4f5337a2b6
When compiling on a laptop I like to concatenate the small test files. This makes a big difference to compile times. These changes make that easier. R=ulan@chromium.org BUG= Review URL: https://codereview.chromium.org/1163803002 Cr-Commit-Position: refs/heads/master@{#28742}
342 lines
9.4 KiB
C++
342 lines
9.4 KiB
C++
// Copyright 2013 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/v8.h"
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#include "src/allocation-tracker.h"
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#include "src/frames-inl.h"
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#include "src/heap-snapshot-generator.h"
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namespace v8 {
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namespace internal {
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AllocationTraceNode::AllocationTraceNode(
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AllocationTraceTree* tree, unsigned function_info_index)
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: tree_(tree),
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function_info_index_(function_info_index),
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total_size_(0),
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allocation_count_(0),
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id_(tree->next_node_id()) {
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}
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AllocationTraceNode::~AllocationTraceNode() {
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for (int i = 0; i < children_.length(); i++) delete children_[i];
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}
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AllocationTraceNode* AllocationTraceNode::FindChild(
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unsigned function_info_index) {
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for (int i = 0; i < children_.length(); i++) {
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AllocationTraceNode* node = children_[i];
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if (node->function_info_index() == function_info_index) return node;
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}
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return NULL;
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}
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AllocationTraceNode* AllocationTraceNode::FindOrAddChild(
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unsigned function_info_index) {
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AllocationTraceNode* child = FindChild(function_info_index);
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if (child == NULL) {
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child = new AllocationTraceNode(tree_, function_info_index);
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children_.Add(child);
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}
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return child;
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}
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void AllocationTraceNode::AddAllocation(unsigned size) {
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total_size_ += size;
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++allocation_count_;
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}
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void AllocationTraceNode::Print(int indent, AllocationTracker* tracker) {
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base::OS::Print("%10u %10u %*c", total_size_, allocation_count_, indent, ' ');
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if (tracker != NULL) {
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AllocationTracker::FunctionInfo* info =
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tracker->function_info_list()[function_info_index_];
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base::OS::Print("%s #%u", info->name, id_);
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} else {
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base::OS::Print("%u #%u", function_info_index_, id_);
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}
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base::OS::Print("\n");
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indent += 2;
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for (int i = 0; i < children_.length(); i++) {
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children_[i]->Print(indent, tracker);
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}
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}
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AllocationTraceTree::AllocationTraceTree()
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: next_node_id_(1),
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root_(this, 0) {
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}
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AllocationTraceTree::~AllocationTraceTree() {
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}
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AllocationTraceNode* AllocationTraceTree::AddPathFromEnd(
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const Vector<unsigned>& path) {
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AllocationTraceNode* node = root();
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for (unsigned* entry = path.start() + path.length() - 1;
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entry != path.start() - 1;
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--entry) {
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node = node->FindOrAddChild(*entry);
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}
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return node;
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}
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void AllocationTraceTree::Print(AllocationTracker* tracker) {
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base::OS::Print("[AllocationTraceTree:]\n");
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base::OS::Print("Total size | Allocation count | Function id | id\n");
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root()->Print(0, tracker);
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}
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void AllocationTracker::DeleteUnresolvedLocation(
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UnresolvedLocation** location) {
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delete *location;
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}
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AllocationTracker::FunctionInfo::FunctionInfo()
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: name(""),
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function_id(0),
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script_name(""),
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script_id(0),
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line(-1),
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column(-1) {
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}
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void AddressToTraceMap::AddRange(Address start, int size,
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unsigned trace_node_id) {
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Address end = start + size;
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RemoveRange(start, end);
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RangeStack new_range(start, trace_node_id);
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ranges_.insert(RangeMap::value_type(end, new_range));
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}
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unsigned AddressToTraceMap::GetTraceNodeId(Address addr) {
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RangeMap::const_iterator it = ranges_.upper_bound(addr);
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if (it == ranges_.end()) return 0;
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if (it->second.start <= addr) {
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return it->second.trace_node_id;
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}
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return 0;
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}
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void AddressToTraceMap::MoveObject(Address from, Address to, int size) {
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unsigned trace_node_id = GetTraceNodeId(from);
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if (trace_node_id == 0) return;
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RemoveRange(from, from + size);
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AddRange(to, size, trace_node_id);
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}
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void AddressToTraceMap::Clear() {
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ranges_.clear();
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}
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void AddressToTraceMap::Print() {
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PrintF("[AddressToTraceMap (%" V8PRIuPTR "): \n", ranges_.size());
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for (RangeMap::iterator it = ranges_.begin(); it != ranges_.end(); ++it) {
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PrintF("[%p - %p] => %u\n", it->second.start, it->first,
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it->second.trace_node_id);
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}
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PrintF("]\n");
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}
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void AddressToTraceMap::RemoveRange(Address start, Address end) {
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RangeMap::iterator it = ranges_.upper_bound(start);
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if (it == ranges_.end()) return;
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RangeStack prev_range(0, 0);
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RangeMap::iterator to_remove_begin = it;
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if (it->second.start < start) {
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prev_range = it->second;
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}
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do {
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if (it->first > end) {
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if (it->second.start < end) {
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it->second.start = end;
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}
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break;
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}
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++it;
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}
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while (it != ranges_.end());
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ranges_.erase(to_remove_begin, it);
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if (prev_range.start != 0) {
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ranges_.insert(RangeMap::value_type(start, prev_range));
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}
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}
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void AllocationTracker::DeleteFunctionInfo(FunctionInfo** info) {
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delete *info;
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}
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AllocationTracker::AllocationTracker(
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HeapObjectsMap* ids, StringsStorage* names)
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: ids_(ids),
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names_(names),
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id_to_function_info_index_(HashMap::PointersMatch),
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info_index_for_other_state_(0) {
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FunctionInfo* info = new FunctionInfo();
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info->name = "(root)";
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function_info_list_.Add(info);
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}
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AllocationTracker::~AllocationTracker() {
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unresolved_locations_.Iterate(DeleteUnresolvedLocation);
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function_info_list_.Iterate(&DeleteFunctionInfo);
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}
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void AllocationTracker::PrepareForSerialization() {
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List<UnresolvedLocation*> copy(unresolved_locations_.length());
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copy.AddAll(unresolved_locations_);
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unresolved_locations_.Clear();
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for (int i = 0; i < copy.length(); i++) {
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copy[i]->Resolve();
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delete copy[i];
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}
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}
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void AllocationTracker::AllocationEvent(Address addr, int size) {
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DisallowHeapAllocation no_allocation;
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Heap* heap = ids_->heap();
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// Mark the new block as FreeSpace to make sure the heap is iterable
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// while we are capturing stack trace.
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heap->CreateFillerObjectAt(addr, size);
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Isolate* isolate = heap->isolate();
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int length = 0;
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StackTraceFrameIterator it(isolate);
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while (!it.done() && length < kMaxAllocationTraceLength) {
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JavaScriptFrame* frame = it.frame();
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SharedFunctionInfo* shared = frame->function()->shared();
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SnapshotObjectId id = ids_->FindOrAddEntry(
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shared->address(), shared->Size(), false);
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allocation_trace_buffer_[length++] = AddFunctionInfo(shared, id);
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it.Advance();
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}
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if (length == 0) {
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unsigned index = functionInfoIndexForVMState(isolate->current_vm_state());
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if (index != 0) {
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allocation_trace_buffer_[length++] = index;
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}
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}
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AllocationTraceNode* top_node = trace_tree_.AddPathFromEnd(
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Vector<unsigned>(allocation_trace_buffer_, length));
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top_node->AddAllocation(size);
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address_to_trace_.AddRange(addr, size, top_node->id());
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}
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static uint32_t SnapshotObjectIdHash(SnapshotObjectId id) {
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return ComputeIntegerHash(static_cast<uint32_t>(id),
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v8::internal::kZeroHashSeed);
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}
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unsigned AllocationTracker::AddFunctionInfo(SharedFunctionInfo* shared,
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SnapshotObjectId id) {
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HashMap::Entry* entry = id_to_function_info_index_.LookupOrInsert(
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reinterpret_cast<void*>(id), SnapshotObjectIdHash(id));
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if (entry->value == NULL) {
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FunctionInfo* info = new FunctionInfo();
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info->name = names_->GetFunctionName(shared->DebugName());
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info->function_id = id;
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if (shared->script()->IsScript()) {
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Script* script = Script::cast(shared->script());
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if (script->name()->IsName()) {
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Name* name = Name::cast(script->name());
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info->script_name = names_->GetName(name);
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}
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info->script_id = script->id()->value();
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// Converting start offset into line and column may cause heap
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// allocations so we postpone them until snapshot serialization.
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unresolved_locations_.Add(new UnresolvedLocation(
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script,
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shared->start_position(),
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info));
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}
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entry->value = reinterpret_cast<void*>(function_info_list_.length());
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function_info_list_.Add(info);
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}
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return static_cast<unsigned>(reinterpret_cast<intptr_t>((entry->value)));
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}
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unsigned AllocationTracker::functionInfoIndexForVMState(StateTag state) {
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if (state != OTHER) return 0;
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if (info_index_for_other_state_ == 0) {
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FunctionInfo* info = new FunctionInfo();
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info->name = "(V8 API)";
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info_index_for_other_state_ = function_info_list_.length();
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function_info_list_.Add(info);
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}
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return info_index_for_other_state_;
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}
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AllocationTracker::UnresolvedLocation::UnresolvedLocation(
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Script* script, int start, FunctionInfo* info)
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: start_position_(start),
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info_(info) {
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script_ = Handle<Script>::cast(
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script->GetIsolate()->global_handles()->Create(script));
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GlobalHandles::MakeWeak(reinterpret_cast<Object**>(script_.location()),
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this,
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&HandleWeakScript);
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}
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AllocationTracker::UnresolvedLocation::~UnresolvedLocation() {
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if (!script_.is_null()) {
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GlobalHandles::Destroy(reinterpret_cast<Object**>(script_.location()));
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}
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}
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void AllocationTracker::UnresolvedLocation::Resolve() {
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if (script_.is_null()) return;
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HandleScope scope(script_->GetIsolate());
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info_->line = Script::GetLineNumber(script_, start_position_);
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info_->column = Script::GetColumnNumber(script_, start_position_);
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}
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void AllocationTracker::UnresolvedLocation::HandleWeakScript(
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const v8::WeakCallbackData<v8::Value, void>& data) {
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UnresolvedLocation* loc =
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reinterpret_cast<UnresolvedLocation*>(data.GetParameter());
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GlobalHandles::Destroy(reinterpret_cast<Object**>(loc->script_.location()));
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loc->script_ = Handle<Script>::null();
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}
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} // namespace internal
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} // namespace v8
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