_oncpu--;
Mark Rutland2fde4f92015-01-07 15:01:54 +00001559 if (!--ctx->nr_active)
1560 perf_event_ctx_deactivate(ctx);
Peter Zijlstra0f5a2602011-11-16 14:38:16 +01001561 if (event->attr.freq && event->attr.sample_freq)
1562 ctx->nr_freq--;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001563 if (event->attr.exclusive || !cpuctx->active_oncpu)
1564 cpuctx->exclusive = 0;
Alexander Shishkin44377272013-12-16 14:17:36 +02001565
Jiri Olsafadfe7b2014-08-01 14:33:02 +02001566 if (is_orphaned_child(event))
1567 schedule_orphans_remove(ctx);
1568
Alexander Shishkin44377272013-12-16 14:17:36 +02001569 perf_pmu_enable(event->pmu);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001570}
1571
1572static void
1573group_sched_out(struct perf_event *group_event,
1574 struct perf_cpu_context *cpuctx,
1575 struct perf_event_context *ctx)
1576{
1577 struct perf_event *event;
Stephane Eranianfa66f072010-08-26 16:40:01 +02001578 int state = group_event->state;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001579
1580 event_sched_out(group_event, cpuctx, ctx);
1581
1582 /*
1583 * Schedule out siblings (if any):
1584 */
1585 list_for_each_entry(event, &group_event->sibling_list, group_entry)
1586 event_sched_out(event, cpuctx, ctx);
1587
Stephane Eranianfa66f072010-08-26 16:40:01 +02001588 if (state == PERF_EVENT_STATE_ACTIVE && group_event->attr.exclusive)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001589 cpuctx->exclusive = 0;
1590}
1591
Peter Zijlstra46ce0fe2014-05-02 16:56:01 +02001592struct remove_event {
1593 struct perf_event *event;
1594 bool detach_group;
1595};
1596
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001597/*
1598 * Cross CPU call to remove a performance event
1599 *
1600 * We disable the event on the hardware level first. After that we
1601 * remove it from the context list.
1602 */
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +01001603static int __perf_remove_from_context(void *info)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001604{
Peter Zijlstra46ce0fe2014-05-02 16:56:01 +02001605 struct remove_event *re = info;
1606 struct perf_event *event = re->event;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001607 struct perf_event_context *ctx = event->ctx;
Peter Zijlstra108b02c2010-09-06 14:32:03 +02001608 struct perf_cpu_context *cpuctx = __get_cpu_context(ctx);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001609
Thomas Gleixnere625cce12009-11-17 18:02:06 +01001610 raw_spin_lock(&ctx->lock);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001611 event_sched_out(event, cpuctx, ctx);
Peter Zijlstra46ce0fe2014-05-02 16:56:01 +02001612 if (re->detach_group)
1613 perf_group_detach(event);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001614 list_del_event(event, ctx);
Peter Zijlstra64ce3122011-04-09 21:17:48 +02001615 if (!ctx->nr_events && cpuctx->task_ctx == ctx) {
1616 ctx->is_active = 0;
1617 cpuctx->task_ctx = NULL;
1618 }
Thomas Gleixnere625cce12009-11-17 18:02:06 +01001619 raw_spin_unlock(&ctx->lock);
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +01001620
1621 return 0;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001622}
1623
1624
1625/*
1626 * Remove the event from a task's (or a CPU's) list of events.
1627 *
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001628 * CPU events are removed with a smp call. For task events we only
1629 * call when the task is on a CPU.
1630 *
1631 * If event->ctx is a cloned context, callers must make sure that
1632 * every task struct that event->ctx->task could possibly point to
1633 * remains valid. This is OK when called from perf_release since
1634 * that only calls us on the top-level context, which can't be a clone.
1635 * When called from perf_event_exit_task, it's OK because the
1636 * context has been detached from its task.
1637 */
Peter Zijlstra46ce0fe2014-05-02 16:56:01 +02001638static void perf_remove_from_context(struct perf_event *event, bool detach_group)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001639{
1640 struct perf_event_context *ctx = event->ctx;
1641 struct task_struct *task = ctx->task;
Peter Zijlstra46ce0fe2014-05-02 16:56:01 +02001642 struct remove_event re = {
1643 .event = event,
1644 .detach_group = detach_group,
1645 };
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001646
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +01001647 lockdep_assert_held(&ctx->mutex);
1648
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001649 if (!task) {
1650 /*
Mark Rutland226424e2014-11-05 16:11:44 +00001651 * Per cpu events are removed via an smp call. The removal can
1652 * fail if the CPU is currently offline, but in that case we
1653 * already called __perf_remove_from_context from
1654 * perf_event_exit_cpu.
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001655 */
Peter Zijlstra46ce0fe2014-05-02 16:56:01 +02001656 cpu_function_call(event->cpu, __perf_remove_from_context, &re);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001657 return;
1658 }
1659
1660retry:
Peter Zijlstra46ce0fe2014-05-02 16:56:01 +02001661 if (!task_function_call(task, __perf_remove_from_context, &re))
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +01001662 return;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001663
Thomas Gleixnere625cce12009-11-17 18:02:06 +01001664 raw_spin_lock_irq(&ctx->lock);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001665 /*
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +01001666 * If we failed to find a running task, but find the context active now
1667 * that we've acquired the ctx->lock, retry.
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001668 */
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +01001669 if (ctx->is_active) {
Thomas Gleixnere625cce12009-11-17 18:02:06 +01001670 raw_spin_unlock_irq(&ctx->lock);
Cong Wang3577af72014-09-02 15:27:20 -07001671 /*
1672 * Reload the task pointer, it might have been changed by
1673 * a concurrent perf_event_context_sched_out().
1674 */
1675 task = ctx->task;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001676 goto retry;
1677 }
1678
1679 /*
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +01001680 * Since the task isn't running, its safe to remove the event, us
1681 * holding the ctx->lock ensures the task won't get scheduled in.
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001682 */
Peter Zijlstra46ce0fe2014-05-02 16:56:01 +02001683 if (detach_group)
1684 perf_group_detach(event);
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +01001685 list_del_event(event, ctx);
Thomas Gleixnere625cce12009-11-17 18:02:06 +01001686 raw_spin_unlock_irq(&ctx->lock);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001687}
1688
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001689/*
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001690 * Cross CPU call to disable a performance event
1691 */
K.Prasad500ad2d2012-08-02 13:46:35 +05301692int __perf_event_disable(void *info)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001693{
1694 struct perf_event *event = info;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001695 struct perf_event_context *ctx = event->ctx;
Peter Zijlstra108b02c2010-09-06 14:32:03 +02001696 struct perf_cpu_context *cpuctx = __get_cpu_context(ctx);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001697
1698 /*
1699 * If this is a per-task event, need to check whether this
1700 * event's task is the current task on this cpu.
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +01001701 *
1702 * Can trigger due to concurrent perf_event_context_sched_out()
1703 * flipping contexts around.
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001704 */
1705 if (ctx->task && cpuctx->task_ctx != ctx)
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +01001706 return -EINVAL;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001707
Thomas Gleixnere625cce12009-11-17 18:02:06 +01001708 raw_spin_lock(&ctx->lock);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001709
1710 /*
1711 * If the event is on, turn it off.
1712 * If it is in error state, leave it in error state.
1713 */
1714 if (event->state >= PERF_EVENT_STATE_INACTIVE) {
1715 update_context_time(ctx);
Stephane Eraniane5d13672011-02-14 11:20:01 +02001716 update_cgrp_time_from_event(event);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001717 update_group_times(event);
1718 if (event == event->group_leader)
1719 group_sched_out(event, cpuctx, ctx);
1720 else
1721 event_sched_out(event, cpuctx, ctx);
1722 event->state = PERF_EVENT_STATE_OFF;
1723 }
1724
Thomas Gleixnere625cce12009-11-17 18:02:06 +01001725 raw_spin_unlock(&ctx->lock);
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +01001726
1727 return 0;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001728}
1729
1730/*
1731 * Disable a event.
1732 *
1733 * If event->ctx is a cloned context, callers must make sure that
1734 * every task struct that event->ctx->task could possibly point to
1735 * remains valid. This condition is satisifed when called through
1736 * perf_event_for_each_child or perf_event_for_each because they
1737 * hold the top-level event's child_mutex, so any descendant that
1738 * goes to exit will block in sync_child_event.
1739 * When called from perf_pending_event it's OK because event->ctx
1740 * is the current context on this CPU and preemption is disabled,
1741 * hence we can't get into perf_event_task_sched_out for this context.
1742 */
Peter Zijlstraf63a8da2015-01-23 12:24:14 +01001743static void _perf_event_disable(struct perf_event *event)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001744{
1745 struct perf_event_context *ctx = event->ctx;
1746 struct task_struct *task = ctx->task;
1747
1748 if (!task) {
1749 /*
1750 * Disable the event on the cpu that it's on
1751 */
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +01001752 cpu_function_call(event->cpu, __perf_event_disable, event);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001753 return;
1754 }
1755
Peter Zijlstra9ed60602010-06-11 17:36:35 +02001756retry:
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +01001757 if (!task_function_call(task, __perf_event_disable, event))
1758 return;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001759
Thomas Gleixnere625cce12009-11-17 18:02:06 +01001760 raw_spin_lock_irq(&ctx->lock);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001761 /*
1762 * If the event is still active, we need to retry the cross-call.
1763 */
1764 if (event->state == PERF_EVENT_STATE_ACTIVE) {
Thomas Gleixnere625cce12009-11-17 18:02:06 +01001765 raw_spin_unlock_irq(&ctx->lock);
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +01001766 /*
1767 * Reload the task pointer, it might have been changed by
1768 * a concurrent perf_event_context_sched_out().
1769 */
1770 task = ctx->task;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001771 goto retry;
1772 }
1773
1774 /*
1775 * Since we have the lock this context can't be scheduled
1776 * in, so we can change the state safely.
1777 */
1778 if (event->state == PERF_EVENT_STATE_INACTIVE) {
1779 update_group_times(event);
1780 event->state = PERF_EVENT_STATE_OFF;
1781 }
Thomas Gleixnere625cce12009-11-17 18:02:06 +01001782 raw_spin_unlock_irq(&ctx->lock);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001783}
Peter Zijlstraf63a8da2015-01-23 12:24:14 +01001784
1785/*
1786 * Strictly speaking kernel users cannot create groups and therefore this
1787 * interface does not need the perf_event_ctx_lock() magic.
1788 */
1789void perf_event_disable(struct perf_event *event)
1790{
1791 struct perf_event_context *ctx;
1792
1793 ctx = perf_event_ctx_lock(event);
1794 _perf_event_disable(event);
1795 perf_event_ctx_unlock(event, ctx);
1796}
Robert Richterdcfce4a2011-10-11 17:11:08 +02001797EXPORT_SYMBOL_GPL(perf_event_disable);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001798
Stephane Eraniane5d13672011-02-14 11:20:01 +02001799static void perf_set_shadow_time(struct perf_event *event,
1800 struct perf_event_context *ctx,
1801 u64 tstamp)
1802{
1803 /*
1804 * use the correct time source for the time snapshot
1805 *
1806 * We could get by without this by leveraging the
1807 * fact that to get to this function, the caller
1808 * has most likely already called update_context_time()
1809 * and update_cgrp_time_xx() and thus both timestamp
1810 * are identical (or very close). Given that tstamp is,
1811 * already adjusted for cgroup, we could say that:
1812 * tstamp - ctx->timestamp
1813 * is equivalent to
1814 * tstamp - cgrp->timestamp.
1815 *
1816 * Then, in perf_output_read(), the calculation would
1817 * work with no changes because:
1818 * - event is guaranteed scheduled in
1819 * - no scheduled out in between
1820 * - thus the timestamp would be the same
1821 *
1822 * But this is a bit hairy.
1823 *
1824 * So instead, we have an explicit cgroup call to remain
1825 * within the time time source all along. We believe it
1826 * is cleaner and simpler to understand.
1827 */
1828 if (is_cgroup_event(event))
1829 perf_cgroup_set_shadow_time(event, tstamp);
1830 else
1831 event->shadow_ctx_time = tstamp - ctx->timestamp;
1832}
1833
Peter Zijlstra4fe757d2011-02-15 22:26:07 +01001834#define MAX_INTERRUPTS (~0ULL)
1835
1836static void perf_log_throttle(struct perf_event *event, int enable);
Alexander Shishkinec0d7722015-01-14 14:18:23 +02001837static void perf_log_itrace_start(struct perf_event *event);
Peter Zijlstra4fe757d2011-02-15 22:26:07 +01001838
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001839static int
Stephane Eranian9ffcfa62010-10-20 15:25:01 +02001840event_sched_in(struct perf_event *event,
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001841 struct perf_cpu_context *cpuctx,
Peter Zijlstra6e377382010-02-11 13:21:58 +01001842 struct perf_event_context *ctx)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001843{
Stephane Eranian41587552011-01-03 18:20:01 +02001844 u64 tstamp = perf_event_time(event);
Alexander Shishkin44377272013-12-16 14:17:36 +02001845 int ret = 0;
Stephane Eranian41587552011-01-03 18:20:01 +02001846
Peter Zijlstra63342412014-05-05 11:49:16 +02001847 lockdep_assert_held(&ctx->lock);
1848
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001849 if (event->state <= PERF_EVENT_STATE_OFF)
1850 return 0;
1851
1852 event->state = PERF_EVENT_STATE_ACTIVE;
Peter Zijlstra6e377382010-02-11 13:21:58 +01001853 event->oncpu = smp_processor_id();
Peter Zijlstra4fe757d2011-02-15 22:26:07 +01001854
1855 /*
1856 * Unthrottle events, since we scheduled we might have missed several
1857 * ticks already, also for a heavily scheduling task there is little
1858 * guarantee it'll get a tick in a timely manner.
1859 */
1860 if (unlikely(event->hw.interrupts == MAX_INTERRUPTS)) {
1861 perf_log_throttle(event, 1);
1862 event->hw.interrupts = 0;
1863 }
1864
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001865 /*
1866 * The new state must be visible before we turn it on in the hardware:
1867 */
1868 smp_wmb();
1869
Alexander Shishkin44377272013-12-16 14:17:36 +02001870 perf_pmu_disable(event->pmu);
1871
Shaohua Li72f669c2015-02-05 15:55:31 -08001872 perf_set_shadow_time(event, ctx, tstamp);
1873
Alexander Shishkinec0d7722015-01-14 14:18:23 +02001874 perf_log_itrace_start(event);
1875
Peter Zijlstraa4eaf7f2010-06-16 14:37:10 +02001876 if (event->pmu->add(event, PERF_EF_START)) {
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001877 event->state = PERF_EVENT_STATE_INACTIVE;
1878 event->oncpu = -1;
Alexander Shishkin44377272013-12-16 14:17:36 +02001879 ret = -EAGAIN;
1880 goto out;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001881 }
1882
Peter Zijlstra00a29162015-07-27 10:35:07 +02001883 event->tstamp_running += tstamp - event->tstamp_stopped;
1884
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001885 if (!is_software_event(event))
1886 cpuctx->active_oncpu++;
Mark Rutland2fde4f92015-01-07 15:01:54 +00001887 if (!ctx->nr_active++)
1888 perf_event_ctx_activate(ctx);
Peter Zijlstra0f5a2602011-11-16 14:38:16 +01001889 if (event->attr.freq && event->attr.sample_freq)
1890 ctx->nr_freq++;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001891
1892 if (event->attr.exclusive)
1893 cpuctx->exclusive = 1;
1894
Jiri Olsafadfe7b2014-08-01 14:33:02 +02001895 if (is_orphaned_child(event))
1896 schedule_orphans_remove(ctx);
1897
Alexander Shishkin44377272013-12-16 14:17:36 +02001898out:
1899 perf_pmu_enable(event->pmu);
1900
1901 return ret;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001902}
1903
1904static int
1905group_sched_in(struct perf_event *group_event,
1906 struct perf_cpu_context *cpuctx,
Peter Zijlstra6e377382010-02-11 13:21:58 +01001907 struct perf_event_context *ctx)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001908{
Lin Ming6bde9b62010-04-23 13:56:00 +08001909 struct perf_event *event, *partial_group = NULL;
Peter Zijlstra4a234592014-02-24 12:43:31 +01001910 struct pmu *pmu = ctx->pmu;
Stephane Eraniand7842da2010-10-20 15:25:01 +02001911 u64 now = ctx->time;
1912 bool simulate = false;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001913
1914 if (group_event->state == PERF_EVENT_STATE_OFF)
1915 return 0;
1916
Sukadev Bhattiprolufbbe0702015-09-03 20:07:45 -07001917 pmu->start_txn(pmu, PERF_PMU_TXN_ADD);
Lin Ming6bde9b62010-04-23 13:56:00 +08001918
Stephane Eranian9ffcfa62010-10-20 15:25:01 +02001919 if (event_sched_in(group_event, cpuctx, ctx)) {
Peter Zijlstraad5133b2010-06-15 12:22:39 +02001920 pmu->cancel_txn(pmu);
Peter Zijlstra272325c2015-04-15 11:41:58 +02001921 perf_mux_hrtimer_restart(cpuctx);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001922 return -EAGAIN;
Stephane Eranian90151c352010-05-25 16:23:10 +02001923 }
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001924
1925 /*
1926 * Schedule in siblings as one group (if any):
1927 */
1928 list_for_each_entry(event, &group_event->sibling_list, group_entry) {
Stephane Eranian9ffcfa62010-10-20 15:25:01 +02001929 if (event_sched_in(event, cpuctx, ctx)) {
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001930 partial_group = event;
1931 goto group_error;
1932 }
1933 }
1934
Stephane Eranian9ffcfa62010-10-20 15:25:01 +02001935 if (!pmu->commit_txn(pmu))
Paul Mackerras6e851582010-05-08 20:58:00 +10001936 return 0;
Stephane Eranian9ffcfa62010-10-20 15:25:01 +02001937
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001938group_error:
1939 /*
1940 * Groups can be scheduled in as one unit only, so undo any
1941 * partial group before returning:
Stephane Eraniand7842da2010-10-20 15:25:01 +02001942 * The events up to the failed event are scheduled out normally,
1943 * tstamp_stopped will be updated.
1944 *
1945 * The failed events and the remaining siblings need to have
1946 * their timings updated as if they had gone thru event_sched_in()
1947 * and event_sched_out(). This is required to get consistent timings
1948 * across the group. This also takes care of the case where the group
1949 * could never be scheduled by ensuring tstamp_stopped is set to mark
1950 * the time the event was actually stopped, such that time delta
1951 * calculation in update_event_times() is correct.
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001952 */
1953 list_for_each_entry(event, &group_event->sibling_list, group_entry) {
1954 if (event == partial_group)
Stephane Eraniand7842da2010-10-20 15:25:01 +02001955 simulate = true;
1956
1957 if (simulate) {
1958 event->tstamp_running += now - event->tstamp_stopped;
1959 event->tstamp_stopped = now;
1960 } else {
1961 event_sched_out(event, cpuctx, ctx);
1962 }
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001963 }
Stephane Eranian9ffcfa62010-10-20 15:25:01 +02001964 event_sched_out(group_event, cpuctx, ctx);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001965
Peter Zijlstraad5133b2010-06-15 12:22:39 +02001966 pmu->cancel_txn(pmu);
Stephane Eranian90151c352010-05-25 16:23:10 +02001967
Peter Zijlstra272325c2015-04-15 11:41:58 +02001968 perf_mux_hrtimer_restart(cpuctx);
Stephane Eranian9e630202013-04-03 14:21:33 +02001969
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001970 return -EAGAIN;
1971}
1972
1973/*
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001974 * Work out whether we can put this event group on the CPU now.
1975 */
1976static int group_can_go_on(struct perf_event *event,
1977 struct perf_cpu_context *cpuctx,
1978 int can_add_hw)
1979{
1980 /*
1981 * Groups consisting entirely of software events can always go on.
1982 */
Frederic Weisbeckerd6f962b2010-01-10 01:25:51 +01001983 if (event->group_flags & PERF_GROUP_SOFTWARE)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02001984 return 1;
1985 /*
1986 * If an exclusive group is already on, no other hardware
1987 * events can go on.
1988 */
1989 if (cpuctx->exclusive)
1990 return 0;
1991 /*
1992 * If this group is exclusive and there are already
1993 * events on the CPU, it can't go on.
1994 */
1995 if (event->attr.exclusive && cpuctx->active_oncpu)
1996 return 0;
1997 /*
1998 * Otherwise, try to add it if all previous groups were able
1999 * to go on.
2000 */
2001 return can_add_hw;
2002}
2003
2004static void add_event_to_ctx(struct perf_event *event,
2005 struct perf_event_context *ctx)
2006{
Stephane Eranian41587552011-01-03 18:20:01 +02002007 u64 tstamp = perf_event_time(event);
2008
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002009 list_add_event(event, ctx);
Peter Zijlstra8a495422010-05-27 15:47:49 +02002010 perf_group_attach(event);
Stephane Eranian41587552011-01-03 18:20:01 +02002011 event->tstamp_enabled = tstamp;
2012 event->tstamp_running = tstamp;
2013 event->tstamp_stopped = tstamp;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002014}
2015
Peter Zijlstra2c29ef02011-04-09 21:17:44 +02002016static void task_ctx_sched_out(struct perf_event_context *ctx);
2017static void
2018ctx_sched_in(struct perf_event_context *ctx,
2019 struct perf_cpu_context *cpuctx,
2020 enum event_type_t event_type,
2021 struct task_struct *task);
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +01002022
Peter Zijlstradce58552011-04-09 21:17:46 +02002023static void perf_event_sched_in(struct perf_cpu_context *cpuctx,
2024 struct perf_event_context *ctx,
2025 struct task_struct *task)
2026{
2027 cpu_ctx_sched_in(cpuctx, EVENT_PINNED, task);
2028 if (ctx)
2029 ctx_sched_in(ctx, cpuctx, EVENT_PINNED, task);
2030 cpu_ctx_sched_in(cpuctx, EVENT_FLEXIBLE, task);
2031 if (ctx)
2032 ctx_sched_in(ctx, cpuctx, EVENT_FLEXIBLE, task);
2033}
2034
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002035/*
2036 * Cross CPU call to install and enable a performance event
2037 *
2038 * Must be called with ctx->mutex held
2039 */
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +01002040static int __perf_install_in_context(void *info)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002041{
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002042 struct perf_event *event = info;
2043 struct perf_event_context *ctx = event->ctx;
Peter Zijlstra108b02c2010-09-06 14:32:03 +02002044 struct perf_cpu_context *cpuctx = __get_cpu_context(ctx);
Peter Zijlstra2c29ef02011-04-09 21:17:44 +02002045 struct perf_event_context *task_ctx = cpuctx->task_ctx;
2046 struct task_struct *task = current;
2047
Peter Zijlstrab58f6b02011-06-07 00:23:28 +02002048 perf_ctx_lock(cpuctx, task_ctx);
Peter Zijlstra2c29ef02011-04-09 21:17:44 +02002049 perf_pmu_disable(cpuctx->ctx.pmu);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002050
2051 /*
Peter Zijlstra2c29ef02011-04-09 21:17:44 +02002052 * If there was an active task_ctx schedule it out.
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002053 */
Peter Zijlstrab58f6b02011-06-07 00:23:28 +02002054 if (task_ctx)
Peter Zijlstra2c29ef02011-04-09 21:17:44 +02002055 task_ctx_sched_out(task_ctx);
Peter Zijlstrab58f6b02011-06-07 00:23:28 +02002056
2057 /*
2058 * If the context we're installing events in is not the
2059 * active task_ctx, flip them.
2060 */
2061 if (ctx->task && task_ctx != ctx) {
2062 if (task_ctx)
2063 raw_spin_unlock(&task_ctx->lock);
2064 raw_spin_lock(&ctx->lock);
2065 task_ctx = ctx;
2066 }
2067
2068 if (task_ctx) {
2069 cpuctx->task_ctx = task_ctx;
Peter Zijlstra2c29ef02011-04-09 21:17:44 +02002070 task = task_ctx->task;
2071 }
Peter Zijlstrab58f6b02011-06-07 00:23:28 +02002072
Peter Zijlstra2c29ef02011-04-09 21:17:44 +02002073 cpu_ctx_sched_out(cpuctx, EVENT_ALL);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002074
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002075 update_context_time(ctx);
Stephane Eraniane5d13672011-02-14 11:20:01 +02002076 /*
2077 * update cgrp time only if current cgrp
2078 * matches event->cgrp. Must be done before
2079 * calling add_event_to_ctx()
2080 */
2081 update_cgrp_time_from_event(event);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002082
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002083 add_event_to_ctx(event, ctx);
2084
2085 /*
Peter Zijlstra2c29ef02011-04-09 21:17:44 +02002086 * Schedule everything back in
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002087 */
Peter Zijlstradce58552011-04-09 21:17:46 +02002088 perf_event_sched_in(cpuctx, task_ctx, task);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002089
Peter Zijlstra2c29ef02011-04-09 21:17:44 +02002090 perf_pmu_enable(cpuctx->ctx.pmu);
2091 perf_ctx_unlock(cpuctx, task_ctx);
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +01002092
2093 return 0;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002094}
2095
2096/*
2097 * Attach a performance event to a context
2098 *
2099 * First we add the event to the list with the hardware enable bit
2100 * in event->hw_config cleared.
2101 *
2102 * If the event is attached to a task which is on a CPU we use a smp
2103 * call to enable it in the task context. The task might have been
2104 * scheduled away, but we check this in the smp call again.
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002105 */
2106static void
2107perf_install_in_context(struct perf_event_context *ctx,
2108 struct perf_event *event,
2109 int cpu)
2110{
2111 struct task_struct *task = ctx->task;
2112
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +01002113 lockdep_assert_held(&ctx->mutex);
2114
Peter Zijlstrac3f00c72010-08-18 14:37:15 +02002115 event->ctx = ctx;
Yan, Zheng0cda4c02012-06-15 14:31:33 +08002116 if (event->cpu != -1)
2117 event->cpu = cpu;
Peter Zijlstrac3f00c72010-08-18 14:37:15 +02002118
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002119 if (!task) {
2120 /*
2121 * Per cpu events are installed via an smp call and
André Goddard Rosaaf901ca2009-11-14 13:09:05 -02002122 * the install is always successful.
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002123 */
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +01002124 cpu_function_call(cpu, __perf_install_in_context, event);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002125 return;
2126 }
2127
2128retry:
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +01002129 if (!task_function_call(task, __perf_install_in_context, event))
2130 return;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002131
Thomas Gleixnere625cce12009-11-17 18:02:06 +01002132 raw_spin_lock_irq(&ctx->lock);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002133 /*
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +01002134 * If we failed to find a running task, but find the context active now
2135 * that we've acquired the ctx->lock, retry.
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002136 */
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +01002137 if (ctx->is_active) {
Thomas Gleixnere625cce12009-11-17 18:02:06 +01002138 raw_spin_unlock_irq(&ctx->lock);
Cong Wang3577af72014-09-02 15:27:20 -07002139 /*
2140 * Reload the task pointer, it might have been changed by
2141 * a concurrent perf_event_context_sched_out().
2142 */
2143 task = ctx->task;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002144 goto retry;
2145 }
2146
2147 /*
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +01002148 * Since the task isn't running, its safe to add the event, us holding
2149 * the ctx->lock ensures the task won't get scheduled in.
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002150 */
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +01002151 add_event_to_ctx(event, ctx);
Thomas Gleixnere625cce12009-11-17 18:02:06 +01002152 raw_spin_unlock_irq(&ctx->lock);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002153}
2154
2155/*
2156 * Put a event into inactive state and update time fields.
2157 * Enabling the leader of a group effectively enables all
2158 * the group members that aren't explicitly disabled, so we
2159 * have to update their ->tstamp_enabled also.
2160 * Note: this works for group members as well as group leaders
2161 * since the non-leader members' sibling_lists will be empty.
2162 */
Peter Zijlstra1d9b4822011-11-23 12:34:20 +01002163static void __perf_event_mark_enabled(struct perf_event *event)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002164{
2165 struct perf_event *sub;
Stephane Eranian41587552011-01-03 18:20:01 +02002166 u64 tstamp = perf_event_time(event);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002167
2168 event->state = PERF_EVENT_STATE_INACTIVE;
Stephane Eranian41587552011-01-03 18:20:01 +02002169 event->tstamp_enabled = tstamp - event->total_time_enabled;
Peter Zijlstra9ed60602010-06-11 17:36:35 +02002170 list_for_each_entry(sub, &event->sibling_list, group_entry) {
Stephane Eranian41587552011-01-03 18:20:01 +02002171 if (sub->state >= PERF_EVENT_STATE_INACTIVE)
2172 sub->tstamp_enabled = tstamp - sub->total_time_enabled;
Peter Zijlstra9ed60602010-06-11 17:36:35 +02002173 }
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002174}
2175
2176/*
2177 * Cross CPU call to enable a performance event
2178 */
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +01002179static int __perf_event_enable(void *info)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002180{
2181 struct perf_event *event = info;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002182 struct perf_event_context *ctx = event->ctx;
2183 struct perf_event *leader = event->group_leader;
Peter Zijlstra108b02c2010-09-06 14:32:03 +02002184 struct perf_cpu_context *cpuctx = __get_cpu_context(ctx);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002185 int err;
2186
Jiri Olsa06f41792013-07-09 17:44:11 +02002187 /*
2188 * There's a time window between 'ctx->is_active' check
2189 * in perf_event_enable function and this place having:
2190 * - IRQs on
2191 * - ctx->lock unlocked
2192 *
2193 * where the task could be killed and 'ctx' deactivated
2194 * by perf_event_exit_task.
2195 */
2196 if (!ctx->is_active)
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +01002197 return -EINVAL;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002198
Thomas Gleixnere625cce12009-11-17 18:02:06 +01002199 raw_spin_lock(&ctx->lock);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002200 update_context_time(ctx);
2201
2202 if (event->state >= PERF_EVENT_STATE_INACTIVE)
2203 goto unlock;
Stephane Eraniane5d13672011-02-14 11:20:01 +02002204
2205 /*
2206 * set current task's cgroup time reference point
2207 */
Stephane Eranian3f7cce32011-02-18 14:40:01 +02002208 perf_cgroup_set_timestamp(current, ctx);
Stephane Eraniane5d13672011-02-14 11:20:01 +02002209
Peter Zijlstra1d9b4822011-11-23 12:34:20 +01002210 __perf_event_mark_enabled(event);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002211
Stephane Eraniane5d13672011-02-14 11:20:01 +02002212 if (!event_filter_match(event)) {
2213 if (is_cgroup_event(event))
2214 perf_cgroup_defer_enabled(event);
Peter Zijlstraf4c41762009-12-16 17:55:54 +01002215 goto unlock;
Stephane Eraniane5d13672011-02-14 11:20:01 +02002216 }
Peter Zijlstraf4c41762009-12-16 17:55:54 +01002217
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002218 /*
2219 * If the event is in a group and isn't the group leader,
2220 * then don't put it on unless the group is on.
2221 */
2222 if (leader != event && leader->state != PERF_EVENT_STATE_ACTIVE)
2223 goto unlock;
2224
2225 if (!group_can_go_on(event, cpuctx, 1)) {
2226 err = -EEXIST;
2227 } else {
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002228 if (event == leader)
Peter Zijlstra6e377382010-02-11 13:21:58 +01002229 err = group_sched_in(event, cpuctx, ctx);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002230 else
Peter Zijlstra6e377382010-02-11 13:21:58 +01002231 err = event_sched_in(event, cpuctx, ctx);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002232 }
2233
2234 if (err) {
2235 /*
2236 * If this event can't go on and it's part of a
2237 * group, then the whole group has to come off.
2238 */
Stephane Eranian9e630202013-04-03 14:21:33 +02002239 if (leader != event) {
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002240 group_sched_out(leader, cpuctx, ctx);
Peter Zijlstra272325c2015-04-15 11:41:58 +02002241 perf_mux_hrtimer_restart(cpuctx);
Stephane Eranian9e630202013-04-03 14:21:33 +02002242 }
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002243 if (leader->attr.pinned) {
2244 update_group_times(leader);
2245 leader->state = PERF_EVENT_STATE_ERROR;
2246 }
2247 }
2248
Peter Zijlstra9ed60602010-06-11 17:36:35 +02002249unlock:
Thomas Gleixnere625cce12009-11-17 18:02:06 +01002250 raw_spin_unlock(&ctx->lock);
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +01002251
2252 return 0;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002253}
2254
2255/*
2256 * Enable a event.
2257 *
2258 * If event->ctx is a cloned context, callers must make sure that
2259 * every task struct that event->ctx->task could possibly point to
2260 * remains valid. This condition is satisfied when called through
2261 * perf_event_for_each_child or perf_event_for_each as described
2262 * for perf_event_disable.
2263 */
Peter Zijlstraf63a8da2015-01-23 12:24:14 +01002264static void _perf_event_enable(struct perf_event *event)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002265{
2266 struct perf_event_context *ctx = event->ctx;
2267 struct task_struct *task = ctx->task;
2268
2269 if (!task) {
2270 /*
2271 * Enable the event on the cpu that it's on
2272 */
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +01002273 cpu_function_call(event->cpu, __perf_event_enable, event);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002274 return;
2275 }
2276
Thomas Gleixnere625cce12009-11-17 18:02:06 +01002277 raw_spin_lock_irq(&ctx->lock);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002278 if (event->state >= PERF_EVENT_STATE_INACTIVE)
2279 goto out;
2280
2281 /*
2282 * If the event is in error state, clear that first.
2283 * That way, if we see the event in error state below, we
2284 * know that it has gone back into error state, as distinct
2285 * from the task having been scheduled away before the
2286 * cross-call arrived.
2287 */
2288 if (event->state == PERF_EVENT_STATE_ERROR)
2289 event->state = PERF_EVENT_STATE_OFF;
2290
Peter Zijlstra9ed60602010-06-11 17:36:35 +02002291retry:
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +01002292 if (!ctx->is_active) {
Peter Zijlstra1d9b4822011-11-23 12:34:20 +01002293 __perf_event_mark_enabled(event);
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +01002294 goto out;
2295 }
2296
Thomas Gleixnere625cce12009-11-17 18:02:06 +01002297 raw_spin_unlock_irq(&ctx->lock);
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +01002298
2299 if (!task_function_call(task, __perf_event_enable, event))
2300 return;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002301
Thomas Gleixnere625cce12009-11-17 18:02:06 +01002302 raw_spin_lock_irq(&ctx->lock);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002303
2304 /*
2305 * If the context is active and the event is still off,
2306 * we need to retry the cross-call.
2307 */
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +01002308 if (ctx->is_active && event->state == PERF_EVENT_STATE_OFF) {
2309 /*
2310 * task could have been flipped by a concurrent
2311 * perf_event_context_sched_out()
2312 */
2313 task = ctx->task;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002314 goto retry;
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +01002315 }
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002316
Peter Zijlstra9ed60602010-06-11 17:36:35 +02002317out:
Thomas Gleixnere625cce12009-11-17 18:02:06 +01002318 raw_spin_unlock_irq(&ctx->lock);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002319}
Peter Zijlstraf63a8da2015-01-23 12:24:14 +01002320
2321/*
2322 * See perf_event_disable();
2323 */
2324void perf_event_enable(struct perf_event *event)
2325{
2326 struct perf_event_context *ctx;
2327
2328 ctx = perf_event_ctx_lock(event);
2329 _perf_event_enable(event);
2330 perf_event_ctx_unlock(event, ctx);
2331}
Robert Richterdcfce4a2011-10-11 17:11:08 +02002332EXPORT_SYMBOL_GPL(perf_event_enable);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002333
Peter Zijlstraf63a8da2015-01-23 12:24:14 +01002334static int _perf_event_refresh(struct perf_event *event, int refresh)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002335{
2336 /*
2337 * not supported on inherited events
2338 */
Franck Bui-Huu2e939d12010-11-23 16:21:44 +01002339 if (event->attr.inherit || !is_sampling_event(event))
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002340 return -EINVAL;
2341
2342 atomic_add(refresh, &event->event_limit);
Peter Zijlstraf63a8da2015-01-23 12:24:14 +01002343 _perf_event_enable(event);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002344
2345 return 0;
2346}
Peter Zijlstraf63a8da2015-01-23 12:24:14 +01002347
2348/*
2349 * See perf_event_disable()
2350 */
2351int perf_event_refresh(struct perf_event *event, int refresh)
2352{
2353 struct perf_event_context *ctx;
2354 int ret;
2355
2356 ctx = perf_event_ctx_lock(event);
2357 ret = _perf_event_refresh(event, refresh);
2358 perf_event_ctx_unlock(event, ctx);
2359
2360 return ret;
2361}
Avi Kivity26ca5c12011-06-29 18:42:37 +03002362EXPORT_SYMBOL_GPL(perf_event_refresh);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002363
Frederic Weisbecker5b0311e2010-01-17 11:59:13 +01002364static void ctx_sched_out(struct perf_event_context *ctx,
2365 struct perf_cpu_context *cpuctx,
2366 enum event_type_t event_type)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002367{
2368 struct perf_event *event;
Peter Zijlstradb24d332011-04-09 21:17:45 +02002369 int is_active = ctx->is_active;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002370
Peter Zijlstradb24d332011-04-09 21:17:45 +02002371 ctx->is_active &= ~event_type;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002372 if (likely(!ctx->nr_events))
Peter Zijlstrafacc4302011-04-09 21:17:42 +02002373 return;
2374
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002375 update_context_time(ctx);
Stephane Eraniane5d13672011-02-14 11:20:01 +02002376 update_cgrp_time_from_cpuctx(cpuctx);
Frederic Weisbecker5b0311e2010-01-17 11:59:13 +01002377 if (!ctx->nr_active)
Peter Zijlstrafacc4302011-04-09 21:17:42 +02002378 return;
Frederic Weisbecker5b0311e2010-01-17 11:59:13 +01002379
Peter Zijlstra075e0b02011-04-09 21:17:40 +02002380 perf_pmu_disable(ctx->pmu);
Peter Zijlstradb24d332011-04-09 21:17:45 +02002381 if ((is_active & EVENT_PINNED) && (event_type & EVENT_PINNED)) {
Frederic Weisbecker889ff012010-01-09 20:04:47 +01002382 list_for_each_entry(event, &ctx->pinned_groups, group_entry)
2383 group_sched_out(event, cpuctx, ctx);
Peter Zijlstra9ed60602010-06-11 17:36:35 +02002384 }
Frederic Weisbecker889ff012010-01-09 20:04:47 +01002385
Peter Zijlstradb24d332011-04-09 21:17:45 +02002386 if ((is_active & EVENT_FLEXIBLE) && (event_type & EVENT_FLEXIBLE)) {
Frederic Weisbecker889ff012010-01-09 20:04:47 +01002387 list_for_each_entry(event, &ctx->flexible_groups, group_entry)
Xiao Guangrong8c9ed8e2009-09-25 13:51:17 +08002388 group_sched_out(event, cpuctx, ctx);
Peter Zijlstra9ed60602010-06-11 17:36:35 +02002389 }
Peter Zijlstra1b9a6442010-09-07 18:32:22 +02002390 perf_pmu_enable(ctx->pmu);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002391}
2392
2393/*
Peter Zijlstra5a3126d2013-10-07 17:12:48 +02002394 * Test whether two contexts are equivalent, i.e. whether they have both been
2395 * cloned from the same version of the same context.
2396 *
2397 * Equivalence is measured using a generation number in the context that is
2398 * incremented on each modification to it; see unclone_ctx(), list_add_event()
2399 * and list_del_event().
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002400 */
2401static int context_equiv(struct perf_event_context *ctx1,
2402 struct perf_event_context *ctx2)
2403{
Peter Zijlstra211de6e2014-09-30 19:23:08 +02002404 lockdep_assert_held(&ctx1->lock);
2405 lockdep_assert_held(&ctx2->lock);
2406
Peter Zijlstra5a3126d2013-10-07 17:12:48 +02002407 /* Pinning disables the swap optimization */
2408 if (ctx1->pin_count || ctx2->pin_count)
2409 return 0;
2410
2411 /* If ctx1 is the parent of ctx2 */
2412 if (ctx1 == ctx2->parent_ctx && ctx1->generation == ctx2->parent_gen)
2413 return 1;
2414
2415 /* If ctx2 is the parent of ctx1 */
2416 if (ctx1->parent_ctx == ctx2 && ctx1->parent_gen == ctx2->generation)
2417 return 1;
2418
2419 /*
2420 * If ctx1 and ctx2 have the same parent; we flatten the parent
2421 * hierarchy, see perf_event_init_context().
2422 */
2423 if (ctx1->parent_ctx && ctx1->parent_ctx == ctx2->parent_ctx &&
2424 ctx1->parent_gen == ctx2->parent_gen)
2425 return 1;
2426
2427 /* Unmatched */
2428 return 0;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002429}
2430
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002431static void __perf_event_sync_stat(struct perf_event *event,
2432 struct perf_event *next_event)
2433{
2434 u64 value;
2435
2436 if (!event->attr.inherit_stat)
2437 return;
2438
2439 /*
2440 * Update the event value, we cannot use perf_event_read()
2441 * because we're in the middle of a context switch and have IRQs
2442 * disabled, which upsets smp_call_function_single(), however
2443 * we know the event must be on the current CPU, therefore we
2444 * don't need to use it.
2445 */
2446 switch (event->state) {
2447 case PERF_EVENT_STATE_ACTIVE:
Peter Zijlstra3dbebf12009-11-20 22:19:52 +01002448 event->pmu->read(event);
2449 /* fall-through */
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002450
2451 case PERF_EVENT_STATE_INACTIVE:
2452 update_event_times(event);
2453 break;
2454
2455 default:
2456 break;
2457 }
2458
2459 /*
2460 * In order to keep per-task stats reliable we need to flip the event
2461 * values when we flip the contexts.
2462 */
Peter Zijlstrae7850592010-05-21 14:43:08 +02002463 value = local64_read(&next_event->count);
2464 value = local64_xchg(&event->count, value);
2465 local64_set(&next_event->count, value);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002466
2467 swap(event->total_time_enabled, next_event->total_time_enabled);
2468 swap(event->total_time_running, next_event->total_time_running);
2469
2470 /*
2471 * Since we swizzled the values, update the user visible data too.
2472 */
2473 perf_event_update_userpage(event);
2474 perf_event_update_userpage(next_event);
2475}
2476
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002477static void perf_event_sync_stat(struct perf_event_context *ctx,
2478 struct perf_event_context *next_ctx)
2479{
2480 struct perf_event *event, *next_event;
2481
2482 if (!ctx->nr_stat)
2483 return;
2484
Peter Zijlstra02ffdbc2009-11-20 22:19:50 +01002485 update_context_time(ctx);
2486
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002487 event = list_first_entry(&ctx->event_list,
2488 struct perf_event, event_entry);
2489
2490 next_event = list_first_entry(&next_ctx->event_list,
2491 struct perf_event, event_entry);
2492
2493 while (&event->event_entry != &ctx->event_list &&
2494 &next_event->event_entry != &next_ctx->event_list) {
2495
2496 __perf_event_sync_stat(event, next_event);
2497
2498 event = list_next_entry(event, event_entry);
2499 next_event = list_next_entry(next_event, event_entry);
2500 }
2501}
2502
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +01002503static void perf_event_context_sched_out(struct task_struct *task, int ctxn,
2504 struct task_struct *next)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002505{
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02002506 struct perf_event_context *ctx = task->perf_event_ctxp[ctxn];
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002507 struct perf_event_context *next_ctx;
Peter Zijlstra5a3126d2013-10-07 17:12:48 +02002508 struct perf_event_context *parent, *next_parent;
Peter Zijlstra108b02c2010-09-06 14:32:03 +02002509 struct perf_cpu_context *cpuctx;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002510 int do_switch = 1;
2511
Peter Zijlstra108b02c2010-09-06 14:32:03 +02002512 if (likely(!ctx))
2513 return;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002514
Peter Zijlstra108b02c2010-09-06 14:32:03 +02002515 cpuctx = __get_cpu_context(ctx);
2516 if (!cpuctx->task_ctx)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002517 return;
2518
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002519 rcu_read_lock();
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02002520 next_ctx = next->perf_event_ctxp[ctxn];
Peter Zijlstra5a3126d2013-10-07 17:12:48 +02002521 if (!next_ctx)
2522 goto unlock;
2523
2524 parent = rcu_dereference(ctx->parent_ctx);
2525 next_parent = rcu_dereference(next_ctx->parent_ctx);
2526
2527 /* If neither context have a parent context; they cannot be clones. */
Jiri Olsa802c8a62014-09-12 13:18:28 +02002528 if (!parent && !next_parent)
Peter Zijlstra5a3126d2013-10-07 17:12:48 +02002529 goto unlock;
2530
2531 if (next_parent == ctx || next_ctx == parent || next_parent == parent) {
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002532 /*
2533 * Looks like the two contexts are clones, so we might be
2534 * able to optimize the context switch. We lock both
2535 * contexts and check that they are clones under the
2536 * lock (including re-checking that neither has been
2537 * uncloned in the meantime). It doesn't matter which
2538 * order we take the locks because no other cpu could
2539 * be trying to lock both of these tasks.
2540 */
Thomas Gleixnere625cce12009-11-17 18:02:06 +01002541 raw_spin_lock(&ctx->lock);
2542 raw_spin_lock_nested(&next_ctx->lock, SINGLE_DEPTH_NESTING);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002543 if (context_equiv(ctx, next_ctx)) {
2544 /*
2545 * XXX do we need a memory barrier of sorts
2546 * wrt to rcu_dereference() of perf_event_ctxp
2547 */
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02002548 task->perf_event_ctxp[ctxn] = next_ctx;
2549 next->perf_event_ctxp[ctxn] = ctx;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002550 ctx->task = next;
2551 next_ctx->task = task;
Yan, Zheng5a158c32014-11-04 21:56:02 -05002552
2553 swap(ctx->task_ctx_data, next_ctx->task_ctx_data);
2554
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002555 do_switch = 0;
2556
2557 perf_event_sync_stat(ctx, next_ctx);
2558 }
Thomas Gleixnere625cce12009-11-17 18:02:06 +01002559 raw_spin_unlock(&next_ctx->lock);
2560 raw_spin_unlock(&ctx->lock);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002561 }
Peter Zijlstra5a3126d2013-10-07 17:12:48 +02002562unlock:
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002563 rcu_read_unlock();
2564
2565 if (do_switch) {
Peter Zijlstrafacc4302011-04-09 21:17:42 +02002566 raw_spin_lock(&ctx->lock);
Frederic Weisbecker5b0311e2010-01-17 11:59:13 +01002567 ctx_sched_out(ctx, cpuctx, EVENT_ALL);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002568 cpuctx->task_ctx = NULL;
Peter Zijlstrafacc4302011-04-09 21:17:42 +02002569 raw_spin_unlock(&ctx->lock);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002570 }
2571}
2572
Yan, Zhengba532502014-11-04 21:55:58 -05002573void perf_sched_cb_dec(struct pmu *pmu)
2574{
2575 this_cpu_dec(perf_sched_cb_usages);
2576}
2577
2578void perf_sched_cb_inc(struct pmu *pmu)
2579{
2580 this_cpu_inc(perf_sched_cb_usages);
2581}
2582
2583/*
2584 * This function provides the context switch callback to the lower code
2585 * layer. It is invoked ONLY when the context switch callback is enabled.
2586 */
2587static void perf_pmu_sched_task(struct task_struct *prev,
2588 struct task_struct *next,
2589 bool sched_in)
2590{
2591 struct perf_cpu_context *cpuctx;
2592 struct pmu *pmu;
2593 unsigned long flags;
2594
2595 if (prev == next)
2596 return;
2597
2598 local_irq_save(flags);
2599
2600 rcu_read_lock();
2601
2602 list_for_each_entry_rcu(pmu, &pmus, entry) {
2603 if (pmu->sched_task) {
2604 cpuctx = this_cpu_ptr(pmu->pmu_cpu_context);
2605
2606 perf_ctx_lock(cpuctx, cpuctx->task_ctx);
2607
2608 perf_pmu_disable(pmu);
2609
2610 pmu->sched_task(cpuctx->task_ctx, sched_in);
2611
2612 perf_pmu_enable(pmu);
2613
2614 perf_ctx_unlock(cpuctx, cpuctx->task_ctx);
2615 }
2616 }
2617
2618 rcu_read_unlock();
2619
2620 local_irq_restore(flags);
2621}
2622
Adrian Hunter45ac1402015-07-21 12:44:02 +03002623static void perf_event_switch(struct task_struct *task,
2624 struct task_struct *next_prev, bool sched_in);
2625
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02002626#define for_each_task_context_nr(ctxn) \
2627 for ((ctxn) = 0; (ctxn) < perf_nr_task_contexts; (ctxn)++)
2628
2629/*
2630 * Called from scheduler to remove the events of the current task,
2631 * with interrupts disabled.
2632 *
2633 * We stop each event and update the event value in event->count.
2634 *
2635 * This does not protect us against NMI, but disable()
2636 * sets the disabled bit in the control field of event _before_
2637 * accessing the event control register. If a NMI hits, then it will
2638 * not restart the event.
2639 */
Jiri Olsaab0cce52012-05-23 13:13:02 +02002640void __perf_event_task_sched_out(struct task_struct *task,
2641 struct task_struct *next)
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02002642{
2643 int ctxn;
2644
Yan, Zhengba532502014-11-04 21:55:58 -05002645 if (__this_cpu_read(perf_sched_cb_usages))
2646 perf_pmu_sched_task(task, next, false);
2647
Adrian Hunter45ac1402015-07-21 12:44:02 +03002648 if (atomic_read(&nr_switch_events))
2649 perf_event_switch(task, next, false);
2650
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02002651 for_each_task_context_nr(ctxn)
2652 perf_event_context_sched_out(task, ctxn, next);
Stephane Eraniane5d13672011-02-14 11:20:01 +02002653
2654 /*
2655 * if cgroup events exist on this CPU, then we need
2656 * to check if we have to switch out PMU state.
2657 * cgroup event are system-wide mode only
2658 */
Christoph Lameter4a32fea2014-08-17 12:30:27 -05002659 if (atomic_read(this_cpu_ptr(&perf_cgroup_events)))
Stephane Eraniana8d757e2011-08-25 15:58:03 +02002660 perf_cgroup_sched_out(task, next);
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02002661}
2662
Peter Zijlstra04dc2db2011-04-09 21:17:43 +02002663static void task_ctx_sched_out(struct perf_event_context *ctx)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002664{
Peter Zijlstra108b02c2010-09-06 14:32:03 +02002665 struct perf_cpu_context *cpuctx = __get_cpu_context(ctx);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002666
2667 if (!cpuctx->task_ctx)
2668 return;
2669
2670 if (WARN_ON_ONCE(ctx != cpuctx->task_ctx))
2671 return;
2672
Peter Zijlstra04dc2db2011-04-09 21:17:43 +02002673 ctx_sched_out(ctx, cpuctx, EVENT_ALL);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002674 cpuctx->task_ctx = NULL;
2675}
2676
2677/*
2678 * Called with IRQs disabled
2679 */
Frederic Weisbecker5b0311e2010-01-17 11:59:13 +01002680static void cpu_ctx_sched_out(struct perf_cpu_context *cpuctx,
2681 enum event_type_t event_type)
2682{
2683 ctx_sched_out(&cpuctx->ctx, cpuctx, event_type);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002684}
2685
2686static void
Frederic Weisbecker5b0311e2010-01-17 11:59:13 +01002687ctx_pinned_sched_in(struct perf_event_context *ctx,
Peter Zijlstra6e377382010-02-11 13:21:58 +01002688 struct perf_cpu_context *cpuctx)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002689{
2690 struct perf_event *event;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002691
Frederic Weisbecker889ff012010-01-09 20:04:47 +01002692 list_for_each_entry(event, &ctx->pinned_groups, group_entry) {
2693 if (event->state <= PERF_EVENT_STATE_OFF)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002694 continue;
Stephane Eranian5632ab12011-01-03 18:20:01 +02002695 if (!event_filter_match(event))
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002696 continue;
2697
Stephane Eraniane5d13672011-02-14 11:20:01 +02002698 /* may need to reset tstamp_enabled */
2699 if (is_cgroup_event(event))
2700 perf_cgroup_mark_enabled(event, ctx);
2701
Xiao Guangrong8c9ed8e2009-09-25 13:51:17 +08002702 if (group_can_go_on(event, cpuctx, 1))
Peter Zijlstra6e377382010-02-11 13:21:58 +01002703 group_sched_in(event, cpuctx, ctx);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002704
2705 /*
2706 * If this pinned group hasn't been scheduled,
2707 * put it in error state.
2708 */
2709 if (event->state == PERF_EVENT_STATE_INACTIVE) {
2710 update_group_times(event);
2711 event->state = PERF_EVENT_STATE_ERROR;
2712 }
2713 }
Frederic Weisbecker5b0311e2010-01-17 11:59:13 +01002714}
2715
2716static void
2717ctx_flexible_sched_in(struct perf_event_context *ctx,
Peter Zijlstra6e377382010-02-11 13:21:58 +01002718 struct perf_cpu_context *cpuctx)
Frederic Weisbecker5b0311e2010-01-17 11:59:13 +01002719{
2720 struct perf_event *event;
2721 int can_add_hw = 1;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002722
Frederic Weisbecker889ff012010-01-09 20:04:47 +01002723 list_for_each_entry(event, &ctx->flexible_groups, group_entry) {
2724 /* Ignore events in OFF or ERROR state */
2725 if (event->state <= PERF_EVENT_STATE_OFF)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002726 continue;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002727 /*
2728 * Listen to the 'cpu' scheduling filter constraint
2729 * of events:
2730 */
Stephane Eranian5632ab12011-01-03 18:20:01 +02002731 if (!event_filter_match(event))
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002732 continue;
2733
Stephane Eraniane5d13672011-02-14 11:20:01 +02002734 /* may need to reset tstamp_enabled */
2735 if (is_cgroup_event(event))
2736 perf_cgroup_mark_enabled(event, ctx);
2737
Peter Zijlstra9ed60602010-06-11 17:36:35 +02002738 if (group_can_go_on(event, cpuctx, can_add_hw)) {
Peter Zijlstra6e377382010-02-11 13:21:58 +01002739 if (group_sched_in(event, cpuctx, ctx))
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002740 can_add_hw = 0;
Peter Zijlstra9ed60602010-06-11 17:36:35 +02002741 }
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002742 }
Frederic Weisbecker5b0311e2010-01-17 11:59:13 +01002743}
2744
2745static void
2746ctx_sched_in(struct perf_event_context *ctx,
2747 struct perf_cpu_context *cpuctx,
Stephane Eraniane5d13672011-02-14 11:20:01 +02002748 enum event_type_t event_type,
2749 struct task_struct *task)
Frederic Weisbecker5b0311e2010-01-17 11:59:13 +01002750{
Stephane Eraniane5d13672011-02-14 11:20:01 +02002751 u64 now;
Peter Zijlstradb24d332011-04-09 21:17:45 +02002752 int is_active = ctx->is_active;
Stephane Eraniane5d13672011-02-14 11:20:01 +02002753
Peter Zijlstradb24d332011-04-09 21:17:45 +02002754 ctx->is_active |= event_type;
Frederic Weisbecker5b0311e2010-01-17 11:59:13 +01002755 if (likely(!ctx->nr_events))
Peter Zijlstrafacc4302011-04-09 21:17:42 +02002756 return;
Frederic Weisbecker5b0311e2010-01-17 11:59:13 +01002757
Stephane Eraniane5d13672011-02-14 11:20:01 +02002758 now = perf_clock();
2759 ctx->timestamp = now;
Stephane Eranian3f7cce32011-02-18 14:40:01 +02002760 perf_cgroup_set_timestamp(task, ctx);
Frederic Weisbecker5b0311e2010-01-17 11:59:13 +01002761 /*
2762 * First go through the list and put on any pinned groups
2763 * in order to give them the best chance of going on.
2764 */
Peter Zijlstradb24d332011-04-09 21:17:45 +02002765 if (!(is_active & EVENT_PINNED) && (event_type & EVENT_PINNED))
Peter Zijlstra6e377382010-02-11 13:21:58 +01002766 ctx_pinned_sched_in(ctx, cpuctx);
Frederic Weisbecker5b0311e2010-01-17 11:59:13 +01002767
2768 /* Then walk through the lower prio flexible groups */
Peter Zijlstradb24d332011-04-09 21:17:45 +02002769 if (!(is_active & EVENT_FLEXIBLE) && (event_type & EVENT_FLEXIBLE))
Peter Zijlstra6e377382010-02-11 13:21:58 +01002770 ctx_flexible_sched_in(ctx, cpuctx);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002771}
2772
Frederic Weisbecker329c0e02010-01-17 12:56:05 +01002773static void cpu_ctx_sched_in(struct perf_cpu_context *cpuctx,
Stephane Eraniane5d13672011-02-14 11:20:01 +02002774 enum event_type_t event_type,
2775 struct task_struct *task)
Frederic Weisbecker329c0e02010-01-17 12:56:05 +01002776{
2777 struct perf_event_context *ctx = &cpuctx->ctx;
2778
Stephane Eraniane5d13672011-02-14 11:20:01 +02002779 ctx_sched_in(ctx, cpuctx, event_type, task);
Frederic Weisbecker329c0e02010-01-17 12:56:05 +01002780}
2781
Stephane Eraniane5d13672011-02-14 11:20:01 +02002782static void perf_event_context_sched_in(struct perf_event_context *ctx,
2783 struct task_struct *task)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002784{
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02002785 struct perf_cpu_context *cpuctx;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002786
Peter Zijlstra108b02c2010-09-06 14:32:03 +02002787 cpuctx = __get_cpu_context(ctx);
Frederic Weisbecker329c0e02010-01-17 12:56:05 +01002788 if (cpuctx->task_ctx == ctx)
2789 return;
2790
Peter Zijlstrafacc4302011-04-09 21:17:42 +02002791 perf_ctx_lock(cpuctx, ctx);
Peter Zijlstra1b9a6442010-09-07 18:32:22 +02002792 perf_pmu_disable(ctx->pmu);
Frederic Weisbecker329c0e02010-01-17 12:56:05 +01002793 /*
2794 * We want to keep the following priority order:
2795 * cpu pinned (that don't need to move), task pinned,
2796 * cpu flexible, task flexible.
2797 */
2798 cpu_ctx_sched_out(cpuctx, EVENT_FLEXIBLE);
2799
Gleb Natapov1d5f0032011-10-23 19:10:33 +02002800 if (ctx->nr_events)
2801 cpuctx->task_ctx = ctx;
eranian@google.com9b33fa62010-03-10 22:26:05 -08002802
Gleb Natapov86b47c22011-11-22 16:08:21 +02002803 perf_event_sched_in(cpuctx, cpuctx->task_ctx, task);
2804
Peter Zijlstrafacc4302011-04-09 21:17:42 +02002805 perf_pmu_enable(ctx->pmu);
2806 perf_ctx_unlock(cpuctx, ctx);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002807}
2808
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02002809/*
2810 * Called from scheduler to add the events of the current task
2811 * with interrupts disabled.
2812 *
2813 * We restore the event value and then enable it.
2814 *
2815 * This does not protect us against NMI, but enable()
2816 * sets the enabled bit in the control field of event _before_
2817 * accessing the event control register. If a NMI hits, then it will
2818 * keep the event running.
2819 */
Jiri Olsaab0cce52012-05-23 13:13:02 +02002820void __perf_event_task_sched_in(struct task_struct *prev,
2821 struct task_struct *task)
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02002822{
2823 struct perf_event_context *ctx;
2824 int ctxn;
2825
2826 for_each_task_context_nr(ctxn) {
2827 ctx = task->perf_event_ctxp[ctxn];
2828 if (likely(!ctx))
2829 continue;
2830
Stephane Eraniane5d13672011-02-14 11:20:01 +02002831 perf_event_context_sched_in(ctx, task);
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02002832 }
Stephane Eraniane5d13672011-02-14 11:20:01 +02002833 /*
2834 * if cgroup events exist on this CPU, then we need
2835 * to check if we have to switch in PMU state.
2836 * cgroup event are system-wide mode only
2837 */
Christoph Lameter4a32fea2014-08-17 12:30:27 -05002838 if (atomic_read(this_cpu_ptr(&perf_cgroup_events)))
Stephane Eraniana8d757e2011-08-25 15:58:03 +02002839 perf_cgroup_sched_in(prev, task);
Stephane Eraniand010b332012-02-09 23:21:00 +01002840
Adrian Hunter45ac1402015-07-21 12:44:02 +03002841 if (atomic_read(&nr_switch_events))
2842 perf_event_switch(task, prev, true);
2843
Yan, Zhengba532502014-11-04 21:55:58 -05002844 if (__this_cpu_read(perf_sched_cb_usages))
2845 perf_pmu_sched_task(prev, task, true);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002846}
2847
Peter Zijlstraabd50712010-01-26 18:50:16 +01002848static u64 perf_calculate_period(struct perf_event *event, u64 nsec, u64 count)
2849{
2850 u64 frequency = event->attr.sample_freq;
2851 u64 sec = NSEC_PER_SEC;
2852 u64 divisor, dividend;
2853
2854 int count_fls, nsec_fls, frequency_fls, sec_fls;
2855
2856 count_fls = fls64(count);
2857 nsec_fls = fls64(nsec);
2858 frequency_fls = fls64(frequency);
2859 sec_fls = 30;
2860
2861 /*
2862 * We got @count in @nsec, with a target of sample_freq HZ
2863 * the target period becomes:
2864 *
2865 * @count * 10^9
2866 * period = -------------------
2867 * @nsec * sample_freq
2868 *
2869 */
2870
2871 /*
2872 * Reduce accuracy by one bit such that @a and @b converge
2873 * to a similar magnitude.
2874 */
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +01002875#define REDUCE_FLS(a, b) \
Peter Zijlstraabd50712010-01-26 18:50:16 +01002876do { \
2877 if (a##_fls > b##_fls) { \
2878 a >>= 1; \
2879 a##_fls--; \
2880 } else { \
2881 b >>= 1; \
2882 b##_fls--; \
2883 } \
2884} while (0)
2885
2886 /*
2887 * Reduce accuracy until either term fits in a u64, then proceed with
2888 * the other, so that finally we can do a u64/u64 division.
2889 */
2890 while (count_fls + sec_fls > 64 && nsec_fls + frequency_fls > 64) {
2891 REDUCE_FLS(nsec, frequency);
2892 REDUCE_FLS(sec, count);
2893 }
2894
2895 if (count_fls + sec_fls > 64) {
2896 divisor = nsec * frequency;
2897
2898 while (count_fls + sec_fls > 64) {
2899 REDUCE_FLS(count, sec);
2900 divisor >>= 1;
2901 }
2902
2903 dividend = count * sec;
2904 } else {
2905 dividend = count * sec;
2906
2907 while (nsec_fls + frequency_fls > 64) {
2908 REDUCE_FLS(nsec, frequency);
2909 dividend >>= 1;
2910 }
2911
2912 divisor = nsec * frequency;
2913 }
2914
Peter Zijlstraf6ab91ad2010-06-04 15:18:01 +02002915 if (!divisor)
2916 return dividend;
2917
Peter Zijlstraabd50712010-01-26 18:50:16 +01002918 return div64_u64(dividend, divisor);
2919}
2920
Stephane Eraniane050e3f2012-01-26 17:03:19 +01002921static DEFINE_PER_CPU(int, perf_throttled_count);
2922static DEFINE_PER_CPU(u64, perf_throttled_seq);
2923
Stephane Eranianf39d47f2012-02-07 14:39:57 +01002924static void perf_adjust_period(struct perf_event *event, u64 nsec, u64 count, bool disable)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002925{
2926 struct hw_perf_event *hwc = &event->hw;
Peter Zijlstraf6ab91ad2010-06-04 15:18:01 +02002927 s64 period, sample_period;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002928 s64 delta;
2929
Peter Zijlstraabd50712010-01-26 18:50:16 +01002930 period = perf_calculate_period(event, nsec, count);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002931
2932 delta = (s64)(period - hwc->sample_period);
2933 delta = (delta + 7) / 8; /* low pass filter */
2934
2935 sample_period = hwc->sample_period + delta;
2936
2937 if (!sample_period)
2938 sample_period = 1;
2939
2940 hwc->sample_period = sample_period;
Peter Zijlstraabd50712010-01-26 18:50:16 +01002941
Peter Zijlstrae7850592010-05-21 14:43:08 +02002942 if (local64_read(&hwc->period_left) > 8*sample_period) {
Stephane Eranianf39d47f2012-02-07 14:39:57 +01002943 if (disable)
2944 event->pmu->stop(event, PERF_EF_UPDATE);
2945
Peter Zijlstrae7850592010-05-21 14:43:08 +02002946 local64_set(&hwc->period_left, 0);
Stephane Eranianf39d47f2012-02-07 14:39:57 +01002947
2948 if (disable)
2949 event->pmu->start(event, PERF_EF_RELOAD);
Peter Zijlstraabd50712010-01-26 18:50:16 +01002950 }
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002951}
2952
Stephane Eraniane050e3f2012-01-26 17:03:19 +01002953/*
2954 * combine freq adjustment with unthrottling to avoid two passes over the
2955 * events. At the same time, make sure, having freq events does not change
2956 * the rate of unthrottling as that would introduce bias.
2957 */
2958static void perf_adjust_freq_unthr_context(struct perf_event_context *ctx,
2959 int needs_unthr)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002960{
2961 struct perf_event *event;
2962 struct hw_perf_event *hwc;
Stephane Eraniane050e3f2012-01-26 17:03:19 +01002963 u64 now, period = TICK_NSEC;
Peter Zijlstraabd50712010-01-26 18:50:16 +01002964 s64 delta;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002965
Stephane Eraniane050e3f2012-01-26 17:03:19 +01002966 /*
2967 * only need to iterate over all events iff:
2968 * - context have events in frequency mode (needs freq adjust)
2969 * - there are events to unthrottle on this cpu
2970 */
2971 if (!(ctx->nr_freq || needs_unthr))
Peter Zijlstra0f5a2602011-11-16 14:38:16 +01002972 return;
2973
Stephane Eraniane050e3f2012-01-26 17:03:19 +01002974 raw_spin_lock(&ctx->lock);
Stephane Eranianf39d47f2012-02-07 14:39:57 +01002975 perf_pmu_disable(ctx->pmu);
Stephane Eraniane050e3f2012-01-26 17:03:19 +01002976
Paul Mackerras03541f82009-10-14 16:58:03 +11002977 list_for_each_entry_rcu(event, &ctx->event_list, event_entry) {
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002978 if (event->state != PERF_EVENT_STATE_ACTIVE)
2979 continue;
2980
Stephane Eranian5632ab12011-01-03 18:20:01 +02002981 if (!event_filter_match(event))
Peter Zijlstra5d27c232009-12-17 13:16:32 +01002982 continue;
2983
Alexander Shishkin44377272013-12-16 14:17:36 +02002984 perf_pmu_disable(event->pmu);
2985
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002986 hwc = &event->hw;
2987
Jiri Olsaae23bff2013-08-24 16:45:54 +02002988 if (hwc->interrupts == MAX_INTERRUPTS) {
Stephane Eraniane050e3f2012-01-26 17:03:19 +01002989 hwc->interrupts = 0;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002990 perf_log_throttle(event, 1);
Peter Zijlstraa4eaf7f2010-06-16 14:37:10 +02002991 event->pmu->start(event, 0);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002992 }
2993
2994 if (!event->attr.freq || !event->attr.sample_freq)
Alexander Shishkin44377272013-12-16 14:17:36 +02002995 goto next;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02002996
Stephane Eraniane050e3f2012-01-26 17:03:19 +01002997 /*
2998 * stop the event and update event->count
2999 */
3000 event->pmu->stop(event, PERF_EF_UPDATE);
3001
Peter Zijlstrae7850592010-05-21 14:43:08 +02003002 now = local64_read(&event->count);
Peter Zijlstraabd50712010-01-26 18:50:16 +01003003 delta = now - hwc->freq_count_stamp;
3004 hwc->freq_count_stamp = now;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003005
Stephane Eraniane050e3f2012-01-26 17:03:19 +01003006 /*
3007 * restart the event
3008 * reload only if value has changed
Stephane Eranianf39d47f2012-02-07 14:39:57 +01003009 * we have stopped the event so tell that
3010 * to perf_adjust_period() to avoid stopping it
3011 * twice.
Stephane Eraniane050e3f2012-01-26 17:03:19 +01003012 */
Peter Zijlstraabd50712010-01-26 18:50:16 +01003013 if (delta > 0)
Stephane Eranianf39d47f2012-02-07 14:39:57 +01003014 perf_adjust_period(event, period, delta, false);
Stephane Eraniane050e3f2012-01-26 17:03:19 +01003015
3016 event->pmu->start(event, delta > 0 ? PERF_EF_RELOAD : 0);
Alexander Shishkin44377272013-12-16 14:17:36 +02003017 next:
3018 perf_pmu_enable(event->pmu);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003019 }
Stephane Eraniane050e3f2012-01-26 17:03:19 +01003020
Stephane Eranianf39d47f2012-02-07 14:39:57 +01003021 perf_pmu_enable(ctx->pmu);
Stephane Eraniane050e3f2012-01-26 17:03:19 +01003022 raw_spin_unlock(&ctx->lock);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003023}
3024
3025/*
3026 * Round-robin a context's events:
3027 */
3028static void rotate_ctx(struct perf_event_context *ctx)
3029{
Thomas Gleixnerdddd3372010-11-24 10:05:55 +01003030 /*
3031 * Rotate the first entry last of non-pinned groups. Rotation might be
3032 * disabled by the inheritance code.
3033 */
3034 if (!ctx->rotate_disable)
3035 list_rotate_left(&ctx->flexible_groups);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003036}
3037
Stephane Eranian9e630202013-04-03 14:21:33 +02003038static int perf_rotate_context(struct perf_cpu_context *cpuctx)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003039{
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02003040 struct perf_event_context *ctx = NULL;
Mark Rutland2fde4f92015-01-07 15:01:54 +00003041 int rotate = 0;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003042
Peter Zijlstrab5ab4cd2010-09-06 16:32:21 +02003043 if (cpuctx->ctx.nr_events) {
Peter Zijlstrab5ab4cd2010-09-06 16:32:21 +02003044 if (cpuctx->ctx.nr_events != cpuctx->ctx.nr_active)
3045 rotate = 1;
3046 }
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003047
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02003048 ctx = cpuctx->task_ctx;
Peter Zijlstrab5ab4cd2010-09-06 16:32:21 +02003049 if (ctx && ctx->nr_events) {
Peter Zijlstrab5ab4cd2010-09-06 16:32:21 +02003050 if (ctx->nr_events != ctx->nr_active)
3051 rotate = 1;
3052 }
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003053
Stephane Eraniane050e3f2012-01-26 17:03:19 +01003054 if (!rotate)
Peter Zijlstra0f5a2602011-11-16 14:38:16 +01003055 goto done;
3056
Peter Zijlstrafacc4302011-04-09 21:17:42 +02003057 perf_ctx_lock(cpuctx, cpuctx->task_ctx);
Peter Zijlstra1b9a6442010-09-07 18:32:22 +02003058 perf_pmu_disable(cpuctx->ctx.pmu);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003059
Stephane Eraniane050e3f2012-01-26 17:03:19 +01003060 cpu_ctx_sched_out(cpuctx, EVENT_FLEXIBLE);
3061 if (ctx)
3062 ctx_sched_out(ctx, cpuctx, EVENT_FLEXIBLE);
Peter Zijlstrad4944a02010-03-08 13:51:20 +01003063
Stephane Eraniane050e3f2012-01-26 17:03:19 +01003064 rotate_ctx(&cpuctx->ctx);
3065 if (ctx)
3066 rotate_ctx(ctx);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003067
Stephane Eraniane050e3f2012-01-26 17:03:19 +01003068 perf_event_sched_in(cpuctx, ctx, current);
Peter Zijlstra0f5a2602011-11-16 14:38:16 +01003069
3070 perf_pmu_enable(cpuctx->ctx.pmu);
3071 perf_ctx_unlock(cpuctx, cpuctx->task_ctx);
Peter Zijlstrab5ab4cd2010-09-06 16:32:21 +02003072done:
Stephane Eranian9e630202013-04-03 14:21:33 +02003073
3074 return rotate;
Peter Zijlstrae9d2b062010-09-17 11:28:50 +02003075}
3076
Frederic Weisbecker026249e2013-04-20 15:58:34 +02003077#ifdef CONFIG_NO_HZ_FULL
3078bool perf_event_can_stop_tick(void)
3079{
Frederic Weisbecker948b26b2013-08-02 18:29:55 +02003080 if (atomic_read(&nr_freq_events) ||
Frederic Weisbeckerd84153d2013-07-23 02:31:05 +02003081 __this_cpu_read(perf_throttled_count))
Frederic Weisbecker026249e2013-04-20 15:58:34 +02003082 return false;
Frederic Weisbeckerd84153d2013-07-23 02:31:05 +02003083 else
3084 return true;
Frederic Weisbecker026249e2013-04-20 15:58:34 +02003085}
3086#endif
3087
Peter Zijlstrae9d2b062010-09-17 11:28:50 +02003088void perf_event_task_tick(void)
3089{
Mark Rutland2fde4f92015-01-07 15:01:54 +00003090 struct list_head *head = this_cpu_ptr(&active_ctx_list);
3091 struct perf_event_context *ctx, *tmp;
Stephane Eraniane050e3f2012-01-26 17:03:19 +01003092 int throttled;
Peter Zijlstrae9d2b062010-09-17 11:28:50 +02003093
3094 WARN_ON(!irqs_disabled());
3095
Stephane Eraniane050e3f2012-01-26 17:03:19 +01003096 __this_cpu_inc(perf_throttled_seq);
3097 throttled = __this_cpu_xchg(perf_throttled_count, 0);
3098
Mark Rutland2fde4f92015-01-07 15:01:54 +00003099 list_for_each_entry_safe(ctx, tmp, head, active_ctx_list)
Stephane Eraniane050e3f2012-01-26 17:03:19 +01003100 perf_adjust_freq_unthr_context(ctx, throttled);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003101}
3102
Frederic Weisbecker889ff012010-01-09 20:04:47 +01003103static int event_enable_on_exec(struct perf_event *event,
3104 struct perf_event_context *ctx)
3105{
3106 if (!event->attr.enable_on_exec)
3107 return 0;
3108
3109 event->attr.enable_on_exec = 0;
3110 if (event->state >= PERF_EVENT_STATE_INACTIVE)
3111 return 0;
3112
Peter Zijlstra1d9b4822011-11-23 12:34:20 +01003113 __perf_event_mark_enabled(event);
Frederic Weisbecker889ff012010-01-09 20:04:47 +01003114
3115 return 1;
3116}
3117
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003118/*
3119 * Enable all of a task's events that have been marked enable-on-exec.
3120 * This expects task == current.
3121 */
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02003122static void perf_event_enable_on_exec(struct perf_event_context *ctx)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003123{
Peter Zijlstra211de6e2014-09-30 19:23:08 +02003124 struct perf_event_context *clone_ctx = NULL;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003125 struct perf_event *event;
3126 unsigned long flags;
3127 int enabled = 0;
Frederic Weisbecker889ff012010-01-09 20:04:47 +01003128 int ret;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003129
3130 local_irq_save(flags);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003131 if (!ctx || !ctx->nr_events)
3132 goto out;
3133
Stephane Eraniane566b762011-04-06 02:54:54 +02003134 /*
3135 * We must ctxsw out cgroup events to avoid conflict
3136 * when invoking perf_task_event_sched_in() later on
3137 * in this function. Otherwise we end up trying to
3138 * ctxswin cgroup events which are already scheduled
3139 * in.
3140 */
Stephane Eraniana8d757e2011-08-25 15:58:03 +02003141 perf_cgroup_sched_out(current, NULL);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003142
Thomas Gleixnere625cce12009-11-17 18:02:06 +01003143 raw_spin_lock(&ctx->lock);
Peter Zijlstra04dc2db2011-04-09 21:17:43 +02003144 task_ctx_sched_out(ctx);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003145
Peter Zijlstrab79387e2011-11-22 11:25:43 +01003146 list_for_each_entry(event, &ctx->event_list, event_entry) {
Frederic Weisbecker889ff012010-01-09 20:04:47 +01003147 ret = event_enable_on_exec(event, ctx);
3148 if (ret)
3149 enabled = 1;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003150 }
3151
3152 /*
3153 * Unclone this context if we enabled any event.
3154 */
3155 if (enabled)
Peter Zijlstra211de6e2014-09-30 19:23:08 +02003156 clone_ctx = unclone_ctx(ctx);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003157
Thomas Gleixnere625cce12009-11-17 18:02:06 +01003158 raw_spin_unlock(&ctx->lock);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003159
Stephane Eraniane566b762011-04-06 02:54:54 +02003160 /*
3161 * Also calls ctxswin for cgroup events, if any:
3162 */
Stephane Eraniane5d13672011-02-14 11:20:01 +02003163 perf_event_context_sched_in(ctx, ctx->task);
Peter Zijlstra9ed60602010-06-11 17:36:35 +02003164out:
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003165 local_irq_restore(flags);
Peter Zijlstra211de6e2014-09-30 19:23:08 +02003166
3167 if (clone_ctx)
3168 put_ctx(clone_ctx);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003169}
3170
Peter Zijlstrae041e322014-05-21 17:32:19 +02003171void perf_event_exec(void)
3172{
3173 struct perf_event_context *ctx;
3174 int ctxn;
3175
3176 rcu_read_lock();
3177 for_each_task_context_nr(ctxn) {
3178 ctx = current->perf_event_ctxp[ctxn];
3179 if (!ctx)
3180 continue;
3181
3182 perf_event_enable_on_exec(ctx);
3183 }
3184 rcu_read_unlock();
3185}
3186
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003187/*
3188 * Cross CPU call to read the hardware event
3189 */
3190static void __perf_event_read(void *info)
3191{
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003192 struct perf_event *event = info;
3193 struct perf_event_context *ctx = event->ctx;
Peter Zijlstra108b02c2010-09-06 14:32:03 +02003194 struct perf_cpu_context *cpuctx = __get_cpu_context(ctx);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003195
3196 /*
3197 * If this is a task context, we need to check whether it is
3198 * the current task context of this cpu. If not it has been
3199 * scheduled out before the smp call arrived. In that case
3200 * event->count would have been updated to a recent sample
3201 * when the event was scheduled out.
3202 */
3203 if (ctx->task && cpuctx->task_ctx != ctx)
3204 return;
3205
Thomas Gleixnere625cce12009-11-17 18:02:06 +01003206 raw_spin_lock(&ctx->lock);
Stephane Eraniane5d13672011-02-14 11:20:01 +02003207 if (ctx->is_active) {
Peter Zijlstra542e72f2011-01-26 15:38:35 +01003208 update_context_time(ctx);
Stephane Eraniane5d13672011-02-14 11:20:01 +02003209 update_cgrp_time_from_event(event);
3210 }
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003211 update_event_times(event);
Peter Zijlstra542e72f2011-01-26 15:38:35 +01003212 if (event->state == PERF_EVENT_STATE_ACTIVE)
3213 event->pmu->read(event);
Thomas Gleixnere625cce12009-11-17 18:02:06 +01003214 raw_spin_unlock(&ctx->lock);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003215}
3216
Peter Zijlstrab5e58792010-05-21 14:43:12 +02003217static inline u64 perf_event_count(struct perf_event *event)
3218{
Matt Flemingeacd3ec2015-01-23 18:45:41 +00003219 if (event->pmu->count)
3220 return event->pmu->count(event);
3221
3222 return __perf_event_count(event);
Peter Zijlstrab5e58792010-05-21 14:43:12 +02003223}
3224
Kaixu Xiaffe86902015-08-06 07:02:32 +00003225/*
3226 * NMI-safe method to read a local event, that is an event that
3227 * is:
3228 * - either for the current task, or for this CPU
3229 * - does not have inherit set, for inherited task events
3230 * will not be local and we cannot read them atomically
3231 * - must not have a pmu::count method
3232 */
3233u64 perf_event_read_local(struct perf_event *event)
3234{
3235 unsigned long flags;
3236 u64 val;
3237
3238 /*
3239 * Disabling interrupts avoids all counter scheduling (context
3240 * switches, timer based rotation and IPIs).
3241 */
3242 local_irq_save(flags);
3243
3244 /* If this is a per-task event, it must be for current */
3245 WARN_ON_ONCE((event->attach_state & PERF_ATTACH_TASK) &&
3246 event->hw.target != current);
3247
3248 /* If this is a per-CPU event, it must be for this CPU */
3249 WARN_ON_ONCE(!(event->attach_state & PERF_ATTACH_TASK) &&
3250 event->cpu != smp_processor_id());
3251
3252 /*
3253 * It must not be an event with inherit set, we cannot read
3254 * all child counters from atomic context.
3255 */
3256 WARN_ON_ONCE(event->attr.inherit);
3257
3258 /*
3259 * It must not have a pmu::count method, those are not
3260 * NMI safe.
3261 */
3262 WARN_ON_ONCE(event->pmu->count);
3263
3264 /*
3265 * If the event is currently on this CPU, its either a per-task event,
3266 * or local to this CPU. Furthermore it means its ACTIVE (otherwise
3267 * oncpu == -1).
3268 */
3269 if (event->oncpu == smp_processor_id())
3270 event->pmu->read(event);
3271
3272 val = local64_read(&event->count);
3273 local_irq_restore(flags);
3274
3275 return val;
3276}
3277
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003278static u64 perf_event_read(struct perf_event *event)
3279{
3280 /*
3281 * If event is enabled and currently active on a CPU, update the
3282 * value in the event structure:
3283 */
3284 if (event->state == PERF_EVENT_STATE_ACTIVE) {
3285 smp_call_function_single(event->oncpu,
3286 __perf_event_read, event, 1);
3287 } else if (event->state == PERF_EVENT_STATE_INACTIVE) {
Peter Zijlstra2b8988c2009-11-20 22:19:54 +01003288 struct perf_event_context *ctx = event->ctx;
3289 unsigned long flags;
3290
Thomas Gleixnere625cce12009-11-17 18:02:06 +01003291 raw_spin_lock_irqsave(&ctx->lock, flags);
Stephane Eranianc530ccd2010-10-15 15:26:01 +02003292 /*
3293 * may read while context is not active
3294 * (e.g., thread is blocked), in that case
3295 * we cannot update context time
3296 */
Stephane Eraniane5d13672011-02-14 11:20:01 +02003297 if (ctx->is_active) {
Stephane Eranianc530ccd2010-10-15 15:26:01 +02003298 update_context_time(ctx);
Stephane Eraniane5d13672011-02-14 11:20:01 +02003299 update_cgrp_time_from_event(event);
3300 }
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003301 update_event_times(event);
Thomas Gleixnere625cce12009-11-17 18:02:06 +01003302 raw_spin_unlock_irqrestore(&ctx->lock, flags);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003303 }
3304
Peter Zijlstrab5e58792010-05-21 14:43:12 +02003305 return perf_event_count(event);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003306}
3307
3308/*
3309 * Initialize the perf_event context in a task_struct:
3310 */
Peter Zijlstraeb184472010-09-07 15:55:13 +02003311static void __perf_event_init_context(struct perf_event_context *ctx)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003312{
Thomas Gleixnere625cce12009-11-17 18:02:06 +01003313 raw_spin_lock_init(&ctx->lock);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003314 mutex_init(&ctx->mutex);
Mark Rutland2fde4f92015-01-07 15:01:54 +00003315 INIT_LIST_HEAD(&ctx->active_ctx_list);
Frederic Weisbecker889ff012010-01-09 20:04:47 +01003316 INIT_LIST_HEAD(&ctx->pinned_groups);
3317 INIT_LIST_HEAD(&ctx->flexible_groups);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003318 INIT_LIST_HEAD(&ctx->event_list);
3319 atomic_set(&ctx->refcount, 1);
Jiri Olsafadfe7b2014-08-01 14:33:02 +02003320 INIT_DELAYED_WORK(&ctx->orphans_remove, orphans_remove_work);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003321}
3322
Peter Zijlstraeb184472010-09-07 15:55:13 +02003323static struct perf_event_context *
3324alloc_perf_context(struct pmu *pmu, struct task_struct *task)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003325{
3326 struct perf_event_context *ctx;
Peter Zijlstraeb184472010-09-07 15:55:13 +02003327
3328 ctx = kzalloc(sizeof(struct perf_event_context), GFP_KERNEL);
3329 if (!ctx)
3330 return NULL;
3331
3332 __perf_event_init_context(ctx);
3333 if (task) {
3334 ctx->task = task;
3335 get_task_struct(task);
3336 }
3337 ctx->pmu = pmu;
3338
3339 return ctx;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003340}
3341
Matt Helsley2ebd4ff2010-09-13 13:01:19 -07003342static struct task_struct *
3343find_lively_task_by_vpid(pid_t vpid)
3344{
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003345 struct task_struct *task;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003346 int err;
3347
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003348 rcu_read_lock();
Matt Helsley2ebd4ff2010-09-13 13:01:19 -07003349 if (!vpid)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003350 task = current;
3351 else
Matt Helsley2ebd4ff2010-09-13 13:01:19 -07003352 task = find_task_by_vpid(vpid);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003353 if (task)
3354 get_task_struct(task);
3355 rcu_read_unlock();
3356
3357 if (!task)
3358 return ERR_PTR(-ESRCH);
3359
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003360 /* Reuse ptrace permission checks for now. */
3361 err = -EACCES;
3362 if (!ptrace_may_access(task, PTRACE_MODE_READ))
3363 goto errout;
3364
Matt Helsley2ebd4ff2010-09-13 13:01:19 -07003365 return task;
3366errout:
3367 put_task_struct(task);
3368 return ERR_PTR(err);
3369
3370}
3371
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +01003372/*
3373 * Returns a matching context with refcount and pincount.
3374 */
Peter Zijlstra108b02c2010-09-06 14:32:03 +02003375static struct perf_event_context *
Yan, Zheng4af57ef2014-11-04 21:56:01 -05003376find_get_context(struct pmu *pmu, struct task_struct *task,
3377 struct perf_event *event)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003378{
Peter Zijlstra211de6e2014-09-30 19:23:08 +02003379 struct perf_event_context *ctx, *clone_ctx = NULL;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003380 struct perf_cpu_context *cpuctx;
Yan, Zheng4af57ef2014-11-04 21:56:01 -05003381 void *task_ctx_data = NULL;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003382 unsigned long flags;
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02003383 int ctxn, err;
Yan, Zheng4af57ef2014-11-04 21:56:01 -05003384 int cpu = event->cpu;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003385
Oleg Nesterov22a4ec72011-01-18 17:10:08 +01003386 if (!task) {
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003387 /* Must be root to operate on a CPU event: */
3388 if (perf_paranoid_cpu() && !capable(CAP_SYS_ADMIN))
3389 return ERR_PTR(-EACCES);
3390
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003391 /*
3392 * We could be clever and allow to attach a event to an
3393 * offline CPU and activate it when the CPU comes up, but
3394 * that's for later.
3395 */
3396 if (!cpu_online(cpu))
3397 return ERR_PTR(-ENODEV);
3398
Peter Zijlstra108b02c2010-09-06 14:32:03 +02003399 cpuctx = per_cpu_ptr(pmu->pmu_cpu_context, cpu);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003400 ctx = &cpuctx->ctx;
3401 get_ctx(ctx);
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +01003402 ++ctx->pin_count;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003403
3404 return ctx;
3405 }
3406
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02003407 err = -EINVAL;
3408 ctxn = pmu->task_ctx_nr;
3409 if (ctxn < 0)
3410 goto errout;
3411
Yan, Zheng4af57ef2014-11-04 21:56:01 -05003412 if (event->attach_state & PERF_ATTACH_TASK_DATA) {
3413 task_ctx_data = kzalloc(pmu->task_ctx_size, GFP_KERNEL);
3414 if (!task_ctx_data) {
3415 err = -ENOMEM;
3416 goto errout;
3417 }
3418 }
3419
Peter Zijlstra9ed60602010-06-11 17:36:35 +02003420retry:
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02003421 ctx = perf_lock_task_context(task, ctxn, &flags);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003422 if (ctx) {
Peter Zijlstra211de6e2014-09-30 19:23:08 +02003423 clone_ctx = unclone_ctx(ctx);
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +01003424 ++ctx->pin_count;
Yan, Zheng4af57ef2014-11-04 21:56:01 -05003425
3426 if (task_ctx_data && !ctx->task_ctx_data) {
3427 ctx->task_ctx_data = task_ctx_data;
3428 task_ctx_data = NULL;
3429 }
Thomas Gleixnere625cce12009-11-17 18:02:06 +01003430 raw_spin_unlock_irqrestore(&ctx->lock, flags);
Peter Zijlstra211de6e2014-09-30 19:23:08 +02003431
3432 if (clone_ctx)
3433 put_ctx(clone_ctx);
Peter Zijlstra9137fb22011-04-09 21:17:41 +02003434 } else {
Peter Zijlstraeb184472010-09-07 15:55:13 +02003435 ctx = alloc_perf_context(pmu, task);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003436 err = -ENOMEM;
3437 if (!ctx)
3438 goto errout;
Peter Zijlstraeb184472010-09-07 15:55:13 +02003439
Yan, Zheng4af57ef2014-11-04 21:56:01 -05003440 if (task_ctx_data) {
3441 ctx->task_ctx_data = task_ctx_data;
3442 task_ctx_data = NULL;
3443 }
3444
Oleg Nesterovdbe08d82011-01-19 19:22:07 +01003445 err = 0;
3446 mutex_lock(&task->perf_event_mutex);
3447 /*
3448 * If it has already passed perf_event_exit_task().
3449 * we must see PF_EXITING, it takes this mutex too.
3450 */
3451 if (task->flags & PF_EXITING)
3452 err = -ESRCH;
3453 else if (task->perf_event_ctxp[ctxn])
3454 err = -EAGAIN;
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +01003455 else {
Peter Zijlstra9137fb22011-04-09 21:17:41 +02003456 get_ctx(ctx);
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +01003457 ++ctx->pin_count;
Oleg Nesterovdbe08d82011-01-19 19:22:07 +01003458 rcu_assign_pointer(task->perf_event_ctxp[ctxn], ctx);
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +01003459 }
Oleg Nesterovdbe08d82011-01-19 19:22:07 +01003460 mutex_unlock(&task->perf_event_mutex);
3461
3462 if (unlikely(err)) {
Peter Zijlstra9137fb22011-04-09 21:17:41 +02003463 put_ctx(ctx);
Oleg Nesterovdbe08d82011-01-19 19:22:07 +01003464
3465 if (err == -EAGAIN)
3466 goto retry;
3467 goto errout;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003468 }
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003469 }
3470
Yan, Zheng4af57ef2014-11-04 21:56:01 -05003471 kfree(task_ctx_data);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003472 return ctx;
3473
Peter Zijlstra9ed60602010-06-11 17:36:35 +02003474errout:
Yan, Zheng4af57ef2014-11-04 21:56:01 -05003475 kfree(task_ctx_data);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003476 return ERR_PTR(err);
3477}
3478
Li Zefan6fb29152009-10-15 11:21:42 +08003479static void perf_event_free_filter(struct perf_event *event);
Alexei Starovoitov25415172015-03-25 12:49:20 -07003480static void perf_event_free_bpf_prog(struct perf_event *event);
Li Zefan6fb29152009-10-15 11:21:42 +08003481
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003482static void free_event_rcu(struct rcu_head *head)
3483{
3484 struct perf_event *event;
3485
3486 event = container_of(head, struct perf_event, rcu_head);
3487 if (event->ns)
3488 put_pid_ns(event->ns);
Li Zefan6fb29152009-10-15 11:21:42 +08003489 perf_event_free_filter(event);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003490 kfree(event);
3491}
3492
Peter Zijlstrab69cf532014-03-14 10:50:33 +01003493static void ring_buffer_attach(struct perf_event *event,
3494 struct ring_buffer *rb);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003495
Frederic Weisbecker4beb31f2013-07-23 02:31:02 +02003496static void unaccount_event_cpu(struct perf_event *event, int cpu)
3497{
3498 if (event->parent)
3499 return;
3500
Frederic Weisbecker4beb31f2013-07-23 02:31:02 +02003501 if (is_cgroup_event(event))
3502 atomic_dec(&per_cpu(perf_cgroup_events, cpu));
3503}
3504
3505static void unaccount_event(struct perf_event *event)
3506{
3507 if (event->parent)
3508 return;
3509
3510 if (event->attach_state & PERF_ATTACH_TASK)
3511 static_key_slow_dec_deferred(&perf_sched_events);
3512 if (event->attr.mmap || event->attr.mmap_data)
3513 atomic_dec(&nr_mmap_events);
3514 if (event->attr.comm)
3515 atomic_dec(&nr_comm_events);
3516 if (event->attr.task)
3517 atomic_dec(&nr_task_events);
Frederic Weisbecker948b26b2013-08-02 18:29:55 +02003518 if (event->attr.freq)
3519 atomic_dec(&nr_freq_events);
Adrian Hunter45ac1402015-07-21 12:44:02 +03003520 if (event->attr.context_switch) {
3521 static_key_slow_dec_deferred(&perf_sched_events);
3522 atomic_dec(&nr_switch_events);
3523 }
Frederic Weisbecker4beb31f2013-07-23 02:31:02 +02003524 if (is_cgroup_event(event))
3525 static_key_slow_dec_deferred(&perf_sched_events);
3526 if (has_branch_stack(event))
3527 static_key_slow_dec_deferred(&perf_sched_events);
3528
3529 unaccount_event_cpu(event, event->cpu);
3530}
3531
Alexander Shishkinbed5b252015-01-30 12:31:06 +02003532/*
3533 * The following implement mutual exclusion of events on "exclusive" pmus
3534 * (PERF_PMU_CAP_EXCLUSIVE). Such pmus can only have one event scheduled
3535 * at a time, so we disallow creating events that might conflict, namely:
3536 *
3537 * 1) cpu-wide events in the presence of per-task events,
3538 * 2) per-task events in the presence of cpu-wide events,
3539 * 3) two matching events on the same context.
3540 *
3541 * The former two cases are handled in the allocation path (perf_event_alloc(),
3542 * __free_event()), the latter -- before the first perf_install_in_context().
3543 */
3544static int exclusive_event_init(struct perf_event *event)
3545{
3546 struct pmu *pmu = event->pmu;
3547
3548 if (!(pmu->capabilities & PERF_PMU_CAP_EXCLUSIVE))
3549 return 0;
3550
3551 /*
3552 * Prevent co-existence of per-task and cpu-wide events on the
3553 * same exclusive pmu.
3554 *
3555 * Negative pmu::exclusive_cnt means there are cpu-wide
3556 * events on this "exclusive" pmu, positive means there are
3557 * per-task events.
3558 *
3559 * Since this is called in perf_event_alloc() path, event::ctx
3560 * doesn't exist yet; it is, however, safe to use PERF_ATTACH_TASK
3561 * to mean "per-task event", because unlike other attach states it
3562 * never gets cleared.
3563 */
3564 if (event->attach_state & PERF_ATTACH_TASK) {
3565 if (!atomic_inc_unless_negative(&pmu->exclusive_cnt))
3566 return -EBUSY;
3567 } else {
3568 if (!atomic_dec_unless_positive(&pmu->exclusive_cnt))
3569 return -EBUSY;
3570 }
3571
3572 return 0;
3573}
3574
3575static void exclusive_event_destroy(struct perf_event *event)
3576{
3577 struct pmu *pmu = event->pmu;
3578
3579 if (!(pmu->capabilities & PERF_PMU_CAP_EXCLUSIVE))
3580 return;
3581
3582 /* see comment in exclusive_event_init() */
3583 if (event->attach_state & PERF_ATTACH_TASK)
3584 atomic_dec(&pmu->exclusive_cnt);
3585 else
3586 atomic_inc(&pmu->exclusive_cnt);
3587}
3588
3589static bool exclusive_event_match(struct perf_event *e1, struct perf_event *e2)
3590{
3591 if ((e1->pmu->capabilities & PERF_PMU_CAP_EXCLUSIVE) &&
3592 (e1->cpu == e2->cpu ||
3593 e1->cpu == -1 ||
3594 e2->cpu == -1))
3595 return true;
3596 return false;
3597}
3598
3599/* Called under the same ctx::mutex as perf_install_in_context() */
3600static bool exclusive_event_installable(struct perf_event *event,
3601 struct perf_event_context *ctx)
3602{
3603 struct perf_event *iter_event;
3604 struct pmu *pmu = event->pmu;
3605
3606 if (!(pmu->capabilities & PERF_PMU_CAP_EXCLUSIVE))
3607 return true;
3608
3609 list_for_each_entry(iter_event, &ctx->event_list, event_entry) {
3610 if (exclusive_event_match(iter_event, event))
3611 return false;
3612 }
3613
3614 return true;
3615}
3616
Frederic Weisbecker766d6c02013-07-23 02:31:01 +02003617static void __free_event(struct perf_event *event)
3618{
3619 if (!event->parent) {
3620 if (event->attr.sample_type & PERF_SAMPLE_CALLCHAIN)
3621 put_callchain_buffers();
3622 }
3623
Alexei Starovoitovdead9f22015-05-15 12:15:21 -07003624 perf_event_free_bpf_prog(event);
3625
Frederic Weisbecker766d6c02013-07-23 02:31:01 +02003626 if (event->destroy)
3627 event->destroy(event);
3628
3629 if (event->ctx)
3630 put_ctx(event->ctx);
3631
Alexander Shishkinbed5b252015-01-30 12:31:06 +02003632 if (event->pmu) {
3633 exclusive_event_destroy(event);
Yan, Zhengc464c762014-03-18 16:56:41 +08003634 module_put(event->pmu->module);
Alexander Shishkinbed5b252015-01-30 12:31:06 +02003635 }
Yan, Zhengc464c762014-03-18 16:56:41 +08003636
Frederic Weisbecker766d6c02013-07-23 02:31:01 +02003637 call_rcu(&event->rcu_head, free_event_rcu);
3638}
Peter Zijlstra683ede42014-05-05 12:11:24 +02003639
3640static void _free_event(struct perf_event *event)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003641{
Peter Zijlstrae360adb2010-10-14 14:01:34 +08003642 irq_work_sync(&event->pending);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003643
Frederic Weisbecker4beb31f2013-07-23 02:31:02 +02003644 unaccount_event(event);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003645
Frederic Weisbecker76369132011-05-19 19:55:04 +02003646 if (event->rb) {
Peter Zijlstra9bb5d402013-06-04 10:44:21 +02003647 /*
3648 * Can happen when we close an event with re-directed output.
3649 *
3650 * Since we have a 0 refcount, perf_mmap_close() will skip
3651 * over us; possibly making our ring_buffer_put() the last.
3652 */
3653 mutex_lock(&event->mmap_mutex);
Peter Zijlstrab69cf532014-03-14 10:50:33 +01003654 ring_buffer_attach(event, NULL);
Peter Zijlstra9bb5d402013-06-04 10:44:21 +02003655 mutex_unlock(&event->mmap_mutex);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003656 }
3657
Stephane Eraniane5d13672011-02-14 11:20:01 +02003658 if (is_cgroup_event(event))
3659 perf_detach_cgroup(event);
3660
Frederic Weisbecker766d6c02013-07-23 02:31:01 +02003661 __free_event(event);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003662}
3663
Peter Zijlstra683ede42014-05-05 12:11:24 +02003664/*
3665 * Used to free events which have a known refcount of 1, such as in error paths
3666 * where the event isn't exposed yet and inherited events.
3667 */
3668static void free_event(struct perf_event *event)
Arjan van de Venfb0459d2009-09-25 12:25:56 +02003669{
Peter Zijlstra683ede42014-05-05 12:11:24 +02003670 if (WARN(atomic_long_cmpxchg(&event->refcount, 1, 0) != 1,
3671 "unexpected event refcount: %ld; ptr=%p\n",
3672 atomic_long_read(&event->refcount), event)) {
3673 /* leak to avoid use-after-free */
3674 return;
3675 }
Arjan van de Venfb0459d2009-09-25 12:25:56 +02003676
Peter Zijlstra683ede42014-05-05 12:11:24 +02003677 _free_event(event);
Arjan van de Venfb0459d2009-09-25 12:25:56 +02003678}
Arjan van de Venfb0459d2009-09-25 12:25:56 +02003679
Peter Zijlstraa66a3052009-11-23 11:37:23 +01003680/*
Jiri Olsaf8697762014-08-01 14:33:01 +02003681 * Remove user event from the owner task.
Peter Zijlstraa66a3052009-11-23 11:37:23 +01003682 */
Jiri Olsaf8697762014-08-01 14:33:01 +02003683static void perf_remove_from_owner(struct perf_event *event)
Peter Zijlstraa66a3052009-11-23 11:37:23 +01003684{
Peter Zijlstra88821352010-11-09 19:01:43 +01003685 struct task_struct *owner;
Peter Zijlstraa66a3052009-11-23 11:37:23 +01003686
Peter Zijlstra88821352010-11-09 19:01:43 +01003687 rcu_read_lock();
3688 owner = ACCESS_ONCE(event->owner);
3689 /*
3690 * Matches the smp_wmb() in perf_event_exit_task(). If we observe
3691 * !owner it means the list deletion is complete and we can indeed
3692 * free this event, otherwise we need to serialize on
3693 * owner->perf_event_mutex.
3694 */
3695 smp_read_barrier_depends();
3696 if (owner) {
3697 /*
3698 * Since delayed_put_task_struct() also drops the last
3699 * task reference we can safely take a new reference
3700 * while holding the rcu_read_lock().
3701 */
3702 get_task_struct(owner);
3703 }
3704 rcu_read_unlock();
3705
3706 if (owner) {
Peter Zijlstraf63a8da2015-01-23 12:24:14 +01003707 /*
3708 * If we're here through perf_event_exit_task() we're already
3709 * holding ctx->mutex which would be an inversion wrt. the
3710 * normal lock order.
3711 *
3712 * However we can safely take this lock because its the child
3713 * ctx->mutex.
3714 */
3715 mutex_lock_nested(&owner->perf_event_mutex, SINGLE_DEPTH_NESTING);
3716
Peter Zijlstra88821352010-11-09 19:01:43 +01003717 /*
3718 * We have to re-check the event->owner field, if it is cleared
3719 * we raced with perf_event_exit_task(), acquiring the mutex
3720 * ensured they're done, and we can proceed with freeing the
3721 * event.
3722 */
3723 if (event->owner)
3724 list_del_init(&event->owner_entry);
3725 mutex_unlock(&owner->perf_event_mutex);
3726 put_task_struct(owner);
3727 }
Jiri Olsaf8697762014-08-01 14:33:01 +02003728}
3729
Jiri Olsaf8697762014-08-01 14:33:01 +02003730static void put_event(struct perf_event *event)
3731{
Peter Zijlstraa83fe282015-01-29 14:44:34 +01003732 struct perf_event_context *ctx;
Jiri Olsaf8697762014-08-01 14:33:01 +02003733
3734 if (!atomic_long_dec_and_test(&event->refcount))
3735 return;
3736
3737 if (!is_kernel_event(event))
3738 perf_remove_from_owner(event);
Peter Zijlstra88821352010-11-09 19:01:43 +01003739
Peter Zijlstra683ede42014-05-05 12:11:24 +02003740 /*
3741 * There are two ways this annotation is useful:
3742 *
3743 * 1) there is a lock recursion from perf_event_exit_task
3744 * see the comment there.
3745 *
3746 * 2) there is a lock-inversion with mmap_sem through
3747 * perf_event_read_group(), which takes faults while
3748 * holding ctx->mutex, however this is called after
3749 * the last filedesc died, so there is no possibility
3750 * to trigger the AB-BA case.
3751 */
Peter Zijlstraa83fe282015-01-29 14:44:34 +01003752 ctx = perf_event_ctx_lock_nested(event, SINGLE_DEPTH_NESTING);
3753 WARN_ON_ONCE(ctx->parent_ctx);
Peter Zijlstra683ede42014-05-05 12:11:24 +02003754 perf_remove_from_context(event, true);
Leon Yud415a7f2015-02-26 20:43:33 +08003755 perf_event_ctx_unlock(event, ctx);
Peter Zijlstra683ede42014-05-05 12:11:24 +02003756
3757 _free_event(event);
Al Viroa6fa9412012-08-20 14:59:25 +01003758}
3759
Peter Zijlstra683ede42014-05-05 12:11:24 +02003760int perf_event_release_kernel(struct perf_event *event)
3761{
3762 put_event(event);
3763 return 0;
3764}
3765EXPORT_SYMBOL_GPL(perf_event_release_kernel);
3766
Peter Zijlstra8b10c5e2015-05-01 16:08:46 +02003767/*
3768 * Called when the last reference to the file is gone.
3769 */
Al Viroa6fa9412012-08-20 14:59:25 +01003770static int perf_release(struct inode *inode, struct file *file)
3771{
3772 put_event(file->private_data);
3773 return 0;
Peter Zijlstraa66a3052009-11-23 11:37:23 +01003774}
3775
Jiri Olsafadfe7b2014-08-01 14:33:02 +02003776/*
3777 * Remove all orphanes events from the context.
3778 */
3779static void orphans_remove_work(struct work_struct *work)
3780{
3781 struct perf_event_context *ctx;
3782 struct perf_event *event, *tmp;
3783
3784 ctx = container_of(work, struct perf_event_context,
3785 orphans_remove.work);
3786
3787 mutex_lock(&ctx->mutex);
3788 list_for_each_entry_safe(event, tmp, &ctx->event_list, event_entry) {
3789 struct perf_event *parent_event = event->parent;
3790
3791 if (!is_orphaned_child(event))
3792 continue;
3793
3794 perf_remove_from_context(event, true);
3795
3796 mutex_lock(&parent_event->child_mutex);
3797 list_del_init(&event->child_list);
3798 mutex_unlock(&parent_event->child_mutex);
3799
3800 free_event(event);
3801 put_event(parent_event);
3802 }
3803
3804 raw_spin_lock_irq(&ctx->lock);
3805 ctx->orphans_remove_sched = false;
3806 raw_spin_unlock_irq(&ctx->lock);
3807 mutex_unlock(&ctx->mutex);
3808
3809 put_ctx(ctx);
3810}
3811
Peter Zijlstra59ed4462009-11-20 22:19:55 +01003812u64 perf_event_read_value(struct perf_event *event, u64 *enabled, u64 *running)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003813{
3814 struct perf_event *child;
3815 u64 total = 0;
3816
Peter Zijlstra59ed4462009-11-20 22:19:55 +01003817 *enabled = 0;
3818 *running = 0;
3819
Peter Zijlstra6f105812009-11-20 22:19:56 +01003820 mutex_lock(&event->child_mutex);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003821 total += perf_event_read(event);
Peter Zijlstra59ed4462009-11-20 22:19:55 +01003822 *enabled += event->total_time_enabled +
3823 atomic64_read(&event->child_total_time_enabled);
3824 *running += event->total_time_running +
3825 atomic64_read(&event->child_total_time_running);
3826
3827 list_for_each_entry(child, &event->child_list, child_list) {
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003828 total += perf_event_read(child);
Peter Zijlstra59ed4462009-11-20 22:19:55 +01003829 *enabled += child->total_time_enabled;
3830 *running += child->total_time_running;
3831 }
Peter Zijlstra6f105812009-11-20 22:19:56 +01003832 mutex_unlock(&event->child_mutex);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003833
3834 return total;
3835}
Arjan van de Venfb0459d2009-09-25 12:25:56 +02003836EXPORT_SYMBOL_GPL(perf_event_read_value);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003837
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003838static int perf_event_read_group(struct perf_event *event,
3839 u64 read_format, char __user *buf)
3840{
3841 struct perf_event *leader = event->group_leader, *sub;
Peter Zijlstra6f105812009-11-20 22:19:56 +01003842 struct perf_event_context *ctx = leader->ctx;
Peter Zijlstraf63a8da2015-01-23 12:24:14 +01003843 int n = 0, size = 0, ret;
Peter Zijlstra59ed4462009-11-20 22:19:55 +01003844 u64 count, enabled, running;
Peter Zijlstraf63a8da2015-01-23 12:24:14 +01003845 u64 values[5];
Peter Zijlstraabf48682009-11-20 22:19:49 +01003846
Peter Zijlstraf63a8da2015-01-23 12:24:14 +01003847 lockdep_assert_held(&ctx->mutex);
3848
Peter Zijlstra59ed4462009-11-20 22:19:55 +01003849 count = perf_event_read_value(leader, &enabled, &running);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003850
3851 values[n++] = 1 + leader->nr_siblings;
Peter Zijlstra59ed4462009-11-20 22:19:55 +01003852 if (read_format & PERF_FORMAT_TOTAL_TIME_ENABLED)
3853 values[n++] = enabled;
3854 if (read_format & PERF_FORMAT_TOTAL_TIME_RUNNING)
3855 values[n++] = running;
Peter Zijlstraabf48682009-11-20 22:19:49 +01003856 values[n++] = count;
3857 if (read_format & PERF_FORMAT_ID)
3858 values[n++] = primary_event_id(leader);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003859
3860 size = n * sizeof(u64);
3861
3862 if (copy_to_user(buf, values, size))
Peter Zijlstraf63a8da2015-01-23 12:24:14 +01003863 return -EFAULT;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003864
Peter Zijlstra6f105812009-11-20 22:19:56 +01003865 ret = size;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003866
3867 list_for_each_entry(sub, &leader->sibling_list, group_entry) {
Peter Zijlstraabf48682009-11-20 22:19:49 +01003868 n = 0;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003869
Peter Zijlstra59ed4462009-11-20 22:19:55 +01003870 values[n++] = perf_event_read_value(sub, &enabled, &running);
Peter Zijlstraabf48682009-11-20 22:19:49 +01003871 if (read_format & PERF_FORMAT_ID)
3872 values[n++] = primary_event_id(sub);
3873
3874 size = n * sizeof(u64);
3875
Stephane Eranian184d3da2009-11-23 21:40:49 -08003876 if (copy_to_user(buf + ret, values, size)) {
Peter Zijlstraf63a8da2015-01-23 12:24:14 +01003877 return -EFAULT;
Peter Zijlstra6f105812009-11-20 22:19:56 +01003878 }
Peter Zijlstraabf48682009-11-20 22:19:49 +01003879
3880 ret += size;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003881 }
3882
Peter Zijlstraabf48682009-11-20 22:19:49 +01003883 return ret;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003884}
3885
3886static int perf_event_read_one(struct perf_event *event,
3887 u64 read_format, char __user *buf)
3888{
Peter Zijlstra59ed4462009-11-20 22:19:55 +01003889 u64 enabled, running;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003890 u64 values[4];
3891 int n = 0;
3892
Peter Zijlstra59ed4462009-11-20 22:19:55 +01003893 values[n++] = perf_event_read_value(event, &enabled, &running);
3894 if (read_format & PERF_FORMAT_TOTAL_TIME_ENABLED)
3895 values[n++] = enabled;
3896 if (read_format & PERF_FORMAT_TOTAL_TIME_RUNNING)
3897 values[n++] = running;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003898 if (read_format & PERF_FORMAT_ID)
3899 values[n++] = primary_event_id(event);
3900
3901 if (copy_to_user(buf, values, n * sizeof(u64)))
3902 return -EFAULT;
3903
3904 return n * sizeof(u64);
3905}
3906
Jiri Olsadc633982014-09-12 13:18:26 +02003907static bool is_event_hup(struct perf_event *event)
3908{
3909 bool no_children;
3910
3911 if (event->state != PERF_EVENT_STATE_EXIT)
3912 return false;
3913
3914 mutex_lock(&event->child_mutex);
3915 no_children = list_empty(&event->child_list);
3916 mutex_unlock(&event->child_mutex);
3917 return no_children;
3918}
3919
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003920/*
3921 * Read the performance event - simple non blocking version for now
3922 */
3923static ssize_t
3924perf_read_hw(struct perf_event *event, char __user *buf, size_t count)
3925{
3926 u64 read_format = event->attr.read_format;
3927 int ret;
3928
3929 /*
3930 * Return end-of-file for a read on a event that is in
3931 * error state (i.e. because it was pinned but it couldn't be
3932 * scheduled on to the CPU at some point).
3933 */
3934 if (event->state == PERF_EVENT_STATE_ERROR)
3935 return 0;
3936
Arnaldo Carvalho de Meloc320c7b2010-10-20 12:50:11 -02003937 if (count < event->read_size)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003938 return -ENOSPC;
3939
3940 WARN_ON_ONCE(event->ctx->parent_ctx);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003941 if (read_format & PERF_FORMAT_GROUP)
3942 ret = perf_event_read_group(event, read_format, buf);
3943 else
3944 ret = perf_event_read_one(event, read_format, buf);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003945
3946 return ret;
3947}
3948
3949static ssize_t
3950perf_read(struct file *file, char __user *buf, size_t count, loff_t *ppos)
3951{
3952 struct perf_event *event = file->private_data;
Peter Zijlstraf63a8da2015-01-23 12:24:14 +01003953 struct perf_event_context *ctx;
3954 int ret;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003955
Peter Zijlstraf63a8da2015-01-23 12:24:14 +01003956 ctx = perf_event_ctx_lock(event);
3957 ret = perf_read_hw(event, buf, count);
3958 perf_event_ctx_unlock(event, ctx);
3959
3960 return ret;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003961}
3962
3963static unsigned int perf_poll(struct file *file, poll_table *wait)
3964{
3965 struct perf_event *event = file->private_data;
Frederic Weisbecker76369132011-05-19 19:55:04 +02003966 struct ring_buffer *rb;
Jiri Olsa61b67682014-08-13 19:39:56 +02003967 unsigned int events = POLLHUP;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003968
Sebastian Andrzej Siewiore708d7a2014-08-04 15:31:08 +02003969 poll_wait(file, &event->waitq, wait);
Jiri Olsa179033b2014-08-07 11:48:26 -04003970
Jiri Olsadc633982014-09-12 13:18:26 +02003971 if (is_event_hup(event))
Jiri Olsa179033b2014-08-07 11:48:26 -04003972 return events;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003973
Peter Zijlstra10c6db12011-11-26 02:47:31 +01003974 /*
Peter Zijlstra9bb5d402013-06-04 10:44:21 +02003975 * Pin the event->rb by taking event->mmap_mutex; otherwise
3976 * perf_event_set_output() can swizzle our rb and make us miss wakeups.
Peter Zijlstra10c6db12011-11-26 02:47:31 +01003977 */
3978 mutex_lock(&event->mmap_mutex);
Peter Zijlstra9bb5d402013-06-04 10:44:21 +02003979 rb = event->rb;
3980 if (rb)
Frederic Weisbecker76369132011-05-19 19:55:04 +02003981 events = atomic_xchg(&rb->poll, 0);
Peter Zijlstra10c6db12011-11-26 02:47:31 +01003982 mutex_unlock(&event->mmap_mutex);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003983 return events;
3984}
3985
Peter Zijlstraf63a8da2015-01-23 12:24:14 +01003986static void _perf_event_reset(struct perf_event *event)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003987{
3988 (void)perf_event_read(event);
Peter Zijlstrae7850592010-05-21 14:43:08 +02003989 local64_set(&event->count, 0);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02003990 perf_event_update_userpage(event);
3991}
3992
3993/*
3994 * Holding the top-level event's child_mutex means that any
3995 * descendant process that has inherited this event will block
3996 * in sync_child_event if it goes to exit, thus satisfying the
3997 * task existence requirements of perf_event_enable/disable.
3998 */
3999static void perf_event_for_each_child(struct perf_event *event,
4000 void (*func)(struct perf_event *))
4001{
4002 struct perf_event *child;
4003
4004 WARN_ON_ONCE(event->ctx->parent_ctx);
Peter Zijlstraf63a8da2015-01-23 12:24:14 +01004005
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004006 mutex_lock(&event->child_mutex);
4007 func(event);
4008 list_for_each_entry(child, &event->child_list, child_list)
4009 func(child);
4010 mutex_unlock(&event->child_mutex);
4011}
4012
4013static void perf_event_for_each(struct perf_event *event,
4014 void (*func)(struct perf_event *))
4015{
4016 struct perf_event_context *ctx = event->ctx;
4017 struct perf_event *sibling;
4018
Peter Zijlstraf63a8da2015-01-23 12:24:14 +01004019 lockdep_assert_held(&ctx->mutex);
4020
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004021 event = event->group_leader;
4022
4023 perf_event_for_each_child(event, func);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004024 list_for_each_entry(sibling, &event->sibling_list, group_entry)
Michael Ellerman724b6da2012-04-11 11:54:13 +10004025 perf_event_for_each_child(sibling, func);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004026}
4027
Peter Zijlstrac7999c62015-08-04 19:22:49 +02004028struct period_event {
4029 struct perf_event *event;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004030 u64 value;
Peter Zijlstrac7999c62015-08-04 19:22:49 +02004031};
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004032
Peter Zijlstrac7999c62015-08-04 19:22:49 +02004033static int __perf_event_period(void *info)
4034{
4035 struct period_event *pe = info;
4036 struct perf_event *event = pe->event;
4037 struct perf_event_context *ctx = event->ctx;
4038 u64 value = pe->value;
4039 bool active;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004040
Peter Zijlstrac7999c62015-08-04 19:22:49 +02004041 raw_spin_lock(&ctx->lock);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004042 if (event->attr.freq) {
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004043 event->attr.sample_freq = value;
4044 } else {
4045 event->attr.sample_period = value;
4046 event->hw.sample_period = value;
4047 }
Peter Zijlstrabad71922013-11-27 13:54:38 +00004048
4049 active = (event->state == PERF_EVENT_STATE_ACTIVE);
4050 if (active) {
4051 perf_pmu_disable(ctx->pmu);
4052 event->pmu->stop(event, PERF_EF_UPDATE);
4053 }
4054
4055 local64_set(&event->hw.period_left, 0);
4056
4057 if (active) {
4058 event->pmu->start(event, PERF_EF_RELOAD);
4059 perf_pmu_enable(ctx->pmu);
4060 }
Peter Zijlstrac7999c62015-08-04 19:22:49 +02004061 raw_spin_unlock(&ctx->lock);
Peter Zijlstrabad71922013-11-27 13:54:38 +00004062
Peter Zijlstrac7999c62015-08-04 19:22:49 +02004063 return 0;
4064}
4065
4066static int perf_event_period(struct perf_event *event, u64 __user *arg)
4067{
4068 struct period_event pe = { .event = event, };
4069 struct perf_event_context *ctx = event->ctx;
4070 struct task_struct *task;
4071 u64 value;
4072
4073 if (!is_sampling_event(event))
4074 return -EINVAL;
4075
4076 if (copy_from_user(&value, arg, sizeof(value)))
4077 return -EFAULT;
4078
4079 if (!value)
4080 return -EINVAL;
4081
4082 if (event->attr.freq && value > sysctl_perf_event_sample_rate)
4083 return -EINVAL;
4084
4085 task = ctx->task;
4086 pe.value = value;
4087
4088 if (!task) {
4089 cpu_function_call(event->cpu, __perf_event_period, &pe);
4090 return 0;
4091 }
4092
4093retry:
4094 if (!task_function_call(task, __perf_event_period, &pe))
4095 return 0;
4096
4097 raw_spin_lock_irq(&ctx->lock);
4098 if (ctx->is_active) {
4099 raw_spin_unlock_irq(&ctx->lock);
4100 task = ctx->task;
4101 goto retry;
4102 }
4103
4104 __perf_event_period(&pe);
Thomas Gleixnere625cce12009-11-17 18:02:06 +01004105 raw_spin_unlock_irq(&ctx->lock);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004106
Peter Zijlstrac7999c62015-08-04 19:22:49 +02004107 return 0;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004108}
4109
Peter Zijlstraac9721f2010-05-27 12:54:41 +02004110static const struct file_operations perf_fops;
4111
Al Viro2903ff02012-08-28 12:52:22 -04004112static inline int perf_fget_light(int fd, struct fd *p)
Peter Zijlstraac9721f2010-05-27 12:54:41 +02004113{
Al Viro2903ff02012-08-28 12:52:22 -04004114 struct fd f = fdget(fd);
4115 if (!f.file)
4116 return -EBADF;
Peter Zijlstraac9721f2010-05-27 12:54:41 +02004117
Al Viro2903ff02012-08-28 12:52:22 -04004118 if (f.file->f_op != &perf_fops) {
4119 fdput(f);
4120 return -EBADF;
Peter Zijlstraac9721f2010-05-27 12:54:41 +02004121 }
Al Viro2903ff02012-08-28 12:52:22 -04004122 *p = f;
4123 return 0;
Peter Zijlstraac9721f2010-05-27 12:54:41 +02004124}
4125
4126static int perf_event_set_output(struct perf_event *event,
4127 struct perf_event *output_event);
Li Zefan6fb29152009-10-15 11:21:42 +08004128static int perf_event_set_filter(struct perf_event *event, void __user *arg);
Alexei Starovoitov25415172015-03-25 12:49:20 -07004129static int perf_event_set_bpf_prog(struct perf_event *event, u32 prog_fd);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004130
Peter Zijlstraf63a8da2015-01-23 12:24:14 +01004131static long _perf_ioctl(struct perf_event *event, unsigned int cmd, unsigned long arg)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004132{
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004133 void (*func)(struct perf_event *);
4134 u32 flags = arg;
4135
4136 switch (cmd) {
4137 case PERF_EVENT_IOC_ENABLE:
Peter Zijlstraf63a8da2015-01-23 12:24:14 +01004138 func = _perf_event_enable;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004139 break;
4140 case PERF_EVENT_IOC_DISABLE:
Peter Zijlstraf63a8da2015-01-23 12:24:14 +01004141 func = _perf_event_disable;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004142 break;
4143 case PERF_EVENT_IOC_RESET:
Peter Zijlstraf63a8da2015-01-23 12:24:14 +01004144 func = _perf_event_reset;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004145 break;
4146
4147 case PERF_EVENT_IOC_REFRESH:
Peter Zijlstraf63a8da2015-01-23 12:24:14 +01004148 return _perf_event_refresh(event, arg);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004149
4150 case PERF_EVENT_IOC_PERIOD:
4151 return perf_event_period(event, (u64 __user *)arg);
4152
Jiri Olsacf4957f2012-10-24 13:37:58 +02004153 case PERF_EVENT_IOC_ID:
4154 {
4155 u64 id = primary_event_id(event);
4156
4157 if (copy_to_user((void __user *)arg, &id, sizeof(id)))
4158 return -EFAULT;
4159 return 0;
4160 }
4161
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004162 case PERF_EVENT_IOC_SET_OUTPUT:
Peter Zijlstraac9721f2010-05-27 12:54:41 +02004163 {
Peter Zijlstraac9721f2010-05-27 12:54:41 +02004164 int ret;
Peter Zijlstraac9721f2010-05-27 12:54:41 +02004165 if (arg != -1) {
Al Viro2903ff02012-08-28 12:52:22 -04004166 struct perf_event *output_event;
4167 struct fd output;
4168 ret = perf_fget_light(arg, &output);
4169 if (ret)
4170 return ret;
4171 output_event = output.file->private_data;
4172 ret = perf_event_set_output(event, output_event);
4173 fdput(output);
4174 } else {
4175 ret = perf_event_set_output(event, NULL);
Peter Zijlstraac9721f2010-05-27 12:54:41 +02004176 }
Peter Zijlstraac9721f2010-05-27 12:54:41 +02004177 return ret;
4178 }
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004179
Li Zefan6fb29152009-10-15 11:21:42 +08004180 case PERF_EVENT_IOC_SET_FILTER:
4181 return perf_event_set_filter(event, (void __user *)arg);
4182
Alexei Starovoitov25415172015-03-25 12:49:20 -07004183 case PERF_EVENT_IOC_SET_BPF:
4184 return perf_event_set_bpf_prog(event, arg);
4185
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004186 default:
4187 return -ENOTTY;
4188 }
4189
4190 if (flags & PERF_IOC_FLAG_GROUP)
4191 perf_event_for_each(event, func);
4192 else
4193 perf_event_for_each_child(event, func);
4194
4195 return 0;
4196}
4197
Peter Zijlstraf63a8da2015-01-23 12:24:14 +01004198static long perf_ioctl(struct file *file, unsigned int cmd, unsigned long arg)
4199{
4200 struct perf_event *event = file->private_data;
4201 struct perf_event_context *ctx;
4202 long ret;
4203
4204 ctx = perf_event_ctx_lock(event);
4205 ret = _perf_ioctl(event, cmd, arg);
4206 perf_event_ctx_unlock(event, ctx);
4207
4208 return ret;
4209}
4210
Pawel Mollb3f20782014-06-13 16:03:32 +01004211#ifdef CONFIG_COMPAT
4212static long perf_compat_ioctl(struct file *file, unsigned int cmd,
4213 unsigned long arg)
4214{
4215 switch (_IOC_NR(cmd)) {
4216 case _IOC_NR(PERF_EVENT_IOC_SET_FILTER):
4217 case _IOC_NR(PERF_EVENT_IOC_ID):
4218 /* Fix up pointer size (usually 4 -> 8 in 32-on-64-bit case */
4219 if (_IOC_SIZE(cmd) == sizeof(compat_uptr_t)) {
4220 cmd &= ~IOCSIZE_MASK;
4221 cmd |= sizeof(void *) << IOCSIZE_SHIFT;
4222 }
4223 break;
4224 }
4225 return perf_ioctl(file, cmd, arg);
4226}
4227#else
4228# define perf_compat_ioctl NULL
4229#endif
4230
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004231int perf_event_task_enable(void)
4232{
Peter Zijlstraf63a8da2015-01-23 12:24:14 +01004233 struct perf_event_context *ctx;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004234 struct perf_event *event;
4235
4236 mutex_lock(&current->perf_event_mutex);
Peter Zijlstraf63a8da2015-01-23 12:24:14 +01004237 list_for_each_entry(event, &current->perf_event_list, owner_entry) {
4238 ctx = perf_event_ctx_lock(event);
4239 perf_event_for_each_child(event, _perf_event_enable);
4240 perf_event_ctx_unlock(event, ctx);
4241 }
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004242 mutex_unlock(&current->perf_event_mutex);
4243
4244 return 0;
4245}
4246
4247int perf_event_task_disable(void)
4248{
Peter Zijlstraf63a8da2015-01-23 12:24:14 +01004249 struct perf_event_context *ctx;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004250 struct perf_event *event;
4251
4252 mutex_lock(&current->perf_event_mutex);
Peter Zijlstraf63a8da2015-01-23 12:24:14 +01004253 list_for_each_entry(event, &current->perf_event_list, owner_entry) {
4254 ctx = perf_event_ctx_lock(event);
4255 perf_event_for_each_child(event, _perf_event_disable);
4256 perf_event_ctx_unlock(event, ctx);
4257 }
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004258 mutex_unlock(&current->perf_event_mutex);
4259
4260 return 0;
4261}
4262
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004263static int perf_event_index(struct perf_event *event)
4264{
Peter Zijlstraa4eaf7f2010-06-16 14:37:10 +02004265 if (event->hw.state & PERF_HES_STOPPED)
4266 return 0;
4267
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004268 if (event->state != PERF_EVENT_STATE_ACTIVE)
4269 return 0;
4270
Peter Zijlstra35edc2a2011-11-20 20:36:02 +01004271 return event->pmu->event_idx(event);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004272}
4273
Eric B Munsonc4794292011-06-23 16:34:38 -04004274static void calc_timer_values(struct perf_event *event,
Peter Zijlstrae3f35412011-11-21 11:43:53 +01004275 u64 *now,
Eric B Munson7f310a52011-06-23 16:34:38 -04004276 u64 *enabled,
4277 u64 *running)
Eric B Munsonc4794292011-06-23 16:34:38 -04004278{
Peter Zijlstrae3f35412011-11-21 11:43:53 +01004279 u64 ctx_time;
Eric B Munsonc4794292011-06-23 16:34:38 -04004280
Peter Zijlstrae3f35412011-11-21 11:43:53 +01004281 *now = perf_clock();
4282 ctx_time = event->shadow_ctx_time + *now;
Eric B Munsonc4794292011-06-23 16:34:38 -04004283 *enabled = ctx_time - event->tstamp_enabled;
4284 *running = ctx_time - event->tstamp_running;
4285}
4286
Peter Zijlstrafa7315872013-09-19 10:16:42 +02004287static void perf_event_init_userpage(struct perf_event *event)
4288{
4289 struct perf_event_mmap_page *userpg;
4290 struct ring_buffer *rb;
4291
4292 rcu_read_lock();
4293 rb = rcu_dereference(event->rb);
4294 if (!rb)
4295 goto unlock;
4296
4297 userpg = rb->user_page;
4298
4299 /* Allow new userspace to detect that bit 0 is deprecated */
4300 userpg->cap_bit0_is_deprecated = 1;
4301 userpg->size = offsetof(struct perf_event_mmap_page, __reserved);
Alexander Shishkine8c6dea2015-01-14 14:18:10 +02004302 userpg->data_offset = PAGE_SIZE;
4303 userpg->data_size = perf_data_size(rb);
Peter Zijlstrafa7315872013-09-19 10:16:42 +02004304
4305unlock:
4306 rcu_read_unlock();
4307}
4308
Andy Lutomirskic1317ec2014-10-24 15:58:11 -07004309void __weak arch_perf_update_userpage(
4310 struct perf_event *event, struct perf_event_mmap_page *userpg, u64 now)
Peter Zijlstrae3f35412011-11-21 11:43:53 +01004311{
4312}
4313
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004314/*
4315 * Callers need to ensure there can be no nesting of this function, otherwise
4316 * the seqlock logic goes bad. We can not serialize this because the arch
4317 * code calls this from NMI context.
4318 */
4319void perf_event_update_userpage(struct perf_event *event)
4320{
4321 struct perf_event_mmap_page *userpg;
Frederic Weisbecker76369132011-05-19 19:55:04 +02004322 struct ring_buffer *rb;
Peter Zijlstrae3f35412011-11-21 11:43:53 +01004323 u64 enabled, running, now;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004324
4325 rcu_read_lock();
Peter Zijlstra5ec4c592013-08-02 21:16:30 +02004326 rb = rcu_dereference(event->rb);
4327 if (!rb)
4328 goto unlock;
4329
Eric B Munson0d641202011-06-24 12:26:26 -04004330 /*
4331 * compute total_time_enabled, total_time_running
4332 * based on snapshot values taken when the event
4333 * was last scheduled in.
4334 *
4335 * we cannot simply called update_context_time()
4336 * because of locking issue as we can be called in
4337 * NMI context
4338 */
Peter Zijlstrae3f35412011-11-21 11:43:53 +01004339 calc_timer_values(event, &now, &enabled, &running);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004340
Frederic Weisbecker76369132011-05-19 19:55:04 +02004341 userpg = rb->user_page;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004342 /*
4343 * Disable preemption so as to not let the corresponding user-space
4344 * spin too long if we get preempted.
4345 */
4346 preempt_disable();
4347 ++userpg->lock;
4348 barrier();
4349 userpg->index = perf_event_index(event);
Peter Zijlstrab5e58792010-05-21 14:43:12 +02004350 userpg->offset = perf_event_count(event);
Peter Zijlstra365a4032011-11-21 20:58:59 +01004351 if (userpg->index)
Peter Zijlstrae7850592010-05-21 14:43:08 +02004352 userpg->offset -= local64_read(&event->hw.prev_count);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004353
Eric B Munson0d641202011-06-24 12:26:26 -04004354 userpg->time_enabled = enabled +
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004355 atomic64_read(&event->child_total_time_enabled);
4356
Eric B Munson0d641202011-06-24 12:26:26 -04004357 userpg->time_running = running +
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004358 atomic64_read(&event->child_total_time_running);
4359
Andy Lutomirskic1317ec2014-10-24 15:58:11 -07004360 arch_perf_update_userpage(event, userpg, now);
Peter Zijlstrae3f35412011-11-21 11:43:53 +01004361
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004362 barrier();
4363 ++userpg->lock;
4364 preempt_enable();
4365unlock:
4366 rcu_read_unlock();
4367}
4368
Peter Zijlstra906010b2009-09-21 16:08:49 +02004369static int perf_mmap_fault(struct vm_area_struct *vma, struct vm_fault *vmf)
4370{
4371 struct perf_event *event = vma->vm_file->private_data;
Frederic Weisbecker76369132011-05-19 19:55:04 +02004372 struct ring_buffer *rb;
Peter Zijlstra906010b2009-09-21 16:08:49 +02004373 int ret = VM_FAULT_SIGBUS;
4374
4375 if (vmf->flags & FAULT_FLAG_MKWRITE) {
4376 if (vmf->pgoff == 0)
4377 ret = 0;
4378 return ret;
4379 }
4380
4381 rcu_read_lock();
Frederic Weisbecker76369132011-05-19 19:55:04 +02004382 rb = rcu_dereference(event->rb);
4383 if (!rb)
Peter Zijlstra906010b2009-09-21 16:08:49 +02004384 goto unlock;
4385
4386 if (vmf->pgoff && (vmf->flags & FAULT_FLAG_WRITE))
4387 goto unlock;
4388
Frederic Weisbecker76369132011-05-19 19:55:04 +02004389 vmf->page = perf_mmap_to_page(rb, vmf->pgoff);
Peter Zijlstra906010b2009-09-21 16:08:49 +02004390 if (!vmf->page)
4391 goto unlock;
4392
4393 get_page(vmf->page);
4394 vmf->page->mapping = vma->vm_file->f_mapping;
4395 vmf->page->index = vmf->pgoff;
4396
4397 ret = 0;
4398unlock:
4399 rcu_read_unlock();
4400
4401 return ret;
4402}
4403
Peter Zijlstra10c6db12011-11-26 02:47:31 +01004404static void ring_buffer_attach(struct perf_event *event,
4405 struct ring_buffer *rb)
4406{
Peter Zijlstrab69cf532014-03-14 10:50:33 +01004407 struct ring_buffer *old_rb = NULL;
Peter Zijlstra10c6db12011-11-26 02:47:31 +01004408 unsigned long flags;
4409
Peter Zijlstrab69cf532014-03-14 10:50:33 +01004410 if (event->rb) {
4411 /*
4412 * Should be impossible, we set this when removing
4413 * event->rb_entry and wait/clear when adding event->rb_entry.
4414 */
4415 WARN_ON_ONCE(event->rcu_pending);
Peter Zijlstra10c6db12011-11-26 02:47:31 +01004416
Peter Zijlstrab69cf532014-03-14 10:50:33 +01004417 old_rb = event->rb;
Peter Zijlstrab69cf532014-03-14 10:50:33 +01004418 spin_lock_irqsave(&old_rb->event_lock, flags);
4419 list_del_rcu(&event->rb_entry);
4420 spin_unlock_irqrestore(&old_rb->event_lock, flags);
Peter Zijlstra10c6db12011-11-26 02:47:31 +01004421
Oleg Nesterov2f993cf2015-05-30 22:04:25 +02004422 event->rcu_batches = get_state_synchronize_rcu();
4423 event->rcu_pending = 1;
Peter Zijlstrab69cf532014-03-14 10:50:33 +01004424 }
Peter Zijlstra10c6db12011-11-26 02:47:31 +01004425
Peter Zijlstrab69cf532014-03-14 10:50:33 +01004426 if (rb) {
Oleg Nesterov2f993cf2015-05-30 22:04:25 +02004427 if (event->rcu_pending) {
4428 cond_synchronize_rcu(event->rcu_batches);
4429 event->rcu_pending = 0;
4430 }
4431
Peter Zijlstrab69cf532014-03-14 10:50:33 +01004432 spin_lock_irqsave(&rb->event_lock, flags);
4433 list_add_rcu(&event->rb_entry, &rb->event_list);
4434 spin_unlock_irqrestore(&rb->event_lock, flags);
4435 }
4436
4437 rcu_assign_pointer(event->rb, rb);
4438
4439 if (old_rb) {
4440 ring_buffer_put(old_rb);
4441 /*
4442 * Since we detached before setting the new rb, so that we
4443 * could attach the new rb, we could have missed a wakeup.
4444 * Provide it now.
4445 */
4446 wake_up_all(&event->waitq);
4447 }
Peter Zijlstra10c6db12011-11-26 02:47:31 +01004448}
4449
4450static void ring_buffer_wakeup(struct perf_event *event)
4451{
4452 struct ring_buffer *rb;
4453
4454 rcu_read_lock();
4455 rb = rcu_dereference(event->rb);
Peter Zijlstra9bb5d402013-06-04 10:44:21 +02004456 if (rb) {
4457 list_for_each_entry_rcu(event, &rb->event_list, rb_entry)
4458 wake_up_all(&event->waitq);
4459 }
Peter Zijlstra10c6db12011-11-26 02:47:31 +01004460 rcu_read_unlock();
4461}
4462
Alexander Shishkinfdc26702015-01-14 14:18:16 +02004463struct ring_buffer *ring_buffer_get(struct perf_event *event)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004464{
Frederic Weisbecker76369132011-05-19 19:55:04 +02004465 struct ring_buffer *rb;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004466
Peter Zijlstraac9721f2010-05-27 12:54:41 +02004467 rcu_read_lock();
Frederic Weisbecker76369132011-05-19 19:55:04 +02004468 rb = rcu_dereference(event->rb);
4469 if (rb) {
4470 if (!atomic_inc_not_zero(&rb->refcount))
4471 rb = NULL;
Peter Zijlstraac9721f2010-05-27 12:54:41 +02004472 }
4473 rcu_read_unlock();
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004474
Frederic Weisbecker76369132011-05-19 19:55:04 +02004475 return rb;
Peter Zijlstraac9721f2010-05-27 12:54:41 +02004476}
4477
Alexander Shishkinfdc26702015-01-14 14:18:16 +02004478void ring_buffer_put(struct ring_buffer *rb)
Peter Zijlstraac9721f2010-05-27 12:54:41 +02004479{
Frederic Weisbecker76369132011-05-19 19:55:04 +02004480 if (!atomic_dec_and_test(&rb->refcount))
Peter Zijlstraac9721f2010-05-27 12:54:41 +02004481 return;
4482
Peter Zijlstra9bb5d402013-06-04 10:44:21 +02004483 WARN_ON_ONCE(!list_empty(&rb->event_list));
Peter Zijlstra10c6db12011-11-26 02:47:31 +01004484
Frederic Weisbecker76369132011-05-19 19:55:04 +02004485 call_rcu(&rb->rcu_head, rb_free_rcu);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004486}
4487
4488static void perf_mmap_open(struct vm_area_struct *vma)
4489{
4490 struct perf_event *event = vma->vm_file->private_data;
4491
4492 atomic_inc(&event->mmap_count);
Peter Zijlstra9bb5d402013-06-04 10:44:21 +02004493 atomic_inc(&event->rb->mmap_count);
Andy Lutomirski1e0fb9e2014-10-24 15:58:10 -07004494
Peter Zijlstra45bfb2e2015-01-14 14:18:11 +02004495 if (vma->vm_pgoff)
4496 atomic_inc(&event->rb->aux_mmap_count);
4497
Andy Lutomirski1e0fb9e2014-10-24 15:58:10 -07004498 if (event->pmu->event_mapped)
4499 event->pmu->event_mapped(event);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004500}
4501
Peter Zijlstra9bb5d402013-06-04 10:44:21 +02004502/*
4503 * A buffer can be mmap()ed multiple times; either directly through the same
4504 * event, or through other events by use of perf_event_set_output().
4505 *
4506 * In order to undo the VM accounting done by perf_mmap() we need to destroy
4507 * the buffer here, where we still have a VM context. This means we need
4508 * to detach all events redirecting to us.
4509 */
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004510static void perf_mmap_close(struct vm_area_struct *vma)
4511{
4512 struct perf_event *event = vma->vm_file->private_data;
4513
Peter Zijlstrab69cf532014-03-14 10:50:33 +01004514 struct ring_buffer *rb = ring_buffer_get(event);
Peter Zijlstra9bb5d402013-06-04 10:44:21 +02004515 struct user_struct *mmap_user = rb->mmap_user;
4516 int mmap_locked = rb->mmap_locked;
4517 unsigned long size = perf_data_size(rb);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004518
Andy Lutomirski1e0fb9e2014-10-24 15:58:10 -07004519 if (event->pmu->event_unmapped)
4520 event->pmu->event_unmapped(event);
4521
Peter Zijlstra45bfb2e2015-01-14 14:18:11 +02004522 /*
4523 * rb->aux_mmap_count will always drop before rb->mmap_count and
4524 * event->mmap_count, so it is ok to use event->mmap_mutex to
4525 * serialize with perf_mmap here.
4526 */
4527 if (rb_has_aux(rb) && vma->vm_pgoff == rb->aux_pgoff &&
4528 atomic_dec_and_mutex_lock(&rb->aux_mmap_count, &event->mmap_mutex)) {
4529 atomic_long_sub(rb->aux_nr_pages, &mmap_user->locked_vm);
4530 vma->vm_mm->pinned_vm -= rb->aux_mmap_locked;
4531
4532 rb_free_aux(rb);
4533 mutex_unlock(&event->mmap_mutex);
4534 }
4535
Peter Zijlstra9bb5d402013-06-04 10:44:21 +02004536 atomic_dec(&rb->mmap_count);
Peter Zijlstraac9721f2010-05-27 12:54:41 +02004537
Peter Zijlstra9bb5d402013-06-04 10:44:21 +02004538 if (!atomic_dec_and_mutex_lock(&event->mmap_count, &event->mmap_mutex))
Peter Zijlstrab69cf532014-03-14 10:50:33 +01004539 goto out_put;
Peter Zijlstra9bb5d402013-06-04 10:44:21 +02004540
Peter Zijlstrab69cf532014-03-14 10:50:33 +01004541 ring_buffer_attach(event, NULL);
Peter Zijlstra9bb5d402013-06-04 10:44:21 +02004542 mutex_unlock(&event->mmap_mutex);
4543
4544 /* If there's still other mmap()s of this buffer, we're done. */
Peter Zijlstrab69cf532014-03-14 10:50:33 +01004545 if (atomic_read(&rb->mmap_count))
4546 goto out_put;
Peter Zijlstra9bb5d402013-06-04 10:44:21 +02004547
4548 /*
4549 * No other mmap()s, detach from all other events that might redirect
4550 * into the now unreachable buffer. Somewhat complicated by the
4551 * fact that rb::event_lock otherwise nests inside mmap_mutex.
4552 */
4553again:
4554 rcu_read_lock();
4555 list_for_each_entry_rcu(event, &rb->event_list, rb_entry) {
4556 if (!atomic_long_inc_not_zero(&event->refcount)) {
4557 /*
4558 * This event is en-route to free_event() which will
4559 * detach it and remove it from the list.
4560 */
4561 continue;
4562 }
4563 rcu_read_unlock();
4564
4565 mutex_lock(&event->mmap_mutex);
4566 /*
4567 * Check we didn't race with perf_event_set_output() which can
4568 * swizzle the rb from under us while we were waiting to
4569 * acquire mmap_mutex.
4570 *
4571 * If we find a different rb; ignore this event, a next
4572 * iteration will no longer find it on the list. We have to
4573 * still restart the iteration to make sure we're not now
4574 * iterating the wrong list.
4575 */
Peter Zijlstrab69cf532014-03-14 10:50:33 +01004576 if (event->rb == rb)
4577 ring_buffer_attach(event, NULL);
4578
Peter Zijlstra9bb5d402013-06-04 10:44:21 +02004579 mutex_unlock(&event->mmap_mutex);
4580 put_event(event);
4581
4582 /*
4583 * Restart the iteration; either we're on the wrong list or
4584 * destroyed its integrity by doing a deletion.
4585 */
4586 goto again;
4587 }
4588 rcu_read_unlock();
4589
4590 /*
4591 * It could be there's still a few 0-ref events on the list; they'll
4592 * get cleaned up by free_event() -- they'll also still have their
4593 * ref on the rb and will free it whenever they are done with it.
4594 *
4595 * Aside from that, this buffer is 'fully' detached and unmapped,
4596 * undo the VM accounting.
4597 */
4598
4599 atomic_long_sub((size >> PAGE_SHIFT) + 1, &mmap_user->locked_vm);
4600 vma->vm_mm->pinned_vm -= mmap_locked;
4601 free_uid(mmap_user);
4602
Peter Zijlstrab69cf532014-03-14 10:50:33 +01004603out_put:
Peter Zijlstra9bb5d402013-06-04 10:44:21 +02004604 ring_buffer_put(rb); /* could be last */
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004605}
4606
Alexey Dobriyanf0f37e2f2009-09-27 22:29:37 +04004607static const struct vm_operations_struct perf_mmap_vmops = {
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004608 .open = perf_mmap_open,
Peter Zijlstra45bfb2e2015-01-14 14:18:11 +02004609 .close = perf_mmap_close, /* non mergable */
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004610 .fault = perf_mmap_fault,
4611 .page_mkwrite = perf_mmap_fault,
4612};
4613
4614static int perf_mmap(struct file *file, struct vm_area_struct *vma)
4615{
4616 struct perf_event *event = file->private_data;
4617 unsigned long user_locked, user_lock_limit;
4618 struct user_struct *user = current_user();
4619 unsigned long locked, lock_limit;
Peter Zijlstra45bfb2e2015-01-14 14:18:11 +02004620 struct ring_buffer *rb = NULL;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004621 unsigned long vma_size;
4622 unsigned long nr_pages;
Peter Zijlstra45bfb2e2015-01-14 14:18:11 +02004623 long user_extra = 0, extra = 0;
Peter Zijlstrad57e34f2010-05-28 19:41:35 +02004624 int ret = 0, flags = 0;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004625
Peter Zijlstrac7920612010-05-18 10:33:24 +02004626 /*
4627 * Don't allow mmap() of inherited per-task counters. This would
4628 * create a performance issue due to all children writing to the
Frederic Weisbecker76369132011-05-19 19:55:04 +02004629 * same rb.
Peter Zijlstrac7920612010-05-18 10:33:24 +02004630 */
4631 if (event->cpu == -1 && event->attr.inherit)
4632 return -EINVAL;
4633
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004634 if (!(vma->vm_flags & VM_SHARED))
4635 return -EINVAL;
4636
4637 vma_size = vma->vm_end - vma->vm_start;
Peter Zijlstra45bfb2e2015-01-14 14:18:11 +02004638
4639 if (vma->vm_pgoff == 0) {
4640 nr_pages = (vma_size / PAGE_SIZE) - 1;
4641 } else {
4642 /*
4643 * AUX area mapping: if rb->aux_nr_pages != 0, it's already
4644 * mapped, all subsequent mappings should have the same size
4645 * and offset. Must be above the normal perf buffer.
4646 */
4647 u64 aux_offset, aux_size;
4648
4649 if (!event->rb)
4650 return -EINVAL;
4651
4652 nr_pages = vma_size / PAGE_SIZE;
4653
4654 mutex_lock(&event->mmap_mutex);
4655 ret = -EINVAL;
4656
4657 rb = event->rb;
4658 if (!rb)
4659 goto aux_unlock;
4660
4661 aux_offset = ACCESS_ONCE(rb->user_page->aux_offset);
4662 aux_size = ACCESS_ONCE(rb->user_page->aux_size);
4663
4664 if (aux_offset < perf_data_size(rb) + PAGE_SIZE)
4665 goto aux_unlock;
4666
4667 if (aux_offset != vma->vm_pgoff << PAGE_SHIFT)
4668 goto aux_unlock;
4669
4670 /* already mapped with a different offset */
4671 if (rb_has_aux(rb) && rb->aux_pgoff != vma->vm_pgoff)
4672 goto aux_unlock;
4673
4674 if (aux_size != vma_size || aux_size != nr_pages * PAGE_SIZE)
4675 goto aux_unlock;
4676
4677 /* already mapped with a different size */
4678 if (rb_has_aux(rb) && rb->aux_nr_pages != nr_pages)
4679 goto aux_unlock;
4680
4681 if (!is_power_of_2(nr_pages))
4682 goto aux_unlock;
4683
4684 if (!atomic_inc_not_zero(&rb->mmap_count))
4685 goto aux_unlock;
4686
4687 if (rb_has_aux(rb)) {
4688 atomic_inc(&rb->aux_mmap_count);
4689 ret = 0;
4690 goto unlock;
4691 }
4692
4693 atomic_set(&rb->aux_mmap_count, 1);
4694 user_extra = nr_pages;
4695
4696 goto accounting;
4697 }
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004698
4699 /*
Frederic Weisbecker76369132011-05-19 19:55:04 +02004700 * If we have rb pages ensure they're a power-of-two number, so we
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004701 * can do bitmasks instead of modulo.
4702 */
Kan Liang2ed11312015-03-02 02:14:26 -05004703 if (nr_pages != 0 && !is_power_of_2(nr_pages))
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004704 return -EINVAL;
4705
4706 if (vma_size != PAGE_SIZE * (1 + nr_pages))
4707 return -EINVAL;
4708
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004709 WARN_ON_ONCE(event->ctx->parent_ctx);
Peter Zijlstra9bb5d402013-06-04 10:44:21 +02004710again:
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004711 mutex_lock(&event->mmap_mutex);
Frederic Weisbecker76369132011-05-19 19:55:04 +02004712 if (event->rb) {
Peter Zijlstra9bb5d402013-06-04 10:44:21 +02004713 if (event->rb->nr_pages != nr_pages) {
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004714 ret = -EINVAL;
Peter Zijlstra9bb5d402013-06-04 10:44:21 +02004715 goto unlock;
4716 }
4717
4718 if (!atomic_inc_not_zero(&event->rb->mmap_count)) {
4719 /*
4720 * Raced against perf_mmap_close() through
4721 * perf_event_set_output(). Try again, hope for better
4722 * luck.
4723 */
4724 mutex_unlock(&event->mmap_mutex);
4725 goto again;
4726 }
4727
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004728 goto unlock;
4729 }
4730
4731 user_extra = nr_pages + 1;
Peter Zijlstra45bfb2e2015-01-14 14:18:11 +02004732
4733accounting:
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004734 user_lock_limit = sysctl_perf_event_mlock >> (PAGE_SHIFT - 10);
4735
4736 /*
4737 * Increase the limit linearly with more CPUs:
4738 */
4739 user_lock_limit *= num_online_cpus();
4740
4741 user_locked = atomic_long_read(&user->locked_vm) + user_extra;
4742
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004743 if (user_locked > user_lock_limit)
4744 extra = user_locked - user_lock_limit;
4745
Jiri Slaby78d7d402010-03-05 13:42:54 -08004746 lock_limit = rlimit(RLIMIT_MEMLOCK);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004747 lock_limit >>= PAGE_SHIFT;
Christoph Lameterbc3e53f2011-10-31 17:07:30 -07004748 locked = vma->vm_mm->pinned_vm + extra;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004749
4750 if ((locked > lock_limit) && perf_paranoid_tracepoint_raw() &&
4751 !capable(CAP_IPC_LOCK)) {
4752 ret = -EPERM;
4753 goto unlock;
4754 }
4755
Peter Zijlstra45bfb2e2015-01-14 14:18:11 +02004756 WARN_ON(!rb && event->rb);
Peter Zijlstra906010b2009-09-21 16:08:49 +02004757
Peter Zijlstrad57e34f2010-05-28 19:41:35 +02004758 if (vma->vm_flags & VM_WRITE)
Frederic Weisbecker76369132011-05-19 19:55:04 +02004759 flags |= RING_BUFFER_WRITABLE;
Peter Zijlstrad57e34f2010-05-28 19:41:35 +02004760
Frederic Weisbecker76369132011-05-19 19:55:04 +02004761 if (!rb) {
Peter Zijlstra45bfb2e2015-01-14 14:18:11 +02004762 rb = rb_alloc(nr_pages,
4763 event->attr.watermark ? event->attr.wakeup_watermark : 0,
4764 event->cpu, flags);
4765
4766 if (!rb) {
4767 ret = -ENOMEM;
4768 goto unlock;
4769 }
4770
4771 atomic_set(&rb->mmap_count, 1);
4772 rb->mmap_user = get_current_user();
4773 rb->mmap_locked = extra;
4774
4775 ring_buffer_attach(event, rb);
4776
4777 perf_event_init_userpage(event);
4778 perf_event_update_userpage(event);
4779 } else {
Alexander Shishkin1a594132015-01-14 14:18:18 +02004780 ret = rb_alloc_aux(rb, event, vma->vm_pgoff, nr_pages,
4781 event->attr.aux_watermark, flags);
Peter Zijlstra45bfb2e2015-01-14 14:18:11 +02004782 if (!ret)
4783 rb->aux_mmap_locked = extra;
Peter Zijlstraac9721f2010-05-27 12:54:41 +02004784 }
Peter Zijlstra26cb63a2013-05-28 10:55:48 +02004785
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004786unlock:
Peter Zijlstra45bfb2e2015-01-14 14:18:11 +02004787 if (!ret) {
4788 atomic_long_add(user_extra, &user->locked_vm);
4789 vma->vm_mm->pinned_vm += extra;
4790
Peter Zijlstraac9721f2010-05-27 12:54:41 +02004791 atomic_inc(&event->mmap_count);
Peter Zijlstra45bfb2e2015-01-14 14:18:11 +02004792 } else if (rb) {
4793 atomic_dec(&rb->mmap_count);
4794 }
4795aux_unlock:
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004796 mutex_unlock(&event->mmap_mutex);
4797
Peter Zijlstra9bb5d402013-06-04 10:44:21 +02004798 /*
4799 * Since pinned accounting is per vm we cannot allow fork() to copy our
4800 * vma.
4801 */
Peter Zijlstra26cb63a2013-05-28 10:55:48 +02004802 vma->vm_flags |= VM_DONTCOPY | VM_DONTEXPAND | VM_DONTDUMP;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004803 vma->vm_ops = &perf_mmap_vmops;
4804
Andy Lutomirski1e0fb9e2014-10-24 15:58:10 -07004805 if (event->pmu->event_mapped)
4806 event->pmu->event_mapped(event);
4807
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004808 return ret;
4809}
4810
4811static int perf_fasync(int fd, struct file *filp, int on)
4812{
Al Viro496ad9a2013-01-23 17:07:38 -05004813 struct inode *inode = file_inode(filp);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004814 struct perf_event *event = filp->private_data;
4815 int retval;
4816
4817 mutex_lock(&inode->i_mutex);
4818 retval = fasync_helper(fd, filp, on, &event->fasync);
4819 mutex_unlock(&inode->i_mutex);
4820
4821 if (retval < 0)
4822 return retval;
4823
4824 return 0;
4825}
4826
4827static const struct file_operations perf_fops = {
Arnd Bergmann3326c1c2010-03-23 19:09:33 +01004828 .llseek = no_llseek,
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004829 .release = perf_release,
4830 .read = perf_read,
4831 .poll = perf_poll,
4832 .unlocked_ioctl = perf_ioctl,
Pawel Mollb3f20782014-06-13 16:03:32 +01004833 .compat_ioctl = perf_compat_ioctl,
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004834 .mmap = perf_mmap,
4835 .fasync = perf_fasync,
4836};
4837
4838/*
4839 * Perf event wakeup
4840 *
4841 * If there's data, ensure we set the poll() state and publish everything
4842 * to user-space before waking everybody up.
4843 */
4844
Peter Zijlstrafed66e2cd2015-06-11 10:32:01 +02004845static inline struct fasync_struct **perf_event_fasync(struct perf_event *event)
4846{
4847 /* only the parent has fasync state */
4848 if (event->parent)
4849 event = event->parent;
4850 return &event->fasync;
4851}
4852
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004853void perf_event_wakeup(struct perf_event *event)
4854{
Peter Zijlstra10c6db12011-11-26 02:47:31 +01004855 ring_buffer_wakeup(event);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004856
4857 if (event->pending_kill) {
Peter Zijlstrafed66e2cd2015-06-11 10:32:01 +02004858 kill_fasync(perf_event_fasync(event), SIGIO, event->pending_kill);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004859 event->pending_kill = 0;
4860 }
4861}
4862
Peter Zijlstrae360adb2010-10-14 14:01:34 +08004863static void perf_pending_event(struct irq_work *entry)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004864{
4865 struct perf_event *event = container_of(entry,
4866 struct perf_event, pending);
Peter Zijlstrad5252112015-02-19 18:03:11 +01004867 int rctx;
4868
4869 rctx = perf_swevent_get_recursion_context();
4870 /*
4871 * If we 'fail' here, that's OK, it means recursion is already disabled
4872 * and we won't recurse 'further'.
4873 */
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004874
4875 if (event->pending_disable) {
4876 event->pending_disable = 0;
4877 __perf_event_disable(event);
4878 }
4879
4880 if (event->pending_wakeup) {
4881 event->pending_wakeup = 0;
4882 perf_event_wakeup(event);
4883 }
Peter Zijlstrad5252112015-02-19 18:03:11 +01004884
4885 if (rctx >= 0)
4886 perf_swevent_put_recursion_context(rctx);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004887}
4888
Ingo Molnarcdd6c482009-09-21 12:02:48 +02004889/*
Zhang, Yanmin39447b32010-04-19 13:32:41 +08004890 * We assume there is only KVM supporting the callbacks.
4891 * Later on, we might change it to a list if there is
4892 * another virtualization implementation supporting the callbacks.
4893 */
4894struct perf_guest_info_callbacks *perf_guest_cbs;
4895
4896int perf_register_guest_info_callbacks(struct perf_guest_info_callbacks *cbs)
4897{
4898 perf_guest_cbs = cbs;
4899 return 0;
4900}
4901EXPORT_SYMBOL_GPL(perf_register_guest_info_callbacks);
4902
4903int perf_unregister_guest_info_callbacks(struct perf_guest_info_callbacks *cbs)
4904{
4905 perf_guest_cbs = NULL;
4906 return 0;
4907}
4908EXPORT_SYMBOL_GPL(perf_unregister_guest_info_callbacks);
4909
Jiri Olsa40189942012-08-07 15:20:37 +02004910static void
4911perf_output_sample_regs(struct perf_output_handle *handle,
4912 struct pt_regs *regs, u64 mask)
4913{
4914 int bit;
4915
4916 for_each_set_bit(bit, (const unsigned long *) &mask,
4917 sizeof(mask) * BITS_PER_BYTE) {
4918 u64 val;
4919
4920 val = perf_reg_value(regs, bit);
4921 perf_output_put(handle, val);
4922 }
4923}
4924
Stephane Eranian60e23642014-09-24 13:48:37 +02004925static void perf_sample_regs_user(struct perf_regs *regs_user,
Andy Lutomirski88a7c262015-01-04 10:36:19 -08004926 struct pt_regs *regs,
4927 struct pt_regs *regs_user_copy)
Jiri Olsa40189942012-08-07 15:20:37 +02004928{
Andy Lutomirski88a7c262015-01-04 10:36:19 -08004929 if (user_mode(regs)) {
4930 regs_user->abi = perf_reg_abi(current);
Peter Zijlstra25657112014-09-24 13:48:42 +02004931 regs_user->regs = regs;
Andy Lutomirski88a7c262015-01-04 10:36:19 -08004932 } else if (current->mm) {
4933 perf_get_regs_user(regs_user, regs, regs_user_copy);
Peter Zijlstra25657112014-09-24 13:48:42 +02004934 } else {
4935 regs_user->abi = PERF_SAMPLE_REGS_ABI_NONE;
4936 regs_user->regs = NULL;
Jiri Olsa40189942012-08-07 15:20:37 +02004937 }
4938}
4939
Stephane Eranian60e23642014-09-24 13:48:37 +02004940static void perf_sample_regs_intr(struct perf_regs *regs_intr,
4941 struct pt_regs *regs)
4942{
4943 regs_intr->regs = regs;
4944 regs_intr->abi = perf_reg_abi(current);
4945}
4946
4947
Jiri Olsac5ebced2012-08-07 15:20:40 +02004948/*
4949 * Get remaining task size from user stack pointer.
4950 *
4951 * It'd be better to take stack vma map and limit this more
4952 * precisly, but there's no way to get it safely under interrupt,
4953 * so using TASK_SIZE as limit.
4954 */
4955static u64 perf_ustack_task_size(struct pt_regs *regs)
4956{
4957 unsigned long addr = perf_user_stack_pointer(regs);
4958
4959 if (!addr || addr >= TASK_SIZE)
4960 return 0;
4961
4962 return TASK_SIZE - addr;
4963}
4964
4965static u16
4966perf_sample_ustack_size(u16 stack_size, u16 header_size,
4967 struct pt_regs *regs)
4968{
4969 u64 task_size;
4970
4971 /* No regs, no stack pointer, no dump. */
4972 if (!regs)
4973 return 0;
4974
4975 /*
4976 * Check if we fit in with the requested stack size into the:
4977 * - TASK_SIZE
4978 * If we don't, we limit the size to the TASK_SIZE.
4979 *
4980 * - remaining sample size
4981 * If we don't, we customize the stack size to
4982 * fit in to the remaining sample size.
4983 */
4984
4985 task_size = min((u64) USHRT_MAX, perf_ustack_task_size(regs));
4986 stack_size = min(stack_size, (u16) task_size);
4987
4988 /* Current header size plus static size and dynamic size. */
4989 header_size += 2 * sizeof(u64);
4990
4991 /* Do we fit in with the current stack dump size? */
4992 if ((u16) (header_size + stack_size) < header_size) {
4993 /*
4994 * If we overflow the maximum size for the sample,
4995 * we customize the stack dump size to fit in.
4996 */
4997 stack_size = USHRT_MAX - header_size - sizeof(u64);
4998 stack_size = round_up(stack_size, sizeof(u64));
4999 }
5000
5001 return stack_size;
5002}
5003
5004static void
5005perf_output_sample_ustack(struct perf_output_handle *handle, u64 dump_size,
5006 struct pt_regs *regs)
5007{
5008 /* Case of a kernel thread, nothing to dump */
5009 if (!regs) {
5010 u64 size = 0;
5011 perf_output_put(handle, size);
5012 } else {
5013 unsigned long sp;
5014 unsigned int rem;
5015 u64 dyn_size;
5016
5017 /*
5018 * We dump:
5019 * static size
5020 * - the size requested by user or the best one we can fit
5021 * in to the sample max size
5022 * data
5023 * - user stack dump data
5024 * dynamic size
5025 * - the actual dumped size
5026 */
5027
5028 /* Static size. */
5029 perf_output_put(handle, dump_size);
5030
5031 /* Data. */
5032 sp = perf_user_stack_pointer(regs);
5033 rem = __output_copy_user(handle, (void *) sp, dump_size);
5034 dyn_size = dump_size - rem;
5035
5036 perf_output_skip(handle, rem);
5037
5038 /* Dynamic size. */
5039 perf_output_put(handle, dyn_size);
5040 }
5041}
5042
Arnaldo Carvalho de Meloc980d102010-12-04 23:02:20 -02005043static void __perf_event_header__init_id(struct perf_event_header *header,
5044 struct perf_sample_data *data,
5045 struct perf_event *event)
Arnaldo Carvalho de Melo6844c092010-12-03 16:36:35 -02005046{
5047 u64 sample_type = event->attr.sample_type;
5048
5049 data->type = sample_type;
5050 header->size += event->id_header_size;
5051
5052 if (sample_type & PERF_SAMPLE_TID) {
5053 /* namespace issues */
5054 data->tid_entry.pid = perf_event_pid(event, current);
5055 data->tid_entry.tid = perf_event_tid(event, current);
5056 }
5057
5058 if (sample_type & PERF_SAMPLE_TIME)
Peter Zijlstra34f43922015-02-20 14:05:38 +01005059 data->time = perf_event_clock(event);
Arnaldo Carvalho de Melo6844c092010-12-03 16:36:35 -02005060
Adrian Hunterff3d5272013-08-27 11:23:07 +03005061 if (sample_type & (PERF_SAMPLE_ID | PERF_SAMPLE_IDENTIFIER))
Arnaldo Carvalho de Melo6844c092010-12-03 16:36:35 -02005062 data->id = primary_event_id(event);
5063
5064 if (sample_type & PERF_SAMPLE_STREAM_ID)
5065 data->stream_id = event->id;
5066
5067 if (sample_type & PERF_SAMPLE_CPU) {
5068 data->cpu_entry.cpu = raw_smp_processor_id();
5069 data->cpu_entry.reserved = 0;
5070 }
5071}
5072
Frederic Weisbecker76369132011-05-19 19:55:04 +02005073void perf_event_header__init_id(struct perf_event_header *header,
5074 struct perf_sample_data *data,
5075 struct perf_event *event)
Arnaldo Carvalho de Meloc980d102010-12-04 23:02:20 -02005076{
5077 if (event->attr.sample_id_all)
5078 __perf_event_header__init_id(header, data, event);
5079}
5080
5081static void __perf_event__output_id_sample(struct perf_output_handle *handle,
5082 struct perf_sample_data *data)
5083{
5084 u64 sample_type = data->type;
5085
5086 if (sample_type & PERF_SAMPLE_TID)
5087 perf_output_put(handle, data->tid_entry);
5088
5089 if (sample_type & PERF_SAMPLE_TIME)
5090 perf_output_put(handle, data->time);
5091
5092 if (sample_type & PERF_SAMPLE_ID)
5093 perf_output_put(handle, data->id);
5094
5095 if (sample_type & PERF_SAMPLE_STREAM_ID)
5096 perf_output_put(handle, data->stream_id);
5097
5098 if (sample_type & PERF_SAMPLE_CPU)
5099 perf_output_put(handle, data->cpu_entry);
Adrian Hunterff3d5272013-08-27 11:23:07 +03005100
5101 if (sample_type & PERF_SAMPLE_IDENTIFIER)
5102 perf_output_put(handle, data->id);
Arnaldo Carvalho de Meloc980d102010-12-04 23:02:20 -02005103}
5104
Frederic Weisbecker76369132011-05-19 19:55:04 +02005105void perf_event__output_id_sample(struct perf_event *event,
5106 struct perf_output_handle *handle,
5107 struct perf_sample_data *sample)
Arnaldo Carvalho de Meloc980d102010-12-04 23:02:20 -02005108{
5109 if (event->attr.sample_id_all)
5110 __perf_event__output_id_sample(handle, sample);
5111}
5112
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005113static void perf_output_read_one(struct perf_output_handle *handle,
Stephane Eranianeed01522010-10-26 16:08:01 +02005114 struct perf_event *event,
5115 u64 enabled, u64 running)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005116{
5117 u64 read_format = event->attr.read_format;
5118 u64 values[4];
5119 int n = 0;
5120
Peter Zijlstrab5e58792010-05-21 14:43:12 +02005121 values[n++] = perf_event_count(event);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005122 if (read_format & PERF_FORMAT_TOTAL_TIME_ENABLED) {
Stephane Eranianeed01522010-10-26 16:08:01 +02005123 values[n++] = enabled +
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005124 atomic64_read(&event->child_total_time_enabled);
5125 }
5126 if (read_format & PERF_FORMAT_TOTAL_TIME_RUNNING) {
Stephane Eranianeed01522010-10-26 16:08:01 +02005127 values[n++] = running +
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005128 atomic64_read(&event->child_total_time_running);
5129 }
5130 if (read_format & PERF_FORMAT_ID)
5131 values[n++] = primary_event_id(event);
5132
Frederic Weisbecker76369132011-05-19 19:55:04 +02005133 __output_copy(handle, values, n * sizeof(u64));
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005134}
5135
5136/*
5137 * XXX PERF_FORMAT_GROUP vs inherited events seems difficult.
5138 */
5139static void perf_output_read_group(struct perf_output_handle *handle,
Stephane Eranianeed01522010-10-26 16:08:01 +02005140 struct perf_event *event,
5141 u64 enabled, u64 running)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005142{
5143 struct perf_event *leader = event->group_leader, *sub;
5144 u64 read_format = event->attr.read_format;
5145 u64 values[5];
5146 int n = 0;
5147
5148 values[n++] = 1 + leader->nr_siblings;
5149
5150 if (read_format & PERF_FORMAT_TOTAL_TIME_ENABLED)
Stephane Eranianeed01522010-10-26 16:08:01 +02005151 values[n++] = enabled;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005152
5153 if (read_format & PERF_FORMAT_TOTAL_TIME_RUNNING)
Stephane Eranianeed01522010-10-26 16:08:01 +02005154 values[n++] = running;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005155
5156 if (leader != event)
5157 leader->pmu->read(leader);
5158
Peter Zijlstrab5e58792010-05-21 14:43:12 +02005159 values[n++] = perf_event_count(leader);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005160 if (read_format & PERF_FORMAT_ID)
5161 values[n++] = primary_event_id(leader);
5162
Frederic Weisbecker76369132011-05-19 19:55:04 +02005163 __output_copy(handle, values, n * sizeof(u64));
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005164
5165 list_for_each_entry(sub, &leader->sibling_list, group_entry) {
5166 n = 0;
5167
Jiri Olsa6f5ab002012-10-15 20:13:45 +02005168 if ((sub != event) &&
5169 (sub->state == PERF_EVENT_STATE_ACTIVE))
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005170 sub->pmu->read(sub);
5171
Peter Zijlstrab5e58792010-05-21 14:43:12 +02005172 values[n++] = perf_event_count(sub);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005173 if (read_format & PERF_FORMAT_ID)
5174 values[n++] = primary_event_id(sub);
5175
Frederic Weisbecker76369132011-05-19 19:55:04 +02005176 __output_copy(handle, values, n * sizeof(u64));
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005177 }
5178}
5179
Stephane Eranianeed01522010-10-26 16:08:01 +02005180#define PERF_FORMAT_TOTAL_TIMES (PERF_FORMAT_TOTAL_TIME_ENABLED|\
5181 PERF_FORMAT_TOTAL_TIME_RUNNING)
5182
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005183static void perf_output_read(struct perf_output_handle *handle,
5184 struct perf_event *event)
5185{
Peter Zijlstrae3f35412011-11-21 11:43:53 +01005186 u64 enabled = 0, running = 0, now;
Stephane Eranianeed01522010-10-26 16:08:01 +02005187 u64 read_format = event->attr.read_format;
5188
5189 /*
5190 * compute total_time_enabled, total_time_running
5191 * based on snapshot values taken when the event
5192 * was last scheduled in.
5193 *
5194 * we cannot simply called update_context_time()
5195 * because of locking issue as we are called in
5196 * NMI context
5197 */
Eric B Munsonc4794292011-06-23 16:34:38 -04005198 if (read_format & PERF_FORMAT_TOTAL_TIMES)
Peter Zijlstrae3f35412011-11-21 11:43:53 +01005199 calc_timer_values(event, &now, &enabled, &running);
Stephane Eranianeed01522010-10-26 16:08:01 +02005200
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005201 if (event->attr.read_format & PERF_FORMAT_GROUP)
Stephane Eranianeed01522010-10-26 16:08:01 +02005202 perf_output_read_group(handle, event, enabled, running);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005203 else
Stephane Eranianeed01522010-10-26 16:08:01 +02005204 perf_output_read_one(handle, event, enabled, running);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005205}
5206
5207void perf_output_sample(struct perf_output_handle *handle,
5208 struct perf_event_header *header,
5209 struct perf_sample_data *data,
5210 struct perf_event *event)
5211{
5212 u64 sample_type = data->type;
5213
5214 perf_output_put(handle, *header);
5215
Adrian Hunterff3d5272013-08-27 11:23:07 +03005216 if (sample_type & PERF_SAMPLE_IDENTIFIER)
5217 perf_output_put(handle, data->id);
5218
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005219 if (sample_type & PERF_SAMPLE_IP)
5220 perf_output_put(handle, data->ip);
5221
5222 if (sample_type & PERF_SAMPLE_TID)
5223 perf_output_put(handle, data->tid_entry);
5224
5225 if (sample_type & PERF_SAMPLE_TIME)
5226 perf_output_put(handle, data->time);
5227
5228 if (sample_type & PERF_SAMPLE_ADDR)
5229 perf_output_put(handle, data->addr);
5230
5231 if (sample_type & PERF_SAMPLE_ID)
5232 perf_output_put(handle, data->id);
5233
5234 if (sample_type & PERF_SAMPLE_STREAM_ID)
5235 perf_output_put(handle, data->stream_id);
5236
5237 if (sample_type & PERF_SAMPLE_CPU)
5238 perf_output_put(handle, data->cpu_entry);
5239
5240 if (sample_type & PERF_SAMPLE_PERIOD)
5241 perf_output_put(handle, data->period);
5242
5243 if (sample_type & PERF_SAMPLE_READ)
5244 perf_output_read(handle, event);
5245
5246 if (sample_type & PERF_SAMPLE_CALLCHAIN) {
5247 if (data->callchain) {
5248 int size = 1;
5249
5250 if (data->callchain)
5251 size += data->callchain->nr;
5252
5253 size *= sizeof(u64);
5254
Frederic Weisbecker76369132011-05-19 19:55:04 +02005255 __output_copy(handle, data->callchain, size);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005256 } else {
5257 u64 nr = 0;
5258 perf_output_put(handle, nr);
5259 }
5260 }
5261
5262 if (sample_type & PERF_SAMPLE_RAW) {
5263 if (data->raw) {
5264 perf_output_put(handle, data->raw->size);
Frederic Weisbecker76369132011-05-19 19:55:04 +02005265 __output_copy(handle, data->raw->data,
5266 data->raw->size);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005267 } else {
5268 struct {
5269 u32 size;
5270 u32 data;
5271 } raw = {
5272 .size = sizeof(u32),
5273 .data = 0,
5274 };
5275 perf_output_put(handle, raw);
5276 }
5277 }
Peter Zijlstraa7ac67e2011-06-27 16:47:16 +02005278
Stephane Eranianbce38cd2012-02-09 23:20:51 +01005279 if (sample_type & PERF_SAMPLE_BRANCH_STACK) {
5280 if (data->br_stack) {
5281 size_t size;
5282
5283 size = data->br_stack->nr
5284 * sizeof(struct perf_branch_entry);
5285
5286 perf_output_put(handle, data->br_stack->nr);
5287 perf_output_copy(handle, data->br_stack->entries, size);
5288 } else {
5289 /*
5290 * we always store at least the value of nr
5291 */
5292 u64 nr = 0;
5293 perf_output_put(handle, nr);
5294 }
5295 }
Jiri Olsa40189942012-08-07 15:20:37 +02005296
5297 if (sample_type & PERF_SAMPLE_REGS_USER) {
5298 u64 abi = data->regs_user.abi;
5299
5300 /*
5301 * If there are no regs to dump, notice it through
5302 * first u64 being zero (PERF_SAMPLE_REGS_ABI_NONE).
5303 */
5304 perf_output_put(handle, abi);
5305
5306 if (abi) {
5307 u64 mask = event->attr.sample_regs_user;
5308 perf_output_sample_regs(handle,
5309 data->regs_user.regs,
5310 mask);
5311 }
5312 }
Jiri Olsac5ebced2012-08-07 15:20:40 +02005313
Peter Zijlstraa5cdd402013-07-16 17:09:07 +02005314 if (sample_type & PERF_SAMPLE_STACK_USER) {
Jiri Olsac5ebced2012-08-07 15:20:40 +02005315 perf_output_sample_ustack(handle,
5316 data->stack_user_size,
5317 data->regs_user.regs);
Peter Zijlstraa5cdd402013-07-16 17:09:07 +02005318 }
Andi Kleenc3feedf2013-01-24 16:10:28 +01005319
5320 if (sample_type & PERF_SAMPLE_WEIGHT)
5321 perf_output_put(handle, data->weight);
Stephane Eraniand6be9ad2013-01-24 16:10:31 +01005322
5323 if (sample_type & PERF_SAMPLE_DATA_SRC)
5324 perf_output_put(handle, data->data_src.val);
Peter Zijlstraa5cdd402013-07-16 17:09:07 +02005325
Andi Kleenfdfbbd02013-09-20 07:40:39 -07005326 if (sample_type & PERF_SAMPLE_TRANSACTION)
5327 perf_output_put(handle, data->txn);
5328
Stephane Eranian60e23642014-09-24 13:48:37 +02005329 if (sample_type & PERF_SAMPLE_REGS_INTR) {
5330 u64 abi = data->regs_intr.abi;
5331 /*
5332 * If there are no regs to dump, notice it through
5333 * first u64 being zero (PERF_SAMPLE_REGS_ABI_NONE).
5334 */
5335 perf_output_put(handle, abi);
5336
5337 if (abi) {
5338 u64 mask = event->attr.sample_regs_intr;
5339
5340 perf_output_sample_regs(handle,
5341 data->regs_intr.regs,
5342 mask);
5343 }
5344 }
5345
Peter Zijlstraa5cdd402013-07-16 17:09:07 +02005346 if (!event->attr.watermark) {
5347 int wakeup_events = event->attr.wakeup_events;
5348
5349 if (wakeup_events) {
5350 struct ring_buffer *rb = handle->rb;
5351 int events = local_inc_return(&rb->events);
5352
5353 if (events >= wakeup_events) {
5354 local_sub(wakeup_events, &rb->events);
5355 local_inc(&rb->wakeup);
5356 }
5357 }
5358 }
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005359}
5360
5361void perf_prepare_sample(struct perf_event_header *header,
5362 struct perf_sample_data *data,
5363 struct perf_event *event,
5364 struct pt_regs *regs)
5365{
5366 u64 sample_type = event->attr.sample_type;
5367
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005368 header->type = PERF_RECORD_SAMPLE;
Arnaldo Carvalho de Meloc320c7b2010-10-20 12:50:11 -02005369 header->size = sizeof(*header) + event->header_size;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005370
5371 header->misc = 0;
5372 header->misc |= perf_misc_flags(regs);
5373
Arnaldo Carvalho de Meloc980d102010-12-04 23:02:20 -02005374 __perf_event_header__init_id(header, data, event);
Arnaldo Carvalho de Melo6844c092010-12-03 16:36:35 -02005375
Arnaldo Carvalho de Meloc320c7b2010-10-20 12:50:11 -02005376 if (sample_type & PERF_SAMPLE_IP)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005377 data->ip = perf_instruction_pointer(regs);
5378
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005379 if (sample_type & PERF_SAMPLE_CALLCHAIN) {
5380 int size = 1;
5381
Andrew Vagine6dab5f2012-07-11 18:14:58 +04005382 data->callchain = perf_callchain(event, regs);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005383
5384 if (data->callchain)
5385 size += data->callchain->nr;
5386
5387 header->size += size * sizeof(u64);
5388 }
5389
5390 if (sample_type & PERF_SAMPLE_RAW) {
5391 int size = sizeof(u32);
5392
5393 if (data->raw)
5394 size += data->raw->size;
5395 else
5396 size += sizeof(u32);
5397
5398 WARN_ON_ONCE(size & (sizeof(u64)-1));
5399 header->size += size;
5400 }
Stephane Eranianbce38cd2012-02-09 23:20:51 +01005401
5402 if (sample_type & PERF_SAMPLE_BRANCH_STACK) {
5403 int size = sizeof(u64); /* nr */
5404 if (data->br_stack) {
5405 size += data->br_stack->nr
5406 * sizeof(struct perf_branch_entry);
5407 }
5408 header->size += size;
5409 }
Jiri Olsa40189942012-08-07 15:20:37 +02005410
Peter Zijlstra25657112014-09-24 13:48:42 +02005411 if (sample_type & (PERF_SAMPLE_REGS_USER | PERF_SAMPLE_STACK_USER))
Andy Lutomirski88a7c262015-01-04 10:36:19 -08005412 perf_sample_regs_user(&data->regs_user, regs,
5413 &data->regs_user_copy);
Peter Zijlstra25657112014-09-24 13:48:42 +02005414
Jiri Olsa40189942012-08-07 15:20:37 +02005415 if (sample_type & PERF_SAMPLE_REGS_USER) {
5416 /* regs dump ABI info */
5417 int size = sizeof(u64);
5418
Jiri Olsa40189942012-08-07 15:20:37 +02005419 if (data->regs_user.regs) {
5420 u64 mask = event->attr.sample_regs_user;
5421 size += hweight64(mask) * sizeof(u64);
5422 }
5423
5424 header->size += size;
5425 }
Jiri Olsac5ebced2012-08-07 15:20:40 +02005426
5427 if (sample_type & PERF_SAMPLE_STACK_USER) {
5428 /*
5429 * Either we need PERF_SAMPLE_STACK_USER bit to be allways
5430 * processed as the last one or have additional check added
5431 * in case new sample type is added, because we could eat
5432 * up the rest of the sample size.
5433 */
Jiri Olsac5ebced2012-08-07 15:20:40 +02005434 u16 stack_size = event->attr.sample_stack_user;
5435 u16 size = sizeof(u64);
5436
Jiri Olsac5ebced2012-08-07 15:20:40 +02005437 stack_size = perf_sample_ustack_size(stack_size, header->size,
Peter Zijlstra25657112014-09-24 13:48:42 +02005438 data->regs_user.regs);
Jiri Olsac5ebced2012-08-07 15:20:40 +02005439
5440 /*
5441 * If there is something to dump, add space for the dump
5442 * itself and for the field that tells the dynamic size,
5443 * which is how many have been actually dumped.
5444 */
5445 if (stack_size)
5446 size += sizeof(u64) + stack_size;
5447
5448 data->stack_user_size = stack_size;
5449 header->size += size;
5450 }
Stephane Eranian60e23642014-09-24 13:48:37 +02005451
5452 if (sample_type & PERF_SAMPLE_REGS_INTR) {
5453 /* regs dump ABI info */
5454 int size = sizeof(u64);
5455
5456 perf_sample_regs_intr(&data->regs_intr, regs);
5457
5458 if (data->regs_intr.regs) {
5459 u64 mask = event->attr.sample_regs_intr;
5460
5461 size += hweight64(mask) * sizeof(u64);
5462 }
5463
5464 header->size += size;
5465 }
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005466}
5467
Yan, Zheng21509082015-05-06 15:33:49 -04005468void perf_event_output(struct perf_event *event,
5469 struct perf_sample_data *data,
5470 struct pt_regs *regs)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005471{
5472 struct perf_output_handle handle;
5473 struct perf_event_header header;
5474
Frederic Weisbecker927c7a92010-07-01 16:20:36 +02005475 /* protect the callchain buffers */
5476 rcu_read_lock();
5477
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005478 perf_prepare_sample(&header, data, event, regs);
5479
Peter Zijlstraa7ac67e2011-06-27 16:47:16 +02005480 if (perf_output_begin(&handle, event, header.size))
Frederic Weisbecker927c7a92010-07-01 16:20:36 +02005481 goto exit;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005482
5483 perf_output_sample(&handle, &header, data, event);
5484
5485 perf_output_end(&handle);
Frederic Weisbecker927c7a92010-07-01 16:20:36 +02005486
5487exit:
5488 rcu_read_unlock();
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005489}
5490
5491/*
5492 * read event_id
5493 */
5494
5495struct perf_read_event {
5496 struct perf_event_header header;
5497
5498 u32 pid;
5499 u32 tid;
5500};
5501
5502static void
5503perf_event_read_event(struct perf_event *event,
5504 struct task_struct *task)
5505{
5506 struct perf_output_handle handle;
Arnaldo Carvalho de Meloc980d102010-12-04 23:02:20 -02005507 struct perf_sample_data sample;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005508 struct perf_read_event read_event = {
5509 .header = {
5510 .type = PERF_RECORD_READ,
5511 .misc = 0,
Arnaldo Carvalho de Meloc320c7b2010-10-20 12:50:11 -02005512 .size = sizeof(read_event) + event->read_size,
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005513 },
5514 .pid = perf_event_pid(event, task),
5515 .tid = perf_event_tid(event, task),
5516 };
5517 int ret;
5518
Arnaldo Carvalho de Meloc980d102010-12-04 23:02:20 -02005519 perf_event_header__init_id(&read_event.header, &sample, event);
Peter Zijlstraa7ac67e2011-06-27 16:47:16 +02005520 ret = perf_output_begin(&handle, event, read_event.header.size);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005521 if (ret)
5522 return;
5523
5524 perf_output_put(&handle, read_event);
5525 perf_output_read(&handle, event);
Arnaldo Carvalho de Meloc980d102010-12-04 23:02:20 -02005526 perf_event__output_id_sample(event, &handle, &sample);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005527
5528 perf_output_end(&handle);
5529}
5530
Jiri Olsa52d857a2013-05-06 18:27:18 +02005531typedef void (perf_event_aux_output_cb)(struct perf_event *event, void *data);
5532
5533static void
5534perf_event_aux_ctx(struct perf_event_context *ctx,
Jiri Olsa52d857a2013-05-06 18:27:18 +02005535 perf_event_aux_output_cb output,
5536 void *data)
5537{
5538 struct perf_event *event;
5539
5540 list_for_each_entry_rcu(event, &ctx->event_list, event_entry) {
5541 if (event->state < PERF_EVENT_STATE_INACTIVE)
5542 continue;
5543 if (!event_filter_match(event))
5544 continue;
Jiri Olsa67516842013-07-09 18:56:31 +02005545 output(event, data);
Jiri Olsa52d857a2013-05-06 18:27:18 +02005546 }
5547}
5548
5549static void
Jiri Olsa67516842013-07-09 18:56:31 +02005550perf_event_aux(perf_event_aux_output_cb output, void *data,
Jiri Olsa52d857a2013-05-06 18:27:18 +02005551 struct perf_event_context *task_ctx)
5552{
5553 struct perf_cpu_context *cpuctx;
5554 struct perf_event_context *ctx;
5555 struct pmu *pmu;
5556 int ctxn;
5557
5558 rcu_read_lock();
5559 list_for_each_entry_rcu(pmu, &pmus, entry) {
5560 cpuctx = get_cpu_ptr(pmu->pmu_cpu_context);
5561 if (cpuctx->unique_pmu != pmu)
5562 goto next;
Jiri Olsa67516842013-07-09 18:56:31 +02005563 perf_event_aux_ctx(&cpuctx->ctx, output, data);
Jiri Olsa52d857a2013-05-06 18:27:18 +02005564 if (task_ctx)
5565 goto next;
5566 ctxn = pmu->task_ctx_nr;
5567 if (ctxn < 0)
5568 goto next;
5569 ctx = rcu_dereference(current->perf_event_ctxp[ctxn]);
5570 if (ctx)
Jiri Olsa67516842013-07-09 18:56:31 +02005571 perf_event_aux_ctx(ctx, output, data);
Jiri Olsa52d857a2013-05-06 18:27:18 +02005572next:
5573 put_cpu_ptr(pmu->pmu_cpu_context);
5574 }
5575
5576 if (task_ctx) {
5577 preempt_disable();
Jiri Olsa67516842013-07-09 18:56:31 +02005578 perf_event_aux_ctx(task_ctx, output, data);
Jiri Olsa52d857a2013-05-06 18:27:18 +02005579 preempt_enable();
5580 }
5581 rcu_read_unlock();
5582}
5583
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005584/*
5585 * task tracking -- fork/exit
5586 *
Stephane Eranian13d7a242013-08-21 12:10:24 +02005587 * enabled by: attr.comm | attr.mmap | attr.mmap2 | attr.mmap_data | attr.task
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005588 */
5589
5590struct perf_task_event {
5591 struct task_struct *task;
5592 struct perf_event_context *task_ctx;
5593
5594 struct {
5595 struct perf_event_header header;
5596
5597 u32 pid;
5598 u32 ppid;
5599 u32 tid;
5600 u32 ptid;
5601 u64 time;
5602 } event_id;
5603};
5604
Jiri Olsa67516842013-07-09 18:56:31 +02005605static int perf_event_task_match(struct perf_event *event)
5606{
Stephane Eranian13d7a242013-08-21 12:10:24 +02005607 return event->attr.comm || event->attr.mmap ||
5608 event->attr.mmap2 || event->attr.mmap_data ||
5609 event->attr.task;
Jiri Olsa67516842013-07-09 18:56:31 +02005610}
5611
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005612static void perf_event_task_output(struct perf_event *event,
Jiri Olsa52d857a2013-05-06 18:27:18 +02005613 void *data)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005614{
Jiri Olsa52d857a2013-05-06 18:27:18 +02005615 struct perf_task_event *task_event = data;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005616 struct perf_output_handle handle;
Arnaldo Carvalho de Meloc980d102010-12-04 23:02:20 -02005617 struct perf_sample_data sample;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005618 struct task_struct *task = task_event->task;
Arnaldo Carvalho de Meloc980d102010-12-04 23:02:20 -02005619 int ret, size = task_event->event_id.header.size;
Mike Galbraith8bb39f92010-03-26 11:11:33 +01005620
Jiri Olsa67516842013-07-09 18:56:31 +02005621 if (!perf_event_task_match(event))
5622 return;
5623
Arnaldo Carvalho de Meloc980d102010-12-04 23:02:20 -02005624 perf_event_header__init_id(&task_event->event_id.header, &sample, event);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005625
Arnaldo Carvalho de Meloc980d102010-12-04 23:02:20 -02005626 ret = perf_output_begin(&handle, event,
Peter Zijlstraa7ac67e2011-06-27 16:47:16 +02005627 task_event->event_id.header.size);
Peter Zijlstraef607772010-05-18 10:50:41 +02005628 if (ret)
Arnaldo Carvalho de Meloc980d102010-12-04 23:02:20 -02005629 goto out;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005630
5631 task_event->event_id.pid = perf_event_pid(event, task);
5632 task_event->event_id.ppid = perf_event_pid(event, current);
5633
5634 task_event->event_id.tid = perf_event_tid(event, task);
5635 task_event->event_id.ptid = perf_event_tid(event, current);
5636
Peter Zijlstra34f43922015-02-20 14:05:38 +01005637 task_event->event_id.time = perf_event_clock(event);
5638
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005639 perf_output_put(&handle, task_event->event_id);
5640
Arnaldo Carvalho de Meloc980d102010-12-04 23:02:20 -02005641 perf_event__output_id_sample(event, &handle, &sample);
5642
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005643 perf_output_end(&handle);
Arnaldo Carvalho de Meloc980d102010-12-04 23:02:20 -02005644out:
5645 task_event->event_id.header.size = size;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005646}
5647
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005648static void perf_event_task(struct task_struct *task,
5649 struct perf_event_context *task_ctx,
5650 int new)
5651{
5652 struct perf_task_event task_event;
5653
5654 if (!atomic_read(&nr_comm_events) &&
5655 !atomic_read(&nr_mmap_events) &&
5656 !atomic_read(&nr_task_events))
5657 return;
5658
5659 task_event = (struct perf_task_event){
5660 .task = task,
5661 .task_ctx = task_ctx,
5662 .event_id = {
5663 .header = {
5664 .type = new ? PERF_RECORD_FORK : PERF_RECORD_EXIT,
5665 .misc = 0,
5666 .size = sizeof(task_event.event_id),
5667 },
5668 /* .pid */
5669 /* .ppid */
5670 /* .tid */
5671 /* .ptid */
Peter Zijlstra34f43922015-02-20 14:05:38 +01005672 /* .time */
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005673 },
5674 };
5675
Jiri Olsa67516842013-07-09 18:56:31 +02005676 perf_event_aux(perf_event_task_output,
Jiri Olsa52d857a2013-05-06 18:27:18 +02005677 &task_event,
5678 task_ctx);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005679}
5680
5681void perf_event_fork(struct task_struct *task)
5682{
5683 perf_event_task(task, NULL, 1);
5684}
5685
5686/*
5687 * comm tracking
5688 */
5689
5690struct perf_comm_event {
5691 struct task_struct *task;
5692 char *comm;
5693 int comm_size;
5694
5695 struct {
5696 struct perf_event_header header;
5697
5698 u32 pid;
5699 u32 tid;
5700 } event_id;
5701};
5702
Jiri Olsa67516842013-07-09 18:56:31 +02005703static int perf_event_comm_match(struct perf_event *event)
5704{
5705 return event->attr.comm;
5706}
5707
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005708static void perf_event_comm_output(struct perf_event *event,
Jiri Olsa52d857a2013-05-06 18:27:18 +02005709 void *data)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005710{
Jiri Olsa52d857a2013-05-06 18:27:18 +02005711 struct perf_comm_event *comm_event = data;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005712 struct perf_output_handle handle;
Arnaldo Carvalho de Meloc980d102010-12-04 23:02:20 -02005713 struct perf_sample_data sample;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005714 int size = comm_event->event_id.header.size;
Arnaldo Carvalho de Meloc980d102010-12-04 23:02:20 -02005715 int ret;
5716
Jiri Olsa67516842013-07-09 18:56:31 +02005717 if (!perf_event_comm_match(event))
5718 return;
5719
Arnaldo Carvalho de Meloc980d102010-12-04 23:02:20 -02005720 perf_event_header__init_id(&comm_event->event_id.header, &sample, event);
5721 ret = perf_output_begin(&handle, event,
Peter Zijlstraa7ac67e2011-06-27 16:47:16 +02005722 comm_event->event_id.header.size);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005723
5724 if (ret)
Arnaldo Carvalho de Meloc980d102010-12-04 23:02:20 -02005725 goto out;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005726
5727 comm_event->event_id.pid = perf_event_pid(event, comm_event->task);
5728 comm_event->event_id.tid = perf_event_tid(event, comm_event->task);
5729
5730 perf_output_put(&handle, comm_event->event_id);
Frederic Weisbecker76369132011-05-19 19:55:04 +02005731 __output_copy(&handle, comm_event->comm,
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005732 comm_event->comm_size);
Arnaldo Carvalho de Meloc980d102010-12-04 23:02:20 -02005733
5734 perf_event__output_id_sample(event, &handle, &sample);
5735
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005736 perf_output_end(&handle);
Arnaldo Carvalho de Meloc980d102010-12-04 23:02:20 -02005737out:
5738 comm_event->event_id.header.size = size;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005739}
5740
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005741static void perf_event_comm_event(struct perf_comm_event *comm_event)
5742{
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005743 char comm[TASK_COMM_LEN];
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005744 unsigned int size;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005745
5746 memset(comm, 0, sizeof(comm));
Márton Németh96b02d72009-11-21 23:10:15 +01005747 strlcpy(comm, comm_event->task->comm, sizeof(comm));
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005748 size = ALIGN(strlen(comm)+1, sizeof(u64));
5749
5750 comm_event->comm = comm;
5751 comm_event->comm_size = size;
5752
5753 comm_event->event_id.header.size = sizeof(comm_event->event_id) + size;
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02005754
Jiri Olsa67516842013-07-09 18:56:31 +02005755 perf_event_aux(perf_event_comm_output,
Jiri Olsa52d857a2013-05-06 18:27:18 +02005756 comm_event,
5757 NULL);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005758}
5759
Adrian Hunter82b89772014-05-28 11:45:04 +03005760void perf_event_comm(struct task_struct *task, bool exec)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005761{
5762 struct perf_comm_event comm_event;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005763
5764 if (!atomic_read(&nr_comm_events))
5765 return;
5766
5767 comm_event = (struct perf_comm_event){
5768 .task = task,
5769 /* .comm */
5770 /* .comm_size */
5771 .event_id = {
5772 .header = {
5773 .type = PERF_RECORD_COMM,
Adrian Hunter82b89772014-05-28 11:45:04 +03005774 .misc = exec ? PERF_RECORD_MISC_COMM_EXEC : 0,
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005775 /* .size */
5776 },
5777 /* .pid */
5778 /* .tid */
5779 },
5780 };
5781
5782 perf_event_comm_event(&comm_event);
5783}
5784
5785/*
5786 * mmap tracking
5787 */
5788
5789struct perf_mmap_event {
5790 struct vm_area_struct *vma;
5791
5792 const char *file_name;
5793 int file_size;
Stephane Eranian13d7a242013-08-21 12:10:24 +02005794 int maj, min;
5795 u64 ino;
5796 u64 ino_generation;
Peter Zijlstraf972eb62014-05-19 15:13:47 -04005797 u32 prot, flags;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005798
5799 struct {
5800 struct perf_event_header header;
5801
5802 u32 pid;
5803 u32 tid;
5804 u64 start;
5805 u64 len;
5806 u64 pgoff;
5807 } event_id;
5808};
5809
Jiri Olsa67516842013-07-09 18:56:31 +02005810static int perf_event_mmap_match(struct perf_event *event,
5811 void *data)
5812{
5813 struct perf_mmap_event *mmap_event = data;
5814 struct vm_area_struct *vma = mmap_event->vma;
5815 int executable = vma->vm_flags & VM_EXEC;
5816
5817 return (!executable && event->attr.mmap_data) ||
Stephane Eranian13d7a242013-08-21 12:10:24 +02005818 (executable && (event->attr.mmap || event->attr.mmap2));
Jiri Olsa67516842013-07-09 18:56:31 +02005819}
5820
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005821static void perf_event_mmap_output(struct perf_event *event,
Jiri Olsa52d857a2013-05-06 18:27:18 +02005822 void *data)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005823{
Jiri Olsa52d857a2013-05-06 18:27:18 +02005824 struct perf_mmap_event *mmap_event = data;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005825 struct perf_output_handle handle;
Arnaldo Carvalho de Meloc980d102010-12-04 23:02:20 -02005826 struct perf_sample_data sample;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005827 int size = mmap_event->event_id.header.size;
Arnaldo Carvalho de Meloc980d102010-12-04 23:02:20 -02005828 int ret;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005829
Jiri Olsa67516842013-07-09 18:56:31 +02005830 if (!perf_event_mmap_match(event, data))
5831 return;
5832
Stephane Eranian13d7a242013-08-21 12:10:24 +02005833 if (event->attr.mmap2) {
5834 mmap_event->event_id.header.type = PERF_RECORD_MMAP2;
5835 mmap_event->event_id.header.size += sizeof(mmap_event->maj);
5836 mmap_event->event_id.header.size += sizeof(mmap_event->min);
5837 mmap_event->event_id.header.size += sizeof(mmap_event->ino);
Arnaldo Carvalho de Melod008d522013-09-10 10:24:05 -03005838 mmap_event->event_id.header.size += sizeof(mmap_event->ino_generation);
Peter Zijlstraf972eb62014-05-19 15:13:47 -04005839 mmap_event->event_id.header.size += sizeof(mmap_event->prot);
5840 mmap_event->event_id.header.size += sizeof(mmap_event->flags);
Stephane Eranian13d7a242013-08-21 12:10:24 +02005841 }
5842
Arnaldo Carvalho de Meloc980d102010-12-04 23:02:20 -02005843 perf_event_header__init_id(&mmap_event->event_id.header, &sample, event);
5844 ret = perf_output_begin(&handle, event,
Peter Zijlstraa7ac67e2011-06-27 16:47:16 +02005845 mmap_event->event_id.header.size);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005846 if (ret)
Arnaldo Carvalho de Meloc980d102010-12-04 23:02:20 -02005847 goto out;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005848
5849 mmap_event->event_id.pid = perf_event_pid(event, current);
5850 mmap_event->event_id.tid = perf_event_tid(event, current);
5851
5852 perf_output_put(&handle, mmap_event->event_id);
Stephane Eranian13d7a242013-08-21 12:10:24 +02005853
5854 if (event->attr.mmap2) {
5855 perf_output_put(&handle, mmap_event->maj);
5856 perf_output_put(&handle, mmap_event->min);
5857 perf_output_put(&handle, mmap_event->ino);
5858 perf_output_put(&handle, mmap_event->ino_generation);
Peter Zijlstraf972eb62014-05-19 15:13:47 -04005859 perf_output_put(&handle, mmap_event->prot);
5860 perf_output_put(&handle, mmap_event->flags);
Stephane Eranian13d7a242013-08-21 12:10:24 +02005861 }
5862
Frederic Weisbecker76369132011-05-19 19:55:04 +02005863 __output_copy(&handle, mmap_event->file_name,
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005864 mmap_event->file_size);
Arnaldo Carvalho de Meloc980d102010-12-04 23:02:20 -02005865
5866 perf_event__output_id_sample(event, &handle, &sample);
5867
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005868 perf_output_end(&handle);
Arnaldo Carvalho de Meloc980d102010-12-04 23:02:20 -02005869out:
5870 mmap_event->event_id.header.size = size;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005871}
5872
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005873static void perf_event_mmap_event(struct perf_mmap_event *mmap_event)
5874{
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005875 struct vm_area_struct *vma = mmap_event->vma;
5876 struct file *file = vma->vm_file;
Stephane Eranian13d7a242013-08-21 12:10:24 +02005877 int maj = 0, min = 0;
5878 u64 ino = 0, gen = 0;
Peter Zijlstraf972eb62014-05-19 15:13:47 -04005879 u32 prot = 0, flags = 0;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005880 unsigned int size;
5881 char tmp[16];
5882 char *buf = NULL;
Peter Zijlstra2c42cfbf2013-10-17 00:06:46 +02005883 char *name;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005884
5885 if (file) {
Stephane Eranian13d7a242013-08-21 12:10:24 +02005886 struct inode *inode;
5887 dev_t dev;
Oleg Nesterov3ea2f2b2013-10-16 22:10:04 +02005888
Peter Zijlstra2c42cfbf2013-10-17 00:06:46 +02005889 buf = kmalloc(PATH_MAX, GFP_KERNEL);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005890 if (!buf) {
Oleg Nesterovc7e548b2013-10-17 20:24:17 +02005891 name = "//enomem";
5892 goto cpy_name;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005893 }
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005894 /*
Oleg Nesterov3ea2f2b2013-10-16 22:10:04 +02005895 * d_path() works from the end of the rb backwards, so we
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005896 * need to add enough zero bytes after the string to handle
5897 * the 64bit alignment we do later.
5898 */
Miklos Szeredi9bf39ab2015-06-19 10:29:13 +02005899 name = file_path(file, buf, PATH_MAX - sizeof(u64));
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005900 if (IS_ERR(name)) {
Oleg Nesterovc7e548b2013-10-17 20:24:17 +02005901 name = "//toolong";
5902 goto cpy_name;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005903 }
Stephane Eranian13d7a242013-08-21 12:10:24 +02005904 inode = file_inode(vma->vm_file);
5905 dev = inode->i_sb->s_dev;
5906 ino = inode->i_ino;
5907 gen = inode->i_generation;
5908 maj = MAJOR(dev);
5909 min = MINOR(dev);
Peter Zijlstraf972eb62014-05-19 15:13:47 -04005910
5911 if (vma->vm_flags & VM_READ)
5912 prot |= PROT_READ;
5913 if (vma->vm_flags & VM_WRITE)
5914 prot |= PROT_WRITE;
5915 if (vma->vm_flags & VM_EXEC)
5916 prot |= PROT_EXEC;
5917
5918 if (vma->vm_flags & VM_MAYSHARE)
5919 flags = MAP_SHARED;
5920 else
5921 flags = MAP_PRIVATE;
5922
5923 if (vma->vm_flags & VM_DENYWRITE)
5924 flags |= MAP_DENYWRITE;
5925 if (vma->vm_flags & VM_MAYEXEC)
5926 flags |= MAP_EXECUTABLE;
5927 if (vma->vm_flags & VM_LOCKED)
5928 flags |= MAP_LOCKED;
5929 if (vma->vm_flags & VM_HUGETLB)
5930 flags |= MAP_HUGETLB;
5931
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005932 goto got_name;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005933 } else {
Jiri Olsafbe26ab2014-07-14 17:57:19 +02005934 if (vma->vm_ops && vma->vm_ops->name) {
5935 name = (char *) vma->vm_ops->name(vma);
5936 if (name)
5937 goto cpy_name;
5938 }
5939
Peter Zijlstra2c42cfbf2013-10-17 00:06:46 +02005940 name = (char *)arch_vma_name(vma);
Oleg Nesterovc7e548b2013-10-17 20:24:17 +02005941 if (name)
5942 goto cpy_name;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005943
Oleg Nesterov32c5fb72013-10-16 22:09:45 +02005944 if (vma->vm_start <= vma->vm_mm->start_brk &&
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005945 vma->vm_end >= vma->vm_mm->brk) {
Oleg Nesterovc7e548b2013-10-17 20:24:17 +02005946 name = "[heap]";
5947 goto cpy_name;
Oleg Nesterov32c5fb72013-10-16 22:09:45 +02005948 }
5949 if (vma->vm_start <= vma->vm_mm->start_stack &&
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005950 vma->vm_end >= vma->vm_mm->start_stack) {
Oleg Nesterovc7e548b2013-10-17 20:24:17 +02005951 name = "[stack]";
5952 goto cpy_name;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005953 }
5954
Oleg Nesterovc7e548b2013-10-17 20:24:17 +02005955 name = "//anon";
5956 goto cpy_name;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005957 }
5958
Oleg Nesterovc7e548b2013-10-17 20:24:17 +02005959cpy_name:
5960 strlcpy(tmp, name, sizeof(tmp));
5961 name = tmp;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005962got_name:
Peter Zijlstra2c42cfbf2013-10-17 00:06:46 +02005963 /*
5964 * Since our buffer works in 8 byte units we need to align our string
5965 * size to a multiple of 8. However, we must guarantee the tail end is
5966 * zero'd out to avoid leaking random bits to userspace.
5967 */
5968 size = strlen(name)+1;
5969 while (!IS_ALIGNED(size, sizeof(u64)))
5970 name[size++] = '\0';
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005971
5972 mmap_event->file_name = name;
5973 mmap_event->file_size = size;
Stephane Eranian13d7a242013-08-21 12:10:24 +02005974 mmap_event->maj = maj;
5975 mmap_event->min = min;
5976 mmap_event->ino = ino;
5977 mmap_event->ino_generation = gen;
Peter Zijlstraf972eb62014-05-19 15:13:47 -04005978 mmap_event->prot = prot;
5979 mmap_event->flags = flags;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005980
Stephane Eranian2fe85422013-01-24 16:10:39 +01005981 if (!(vma->vm_flags & VM_EXEC))
5982 mmap_event->event_id.header.misc |= PERF_RECORD_MISC_MMAP_DATA;
5983
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005984 mmap_event->event_id.header.size = sizeof(mmap_event->event_id) + size;
5985
Jiri Olsa67516842013-07-09 18:56:31 +02005986 perf_event_aux(perf_event_mmap_output,
Jiri Olsa52d857a2013-05-06 18:27:18 +02005987 mmap_event,
5988 NULL);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005989
5990 kfree(buf);
5991}
5992
Eric B Munson3af9e852010-05-18 15:30:49 +01005993void perf_event_mmap(struct vm_area_struct *vma)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02005994{
5995 struct perf_mmap_event mmap_event;
5996
5997 if (!atomic_read(&nr_mmap_events))
5998 return;
5999
6000 mmap_event = (struct perf_mmap_event){
6001 .vma = vma,
6002 /* .file_name */
6003 /* .file_size */
6004 .event_id = {
6005 .header = {
6006 .type = PERF_RECORD_MMAP,
Zhang, Yanmin39447b32010-04-19 13:32:41 +08006007 .misc = PERF_RECORD_MISC_USER,
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006008 /* .size */
6009 },
6010 /* .pid */
6011 /* .tid */
6012 .start = vma->vm_start,
6013 .len = vma->vm_end - vma->vm_start,
Peter Zijlstra3a0304e2010-02-26 10:33:41 +01006014 .pgoff = (u64)vma->vm_pgoff << PAGE_SHIFT,
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006015 },
Stephane Eranian13d7a242013-08-21 12:10:24 +02006016 /* .maj (attr_mmap2 only) */
6017 /* .min (attr_mmap2 only) */
6018 /* .ino (attr_mmap2 only) */
6019 /* .ino_generation (attr_mmap2 only) */
Peter Zijlstraf972eb62014-05-19 15:13:47 -04006020 /* .prot (attr_mmap2 only) */
6021 /* .flags (attr_mmap2 only) */
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006022 };
6023
6024 perf_event_mmap_event(&mmap_event);
6025}
6026
Alexander Shishkin68db7e92015-01-14 14:18:15 +02006027void perf_event_aux_event(struct perf_event *event, unsigned long head,
6028 unsigned long size, u64 flags)
6029{
6030 struct perf_output_handle handle;
6031 struct perf_sample_data sample;
6032 struct perf_aux_event {
6033 struct perf_event_header header;
6034 u64 offset;
6035 u64 size;
6036 u64 flags;
6037 } rec = {
6038 .header = {
6039 .type = PERF_RECORD_AUX,
6040 .misc = 0,
6041 .size = sizeof(rec),
6042 },
6043 .offset = head,
6044 .size = size,
6045 .flags = flags,
6046 };
6047 int ret;
6048
6049 perf_event_header__init_id(&rec.header, &sample, event);
6050 ret = perf_output_begin(&handle, event, rec.header.size);
6051
6052 if (ret)
6053 return;
6054
6055 perf_output_put(&handle, rec);
6056 perf_event__output_id_sample(event, &handle, &sample);
6057
6058 perf_output_end(&handle);
6059}
6060
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006061/*
Kan Liangf38b0db2015-05-10 15:13:14 -04006062 * Lost/dropped samples logging
6063 */
6064void perf_log_lost_samples(struct perf_event *event, u64 lost)
6065{
6066 struct perf_output_handle handle;
6067 struct perf_sample_data sample;
6068 int ret;
6069
6070 struct {
6071 struct perf_event_header header;
6072 u64 lost;
6073 } lost_samples_event = {
6074 .header = {
6075 .type = PERF_RECORD_LOST_SAMPLES,
6076 .misc = 0,
6077 .size = sizeof(lost_samples_event),
6078 },
6079 .lost = lost,
6080 };
6081
6082 perf_event_header__init_id(&lost_samples_event.header, &sample, event);
6083
6084 ret = perf_output_begin(&handle, event,
6085 lost_samples_event.header.size);
6086 if (ret)
6087 return;
6088
6089 perf_output_put(&handle, lost_samples_event);
6090 perf_event__output_id_sample(event, &handle, &sample);
6091 perf_output_end(&handle);
6092}
6093
6094/*
Adrian Hunter45ac1402015-07-21 12:44:02 +03006095 * context_switch tracking
6096 */
6097
6098struct perf_switch_event {
6099 struct task_struct *task;
6100 struct task_struct *next_prev;
6101
6102 struct {
6103 struct perf_event_header header;
6104 u32 next_prev_pid;
6105 u32 next_prev_tid;
6106 } event_id;
6107};
6108
6109static int perf_event_switch_match(struct perf_event *event)
6110{
6111 return event->attr.context_switch;
6112}
6113
6114static void perf_event_switch_output(struct perf_event *event, void *data)
6115{
6116 struct perf_switch_event *se = data;
6117 struct perf_output_handle handle;
6118 struct perf_sample_data sample;
6119 int ret;
6120
6121 if (!perf_event_switch_match(event))
6122 return;
6123
6124 /* Only CPU-wide events are allowed to see next/prev pid/tid */
6125 if (event->ctx->task) {
6126 se->event_id.header.type = PERF_RECORD_SWITCH;
6127 se->event_id.header.size = sizeof(se->event_id.header);
6128 } else {
6129 se->event_id.header.type = PERF_RECORD_SWITCH_CPU_WIDE;
6130 se->event_id.header.size = sizeof(se->event_id);
6131 se->event_id.next_prev_pid =
6132 perf_event_pid(event, se->next_prev);
6133 se->event_id.next_prev_tid =
6134 perf_event_tid(event, se->next_prev);
6135 }
6136
6137 perf_event_header__init_id(&se->event_id.header, &sample, event);
6138
6139 ret = perf_output_begin(&handle, event, se->event_id.header.size);
6140 if (ret)
6141 return;
6142
6143 if (event->ctx->task)
6144 perf_output_put(&handle, se->event_id.header);
6145 else
6146 perf_output_put(&handle, se->event_id);
6147
6148 perf_event__output_id_sample(event, &handle, &sample);
6149
6150 perf_output_end(&handle);
6151}
6152
6153static void perf_event_switch(struct task_struct *task,
6154 struct task_struct *next_prev, bool sched_in)
6155{
6156 struct perf_switch_event switch_event;
6157
6158 /* N.B. caller checks nr_switch_events != 0 */
6159
6160 switch_event = (struct perf_switch_event){
6161 .task = task,
6162 .next_prev = next_prev,
6163 .event_id = {
6164 .header = {
6165 /* .type */
6166 .misc = sched_in ? 0 : PERF_RECORD_MISC_SWITCH_OUT,
6167 /* .size */
6168 },
6169 /* .next_prev_pid */
6170 /* .next_prev_tid */
6171 },
6172 };
6173
6174 perf_event_aux(perf_event_switch_output,
6175 &switch_event,
6176 NULL);
6177}
6178
6179/*
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006180 * IRQ throttle logging
6181 */
6182
6183static void perf_log_throttle(struct perf_event *event, int enable)
6184{
6185 struct perf_output_handle handle;
Arnaldo Carvalho de Meloc980d102010-12-04 23:02:20 -02006186 struct perf_sample_data sample;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006187 int ret;
6188
6189 struct {
6190 struct perf_event_header header;
6191 u64 time;
6192 u64 id;
6193 u64 stream_id;
6194 } throttle_event = {
6195 .header = {
6196 .type = PERF_RECORD_THROTTLE,
6197 .misc = 0,
6198 .size = sizeof(throttle_event),
6199 },
Peter Zijlstra34f43922015-02-20 14:05:38 +01006200 .time = perf_event_clock(event),
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006201 .id = primary_event_id(event),
6202 .stream_id = event->id,
6203 };
6204
6205 if (enable)
6206 throttle_event.header.type = PERF_RECORD_UNTHROTTLE;
6207
Arnaldo Carvalho de Meloc980d102010-12-04 23:02:20 -02006208 perf_event_header__init_id(&throttle_event.header, &sample, event);
6209
6210 ret = perf_output_begin(&handle, event,
Peter Zijlstraa7ac67e2011-06-27 16:47:16 +02006211 throttle_event.header.size);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006212 if (ret)
6213 return;
6214
6215 perf_output_put(&handle, throttle_event);
Arnaldo Carvalho de Meloc980d102010-12-04 23:02:20 -02006216 perf_event__output_id_sample(event, &handle, &sample);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006217 perf_output_end(&handle);
6218}
6219
Alexander Shishkinec0d7722015-01-14 14:18:23 +02006220static void perf_log_itrace_start(struct perf_event *event)
6221{
6222 struct perf_output_handle handle;
6223 struct perf_sample_data sample;
6224 struct perf_aux_event {
6225 struct perf_event_header header;
6226 u32 pid;
6227 u32 tid;
6228 } rec;
6229 int ret;
6230
6231 if (event->parent)
6232 event = event->parent;
6233
6234 if (!(event->pmu->capabilities & PERF_PMU_CAP_ITRACE) ||
6235 event->hw.itrace_started)
6236 return;
6237
Alexander Shishkinec0d7722015-01-14 14:18:23 +02006238 rec.header.type = PERF_RECORD_ITRACE_START;
6239 rec.header.misc = 0;
6240 rec.header.size = sizeof(rec);
6241 rec.pid = perf_event_pid(event, current);
6242 rec.tid = perf_event_tid(event, current);
6243
6244 perf_event_header__init_id(&rec.header, &sample, event);
6245 ret = perf_output_begin(&handle, event, rec.header.size);
6246
6247 if (ret)
6248 return;
6249
6250 perf_output_put(&handle, rec);
6251 perf_event__output_id_sample(event, &handle, &sample);
6252
6253 perf_output_end(&handle);
6254}
6255
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006256/*
6257 * Generic event overflow handling, sampling.
6258 */
6259
Peter Zijlstraa8b0ca12011-06-27 14:41:57 +02006260static int __perf_event_overflow(struct perf_event *event,
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006261 int throttle, struct perf_sample_data *data,
6262 struct pt_regs *regs)
6263{
6264 int events = atomic_read(&event->event_limit);
6265 struct hw_perf_event *hwc = &event->hw;
Stephane Eraniane050e3f2012-01-26 17:03:19 +01006266 u64 seq;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006267 int ret = 0;
6268
Peter Zijlstra96398822010-11-24 18:55:29 +01006269 /*
6270 * Non-sampling counters might still use the PMI to fold short
6271 * hardware counters, ignore those.
6272 */
6273 if (unlikely(!is_sampling_event(event)))
6274 return 0;
6275
Stephane Eraniane050e3f2012-01-26 17:03:19 +01006276 seq = __this_cpu_read(perf_throttled_seq);
6277 if (seq != hwc->interrupts_seq) {
6278 hwc->interrupts_seq = seq;
6279 hwc->interrupts = 1;
6280 } else {
6281 hwc->interrupts++;
6282 if (unlikely(throttle
6283 && hwc->interrupts >= max_samples_per_tick)) {
6284 __this_cpu_inc(perf_throttled_count);
Peter Zijlstra163ec432011-02-16 11:22:34 +01006285 hwc->interrupts = MAX_INTERRUPTS;
6286 perf_log_throttle(event, 0);
Frederic Weisbeckerd84153d2013-07-23 02:31:05 +02006287 tick_nohz_full_kick();
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006288 ret = 1;
6289 }
Stephane Eraniane050e3f2012-01-26 17:03:19 +01006290 }
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006291
6292 if (event->attr.freq) {
6293 u64 now = perf_clock();
Peter Zijlstraabd50712010-01-26 18:50:16 +01006294 s64 delta = now - hwc->freq_time_stamp;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006295
Peter Zijlstraabd50712010-01-26 18:50:16 +01006296 hwc->freq_time_stamp = now;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006297
Peter Zijlstraabd50712010-01-26 18:50:16 +01006298 if (delta > 0 && delta < 2*TICK_NSEC)
Stephane Eranianf39d47f2012-02-07 14:39:57 +01006299 perf_adjust_period(event, delta, hwc->last_period, true);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006300 }
6301
6302 /*
6303 * XXX event_limit might not quite work as expected on inherited
6304 * events
6305 */
6306
6307 event->pending_kill = POLL_IN;
6308 if (events && atomic_dec_and_test(&event->event_limit)) {
6309 ret = 1;
6310 event->pending_kill = POLL_HUP;
Peter Zijlstraa8b0ca12011-06-27 14:41:57 +02006311 event->pending_disable = 1;
6312 irq_work_queue(&event->pending);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006313 }
6314
Peter Zijlstra453f19e2009-11-20 22:19:43 +01006315 if (event->overflow_handler)
Peter Zijlstraa8b0ca12011-06-27 14:41:57 +02006316 event->overflow_handler(event, data, regs);
Peter Zijlstra453f19e2009-11-20 22:19:43 +01006317 else
Peter Zijlstraa8b0ca12011-06-27 14:41:57 +02006318 perf_event_output(event, data, regs);
Peter Zijlstra453f19e2009-11-20 22:19:43 +01006319
Peter Zijlstrafed66e2cd2015-06-11 10:32:01 +02006320 if (*perf_event_fasync(event) && event->pending_kill) {
Peter Zijlstraa8b0ca12011-06-27 14:41:57 +02006321 event->pending_wakeup = 1;
6322 irq_work_queue(&event->pending);
Peter Zijlstraf506b3d2011-05-26 17:02:53 +02006323 }
6324
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006325 return ret;
6326}
6327
Peter Zijlstraa8b0ca12011-06-27 14:41:57 +02006328int perf_event_overflow(struct perf_event *event,
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006329 struct perf_sample_data *data,
6330 struct pt_regs *regs)
6331{
Peter Zijlstraa8b0ca12011-06-27 14:41:57 +02006332 return __perf_event_overflow(event, 1, data, regs);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006333}
6334
6335/*
6336 * Generic software event infrastructure
6337 */
6338
Peter Zijlstrab28ab832010-09-06 14:48:15 +02006339struct swevent_htable {
6340 struct swevent_hlist *swevent_hlist;
6341 struct mutex hlist_mutex;
6342 int hlist_refcount;
6343
6344 /* Recursion avoidance in each contexts */
6345 int recursion[PERF_NR_CONTEXTS];
Jiri Olsa39af6b12014-04-07 11:04:08 +02006346
6347 /* Keeps track of cpu being initialized/exited */
6348 bool online;
Peter Zijlstrab28ab832010-09-06 14:48:15 +02006349};
6350
6351static DEFINE_PER_CPU(struct swevent_htable, swevent_htable);
6352
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006353/*
6354 * We directly increment event->count and keep a second value in
6355 * event->hw.period_left to count intervals. This period event
6356 * is kept in the range [-sample_period, 0] so that we can use the
6357 * sign as trigger.
6358 */
6359
Jiri Olsaab573842013-05-01 17:25:44 +02006360u64 perf_swevent_set_period(struct perf_event *event)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006361{
6362 struct hw_perf_event *hwc = &event->hw;
6363 u64 period = hwc->last_period;
6364 u64 nr, offset;
6365 s64 old, val;
6366
6367 hwc->last_period = hwc->sample_period;
6368
6369again:
Peter Zijlstrae7850592010-05-21 14:43:08 +02006370 old = val = local64_read(&hwc->period_left);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006371 if (val < 0)
6372 return 0;
6373
6374 nr = div64_u64(period + val, period);
6375 offset = nr * period;
6376 val -= offset;
Peter Zijlstrae7850592010-05-21 14:43:08 +02006377 if (local64_cmpxchg(&hwc->period_left, old, val) != old)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006378 goto again;
6379
6380 return nr;
6381}
6382
Peter Zijlstra0cff7842009-11-20 22:19:44 +01006383static void perf_swevent_overflow(struct perf_event *event, u64 overflow,
Peter Zijlstraa8b0ca12011-06-27 14:41:57 +02006384 struct perf_sample_data *data,
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006385 struct pt_regs *regs)
6386{
6387 struct hw_perf_event *hwc = &event->hw;
6388 int throttle = 0;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006389
Peter Zijlstra0cff7842009-11-20 22:19:44 +01006390 if (!overflow)
6391 overflow = perf_swevent_set_period(event);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006392
6393 if (hwc->interrupts == MAX_INTERRUPTS)
6394 return;
6395
6396 for (; overflow; overflow--) {
Peter Zijlstraa8b0ca12011-06-27 14:41:57 +02006397 if (__perf_event_overflow(event, throttle,
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006398 data, regs)) {
6399 /*
6400 * We inhibit the overflow from happening when
6401 * hwc->interrupts == MAX_INTERRUPTS.
6402 */
6403 break;
6404 }
6405 throttle = 1;
6406 }
6407}
6408
Peter Zijlstraa4eaf7f2010-06-16 14:37:10 +02006409static void perf_swevent_event(struct perf_event *event, u64 nr,
Peter Zijlstraa8b0ca12011-06-27 14:41:57 +02006410 struct perf_sample_data *data,
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006411 struct pt_regs *regs)
6412{
6413 struct hw_perf_event *hwc = &event->hw;
6414
Peter Zijlstrae7850592010-05-21 14:43:08 +02006415 local64_add(nr, &event->count);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006416
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006417 if (!regs)
6418 return;
6419
Franck Bui-Huu6c7e5502010-11-23 16:21:43 +01006420 if (!is_sampling_event(event))
Peter Zijlstra0cff7842009-11-20 22:19:44 +01006421 return;
6422
Andrew Vagin5d81e5c2011-11-07 15:54:12 +03006423 if ((event->attr.sample_type & PERF_SAMPLE_PERIOD) && !event->attr.freq) {
6424 data->period = nr;
6425 return perf_swevent_overflow(event, 1, data, regs);
6426 } else
6427 data->period = event->hw.last_period;
6428
Peter Zijlstra0cff7842009-11-20 22:19:44 +01006429 if (nr == 1 && hwc->sample_period == 1 && !event->attr.freq)
Peter Zijlstraa8b0ca12011-06-27 14:41:57 +02006430 return perf_swevent_overflow(event, 1, data, regs);
Peter Zijlstra0cff7842009-11-20 22:19:44 +01006431
Peter Zijlstrae7850592010-05-21 14:43:08 +02006432 if (local64_add_negative(nr, &hwc->period_left))
Peter Zijlstra0cff7842009-11-20 22:19:44 +01006433 return;
6434
Peter Zijlstraa8b0ca12011-06-27 14:41:57 +02006435 perf_swevent_overflow(event, 0, data, regs);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006436}
6437
Frederic Weisbeckerf5ffe022009-11-23 15:42:34 +01006438static int perf_exclude_event(struct perf_event *event,
6439 struct pt_regs *regs)
6440{
Peter Zijlstraa4eaf7f2010-06-16 14:37:10 +02006441 if (event->hw.state & PERF_HES_STOPPED)
Frederic Weisbecker91b2f482011-03-07 21:27:08 +01006442 return 1;
Peter Zijlstraa4eaf7f2010-06-16 14:37:10 +02006443
Frederic Weisbeckerf5ffe022009-11-23 15:42:34 +01006444 if (regs) {
6445 if (event->attr.exclude_user && user_mode(regs))
6446 return 1;
6447
6448 if (event->attr.exclude_kernel && !user_mode(regs))
6449 return 1;
6450 }
6451
6452 return 0;
6453}
6454
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006455static int perf_swevent_match(struct perf_event *event,
6456 enum perf_type_id type,
Li Zefan6fb29152009-10-15 11:21:42 +08006457 u32 event_id,
6458 struct perf_sample_data *data,
6459 struct pt_regs *regs)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006460{
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006461 if (event->attr.type != type)
6462 return 0;
Frederic Weisbeckerf5ffe022009-11-23 15:42:34 +01006463
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006464 if (event->attr.config != event_id)
6465 return 0;
6466
Frederic Weisbeckerf5ffe022009-11-23 15:42:34 +01006467 if (perf_exclude_event(event, regs))
6468 return 0;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006469
6470 return 1;
6471}
6472
Frederic Weisbecker76e1d902010-04-05 15:35:57 +02006473static inline u64 swevent_hash(u64 type, u32 event_id)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006474{
Frederic Weisbecker76e1d902010-04-05 15:35:57 +02006475 u64 val = event_id | (type << 32);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006476
Frederic Weisbecker76e1d902010-04-05 15:35:57 +02006477 return hash_64(val, SWEVENT_HLIST_BITS);
6478}
6479
Frederic Weisbecker49f135e2010-05-20 10:17:46 +02006480static inline struct hlist_head *
6481__find_swevent_head(struct swevent_hlist *hlist, u64 type, u32 event_id)
Frederic Weisbecker76e1d902010-04-05 15:35:57 +02006482{
Frederic Weisbecker49f135e2010-05-20 10:17:46 +02006483 u64 hash = swevent_hash(type, event_id);
Frederic Weisbecker76e1d902010-04-05 15:35:57 +02006484
Frederic Weisbecker49f135e2010-05-20 10:17:46 +02006485 return &hlist->heads[hash];
6486}
6487
6488/* For the read side: events when they trigger */
6489static inline struct hlist_head *
Peter Zijlstrab28ab832010-09-06 14:48:15 +02006490find_swevent_head_rcu(struct swevent_htable *swhash, u64 type, u32 event_id)
Frederic Weisbecker49f135e2010-05-20 10:17:46 +02006491{
6492 struct swevent_hlist *hlist;
Frederic Weisbecker76e1d902010-04-05 15:35:57 +02006493
Peter Zijlstrab28ab832010-09-06 14:48:15 +02006494 hlist = rcu_dereference(swhash->swevent_hlist);
Frederic Weisbecker76e1d902010-04-05 15:35:57 +02006495 if (!hlist)
6496 return NULL;
6497
Frederic Weisbecker49f135e2010-05-20 10:17:46 +02006498 return __find_swevent_head(hlist, type, event_id);
6499}
6500
6501/* For the event head insertion and removal in the hlist */
6502static inline struct hlist_head *
Peter Zijlstrab28ab832010-09-06 14:48:15 +02006503find_swevent_head(struct swevent_htable *swhash, struct perf_event *event)
Frederic Weisbecker49f135e2010-05-20 10:17:46 +02006504{
6505 struct swevent_hlist *hlist;
6506 u32 event_id = event->attr.config;
6507 u64 type = event->attr.type;
6508
6509 /*
6510 * Event scheduling is always serialized against hlist allocation
6511 * and release. Which makes the protected version suitable here.
6512 * The context lock guarantees that.
6513 */
Peter Zijlstrab28ab832010-09-06 14:48:15 +02006514 hlist = rcu_dereference_protected(swhash->swevent_hlist,
Frederic Weisbecker49f135e2010-05-20 10:17:46 +02006515 lockdep_is_held(&event->ctx->lock));
6516 if (!hlist)
6517 return NULL;
6518
6519 return __find_swevent_head(hlist, type, event_id);
Frederic Weisbecker76e1d902010-04-05 15:35:57 +02006520}
6521
6522static void do_perf_sw_event(enum perf_type_id type, u32 event_id,
Peter Zijlstraa8b0ca12011-06-27 14:41:57 +02006523 u64 nr,
Frederic Weisbecker76e1d902010-04-05 15:35:57 +02006524 struct perf_sample_data *data,
6525 struct pt_regs *regs)
6526{
Christoph Lameter4a32fea2014-08-17 12:30:27 -05006527 struct swevent_htable *swhash = this_cpu_ptr(&swevent_htable);
Frederic Weisbecker76e1d902010-04-05 15:35:57 +02006528 struct perf_event *event;
Frederic Weisbecker76e1d902010-04-05 15:35:57 +02006529 struct hlist_head *head;
6530
Frederic Weisbecker76e1d902010-04-05 15:35:57 +02006531 rcu_read_lock();
Peter Zijlstrab28ab832010-09-06 14:48:15 +02006532 head = find_swevent_head_rcu(swhash, type, event_id);
Frederic Weisbecker76e1d902010-04-05 15:35:57 +02006533 if (!head)
6534 goto end;
6535
Sasha Levinb67bfe02013-02-27 17:06:00 -08006536 hlist_for_each_entry_rcu(event, head, hlist_entry) {
Li Zefan6fb29152009-10-15 11:21:42 +08006537 if (perf_swevent_match(event, type, event_id, data, regs))
Peter Zijlstraa8b0ca12011-06-27 14:41:57 +02006538 perf_swevent_event(event, nr, data, regs);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006539 }
Frederic Weisbecker76e1d902010-04-05 15:35:57 +02006540end:
6541 rcu_read_unlock();
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006542}
6543
Peter Zijlstra (Intel)86038c52014-12-16 12:47:34 +01006544DEFINE_PER_CPU(struct pt_regs, __perf_regs[4]);
6545
Peter Zijlstra4ed7c922009-11-23 11:37:29 +01006546int perf_swevent_get_recursion_context(void)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006547{
Christoph Lameter4a32fea2014-08-17 12:30:27 -05006548 struct swevent_htable *swhash = this_cpu_ptr(&swevent_htable);
Frederic Weisbeckerce71b9d2009-11-22 05:26:55 +01006549
Peter Zijlstrab28ab832010-09-06 14:48:15 +02006550 return get_recursion_context(swhash->recursion);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006551}
Ingo Molnar645e8cc2009-11-22 12:20:19 +01006552EXPORT_SYMBOL_GPL(perf_swevent_get_recursion_context);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006553
Jesper Juhlfa9f90b2010-11-28 21:39:34 +01006554inline void perf_swevent_put_recursion_context(int rctx)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006555{
Christoph Lameter4a32fea2014-08-17 12:30:27 -05006556 struct swevent_htable *swhash = this_cpu_ptr(&swevent_htable);
Frederic Weisbecker927c7a92010-07-01 16:20:36 +02006557
Peter Zijlstrab28ab832010-09-06 14:48:15 +02006558 put_recursion_context(swhash->recursion, rctx);
Frederic Weisbeckerce71b9d2009-11-22 05:26:55 +01006559}
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006560
Peter Zijlstra (Intel)86038c52014-12-16 12:47:34 +01006561void ___perf_sw_event(u32 event_id, u64 nr, struct pt_regs *regs, u64 addr)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006562{
Ingo Molnara4234bf2009-11-23 10:57:59 +01006563 struct perf_sample_data data;
Peter Zijlstra (Intel)86038c52014-12-16 12:47:34 +01006564
6565 if (WARN_ON_ONCE(!regs))
6566 return;
6567
6568 perf_sample_data_init(&data, addr, 0);
6569 do_perf_sw_event(PERF_TYPE_SOFTWARE, event_id, nr, &data, regs);
6570}
6571
6572void __perf_sw_event(u32 event_id, u64 nr, struct pt_regs *regs, u64 addr)
6573{
Peter Zijlstra4ed7c922009-11-23 11:37:29 +01006574 int rctx;
6575
Peter Zijlstra1c024eca2010-05-19 14:02:22 +02006576 preempt_disable_notrace();
Peter Zijlstra4ed7c922009-11-23 11:37:29 +01006577 rctx = perf_swevent_get_recursion_context();
Peter Zijlstra (Intel)86038c52014-12-16 12:47:34 +01006578 if (unlikely(rctx < 0))
6579 goto fail;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006580
Peter Zijlstra (Intel)86038c52014-12-16 12:47:34 +01006581 ___perf_sw_event(event_id, nr, regs, addr);
Peter Zijlstra4ed7c922009-11-23 11:37:29 +01006582
6583 perf_swevent_put_recursion_context(rctx);
Peter Zijlstra (Intel)86038c52014-12-16 12:47:34 +01006584fail:
Peter Zijlstra1c024eca2010-05-19 14:02:22 +02006585 preempt_enable_notrace();
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006586}
6587
6588static void perf_swevent_read(struct perf_event *event)
6589{
6590}
6591
Peter Zijlstraa4eaf7f2010-06-16 14:37:10 +02006592static int perf_swevent_add(struct perf_event *event, int flags)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006593{
Christoph Lameter4a32fea2014-08-17 12:30:27 -05006594 struct swevent_htable *swhash = this_cpu_ptr(&swevent_htable);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006595 struct hw_perf_event *hwc = &event->hw;
Frederic Weisbecker76e1d902010-04-05 15:35:57 +02006596 struct hlist_head *head;
6597
Franck Bui-Huu6c7e5502010-11-23 16:21:43 +01006598 if (is_sampling_event(event)) {
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006599 hwc->last_period = hwc->sample_period;
6600 perf_swevent_set_period(event);
6601 }
Frederic Weisbecker76e1d902010-04-05 15:35:57 +02006602
Peter Zijlstraa4eaf7f2010-06-16 14:37:10 +02006603 hwc->state = !(flags & PERF_EF_START);
6604
Peter Zijlstrab28ab832010-09-06 14:48:15 +02006605 head = find_swevent_head(swhash, event);
Jiri Olsa39af6b12014-04-07 11:04:08 +02006606 if (!head) {
6607 /*
6608 * We can race with cpu hotplug code. Do not
6609 * WARN if the cpu just got unplugged.
6610 */
6611 WARN_ON_ONCE(swhash->online);
Frederic Weisbecker76e1d902010-04-05 15:35:57 +02006612 return -EINVAL;
Jiri Olsa39af6b12014-04-07 11:04:08 +02006613 }
Frederic Weisbecker76e1d902010-04-05 15:35:57 +02006614
6615 hlist_add_head_rcu(&event->hlist_entry, head);
Shaohua Li6a694a62015-02-05 15:55:32 -08006616 perf_event_update_userpage(event);
Frederic Weisbecker76e1d902010-04-05 15:35:57 +02006617
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006618 return 0;
6619}
6620
Peter Zijlstraa4eaf7f2010-06-16 14:37:10 +02006621static void perf_swevent_del(struct perf_event *event, int flags)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006622{
Frederic Weisbecker76e1d902010-04-05 15:35:57 +02006623 hlist_del_rcu(&event->hlist_entry);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006624}
6625
Peter Zijlstraa4eaf7f2010-06-16 14:37:10 +02006626static void perf_swevent_start(struct perf_event *event, int flags)
Peter Zijlstrac6df8d52010-06-03 11:21:20 +02006627{
Peter Zijlstraa4eaf7f2010-06-16 14:37:10 +02006628 event->hw.state = 0;
Peter Zijlstrac6df8d52010-06-03 11:21:20 +02006629}
6630
Peter Zijlstraa4eaf7f2010-06-16 14:37:10 +02006631static void perf_swevent_stop(struct perf_event *event, int flags)
Peter Zijlstrac6df8d52010-06-03 11:21:20 +02006632{
Peter Zijlstraa4eaf7f2010-06-16 14:37:10 +02006633 event->hw.state = PERF_HES_STOPPED;
Peter Zijlstrac6df8d52010-06-03 11:21:20 +02006634}
6635
Frederic Weisbecker49f135e2010-05-20 10:17:46 +02006636/* Deref the hlist from the update side */
6637static inline struct swevent_hlist *
Peter Zijlstrab28ab832010-09-06 14:48:15 +02006638swevent_hlist_deref(struct swevent_htable *swhash)
Frederic Weisbecker49f135e2010-05-20 10:17:46 +02006639{
Peter Zijlstrab28ab832010-09-06 14:48:15 +02006640 return rcu_dereference_protected(swhash->swevent_hlist,
6641 lockdep_is_held(&swhash->hlist_mutex));
Frederic Weisbecker49f135e2010-05-20 10:17:46 +02006642}
6643
Peter Zijlstrab28ab832010-09-06 14:48:15 +02006644static void swevent_hlist_release(struct swevent_htable *swhash)
Frederic Weisbecker76e1d902010-04-05 15:35:57 +02006645{
Peter Zijlstrab28ab832010-09-06 14:48:15 +02006646 struct swevent_hlist *hlist = swevent_hlist_deref(swhash);
Frederic Weisbecker76e1d902010-04-05 15:35:57 +02006647
Frederic Weisbecker49f135e2010-05-20 10:17:46 +02006648 if (!hlist)
Frederic Weisbecker76e1d902010-04-05 15:35:57 +02006649 return;
6650
Andreea-Cristina Bernat70691d42014-08-22 16:26:05 +03006651 RCU_INIT_POINTER(swhash->swevent_hlist, NULL);
Lai Jiangshanfa4bbc42011-03-18 12:08:29 +08006652 kfree_rcu(hlist, rcu_head);
Frederic Weisbecker76e1d902010-04-05 15:35:57 +02006653}
6654
6655static void swevent_hlist_put_cpu(struct perf_event *event, int cpu)
6656{
Peter Zijlstrab28ab832010-09-06 14:48:15 +02006657 struct swevent_htable *swhash = &per_cpu(swevent_htable, cpu);
Frederic Weisbecker76e1d902010-04-05 15:35:57 +02006658
Peter Zijlstrab28ab832010-09-06 14:48:15 +02006659 mutex_lock(&swhash->hlist_mutex);
Frederic Weisbecker76e1d902010-04-05 15:35:57 +02006660
Peter Zijlstrab28ab832010-09-06 14:48:15 +02006661 if (!--swhash->hlist_refcount)
6662 swevent_hlist_release(swhash);
Frederic Weisbecker76e1d902010-04-05 15:35:57 +02006663
Peter Zijlstrab28ab832010-09-06 14:48:15 +02006664 mutex_unlock(&swhash->hlist_mutex);
Frederic Weisbecker76e1d902010-04-05 15:35:57 +02006665}
6666
6667static void swevent_hlist_put(struct perf_event *event)
6668{
6669 int cpu;
6670
Frederic Weisbecker76e1d902010-04-05 15:35:57 +02006671 for_each_possible_cpu(cpu)
6672 swevent_hlist_put_cpu(event, cpu);
6673}
6674
6675static int swevent_hlist_get_cpu(struct perf_event *event, int cpu)
6676{
Peter Zijlstrab28ab832010-09-06 14:48:15 +02006677 struct swevent_htable *swhash = &per_cpu(swevent_htable, cpu);
Frederic Weisbecker76e1d902010-04-05 15:35:57 +02006678 int err = 0;
6679
Peter Zijlstrab28ab832010-09-06 14:48:15 +02006680 mutex_lock(&swhash->hlist_mutex);
Frederic Weisbecker76e1d902010-04-05 15:35:57 +02006681
Peter Zijlstrab28ab832010-09-06 14:48:15 +02006682 if (!swevent_hlist_deref(swhash) && cpu_online(cpu)) {
Frederic Weisbecker76e1d902010-04-05 15:35:57 +02006683 struct swevent_hlist *hlist;
6684
6685 hlist = kzalloc(sizeof(*hlist), GFP_KERNEL);
6686 if (!hlist) {
6687 err = -ENOMEM;
6688 goto exit;
6689 }
Peter Zijlstrab28ab832010-09-06 14:48:15 +02006690 rcu_assign_pointer(swhash->swevent_hlist, hlist);
Frederic Weisbecker76e1d902010-04-05 15:35:57 +02006691 }
Peter Zijlstrab28ab832010-09-06 14:48:15 +02006692 swhash->hlist_refcount++;
Peter Zijlstra9ed60602010-06-11 17:36:35 +02006693exit:
Peter Zijlstrab28ab832010-09-06 14:48:15 +02006694 mutex_unlock(&swhash->hlist_mutex);
Frederic Weisbecker76e1d902010-04-05 15:35:57 +02006695
6696 return err;
6697}
6698
6699static int swevent_hlist_get(struct perf_event *event)
6700{
6701 int err;
6702 int cpu, failed_cpu;
6703
Frederic Weisbecker76e1d902010-04-05 15:35:57 +02006704 get_online_cpus();
6705 for_each_possible_cpu(cpu) {
6706 err = swevent_hlist_get_cpu(event, cpu);
6707 if (err) {
6708 failed_cpu = cpu;
6709 goto fail;
6710 }
6711 }
6712 put_online_cpus();
6713
6714 return 0;
Peter Zijlstra9ed60602010-06-11 17:36:35 +02006715fail:
Frederic Weisbecker76e1d902010-04-05 15:35:57 +02006716 for_each_possible_cpu(cpu) {
6717 if (cpu == failed_cpu)
6718 break;
6719 swevent_hlist_put_cpu(event, cpu);
6720 }
6721
6722 put_online_cpus();
6723 return err;
6724}
6725
Ingo Molnarc5905af2012-02-24 08:31:31 +01006726struct static_key perf_swevent_enabled[PERF_COUNT_SW_MAX];
Frederic Weisbecker95476b62010-04-14 23:42:18 +02006727
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02006728static void sw_perf_event_destroy(struct perf_event *event)
6729{
6730 u64 event_id = event->attr.config;
6731
6732 WARN_ON(event->parent);
6733
Ingo Molnarc5905af2012-02-24 08:31:31 +01006734 static_key_slow_dec(&perf_swevent_enabled[event_id]);
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02006735 swevent_hlist_put(event);
6736}
6737
6738static int perf_swevent_init(struct perf_event *event)
6739{
Tommi Rantala8176cce2013-04-13 22:49:14 +03006740 u64 event_id = event->attr.config;
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02006741
6742 if (event->attr.type != PERF_TYPE_SOFTWARE)
6743 return -ENOENT;
6744
Stephane Eranian2481c5f2012-02-09 23:20:59 +01006745 /*
6746 * no branch sampling for software events
6747 */
6748 if (has_branch_stack(event))
6749 return -EOPNOTSUPP;
6750
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02006751 switch (event_id) {
6752 case PERF_COUNT_SW_CPU_CLOCK:
6753 case PERF_COUNT_SW_TASK_CLOCK:
6754 return -ENOENT;
6755
6756 default:
6757 break;
6758 }
6759
Dan Carpenterce677832010-10-24 21:50:42 +02006760 if (event_id >= PERF_COUNT_SW_MAX)
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02006761 return -ENOENT;
6762
6763 if (!event->parent) {
6764 int err;
6765
6766 err = swevent_hlist_get(event);
6767 if (err)
6768 return err;
6769
Ingo Molnarc5905af2012-02-24 08:31:31 +01006770 static_key_slow_inc(&perf_swevent_enabled[event_id]);
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02006771 event->destroy = sw_perf_event_destroy;
6772 }
6773
6774 return 0;
6775}
6776
6777static struct pmu perf_swevent = {
Peter Zijlstra89a1e182010-09-07 17:34:50 +02006778 .task_ctx_nr = perf_sw_context,
6779
Peter Zijlstra34f43922015-02-20 14:05:38 +01006780 .capabilities = PERF_PMU_CAP_NO_NMI,
6781
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02006782 .event_init = perf_swevent_init,
Peter Zijlstraa4eaf7f2010-06-16 14:37:10 +02006783 .add = perf_swevent_add,
6784 .del = perf_swevent_del,
6785 .start = perf_swevent_start,
6786 .stop = perf_swevent_stop,
Peter Zijlstra1c024eca2010-05-19 14:02:22 +02006787 .read = perf_swevent_read,
Peter Zijlstra1c024eca2010-05-19 14:02:22 +02006788};
Frederic Weisbecker95476b62010-04-14 23:42:18 +02006789
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02006790#ifdef CONFIG_EVENT_TRACING
6791
Peter Zijlstra1c024eca2010-05-19 14:02:22 +02006792static int perf_tp_filter_match(struct perf_event *event,
Frederic Weisbecker95476b62010-04-14 23:42:18 +02006793 struct perf_sample_data *data)
6794{
6795 void *record = data->raw->data;
6796
6797 if (likely(!event->filter) || filter_match_preds(event->filter, record))
6798 return 1;
6799 return 0;
6800}
6801
Peter Zijlstra1c024eca2010-05-19 14:02:22 +02006802static int perf_tp_event_match(struct perf_event *event,
6803 struct perf_sample_data *data,
6804 struct pt_regs *regs)
6805{
Frederic Weisbeckera0f7d0f2011-03-07 21:27:09 +01006806 if (event->hw.state & PERF_HES_STOPPED)
6807 return 0;
Peter Zijlstra580d6072010-05-20 20:54:31 +02006808 /*
6809 * All tracepoints are from kernel-space.
6810 */
6811 if (event->attr.exclude_kernel)
Peter Zijlstra1c024eca2010-05-19 14:02:22 +02006812 return 0;
6813
6814 if (!perf_tp_filter_match(event, data))
6815 return 0;
6816
6817 return 1;
6818}
6819
6820void perf_tp_event(u64 addr, u64 count, void *record, int entry_size,
Andrew Vagine6dab5f2012-07-11 18:14:58 +04006821 struct pt_regs *regs, struct hlist_head *head, int rctx,
6822 struct task_struct *task)
Peter Zijlstra1c024eca2010-05-19 14:02:22 +02006823{
6824 struct perf_sample_data data;
6825 struct perf_event *event;
Peter Zijlstra1c024eca2010-05-19 14:02:22 +02006826
6827 struct perf_raw_record raw = {
6828 .size = entry_size,
6829 .data = record,
6830 };
6831
Robert Richterfd0d0002012-04-02 20:19:08 +02006832 perf_sample_data_init(&data, addr, 0);
Peter Zijlstra1c024eca2010-05-19 14:02:22 +02006833 data.raw = &raw;
6834
Sasha Levinb67bfe02013-02-27 17:06:00 -08006835 hlist_for_each_entry_rcu(event, head, hlist_entry) {
Peter Zijlstra1c024eca2010-05-19 14:02:22 +02006836 if (perf_tp_event_match(event, &data, regs))
Peter Zijlstraa8b0ca12011-06-27 14:41:57 +02006837 perf_swevent_event(event, count, &data, regs);
Peter Zijlstra1c024eca2010-05-19 14:02:22 +02006838 }
Peter Zijlstraecc55f82010-05-21 15:11:34 +02006839
Andrew Vagine6dab5f2012-07-11 18:14:58 +04006840 /*
6841 * If we got specified a target task, also iterate its context and
6842 * deliver this event there too.
6843 */
6844 if (task && task != current) {
6845 struct perf_event_context *ctx;
6846 struct trace_entry *entry = record;
6847
6848 rcu_read_lock();
6849 ctx = rcu_dereference(task->perf_event_ctxp[perf_sw_context]);
6850 if (!ctx)
6851 goto unlock;
6852
6853 list_for_each_entry_rcu(event, &ctx->event_list, event_entry) {
6854 if (event->attr.type != PERF_TYPE_TRACEPOINT)
6855 continue;
6856 if (event->attr.config != entry->type)
6857 continue;
6858 if (perf_tp_event_match(event, &data, regs))
6859 perf_swevent_event(event, count, &data, regs);
6860 }
6861unlock:
6862 rcu_read_unlock();
6863 }
6864
Peter Zijlstraecc55f82010-05-21 15:11:34 +02006865 perf_swevent_put_recursion_context(rctx);
Peter Zijlstra1c024eca2010-05-19 14:02:22 +02006866}
6867EXPORT_SYMBOL_GPL(perf_tp_event);
6868
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006869static void tp_perf_event_destroy(struct perf_event *event)
6870{
Peter Zijlstra1c024eca2010-05-19 14:02:22 +02006871 perf_trace_destroy(event);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006872}
6873
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02006874static int perf_tp_event_init(struct perf_event *event)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006875{
Frederic Weisbecker76e1d902010-04-05 15:35:57 +02006876 int err;
6877
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02006878 if (event->attr.type != PERF_TYPE_TRACEPOINT)
6879 return -ENOENT;
6880
Stephane Eranian2481c5f2012-02-09 23:20:59 +01006881 /*
6882 * no branch sampling for tracepoint events
6883 */
6884 if (has_branch_stack(event))
6885 return -EOPNOTSUPP;
6886
Peter Zijlstra1c024eca2010-05-19 14:02:22 +02006887 err = perf_trace_init(event);
6888 if (err)
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02006889 return err;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006890
6891 event->destroy = tp_perf_event_destroy;
6892
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02006893 return 0;
6894}
6895
6896static struct pmu perf_tracepoint = {
Peter Zijlstra89a1e182010-09-07 17:34:50 +02006897 .task_ctx_nr = perf_sw_context,
6898
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02006899 .event_init = perf_tp_event_init,
Peter Zijlstraa4eaf7f2010-06-16 14:37:10 +02006900 .add = perf_trace_add,
6901 .del = perf_trace_del,
6902 .start = perf_swevent_start,
6903 .stop = perf_swevent_stop,
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02006904 .read = perf_swevent_read,
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02006905};
6906
6907static inline void perf_tp_register(void)
6908{
Peter Zijlstra2e80a822010-11-17 23:17:36 +01006909 perf_pmu_register(&perf_tracepoint, "tracepoint", PERF_TYPE_TRACEPOINT);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006910}
Li Zefan6fb29152009-10-15 11:21:42 +08006911
6912static int perf_event_set_filter(struct perf_event *event, void __user *arg)
6913{
6914 char *filter_str;
6915 int ret;
6916
6917 if (event->attr.type != PERF_TYPE_TRACEPOINT)
6918 return -EINVAL;
6919
6920 filter_str = strndup_user(arg, PAGE_SIZE);
6921 if (IS_ERR(filter_str))
6922 return PTR_ERR(filter_str);
6923
6924 ret = ftrace_profile_set_filter(event, event->attr.config, filter_str);
6925
6926 kfree(filter_str);
6927 return ret;
6928}
6929
6930static void perf_event_free_filter(struct perf_event *event)
6931{
6932 ftrace_profile_free_filter(event);
6933}
6934
Alexei Starovoitov25415172015-03-25 12:49:20 -07006935static int perf_event_set_bpf_prog(struct perf_event *event, u32 prog_fd)
6936{
6937 struct bpf_prog *prog;
6938
6939 if (event->attr.type != PERF_TYPE_TRACEPOINT)
6940 return -EINVAL;
6941
6942 if (event->tp_event->prog)
6943 return -EEXIST;
6944
Wang Nan04a22fa2015-07-01 02:13:50 +00006945 if (!(event->tp_event->flags & TRACE_EVENT_FL_UKPROBE))
6946 /* bpf programs can only be attached to u/kprobes */
Alexei Starovoitov25415172015-03-25 12:49:20 -07006947 return -EINVAL;
6948
6949 prog = bpf_prog_get(prog_fd);
6950 if (IS_ERR(prog))
6951 return PTR_ERR(prog);
6952
Linus Torvalds6c373ca2015-04-15 09:00:47 -07006953 if (prog->type != BPF_PROG_TYPE_KPROBE) {
Alexei Starovoitov25415172015-03-25 12:49:20 -07006954 /* valid fd, but invalid bpf program type */
6955 bpf_prog_put(prog);
6956 return -EINVAL;
6957 }
6958
6959 event->tp_event->prog = prog;
6960
6961 return 0;
6962}
6963
6964static void perf_event_free_bpf_prog(struct perf_event *event)
6965{
6966 struct bpf_prog *prog;
6967
6968 if (!event->tp_event)
6969 return;
6970
6971 prog = event->tp_event->prog;
6972 if (prog) {
6973 event->tp_event->prog = NULL;
6974 bpf_prog_put(prog);
6975 }
6976}
6977
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006978#else
Li Zefan6fb29152009-10-15 11:21:42 +08006979
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02006980static inline void perf_tp_register(void)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006981{
Ingo Molnarcdd6c482009-09-21 12:02:48 +02006982}
Li Zefan6fb29152009-10-15 11:21:42 +08006983
6984static int perf_event_set_filter(struct perf_event *event, void __user *arg)
6985{
6986 return -ENOENT;
6987}
6988
6989static void perf_event_free_filter(struct perf_event *event)
6990{
6991}
6992
Alexei Starovoitov25415172015-03-25 12:49:20 -07006993static int perf_event_set_bpf_prog(struct perf_event *event, u32 prog_fd)
6994{
6995 return -ENOENT;
6996}
6997
6998static void perf_event_free_bpf_prog(struct perf_event *event)
6999{
7000}
Li Zefan07b139c2009-12-21 14:27:35 +08007001#endif /* CONFIG_EVENT_TRACING */
Ingo Molnarcdd6c482009-09-21 12:02:48 +02007002
Frederic Weisbecker24f1e32c2009-09-09 19:22:48 +02007003#ifdef CONFIG_HAVE_HW_BREAKPOINT
Frederic Weisbeckerf5ffe022009-11-23 15:42:34 +01007004void perf_bp_event(struct perf_event *bp, void *data)
Frederic Weisbecker24f1e32c2009-09-09 19:22:48 +02007005{
Frederic Weisbeckerf5ffe022009-11-23 15:42:34 +01007006 struct perf_sample_data sample;
7007 struct pt_regs *regs = data;
7008
Robert Richterfd0d0002012-04-02 20:19:08 +02007009 perf_sample_data_init(&sample, bp->attr.bp_addr, 0);
Frederic Weisbeckerf5ffe022009-11-23 15:42:34 +01007010
Peter Zijlstraa4eaf7f2010-06-16 14:37:10 +02007011 if (!bp->hw.state && !perf_exclude_event(bp, regs))
Peter Zijlstraa8b0ca12011-06-27 14:41:57 +02007012 perf_swevent_event(bp, 1, &sample, regs);
Frederic Weisbecker24f1e32c2009-09-09 19:22:48 +02007013}
7014#endif
7015
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02007016/*
7017 * hrtimer based swevent callback
7018 */
Ingo Molnarcdd6c482009-09-21 12:02:48 +02007019
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02007020static enum hrtimer_restart perf_swevent_hrtimer(struct hrtimer *hrtimer)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02007021{
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02007022 enum hrtimer_restart ret = HRTIMER_RESTART;
7023 struct perf_sample_data data;
7024 struct pt_regs *regs;
7025 struct perf_event *event;
7026 u64 period;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02007027
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02007028 event = container_of(hrtimer, struct perf_event, hw.hrtimer);
Peter Zijlstraba3dd362011-02-15 12:41:46 +01007029
7030 if (event->state != PERF_EVENT_STATE_ACTIVE)
7031 return HRTIMER_NORESTART;
7032
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02007033 event->pmu->read(event);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02007034
Robert Richterfd0d0002012-04-02 20:19:08 +02007035 perf_sample_data_init(&data, 0, event->hw.last_period);
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02007036 regs = get_irq_regs();
7037
7038 if (regs && !perf_exclude_event(event, regs)) {
Paul E. McKenney77aeeeb2011-11-10 16:02:52 -08007039 if (!(event->attr.exclude_idle && is_idle_task(current)))
Robert Richter33b07b82012-04-05 18:24:43 +02007040 if (__perf_event_overflow(event, 1, &data, regs))
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02007041 ret = HRTIMER_NORESTART;
7042 }
7043
7044 period = max_t(u64, 10000, event->hw.sample_period);
7045 hrtimer_forward_now(hrtimer, ns_to_ktime(period));
7046
7047 return ret;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02007048}
7049
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02007050static void perf_swevent_start_hrtimer(struct perf_event *event)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02007051{
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02007052 struct hw_perf_event *hwc = &event->hw;
Franck Bui-Huu5d508e82010-11-23 16:21:45 +01007053 s64 period;
7054
7055 if (!is_sampling_event(event))
7056 return;
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02007057
Franck Bui-Huu5d508e82010-11-23 16:21:45 +01007058 period = local64_read(&hwc->period_left);
7059 if (period) {
7060 if (period < 0)
7061 period = 10000;
Peter Zijlstrafa407f32010-06-24 12:35:12 +02007062
Franck Bui-Huu5d508e82010-11-23 16:21:45 +01007063 local64_set(&hwc->period_left, 0);
7064 } else {
7065 period = max_t(u64, 10000, hwc->sample_period);
7066 }
Thomas Gleixner3497d202015-04-14 21:09:03 +00007067 hrtimer_start(&hwc->hrtimer, ns_to_ktime(period),
7068 HRTIMER_MODE_REL_PINNED);
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02007069}
7070
7071static void perf_swevent_cancel_hrtimer(struct perf_event *event)
7072{
7073 struct hw_perf_event *hwc = &event->hw;
7074
Franck Bui-Huu6c7e5502010-11-23 16:21:43 +01007075 if (is_sampling_event(event)) {
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02007076 ktime_t remaining = hrtimer_get_remaining(&hwc->hrtimer);
Peter Zijlstrafa407f32010-06-24 12:35:12 +02007077 local64_set(&hwc->period_left, ktime_to_ns(remaining));
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02007078
7079 hrtimer_cancel(&hwc->hrtimer);
7080 }
7081}
7082
Peter Zijlstraba3dd362011-02-15 12:41:46 +01007083static void perf_swevent_init_hrtimer(struct perf_event *event)
7084{
7085 struct hw_perf_event *hwc = &event->hw;
7086
7087 if (!is_sampling_event(event))
7088 return;
7089
7090 hrtimer_init(&hwc->hrtimer, CLOCK_MONOTONIC, HRTIMER_MODE_REL);
7091 hwc->hrtimer.function = perf_swevent_hrtimer;
7092
7093 /*
7094 * Since hrtimers have a fixed rate, we can do a static freq->period
7095 * mapping and avoid the whole period adjust feedback stuff.
7096 */
7097 if (event->attr.freq) {
7098 long freq = event->attr.sample_freq;
7099
7100 event->attr.sample_period = NSEC_PER_SEC / freq;
7101 hwc->sample_period = event->attr.sample_period;
7102 local64_set(&hwc->period_left, hwc->sample_period);
Namhyung Kim778141e2013-03-18 11:41:46 +09007103 hwc->last_period = hwc->sample_period;
Peter Zijlstraba3dd362011-02-15 12:41:46 +01007104 event->attr.freq = 0;
7105 }
7106}
7107
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02007108/*
7109 * Software event: cpu wall time clock
7110 */
7111
7112static void cpu_clock_event_update(struct perf_event *event)
7113{
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02007114 s64 prev;
7115 u64 now;
7116
Peter Zijlstraa4eaf7f2010-06-16 14:37:10 +02007117 now = local_clock();
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02007118 prev = local64_xchg(&event->hw.prev_count, now);
7119 local64_add(now - prev, &event->count);
7120}
7121
Peter Zijlstraa4eaf7f2010-06-16 14:37:10 +02007122static void cpu_clock_event_start(struct perf_event *event, int flags)
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02007123{
Peter Zijlstraa4eaf7f2010-06-16 14:37:10 +02007124 local64_set(&event->hw.prev_count, local_clock());
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02007125 perf_swevent_start_hrtimer(event);
Peter Zijlstraa4eaf7f2010-06-16 14:37:10 +02007126}
7127
7128static void cpu_clock_event_stop(struct perf_event *event, int flags)
7129{
7130 perf_swevent_cancel_hrtimer(event);
7131 cpu_clock_event_update(event);
7132}
7133
7134static int cpu_clock_event_add(struct perf_event *event, int flags)
7135{
7136 if (flags & PERF_EF_START)
7137 cpu_clock_event_start(event, flags);
Shaohua Li6a694a62015-02-05 15:55:32 -08007138 perf_event_update_userpage(event);
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02007139
7140 return 0;
7141}
7142
Peter Zijlstraa4eaf7f2010-06-16 14:37:10 +02007143static void cpu_clock_event_del(struct perf_event *event, int flags)
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02007144{
Peter Zijlstraa4eaf7f2010-06-16 14:37:10 +02007145 cpu_clock_event_stop(event, flags);
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02007146}
7147
7148static void cpu_clock_event_read(struct perf_event *event)
7149{
7150 cpu_clock_event_update(event);
7151}
7152
7153static int cpu_clock_event_init(struct perf_event *event)
7154{
7155 if (event->attr.type != PERF_TYPE_SOFTWARE)
7156 return -ENOENT;
7157
7158 if (event->attr.config != PERF_COUNT_SW_CPU_CLOCK)
7159 return -ENOENT;
7160
Stephane Eranian2481c5f2012-02-09 23:20:59 +01007161 /*
7162 * no branch sampling for software events
7163 */
7164 if (has_branch_stack(event))
7165 return -EOPNOTSUPP;
7166
Peter Zijlstraba3dd362011-02-15 12:41:46 +01007167 perf_swevent_init_hrtimer(event);
7168
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02007169 return 0;
7170}
7171
7172static struct pmu perf_cpu_clock = {
Peter Zijlstra89a1e182010-09-07 17:34:50 +02007173 .task_ctx_nr = perf_sw_context,
7174
Peter Zijlstra34f43922015-02-20 14:05:38 +01007175 .capabilities = PERF_PMU_CAP_NO_NMI,
7176
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02007177 .event_init = cpu_clock_event_init,
Peter Zijlstraa4eaf7f2010-06-16 14:37:10 +02007178 .add = cpu_clock_event_add,
7179 .del = cpu_clock_event_del,
7180 .start = cpu_clock_event_start,
7181 .stop = cpu_clock_event_stop,
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02007182 .read = cpu_clock_event_read,
7183};
7184
7185/*
7186 * Software event: task time clock
7187 */
7188
7189static void task_clock_event_update(struct perf_event *event, u64 now)
7190{
7191 u64 prev;
7192 s64 delta;
7193
7194 prev = local64_xchg(&event->hw.prev_count, now);
7195 delta = now - prev;
7196 local64_add(delta, &event->count);
7197}
7198
Peter Zijlstraa4eaf7f2010-06-16 14:37:10 +02007199static void task_clock_event_start(struct perf_event *event, int flags)
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02007200{
Peter Zijlstraa4eaf7f2010-06-16 14:37:10 +02007201 local64_set(&event->hw.prev_count, event->ctx->time);
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02007202 perf_swevent_start_hrtimer(event);
Peter Zijlstraa4eaf7f2010-06-16 14:37:10 +02007203}
7204
7205static void task_clock_event_stop(struct perf_event *event, int flags)
7206{
7207 perf_swevent_cancel_hrtimer(event);
7208 task_clock_event_update(event, event->ctx->time);
7209}
7210
7211static int task_clock_event_add(struct perf_event *event, int flags)
7212{
7213 if (flags & PERF_EF_START)
7214 task_clock_event_start(event, flags);
Shaohua Li6a694a62015-02-05 15:55:32 -08007215 perf_event_update_userpage(event);
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02007216
7217 return 0;
7218}
7219
Peter Zijlstraa4eaf7f2010-06-16 14:37:10 +02007220static void task_clock_event_del(struct perf_event *event, int flags)
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02007221{
Peter Zijlstraa4eaf7f2010-06-16 14:37:10 +02007222 task_clock_event_stop(event, PERF_EF_UPDATE);
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02007223}
7224
7225static void task_clock_event_read(struct perf_event *event)
7226{
Peter Zijlstra768a06e2011-02-22 16:52:24 +01007227 u64 now = perf_clock();
7228 u64 delta = now - event->ctx->timestamp;
7229 u64 time = event->ctx->time + delta;
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02007230
7231 task_clock_event_update(event, time);
7232}
7233
7234static int task_clock_event_init(struct perf_event *event)
7235{
7236 if (event->attr.type != PERF_TYPE_SOFTWARE)
7237 return -ENOENT;
7238
7239 if (event->attr.config != PERF_COUNT_SW_TASK_CLOCK)
7240 return -ENOENT;
7241
Stephane Eranian2481c5f2012-02-09 23:20:59 +01007242 /*
7243 * no branch sampling for software events
7244 */
7245 if (has_branch_stack(event))
7246 return -EOPNOTSUPP;
7247
Peter Zijlstraba3dd362011-02-15 12:41:46 +01007248 perf_swevent_init_hrtimer(event);
7249
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02007250 return 0;
7251}
7252
7253static struct pmu perf_task_clock = {
Peter Zijlstra89a1e182010-09-07 17:34:50 +02007254 .task_ctx_nr = perf_sw_context,
7255
Peter Zijlstra34f43922015-02-20 14:05:38 +01007256 .capabilities = PERF_PMU_CAP_NO_NMI,
7257
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02007258 .event_init = task_clock_event_init,
Peter Zijlstraa4eaf7f2010-06-16 14:37:10 +02007259 .add = task_clock_event_add,
7260 .del = task_clock_event_del,
7261 .start = task_clock_event_start,
7262 .stop = task_clock_event_stop,
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02007263 .read = task_clock_event_read,
7264};
7265
Peter Zijlstraad5133b2010-06-15 12:22:39 +02007266static void perf_pmu_nop_void(struct pmu *pmu)
7267{
7268}
7269
Sukadev Bhattiprolufbbe0702015-09-03 20:07:45 -07007270static void perf_pmu_nop_txn(struct pmu *pmu, unsigned int flags)
7271{
7272}
7273
Peter Zijlstraad5133b2010-06-15 12:22:39 +02007274static int perf_pmu_nop_int(struct pmu *pmu)
7275{
7276 return 0;
7277}
7278
Sukadev Bhattiprolufbbe0702015-09-03 20:07:45 -07007279DEFINE_PER_CPU(unsigned int, nop_txn_flags);
7280
7281static void perf_pmu_start_txn(struct pmu *pmu, unsigned int flags)
Peter Zijlstraad5133b2010-06-15 12:22:39 +02007282{
Sukadev Bhattiprolufbbe0702015-09-03 20:07:45 -07007283 __this_cpu_write(nop_txn_flags, flags);
7284
7285 if (flags & ~PERF_PMU_TXN_ADD)
7286 return;
7287
Peter Zijlstraad5133b2010-06-15 12:22:39 +02007288 perf_pmu_disable(pmu);
7289}
7290
7291static int perf_pmu_commit_txn(struct pmu *pmu)
7292{
Sukadev Bhattiprolufbbe0702015-09-03 20:07:45 -07007293 unsigned int flags = __this_cpu_read(nop_txn_flags);
7294
7295 __this_cpu_write(nop_txn_flags, 0);
7296
7297 if (flags & ~PERF_PMU_TXN_ADD)
7298 return 0;
7299
Peter Zijlstraad5133b2010-06-15 12:22:39 +02007300 perf_pmu_enable(pmu);
7301 return 0;
7302}
7303
7304static void perf_pmu_cancel_txn(struct pmu *pmu)
7305{
Sukadev Bhattiprolufbbe0702015-09-03 20:07:45 -07007306 unsigned int flags = __this_cpu_read(nop_txn_flags);
7307
7308 __this_cpu_write(nop_txn_flags, 0);
7309
7310 if (flags & ~PERF_PMU_TXN_ADD)
7311 return;
7312
Peter Zijlstraad5133b2010-06-15 12:22:39 +02007313 perf_pmu_enable(pmu);
7314}
7315
Peter Zijlstra35edc2a2011-11-20 20:36:02 +01007316static int perf_event_idx_default(struct perf_event *event)
7317{
Peter Zijlstrac719f562014-10-21 11:10:21 +02007318 return 0;
Peter Zijlstra35edc2a2011-11-20 20:36:02 +01007319}
7320
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02007321/*
7322 * Ensures all contexts with the same task_ctx_nr have the same
7323 * pmu_cpu_context too.
7324 */
Mark Rutland9e317042014-02-10 17:44:18 +00007325static struct perf_cpu_context __percpu *find_pmu_context(int ctxn)
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02007326{
7327 struct pmu *pmu;
7328
7329 if (ctxn < 0)
7330 return NULL;
7331
7332 list_for_each_entry(pmu, &pmus, entry) {
7333 if (pmu->task_ctx_nr == ctxn)
7334 return pmu->pmu_cpu_context;
7335 }
7336
7337 return NULL;
7338}
7339
Peter Zijlstra51676952010-12-07 14:18:20 +01007340static void update_pmu_context(struct pmu *pmu, struct pmu *old_pmu)
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02007341{
Peter Zijlstra51676952010-12-07 14:18:20 +01007342 int cpu;
7343
7344 for_each_possible_cpu(cpu) {
7345 struct perf_cpu_context *cpuctx;
7346
7347 cpuctx = per_cpu_ptr(pmu->pmu_cpu_context, cpu);
7348
Peter Zijlstra3f1f3322012-10-02 15:38:52 +02007349 if (cpuctx->unique_pmu == old_pmu)
7350 cpuctx->unique_pmu = pmu;
Peter Zijlstra51676952010-12-07 14:18:20 +01007351 }
7352}
7353
7354static void free_pmu_context(struct pmu *pmu)
7355{
7356 struct pmu *i;
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02007357
7358 mutex_lock(&pmus_lock);
7359 /*
7360 * Like a real lame refcount.
7361 */
Peter Zijlstra51676952010-12-07 14:18:20 +01007362 list_for_each_entry(i, &pmus, entry) {
7363 if (i->pmu_cpu_context == pmu->pmu_cpu_context) {
7364 update_pmu_context(i, pmu);
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02007365 goto out;
Peter Zijlstra51676952010-12-07 14:18:20 +01007366 }
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02007367 }
7368
Peter Zijlstra51676952010-12-07 14:18:20 +01007369 free_percpu(pmu->pmu_cpu_context);
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02007370out:
7371 mutex_unlock(&pmus_lock);
7372}
Peter Zijlstra2e80a822010-11-17 23:17:36 +01007373static struct idr pmu_idr;
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02007374
Peter Zijlstraabe43402010-11-17 23:17:37 +01007375static ssize_t
7376type_show(struct device *dev, struct device_attribute *attr, char *page)
7377{
7378 struct pmu *pmu = dev_get_drvdata(dev);
7379
7380 return snprintf(page, PAGE_SIZE-1, "%d\n", pmu->type);
7381}
Greg Kroah-Hartman90826ca2013-08-23 14:24:40 -07007382static DEVICE_ATTR_RO(type);
Peter Zijlstraabe43402010-11-17 23:17:37 +01007383
Stephane Eranian62b85632013-04-03 14:21:34 +02007384static ssize_t
7385perf_event_mux_interval_ms_show(struct device *dev,
7386 struct device_attribute *attr,
7387 char *page)
7388{
7389 struct pmu *pmu = dev_get_drvdata(dev);
7390
7391 return snprintf(page, PAGE_SIZE-1, "%d\n", pmu->hrtimer_interval_ms);
7392}
7393
Peter Zijlstra272325c2015-04-15 11:41:58 +02007394static DEFINE_MUTEX(mux_interval_mutex);
7395
Stephane Eranian62b85632013-04-03 14:21:34 +02007396static ssize_t
7397perf_event_mux_interval_ms_store(struct device *dev,
7398 struct device_attribute *attr,
7399 const char *buf, size_t count)
7400{
7401 struct pmu *pmu = dev_get_drvdata(dev);
7402 int timer, cpu, ret;
7403
7404 ret = kstrtoint(buf, 0, &timer);
7405 if (ret)
7406 return ret;
7407
7408 if (timer < 1)
7409 return -EINVAL;
7410
7411 /* same value, noting to do */
7412 if (timer == pmu->hrtimer_interval_ms)
7413 return count;
7414
Peter Zijlstra272325c2015-04-15 11:41:58 +02007415 mutex_lock(&mux_interval_mutex);
Stephane Eranian62b85632013-04-03 14:21:34 +02007416 pmu->hrtimer_interval_ms = timer;
7417
7418 /* update all cpuctx for this PMU */
Peter Zijlstra272325c2015-04-15 11:41:58 +02007419 get_online_cpus();
7420 for_each_online_cpu(cpu) {
Stephane Eranian62b85632013-04-03 14:21:34 +02007421 struct perf_cpu_context *cpuctx;
7422 cpuctx = per_cpu_ptr(pmu->pmu_cpu_context, cpu);
7423 cpuctx->hrtimer_interval = ns_to_ktime(NSEC_PER_MSEC * timer);
7424
Peter Zijlstra272325c2015-04-15 11:41:58 +02007425 cpu_function_call(cpu,
7426 (remote_function_f)perf_mux_hrtimer_restart, cpuctx);
Stephane Eranian62b85632013-04-03 14:21:34 +02007427 }
Peter Zijlstra272325c2015-04-15 11:41:58 +02007428 put_online_cpus();
7429 mutex_unlock(&mux_interval_mutex);
Stephane Eranian62b85632013-04-03 14:21:34 +02007430
7431 return count;
7432}
Greg Kroah-Hartman90826ca2013-08-23 14:24:40 -07007433static DEVICE_ATTR_RW(perf_event_mux_interval_ms);
Stephane Eranian62b85632013-04-03 14:21:34 +02007434
Greg Kroah-Hartman90826ca2013-08-23 14:24:40 -07007435static struct attribute *pmu_dev_attrs[] = {
7436 &dev_attr_type.attr,
7437 &dev_attr_perf_event_mux_interval_ms.attr,
7438 NULL,
Peter Zijlstraabe43402010-11-17 23:17:37 +01007439};
Greg Kroah-Hartman90826ca2013-08-23 14:24:40 -07007440ATTRIBUTE_GROUPS(pmu_dev);
Peter Zijlstraabe43402010-11-17 23:17:37 +01007441
7442static int pmu_bus_running;
7443static struct bus_type pmu_bus = {
7444 .name = "event_source",
Greg Kroah-Hartman90826ca2013-08-23 14:24:40 -07007445 .dev_groups = pmu_dev_groups,
Peter Zijlstraabe43402010-11-17 23:17:37 +01007446};
7447
7448static void pmu_dev_release(struct device *dev)
7449{
7450 kfree(dev);
7451}
7452
7453static int pmu_dev_alloc(struct pmu *pmu)
7454{
7455 int ret = -ENOMEM;
7456
7457 pmu->dev = kzalloc(sizeof(struct device), GFP_KERNEL);
7458 if (!pmu->dev)
7459 goto out;
7460
Peter Zijlstra0c9d42e2011-11-20 23:30:47 +01007461 pmu->dev->groups = pmu->attr_groups;
Peter Zijlstraabe43402010-11-17 23:17:37 +01007462 device_initialize(pmu->dev);
7463 ret = dev_set_name(pmu->dev, "%s", pmu->name);
7464 if (ret)
7465 goto free_dev;
7466
7467 dev_set_drvdata(pmu->dev, pmu);
7468 pmu->dev->bus = &pmu_bus;
7469 pmu->dev->release = pmu_dev_release;
7470 ret = device_add(pmu->dev);
7471 if (ret)
7472 goto free_dev;
7473
7474out:
7475 return ret;
7476
7477free_dev:
7478 put_device(pmu->dev);
7479 goto out;
7480}
7481
Peter Zijlstra547e9fd2011-01-19 12:51:39 +01007482static struct lock_class_key cpuctx_mutex;
Peter Zijlstrafacc4302011-04-09 21:17:42 +02007483static struct lock_class_key cpuctx_lock;
Peter Zijlstra547e9fd2011-01-19 12:51:39 +01007484
Mischa Jonker03d8e802013-06-04 11:45:48 +02007485int perf_pmu_register(struct pmu *pmu, const char *name, int type)
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02007486{
Peter Zijlstra108b02c2010-09-06 14:32:03 +02007487 int cpu, ret;
Peter Zijlstra33696fc2010-06-14 08:49:00 +02007488
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02007489 mutex_lock(&pmus_lock);
Peter Zijlstra33696fc2010-06-14 08:49:00 +02007490 ret = -ENOMEM;
7491 pmu->pmu_disable_count = alloc_percpu(int);
7492 if (!pmu->pmu_disable_count)
7493 goto unlock;
Peter Zijlstraad5133b2010-06-15 12:22:39 +02007494
Peter Zijlstra2e80a822010-11-17 23:17:36 +01007495 pmu->type = -1;
7496 if (!name)
7497 goto skip_type;
7498 pmu->name = name;
7499
7500 if (type < 0) {
Tejun Heo0e9c3be2013-02-27 17:04:55 -08007501 type = idr_alloc(&pmu_idr, pmu, PERF_TYPE_MAX, 0, GFP_KERNEL);
7502 if (type < 0) {
7503 ret = type;
Peter Zijlstra2e80a822010-11-17 23:17:36 +01007504 goto free_pdc;
7505 }
7506 }
7507 pmu->type = type;
7508
Peter Zijlstraabe43402010-11-17 23:17:37 +01007509 if (pmu_bus_running) {
7510 ret = pmu_dev_alloc(pmu);
7511 if (ret)
7512 goto free_idr;
7513 }
7514
Peter Zijlstra2e80a822010-11-17 23:17:36 +01007515skip_type:
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02007516 pmu->pmu_cpu_context = find_pmu_context(pmu->task_ctx_nr);
7517 if (pmu->pmu_cpu_context)
7518 goto got_cpu_context;
7519
Wei Yongjunc4814202013-04-12 11:05:54 +08007520 ret = -ENOMEM;
Peter Zijlstra108b02c2010-09-06 14:32:03 +02007521 pmu->pmu_cpu_context = alloc_percpu(struct perf_cpu_context);
7522 if (!pmu->pmu_cpu_context)
Peter Zijlstraabe43402010-11-17 23:17:37 +01007523 goto free_dev;
Peter Zijlstra108b02c2010-09-06 14:32:03 +02007524
7525 for_each_possible_cpu(cpu) {
7526 struct perf_cpu_context *cpuctx;
7527
7528 cpuctx = per_cpu_ptr(pmu->pmu_cpu_context, cpu);
Peter Zijlstraeb184472010-09-07 15:55:13 +02007529 __perf_event_init_context(&cpuctx->ctx);
Peter Zijlstra547e9fd2011-01-19 12:51:39 +01007530 lockdep_set_class(&cpuctx->ctx.mutex, &cpuctx_mutex);
Peter Zijlstrafacc4302011-04-09 21:17:42 +02007531 lockdep_set_class(&cpuctx->ctx.lock, &cpuctx_lock);
Peter Zijlstra108b02c2010-09-06 14:32:03 +02007532 cpuctx->ctx.pmu = pmu;
Stephane Eranian9e630202013-04-03 14:21:33 +02007533
Peter Zijlstra272325c2015-04-15 11:41:58 +02007534 __perf_mux_hrtimer_init(cpuctx, cpu);
Stephane Eranian9e630202013-04-03 14:21:33 +02007535
Peter Zijlstra3f1f3322012-10-02 15:38:52 +02007536 cpuctx->unique_pmu = pmu;
Peter Zijlstra108b02c2010-09-06 14:32:03 +02007537 }
7538
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02007539got_cpu_context:
Peter Zijlstraad5133b2010-06-15 12:22:39 +02007540 if (!pmu->start_txn) {
7541 if (pmu->pmu_enable) {
7542 /*
7543 * If we have pmu_enable/pmu_disable calls, install
7544 * transaction stubs that use that to try and batch
7545 * hardware accesses.
7546 */
7547 pmu->start_txn = perf_pmu_start_txn;
7548 pmu->commit_txn = perf_pmu_commit_txn;
7549 pmu->cancel_txn = perf_pmu_cancel_txn;
7550 } else {
Sukadev Bhattiprolufbbe0702015-09-03 20:07:45 -07007551 pmu->start_txn = perf_pmu_nop_txn;
Peter Zijlstraad5133b2010-06-15 12:22:39 +02007552 pmu->commit_txn = perf_pmu_nop_int;
7553 pmu->cancel_txn = perf_pmu_nop_void;
7554 }
7555 }
7556
7557 if (!pmu->pmu_enable) {
7558 pmu->pmu_enable = perf_pmu_nop_void;
7559 pmu->pmu_disable = perf_pmu_nop_void;
7560 }
7561
Peter Zijlstra35edc2a2011-11-20 20:36:02 +01007562 if (!pmu->event_idx)
7563 pmu->event_idx = perf_event_idx_default;
7564
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02007565 list_add_rcu(&pmu->entry, &pmus);
Alexander Shishkinbed5b252015-01-30 12:31:06 +02007566 atomic_set(&pmu->exclusive_cnt, 0);
Peter Zijlstra33696fc2010-06-14 08:49:00 +02007567 ret = 0;
7568unlock:
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02007569 mutex_unlock(&pmus_lock);
7570
Peter Zijlstra33696fc2010-06-14 08:49:00 +02007571 return ret;
Peter Zijlstra108b02c2010-09-06 14:32:03 +02007572
Peter Zijlstraabe43402010-11-17 23:17:37 +01007573free_dev:
7574 device_del(pmu->dev);
7575 put_device(pmu->dev);
7576
Peter Zijlstra2e80a822010-11-17 23:17:36 +01007577free_idr:
7578 if (pmu->type >= PERF_TYPE_MAX)
7579 idr_remove(&pmu_idr, pmu->type);
7580
Peter Zijlstra108b02c2010-09-06 14:32:03 +02007581free_pdc:
7582 free_percpu(pmu->pmu_disable_count);
7583 goto unlock;
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02007584}
Yan, Zhengc464c762014-03-18 16:56:41 +08007585EXPORT_SYMBOL_GPL(perf_pmu_register);
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02007586
7587void perf_pmu_unregister(struct pmu *pmu)
7588{
7589 mutex_lock(&pmus_lock);
7590 list_del_rcu(&pmu->entry);
7591 mutex_unlock(&pmus_lock);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02007592
7593 /*
Peter Zijlstracde8e882010-09-13 11:06:55 +02007594 * We dereference the pmu list under both SRCU and regular RCU, so
7595 * synchronize against both of those.
Ingo Molnarcdd6c482009-09-21 12:02:48 +02007596 */
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02007597 synchronize_srcu(&pmus_srcu);
Peter Zijlstracde8e882010-09-13 11:06:55 +02007598 synchronize_rcu();
Ingo Molnarcdd6c482009-09-21 12:02:48 +02007599
Peter Zijlstra33696fc2010-06-14 08:49:00 +02007600 free_percpu(pmu->pmu_disable_count);
Peter Zijlstra2e80a822010-11-17 23:17:36 +01007601 if (pmu->type >= PERF_TYPE_MAX)
7602 idr_remove(&pmu_idr, pmu->type);
Peter Zijlstraabe43402010-11-17 23:17:37 +01007603 device_del(pmu->dev);
7604 put_device(pmu->dev);
Peter Zijlstra51676952010-12-07 14:18:20 +01007605 free_pmu_context(pmu);
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02007606}
Yan, Zhengc464c762014-03-18 16:56:41 +08007607EXPORT_SYMBOL_GPL(perf_pmu_unregister);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02007608
Mark Rutlandcc34b982015-01-07 14:56:51 +00007609static int perf_try_init_event(struct pmu *pmu, struct perf_event *event)
7610{
Peter Zijlstraccd41c82015-02-25 15:56:04 +01007611 struct perf_event_context *ctx = NULL;
Mark Rutlandcc34b982015-01-07 14:56:51 +00007612 int ret;
7613
7614 if (!try_module_get(pmu->module))
7615 return -ENODEV;
Peter Zijlstraccd41c82015-02-25 15:56:04 +01007616
7617 if (event->group_leader != event) {
Peter Zijlstra8b10c5e2015-05-01 16:08:46 +02007618 /*
7619 * This ctx->mutex can nest when we're called through
7620 * inheritance. See the perf_event_ctx_lock_nested() comment.
7621 */
7622 ctx = perf_event_ctx_lock_nested(event->group_leader,
7623 SINGLE_DEPTH_NESTING);
Peter Zijlstraccd41c82015-02-25 15:56:04 +01007624 BUG_ON(!ctx);
7625 }
7626
Mark Rutlandcc34b982015-01-07 14:56:51 +00007627 event->pmu = pmu;
7628 ret = pmu->event_init(event);
Peter Zijlstraccd41c82015-02-25 15:56:04 +01007629
7630 if (ctx)
7631 perf_event_ctx_unlock(event->group_leader, ctx);
7632
Mark Rutlandcc34b982015-01-07 14:56:51 +00007633 if (ret)
7634 module_put(pmu->module);
7635
7636 return ret;
7637}
7638
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02007639struct pmu *perf_init_event(struct perf_event *event)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02007640{
Peter Zijlstra51b0fe32010-06-11 13:35:57 +02007641 struct pmu *pmu = NULL;
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02007642 int idx;
Lin Ming940c5b22011-02-27 21:13:31 +08007643 int ret;
Frederic Weisbecker76e1d902010-04-05 15:35:57 +02007644
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02007645 idx = srcu_read_lock(&pmus_srcu);
Peter Zijlstra2e80a822010-11-17 23:17:36 +01007646
7647 rcu_read_lock();
7648 pmu = idr_find(&pmu_idr, event->attr.type);
7649 rcu_read_unlock();
Lin Ming940c5b22011-02-27 21:13:31 +08007650 if (pmu) {
Mark Rutlandcc34b982015-01-07 14:56:51 +00007651 ret = perf_try_init_event(pmu, event);
Lin Ming940c5b22011-02-27 21:13:31 +08007652 if (ret)
7653 pmu = ERR_PTR(ret);
Peter Zijlstra2e80a822010-11-17 23:17:36 +01007654 goto unlock;
Lin Ming940c5b22011-02-27 21:13:31 +08007655 }
Peter Zijlstra2e80a822010-11-17 23:17:36 +01007656
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02007657 list_for_each_entry_rcu(pmu, &pmus, entry) {
Mark Rutlandcc34b982015-01-07 14:56:51 +00007658 ret = perf_try_init_event(pmu, event);
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02007659 if (!ret)
Peter Zijlstrae5f4d332010-09-10 17:38:06 +02007660 goto unlock;
Frederic Weisbecker76e1d902010-04-05 15:35:57 +02007661
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02007662 if (ret != -ENOENT) {
7663 pmu = ERR_PTR(ret);
Peter Zijlstrae5f4d332010-09-10 17:38:06 +02007664 goto unlock;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02007665 }
Ingo Molnarcdd6c482009-09-21 12:02:48 +02007666 }
Peter Zijlstrae5f4d332010-09-10 17:38:06 +02007667 pmu = ERR_PTR(-ENOENT);
7668unlock:
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02007669 srcu_read_unlock(&pmus_srcu, idx);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02007670
7671 return pmu;
7672}
7673
Frederic Weisbecker4beb31f2013-07-23 02:31:02 +02007674static void account_event_cpu(struct perf_event *event, int cpu)
7675{
7676 if (event->parent)
7677 return;
7678
Frederic Weisbecker4beb31f2013-07-23 02:31:02 +02007679 if (is_cgroup_event(event))
7680 atomic_inc(&per_cpu(perf_cgroup_events, cpu));
7681}
7682
Frederic Weisbecker766d6c02013-07-23 02:31:01 +02007683static void account_event(struct perf_event *event)
7684{
Frederic Weisbecker4beb31f2013-07-23 02:31:02 +02007685 if (event->parent)
7686 return;
7687
Frederic Weisbecker766d6c02013-07-23 02:31:01 +02007688 if (event->attach_state & PERF_ATTACH_TASK)
7689 static_key_slow_inc(&perf_sched_events.key);
7690 if (event->attr.mmap || event->attr.mmap_data)
7691 atomic_inc(&nr_mmap_events);
7692 if (event->attr.comm)
7693 atomic_inc(&nr_comm_events);
7694 if (event->attr.task)
7695 atomic_inc(&nr_task_events);
Frederic Weisbecker948b26b2013-08-02 18:29:55 +02007696 if (event->attr.freq) {
7697 if (atomic_inc_return(&nr_freq_events) == 1)
7698 tick_nohz_full_kick_all();
7699 }
Adrian Hunter45ac1402015-07-21 12:44:02 +03007700 if (event->attr.context_switch) {
7701 atomic_inc(&nr_switch_events);
7702 static_key_slow_inc(&perf_sched_events.key);
7703 }
Frederic Weisbecker4beb31f2013-07-23 02:31:02 +02007704 if (has_branch_stack(event))
Frederic Weisbecker766d6c02013-07-23 02:31:01 +02007705 static_key_slow_inc(&perf_sched_events.key);
Frederic Weisbecker4beb31f2013-07-23 02:31:02 +02007706 if (is_cgroup_event(event))
7707 static_key_slow_inc(&perf_sched_events.key);
Frederic Weisbecker766d6c02013-07-23 02:31:01 +02007708
Frederic Weisbecker4beb31f2013-07-23 02:31:02 +02007709 account_event_cpu(event, event->cpu);
Frederic Weisbecker766d6c02013-07-23 02:31:01 +02007710}
7711
Ingo Molnarcdd6c482009-09-21 12:02:48 +02007712/*
7713 * Allocate and initialize a event structure
7714 */
7715static struct perf_event *
Peter Zijlstrac3f00c72010-08-18 14:37:15 +02007716perf_event_alloc(struct perf_event_attr *attr, int cpu,
Peter Zijlstrad580ff82010-10-14 17:43:23 +02007717 struct task_struct *task,
7718 struct perf_event *group_leader,
7719 struct perf_event *parent_event,
Avi Kivity4dc0da82011-06-29 18:42:35 +03007720 perf_overflow_handler_t overflow_handler,
Matt Fleming79dff512015-01-23 18:45:42 +00007721 void *context, int cgroup_fd)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02007722{
Peter Zijlstra51b0fe32010-06-11 13:35:57 +02007723 struct pmu *pmu;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02007724 struct perf_event *event;
7725 struct hw_perf_event *hwc;
Frederic Weisbecker90983b12013-07-23 02:31:00 +02007726 long err = -EINVAL;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02007727
Oleg Nesterov66832eb2011-01-18 17:10:32 +01007728 if ((unsigned)cpu >= nr_cpu_ids) {
7729 if (!task || cpu != -1)
7730 return ERR_PTR(-EINVAL);
7731 }
7732
Peter Zijlstrac3f00c72010-08-18 14:37:15 +02007733 event = kzalloc(sizeof(*event), GFP_KERNEL);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02007734 if (!event)
7735 return ERR_PTR(-ENOMEM);
7736
7737 /*
7738 * Single events are their own group leaders, with an
7739 * empty sibling list:
7740 */
7741 if (!group_leader)
7742 group_leader = event;
7743
7744 mutex_init(&event->child_mutex);
7745 INIT_LIST_HEAD(&event->child_list);
7746
7747 INIT_LIST_HEAD(&event->group_entry);
7748 INIT_LIST_HEAD(&event->event_entry);
7749 INIT_LIST_HEAD(&event->sibling_list);
Peter Zijlstra10c6db12011-11-26 02:47:31 +01007750 INIT_LIST_HEAD(&event->rb_entry);
Stephane Eranian71ad88e2013-11-12 17:58:48 +01007751 INIT_LIST_HEAD(&event->active_entry);
Stephane Eranianf3ae75d2014-01-08 11:15:52 +01007752 INIT_HLIST_NODE(&event->hlist_entry);
7753
Peter Zijlstra10c6db12011-11-26 02:47:31 +01007754
Ingo Molnarcdd6c482009-09-21 12:02:48 +02007755 init_waitqueue_head(&event->waitq);
Peter Zijlstrae360adb2010-10-14 14:01:34 +08007756 init_irq_work(&event->pending, perf_pending_event);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02007757
7758 mutex_init(&event->mmap_mutex);
7759
Al Viroa6fa9412012-08-20 14:59:25 +01007760 atomic_long_set(&event->refcount, 1);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02007761 event->cpu = cpu;
7762 event->attr = *attr;
7763 event->group_leader = group_leader;
7764 event->pmu = NULL;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02007765 event->oncpu = -1;
7766
7767 event->parent = parent_event;
7768
Eric W. Biederman17cf22c2010-03-02 14:51:53 -08007769 event->ns = get_pid_ns(task_active_pid_ns(current));
Ingo Molnarcdd6c482009-09-21 12:02:48 +02007770 event->id = atomic64_inc_return(&perf_event_id);
7771
7772 event->state = PERF_EVENT_STATE_INACTIVE;
7773
Peter Zijlstrad580ff82010-10-14 17:43:23 +02007774 if (task) {
7775 event->attach_state = PERF_ATTACH_TASK;
Peter Zijlstrad580ff82010-10-14 17:43:23 +02007776 /*
Peter Zijlstra50f16a82015-03-05 22:10:19 +01007777 * XXX pmu::event_init needs to know what task to account to
7778 * and we cannot use the ctx information because we need the
7779 * pmu before we get a ctx.
Peter Zijlstrad580ff82010-10-14 17:43:23 +02007780 */
Peter Zijlstra50f16a82015-03-05 22:10:19 +01007781 event->hw.target = task;
Peter Zijlstrad580ff82010-10-14 17:43:23 +02007782 }
7783
Peter Zijlstra34f43922015-02-20 14:05:38 +01007784 event->clock = &local_clock;
7785 if (parent_event)
7786 event->clock = parent_event->clock;
7787
Avi Kivity4dc0da82011-06-29 18:42:35 +03007788 if (!overflow_handler && parent_event) {
Frederic Weisbeckerb326e952009-12-05 09:44:31 +01007789 overflow_handler = parent_event->overflow_handler;
Avi Kivity4dc0da82011-06-29 18:42:35 +03007790 context = parent_event->overflow_handler_context;
7791 }
Oleg Nesterov66832eb2011-01-18 17:10:32 +01007792
Frederic Weisbeckerb326e952009-12-05 09:44:31 +01007793 event->overflow_handler = overflow_handler;
Avi Kivity4dc0da82011-06-29 18:42:35 +03007794 event->overflow_handler_context = context;
Frederic Weisbecker97eaf532009-10-18 15:33:50 +02007795
Jiri Olsa0231bb52013-02-01 11:23:45 +01007796 perf_event__state_init(event);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02007797
7798 pmu = NULL;
7799
7800 hwc = &event->hw;
7801 hwc->sample_period = attr->sample_period;
7802 if (attr->freq && attr->sample_freq)
7803 hwc->sample_period = 1;
7804 hwc->last_period = hwc->sample_period;
7805
Peter Zijlstrae7850592010-05-21 14:43:08 +02007806 local64_set(&hwc->period_left, hwc->sample_period);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02007807
7808 /*
7809 * we currently do not support PERF_FORMAT_GROUP on inherited events
7810 */
7811 if (attr->inherit && (attr->read_format & PERF_FORMAT_GROUP))
Frederic Weisbecker90983b12013-07-23 02:31:00 +02007812 goto err_ns;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02007813
Yan, Zhenga46a2302014-11-04 21:56:06 -05007814 if (!has_branch_stack(event))
7815 event->attr.branch_sample_type = 0;
7816
Matt Fleming79dff512015-01-23 18:45:42 +00007817 if (cgroup_fd != -1) {
7818 err = perf_cgroup_connect(cgroup_fd, event, attr, group_leader);
7819 if (err)
7820 goto err_ns;
7821 }
7822
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02007823 pmu = perf_init_event(event);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02007824 if (!pmu)
Frederic Weisbecker90983b12013-07-23 02:31:00 +02007825 goto err_ns;
7826 else if (IS_ERR(pmu)) {
Ingo Molnarcdd6c482009-09-21 12:02:48 +02007827 err = PTR_ERR(pmu);
Frederic Weisbecker90983b12013-07-23 02:31:00 +02007828 goto err_ns;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02007829 }
7830
Alexander Shishkinbed5b252015-01-30 12:31:06 +02007831 err = exclusive_event_init(event);
7832 if (err)
7833 goto err_pmu;
7834
Ingo Molnarcdd6c482009-09-21 12:02:48 +02007835 if (!event->parent) {
Frederic Weisbecker927c7a92010-07-01 16:20:36 +02007836 if (event->attr.sample_type & PERF_SAMPLE_CALLCHAIN) {
7837 err = get_callchain_buffers();
Frederic Weisbecker90983b12013-07-23 02:31:00 +02007838 if (err)
Alexander Shishkinbed5b252015-01-30 12:31:06 +02007839 goto err_per_task;
Stephane Eraniand010b332012-02-09 23:21:00 +01007840 }
Ingo Molnarcdd6c482009-09-21 12:02:48 +02007841 }
7842
7843 return event;
Frederic Weisbecker90983b12013-07-23 02:31:00 +02007844
Alexander Shishkinbed5b252015-01-30 12:31:06 +02007845err_per_task:
7846 exclusive_event_destroy(event);
7847
Frederic Weisbecker90983b12013-07-23 02:31:00 +02007848err_pmu:
7849 if (event->destroy)
7850 event->destroy(event);
Yan, Zhengc464c762014-03-18 16:56:41 +08007851 module_put(pmu->module);
Frederic Weisbecker90983b12013-07-23 02:31:00 +02007852err_ns:
Matt Fleming79dff512015-01-23 18:45:42 +00007853 if (is_cgroup_event(event))
7854 perf_detach_cgroup(event);
Frederic Weisbecker90983b12013-07-23 02:31:00 +02007855 if (event->ns)
7856 put_pid_ns(event->ns);
7857 kfree(event);
7858
7859 return ERR_PTR(err);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02007860}
7861
7862static int perf_copy_attr(struct perf_event_attr __user *uattr,
7863 struct perf_event_attr *attr)
7864{
7865 u32 size;
7866 int ret;
7867
7868 if (!access_ok(VERIFY_WRITE, uattr, PERF_ATTR_SIZE_VER0))
7869 return -EFAULT;
7870
7871 /*
7872 * zero the full structure, so that a short copy will be nice.
7873 */
7874 memset(attr, 0, sizeof(*attr));
7875
7876 ret = get_user(size, &uattr->size);
7877 if (ret)
7878 return ret;
7879
7880 if (size > PAGE_SIZE) /* silly large */
7881 goto err_size;
7882
7883 if (!size) /* abi compat */
7884 size = PERF_ATTR_SIZE_VER0;
7885
7886 if (size < PERF_ATTR_SIZE_VER0)
7887 goto err_size;
7888
7889 /*
7890 * If we're handed a bigger struct than we know of,
7891 * ensure all the unknown bits are 0 - i.e. new
7892 * user-space does not rely on any kernel feature
7893 * extensions we dont know about yet.
7894 */
7895 if (size > sizeof(*attr)) {
7896 unsigned char __user *addr;
7897 unsigned char __user *end;
7898 unsigned char val;
7899
7900 addr = (void __user *)uattr + sizeof(*attr);
7901 end = (void __user *)uattr + size;
7902
7903 for (; addr < end; addr++) {
7904 ret = get_user(val, addr);
7905 if (ret)
7906 return ret;
7907 if (val)
7908 goto err_size;
7909 }
7910 size = sizeof(*attr);
7911 }
7912
7913 ret = copy_from_user(attr, uattr, size);
7914 if (ret)
7915 return -EFAULT;
7916
Mahesh Salgaonkarcd757642010-01-30 10:25:18 +05307917 if (attr->__reserved_1)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02007918 return -EINVAL;
7919
7920 if (attr->sample_type & ~(PERF_SAMPLE_MAX-1))
7921 return -EINVAL;
7922
7923 if (attr->read_format & ~(PERF_FORMAT_MAX-1))
7924 return -EINVAL;
7925
Stephane Eranianbce38cd2012-02-09 23:20:51 +01007926 if (attr->sample_type & PERF_SAMPLE_BRANCH_STACK) {
7927 u64 mask = attr->branch_sample_type;
7928
7929 /* only using defined bits */
7930 if (mask & ~(PERF_SAMPLE_BRANCH_MAX-1))
7931 return -EINVAL;
7932
7933 /* at least one branch bit must be set */
7934 if (!(mask & ~PERF_SAMPLE_BRANCH_PLM_ALL))
7935 return -EINVAL;
7936
Stephane Eranianbce38cd2012-02-09 23:20:51 +01007937 /* propagate priv level, when not set for branch */
7938 if (!(mask & PERF_SAMPLE_BRANCH_PLM_ALL)) {
7939
7940 /* exclude_kernel checked on syscall entry */
7941 if (!attr->exclude_kernel)
7942 mask |= PERF_SAMPLE_BRANCH_KERNEL;
7943
7944 if (!attr->exclude_user)
7945 mask |= PERF_SAMPLE_BRANCH_USER;
7946
7947 if (!attr->exclude_hv)
7948 mask |= PERF_SAMPLE_BRANCH_HV;
7949 /*
7950 * adjust user setting (for HW filter setup)
7951 */
7952 attr->branch_sample_type = mask;
7953 }
Stephane Eraniane7122092013-06-06 11:02:04 +02007954 /* privileged levels capture (kernel, hv): check permissions */
7955 if ((mask & PERF_SAMPLE_BRANCH_PERM_PLM)
Stephane Eranian2b923c82013-05-21 12:53:37 +02007956 && perf_paranoid_kernel() && !capable(CAP_SYS_ADMIN))
7957 return -EACCES;
Stephane Eranianbce38cd2012-02-09 23:20:51 +01007958 }
Jiri Olsa40189942012-08-07 15:20:37 +02007959
Jiri Olsac5ebced2012-08-07 15:20:40 +02007960 if (attr->sample_type & PERF_SAMPLE_REGS_USER) {
Jiri Olsa40189942012-08-07 15:20:37 +02007961 ret = perf_reg_validate(attr->sample_regs_user);
Jiri Olsac5ebced2012-08-07 15:20:40 +02007962 if (ret)
7963 return ret;
7964 }
7965
7966 if (attr->sample_type & PERF_SAMPLE_STACK_USER) {
7967 if (!arch_perf_have_user_stack_dump())
7968 return -ENOSYS;
7969
7970 /*
7971 * We have __u32 type for the size, but so far
7972 * we can only use __u16 as maximum due to the
7973 * __u16 sample size limit.
7974 */
7975 if (attr->sample_stack_user >= USHRT_MAX)
7976 ret = -EINVAL;
7977 else if (!IS_ALIGNED(attr->sample_stack_user, sizeof(u64)))
7978 ret = -EINVAL;
7979 }
Jiri Olsa40189942012-08-07 15:20:37 +02007980
Stephane Eranian60e23642014-09-24 13:48:37 +02007981 if (attr->sample_type & PERF_SAMPLE_REGS_INTR)
7982 ret = perf_reg_validate(attr->sample_regs_intr);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02007983out:
7984 return ret;
7985
7986err_size:
7987 put_user(sizeof(*attr), &uattr->size);
7988 ret = -E2BIG;
7989 goto out;
7990}
7991
Peter Zijlstraac9721f2010-05-27 12:54:41 +02007992static int
7993perf_event_set_output(struct perf_event *event, struct perf_event *output_event)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02007994{
Peter Zijlstrab69cf532014-03-14 10:50:33 +01007995 struct ring_buffer *rb = NULL;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02007996 int ret = -EINVAL;
7997
Peter Zijlstraac9721f2010-05-27 12:54:41 +02007998 if (!output_event)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02007999 goto set;
8000
Peter Zijlstraac9721f2010-05-27 12:54:41 +02008001 /* don't allow circular references */
8002 if (event == output_event)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008003 goto out;
8004
Peter Zijlstra0f139302010-05-20 14:35:15 +02008005 /*
8006 * Don't allow cross-cpu buffers
8007 */
8008 if (output_event->cpu != event->cpu)
8009 goto out;
8010
8011 /*
Frederic Weisbecker76369132011-05-19 19:55:04 +02008012 * If its not a per-cpu rb, it must be the same task.
Peter Zijlstra0f139302010-05-20 14:35:15 +02008013 */
8014 if (output_event->cpu == -1 && output_event->ctx != event->ctx)
8015 goto out;
8016
Peter Zijlstra34f43922015-02-20 14:05:38 +01008017 /*
8018 * Mixing clocks in the same buffer is trouble you don't need.
8019 */
8020 if (output_event->clock != event->clock)
8021 goto out;
8022
Peter Zijlstra45bfb2e2015-01-14 14:18:11 +02008023 /*
8024 * If both events generate aux data, they must be on the same PMU
8025 */
8026 if (has_aux(event) && has_aux(output_event) &&
8027 event->pmu != output_event->pmu)
8028 goto out;
8029
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008030set:
8031 mutex_lock(&event->mmap_mutex);
Peter Zijlstraac9721f2010-05-27 12:54:41 +02008032 /* Can't redirect output if we've got an active mmap() */
8033 if (atomic_read(&event->mmap_count))
8034 goto unlock;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008035
Peter Zijlstraac9721f2010-05-27 12:54:41 +02008036 if (output_event) {
Frederic Weisbecker76369132011-05-19 19:55:04 +02008037 /* get the rb we want to redirect to */
8038 rb = ring_buffer_get(output_event);
8039 if (!rb)
Peter Zijlstraac9721f2010-05-27 12:54:41 +02008040 goto unlock;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008041 }
8042
Peter Zijlstrab69cf532014-03-14 10:50:33 +01008043 ring_buffer_attach(event, rb);
Peter Zijlstra9bb5d402013-06-04 10:44:21 +02008044
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008045 ret = 0;
Peter Zijlstraac9721f2010-05-27 12:54:41 +02008046unlock:
8047 mutex_unlock(&event->mmap_mutex);
8048
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008049out:
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008050 return ret;
8051}
8052
Peter Zijlstraf63a8da2015-01-23 12:24:14 +01008053static void mutex_lock_double(struct mutex *a, struct mutex *b)
8054{
8055 if (b < a)
8056 swap(a, b);
8057
8058 mutex_lock(a);
8059 mutex_lock_nested(b, SINGLE_DEPTH_NESTING);
8060}
8061
Peter Zijlstra34f43922015-02-20 14:05:38 +01008062static int perf_event_set_clock(struct perf_event *event, clockid_t clk_id)
8063{
8064 bool nmi_safe = false;
8065
8066 switch (clk_id) {
8067 case CLOCK_MONOTONIC:
8068 event->clock = &ktime_get_mono_fast_ns;
8069 nmi_safe = true;
8070 break;
8071
8072 case CLOCK_MONOTONIC_RAW:
8073 event->clock = &ktime_get_raw_fast_ns;
8074 nmi_safe = true;
8075 break;
8076
8077 case CLOCK_REALTIME:
8078 event->clock = &ktime_get_real_ns;
8079 break;
8080
8081 case CLOCK_BOOTTIME:
8082 event->clock = &ktime_get_boot_ns;
8083 break;
8084
8085 case CLOCK_TAI:
8086 event->clock = &ktime_get_tai_ns;
8087 break;
8088
8089 default:
8090 return -EINVAL;
8091 }
8092
8093 if (!nmi_safe && !(event->pmu->capabilities & PERF_PMU_CAP_NO_NMI))
8094 return -EINVAL;
8095
8096 return 0;
8097}
8098
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008099/**
8100 * sys_perf_event_open - open a performance event, associate it to a task/cpu
8101 *
8102 * @attr_uptr: event_id type attributes for monitoring/sampling
8103 * @pid: target pid
8104 * @cpu: target cpu
8105 * @group_fd: group leader event fd
8106 */
8107SYSCALL_DEFINE5(perf_event_open,
8108 struct perf_event_attr __user *, attr_uptr,
8109 pid_t, pid, int, cpu, int, group_fd, unsigned long, flags)
8110{
Peter Zijlstrab04243e2010-09-17 11:28:48 +02008111 struct perf_event *group_leader = NULL, *output_event = NULL;
8112 struct perf_event *event, *sibling;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008113 struct perf_event_attr attr;
Peter Zijlstraf63a8da2015-01-23 12:24:14 +01008114 struct perf_event_context *ctx, *uninitialized_var(gctx);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008115 struct file *event_file = NULL;
Al Viro2903ff02012-08-28 12:52:22 -04008116 struct fd group = {NULL, 0};
Matt Helsley38a81da2010-09-13 13:01:20 -07008117 struct task_struct *task = NULL;
Peter Zijlstra89a1e182010-09-07 17:34:50 +02008118 struct pmu *pmu;
Al Viroea635c62010-05-26 17:40:29 -04008119 int event_fd;
Peter Zijlstrab04243e2010-09-17 11:28:48 +02008120 int move_group = 0;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008121 int err;
Yann Droneauda21b0b32014-01-05 21:36:33 +01008122 int f_flags = O_RDWR;
Matt Fleming79dff512015-01-23 18:45:42 +00008123 int cgroup_fd = -1;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008124
8125 /* for future expandability... */
Stephane Eraniane5d13672011-02-14 11:20:01 +02008126 if (flags & ~PERF_FLAG_ALL)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008127 return -EINVAL;
8128
8129 err = perf_copy_attr(attr_uptr, &attr);
8130 if (err)
8131 return err;
8132
8133 if (!attr.exclude_kernel) {
8134 if (perf_paranoid_kernel() && !capable(CAP_SYS_ADMIN))
8135 return -EACCES;
8136 }
8137
8138 if (attr.freq) {
8139 if (attr.sample_freq > sysctl_perf_event_sample_rate)
8140 return -EINVAL;
Peter Zijlstra0819b2e2014-05-15 20:23:48 +02008141 } else {
8142 if (attr.sample_period & (1ULL << 63))
8143 return -EINVAL;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008144 }
8145
Stephane Eraniane5d13672011-02-14 11:20:01 +02008146 /*
8147 * In cgroup mode, the pid argument is used to pass the fd
8148 * opened to the cgroup directory in cgroupfs. The cpu argument
8149 * designates the cpu on which to monitor threads from that
8150 * cgroup.
8151 */
8152 if ((flags & PERF_FLAG_PID_CGROUP) && (pid == -1 || cpu == -1))
8153 return -EINVAL;
8154
Yann Droneauda21b0b32014-01-05 21:36:33 +01008155 if (flags & PERF_FLAG_FD_CLOEXEC)
8156 f_flags |= O_CLOEXEC;
8157
8158 event_fd = get_unused_fd_flags(f_flags);
Al Viroea635c62010-05-26 17:40:29 -04008159 if (event_fd < 0)
8160 return event_fd;
8161
Peter Zijlstraac9721f2010-05-27 12:54:41 +02008162 if (group_fd != -1) {
Al Viro2903ff02012-08-28 12:52:22 -04008163 err = perf_fget_light(group_fd, &group);
8164 if (err)
Stephane Eraniand14b12d2010-09-17 11:28:47 +02008165 goto err_fd;
Al Viro2903ff02012-08-28 12:52:22 -04008166 group_leader = group.file->private_data;
Peter Zijlstraac9721f2010-05-27 12:54:41 +02008167 if (flags & PERF_FLAG_FD_OUTPUT)
8168 output_event = group_leader;
8169 if (flags & PERF_FLAG_FD_NO_GROUP)
8170 group_leader = NULL;
8171 }
8172
Stephane Eraniane5d13672011-02-14 11:20:01 +02008173 if (pid != -1 && !(flags & PERF_FLAG_PID_CGROUP)) {
Peter Zijlstrac6be5a52010-10-14 16:59:46 +02008174 task = find_lively_task_by_vpid(pid);
8175 if (IS_ERR(task)) {
8176 err = PTR_ERR(task);
8177 goto err_group_fd;
8178 }
8179 }
8180
Peter Zijlstra1f4ee502014-05-06 09:59:34 +02008181 if (task && group_leader &&
8182 group_leader->attr.inherit != attr.inherit) {
8183 err = -EINVAL;
8184 goto err_task;
8185 }
8186
Yan, Zhengfbfc6232012-06-15 14:31:31 +08008187 get_online_cpus();
8188
Matt Fleming79dff512015-01-23 18:45:42 +00008189 if (flags & PERF_FLAG_PID_CGROUP)
8190 cgroup_fd = pid;
8191
Avi Kivity4dc0da82011-06-29 18:42:35 +03008192 event = perf_event_alloc(&attr, cpu, task, group_leader, NULL,
Matt Fleming79dff512015-01-23 18:45:42 +00008193 NULL, NULL, cgroup_fd);
Stephane Eraniand14b12d2010-09-17 11:28:47 +02008194 if (IS_ERR(event)) {
8195 err = PTR_ERR(event);
Peter Zijlstra1f4ee502014-05-06 09:59:34 +02008196 goto err_cpus;
Stephane Eraniand14b12d2010-09-17 11:28:47 +02008197 }
8198
Vince Weaver53b25332014-05-16 17:12:12 -04008199 if (is_sampling_event(event)) {
8200 if (event->pmu->capabilities & PERF_PMU_CAP_NO_INTERRUPT) {
8201 err = -ENOTSUPP;
8202 goto err_alloc;
8203 }
8204 }
8205
Frederic Weisbecker766d6c02013-07-23 02:31:01 +02008206 account_event(event);
8207
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008208 /*
Peter Zijlstra89a1e182010-09-07 17:34:50 +02008209 * Special case software events and allow them to be part of
8210 * any hardware group.
8211 */
8212 pmu = event->pmu;
Peter Zijlstrab04243e2010-09-17 11:28:48 +02008213
Peter Zijlstra34f43922015-02-20 14:05:38 +01008214 if (attr.use_clockid) {
8215 err = perf_event_set_clock(event, attr.clockid);
8216 if (err)
8217 goto err_alloc;
8218 }
8219
Peter Zijlstrab04243e2010-09-17 11:28:48 +02008220 if (group_leader &&
8221 (is_software_event(event) != is_software_event(group_leader))) {
8222 if (is_software_event(event)) {
8223 /*
8224 * If event and group_leader are not both a software
8225 * event, and event is, then group leader is not.
8226 *
8227 * Allow the addition of software events to !software
8228 * groups, this is safe because software events never
8229 * fail to schedule.
8230 */
8231 pmu = group_leader->pmu;
8232 } else if (is_software_event(group_leader) &&
8233 (group_leader->group_flags & PERF_GROUP_SOFTWARE)) {
8234 /*
8235 * In case the group is a pure software group, and we
8236 * try to add a hardware event, move the whole group to
8237 * the hardware context.
8238 */
8239 move_group = 1;
8240 }
8241 }
Peter Zijlstra89a1e182010-09-07 17:34:50 +02008242
8243 /*
8244 * Get the target context (task or percpu):
8245 */
Yan, Zheng4af57ef2014-11-04 21:56:01 -05008246 ctx = find_get_context(pmu, task, event);
Peter Zijlstra89a1e182010-09-07 17:34:50 +02008247 if (IS_ERR(ctx)) {
8248 err = PTR_ERR(ctx);
Peter Zijlstrac6be5a52010-10-14 16:59:46 +02008249 goto err_alloc;
Peter Zijlstra89a1e182010-09-07 17:34:50 +02008250 }
8251
Alexander Shishkinbed5b252015-01-30 12:31:06 +02008252 if ((pmu->capabilities & PERF_PMU_CAP_EXCLUSIVE) && group_leader) {
8253 err = -EBUSY;
8254 goto err_context;
8255 }
8256
Peter Zijlstrafd1edb32011-03-28 13:13:56 +02008257 if (task) {
8258 put_task_struct(task);
8259 task = NULL;
8260 }
8261
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008262 /*
8263 * Look up the group leader (we will attach this event to it):
8264 */
Peter Zijlstraac9721f2010-05-27 12:54:41 +02008265 if (group_leader) {
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008266 err = -EINVAL;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008267
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008268 /*
8269 * Do not allow a recursive hierarchy (this new sibling
8270 * becoming part of another group-sibling):
8271 */
8272 if (group_leader->group_leader != group_leader)
Peter Zijlstrac3f00c72010-08-18 14:37:15 +02008273 goto err_context;
Peter Zijlstra34f43922015-02-20 14:05:38 +01008274
8275 /* All events in a group should have the same clock */
8276 if (group_leader->clock != event->clock)
8277 goto err_context;
8278
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008279 /*
8280 * Do not allow to attach to a group in a different
8281 * task or CPU context:
8282 */
Peter Zijlstrab04243e2010-09-17 11:28:48 +02008283 if (move_group) {
Peter Zijlstrac3c87e72015-01-23 11:19:48 +01008284 /*
8285 * Make sure we're both on the same task, or both
8286 * per-cpu events.
8287 */
8288 if (group_leader->ctx->task != ctx->task)
8289 goto err_context;
8290
8291 /*
8292 * Make sure we're both events for the same CPU;
8293 * grouping events for different CPUs is broken; since
8294 * you can never concurrently schedule them anyhow.
8295 */
8296 if (group_leader->cpu != event->cpu)
Peter Zijlstrab04243e2010-09-17 11:28:48 +02008297 goto err_context;
8298 } else {
8299 if (group_leader->ctx != ctx)
8300 goto err_context;
8301 }
8302
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008303 /*
8304 * Only a group leader can be exclusive or pinned
8305 */
8306 if (attr.exclusive || attr.pinned)
Peter Zijlstrac3f00c72010-08-18 14:37:15 +02008307 goto err_context;
Peter Zijlstraac9721f2010-05-27 12:54:41 +02008308 }
8309
8310 if (output_event) {
8311 err = perf_event_set_output(event, output_event);
8312 if (err)
Peter Zijlstrac3f00c72010-08-18 14:37:15 +02008313 goto err_context;
Peter Zijlstraac9721f2010-05-27 12:54:41 +02008314 }
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008315
Yann Droneauda21b0b32014-01-05 21:36:33 +01008316 event_file = anon_inode_getfile("[perf_event]", &perf_fops, event,
8317 f_flags);
Al Viroea635c62010-05-26 17:40:29 -04008318 if (IS_ERR(event_file)) {
8319 err = PTR_ERR(event_file);
Peter Zijlstrac3f00c72010-08-18 14:37:15 +02008320 goto err_context;
Al Viroea635c62010-05-26 17:40:29 -04008321 }
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008322
Peter Zijlstrab04243e2010-09-17 11:28:48 +02008323 if (move_group) {
Peter Zijlstraf63a8da2015-01-23 12:24:14 +01008324 gctx = group_leader->ctx;
Peter Zijlstrab04243e2010-09-17 11:28:48 +02008325
Peter Zijlstraf63a8da2015-01-23 12:24:14 +01008326 /*
8327 * See perf_event_ctx_lock() for comments on the details
8328 * of swizzling perf_event::ctx.
8329 */
8330 mutex_lock_double(&gctx->mutex, &ctx->mutex);
8331
Peter Zijlstra46ce0fe2014-05-02 16:56:01 +02008332 perf_remove_from_context(group_leader, false);
Jiri Olsa0231bb52013-02-01 11:23:45 +01008333
Peter Zijlstrab04243e2010-09-17 11:28:48 +02008334 list_for_each_entry(sibling, &group_leader->sibling_list,
8335 group_entry) {
Peter Zijlstra46ce0fe2014-05-02 16:56:01 +02008336 perf_remove_from_context(sibling, false);
Peter Zijlstrab04243e2010-09-17 11:28:48 +02008337 put_ctx(gctx);
8338 }
Peter Zijlstraf63a8da2015-01-23 12:24:14 +01008339 } else {
8340 mutex_lock(&ctx->mutex);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008341 }
8342
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008343 WARN_ON_ONCE(ctx->parent_ctx);
Peter Zijlstrab04243e2010-09-17 11:28:48 +02008344
8345 if (move_group) {
Peter Zijlstraf63a8da2015-01-23 12:24:14 +01008346 /*
8347 * Wait for everybody to stop referencing the events through
8348 * the old lists, before installing it on new lists.
8349 */
Yan, Zheng0cda4c02012-06-15 14:31:33 +08008350 synchronize_rcu();
Peter Zijlstraf63a8da2015-01-23 12:24:14 +01008351
Peter Zijlstra (Intel)8f95b432015-01-27 11:53:12 +01008352 /*
8353 * Install the group siblings before the group leader.
8354 *
8355 * Because a group leader will try and install the entire group
8356 * (through the sibling list, which is still in-tact), we can
8357 * end up with siblings installed in the wrong context.
8358 *
8359 * By installing siblings first we NO-OP because they're not
8360 * reachable through the group lists.
8361 */
Peter Zijlstrab04243e2010-09-17 11:28:48 +02008362 list_for_each_entry(sibling, &group_leader->sibling_list,
8363 group_entry) {
Peter Zijlstra (Intel)8f95b432015-01-27 11:53:12 +01008364 perf_event__state_init(sibling);
Jiri Olsa9fc81d82014-12-10 21:23:51 +01008365 perf_install_in_context(ctx, sibling, sibling->cpu);
Peter Zijlstrab04243e2010-09-17 11:28:48 +02008366 get_ctx(ctx);
8367 }
Peter Zijlstra (Intel)8f95b432015-01-27 11:53:12 +01008368
8369 /*
8370 * Removing from the context ends up with disabled
8371 * event. What we want here is event in the initial
8372 * startup state, ready to be add into new context.
8373 */
8374 perf_event__state_init(group_leader);
8375 perf_install_in_context(ctx, group_leader, group_leader->cpu);
8376 get_ctx(ctx);
Peter Zijlstrab04243e2010-09-17 11:28:48 +02008377 }
8378
Alexander Shishkinbed5b252015-01-30 12:31:06 +02008379 if (!exclusive_event_installable(event, ctx)) {
8380 err = -EBUSY;
8381 mutex_unlock(&ctx->mutex);
8382 fput(event_file);
8383 goto err_context;
8384 }
8385
Yan, Zhenge2d37cd2012-06-15 14:31:32 +08008386 perf_install_in_context(ctx, event, event->cpu);
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +01008387 perf_unpin_context(ctx);
Peter Zijlstraf63a8da2015-01-23 12:24:14 +01008388
8389 if (move_group) {
8390 mutex_unlock(&gctx->mutex);
8391 put_ctx(gctx);
8392 }
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008393 mutex_unlock(&ctx->mutex);
8394
Yan, Zhengfbfc6232012-06-15 14:31:31 +08008395 put_online_cpus();
8396
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008397 event->owner = current;
Peter Zijlstra88821352010-11-09 19:01:43 +01008398
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008399 mutex_lock(&current->perf_event_mutex);
8400 list_add_tail(&event->owner_entry, &current->perf_event_list);
8401 mutex_unlock(&current->perf_event_mutex);
8402
Peter Zijlstra8a495422010-05-27 15:47:49 +02008403 /*
Arnaldo Carvalho de Meloc320c7b2010-10-20 12:50:11 -02008404 * Precalculate sample_data sizes
8405 */
8406 perf_event__header_size(event);
Arnaldo Carvalho de Melo6844c092010-12-03 16:36:35 -02008407 perf_event__id_header_size(event);
Arnaldo Carvalho de Meloc320c7b2010-10-20 12:50:11 -02008408
8409 /*
Peter Zijlstra8a495422010-05-27 15:47:49 +02008410 * Drop the reference on the group_event after placing the
8411 * new event on the sibling_list. This ensures destruction
8412 * of the group leader will find the pointer to itself in
8413 * perf_group_detach().
8414 */
Al Viro2903ff02012-08-28 12:52:22 -04008415 fdput(group);
Al Viroea635c62010-05-26 17:40:29 -04008416 fd_install(event_fd, event_file);
8417 return event_fd;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008418
Peter Zijlstrac3f00c72010-08-18 14:37:15 +02008419err_context:
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +01008420 perf_unpin_context(ctx);
Al Viroea635c62010-05-26 17:40:29 -04008421 put_ctx(ctx);
Peter Zijlstrac6be5a52010-10-14 16:59:46 +02008422err_alloc:
8423 free_event(event);
Peter Zijlstra1f4ee502014-05-06 09:59:34 +02008424err_cpus:
Yan, Zhengfbfc6232012-06-15 14:31:31 +08008425 put_online_cpus();
Peter Zijlstra1f4ee502014-05-06 09:59:34 +02008426err_task:
Peter Zijlstrae7d0bc02010-10-14 16:54:51 +02008427 if (task)
8428 put_task_struct(task);
Peter Zijlstra89a1e182010-09-07 17:34:50 +02008429err_group_fd:
Al Viro2903ff02012-08-28 12:52:22 -04008430 fdput(group);
Al Viroea635c62010-05-26 17:40:29 -04008431err_fd:
8432 put_unused_fd(event_fd);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008433 return err;
8434}
8435
Arjan van de Venfb0459d2009-09-25 12:25:56 +02008436/**
8437 * perf_event_create_kernel_counter
8438 *
8439 * @attr: attributes of the counter to create
8440 * @cpu: cpu in which the counter is bound
Matt Helsley38a81da2010-09-13 13:01:20 -07008441 * @task: task to profile (NULL for percpu)
Arjan van de Venfb0459d2009-09-25 12:25:56 +02008442 */
8443struct perf_event *
8444perf_event_create_kernel_counter(struct perf_event_attr *attr, int cpu,
Matt Helsley38a81da2010-09-13 13:01:20 -07008445 struct task_struct *task,
Avi Kivity4dc0da82011-06-29 18:42:35 +03008446 perf_overflow_handler_t overflow_handler,
8447 void *context)
Arjan van de Venfb0459d2009-09-25 12:25:56 +02008448{
Arjan van de Venfb0459d2009-09-25 12:25:56 +02008449 struct perf_event_context *ctx;
Peter Zijlstrac3f00c72010-08-18 14:37:15 +02008450 struct perf_event *event;
Arjan van de Venfb0459d2009-09-25 12:25:56 +02008451 int err;
8452
8453 /*
8454 * Get the target context (task or percpu):
8455 */
8456
Avi Kivity4dc0da82011-06-29 18:42:35 +03008457 event = perf_event_alloc(attr, cpu, task, NULL, NULL,
Matt Fleming79dff512015-01-23 18:45:42 +00008458 overflow_handler, context, -1);
Frederic Weisbeckerc6567f62009-11-26 05:35:41 +01008459 if (IS_ERR(event)) {
8460 err = PTR_ERR(event);
Peter Zijlstrac3f00c72010-08-18 14:37:15 +02008461 goto err;
8462 }
8463
Jiri Olsaf8697762014-08-01 14:33:01 +02008464 /* Mark owner so we could distinguish it from user events. */
8465 event->owner = EVENT_OWNER_KERNEL;
8466
Frederic Weisbecker766d6c02013-07-23 02:31:01 +02008467 account_event(event);
8468
Yan, Zheng4af57ef2014-11-04 21:56:01 -05008469 ctx = find_get_context(event->pmu, task, event);
Arjan van de Venfb0459d2009-09-25 12:25:56 +02008470 if (IS_ERR(ctx)) {
8471 err = PTR_ERR(ctx);
Peter Zijlstrac3f00c72010-08-18 14:37:15 +02008472 goto err_free;
Frederic Weisbeckerc6567f62009-11-26 05:35:41 +01008473 }
Arjan van de Venfb0459d2009-09-25 12:25:56 +02008474
Arjan van de Venfb0459d2009-09-25 12:25:56 +02008475 WARN_ON_ONCE(ctx->parent_ctx);
8476 mutex_lock(&ctx->mutex);
Alexander Shishkinbed5b252015-01-30 12:31:06 +02008477 if (!exclusive_event_installable(event, ctx)) {
8478 mutex_unlock(&ctx->mutex);
8479 perf_unpin_context(ctx);
8480 put_ctx(ctx);
8481 err = -EBUSY;
8482 goto err_free;
8483 }
8484
Arjan van de Venfb0459d2009-09-25 12:25:56 +02008485 perf_install_in_context(ctx, event, cpu);
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +01008486 perf_unpin_context(ctx);
Arjan van de Venfb0459d2009-09-25 12:25:56 +02008487 mutex_unlock(&ctx->mutex);
8488
Arjan van de Venfb0459d2009-09-25 12:25:56 +02008489 return event;
8490
Peter Zijlstrac3f00c72010-08-18 14:37:15 +02008491err_free:
8492 free_event(event);
8493err:
Frederic Weisbeckerc6567f62009-11-26 05:35:41 +01008494 return ERR_PTR(err);
Arjan van de Venfb0459d2009-09-25 12:25:56 +02008495}
8496EXPORT_SYMBOL_GPL(perf_event_create_kernel_counter);
8497
Yan, Zheng0cda4c02012-06-15 14:31:33 +08008498void perf_pmu_migrate_context(struct pmu *pmu, int src_cpu, int dst_cpu)
8499{
8500 struct perf_event_context *src_ctx;
8501 struct perf_event_context *dst_ctx;
8502 struct perf_event *event, *tmp;
8503 LIST_HEAD(events);
8504
8505 src_ctx = &per_cpu_ptr(pmu->pmu_cpu_context, src_cpu)->ctx;
8506 dst_ctx = &per_cpu_ptr(pmu->pmu_cpu_context, dst_cpu)->ctx;
8507
Peter Zijlstraf63a8da2015-01-23 12:24:14 +01008508 /*
8509 * See perf_event_ctx_lock() for comments on the details
8510 * of swizzling perf_event::ctx.
8511 */
8512 mutex_lock_double(&src_ctx->mutex, &dst_ctx->mutex);
Yan, Zheng0cda4c02012-06-15 14:31:33 +08008513 list_for_each_entry_safe(event, tmp, &src_ctx->event_list,
8514 event_entry) {
Peter Zijlstra46ce0fe2014-05-02 16:56:01 +02008515 perf_remove_from_context(event, false);
Frederic Weisbecker9a545de2013-07-23 02:31:03 +02008516 unaccount_event_cpu(event, src_cpu);
Yan, Zheng0cda4c02012-06-15 14:31:33 +08008517 put_ctx(src_ctx);
Peter Zijlstra98861672013-10-03 16:02:23 +02008518 list_add(&event->migrate_entry, &events);
Yan, Zheng0cda4c02012-06-15 14:31:33 +08008519 }
Yan, Zheng0cda4c02012-06-15 14:31:33 +08008520
Peter Zijlstra (Intel)8f95b432015-01-27 11:53:12 +01008521 /*
8522 * Wait for the events to quiesce before re-instating them.
8523 */
Yan, Zheng0cda4c02012-06-15 14:31:33 +08008524 synchronize_rcu();
8525
Peter Zijlstra (Intel)8f95b432015-01-27 11:53:12 +01008526 /*
8527 * Re-instate events in 2 passes.
8528 *
8529 * Skip over group leaders and only install siblings on this first
8530 * pass, siblings will not get enabled without a leader, however a
8531 * leader will enable its siblings, even if those are still on the old
8532 * context.
8533 */
8534 list_for_each_entry_safe(event, tmp, &events, migrate_entry) {
8535 if (event->group_leader == event)
8536 continue;
8537
8538 list_del(&event->migrate_entry);
8539 if (event->state >= PERF_EVENT_STATE_OFF)
8540 event->state = PERF_EVENT_STATE_INACTIVE;
8541 account_event_cpu(event, dst_cpu);
8542 perf_install_in_context(dst_ctx, event, dst_cpu);
8543 get_ctx(dst_ctx);
8544 }
8545
8546 /*
8547 * Once all the siblings are setup properly, install the group leaders
8548 * to make it go.
8549 */
Peter Zijlstra98861672013-10-03 16:02:23 +02008550 list_for_each_entry_safe(event, tmp, &events, migrate_entry) {
8551 list_del(&event->migrate_entry);
Yan, Zheng0cda4c02012-06-15 14:31:33 +08008552 if (event->state >= PERF_EVENT_STATE_OFF)
8553 event->state = PERF_EVENT_STATE_INACTIVE;
Frederic Weisbecker9a545de2013-07-23 02:31:03 +02008554 account_event_cpu(event, dst_cpu);
Yan, Zheng0cda4c02012-06-15 14:31:33 +08008555 perf_install_in_context(dst_ctx, event, dst_cpu);
8556 get_ctx(dst_ctx);
8557 }
8558 mutex_unlock(&dst_ctx->mutex);
Peter Zijlstraf63a8da2015-01-23 12:24:14 +01008559 mutex_unlock(&src_ctx->mutex);
Yan, Zheng0cda4c02012-06-15 14:31:33 +08008560}
8561EXPORT_SYMBOL_GPL(perf_pmu_migrate_context);
8562
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008563static void sync_child_event(struct perf_event *child_event,
8564 struct task_struct *child)
8565{
8566 struct perf_event *parent_event = child_event->parent;
8567 u64 child_val;
8568
8569 if (child_event->attr.inherit_stat)
8570 perf_event_read_event(child_event, child);
8571
Peter Zijlstrab5e58792010-05-21 14:43:12 +02008572 child_val = perf_event_count(child_event);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008573
8574 /*
8575 * Add back the child's count to the parent's count:
8576 */
Peter Zijlstraa6e6dea2010-05-21 14:27:58 +02008577 atomic64_add(child_val, &parent_event->child_count);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008578 atomic64_add(child_event->total_time_enabled,
8579 &parent_event->child_total_time_enabled);
8580 atomic64_add(child_event->total_time_running,
8581 &parent_event->child_total_time_running);
8582
8583 /*
8584 * Remove this event from the parent's list
8585 */
8586 WARN_ON_ONCE(parent_event->ctx->parent_ctx);
8587 mutex_lock(&parent_event->child_mutex);
8588 list_del_init(&child_event->child_list);
8589 mutex_unlock(&parent_event->child_mutex);
8590
8591 /*
Jiri Olsadc633982014-09-12 13:18:26 +02008592 * Make sure user/parent get notified, that we just
8593 * lost one event.
8594 */
8595 perf_event_wakeup(parent_event);
8596
8597 /*
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008598 * Release the parent event, if this was the last
8599 * reference to it.
8600 */
Al Viroa6fa9412012-08-20 14:59:25 +01008601 put_event(parent_event);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008602}
8603
8604static void
8605__perf_event_exit_task(struct perf_event *child_event,
8606 struct perf_event_context *child_ctx,
8607 struct task_struct *child)
8608{
Peter Zijlstra1903d502014-07-15 17:27:27 +02008609 /*
8610 * Do not destroy the 'original' grouping; because of the context
8611 * switch optimization the original events could've ended up in a
8612 * random child task.
8613 *
8614 * If we were to destroy the original group, all group related
8615 * operations would cease to function properly after this random
8616 * child dies.
8617 *
8618 * Do destroy all inherited groups, we don't care about those
8619 * and being thorough is better.
8620 */
8621 perf_remove_from_context(child_event, !!child_event->parent);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008622
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008623 /*
Peter Zijlstra38b435b2011-03-15 14:37:10 +01008624 * It can happen that the parent exits first, and has events
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008625 * that are still around due to the child reference. These
Peter Zijlstra38b435b2011-03-15 14:37:10 +01008626 * events need to be zapped.
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008627 */
Peter Zijlstra38b435b2011-03-15 14:37:10 +01008628 if (child_event->parent) {
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008629 sync_child_event(child_event, child);
8630 free_event(child_event);
Jiri Olsa179033b2014-08-07 11:48:26 -04008631 } else {
8632 child_event->state = PERF_EVENT_STATE_EXIT;
8633 perf_event_wakeup(child_event);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008634 }
8635}
8636
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02008637static void perf_event_exit_task_context(struct task_struct *child, int ctxn)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008638{
Peter Zijlstraebf905f2014-05-29 19:00:24 +02008639 struct perf_event *child_event, *next;
Peter Zijlstra211de6e2014-09-30 19:23:08 +02008640 struct perf_event_context *child_ctx, *clone_ctx = NULL;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008641 unsigned long flags;
8642
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02008643 if (likely(!child->perf_event_ctxp[ctxn])) {
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008644 perf_event_task(child, NULL, 0);
8645 return;
8646 }
8647
8648 local_irq_save(flags);
8649 /*
8650 * We can't reschedule here because interrupts are disabled,
8651 * and either child is current or it is a task that can't be
8652 * scheduled, so we are now safe from rescheduling changing
8653 * our context.
8654 */
Oleg Nesterov806839b2011-01-21 18:45:47 +01008655 child_ctx = rcu_dereference_raw(child->perf_event_ctxp[ctxn]);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008656
8657 /*
8658 * Take the context lock here so that if find_get_context is
8659 * reading child->perf_event_ctxp, we wait until it has
8660 * incremented the context's refcount before we do put_ctx below.
8661 */
Thomas Gleixnere625cce12009-11-17 18:02:06 +01008662 raw_spin_lock(&child_ctx->lock);
Peter Zijlstra04dc2db2011-04-09 21:17:43 +02008663 task_ctx_sched_out(child_ctx);
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02008664 child->perf_event_ctxp[ctxn] = NULL;
Peter Zijlstra4a1c0f22014-06-23 16:12:42 +02008665
8666 /*
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008667 * If this context is a clone; unclone it so it can't get
8668 * swapped to another process while we're removing all
8669 * the events from it.
8670 */
Peter Zijlstra211de6e2014-09-30 19:23:08 +02008671 clone_ctx = unclone_ctx(child_ctx);
Peter Zijlstra5e942bb2009-11-23 11:37:26 +01008672 update_context_time(child_ctx);
Thomas Gleixnere625cce12009-11-17 18:02:06 +01008673 raw_spin_unlock_irqrestore(&child_ctx->lock, flags);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008674
Peter Zijlstra211de6e2014-09-30 19:23:08 +02008675 if (clone_ctx)
8676 put_ctx(clone_ctx);
Peter Zijlstra4a1c0f22014-06-23 16:12:42 +02008677
8678 /*
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008679 * Report the task dead after unscheduling the events so that we
8680 * won't get any samples after PERF_RECORD_EXIT. We can however still
8681 * get a few PERF_RECORD_READ events.
8682 */
8683 perf_event_task(child, child_ctx, 0);
8684
8685 /*
8686 * We can recurse on the same lock type through:
8687 *
8688 * __perf_event_exit_task()
8689 * sync_child_event()
Al Viroa6fa9412012-08-20 14:59:25 +01008690 * put_event()
8691 * mutex_lock(&ctx->mutex)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008692 *
8693 * But since its the parent context it won't be the same instance.
8694 */
Peter Zijlstraa0507c82010-05-06 15:42:53 +02008695 mutex_lock(&child_ctx->mutex);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008696
Peter Zijlstraebf905f2014-05-29 19:00:24 +02008697 list_for_each_entry_safe(child_event, next, &child_ctx->event_list, event_entry)
Frederic Weisbecker889ff012010-01-09 20:04:47 +01008698 __perf_event_exit_task(child_event, child_ctx, child);
8699
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008700 mutex_unlock(&child_ctx->mutex);
8701
8702 put_ctx(child_ctx);
8703}
8704
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02008705/*
8706 * When a child task exits, feed back event values to parent events.
8707 */
8708void perf_event_exit_task(struct task_struct *child)
8709{
Peter Zijlstra88821352010-11-09 19:01:43 +01008710 struct perf_event *event, *tmp;
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02008711 int ctxn;
8712
Peter Zijlstra88821352010-11-09 19:01:43 +01008713 mutex_lock(&child->perf_event_mutex);
8714 list_for_each_entry_safe(event, tmp, &child->perf_event_list,
8715 owner_entry) {
8716 list_del_init(&event->owner_entry);
8717
8718 /*
8719 * Ensure the list deletion is visible before we clear
8720 * the owner, closes a race against perf_release() where
8721 * we need to serialize on the owner->perf_event_mutex.
8722 */
8723 smp_wmb();
8724 event->owner = NULL;
8725 }
8726 mutex_unlock(&child->perf_event_mutex);
8727
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02008728 for_each_task_context_nr(ctxn)
8729 perf_event_exit_task_context(child, ctxn);
8730}
8731
Frederic Weisbecker889ff012010-01-09 20:04:47 +01008732static void perf_free_event(struct perf_event *event,
8733 struct perf_event_context *ctx)
8734{
8735 struct perf_event *parent = event->parent;
8736
8737 if (WARN_ON_ONCE(!parent))
8738 return;
8739
8740 mutex_lock(&parent->child_mutex);
8741 list_del_init(&event->child_list);
8742 mutex_unlock(&parent->child_mutex);
8743
Al Viroa6fa9412012-08-20 14:59:25 +01008744 put_event(parent);
Frederic Weisbecker889ff012010-01-09 20:04:47 +01008745
Peter Zijlstra652884f2015-01-23 11:20:10 +01008746 raw_spin_lock_irq(&ctx->lock);
Peter Zijlstra8a495422010-05-27 15:47:49 +02008747 perf_group_detach(event);
Frederic Weisbecker889ff012010-01-09 20:04:47 +01008748 list_del_event(event, ctx);
Peter Zijlstra652884f2015-01-23 11:20:10 +01008749 raw_spin_unlock_irq(&ctx->lock);
Frederic Weisbecker889ff012010-01-09 20:04:47 +01008750 free_event(event);
8751}
8752
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008753/*
Peter Zijlstra652884f2015-01-23 11:20:10 +01008754 * Free an unexposed, unused context as created by inheritance by
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02008755 * perf_event_init_task below, used by fork() in case of fail.
Peter Zijlstra652884f2015-01-23 11:20:10 +01008756 *
8757 * Not all locks are strictly required, but take them anyway to be nice and
8758 * help out with the lockdep assertions.
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008759 */
8760void perf_event_free_task(struct task_struct *task)
8761{
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02008762 struct perf_event_context *ctx;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008763 struct perf_event *event, *tmp;
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02008764 int ctxn;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008765
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02008766 for_each_task_context_nr(ctxn) {
8767 ctx = task->perf_event_ctxp[ctxn];
8768 if (!ctx)
8769 continue;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008770
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02008771 mutex_lock(&ctx->mutex);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008772again:
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02008773 list_for_each_entry_safe(event, tmp, &ctx->pinned_groups,
8774 group_entry)
8775 perf_free_event(event, ctx);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008776
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02008777 list_for_each_entry_safe(event, tmp, &ctx->flexible_groups,
8778 group_entry)
8779 perf_free_event(event, ctx);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008780
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02008781 if (!list_empty(&ctx->pinned_groups) ||
8782 !list_empty(&ctx->flexible_groups))
8783 goto again;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008784
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02008785 mutex_unlock(&ctx->mutex);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008786
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02008787 put_ctx(ctx);
8788 }
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008789}
8790
Peter Zijlstra4e231c72010-09-09 21:01:59 +02008791void perf_event_delayed_put(struct task_struct *task)
8792{
8793 int ctxn;
8794
8795 for_each_task_context_nr(ctxn)
8796 WARN_ON_ONCE(task->perf_event_ctxp[ctxn]);
8797}
8798
Kaixu Xiaffe86902015-08-06 07:02:32 +00008799struct perf_event *perf_event_get(unsigned int fd)
8800{
8801 int err;
8802 struct fd f;
8803 struct perf_event *event;
8804
8805 err = perf_fget_light(fd, &f);
8806 if (err)
8807 return ERR_PTR(err);
8808
8809 event = f.file->private_data;
8810 atomic_long_inc(&event->refcount);
8811 fdput(f);
8812
8813 return event;
8814}
8815
8816const struct perf_event_attr *perf_event_attrs(struct perf_event *event)
8817{
8818 if (!event)
8819 return ERR_PTR(-EINVAL);
8820
8821 return &event->attr;
8822}
8823
Peter Zijlstra97dee4f2010-09-07 15:35:33 +02008824/*
8825 * inherit a event from parent task to child task:
8826 */
8827static struct perf_event *
8828inherit_event(struct perf_event *parent_event,
8829 struct task_struct *parent,
8830 struct perf_event_context *parent_ctx,
8831 struct task_struct *child,
8832 struct perf_event *group_leader,
8833 struct perf_event_context *child_ctx)
8834{
Jiri Olsa1929def2014-09-12 13:18:27 +02008835 enum perf_event_active_state parent_state = parent_event->state;
Peter Zijlstra97dee4f2010-09-07 15:35:33 +02008836 struct perf_event *child_event;
Peter Zijlstracee010e2010-09-10 12:51:54 +02008837 unsigned long flags;
Peter Zijlstra97dee4f2010-09-07 15:35:33 +02008838
8839 /*
8840 * Instead of creating recursive hierarchies of events,
8841 * we link inherited events back to the original parent,
8842 * which has a filp for sure, which we use as the reference
8843 * count:
8844 */
8845 if (parent_event->parent)
8846 parent_event = parent_event->parent;
8847
8848 child_event = perf_event_alloc(&parent_event->attr,
8849 parent_event->cpu,
Peter Zijlstrad580ff82010-10-14 17:43:23 +02008850 child,
Peter Zijlstra97dee4f2010-09-07 15:35:33 +02008851 group_leader, parent_event,
Matt Fleming79dff512015-01-23 18:45:42 +00008852 NULL, NULL, -1);
Peter Zijlstra97dee4f2010-09-07 15:35:33 +02008853 if (IS_ERR(child_event))
8854 return child_event;
Al Viroa6fa9412012-08-20 14:59:25 +01008855
Jiri Olsafadfe7b2014-08-01 14:33:02 +02008856 if (is_orphaned_event(parent_event) ||
8857 !atomic_long_inc_not_zero(&parent_event->refcount)) {
Al Viroa6fa9412012-08-20 14:59:25 +01008858 free_event(child_event);
8859 return NULL;
8860 }
8861
Peter Zijlstra97dee4f2010-09-07 15:35:33 +02008862 get_ctx(child_ctx);
8863
8864 /*
8865 * Make the child state follow the state of the parent event,
8866 * not its attr.disabled bit. We hold the parent's mutex,
8867 * so we won't race with perf_event_{en, dis}able_family.
8868 */
Jiri Olsa1929def2014-09-12 13:18:27 +02008869 if (parent_state >= PERF_EVENT_STATE_INACTIVE)
Peter Zijlstra97dee4f2010-09-07 15:35:33 +02008870 child_event->state = PERF_EVENT_STATE_INACTIVE;
8871 else
8872 child_event->state = PERF_EVENT_STATE_OFF;
8873
8874 if (parent_event->attr.freq) {
8875 u64 sample_period = parent_event->hw.sample_period;
8876 struct hw_perf_event *hwc = &child_event->hw;
8877
8878 hwc->sample_period = sample_period;
8879 hwc->last_period = sample_period;
8880
8881 local64_set(&hwc->period_left, sample_period);
8882 }
8883
8884 child_event->ctx = child_ctx;
8885 child_event->overflow_handler = parent_event->overflow_handler;
Avi Kivity4dc0da82011-06-29 18:42:35 +03008886 child_event->overflow_handler_context
8887 = parent_event->overflow_handler_context;
Peter Zijlstra97dee4f2010-09-07 15:35:33 +02008888
8889 /*
Thomas Gleixner614b6782010-12-03 16:24:32 -02008890 * Precalculate sample_data sizes
8891 */
8892 perf_event__header_size(child_event);
Arnaldo Carvalho de Melo6844c092010-12-03 16:36:35 -02008893 perf_event__id_header_size(child_event);
Thomas Gleixner614b6782010-12-03 16:24:32 -02008894
8895 /*
Peter Zijlstra97dee4f2010-09-07 15:35:33 +02008896 * Link it up in the child's context:
8897 */
Peter Zijlstracee010e2010-09-10 12:51:54 +02008898 raw_spin_lock_irqsave(&child_ctx->lock, flags);
Peter Zijlstra97dee4f2010-09-07 15:35:33 +02008899 add_event_to_ctx(child_event, child_ctx);
Peter Zijlstracee010e2010-09-10 12:51:54 +02008900 raw_spin_unlock_irqrestore(&child_ctx->lock, flags);
Peter Zijlstra97dee4f2010-09-07 15:35:33 +02008901
8902 /*
Peter Zijlstra97dee4f2010-09-07 15:35:33 +02008903 * Link this into the parent event's child list
8904 */
8905 WARN_ON_ONCE(parent_event->ctx->parent_ctx);
8906 mutex_lock(&parent_event->child_mutex);
8907 list_add_tail(&child_event->child_list, &parent_event->child_list);
8908 mutex_unlock(&parent_event->child_mutex);
8909
8910 return child_event;
8911}
8912
8913static int inherit_group(struct perf_event *parent_event,
8914 struct task_struct *parent,
8915 struct perf_event_context *parent_ctx,
8916 struct task_struct *child,
8917 struct perf_event_context *child_ctx)
8918{
8919 struct perf_event *leader;
8920 struct perf_event *sub;
8921 struct perf_event *child_ctr;
8922
8923 leader = inherit_event(parent_event, parent, parent_ctx,
8924 child, NULL, child_ctx);
8925 if (IS_ERR(leader))
8926 return PTR_ERR(leader);
8927 list_for_each_entry(sub, &parent_event->sibling_list, group_entry) {
8928 child_ctr = inherit_event(sub, parent, parent_ctx,
8929 child, leader, child_ctx);
8930 if (IS_ERR(child_ctr))
8931 return PTR_ERR(child_ctr);
8932 }
8933 return 0;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008934}
8935
Frederic Weisbecker889ff012010-01-09 20:04:47 +01008936static int
8937inherit_task_group(struct perf_event *event, struct task_struct *parent,
8938 struct perf_event_context *parent_ctx,
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02008939 struct task_struct *child, int ctxn,
Frederic Weisbecker889ff012010-01-09 20:04:47 +01008940 int *inherited_all)
8941{
8942 int ret;
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02008943 struct perf_event_context *child_ctx;
Frederic Weisbecker889ff012010-01-09 20:04:47 +01008944
8945 if (!event->attr.inherit) {
8946 *inherited_all = 0;
8947 return 0;
8948 }
8949
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +01008950 child_ctx = child->perf_event_ctxp[ctxn];
Frederic Weisbecker889ff012010-01-09 20:04:47 +01008951 if (!child_ctx) {
8952 /*
8953 * This is executed from the parent task context, so
8954 * inherit events that have been marked for cloning.
8955 * First allocate and initialize a context for the
8956 * child.
8957 */
8958
Jiri Olsa734df5a2013-07-09 17:44:10 +02008959 child_ctx = alloc_perf_context(parent_ctx->pmu, child);
Frederic Weisbecker889ff012010-01-09 20:04:47 +01008960 if (!child_ctx)
8961 return -ENOMEM;
8962
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02008963 child->perf_event_ctxp[ctxn] = child_ctx;
Frederic Weisbecker889ff012010-01-09 20:04:47 +01008964 }
8965
8966 ret = inherit_group(event, parent, parent_ctx,
8967 child, child_ctx);
8968
8969 if (ret)
8970 *inherited_all = 0;
8971
8972 return ret;
8973}
8974
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008975/*
8976 * Initialize the perf_event context in task_struct
8977 */
Jiri Olsa985c8dc2014-06-24 10:20:24 +02008978static int perf_event_init_context(struct task_struct *child, int ctxn)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008979{
Frederic Weisbecker889ff012010-01-09 20:04:47 +01008980 struct perf_event_context *child_ctx, *parent_ctx;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008981 struct perf_event_context *cloned_ctx;
8982 struct perf_event *event;
8983 struct task_struct *parent = current;
8984 int inherited_all = 1;
Thomas Gleixnerdddd3372010-11-24 10:05:55 +01008985 unsigned long flags;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008986 int ret = 0;
8987
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02008988 if (likely(!parent->perf_event_ctxp[ctxn]))
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008989 return 0;
8990
8991 /*
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008992 * If the parent's context is a clone, pin it so it won't get
8993 * swapped under us.
8994 */
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02008995 parent_ctx = perf_pin_task_context(parent, ctxn);
Peter Zijlstraffb4ef22014-05-05 19:12:20 +02008996 if (!parent_ctx)
8997 return 0;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02008998
8999 /*
9000 * No need to check if parent_ctx != NULL here; since we saw
9001 * it non-NULL earlier, the only reason for it to become NULL
9002 * is if we exit, and since we're currently in the middle of
9003 * a fork we can't be exiting at the same time.
9004 */
9005
9006 /*
9007 * Lock the parent list. No need to lock the child - not PID
9008 * hashed yet and not running, so nobody can access it.
9009 */
9010 mutex_lock(&parent_ctx->mutex);
9011
9012 /*
9013 * We dont have to disable NMIs - we are only looking at
9014 * the list, not manipulating it:
9015 */
Frederic Weisbecker889ff012010-01-09 20:04:47 +01009016 list_for_each_entry(event, &parent_ctx->pinned_groups, group_entry) {
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02009017 ret = inherit_task_group(event, parent, parent_ctx,
9018 child, ctxn, &inherited_all);
Frederic Weisbecker889ff012010-01-09 20:04:47 +01009019 if (ret)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02009020 break;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02009021 }
9022
Thomas Gleixnerdddd3372010-11-24 10:05:55 +01009023 /*
9024 * We can't hold ctx->lock when iterating the ->flexible_group list due
9025 * to allocations, but we need to prevent rotation because
9026 * rotate_ctx() will change the list from interrupt context.
9027 */
9028 raw_spin_lock_irqsave(&parent_ctx->lock, flags);
9029 parent_ctx->rotate_disable = 1;
9030 raw_spin_unlock_irqrestore(&parent_ctx->lock, flags);
9031
Frederic Weisbecker889ff012010-01-09 20:04:47 +01009032 list_for_each_entry(event, &parent_ctx->flexible_groups, group_entry) {
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02009033 ret = inherit_task_group(event, parent, parent_ctx,
9034 child, ctxn, &inherited_all);
Frederic Weisbecker889ff012010-01-09 20:04:47 +01009035 if (ret)
9036 break;
9037 }
9038
Thomas Gleixnerdddd3372010-11-24 10:05:55 +01009039 raw_spin_lock_irqsave(&parent_ctx->lock, flags);
9040 parent_ctx->rotate_disable = 0;
Thomas Gleixnerdddd3372010-11-24 10:05:55 +01009041
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02009042 child_ctx = child->perf_event_ctxp[ctxn];
Frederic Weisbecker889ff012010-01-09 20:04:47 +01009043
Peter Zijlstra05cbaa22009-12-30 16:00:35 +01009044 if (child_ctx && inherited_all) {
Ingo Molnarcdd6c482009-09-21 12:02:48 +02009045 /*
9046 * Mark the child context as a clone of the parent
9047 * context, or of whatever the parent is a clone of.
Peter Zijlstrac5ed5142011-01-17 13:45:37 +01009048 *
9049 * Note that if the parent is a clone, the holding of
9050 * parent_ctx->lock avoids it from being uncloned.
Ingo Molnarcdd6c482009-09-21 12:02:48 +02009051 */
Peter Zijlstrac5ed5142011-01-17 13:45:37 +01009052 cloned_ctx = parent_ctx->parent_ctx;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02009053 if (cloned_ctx) {
9054 child_ctx->parent_ctx = cloned_ctx;
9055 child_ctx->parent_gen = parent_ctx->parent_gen;
9056 } else {
9057 child_ctx->parent_ctx = parent_ctx;
9058 child_ctx->parent_gen = parent_ctx->generation;
9059 }
9060 get_ctx(child_ctx->parent_ctx);
9061 }
9062
Peter Zijlstrac5ed5142011-01-17 13:45:37 +01009063 raw_spin_unlock_irqrestore(&parent_ctx->lock, flags);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02009064 mutex_unlock(&parent_ctx->mutex);
9065
9066 perf_unpin_context(parent_ctx);
Peter Zijlstrafe4b04f2011-02-02 13:19:09 +01009067 put_ctx(parent_ctx);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02009068
9069 return ret;
9070}
9071
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02009072/*
9073 * Initialize the perf_event context in task_struct
9074 */
9075int perf_event_init_task(struct task_struct *child)
9076{
9077 int ctxn, ret;
9078
Oleg Nesterov8550d7c2011-01-19 19:22:28 +01009079 memset(child->perf_event_ctxp, 0, sizeof(child->perf_event_ctxp));
9080 mutex_init(&child->perf_event_mutex);
9081 INIT_LIST_HEAD(&child->perf_event_list);
9082
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02009083 for_each_task_context_nr(ctxn) {
9084 ret = perf_event_init_context(child, ctxn);
Peter Zijlstra6c72e3502014-10-02 16:17:02 -07009085 if (ret) {
9086 perf_event_free_task(child);
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02009087 return ret;
Peter Zijlstra6c72e3502014-10-02 16:17:02 -07009088 }
Peter Zijlstra8dc85d5472010-09-02 16:50:03 +02009089 }
9090
9091 return 0;
9092}
9093
Paul Mackerras220b1402010-03-10 20:45:52 +11009094static void __init perf_event_init_all_cpus(void)
9095{
Peter Zijlstrab28ab832010-09-06 14:48:15 +02009096 struct swevent_htable *swhash;
Paul Mackerras220b1402010-03-10 20:45:52 +11009097 int cpu;
Paul Mackerras220b1402010-03-10 20:45:52 +11009098
9099 for_each_possible_cpu(cpu) {
Peter Zijlstrab28ab832010-09-06 14:48:15 +02009100 swhash = &per_cpu(swevent_htable, cpu);
9101 mutex_init(&swhash->hlist_mutex);
Mark Rutland2fde4f92015-01-07 15:01:54 +00009102 INIT_LIST_HEAD(&per_cpu(active_ctx_list, cpu));
Paul Mackerras220b1402010-03-10 20:45:52 +11009103 }
9104}
9105
Paul Gortmaker0db06282013-06-19 14:53:51 -04009106static void perf_event_init_cpu(int cpu)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02009107{
Peter Zijlstra108b02c2010-09-06 14:32:03 +02009108 struct swevent_htable *swhash = &per_cpu(swevent_htable, cpu);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02009109
Peter Zijlstrab28ab832010-09-06 14:48:15 +02009110 mutex_lock(&swhash->hlist_mutex);
Jiri Olsa39af6b12014-04-07 11:04:08 +02009111 swhash->online = true;
Linus Torvalds4536e4d2011-11-03 07:44:04 -07009112 if (swhash->hlist_refcount > 0) {
Frederic Weisbecker76e1d902010-04-05 15:35:57 +02009113 struct swevent_hlist *hlist;
9114
Peter Zijlstrab28ab832010-09-06 14:48:15 +02009115 hlist = kzalloc_node(sizeof(*hlist), GFP_KERNEL, cpu_to_node(cpu));
9116 WARN_ON(!hlist);
9117 rcu_assign_pointer(swhash->swevent_hlist, hlist);
Frederic Weisbecker76e1d902010-04-05 15:35:57 +02009118 }
Peter Zijlstrab28ab832010-09-06 14:48:15 +02009119 mutex_unlock(&swhash->hlist_mutex);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02009120}
9121
Dave Young2965faa2015-09-09 15:38:55 -07009122#if defined CONFIG_HOTPLUG_CPU || defined CONFIG_KEXEC_CORE
Peter Zijlstra108b02c2010-09-06 14:32:03 +02009123static void __perf_event_exit_context(void *__info)
Ingo Molnarcdd6c482009-09-21 12:02:48 +02009124{
Mark Rutland226424e2014-11-05 16:11:44 +00009125 struct remove_event re = { .detach_group = true };
Peter Zijlstra108b02c2010-09-06 14:32:03 +02009126 struct perf_event_context *ctx = __info;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02009127
Peter Zijlstrae3703f82014-02-24 12:06:12 +01009128 rcu_read_lock();
Peter Zijlstra46ce0fe2014-05-02 16:56:01 +02009129 list_for_each_entry_rcu(re.event, &ctx->event_list, event_entry)
9130 __perf_remove_from_context(&re);
Peter Zijlstrae3703f82014-02-24 12:06:12 +01009131 rcu_read_unlock();
Ingo Molnarcdd6c482009-09-21 12:02:48 +02009132}
Peter Zijlstra108b02c2010-09-06 14:32:03 +02009133
9134static void perf_event_exit_cpu_context(int cpu)
9135{
9136 struct perf_event_context *ctx;
9137 struct pmu *pmu;
9138 int idx;
9139
9140 idx = srcu_read_lock(&pmus_srcu);
9141 list_for_each_entry_rcu(pmu, &pmus, entry) {
Peter Zijlstra917bdd12010-09-17 11:28:49 +02009142 ctx = &per_cpu_ptr(pmu->pmu_cpu_context, cpu)->ctx;
Peter Zijlstra108b02c2010-09-06 14:32:03 +02009143
9144 mutex_lock(&ctx->mutex);
9145 smp_call_function_single(cpu, __perf_event_exit_context, ctx, 1);
9146 mutex_unlock(&ctx->mutex);
9147 }
9148 srcu_read_unlock(&pmus_srcu, idx);
Peter Zijlstra108b02c2010-09-06 14:32:03 +02009149}
9150
Ingo Molnarcdd6c482009-09-21 12:02:48 +02009151static void perf_event_exit_cpu(int cpu)
9152{
Peter Zijlstrab28ab832010-09-06 14:48:15 +02009153 struct swevent_htable *swhash = &per_cpu(swevent_htable, cpu);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02009154
Peter Zijlstrae3703f82014-02-24 12:06:12 +01009155 perf_event_exit_cpu_context(cpu);
9156
Peter Zijlstrab28ab832010-09-06 14:48:15 +02009157 mutex_lock(&swhash->hlist_mutex);
Jiri Olsa39af6b12014-04-07 11:04:08 +02009158 swhash->online = false;
Peter Zijlstrab28ab832010-09-06 14:48:15 +02009159 swevent_hlist_release(swhash);
9160 mutex_unlock(&swhash->hlist_mutex);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02009161}
9162#else
9163static inline void perf_event_exit_cpu(int cpu) { }
9164#endif
9165
Peter Zijlstrac2774432010-12-08 15:29:02 +01009166static int
9167perf_reboot(struct notifier_block *notifier, unsigned long val, void *v)
9168{
9169 int cpu;
9170
9171 for_each_online_cpu(cpu)
9172 perf_event_exit_cpu(cpu);
9173
9174 return NOTIFY_OK;
9175}
9176
9177/*
9178 * Run the perf reboot notifier at the very last possible moment so that
9179 * the generic watchdog code runs as long as possible.
9180 */
9181static struct notifier_block perf_reboot_notifier = {
9182 .notifier_call = perf_reboot,
9183 .priority = INT_MIN,
9184};
9185
Paul Gortmaker0db06282013-06-19 14:53:51 -04009186static int
Ingo Molnarcdd6c482009-09-21 12:02:48 +02009187perf_cpu_notify(struct notifier_block *self, unsigned long action, void *hcpu)
9188{
9189 unsigned int cpu = (long)hcpu;
9190
Linus Torvalds4536e4d2011-11-03 07:44:04 -07009191 switch (action & ~CPU_TASKS_FROZEN) {
Ingo Molnarcdd6c482009-09-21 12:02:48 +02009192
9193 case CPU_UP_PREPARE:
Peter Zijlstra5e116372010-06-11 13:35:08 +02009194 case CPU_DOWN_FAILED:
Ingo Molnarcdd6c482009-09-21 12:02:48 +02009195 perf_event_init_cpu(cpu);
9196 break;
9197
Peter Zijlstra5e116372010-06-11 13:35:08 +02009198 case CPU_UP_CANCELED:
Ingo Molnarcdd6c482009-09-21 12:02:48 +02009199 case CPU_DOWN_PREPARE:
Ingo Molnarcdd6c482009-09-21 12:02:48 +02009200 perf_event_exit_cpu(cpu);
9201 break;
Ingo Molnarcdd6c482009-09-21 12:02:48 +02009202 default:
9203 break;
9204 }
9205
9206 return NOTIFY_OK;
9207}
9208
Ingo Molnarcdd6c482009-09-21 12:02:48 +02009209void __init perf_event_init(void)
9210{
Jason Wessel3c502e72010-11-04 17:33:01 -05009211 int ret;
9212
Peter Zijlstra2e80a822010-11-17 23:17:36 +01009213 idr_init(&pmu_idr);
9214
Paul Mackerras220b1402010-03-10 20:45:52 +11009215 perf_event_init_all_cpus();
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02009216 init_srcu_struct(&pmus_srcu);
Peter Zijlstra2e80a822010-11-17 23:17:36 +01009217 perf_pmu_register(&perf_swevent, "software", PERF_TYPE_SOFTWARE);
9218 perf_pmu_register(&perf_cpu_clock, NULL, -1);
9219 perf_pmu_register(&perf_task_clock, NULL, -1);
Peter Zijlstrab0a873e2010-06-11 13:35:08 +02009220 perf_tp_register();
9221 perf_cpu_notifier(perf_cpu_notify);
Peter Zijlstrac2774432010-12-08 15:29:02 +01009222 register_reboot_notifier(&perf_reboot_notifier);
Jason Wessel3c502e72010-11-04 17:33:01 -05009223
9224 ret = init_hw_breakpoint();
9225 WARN(ret, "hw_breakpoint initialization failed with: %d", ret);
Gleb Natapovb2029522011-11-27 17:59:09 +02009226
9227 /* do not patch jump label more than once per second */
9228 jump_label_rate_limit(&perf_sched_events, HZ);
Jiri Olsab01c3a02012-03-23 15:41:20 +01009229
9230 /*
9231 * Build time assertion that we keep the data_head at the intended
9232 * location. IOW, validation we got the __reserved[] size right.
9233 */
9234 BUILD_BUG_ON((offsetof(struct perf_event_mmap_page, data_head))
9235 != 1024);
Ingo Molnarcdd6c482009-09-21 12:02:48 +02009236}
Peter Zijlstraabe43402010-11-17 23:17:37 +01009237
Cody P Schaferfd979c02015-01-30 13:45:57 -08009238ssize_t perf_event_sysfs_show(struct device *dev, struct device_attribute *attr,
9239 char *page)
9240{
9241 struct perf_pmu_events_attr *pmu_attr =
9242 container_of(attr, struct perf_pmu_events_attr, attr);
9243
9244 if (pmu_attr->event_str)
9245 return sprintf(page, "%s\n", pmu_attr->event_str);
9246
9247 return 0;
9248}
9249
Peter Zijlstraabe43402010-11-17 23:17:37 +01009250static int __init perf_event_sysfs_init(void)
9251{
9252 struct pmu *pmu;
9253 int ret;
9254
9255 mutex_lock(&pmus_lock);
9256
9257 ret = bus_register(&pmu_bus);
9258 if (ret)
9259 goto unlock;
9260
9261 list_for_each_entry(pmu, &pmus, entry) {
9262 if (!pmu->name || pmu->type < 0)
9263 continue;
9264
9265 ret = pmu_dev_alloc(pmu);
9266 WARN(ret, "Failed to register pmu: %s, reason %d\n", pmu->name, ret);
9267 }
9268 pmu_bus_running = 1;
9269 ret = 0;
9270
9271unlock:
9272 mutex_unlock(&pmus_lock);
9273
9274 return ret;
9275}
9276device_initcall(perf_event_sysfs_init);
Stephane Eraniane5d13672011-02-14 11:20:01 +02009277
9278#ifdef CONFIG_CGROUP_PERF
Tejun Heoeb954192013-08-08 20:11:23 -04009279static struct cgroup_subsys_state *
9280perf_cgroup_css_alloc(struct cgroup_subsys_state *parent_css)
Stephane Eraniane5d13672011-02-14 11:20:01 +02009281{
9282 struct perf_cgroup *jc;
Stephane Eraniane5d13672011-02-14 11:20:01 +02009283
Li Zefan1b15d052011-03-03 14:26:06 +08009284 jc = kzalloc(sizeof(*jc), GFP_KERNEL);
Stephane Eraniane5d13672011-02-14 11:20:01 +02009285 if (!jc)
9286 return ERR_PTR(-ENOMEM);
9287
Stephane Eraniane5d13672011-02-14 11:20:01 +02009288 jc->info = alloc_percpu(struct perf_cgroup_info);
9289 if (!jc->info) {
9290 kfree(jc);
9291 return ERR_PTR(-ENOMEM);
9292 }
9293
Stephane Eraniane5d13672011-02-14 11:20:01 +02009294 return &jc->css;
9295}
9296
Tejun Heoeb954192013-08-08 20:11:23 -04009297static void perf_cgroup_css_free(struct cgroup_subsys_state *css)
Stephane Eraniane5d13672011-02-14 11:20:01 +02009298{
Tejun Heoeb954192013-08-08 20:11:23 -04009299 struct perf_cgroup *jc = container_of(css, struct perf_cgroup, css);
9300
Stephane Eraniane5d13672011-02-14 11:20:01 +02009301 free_percpu(jc->info);
9302 kfree(jc);
9303}
9304
9305static int __perf_cgroup_move(void *info)
9306{
9307 struct task_struct *task = info;
9308 perf_cgroup_switch(task, PERF_CGROUP_SWOUT | PERF_CGROUP_SWIN);
9309 return 0;
9310}
9311
Tejun Heoeb954192013-08-08 20:11:23 -04009312static void perf_cgroup_attach(struct cgroup_subsys_state *css,
9313 struct cgroup_taskset *tset)
Stephane Eraniane5d13672011-02-14 11:20:01 +02009314{
Tejun Heobb9d97b2011-12-12 18:12:21 -08009315 struct task_struct *task;
9316
Tejun Heo924f0d9a2014-02-13 06:58:41 -05009317 cgroup_taskset_for_each(task, tset)
Tejun Heobb9d97b2011-12-12 18:12:21 -08009318 task_function_call(task, __perf_cgroup_move, task);
Stephane Eraniane5d13672011-02-14 11:20:01 +02009319}
9320
Tejun Heoeb954192013-08-08 20:11:23 -04009321static void perf_cgroup_exit(struct cgroup_subsys_state *css,
9322 struct cgroup_subsys_state *old_css,
Li Zefan761b3ef52012-01-31 13:47:36 +08009323 struct task_struct *task)
Stephane Eraniane5d13672011-02-14 11:20:01 +02009324{
Tejun Heobb9d97b2011-12-12 18:12:21 -08009325 task_function_call(task, __perf_cgroup_move, task);
Stephane Eraniane5d13672011-02-14 11:20:01 +02009326}
9327
Tejun Heo073219e2014-02-08 10:36:58 -05009328struct cgroup_subsys perf_event_cgrp_subsys = {
Tejun Heo92fb9742012-11-19 08:13:38 -08009329 .css_alloc = perf_cgroup_css_alloc,
9330 .css_free = perf_cgroup_css_free,
Ingo Molnare7e7ee22011-05-04 08:42:29 +02009331 .exit = perf_cgroup_exit,
Tejun Heobb9d97b2011-12-12 18:12:21 -08009332 .attach = perf_cgroup_attach,
Stephane Eraniane5d13672011-02-14 11:20:01 +02009333};
9334#endif /* CONFIG_CGROUP_PERF */