1 // Copyright (c) 2012 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 "chrome/browser/chromeos/settings/session_manager_operation.h" 6 7 #include "base/bind.h" 8 #include "base/bind_helpers.h" 9 #include "base/files/file_path.h" 10 #include "base/message_loop/message_loop.h" 11 #include "base/stl_util.h" 12 #include "base/task_runner_util.h" 13 #include "base/threading/sequenced_worker_pool.h" 14 #include "base/time/time.h" 15 #include "chrome/browser/chromeos/policy/proto/chrome_device_policy.pb.h" 16 #include "chrome/browser/chromeos/settings/owner_key_util.h" 17 #include "components/policy/core/common/cloud/cloud_policy_constants.h" 18 #include "content/public/browser/browser_thread.h" 19 #include "crypto/rsa_private_key.h" 20 #include "crypto/signature_creator.h" 21 #include "policy/proto/device_management_backend.pb.h" 22 23 namespace em = enterprise_management; 24 25 namespace chromeos { 26 27 SessionManagerOperation::SessionManagerOperation(const Callback& callback) 28 : session_manager_client_(NULL), 29 weak_factory_(this), 30 callback_(callback), 31 force_key_load_(false), 32 is_loading_(false) {} 33 34 SessionManagerOperation::~SessionManagerOperation() {} 35 36 void SessionManagerOperation::Start( 37 SessionManagerClient* session_manager_client, 38 scoped_refptr<OwnerKeyUtil> owner_key_util, 39 scoped_refptr<OwnerKey> owner_key) { 40 session_manager_client_ = session_manager_client; 41 owner_key_util_ = owner_key_util; 42 owner_key_ = owner_key; 43 Run(); 44 } 45 46 void SessionManagerOperation::RestartLoad(bool key_changed) { 47 if (key_changed) 48 owner_key_ = NULL; 49 50 if (!is_loading_) 51 return; 52 53 // Abort previous load operations. 54 weak_factory_.InvalidateWeakPtrs(); 55 // Mark as not loading to start loading again. 56 is_loading_ = false; 57 StartLoading(); 58 } 59 60 void SessionManagerOperation::StartLoading() { 61 if (is_loading_) 62 return; 63 is_loading_ = true; 64 EnsureOwnerKey(base::Bind(&SessionManagerOperation::RetrieveDeviceSettings, 65 weak_factory_.GetWeakPtr())); 66 } 67 68 void SessionManagerOperation::ReportResult( 69 DeviceSettingsService::Status status) { 70 callback_.Run(this, status); 71 } 72 73 void SessionManagerOperation::EnsureOwnerKey(const base::Closure& callback) { 74 if (force_key_load_ || !owner_key_.get() || !owner_key_->public_key()) { 75 scoped_refptr<base::TaskRunner> task_runner = 76 content::BrowserThread::GetBlockingPool()-> 77 GetTaskRunnerWithShutdownBehavior( 78 base::SequencedWorkerPool::SKIP_ON_SHUTDOWN); 79 base::PostTaskAndReplyWithResult( 80 task_runner.get(), 81 FROM_HERE, 82 base::Bind(&SessionManagerOperation::LoadOwnerKey, 83 owner_key_util_, owner_key_), 84 base::Bind(&SessionManagerOperation::StoreOwnerKey, 85 weak_factory_.GetWeakPtr(), callback)); 86 } else { 87 callback.Run(); 88 } 89 } 90 91 // static 92 scoped_refptr<OwnerKey> SessionManagerOperation::LoadOwnerKey( 93 scoped_refptr<OwnerKeyUtil> util, 94 scoped_refptr<OwnerKey> current_key) { 95 scoped_ptr<std::vector<uint8> > public_key; 96 scoped_ptr<crypto::RSAPrivateKey> private_key; 97 98 // Keep any already-existing keys. 99 if (current_key.get()) { 100 if (current_key->public_key()) 101 public_key.reset(new std::vector<uint8>(*current_key->public_key())); 102 if (current_key->private_key()) 103 private_key.reset(current_key->private_key()->Copy()); 104 } 105 106 if (!public_key.get() && util->IsPublicKeyPresent()) { 107 public_key.reset(new std::vector<uint8>()); 108 if (!util->ImportPublicKey(public_key.get())) 109 LOG(ERROR) << "Failed to load public owner key."; 110 } 111 112 if (public_key.get() && !private_key.get()) { 113 private_key.reset(util->FindPrivateKey(*public_key)); 114 if (!private_key.get()) 115 VLOG(1) << "Failed to load private owner key."; 116 } 117 118 return new OwnerKey(public_key.Pass(), private_key.Pass()); 119 } 120 121 void SessionManagerOperation::StoreOwnerKey(const base::Closure& callback, 122 scoped_refptr<OwnerKey> new_key) { 123 force_key_load_ = false; 124 owner_key_ = new_key; 125 126 if (!owner_key_.get() || !owner_key_->public_key()) { 127 ReportResult(DeviceSettingsService::STORE_KEY_UNAVAILABLE); 128 return; 129 } 130 131 callback.Run(); 132 } 133 134 void SessionManagerOperation::RetrieveDeviceSettings() { 135 session_manager_client()->RetrieveDevicePolicy( 136 base::Bind(&SessionManagerOperation::ValidateDeviceSettings, 137 weak_factory_.GetWeakPtr())); 138 } 139 140 void SessionManagerOperation::ValidateDeviceSettings( 141 const std::string& policy_blob) { 142 scoped_ptr<em::PolicyFetchResponse> policy(new em::PolicyFetchResponse()); 143 if (policy_blob.empty()) { 144 ReportResult(DeviceSettingsService::STORE_NO_POLICY); 145 return; 146 } 147 148 if (!policy->ParseFromString(policy_blob) || 149 !policy->IsInitialized()) { 150 ReportResult(DeviceSettingsService::STORE_INVALID_POLICY); 151 return; 152 } 153 154 base::SequencedWorkerPool* pool = 155 content::BrowserThread::GetBlockingPool(); 156 scoped_refptr<base::SequencedTaskRunner> background_task_runner = 157 pool->GetSequencedTaskRunnerWithShutdownBehavior( 158 pool->GetSequenceToken(), 159 base::SequencedWorkerPool::SKIP_ON_SHUTDOWN); 160 161 policy::DeviceCloudPolicyValidator* validator = 162 policy::DeviceCloudPolicyValidator::Create(policy.Pass(), 163 background_task_runner); 164 165 166 // Policy auto-generated by session manager doesn't include a timestamp, so 167 // the timestamp shouldn't be verified in that case. 168 // 169 // Additionally, offline devices can get their clock set backwards in time 170 // under some hardware conditions; checking the timestamp now could likely 171 // find a value in the future, and prevent the user from signing-in or 172 // starting guest mode. Tlsdate will eventually fix the clock when the device 173 // is back online, but the network configuration may come from device ONC. 174 // 175 // To prevent all of these issues the timestamp is just not verified when 176 // loading the device policy from the cache. Note that the timestamp is still 177 // verified during enrollment and when a new policy is fetched from the 178 // server. 179 validator->ValidateAgainstCurrentPolicy( 180 policy_data_.get(), 181 policy::CloudPolicyValidatorBase::TIMESTAMP_NOT_REQUIRED, 182 policy::CloudPolicyValidatorBase::DM_TOKEN_NOT_REQUIRED); 183 validator->ValidatePolicyType(policy::dm_protocol::kChromeDevicePolicyType); 184 validator->ValidatePayload(); 185 validator->ValidateSignature(*owner_key_->public_key(), false); 186 validator->StartValidation( 187 base::Bind(&SessionManagerOperation::ReportValidatorStatus, 188 weak_factory_.GetWeakPtr())); 189 } 190 191 void SessionManagerOperation::ReportValidatorStatus( 192 policy::DeviceCloudPolicyValidator* validator) { 193 DeviceSettingsService::Status status = 194 DeviceSettingsService::STORE_VALIDATION_ERROR; 195 if (validator->success()) { 196 status = DeviceSettingsService::STORE_SUCCESS; 197 policy_data_ = validator->policy_data().Pass(); 198 device_settings_ = validator->payload().Pass(); 199 } else { 200 LOG(ERROR) << "Policy validation failed: " << validator->status(); 201 202 // Those are mostly caused by RTC loss and are recoverable. 203 if (validator->status() == 204 policy::DeviceCloudPolicyValidator::VALIDATION_BAD_TIMESTAMP) { 205 status = DeviceSettingsService::STORE_TEMP_VALIDATION_ERROR; 206 } 207 } 208 209 ReportResult(status); 210 } 211 212 LoadSettingsOperation::LoadSettingsOperation(const Callback& callback) 213 : SessionManagerOperation(callback) {} 214 215 LoadSettingsOperation::~LoadSettingsOperation() {} 216 217 void LoadSettingsOperation::Run() { 218 StartLoading(); 219 } 220 221 StoreSettingsOperation::StoreSettingsOperation( 222 const Callback& callback, 223 scoped_ptr<em::PolicyFetchResponse> policy) 224 : SessionManagerOperation(callback), 225 policy_(policy.Pass()), 226 weak_factory_(this) {} 227 228 StoreSettingsOperation::~StoreSettingsOperation() {} 229 230 void StoreSettingsOperation::Run() { 231 session_manager_client()->StoreDevicePolicy( 232 policy_->SerializeAsString(), 233 base::Bind(&StoreSettingsOperation::HandleStoreResult, 234 weak_factory_.GetWeakPtr())); 235 } 236 237 void StoreSettingsOperation::HandleStoreResult(bool success) { 238 if (!success) 239 ReportResult(DeviceSettingsService::STORE_OPERATION_FAILED); 240 else 241 StartLoading(); 242 } 243 244 SignAndStoreSettingsOperation::SignAndStoreSettingsOperation( 245 const Callback& callback, 246 scoped_ptr<em::ChromeDeviceSettingsProto> new_settings, 247 const std::string& username) 248 : SessionManagerOperation(callback), 249 new_settings_(new_settings.Pass()), 250 username_(username), 251 weak_factory_(this) { 252 DCHECK(new_settings_.get()); 253 } 254 255 SignAndStoreSettingsOperation::~SignAndStoreSettingsOperation() {} 256 257 void SignAndStoreSettingsOperation::Run() { 258 EnsureOwnerKey(base::Bind(&SignAndStoreSettingsOperation::StartSigning, 259 weak_factory_.GetWeakPtr())); 260 } 261 262 void SignAndStoreSettingsOperation::StartSigning() { 263 if (!owner_key().get() || !owner_key()->private_key() || username_.empty()) { 264 ReportResult(DeviceSettingsService::STORE_KEY_UNAVAILABLE); 265 return; 266 } 267 268 base::PostTaskAndReplyWithResult( 269 content::BrowserThread::GetBlockingPool(), 270 FROM_HERE, 271 base::Bind(&SignAndStoreSettingsOperation::AssembleAndSignPolicy, 272 base::Passed(&new_settings_), username_, owner_key()), 273 base::Bind(&SignAndStoreSettingsOperation::StoreDeviceSettingsBlob, 274 weak_factory_.GetWeakPtr())); 275 } 276 277 // static 278 std::string SignAndStoreSettingsOperation::AssembleAndSignPolicy( 279 scoped_ptr<em::ChromeDeviceSettingsProto> device_settings, 280 const std::string& username, 281 scoped_refptr<OwnerKey> owner_key) { 282 // Assemble the policy. 283 em::PolicyFetchResponse policy_response; 284 em::PolicyData policy; 285 policy.set_policy_type(policy::dm_protocol::kChromeDevicePolicyType); 286 policy.set_timestamp((base::Time::NowFromSystemTime() - 287 base::Time::UnixEpoch()).InMilliseconds()); 288 policy.set_username(username); 289 if (!device_settings->SerializeToString(policy.mutable_policy_value()) || 290 !policy.SerializeToString(policy_response.mutable_policy_data())) { 291 LOG(ERROR) << "Failed to encode policy payload."; 292 return std::string(); 293 } 294 295 // Generate the signature. 296 scoped_ptr<crypto::SignatureCreator> signature_creator( 297 crypto::SignatureCreator::Create(owner_key->private_key())); 298 signature_creator->Update( 299 reinterpret_cast<const uint8*>(policy_response.policy_data().c_str()), 300 policy_response.policy_data().size()); 301 std::vector<uint8> signature_bytes; 302 std::string policy_blob; 303 if (!signature_creator->Final(&signature_bytes)) { 304 LOG(ERROR) << "Failed to create policy signature."; 305 return std::string(); 306 } 307 308 policy_response.mutable_policy_data_signature()->assign( 309 reinterpret_cast<const char*>(vector_as_array(&signature_bytes)), 310 signature_bytes.size()); 311 return policy_response.SerializeAsString(); 312 } 313 314 void SignAndStoreSettingsOperation::StoreDeviceSettingsBlob( 315 std::string device_settings_blob) { 316 if (device_settings_blob.empty()) { 317 ReportResult(DeviceSettingsService::STORE_POLICY_ERROR); 318 return; 319 } 320 321 session_manager_client()->StoreDevicePolicy( 322 device_settings_blob, 323 base::Bind(&SignAndStoreSettingsOperation::HandleStoreResult, 324 weak_factory_.GetWeakPtr())); 325 } 326 327 void SignAndStoreSettingsOperation::HandleStoreResult(bool success) { 328 if (!success) 329 ReportResult(DeviceSettingsService::STORE_OPERATION_FAILED); 330 else 331 StartLoading(); 332 } 333 334 } // namespace chromeos 335