writeback: split writeback_inodes_wb
[linux-2.6/next.git] / include / trace / events / timer.h
blob9496b965d62ad9dd39929ccc7e471c7fcf2d374a
1 #undef TRACE_SYSTEM
2 #define TRACE_SYSTEM timer
4 #if !defined(_TRACE_TIMER_H) || defined(TRACE_HEADER_MULTI_READ)
5 #define _TRACE_TIMER_H
7 #include <linux/tracepoint.h>
8 #include <linux/hrtimer.h>
9 #include <linux/timer.h>
11 /**
12 * timer_init - called when the timer is initialized
13 * @timer: pointer to struct timer_list
15 TRACE_EVENT(timer_init,
17 TP_PROTO(struct timer_list *timer),
19 TP_ARGS(timer),
21 TP_STRUCT__entry(
22 __field( void *, timer )
25 TP_fast_assign(
26 __entry->timer = timer;
29 TP_printk("timer=%p", __entry->timer)
32 /**
33 * timer_start - called when the timer is started
34 * @timer: pointer to struct timer_list
35 * @expires: the timers expiry time
37 TRACE_EVENT(timer_start,
39 TP_PROTO(struct timer_list *timer, unsigned long expires),
41 TP_ARGS(timer, expires),
43 TP_STRUCT__entry(
44 __field( void *, timer )
45 __field( void *, function )
46 __field( unsigned long, expires )
47 __field( unsigned long, now )
50 TP_fast_assign(
51 __entry->timer = timer;
52 __entry->function = timer->function;
53 __entry->expires = expires;
54 __entry->now = jiffies;
57 TP_printk("timer=%p function=%pf expires=%lu [timeout=%ld]",
58 __entry->timer, __entry->function, __entry->expires,
59 (long)__entry->expires - __entry->now)
62 /**
63 * timer_expire_entry - called immediately before the timer callback
64 * @timer: pointer to struct timer_list
66 * Allows to determine the timer latency.
68 TRACE_EVENT(timer_expire_entry,
70 TP_PROTO(struct timer_list *timer),
72 TP_ARGS(timer),
74 TP_STRUCT__entry(
75 __field( void *, timer )
76 __field( unsigned long, now )
79 TP_fast_assign(
80 __entry->timer = timer;
81 __entry->now = jiffies;
84 TP_printk("timer=%p now=%lu", __entry->timer, __entry->now)
87 /**
88 * timer_expire_exit - called immediately after the timer callback returns
89 * @timer: pointer to struct timer_list
91 * When used in combination with the timer_expire_entry tracepoint we can
92 * determine the runtime of the timer callback function.
94 * NOTE: Do NOT derefernce timer in TP_fast_assign. The pointer might
95 * be invalid. We solely track the pointer.
97 TRACE_EVENT(timer_expire_exit,
99 TP_PROTO(struct timer_list *timer),
101 TP_ARGS(timer),
103 TP_STRUCT__entry(
104 __field(void *, timer )
107 TP_fast_assign(
108 __entry->timer = timer;
111 TP_printk("timer=%p", __entry->timer)
115 * timer_cancel - called when the timer is canceled
116 * @timer: pointer to struct timer_list
118 TRACE_EVENT(timer_cancel,
120 TP_PROTO(struct timer_list *timer),
122 TP_ARGS(timer),
124 TP_STRUCT__entry(
125 __field( void *, timer )
128 TP_fast_assign(
129 __entry->timer = timer;
132 TP_printk("timer=%p", __entry->timer)
136 * hrtimer_init - called when the hrtimer is initialized
137 * @timer: pointer to struct hrtimer
138 * @clockid: the hrtimers clock
139 * @mode: the hrtimers mode
141 TRACE_EVENT(hrtimer_init,
143 TP_PROTO(struct hrtimer *hrtimer, clockid_t clockid,
144 enum hrtimer_mode mode),
146 TP_ARGS(hrtimer, clockid, mode),
148 TP_STRUCT__entry(
149 __field( void *, hrtimer )
150 __field( clockid_t, clockid )
151 __field( enum hrtimer_mode, mode )
154 TP_fast_assign(
155 __entry->hrtimer = hrtimer;
156 __entry->clockid = clockid;
157 __entry->mode = mode;
160 TP_printk("hrtimer=%p clockid=%s mode=%s", __entry->hrtimer,
161 __entry->clockid == CLOCK_REALTIME ?
162 "CLOCK_REALTIME" : "CLOCK_MONOTONIC",
163 __entry->mode == HRTIMER_MODE_ABS ?
164 "HRTIMER_MODE_ABS" : "HRTIMER_MODE_REL")
168 * hrtimer_start - called when the hrtimer is started
169 * @timer: pointer to struct hrtimer
171 TRACE_EVENT(hrtimer_start,
173 TP_PROTO(struct hrtimer *hrtimer),
175 TP_ARGS(hrtimer),
177 TP_STRUCT__entry(
178 __field( void *, hrtimer )
179 __field( void *, function )
180 __field( s64, expires )
181 __field( s64, softexpires )
184 TP_fast_assign(
185 __entry->hrtimer = hrtimer;
186 __entry->function = hrtimer->function;
187 __entry->expires = hrtimer_get_expires(hrtimer).tv64;
188 __entry->softexpires = hrtimer_get_softexpires(hrtimer).tv64;
191 TP_printk("hrtimer=%p function=%pf expires=%llu softexpires=%llu",
192 __entry->hrtimer, __entry->function,
193 (unsigned long long)ktime_to_ns((ktime_t) {
194 .tv64 = __entry->expires }),
195 (unsigned long long)ktime_to_ns((ktime_t) {
196 .tv64 = __entry->softexpires }))
200 * htimmer_expire_entry - called immediately before the hrtimer callback
201 * @timer: pointer to struct hrtimer
202 * @now: pointer to variable which contains current time of the
203 * timers base.
205 * Allows to determine the timer latency.
207 TRACE_EVENT(hrtimer_expire_entry,
209 TP_PROTO(struct hrtimer *hrtimer, ktime_t *now),
211 TP_ARGS(hrtimer, now),
213 TP_STRUCT__entry(
214 __field( void *, hrtimer )
215 __field( s64, now )
218 TP_fast_assign(
219 __entry->hrtimer = hrtimer;
220 __entry->now = now->tv64;
223 TP_printk("hrtimer=%p now=%llu", __entry->hrtimer,
224 (unsigned long long)ktime_to_ns((ktime_t) { .tv64 = __entry->now }))
228 * hrtimer_expire_exit - called immediately after the hrtimer callback returns
229 * @timer: pointer to struct hrtimer
231 * When used in combination with the hrtimer_expire_entry tracepoint we can
232 * determine the runtime of the callback function.
234 TRACE_EVENT(hrtimer_expire_exit,
236 TP_PROTO(struct hrtimer *hrtimer),
238 TP_ARGS(hrtimer),
240 TP_STRUCT__entry(
241 __field( void *, hrtimer )
244 TP_fast_assign(
245 __entry->hrtimer = hrtimer;
248 TP_printk("hrtimer=%p", __entry->hrtimer)
252 * hrtimer_cancel - called when the hrtimer is canceled
253 * @hrtimer: pointer to struct hrtimer
255 TRACE_EVENT(hrtimer_cancel,
257 TP_PROTO(struct hrtimer *hrtimer),
259 TP_ARGS(hrtimer),
261 TP_STRUCT__entry(
262 __field( void *, hrtimer )
265 TP_fast_assign(
266 __entry->hrtimer = hrtimer;
269 TP_printk("hrtimer=%p", __entry->hrtimer)
273 * itimer_state - called when itimer is started or canceled
274 * @which: name of the interval timer
275 * @value: the itimers value, itimer is canceled if value->it_value is
276 * zero, otherwise it is started
277 * @expires: the itimers expiry time
279 TRACE_EVENT(itimer_state,
281 TP_PROTO(int which, const struct itimerval *const value,
282 cputime_t expires),
284 TP_ARGS(which, value, expires),
286 TP_STRUCT__entry(
287 __field( int, which )
288 __field( cputime_t, expires )
289 __field( long, value_sec )
290 __field( long, value_usec )
291 __field( long, interval_sec )
292 __field( long, interval_usec )
295 TP_fast_assign(
296 __entry->which = which;
297 __entry->expires = expires;
298 __entry->value_sec = value->it_value.tv_sec;
299 __entry->value_usec = value->it_value.tv_usec;
300 __entry->interval_sec = value->it_interval.tv_sec;
301 __entry->interval_usec = value->it_interval.tv_usec;
304 TP_printk("which=%d expires=%llu it_value=%ld.%ld it_interval=%ld.%ld",
305 __entry->which, (unsigned long long)__entry->expires,
306 __entry->value_sec, __entry->value_usec,
307 __entry->interval_sec, __entry->interval_usec)
311 * itimer_expire - called when itimer expires
312 * @which: type of the interval timer
313 * @pid: pid of the process which owns the timer
314 * @now: current time, used to calculate the latency of itimer
316 TRACE_EVENT(itimer_expire,
318 TP_PROTO(int which, struct pid *pid, cputime_t now),
320 TP_ARGS(which, pid, now),
322 TP_STRUCT__entry(
323 __field( int , which )
324 __field( pid_t, pid )
325 __field( cputime_t, now )
328 TP_fast_assign(
329 __entry->which = which;
330 __entry->now = now;
331 __entry->pid = pid_nr(pid);
334 TP_printk("which=%d pid=%d now=%llu", __entry->which,
335 (int) __entry->pid, (unsigned long long)__entry->now)
338 #endif /* _TRACE_TIMER_H */
340 /* This part must be outside protection */
341 #include <trace/define_trace.h>