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545 lines
18 KiB
C++
545 lines
18 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/prefs/json_pref_store.h"
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#include <algorithm>
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#include "base/bind.h"
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#include "base/callback.h"
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#include "base/files/file_path.h"
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#include "base/files/file_util.h"
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#include "base/json/json_file_value_serializer.h"
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#include "base/json/json_string_value_serializer.h"
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#include "base/memory/ref_counted.h"
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#include "base/metrics/histogram.h"
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#include "base/prefs/pref_filter.h"
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#include "base/sequenced_task_runner.h"
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#include "base/strings/string_number_conversions.h"
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#include "base/strings/string_util.h"
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#include "base/task_runner_util.h"
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#include "base/threading/sequenced_worker_pool.h"
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#include "base/time/default_clock.h"
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#include "base/values.h"
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// Result returned from internal read tasks.
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struct JsonPrefStore::ReadResult {
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public:
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ReadResult();
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~ReadResult();
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scoped_ptr<base::Value> value;
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PrefReadError error;
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bool no_dir;
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private:
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DISALLOW_COPY_AND_ASSIGN(ReadResult);
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};
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JsonPrefStore::ReadResult::ReadResult()
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: error(PersistentPrefStore::PREF_READ_ERROR_NONE), no_dir(false) {
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}
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JsonPrefStore::ReadResult::~ReadResult() {
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}
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namespace {
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// Some extensions we'll tack on to copies of the Preferences files.
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const base::FilePath::CharType kBadExtension[] = FILE_PATH_LITERAL("bad");
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PersistentPrefStore::PrefReadError HandleReadErrors(
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const base::Value* value,
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const base::FilePath& path,
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int error_code,
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const std::string& error_msg) {
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if (!value) {
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DVLOG(1) << "Error while loading JSON file: " << error_msg
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<< ", file: " << path.value();
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switch (error_code) {
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case JSONFileValueDeserializer::JSON_ACCESS_DENIED:
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return PersistentPrefStore::PREF_READ_ERROR_ACCESS_DENIED;
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break;
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case JSONFileValueDeserializer::JSON_CANNOT_READ_FILE:
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return PersistentPrefStore::PREF_READ_ERROR_FILE_OTHER;
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break;
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case JSONFileValueDeserializer::JSON_FILE_LOCKED:
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return PersistentPrefStore::PREF_READ_ERROR_FILE_LOCKED;
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break;
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case JSONFileValueDeserializer::JSON_NO_SUCH_FILE:
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return PersistentPrefStore::PREF_READ_ERROR_NO_FILE;
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break;
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default:
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// JSON errors indicate file corruption of some sort.
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// Since the file is corrupt, move it to the side and continue with
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// empty preferences. This will result in them losing their settings.
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// We keep the old file for possible support and debugging assistance
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// as well as to detect if they're seeing these errors repeatedly.
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// TODO(erikkay) Instead, use the last known good file.
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base::FilePath bad = path.ReplaceExtension(kBadExtension);
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// If they've ever had a parse error before, put them in another bucket.
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// TODO(erikkay) if we keep this error checking for very long, we may
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// want to differentiate between recent and long ago errors.
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bool bad_existed = base::PathExists(bad);
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base::Move(path, bad);
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return bad_existed ? PersistentPrefStore::PREF_READ_ERROR_JSON_REPEAT
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: PersistentPrefStore::PREF_READ_ERROR_JSON_PARSE;
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}
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} else if (!value->IsType(base::Value::TYPE_DICTIONARY)) {
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return PersistentPrefStore::PREF_READ_ERROR_JSON_TYPE;
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}
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return PersistentPrefStore::PREF_READ_ERROR_NONE;
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}
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// Records a sample for |size| in the Settings.JsonDataReadSizeKilobytes
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// histogram suffixed with the base name of the JSON file under |path|.
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void RecordJsonDataSizeHistogram(const base::FilePath& path, size_t size) {
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std::string spaceless_basename;
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base::ReplaceChars(path.BaseName().MaybeAsASCII(), " ", "_",
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&spaceless_basename);
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// The histogram below is an expansion of the UMA_HISTOGRAM_CUSTOM_COUNTS
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// macro adapted to allow for a dynamically suffixed histogram name.
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// Note: The factory creates and owns the histogram.
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base::HistogramBase* histogram = base::Histogram::FactoryGet(
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"Settings.JsonDataReadSizeKilobytes." + spaceless_basename, 1, 10000, 50,
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base::HistogramBase::kUmaTargetedHistogramFlag);
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histogram->Add(static_cast<int>(size) / 1024);
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}
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scoped_ptr<JsonPrefStore::ReadResult> ReadPrefsFromDisk(
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const base::FilePath& path,
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const base::FilePath& alternate_path) {
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if (!base::PathExists(path) && !alternate_path.empty() &&
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base::PathExists(alternate_path)) {
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base::Move(alternate_path, path);
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}
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int error_code;
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std::string error_msg;
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scoped_ptr<JsonPrefStore::ReadResult> read_result(
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new JsonPrefStore::ReadResult);
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JSONFileValueDeserializer deserializer(path);
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read_result->value.reset(deserializer.Deserialize(&error_code, &error_msg));
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read_result->error =
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HandleReadErrors(read_result->value.get(), path, error_code, error_msg);
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read_result->no_dir = !base::PathExists(path.DirName());
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if (read_result->error == PersistentPrefStore::PREF_READ_ERROR_NONE)
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RecordJsonDataSizeHistogram(path, deserializer.get_last_read_size());
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return read_result.Pass();
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}
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} // namespace
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// static
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scoped_refptr<base::SequencedTaskRunner> JsonPrefStore::GetTaskRunnerForFile(
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const base::FilePath& filename,
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base::SequencedWorkerPool* worker_pool) {
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std::string token("json_pref_store-");
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token.append(filename.AsUTF8Unsafe());
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return worker_pool->GetSequencedTaskRunnerWithShutdownBehavior(
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worker_pool->GetNamedSequenceToken(token),
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base::SequencedWorkerPool::BLOCK_SHUTDOWN);
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}
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JsonPrefStore::JsonPrefStore(
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const base::FilePath& filename,
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const scoped_refptr<base::SequencedTaskRunner>& sequenced_task_runner,
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scoped_ptr<PrefFilter> pref_filter)
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: JsonPrefStore(filename,
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base::FilePath(),
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sequenced_task_runner,
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pref_filter.Pass()) {
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}
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JsonPrefStore::JsonPrefStore(
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const base::FilePath& filename,
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const base::FilePath& alternate_filename,
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const scoped_refptr<base::SequencedTaskRunner>& sequenced_task_runner,
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scoped_ptr<PrefFilter> pref_filter)
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: path_(filename),
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alternate_path_(alternate_filename),
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sequenced_task_runner_(sequenced_task_runner),
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prefs_(new base::DictionaryValue()),
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read_only_(false),
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writer_(filename, sequenced_task_runner),
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pref_filter_(pref_filter.Pass()),
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initialized_(false),
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filtering_in_progress_(false),
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pending_lossy_write_(false),
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read_error_(PREF_READ_ERROR_NONE),
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write_count_histogram_(writer_.commit_interval(), path_) {
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DCHECK(!path_.empty());
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}
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bool JsonPrefStore::GetValue(const std::string& key,
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const base::Value** result) const {
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DCHECK(CalledOnValidThread());
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base::Value* tmp = NULL;
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if (!prefs_->Get(key, &tmp))
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return false;
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if (result)
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*result = tmp;
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return true;
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}
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void JsonPrefStore::AddObserver(PrefStore::Observer* observer) {
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DCHECK(CalledOnValidThread());
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observers_.AddObserver(observer);
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}
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void JsonPrefStore::RemoveObserver(PrefStore::Observer* observer) {
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DCHECK(CalledOnValidThread());
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observers_.RemoveObserver(observer);
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}
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bool JsonPrefStore::HasObservers() const {
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DCHECK(CalledOnValidThread());
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return observers_.might_have_observers();
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}
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bool JsonPrefStore::IsInitializationComplete() const {
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DCHECK(CalledOnValidThread());
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return initialized_;
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}
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bool JsonPrefStore::GetMutableValue(const std::string& key,
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base::Value** result) {
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DCHECK(CalledOnValidThread());
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return prefs_->Get(key, result);
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}
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void JsonPrefStore::SetValue(const std::string& key,
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scoped_ptr<base::Value> value,
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uint32 flags) {
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DCHECK(CalledOnValidThread());
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DCHECK(value);
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base::Value* old_value = NULL;
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prefs_->Get(key, &old_value);
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if (!old_value || !value->Equals(old_value)) {
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prefs_->Set(key, value.Pass());
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ReportValueChanged(key, flags);
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}
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}
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void JsonPrefStore::SetValueSilently(const std::string& key,
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scoped_ptr<base::Value> value,
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uint32 flags) {
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DCHECK(CalledOnValidThread());
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DCHECK(value);
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base::Value* old_value = NULL;
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prefs_->Get(key, &old_value);
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if (!old_value || !value->Equals(old_value)) {
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prefs_->Set(key, value.Pass());
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ScheduleWrite(flags);
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}
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}
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void JsonPrefStore::RemoveValue(const std::string& key, uint32 flags) {
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DCHECK(CalledOnValidThread());
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if (prefs_->RemovePath(key, NULL))
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ReportValueChanged(key, flags);
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}
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void JsonPrefStore::RemoveValueSilently(const std::string& key, uint32 flags) {
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DCHECK(CalledOnValidThread());
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prefs_->RemovePath(key, NULL);
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ScheduleWrite(flags);
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}
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bool JsonPrefStore::ReadOnly() const {
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DCHECK(CalledOnValidThread());
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return read_only_;
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}
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PersistentPrefStore::PrefReadError JsonPrefStore::GetReadError() const {
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DCHECK(CalledOnValidThread());
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return read_error_;
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}
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PersistentPrefStore::PrefReadError JsonPrefStore::ReadPrefs() {
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DCHECK(CalledOnValidThread());
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OnFileRead(ReadPrefsFromDisk(path_, alternate_path_));
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return filtering_in_progress_ ? PREF_READ_ERROR_ASYNCHRONOUS_TASK_INCOMPLETE
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: read_error_;
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}
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void JsonPrefStore::ReadPrefsAsync(ReadErrorDelegate* error_delegate) {
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DCHECK(CalledOnValidThread());
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initialized_ = false;
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error_delegate_.reset(error_delegate);
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// Weakly binds the read task so that it doesn't kick in during shutdown.
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base::PostTaskAndReplyWithResult(
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sequenced_task_runner_.get(),
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FROM_HERE,
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base::Bind(&ReadPrefsFromDisk, path_, alternate_path_),
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base::Bind(&JsonPrefStore::OnFileRead, AsWeakPtr()));
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}
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void JsonPrefStore::CommitPendingWrite() {
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DCHECK(CalledOnValidThread());
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// Schedule a write for any lossy writes that are outstanding to ensure that
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// they get flushed when this function is called.
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SchedulePendingLossyWrites();
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if (writer_.HasPendingWrite() && !read_only_)
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writer_.DoScheduledWrite();
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}
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void JsonPrefStore::SchedulePendingLossyWrites() {
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if (pending_lossy_write_)
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writer_.ScheduleWrite(this);
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}
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void JsonPrefStore::ReportValueChanged(const std::string& key, uint32 flags) {
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DCHECK(CalledOnValidThread());
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if (pref_filter_)
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pref_filter_->FilterUpdate(key);
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FOR_EACH_OBSERVER(PrefStore::Observer, observers_, OnPrefValueChanged(key));
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ScheduleWrite(flags);
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}
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void JsonPrefStore::RegisterOnNextSuccessfulWriteCallback(
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const base::Closure& on_next_successful_write) {
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DCHECK(CalledOnValidThread());
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writer_.RegisterOnNextSuccessfulWriteCallback(on_next_successful_write);
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}
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void JsonPrefStore::OnFileRead(scoped_ptr<ReadResult> read_result) {
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DCHECK(CalledOnValidThread());
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DCHECK(read_result);
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scoped_ptr<base::DictionaryValue> unfiltered_prefs(new base::DictionaryValue);
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read_error_ = read_result->error;
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bool initialization_successful = !read_result->no_dir;
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if (initialization_successful) {
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switch (read_error_) {
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case PREF_READ_ERROR_ACCESS_DENIED:
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case PREF_READ_ERROR_FILE_OTHER:
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case PREF_READ_ERROR_FILE_LOCKED:
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case PREF_READ_ERROR_JSON_TYPE:
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case PREF_READ_ERROR_FILE_NOT_SPECIFIED:
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read_only_ = true;
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break;
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case PREF_READ_ERROR_NONE:
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DCHECK(read_result->value.get());
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unfiltered_prefs.reset(
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static_cast<base::DictionaryValue*>(read_result->value.release()));
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break;
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case PREF_READ_ERROR_NO_FILE:
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// If the file just doesn't exist, maybe this is first run. In any case
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// there's no harm in writing out default prefs in this case.
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break;
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case PREF_READ_ERROR_JSON_PARSE:
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case PREF_READ_ERROR_JSON_REPEAT:
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break;
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case PREF_READ_ERROR_ASYNCHRONOUS_TASK_INCOMPLETE:
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// This is a special error code to be returned by ReadPrefs when it
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// can't complete synchronously, it should never be returned by the read
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// operation itself.
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NOTREACHED();
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break;
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case PREF_READ_ERROR_LEVELDB_IO:
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case PREF_READ_ERROR_LEVELDB_CORRUPTION_READ_ONLY:
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case PREF_READ_ERROR_LEVELDB_CORRUPTION:
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// These are specific to LevelDBPrefStore.
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NOTREACHED();
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case PREF_READ_ERROR_MAX_ENUM:
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NOTREACHED();
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break;
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}
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}
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if (pref_filter_) {
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filtering_in_progress_ = true;
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const PrefFilter::PostFilterOnLoadCallback post_filter_on_load_callback(
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base::Bind(
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&JsonPrefStore::FinalizeFileRead, AsWeakPtr(),
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initialization_successful));
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pref_filter_->FilterOnLoad(post_filter_on_load_callback,
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unfiltered_prefs.Pass());
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} else {
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FinalizeFileRead(initialization_successful, unfiltered_prefs.Pass(), false);
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}
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}
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JsonPrefStore::~JsonPrefStore() {
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CommitPendingWrite();
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}
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bool JsonPrefStore::SerializeData(std::string* output) {
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DCHECK(CalledOnValidThread());
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pending_lossy_write_ = false;
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write_count_histogram_.RecordWriteOccured();
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if (pref_filter_)
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pref_filter_->FilterSerializeData(prefs_.get());
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JSONStringValueSerializer serializer(output);
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// Not pretty-printing prefs shrinks pref file size by ~30%. To obtain
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// readable prefs for debugging purposes, you can dump your prefs into any
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// command-line or online JSON pretty printing tool.
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serializer.set_pretty_print(false);
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return serializer.Serialize(*prefs_);
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}
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void JsonPrefStore::FinalizeFileRead(bool initialization_successful,
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scoped_ptr<base::DictionaryValue> prefs,
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bool schedule_write) {
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DCHECK(CalledOnValidThread());
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filtering_in_progress_ = false;
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if (!initialization_successful) {
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FOR_EACH_OBSERVER(PrefStore::Observer,
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observers_,
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OnInitializationCompleted(false));
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return;
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}
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prefs_ = prefs.Pass();
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initialized_ = true;
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if (schedule_write)
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ScheduleWrite(DEFAULT_PREF_WRITE_FLAGS);
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if (error_delegate_ && read_error_ != PREF_READ_ERROR_NONE)
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error_delegate_->OnError(read_error_);
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FOR_EACH_OBSERVER(PrefStore::Observer,
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observers_,
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OnInitializationCompleted(true));
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return;
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}
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void JsonPrefStore::ScheduleWrite(uint32 flags) {
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if (read_only_)
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return;
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if (flags & LOSSY_PREF_WRITE_FLAG)
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pending_lossy_write_ = true;
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else
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writer_.ScheduleWrite(this);
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}
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// NOTE: This value should NOT be changed without renaming the histogram
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// otherwise it will create incompatible buckets.
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const int32_t
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JsonPrefStore::WriteCountHistogram::kHistogramWriteReportIntervalMins = 5;
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JsonPrefStore::WriteCountHistogram::WriteCountHistogram(
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const base::TimeDelta& commit_interval,
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const base::FilePath& path)
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: WriteCountHistogram(commit_interval,
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path,
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scoped_ptr<base::Clock>(new base::DefaultClock)) {
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}
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JsonPrefStore::WriteCountHistogram::WriteCountHistogram(
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const base::TimeDelta& commit_interval,
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const base::FilePath& path,
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scoped_ptr<base::Clock> clock)
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: commit_interval_(commit_interval),
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path_(path),
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clock_(clock.release()),
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report_interval_(
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base::TimeDelta::FromMinutes(kHistogramWriteReportIntervalMins)),
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last_report_time_(clock_->Now()),
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writes_since_last_report_(0) {
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}
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JsonPrefStore::WriteCountHistogram::~WriteCountHistogram() {
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ReportOutstandingWrites();
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}
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void JsonPrefStore::WriteCountHistogram::RecordWriteOccured() {
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ReportOutstandingWrites();
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++writes_since_last_report_;
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}
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void JsonPrefStore::WriteCountHistogram::ReportOutstandingWrites() {
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base::Time current_time = clock_->Now();
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base::TimeDelta time_since_last_report = current_time - last_report_time_;
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if (time_since_last_report <= report_interval_)
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return;
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// If the time since the last report exceeds the report interval, report all
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// the writes since the last report. They must have all occurred in the same
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// report interval.
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base::HistogramBase* histogram = GetHistogram();
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histogram->Add(writes_since_last_report_);
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// There may be several report intervals that elapsed that don't have any
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// writes in them. Report these too.
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int64 total_num_intervals_elapsed =
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(time_since_last_report / report_interval_);
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for (int64 i = 0; i < total_num_intervals_elapsed - 1; ++i)
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histogram->Add(0);
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writes_since_last_report_ = 0;
|
|
last_report_time_ += total_num_intervals_elapsed * report_interval_;
|
|
}
|
|
|
|
base::HistogramBase* JsonPrefStore::WriteCountHistogram::GetHistogram() {
|
|
std::string spaceless_basename;
|
|
base::ReplaceChars(path_.BaseName().MaybeAsASCII(), " ", "_",
|
|
&spaceless_basename);
|
|
std::string histogram_name =
|
|
"Settings.JsonDataWriteCount." + spaceless_basename;
|
|
|
|
// The min value for a histogram is 1. The max value is the maximum number of
|
|
// writes that can occur in the window being recorded. The number of buckets
|
|
// used is the max value (plus the underflow/overflow buckets).
|
|
int32_t min_value = 1;
|
|
int32_t max_value = report_interval_ / commit_interval_;
|
|
int32_t num_buckets = max_value + 1;
|
|
|
|
// NOTE: These values should NOT be changed without renaming the histogram
|
|
// otherwise it will create incompatible buckets.
|
|
DCHECK_EQ(30, max_value);
|
|
DCHECK_EQ(31, num_buckets);
|
|
|
|
// The histogram below is an expansion of the UMA_HISTOGRAM_CUSTOM_COUNTS
|
|
// macro adapted to allow for a dynamically suffixed histogram name.
|
|
// Note: The factory creates and owns the histogram.
|
|
base::HistogramBase* histogram = base::Histogram::FactoryGet(
|
|
histogram_name, min_value, max_value, num_buckets,
|
|
base::HistogramBase::kUmaTargetedHistogramFlag);
|
|
return histogram;
|
|
}
|