525 lines
18 KiB
C++
525 lines
18 KiB
C++
//
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// Copyright (C) 2016 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_attempter_android.h"
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#include <algorithm>
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#include <map>
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#include <utility>
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#include <base/bind.h>
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#include <base/logging.h>
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#include <base/strings/string_number_conversions.h>
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#include <brillo/bind_lambda.h>
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#include <brillo/data_encoding.h>
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#include <brillo/message_loops/message_loop.h>
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#include <brillo/strings/string_utils.h>
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#include <log/log.h>
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#include "update_engine/common/constants.h"
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#include "update_engine/common/file_fetcher.h"
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#include "update_engine/common/utils.h"
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#include "update_engine/daemon_state_interface.h"
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#include "update_engine/network_selector.h"
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#include "update_engine/payload_consumer/download_action.h"
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#include "update_engine/payload_consumer/filesystem_verifier_action.h"
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#include "update_engine/payload_consumer/postinstall_runner_action.h"
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#include "update_engine/update_status_utils.h"
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#ifndef _UE_SIDELOAD
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// Do not include support for external HTTP(s) urls when building
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// update_engine_sideload.
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#include "update_engine/libcurl_http_fetcher.h"
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#endif
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using base::Bind;
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using base::TimeDelta;
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using base::TimeTicks;
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using std::shared_ptr;
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using std::string;
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using std::vector;
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namespace chromeos_update_engine {
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namespace {
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// Minimum threshold to broadcast an status update in progress and time.
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const double kBroadcastThresholdProgress = 0.01; // 1%
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const int kBroadcastThresholdSeconds = 10;
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const char* const kErrorDomain = "update_engine";
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// TODO(deymo): Convert the different errors to a numeric value to report them
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// back on the service error.
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const char* const kGenericError = "generic_error";
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// Log and set the error on the passed ErrorPtr.
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bool LogAndSetError(brillo::ErrorPtr* error,
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const tracked_objects::Location& location,
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const string& reason) {
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brillo::Error::AddTo(error, location, kErrorDomain, kGenericError, reason);
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LOG(ERROR) << "Replying with failure: " << location.ToString() << ": "
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<< reason;
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return false;
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}
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} // namespace
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UpdateAttempterAndroid::UpdateAttempterAndroid(
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DaemonStateInterface* daemon_state,
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PrefsInterface* prefs,
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BootControlInterface* boot_control,
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HardwareInterface* hardware)
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: daemon_state_(daemon_state),
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prefs_(prefs),
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boot_control_(boot_control),
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hardware_(hardware),
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processor_(new ActionProcessor()) {
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network_selector_ = network::CreateNetworkSelector();
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}
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UpdateAttempterAndroid::~UpdateAttempterAndroid() {
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// Release ourselves as the ActionProcessor's delegate to prevent
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// re-scheduling the updates due to the processing stopped.
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processor_->set_delegate(nullptr);
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}
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void UpdateAttempterAndroid::Init() {
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// In case of update_engine restart without a reboot we need to restore the
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// reboot needed state.
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if (UpdateCompletedOnThisBoot())
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SetStatusAndNotify(UpdateStatus::UPDATED_NEED_REBOOT);
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else
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SetStatusAndNotify(UpdateStatus::IDLE);
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}
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bool UpdateAttempterAndroid::ApplyPayload(
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const string& payload_url,
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int64_t payload_offset,
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int64_t payload_size,
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const vector<string>& key_value_pair_headers,
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brillo::ErrorPtr* error) {
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if (status_ == UpdateStatus::UPDATED_NEED_REBOOT) {
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return LogAndSetError(
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error, FROM_HERE, "An update already applied, waiting for reboot");
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}
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if (ongoing_update_) {
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return LogAndSetError(
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error, FROM_HERE, "Already processing an update, cancel it first.");
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}
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DCHECK(status_ == UpdateStatus::IDLE);
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std::map<string, string> headers;
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for (const string& key_value_pair : key_value_pair_headers) {
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string key;
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string value;
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if (!brillo::string_utils::SplitAtFirst(
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key_value_pair, "=", &key, &value, false)) {
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return LogAndSetError(
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error, FROM_HERE, "Passed invalid header: " + key_value_pair);
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}
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if (!headers.emplace(key, value).second)
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return LogAndSetError(error, FROM_HERE, "Passed repeated key: " + key);
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}
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// Unique identifier for the payload. An empty string means that the payload
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// can't be resumed.
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string payload_id = (headers[kPayloadPropertyFileHash] +
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headers[kPayloadPropertyMetadataHash]);
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// Setup the InstallPlan based on the request.
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install_plan_ = InstallPlan();
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install_plan_.download_url = payload_url;
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install_plan_.version = "";
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base_offset_ = payload_offset;
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InstallPlan::Payload payload;
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payload.size = payload_size;
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if (!payload.size) {
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if (!base::StringToUint64(headers[kPayloadPropertyFileSize],
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&payload.size)) {
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payload.size = 0;
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}
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}
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if (!brillo::data_encoding::Base64Decode(headers[kPayloadPropertyFileHash],
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&payload.hash)) {
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LOG(WARNING) << "Unable to decode base64 file hash: "
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<< headers[kPayloadPropertyFileHash];
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}
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if (!base::StringToUint64(headers[kPayloadPropertyMetadataSize],
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&payload.metadata_size)) {
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payload.metadata_size = 0;
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}
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// The |payload.type| is not used anymore since minor_version 3.
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payload.type = InstallPayloadType::kUnknown;
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install_plan_.payloads.push_back(payload);
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// The |public_key_rsa| key would override the public key stored on disk.
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install_plan_.public_key_rsa = "";
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install_plan_.hash_checks_mandatory = hardware_->IsOfficialBuild();
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install_plan_.is_resume = !payload_id.empty() &&
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DeltaPerformer::CanResumeUpdate(prefs_, payload_id);
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if (!install_plan_.is_resume) {
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if (!DeltaPerformer::ResetUpdateProgress(prefs_, false)) {
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LOG(WARNING) << "Unable to reset the update progress.";
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}
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if (!prefs_->SetString(kPrefsUpdateCheckResponseHash, payload_id)) {
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LOG(WARNING) << "Unable to save the update check response hash.";
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}
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}
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install_plan_.source_slot = boot_control_->GetCurrentSlot();
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install_plan_.target_slot = install_plan_.source_slot == 0 ? 1 : 0;
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int data_wipe = 0;
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install_plan_.powerwash_required =
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base::StringToInt(headers[kPayloadPropertyPowerwash], &data_wipe) &&
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data_wipe != 0;
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NetworkId network_id = kDefaultNetworkId;
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if (!headers[kPayloadPropertyNetworkId].empty()) {
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if (!base::StringToUint64(headers[kPayloadPropertyNetworkId],
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&network_id)) {
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return LogAndSetError(
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error,
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FROM_HERE,
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"Invalid network_id: " + headers[kPayloadPropertyNetworkId]);
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}
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if (!network_selector_->SetProcessNetwork(network_id)) {
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return LogAndSetError(
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error,
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FROM_HERE,
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"Unable to set network_id: " + headers[kPayloadPropertyNetworkId]);
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}
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}
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LOG(INFO) << "Using this install plan:";
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install_plan_.Dump();
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BuildUpdateActions(payload_url);
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// Setup extra headers.
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HttpFetcher* fetcher = download_action_->http_fetcher();
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if (!headers[kPayloadPropertyAuthorization].empty())
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fetcher->SetHeader("Authorization", headers[kPayloadPropertyAuthorization]);
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if (!headers[kPayloadPropertyUserAgent].empty())
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fetcher->SetHeader("User-Agent", headers[kPayloadPropertyUserAgent]);
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SetStatusAndNotify(UpdateStatus::UPDATE_AVAILABLE);
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ongoing_update_ = true;
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// Just in case we didn't update boot flags yet, make sure they're updated
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// before any update processing starts. This will start the update process.
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UpdateBootFlags();
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return true;
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}
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bool UpdateAttempterAndroid::SuspendUpdate(brillo::ErrorPtr* error) {
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if (!ongoing_update_)
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return LogAndSetError(error, FROM_HERE, "No ongoing update to suspend.");
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processor_->SuspendProcessing();
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return true;
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}
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bool UpdateAttempterAndroid::ResumeUpdate(brillo::ErrorPtr* error) {
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if (!ongoing_update_)
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return LogAndSetError(error, FROM_HERE, "No ongoing update to resume.");
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processor_->ResumeProcessing();
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return true;
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}
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bool UpdateAttempterAndroid::CancelUpdate(brillo::ErrorPtr* error) {
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if (!ongoing_update_)
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return LogAndSetError(error, FROM_HERE, "No ongoing update to cancel.");
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processor_->StopProcessing();
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return true;
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}
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bool UpdateAttempterAndroid::ResetStatus(brillo::ErrorPtr* error) {
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LOG(INFO) << "Attempting to reset state from "
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<< UpdateStatusToString(status_) << " to UpdateStatus::IDLE";
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switch (status_) {
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case UpdateStatus::IDLE:
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return true;
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case UpdateStatus::UPDATED_NEED_REBOOT: {
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// Remove the reboot marker so that if the machine is rebooted
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// after resetting to idle state, it doesn't go back to
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// UpdateStatus::UPDATED_NEED_REBOOT state.
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bool ret_value = prefs_->Delete(kPrefsUpdateCompletedOnBootId);
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// Update the boot flags so the current slot has higher priority.
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if (!boot_control_->SetActiveBootSlot(boot_control_->GetCurrentSlot()))
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ret_value = false;
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// Mark the current slot as successful again, since marking it as active
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// may reset the successful bit. We ignore the result of whether marking
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// the current slot as successful worked.
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if (!boot_control_->MarkBootSuccessfulAsync(Bind([](bool successful){})))
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ret_value = false;
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if (!ret_value) {
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return LogAndSetError(
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error,
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FROM_HERE,
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"Failed to reset the status to ");
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}
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SetStatusAndNotify(UpdateStatus::IDLE);
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LOG(INFO) << "Reset status successful";
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return true;
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}
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default:
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return LogAndSetError(
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error,
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FROM_HERE,
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"Reset not allowed in this state. Cancel the ongoing update first");
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}
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}
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void UpdateAttempterAndroid::ProcessingDone(const ActionProcessor* processor,
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ErrorCode code) {
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LOG(INFO) << "Processing Done.";
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switch (code) {
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case ErrorCode::kSuccess:
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// Update succeeded.
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WriteUpdateCompletedMarker();
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prefs_->SetInt64(kPrefsDeltaUpdateFailures, 0);
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DeltaPerformer::ResetUpdateProgress(prefs_, false);
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LOG(INFO) << "Update successfully applied, waiting to reboot.";
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break;
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case ErrorCode::kFilesystemCopierError:
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case ErrorCode::kNewRootfsVerificationError:
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case ErrorCode::kNewKernelVerificationError:
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case ErrorCode::kFilesystemVerifierError:
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case ErrorCode::kDownloadStateInitializationError:
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// Reset the ongoing update for these errors so it starts from the
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// beginning next time.
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DeltaPerformer::ResetUpdateProgress(prefs_, false);
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LOG(INFO) << "Resetting update progress.";
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break;
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case ErrorCode::kPayloadTimestampError:
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// SafetyNet logging, b/36232423
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android_errorWriteLog(0x534e4554, "36232423");
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break;
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default:
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// Ignore all other error codes.
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break;
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}
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TerminateUpdateAndNotify(code);
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}
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void UpdateAttempterAndroid::ProcessingStopped(
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const ActionProcessor* processor) {
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TerminateUpdateAndNotify(ErrorCode::kUserCanceled);
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}
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void UpdateAttempterAndroid::ActionCompleted(ActionProcessor* processor,
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AbstractAction* action,
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ErrorCode code) {
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// Reset download progress regardless of whether or not the download
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// action succeeded.
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const string type = action->Type();
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if (type == DownloadAction::StaticType()) {
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download_progress_ = 0;
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}
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if (code != ErrorCode::kSuccess) {
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// If an action failed, the ActionProcessor will cancel the whole thing.
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return;
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}
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if (type == DownloadAction::StaticType()) {
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SetStatusAndNotify(UpdateStatus::FINALIZING);
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}
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}
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void UpdateAttempterAndroid::BytesReceived(uint64_t bytes_progressed,
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uint64_t bytes_received,
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uint64_t total) {
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double progress = 0;
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if (total)
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progress = static_cast<double>(bytes_received) / static_cast<double>(total);
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if (status_ != UpdateStatus::DOWNLOADING || bytes_received == total) {
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download_progress_ = progress;
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SetStatusAndNotify(UpdateStatus::DOWNLOADING);
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} else {
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ProgressUpdate(progress);
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}
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}
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bool UpdateAttempterAndroid::ShouldCancel(ErrorCode* cancel_reason) {
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// TODO(deymo): Notify the DownloadAction that it should cancel the update
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// download.
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return false;
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}
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void UpdateAttempterAndroid::DownloadComplete() {
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// Nothing needs to be done when the download completes.
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}
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void UpdateAttempterAndroid::ProgressUpdate(double progress) {
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// Self throttle based on progress. Also send notifications if progress is
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// too slow.
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if (progress == 1.0 ||
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progress - download_progress_ >= kBroadcastThresholdProgress ||
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TimeTicks::Now() - last_notify_time_ >=
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TimeDelta::FromSeconds(kBroadcastThresholdSeconds)) {
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download_progress_ = progress;
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SetStatusAndNotify(status_);
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}
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}
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void UpdateAttempterAndroid::UpdateBootFlags() {
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if (updated_boot_flags_) {
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LOG(INFO) << "Already updated boot flags. Skipping.";
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CompleteUpdateBootFlags(true);
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return;
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}
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// This is purely best effort.
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LOG(INFO) << "Marking booted slot as good.";
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if (!boot_control_->MarkBootSuccessfulAsync(
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Bind(&UpdateAttempterAndroid::CompleteUpdateBootFlags,
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base::Unretained(this)))) {
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LOG(ERROR) << "Failed to mark current boot as successful.";
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CompleteUpdateBootFlags(false);
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}
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}
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void UpdateAttempterAndroid::CompleteUpdateBootFlags(bool successful) {
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updated_boot_flags_ = true;
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ScheduleProcessingStart();
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}
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void UpdateAttempterAndroid::ScheduleProcessingStart() {
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LOG(INFO) << "Scheduling an action processor start.";
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brillo::MessageLoop::current()->PostTask(
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FROM_HERE,
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Bind([](ActionProcessor* processor) { processor->StartProcessing(); },
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base::Unretained(processor_.get())));
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}
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void UpdateAttempterAndroid::TerminateUpdateAndNotify(ErrorCode error_code) {
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if (status_ == UpdateStatus::IDLE) {
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LOG(ERROR) << "No ongoing update, but TerminatedUpdate() called.";
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return;
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}
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download_progress_ = 0;
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actions_.clear();
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UpdateStatus new_status =
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(error_code == ErrorCode::kSuccess ? UpdateStatus::UPDATED_NEED_REBOOT
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: UpdateStatus::IDLE);
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SetStatusAndNotify(new_status);
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ongoing_update_ = false;
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for (auto observer : daemon_state_->service_observers())
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observer->SendPayloadApplicationComplete(error_code);
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}
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void UpdateAttempterAndroid::SetStatusAndNotify(UpdateStatus status) {
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status_ = status;
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size_t payload_size =
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install_plan_.payloads.empty() ? 0 : install_plan_.payloads[0].size;
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for (auto observer : daemon_state_->service_observers()) {
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observer->SendStatusUpdate(
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0, download_progress_, status_, "", payload_size);
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}
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last_notify_time_ = TimeTicks::Now();
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}
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void UpdateAttempterAndroid::BuildUpdateActions(const string& url) {
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CHECK(!processor_->IsRunning());
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processor_->set_delegate(this);
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// Actions:
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shared_ptr<InstallPlanAction> install_plan_action(
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new InstallPlanAction(install_plan_));
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HttpFetcher* download_fetcher = nullptr;
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if (FileFetcher::SupportedUrl(url)) {
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DLOG(INFO) << "Using FileFetcher for file URL.";
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download_fetcher = new FileFetcher();
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} else {
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#ifdef _UE_SIDELOAD
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LOG(FATAL) << "Unsupported sideload URI: " << url;
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#else
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LibcurlHttpFetcher* libcurl_fetcher =
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new LibcurlHttpFetcher(&proxy_resolver_, hardware_);
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libcurl_fetcher->set_server_to_check(ServerToCheck::kDownload);
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download_fetcher = libcurl_fetcher;
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#endif // _UE_SIDELOAD
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}
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shared_ptr<DownloadAction> download_action(
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new DownloadAction(prefs_,
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boot_control_,
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hardware_,
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nullptr, // system_state, not used.
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download_fetcher)); // passes ownership
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shared_ptr<FilesystemVerifierAction> filesystem_verifier_action(
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new FilesystemVerifierAction());
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shared_ptr<PostinstallRunnerAction> postinstall_runner_action(
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new PostinstallRunnerAction(boot_control_, hardware_));
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download_action->set_delegate(this);
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download_action->set_base_offset(base_offset_);
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download_action_ = download_action;
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postinstall_runner_action->set_delegate(this);
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actions_.push_back(shared_ptr<AbstractAction>(install_plan_action));
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actions_.push_back(shared_ptr<AbstractAction>(download_action));
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actions_.push_back(shared_ptr<AbstractAction>(filesystem_verifier_action));
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actions_.push_back(shared_ptr<AbstractAction>(postinstall_runner_action));
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// Bond them together. We have to use the leaf-types when calling
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// BondActions().
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BondActions(install_plan_action.get(), download_action.get());
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BondActions(download_action.get(), filesystem_verifier_action.get());
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BondActions(filesystem_verifier_action.get(),
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postinstall_runner_action.get());
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// Enqueue the actions.
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for (const shared_ptr<AbstractAction>& action : actions_)
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processor_->EnqueueAction(action.get());
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}
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bool UpdateAttempterAndroid::WriteUpdateCompletedMarker() {
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string boot_id;
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TEST_AND_RETURN_FALSE(utils::GetBootId(&boot_id));
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prefs_->SetString(kPrefsUpdateCompletedOnBootId, boot_id);
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return true;
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}
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bool UpdateAttempterAndroid::UpdateCompletedOnThisBoot() {
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// In case of an update_engine restart without a reboot, we stored the boot_id
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// when the update was completed by setting a pref, so we can check whether
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|
// the last update was on this boot or a previous one.
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|
string boot_id;
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TEST_AND_RETURN_FALSE(utils::GetBootId(&boot_id));
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|
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string update_completed_on_boot_id;
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return (prefs_->Exists(kPrefsUpdateCompletedOnBootId) &&
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|
prefs_->GetString(kPrefsUpdateCompletedOnBootId,
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&update_completed_on_boot_id) &&
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update_completed_on_boot_id == boot_id);
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}
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} // namespace chromeos_update_engine
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