@@ -268,9 +268,8 @@ size_t OS::AllocateAlignment() {
}


void OS::Sleep(int milliseconds) {
useconds_t ms = static_cast<useconds_t>(milliseconds);
usleep(1000 * ms);
void OS::Sleep(TimeDelta interval) {
usleep(static_cast<useconds_t>(interval.InMicroseconds()));
}


@@ -821,8 +821,8 @@ void OS::Guard(void* address, const size_t size) {
}


void OS::Sleep(int milliseconds) {
::Sleep(milliseconds);
void OS::Sleep(TimeDelta interval) {
::Sleep(static_cast<DWORD>(interval.InMilliseconds()));
}


@@ -227,8 +227,8 @@ class OS {
// Get the Alignment guaranteed by Allocate().
static size_t AllocateAlignment();

// Sleep for a number of milliseconds.
static void Sleep(const int milliseconds);
// Sleep for a specified time interval.
static void Sleep(TimeDelta interval);

// Abort the current process.
static void Abort();
@@ -108,16 +108,32 @@ ProfilerEventsProcessor::SampleProcessingResult

void ProfilerEventsProcessor::Run() {
while (running_) {
base::ElapsedTimer timer;
timer.Start();
// Keep processing existing events until we need to do next sample.
base::TimeTicks nextSampleTime =
base::TimeTicks::HighResolutionNow() + period_;
base::TimeTicks now;
SampleProcessingResult result;
// Keep processing existing events until we need to do next sample
// or the ticks buffer is empty.
do {
if (FoundSampleForNextCodeEvent == ProcessOneSample()) {
result = ProcessOneSample();
if (result == FoundSampleForNextCodeEvent) {
// All ticks of the current last_processed_code_event_id_ are
// processed, proceed to the next code event.
ProcessCodeEvent();
}
} while (!timer.HasExpired(period_));
now = base::TimeTicks::HighResolutionNow();
} while (result != NoSamplesInQueue && now < nextSampleTime);

if (nextSampleTime > now) {
#if V8_OS_WIN
// Do not use Sleep on Windows as it is very imprecise.
// Could be up to 16ms jitter, which is unacceptable for the purpose.
while (base::TimeTicks::HighResolutionNow() < nextSampleTime) {
}
#else
base::OS::Sleep(nextSampleTime - now);
#endif
}

// Schedule next sample. sampler_ is NULL in tests.
if (sampler_) sampler_->DoSample();
@@ -48,7 +48,8 @@ void OptimizingCompilerThread::Run() {
TimerEventScope<TimerEventRecompileConcurrent> timer(isolate_);

if (FLAG_concurrent_recompilation_delay != 0) {
base::OS::Sleep(FLAG_concurrent_recompilation_delay);
base::OS::Sleep(base::TimeDelta::FromMilliseconds(
FLAG_concurrent_recompilation_delay));
}

switch (static_cast<StopFlag>(base::Acquire_Load(&stop_thread_))) {
@@ -8641,7 +8641,7 @@ RUNTIME_FUNCTION(Runtime_GetOptimizationStatus) {
sync_with_compiler_thread) {
while (function->IsInOptimizationQueue()) {
isolate->optimizing_compiler_thread()->InstallOptimizedFunctions();
base::OS::Sleep(50);
base::OS::Sleep(base::TimeDelta::FromMilliseconds(50));
}
}
if (FLAG_always_opt) {
@@ -550,7 +550,7 @@ class SamplerThread : public base::Thread {
sampler->DoSample();
}
}
base::OS::Sleep(interval_);
base::OS::Sleep(base::TimeDelta::FromMilliseconds(interval_));
}
}

@@ -15166,10 +15166,12 @@ class RegExpInterruptionThread : public v8::base::Thread {
for (regexp_interruption_data.loop_count = 0;
regexp_interruption_data.loop_count < 7;
regexp_interruption_data.loop_count++) {
v8::base::OS::Sleep(50); // Wait a bit before requesting GC.
// Wait a bit before requesting GC.
v8::base::OS::Sleep(v8::base::TimeDelta::FromMilliseconds(50));
reinterpret_cast<i::Isolate*>(isolate_)->stack_guard()->RequestGC();
}
v8::base::OS::Sleep(50); // Wait a bit before terminating.
// Wait a bit before terminating.
v8::base::OS::Sleep(v8::base::TimeDelta::FromMilliseconds(50));
v8::V8::TerminateExecution(isolate_);
}

@@ -21516,7 +21518,7 @@ class ThreadInterruptTest {
struct sigaction action;

// Ensure that we'll enter waiting condition
v8::base::OS::Sleep(100);
v8::base::OS::Sleep(v8::base::TimeDelta::FromMilliseconds(100));

// Setup signal handler
memset(&action, 0, sizeof(action));
@@ -21527,7 +21529,7 @@ class ThreadInterruptTest {
kill(getpid(), SIGCHLD);

// Ensure that if wait has returned because of error
v8::base::OS::Sleep(100);
v8::base::OS::Sleep(v8::base::TimeDelta::FromMilliseconds(100));

// Set value and signal semaphore
test_->sem_value_ = 1;
@@ -793,7 +793,7 @@ class TestApiCallbacks {
double start = v8::base::OS::TimeCurrentMillis();
double duration = 0;
while (duration < min_duration_ms_) {
v8::base::OS::Sleep(1);
v8::base::OS::Sleep(v8::base::TimeDelta::FromMilliseconds(1));
duration = v8::base::OS::TimeCurrentMillis() - start;
}
}
@@ -186,7 +186,7 @@ class LoopingJsThread : public LoopingThread {
"var j; for (var i=0; i<10000; ++i) { j = Math.sin(i); }");
}
context.Dispose();
i::OS::Sleep(1);
i::OS::Sleep(v8::base::TimeDelta::FromMilliseconds(1));
}
}
};
@@ -206,7 +206,7 @@ class LoopingNonJsThread : public LoopingThread {
SignalRunning();
while (IsRunning()) {
i = std::sin(i);
i::OS::Sleep(1);
i::OS::Sleep(v8::base::TimeDelta::FromMilliseconds(1));
}
}
};