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Elliott Hughese0175ca2013-03-14 14:38:08 -07001/*
2 * Copyright (C) 2013 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
Elliott Hughes4b558f52014-03-04 15:58:02 -080017#include <time.h>
18
19#include <errno.h>
Elliott Hughese0175ca2013-03-14 14:38:08 -070020#include <gtest/gtest.h>
Elliott Hughes329103d2014-04-25 16:55:04 -070021#include <pthread.h>
Elliott Hughes4b558f52014-03-04 15:58:02 -080022#include <signal.h>
Elliott Hughes625993d2014-07-15 16:53:13 -070023#include <sys/syscall.h>
Brian Carlstrombe1d91d2014-03-08 15:05:26 -080024#include <sys/types.h>
25#include <sys/wait.h>
Elliott Hughese0175ca2013-03-14 14:38:08 -070026
Elliott Hughes4b558f52014-03-04 15:58:02 -080027#include "ScopedSignalHandler.h"
Elliott Hughese0175ca2013-03-14 14:38:08 -070028
Elliott Hughes04303f52014-09-18 16:11:59 -070029#include "private/bionic_constants.h"
30
Elliott Hughesee178bf2013-07-12 11:25:20 -070031TEST(time, gmtime) {
32 time_t t = 0;
33 tm* broken_down = gmtime(&t);
34 ASSERT_TRUE(broken_down != NULL);
35 ASSERT_EQ(0, broken_down->tm_sec);
36 ASSERT_EQ(0, broken_down->tm_min);
37 ASSERT_EQ(0, broken_down->tm_hour);
38 ASSERT_EQ(1, broken_down->tm_mday);
39 ASSERT_EQ(0, broken_down->tm_mon);
40 ASSERT_EQ(1970, broken_down->tm_year + 1900);
41}
Elliott Hughes7843d442013-08-22 11:37:32 -070042
Elliott Hughes329103d2014-04-25 16:55:04 -070043static void* gmtime_no_stack_overflow_14313703_fn(void*) {
44 const char* original_tz = getenv("TZ");
45 // Ensure we'll actually have to enter tzload by using a time zone that doesn't exist.
46 setenv("TZ", "gmtime_stack_overflow_14313703", 1);
47 tzset();
48 if (original_tz != NULL) {
49 setenv("TZ", original_tz, 1);
50 }
51 tzset();
52 return NULL;
53}
54
55TEST(time, gmtime_no_stack_overflow_14313703) {
56 // Is it safe to call tzload on a thread with a small stack?
57 // http://b/14313703
58 // https://code.google.com/p/android/issues/detail?id=61130
59 pthread_attr_t attributes;
60 ASSERT_EQ(0, pthread_attr_init(&attributes));
61#if defined(__BIONIC__)
62 ASSERT_EQ(0, pthread_attr_setstacksize(&attributes, PTHREAD_STACK_MIN));
63#else
64 // PTHREAD_STACK_MIN not currently in the host GCC sysroot.
65 ASSERT_EQ(0, pthread_attr_setstacksize(&attributes, 4 * getpagesize()));
66#endif
67
68 pthread_t t;
69 ASSERT_EQ(0, pthread_create(&t, &attributes, gmtime_no_stack_overflow_14313703_fn, NULL));
70 void* result;
71 ASSERT_EQ(0, pthread_join(t, &result));
72}
73
Elliott Hughes7843d442013-08-22 11:37:32 -070074TEST(time, mktime_10310929) {
75 struct tm t;
76 memset(&t, 0, sizeof(tm));
77 t.tm_year = 200;
78 t.tm_mon = 2;
79 t.tm_mday = 10;
80
Elliott Hughes0c401522013-10-18 16:21:54 -070081#if !defined(__LP64__)
82 // 32-bit bionic stupidly had a signed 32-bit time_t.
Elliott Hughes7843d442013-08-22 11:37:32 -070083 ASSERT_EQ(-1, mktime(&t));
Elliott Hughes0c401522013-10-18 16:21:54 -070084#else
85 // Everyone else should be using a signed 64-bit time_t.
86 ASSERT_GE(sizeof(time_t) * 8, 64U);
87
88 setenv("TZ", "America/Los_Angeles", 1);
89 tzset();
90 ASSERT_EQ(static_cast<time_t>(4108348800U), mktime(&t));
Elliott Hughes0c401522013-10-18 16:21:54 -070091
92 setenv("TZ", "UTC", 1);
93 tzset();
94 ASSERT_EQ(static_cast<time_t>(4108320000U), mktime(&t));
Elliott Hughes7843d442013-08-22 11:37:32 -070095#endif
Christopher Ferrisf04935c2013-12-20 18:43:21 -080096}
Elliott Hughes4b558f52014-03-04 15:58:02 -080097
Elliott Hughes3e3409a2014-03-10 18:19:03 -070098TEST(time, strftime) {
99 setenv("TZ", "UTC", 1);
100
101 struct tm t;
102 memset(&t, 0, sizeof(tm));
103 t.tm_year = 200;
104 t.tm_mon = 2;
105 t.tm_mday = 10;
106
107 char buf[64];
108
109 // Seconds since the epoch.
110#if defined(__BIONIC__) || defined(__LP64__) // Not 32-bit glibc.
111 EXPECT_EQ(10U, strftime(buf, sizeof(buf), "%s", &t));
112 EXPECT_STREQ("4108320000", buf);
113#endif
114
115 // Date and time as text.
116 EXPECT_EQ(24U, strftime(buf, sizeof(buf), "%c", &t));
117 EXPECT_STREQ("Sun Mar 10 00:00:00 2100", buf);
118}
119
120TEST(time, strptime) {
121 setenv("TZ", "UTC", 1);
122
123 struct tm t;
124 char buf[64];
125
126 memset(&t, 0, sizeof(t));
127 strptime("11:14", "%R", &t);
128 strftime(buf, sizeof(buf), "%H:%M", &t);
129 EXPECT_STREQ("11:14", buf);
130
131 memset(&t, 0, sizeof(t));
132 strptime("09:41:53", "%T", &t);
133 strftime(buf, sizeof(buf), "%H:%M:%S", &t);
134 EXPECT_STREQ("09:41:53", buf);
135}
136
Elliott Hughes4b558f52014-03-04 15:58:02 -0800137void SetTime(timer_t t, time_t value_s, time_t value_ns, time_t interval_s, time_t interval_ns) {
138 itimerspec ts;
139 ts.it_value.tv_sec = value_s;
140 ts.it_value.tv_nsec = value_ns;
141 ts.it_interval.tv_sec = interval_s;
142 ts.it_interval.tv_nsec = interval_ns;
143 ASSERT_EQ(0, timer_settime(t, TIMER_ABSTIME, &ts, NULL));
144}
145
146static void NoOpNotifyFunction(sigval_t) {
147}
148
149TEST(time, timer_create) {
150 sigevent_t se;
151 memset(&se, 0, sizeof(se));
152 se.sigev_notify = SIGEV_THREAD;
153 se.sigev_notify_function = NoOpNotifyFunction;
154 timer_t timer_id;
155 ASSERT_EQ(0, timer_create(CLOCK_MONOTONIC, &se, &timer_id));
156
157 int pid = fork();
158 ASSERT_NE(-1, pid) << strerror(errno);
159
160 if (pid == 0) {
161 // Timers are not inherited by the child.
162 ASSERT_EQ(-1, timer_delete(timer_id));
163 ASSERT_EQ(EINVAL, errno);
164 _exit(0);
165 }
166
167 int status;
168 ASSERT_EQ(pid, waitpid(pid, &status, 0));
169 ASSERT_TRUE(WIFEXITED(status));
170 ASSERT_EQ(0, WEXITSTATUS(status));
171
172 ASSERT_EQ(0, timer_delete(timer_id));
173}
174
175static int timer_create_SIGEV_SIGNAL_signal_handler_invocation_count = 0;
176static void timer_create_SIGEV_SIGNAL_signal_handler(int signal_number) {
177 ++timer_create_SIGEV_SIGNAL_signal_handler_invocation_count;
178 ASSERT_EQ(SIGUSR1, signal_number);
179}
180
181TEST(time, timer_create_SIGEV_SIGNAL) {
182 sigevent_t se;
183 memset(&se, 0, sizeof(se));
184 se.sigev_notify = SIGEV_SIGNAL;
185 se.sigev_signo = SIGUSR1;
186
187 timer_t timer_id;
188 ASSERT_EQ(0, timer_create(CLOCK_MONOTONIC, &se, &timer_id));
189
190 ScopedSignalHandler ssh(SIGUSR1, timer_create_SIGEV_SIGNAL_signal_handler);
191
192 ASSERT_EQ(0, timer_create_SIGEV_SIGNAL_signal_handler_invocation_count);
193
194 itimerspec ts;
195 ts.it_value.tv_sec = 0;
196 ts.it_value.tv_nsec = 1;
197 ts.it_interval.tv_sec = 0;
198 ts.it_interval.tv_nsec = 0;
199 ASSERT_EQ(0, timer_settime(timer_id, TIMER_ABSTIME, &ts, NULL));
200
201 usleep(500000);
202 ASSERT_EQ(1, timer_create_SIGEV_SIGNAL_signal_handler_invocation_count);
203}
204
205struct Counter {
206 volatile int value;
207 timer_t timer_id;
208 sigevent_t se;
209
210 Counter(void (*fn)(sigval_t)) : value(0) {
211 memset(&se, 0, sizeof(se));
212 se.sigev_notify = SIGEV_THREAD;
213 se.sigev_notify_function = fn;
214 se.sigev_value.sival_ptr = this;
215 }
216
217 void Create() {
218 ASSERT_EQ(0, timer_create(CLOCK_REALTIME, &se, &timer_id));
219 }
220
221 ~Counter() {
222 if (timer_delete(timer_id) != 0) {
223 abort();
224 }
225 }
226
227 static void CountNotifyFunction(sigval_t value) {
228 Counter* cd = reinterpret_cast<Counter*>(value.sival_ptr);
229 ++cd->value;
230 }
231
232 static void CountAndDisarmNotifyFunction(sigval_t value) {
233 Counter* cd = reinterpret_cast<Counter*>(value.sival_ptr);
234 ++cd->value;
235
236 // Setting the initial expiration time to 0 disarms the timer.
237 SetTime(cd->timer_id, 0, 0, 1, 0);
238 }
239};
240
241TEST(time, timer_settime_0) {
242 Counter counter(Counter::CountAndDisarmNotifyFunction);
243 counter.Create();
244
245 ASSERT_EQ(0, counter.value);
246
247 SetTime(counter.timer_id, 0, 1, 1, 0);
248 usleep(500000);
249
250 // The count should just be 1 because we disarmed the timer the first time it fired.
251 ASSERT_EQ(1, counter.value);
252}
253
254TEST(time, timer_settime_repeats) {
255 Counter counter(Counter::CountNotifyFunction);
256 counter.Create();
257
258 ASSERT_EQ(0, counter.value);
259
260 SetTime(counter.timer_id, 0, 1, 0, 10);
261 usleep(500000);
262
263 // The count should just be > 1 because we let the timer repeat.
264 ASSERT_GT(counter.value, 1);
265}
266
267static int timer_create_NULL_signal_handler_invocation_count = 0;
268static void timer_create_NULL_signal_handler(int signal_number) {
269 ++timer_create_NULL_signal_handler_invocation_count;
270 ASSERT_EQ(SIGALRM, signal_number);
271}
272
273TEST(time, timer_create_NULL) {
274 // A NULL sigevent* is equivalent to asking for SIGEV_SIGNAL for SIGALRM.
275 timer_t timer_id;
276 ASSERT_EQ(0, timer_create(CLOCK_MONOTONIC, NULL, &timer_id));
277
278 ScopedSignalHandler ssh(SIGALRM, timer_create_NULL_signal_handler);
279
280 ASSERT_EQ(0, timer_create_NULL_signal_handler_invocation_count);
281
282 SetTime(timer_id, 0, 1, 0, 0);
283 usleep(500000);
284
285 ASSERT_EQ(1, timer_create_NULL_signal_handler_invocation_count);
286}
287
288TEST(time, timer_create_EINVAL) {
289 clockid_t invalid_clock = 16;
290
291 // A SIGEV_SIGNAL timer is easy; the kernel does all that.
292 timer_t timer_id;
293 ASSERT_EQ(-1, timer_create(invalid_clock, NULL, &timer_id));
294 ASSERT_EQ(EINVAL, errno);
295
296 // A SIGEV_THREAD timer is more interesting because we have stuff to clean up.
297 sigevent_t se;
298 memset(&se, 0, sizeof(se));
299 se.sigev_notify = SIGEV_THREAD;
300 se.sigev_notify_function = NoOpNotifyFunction;
301 ASSERT_EQ(-1, timer_create(invalid_clock, &se, &timer_id));
302 ASSERT_EQ(EINVAL, errno);
303}
304
305TEST(time, timer_delete_multiple) {
306 timer_t timer_id;
307 ASSERT_EQ(0, timer_create(CLOCK_MONOTONIC, NULL, &timer_id));
308 ASSERT_EQ(0, timer_delete(timer_id));
309 ASSERT_EQ(-1, timer_delete(timer_id));
310 ASSERT_EQ(EINVAL, errno);
311
312 sigevent_t se;
313 memset(&se, 0, sizeof(se));
314 se.sigev_notify = SIGEV_THREAD;
315 se.sigev_notify_function = NoOpNotifyFunction;
316 ASSERT_EQ(0, timer_create(CLOCK_MONOTONIC, &se, &timer_id));
317 ASSERT_EQ(0, timer_delete(timer_id));
318 ASSERT_EQ(-1, timer_delete(timer_id));
319 ASSERT_EQ(EINVAL, errno);
320}
321
322TEST(time, timer_create_multiple) {
323 Counter counter1(Counter::CountNotifyFunction);
324 counter1.Create();
325 Counter counter2(Counter::CountNotifyFunction);
326 counter2.Create();
327 Counter counter3(Counter::CountNotifyFunction);
328 counter3.Create();
329
330 ASSERT_EQ(0, counter1.value);
331 ASSERT_EQ(0, counter2.value);
332 ASSERT_EQ(0, counter3.value);
333
334 SetTime(counter2.timer_id, 0, 1, 0, 0);
335 usleep(500000);
336
337 EXPECT_EQ(0, counter1.value);
338 EXPECT_EQ(1, counter2.value);
339 EXPECT_EQ(0, counter3.value);
340}
Christopher Ferris753ad772014-03-20 20:47:45 -0700341
342struct TimerDeleteData {
343 timer_t timer_id;
344 pthread_t thread_id;
345 volatile bool complete;
346};
347
348static void TimerDeleteCallback(sigval_t value) {
349 TimerDeleteData* tdd = reinterpret_cast<TimerDeleteData*>(value.sival_ptr);
350
351 tdd->thread_id = pthread_self();
352 timer_delete(tdd->timer_id);
353 tdd->complete = true;
354}
355
356TEST(time, timer_delete_from_timer_thread) {
357 TimerDeleteData tdd;
358 sigevent_t se;
359
360 memset(&se, 0, sizeof(se));
361 se.sigev_notify = SIGEV_THREAD;
362 se.sigev_notify_function = TimerDeleteCallback;
363 se.sigev_value.sival_ptr = &tdd;
364
365 tdd.complete = false;
366 ASSERT_EQ(0, timer_create(CLOCK_REALTIME, &se, &tdd.timer_id));
367
368 itimerspec ts;
369 ts.it_value.tv_sec = 0;
370 ts.it_value.tv_nsec = 100;
371 ts.it_interval.tv_sec = 0;
372 ts.it_interval.tv_nsec = 0;
373 ASSERT_EQ(0, timer_settime(tdd.timer_id, TIMER_ABSTIME, &ts, NULL));
374
375 time_t cur_time = time(NULL);
376 while (!tdd.complete && (time(NULL) - cur_time) < 5);
377 ASSERT_TRUE(tdd.complete);
378
379#if defined(__BIONIC__)
380 // Since bionic timers are implemented by creating a thread to handle the
381 // callback, verify that the thread actually completes.
382 cur_time = time(NULL);
383 while (pthread_detach(tdd.thread_id) != ESRCH && (time(NULL) - cur_time) < 5);
384 ASSERT_EQ(ESRCH, pthread_detach(tdd.thread_id));
385#endif
386}
Elliott Hughes625993d2014-07-15 16:53:13 -0700387
388TEST(time, clock_gettime) {
389 // Try to ensure that our vdso clock_gettime is working.
390 timespec ts1;
391 ASSERT_EQ(0, clock_gettime(CLOCK_MONOTONIC, &ts1));
392 timespec ts2;
393 ASSERT_EQ(0, syscall(__NR_clock_gettime, CLOCK_MONOTONIC, &ts2));
394
395 // What's the difference between the two?
396 ts2.tv_sec -= ts1.tv_sec;
397 ts2.tv_nsec -= ts1.tv_nsec;
398 if (ts2.tv_nsec < 0) {
399 --ts2.tv_sec;
Elliott Hughes04303f52014-09-18 16:11:59 -0700400 ts2.tv_nsec += NS_PER_S;
Elliott Hughes625993d2014-07-15 16:53:13 -0700401 }
402
403 // Should be less than (a very generous, to try to avoid flakiness) 1000000ns.
404 ASSERT_EQ(0, ts2.tv_sec);
405 ASSERT_LT(ts2.tv_nsec, 1000000);
406}
Alex Van Brunt8d0b2db2014-09-26 13:32:47 -0700407
408TEST(time, clock) {
409 // clock(3) is hard to test, but a 1s sleep should cost less than 1ms.
410 clock_t t0 = clock();
411 sleep(1);
412 clock_t t1 = clock();
413 ASSERT_LT(t1 - t0, CLOCKS_PER_SEC / 1000);
414}