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1 // Copyright 2013 The Chromium Authors. All rights reserved. | |
2 // Use of this source code is governed by a BSD-style license that can be | |
3 // found in the LICENSE file. | |
4 | |
5 #include "google_apis/gcm/gcm_client_impl.h" | |
6 | |
7 #include "base/bind.h" | |
8 #include "base/files/file_path.h" | |
9 #include "base/logging.h" | |
10 #include "base/memory/scoped_ptr.h" | |
11 #include "base/message_loop/message_loop.h" | |
12 #include "base/metrics/histogram.h" | |
13 #include "base/sequenced_task_runner.h" | |
14 #include "base/strings/string_number_conversions.h" | |
15 #include "base/strings/stringprintf.h" | |
16 #include "base/time/default_clock.h" | |
17 #include "google_apis/gcm/base/encryptor.h" | |
18 #include "google_apis/gcm/base/mcs_message.h" | |
19 #include "google_apis/gcm/base/mcs_util.h" | |
20 #include "google_apis/gcm/engine/checkin_request.h" | |
21 #include "google_apis/gcm/engine/connection_factory_impl.h" | |
22 #include "google_apis/gcm/engine/gcm_store_impl.h" | |
23 #include "google_apis/gcm/monitoring/gcm_stats_recorder.h" | |
24 #include "google_apis/gcm/protocol/checkin.pb.h" | |
25 #include "google_apis/gcm/protocol/mcs.pb.h" | |
26 #include "net/http/http_network_session.h" | |
27 #include "net/url_request/url_request_context.h" | |
28 #include "url/gurl.h" | |
29 | |
30 namespace gcm { | |
31 | |
32 namespace { | |
33 | |
34 // Backoff policy. Shared across reconnection logic and checkin/(un)registration | |
35 // retries. | |
36 // Note: In order to ensure a minimum of 20 seconds between server errors (for | |
37 // server reasons), we have a 30s +- 10s (33%) jitter initial backoff. | |
38 // TODO(zea): consider sharing/synchronizing the scheduling of backoff retries | |
39 // themselves. | |
40 const net::BackoffEntry::Policy kDefaultBackoffPolicy = { | |
41 // Number of initial errors (in sequence) to ignore before applying | |
42 // exponential back-off rules. | |
43 0, | |
44 | |
45 // Initial delay for exponential back-off in ms. | |
46 30 * 1000, // 30 seconds. | |
47 | |
48 // Factor by which the waiting time will be multiplied. | |
49 2, | |
50 | |
51 // Fuzzing percentage. ex: 10% will spread requests randomly | |
52 // between 90%-100% of the calculated time. | |
53 0.33, // 33%. | |
54 | |
55 // Maximum amount of time we are willing to delay our request in ms. | |
56 10 * 60 * 1000, // 10 minutes. | |
57 | |
58 // Time to keep an entry from being discarded even when it | |
59 // has no significant state, -1 to never discard. | |
60 -1, | |
61 | |
62 // Don't use initial delay unless the last request was an error. | |
63 false, | |
64 }; | |
65 | |
66 // Indicates a message type of the received message. | |
67 enum MessageType { | |
68 UNKNOWN, // Undetermined type. | |
69 DATA_MESSAGE, // Regular data message. | |
70 DELETED_MESSAGES, // Messages were deleted on the server. | |
71 SEND_ERROR, // Error sending a message. | |
72 }; | |
73 | |
74 enum OutgoingMessageTTLCategory { | |
75 TTL_ZERO, | |
76 TTL_LESS_THAN_OR_EQUAL_TO_ONE_MINUTE, | |
77 TTL_LESS_THAN_OR_EQUAL_TO_ONE_HOUR, | |
78 TTL_LESS_THAN_OR_EQUAL_TO_ONE_DAY, | |
79 TTL_LESS_THAN_OR_EQUAL_TO_ONE_WEEK, | |
80 TTL_MORE_THAN_ONE_WEEK, | |
81 TTL_MAXIMUM, | |
82 // NOTE: always keep this entry at the end. Add new TTL category only | |
83 // immediately above this line. Make sure to update the corresponding | |
84 // histogram enum accordingly. | |
85 TTL_CATEGORY_COUNT | |
86 }; | |
87 | |
88 const int kMaxRegistrationRetries = 5; | |
89 const char kMessageTypeDataMessage[] = "gcm"; | |
90 const char kMessageTypeDeletedMessagesKey[] = "deleted_messages"; | |
91 const char kMessageTypeKey[] = "message_type"; | |
92 const char kMessageTypeSendErrorKey[] = "send_error"; | |
93 const char kSendErrorMessageIdKey[] = "google.message_id"; | |
94 const char kSendMessageFromValue[] = "gcm@chrome.com"; | |
95 const int64 kDefaultUserSerialNumber = 0LL; | |
96 | |
97 GCMClient::Result ToGCMClientResult(MCSClient::MessageSendStatus status) { | |
98 switch (status) { | |
99 case MCSClient::QUEUED: | |
100 return GCMClient::SUCCESS; | |
101 case MCSClient::QUEUE_SIZE_LIMIT_REACHED: | |
102 return GCMClient::NETWORK_ERROR; | |
103 case MCSClient::APP_QUEUE_SIZE_LIMIT_REACHED: | |
104 return GCMClient::NETWORK_ERROR; | |
105 case MCSClient::MESSAGE_TOO_LARGE: | |
106 return GCMClient::INVALID_PARAMETER; | |
107 case MCSClient::NO_CONNECTION_ON_ZERO_TTL: | |
108 return GCMClient::NETWORK_ERROR; | |
109 case MCSClient::TTL_EXCEEDED: | |
110 return GCMClient::NETWORK_ERROR; | |
111 case MCSClient::SENT: | |
112 default: | |
113 NOTREACHED(); | |
114 break; | |
115 } | |
116 return GCMClientImpl::UNKNOWN_ERROR; | |
117 } | |
118 | |
119 void ToCheckinProtoVersion( | |
120 const GCMClient::ChromeBuildInfo& chrome_build_info, | |
121 checkin_proto::ChromeBuildProto* android_build_info) { | |
122 checkin_proto::ChromeBuildProto_Platform platform; | |
123 switch (chrome_build_info.platform) { | |
124 case GCMClient::PLATFORM_WIN: | |
125 platform = checkin_proto::ChromeBuildProto_Platform_PLATFORM_WIN; | |
126 break; | |
127 case GCMClient::PLATFORM_MAC: | |
128 platform = checkin_proto::ChromeBuildProto_Platform_PLATFORM_MAC; | |
129 break; | |
130 case GCMClient::PLATFORM_LINUX: | |
131 platform = checkin_proto::ChromeBuildProto_Platform_PLATFORM_LINUX; | |
132 break; | |
133 case GCMClient::PLATFORM_IOS: | |
134 platform = checkin_proto::ChromeBuildProto_Platform_PLATFORM_IOS; | |
135 break; | |
136 case GCMClient::PLATFORM_ANDROID: | |
137 platform = checkin_proto::ChromeBuildProto_Platform_PLATFORM_ANDROID; | |
138 break; | |
139 case GCMClient::PLATFORM_CROS: | |
140 platform = checkin_proto::ChromeBuildProto_Platform_PLATFORM_CROS; | |
141 break; | |
142 case GCMClient::PLATFORM_UNKNOWN: | |
143 // For unknown platform, return as LINUX. | |
144 platform = checkin_proto::ChromeBuildProto_Platform_PLATFORM_LINUX; | |
145 break; | |
146 default: | |
147 NOTREACHED(); | |
148 platform = checkin_proto::ChromeBuildProto_Platform_PLATFORM_LINUX; | |
149 break; | |
150 } | |
151 android_build_info->set_platform(platform); | |
152 | |
153 checkin_proto::ChromeBuildProto_Channel channel; | |
154 switch (chrome_build_info.channel) { | |
155 case GCMClient::CHANNEL_STABLE: | |
156 channel = checkin_proto::ChromeBuildProto_Channel_CHANNEL_STABLE; | |
157 break; | |
158 case GCMClient::CHANNEL_BETA: | |
159 channel = checkin_proto::ChromeBuildProto_Channel_CHANNEL_BETA; | |
160 break; | |
161 case GCMClient::CHANNEL_DEV: | |
162 channel = checkin_proto::ChromeBuildProto_Channel_CHANNEL_DEV; | |
163 break; | |
164 case GCMClient::CHANNEL_CANARY: | |
165 channel = checkin_proto::ChromeBuildProto_Channel_CHANNEL_CANARY; | |
166 break; | |
167 case GCMClient::CHANNEL_UNKNOWN: | |
168 channel = checkin_proto::ChromeBuildProto_Channel_CHANNEL_UNKNOWN; | |
169 break; | |
170 default: | |
171 NOTREACHED(); | |
172 channel = checkin_proto::ChromeBuildProto_Channel_CHANNEL_UNKNOWN; | |
173 break; | |
174 } | |
175 android_build_info->set_channel(channel); | |
176 | |
177 android_build_info->set_chrome_version(chrome_build_info.version); | |
178 } | |
179 | |
180 MessageType DecodeMessageType(const std::string& value) { | |
181 if (kMessageTypeDeletedMessagesKey == value) | |
182 return DELETED_MESSAGES; | |
183 if (kMessageTypeSendErrorKey == value) | |
184 return SEND_ERROR; | |
185 if (kMessageTypeDataMessage == value) | |
186 return DATA_MESSAGE; | |
187 return UNKNOWN; | |
188 } | |
189 | |
190 void RecordOutgoingMessageToUMA( | |
191 const gcm::GCMClient::OutgoingMessage& message) { | |
192 OutgoingMessageTTLCategory ttl_category; | |
193 if (message.time_to_live == 0) | |
194 ttl_category = TTL_ZERO; | |
195 else if (message.time_to_live <= 60 ) | |
196 ttl_category = TTL_LESS_THAN_OR_EQUAL_TO_ONE_MINUTE; | |
197 else if (message.time_to_live <= 60 * 60) | |
198 ttl_category = TTL_LESS_THAN_OR_EQUAL_TO_ONE_HOUR; | |
199 else if (message.time_to_live <= 24 * 60 * 60) | |
200 ttl_category = TTL_LESS_THAN_OR_EQUAL_TO_ONE_DAY; | |
201 else if (message.time_to_live <= 7 * 24 * 60 * 60) | |
202 ttl_category = TTL_LESS_THAN_OR_EQUAL_TO_ONE_WEEK; | |
203 else if (message.time_to_live < gcm::GCMClient::OutgoingMessage::kMaximumTTL) | |
204 ttl_category = TTL_MORE_THAN_ONE_WEEK; | |
205 else | |
206 ttl_category = TTL_MAXIMUM; | |
207 | |
208 UMA_HISTOGRAM_ENUMERATION("GCM.GCMOutgoingMessageTTLCategory", | |
209 ttl_category, | |
210 TTL_CATEGORY_COUNT); | |
211 } | |
212 | |
213 } // namespace | |
214 | |
215 GCMInternalsBuilder::GCMInternalsBuilder() {} | |
216 GCMInternalsBuilder::~GCMInternalsBuilder() {} | |
217 | |
218 scoped_ptr<base::Clock> GCMInternalsBuilder::BuildClock() { | |
219 return make_scoped_ptr<base::Clock>(new base::DefaultClock()); | |
220 } | |
221 | |
222 scoped_ptr<MCSClient> GCMInternalsBuilder::BuildMCSClient( | |
223 const std::string& version, | |
224 base::Clock* clock, | |
225 ConnectionFactory* connection_factory, | |
226 GCMStore* gcm_store, | |
227 GCMStatsRecorder* recorder) { | |
228 return make_scoped_ptr<MCSClient>( | |
229 new MCSClient(version, | |
230 clock, | |
231 connection_factory, | |
232 gcm_store, | |
233 recorder)); | |
234 } | |
235 | |
236 scoped_ptr<ConnectionFactory> GCMInternalsBuilder::BuildConnectionFactory( | |
237 const std::vector<GURL>& endpoints, | |
238 const net::BackoffEntry::Policy& backoff_policy, | |
239 scoped_refptr<net::HttpNetworkSession> network_session, | |
240 net::NetLog* net_log, | |
241 GCMStatsRecorder* recorder) { | |
242 return make_scoped_ptr<ConnectionFactory>( | |
243 new ConnectionFactoryImpl(endpoints, | |
244 backoff_policy, | |
245 network_session, | |
246 net_log, | |
247 recorder)); | |
248 } | |
249 | |
250 GCMClientImpl::GCMClientImpl(scoped_ptr<GCMInternalsBuilder> internals_builder) | |
251 : internals_builder_(internals_builder.Pass()), | |
252 state_(UNINITIALIZED), | |
253 clock_(internals_builder_->BuildClock()), | |
254 url_request_context_getter_(NULL), | |
255 pending_registration_requests_deleter_(&pending_registration_requests_), | |
256 pending_unregistration_requests_deleter_( | |
257 &pending_unregistration_requests_), | |
258 periodic_checkin_ptr_factory_(this), | |
259 weak_ptr_factory_(this) { | |
260 } | |
261 | |
262 GCMClientImpl::~GCMClientImpl() { | |
263 } | |
264 | |
265 void GCMClientImpl::Initialize( | |
266 const ChromeBuildInfo& chrome_build_info, | |
267 const base::FilePath& path, | |
268 const std::vector<std::string>& account_ids, | |
269 const scoped_refptr<base::SequencedTaskRunner>& blocking_task_runner, | |
270 const scoped_refptr<net::URLRequestContextGetter>& | |
271 url_request_context_getter, | |
272 scoped_ptr<Encryptor> encryptor, | |
273 GCMClient::Delegate* delegate) { | |
274 DCHECK_EQ(UNINITIALIZED, state_); | |
275 DCHECK(url_request_context_getter); | |
276 DCHECK(delegate); | |
277 | |
278 url_request_context_getter_ = url_request_context_getter; | |
279 const net::HttpNetworkSession::Params* network_session_params = | |
280 url_request_context_getter_->GetURLRequestContext()-> | |
281 GetNetworkSessionParams(); | |
282 DCHECK(network_session_params); | |
283 network_session_ = new net::HttpNetworkSession(*network_session_params); | |
284 | |
285 chrome_build_info_ = chrome_build_info; | |
286 account_ids_ = account_ids; | |
287 | |
288 gcm_store_.reset( | |
289 new GCMStoreImpl(path, blocking_task_runner, encryptor.Pass())); | |
290 | |
291 delegate_ = delegate; | |
292 | |
293 recorder_.SetDelegate(this); | |
294 | |
295 state_ = INITIALIZED; | |
296 } | |
297 | |
298 void GCMClientImpl::Start() { | |
299 DCHECK_EQ(INITIALIZED, state_); | |
300 | |
301 // Once the loading is completed, the check-in will be initiated. | |
302 gcm_store_->Load(base::Bind(&GCMClientImpl::OnLoadCompleted, | |
303 weak_ptr_factory_.GetWeakPtr())); | |
304 state_ = LOADING; | |
305 } | |
306 | |
307 void GCMClientImpl::OnLoadCompleted(scoped_ptr<GCMStore::LoadResult> result) { | |
308 DCHECK_EQ(LOADING, state_); | |
309 | |
310 if (!result->success) { | |
311 ResetState(); | |
312 return; | |
313 } | |
314 | |
315 registrations_ = result->registrations; | |
316 device_checkin_info_.android_id = result->device_android_id; | |
317 device_checkin_info_.secret = result->device_security_token; | |
318 last_checkin_time_ = result->last_checkin_time; | |
319 gservices_settings_.UpdateFromLoadResult(*result); | |
320 InitializeMCSClient(result.Pass()); | |
321 | |
322 if (device_checkin_info_.IsValid()) { | |
323 SchedulePeriodicCheckin(); | |
324 OnReady(); | |
325 return; | |
326 } | |
327 | |
328 state_ = INITIAL_DEVICE_CHECKIN; | |
329 device_checkin_info_.Reset(); | |
330 StartCheckin(); | |
331 } | |
332 | |
333 void GCMClientImpl::InitializeMCSClient( | |
334 scoped_ptr<GCMStore::LoadResult> result) { | |
335 std::vector<GURL> endpoints; | |
336 endpoints.push_back(gservices_settings_.GetMCSMainEndpoint()); | |
337 endpoints.push_back(gservices_settings_.GetMCSFallbackEndpoint()); | |
338 connection_factory_ = internals_builder_->BuildConnectionFactory( | |
339 endpoints, | |
340 kDefaultBackoffPolicy, | |
341 network_session_, | |
342 net_log_.net_log(), | |
343 &recorder_); | |
344 mcs_client_ = internals_builder_->BuildMCSClient( | |
345 chrome_build_info_.version, | |
346 clock_.get(), | |
347 connection_factory_.get(), | |
348 gcm_store_.get(), | |
349 &recorder_).Pass(); | |
350 | |
351 mcs_client_->Initialize( | |
352 base::Bind(&GCMClientImpl::OnMCSError, weak_ptr_factory_.GetWeakPtr()), | |
353 base::Bind(&GCMClientImpl::OnMessageReceivedFromMCS, | |
354 weak_ptr_factory_.GetWeakPtr()), | |
355 base::Bind(&GCMClientImpl::OnMessageSentToMCS, | |
356 weak_ptr_factory_.GetWeakPtr()), | |
357 result.Pass()); | |
358 } | |
359 | |
360 void GCMClientImpl::OnFirstTimeDeviceCheckinCompleted( | |
361 const CheckinInfo& checkin_info) { | |
362 DCHECK(!device_checkin_info_.IsValid()); | |
363 | |
364 device_checkin_info_.android_id = checkin_info.android_id; | |
365 device_checkin_info_.secret = checkin_info.secret; | |
366 gcm_store_->SetDeviceCredentials( | |
367 checkin_info.android_id, checkin_info.secret, | |
368 base::Bind(&GCMClientImpl::SetDeviceCredentialsCallback, | |
369 weak_ptr_factory_.GetWeakPtr())); | |
370 | |
371 OnReady(); | |
372 } | |
373 | |
374 void GCMClientImpl::OnReady() { | |
375 state_ = READY; | |
376 StartMCSLogin(); | |
377 | |
378 delegate_->OnGCMReady(); | |
379 } | |
380 | |
381 void GCMClientImpl::StartMCSLogin() { | |
382 DCHECK_EQ(READY, state_); | |
383 DCHECK(device_checkin_info_.IsValid()); | |
384 mcs_client_->Login(device_checkin_info_.android_id, | |
385 device_checkin_info_.secret); | |
386 } | |
387 | |
388 void GCMClientImpl::ResetState() { | |
389 state_ = UNINITIALIZED; | |
390 // TODO(fgorski): reset all of the necessart objects and start over. | |
391 } | |
392 | |
393 void GCMClientImpl::StartCheckin() { | |
394 // Make sure no checkin is in progress. | |
395 if (checkin_request_.get()) | |
396 return; | |
397 | |
398 checkin_proto::ChromeBuildProto chrome_build_proto; | |
399 ToCheckinProtoVersion(chrome_build_info_, &chrome_build_proto); | |
400 CheckinRequest::RequestInfo request_info(device_checkin_info_.android_id, | |
401 device_checkin_info_.secret, | |
402 gservices_settings_.digest(), | |
403 account_ids_, | |
404 chrome_build_proto); | |
405 checkin_request_.reset( | |
406 new CheckinRequest(gservices_settings_.GetCheckinURL(), | |
407 request_info, | |
408 kDefaultBackoffPolicy, | |
409 base::Bind(&GCMClientImpl::OnCheckinCompleted, | |
410 weak_ptr_factory_.GetWeakPtr()), | |
411 url_request_context_getter_, | |
412 &recorder_)); | |
413 checkin_request_->Start(); | |
414 } | |
415 | |
416 void GCMClientImpl::OnCheckinCompleted( | |
417 const checkin_proto::AndroidCheckinResponse& checkin_response) { | |
418 checkin_request_.reset(); | |
419 | |
420 if (!checkin_response.has_android_id() || | |
421 !checkin_response.has_security_token()) { | |
422 // TODO(fgorski): I don't think a retry here will help, we should probably | |
423 // start over. By checking in with (0, 0). | |
424 return; | |
425 } | |
426 | |
427 CheckinInfo checkin_info; | |
428 checkin_info.android_id = checkin_response.android_id(); | |
429 checkin_info.secret = checkin_response.security_token(); | |
430 | |
431 if (state_ == INITIAL_DEVICE_CHECKIN) { | |
432 OnFirstTimeDeviceCheckinCompleted(checkin_info); | |
433 } else { | |
434 // checkin_info is not expected to change after a periodic checkin as it | |
435 // would invalidate the registratoin IDs. | |
436 DCHECK_EQ(READY, state_); | |
437 DCHECK_EQ(device_checkin_info_.android_id, checkin_info.android_id); | |
438 DCHECK_EQ(device_checkin_info_.secret, checkin_info.secret); | |
439 } | |
440 | |
441 if (device_checkin_info_.IsValid()) { | |
442 // First update G-services settings, as something might have changed. | |
443 if (gservices_settings_.UpdateFromCheckinResponse(checkin_response)) { | |
444 gcm_store_->SetGServicesSettings( | |
445 gservices_settings_.settings_map(), | |
446 gservices_settings_.digest(), | |
447 base::Bind(&GCMClientImpl::SetGServicesSettingsCallback, | |
448 weak_ptr_factory_.GetWeakPtr())); | |
449 } | |
450 | |
451 last_checkin_time_ = clock_->Now(); | |
452 gcm_store_->SetLastCheckinTime( | |
453 last_checkin_time_, | |
454 base::Bind(&GCMClientImpl::SetLastCheckinTimeCallback, | |
455 weak_ptr_factory_.GetWeakPtr())); | |
456 SchedulePeriodicCheckin(); | |
457 } | |
458 } | |
459 | |
460 void GCMClientImpl::SetGServicesSettingsCallback(bool success) { | |
461 DCHECK(success); | |
462 } | |
463 | |
464 void GCMClientImpl::SchedulePeriodicCheckin() { | |
465 // Make sure no checkin is in progress. | |
466 if (checkin_request_.get()) | |
467 return; | |
468 | |
469 // There should be only one periodic checkin pending at a time. Removing | |
470 // pending periodic checkin to schedule a new one. | |
471 periodic_checkin_ptr_factory_.InvalidateWeakPtrs(); | |
472 | |
473 base::TimeDelta time_to_next_checkin = GetTimeToNextCheckin(); | |
474 if (time_to_next_checkin < base::TimeDelta()) | |
475 time_to_next_checkin = base::TimeDelta(); | |
476 | |
477 base::MessageLoop::current()->PostDelayedTask( | |
478 FROM_HERE, | |
479 base::Bind(&GCMClientImpl::StartCheckin, | |
480 periodic_checkin_ptr_factory_.GetWeakPtr()), | |
481 time_to_next_checkin); | |
482 } | |
483 | |
484 base::TimeDelta GCMClientImpl::GetTimeToNextCheckin() const { | |
485 return last_checkin_time_ + gservices_settings_.GetCheckinInterval() - | |
486 clock_->Now(); | |
487 } | |
488 | |
489 void GCMClientImpl::SetLastCheckinTimeCallback(bool success) { | |
490 // TODO(fgorski): This is one of the signals that store needs a rebuild. | |
491 DCHECK(success); | |
492 } | |
493 | |
494 void GCMClientImpl::SetDeviceCredentialsCallback(bool success) { | |
495 // TODO(fgorski): This is one of the signals that store needs a rebuild. | |
496 DCHECK(success); | |
497 } | |
498 | |
499 void GCMClientImpl::UpdateRegistrationCallback(bool success) { | |
500 // TODO(fgorski): This is one of the signals that store needs a rebuild. | |
501 DCHECK(success); | |
502 } | |
503 | |
504 void GCMClientImpl::Stop() { | |
505 device_checkin_info_.Reset(); | |
506 connection_factory_.reset(); | |
507 mcs_client_.reset(); | |
508 checkin_request_.reset(); | |
509 pending_registration_requests_.clear(); | |
510 state_ = INITIALIZED; | |
511 gcm_store_->Close(); | |
512 } | |
513 | |
514 void GCMClientImpl::CheckOut() { | |
515 Stop(); | |
516 gcm_store_->Destroy(base::Bind(&GCMClientImpl::OnGCMStoreDestroyed, | |
517 weak_ptr_factory_.GetWeakPtr())); | |
518 } | |
519 | |
520 void GCMClientImpl::Register(const std::string& app_id, | |
521 const std::vector<std::string>& sender_ids) { | |
522 DCHECK_EQ(state_, READY); | |
523 | |
524 // If the same sender ids is provided, return the cached registration ID | |
525 // directly. | |
526 RegistrationInfoMap::const_iterator registrations_iter = | |
527 registrations_.find(app_id); | |
528 if (registrations_iter != registrations_.end() && | |
529 registrations_iter->second->sender_ids == sender_ids) { | |
530 delegate_->OnRegisterFinished( | |
531 app_id, registrations_iter->second->registration_id, SUCCESS); | |
532 return; | |
533 } | |
534 | |
535 RegistrationRequest::RequestInfo request_info( | |
536 device_checkin_info_.android_id, | |
537 device_checkin_info_.secret, | |
538 app_id, | |
539 sender_ids); | |
540 DCHECK_EQ(0u, pending_registration_requests_.count(app_id)); | |
541 | |
542 RegistrationRequest* registration_request = | |
543 new RegistrationRequest(gservices_settings_.GetRegistrationURL(), | |
544 request_info, | |
545 kDefaultBackoffPolicy, | |
546 base::Bind(&GCMClientImpl::OnRegisterCompleted, | |
547 weak_ptr_factory_.GetWeakPtr(), | |
548 app_id, | |
549 sender_ids), | |
550 kMaxRegistrationRetries, | |
551 url_request_context_getter_, | |
552 &recorder_); | |
553 pending_registration_requests_[app_id] = registration_request; | |
554 registration_request->Start(); | |
555 } | |
556 | |
557 void GCMClientImpl::OnRegisterCompleted( | |
558 const std::string& app_id, | |
559 const std::vector<std::string>& sender_ids, | |
560 RegistrationRequest::Status status, | |
561 const std::string& registration_id) { | |
562 DCHECK(delegate_); | |
563 | |
564 Result result; | |
565 PendingRegistrationRequests::iterator iter = | |
566 pending_registration_requests_.find(app_id); | |
567 if (iter == pending_registration_requests_.end()) | |
568 result = UNKNOWN_ERROR; | |
569 else if (status == RegistrationRequest::INVALID_SENDER) | |
570 result = INVALID_PARAMETER; | |
571 else if (registration_id.empty()) | |
572 result = SERVER_ERROR; | |
573 else | |
574 result = SUCCESS; | |
575 | |
576 if (result == SUCCESS) { | |
577 // Cache it. | |
578 linked_ptr<RegistrationInfo> registration(new RegistrationInfo); | |
579 registration->sender_ids = sender_ids; | |
580 registration->registration_id = registration_id; | |
581 registrations_[app_id] = registration; | |
582 | |
583 // Save it in the persistent store. | |
584 gcm_store_->AddRegistration( | |
585 app_id, | |
586 registration, | |
587 base::Bind(&GCMClientImpl::UpdateRegistrationCallback, | |
588 weak_ptr_factory_.GetWeakPtr())); | |
589 } | |
590 | |
591 delegate_->OnRegisterFinished( | |
592 app_id, result == SUCCESS ? registration_id : std::string(), result); | |
593 | |
594 if (iter != pending_registration_requests_.end()) { | |
595 delete iter->second; | |
596 pending_registration_requests_.erase(iter); | |
597 } | |
598 } | |
599 | |
600 void GCMClientImpl::Unregister(const std::string& app_id) { | |
601 DCHECK_EQ(state_, READY); | |
602 if (pending_unregistration_requests_.count(app_id) == 1) | |
603 return; | |
604 | |
605 // Remove from the cache and persistent store. | |
606 registrations_.erase(app_id); | |
607 gcm_store_->RemoveRegistration( | |
608 app_id, | |
609 base::Bind(&GCMClientImpl::UpdateRegistrationCallback, | |
610 weak_ptr_factory_.GetWeakPtr())); | |
611 | |
612 UnregistrationRequest::RequestInfo request_info( | |
613 device_checkin_info_.android_id, | |
614 device_checkin_info_.secret, | |
615 app_id); | |
616 | |
617 UnregistrationRequest* unregistration_request = new UnregistrationRequest( | |
618 gservices_settings_.GetRegistrationURL(), | |
619 request_info, | |
620 kDefaultBackoffPolicy, | |
621 base::Bind(&GCMClientImpl::OnUnregisterCompleted, | |
622 weak_ptr_factory_.GetWeakPtr(), | |
623 app_id), | |
624 url_request_context_getter_, | |
625 &recorder_); | |
626 pending_unregistration_requests_[app_id] = unregistration_request; | |
627 unregistration_request->Start(); | |
628 } | |
629 | |
630 void GCMClientImpl::OnUnregisterCompleted( | |
631 const std::string& app_id, | |
632 UnregistrationRequest::Status status) { | |
633 DVLOG(1) << "Unregister completed for app: " << app_id | |
634 << " with " << (status ? "success." : "failure."); | |
635 delegate_->OnUnregisterFinished( | |
636 app_id, | |
637 status == UnregistrationRequest::SUCCESS ? SUCCESS : SERVER_ERROR); | |
638 | |
639 PendingUnregistrationRequests::iterator iter = | |
640 pending_unregistration_requests_.find(app_id); | |
641 if (iter == pending_unregistration_requests_.end()) | |
642 return; | |
643 | |
644 delete iter->second; | |
645 pending_unregistration_requests_.erase(iter); | |
646 } | |
647 | |
648 void GCMClientImpl::OnGCMStoreDestroyed(bool success) { | |
649 DLOG_IF(ERROR, !success) << "GCM store failed to be destroyed!"; | |
650 UMA_HISTOGRAM_BOOLEAN("GCM.StoreDestroySucceeded", success); | |
651 } | |
652 | |
653 void GCMClientImpl::Send(const std::string& app_id, | |
654 const std::string& receiver_id, | |
655 const OutgoingMessage& message) { | |
656 DCHECK_EQ(state_, READY); | |
657 | |
658 RecordOutgoingMessageToUMA(message); | |
659 | |
660 mcs_proto::DataMessageStanza stanza; | |
661 stanza.set_ttl(message.time_to_live); | |
662 stanza.set_sent(clock_->Now().ToInternalValue() / | |
663 base::Time::kMicrosecondsPerSecond); | |
664 stanza.set_id(message.id); | |
665 stanza.set_from(kSendMessageFromValue); | |
666 stanza.set_to(receiver_id); | |
667 stanza.set_category(app_id); | |
668 | |
669 for (MessageData::const_iterator iter = message.data.begin(); | |
670 iter != message.data.end(); | |
671 ++iter) { | |
672 mcs_proto::AppData* app_data = stanza.add_app_data(); | |
673 app_data->set_key(iter->first); | |
674 app_data->set_value(iter->second); | |
675 } | |
676 | |
677 MCSMessage mcs_message(stanza); | |
678 DVLOG(1) << "MCS message size: " << mcs_message.size(); | |
679 mcs_client_->SendMessage(mcs_message); | |
680 } | |
681 | |
682 std::string GCMClientImpl::GetStateString() const { | |
683 switch(state_) { | |
684 case GCMClientImpl::INITIALIZED: | |
685 return "INITIALIZED"; | |
686 case GCMClientImpl::UNINITIALIZED: | |
687 return "UNINITIALIZED"; | |
688 case GCMClientImpl::LOADING: | |
689 return "LOADING"; | |
690 case GCMClientImpl::INITIAL_DEVICE_CHECKIN: | |
691 return "INITIAL_DEVICE_CHECKIN"; | |
692 case GCMClientImpl::READY: | |
693 return "READY"; | |
694 default: | |
695 NOTREACHED(); | |
696 return std::string(); | |
697 } | |
698 } | |
699 | |
700 void GCMClientImpl::SetRecording(bool recording) { | |
701 recorder_.SetRecording(recording); | |
702 } | |
703 | |
704 void GCMClientImpl::ClearActivityLogs() { | |
705 recorder_.Clear(); | |
706 } | |
707 | |
708 GCMClient::GCMStatistics GCMClientImpl::GetStatistics() const { | |
709 GCMClient::GCMStatistics stats; | |
710 stats.gcm_client_created = true; | |
711 stats.is_recording = recorder_.is_recording(); | |
712 stats.gcm_client_state = GetStateString(); | |
713 stats.connection_client_created = mcs_client_.get() != NULL; | |
714 if (mcs_client_.get()) { | |
715 stats.connection_state = mcs_client_->GetStateString(); | |
716 stats.send_queue_size = mcs_client_->GetSendQueueSize(); | |
717 stats.resend_queue_size = mcs_client_->GetResendQueueSize(); | |
718 } | |
719 if (device_checkin_info_.android_id > 0) | |
720 stats.android_id = device_checkin_info_.android_id; | |
721 recorder_.CollectActivities(&stats.recorded_activities); | |
722 | |
723 for (RegistrationInfoMap::const_iterator it = registrations_.begin(); | |
724 it != registrations_.end(); ++it) { | |
725 stats.registered_app_ids.push_back(it->first); | |
726 } | |
727 return stats; | |
728 } | |
729 | |
730 void GCMClientImpl::OnActivityRecorded() { | |
731 delegate_->OnActivityRecorded(); | |
732 } | |
733 | |
734 void GCMClientImpl::OnMessageReceivedFromMCS(const gcm::MCSMessage& message) { | |
735 switch (message.tag()) { | |
736 case kLoginResponseTag: | |
737 DVLOG(1) << "Login response received by GCM Client. Ignoring."; | |
738 return; | |
739 case kDataMessageStanzaTag: | |
740 DVLOG(1) << "A downstream message received. Processing..."; | |
741 HandleIncomingMessage(message); | |
742 return; | |
743 default: | |
744 NOTREACHED() << "Message with unexpected tag received by GCMClient"; | |
745 return; | |
746 } | |
747 } | |
748 | |
749 void GCMClientImpl::OnMessageSentToMCS(int64 user_serial_number, | |
750 const std::string& app_id, | |
751 const std::string& message_id, | |
752 MCSClient::MessageSendStatus status) { | |
753 DCHECK_EQ(user_serial_number, kDefaultUserSerialNumber); | |
754 DCHECK(delegate_); | |
755 | |
756 // TTL_EXCEEDED is singled out here, because it can happen long time after the | |
757 // message was sent. That is why it comes as |OnMessageSendError| event rather | |
758 // than |OnSendFinished|. SendErrorDetails.additional_data is left empty. | |
759 // All other errors will be raised immediately, through asynchronous callback. | |
760 // It is expected that TTL_EXCEEDED will be issued for a message that was | |
761 // previously issued |OnSendFinished| with status SUCCESS. | |
762 // For now, we do not report that the message has been sent and acked | |
763 // successfully. | |
764 // TODO(jianli): Consider adding UMA for this status. | |
765 if (status == MCSClient::TTL_EXCEEDED) { | |
766 SendErrorDetails send_error_details; | |
767 send_error_details.message_id = message_id; | |
768 send_error_details.result = GCMClient::TTL_EXCEEDED; | |
769 delegate_->OnMessageSendError(app_id, send_error_details); | |
770 } else if (status != MCSClient::SENT) { | |
771 delegate_->OnSendFinished(app_id, message_id, ToGCMClientResult(status)); | |
772 } | |
773 } | |
774 | |
775 void GCMClientImpl::OnMCSError() { | |
776 // TODO(fgorski): For now it replaces the initialization method. Long term it | |
777 // should have an error or status passed in. | |
778 } | |
779 | |
780 void GCMClientImpl::HandleIncomingMessage(const gcm::MCSMessage& message) { | |
781 DCHECK(delegate_); | |
782 | |
783 const mcs_proto::DataMessageStanza& data_message_stanza = | |
784 reinterpret_cast<const mcs_proto::DataMessageStanza&>( | |
785 message.GetProtobuf()); | |
786 DCHECK_EQ(data_message_stanza.device_user_id(), kDefaultUserSerialNumber); | |
787 | |
788 // Copying all the data from the stanza to a MessageData object. When present, | |
789 // keys like kMessageTypeKey or kSendErrorMessageIdKey will be filtered out | |
790 // later. | |
791 MessageData message_data; | |
792 for (int i = 0; i < data_message_stanza.app_data_size(); ++i) { | |
793 std::string key = data_message_stanza.app_data(i).key(); | |
794 message_data[key] = data_message_stanza.app_data(i).value(); | |
795 } | |
796 | |
797 MessageType message_type = DATA_MESSAGE; | |
798 MessageData::iterator iter = message_data.find(kMessageTypeKey); | |
799 if (iter != message_data.end()) { | |
800 message_type = DecodeMessageType(iter->second); | |
801 message_data.erase(iter); | |
802 } | |
803 | |
804 switch (message_type) { | |
805 case DATA_MESSAGE: | |
806 HandleIncomingDataMessage(data_message_stanza, message_data); | |
807 break; | |
808 case DELETED_MESSAGES: | |
809 recorder_.RecordDataMessageReceived(data_message_stanza.category(), | |
810 data_message_stanza.from(), | |
811 data_message_stanza.ByteSize(), | |
812 true, | |
813 GCMStatsRecorder::DELETED_MESSAGES); | |
814 delegate_->OnMessagesDeleted(data_message_stanza.category()); | |
815 break; | |
816 case SEND_ERROR: | |
817 HandleIncomingSendError(data_message_stanza, message_data); | |
818 break; | |
819 case UNKNOWN: | |
820 default: // Treat default the same as UNKNOWN. | |
821 DVLOG(1) << "Unknown message_type received. Message ignored. " | |
822 << "App ID: " << data_message_stanza.category() << "."; | |
823 break; | |
824 } | |
825 } | |
826 | |
827 void GCMClientImpl::HandleIncomingDataMessage( | |
828 const mcs_proto::DataMessageStanza& data_message_stanza, | |
829 MessageData& message_data) { | |
830 std::string app_id = data_message_stanza.category(); | |
831 | |
832 // Drop the message when the app is not registered for the sender of the | |
833 // message. | |
834 RegistrationInfoMap::iterator iter = registrations_.find(app_id); | |
835 bool not_registered = | |
836 iter == registrations_.end() || | |
837 std::find(iter->second->sender_ids.begin(), | |
838 iter->second->sender_ids.end(), | |
839 data_message_stanza.from()) == iter->second->sender_ids.end(); | |
840 recorder_.RecordDataMessageReceived(app_id, data_message_stanza.from(), | |
841 data_message_stanza.ByteSize(), !not_registered, | |
842 GCMStatsRecorder::DATA_MESSAGE); | |
843 if (not_registered) { | |
844 return; | |
845 } | |
846 | |
847 IncomingMessage incoming_message; | |
848 incoming_message.sender_id = data_message_stanza.from(); | |
849 if (data_message_stanza.has_token()) | |
850 incoming_message.collapse_key = data_message_stanza.token(); | |
851 incoming_message.data = message_data; | |
852 delegate_->OnMessageReceived(app_id, incoming_message); | |
853 } | |
854 | |
855 void GCMClientImpl::HandleIncomingSendError( | |
856 const mcs_proto::DataMessageStanza& data_message_stanza, | |
857 MessageData& message_data) { | |
858 SendErrorDetails send_error_details; | |
859 send_error_details.additional_data = message_data; | |
860 send_error_details.result = SERVER_ERROR; | |
861 | |
862 MessageData::iterator iter = | |
863 send_error_details.additional_data.find(kSendErrorMessageIdKey); | |
864 if (iter != send_error_details.additional_data.end()) { | |
865 send_error_details.message_id = iter->second; | |
866 send_error_details.additional_data.erase(iter); | |
867 } | |
868 | |
869 recorder_.RecordIncomingSendError( | |
870 data_message_stanza.category(), | |
871 data_message_stanza.to(), | |
872 data_message_stanza.id()); | |
873 delegate_->OnMessageSendError(data_message_stanza.category(), | |
874 send_error_details); | |
875 } | |
876 | |
877 } // namespace gcm | |
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