639 lines
19 KiB
C++
639 lines
19 KiB
C++
// Copyright (c) 2014 The Chromium 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 "base/trace_event/traced_value.h"
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#include <stdint.h>
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#include <atomic>
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#include <utility>
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#include "base/bits.h"
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#include "base/containers/circular_deque.h"
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#include "base/json/json_writer.h"
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#include "base/json/string_escape.h"
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#include "base/memory/ptr_util.h"
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#include "base/trace_event/trace_event.h"
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#include "base/trace_event/trace_event_impl.h"
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#include "base/trace_event/trace_event_memory_overhead.h"
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#include "base/trace_event/trace_log.h"
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#include "base/values.h"
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namespace base {
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namespace trace_event {
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namespace {
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const char kTypeStartDict = '{';
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const char kTypeEndDict = '}';
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const char kTypeStartArray = '[';
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const char kTypeEndArray = ']';
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const char kTypeBool = 'b';
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const char kTypeInt = 'i';
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const char kTypeDouble = 'd';
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const char kTypeString = 's';
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const char kTypeCStr = '*'; // only used for key names
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std::atomic<TracedValue::WriterFactoryCallback> g_writer_factory_callback;
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#ifndef NDEBUG
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const bool kStackTypeDict = false;
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const bool kStackTypeArray = true;
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#define DCHECK_CURRENT_CONTAINER_IS(x) DCHECK_EQ(x, nesting_stack_.back())
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#define DCHECK_CONTAINER_STACK_DEPTH_EQ(x) DCHECK_EQ(x, nesting_stack_.size())
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#define DEBUG_PUSH_CONTAINER(x) nesting_stack_.push_back(x)
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#define DEBUG_POP_CONTAINER() nesting_stack_.pop_back()
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#else
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#define DCHECK_CURRENT_CONTAINER_IS(x) \
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do { \
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} while (0)
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#define DCHECK_CONTAINER_STACK_DEPTH_EQ(x) \
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do { \
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} while (0)
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#define DEBUG_PUSH_CONTAINER(x) \
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do { \
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} while (0)
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#define DEBUG_POP_CONTAINER() \
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do { \
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} while (0)
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#endif
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inline void WriteKeyNameAsRawPtr(Pickle& pickle, const char* ptr) {
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pickle.WriteBytes(&kTypeCStr, 1);
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pickle.WriteUInt64(static_cast<uint64_t>(reinterpret_cast<uintptr_t>(ptr)));
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}
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inline void WriteKeyNameWithCopy(Pickle& pickle, base::StringPiece str) {
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pickle.WriteBytes(&kTypeString, 1);
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pickle.WriteString(str);
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}
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std::string ReadKeyName(PickleIterator& pickle_iterator) {
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const char* type = nullptr;
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bool res = pickle_iterator.ReadBytes(&type, 1);
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std::string key_name;
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if (res && *type == kTypeCStr) {
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uint64_t ptr_value = 0;
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res = pickle_iterator.ReadUInt64(&ptr_value);
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key_name = reinterpret_cast<const char*>(static_cast<uintptr_t>(ptr_value));
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} else if (res && *type == kTypeString) {
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res = pickle_iterator.ReadString(&key_name);
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}
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DCHECK(res);
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return key_name;
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}
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class PickleWriter final : public TracedValue::Writer {
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public:
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explicit PickleWriter(size_t capacity) {
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if (capacity) {
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pickle_.Reserve(capacity);
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}
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}
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bool IsPickleWriter() const override { return true; }
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bool IsProtoWriter() const override { return false; }
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void SetInteger(const char* name, int value) override {
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pickle_.WriteBytes(&kTypeInt, 1);
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pickle_.WriteInt(value);
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WriteKeyNameAsRawPtr(pickle_, name);
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}
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void SetIntegerWithCopiedName(base::StringPiece name, int value) override {
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pickle_.WriteBytes(&kTypeInt, 1);
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pickle_.WriteInt(value);
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WriteKeyNameWithCopy(pickle_, name);
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}
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void SetDouble(const char* name, double value) override {
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pickle_.WriteBytes(&kTypeDouble, 1);
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pickle_.WriteDouble(value);
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WriteKeyNameAsRawPtr(pickle_, name);
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}
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void SetDoubleWithCopiedName(base::StringPiece name, double value) override {
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pickle_.WriteBytes(&kTypeDouble, 1);
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pickle_.WriteDouble(value);
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WriteKeyNameWithCopy(pickle_, name);
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}
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void SetBoolean(const char* name, bool value) override {
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pickle_.WriteBytes(&kTypeBool, 1);
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pickle_.WriteBool(value);
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WriteKeyNameAsRawPtr(pickle_, name);
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}
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void SetBooleanWithCopiedName(base::StringPiece name, bool value) override {
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pickle_.WriteBytes(&kTypeBool, 1);
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pickle_.WriteBool(value);
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WriteKeyNameWithCopy(pickle_, name);
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}
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void SetString(const char* name, base::StringPiece value) override {
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pickle_.WriteBytes(&kTypeString, 1);
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pickle_.WriteString(value);
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WriteKeyNameAsRawPtr(pickle_, name);
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}
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void SetStringWithCopiedName(base::StringPiece name,
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base::StringPiece value) override {
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pickle_.WriteBytes(&kTypeString, 1);
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pickle_.WriteString(value);
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WriteKeyNameWithCopy(pickle_, name);
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}
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void SetValue(const char* name, Writer* value) override {
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DCHECK(value->IsPickleWriter());
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const PickleWriter* pickle_writer = static_cast<const PickleWriter*>(value);
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BeginDictionary(name);
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pickle_.WriteBytes(pickle_writer->pickle_.payload(),
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static_cast<int>(pickle_writer->pickle_.payload_size()));
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EndDictionary();
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}
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void SetValueWithCopiedName(base::StringPiece name, Writer* value) override {
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DCHECK(value->IsPickleWriter());
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const PickleWriter* pickle_writer = static_cast<const PickleWriter*>(value);
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BeginDictionaryWithCopiedName(name);
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pickle_.WriteBytes(pickle_writer->pickle_.payload(),
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static_cast<int>(pickle_writer->pickle_.payload_size()));
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EndDictionary();
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}
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void BeginArray() override { pickle_.WriteBytes(&kTypeStartArray, 1); }
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void BeginDictionary() override { pickle_.WriteBytes(&kTypeStartDict, 1); }
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void BeginDictionary(const char* name) override {
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pickle_.WriteBytes(&kTypeStartDict, 1);
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WriteKeyNameAsRawPtr(pickle_, name);
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}
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void BeginDictionaryWithCopiedName(base::StringPiece name) override {
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pickle_.WriteBytes(&kTypeStartDict, 1);
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WriteKeyNameWithCopy(pickle_, name);
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}
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void BeginArray(const char* name) override {
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pickle_.WriteBytes(&kTypeStartArray, 1);
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WriteKeyNameAsRawPtr(pickle_, name);
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}
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void BeginArrayWithCopiedName(base::StringPiece name) override {
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pickle_.WriteBytes(&kTypeStartArray, 1);
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WriteKeyNameWithCopy(pickle_, name);
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}
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void EndDictionary() override { pickle_.WriteBytes(&kTypeEndDict, 1); }
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void EndArray() override { pickle_.WriteBytes(&kTypeEndArray, 1); }
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void AppendInteger(int value) override {
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pickle_.WriteBytes(&kTypeInt, 1);
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pickle_.WriteInt(value);
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}
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void AppendDouble(double value) override {
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pickle_.WriteBytes(&kTypeDouble, 1);
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pickle_.WriteDouble(value);
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}
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void AppendBoolean(bool value) override {
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pickle_.WriteBytes(&kTypeBool, 1);
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pickle_.WriteBool(value);
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}
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void AppendString(base::StringPiece value) override {
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pickle_.WriteBytes(&kTypeString, 1);
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pickle_.WriteString(value);
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}
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void AppendAsTraceFormat(std::string* out) const override {
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struct State {
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enum Type { kTypeDict, kTypeArray };
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Type type;
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bool needs_comma;
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};
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auto maybe_append_key_name = [](State current_state, PickleIterator* it,
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std::string* out) {
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if (current_state.type == State::kTypeDict) {
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EscapeJSONString(ReadKeyName(*it), true, out);
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out->append(":");
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}
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};
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base::circular_deque<State> state_stack;
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out->append("{");
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state_stack.push_back({State::kTypeDict});
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PickleIterator it(pickle_);
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for (const char* type; it.ReadBytes(&type, 1);) {
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switch (*type) {
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case kTypeEndDict:
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out->append("}");
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state_stack.pop_back();
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continue;
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case kTypeEndArray:
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out->append("]");
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state_stack.pop_back();
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continue;
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}
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// Use an index so it will stay valid across resizes.
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size_t current_state_index = state_stack.size() - 1;
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if (state_stack[current_state_index].needs_comma) {
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out->append(",");
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}
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switch (*type) {
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case kTypeStartDict: {
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maybe_append_key_name(state_stack[current_state_index], &it, out);
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out->append("{");
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state_stack.push_back({State::kTypeDict});
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break;
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}
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case kTypeStartArray: {
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maybe_append_key_name(state_stack[current_state_index], &it, out);
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out->append("[");
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state_stack.push_back({State::kTypeArray});
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break;
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}
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case kTypeBool: {
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TraceEvent::TraceValue json_value;
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CHECK(it.ReadBool(&json_value.as_bool));
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maybe_append_key_name(state_stack[current_state_index], &it, out);
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json_value.AppendAsJSON(TRACE_VALUE_TYPE_BOOL, out);
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break;
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}
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case kTypeInt: {
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int value;
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CHECK(it.ReadInt(&value));
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maybe_append_key_name(state_stack[current_state_index], &it, out);
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TraceEvent::TraceValue json_value;
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json_value.as_int = value;
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json_value.AppendAsJSON(TRACE_VALUE_TYPE_INT, out);
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break;
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}
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case kTypeDouble: {
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TraceEvent::TraceValue json_value;
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CHECK(it.ReadDouble(&json_value.as_double));
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maybe_append_key_name(state_stack[current_state_index], &it, out);
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json_value.AppendAsJSON(TRACE_VALUE_TYPE_DOUBLE, out);
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break;
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}
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case kTypeString: {
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std::string value;
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CHECK(it.ReadString(&value));
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maybe_append_key_name(state_stack[current_state_index], &it, out);
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TraceEvent::TraceValue json_value;
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json_value.as_string = value.c_str();
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json_value.AppendAsJSON(TRACE_VALUE_TYPE_STRING, out);
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break;
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}
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default:
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NOTREACHED();
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}
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state_stack[current_state_index].needs_comma = true;
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}
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out->append("}");
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state_stack.pop_back();
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DCHECK(state_stack.empty());
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}
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void EstimateTraceMemoryOverhead(
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TraceEventMemoryOverhead* overhead) override {
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overhead->Add(TraceEventMemoryOverhead::kTracedValue,
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/* allocated size */
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pickle_.GetTotalAllocatedSize(),
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/* resident size */
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pickle_.size());
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}
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std::unique_ptr<base::Value> ToBaseValue() const {
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base::Value root(base::Value::Type::DICTIONARY);
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Value* cur_dict = &root;
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Value* cur_list = nullptr;
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std::vector<Value*> stack;
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PickleIterator it(pickle_);
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const char* type;
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while (it.ReadBytes(&type, 1)) {
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DCHECK((cur_dict && !cur_list) || (cur_list && !cur_dict));
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switch (*type) {
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case kTypeStartDict: {
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base::Value new_dict(base::Value::Type::DICTIONARY);
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if (cur_dict) {
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stack.push_back(cur_dict);
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cur_dict = cur_dict->SetKey(ReadKeyName(it), std::move(new_dict));
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} else {
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cur_list->Append(std::move(new_dict));
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// |new_dict| is invalidated at this point, so |cur_dict| needs to
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// be reset.
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cur_dict = &cur_list->GetList().back();
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stack.push_back(cur_list);
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cur_list = nullptr;
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}
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} break;
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case kTypeEndArray:
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case kTypeEndDict: {
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if (stack.back()->is_dict()) {
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cur_dict = stack.back();
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cur_list = nullptr;
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} else if (stack.back()->is_list()) {
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cur_list = stack.back();
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cur_dict = nullptr;
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}
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stack.pop_back();
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} break;
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case kTypeStartArray: {
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base::Value new_list(base::Value::Type::LIST);
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if (cur_dict) {
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stack.push_back(cur_dict);
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cur_list = cur_dict->SetKey(ReadKeyName(it), std::move(new_list));
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cur_dict = nullptr;
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} else {
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cur_list->Append(std::move(new_list));
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stack.push_back(cur_list);
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// |cur_list| is invalidated at this point by the Append, so it
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// needs to be reset.
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cur_list = &cur_list->GetList().back();
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}
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} break;
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case kTypeBool: {
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bool value;
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CHECK(it.ReadBool(&value));
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if (cur_dict) {
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cur_dict->SetBoolKey(ReadKeyName(it), value);
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} else {
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cur_list->Append(value);
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}
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} break;
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case kTypeInt: {
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int value;
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CHECK(it.ReadInt(&value));
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if (cur_dict) {
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cur_dict->SetIntKey(ReadKeyName(it), value);
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} else {
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cur_list->Append(value);
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}
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} break;
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case kTypeDouble: {
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TraceEvent::TraceValue trace_value;
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CHECK(it.ReadDouble(&trace_value.as_double));
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Value base_value;
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if (!std::isfinite(trace_value.as_double)) {
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// base::Value doesn't support nan and infinity values. Use strings
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// for them instead. This follows the same convention in
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// AppendAsTraceFormat(), supported by TraceValue::Append*().
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std::string value_string;
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trace_value.AppendAsString(TRACE_VALUE_TYPE_DOUBLE, &value_string);
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base_value = Value(value_string);
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} else {
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base_value = Value(trace_value.as_double);
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}
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if (cur_dict) {
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cur_dict->SetKey(ReadKeyName(it), std::move(base_value));
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} else {
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cur_list->Append(std::move(base_value));
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}
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} break;
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case kTypeString: {
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std::string value;
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CHECK(it.ReadString(&value));
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if (cur_dict) {
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cur_dict->SetStringKey(ReadKeyName(it), std::move(value));
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} else {
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cur_list->Append(std::move(value));
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}
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} break;
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default:
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NOTREACHED();
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}
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}
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DCHECK(stack.empty());
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return base::Value::ToUniquePtrValue(std::move(root));
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}
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private:
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Pickle pickle_;
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};
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std::unique_ptr<TracedValue::Writer> CreateWriter(size_t capacity) {
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TracedValue::WriterFactoryCallback callback =
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g_writer_factory_callback.load(std::memory_order_relaxed);
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if (callback) {
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return callback(capacity);
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}
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return std::make_unique<PickleWriter>(capacity);
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}
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} // namespace
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bool TracedValue::Writer::AppendToProto(ProtoAppender* appender) {
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return false;
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}
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// static
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void TracedValue::SetWriterFactoryCallback(WriterFactoryCallback callback) {
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g_writer_factory_callback.store(callback);
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}
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TracedValue::TracedValue(size_t capacity)
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: TracedValue(capacity, /*forced_json*/ false) {}
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TracedValue::TracedValue(size_t capacity, bool forced_json) {
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DEBUG_PUSH_CONTAINER(kStackTypeDict);
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writer_ = forced_json ? std::make_unique<PickleWriter>(capacity)
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: CreateWriter(capacity);
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}
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TracedValue::~TracedValue() {
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DCHECK_CURRENT_CONTAINER_IS(kStackTypeDict);
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DEBUG_POP_CONTAINER();
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DCHECK_CONTAINER_STACK_DEPTH_EQ(0u);
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}
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void TracedValue::SetInteger(const char* name, int value) {
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DCHECK_CURRENT_CONTAINER_IS(kStackTypeDict);
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writer_->SetInteger(name, value);
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}
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void TracedValue::SetIntegerWithCopiedName(base::StringPiece name, int value) {
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DCHECK_CURRENT_CONTAINER_IS(kStackTypeDict);
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writer_->SetIntegerWithCopiedName(name, value);
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}
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void TracedValue::SetDouble(const char* name, double value) {
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DCHECK_CURRENT_CONTAINER_IS(kStackTypeDict);
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writer_->SetDouble(name, value);
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}
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void TracedValue::SetDoubleWithCopiedName(base::StringPiece name,
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double value) {
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DCHECK_CURRENT_CONTAINER_IS(kStackTypeDict);
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writer_->SetDoubleWithCopiedName(name, value);
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}
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void TracedValue::SetBoolean(const char* name, bool value) {
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DCHECK_CURRENT_CONTAINER_IS(kStackTypeDict);
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writer_->SetBoolean(name, value);
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}
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void TracedValue::SetBooleanWithCopiedName(base::StringPiece name, bool value) {
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DCHECK_CURRENT_CONTAINER_IS(kStackTypeDict);
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writer_->SetBooleanWithCopiedName(name, value);
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}
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void TracedValue::SetString(const char* name, base::StringPiece value) {
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DCHECK_CURRENT_CONTAINER_IS(kStackTypeDict);
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writer_->SetString(name, value);
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}
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void TracedValue::SetStringWithCopiedName(base::StringPiece name,
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base::StringPiece value) {
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DCHECK_CURRENT_CONTAINER_IS(kStackTypeDict);
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writer_->SetStringWithCopiedName(name, value);
|
|
}
|
|
|
|
void TracedValue::SetValue(const char* name, TracedValue* value) {
|
|
DCHECK_CURRENT_CONTAINER_IS(kStackTypeDict);
|
|
writer_->SetValue(name, value->writer_.get());
|
|
}
|
|
|
|
void TracedValue::SetValueWithCopiedName(base::StringPiece name,
|
|
TracedValue* value) {
|
|
DCHECK_CURRENT_CONTAINER_IS(kStackTypeDict);
|
|
writer_->SetValueWithCopiedName(name, value->writer_.get());
|
|
}
|
|
|
|
void TracedValue::BeginDictionary(const char* name) {
|
|
DCHECK_CURRENT_CONTAINER_IS(kStackTypeDict);
|
|
DEBUG_PUSH_CONTAINER(kStackTypeDict);
|
|
writer_->BeginDictionary(name);
|
|
}
|
|
|
|
void TracedValue::BeginDictionaryWithCopiedName(base::StringPiece name) {
|
|
DCHECK_CURRENT_CONTAINER_IS(kStackTypeDict);
|
|
DEBUG_PUSH_CONTAINER(kStackTypeDict);
|
|
writer_->BeginDictionaryWithCopiedName(name);
|
|
}
|
|
|
|
void TracedValue::BeginArray(const char* name) {
|
|
DCHECK_CURRENT_CONTAINER_IS(kStackTypeDict);
|
|
DEBUG_PUSH_CONTAINER(kStackTypeArray);
|
|
writer_->BeginArray(name);
|
|
}
|
|
|
|
void TracedValue::BeginArrayWithCopiedName(base::StringPiece name) {
|
|
DCHECK_CURRENT_CONTAINER_IS(kStackTypeDict);
|
|
DEBUG_PUSH_CONTAINER(kStackTypeArray);
|
|
writer_->BeginArrayWithCopiedName(name);
|
|
}
|
|
|
|
void TracedValue::AppendInteger(int value) {
|
|
DCHECK_CURRENT_CONTAINER_IS(kStackTypeArray);
|
|
writer_->AppendInteger(value);
|
|
}
|
|
|
|
void TracedValue::AppendDouble(double value) {
|
|
DCHECK_CURRENT_CONTAINER_IS(kStackTypeArray);
|
|
writer_->AppendDouble(value);
|
|
}
|
|
|
|
void TracedValue::AppendBoolean(bool value) {
|
|
DCHECK_CURRENT_CONTAINER_IS(kStackTypeArray);
|
|
writer_->AppendBoolean(value);
|
|
}
|
|
|
|
void TracedValue::AppendString(base::StringPiece value) {
|
|
DCHECK_CURRENT_CONTAINER_IS(kStackTypeArray);
|
|
writer_->AppendString(value);
|
|
}
|
|
|
|
void TracedValue::BeginArray() {
|
|
DCHECK_CURRENT_CONTAINER_IS(kStackTypeArray);
|
|
DEBUG_PUSH_CONTAINER(kStackTypeArray);
|
|
writer_->BeginArray();
|
|
}
|
|
|
|
void TracedValue::BeginDictionary() {
|
|
DCHECK_CURRENT_CONTAINER_IS(kStackTypeArray);
|
|
DEBUG_PUSH_CONTAINER(kStackTypeDict);
|
|
writer_->BeginDictionary();
|
|
}
|
|
|
|
void TracedValue::EndArray() {
|
|
DCHECK_CURRENT_CONTAINER_IS(kStackTypeArray);
|
|
DEBUG_POP_CONTAINER();
|
|
writer_->EndArray();
|
|
}
|
|
|
|
void TracedValue::EndDictionary() {
|
|
DCHECK_CURRENT_CONTAINER_IS(kStackTypeDict);
|
|
DEBUG_POP_CONTAINER();
|
|
writer_->EndDictionary();
|
|
}
|
|
|
|
std::unique_ptr<base::Value> TracedValue::ToBaseValue() const {
|
|
DCHECK(writer_->IsPickleWriter());
|
|
return static_cast<const PickleWriter*>(writer_.get())->ToBaseValue();
|
|
}
|
|
|
|
void TracedValue::AppendAsTraceFormat(std::string* out) const {
|
|
DCHECK_CURRENT_CONTAINER_IS(kStackTypeDict);
|
|
DCHECK_CONTAINER_STACK_DEPTH_EQ(1u);
|
|
|
|
writer_->AppendAsTraceFormat(out);
|
|
}
|
|
|
|
bool TracedValue::AppendToProto(ProtoAppender* appender) {
|
|
return writer_->AppendToProto(appender);
|
|
}
|
|
|
|
void TracedValue::EstimateTraceMemoryOverhead(
|
|
TraceEventMemoryOverhead* overhead) {
|
|
writer_->EstimateTraceMemoryOverhead(overhead);
|
|
}
|
|
|
|
std::string TracedValueJSON::ToJSON() const {
|
|
std::string result;
|
|
AppendAsTraceFormat(&result);
|
|
return result;
|
|
}
|
|
|
|
std::string TracedValueJSON::ToFormattedJSON() const {
|
|
std::string str;
|
|
base::JSONWriter::WriteWithOptions(
|
|
*ToBaseValue(),
|
|
base::JSONWriter::OPTIONS_OMIT_DOUBLE_TYPE_PRESERVATION |
|
|
base::JSONWriter::OPTIONS_PRETTY_PRINT,
|
|
&str);
|
|
return str;
|
|
}
|
|
|
|
} // namespace trace_event
|
|
} // namespace base
|