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865 lines
36 KiB
865 lines
36 KiB
// |
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// Copyright (C) 2014 The Android Open Source Project |
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// |
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// Licensed under the Apache License, Version 2.0 (the "License"); |
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// you may not use this file except in compliance with the License. |
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// You may obtain a copy of the License at |
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// |
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// http://www.apache.org/licenses/LICENSE-2.0 |
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// |
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// Unless required by applicable law or agreed to in writing, software |
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// distributed under the License is distributed on an "AS IS" BASIS, |
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. |
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// See the License for the specific language governing permissions and |
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// limitations under the License. |
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// |
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#include "update_engine/update_manager/chromeos_policy.h" |
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#include <algorithm> |
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#include <set> |
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#include <string> |
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#include <vector> |
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#include <base/logging.h> |
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#include <base/strings/string_util.h> |
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#include <base/time/time.h> |
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#include "update_engine/common/error_code.h" |
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#include "update_engine/common/error_code_utils.h" |
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#include "update_engine/common/utils.h" |
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#include "update_engine/update_manager/device_policy_provider.h" |
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#include "update_engine/update_manager/enough_slots_ab_updates_policy_impl.h" |
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#include "update_engine/update_manager/enterprise_device_policy_impl.h" |
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#include "update_engine/update_manager/interactive_update_policy_impl.h" |
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#include "update_engine/update_manager/official_build_check_policy_impl.h" |
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#include "update_engine/update_manager/out_of_box_experience_policy_impl.h" |
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#include "update_engine/update_manager/policy_utils.h" |
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#include "update_engine/update_manager/shill_provider.h" |
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#include "update_engine/update_manager/update_time_restrictions_policy_impl.h" |
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using base::Time; |
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using base::TimeDelta; |
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using chromeos_update_engine::ConnectionTethering; |
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using chromeos_update_engine::ConnectionType; |
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using chromeos_update_engine::ErrorCode; |
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using chromeos_update_engine::InstallPlan; |
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using std::get; |
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using std::min; |
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using std::set; |
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using std::string; |
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using std::vector; |
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namespace { |
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// Examines |err_code| and decides whether the URL index needs to be advanced, |
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// the error count for the URL incremented, or none of the above. In the first |
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// case, returns true; in the second case, increments |*url_num_error_p| and |
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// returns false; otherwise just returns false. |
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// |
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// TODO(garnold) Adapted from PayloadState::UpdateFailed() (to be retired). |
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bool HandleErrorCode(ErrorCode err_code, int* url_num_error_p) { |
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err_code = chromeos_update_engine::utils::GetBaseErrorCode(err_code); |
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switch (err_code) { |
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// Errors which are good indicators of a problem with a particular URL or |
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// the protocol used in the URL or entities in the communication channel |
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// (e.g. proxies). We should try the next available URL in the next update |
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// check to quickly recover from these errors. |
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case ErrorCode::kPayloadHashMismatchError: |
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case ErrorCode::kPayloadSizeMismatchError: |
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case ErrorCode::kDownloadPayloadVerificationError: |
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case ErrorCode::kDownloadPayloadPubKeyVerificationError: |
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case ErrorCode::kSignedDeltaPayloadExpectedError: |
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case ErrorCode::kDownloadInvalidMetadataMagicString: |
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case ErrorCode::kDownloadSignatureMissingInManifest: |
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case ErrorCode::kDownloadManifestParseError: |
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case ErrorCode::kDownloadMetadataSignatureError: |
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case ErrorCode::kDownloadMetadataSignatureVerificationError: |
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case ErrorCode::kDownloadMetadataSignatureMismatch: |
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case ErrorCode::kDownloadOperationHashVerificationError: |
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case ErrorCode::kDownloadOperationExecutionError: |
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case ErrorCode::kDownloadOperationHashMismatch: |
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case ErrorCode::kDownloadInvalidMetadataSize: |
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case ErrorCode::kDownloadInvalidMetadataSignature: |
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case ErrorCode::kDownloadOperationHashMissingError: |
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case ErrorCode::kDownloadMetadataSignatureMissingError: |
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case ErrorCode::kPayloadMismatchedType: |
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case ErrorCode::kUnsupportedMajorPayloadVersion: |
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case ErrorCode::kUnsupportedMinorPayloadVersion: |
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case ErrorCode::kPayloadTimestampError: |
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case ErrorCode::kVerityCalculationError: |
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LOG(INFO) << "Advancing download URL due to error " |
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<< chromeos_update_engine::utils::ErrorCodeToString(err_code) |
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<< " (" << static_cast<int>(err_code) << ")"; |
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return true; |
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// Errors which seem to be just transient network/communication related |
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// failures and do not indicate any inherent problem with the URL itself. |
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// So, we should keep the current URL but just increment the |
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// failure count to give it more chances. This way, while we maximize our |
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// chances of downloading from the URLs that appear earlier in the response |
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// (because download from a local server URL that appears earlier in a |
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// response is preferable than downloading from the next URL which could be |
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// an Internet URL and thus could be more expensive). |
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case ErrorCode::kError: |
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case ErrorCode::kDownloadTransferError: |
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case ErrorCode::kDownloadWriteError: |
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case ErrorCode::kDownloadStateInitializationError: |
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case ErrorCode::kOmahaErrorInHTTPResponse: // Aggregate for HTTP errors. |
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LOG(INFO) << "Incrementing URL failure count due to error " |
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<< chromeos_update_engine::utils::ErrorCodeToString(err_code) |
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<< " (" << static_cast<int>(err_code) << ")"; |
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*url_num_error_p += 1; |
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return false; |
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// Errors which are not specific to a URL and hence shouldn't result in |
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// the URL being penalized. This can happen in two cases: |
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// 1. We haven't started downloading anything: These errors don't cost us |
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// anything in terms of actual payload bytes, so we should just do the |
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// regular retries at the next update check. |
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// 2. We have successfully downloaded the payload: In this case, the |
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// payload attempt number would have been incremented and would take care |
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// of the back-off at the next update check. |
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// In either case, there's no need to update URL index or failure count. |
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case ErrorCode::kOmahaRequestError: |
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case ErrorCode::kOmahaResponseHandlerError: |
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case ErrorCode::kPostinstallRunnerError: |
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case ErrorCode::kFilesystemCopierError: |
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case ErrorCode::kInstallDeviceOpenError: |
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case ErrorCode::kKernelDeviceOpenError: |
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case ErrorCode::kDownloadNewPartitionInfoError: |
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case ErrorCode::kNewRootfsVerificationError: |
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case ErrorCode::kNewKernelVerificationError: |
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case ErrorCode::kPostinstallBootedFromFirmwareB: |
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case ErrorCode::kPostinstallFirmwareRONotUpdatable: |
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case ErrorCode::kOmahaRequestEmptyResponseError: |
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case ErrorCode::kOmahaRequestXMLParseError: |
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case ErrorCode::kOmahaResponseInvalid: |
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case ErrorCode::kOmahaUpdateIgnoredPerPolicy: |
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case ErrorCode::kOmahaUpdateDeferredPerPolicy: |
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case ErrorCode::kNonCriticalUpdateInOOBE: |
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case ErrorCode::kOmahaUpdateDeferredForBackoff: |
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case ErrorCode::kPostinstallPowerwashError: |
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case ErrorCode::kUpdateCanceledByChannelChange: |
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case ErrorCode::kOmahaRequestXMLHasEntityDecl: |
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case ErrorCode::kFilesystemVerifierError: |
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case ErrorCode::kUserCanceled: |
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case ErrorCode::kOmahaUpdateIgnoredOverCellular: |
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case ErrorCode::kUpdatedButNotActive: |
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case ErrorCode::kNoUpdate: |
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case ErrorCode::kRollbackNotPossible: |
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case ErrorCode::kFirstActiveOmahaPingSentPersistenceError: |
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LOG(INFO) << "Not changing URL index or failure count due to error " |
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<< chromeos_update_engine::utils::ErrorCodeToString(err_code) |
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<< " (" << static_cast<int>(err_code) << ")"; |
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return false; |
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case ErrorCode::kSuccess: // success code |
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case ErrorCode::kUmaReportedMax: // not an error code |
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case ErrorCode::kOmahaRequestHTTPResponseBase: // aggregated already |
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case ErrorCode::kDevModeFlag: // not an error code |
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case ErrorCode::kResumedFlag: // not an error code |
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case ErrorCode::kTestImageFlag: // not an error code |
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case ErrorCode::kTestOmahaUrlFlag: // not an error code |
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case ErrorCode::kSpecialFlags: // not an error code |
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// These shouldn't happen. Enumerating these explicitly here so that we |
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// can let the compiler warn about new error codes that are added to |
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// action_processor.h but not added here. |
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LOG(WARNING) << "Unexpected error " |
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<< chromeos_update_engine::utils::ErrorCodeToString(err_code) |
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<< " (" << static_cast<int>(err_code) << ")"; |
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// Note: Not adding a default here so as to let the compiler warn us of |
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// any new enums that were added in the .h but not listed in this switch. |
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} |
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return false; |
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} |
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// Checks whether |url| can be used under given download restrictions. |
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bool IsUrlUsable(const string& url, bool http_allowed) { |
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return http_allowed || |
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!base::StartsWith( |
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url, "http://", base::CompareCase::INSENSITIVE_ASCII); |
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} |
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} // namespace |
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namespace chromeos_update_manager { |
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const NextUpdateCheckPolicyConstants |
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ChromeOSPolicy::kNextUpdateCheckPolicyConstants = { |
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.timeout_initial_interval = 7 * 60, |
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.timeout_periodic_interval = 45 * 60, |
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.timeout_max_backoff_interval = 4 * 60 * 60, |
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.timeout_regular_fuzz = 10 * 60, |
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.attempt_backoff_max_interval_in_days = 16, |
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.attempt_backoff_fuzz_in_hours = 12, |
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}; |
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const int ChromeOSPolicy::kMaxP2PAttempts = 10; |
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const int ChromeOSPolicy::kMaxP2PAttemptsPeriodInSeconds = 5 * 24 * 60 * 60; |
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EvalStatus ChromeOSPolicy::UpdateCheckAllowed(EvaluationContext* ec, |
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State* state, |
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string* error, |
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UpdateCheckParams* result) const { |
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// Set the default return values. |
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result->updates_enabled = true; |
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result->target_channel.clear(); |
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result->target_version_prefix.clear(); |
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result->rollback_allowed = false; |
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result->rollback_allowed_milestones = -1; |
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result->interactive = false; |
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EnoughSlotsAbUpdatesPolicyImpl enough_slots_ab_updates_policy; |
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EnterpriseDevicePolicyImpl enterprise_device_policy; |
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OnlyUpdateOfficialBuildsPolicyImpl only_update_official_builds_policy; |
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InteractiveUpdatePolicyImpl interactive_update_policy; |
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OobePolicyImpl oobe_policy; |
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NextUpdateCheckTimePolicyImpl next_update_check_time_policy( |
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kNextUpdateCheckPolicyConstants); |
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vector<Policy const*> policies_to_consult = { |
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// Do not perform any updates if there are not enough slots to do A/B |
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// updates. |
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&enough_slots_ab_updates_policy, |
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// Check to see if Enterprise-managed (has DevicePolicy) and/or |
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// Kiosk-mode. If so, then defer to those settings. |
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&enterprise_device_policy, |
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// Check to see if an interactive update was requested. |
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&interactive_update_policy, |
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// Unofficial builds should not perform periodic update checks. |
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&only_update_official_builds_policy, |
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// If OOBE is enabled, wait until it is completed. |
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&oobe_policy, |
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// Ensure that periodic update checks are timed properly. |
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&next_update_check_time_policy, |
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}; |
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// Now that the list of policy implementations, and the order to consult them, |
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// has been setup, consult the policies. If none of the policies make a |
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// definitive decisions about whether or not to check for updates, then allow |
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// the update check to happen. |
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EvalStatus status = ConsultPolicies(policies_to_consult, |
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&Policy::UpdateCheckAllowed, |
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ec, |
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state, |
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error, |
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result); |
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if (EvalStatus::kContinue != status) { |
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return status; |
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} else { |
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// It is time to check for an update. |
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LOG(INFO) << "Allowing update check."; |
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return EvalStatus::kSucceeded; |
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} |
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} |
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EvalStatus ChromeOSPolicy::UpdateCanBeApplied(EvaluationContext* ec, |
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State* state, |
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std::string* error, |
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ErrorCode* result, |
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InstallPlan* install_plan) const { |
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UpdateTimeRestrictionsPolicyImpl update_time_restrictions_policy; |
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InteractiveUpdatePolicyImpl interactive_update_policy; |
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vector<Policy const*> policies_to_consult = { |
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// Check to see if an interactive update has been requested. |
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&interactive_update_policy, |
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// Do not apply or download an update if we are inside one of the |
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// restricted times. |
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&update_time_restrictions_policy, |
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}; |
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EvalStatus status = ConsultPolicies(policies_to_consult, |
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&Policy::UpdateCanBeApplied, |
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ec, |
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state, |
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error, |
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result, |
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install_plan); |
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if (EvalStatus::kContinue != status) { |
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return status; |
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} else { |
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// The update can proceed. |
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LOG(INFO) << "Allowing update to be applied."; |
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*result = ErrorCode::kSuccess; |
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return EvalStatus::kSucceeded; |
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} |
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} |
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EvalStatus ChromeOSPolicy::UpdateCanStart( |
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EvaluationContext* ec, |
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State* state, |
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string* error, |
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UpdateDownloadParams* result, |
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const UpdateState update_state) const { |
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// Set the default return values. Note that we set persisted values (backoff, |
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// scattering) to the same values presented in the update state. The reason is |
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// that preemptive returns, such as the case where an update check is due, |
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// should not clear off the said values; rather, it is the deliberate |
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// inference of new values that should cause them to be reset. |
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result->update_can_start = false; |
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result->cannot_start_reason = UpdateCannotStartReason::kUndefined; |
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result->download_url_idx = -1; |
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result->download_url_allowed = true; |
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result->download_url_num_errors = 0; |
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result->p2p_downloading_allowed = false; |
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result->p2p_sharing_allowed = false; |
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result->do_increment_failures = false; |
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result->backoff_expiry = update_state.backoff_expiry; |
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result->scatter_wait_period = update_state.scatter_wait_period; |
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result->scatter_check_threshold = update_state.scatter_check_threshold; |
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// Make sure that we're not due for an update check. |
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UpdateCheckParams check_result; |
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EvalStatus check_status = UpdateCheckAllowed(ec, state, error, &check_result); |
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if (check_status == EvalStatus::kFailed) |
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return EvalStatus::kFailed; |
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bool is_check_due = (check_status == EvalStatus::kSucceeded && |
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check_result.updates_enabled == true); |
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// Check whether backoff applies, and if not then which URL can be used for |
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// downloading. These require scanning the download error log, and so they are |
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// done together. |
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UpdateBackoffAndDownloadUrlResult backoff_url_result; |
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EvalStatus backoff_url_status = UpdateBackoffAndDownloadUrl( |
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ec, state, error, &backoff_url_result, update_state); |
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if (backoff_url_status == EvalStatus::kFailed) |
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return EvalStatus::kFailed; |
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result->download_url_idx = backoff_url_result.url_idx; |
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result->download_url_num_errors = backoff_url_result.url_num_errors; |
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result->do_increment_failures = backoff_url_result.do_increment_failures; |
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result->backoff_expiry = backoff_url_result.backoff_expiry; |
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bool is_backoff_active = |
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(backoff_url_status == EvalStatus::kAskMeAgainLater) || |
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!backoff_url_result.backoff_expiry.is_null(); |
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DevicePolicyProvider* const dp_provider = state->device_policy_provider(); |
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bool is_scattering_active = false; |
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EvalStatus scattering_status = EvalStatus::kSucceeded; |
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const bool* device_policy_is_loaded_p = |
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ec->GetValue(dp_provider->var_device_policy_is_loaded()); |
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if (device_policy_is_loaded_p && *device_policy_is_loaded_p) { |
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// Check whether scattering applies to this update attempt. We should not be |
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// scattering if this is an interactive update check, or if OOBE is enabled |
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// but not completed. |
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// |
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// Note: current code further suppresses scattering if a "deadline" |
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// attribute is found in the Omaha response. However, it appears that the |
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// presence of this attribute is merely indicative of an OOBE update, during |
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// which we suppress scattering anyway. |
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bool is_scattering_applicable = false; |
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result->scatter_wait_period = kZeroInterval; |
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result->scatter_check_threshold = 0; |
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if (!update_state.interactive) { |
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const bool* is_oobe_enabled_p = |
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ec->GetValue(state->config_provider()->var_is_oobe_enabled()); |
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if (is_oobe_enabled_p && !(*is_oobe_enabled_p)) { |
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is_scattering_applicable = true; |
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} else { |
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const bool* is_oobe_complete_p = |
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ec->GetValue(state->system_provider()->var_is_oobe_complete()); |
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is_scattering_applicable = (is_oobe_complete_p && *is_oobe_complete_p); |
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} |
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} |
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// Compute scattering values. |
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if (is_scattering_applicable) { |
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UpdateScatteringResult scatter_result; |
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scattering_status = |
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UpdateScattering(ec, state, error, &scatter_result, update_state); |
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if (scattering_status == EvalStatus::kFailed) { |
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return EvalStatus::kFailed; |
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} else { |
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result->scatter_wait_period = scatter_result.wait_period; |
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result->scatter_check_threshold = scatter_result.check_threshold; |
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if (scattering_status == EvalStatus::kAskMeAgainLater || |
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scatter_result.is_scattering) |
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is_scattering_active = true; |
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} |
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} |
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} |
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// Find out whether P2P is globally enabled. |
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bool p2p_enabled; |
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EvalStatus p2p_enabled_status = P2PEnabled(ec, state, error, &p2p_enabled); |
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if (p2p_enabled_status != EvalStatus::kSucceeded) |
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return EvalStatus::kFailed; |
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|
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// Is P2P is enabled, consider allowing it for downloading and/or sharing. |
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if (p2p_enabled) { |
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// Sharing via P2P is allowed if not disabled by Omaha. |
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if (update_state.p2p_sharing_disabled) { |
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LOG(INFO) << "Blocked P2P sharing because it is disabled by Omaha."; |
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} else { |
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result->p2p_sharing_allowed = true; |
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} |
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|
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// Downloading via P2P is allowed if not disabled by Omaha, an update is not |
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// interactive, and other limits haven't been reached. |
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if (update_state.p2p_downloading_disabled) { |
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LOG(INFO) << "Blocked P2P downloading because it is disabled by Omaha."; |
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} else if (update_state.interactive) { |
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LOG(INFO) << "Blocked P2P downloading because update is interactive."; |
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} else if (update_state.p2p_num_attempts >= kMaxP2PAttempts) { |
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LOG(INFO) << "Blocked P2P downloading as it was attempted too many " |
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"times."; |
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} else if (!update_state.p2p_first_attempted.is_null() && |
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ec->IsWallclockTimeGreaterThan( |
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update_state.p2p_first_attempted + |
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TimeDelta::FromSeconds(kMaxP2PAttemptsPeriodInSeconds))) { |
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LOG(INFO) << "Blocked P2P downloading as its usage timespan exceeds " |
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"limit."; |
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} else { |
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// P2P download is allowed; if backoff or scattering are active, be sure |
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// to suppress them, yet prevent any download URL from being used. |
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result->p2p_downloading_allowed = true; |
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if (is_backoff_active || is_scattering_active) { |
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is_backoff_active = is_scattering_active = false; |
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result->download_url_allowed = false; |
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} |
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} |
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} |
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|
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// Check for various deterrents. |
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if (is_check_due) { |
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result->cannot_start_reason = UpdateCannotStartReason::kCheckDue; |
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return EvalStatus::kSucceeded; |
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} |
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if (is_backoff_active) { |
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result->cannot_start_reason = UpdateCannotStartReason::kBackoff; |
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return backoff_url_status; |
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} |
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if (is_scattering_active) { |
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result->cannot_start_reason = UpdateCannotStartReason::kScattering; |
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return scattering_status; |
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} |
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if (result->download_url_idx < 0 && !result->p2p_downloading_allowed) { |
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result->cannot_start_reason = UpdateCannotStartReason::kCannotDownload; |
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return EvalStatus::kSucceeded; |
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} |
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|
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// Update is good to go. |
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result->update_can_start = true; |
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return EvalStatus::kSucceeded; |
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} |
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|
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// TODO(garnold) Logic in this method is based on |
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// ConnectionManager::IsUpdateAllowedOver(); be sure to deprecate the latter. |
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// |
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// TODO(garnold) The current logic generally treats the list of allowed |
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// connections coming from the device policy as a whitelist, meaning that it |
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// can only be used for enabling connections, but not disable them. Further, |
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// certain connection types (like Bluetooth) cannot be enabled even by policy. |
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// In effect, the only thing that device policy can change is to enable |
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// updates over a cellular network (disabled by default). We may want to |
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// revisit this semantics, allowing greater flexibility in defining specific |
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// permissions over all types of networks. |
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EvalStatus ChromeOSPolicy::UpdateDownloadAllowed(EvaluationContext* ec, |
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State* state, |
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string* error, |
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bool* result) const { |
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// Get the current connection type. |
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ShillProvider* const shill_provider = state->shill_provider(); |
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const ConnectionType* conn_type_p = |
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ec->GetValue(shill_provider->var_conn_type()); |
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POLICY_CHECK_VALUE_AND_FAIL(conn_type_p, error); |
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ConnectionType conn_type = *conn_type_p; |
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|
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// If we're tethering, treat it as a cellular connection. |
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if (conn_type != ConnectionType::kCellular) { |
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const ConnectionTethering* conn_tethering_p = |
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ec->GetValue(shill_provider->var_conn_tethering()); |
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POLICY_CHECK_VALUE_AND_FAIL(conn_tethering_p, error); |
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if (*conn_tethering_p == ConnectionTethering::kConfirmed) |
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conn_type = ConnectionType::kCellular; |
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} |
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|
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// By default, we allow updates for all connection types, with exceptions as |
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// noted below. This also determines whether a device policy can override the |
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// default. |
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*result = true; |
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bool device_policy_can_override = false; |
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switch (conn_type) { |
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case ConnectionType::kBluetooth: |
|
*result = false; |
|
break; |
|
|
|
case ConnectionType::kCellular: |
|
*result = false; |
|
device_policy_can_override = true; |
|
break; |
|
|
|
case ConnectionType::kUnknown: |
|
if (error) |
|
*error = "Unknown connection type"; |
|
return EvalStatus::kFailed; |
|
|
|
default: |
|
break; // Nothing to do. |
|
} |
|
|
|
// If update is allowed, we're done. |
|
if (*result) |
|
return EvalStatus::kSucceeded; |
|
|
|
// Check whether the device policy specifically allows this connection. |
|
if (device_policy_can_override) { |
|
DevicePolicyProvider* const dp_provider = state->device_policy_provider(); |
|
const bool* device_policy_is_loaded_p = |
|
ec->GetValue(dp_provider->var_device_policy_is_loaded()); |
|
if (device_policy_is_loaded_p && *device_policy_is_loaded_p) { |
|
const set<ConnectionType>* allowed_conn_types_p = |
|
ec->GetValue(dp_provider->var_allowed_connection_types_for_update()); |
|
if (allowed_conn_types_p) { |
|
if (allowed_conn_types_p->count(conn_type)) { |
|
*result = true; |
|
return EvalStatus::kSucceeded; |
|
} |
|
} else if (conn_type == ConnectionType::kCellular) { |
|
// Local user settings can allow updates over cellular iff a policy was |
|
// loaded but no allowed connections were specified in it. |
|
const bool* update_over_cellular_allowed_p = |
|
ec->GetValue(state->updater_provider()->var_cellular_enabled()); |
|
if (update_over_cellular_allowed_p && *update_over_cellular_allowed_p) |
|
*result = true; |
|
} |
|
} |
|
} |
|
|
|
return (*result ? EvalStatus::kSucceeded : EvalStatus::kAskMeAgainLater); |
|
} |
|
|
|
EvalStatus ChromeOSPolicy::P2PEnabled(EvaluationContext* ec, |
|
State* state, |
|
string* error, |
|
bool* result) const { |
|
bool enabled = false; |
|
|
|
// Determine whether use of P2P is allowed by policy. Even if P2P is not |
|
// explicitly allowed, we allow it if the device is enterprise enrolled (that |
|
// is, missing or empty owner string). |
|
DevicePolicyProvider* const dp_provider = state->device_policy_provider(); |
|
const bool* device_policy_is_loaded_p = |
|
ec->GetValue(dp_provider->var_device_policy_is_loaded()); |
|
if (device_policy_is_loaded_p && *device_policy_is_loaded_p) { |
|
const bool* policy_au_p2p_enabled_p = |
|
ec->GetValue(dp_provider->var_au_p2p_enabled()); |
|
if (policy_au_p2p_enabled_p) { |
|
enabled = *policy_au_p2p_enabled_p; |
|
} else { |
|
const string* policy_owner_p = ec->GetValue(dp_provider->var_owner()); |
|
if (!policy_owner_p || policy_owner_p->empty()) |
|
enabled = true; |
|
} |
|
} |
|
|
|
// Enable P2P, if so mandated by the updater configuration. This is additive |
|
// to whether or not P2P is enabled by device policy. |
|
if (!enabled) { |
|
const bool* updater_p2p_enabled_p = |
|
ec->GetValue(state->updater_provider()->var_p2p_enabled()); |
|
enabled = updater_p2p_enabled_p && *updater_p2p_enabled_p; |
|
} |
|
|
|
*result = enabled; |
|
return EvalStatus::kSucceeded; |
|
} |
|
|
|
EvalStatus ChromeOSPolicy::P2PEnabledChanged(EvaluationContext* ec, |
|
State* state, |
|
string* error, |
|
bool* result, |
|
bool prev_result) const { |
|
EvalStatus status = P2PEnabled(ec, state, error, result); |
|
if (status == EvalStatus::kSucceeded && *result == prev_result) |
|
return EvalStatus::kAskMeAgainLater; |
|
return status; |
|
} |
|
|
|
EvalStatus ChromeOSPolicy::UpdateBackoffAndDownloadUrl( |
|
EvaluationContext* ec, |
|
State* state, |
|
string* error, |
|
UpdateBackoffAndDownloadUrlResult* result, |
|
const UpdateState& update_state) const { |
|
// Sanity checks. |
|
DCHECK_GE(update_state.download_errors_max, 0); |
|
|
|
// Set default result values. |
|
result->do_increment_failures = false; |
|
result->backoff_expiry = update_state.backoff_expiry; |
|
result->url_idx = -1; |
|
result->url_num_errors = 0; |
|
|
|
const bool* is_official_build_p = |
|
ec->GetValue(state->system_provider()->var_is_official_build()); |
|
bool is_official_build = (is_official_build_p ? *is_official_build_p : true); |
|
|
|
// Check whether backoff is enabled. |
|
bool may_backoff = false; |
|
if (update_state.is_backoff_disabled) { |
|
LOG(INFO) << "Backoff disabled by Omaha."; |
|
} else if (update_state.interactive) { |
|
LOG(INFO) << "No backoff for interactive updates."; |
|
} else if (update_state.is_delta_payload) { |
|
LOG(INFO) << "No backoff for delta payloads."; |
|
} else if (!is_official_build) { |
|
LOG(INFO) << "No backoff for unofficial builds."; |
|
} else { |
|
may_backoff = true; |
|
} |
|
|
|
// If previous backoff still in effect, block. |
|
if (may_backoff && !update_state.backoff_expiry.is_null() && |
|
!ec->IsWallclockTimeGreaterThan(update_state.backoff_expiry)) { |
|
LOG(INFO) << "Previous backoff has not expired, waiting."; |
|
return EvalStatus::kAskMeAgainLater; |
|
} |
|
|
|
// Determine whether HTTP downloads are forbidden by policy. This only |
|
// applies to official system builds; otherwise, HTTP is always enabled. |
|
bool http_allowed = true; |
|
if (is_official_build) { |
|
DevicePolicyProvider* const dp_provider = state->device_policy_provider(); |
|
const bool* device_policy_is_loaded_p = |
|
ec->GetValue(dp_provider->var_device_policy_is_loaded()); |
|
if (device_policy_is_loaded_p && *device_policy_is_loaded_p) { |
|
const bool* policy_http_downloads_enabled_p = |
|
ec->GetValue(dp_provider->var_http_downloads_enabled()); |
|
http_allowed = (!policy_http_downloads_enabled_p || |
|
*policy_http_downloads_enabled_p); |
|
} |
|
} |
|
|
|
int url_idx = update_state.last_download_url_idx; |
|
if (url_idx < 0) |
|
url_idx = -1; |
|
bool do_advance_url = false; |
|
bool is_failure_occurred = false; |
|
Time err_time; |
|
|
|
// Scan the relevant part of the download error log, tracking which URLs are |
|
// being used, and accounting the number of errors for each URL. Note that |
|
// this process may not traverse all errors provided, as it may decide to bail |
|
// out midway depending on the particular errors exhibited, the number of |
|
// failures allowed, etc. When this ends, |url_idx| will point to the last URL |
|
// used (-1 if starting fresh), |do_advance_url| will determine whether the |
|
// URL needs to be advanced, and |err_time| the point in time when the last |
|
// reported error occurred. Additionally, if the error log indicates that an |
|
// update attempt has failed (abnormal), then |is_failure_occurred| will be |
|
// set to true. |
|
const int num_urls = update_state.download_urls.size(); |
|
int prev_url_idx = -1; |
|
int url_num_errors = update_state.last_download_url_num_errors; |
|
Time prev_err_time; |
|
bool is_first = true; |
|
for (const auto& err_tuple : update_state.download_errors) { |
|
// Do some sanity checks. |
|
int used_url_idx = get<0>(err_tuple); |
|
if (is_first && url_idx >= 0 && used_url_idx != url_idx) { |
|
LOG(WARNING) << "First URL in error log (" << used_url_idx |
|
<< ") not as expected (" << url_idx << ")"; |
|
} |
|
is_first = false; |
|
url_idx = used_url_idx; |
|
if (url_idx < 0 || url_idx >= num_urls) { |
|
LOG(ERROR) << "Download error log contains an invalid URL index (" |
|
<< url_idx << ")"; |
|
return EvalStatus::kFailed; |
|
} |
|
err_time = get<2>(err_tuple); |
|
if (!(prev_err_time.is_null() || err_time >= prev_err_time)) { |
|
// TODO(garnold) Monotonicity cannot really be assumed when dealing with |
|
// wallclock-based timestamps. However, we're making a simplifying |
|
// assumption so as to keep the policy implementation straightforward, for |
|
// now. In general, we should convert all timestamp handling in the |
|
// UpdateManager to use monotonic time (instead of wallclock), including |
|
// the computation of various expiration times (backoff, scattering, etc). |
|
// The client will do whatever conversions necessary when |
|
// persisting/retrieving these values across reboots. See chromium:408794. |
|
LOG(ERROR) << "Download error timestamps not monotonically increasing."; |
|
return EvalStatus::kFailed; |
|
} |
|
prev_err_time = err_time; |
|
|
|
// Ignore errors that happened before the last known failed attempt. |
|
if (!update_state.failures_last_updated.is_null() && |
|
err_time <= update_state.failures_last_updated) |
|
continue; |
|
|
|
if (prev_url_idx >= 0) { |
|
if (url_idx < prev_url_idx) { |
|
LOG(ERROR) << "The URLs in the download error log have wrapped around (" |
|
<< prev_url_idx << "->" << url_idx |
|
<< "). This should not have happened and means that there's " |
|
"a bug. To be conservative, we record a failed attempt " |
|
"(invalidating the rest of the error log) and resume " |
|
"download from the first usable URL."; |
|
url_idx = -1; |
|
is_failure_occurred = true; |
|
break; |
|
} |
|
|
|
if (url_idx > prev_url_idx) { |
|
url_num_errors = 0; |
|
do_advance_url = false; |
|
} |
|
} |
|
|
|
if (HandleErrorCode(get<1>(err_tuple), &url_num_errors) || |
|
url_num_errors > update_state.download_errors_max) |
|
do_advance_url = true; |
|
|
|
prev_url_idx = url_idx; |
|
} |
|
|
|
// If required, advance to the next usable URL. If the URLs wraparound, we |
|
// mark an update attempt failure. Also be sure to set the download error |
|
// count to zero. |
|
if (url_idx < 0 || do_advance_url) { |
|
url_num_errors = 0; |
|
int start_url_idx = -1; |
|
do { |
|
if (++url_idx == num_urls) { |
|
url_idx = 0; |
|
// We only mark failure if an actual advancing of a URL was required. |
|
if (do_advance_url) |
|
is_failure_occurred = true; |
|
} |
|
|
|
if (start_url_idx < 0) |
|
start_url_idx = url_idx; |
|
else if (url_idx == start_url_idx) |
|
url_idx = -1; // No usable URL. |
|
} while (url_idx >= 0 && |
|
!IsUrlUsable(update_state.download_urls[url_idx], http_allowed)); |
|
} |
|
|
|
// If we have a download URL but a failure was observed, compute a new backoff |
|
// expiry (if allowed). The backoff period is generally 2 ^ (num_failures - 1) |
|
// days, bounded by the size of int and kAttemptBackoffMaxIntervalInDays, and |
|
// fuzzed by kAttemptBackoffFuzzInHours hours. Backoff expiry is computed from |
|
// the latest recorded time of error. |
|
Time backoff_expiry; |
|
if (url_idx >= 0 && is_failure_occurred && may_backoff) { |
|
CHECK(!err_time.is_null()) |
|
<< "We must have an error timestamp if a failure occurred!"; |
|
const uint64_t* seed = ec->GetValue(state->random_provider()->var_seed()); |
|
POLICY_CHECK_VALUE_AND_FAIL(seed, error); |
|
PRNG prng(*seed); |
|
int exp = |
|
min(update_state.num_failures, static_cast<int>(sizeof(int)) * 8 - 2); |
|
TimeDelta backoff_interval = TimeDelta::FromDays(min( |
|
1 << exp, |
|
kNextUpdateCheckPolicyConstants.attempt_backoff_max_interval_in_days)); |
|
TimeDelta backoff_fuzz = TimeDelta::FromHours( |
|
kNextUpdateCheckPolicyConstants.attempt_backoff_fuzz_in_hours); |
|
TimeDelta wait_period = NextUpdateCheckTimePolicyImpl::FuzzedInterval( |
|
&prng, backoff_interval.InSeconds(), backoff_fuzz.InSeconds()); |
|
backoff_expiry = err_time + wait_period; |
|
|
|
// If the newly computed backoff already expired, nullify it. |
|
if (ec->IsWallclockTimeGreaterThan(backoff_expiry)) |
|
backoff_expiry = Time(); |
|
} |
|
|
|
result->do_increment_failures = is_failure_occurred; |
|
result->backoff_expiry = backoff_expiry; |
|
result->url_idx = url_idx; |
|
result->url_num_errors = url_num_errors; |
|
return EvalStatus::kSucceeded; |
|
} |
|
|
|
EvalStatus ChromeOSPolicy::UpdateScattering( |
|
EvaluationContext* ec, |
|
State* state, |
|
string* error, |
|
UpdateScatteringResult* result, |
|
const UpdateState& update_state) const { |
|
// Preconditions. These stem from the postconditions and usage contract. |
|
DCHECK(update_state.scatter_wait_period >= kZeroInterval); |
|
DCHECK_GE(update_state.scatter_check_threshold, 0); |
|
|
|
// Set default result values. |
|
result->is_scattering = false; |
|
result->wait_period = kZeroInterval; |
|
result->check_threshold = 0; |
|
|
|
DevicePolicyProvider* const dp_provider = state->device_policy_provider(); |
|
|
|
// Ensure that a device policy is loaded. |
|
const bool* device_policy_is_loaded_p = |
|
ec->GetValue(dp_provider->var_device_policy_is_loaded()); |
|
if (!(device_policy_is_loaded_p && *device_policy_is_loaded_p)) |
|
return EvalStatus::kSucceeded; |
|
|
|
// Is scattering enabled by policy? |
|
const TimeDelta* scatter_factor_p = |
|
ec->GetValue(dp_provider->var_scatter_factor()); |
|
if (!scatter_factor_p || *scatter_factor_p == kZeroInterval) |
|
return EvalStatus::kSucceeded; |
|
|
|
// Obtain a pseudo-random number generator. |
|
const uint64_t* seed = ec->GetValue(state->random_provider()->var_seed()); |
|
POLICY_CHECK_VALUE_AND_FAIL(seed, error); |
|
PRNG prng(*seed); |
|
|
|
// Step 1: Maintain the scattering wait period. |
|
// |
|
// If no wait period was previously determined, or it no longer fits in the |
|
// scatter factor, then generate a new one. Otherwise, keep the one we have. |
|
TimeDelta wait_period = update_state.scatter_wait_period; |
|
if (wait_period == kZeroInterval || wait_period > *scatter_factor_p) { |
|
wait_period = TimeDelta::FromSeconds( |
|
prng.RandMinMax(1, scatter_factor_p->InSeconds())); |
|
} |
|
|
|
// If we surpassed the wait period or the max scatter period associated with |
|
// the update, then no wait is needed. |
|
Time wait_expires = (update_state.first_seen + |
|
min(wait_period, update_state.scatter_wait_period_max)); |
|
if (ec->IsWallclockTimeGreaterThan(wait_expires)) |
|
wait_period = kZeroInterval; |
|
|
|
// Step 2: Maintain the update check threshold count. |
|
// |
|
// If an update check threshold is not specified then generate a new |
|
// one. |
|
int check_threshold = update_state.scatter_check_threshold; |
|
if (check_threshold == 0) { |
|
check_threshold = prng.RandMinMax(update_state.scatter_check_threshold_min, |
|
update_state.scatter_check_threshold_max); |
|
} |
|
|
|
// If the update check threshold is not within allowed range then nullify it. |
|
// TODO(garnold) This is compliant with current logic found in |
|
// OmahaRequestAction::IsUpdateCheckCountBasedWaitingSatisfied(). We may want |
|
// to change it so that it behaves similarly to the wait period case, namely |
|
// if the current value exceeds the maximum, we set a new one within range. |
|
if (check_threshold > update_state.scatter_check_threshold_max) |
|
check_threshold = 0; |
|
|
|
// If the update check threshold is non-zero and satisfied, then nullify it. |
|
if (check_threshold > 0 && update_state.num_checks >= check_threshold) |
|
check_threshold = 0; |
|
|
|
bool is_scattering = (wait_period != kZeroInterval || check_threshold); |
|
EvalStatus ret = EvalStatus::kSucceeded; |
|
if (is_scattering && wait_period == update_state.scatter_wait_period && |
|
check_threshold == update_state.scatter_check_threshold) |
|
ret = EvalStatus::kAskMeAgainLater; |
|
result->is_scattering = is_scattering; |
|
result->wait_period = wait_period; |
|
result->check_threshold = check_threshold; |
|
return ret; |
|
} |
|
|
|
} // namespace chromeos_update_manager
|
|
|