49f6f9f36d
Review URL: https://codereview.chromium.org//11428067 git-svn-id: https://dart.googlecode.com/svn/branches/bleeding_edge/dart@16199 260f80e4-7a28-3924-810f-c04153c831b5
489 lines
13 KiB
C++
489 lines
13 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 "vm/heap_trace.h"
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#include "include/dart_api.h"
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#include "vm/dart_api_state.h"
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#include "vm/debugger.h"
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#include "vm/isolate.h"
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#include "vm/object.h"
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#include "vm/object_set.h"
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#include "vm/object_store.h"
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#include "vm/os.h"
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#include "vm/stack_frame.h"
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#include "vm/unicode.h"
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namespace dart {
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DEFINE_FLAG(bool, heap_trace, false, "Enable heap tracing.");
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Dart_FileOpenCallback HeapTrace::open_callback_ = NULL;
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Dart_FileWriteCallback HeapTrace::write_callback_ = NULL;
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Dart_FileCloseCallback HeapTrace::close_callback_ = NULL;
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bool HeapTrace::is_enabled_ = false;
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class HeapTraceVisitor : public ObjectPointerVisitor {
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public:
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HeapTraceVisitor(Isolate* isolate,
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HeapTrace* heap_trace,
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ObjectSet* object_set)
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: ObjectPointerVisitor(isolate),
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heap_trace_(heap_trace),
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vm_isolate_(Dart::vm_isolate()),
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object_set_(object_set) {
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}
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void VisitPointers(RawObject** first, RawObject** last) {
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for (RawObject** current = first; current <= last; current++) {
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RawObject* raw_obj = *current;
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// We only care about objects in the heap
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// Also, since this visitor will frequently be encountering redudant
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// roots, we use an object_set to skip the duplicates.
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if (raw_obj->IsHeapObject() &&
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raw_obj != reinterpret_cast<RawObject*>(0x1) &&
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raw_obj != reinterpret_cast<RawObject*>(0xabababab) &&
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!object_set_->Contains(raw_obj) &&
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!vm_isolate_->heap()->Contains(RawObject::ToAddr(raw_obj))) {
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object_set_->Add(raw_obj);
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uword addr = RawObject::ToAddr(raw_obj);
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heap_trace_->TraceSingleRoot(addr);
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}
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}
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}
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private:
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HeapTrace* heap_trace_;
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Isolate* vm_isolate_;
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// TODO(cshapiro): replace with a sparse data structure.
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ObjectSet* object_set_;
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DISALLOW_COPY_AND_ASSIGN(HeapTraceVisitor);
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};
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class HeapTraceScopedHandleVisitor : public ObjectPointerVisitor {
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public:
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HeapTraceScopedHandleVisitor(Isolate* isolate, HeapTrace* heap_trace)
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: ObjectPointerVisitor(isolate), heap_trace_(heap_trace) {
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}
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void VisitPointers(RawObject** first, RawObject** last) {
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for (RawObject** current = first; current <= last; current++) {
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RawObject* raw_obj = *current;
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Heap* heap = isolate()->heap();
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// We only care about objects in the heap
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if (raw_obj->IsHeapObject() &&
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raw_obj != reinterpret_cast<RawObject*>(0x1) &&
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raw_obj != reinterpret_cast<RawObject*>(0xabababab) &&
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heap->Contains(RawObject::ToAddr(raw_obj))) {
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uword addr = RawObject::ToAddr(raw_obj);
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heap_trace_->TraceScopedHandle(addr);
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}
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}
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}
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private:
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HeapTrace* heap_trace_;
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DISALLOW_COPY_AND_ASSIGN(HeapTraceScopedHandleVisitor);
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};
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class HeapTraceObjectStoreVisitor : public ObjectPointerVisitor {
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public:
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HeapTraceObjectStoreVisitor(Isolate* isolate, HeapTrace* heap_trace)
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: ObjectPointerVisitor(isolate), heap_trace_(heap_trace) {
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}
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void VisitPointers(RawObject** first, RawObject** last) {
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for (RawObject** current = first; current <= last; current++) {
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RawObject* raw_obj = *current;
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// We only care about obects in the heap.
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if (raw_obj->IsHeapObject() &&
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raw_obj != reinterpret_cast<RawObject*>(0x1) &&
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raw_obj != reinterpret_cast<RawObject*>(0xabababab)) {
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uword addr = RawObject::ToAddr(raw_obj);
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heap_trace_->TraceObjectStorePointer(addr);
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}
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}
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}
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private:
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HeapTrace* heap_trace_;
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DISALLOW_COPY_AND_ASSIGN(HeapTraceObjectStoreVisitor);
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};
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class HeapTraceInitialHeapVisitor : public ObjectVisitor {
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public:
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HeapTraceInitialHeapVisitor(Isolate* isolate, HeapTrace* heap_trace)
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: ObjectVisitor(isolate), heap_trace_(heap_trace) {}
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void VisitObject(RawObject* raw_obj) {
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heap_trace_->TraceSnapshotAlloc(raw_obj, raw_obj->Size());
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}
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private:
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HeapTrace* heap_trace_;
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DISALLOW_COPY_AND_ASSIGN(HeapTraceInitialHeapVisitor);
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};
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HeapTrace::HeapTrace() : isolate_initialized_(false), output_stream_(NULL) {
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}
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HeapTrace::~HeapTrace() {
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if (isolate_initialized_) {
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(*close_callback_)(output_stream_);
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}
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}
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void HeapTrace::InitOnce(Dart_FileOpenCallback open_callback,
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Dart_FileWriteCallback write_callback,
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Dart_FileCloseCallback close_callback) {
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ASSERT(open_callback != NULL);
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ASSERT(write_callback != NULL);
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ASSERT(close_callback != NULL);
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HeapTrace::open_callback_ = open_callback;
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HeapTrace::write_callback_ = write_callback;
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HeapTrace::close_callback_ = close_callback;
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HeapTrace::is_enabled_ = true;
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}
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ObjectSet* HeapTrace::CreateEmptyObjectSet() const {
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Isolate* isolate = Isolate::Current();
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uword start, end;
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isolate->heap()->StartEndAddress(&start, &end);
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Isolate* vm_isolate = Dart::vm_isolate();
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uword vm_start, vm_end;
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vm_isolate->heap()->StartEndAddress(&vm_start, &vm_end);
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ObjectSet* allocated_set = new ObjectSet(Utils::Minimum(start, vm_start),
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Utils::Maximum(end, vm_end));
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return allocated_set;
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}
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void HeapTrace::ResizeObjectSet() {
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Isolate* isolate = Isolate::Current();
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uword start, end;
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isolate->heap()->StartEndAddress(&start, &end);
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Isolate* vm_isolate = Dart::vm_isolate();
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uword vm_start, vm_end;
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vm_isolate->heap()->StartEndAddress(&vm_start, &vm_end);
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object_set_.Resize(Utils::Minimum(start, vm_start),
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Utils::Maximum(end, vm_end));
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}
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void HeapTrace::Init(Isolate* isolate) {
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// Do not trace the VM isolate
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if (isolate == Dart::vm_isolate()) {
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return;
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}
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ASSERT(isolate_initialized_ == false);
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const char* format = "%s.htrace";
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intptr_t len = OS::SNPrint(NULL, 0, format, isolate->name());
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char* filename = new char[len + 1];
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OS::SNPrint(filename, len + 1, format, isolate->name());
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output_stream_ = (*open_callback_)(filename);
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ASSERT(output_stream_ != NULL);
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delete[] filename;
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isolate_initialized_ = true;
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HeapTraceObjectStoreVisitor object_store_visitor(isolate, this);
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isolate->object_store()->VisitObjectPointers(&object_store_visitor);
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// Visit any objects that may have been allocated during startup,
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// before we started tracing.
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HeapTraceInitialHeapVisitor heap_visitor(isolate, this);
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isolate->heap()->IterateObjects(&heap_visitor);
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TraceRoots(isolate);
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}
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// Allocation Record - 'A' (0x41)
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//
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// Format:
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// 'A'
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// uword - address of allocated object
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// uword - size of allocated object
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void HeapTrace::TraceAllocation(uword addr, intptr_t size) {
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if (isolate_initialized_) {
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{
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AllocationRecord rec(this);
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rec.Write(addr);
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rec.Write(size);
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}
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TraceRoots(Isolate::Current());
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}
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}
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// Snapshot Allocation Record - 'B' (0x41)
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//
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// Format:
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// 'B'
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// uword - address of allocated object
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// uword - size of allocated object
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void HeapTrace::TraceSnapshotAlloc(RawObject* obj, intptr_t size) {
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if (isolate_initialized_) {
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SnapshotAllocationRecord rec(this);
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rec.Write(RawObject::ToAddr(obj));
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rec.Write(static_cast<uword>(size));
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}
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}
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// Allocate Zone Handle Record - 'Z' (0x5a)
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//
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// Format:
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// 'Z'
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// uword - handle address (where the handle is pointing)
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// uword - zone address (address of the zone the handle is in)
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void HeapTrace::TraceAllocateZoneHandle(uword handle, uword zone_addr) {
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if (isolate_initialized_) {
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AllocZoneHandleRecord rec(this);
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rec.Write(handle);
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rec.Write(zone_addr);
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}
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}
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// Delete Zone Record - 'z' (0x7a)
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//
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// Format:
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// 'z'
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// uword - zone address (all the handles in that zone are now gone)
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void HeapTrace::TraceDeleteZone(Zone* zone) {
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if (isolate_initialized_) {
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DeleteZoneRecord rec(this);
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rec.Write(reinterpret_cast<uword>(zone));
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}
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}
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// Delete Scoped Hanldes Record - 's' (0x73)
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//
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// Format:
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// 's'
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void HeapTrace::TraceDeleteScopedHandles() {
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if (isolate_initialized_) {
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DeleteScopedHandlesRecord rec(this);
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}
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}
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// Copy Record - 'C' (0x43)
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//
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// Format:
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// 'C'
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// uword - old address
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// uword - new address
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void HeapTrace::TraceCopy(uword from_addr, uword to_addr) {
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if (isolate_initialized_) {
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CopyRecord rec(this);
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rec.Write(from_addr);
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rec.Write(to_addr);
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}
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}
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// Object Store Recorda - 'O'(0x4f)
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//
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// Format:
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// 'O'
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// uword - address
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void HeapTrace::TraceObjectStorePointer(uword addr) {
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if (isolate_initialized_) {
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ObjectStoreRecord rec(this);
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rec.Write(addr);
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}
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}
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// Promotion Records - 'P' (0x50)
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//
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// Format:
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// 'P'
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// uword - old address
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// uword - new address
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void HeapTrace::TracePromotion(uword old_addr, uword promoted_addr) {
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if (isolate_initialized_) {
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PromotionRecord rec(this);
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rec.Write(old_addr);
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rec.Write(promoted_addr);
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}
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}
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// Death Range Record - 'L' (0x4c)
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//
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// Format:
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// 'L'
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// uword - inclusive start address of the space being left
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// uword - exclusive end address of the space being left
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void HeapTrace::TraceDeathRange(uword inclusive_start, uword exclusive_end) {
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if (isolate_initialized_) {
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DeathRangeRecord rec(this);
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rec.Write(inclusive_start);
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rec.Write(exclusive_end);
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}
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}
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// Register Class Record - 'K' (0x4b)
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//
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// Format:
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// 'K'
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// uword - address ( the address of the class)
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void HeapTrace::TraceRegisterClass(const Class& cls) {
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if (isolate_initialized_) {
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RegisterClassRecord rec(this);
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rec.Write(RawObject::ToAddr(cls.raw()));
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}
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}
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// Scoped Handle Record - 'H' (0x48)
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//
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// Format:
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// 'H'
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// uword - adress of the scoped handle (where it is pointing)
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void HeapTrace::TraceScopedHandle(uword handle) {
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if (isolate_initialized_) {
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AllocScopedHandleRecord rec(this);
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rec.Write(handle);
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}
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}
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// Root Record - 'R' (0x52)
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//
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// Format:
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// 'R'
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// uword - address
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void HeapTrace::TraceSingleRoot(uword root_addr) {
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if (isolate_initialized_) {
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RootRecord rec(this);
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rec.Write(root_addr);
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}
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}
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// Sweep Record - 'S'
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//
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// Format:
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// 'S'
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// uword - address
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void HeapTrace::TraceSweep(uword sweept_addr) {
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if (isolate_initialized_) {
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SweepRecord rec(this);
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rec.Write(sweept_addr);
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}
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}
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// Does not output any records directly,
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// but does call TraceSingleRoot
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void HeapTrace::TraceRoots(Isolate* isolate) {
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if (isolate_initialized_) {
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ResizeObjectSet();
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HeapTraceVisitor visitor(isolate, this, &object_set_);
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HeapTraceScopedHandleVisitor handle_visitor(isolate, this);
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bool visit_prologue_weak_handles = true;
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bool validate_frames = false;
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// Visit objects in per isolate stubs.
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StubCode::VisitObjectPointers(&visitor);
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// stack
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StackFrameIterator frames_iterator(validate_frames);
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StackFrame* frame = frames_iterator.NextFrame();
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while (frame != NULL) {
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frame->VisitObjectPointers(&visitor);
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frame = frames_iterator.NextFrame();
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}
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if (isolate->api_state() != NULL) {
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isolate->api_state()->VisitObjectPointers(&visitor,
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visit_prologue_weak_handles);
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}
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// Visit the top context which is stored in the isolate.
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RawContext* top_context = isolate->top_context();
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visitor.VisitPointer(reinterpret_cast<RawObject**>(&top_context));
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// Visit the currently active IC data array.
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RawArray* ic_data_array = isolate->ic_data_array();
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visitor.VisitPointer(reinterpret_cast<RawObject**>(&ic_data_array));
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// Visit objects in the debugger.
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isolate->debugger()->VisitObjectPointers(&visitor);
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isolate->current_zone()->handles()->
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VisitUnvisitedScopedHandles(&handle_visitor);
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object_set_.FastClear();
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}
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}
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// Store Record - 'U' (0x55)
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//
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// Format:
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// 'U'
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// uword - originating object address (where a pointer is being stored)
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// uword - byte offset into origin where the pointer is being stored
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// uword - value of the pointer being stored
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void HeapTrace::TraceStoreIntoObject(uword object,
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uword field_addr,
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uword value) {
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if (isolate_initialized_) {
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// We don't care about pointers into the VM_Islate heap, so skip them.
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// There should not be any pointers /out/ of the VM isolate; so we
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// do not check object.
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if (Isolate::Current()->heap()->Contains(value)) {
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StoreRecord rec(this);
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uword slot_offset = field_addr - object;
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rec.Write(object);
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rec.Write(slot_offset);
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rec.Write(value);
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}
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}
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}
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// Mark Sweep Start Record - '{' (0x7b)
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//
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// Format:
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// '{'
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void HeapTrace::TraceMarkSweepStart() {
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if (isolate_initialized_) {
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MarkSweepStartRecord rec(this);
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}
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}
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// Mark Sweep Finish Record - '}' (0x7d)
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//
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// Format:
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// '}'
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void HeapTrace::TraceMarkSweepFinish() {
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if (isolate_initialized_) {
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MarkSweepFinishRecord rec(this);
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}
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}
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} // namespace dart
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