Implement clock plugin support
[lttng-modules.git] / wrapper / trace-clock.h
... / ...
CommitLineData
1#ifndef _LTTNG_TRACE_CLOCK_H
2#define _LTTNG_TRACE_CLOCK_H
3
4/*
5 * wrapper/trace-clock.h
6 *
7 * Contains LTTng trace clock mapping to LTTng trace clock or mainline monotonic
8 * clock. This wrapper depends on CONFIG_HIGH_RES_TIMERS=y.
9 *
10 * Copyright (C) 2011-2012 Mathieu Desnoyers <mathieu.desnoyers@efficios.com>
11 *
12 * This library is free software; you can redistribute it and/or
13 * modify it under the terms of the GNU Lesser General Public
14 * License as published by the Free Software Foundation; only
15 * version 2.1 of the License.
16 *
17 * This library is distributed in the hope that it will be useful,
18 * but WITHOUT ANY WARRANTY; without even the implied warranty of
19 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
20 * Lesser General Public License for more details.
21 *
22 * You should have received a copy of the GNU Lesser General Public
23 * License along with this library; if not, write to the Free Software
24 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
25 */
26
27#ifdef CONFIG_HAVE_TRACE_CLOCK
28#include <linux/trace-clock.h>
29#else /* CONFIG_HAVE_TRACE_CLOCK */
30
31#include <linux/hardirq.h>
32#include <linux/ktime.h>
33#include <linux/time.h>
34#include <linux/hrtimer.h>
35#include <linux/percpu.h>
36#include <linux/version.h>
37#include <asm/local.h>
38#include "../lttng-kernel-version.h"
39#include "../lttng-clock.h"
40#include "percpu-defs.h"
41#include "random.h"
42
43#if ((LTTNG_KERNEL_RANGE(3,10,0, 3,10,14) && !LTTNG_RHEL_KERNEL_RANGE(3,10,0,7,0, 3,10,14,0,0)) \
44 || LTTNG_KERNEL_RANGE(3,11,0, 3,11,3))
45#error "Linux kernels 3.10 and 3.11 introduce a deadlock in the timekeeping subsystem. Fixed by commit 7bd36014460f793c19e7d6c94dab67b0afcfcb7f \"timekeeping: Fix HRTICK related deadlock from ntp lock changes\" in Linux."
46#endif
47
48extern struct lttng_trace_clock *lttng_trace_clock;
49
50#if (LINUX_VERSION_CODE >= KERNEL_VERSION(3,17,0))
51
52DECLARE_PER_CPU(local_t, lttng_last_tsc);
53
54#if (BITS_PER_LONG == 32)
55/*
56 * Fixup "src_now" using the 32 LSB from "last". We need to handle overflow and
57 * underflow of the 32nd bit. "last" can be above, below or equal to the 32 LSB
58 * of "src_now".
59 */
60static inline u64 trace_clock_fixup(u64 src_now, u32 last)
61{
62 u64 now;
63
64 now = src_now & 0xFFFFFFFF00000000ULL;
65 now |= (u64) last;
66 /* Detect overflow or underflow between now and last. */
67 if ((src_now & 0x80000000U) && !(last & 0x80000000U)) {
68 /*
69 * If 32nd bit transitions from 1 to 0, and we move forward in
70 * time from "now" to "last", then we have an overflow.
71 */
72 if (((s32) now - (s32) last) < 0)
73 now += 0x0000000100000000ULL;
74 } else if (!(src_now & 0x80000000U) && (last & 0x80000000U)) {
75 /*
76 * If 32nd bit transitions from 0 to 1, and we move backward in
77 * time from "now" to "last", then we have an underflow.
78 */
79 if (((s32) now - (s32) last) > 0)
80 now -= 0x0000000100000000ULL;
81 }
82 return now;
83}
84#else /* #if (BITS_PER_LONG == 32) */
85/*
86 * The fixup is pretty easy on 64-bit architectures: "last" is a 64-bit
87 * value, so we can use last directly as current time.
88 */
89static inline u64 trace_clock_fixup(u64 src_now, u64 last)
90{
91 return last;
92}
93#endif /* #else #if (BITS_PER_LONG == 32) */
94
95/*
96 * Always called with preemption disabled. Can be interrupted.
97 */
98static inline u64 trace_clock_monotonic_wrapper(void)
99{
100 u64 now;
101 unsigned long last, result;
102 local_t *last_tsc;
103
104 /* Use fast nmi-safe monotonic clock provided by the Linux kernel. */
105 last_tsc = lttng_this_cpu_ptr(&lttng_last_tsc);
106 last = local_read(last_tsc);
107 /*
108 * Read "last" before "now". It is not strictly required, but it ensures
109 * that an interrupt coming in won't artificially trigger a case where
110 * "now" < "last". This kind of situation should only happen if the
111 * mono_fast time source goes slightly backwards.
112 */
113 barrier();
114 now = ktime_get_mono_fast_ns();
115 if (((long) now - (long) last) < 0)
116 now = trace_clock_fixup(now, last);
117 result = local_cmpxchg(last_tsc, last, (unsigned long) now);
118 if (result == last) {
119 /* Update done. */
120 return now;
121 } else {
122 /*
123 * Update not done, due to concurrent update. We can use
124 * "result", since it has been sampled concurrently with our
125 * time read, so it should not be far from "now".
126 */
127 return trace_clock_fixup(now, result);
128 }
129}
130
131#else /* #if (LINUX_VERSION_CODE >= KERNEL_VERSION(3,17,0)) */
132static inline u64 trace_clock_monotonic_wrapper(void)
133{
134 ktime_t ktime;
135
136 /*
137 * Refuse to trace from NMIs with this wrapper, because an NMI could
138 * nest over the xtime write seqlock and deadlock.
139 */
140 if (in_nmi())
141 return (u64) -EIO;
142
143 ktime = ktime_get();
144 return ktime_to_ns(ktime);
145}
146#endif /* #else #if (LINUX_VERSION_CODE >= KERNEL_VERSION(3,17,0)) */
147
148static inline u64 trace_clock_read64_monotonic(void)
149{
150 return (u64) trace_clock_monotonic_wrapper();
151}
152
153static inline u64 trace_clock_freq_monotonic(void)
154{
155 return (u64) NSEC_PER_SEC;
156}
157
158static inline int trace_clock_uuid_monotonic(char *uuid)
159{
160 return wrapper_get_bootid(uuid);
161}
162
163static inline const char *trace_clock_name_monotonic(void)
164{
165 return "monotonic";
166}
167
168static inline const char *trace_clock_description_monotonic(void)
169{
170 return "Monotonic Clock";
171}
172
173#if (LINUX_VERSION_CODE >= KERNEL_VERSION(3,17,0))
174static inline int get_trace_clock(void)
175{
176 printk(KERN_WARNING "LTTng: Using mainline kernel monotonic fast clock, which is NMI-safe.\n");
177 return 0;
178}
179#else /* #if (LINUX_VERSION_CODE >= KERNEL_VERSION(3,17,0)) */
180static inline int get_trace_clock(void)
181{
182 printk(KERN_WARNING "LTTng: Using mainline kernel monotonic clock. NMIs will not be traced.\n");
183 return 0;
184}
185#endif /* #else #if (LINUX_VERSION_CODE >= KERNEL_VERSION(3,17,0)) */
186
187static inline void put_trace_clock(void)
188{
189}
190
191static inline u64 trace_clock_read64(void)
192{
193 struct lttng_trace_clock *ltc = ACCESS_ONCE(lttng_trace_clock);
194
195 if (likely(!ltc)) {
196 return trace_clock_read64_monotonic();
197 } else {
198 read_barrier_depends(); /* load ltc before content */
199 return ltc->read64();
200 }
201}
202
203static inline u64 trace_clock_freq(void)
204{
205 struct lttng_trace_clock *ltc = ACCESS_ONCE(lttng_trace_clock);
206
207 if (!ltc) {
208 return trace_clock_freq_monotonic();
209 } else {
210 read_barrier_depends(); /* load ltc before content */
211 return ltc->freq();
212 }
213}
214
215static inline int trace_clock_uuid(char *uuid)
216{
217 struct lttng_trace_clock *ltc = ACCESS_ONCE(lttng_trace_clock);
218
219 read_barrier_depends(); /* load ltc before content */
220 /* Use default UUID cb when NULL */
221 if (!ltc || !ltc->uuid) {
222 return trace_clock_uuid_monotonic(uuid);
223 } else {
224 return ltc->uuid(uuid);
225 }
226}
227
228static inline const char *trace_clock_name(void)
229{
230 struct lttng_trace_clock *ltc = ACCESS_ONCE(lttng_trace_clock);
231
232 if (!ltc) {
233 return trace_clock_name_monotonic();
234 } else {
235 read_barrier_depends(); /* load ltc before content */
236 return ltc->name();
237 }
238}
239
240static inline const char *trace_clock_description(void)
241{
242 struct lttng_trace_clock *ltc = ACCESS_ONCE(lttng_trace_clock);
243
244 if (!ltc) {
245 return trace_clock_description_monotonic();
246 } else {
247 read_barrier_depends(); /* load ltc before content */
248 return ltc->description();
249 }
250}
251
252#endif /* CONFIG_HAVE_TRACE_CLOCK */
253
254#endif /* _LTTNG_TRACE_CLOCK_H */
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