v8/test/cctest/test-concurrent-script-context-table.cc
Dominik Inführ dc45361e53 Reland "[heap] Introduce LocalIsolate for main thread"
This is a reland of e95e1b6234

After landing https://crrev.com/c/2546682, this CL can be relanded
without changes.

Original change's description:
> [heap] Introduce LocalIsolate for main thread
>
> Add a LocalIsolate for the main thread to Isolate. This LocalIsolate is
> kept alive during the whole lifetime of the Isolate. The main thread
> LocalIsolate starts in the Running state in contrast to the background
> thread LocalIsolates (those start in Parked).
>
> Code paths in Turbofan that used to create a LocalIsolate on the main
> thread can now simply use the main thread LocalIsolate.
>
> LocalIsolate for the main thread will help in reducing differences
> between the main and background threads. The goal is that the main
> thread behaves more like a background thread.
>
> The main thread LocalIsolate should also make it simpler to share code
> between main thread and background threads by using LocalIsolate for
> both.
>
> Bug: v8:10315
> Change-Id: I7fd61d305a6fd7079e2319d75c291c1021e70018
> Reviewed-on: https://chromium-review.googlesource.com/c/v8/v8/+/2509593
> Reviewed-by: Simon Zünd <szuend@chromium.org>
> Reviewed-by: Yang Guo <yangguo@chromium.org>
> Reviewed-by: Ulan Degenbaev <ulan@chromium.org>
> Reviewed-by: Leszek Swirski <leszeks@chromium.org>
> Reviewed-by: Georg Neis <neis@chromium.org>
> Commit-Queue: Dominik Inführ <dinfuehr@chromium.org>
> Cr-Commit-Position: refs/heads/master@{#71226}

Bug: v8:10315
Change-Id: I418b1217aeac4f3c44a0aa514dea9864f8a58656
TBR: szuend@chromium.org, yangguo@chromium.org, ulan@chromium.org, leszeks@chromium.org, neis@chromium.org
Reviewed-on: https://chromium-review.googlesource.com/c/v8/v8/+/2543399
Reviewed-by: Dominik Inführ <dinfuehr@chromium.org>
Commit-Queue: Dominik Inführ <dinfuehr@chromium.org>
Cr-Commit-Position: refs/heads/master@{#71274}
2020-11-19 10:44:43 +00:00

205 lines
6.8 KiB
C++

// Copyright 2020 the V8 project authors. All rights reserved.
// Use of this source code is governed by a BSD-style license that can be
// found in the LICENSE file.
#include "src/api/api.h"
#include "src/base/platform/semaphore.h"
#include "src/handles/handles-inl.h"
#include "src/handles/local-handles-inl.h"
#include "src/handles/persistent-handles.h"
#include "src/heap/heap.h"
#include "src/heap/local-heap.h"
#include "src/heap/parked-scope.h"
#include "src/objects/contexts.h"
#include "test/cctest/cctest.h"
#include "test/cctest/heap/heap-utils.h"
namespace v8 {
namespace internal {
namespace {
std::atomic<int> g_initialized_entries;
class ScriptContextTableAccessUsedThread final : public v8::base::Thread {
public:
ScriptContextTableAccessUsedThread(
Isolate* isolate, Heap* heap, base::Semaphore* sema_started,
std::unique_ptr<PersistentHandles> ph,
Handle<ScriptContextTable> script_context_table)
: v8::base::Thread(
base::Thread::Options("ScriptContextTableAccessUsedThread")),
heap_(heap),
sema_started_(sema_started),
ph_(std::move(ph)),
script_context_table_(script_context_table) {}
void Run() override {
LocalHeap local_heap(heap_, ThreadKind::kBackground, std::move(ph_));
UnparkedScope unparked_scope(&local_heap);
LocalHandleScope scope(&local_heap);
sema_started_->Signal();
for (int i = 0; i < script_context_table_->synchronized_used(); ++i) {
Context context = script_context_table_->get_context(i);
CHECK(context.IsScriptContext());
}
}
private:
Heap* heap_;
base::Semaphore* sema_started_;
std::unique_ptr<PersistentHandles> ph_;
Handle<ScriptContextTable> script_context_table_;
};
class AccessScriptContextTableThread final : public v8::base::Thread {
public:
AccessScriptContextTableThread(Isolate* isolate, Heap* heap,
base::Semaphore* sema_started,
std::unique_ptr<PersistentHandles> ph,
Handle<NativeContext> native_context)
: v8::base::Thread(
base::Thread::Options("AccessScriptContextTableThread")),
heap_(heap),
sema_started_(sema_started),
ph_(std::move(ph)),
native_context_(native_context) {}
void Run() override {
LocalHeap local_heap(heap_, ThreadKind::kBackground, std::move(ph_));
UnparkedScope unparked_scope(&local_heap);
LocalHandleScope scope(&local_heap);
sema_started_->Signal();
for (int i = 0; i < 1000; ++i) {
// Read upper bound with relaxed semantics to not add any ordering
// constraints.
while (i >= g_initialized_entries.load(std::memory_order_relaxed)) {
}
auto script_context_table = Handle<ScriptContextTable>(
native_context_->synchronized_script_context_table(), &local_heap);
Handle<Context> context(script_context_table->get_context(i),
&local_heap);
CHECK(!context.is_null());
}
}
private:
Heap* heap_;
base::Semaphore* sema_started_;
std::unique_ptr<PersistentHandles> ph_;
Handle<NativeContext> native_context_;
};
TEST(ScriptContextTable_Extend) {
CcTest::InitializeVM();
v8::HandleScope scope(CcTest::isolate());
Isolate* isolate = CcTest::i_isolate();
Factory* factory = isolate->factory();
Handle<NativeContext> native_context = factory->NewNativeContext();
Handle<Map> script_context_map =
factory->NewMap(SCRIPT_CONTEXT_TYPE, kVariableSizeSentinel);
script_context_map->set_native_context(*native_context);
native_context->set_script_context_map(*script_context_map);
Handle<ScriptContextTable> script_context_table =
factory->NewScriptContextTable();
Handle<ScopeInfo> scope_info =
ReadOnlyRoots(isolate).global_this_binding_scope_info_handle();
for (int i = 0; i < 10; ++i) {
Handle<Context> script_context =
factory->NewScriptContext(native_context, scope_info);
script_context_table =
ScriptContextTable::Extend(script_context_table, script_context);
}
std::unique_ptr<PersistentHandles> ph = isolate->NewPersistentHandles();
Handle<ScriptContextTable> persistent_script_context_table =
ph->NewHandle(script_context_table);
base::Semaphore sema_started(0);
auto thread = std::make_unique<ScriptContextTableAccessUsedThread>(
isolate, isolate->heap(), &sema_started, std::move(ph),
persistent_script_context_table);
CHECK(thread->Start());
sema_started.Wait();
for (int i = 0; i < 100; ++i) {
Handle<Context> context =
factory->NewScriptContext(native_context, scope_info);
script_context_table =
ScriptContextTable::Extend(script_context_table, context);
}
thread->Join();
}
TEST(ScriptContextTable_AccessScriptContextTable) {
CcTest::InitializeVM();
v8::HandleScope scope(CcTest::isolate());
Isolate* isolate = CcTest::i_isolate();
Factory* factory = isolate->factory();
Handle<NativeContext> native_context = factory->NewNativeContext();
Handle<Map> script_context_map =
factory->NewMap(SCRIPT_CONTEXT_TYPE, kVariableSizeSentinel);
script_context_map->set_native_context(*native_context);
native_context->set_script_context_map(*script_context_map);
Handle<ScopeInfo> scope_info =
ReadOnlyRoots(isolate).global_this_binding_scope_info_handle();
Handle<ScriptContextTable> script_context_table =
factory->NewScriptContextTable();
Handle<Context> context =
factory->NewScriptContext(native_context, scope_info);
script_context_table =
ScriptContextTable::Extend(script_context_table, context);
int initialized_entries = 1;
g_initialized_entries.store(initialized_entries, std::memory_order_release);
native_context->set_script_context_table(*script_context_table);
std::unique_ptr<PersistentHandles> ph = isolate->NewPersistentHandles();
Handle<NativeContext> persistent_native_context =
ph->NewHandle(native_context);
base::Semaphore sema_started(0);
auto thread = std::make_unique<AccessScriptContextTableThread>(
isolate, isolate->heap(), &sema_started, std::move(ph),
persistent_native_context);
CHECK(thread->Start());
sema_started.Wait();
for (; initialized_entries < 1000; ++initialized_entries) {
Handle<Context> context =
factory->NewScriptContext(native_context, scope_info);
script_context_table =
ScriptContextTable::Extend(script_context_table, context);
native_context->synchronized_set_script_context_table(
*script_context_table);
// Update with relaxed semantics to not introduce ordering constraints.
g_initialized_entries.store(initialized_entries, std::memory_order_relaxed);
}
g_initialized_entries.store(initialized_entries, std::memory_order_relaxed);
thread->Join();
}
} // anonymous namespace
} // namespace internal
} // namespace v8