builtin_unreachable is not available for older gcc
[uclibc-ng.git] / librt / clock_gettime.c
blobe61616314f4dd7e3fd23609c67731a3e29bdfec2
1 /* clock_gettime -- Get current time from a POSIX clockid_t. Linux version.
2 Copyright (C) 2003, 2004 Free Software Foundation, Inc.
3 This file is part of the GNU C Library.
5 The GNU C Library is free software; you can redistribute it and/or
6 modify it under the terms of the GNU Lesser General Public
7 License as published by the Free Software Foundation; either
8 version 2.1 of the License, or (at your option) any later version.
10 The GNU C Library is distributed in the hope that it will be useful,
11 but WITHOUT ANY WARRANTY; without even the implied warranty of
12 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
13 Lesser General Public License for more details.
15 You should have received a copy of the GNU Lesser General Public
16 License along with the GNU C Library; if not, see
17 <http://www.gnu.org/licenses/>. */
19 #include <sysdep.h>
20 #include <errno.h>
21 #include <time.h>
22 #include "kernel-posix-cpu-timers.h"
23 #include <bits/kernel-features.h>
26 #define SYSCALL_GETTIME \
27 retval = INLINE_SYSCALL (clock_gettime, 2, clock_id, tp); \
28 break
30 #ifdef __ASSUME_POSIX_TIMERS
32 /* This means the REALTIME and MONOTONIC clock are definitely
33 supported in the kernel. */
34 # define SYSDEP_GETTIME \
35 SYSDEP_GETTIME_CPUTIME \
36 case CLOCK_REALTIME: \
37 case CLOCK_MONOTONIC: \
38 SYSCALL_GETTIME
40 # define __libc_missing_posix_timers 0
41 #elif defined __NR_clock_gettime
42 /* Is the syscall known to exist? */
43 int __libc_missing_posix_timers attribute_hidden;
45 static inline int
46 maybe_syscall_gettime (clockid_t clock_id, struct timespec *tp)
48 int e = EINVAL;
50 if (!__libc_missing_posix_timers)
52 INTERNAL_SYSCALL_DECL (err);
53 int r = INTERNAL_SYSCALL (clock_gettime, err, 2, clock_id, tp);
54 if (!INTERNAL_SYSCALL_ERROR_P (r, err))
55 return 0;
57 e = INTERNAL_SYSCALL_ERRNO (r, err);
58 if (e == ENOSYS)
60 __libc_missing_posix_timers = 1;
61 e = EINVAL;
65 return e;
68 /* The REALTIME and MONOTONIC clock might be available. Try the
69 syscall first. */
70 # define SYSDEP_GETTIME \
71 SYSDEP_GETTIME_CPUTIME \
72 case CLOCK_REALTIME: \
73 case CLOCK_MONOTONIC: \
74 retval = maybe_syscall_gettime (clock_id, tp); \
75 if (retval == 0) \
76 break; \
77 /* Fallback code. */ \
78 if (retval == EINVAL && clock_id == CLOCK_REALTIME) \
79 retval = realtime_gettime (tp); \
80 else \
81 { \
82 __set_errno (retval); \
83 retval = -1; \
84 } \
85 break;
86 #endif
88 #ifdef __NR_clock_gettime
89 /* We handled the REALTIME clock here. */
90 # define HANDLED_REALTIME 1
91 # define HANDLED_CPUTIME 1
93 # if __ASSUME_POSIX_CPU_TIMERS > 0
95 # define SYSDEP_GETTIME_CPU SYSCALL_GETTIME
96 # define SYSDEP_GETTIME_CPUTIME /* Default catches them too. */
98 # else
100 int __libc_missing_posix_cpu_timers attribute_hidden;
102 static int
103 maybe_syscall_gettime_cpu (clockid_t clock_id, struct timespec *tp)
105 int e = EINVAL;
107 if (!__libc_missing_posix_cpu_timers)
109 INTERNAL_SYSCALL_DECL (err);
110 int r = INTERNAL_SYSCALL (clock_gettime, err, 2, clock_id, tp);
111 if (!INTERNAL_SYSCALL_ERROR_P (r, err))
112 return 0;
114 e = INTERNAL_SYSCALL_ERRNO (r, err);
115 # ifndef __ASSUME_POSIX_TIMERS
116 if (e == ENOSYS)
118 __libc_missing_posix_timers = 1;
119 __libc_missing_posix_cpu_timers = 1;
120 e = EINVAL;
122 else
123 # endif
125 if (e == EINVAL)
127 /* Check whether the kernel supports CPU clocks at all.
128 If not, record it for the future. */
129 r = INTERNAL_SYSCALL (clock_getres, err, 2,
130 MAKE_PROCESS_CPUCLOCK (0, CPUCLOCK_SCHED),
131 NULL);
132 if (INTERNAL_SYSCALL_ERROR_P (r, err))
133 __libc_missing_posix_cpu_timers = 1;
138 return e;
141 # define SYSDEP_GETTIME_CPU \
142 retval = maybe_syscall_gettime_cpu (clock_id, tp); \
143 if (retval == 0) \
144 break; \
145 if (retval != EINVAL || !__libc_missing_posix_cpu_timers) \
147 __set_errno (retval); \
148 retval = -1; \
149 break; \
151 retval = -1 /* Otherwise continue on to the HP_TIMING version. */;
153 static inline int
154 maybe_syscall_gettime_cputime (clockid_t clock_id, struct timespec *tp)
156 return maybe_syscall_gettime_cpu
157 (clock_id == CLOCK_THREAD_CPUTIME_ID
158 ? MAKE_THREAD_CPUCLOCK (0, CPUCLOCK_SCHED)
159 : MAKE_PROCESS_CPUCLOCK (0, CPUCLOCK_SCHED),
160 tp);
163 # define SYSDEP_GETTIME_CPUTIME \
164 case CLOCK_PROCESS_CPUTIME_ID: \
165 case CLOCK_THREAD_CPUTIME_ID: \
166 retval = maybe_syscall_gettime_cputime (clock_id, tp); \
167 if (retval == 0) \
168 break; \
169 if (retval != EINVAL || !__libc_missing_posix_cpu_timers) \
171 __set_errno (retval); \
172 retval = -1; \
173 break; \
175 retval = hp_timing_gettime (clock_id, tp); \
176 break;
177 # if !HP_TIMING_AVAIL
178 # define hp_timing_gettime(clock_id, tp) (__set_errno (EINVAL), -1)
179 # endif
181 # endif
182 #endif
184 #include <errno.h>
185 #include <stdint.h>
186 #include <time.h>
187 #include <sys/time.h>
188 #include <ldsodefs.h>
191 #if HP_TIMING_AVAIL
192 /* Clock frequency of the processor. We make it a 64-bit variable
193 because some jokers are already playing with processors with more
194 than 4GHz. */
195 static hp_timing_t freq;
198 /* This function is defined in the thread library. */
199 extern int __pthread_clock_gettime (clockid_t clock_id, hp_timing_t freq,
200 struct timespec *tp)
201 __attribute__ ((__weak__));
203 static int
204 hp_timing_gettime (clockid_t clock_id, struct timespec *tp)
206 hp_timing_t tsc;
208 if (__builtin_expect (freq == 0, 0))
210 /* This can only happen if we haven't initialized the `freq'
211 variable yet. Do this now. We don't have to protect this
212 code against multiple execution since all of them should
213 lead to the same result. */
214 freq = __get_clockfreq ();
215 if (__builtin_expect (freq == 0, 0))
216 /* Something went wrong. */
217 return -1;
220 if (clock_id != CLOCK_PROCESS_CPUTIME_ID
221 && __pthread_clock_gettime != NULL)
222 return __pthread_clock_gettime (clock_id, freq, tp);
224 /* Get the current counter. */
225 HP_TIMING_NOW (tsc);
227 /* Compute the offset since the start time of the process. */
228 tsc -= GL(dl_cpuclock_offset);
230 /* Compute the seconds. */
231 tp->tv_sec = tsc / freq;
233 /* And the nanoseconds. This computation should be stable until
234 we get machines with about 16GHz frequency. */
235 tp->tv_nsec = ((tsc % freq) * UINT64_C (1000000000)) / freq;
237 return 0;
239 #endif
242 static inline int
243 realtime_gettime (struct timespec *tp)
245 struct timeval tv;
246 int retval = gettimeofday (&tv, NULL);
247 if (retval == 0)
248 /* Convert into `timespec'. */
249 TIMEVAL_TO_TIMESPEC (&tv, tp);
250 return retval;
253 librt_hidden_proto (clock_gettime)
254 /* Get current value of CLOCK and store it in TP. */
256 clock_gettime (clockid_t clock_id, struct timespec *tp)
258 int retval = -1;
259 #ifndef HANDLED_REALTIME
260 struct timeval tv;
261 #endif
263 switch (clock_id)
265 #ifdef SYSDEP_GETTIME
266 SYSDEP_GETTIME;
267 #endif
269 #ifndef HANDLED_REALTIME
270 case CLOCK_REALTIME:
271 retval = gettimeofday (&tv, NULL);
272 if (retval == 0)
273 TIMEVAL_TO_TIMESPEC (&tv, tp);
274 break;
275 #endif
277 default:
278 #ifdef SYSDEP_GETTIME_CPU
279 SYSDEP_GETTIME_CPU;
280 #endif
281 #if HP_TIMING_AVAIL
282 if ((clock_id & ((1 << CLOCK_IDFIELD_SIZE) - 1))
283 == CLOCK_THREAD_CPUTIME_ID)
284 retval = hp_timing_gettime (clock_id, tp);
285 else
286 #endif
287 __set_errno (EINVAL);
288 break;
290 #if HP_TIMING_AVAIL && !defined HANDLED_CPUTIME
291 case CLOCK_PROCESS_CPUTIME_ID:
292 retval = hp_timing_gettime (clock_id, tp);
293 break;
294 #endif
297 return retval;
299 librt_hidden_def (clock_gettime)