93f28d16c7
This is a reland of 86038ecfdc
Compared to the previous CL this one is adding a TSAN suppression
for GlobalSafepoint::EnterSafepointScope. local_heaps_mutex_ of client
isolates may be locked in any order. This would be detected by TSAN as a
potential race. Add some additional DCHECKs to compensate for that
missing test coverage.
As a cleanup this CL also removes the unused methods ContainsLocalHeap()
and ContainsAnyLocalHeap() from LocalHeap.
Original change's description:
> [heap] Optimize time to reach global safepoint
>
> Initial support for global safepoints kept it simple by entering a
> safepoint for each of them one after another. This means
> time-to-global-safepoint is the sum of all time-to-safepoint operations.
> We can improve this slightly by splitting up the safepoint iteration
> into two operations:
>
> 1) Initiate safepoint lock (locks local_heaps_mutex_, arms the barrier
> and sets SafepointRequested flag for all client threads)
> 2) Block until all runnning client threads reach a safepoint
>
> We now perform operation 1) for all clients first and only then start
> with operation 2).
>
> Bug: v8:11708
> Change-Id: Iaafd3c6d70bcf7026f722633e9250b04148b3da6
> Reviewed-on: https://chromium-review.googlesource.com/c/v8/v8/+/3310910
> Reviewed-by: Michael Lippautz <mlippautz@chromium.org>
> Commit-Queue: Dominik Inführ <dinfuehr@chromium.org>
> Cr-Commit-Position: refs/heads/main@{#78308}
Bug: v8:11708, v8:12492
Change-Id: I7087ba23c08f2d4edb9b632eef3c218fc76342e7
Reviewed-on: https://chromium-review.googlesource.com/c/v8/v8/+/3328786
Reviewed-by: Michael Lippautz <mlippautz@chromium.org>
Commit-Queue: Dominik Inführ <dinfuehr@chromium.org>
Cr-Commit-Position: refs/heads/main@{#78583}
197 lines
5.0 KiB
C++
197 lines
5.0 KiB
C++
// Copyright 2020 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/heap/local-heap.h"
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#include "src/base/platform/condition-variable.h"
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#include "src/base/platform/mutex.h"
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#include "src/heap/heap.h"
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#include "src/heap/parked-scope.h"
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#include "src/heap/safepoint.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 LocalHeapTest = TestWithIsolate;
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TEST_F(LocalHeapTest, Initialize) {
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Heap* heap = i_isolate()->heap();
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heap->safepoint()->AssertMainThreadIsOnlyThread();
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}
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TEST_F(LocalHeapTest, Current) {
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Heap* heap = i_isolate()->heap();
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CHECK_NULL(LocalHeap::Current());
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{
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LocalHeap lh(heap, ThreadKind::kMain);
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lh.SetUpMainThreadForTesting();
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CHECK_NULL(LocalHeap::Current());
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}
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CHECK_NULL(LocalHeap::Current());
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{
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LocalHeap lh(heap, ThreadKind::kMain);
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lh.SetUpMainThreadForTesting();
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CHECK_NULL(LocalHeap::Current());
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}
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CHECK_NULL(LocalHeap::Current());
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}
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namespace {
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class BackgroundThread final : public v8::base::Thread {
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public:
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explicit BackgroundThread(Heap* heap)
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: v8::base::Thread(base::Thread::Options("BackgroundThread")),
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heap_(heap) {}
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void Run() override {
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CHECK_NULL(LocalHeap::Current());
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{
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LocalHeap lh(heap_, ThreadKind::kBackground);
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CHECK_EQ(&lh, LocalHeap::Current());
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}
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CHECK_NULL(LocalHeap::Current());
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}
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Heap* heap_;
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};
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} // anonymous namespace
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TEST_F(LocalHeapTest, CurrentBackground) {
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Heap* heap = i_isolate()->heap();
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CHECK_NULL(LocalHeap::Current());
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{
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LocalHeap lh(heap, ThreadKind::kMain);
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lh.SetUpMainThreadForTesting();
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auto thread = std::make_unique<BackgroundThread>(heap);
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CHECK(thread->Start());
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CHECK_NULL(LocalHeap::Current());
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thread->Join();
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CHECK_NULL(LocalHeap::Current());
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}
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CHECK_NULL(LocalHeap::Current());
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}
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namespace {
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class GCEpilogue {
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public:
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static void Callback(void* data) {
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reinterpret_cast<GCEpilogue*>(data)->was_invoked_ = true;
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}
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void NotifyStarted() {
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base::LockGuard<base::Mutex> lock_guard(&mutex_);
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started_ = true;
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cv_.NotifyOne();
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}
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void WaitUntilStarted() {
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base::LockGuard<base::Mutex> lock_guard(&mutex_);
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while (!started_) {
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cv_.Wait(&mutex_);
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}
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}
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void RequestStop() {
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base::LockGuard<base::Mutex> lock_guard(&mutex_);
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stop_requested_ = true;
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}
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bool StopRequested() {
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base::LockGuard<base::Mutex> lock_guard(&mutex_);
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return stop_requested_;
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}
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bool WasInvoked() { return was_invoked_; }
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private:
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bool was_invoked_ = false;
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bool started_ = false;
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bool stop_requested_ = false;
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base::Mutex mutex_;
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base::ConditionVariable cv_;
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};
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class BackgroundThreadForGCEpilogue final : public v8::base::Thread {
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public:
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explicit BackgroundThreadForGCEpilogue(Heap* heap, bool parked,
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GCEpilogue* epilogue)
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: v8::base::Thread(base::Thread::Options("BackgroundThread")),
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heap_(heap),
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parked_(parked),
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epilogue_(epilogue) {}
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void Run() override {
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LocalHeap lh(heap_, ThreadKind::kBackground);
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base::Optional<UnparkedScope> unparked_scope;
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if (!parked_) {
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unparked_scope.emplace(&lh);
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}
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{
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base::Optional<UnparkedScope> nested_unparked_scope;
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if (parked_) nested_unparked_scope.emplace(&lh);
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lh.AddGCEpilogueCallback(&GCEpilogue::Callback, epilogue_);
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}
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epilogue_->NotifyStarted();
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while (!epilogue_->StopRequested()) {
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lh.Safepoint();
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}
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{
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base::Optional<UnparkedScope> nested_unparked_scope;
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if (parked_) nested_unparked_scope.emplace(&lh);
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lh.RemoveGCEpilogueCallback(&GCEpilogue::Callback, epilogue_);
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}
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}
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Heap* heap_;
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bool parked_;
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GCEpilogue* epilogue_;
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};
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} // anonymous namespace
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TEST_F(LocalHeapTest, GCEpilogue) {
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Heap* heap = i_isolate()->heap();
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LocalHeap lh(heap, ThreadKind::kMain);
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lh.SetUpMainThreadForTesting();
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std::array<GCEpilogue, 3> epilogue;
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{
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UnparkedScope unparked(&lh);
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lh.AddGCEpilogueCallback(&GCEpilogue::Callback, &epilogue[0]);
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}
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auto thread1 =
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std::make_unique<BackgroundThreadForGCEpilogue>(heap, true, &epilogue[1]);
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auto thread2 = std::make_unique<BackgroundThreadForGCEpilogue>(heap, false,
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&epilogue[2]);
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CHECK(thread1->Start());
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CHECK(thread2->Start());
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epilogue[1].WaitUntilStarted();
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epilogue[2].WaitUntilStarted();
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{
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UnparkedScope scope(&lh);
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heap->PreciseCollectAllGarbage(Heap::kNoGCFlags,
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GarbageCollectionReason::kTesting);
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}
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epilogue[1].RequestStop();
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epilogue[2].RequestStop();
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thread1->Join();
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thread2->Join();
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{
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UnparkedScope unparked(&lh);
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lh.RemoveGCEpilogueCallback(&GCEpilogue::Callback, &epilogue[0]);
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}
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for (auto& e : epilogue) {
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CHECK(e.WasInvoked());
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}
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}
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} // namespace internal
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} // namespace v8
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