pthread_test.cpp revision e9e10c13ff3fdb7104aafd0707b2c851851c9d1f
1/*
2 * Copyright (C) 2012 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
17#include <gtest/gtest.h>
18
19#include <errno.h>
20#include <limits.h>
21#include <pthread.h>
22#include <unistd.h>
23
24TEST(pthread, pthread_key_create) {
25  pthread_key_t key;
26  ASSERT_EQ(0, pthread_key_create(&key, NULL));
27  ASSERT_EQ(0, pthread_key_delete(key));
28  // Can't delete a key that's already been deleted.
29  ASSERT_EQ(EINVAL, pthread_key_delete(key));
30}
31
32#if !defined(__GLIBC__) // glibc uses keys internally that its sysconf value doesn't account for.
33TEST(pthread, pthread_key_create_lots) {
34  // We can allocate _SC_THREAD_KEYS_MAX keys.
35  std::vector<pthread_key_t> keys;
36  for (int i = 0; i < sysconf(_SC_THREAD_KEYS_MAX); ++i) {
37    pthread_key_t key;
38    // If this fails, it's likely that GLOBAL_INIT_THREAD_LOCAL_BUFFER_COUNT is wrong.
39    ASSERT_EQ(0, pthread_key_create(&key, NULL)) << i << " of " << sysconf(_SC_THREAD_KEYS_MAX);
40    keys.push_back(key);
41  }
42
43  // ...and that really is the maximum.
44  pthread_key_t key;
45  ASSERT_EQ(EAGAIN, pthread_key_create(&key, NULL));
46
47  // (Don't leak all those keys!)
48  for (size_t i = 0; i < keys.size(); ++i) {
49    ASSERT_EQ(0, pthread_key_delete(keys[i]));
50  }
51}
52#endif
53
54static void* IdFn(void* arg) {
55  return arg;
56}
57
58static void* SleepFn(void* arg) {
59  sleep(reinterpret_cast<unsigned int>(arg));
60  return NULL;
61}
62
63static void* SpinFn(void* arg) {
64  volatile bool* b = reinterpret_cast<volatile bool*>(arg);
65  while (!*b) {
66  }
67  return NULL;
68}
69
70static void* JoinFn(void* arg) {
71  return reinterpret_cast<void*>(pthread_join(reinterpret_cast<pthread_t>(arg), NULL));
72}
73
74static void AssertDetached(pthread_t t, bool is_detached) {
75  pthread_attr_t attr;
76  ASSERT_EQ(0, pthread_getattr_np(t, &attr));
77  int detach_state;
78  ASSERT_EQ(0, pthread_attr_getdetachstate(&attr, &detach_state));
79  pthread_attr_destroy(&attr);
80  ASSERT_EQ(is_detached, (detach_state == PTHREAD_CREATE_DETACHED));
81}
82
83static void MakeDeadThread(pthread_t& t) {
84  ASSERT_EQ(0, pthread_create(&t, NULL, IdFn, NULL));
85  void* result;
86  ASSERT_EQ(0, pthread_join(t, &result));
87}
88
89TEST(pthread, pthread_create) {
90  void* expected_result = reinterpret_cast<void*>(123);
91  // Can we create a thread?
92  pthread_t t;
93  ASSERT_EQ(0, pthread_create(&t, NULL, IdFn, expected_result));
94  // If we join, do we get the expected value back?
95  void* result;
96  ASSERT_EQ(0, pthread_join(t, &result));
97  ASSERT_EQ(expected_result, result);
98}
99
100TEST(pthread, pthread_create_EAGAIN) {
101  pthread_attr_t attributes;
102  ASSERT_EQ(0, pthread_attr_init(&attributes));
103  ASSERT_EQ(0, pthread_attr_setstacksize(&attributes, static_cast<size_t>(-1) & ~(getpagesize() - 1)));
104
105  pthread_t t;
106  ASSERT_EQ(EAGAIN, pthread_create(&t, &attributes, IdFn, NULL));
107}
108
109TEST(pthread, pthread_no_join_after_detach) {
110  pthread_t t1;
111  ASSERT_EQ(0, pthread_create(&t1, NULL, SleepFn, reinterpret_cast<void*>(5)));
112
113  // After a pthread_detach...
114  ASSERT_EQ(0, pthread_detach(t1));
115  AssertDetached(t1, true);
116
117  // ...pthread_join should fail.
118  void* result;
119  ASSERT_EQ(EINVAL, pthread_join(t1, &result));
120}
121
122TEST(pthread, pthread_no_op_detach_after_join) {
123  bool done = false;
124
125  pthread_t t1;
126  ASSERT_EQ(0, pthread_create(&t1, NULL, SpinFn, &done));
127
128  // If thread 2 is already waiting to join thread 1...
129  pthread_t t2;
130  ASSERT_EQ(0, pthread_create(&t2, NULL, JoinFn, reinterpret_cast<void*>(t1)));
131
132  sleep(1); // (Give t2 a chance to call pthread_join.)
133
134  // ...a call to pthread_detach on thread 1 will "succeed" (silently fail)...
135  ASSERT_EQ(0, pthread_detach(t1));
136  AssertDetached(t1, false);
137
138  done = true;
139
140  // ...but t2's join on t1 still goes ahead (which we can tell because our join on t2 finishes).
141  void* join_result;
142  ASSERT_EQ(0, pthread_join(t2, &join_result));
143  ASSERT_EQ(0, reinterpret_cast<int>(join_result));
144}
145
146TEST(pthread, pthread_join_self) {
147  void* result;
148  ASSERT_EQ(EDEADLK, pthread_join(pthread_self(), &result));
149}
150
151#if __BIONIC__ // For some reason, gtest on bionic can cope with this but gtest on glibc can't.
152
153static void TestBug37410() {
154  pthread_t t1;
155  ASSERT_EQ(0, pthread_create(&t1, NULL, JoinFn, reinterpret_cast<void*>(pthread_self())));
156  pthread_exit(NULL);
157}
158
159// Even though this isn't really a death test, we have to say "DeathTest" here so gtest knows to
160// run this test (which exits normally) in its own process.
161TEST(pthread_DeathTest, pthread_bug_37410) {
162  // http://code.google.com/p/android/issues/detail?id=37410
163  ::testing::FLAGS_gtest_death_test_style = "threadsafe";
164  ASSERT_EXIT(TestBug37410(), ::testing::ExitedWithCode(0), "");
165}
166#endif
167
168static void* SignalHandlerFn(void* arg) {
169  sigset_t wait_set;
170  sigfillset(&wait_set);
171  return reinterpret_cast<void*>(sigwait(&wait_set, reinterpret_cast<int*>(arg)));
172}
173
174TEST(pthread, pthread_sigmask) {
175  // Block SIGUSR1.
176  sigset_t set;
177  sigemptyset(&set);
178  sigaddset(&set, SIGUSR1);
179  ASSERT_EQ(0, pthread_sigmask(SIG_BLOCK, &set, NULL));
180
181  // Spawn a thread that calls sigwait and tells us what it received.
182  pthread_t signal_thread;
183  int received_signal = -1;
184  ASSERT_EQ(0, pthread_create(&signal_thread, NULL, SignalHandlerFn, &received_signal));
185
186  // Send that thread SIGUSR1.
187  pthread_kill(signal_thread, SIGUSR1);
188
189  // See what it got.
190  void* join_result;
191  ASSERT_EQ(0, pthread_join(signal_thread, &join_result));
192  ASSERT_EQ(SIGUSR1, received_signal);
193  ASSERT_EQ(0, reinterpret_cast<int>(join_result));
194}
195
196#if __BIONIC__
197extern "C" int  __pthread_clone(void* (*fn)(void*), void* child_stack, int flags, void* arg);
198TEST(pthread, __pthread_clone) {
199  uintptr_t fake_child_stack[16];
200  errno = 0;
201  ASSERT_EQ(-1, __pthread_clone(NULL, &fake_child_stack[0], CLONE_THREAD, NULL));
202  ASSERT_EQ(EINVAL, errno);
203}
204#endif
205
206#if __BIONIC__ // Not all build servers have a new enough glibc? TODO: remove when they're on gprecise.
207TEST(pthread, pthread_setname_np__too_long) {
208  ASSERT_EQ(ERANGE, pthread_setname_np(pthread_self(), "this name is far too long for linux"));
209}
210#endif
211
212#if __BIONIC__ // Not all build servers have a new enough glibc? TODO: remove when they're on gprecise.
213TEST(pthread, pthread_setname_np__self) {
214  ASSERT_EQ(0, pthread_setname_np(pthread_self(), "short 1"));
215}
216#endif
217
218#if __BIONIC__ // Not all build servers have a new enough glibc? TODO: remove when they're on gprecise.
219TEST(pthread, pthread_setname_np__other) {
220  // Emulator kernels don't currently support setting the name of other threads.
221  char* filename = NULL;
222  asprintf(&filename, "/proc/self/task/%d/comm", gettid());
223  struct stat sb;
224  bool has_comm = (stat(filename, &sb) != -1);
225  free(filename);
226
227  if (has_comm) {
228    pthread_t t1;
229    ASSERT_EQ(0, pthread_create(&t1, NULL, SleepFn, reinterpret_cast<void*>(5)));
230    ASSERT_EQ(0, pthread_setname_np(t1, "short 2"));
231  } else {
232    fprintf(stderr, "skipping test: this kernel doesn't have /proc/self/task/tid/comm files!\n");
233  }
234}
235#endif
236
237#if __BIONIC__ // Not all build servers have a new enough glibc? TODO: remove when they're on gprecise.
238TEST(pthread, pthread_setname_np__no_such_thread) {
239  pthread_t dead_thread;
240  MakeDeadThread(dead_thread);
241
242  // Call pthread_setname_np after thread has already exited.
243  ASSERT_EQ(ESRCH, pthread_setname_np(dead_thread, "short 3"));
244}
245#endif
246
247TEST(pthread, pthread_kill__0) {
248  // Signal 0 just tests that the thread exists, so it's safe to call on ourselves.
249  ASSERT_EQ(0, pthread_kill(pthread_self(), 0));
250}
251
252TEST(pthread, pthread_kill__invalid_signal) {
253  ASSERT_EQ(EINVAL, pthread_kill(pthread_self(), -1));
254}
255
256static void pthread_kill__in_signal_handler_helper(int signal_number) {
257  static int count = 0;
258  ASSERT_EQ(SIGALRM, signal_number);
259  if (++count == 1) {
260    // Can we call pthread_kill from a signal handler?
261    ASSERT_EQ(0, pthread_kill(pthread_self(), SIGALRM));
262  }
263}
264
265TEST(pthread, pthread_kill__in_signal_handler) {
266  struct sigaction action;
267  sigemptyset(&action.sa_mask);
268  action.sa_flags = 0;
269  action.sa_handler = pthread_kill__in_signal_handler_helper;
270  sigaction(SIGALRM, &action, NULL);
271  ASSERT_EQ(0, pthread_kill(pthread_self(), SIGALRM));
272}
273
274TEST(pthread, pthread_detach__no_such_thread) {
275  pthread_t dead_thread;
276  MakeDeadThread(dead_thread);
277
278  ASSERT_EQ(ESRCH, pthread_detach(dead_thread));
279}
280
281TEST(pthread, pthread_getcpuclockid__clock_gettime) {
282  pthread_t t;
283  ASSERT_EQ(0, pthread_create(&t, NULL, SleepFn, reinterpret_cast<void*>(5)));
284
285  clockid_t c;
286  ASSERT_EQ(0, pthread_getcpuclockid(t, &c));
287  timespec ts;
288  ASSERT_EQ(0, clock_gettime(c, &ts));
289}
290
291TEST(pthread, pthread_getcpuclockid__no_such_thread) {
292  pthread_t dead_thread;
293  MakeDeadThread(dead_thread);
294
295  clockid_t c;
296  ASSERT_EQ(ESRCH, pthread_getcpuclockid(dead_thread, &c));
297}
298
299TEST(pthread, pthread_getschedparam__no_such_thread) {
300  pthread_t dead_thread;
301  MakeDeadThread(dead_thread);
302
303  int policy;
304  sched_param param;
305  ASSERT_EQ(ESRCH, pthread_getschedparam(dead_thread, &policy, &param));
306}
307
308TEST(pthread, pthread_setschedparam__no_such_thread) {
309  pthread_t dead_thread;
310  MakeDeadThread(dead_thread);
311
312  int policy = 0;
313  sched_param param;
314  ASSERT_EQ(ESRCH, pthread_setschedparam(dead_thread, policy, &param));
315}
316
317TEST(pthread, pthread_join__no_such_thread) {
318  pthread_t dead_thread;
319  MakeDeadThread(dead_thread);
320
321  void* result;
322  ASSERT_EQ(ESRCH, pthread_join(dead_thread, &result));
323}
324
325TEST(pthread, pthread_kill__no_such_thread) {
326  pthread_t dead_thread;
327  MakeDeadThread(dead_thread);
328
329  ASSERT_EQ(ESRCH, pthread_kill(dead_thread, 0));
330}
331
332TEST(pthread, pthread_join__multijoin) {
333  bool done = false;
334
335  pthread_t t1;
336  ASSERT_EQ(0, pthread_create(&t1, NULL, SpinFn, &done));
337
338  pthread_t t2;
339  ASSERT_EQ(0, pthread_create(&t2, NULL, JoinFn, reinterpret_cast<void*>(t1)));
340
341  sleep(1); // (Give t2 a chance to call pthread_join.)
342
343  // Multiple joins to the same thread should fail.
344  ASSERT_EQ(EINVAL, pthread_join(t1, NULL));
345
346  done = true;
347
348  // ...but t2's join on t1 still goes ahead (which we can tell because our join on t2 finishes).
349  void* join_result;
350  ASSERT_EQ(0, pthread_join(t2, &join_result));
351  ASSERT_EQ(0, reinterpret_cast<int>(join_result));
352}
353
354static void* GetActualGuardSizeFn(void* arg) {
355  pthread_attr_t attributes;
356  pthread_getattr_np(pthread_self(), &attributes);
357  pthread_attr_getguardsize(&attributes, reinterpret_cast<size_t*>(arg));
358  return NULL;
359}
360
361static size_t GetActualGuardSize(const pthread_attr_t& attributes) {
362  size_t result;
363  pthread_t t;
364  pthread_create(&t, &attributes, GetActualGuardSizeFn, &result);
365  void* join_result;
366  pthread_join(t, &join_result);
367  return result;
368}
369
370static void* GetActualStackSizeFn(void* arg) {
371  pthread_attr_t attributes;
372  pthread_getattr_np(pthread_self(), &attributes);
373  pthread_attr_getstacksize(&attributes, reinterpret_cast<size_t*>(arg));
374  return NULL;
375}
376
377static size_t GetActualStackSize(const pthread_attr_t& attributes) {
378  size_t result;
379  pthread_t t;
380  pthread_create(&t, &attributes, GetActualStackSizeFn, &result);
381  void* join_result;
382  pthread_join(t, &join_result);
383  return result;
384}
385
386TEST(pthread, pthread_attr_setguardsize) {
387  pthread_attr_t attributes;
388  ASSERT_EQ(0, pthread_attr_init(&attributes));
389
390  // Get the default guard size.
391  size_t default_guard_size;
392  ASSERT_EQ(0, pthread_attr_getguardsize(&attributes, &default_guard_size));
393
394  // No such thing as too small: will be rounded up to one page by pthread_create.
395  ASSERT_EQ(0, pthread_attr_setguardsize(&attributes, 128));
396  size_t guard_size;
397  ASSERT_EQ(0, pthread_attr_getguardsize(&attributes, &guard_size));
398  ASSERT_EQ(128U, guard_size);
399  ASSERT_EQ(4096U, GetActualGuardSize(attributes));
400
401  // Large enough and a multiple of the page size.
402  ASSERT_EQ(0, pthread_attr_setguardsize(&attributes, 32*1024));
403  ASSERT_EQ(0, pthread_attr_getguardsize(&attributes, &guard_size));
404  ASSERT_EQ(32*1024U, guard_size);
405
406  // Large enough but not a multiple of the page size; will be rounded up by pthread_create.
407  ASSERT_EQ(0, pthread_attr_setguardsize(&attributes, 32*1024 + 1));
408  ASSERT_EQ(0, pthread_attr_getguardsize(&attributes, &guard_size));
409  ASSERT_EQ(32*1024U + 1, guard_size);
410}
411
412TEST(pthread, pthread_attr_setstacksize) {
413  pthread_attr_t attributes;
414  ASSERT_EQ(0, pthread_attr_init(&attributes));
415
416  // Get the default stack size.
417  size_t default_stack_size;
418  ASSERT_EQ(0, pthread_attr_getstacksize(&attributes, &default_stack_size));
419
420  // Too small.
421  ASSERT_EQ(EINVAL, pthread_attr_setstacksize(&attributes, 128));
422  size_t stack_size;
423  ASSERT_EQ(0, pthread_attr_getstacksize(&attributes, &stack_size));
424  ASSERT_EQ(default_stack_size, stack_size);
425  ASSERT_GE(GetActualStackSize(attributes), default_stack_size);
426
427  // Large enough and a multiple of the page size.
428  ASSERT_EQ(0, pthread_attr_setstacksize(&attributes, 32*1024));
429  ASSERT_EQ(0, pthread_attr_getstacksize(&attributes, &stack_size));
430  ASSERT_EQ(32*1024U, stack_size);
431  ASSERT_EQ(GetActualStackSize(attributes), 32*1024U);
432
433  // Large enough but not a multiple of the page size; will be rounded up by pthread_create.
434  ASSERT_EQ(0, pthread_attr_setstacksize(&attributes, 32*1024 + 1));
435  ASSERT_EQ(0, pthread_attr_getstacksize(&attributes, &stack_size));
436  ASSERT_EQ(32*1024U + 1, stack_size);
437#if __BIONIC__
438  // Bionic rounds up, which is what POSIX allows.
439  ASSERT_EQ(GetActualStackSize(attributes), (32 + 4)*1024U);
440#else
441  // glibc rounds down, in violation of POSIX. They document this in their BUGS section.
442  ASSERT_EQ(GetActualStackSize(attributes), 32*1024U);
443#endif
444}
445