207 lines
6.1 KiB
C++
207 lines
6.1 KiB
C++
// Copyright (c) 2012 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/json/json_writer.h"
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#include <stdint.h>
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#include <cmath>
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#include <limits>
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#include "base/json/string_escape.h"
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#include "base/logging.h"
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#include "base/strings/string_number_conversions.h"
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#include "base/strings/utf_string_conversions.h"
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#include "base/values.h"
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#include "build/build_config.h"
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namespace base {
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#if defined(OS_WIN)
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const char kPrettyPrintLineEnding[] = "\r\n";
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#else
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const char kPrettyPrintLineEnding[] = "\n";
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#endif
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// static
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bool JSONWriter::Write(const Value& node, std::string* json, size_t max_depth) {
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return WriteWithOptions(node, 0, json, max_depth);
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}
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// static
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bool JSONWriter::WriteWithOptions(const Value& node,
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int options,
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std::string* json,
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size_t max_depth) {
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json->clear();
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// Is there a better way to estimate the size of the output?
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json->reserve(1024);
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JSONWriter writer(options, json, max_depth);
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bool result = writer.BuildJSONString(node, 0U);
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if (options & OPTIONS_PRETTY_PRINT)
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json->append(kPrettyPrintLineEnding);
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return result;
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}
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JSONWriter::JSONWriter(int options, std::string* json, size_t max_depth)
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: omit_binary_values_((options & OPTIONS_OMIT_BINARY_VALUES) != 0),
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omit_double_type_preservation_(
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(options & OPTIONS_OMIT_DOUBLE_TYPE_PRESERVATION) != 0),
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pretty_print_((options & OPTIONS_PRETTY_PRINT) != 0),
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json_string_(json),
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max_depth_(max_depth),
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stack_depth_(0) {
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DCHECK(json);
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CHECK_LE(max_depth, internal::kAbsoluteMaxDepth);
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}
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bool JSONWriter::BuildJSONString(const Value& node, size_t depth) {
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internal::StackMarker depth_check(max_depth_, &stack_depth_);
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if (depth_check.IsTooDeep())
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return false;
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switch (node.type()) {
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case Value::Type::NONE:
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json_string_->append("null");
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return true;
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case Value::Type::BOOLEAN:
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// Note: We are explicitly invoking the std::string constructor in order
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// to avoid ASAN errors on Windows: https://crbug.com/900041
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json_string_->append(node.GetBool() ? std::string("true")
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: std::string("false"));
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return true;
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case Value::Type::INTEGER:
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json_string_->append(NumberToString(node.GetInt()));
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return true;
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case Value::Type::DOUBLE: {
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double value = node.GetDouble();
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if (omit_double_type_preservation_ &&
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value <= std::numeric_limits<int64_t>::max() &&
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value >= std::numeric_limits<int64_t>::min() &&
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std::floor(value) == value) {
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json_string_->append(NumberToString(static_cast<int64_t>(value)));
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return true;
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}
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std::string real = NumberToString(value);
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// Ensure that the number has a .0 if there's no decimal or 'e'. This
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// makes sure that when we read the JSON back, it's interpreted as a
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// real rather than an int.
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if (real.find_first_of(".eE") == std::string::npos)
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real.append(".0");
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// The JSON spec requires that non-integer values in the range (-1,1)
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// have a zero before the decimal point - ".52" is not valid, "0.52" is.
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if (real[0] == '.') {
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real.insert(static_cast<size_t>(0), static_cast<size_t>(1), '0');
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} else if (real.length() > 1 && real[0] == '-' && real[1] == '.') {
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// "-.1" bad "-0.1" good
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real.insert(static_cast<size_t>(1), static_cast<size_t>(1), '0');
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}
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json_string_->append(real);
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return true;
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}
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case Value::Type::STRING:
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EscapeJSONString(node.GetString(), true, json_string_);
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return true;
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case Value::Type::LIST: {
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json_string_->push_back('[');
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if (pretty_print_)
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json_string_->push_back(' ');
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bool first_value_has_been_output = false;
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bool result = true;
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for (const auto& value : node.GetList()) {
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if (omit_binary_values_ && value.type() == Value::Type::BINARY)
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continue;
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if (first_value_has_been_output) {
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json_string_->push_back(',');
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if (pretty_print_)
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json_string_->push_back(' ');
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}
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if (!BuildJSONString(value, depth))
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result = false;
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first_value_has_been_output = true;
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}
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if (pretty_print_)
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json_string_->push_back(' ');
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json_string_->push_back(']');
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return result;
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}
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case Value::Type::DICTIONARY: {
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json_string_->push_back('{');
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if (pretty_print_)
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json_string_->append(kPrettyPrintLineEnding);
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bool first_value_has_been_output = false;
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bool result = true;
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for (const auto& pair : node.DictItems()) {
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const auto& key = pair.first;
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const auto& value = pair.second;
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if (omit_binary_values_ && value.type() == Value::Type::BINARY)
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continue;
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if (first_value_has_been_output) {
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json_string_->push_back(',');
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if (pretty_print_)
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json_string_->append(kPrettyPrintLineEnding);
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}
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if (pretty_print_)
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IndentLine(depth + 1U);
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EscapeJSONString(key, true, json_string_);
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json_string_->push_back(':');
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if (pretty_print_)
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json_string_->push_back(' ');
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if (!BuildJSONString(value, depth + 1U))
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result = false;
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first_value_has_been_output = true;
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}
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if (pretty_print_) {
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json_string_->append(kPrettyPrintLineEnding);
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IndentLine(depth);
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}
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json_string_->push_back('}');
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return result;
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}
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case Value::Type::BINARY:
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// Successful only if we're allowed to omit it.
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DLOG_IF(ERROR, !omit_binary_values_) << "Cannot serialize binary value.";
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return omit_binary_values_;
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// TODO(crbug.com/859477): Remove after root cause is found.
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case Value::Type::DEAD:
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CHECK(false);
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return false;
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}
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// TODO(crbug.com/859477): Revert to NOTREACHED() after root cause is found.
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CHECK(false);
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return false;
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}
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void JSONWriter::IndentLine(size_t depth) {
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json_string_->append(depth * 3U, ' ');
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}
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} // namespace base
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