6b3abe0a98
Issue b/177800357. TEST=existing test suite Change-Id: Id6b113932ab7014b8fa6c105845c5c490b60f5e8 Reviewed-on: https://dart-review.googlesource.com/c/sdk/+/181320 Commit-Queue: Alexander Aprelev <aam@google.com> Reviewed-by: Vyacheslav Egorov <vegorov@google.com>
734 lines
23 KiB
C++
734 lines
23 KiB
C++
// Copyright (c) 2012, the Dart project authors. Please see the AUTHORS file
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// for details. All rights reserved. Use of this source code is governed by a
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// BSD-style license that can be found in the LICENSE file.
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#include <map>
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#include <memory>
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#include <set>
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#include <string>
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#include "platform/globals.h"
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#include "platform/assert.h"
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#include "vm/class_finalizer.h"
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#include "vm/dart_api_impl.h"
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#include "vm/globals.h"
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#include "vm/heap/become.h"
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#include "vm/heap/heap.h"
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#include "vm/message_handler.h"
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#include "vm/object_graph.h"
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#include "vm/port.h"
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#include "vm/symbols.h"
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#include "vm/unit_test.h"
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namespace dart {
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TEST_CASE(OldGC) {
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const char* kScriptChars =
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"main() {\n"
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" return [1, 2, 3];\n"
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"}\n";
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NOT_IN_PRODUCT(FLAG_verbose_gc = true);
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Dart_Handle lib = TestCase::LoadTestScript(kScriptChars, NULL);
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Dart_Handle result = Dart_Invoke(lib, NewString("main"), 0, NULL);
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EXPECT_VALID(result);
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EXPECT(!Dart_IsNull(result));
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EXPECT(Dart_IsList(result));
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TransitionNativeToVM transition(thread);
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GCTestHelper::CollectOldSpace();
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}
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#if !defined(PRODUCT)
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TEST_CASE(OldGC_Unsync) {
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// Finalize any GC in progress as it is unsafe to change FLAG_marker_tasks
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// when incremental marking is in progress.
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{
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TransitionNativeToVM transition(thread);
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GCTestHelper::CollectAllGarbage();
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}
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FLAG_marker_tasks = 0;
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const char* kScriptChars =
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"main() {\n"
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" return [1, 2, 3];\n"
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"}\n";
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FLAG_verbose_gc = true;
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Dart_Handle lib = TestCase::LoadTestScript(kScriptChars, NULL);
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Dart_Handle result = Dart_Invoke(lib, NewString("main"), 0, NULL);
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EXPECT_VALID(result);
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EXPECT(!Dart_IsNull(result));
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EXPECT(Dart_IsList(result));
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TransitionNativeToVM transition(thread);
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GCTestHelper::CollectOldSpace();
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}
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#endif // !defined(PRODUCT)
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TEST_CASE(LargeSweep) {
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const char* kScriptChars =
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"main() {\n"
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" return List.filled(8 * 1024 * 1024, null);\n"
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"}\n";
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NOT_IN_PRODUCT(FLAG_verbose_gc = true);
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Dart_Handle lib = TestCase::LoadTestScript(kScriptChars, NULL);
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Dart_EnterScope();
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Dart_Handle result = Dart_Invoke(lib, NewString("main"), 0, NULL);
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EXPECT_VALID(result);
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EXPECT(!Dart_IsNull(result));
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EXPECT(Dart_IsList(result));
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{
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TransitionNativeToVM transition(thread);
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GCTestHelper::CollectOldSpace();
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}
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Dart_ExitScope();
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{
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TransitionNativeToVM transition(thread);
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GCTestHelper::CollectOldSpace();
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}
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}
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#ifndef PRODUCT
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static ClassPtr GetClass(const Library& lib, const char* name) {
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const Class& cls = Class::Handle(
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lib.LookupClass(String::Handle(Symbols::New(Thread::Current(), name))));
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EXPECT(!cls.IsNull()); // No ambiguity error expected.
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return cls.ptr();
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}
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TEST_CASE(ClassHeapStats) {
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const char* kScriptChars =
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"class A {\n"
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" var a;\n"
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" var b;\n"
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"}\n"
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""
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"main() {\n"
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" var x = new A();\n"
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" return new A();\n"
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"}\n";
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Dart_Handle h_lib = TestCase::LoadTestScript(kScriptChars, NULL);
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auto isolate_group = IsolateGroup::Current();
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ClassTable* class_table = isolate_group->class_table();
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{
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// GC before main so allocations during the tests don't cause unexpected GC.
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TransitionNativeToVM transition(thread);
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GCTestHelper::CollectAllGarbage();
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}
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Dart_EnterScope();
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Dart_Handle result = Dart_Invoke(h_lib, NewString("main"), 0, NULL);
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EXPECT_VALID(result);
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EXPECT(!Dart_IsNull(result));
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intptr_t cid;
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{
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TransitionNativeToVM transition(thread);
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Library& lib = Library::Handle();
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lib ^= Api::UnwrapHandle(h_lib);
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EXPECT(!lib.IsNull());
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const Class& cls = Class::Handle(GetClass(lib, "A"));
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ASSERT(!cls.IsNull());
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cid = cls.id();
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{
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// Verify preconditions: allocated twice in new space.
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CountObjectsVisitor visitor(thread, class_table->NumCids());
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HeapIterationScope iter(thread);
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iter.IterateObjects(&visitor);
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isolate_group->VisitWeakPersistentHandles(&visitor);
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EXPECT_EQ(2, visitor.new_count_[cid]);
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EXPECT_EQ(0, visitor.old_count_[cid]);
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}
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// Perform GC.
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GCTestHelper::CollectNewSpace();
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{
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// Verify postconditions: Only one survived.
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CountObjectsVisitor visitor(thread, class_table->NumCids());
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HeapIterationScope iter(thread);
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iter.IterateObjects(&visitor);
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isolate_group->VisitWeakPersistentHandles(&visitor);
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EXPECT_EQ(1, visitor.new_count_[cid]);
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EXPECT_EQ(0, visitor.old_count_[cid]);
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}
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// Perform GC. The following is heavily dependent on the behaviour
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// of the GC: Retained instance of A will be promoted.
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GCTestHelper::CollectNewSpace();
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{
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// Verify postconditions: One promoted instance.
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CountObjectsVisitor visitor(thread, class_table->NumCids());
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HeapIterationScope iter(thread);
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iter.IterateObjects(&visitor);
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isolate_group->VisitWeakPersistentHandles(&visitor);
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EXPECT_EQ(0, visitor.new_count_[cid]);
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EXPECT_EQ(1, visitor.old_count_[cid]);
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}
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// Perform a GC on new space.
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GCTestHelper::CollectNewSpace();
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{
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// Verify postconditions:
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CountObjectsVisitor visitor(thread, class_table->NumCids());
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HeapIterationScope iter(thread);
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iter.IterateObjects(&visitor);
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isolate_group->VisitWeakPersistentHandles(&visitor);
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EXPECT_EQ(0, visitor.new_count_[cid]);
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EXPECT_EQ(1, visitor.old_count_[cid]);
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}
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GCTestHelper::CollectOldSpace();
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{
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// Verify postconditions:
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CountObjectsVisitor visitor(thread, class_table->NumCids());
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HeapIterationScope iter(thread);
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iter.IterateObjects(&visitor);
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isolate_group->VisitWeakPersistentHandles(&visitor);
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EXPECT_EQ(0, visitor.new_count_[cid]);
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EXPECT_EQ(1, visitor.old_count_[cid]);
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}
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}
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// Exit scope, freeing instance.
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Dart_ExitScope();
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{
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TransitionNativeToVM transition(thread);
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// Perform GC.
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GCTestHelper::CollectOldSpace();
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{
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// Verify postconditions:
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CountObjectsVisitor visitor(thread, class_table->NumCids());
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HeapIterationScope iter(thread);
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iter.IterateObjects(&visitor);
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isolate_group->VisitWeakPersistentHandles(&visitor);
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EXPECT_EQ(0, visitor.new_count_[cid]);
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EXPECT_EQ(0, visitor.old_count_[cid]);
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}
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}
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}
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#endif // !PRODUCT
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class FindOnly : public FindObjectVisitor {
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public:
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explicit FindOnly(ObjectPtr target) : target_(target) {
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#if defined(DEBUG)
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EXPECT_GT(Thread::Current()->no_safepoint_scope_depth(), 0);
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#endif
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}
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virtual ~FindOnly() {}
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virtual bool FindObject(ObjectPtr obj) const { return obj == target_; }
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private:
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ObjectPtr target_;
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};
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class FindNothing : public FindObjectVisitor {
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public:
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FindNothing() {}
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virtual ~FindNothing() {}
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virtual bool FindObject(ObjectPtr obj) const { return false; }
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};
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ISOLATE_UNIT_TEST_CASE(FindObject) {
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Heap* heap = IsolateGroup::Current()->heap();
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Heap::Space spaces[2] = {Heap::kOld, Heap::kNew};
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for (size_t space = 0; space < ARRAY_SIZE(spaces); ++space) {
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const String& obj = String::Handle(String::New("x", spaces[space]));
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{
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HeapIterationScope iteration(thread);
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NoSafepointScope no_safepoint;
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FindOnly find_only(obj.ptr());
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EXPECT(obj.ptr() == heap->FindObject(&find_only));
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}
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}
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{
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HeapIterationScope iteration(thread);
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NoSafepointScope no_safepoint;
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FindNothing find_nothing;
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EXPECT(Object::null() == heap->FindObject(&find_nothing));
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}
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}
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ISOLATE_UNIT_TEST_CASE(IterateReadOnly) {
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const String& obj = String::Handle(String::New("x", Heap::kOld));
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// It is not safe to make the heap read-only if marking or sweeping is in
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// progress.
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GCTestHelper::WaitForGCTasks();
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Heap* heap = IsolateGroup::Current()->heap();
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EXPECT(heap->Contains(UntaggedObject::ToAddr(obj.ptr())));
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heap->WriteProtect(true);
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EXPECT(heap->Contains(UntaggedObject::ToAddr(obj.ptr())));
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heap->WriteProtect(false);
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EXPECT(heap->Contains(UntaggedObject::ToAddr(obj.ptr())));
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}
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ISOLATE_UNIT_TEST_CASE(CollectAllGarbage_DeadOldToNew) {
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Heap* heap = IsolateGroup::Current()->heap();
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heap->CollectAllGarbage();
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heap->WaitForMarkerTasks(thread); // Finalize marking to get live size.
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intptr_t size_before =
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heap->new_space()->UsedInWords() + heap->old_space()->UsedInWords();
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Array& old = Array::Handle(Array::New(1, Heap::kOld));
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Array& neu = Array::Handle(Array::New(1, Heap::kNew));
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old.SetAt(0, neu);
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old = Array::null();
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neu = Array::null();
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heap->CollectAllGarbage();
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heap->WaitForMarkerTasks(thread); // Finalize marking to get live size.
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intptr_t size_after =
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heap->new_space()->UsedInWords() + heap->old_space()->UsedInWords();
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EXPECT_EQ(size_before, size_after);
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}
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ISOLATE_UNIT_TEST_CASE(CollectAllGarbage_DeadNewToOld) {
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Heap* heap = IsolateGroup::Current()->heap();
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heap->CollectAllGarbage();
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heap->WaitForMarkerTasks(thread); // Finalize marking to get live size.
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intptr_t size_before =
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heap->new_space()->UsedInWords() + heap->old_space()->UsedInWords();
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Array& old = Array::Handle(Array::New(1, Heap::kOld));
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Array& neu = Array::Handle(Array::New(1, Heap::kNew));
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neu.SetAt(0, old);
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old = Array::null();
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neu = Array::null();
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heap->CollectAllGarbage();
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heap->WaitForMarkerTasks(thread); // Finalize marking to get live size.
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intptr_t size_after =
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heap->new_space()->UsedInWords() + heap->old_space()->UsedInWords();
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EXPECT_EQ(size_before, size_after);
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}
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ISOLATE_UNIT_TEST_CASE(CollectAllGarbage_DeadGenCycle) {
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Heap* heap = IsolateGroup::Current()->heap();
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heap->CollectAllGarbage();
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heap->WaitForMarkerTasks(thread); // Finalize marking to get live size.
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intptr_t size_before =
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heap->new_space()->UsedInWords() + heap->old_space()->UsedInWords();
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Array& old = Array::Handle(Array::New(1, Heap::kOld));
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Array& neu = Array::Handle(Array::New(1, Heap::kNew));
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neu.SetAt(0, old);
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old.SetAt(0, neu);
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old = Array::null();
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neu = Array::null();
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heap->CollectAllGarbage();
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heap->WaitForMarkerTasks(thread); // Finalize marking to get live size.
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intptr_t size_after =
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heap->new_space()->UsedInWords() + heap->old_space()->UsedInWords();
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EXPECT_EQ(size_before, size_after);
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}
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ISOLATE_UNIT_TEST_CASE(CollectAllGarbage_LiveNewToOld) {
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Heap* heap = IsolateGroup::Current()->heap();
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heap->CollectAllGarbage();
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heap->WaitForMarkerTasks(thread); // Finalize marking to get live size.
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intptr_t size_before =
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heap->new_space()->UsedInWords() + heap->old_space()->UsedInWords();
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Array& old = Array::Handle(Array::New(1, Heap::kOld));
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Array& neu = Array::Handle(Array::New(1, Heap::kNew));
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neu.SetAt(0, old);
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old = Array::null();
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heap->CollectAllGarbage();
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heap->WaitForMarkerTasks(thread); // Finalize marking to get live size.
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intptr_t size_after =
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heap->new_space()->UsedInWords() + heap->old_space()->UsedInWords();
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EXPECT(size_before < size_after);
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}
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ISOLATE_UNIT_TEST_CASE(CollectAllGarbage_LiveOldToNew) {
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Heap* heap = IsolateGroup::Current()->heap();
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heap->CollectAllGarbage();
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heap->WaitForMarkerTasks(thread); // Finalize marking to get live size.
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intptr_t size_before =
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heap->new_space()->UsedInWords() + heap->old_space()->UsedInWords();
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Array& old = Array::Handle(Array::New(1, Heap::kOld));
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Array& neu = Array::Handle(Array::New(1, Heap::kNew));
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old.SetAt(0, neu);
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neu = Array::null();
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heap->CollectAllGarbage();
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heap->WaitForMarkerTasks(thread); // Finalize marking to get live size.
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intptr_t size_after =
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heap->new_space()->UsedInWords() + heap->old_space()->UsedInWords();
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EXPECT(size_before < size_after);
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}
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ISOLATE_UNIT_TEST_CASE(CollectAllGarbage_LiveOldDeadNew) {
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Heap* heap = IsolateGroup::Current()->heap();
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heap->CollectAllGarbage();
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heap->WaitForMarkerTasks(thread); // Finalize marking to get live size.
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intptr_t size_before =
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heap->new_space()->UsedInWords() + heap->old_space()->UsedInWords();
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Array& old = Array::Handle(Array::New(1, Heap::kOld));
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Array& neu = Array::Handle(Array::New(1, Heap::kNew));
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neu = Array::null();
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old.SetAt(0, old);
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heap->CollectAllGarbage();
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heap->WaitForMarkerTasks(thread); // Finalize marking to get live size.
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intptr_t size_after =
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heap->new_space()->UsedInWords() + heap->old_space()->UsedInWords();
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EXPECT(size_before < size_after);
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}
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ISOLATE_UNIT_TEST_CASE(CollectAllGarbage_LiveNewDeadOld) {
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Heap* heap = IsolateGroup::Current()->heap();
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heap->CollectAllGarbage();
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heap->WaitForMarkerTasks(thread); // Finalize marking to get live size.
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intptr_t size_before =
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heap->new_space()->UsedInWords() + heap->old_space()->UsedInWords();
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Array& old = Array::Handle(Array::New(1, Heap::kOld));
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Array& neu = Array::Handle(Array::New(1, Heap::kNew));
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old = Array::null();
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neu.SetAt(0, neu);
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heap->CollectAllGarbage();
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heap->WaitForMarkerTasks(thread); // Finalize marking to get live size.
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intptr_t size_after =
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heap->new_space()->UsedInWords() + heap->old_space()->UsedInWords();
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EXPECT(size_before < size_after);
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}
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ISOLATE_UNIT_TEST_CASE(CollectAllGarbage_LiveNewToOldChain) {
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Heap* heap = IsolateGroup::Current()->heap();
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heap->CollectAllGarbage();
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intptr_t size_before =
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heap->new_space()->UsedInWords() + heap->old_space()->UsedInWords();
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Array& old = Array::Handle(Array::New(1, Heap::kOld));
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Array& old2 = Array::Handle(Array::New(1, Heap::kOld));
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Array& neu = Array::Handle(Array::New(1, Heap::kNew));
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old.SetAt(0, old2);
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neu.SetAt(0, old);
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old = Array::null();
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old2 = Array::null();
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heap->CollectAllGarbage();
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intptr_t size_after =
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heap->new_space()->UsedInWords() + heap->old_space()->UsedInWords();
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EXPECT(size_before < size_after);
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}
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ISOLATE_UNIT_TEST_CASE(CollectAllGarbage_LiveOldToNewChain) {
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Heap* heap = IsolateGroup::Current()->heap();
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heap->CollectAllGarbage();
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intptr_t size_before =
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heap->new_space()->UsedInWords() + heap->old_space()->UsedInWords();
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Array& old = Array::Handle(Array::New(1, Heap::kOld));
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Array& neu = Array::Handle(Array::New(1, Heap::kNew));
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Array& neu2 = Array::Handle(Array::New(1, Heap::kOld));
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neu.SetAt(0, neu2);
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old.SetAt(0, neu);
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neu = Array::null();
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neu2 = Array::null();
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heap->CollectAllGarbage();
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intptr_t size_after =
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heap->new_space()->UsedInWords() + heap->old_space()->UsedInWords();
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EXPECT(size_before < size_after);
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}
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static void NoopFinalizer(void* isolate_callback_data, void* peer) {}
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ISOLATE_UNIT_TEST_CASE(ExternalPromotion) {
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auto isolate_group = IsolateGroup::Current();
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Heap* heap = isolate_group->heap();
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heap->CollectAllGarbage();
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intptr_t size_before = kWordSize * (heap->new_space()->ExternalInWords() +
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heap->old_space()->ExternalInWords());
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Array& old = Array::Handle(Array::New(100, Heap::kOld));
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Array& neu = Array::Handle();
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for (intptr_t i = 0; i < 100; i++) {
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neu = Array::New(1, Heap::kNew);
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FinalizablePersistentHandle::New(isolate_group, neu, NULL, NoopFinalizer,
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1 * MB,
|
|
/*auto_delete=*/true);
|
|
old.SetAt(i, neu);
|
|
}
|
|
|
|
intptr_t size_middle = kWordSize * (heap->new_space()->ExternalInWords() +
|
|
heap->old_space()->ExternalInWords());
|
|
EXPECT_EQ(size_before + 100 * MB, size_middle);
|
|
|
|
old = Array::null();
|
|
neu = Array::null();
|
|
|
|
heap->CollectAllGarbage();
|
|
|
|
intptr_t size_after = kWordSize * (heap->new_space()->ExternalInWords() +
|
|
heap->old_space()->ExternalInWords());
|
|
|
|
EXPECT_EQ(size_before, size_after);
|
|
}
|
|
|
|
#if !defined(PRODUCT)
|
|
class HeapTestHelper {
|
|
public:
|
|
static void Scavenge(Thread* thread) {
|
|
thread->heap()->CollectNewSpaceGarbage(thread, Heap::kDebugging);
|
|
}
|
|
static void MarkSweep(Thread* thread) {
|
|
thread->heap()->CollectOldSpaceGarbage(thread, Heap::kMarkSweep,
|
|
Heap::kDebugging);
|
|
thread->heap()->WaitForMarkerTasks(thread);
|
|
thread->heap()->WaitForSweeperTasks(thread);
|
|
}
|
|
};
|
|
|
|
class MergeIsolatesHeapsHandler : public MessageHandler {
|
|
public:
|
|
explicit MergeIsolatesHeapsHandler(Isolate* owner)
|
|
: msg_(Utils::CreateCStringUniquePtr(nullptr)), owner_(owner) {}
|
|
|
|
const char* name() const { return "merge-isolates-heaps-handler"; }
|
|
|
|
~MergeIsolatesHeapsHandler() { PortMap::ClosePorts(this); }
|
|
|
|
MessageStatus HandleMessage(std::unique_ptr<Message> message) {
|
|
// Parse the message.
|
|
Object& response_obj = Object::Handle();
|
|
if (message->IsRaw()) {
|
|
response_obj = message->raw_obj();
|
|
} else if (message->IsBequest()) {
|
|
Bequest* bequest = message->bequest();
|
|
PersistentHandle* handle = bequest->handle();
|
|
// Object in the receiving isolate's heap.
|
|
EXPECT(isolate()->group()->heap()->Contains(
|
|
UntaggedObject::ToAddr(handle->ptr())));
|
|
response_obj = handle->ptr();
|
|
isolate()->group()->api_state()->FreePersistentHandle(handle);
|
|
} else {
|
|
Thread* thread = Thread::Current();
|
|
MessageSnapshotReader reader(message.get(), thread);
|
|
response_obj = reader.ReadObject();
|
|
}
|
|
if (response_obj.IsString()) {
|
|
String& response = String::Handle();
|
|
response ^= response_obj.ptr();
|
|
msg_.reset(Utils::StrDup(response.ToCString()));
|
|
} else {
|
|
ASSERT(response_obj.IsArray());
|
|
Array& response_array = Array::Handle();
|
|
response_array ^= response_obj.ptr();
|
|
ASSERT(response_array.Length() == 1);
|
|
ExternalTypedData& response = ExternalTypedData::Handle();
|
|
response ^= response_array.At(0);
|
|
msg_.reset(Utils::StrDup(reinterpret_cast<char*>(response.DataAddr(0))));
|
|
}
|
|
|
|
return kOK;
|
|
}
|
|
|
|
const char* msg() const { return msg_.get(); }
|
|
|
|
virtual Isolate* isolate() const { return owner_; }
|
|
|
|
private:
|
|
Utils::CStringUniquePtr msg_;
|
|
Isolate* owner_;
|
|
};
|
|
|
|
VM_UNIT_TEST_CASE(CleanupBequestNeverReceived) {
|
|
// This test uses features from isolate groups
|
|
IsolateGroup::ForceEnableIsolateGroupsForTesting();
|
|
|
|
const char* TEST_MESSAGE = "hello, world";
|
|
Dart_Isolate parent = TestCase::CreateTestIsolate("parent");
|
|
EXPECT_EQ(parent, Dart_CurrentIsolate());
|
|
{
|
|
MergeIsolatesHeapsHandler handler(Isolate::Current());
|
|
Dart_Port port_id = PortMap::CreatePort(&handler);
|
|
EXPECT_EQ(PortMap::GetIsolate(port_id), Isolate::Current());
|
|
Dart_ExitIsolate();
|
|
|
|
Dart_Isolate worker = TestCase::CreateTestIsolateInGroup("worker", parent);
|
|
EXPECT_EQ(worker, Dart_CurrentIsolate());
|
|
{
|
|
Thread* thread = Thread::Current();
|
|
TransitionNativeToVM transition(thread);
|
|
StackZone zone(thread);
|
|
HANDLESCOPE(thread);
|
|
|
|
String& string = String::Handle(String::New(TEST_MESSAGE));
|
|
PersistentHandle* handle =
|
|
Isolate::Current()->group()->api_state()->AllocatePersistentHandle();
|
|
handle->set_ptr(string.ptr());
|
|
|
|
reinterpret_cast<Isolate*>(worker)->bequeath(
|
|
std::unique_ptr<Bequest>(new Bequest(handle, port_id)));
|
|
}
|
|
}
|
|
Dart_ShutdownIsolate();
|
|
Dart_EnterIsolate(parent);
|
|
Dart_ShutdownIsolate();
|
|
}
|
|
|
|
VM_UNIT_TEST_CASE(ReceivesSendAndExitMessage) {
|
|
// This test uses features from isolate groups
|
|
IsolateGroup::ForceEnableIsolateGroupsForTesting();
|
|
|
|
const char* TEST_MESSAGE = "hello, world";
|
|
Dart_Isolate parent = TestCase::CreateTestIsolate("parent");
|
|
EXPECT_EQ(parent, Dart_CurrentIsolate());
|
|
MergeIsolatesHeapsHandler handler(Isolate::Current());
|
|
Dart_Port port_id = PortMap::CreatePort(&handler);
|
|
EXPECT_EQ(PortMap::GetIsolate(port_id), Isolate::Current());
|
|
Dart_ExitIsolate();
|
|
|
|
Dart_Isolate worker = TestCase::CreateTestIsolateInGroup("worker", parent);
|
|
EXPECT_EQ(worker, Dart_CurrentIsolate());
|
|
{
|
|
Thread* thread = Thread::Current();
|
|
TransitionNativeToVM transition(thread);
|
|
StackZone zone(thread);
|
|
HANDLESCOPE(thread);
|
|
|
|
String& string = String::Handle(String::New(TEST_MESSAGE));
|
|
|
|
PersistentHandle* handle =
|
|
Isolate::Current()->group()->api_state()->AllocatePersistentHandle();
|
|
handle->set_ptr(string.ptr());
|
|
|
|
reinterpret_cast<Isolate*>(worker)->bequeath(
|
|
std::unique_ptr<Bequest>(new Bequest(handle, port_id)));
|
|
}
|
|
|
|
Dart_ShutdownIsolate();
|
|
Dart_EnterIsolate(parent);
|
|
{
|
|
Thread* thread = Thread::Current();
|
|
TransitionNativeToVM transition(thread);
|
|
StackZone zone(thread);
|
|
HANDLESCOPE(thread);
|
|
|
|
EXPECT_EQ(MessageHandler::kOK, handler.HandleNextMessage());
|
|
}
|
|
EXPECT_STREQ(handler.msg(), TEST_MESSAGE);
|
|
Dart_ShutdownIsolate();
|
|
}
|
|
|
|
ISOLATE_UNIT_TEST_CASE(ExternalAllocationStats) {
|
|
auto isolate_group = thread->isolate_group();
|
|
Heap* heap = isolate_group->heap();
|
|
|
|
Array& old = Array::Handle(Array::New(100, Heap::kOld));
|
|
Array& neu = Array::Handle();
|
|
for (intptr_t i = 0; i < 100; i++) {
|
|
neu = Array::New(1, Heap::kNew);
|
|
FinalizablePersistentHandle::New(isolate_group, neu, NULL, NoopFinalizer,
|
|
1 * MB,
|
|
/*auto_delete=*/true);
|
|
old.SetAt(i, neu);
|
|
|
|
if ((i % 4) == 0) {
|
|
HeapTestHelper::MarkSweep(thread);
|
|
} else {
|
|
HeapTestHelper::Scavenge(thread);
|
|
}
|
|
|
|
CountObjectsVisitor visitor(thread,
|
|
isolate_group->class_table()->NumCids());
|
|
HeapIterationScope iter(thread);
|
|
iter.IterateObjects(&visitor);
|
|
isolate_group->VisitWeakPersistentHandles(&visitor);
|
|
EXPECT_LE(visitor.old_external_size_[kArrayCid],
|
|
heap->old_space()->ExternalInWords() * kWordSize);
|
|
EXPECT_LE(visitor.new_external_size_[kArrayCid],
|
|
heap->new_space()->ExternalInWords() * kWordSize);
|
|
}
|
|
}
|
|
#endif // !defined(PRODUCT)
|
|
|
|
ISOLATE_UNIT_TEST_CASE(ArrayTruncationRaces) {
|
|
// Alternate between allocating new lists and truncating.
|
|
// For each list, the life cycle is
|
|
// 1) the list is allocated and filled with some elements
|
|
// 2) kNumLists other lists are allocated
|
|
// 3) the list's backing store is truncated; the list becomes unreachable
|
|
// 4) kNumLists other lists are allocated
|
|
// 5) the backing store becomes unreachable
|
|
// The goal is to cause truncation *during* concurrent mark or sweep, by
|
|
// truncating an array that had been alive for a while and will be visited by
|
|
// a GC triggering by the allocations in step 2.
|
|
|
|
intptr_t kMaxListLength = 100;
|
|
intptr_t kNumLists = 1000;
|
|
Array& lists = Array::Handle(Array::New(kNumLists));
|
|
Array& arrays = Array::Handle(Array::New(kNumLists));
|
|
|
|
GrowableObjectArray& list = GrowableObjectArray::Handle();
|
|
Array& array = Array::Handle();
|
|
Object& element = Object::Handle();
|
|
|
|
for (intptr_t i = 0; i < kNumLists; i++) {
|
|
list = GrowableObjectArray::New(Heap::kNew);
|
|
intptr_t length = i % kMaxListLength;
|
|
for (intptr_t j = 0; j < length; j++) {
|
|
list.Add(element, Heap::kNew);
|
|
}
|
|
lists.SetAt(i, list);
|
|
}
|
|
|
|
intptr_t kTruncations = 100000;
|
|
for (intptr_t i = 0; i < kTruncations; i++) {
|
|
list ^= lists.At(i % kNumLists);
|
|
array = Array::MakeFixedLength(list);
|
|
arrays.SetAt(i % kNumLists, array);
|
|
|
|
list = GrowableObjectArray::New(Heap::kOld);
|
|
intptr_t length = i % kMaxListLength;
|
|
for (intptr_t j = 0; j < length; j++) {
|
|
list.Add(element, Heap::kOld);
|
|
}
|
|
lists.SetAt(i % kNumLists, list);
|
|
}
|
|
}
|
|
|
|
} // namespace dart
|