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Elliott Hughesbfeab1b2012-09-05 17:47:37 -07001/*
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>
Elliott Hughes5b9310e2013-10-02 16:59:05 -070020#include <inttypes.h>
Elliott Hughesb95cf0d2013-07-15 14:51:07 -070021#include <limits.h>
Elliott Hughes04620a32014-03-07 17:59:05 -080022#include <malloc.h>
Elliott Hughesbfeab1b2012-09-05 17:47:37 -070023#include <pthread.h>
Christopher Ferrisf04935c2013-12-20 18:43:21 -080024#include <signal.h>
Yabin Cui140f3672015-02-03 10:32:00 -080025#include <stdio.h>
Elliott Hughes70b24b12013-11-15 11:51:07 -080026#include <sys/mman.h>
Elliott Hughes57b7a612014-08-25 17:26:50 -070027#include <sys/syscall.h>
Narayan Kamath51e6cb32014-03-03 15:38:51 +000028#include <time.h>
Elliott Hughes4d014e12012-09-07 16:47:54 -070029#include <unistd.h>
Elliott Hughesbfeab1b2012-09-05 17:47:37 -070030
Yabin Cui08ee8d22015-02-11 17:04:36 -080031#include <atomic>
Yabin Cuif7969852015-04-02 17:47:48 -070032#include <regex>
Yabin Cuib5845722015-03-16 22:46:42 -070033#include <vector>
Yabin Cui08ee8d22015-02-11 17:04:36 -080034
Yabin Cuif7969852015-04-02 17:47:48 -070035#include <base/file.h>
36#include <base/stringprintf.h>
37
Yabin Cui17393b02015-03-21 15:08:25 -070038#include "private/bionic_macros.h"
39#include "private/ScopeGuard.h"
40#include "BionicDeathTest.h"
41#include "ScopedSignalHandler.h"
42
Yabin Cuif7969852015-04-02 17:47:48 -070043extern "C" pid_t gettid();
44
Elliott Hughesbfeab1b2012-09-05 17:47:37 -070045TEST(pthread, pthread_key_create) {
46 pthread_key_t key;
47 ASSERT_EQ(0, pthread_key_create(&key, NULL));
48 ASSERT_EQ(0, pthread_key_delete(key));
49 // Can't delete a key that's already been deleted.
50 ASSERT_EQ(EINVAL, pthread_key_delete(key));
51}
Elliott Hughes4d014e12012-09-07 16:47:54 -070052
Dan Albertc4bcc752014-09-30 11:48:24 -070053TEST(pthread, pthread_keys_max) {
Yabin Cui6c238f22014-12-11 20:50:41 -080054 // POSIX says PTHREAD_KEYS_MAX should be at least _POSIX_THREAD_KEYS_MAX.
55 ASSERT_GE(PTHREAD_KEYS_MAX, _POSIX_THREAD_KEYS_MAX);
Dan Albertc4bcc752014-09-30 11:48:24 -070056}
Elliott Hughes718a5b52014-01-28 17:02:03 -080057
Yabin Cui6c238f22014-12-11 20:50:41 -080058TEST(pthread, sysconf_SC_THREAD_KEYS_MAX_eq_PTHREAD_KEYS_MAX) {
Dan Albertc4bcc752014-09-30 11:48:24 -070059 int sysconf_max = sysconf(_SC_THREAD_KEYS_MAX);
Yabin Cui6c238f22014-12-11 20:50:41 -080060 ASSERT_EQ(sysconf_max, PTHREAD_KEYS_MAX);
Dan Albertc4bcc752014-09-30 11:48:24 -070061}
62
63TEST(pthread, pthread_key_many_distinct) {
Yabin Cui6c238f22014-12-11 20:50:41 -080064 // As gtest uses pthread keys, we can't allocate exactly PTHREAD_KEYS_MAX
65 // pthread keys, but We should be able to allocate at least this many keys.
66 int nkeys = PTHREAD_KEYS_MAX / 2;
Dan Albertc4bcc752014-09-30 11:48:24 -070067 std::vector<pthread_key_t> keys;
68
69 auto scope_guard = make_scope_guard([&keys]{
70 for (auto key : keys) {
71 EXPECT_EQ(0, pthread_key_delete(key));
72 }
73 });
74
75 for (int i = 0; i < nkeys; ++i) {
76 pthread_key_t key;
Elliott Hughes61706932015-03-31 10:56:58 -070077 // If this fails, it's likely that LIBC_PTHREAD_KEY_RESERVED_COUNT is wrong.
Dan Albertc4bcc752014-09-30 11:48:24 -070078 ASSERT_EQ(0, pthread_key_create(&key, NULL)) << i << " of " << nkeys;
79 keys.push_back(key);
80 ASSERT_EQ(0, pthread_setspecific(key, reinterpret_cast<void*>(i)));
81 }
82
83 for (int i = keys.size() - 1; i >= 0; --i) {
84 ASSERT_EQ(reinterpret_cast<void*>(i), pthread_getspecific(keys.back()));
85 pthread_key_t key = keys.back();
86 keys.pop_back();
87 ASSERT_EQ(0, pthread_key_delete(key));
88 }
89}
90
Yabin Cui6c238f22014-12-11 20:50:41 -080091TEST(pthread, pthread_key_not_exceed_PTHREAD_KEYS_MAX) {
Elliott Hughes44b53ad2013-02-11 20:18:47 +000092 std::vector<pthread_key_t> keys;
Dan Albertc4bcc752014-09-30 11:48:24 -070093 int rv = 0;
Yabin Cui6c238f22014-12-11 20:50:41 -080094
95 // Pthread keys are used by gtest, so PTHREAD_KEYS_MAX should
96 // be more than we are allowed to allocate now.
97 for (int i = 0; i < PTHREAD_KEYS_MAX; i++) {
Elliott Hughes44b53ad2013-02-11 20:18:47 +000098 pthread_key_t key;
Dan Albertc4bcc752014-09-30 11:48:24 -070099 rv = pthread_key_create(&key, NULL);
100 if (rv == EAGAIN) {
101 break;
102 }
103 EXPECT_EQ(0, rv);
Elliott Hughes44b53ad2013-02-11 20:18:47 +0000104 keys.push_back(key);
105 }
106
Dan Albertc4bcc752014-09-30 11:48:24 -0700107 // Don't leak keys.
108 for (auto key : keys) {
109 EXPECT_EQ(0, pthread_key_delete(key));
Elliott Hughes44b53ad2013-02-11 20:18:47 +0000110 }
Dan Albertc4bcc752014-09-30 11:48:24 -0700111 keys.clear();
112
113 // We should have eventually reached the maximum number of keys and received
114 // EAGAIN.
115 ASSERT_EQ(EAGAIN, rv);
Elliott Hughes44b53ad2013-02-11 20:18:47 +0000116}
117
Elliott Hughesebb770f2014-06-25 13:46:46 -0700118TEST(pthread, pthread_key_delete) {
119 void* expected = reinterpret_cast<void*>(1234);
120 pthread_key_t key;
121 ASSERT_EQ(0, pthread_key_create(&key, NULL));
122 ASSERT_EQ(0, pthread_setspecific(key, expected));
123 ASSERT_EQ(expected, pthread_getspecific(key));
124 ASSERT_EQ(0, pthread_key_delete(key));
125 // After deletion, pthread_getspecific returns NULL.
126 ASSERT_EQ(NULL, pthread_getspecific(key));
127 // And you can't use pthread_setspecific with the deleted key.
128 ASSERT_EQ(EINVAL, pthread_setspecific(key, expected));
129}
130
Elliott Hughes40a52172014-07-30 14:48:10 -0700131TEST(pthread, pthread_key_fork) {
132 void* expected = reinterpret_cast<void*>(1234);
133 pthread_key_t key;
134 ASSERT_EQ(0, pthread_key_create(&key, NULL));
135 ASSERT_EQ(0, pthread_setspecific(key, expected));
136 ASSERT_EQ(expected, pthread_getspecific(key));
137
138 pid_t pid = fork();
139 ASSERT_NE(-1, pid) << strerror(errno);
140
141 if (pid == 0) {
142 // The surviving thread inherits all the forking thread's TLS values...
143 ASSERT_EQ(expected, pthread_getspecific(key));
144 _exit(99);
145 }
146
147 int status;
148 ASSERT_EQ(pid, waitpid(pid, &status, 0));
149 ASSERT_TRUE(WIFEXITED(status));
150 ASSERT_EQ(99, WEXITSTATUS(status));
151
152 ASSERT_EQ(expected, pthread_getspecific(key));
Dan Albert1d53ae22014-09-02 15:24:26 -0700153 ASSERT_EQ(0, pthread_key_delete(key));
Elliott Hughes40a52172014-07-30 14:48:10 -0700154}
155
156static void* DirtyKeyFn(void* key) {
157 return pthread_getspecific(*reinterpret_cast<pthread_key_t*>(key));
158}
159
160TEST(pthread, pthread_key_dirty) {
161 pthread_key_t key;
162 ASSERT_EQ(0, pthread_key_create(&key, NULL));
163
164 size_t stack_size = 128 * 1024;
165 void* stack = mmap(NULL, stack_size, PROT_READ|PROT_WRITE, MAP_PRIVATE|MAP_ANONYMOUS, -1, 0);
166 ASSERT_NE(MAP_FAILED, stack);
167 memset(stack, 0xff, stack_size);
168
169 pthread_attr_t attr;
170 ASSERT_EQ(0, pthread_attr_init(&attr));
171 ASSERT_EQ(0, pthread_attr_setstack(&attr, stack, stack_size));
172
173 pthread_t t;
174 ASSERT_EQ(0, pthread_create(&t, &attr, DirtyKeyFn, &key));
175
176 void* result;
177 ASSERT_EQ(0, pthread_join(t, &result));
178 ASSERT_EQ(nullptr, result); // Not ~0!
179
180 ASSERT_EQ(0, munmap(stack, stack_size));
Dan Albert1d53ae22014-09-02 15:24:26 -0700181 ASSERT_EQ(0, pthread_key_delete(key));
Elliott Hughes40a52172014-07-30 14:48:10 -0700182}
183
Yabin Cui5ddbb3f2015-03-05 20:35:32 -0800184TEST(pthread, static_pthread_key_used_before_creation) {
185#if defined(__BIONIC__)
186 // See http://b/19625804. The bug is about a static/global pthread key being used before creation.
187 // So here tests if the static/global default value 0 can be detected as invalid key.
188 static pthread_key_t key;
189 ASSERT_EQ(nullptr, pthread_getspecific(key));
190 ASSERT_EQ(EINVAL, pthread_setspecific(key, nullptr));
191 ASSERT_EQ(EINVAL, pthread_key_delete(key));
192#else
193 GTEST_LOG_(INFO) << "This test tests bionic pthread key implementation detail.\n";
194#endif
195}
196
Elliott Hughes4d014e12012-09-07 16:47:54 -0700197static void* IdFn(void* arg) {
198 return arg;
199}
200
Yabin Cui63481602014-12-01 17:41:04 -0800201class SpinFunctionHelper {
202 public:
203 SpinFunctionHelper() {
204 SpinFunctionHelper::spin_flag_ = true;
Sergey Melnikov10ce9692012-10-26 14:06:43 +0400205 }
Yabin Cui63481602014-12-01 17:41:04 -0800206 ~SpinFunctionHelper() {
207 UnSpin();
208 }
209 auto GetFunction() -> void* (*)(void*) {
210 return SpinFunctionHelper::SpinFn;
211 }
212
213 void UnSpin() {
214 SpinFunctionHelper::spin_flag_ = false;
215 }
216
217 private:
218 static void* SpinFn(void*) {
219 while (spin_flag_) {}
220 return NULL;
221 }
222 static volatile bool spin_flag_;
223};
224
225// It doesn't matter if spin_flag_ is used in several tests,
226// because it is always set to false after each test. Each thread
227// loops on spin_flag_ can find it becomes false at some time.
228volatile bool SpinFunctionHelper::spin_flag_ = false;
Sergey Melnikov10ce9692012-10-26 14:06:43 +0400229
Elliott Hughes4d014e12012-09-07 16:47:54 -0700230static void* JoinFn(void* arg) {
231 return reinterpret_cast<void*>(pthread_join(reinterpret_cast<pthread_t>(arg), NULL));
232}
233
Sergey Melnikov10ce9692012-10-26 14:06:43 +0400234static void AssertDetached(pthread_t t, bool is_detached) {
235 pthread_attr_t attr;
236 ASSERT_EQ(0, pthread_getattr_np(t, &attr));
237 int detach_state;
238 ASSERT_EQ(0, pthread_attr_getdetachstate(&attr, &detach_state));
239 pthread_attr_destroy(&attr);
240 ASSERT_EQ(is_detached, (detach_state == PTHREAD_CREATE_DETACHED));
241}
242
Elliott Hughes9d23e042013-02-15 19:21:51 -0800243static void MakeDeadThread(pthread_t& t) {
244 ASSERT_EQ(0, pthread_create(&t, NULL, IdFn, NULL));
Elliott Hughes34c987a2014-09-22 16:01:26 -0700245 ASSERT_EQ(0, pthread_join(t, NULL));
Elliott Hughes9d23e042013-02-15 19:21:51 -0800246}
247
Elliott Hughes4d014e12012-09-07 16:47:54 -0700248TEST(pthread, pthread_create) {
249 void* expected_result = reinterpret_cast<void*>(123);
250 // Can we create a thread?
251 pthread_t t;
252 ASSERT_EQ(0, pthread_create(&t, NULL, IdFn, expected_result));
253 // If we join, do we get the expected value back?
254 void* result;
255 ASSERT_EQ(0, pthread_join(t, &result));
256 ASSERT_EQ(expected_result, result);
257}
258
Elliott Hughes3e898472013-02-12 16:40:24 +0000259TEST(pthread, pthread_create_EAGAIN) {
260 pthread_attr_t attributes;
261 ASSERT_EQ(0, pthread_attr_init(&attributes));
262 ASSERT_EQ(0, pthread_attr_setstacksize(&attributes, static_cast<size_t>(-1) & ~(getpagesize() - 1)));
263
264 pthread_t t;
265 ASSERT_EQ(EAGAIN, pthread_create(&t, &attributes, IdFn, NULL));
266}
267
Elliott Hughes4d014e12012-09-07 16:47:54 -0700268TEST(pthread, pthread_no_join_after_detach) {
Yabin Cui63481602014-12-01 17:41:04 -0800269 SpinFunctionHelper spinhelper;
270
Elliott Hughes4d014e12012-09-07 16:47:54 -0700271 pthread_t t1;
Yabin Cui63481602014-12-01 17:41:04 -0800272 ASSERT_EQ(0, pthread_create(&t1, NULL, spinhelper.GetFunction(), NULL));
Elliott Hughes4d014e12012-09-07 16:47:54 -0700273
274 // After a pthread_detach...
275 ASSERT_EQ(0, pthread_detach(t1));
Sergey Melnikov10ce9692012-10-26 14:06:43 +0400276 AssertDetached(t1, true);
Elliott Hughes4d014e12012-09-07 16:47:54 -0700277
278 // ...pthread_join should fail.
Elliott Hughes34c987a2014-09-22 16:01:26 -0700279 ASSERT_EQ(EINVAL, pthread_join(t1, NULL));
Elliott Hughes4d014e12012-09-07 16:47:54 -0700280}
281
282TEST(pthread, pthread_no_op_detach_after_join) {
Yabin Cui63481602014-12-01 17:41:04 -0800283 SpinFunctionHelper spinhelper;
Sergey Melnikov10ce9692012-10-26 14:06:43 +0400284
Elliott Hughes4d014e12012-09-07 16:47:54 -0700285 pthread_t t1;
Yabin Cui63481602014-12-01 17:41:04 -0800286 ASSERT_EQ(0, pthread_create(&t1, NULL, spinhelper.GetFunction(), NULL));
Elliott Hughes4d014e12012-09-07 16:47:54 -0700287
288 // If thread 2 is already waiting to join thread 1...
289 pthread_t t2;
290 ASSERT_EQ(0, pthread_create(&t2, NULL, JoinFn, reinterpret_cast<void*>(t1)));
291
Sergey Melnikov10ce9692012-10-26 14:06:43 +0400292 sleep(1); // (Give t2 a chance to call pthread_join.)
Elliott Hughes4d014e12012-09-07 16:47:54 -0700293
Yabin Cuibbb04322015-03-19 15:19:25 -0700294#if defined(__BIONIC__)
295 ASSERT_EQ(EINVAL, pthread_detach(t1));
296#else
Sergey Melnikov10ce9692012-10-26 14:06:43 +0400297 ASSERT_EQ(0, pthread_detach(t1));
Yabin Cuibbb04322015-03-19 15:19:25 -0700298#endif
Sergey Melnikov10ce9692012-10-26 14:06:43 +0400299 AssertDetached(t1, false);
300
Yabin Cui63481602014-12-01 17:41:04 -0800301 spinhelper.UnSpin();
Sergey Melnikov10ce9692012-10-26 14:06:43 +0400302
303 // ...but t2's join on t1 still goes ahead (which we can tell because our join on t2 finishes).
Elliott Hughes4d014e12012-09-07 16:47:54 -0700304 void* join_result;
305 ASSERT_EQ(0, pthread_join(t2, &join_result));
Elliott Hughes5b9310e2013-10-02 16:59:05 -0700306 ASSERT_EQ(0U, reinterpret_cast<uintptr_t>(join_result));
Elliott Hughes4d014e12012-09-07 16:47:54 -0700307}
Elliott Hughes14f19592012-10-29 10:19:44 -0700308
309TEST(pthread, pthread_join_self) {
Elliott Hughes34c987a2014-09-22 16:01:26 -0700310 ASSERT_EQ(EDEADLK, pthread_join(pthread_self(), NULL));
Elliott Hughes14f19592012-10-29 10:19:44 -0700311}
Elliott Hughes4f251be2012-11-01 16:33:29 -0700312
Elliott Hughes877ec6d2013-11-15 17:40:18 -0800313struct TestBug37410 {
314 pthread_t main_thread;
315 pthread_mutex_t mutex;
Elliott Hughes4f251be2012-11-01 16:33:29 -0700316
Elliott Hughes877ec6d2013-11-15 17:40:18 -0800317 static void main() {
318 TestBug37410 data;
319 data.main_thread = pthread_self();
320 ASSERT_EQ(0, pthread_mutex_init(&data.mutex, NULL));
321 ASSERT_EQ(0, pthread_mutex_lock(&data.mutex));
322
323 pthread_t t;
324 ASSERT_EQ(0, pthread_create(&t, NULL, TestBug37410::thread_fn, reinterpret_cast<void*>(&data)));
325
326 // Wait for the thread to be running...
327 ASSERT_EQ(0, pthread_mutex_lock(&data.mutex));
328 ASSERT_EQ(0, pthread_mutex_unlock(&data.mutex));
329
330 // ...and exit.
331 pthread_exit(NULL);
332 }
333
334 private:
335 static void* thread_fn(void* arg) {
336 TestBug37410* data = reinterpret_cast<TestBug37410*>(arg);
337
338 // Let the main thread know we're running.
339 pthread_mutex_unlock(&data->mutex);
340
341 // And wait for the main thread to exit.
342 pthread_join(data->main_thread, NULL);
343
344 return NULL;
345 }
346};
Elliott Hughes4f251be2012-11-01 16:33:29 -0700347
Elliott Hughes7fd803c2013-02-14 16:33:52 -0800348// Even though this isn't really a death test, we have to say "DeathTest" here so gtest knows to
349// run this test (which exits normally) in its own process.
Yabin Cui9df70402014-11-05 18:01:01 -0800350
351class pthread_DeathTest : public BionicDeathTest {};
352
353TEST_F(pthread_DeathTest, pthread_bug_37410) {
Elliott Hughes4f251be2012-11-01 16:33:29 -0700354 // http://code.google.com/p/android/issues/detail?id=37410
Elliott Hughes877ec6d2013-11-15 17:40:18 -0800355 ASSERT_EXIT(TestBug37410::main(), ::testing::ExitedWithCode(0), "");
Elliott Hughes4f251be2012-11-01 16:33:29 -0700356}
Elliott Hughesc5d028f2013-01-10 14:42:14 -0800357
358static void* SignalHandlerFn(void* arg) {
359 sigset_t wait_set;
360 sigfillset(&wait_set);
361 return reinterpret_cast<void*>(sigwait(&wait_set, reinterpret_cast<int*>(arg)));
362}
363
364TEST(pthread, pthread_sigmask) {
Elliott Hughes19e62322013-10-15 11:23:57 -0700365 // Check that SIGUSR1 isn't blocked.
366 sigset_t original_set;
367 sigemptyset(&original_set);
368 ASSERT_EQ(0, pthread_sigmask(SIG_BLOCK, NULL, &original_set));
369 ASSERT_FALSE(sigismember(&original_set, SIGUSR1));
370
Elliott Hughesc5d028f2013-01-10 14:42:14 -0800371 // Block SIGUSR1.
372 sigset_t set;
373 sigemptyset(&set);
374 sigaddset(&set, SIGUSR1);
375 ASSERT_EQ(0, pthread_sigmask(SIG_BLOCK, &set, NULL));
376
Elliott Hughes19e62322013-10-15 11:23:57 -0700377 // Check that SIGUSR1 is blocked.
378 sigset_t final_set;
379 sigemptyset(&final_set);
380 ASSERT_EQ(0, pthread_sigmask(SIG_BLOCK, NULL, &final_set));
381 ASSERT_TRUE(sigismember(&final_set, SIGUSR1));
382 // ...and that sigprocmask agrees with pthread_sigmask.
383 sigemptyset(&final_set);
384 ASSERT_EQ(0, sigprocmask(SIG_BLOCK, NULL, &final_set));
385 ASSERT_TRUE(sigismember(&final_set, SIGUSR1));
386
Elliott Hughesc5d028f2013-01-10 14:42:14 -0800387 // Spawn a thread that calls sigwait and tells us what it received.
388 pthread_t signal_thread;
389 int received_signal = -1;
390 ASSERT_EQ(0, pthread_create(&signal_thread, NULL, SignalHandlerFn, &received_signal));
391
392 // Send that thread SIGUSR1.
393 pthread_kill(signal_thread, SIGUSR1);
394
395 // See what it got.
396 void* join_result;
397 ASSERT_EQ(0, pthread_join(signal_thread, &join_result));
398 ASSERT_EQ(SIGUSR1, received_signal);
Elliott Hughes5b9310e2013-10-02 16:59:05 -0700399 ASSERT_EQ(0U, reinterpret_cast<uintptr_t>(join_result));
Elliott Hughes19e62322013-10-15 11:23:57 -0700400
401 // Restore the original signal mask.
402 ASSERT_EQ(0, pthread_sigmask(SIG_SETMASK, &original_set, NULL));
Elliott Hughesc5d028f2013-01-10 14:42:14 -0800403}
Elliott Hughes5e3fc432013-02-11 16:36:48 -0800404
Elliott Hughes3e898472013-02-12 16:40:24 +0000405TEST(pthread, pthread_setname_np__too_long) {
Elliott Hughesd1aea302015-04-25 10:05:24 -0700406 // The limit is 15 characters --- the kernel's buffer is 16, but includes a NUL.
407 ASSERT_EQ(0, pthread_setname_np(pthread_self(), "123456789012345"));
408 ASSERT_EQ(ERANGE, pthread_setname_np(pthread_self(), "1234567890123456"));
Elliott Hughes3e898472013-02-12 16:40:24 +0000409}
410
411TEST(pthread, pthread_setname_np__self) {
412 ASSERT_EQ(0, pthread_setname_np(pthread_self(), "short 1"));
413}
414
415TEST(pthread, pthread_setname_np__other) {
Yabin Cui63481602014-12-01 17:41:04 -0800416 SpinFunctionHelper spinhelper;
417
Elliott Hughesed29e852014-10-27 12:01:51 -0700418 pthread_t t1;
Yabin Cui63481602014-12-01 17:41:04 -0800419 ASSERT_EQ(0, pthread_create(&t1, NULL, spinhelper.GetFunction(), NULL));
Elliott Hughesed29e852014-10-27 12:01:51 -0700420 ASSERT_EQ(0, pthread_setname_np(t1, "short 2"));
Elliott Hughes3e898472013-02-12 16:40:24 +0000421}
422
Yabin Cui220b99b2015-03-26 18:13:07 +0000423TEST(pthread, pthread_setname_np__no_such_thread) {
Elliott Hughes9d23e042013-02-15 19:21:51 -0800424 pthread_t dead_thread;
425 MakeDeadThread(dead_thread);
Elliott Hughes3e898472013-02-12 16:40:24 +0000426
427 // Call pthread_setname_np after thread has already exited.
Elliott Hughes68d98d82014-11-12 21:03:26 -0800428 ASSERT_EQ(ENOENT, pthread_setname_np(dead_thread, "short 3"));
Elliott Hughes3e898472013-02-12 16:40:24 +0000429}
Elliott Hughes9d23e042013-02-15 19:21:51 -0800430
431TEST(pthread, pthread_kill__0) {
432 // Signal 0 just tests that the thread exists, so it's safe to call on ourselves.
433 ASSERT_EQ(0, pthread_kill(pthread_self(), 0));
434}
435
436TEST(pthread, pthread_kill__invalid_signal) {
437 ASSERT_EQ(EINVAL, pthread_kill(pthread_self(), -1));
438}
439
Elliott Hughesfae89fc2013-02-21 11:22:23 -0800440static void pthread_kill__in_signal_handler_helper(int signal_number) {
441 static int count = 0;
442 ASSERT_EQ(SIGALRM, signal_number);
443 if (++count == 1) {
444 // Can we call pthread_kill from a signal handler?
445 ASSERT_EQ(0, pthread_kill(pthread_self(), SIGALRM));
446 }
447}
448
449TEST(pthread, pthread_kill__in_signal_handler) {
Elliott Hughes4b558f52014-03-04 15:58:02 -0800450 ScopedSignalHandler ssh(SIGALRM, pthread_kill__in_signal_handler_helper);
Elliott Hughesfae89fc2013-02-21 11:22:23 -0800451 ASSERT_EQ(0, pthread_kill(pthread_self(), SIGALRM));
452}
453
Yabin Cui220b99b2015-03-26 18:13:07 +0000454TEST(pthread, pthread_detach__no_such_thread) {
Elliott Hughes9d23e042013-02-15 19:21:51 -0800455 pthread_t dead_thread;
456 MakeDeadThread(dead_thread);
457
458 ASSERT_EQ(ESRCH, pthread_detach(dead_thread));
459}
460
Yabin Cui19e246d2014-12-18 14:22:09 -0800461TEST(pthread, pthread_detach_no_leak) {
Christopher Ferrise3809602014-08-06 14:15:01 -0700462 size_t initial_bytes = 0;
463 // Run this loop more than once since the first loop causes some memory
464 // to be allocated permenantly. Run an extra loop to help catch any subtle
465 // memory leaks.
466 for (size_t loop = 0; loop < 3; loop++) {
467 // Set the initial bytes on the second loop since the memory in use
468 // should have stabilized.
469 if (loop == 1) {
470 initial_bytes = mallinfo().uordblks;
471 }
Elliott Hughes04620a32014-03-07 17:59:05 -0800472
Christopher Ferrise3809602014-08-06 14:15:01 -0700473 pthread_attr_t attr;
474 ASSERT_EQ(0, pthread_attr_init(&attr));
475 ASSERT_EQ(0, pthread_attr_setdetachstate(&attr, PTHREAD_CREATE_JOINABLE));
Elliott Hughes04620a32014-03-07 17:59:05 -0800476
Christopher Ferrise3809602014-08-06 14:15:01 -0700477 std::vector<pthread_t> threads;
478 for (size_t i = 0; i < 32; ++i) {
479 pthread_t t;
480 ASSERT_EQ(0, pthread_create(&t, &attr, IdFn, NULL));
481 threads.push_back(t);
482 }
Elliott Hughes04620a32014-03-07 17:59:05 -0800483
Christopher Ferrise3809602014-08-06 14:15:01 -0700484 sleep(1);
Elliott Hughes04620a32014-03-07 17:59:05 -0800485
Christopher Ferrise3809602014-08-06 14:15:01 -0700486 for (size_t i = 0; i < 32; ++i) {
487 ASSERT_EQ(0, pthread_detach(threads[i])) << i;
488 }
Elliott Hughes04620a32014-03-07 17:59:05 -0800489 }
490
491 size_t final_bytes = mallinfo().uordblks;
Elliott Hughes04620a32014-03-07 17:59:05 -0800492 int leaked_bytes = (final_bytes - initial_bytes);
493
Yabin Cui19e246d2014-12-18 14:22:09 -0800494 ASSERT_EQ(0, leaked_bytes);
Elliott Hughes04620a32014-03-07 17:59:05 -0800495}
496
Jeff Hao9b06cc32013-08-15 14:51:16 -0700497TEST(pthread, pthread_getcpuclockid__clock_gettime) {
Yabin Cui63481602014-12-01 17:41:04 -0800498 SpinFunctionHelper spinhelper;
499
Jeff Hao9b06cc32013-08-15 14:51:16 -0700500 pthread_t t;
Yabin Cui63481602014-12-01 17:41:04 -0800501 ASSERT_EQ(0, pthread_create(&t, NULL, spinhelper.GetFunction(), NULL));
Jeff Hao9b06cc32013-08-15 14:51:16 -0700502
503 clockid_t c;
504 ASSERT_EQ(0, pthread_getcpuclockid(t, &c));
505 timespec ts;
506 ASSERT_EQ(0, clock_gettime(c, &ts));
507}
508
Yabin Cui220b99b2015-03-26 18:13:07 +0000509TEST(pthread, pthread_getcpuclockid__no_such_thread) {
Elliott Hughes9d23e042013-02-15 19:21:51 -0800510 pthread_t dead_thread;
511 MakeDeadThread(dead_thread);
512
513 clockid_t c;
514 ASSERT_EQ(ESRCH, pthread_getcpuclockid(dead_thread, &c));
515}
516
Yabin Cui220b99b2015-03-26 18:13:07 +0000517TEST(pthread, pthread_getschedparam__no_such_thread) {
Elliott Hughes9d23e042013-02-15 19:21:51 -0800518 pthread_t dead_thread;
519 MakeDeadThread(dead_thread);
520
521 int policy;
522 sched_param param;
523 ASSERT_EQ(ESRCH, pthread_getschedparam(dead_thread, &policy, &param));
524}
525
Yabin Cui220b99b2015-03-26 18:13:07 +0000526TEST(pthread, pthread_setschedparam__no_such_thread) {
Elliott Hughes9d23e042013-02-15 19:21:51 -0800527 pthread_t dead_thread;
528 MakeDeadThread(dead_thread);
529
530 int policy = 0;
531 sched_param param;
532 ASSERT_EQ(ESRCH, pthread_setschedparam(dead_thread, policy, &param));
533}
534
Yabin Cui220b99b2015-03-26 18:13:07 +0000535TEST(pthread, pthread_join__no_such_thread) {
Elliott Hughes9d23e042013-02-15 19:21:51 -0800536 pthread_t dead_thread;
537 MakeDeadThread(dead_thread);
538
Elliott Hughes34c987a2014-09-22 16:01:26 -0700539 ASSERT_EQ(ESRCH, pthread_join(dead_thread, NULL));
Elliott Hughes9d23e042013-02-15 19:21:51 -0800540}
541
Yabin Cui220b99b2015-03-26 18:13:07 +0000542TEST(pthread, pthread_kill__no_such_thread) {
Elliott Hughes9d23e042013-02-15 19:21:51 -0800543 pthread_t dead_thread;
544 MakeDeadThread(dead_thread);
545
546 ASSERT_EQ(ESRCH, pthread_kill(dead_thread, 0));
547}
msg5550f020d12013-06-06 14:59:28 -0400548
549TEST(pthread, pthread_join__multijoin) {
Yabin Cui63481602014-12-01 17:41:04 -0800550 SpinFunctionHelper spinhelper;
msg5550f020d12013-06-06 14:59:28 -0400551
552 pthread_t t1;
Yabin Cui63481602014-12-01 17:41:04 -0800553 ASSERT_EQ(0, pthread_create(&t1, NULL, spinhelper.GetFunction(), NULL));
msg5550f020d12013-06-06 14:59:28 -0400554
555 pthread_t t2;
556 ASSERT_EQ(0, pthread_create(&t2, NULL, JoinFn, reinterpret_cast<void*>(t1)));
557
558 sleep(1); // (Give t2 a chance to call pthread_join.)
559
560 // Multiple joins to the same thread should fail.
561 ASSERT_EQ(EINVAL, pthread_join(t1, NULL));
562
Yabin Cui63481602014-12-01 17:41:04 -0800563 spinhelper.UnSpin();
msg5550f020d12013-06-06 14:59:28 -0400564
565 // ...but t2's join on t1 still goes ahead (which we can tell because our join on t2 finishes).
566 void* join_result;
567 ASSERT_EQ(0, pthread_join(t2, &join_result));
Elliott Hughes5b9310e2013-10-02 16:59:05 -0700568 ASSERT_EQ(0U, reinterpret_cast<uintptr_t>(join_result));
msg5550f020d12013-06-06 14:59:28 -0400569}
Elliott Hughesb95cf0d2013-07-15 14:51:07 -0700570
Elliott Hughes70b24b12013-11-15 11:51:07 -0800571TEST(pthread, pthread_join__race) {
572 // http://b/11693195 --- pthread_join could return before the thread had actually exited.
573 // If the joiner unmapped the thread's stack, that could lead to SIGSEGV in the thread.
574 for (size_t i = 0; i < 1024; ++i) {
575 size_t stack_size = 64*1024;
576 void* stack = mmap(NULL, stack_size, PROT_READ|PROT_WRITE, MAP_ANON|MAP_PRIVATE, -1, 0);
577
578 pthread_attr_t a;
579 pthread_attr_init(&a);
580 pthread_attr_setstack(&a, stack, stack_size);
581
582 pthread_t t;
583 ASSERT_EQ(0, pthread_create(&t, &a, IdFn, NULL));
584 ASSERT_EQ(0, pthread_join(t, NULL));
585 ASSERT_EQ(0, munmap(stack, stack_size));
586 }
587}
588
Elliott Hughesb95cf0d2013-07-15 14:51:07 -0700589static void* GetActualGuardSizeFn(void* arg) {
590 pthread_attr_t attributes;
591 pthread_getattr_np(pthread_self(), &attributes);
592 pthread_attr_getguardsize(&attributes, reinterpret_cast<size_t*>(arg));
593 return NULL;
594}
595
596static size_t GetActualGuardSize(const pthread_attr_t& attributes) {
597 size_t result;
598 pthread_t t;
599 pthread_create(&t, &attributes, GetActualGuardSizeFn, &result);
Elliott Hughes34c987a2014-09-22 16:01:26 -0700600 pthread_join(t, NULL);
Elliott Hughesb95cf0d2013-07-15 14:51:07 -0700601 return result;
602}
603
604static void* GetActualStackSizeFn(void* arg) {
605 pthread_attr_t attributes;
606 pthread_getattr_np(pthread_self(), &attributes);
607 pthread_attr_getstacksize(&attributes, reinterpret_cast<size_t*>(arg));
608 return NULL;
609}
610
611static size_t GetActualStackSize(const pthread_attr_t& attributes) {
612 size_t result;
613 pthread_t t;
614 pthread_create(&t, &attributes, GetActualStackSizeFn, &result);
Elliott Hughes34c987a2014-09-22 16:01:26 -0700615 pthread_join(t, NULL);
Elliott Hughesb95cf0d2013-07-15 14:51:07 -0700616 return result;
617}
618
619TEST(pthread, pthread_attr_setguardsize) {
620 pthread_attr_t attributes;
621 ASSERT_EQ(0, pthread_attr_init(&attributes));
622
623 // Get the default guard size.
624 size_t default_guard_size;
625 ASSERT_EQ(0, pthread_attr_getguardsize(&attributes, &default_guard_size));
626
627 // No such thing as too small: will be rounded up to one page by pthread_create.
628 ASSERT_EQ(0, pthread_attr_setguardsize(&attributes, 128));
629 size_t guard_size;
630 ASSERT_EQ(0, pthread_attr_getguardsize(&attributes, &guard_size));
631 ASSERT_EQ(128U, guard_size);
632 ASSERT_EQ(4096U, GetActualGuardSize(attributes));
633
634 // Large enough and a multiple of the page size.
635 ASSERT_EQ(0, pthread_attr_setguardsize(&attributes, 32*1024));
636 ASSERT_EQ(0, pthread_attr_getguardsize(&attributes, &guard_size));
637 ASSERT_EQ(32*1024U, guard_size);
638
639 // Large enough but not a multiple of the page size; will be rounded up by pthread_create.
640 ASSERT_EQ(0, pthread_attr_setguardsize(&attributes, 32*1024 + 1));
641 ASSERT_EQ(0, pthread_attr_getguardsize(&attributes, &guard_size));
642 ASSERT_EQ(32*1024U + 1, guard_size);
643}
644
645TEST(pthread, pthread_attr_setstacksize) {
646 pthread_attr_t attributes;
647 ASSERT_EQ(0, pthread_attr_init(&attributes));
648
649 // Get the default stack size.
650 size_t default_stack_size;
651 ASSERT_EQ(0, pthread_attr_getstacksize(&attributes, &default_stack_size));
652
653 // Too small.
654 ASSERT_EQ(EINVAL, pthread_attr_setstacksize(&attributes, 128));
655 size_t stack_size;
656 ASSERT_EQ(0, pthread_attr_getstacksize(&attributes, &stack_size));
657 ASSERT_EQ(default_stack_size, stack_size);
658 ASSERT_GE(GetActualStackSize(attributes), default_stack_size);
659
Yabin Cui917d3902015-01-08 12:32:42 -0800660 // Large enough and a multiple of the page size; may be rounded up by pthread_create.
Elliott Hughesb95cf0d2013-07-15 14:51:07 -0700661 ASSERT_EQ(0, pthread_attr_setstacksize(&attributes, 32*1024));
662 ASSERT_EQ(0, pthread_attr_getstacksize(&attributes, &stack_size));
663 ASSERT_EQ(32*1024U, stack_size);
Yabin Cui917d3902015-01-08 12:32:42 -0800664 ASSERT_GE(GetActualStackSize(attributes), 32*1024U);
Elliott Hughesb95cf0d2013-07-15 14:51:07 -0700665
Yabin Cui917d3902015-01-08 12:32:42 -0800666 // Large enough but not aligned; will be rounded up by pthread_create.
Elliott Hughesb95cf0d2013-07-15 14:51:07 -0700667 ASSERT_EQ(0, pthread_attr_setstacksize(&attributes, 32*1024 + 1));
668 ASSERT_EQ(0, pthread_attr_getstacksize(&attributes, &stack_size));
669 ASSERT_EQ(32*1024U + 1, stack_size);
Christopher Ferrisf04935c2013-12-20 18:43:21 -0800670#if defined(__BIONIC__)
Yabin Cui917d3902015-01-08 12:32:42 -0800671 ASSERT_GT(GetActualStackSize(attributes), 32*1024U + 1);
Christopher Ferrisf04935c2013-12-20 18:43:21 -0800672#else // __BIONIC__
Elliott Hughesb95cf0d2013-07-15 14:51:07 -0700673 // glibc rounds down, in violation of POSIX. They document this in their BUGS section.
674 ASSERT_EQ(GetActualStackSize(attributes), 32*1024U);
Christopher Ferrisf04935c2013-12-20 18:43:21 -0800675#endif // __BIONIC__
Elliott Hughesb95cf0d2013-07-15 14:51:07 -0700676}
Elliott Hughesc3f11402013-10-30 14:40:09 -0700677
Yabin Cui76615da2015-03-17 14:22:09 -0700678TEST(pthread, pthread_rwlockattr_smoke) {
679 pthread_rwlockattr_t attr;
680 ASSERT_EQ(0, pthread_rwlockattr_init(&attr));
681
682 int pshared_value_array[] = {PTHREAD_PROCESS_PRIVATE, PTHREAD_PROCESS_SHARED};
683 for (size_t i = 0; i < sizeof(pshared_value_array) / sizeof(pshared_value_array[0]); ++i) {
684 ASSERT_EQ(0, pthread_rwlockattr_setpshared(&attr, pshared_value_array[i]));
685 int pshared;
686 ASSERT_EQ(0, pthread_rwlockattr_getpshared(&attr, &pshared));
687 ASSERT_EQ(pshared_value_array[i], pshared);
688 }
689
690 int kind_array[] = {PTHREAD_RWLOCK_PREFER_READER_NP,
691 PTHREAD_RWLOCK_PREFER_WRITER_NONRECURSIVE_NP};
692 for (size_t i = 0; i < sizeof(kind_array) / sizeof(kind_array[0]); ++i) {
693 ASSERT_EQ(0, pthread_rwlockattr_setkind_np(&attr, kind_array[i]));
694 int kind;
695 ASSERT_EQ(0, pthread_rwlockattr_getkind_np(&attr, &kind));
696 ASSERT_EQ(kind_array[i], kind);
697 }
698
699 ASSERT_EQ(0, pthread_rwlockattr_destroy(&attr));
700}
701
702TEST(pthread, pthread_rwlock_init_same_as_PTHREAD_RWLOCK_INITIALIZER) {
703 pthread_rwlock_t lock1 = PTHREAD_RWLOCK_INITIALIZER;
704 pthread_rwlock_t lock2;
705 ASSERT_EQ(0, pthread_rwlock_init(&lock2, NULL));
706 ASSERT_EQ(0, memcmp(&lock1, &lock2, sizeof(lock1)));
707}
708
Elliott Hughesc3f11402013-10-30 14:40:09 -0700709TEST(pthread, pthread_rwlock_smoke) {
710 pthread_rwlock_t l;
711 ASSERT_EQ(0, pthread_rwlock_init(&l, NULL));
712
Calin Juravle76f352e2014-05-19 13:41:10 +0100713 // Single read lock
Elliott Hughesc3f11402013-10-30 14:40:09 -0700714 ASSERT_EQ(0, pthread_rwlock_rdlock(&l));
715 ASSERT_EQ(0, pthread_rwlock_unlock(&l));
716
Calin Juravle76f352e2014-05-19 13:41:10 +0100717 // Multiple read lock
718 ASSERT_EQ(0, pthread_rwlock_rdlock(&l));
719 ASSERT_EQ(0, pthread_rwlock_rdlock(&l));
720 ASSERT_EQ(0, pthread_rwlock_unlock(&l));
721 ASSERT_EQ(0, pthread_rwlock_unlock(&l));
722
723 // Write lock
Calin Juravle92687e42014-05-22 19:21:22 +0100724 ASSERT_EQ(0, pthread_rwlock_wrlock(&l));
725 ASSERT_EQ(0, pthread_rwlock_unlock(&l));
Calin Juravle76f352e2014-05-19 13:41:10 +0100726
727 // Try writer lock
728 ASSERT_EQ(0, pthread_rwlock_trywrlock(&l));
729 ASSERT_EQ(EBUSY, pthread_rwlock_trywrlock(&l));
730 ASSERT_EQ(EBUSY, pthread_rwlock_tryrdlock(&l));
731 ASSERT_EQ(0, pthread_rwlock_unlock(&l));
732
733 // Try reader lock
734 ASSERT_EQ(0, pthread_rwlock_tryrdlock(&l));
735 ASSERT_EQ(0, pthread_rwlock_tryrdlock(&l));
736 ASSERT_EQ(EBUSY, pthread_rwlock_trywrlock(&l));
737 ASSERT_EQ(0, pthread_rwlock_unlock(&l));
738 ASSERT_EQ(0, pthread_rwlock_unlock(&l));
739
740 // Try writer lock after unlock
Elliott Hughesc3f11402013-10-30 14:40:09 -0700741 ASSERT_EQ(0, pthread_rwlock_wrlock(&l));
742 ASSERT_EQ(0, pthread_rwlock_unlock(&l));
743
Calin Juravle76f352e2014-05-19 13:41:10 +0100744 // EDEADLK in "read after write"
745 ASSERT_EQ(0, pthread_rwlock_wrlock(&l));
746 ASSERT_EQ(EDEADLK, pthread_rwlock_rdlock(&l));
747 ASSERT_EQ(0, pthread_rwlock_unlock(&l));
748
749 // EDEADLK in "write after write"
750 ASSERT_EQ(0, pthread_rwlock_wrlock(&l));
751 ASSERT_EQ(EDEADLK, pthread_rwlock_wrlock(&l));
752 ASSERT_EQ(0, pthread_rwlock_unlock(&l));
Calin Juravle76f352e2014-05-19 13:41:10 +0100753
Elliott Hughesc3f11402013-10-30 14:40:09 -0700754 ASSERT_EQ(0, pthread_rwlock_destroy(&l));
755}
756
Yabin Cuif7969852015-04-02 17:47:48 -0700757static void WaitUntilThreadSleep(std::atomic<pid_t>& pid) {
758 while (pid == 0) {
759 usleep(1000);
760 }
761 std::string filename = android::base::StringPrintf("/proc/%d/stat", pid.load());
762 std::regex regex {R"(\s+S\s+)"};
763
764 while (true) {
765 std::string content;
766 ASSERT_TRUE(android::base::ReadFileToString(filename, &content));
767 if (std::regex_search(content, regex)) {
768 break;
769 }
770 usleep(1000);
771 }
772}
773
Yabin Cui08ee8d22015-02-11 17:04:36 -0800774struct RwlockWakeupHelperArg {
775 pthread_rwlock_t lock;
776 enum Progress {
777 LOCK_INITIALIZED,
778 LOCK_WAITING,
779 LOCK_RELEASED,
780 LOCK_ACCESSED
781 };
782 std::atomic<Progress> progress;
Yabin Cuif7969852015-04-02 17:47:48 -0700783 std::atomic<pid_t> tid;
Yabin Cui08ee8d22015-02-11 17:04:36 -0800784};
785
786static void pthread_rwlock_reader_wakeup_writer_helper(RwlockWakeupHelperArg* arg) {
Yabin Cuif7969852015-04-02 17:47:48 -0700787 arg->tid = gettid();
Yabin Cui08ee8d22015-02-11 17:04:36 -0800788 ASSERT_EQ(RwlockWakeupHelperArg::LOCK_INITIALIZED, arg->progress);
789 arg->progress = RwlockWakeupHelperArg::LOCK_WAITING;
790
791 ASSERT_EQ(EBUSY, pthread_rwlock_trywrlock(&arg->lock));
792 ASSERT_EQ(0, pthread_rwlock_wrlock(&arg->lock));
793 ASSERT_EQ(RwlockWakeupHelperArg::LOCK_RELEASED, arg->progress);
794 ASSERT_EQ(0, pthread_rwlock_unlock(&arg->lock));
795
796 arg->progress = RwlockWakeupHelperArg::LOCK_ACCESSED;
797}
798
799TEST(pthread, pthread_rwlock_reader_wakeup_writer) {
800 RwlockWakeupHelperArg wakeup_arg;
801 ASSERT_EQ(0, pthread_rwlock_init(&wakeup_arg.lock, NULL));
802 ASSERT_EQ(0, pthread_rwlock_rdlock(&wakeup_arg.lock));
803 wakeup_arg.progress = RwlockWakeupHelperArg::LOCK_INITIALIZED;
Yabin Cuif7969852015-04-02 17:47:48 -0700804 wakeup_arg.tid = 0;
Yabin Cui08ee8d22015-02-11 17:04:36 -0800805
806 pthread_t thread;
807 ASSERT_EQ(0, pthread_create(&thread, NULL,
808 reinterpret_cast<void* (*)(void*)>(pthread_rwlock_reader_wakeup_writer_helper), &wakeup_arg));
Yabin Cuif7969852015-04-02 17:47:48 -0700809 WaitUntilThreadSleep(wakeup_arg.tid);
810 ASSERT_EQ(RwlockWakeupHelperArg::LOCK_WAITING, wakeup_arg.progress);
811
Yabin Cui08ee8d22015-02-11 17:04:36 -0800812 wakeup_arg.progress = RwlockWakeupHelperArg::LOCK_RELEASED;
813 ASSERT_EQ(0, pthread_rwlock_unlock(&wakeup_arg.lock));
814
815 ASSERT_EQ(0, pthread_join(thread, NULL));
816 ASSERT_EQ(RwlockWakeupHelperArg::LOCK_ACCESSED, wakeup_arg.progress);
817 ASSERT_EQ(0, pthread_rwlock_destroy(&wakeup_arg.lock));
818}
819
820static void pthread_rwlock_writer_wakeup_reader_helper(RwlockWakeupHelperArg* arg) {
Yabin Cuif7969852015-04-02 17:47:48 -0700821 arg->tid = gettid();
Yabin Cui08ee8d22015-02-11 17:04:36 -0800822 ASSERT_EQ(RwlockWakeupHelperArg::LOCK_INITIALIZED, arg->progress);
823 arg->progress = RwlockWakeupHelperArg::LOCK_WAITING;
824
825 ASSERT_EQ(EBUSY, pthread_rwlock_tryrdlock(&arg->lock));
826 ASSERT_EQ(0, pthread_rwlock_rdlock(&arg->lock));
827 ASSERT_EQ(RwlockWakeupHelperArg::LOCK_RELEASED, arg->progress);
828 ASSERT_EQ(0, pthread_rwlock_unlock(&arg->lock));
829
830 arg->progress = RwlockWakeupHelperArg::LOCK_ACCESSED;
831}
832
833TEST(pthread, pthread_rwlock_writer_wakeup_reader) {
834 RwlockWakeupHelperArg wakeup_arg;
835 ASSERT_EQ(0, pthread_rwlock_init(&wakeup_arg.lock, NULL));
836 ASSERT_EQ(0, pthread_rwlock_wrlock(&wakeup_arg.lock));
837 wakeup_arg.progress = RwlockWakeupHelperArg::LOCK_INITIALIZED;
Yabin Cuif7969852015-04-02 17:47:48 -0700838 wakeup_arg.tid = 0;
Yabin Cui08ee8d22015-02-11 17:04:36 -0800839
840 pthread_t thread;
841 ASSERT_EQ(0, pthread_create(&thread, NULL,
842 reinterpret_cast<void* (*)(void*)>(pthread_rwlock_writer_wakeup_reader_helper), &wakeup_arg));
Yabin Cuif7969852015-04-02 17:47:48 -0700843 WaitUntilThreadSleep(wakeup_arg.tid);
844 ASSERT_EQ(RwlockWakeupHelperArg::LOCK_WAITING, wakeup_arg.progress);
845
Yabin Cui08ee8d22015-02-11 17:04:36 -0800846 wakeup_arg.progress = RwlockWakeupHelperArg::LOCK_RELEASED;
847 ASSERT_EQ(0, pthread_rwlock_unlock(&wakeup_arg.lock));
848
849 ASSERT_EQ(0, pthread_join(thread, NULL));
850 ASSERT_EQ(RwlockWakeupHelperArg::LOCK_ACCESSED, wakeup_arg.progress);
851 ASSERT_EQ(0, pthread_rwlock_destroy(&wakeup_arg.lock));
852}
853
Yabin Cui76615da2015-03-17 14:22:09 -0700854class RwlockKindTestHelper {
855 private:
856 struct ThreadArg {
857 RwlockKindTestHelper* helper;
858 std::atomic<pid_t>& tid;
859
860 ThreadArg(RwlockKindTestHelper* helper, std::atomic<pid_t>& tid)
861 : helper(helper), tid(tid) { }
862 };
863
864 public:
865 pthread_rwlock_t lock;
866
867 public:
868 RwlockKindTestHelper(int kind_type) {
869 InitRwlock(kind_type);
870 }
871
872 ~RwlockKindTestHelper() {
873 DestroyRwlock();
874 }
875
876 void CreateWriterThread(pthread_t& thread, std::atomic<pid_t>& tid) {
877 tid = 0;
878 ThreadArg* arg = new ThreadArg(this, tid);
879 ASSERT_EQ(0, pthread_create(&thread, NULL,
880 reinterpret_cast<void* (*)(void*)>(WriterThreadFn), arg));
881 }
882
883 void CreateReaderThread(pthread_t& thread, std::atomic<pid_t>& tid) {
884 tid = 0;
885 ThreadArg* arg = new ThreadArg(this, tid);
886 ASSERT_EQ(0, pthread_create(&thread, NULL,
887 reinterpret_cast<void* (*)(void*)>(ReaderThreadFn), arg));
888 }
889
890 private:
891 void InitRwlock(int kind_type) {
892 pthread_rwlockattr_t attr;
893 ASSERT_EQ(0, pthread_rwlockattr_init(&attr));
894 ASSERT_EQ(0, pthread_rwlockattr_setkind_np(&attr, kind_type));
895 ASSERT_EQ(0, pthread_rwlock_init(&lock, &attr));
896 ASSERT_EQ(0, pthread_rwlockattr_destroy(&attr));
897 }
898
899 void DestroyRwlock() {
900 ASSERT_EQ(0, pthread_rwlock_destroy(&lock));
901 }
902
903 static void WriterThreadFn(ThreadArg* arg) {
904 arg->tid = gettid();
905
906 RwlockKindTestHelper* helper = arg->helper;
907 ASSERT_EQ(0, pthread_rwlock_wrlock(&helper->lock));
908 ASSERT_EQ(0, pthread_rwlock_unlock(&helper->lock));
909 delete arg;
910 }
911
912 static void ReaderThreadFn(ThreadArg* arg) {
913 arg->tid = gettid();
914
915 RwlockKindTestHelper* helper = arg->helper;
916 ASSERT_EQ(0, pthread_rwlock_rdlock(&helper->lock));
917 ASSERT_EQ(0, pthread_rwlock_unlock(&helper->lock));
918 delete arg;
919 }
920};
921
922TEST(pthread, pthread_rwlock_kind_PTHREAD_RWLOCK_PREFER_READER_NP) {
923 RwlockKindTestHelper helper(PTHREAD_RWLOCK_PREFER_READER_NP);
924 ASSERT_EQ(0, pthread_rwlock_rdlock(&helper.lock));
925
926 pthread_t writer_thread;
927 std::atomic<pid_t> writer_tid;
928 helper.CreateWriterThread(writer_thread, writer_tid);
929 WaitUntilThreadSleep(writer_tid);
930
931 pthread_t reader_thread;
932 std::atomic<pid_t> reader_tid;
933 helper.CreateReaderThread(reader_thread, reader_tid);
934 ASSERT_EQ(0, pthread_join(reader_thread, NULL));
935
936 ASSERT_EQ(0, pthread_rwlock_unlock(&helper.lock));
937 ASSERT_EQ(0, pthread_join(writer_thread, NULL));
938}
939
940TEST(pthread, pthread_rwlock_kind_PTHREAD_RWLOCK_PREFER_WRITER_NONRECURSIVE_NP) {
941 RwlockKindTestHelper helper(PTHREAD_RWLOCK_PREFER_WRITER_NONRECURSIVE_NP);
942 ASSERT_EQ(0, pthread_rwlock_rdlock(&helper.lock));
943
944 pthread_t writer_thread;
945 std::atomic<pid_t> writer_tid;
946 helper.CreateWriterThread(writer_thread, writer_tid);
947 WaitUntilThreadSleep(writer_tid);
948
949 pthread_t reader_thread;
950 std::atomic<pid_t> reader_tid;
951 helper.CreateReaderThread(reader_thread, reader_tid);
952 WaitUntilThreadSleep(reader_tid);
953
954 ASSERT_EQ(0, pthread_rwlock_unlock(&helper.lock));
955 ASSERT_EQ(0, pthread_join(writer_thread, NULL));
956 ASSERT_EQ(0, pthread_join(reader_thread, NULL));
957}
958
Elliott Hughes1728b232014-05-14 10:02:03 -0700959static int g_once_fn_call_count = 0;
Elliott Hughesc3f11402013-10-30 14:40:09 -0700960static void OnceFn() {
Elliott Hughes1728b232014-05-14 10:02:03 -0700961 ++g_once_fn_call_count;
Elliott Hughesc3f11402013-10-30 14:40:09 -0700962}
963
964TEST(pthread, pthread_once_smoke) {
965 pthread_once_t once_control = PTHREAD_ONCE_INIT;
966 ASSERT_EQ(0, pthread_once(&once_control, OnceFn));
967 ASSERT_EQ(0, pthread_once(&once_control, OnceFn));
Elliott Hughes1728b232014-05-14 10:02:03 -0700968 ASSERT_EQ(1, g_once_fn_call_count);
Elliott Hughesc3f11402013-10-30 14:40:09 -0700969}
970
Elliott Hughes3694ec62014-05-14 11:46:08 -0700971static std::string pthread_once_1934122_result = "";
972
973static void Routine2() {
974 pthread_once_1934122_result += "2";
975}
976
977static void Routine1() {
978 pthread_once_t once_control_2 = PTHREAD_ONCE_INIT;
979 pthread_once_1934122_result += "1";
980 pthread_once(&once_control_2, &Routine2);
981}
982
983TEST(pthread, pthread_once_1934122) {
984 // Very old versions of Android couldn't call pthread_once from a
985 // pthread_once init routine. http://b/1934122.
986 pthread_once_t once_control_1 = PTHREAD_ONCE_INIT;
987 ASSERT_EQ(0, pthread_once(&once_control_1, &Routine1));
988 ASSERT_EQ("12", pthread_once_1934122_result);
989}
990
Elliott Hughes1728b232014-05-14 10:02:03 -0700991static int g_atfork_prepare_calls = 0;
Dmitriy Ivanovea295f62014-11-20 20:47:02 -0800992static void AtForkPrepare1() { g_atfork_prepare_calls = (g_atfork_prepare_calls * 10) + 1; }
993static void AtForkPrepare2() { g_atfork_prepare_calls = (g_atfork_prepare_calls * 10) + 2; }
Elliott Hughes1728b232014-05-14 10:02:03 -0700994static int g_atfork_parent_calls = 0;
Dmitriy Ivanovea295f62014-11-20 20:47:02 -0800995static void AtForkParent1() { g_atfork_parent_calls = (g_atfork_parent_calls * 10) + 1; }
996static void AtForkParent2() { g_atfork_parent_calls = (g_atfork_parent_calls * 10) + 2; }
Elliott Hughes1728b232014-05-14 10:02:03 -0700997static int g_atfork_child_calls = 0;
Dmitriy Ivanovea295f62014-11-20 20:47:02 -0800998static void AtForkChild1() { g_atfork_child_calls = (g_atfork_child_calls * 10) + 1; }
999static void AtForkChild2() { g_atfork_child_calls = (g_atfork_child_calls * 10) + 2; }
Elliott Hughesc3f11402013-10-30 14:40:09 -07001000
Dmitriy Ivanov00e37812014-11-20 16:53:47 -08001001TEST(pthread, pthread_atfork_smoke) {
Dmitriy Ivanovcb0443c2015-03-16 14:15:46 -07001002 ASSERT_EQ(0, pthread_atfork(AtForkPrepare1, AtForkParent1, AtForkChild1));
1003 ASSERT_EQ(0, pthread_atfork(AtForkPrepare2, AtForkParent2, AtForkChild2));
Elliott Hughesc3f11402013-10-30 14:40:09 -07001004
Dmitriy Ivanovcb0443c2015-03-16 14:15:46 -07001005 int pid = fork();
1006 ASSERT_NE(-1, pid) << strerror(errno);
Elliott Hughesc3f11402013-10-30 14:40:09 -07001007
Dmitriy Ivanovcb0443c2015-03-16 14:15:46 -07001008 // Child and parent calls are made in the order they were registered.
1009 if (pid == 0) {
Dmitriy Ivanovea295f62014-11-20 20:47:02 -08001010 ASSERT_EQ(12, g_atfork_child_calls);
Dmitriy Ivanovcb0443c2015-03-16 14:15:46 -07001011 _exit(0);
1012 }
Dmitriy Ivanovea295f62014-11-20 20:47:02 -08001013 ASSERT_EQ(12, g_atfork_parent_calls);
Elliott Hughesc3f11402013-10-30 14:40:09 -07001014
Dmitriy Ivanovcb0443c2015-03-16 14:15:46 -07001015 // Prepare calls are made in the reverse order.
Dmitriy Ivanovea295f62014-11-20 20:47:02 -08001016 ASSERT_EQ(21, g_atfork_prepare_calls);
1017 int status;
1018 ASSERT_EQ(pid, waitpid(pid, &status, 0));
1019}
1020
Elliott Hughesc3f11402013-10-30 14:40:09 -07001021TEST(pthread, pthread_attr_getscope) {
1022 pthread_attr_t attr;
1023 ASSERT_EQ(0, pthread_attr_init(&attr));
1024
1025 int scope;
1026 ASSERT_EQ(0, pthread_attr_getscope(&attr, &scope));
1027 ASSERT_EQ(PTHREAD_SCOPE_SYSTEM, scope);
1028}
Narayan Kamath51e6cb32014-03-03 15:38:51 +00001029
1030TEST(pthread, pthread_condattr_init) {
1031 pthread_condattr_t attr;
1032 pthread_condattr_init(&attr);
1033
1034 clockid_t clock;
1035 ASSERT_EQ(0, pthread_condattr_getclock(&attr, &clock));
1036 ASSERT_EQ(CLOCK_REALTIME, clock);
1037
1038 int pshared;
1039 ASSERT_EQ(0, pthread_condattr_getpshared(&attr, &pshared));
1040 ASSERT_EQ(PTHREAD_PROCESS_PRIVATE, pshared);
1041}
1042
1043TEST(pthread, pthread_condattr_setclock) {
1044 pthread_condattr_t attr;
1045 pthread_condattr_init(&attr);
1046
1047 ASSERT_EQ(0, pthread_condattr_setclock(&attr, CLOCK_REALTIME));
1048 clockid_t clock;
1049 ASSERT_EQ(0, pthread_condattr_getclock(&attr, &clock));
1050 ASSERT_EQ(CLOCK_REALTIME, clock);
1051
1052 ASSERT_EQ(0, pthread_condattr_setclock(&attr, CLOCK_MONOTONIC));
1053 ASSERT_EQ(0, pthread_condattr_getclock(&attr, &clock));
1054 ASSERT_EQ(CLOCK_MONOTONIC, clock);
1055
1056 ASSERT_EQ(EINVAL, pthread_condattr_setclock(&attr, CLOCK_PROCESS_CPUTIME_ID));
1057}
1058
1059TEST(pthread, pthread_cond_broadcast__preserves_condattr_flags) {
Yabin Cui32651b82015-03-13 20:30:00 -07001060#if defined(__BIONIC__)
Narayan Kamath51e6cb32014-03-03 15:38:51 +00001061 pthread_condattr_t attr;
1062 pthread_condattr_init(&attr);
1063
1064 ASSERT_EQ(0, pthread_condattr_setclock(&attr, CLOCK_MONOTONIC));
1065 ASSERT_EQ(0, pthread_condattr_setpshared(&attr, PTHREAD_PROCESS_SHARED));
1066
1067 pthread_cond_t cond_var;
1068 ASSERT_EQ(0, pthread_cond_init(&cond_var, &attr));
1069
1070 ASSERT_EQ(0, pthread_cond_signal(&cond_var));
1071 ASSERT_EQ(0, pthread_cond_broadcast(&cond_var));
1072
Yabin Cui32651b82015-03-13 20:30:00 -07001073 attr = static_cast<pthread_condattr_t>(*reinterpret_cast<uint32_t*>(cond_var.__private));
Narayan Kamath51e6cb32014-03-03 15:38:51 +00001074 clockid_t clock;
1075 ASSERT_EQ(0, pthread_condattr_getclock(&attr, &clock));
1076 ASSERT_EQ(CLOCK_MONOTONIC, clock);
1077 int pshared;
1078 ASSERT_EQ(0, pthread_condattr_getpshared(&attr, &pshared));
1079 ASSERT_EQ(PTHREAD_PROCESS_SHARED, pshared);
Yabin Cui32651b82015-03-13 20:30:00 -07001080#else // !defined(__BIONIC__)
1081 GTEST_LOG_(INFO) << "This tests a bionic implementation detail.\n";
1082#endif // !defined(__BIONIC__)
1083}
1084
1085class pthread_CondWakeupTest : public ::testing::Test {
1086 protected:
1087 pthread_mutex_t mutex;
1088 pthread_cond_t cond;
1089
1090 enum Progress {
1091 INITIALIZED,
1092 WAITING,
1093 SIGNALED,
1094 FINISHED,
1095 };
1096 std::atomic<Progress> progress;
1097 pthread_t thread;
1098
1099 protected:
1100 virtual void SetUp() {
1101 ASSERT_EQ(0, pthread_mutex_init(&mutex, NULL));
1102 ASSERT_EQ(0, pthread_cond_init(&cond, NULL));
1103 progress = INITIALIZED;
1104 ASSERT_EQ(0,
1105 pthread_create(&thread, NULL, reinterpret_cast<void* (*)(void*)>(WaitThreadFn), this));
1106 }
1107
1108 virtual void TearDown() {
1109 ASSERT_EQ(0, pthread_join(thread, NULL));
1110 ASSERT_EQ(FINISHED, progress);
1111 ASSERT_EQ(0, pthread_cond_destroy(&cond));
1112 ASSERT_EQ(0, pthread_mutex_destroy(&mutex));
1113 }
1114
1115 void SleepUntilProgress(Progress expected_progress) {
1116 while (progress != expected_progress) {
1117 usleep(5000);
1118 }
1119 usleep(5000);
1120 }
1121
1122 private:
1123 static void WaitThreadFn(pthread_CondWakeupTest* test) {
1124 ASSERT_EQ(0, pthread_mutex_lock(&test->mutex));
1125 test->progress = WAITING;
1126 while (test->progress == WAITING) {
1127 ASSERT_EQ(0, pthread_cond_wait(&test->cond, &test->mutex));
1128 }
1129 ASSERT_EQ(SIGNALED, test->progress);
1130 test->progress = FINISHED;
1131 ASSERT_EQ(0, pthread_mutex_unlock(&test->mutex));
1132 }
1133};
1134
1135TEST_F(pthread_CondWakeupTest, signal) {
1136 SleepUntilProgress(WAITING);
1137 progress = SIGNALED;
1138 pthread_cond_signal(&cond);
1139}
1140
1141TEST_F(pthread_CondWakeupTest, broadcast) {
1142 SleepUntilProgress(WAITING);
1143 progress = SIGNALED;
1144 pthread_cond_broadcast(&cond);
Narayan Kamath51e6cb32014-03-03 15:38:51 +00001145}
Elliott Hughes0e714a52014-03-03 16:42:47 -08001146
1147TEST(pthread, pthread_mutex_timedlock) {
1148 pthread_mutex_t m;
1149 ASSERT_EQ(0, pthread_mutex_init(&m, NULL));
1150
1151 // If the mutex is already locked, pthread_mutex_timedlock should time out.
1152 ASSERT_EQ(0, pthread_mutex_lock(&m));
1153
1154 timespec ts;
1155 ASSERT_EQ(0, clock_gettime(CLOCK_REALTIME, &ts));
1156 ts.tv_nsec += 1;
1157 ASSERT_EQ(ETIMEDOUT, pthread_mutex_timedlock(&m, &ts));
1158
1159 // If the mutex is unlocked, pthread_mutex_timedlock should succeed.
1160 ASSERT_EQ(0, pthread_mutex_unlock(&m));
1161
1162 ASSERT_EQ(0, clock_gettime(CLOCK_REALTIME, &ts));
1163 ts.tv_nsec += 1;
1164 ASSERT_EQ(0, pthread_mutex_timedlock(&m, &ts));
1165
1166 ASSERT_EQ(0, pthread_mutex_unlock(&m));
1167 ASSERT_EQ(0, pthread_mutex_destroy(&m));
1168}
Elliott Hughes57b7a612014-08-25 17:26:50 -07001169
1170TEST(pthread, pthread_attr_getstack__main_thread) {
1171 // This test is only meaningful for the main thread, so make sure we're running on it!
1172 ASSERT_EQ(getpid(), syscall(__NR_gettid));
1173
1174 // Get the main thread's attributes.
1175 pthread_attr_t attributes;
1176 ASSERT_EQ(0, pthread_getattr_np(pthread_self(), &attributes));
1177
1178 // Check that we correctly report that the main thread has no guard page.
1179 size_t guard_size;
1180 ASSERT_EQ(0, pthread_attr_getguardsize(&attributes, &guard_size));
1181 ASSERT_EQ(0U, guard_size); // The main thread has no guard page.
1182
1183 // Get the stack base and the stack size (both ways).
1184 void* stack_base;
1185 size_t stack_size;
1186 ASSERT_EQ(0, pthread_attr_getstack(&attributes, &stack_base, &stack_size));
1187 size_t stack_size2;
1188 ASSERT_EQ(0, pthread_attr_getstacksize(&attributes, &stack_size2));
1189
1190 // The two methods of asking for the stack size should agree.
1191 EXPECT_EQ(stack_size, stack_size2);
1192
1193 // What does /proc/self/maps' [stack] line say?
Elliott Hughes9e4ffa72014-08-27 15:32:01 -07001194 void* maps_stack_hi = NULL;
Elliott Hughes57b7a612014-08-25 17:26:50 -07001195 FILE* fp = fopen("/proc/self/maps", "r");
1196 ASSERT_TRUE(fp != NULL);
1197 char line[BUFSIZ];
1198 while (fgets(line, sizeof(line), fp) != NULL) {
1199 uintptr_t lo, hi;
1200 char name[10];
1201 sscanf(line, "%" PRIxPTR "-%" PRIxPTR " %*4s %*x %*x:%*x %*d %10s", &lo, &hi, name);
1202 if (strcmp(name, "[stack]") == 0) {
Elliott Hughes9e4ffa72014-08-27 15:32:01 -07001203 maps_stack_hi = reinterpret_cast<void*>(hi);
Elliott Hughes57b7a612014-08-25 17:26:50 -07001204 break;
1205 }
1206 }
1207 fclose(fp);
1208
Elliott Hughes9e4ffa72014-08-27 15:32:01 -07001209 // The stack size should correspond to RLIMIT_STACK.
Elliott Hughes57b7a612014-08-25 17:26:50 -07001210 rlimit rl;
Elliott Hughes9e4ffa72014-08-27 15:32:01 -07001211 ASSERT_EQ(0, getrlimit(RLIMIT_STACK, &rl));
Elliott Hughes27a9aed2014-09-04 16:09:25 -07001212 uint64_t original_rlim_cur = rl.rlim_cur;
1213#if defined(__BIONIC__)
1214 if (rl.rlim_cur == RLIM_INFINITY) {
1215 rl.rlim_cur = 8 * 1024 * 1024; // Bionic reports unlimited stacks as 8MiB.
1216 }
1217#endif
Elliott Hughes9e4ffa72014-08-27 15:32:01 -07001218 EXPECT_EQ(rl.rlim_cur, stack_size);
1219
Dmitriy Ivanovd9ff7222014-09-08 16:22:22 -07001220 auto guard = make_scope_guard([&rl, original_rlim_cur]() {
Elliott Hughes27a9aed2014-09-04 16:09:25 -07001221 rl.rlim_cur = original_rlim_cur;
1222 ASSERT_EQ(0, setrlimit(RLIMIT_STACK, &rl));
1223 });
1224
Elliott Hughes9e4ffa72014-08-27 15:32:01 -07001225 // The high address of the /proc/self/maps [stack] region should equal stack_base + stack_size.
1226 // Remember that the stack grows down (and is mapped in on demand), so the low address of the
1227 // region isn't very interesting.
1228 EXPECT_EQ(maps_stack_hi, reinterpret_cast<uint8_t*>(stack_base) + stack_size);
1229
1230 //
1231 // What if RLIMIT_STACK is smaller than the stack's current extent?
1232 //
Elliott Hughes57b7a612014-08-25 17:26:50 -07001233 rl.rlim_cur = rl.rlim_max = 1024; // 1KiB. We know the stack must be at least a page already.
1234 rl.rlim_max = RLIM_INFINITY;
1235 ASSERT_EQ(0, setrlimit(RLIMIT_STACK, &rl));
1236
1237 ASSERT_EQ(0, pthread_getattr_np(pthread_self(), &attributes));
1238 ASSERT_EQ(0, pthread_attr_getstack(&attributes, &stack_base, &stack_size));
1239 ASSERT_EQ(0, pthread_attr_getstacksize(&attributes, &stack_size2));
1240
1241 EXPECT_EQ(stack_size, stack_size2);
1242 ASSERT_EQ(1024U, stack_size);
1243
1244 //
Elliott Hughes9e4ffa72014-08-27 15:32:01 -07001245 // What if RLIMIT_STACK isn't a whole number of pages?
Elliott Hughes57b7a612014-08-25 17:26:50 -07001246 //
1247 rl.rlim_cur = rl.rlim_max = 6666; // Not a whole number of pages.
1248 rl.rlim_max = RLIM_INFINITY;
1249 ASSERT_EQ(0, setrlimit(RLIMIT_STACK, &rl));
1250
1251 ASSERT_EQ(0, pthread_getattr_np(pthread_self(), &attributes));
1252 ASSERT_EQ(0, pthread_attr_getstack(&attributes, &stack_base, &stack_size));
1253 ASSERT_EQ(0, pthread_attr_getstacksize(&attributes, &stack_size2));
1254
1255 EXPECT_EQ(stack_size, stack_size2);
1256 ASSERT_EQ(6666U, stack_size);
1257}
Elliott Hughes8fb639c2014-09-12 14:43:07 -07001258
Yabin Cui917d3902015-01-08 12:32:42 -08001259static void pthread_attr_getstack_18908062_helper(void*) {
1260 char local_variable;
1261 pthread_attr_t attributes;
1262 pthread_getattr_np(pthread_self(), &attributes);
1263 void* stack_base;
1264 size_t stack_size;
1265 pthread_attr_getstack(&attributes, &stack_base, &stack_size);
1266
1267 // Test whether &local_variable is in [stack_base, stack_base + stack_size).
1268 ASSERT_LE(reinterpret_cast<char*>(stack_base), &local_variable);
1269 ASSERT_LT(&local_variable, reinterpret_cast<char*>(stack_base) + stack_size);
1270}
1271
1272// Check whether something on stack is in the range of
1273// [stack_base, stack_base + stack_size). see b/18908062.
1274TEST(pthread, pthread_attr_getstack_18908062) {
1275 pthread_t t;
1276 ASSERT_EQ(0, pthread_create(&t, NULL,
1277 reinterpret_cast<void* (*)(void*)>(pthread_attr_getstack_18908062_helper),
1278 NULL));
1279 pthread_join(t, NULL);
1280}
1281
Elliott Hughes8fb639c2014-09-12 14:43:07 -07001282#if defined(__BIONIC__)
1283static void* pthread_gettid_np_helper(void* arg) {
1284 *reinterpret_cast<pid_t*>(arg) = gettid();
1285 return NULL;
1286}
1287#endif
1288
1289TEST(pthread, pthread_gettid_np) {
1290#if defined(__BIONIC__)
1291 ASSERT_EQ(gettid(), pthread_gettid_np(pthread_self()));
1292
1293 pid_t t_gettid_result;
1294 pthread_t t;
1295 pthread_create(&t, NULL, pthread_gettid_np_helper, &t_gettid_result);
1296
1297 pid_t t_pthread_gettid_np_result = pthread_gettid_np(t);
1298
Elliott Hughes34c987a2014-09-22 16:01:26 -07001299 pthread_join(t, NULL);
Elliott Hughes8fb639c2014-09-12 14:43:07 -07001300
1301 ASSERT_EQ(t_gettid_result, t_pthread_gettid_np_result);
1302#else
1303 GTEST_LOG_(INFO) << "This test does nothing.\n";
1304#endif
1305}
Elliott Hughes34c987a2014-09-22 16:01:26 -07001306
1307static size_t cleanup_counter = 0;
1308
Derek Xue41996952014-09-25 11:05:32 +01001309static void AbortCleanupRoutine(void*) {
Elliott Hughes34c987a2014-09-22 16:01:26 -07001310 abort();
1311}
1312
Derek Xue41996952014-09-25 11:05:32 +01001313static void CountCleanupRoutine(void*) {
Elliott Hughes34c987a2014-09-22 16:01:26 -07001314 ++cleanup_counter;
1315}
1316
Derek Xue41996952014-09-25 11:05:32 +01001317static void PthreadCleanupTester() {
Elliott Hughes34c987a2014-09-22 16:01:26 -07001318 pthread_cleanup_push(CountCleanupRoutine, NULL);
1319 pthread_cleanup_push(CountCleanupRoutine, NULL);
1320 pthread_cleanup_push(AbortCleanupRoutine, NULL);
1321
1322 pthread_cleanup_pop(0); // Pop the abort without executing it.
1323 pthread_cleanup_pop(1); // Pop one count while executing it.
1324 ASSERT_EQ(1U, cleanup_counter);
1325 // Exit while the other count is still on the cleanup stack.
1326 pthread_exit(NULL);
1327
1328 // Calls to pthread_cleanup_pop/pthread_cleanup_push must always be balanced.
1329 pthread_cleanup_pop(0);
1330}
1331
Derek Xue41996952014-09-25 11:05:32 +01001332static void* PthreadCleanupStartRoutine(void*) {
Elliott Hughes34c987a2014-09-22 16:01:26 -07001333 PthreadCleanupTester();
1334 return NULL;
1335}
1336
1337TEST(pthread, pthread_cleanup_push__pthread_cleanup_pop) {
1338 pthread_t t;
1339 ASSERT_EQ(0, pthread_create(&t, NULL, PthreadCleanupStartRoutine, NULL));
1340 pthread_join(t, NULL);
1341 ASSERT_EQ(2U, cleanup_counter);
1342}
Derek Xue41996952014-09-25 11:05:32 +01001343
1344TEST(pthread, PTHREAD_MUTEX_DEFAULT_is_PTHREAD_MUTEX_NORMAL) {
1345 ASSERT_EQ(PTHREAD_MUTEX_NORMAL, PTHREAD_MUTEX_DEFAULT);
1346}
1347
1348TEST(pthread, pthread_mutexattr_gettype) {
1349 pthread_mutexattr_t attr;
1350 ASSERT_EQ(0, pthread_mutexattr_init(&attr));
1351
1352 int attr_type;
1353
1354 ASSERT_EQ(0, pthread_mutexattr_settype(&attr, PTHREAD_MUTEX_NORMAL));
1355 ASSERT_EQ(0, pthread_mutexattr_gettype(&attr, &attr_type));
1356 ASSERT_EQ(PTHREAD_MUTEX_NORMAL, attr_type);
1357
1358 ASSERT_EQ(0, pthread_mutexattr_settype(&attr, PTHREAD_MUTEX_ERRORCHECK));
1359 ASSERT_EQ(0, pthread_mutexattr_gettype(&attr, &attr_type));
1360 ASSERT_EQ(PTHREAD_MUTEX_ERRORCHECK, attr_type);
1361
1362 ASSERT_EQ(0, pthread_mutexattr_settype(&attr, PTHREAD_MUTEX_RECURSIVE));
1363 ASSERT_EQ(0, pthread_mutexattr_gettype(&attr, &attr_type));
1364 ASSERT_EQ(PTHREAD_MUTEX_RECURSIVE, attr_type);
Yabin Cui5b8e7cd2015-03-04 17:36:59 -08001365
1366 ASSERT_EQ(0, pthread_mutexattr_destroy(&attr));
1367}
1368
Yabin Cui17393b02015-03-21 15:08:25 -07001369struct PthreadMutex {
1370 pthread_mutex_t lock;
1371
1372 PthreadMutex(int mutex_type) {
1373 init(mutex_type);
1374 }
1375
1376 ~PthreadMutex() {
1377 destroy();
1378 }
1379
1380 private:
1381 void init(int mutex_type) {
1382 pthread_mutexattr_t attr;
1383 ASSERT_EQ(0, pthread_mutexattr_init(&attr));
1384 ASSERT_EQ(0, pthread_mutexattr_settype(&attr, mutex_type));
1385 ASSERT_EQ(0, pthread_mutex_init(&lock, &attr));
1386 ASSERT_EQ(0, pthread_mutexattr_destroy(&attr));
1387 }
1388
1389 void destroy() {
1390 ASSERT_EQ(0, pthread_mutex_destroy(&lock));
1391 }
1392
1393 DISALLOW_COPY_AND_ASSIGN(PthreadMutex);
1394};
Derek Xue41996952014-09-25 11:05:32 +01001395
1396TEST(pthread, pthread_mutex_lock_NORMAL) {
Yabin Cui17393b02015-03-21 15:08:25 -07001397 PthreadMutex m(PTHREAD_MUTEX_NORMAL);
Derek Xue41996952014-09-25 11:05:32 +01001398
Yabin Cui17393b02015-03-21 15:08:25 -07001399 ASSERT_EQ(0, pthread_mutex_lock(&m.lock));
1400 ASSERT_EQ(0, pthread_mutex_unlock(&m.lock));
Derek Xue41996952014-09-25 11:05:32 +01001401}
1402
1403TEST(pthread, pthread_mutex_lock_ERRORCHECK) {
Yabin Cui17393b02015-03-21 15:08:25 -07001404 PthreadMutex m(PTHREAD_MUTEX_ERRORCHECK);
Derek Xue41996952014-09-25 11:05:32 +01001405
Yabin Cui17393b02015-03-21 15:08:25 -07001406 ASSERT_EQ(0, pthread_mutex_lock(&m.lock));
1407 ASSERT_EQ(EDEADLK, pthread_mutex_lock(&m.lock));
1408 ASSERT_EQ(0, pthread_mutex_unlock(&m.lock));
1409 ASSERT_EQ(0, pthread_mutex_trylock(&m.lock));
1410 ASSERT_EQ(EBUSY, pthread_mutex_trylock(&m.lock));
1411 ASSERT_EQ(0, pthread_mutex_unlock(&m.lock));
1412 ASSERT_EQ(EPERM, pthread_mutex_unlock(&m.lock));
Derek Xue41996952014-09-25 11:05:32 +01001413}
1414
1415TEST(pthread, pthread_mutex_lock_RECURSIVE) {
Yabin Cui17393b02015-03-21 15:08:25 -07001416 PthreadMutex m(PTHREAD_MUTEX_RECURSIVE);
Derek Xue41996952014-09-25 11:05:32 +01001417
Yabin Cui17393b02015-03-21 15:08:25 -07001418 ASSERT_EQ(0, pthread_mutex_lock(&m.lock));
1419 ASSERT_EQ(0, pthread_mutex_lock(&m.lock));
1420 ASSERT_EQ(0, pthread_mutex_unlock(&m.lock));
1421 ASSERT_EQ(0, pthread_mutex_unlock(&m.lock));
1422 ASSERT_EQ(0, pthread_mutex_trylock(&m.lock));
1423 ASSERT_EQ(0, pthread_mutex_unlock(&m.lock));
1424 ASSERT_EQ(EPERM, pthread_mutex_unlock(&m.lock));
1425}
1426
1427TEST(pthread, pthread_mutex_init_same_as_static_initializers) {
1428 pthread_mutex_t lock_normal = PTHREAD_MUTEX_INITIALIZER;
1429 PthreadMutex m1(PTHREAD_MUTEX_NORMAL);
1430 ASSERT_EQ(0, memcmp(&lock_normal, &m1.lock, sizeof(pthread_mutex_t)));
1431 pthread_mutex_destroy(&lock_normal);
1432
1433 pthread_mutex_t lock_errorcheck = PTHREAD_ERRORCHECK_MUTEX_INITIALIZER_NP;
1434 PthreadMutex m2(PTHREAD_MUTEX_ERRORCHECK);
1435 ASSERT_EQ(0, memcmp(&lock_errorcheck, &m2.lock, sizeof(pthread_mutex_t)));
1436 pthread_mutex_destroy(&lock_errorcheck);
1437
1438 pthread_mutex_t lock_recursive = PTHREAD_RECURSIVE_MUTEX_INITIALIZER_NP;
1439 PthreadMutex m3(PTHREAD_MUTEX_RECURSIVE);
1440 ASSERT_EQ(0, memcmp(&lock_recursive, &m3.lock, sizeof(pthread_mutex_t)));
1441 ASSERT_EQ(0, pthread_mutex_destroy(&lock_recursive));
Derek Xue41996952014-09-25 11:05:32 +01001442}
Yabin Cui5b8e7cd2015-03-04 17:36:59 -08001443class MutexWakeupHelper {
1444 private:
Yabin Cui17393b02015-03-21 15:08:25 -07001445 PthreadMutex m;
Yabin Cui5b8e7cd2015-03-04 17:36:59 -08001446 enum Progress {
1447 LOCK_INITIALIZED,
1448 LOCK_WAITING,
1449 LOCK_RELEASED,
1450 LOCK_ACCESSED
1451 };
1452 std::atomic<Progress> progress;
Yabin Cuif7969852015-04-02 17:47:48 -07001453 std::atomic<pid_t> tid;
Yabin Cui5b8e7cd2015-03-04 17:36:59 -08001454
1455 static void thread_fn(MutexWakeupHelper* helper) {
Yabin Cuif7969852015-04-02 17:47:48 -07001456 helper->tid = gettid();
Yabin Cui5b8e7cd2015-03-04 17:36:59 -08001457 ASSERT_EQ(LOCK_INITIALIZED, helper->progress);
1458 helper->progress = LOCK_WAITING;
1459
Yabin Cui17393b02015-03-21 15:08:25 -07001460 ASSERT_EQ(0, pthread_mutex_lock(&helper->m.lock));
Yabin Cui5b8e7cd2015-03-04 17:36:59 -08001461 ASSERT_EQ(LOCK_RELEASED, helper->progress);
Yabin Cui17393b02015-03-21 15:08:25 -07001462 ASSERT_EQ(0, pthread_mutex_unlock(&helper->m.lock));
Yabin Cui5b8e7cd2015-03-04 17:36:59 -08001463
1464 helper->progress = LOCK_ACCESSED;
1465 }
1466
1467 public:
Yabin Cui17393b02015-03-21 15:08:25 -07001468 MutexWakeupHelper(int mutex_type) : m(mutex_type) {
1469 }
1470
1471 void test() {
1472 ASSERT_EQ(0, pthread_mutex_lock(&m.lock));
Yabin Cui5b8e7cd2015-03-04 17:36:59 -08001473 progress = LOCK_INITIALIZED;
Yabin Cuif7969852015-04-02 17:47:48 -07001474 tid = 0;
Yabin Cui5b8e7cd2015-03-04 17:36:59 -08001475
1476 pthread_t thread;
1477 ASSERT_EQ(0, pthread_create(&thread, NULL,
1478 reinterpret_cast<void* (*)(void*)>(MutexWakeupHelper::thread_fn), this));
1479
Yabin Cuif7969852015-04-02 17:47:48 -07001480 WaitUntilThreadSleep(tid);
1481 ASSERT_EQ(LOCK_WAITING, progress);
1482
Yabin Cui5b8e7cd2015-03-04 17:36:59 -08001483 progress = LOCK_RELEASED;
Yabin Cui17393b02015-03-21 15:08:25 -07001484 ASSERT_EQ(0, pthread_mutex_unlock(&m.lock));
Yabin Cui5b8e7cd2015-03-04 17:36:59 -08001485
1486 ASSERT_EQ(0, pthread_join(thread, NULL));
1487 ASSERT_EQ(LOCK_ACCESSED, progress);
Yabin Cui5b8e7cd2015-03-04 17:36:59 -08001488 }
1489};
1490
1491TEST(pthread, pthread_mutex_NORMAL_wakeup) {
Yabin Cui17393b02015-03-21 15:08:25 -07001492 MutexWakeupHelper helper(PTHREAD_MUTEX_NORMAL);
1493 helper.test();
Yabin Cui5b8e7cd2015-03-04 17:36:59 -08001494}
1495
1496TEST(pthread, pthread_mutex_ERRORCHECK_wakeup) {
Yabin Cui17393b02015-03-21 15:08:25 -07001497 MutexWakeupHelper helper(PTHREAD_MUTEX_ERRORCHECK);
1498 helper.test();
Yabin Cui5b8e7cd2015-03-04 17:36:59 -08001499}
1500
1501TEST(pthread, pthread_mutex_RECURSIVE_wakeup) {
Yabin Cui17393b02015-03-21 15:08:25 -07001502 MutexWakeupHelper helper(PTHREAD_MUTEX_RECURSIVE);
1503 helper.test();
Yabin Cui5b8e7cd2015-03-04 17:36:59 -08001504}
1505
Yabin Cui140f3672015-02-03 10:32:00 -08001506TEST(pthread, pthread_mutex_owner_tid_limit) {
Yabin Cuie69c2452015-02-13 16:21:25 -08001507#if defined(__BIONIC__) && !defined(__LP64__)
Yabin Cui140f3672015-02-03 10:32:00 -08001508 FILE* fp = fopen("/proc/sys/kernel/pid_max", "r");
1509 ASSERT_TRUE(fp != NULL);
1510 long pid_max;
1511 ASSERT_EQ(1, fscanf(fp, "%ld", &pid_max));
1512 fclose(fp);
Yabin Cuie69c2452015-02-13 16:21:25 -08001513 // Bionic's pthread_mutex implementation on 32-bit devices uses 16 bits to represent owner tid.
Yabin Cui140f3672015-02-03 10:32:00 -08001514 ASSERT_LE(pid_max, 65536);
Yabin Cuie69c2452015-02-13 16:21:25 -08001515#else
1516 GTEST_LOG_(INFO) << "This test does nothing as 32-bit tid is supported by pthread_mutex.\n";
1517#endif
Yabin Cui140f3672015-02-03 10:32:00 -08001518}
Yabin Cuib5845722015-03-16 22:46:42 -07001519
1520class StrictAlignmentAllocator {
1521 public:
1522 void* allocate(size_t size, size_t alignment) {
1523 char* p = new char[size + alignment * 2];
1524 allocated_array.push_back(p);
1525 while (!is_strict_aligned(p, alignment)) {
1526 ++p;
1527 }
1528 return p;
1529 }
1530
1531 ~StrictAlignmentAllocator() {
1532 for (auto& p : allocated_array) {
1533 delete [] p;
1534 }
1535 }
1536
1537 private:
1538 bool is_strict_aligned(char* p, size_t alignment) {
1539 return (reinterpret_cast<uintptr_t>(p) % (alignment * 2)) == alignment;
1540 }
1541
1542 std::vector<char*> allocated_array;
1543};
1544
1545TEST(pthread, pthread_types_allow_four_bytes_alignment) {
1546#if defined(__BIONIC__)
1547 // For binary compatibility with old version, we need to allow 4-byte aligned data for pthread types.
1548 StrictAlignmentAllocator allocator;
1549 pthread_mutex_t* mutex = reinterpret_cast<pthread_mutex_t*>(
1550 allocator.allocate(sizeof(pthread_mutex_t), 4));
1551 ASSERT_EQ(0, pthread_mutex_init(mutex, NULL));
1552 ASSERT_EQ(0, pthread_mutex_lock(mutex));
1553 ASSERT_EQ(0, pthread_mutex_unlock(mutex));
1554 ASSERT_EQ(0, pthread_mutex_destroy(mutex));
1555
1556 pthread_cond_t* cond = reinterpret_cast<pthread_cond_t*>(
1557 allocator.allocate(sizeof(pthread_cond_t), 4));
1558 ASSERT_EQ(0, pthread_cond_init(cond, NULL));
1559 ASSERT_EQ(0, pthread_cond_signal(cond));
1560 ASSERT_EQ(0, pthread_cond_broadcast(cond));
1561 ASSERT_EQ(0, pthread_cond_destroy(cond));
1562
1563 pthread_rwlock_t* rwlock = reinterpret_cast<pthread_rwlock_t*>(
1564 allocator.allocate(sizeof(pthread_rwlock_t), 4));
1565 ASSERT_EQ(0, pthread_rwlock_init(rwlock, NULL));
1566 ASSERT_EQ(0, pthread_rwlock_rdlock(rwlock));
1567 ASSERT_EQ(0, pthread_rwlock_unlock(rwlock));
1568 ASSERT_EQ(0, pthread_rwlock_wrlock(rwlock));
1569 ASSERT_EQ(0, pthread_rwlock_unlock(rwlock));
1570 ASSERT_EQ(0, pthread_rwlock_destroy(rwlock));
1571
1572#else
1573 GTEST_LOG_(INFO) << "This test tests bionic implementation details.";
1574#endif
1575}