blob: c6783d3b9f00ea66075c00f018199c288735e295 [file] [log] [blame]
// Copyright 2014 The Chromium Authors. All rights reserved.
// Use of this source code is governed by a BSD-style license that can be
// found in the LICENSE file.
#include "net/http/http_server_properties_manager.h"
#include "base/bind.h"
#include "base/metrics/histogram.h"
#include "base/prefs/pref_service.h"
#include "base/single_thread_task_runner.h"
#include "base/stl_util.h"
#include "base/strings/string_number_conversions.h"
#include "base/strings/stringprintf.h"
#include "base/thread_task_runner_handle.h"
#include "base/values.h"
#include "net/base/net_util.h"
namespace net {
namespace {
// Time to wait before starting an update the http_server_properties_impl_ cache
// from preferences. Scheduling another update during this period will reset the
// timer.
const int64 kUpdateCacheDelayMs = 1000;
// Time to wait before starting an update the preferences from the
// http_server_properties_impl_ cache. Scheduling another update during this
// period will reset the timer.
const int64 kUpdatePrefsDelayMs = 5000;
// "version" 0 indicates, http_server_properties doesn't have "version"
// property.
const int kMissingVersion = 0;
// The version number of persisted http_server_properties.
const int kVersionNumber = 3;
typedef std::vector<std::string> StringVector;
// Persist 200 MRU AlternateProtocolHostPortPairs.
const int kMaxAlternateProtocolHostsToPersist = 200;
// Persist 200 MRU SpdySettingsHostPortPairs.
const int kMaxSpdySettingsHostsToPersist = 200;
// Persist 300 MRU SupportsSpdyServerHostPortPairs.
const int kMaxSupportsSpdyServerHostsToPersist = 300;
// Persist 200 ServerNetworkStats.
const int kMaxServerNetworkStatsHostsToPersist = 200;
const char kVersionKey[] = "version";
const char kServersKey[] = "servers";
const char kSupportsSpdyKey[] = "supports_spdy";
const char kSettingsKey[] = "settings";
const char kSupportsQuicKey[] = "supports_quic";
const char kUsedQuicKey[] = "used_quic";
const char kAddressKey[] = "address";
const char kAlternateProtocolKey[] = "alternate_protocol";
const char kPortKey[] = "port";
const char kProtocolKey[] = "protocol_str";
const char kProbabilityKey[] = "probability";
const char kNetworkStatsKey[] = "network_stats";
const char kSrttKey[] = "srtt";
} // namespace
////////////////////////////////////////////////////////////////////////////////
// HttpServerPropertiesManager
HttpServerPropertiesManager::HttpServerPropertiesManager(
PrefService* pref_service,
const char* pref_path,
scoped_refptr<base::SequencedTaskRunner> network_task_runner)
: pref_task_runner_(base::ThreadTaskRunnerHandle::Get()),
pref_service_(pref_service),
setting_prefs_(false),
path_(pref_path),
network_task_runner_(network_task_runner) {
DCHECK(pref_service);
pref_weak_ptr_factory_.reset(
new base::WeakPtrFactory<HttpServerPropertiesManager>(this));
pref_weak_ptr_ = pref_weak_ptr_factory_->GetWeakPtr();
pref_cache_update_timer_.reset(
new base::OneShotTimer<HttpServerPropertiesManager>);
pref_change_registrar_.Init(pref_service_);
pref_change_registrar_.Add(
path_,
base::Bind(&HttpServerPropertiesManager::OnHttpServerPropertiesChanged,
base::Unretained(this)));
}
HttpServerPropertiesManager::~HttpServerPropertiesManager() {
DCHECK(network_task_runner_->RunsTasksOnCurrentThread());
network_weak_ptr_factory_.reset();
}
void HttpServerPropertiesManager::InitializeOnNetworkThread() {
DCHECK(network_task_runner_->RunsTasksOnCurrentThread());
network_weak_ptr_factory_.reset(
new base::WeakPtrFactory<HttpServerPropertiesManager>(this));
http_server_properties_impl_.reset(new HttpServerPropertiesImpl());
network_prefs_update_timer_.reset(
new base::OneShotTimer<HttpServerPropertiesManager>);
pref_task_runner_->PostTask(
FROM_HERE,
base::Bind(&HttpServerPropertiesManager::UpdateCacheFromPrefsOnPrefThread,
pref_weak_ptr_));
}
void HttpServerPropertiesManager::ShutdownOnPrefThread() {
DCHECK(pref_task_runner_->RunsTasksOnCurrentThread());
// Cancel any pending updates, and stop listening for pref change updates.
pref_cache_update_timer_->Stop();
pref_weak_ptr_factory_.reset();
pref_change_registrar_.RemoveAll();
}
// static
void HttpServerPropertiesManager::SetVersion(
base::DictionaryValue* http_server_properties_dict,
int version_number) {
if (version_number < 0)
version_number = kVersionNumber;
DCHECK_LE(version_number, kVersionNumber);
if (version_number <= kVersionNumber)
http_server_properties_dict->SetInteger(kVersionKey, version_number);
}
// This is required for conformance with the HttpServerProperties interface.
base::WeakPtr<HttpServerProperties> HttpServerPropertiesManager::GetWeakPtr() {
DCHECK(network_task_runner_->RunsTasksOnCurrentThread());
return network_weak_ptr_factory_->GetWeakPtr();
}
void HttpServerPropertiesManager::Clear() {
Clear(base::Closure());
}
void HttpServerPropertiesManager::Clear(const base::Closure& completion) {
DCHECK(network_task_runner_->RunsTasksOnCurrentThread());
http_server_properties_impl_->Clear();
UpdatePrefsFromCacheOnNetworkThread(completion);
}
bool HttpServerPropertiesManager::SupportsRequestPriority(
const HostPortPair& server) {
DCHECK(network_task_runner_->RunsTasksOnCurrentThread());
return http_server_properties_impl_->SupportsRequestPriority(server);
}
void HttpServerPropertiesManager::SetSupportsSpdy(const HostPortPair& server,
bool support_spdy) {
DCHECK(network_task_runner_->RunsTasksOnCurrentThread());
http_server_properties_impl_->SetSupportsSpdy(server, support_spdy);
ScheduleUpdatePrefsOnNetworkThread();
}
bool HttpServerPropertiesManager::RequiresHTTP11(const HostPortPair& server) {
DCHECK(network_task_runner_->RunsTasksOnCurrentThread());
return http_server_properties_impl_->RequiresHTTP11(server);
}
void HttpServerPropertiesManager::SetHTTP11Required(
const HostPortPair& server) {
DCHECK(network_task_runner_->RunsTasksOnCurrentThread());
http_server_properties_impl_->SetHTTP11Required(server);
ScheduleUpdatePrefsOnNetworkThread();
}
void HttpServerPropertiesManager::MaybeForceHTTP11(const HostPortPair& server,
SSLConfig* ssl_config) {
DCHECK(network_task_runner_->RunsTasksOnCurrentThread());
http_server_properties_impl_->MaybeForceHTTP11(server, ssl_config);
}
AlternateProtocolInfo HttpServerPropertiesManager::GetAlternateProtocol(
const HostPortPair& server) {
DCHECK(network_task_runner_->RunsTasksOnCurrentThread());
return http_server_properties_impl_->GetAlternateProtocol(server);
}
void HttpServerPropertiesManager::SetAlternateProtocol(
const HostPortPair& server,
uint16 alternate_port,
AlternateProtocol alternate_protocol,
double alternate_probability) {
DCHECK(network_task_runner_->RunsTasksOnCurrentThread());
http_server_properties_impl_->SetAlternateProtocol(
server, alternate_port, alternate_protocol, alternate_probability);
ScheduleUpdatePrefsOnNetworkThread();
}
void HttpServerPropertiesManager::SetBrokenAlternateProtocol(
const HostPortPair& server) {
DCHECK(network_task_runner_->RunsTasksOnCurrentThread());
http_server_properties_impl_->SetBrokenAlternateProtocol(server);
ScheduleUpdatePrefsOnNetworkThread();
}
bool HttpServerPropertiesManager::WasAlternateProtocolRecentlyBroken(
const HostPortPair& server) {
DCHECK(network_task_runner_->RunsTasksOnCurrentThread());
return http_server_properties_impl_->WasAlternateProtocolRecentlyBroken(
server);
}
void HttpServerPropertiesManager::ConfirmAlternateProtocol(
const HostPortPair& server) {
DCHECK(network_task_runner_->RunsTasksOnCurrentThread());
http_server_properties_impl_->ConfirmAlternateProtocol(server);
ScheduleUpdatePrefsOnNetworkThread();
}
void HttpServerPropertiesManager::ClearAlternateProtocol(
const HostPortPair& server) {
DCHECK(network_task_runner_->RunsTasksOnCurrentThread());
http_server_properties_impl_->ClearAlternateProtocol(server);
ScheduleUpdatePrefsOnNetworkThread();
}
const AlternateProtocolMap&
HttpServerPropertiesManager::alternate_protocol_map() const {
DCHECK(network_task_runner_->RunsTasksOnCurrentThread());
return http_server_properties_impl_->alternate_protocol_map();
}
void HttpServerPropertiesManager::SetAlternateProtocolProbabilityThreshold(
double threshold) {
DCHECK(network_task_runner_->RunsTasksOnCurrentThread());
http_server_properties_impl_->SetAlternateProtocolProbabilityThreshold(
threshold);
}
const SettingsMap& HttpServerPropertiesManager::GetSpdySettings(
const HostPortPair& host_port_pair) {
DCHECK(network_task_runner_->RunsTasksOnCurrentThread());
return http_server_properties_impl_->GetSpdySettings(host_port_pair);
}
bool HttpServerPropertiesManager::SetSpdySetting(
const HostPortPair& host_port_pair,
SpdySettingsIds id,
SpdySettingsFlags flags,
uint32 value) {
DCHECK(network_task_runner_->RunsTasksOnCurrentThread());
bool persist = http_server_properties_impl_->SetSpdySetting(
host_port_pair, id, flags, value);
if (persist)
ScheduleUpdatePrefsOnNetworkThread();
return persist;
}
void HttpServerPropertiesManager::ClearSpdySettings(
const HostPortPair& host_port_pair) {
DCHECK(network_task_runner_->RunsTasksOnCurrentThread());
http_server_properties_impl_->ClearSpdySettings(host_port_pair);
ScheduleUpdatePrefsOnNetworkThread();
}
void HttpServerPropertiesManager::ClearAllSpdySettings() {
DCHECK(network_task_runner_->RunsTasksOnCurrentThread());
http_server_properties_impl_->ClearAllSpdySettings();
ScheduleUpdatePrefsOnNetworkThread();
}
const SpdySettingsMap& HttpServerPropertiesManager::spdy_settings_map()
const {
DCHECK(network_task_runner_->RunsTasksOnCurrentThread());
return http_server_properties_impl_->spdy_settings_map();
}
SupportsQuic HttpServerPropertiesManager::GetSupportsQuic(
const HostPortPair& host_port_pair) const {
DCHECK(network_task_runner_->RunsTasksOnCurrentThread());
return http_server_properties_impl_->GetSupportsQuic(host_port_pair);
}
void HttpServerPropertiesManager::SetSupportsQuic(
const HostPortPair& host_port_pair,
bool used_quic,
const std::string& address) {
DCHECK(network_task_runner_->RunsTasksOnCurrentThread());
http_server_properties_impl_->SetSupportsQuic(
host_port_pair, used_quic, address);
ScheduleUpdatePrefsOnNetworkThread();
}
const SupportsQuicMap& HttpServerPropertiesManager::supports_quic_map()
const {
DCHECK(network_task_runner_->RunsTasksOnCurrentThread());
return http_server_properties_impl_->supports_quic_map();
}
void HttpServerPropertiesManager::SetServerNetworkStats(
const HostPortPair& host_port_pair,
ServerNetworkStats stats) {
DCHECK(network_task_runner_->RunsTasksOnCurrentThread());
http_server_properties_impl_->SetServerNetworkStats(host_port_pair, stats);
ScheduleUpdatePrefsOnNetworkThread();
}
const ServerNetworkStats* HttpServerPropertiesManager::GetServerNetworkStats(
const HostPortPair& host_port_pair) {
DCHECK(network_task_runner_->RunsTasksOnCurrentThread());
return http_server_properties_impl_->GetServerNetworkStats(host_port_pair);
}
const ServerNetworkStatsMap&
HttpServerPropertiesManager::server_network_stats_map() const {
DCHECK(network_task_runner_->RunsTasksOnCurrentThread());
return http_server_properties_impl_->server_network_stats_map();
}
//
// Update the HttpServerPropertiesImpl's cache with data from preferences.
//
void HttpServerPropertiesManager::ScheduleUpdateCacheOnPrefThread() {
DCHECK(pref_task_runner_->RunsTasksOnCurrentThread());
// Cancel pending updates, if any.
pref_cache_update_timer_->Stop();
StartCacheUpdateTimerOnPrefThread(
base::TimeDelta::FromMilliseconds(kUpdateCacheDelayMs));
}
void HttpServerPropertiesManager::StartCacheUpdateTimerOnPrefThread(
base::TimeDelta delay) {
DCHECK(pref_task_runner_->RunsTasksOnCurrentThread());
pref_cache_update_timer_->Start(
FROM_HERE,
delay,
this,
&HttpServerPropertiesManager::UpdateCacheFromPrefsOnPrefThread);
}
void HttpServerPropertiesManager::UpdateCacheFromPrefsOnPrefThread() {
// The preferences can only be read on the pref thread.
DCHECK(pref_task_runner_->RunsTasksOnCurrentThread());
if (!pref_service_->HasPrefPath(path_))
return;
bool detected_corrupted_prefs = false;
const base::DictionaryValue& http_server_properties_dict =
*pref_service_->GetDictionary(path_);
int version = kMissingVersion;
if (!http_server_properties_dict.GetIntegerWithoutPathExpansion(kVersionKey,
&version)) {
DVLOG(1) << "Missing version. Clearing all properties.";
return;
}
// The properties for a given server is in
// http_server_properties_dict["servers"][server].
const base::DictionaryValue* servers_dict = NULL;
if (!http_server_properties_dict.GetDictionaryWithoutPathExpansion(
kServersKey, &servers_dict)) {
DVLOG(1) << "Malformed http_server_properties for servers.";
return;
}
// String is host/port pair of spdy server.
scoped_ptr<StringVector> spdy_servers(new StringVector);
scoped_ptr<SpdySettingsMap> spdy_settings_map(
new SpdySettingsMap(kMaxSpdySettingsHostsToPersist));
scoped_ptr<AlternateProtocolMap> alternate_protocol_map(
new AlternateProtocolMap(kMaxAlternateProtocolHostsToPersist));
scoped_ptr<SupportsQuicMap> supports_quic_map(new SupportsQuicMap());
scoped_ptr<ServerNetworkStatsMap> server_network_stats_map(
new ServerNetworkStatsMap(kMaxServerNetworkStatsHostsToPersist));
for (base::DictionaryValue::Iterator it(*servers_dict); !it.IsAtEnd();
it.Advance()) {
// Get server's host/pair.
const std::string& server_str = it.key();
HostPortPair server = HostPortPair::FromString(server_str);
if (server.host().empty()) {
DVLOG(1) << "Malformed http_server_properties for server: " << server_str;
detected_corrupted_prefs = true;
continue;
}
const base::DictionaryValue* server_pref_dict = NULL;
if (!it.value().GetAsDictionary(&server_pref_dict)) {
DVLOG(1) << "Malformed http_server_properties server: " << server_str;
detected_corrupted_prefs = true;
continue;
}
// Get if server supports Spdy.
bool supports_spdy = false;
if ((server_pref_dict->GetBoolean(kSupportsSpdyKey, &supports_spdy)) &&
supports_spdy) {
spdy_servers->push_back(server_str);
}
AddToSpdySettingsMap(server, *server_pref_dict, spdy_settings_map.get());
if (!AddToAlternateProtocolMap(server, *server_pref_dict,
alternate_protocol_map.get()) ||
!AddToSupportsQuicMap(server, *server_pref_dict,
supports_quic_map.get()) ||
!AddToNetworkStatsMap(server, *server_pref_dict,
server_network_stats_map.get())) {
detected_corrupted_prefs = true;
}
}
network_task_runner_->PostTask(
FROM_HERE,
base::Bind(
&HttpServerPropertiesManager::UpdateCacheFromPrefsOnNetworkThread,
base::Unretained(this), base::Owned(spdy_servers.release()),
base::Owned(spdy_settings_map.release()),
base::Owned(alternate_protocol_map.release()),
base::Owned(supports_quic_map.release()),
base::Owned(server_network_stats_map.release()),
detected_corrupted_prefs));
}
void HttpServerPropertiesManager::AddToSpdySettingsMap(
const HostPortPair& server,
const base::DictionaryValue& server_pref_dict,
SpdySettingsMap* spdy_settings_map) {
// Get SpdySettings.
DCHECK(spdy_settings_map->Peek(server) == spdy_settings_map->end());
const base::DictionaryValue* spdy_settings_dict = NULL;
if (!server_pref_dict.GetDictionaryWithoutPathExpansion(
kSettingsKey, &spdy_settings_dict)) {
return;
}
SettingsMap settings_map;
for (base::DictionaryValue::Iterator dict_it(*spdy_settings_dict);
!dict_it.IsAtEnd(); dict_it.Advance()) {
const std::string& id_str = dict_it.key();
int id = 0;
if (!base::StringToInt(id_str, &id)) {
DVLOG(1) << "Malformed id in SpdySettings for server: "
<< server.ToString();
NOTREACHED();
continue;
}
int value = 0;
if (!dict_it.value().GetAsInteger(&value)) {
DVLOG(1) << "Malformed value in SpdySettings for server: "
<< server.ToString();
NOTREACHED();
continue;
}
SettingsFlagsAndValue flags_and_value(SETTINGS_FLAG_PERSISTED, value);
settings_map[static_cast<SpdySettingsIds>(id)] = flags_and_value;
}
spdy_settings_map->Put(server, settings_map);
}
bool HttpServerPropertiesManager::AddToAlternateProtocolMap(
const HostPortPair& server,
const base::DictionaryValue& server_pref_dict,
AlternateProtocolMap* alternate_protocol_map) {
// Get alternate_protocol server.
DCHECK(alternate_protocol_map->Peek(server) == alternate_protocol_map->end());
const base::DictionaryValue* port_alternate_protocol_dict = NULL;
if (!server_pref_dict.GetDictionaryWithoutPathExpansion(
kAlternateProtocolKey, &port_alternate_protocol_dict)) {
return true;
}
int port = 0;
if (!port_alternate_protocol_dict->GetIntegerWithoutPathExpansion(kPortKey,
&port) ||
!IsPortValid(port)) {
DVLOG(1) << "Malformed Alternate-Protocol server: " << server.ToString();
return false;
}
std::string protocol_str;
if (!port_alternate_protocol_dict->GetStringWithoutPathExpansion(
kProtocolKey, &protocol_str)) {
DVLOG(1) << "Malformed Alternate-Protocol server: " << server.ToString();
return false;
}
AlternateProtocol protocol = AlternateProtocolFromString(protocol_str);
if (!IsAlternateProtocolValid(protocol)) {
DVLOG(1) << "Malformed Alternate-Protocol server: " << server.ToString();
return false;
}
double probability = 1;
if (port_alternate_protocol_dict->HasKey(kProbabilityKey) &&
!port_alternate_protocol_dict->GetDoubleWithoutPathExpansion(
kProbabilityKey, &probability)) {
DVLOG(1) << "Malformed Alternate-Protocol server: " << server.ToString();
return false;
}
AlternateProtocolInfo port_alternate_protocol(static_cast<uint16>(port),
protocol, probability);
alternate_protocol_map->Put(server, port_alternate_protocol);
return true;
}
bool HttpServerPropertiesManager::AddToSupportsQuicMap(
const HostPortPair& server,
const base::DictionaryValue& server_pref_dict,
SupportsQuicMap* supports_quic_map) {
DCHECK(supports_quic_map->find(server) == supports_quic_map->end());
const base::DictionaryValue* supports_quic_dict = NULL;
if (!server_pref_dict.GetDictionaryWithoutPathExpansion(
kSupportsQuicKey, &supports_quic_dict)) {
return true;
}
bool used_quic = 0;
if (!supports_quic_dict->GetBooleanWithoutPathExpansion(kUsedQuicKey,
&used_quic)) {
DVLOG(1) << "Malformed SupportsQuic server: " << server.ToString();
return false;
}
std::string address;
if (!supports_quic_dict->GetStringWithoutPathExpansion(kAddressKey,
&address)) {
DVLOG(1) << "Malformed SupportsQuic server: " << server.ToString();
return false;
}
SupportsQuic supports_quic(used_quic, address);
supports_quic_map->insert(std::make_pair(server, supports_quic));
return true;
}
bool HttpServerPropertiesManager::AddToNetworkStatsMap(
const HostPortPair& server,
const base::DictionaryValue& server_pref_dict,
ServerNetworkStatsMap* network_stats_map) {
DCHECK(network_stats_map->Peek(server) == network_stats_map->end());
const base::DictionaryValue* server_network_stats_dict = NULL;
if (!server_pref_dict.GetDictionaryWithoutPathExpansion(
kNetworkStatsKey, &server_network_stats_dict)) {
return true;
}
int srtt;
if (!server_network_stats_dict->GetIntegerWithoutPathExpansion(kSrttKey,
&srtt)) {
DVLOG(1) << "Malformed ServerNetworkStats for server: "
<< server.ToString();
return false;
}
ServerNetworkStats server_network_stats;
server_network_stats.srtt = base::TimeDelta::FromInternalValue(srtt);
// TODO(rtenneti): When QUIC starts using bandwidth_estimate, then persist
// bandwidth_estimate.
network_stats_map->Put(server, server_network_stats);
return true;
}
void HttpServerPropertiesManager::UpdateCacheFromPrefsOnNetworkThread(
StringVector* spdy_servers,
SpdySettingsMap* spdy_settings_map,
AlternateProtocolMap* alternate_protocol_map,
SupportsQuicMap* supports_quic_map,
ServerNetworkStatsMap* server_network_stats_map,
bool detected_corrupted_prefs) {
// Preferences have the master data because admins might have pushed new
// preferences. Update the cached data with new data from preferences.
DCHECK(network_task_runner_->RunsTasksOnCurrentThread());
UMA_HISTOGRAM_COUNTS("Net.CountOfSpdyServers", spdy_servers->size());
http_server_properties_impl_->InitializeSpdyServers(spdy_servers, true);
// Update the cached data and use the new spdy_settings from preferences.
UMA_HISTOGRAM_COUNTS("Net.CountOfSpdySettings", spdy_settings_map->size());
http_server_properties_impl_->InitializeSpdySettingsServers(
spdy_settings_map);
// Update the cached data and use the new Alternate-Protocol server list from
// preferences.
UMA_HISTOGRAM_COUNTS("Net.CountOfAlternateProtocolServers",
alternate_protocol_map->size());
http_server_properties_impl_->InitializeAlternateProtocolServers(
alternate_protocol_map);
http_server_properties_impl_->InitializeSupportsQuic(supports_quic_map);
http_server_properties_impl_->InitializeServerNetworkStats(
server_network_stats_map);
// Update the prefs with what we have read (delete all corrupted prefs).
if (detected_corrupted_prefs)
ScheduleUpdatePrefsOnNetworkThread();
}
//
// Update Preferences with data from the cached data.
//
void HttpServerPropertiesManager::ScheduleUpdatePrefsOnNetworkThread() {
DCHECK(network_task_runner_->RunsTasksOnCurrentThread());
// Cancel pending updates, if any.
network_prefs_update_timer_->Stop();
StartPrefsUpdateTimerOnNetworkThread(
base::TimeDelta::FromMilliseconds(kUpdatePrefsDelayMs));
}
void HttpServerPropertiesManager::StartPrefsUpdateTimerOnNetworkThread(
base::TimeDelta delay) {
DCHECK(network_task_runner_->RunsTasksOnCurrentThread());
// This is overridden in tests to post the task without the delay.
network_prefs_update_timer_->Start(
FROM_HERE,
delay,
this,
&HttpServerPropertiesManager::UpdatePrefsFromCacheOnNetworkThread);
}
// This is required so we can set this as the callback for a timer.
void HttpServerPropertiesManager::UpdatePrefsFromCacheOnNetworkThread() {
UpdatePrefsFromCacheOnNetworkThread(base::Closure());
}
void HttpServerPropertiesManager::UpdatePrefsFromCacheOnNetworkThread(
const base::Closure& completion) {
DCHECK(network_task_runner_->RunsTasksOnCurrentThread());
base::ListValue* spdy_server_list = new base::ListValue;
http_server_properties_impl_->GetSpdyServerList(
spdy_server_list, kMaxSupportsSpdyServerHostsToPersist);
SpdySettingsMap* spdy_settings_map =
new SpdySettingsMap(kMaxSpdySettingsHostsToPersist);
const SpdySettingsMap& main_map =
http_server_properties_impl_->spdy_settings_map();
int count = 0;
for (SpdySettingsMap::const_iterator it = main_map.begin();
it != main_map.end() && count < kMaxSpdySettingsHostsToPersist;
++it, ++count) {
spdy_settings_map->Put(it->first, it->second);
}
AlternateProtocolMap* alternate_protocol_map =
new AlternateProtocolMap(kMaxAlternateProtocolHostsToPersist);
const AlternateProtocolMap& map =
http_server_properties_impl_->alternate_protocol_map();
count = 0;
typedef std::map<std::string, bool> CanonicalHostPersistedMap;
CanonicalHostPersistedMap persisted_map;
for (AlternateProtocolMap::const_iterator it = map.begin();
it != map.end() && count < kMaxAlternateProtocolHostsToPersist; ++it) {
const HostPortPair& server = it->first;
std::string canonical_suffix =
http_server_properties_impl_->GetCanonicalSuffix(server.host());
if (!canonical_suffix.empty()) {
if (persisted_map.find(canonical_suffix) != persisted_map.end())
continue;
persisted_map[canonical_suffix] = true;
}
alternate_protocol_map->Put(server, it->second);
++count;
}
SupportsQuicMap* supports_quic_map = new SupportsQuicMap();
const SupportsQuicMap& main_supports_quic_map =
http_server_properties_impl_->supports_quic_map();
for (SupportsQuicMap::const_iterator it = main_supports_quic_map.begin();
it != main_supports_quic_map.end(); ++it) {
supports_quic_map->insert(std::make_pair(it->first, it->second));
}
ServerNetworkStatsMap* server_network_stats_map =
new ServerNetworkStatsMap(kMaxServerNetworkStatsHostsToPersist);
const ServerNetworkStatsMap& main_server_network_stats_map =
http_server_properties_impl_->server_network_stats_map();
for (ServerNetworkStatsMap::const_iterator it =
main_server_network_stats_map.begin();
it != main_server_network_stats_map.end(); ++it) {
server_network_stats_map->Put(it->first, it->second);
}
// Update the preferences on the pref thread.
pref_task_runner_->PostTask(
FROM_HERE,
base::Bind(
&HttpServerPropertiesManager::UpdatePrefsOnPrefThread, pref_weak_ptr_,
base::Owned(spdy_server_list), base::Owned(spdy_settings_map),
base::Owned(alternate_protocol_map), base::Owned(supports_quic_map),
base::Owned(server_network_stats_map), completion));
}
// A local or temporary data structure to hold |supports_spdy|, SpdySettings,
// AlternateProtocolInfo and SupportsQuic preferences for a server. This is used
// only in UpdatePrefsOnPrefThread.
struct ServerPref {
ServerPref()
: supports_spdy(false),
settings_map(NULL),
alternate_protocol(NULL),
supports_quic(NULL),
server_network_stats(NULL) {}
ServerPref(bool supports_spdy,
const SettingsMap* settings_map,
const AlternateProtocolInfo* alternate_protocol,
const SupportsQuic* supports_quic,
const ServerNetworkStats* server_network_stats)
: supports_spdy(supports_spdy),
settings_map(settings_map),
alternate_protocol(alternate_protocol),
supports_quic(supports_quic),
server_network_stats(server_network_stats) {}
bool supports_spdy;
const SettingsMap* settings_map;
const AlternateProtocolInfo* alternate_protocol;
const SupportsQuic* supports_quic;
const ServerNetworkStats* server_network_stats;
};
void HttpServerPropertiesManager::UpdatePrefsOnPrefThread(
base::ListValue* spdy_server_list,
SpdySettingsMap* spdy_settings_map,
AlternateProtocolMap* alternate_protocol_map,
SupportsQuicMap* supports_quic_map,
ServerNetworkStatsMap* server_network_stats_map,
const base::Closure& completion) {
typedef std::map<HostPortPair, ServerPref> ServerPrefMap;
ServerPrefMap server_pref_map;
DCHECK(pref_task_runner_->RunsTasksOnCurrentThread());
// Add servers that support spdy to server_pref_map.
std::string s;
for (base::ListValue::const_iterator list_it = spdy_server_list->begin();
list_it != spdy_server_list->end();
++list_it) {
if ((*list_it)->GetAsString(&s)) {
HostPortPair server = HostPortPair::FromString(s);
server_pref_map[server].supports_spdy = true;
}
}
// Add servers that have SpdySettings to server_pref_map.
for (SpdySettingsMap::iterator map_it = spdy_settings_map->begin();
map_it != spdy_settings_map->end(); ++map_it) {
const HostPortPair& server = map_it->first;
server_pref_map[server].settings_map = &map_it->second;
}
// Add AlternateProtocol servers to server_pref_map.
for (AlternateProtocolMap::const_iterator map_it =
alternate_protocol_map->begin();
map_it != alternate_protocol_map->end(); ++map_it) {
const HostPortPair& server = map_it->first;
const AlternateProtocolInfo& port_alternate_protocol = map_it->second;
if (!IsAlternateProtocolValid(port_alternate_protocol.protocol)) {
continue;
}
server_pref_map[server].alternate_protocol = &map_it->second;
}
// Add SupportsQuic servers to server_pref_map.
for (SupportsQuicMap::const_iterator map_it = supports_quic_map->begin();
map_it != supports_quic_map->end(); ++map_it) {
const HostPortPair& server = map_it->first;
server_pref_map[server].supports_quic = &map_it->second;
}
// Add ServerNetworkStats servers to server_pref_map.
for (ServerNetworkStatsMap::const_iterator map_it =
server_network_stats_map->begin();
map_it != server_network_stats_map->end(); ++map_it) {
const HostPortPair& server = map_it->first;
server_pref_map[server].server_network_stats = &map_it->second;
}
// Persist properties to the |path_|.
base::DictionaryValue http_server_properties_dict;
base::DictionaryValue* servers_dict = new base::DictionaryValue;
for (ServerPrefMap::const_iterator map_it = server_pref_map.begin();
map_it != server_pref_map.end();
++map_it) {
const HostPortPair& server = map_it->first;
const ServerPref& server_pref = map_it->second;
base::DictionaryValue* server_pref_dict = new base::DictionaryValue;
// Save supports_spdy.
if (server_pref.supports_spdy)
server_pref_dict->SetBoolean(kSupportsSpdyKey, server_pref.supports_spdy);
SaveSpdySettingsToServerPrefs(server_pref.settings_map, server_pref_dict);
SaveAlternateProtocolToServerPrefs(server_pref.alternate_protocol,
server_pref_dict);
SaveSupportsQuicToServerPrefs(server_pref.supports_quic, server_pref_dict);
SaveNetworkStatsToServerPrefs(server_pref.server_network_stats,
server_pref_dict);
servers_dict->SetWithoutPathExpansion(server.ToString(), server_pref_dict);
}
http_server_properties_dict.SetWithoutPathExpansion(kServersKey,
servers_dict);
SetVersion(&http_server_properties_dict, kVersionNumber);
setting_prefs_ = true;
pref_service_->Set(path_, http_server_properties_dict);
setting_prefs_ = false;
// Note that |completion| will be fired after we have written everything to
// the Preferences, but likely before these changes are serialized to disk.
// This is not a problem though, as JSONPrefStore guarantees that this will
// happen, pretty soon, and even in the case we shut down immediately.
if (!completion.is_null())
completion.Run();
}
void HttpServerPropertiesManager::SaveSpdySettingsToServerPrefs(
const SettingsMap* settings_map,
base::DictionaryValue* server_pref_dict) {
if (!settings_map) {
return;
}
base::DictionaryValue* spdy_settings_dict = new base::DictionaryValue;
for (SettingsMap::const_iterator it = settings_map->begin();
it != settings_map->end(); ++it) {
SpdySettingsIds id = it->first;
uint32 value = it->second.second;
std::string key = base::StringPrintf("%u", id);
spdy_settings_dict->SetInteger(key, value);
}
server_pref_dict->SetWithoutPathExpansion(kSettingsKey, spdy_settings_dict);
}
void HttpServerPropertiesManager::SaveAlternateProtocolToServerPrefs(
const AlternateProtocolInfo* port_alternate_protocol,
base::DictionaryValue* server_pref_dict) {
if (!port_alternate_protocol || port_alternate_protocol->is_broken)
return;
base::DictionaryValue* port_alternate_protocol_dict =
new base::DictionaryValue;
port_alternate_protocol_dict->SetInteger(kPortKey,
port_alternate_protocol->port);
const char* protocol_str =
AlternateProtocolToString(port_alternate_protocol->protocol);
port_alternate_protocol_dict->SetString(kProtocolKey, protocol_str);
port_alternate_protocol_dict->SetDouble(kProbabilityKey,
port_alternate_protocol->probability);
server_pref_dict->SetWithoutPathExpansion(kAlternateProtocolKey,
port_alternate_protocol_dict);
}
void HttpServerPropertiesManager::SaveSupportsQuicToServerPrefs(
const SupportsQuic* supports_quic,
base::DictionaryValue* server_pref_dict) {
// Save supports_quic.
if (!supports_quic)
return;
base::DictionaryValue* supports_quic_dict = new base::DictionaryValue;
supports_quic_dict->SetBoolean(kUsedQuicKey, supports_quic->used_quic);
supports_quic_dict->SetString(kAddressKey, supports_quic->address);
server_pref_dict->SetWithoutPathExpansion(kSupportsQuicKey,
supports_quic_dict);
}
void HttpServerPropertiesManager::SaveNetworkStatsToServerPrefs(
const ServerNetworkStats* server_network_stats,
base::DictionaryValue* server_pref_dict) {
if (!server_network_stats)
return;
base::DictionaryValue* server_network_stats_dict = new base::DictionaryValue;
// Becasue JSON doesn't support int64, persist int64 as a string.
server_network_stats_dict->SetInteger(
kSrttKey, static_cast<int>(server_network_stats->srtt.ToInternalValue()));
// TODO(rtenneti): When QUIC starts using bandwidth_estimate, then persist
// bandwidth_estimate.
server_pref_dict->SetWithoutPathExpansion(kNetworkStatsKey,
server_network_stats_dict);
}
void HttpServerPropertiesManager::OnHttpServerPropertiesChanged() {
DCHECK(pref_task_runner_->RunsTasksOnCurrentThread());
if (!setting_prefs_)
ScheduleUpdateCacheOnPrefThread();
}
} // namespace net