// Copyright (c) 2012, the Dart project authors. Please see the AUTHORS file // for details. All rights reserved. Use of this source code is governed by a // BSD-style license that can be found in the LICENSE file. #include "platform/assert.h" #include "vm/isolate.h" #include "vm/unit_test.h" #include "vm/thread.h" namespace dart { UNIT_TEST_CASE(Mutex) { // This unit test case needs a running isolate. Isolate* isolate = Isolate::Init(NULL); Mutex* mutex = new Mutex(); mutex->Lock(); EXPECT_EQ(false, mutex->TryLock()); mutex->Unlock(); EXPECT_EQ(true, mutex->TryLock()); mutex->Unlock(); { MutexLocker ml(mutex); EXPECT_EQ(false, mutex->TryLock()); } // The isolate shutdown and the destruction of the mutex are out-of-order on // purpose. isolate->Shutdown(); delete isolate; delete mutex; } UNIT_TEST_CASE(Monitor) { // This unit test case needs a running isolate. Isolate* isolate = Isolate::Init(NULL); Monitor* monitor = new Monitor(); monitor->Enter(); monitor->Exit(); const int kNumAttempts = 5; int attempts = 0; while (attempts < kNumAttempts) { MonitorLocker ml(monitor); int64_t start = OS::GetCurrentTimeMillis(); int64_t wait_time = 2017; Monitor::WaitResult wait_result = ml.Wait(wait_time); int64_t stop = OS::GetCurrentTimeMillis(); // We expect to be timing out here. EXPECT_EQ(Monitor::kTimedOut, wait_result); // Check whether this attempt falls within the exptected time limits. int64_t wakeup_time = stop - start; OS::Print("wakeup_time: %"Pd64"\n", wakeup_time); const int kAcceptableTimeJitter = 20; // Measured in milliseconds. const int kAcceptableWakeupDelay = 150; // Measured in milliseconds. if (((wait_time - kAcceptableTimeJitter) <= wakeup_time) && (wakeup_time <= (wait_time + kAcceptableWakeupDelay))) { break; } // Record the attempt. attempts++; } EXPECT_LT(attempts, kNumAttempts); // The isolate shutdown and the destruction of the mutex are out-of-order on // purpose. isolate->Shutdown(); delete isolate; delete monitor; } } // namespace dart