4266684c99
Currently there is nothing ensuring the internal VM state of shared objects are in a coherent state and visible to other threads when the shared object is published. This CL adds a store-store memory barrier when returning from Factory methods that allocate shared JSObjects that are exposed to user JS code. For primitives, there is an additional store-store memory barrier in the shared value barrier. Bug: v8:12547 Change-Id: I4833c7ebf02cc352da9b006d2732669d6d043172 Cq-Include-Trybots: luci.v8.try:v8_linux64_tsan_isolates_rel_ng,v8_linux64_tsan_rel_ng Reviewed-on: https://chromium-review.googlesource.com/c/v8/v8/+/3819041 Commit-Queue: Shu-yu Guo <syg@chromium.org> Reviewed-by: Dominik Inführ <dinfuehr@chromium.org> Cr-Commit-Position: refs/heads/main@{#82596}
244 lines
7.6 KiB
C++
244 lines
7.6 KiB
C++
// Copyright 2022 the V8 project authors. All rights reserved.
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// Use of this source code is governed by a BSD-style license that can be
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// found in the LICENSE file.
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#include "src/base/platform/platform.h"
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#include "src/base/platform/time.h"
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#include "src/heap/parked-scope.h"
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#include "src/objects/js-atomics-synchronization-inl.h"
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#include "test/unittests/test-utils.h"
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#include "testing/gtest/include/gtest/gtest.h"
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namespace v8 {
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namespace internal {
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using JSAtomicsMutexTest = TestWithSharedIsolate;
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using JSAtomicsConditionTest = TestWithSharedIsolate;
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namespace {
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class ClientIsolateWithContextWrapper final {
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public:
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explicit ClientIsolateWithContextWrapper(v8::Isolate* shared_isolate)
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: client_isolate_wrapper_(kNoCounters, kClientIsolate, shared_isolate),
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isolate_scope_(client_isolate_wrapper_.isolate()),
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handle_scope_(client_isolate_wrapper_.isolate()),
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context_(v8::Context::New(client_isolate_wrapper_.isolate())),
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context_scope_(context_) {}
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v8::Isolate* v8_isolate() const { return client_isolate_wrapper_.isolate(); }
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Isolate* isolate() const { return reinterpret_cast<Isolate*>(v8_isolate()); }
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private:
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IsolateWrapper client_isolate_wrapper_;
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v8::Isolate::Scope isolate_scope_;
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v8::HandleScope handle_scope_;
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v8::Local<v8::Context> context_;
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v8::Context::Scope context_scope_;
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};
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class ParkingThread : public v8::base::Thread {
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public:
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explicit ParkingThread(const Options& options) : v8::base::Thread(options) {}
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void ParkedJoin(const ParkedScope& scope) {
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USE(scope);
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Join();
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}
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private:
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using base::Thread::Join;
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};
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class LockingThread final : public ParkingThread {
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public:
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LockingThread(v8::Isolate* shared_isolate, Handle<JSAtomicsMutex> mutex,
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ParkingSemaphore* sema_ready,
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ParkingSemaphore* sema_execute_start,
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ParkingSemaphore* sema_execute_complete)
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: ParkingThread(Options("LockingThread")),
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shared_isolate_(shared_isolate),
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mutex_(mutex),
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sema_ready_(sema_ready),
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sema_execute_start_(sema_execute_start),
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sema_execute_complete_(sema_execute_complete) {}
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void Run() override {
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ClientIsolateWithContextWrapper client_isolate_wrapper(shared_isolate_);
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Isolate* isolate = client_isolate_wrapper.isolate();
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sema_ready_->Signal();
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sema_execute_start_->ParkedWait(isolate->main_thread_local_isolate());
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HandleScope scope(isolate);
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JSAtomicsMutex::Lock(isolate, mutex_);
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EXPECT_TRUE(mutex_->IsHeld());
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EXPECT_TRUE(mutex_->IsCurrentThreadOwner());
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base::OS::Sleep(base::TimeDelta::FromMilliseconds(1));
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mutex_->Unlock(isolate);
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sema_execute_complete_->Signal();
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}
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private:
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v8::Isolate* shared_isolate_;
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Handle<JSAtomicsMutex> mutex_;
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ParkingSemaphore* sema_ready_;
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ParkingSemaphore* sema_execute_start_;
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ParkingSemaphore* sema_execute_complete_;
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};
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} // namespace
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TEST_F(JSAtomicsMutexTest, Contention) {
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if (!IsJSSharedMemorySupported()) return;
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FLAG_harmony_struct = true;
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v8::Isolate* shared_isolate = v8_isolate();
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ClientIsolateWithContextWrapper client_isolate_wrapper(shared_isolate);
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constexpr int kThreads = 32;
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Isolate* isolate = client_isolate_wrapper.isolate();
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Handle<JSAtomicsMutex> contended_mutex =
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isolate->factory()->NewJSAtomicsMutex();
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ParkingSemaphore sema_ready(0);
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ParkingSemaphore sema_execute_start(0);
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ParkingSemaphore sema_execute_complete(0);
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std::vector<std::unique_ptr<LockingThread>> threads;
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for (int i = 0; i < kThreads; i++) {
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auto thread = std::make_unique<LockingThread>(
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shared_isolate, contended_mutex, &sema_ready, &sema_execute_start,
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&sema_execute_complete);
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CHECK(thread->Start());
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threads.push_back(std::move(thread));
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}
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LocalIsolate* local_isolate = isolate->main_thread_local_isolate();
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for (int i = 0; i < kThreads; i++) {
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sema_ready.ParkedWait(local_isolate);
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}
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for (int i = 0; i < kThreads; i++) sema_execute_start.Signal();
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for (int i = 0; i < kThreads; i++) {
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sema_execute_complete.ParkedWait(local_isolate);
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}
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ParkedScope parked(local_isolate);
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for (auto& thread : threads) {
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thread->ParkedJoin(parked);
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}
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EXPECT_FALSE(contended_mutex->IsHeld());
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}
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namespace {
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class WaitOnConditionThread final : public ParkingThread {
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public:
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WaitOnConditionThread(v8::Isolate* shared_isolate,
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Handle<JSAtomicsMutex> mutex,
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Handle<JSAtomicsCondition> condition,
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uint32_t* waiting_threads_count,
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ParkingSemaphore* sema_ready,
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ParkingSemaphore* sema_execute_complete)
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: ParkingThread(Options("WaitOnConditionThread")),
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shared_isolate_(shared_isolate),
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mutex_(mutex),
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condition_(condition),
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waiting_threads_count_(waiting_threads_count),
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sema_ready_(sema_ready),
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sema_execute_complete_(sema_execute_complete) {}
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void Run() override {
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ClientIsolateWithContextWrapper client_isolate_wrapper(shared_isolate_);
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Isolate* isolate = client_isolate_wrapper.isolate();
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sema_ready_->Signal();
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HandleScope scope(isolate);
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JSAtomicsMutex::Lock(isolate, mutex_);
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while (keep_waiting) {
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(*waiting_threads_count_)++;
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EXPECT_TRUE(JSAtomicsCondition::WaitFor(isolate, condition_, mutex_,
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base::nullopt));
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(*waiting_threads_count_)--;
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}
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mutex_->Unlock(isolate);
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sema_execute_complete_->Signal();
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}
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bool keep_waiting = true;
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private:
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v8::Isolate* shared_isolate_;
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Handle<JSAtomicsMutex> mutex_;
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Handle<JSAtomicsCondition> condition_;
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uint32_t* waiting_threads_count_;
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ParkingSemaphore* sema_ready_;
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ParkingSemaphore* sema_execute_complete_;
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};
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} // namespace
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TEST_F(JSAtomicsConditionTest, NotifyAll) {
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if (!IsJSSharedMemorySupported()) return;
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FLAG_harmony_struct = true;
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v8::Isolate* shared_isolate = v8_isolate();
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ClientIsolateWithContextWrapper client_isolate_wrapper(shared_isolate);
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Isolate* client_isolate = client_isolate_wrapper.isolate();
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constexpr uint32_t kThreads = 32;
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Handle<JSAtomicsMutex> mutex = client_isolate->factory()->NewJSAtomicsMutex();
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Handle<JSAtomicsCondition> condition =
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client_isolate->factory()->NewJSAtomicsCondition();
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uint32_t waiting_threads_count = 0;
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ParkingSemaphore sema_ready(0);
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ParkingSemaphore sema_execute_complete(0);
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std::vector<std::unique_ptr<WaitOnConditionThread>> threads;
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for (uint32_t i = 0; i < kThreads; i++) {
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auto thread = std::make_unique<WaitOnConditionThread>(
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shared_isolate, mutex, condition, &waiting_threads_count, &sema_ready,
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&sema_execute_complete);
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CHECK(thread->Start());
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threads.push_back(std::move(thread));
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}
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LocalIsolate* local_isolate = client_isolate->main_thread_local_isolate();
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for (uint32_t i = 0; i < kThreads; i++) {
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sema_ready.ParkedWait(local_isolate);
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}
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// Wait until all threads are waiting on the condition.
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for (;;) {
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JSAtomicsMutex::LockGuard lock_guard(client_isolate, mutex);
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uint32_t count = waiting_threads_count;
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if (count == kThreads) break;
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}
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// Wake all the threads up.
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for (uint32_t i = 0; i < kThreads; i++) {
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threads[i]->keep_waiting = false;
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}
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EXPECT_EQ(kThreads,
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condition->Notify(client_isolate, JSAtomicsCondition::kAllWaiters));
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for (uint32_t i = 0; i < kThreads; i++) {
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sema_execute_complete.ParkedWait(local_isolate);
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}
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ParkedScope parked(local_isolate);
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for (auto& thread : threads) {
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thread->ParkedJoin(parked);
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}
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EXPECT_EQ(0U, waiting_threads_count);
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EXPECT_FALSE(mutex->IsHeld());
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}
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} // namespace internal
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} // namespace v8
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