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470 lines
17 KiB
470 lines
17 KiB
//
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// Copyright (C) 2020 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/cros/download_action_chromeos.h"
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#include <errno.h>
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#include <algorithm>
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#include <string>
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#include <base/files/file_path.h>
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#include <base/metrics/statistics_recorder.h>
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#include <base/strings/stringprintf.h>
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#include "update_engine/common/action_pipe.h"
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#include "update_engine/common/boot_control_interface.h"
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#include "update_engine/common/error_code_utils.h"
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#include "update_engine/common/multi_range_http_fetcher.h"
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#include "update_engine/common/system_state.h"
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#include "update_engine/common/utils.h"
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#include "update_engine/cros/omaha_request_params.h"
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#include "update_engine/cros/p2p_manager.h"
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#include "update_engine/cros/payload_state_interface.h"
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using base::FilePath;
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using std::string;
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namespace chromeos_update_engine {
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DownloadActionChromeos::DownloadActionChromeos(
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PrefsInterface* prefs,
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BootControlInterface* boot_control,
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HardwareInterface* hardware,
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HttpFetcher* http_fetcher,
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bool interactive)
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: prefs_(prefs),
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boot_control_(boot_control),
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hardware_(hardware),
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http_fetcher_(new MultiRangeHttpFetcher(http_fetcher)),
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interactive_(interactive),
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writer_(nullptr),
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code_(ErrorCode::kSuccess),
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delegate_(nullptr),
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p2p_sharing_fd_(-1),
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p2p_visible_(true) {}
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DownloadActionChromeos::~DownloadActionChromeos() {}
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void DownloadActionChromeos::CloseP2PSharingFd(bool delete_p2p_file) {
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if (p2p_sharing_fd_ != -1) {
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if (close(p2p_sharing_fd_) != 0) {
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PLOG(ERROR) << "Error closing p2p sharing fd";
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}
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p2p_sharing_fd_ = -1;
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}
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if (delete_p2p_file) {
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FilePath path =
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SystemState::Get()->p2p_manager()->FileGetPath(p2p_file_id_);
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if (unlink(path.value().c_str()) != 0) {
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PLOG(ERROR) << "Error deleting p2p file " << path.value();
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} else {
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LOG(INFO) << "Deleted p2p file " << path.value();
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}
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}
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// Don't use p2p from this point onwards.
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p2p_file_id_.clear();
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}
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bool DownloadActionChromeos::SetupP2PSharingFd() {
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P2PManager* p2p_manager = SystemState::Get()->p2p_manager();
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if (!p2p_manager->FileShare(p2p_file_id_, payload_->size)) {
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LOG(ERROR) << "Unable to share file via p2p";
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CloseP2PSharingFd(true); // delete p2p file
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return false;
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}
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// File has already been created (and allocated, xattrs been
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// populated etc.) by FileShare() so just open it for writing.
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FilePath path = p2p_manager->FileGetPath(p2p_file_id_);
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p2p_sharing_fd_ = open(path.value().c_str(), O_WRONLY);
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if (p2p_sharing_fd_ == -1) {
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PLOG(ERROR) << "Error opening file " << path.value();
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CloseP2PSharingFd(true); // Delete p2p file.
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return false;
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}
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// Ensure file to share is world-readable, otherwise
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// p2p-server and p2p-http-server can't access it.
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//
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// (Q: Why doesn't the file have mode 0644 already? A: Because
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// the process-wide umask is set to 0700 in main.cc.)
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if (fchmod(p2p_sharing_fd_, 0644) != 0) {
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PLOG(ERROR) << "Error setting mode 0644 on " << path.value();
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CloseP2PSharingFd(true); // Delete p2p file.
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return false;
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}
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// All good.
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LOG(INFO) << "Writing payload contents to " << path.value();
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p2p_manager->FileGetVisible(p2p_file_id_, &p2p_visible_);
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return true;
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}
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void DownloadActionChromeos::WriteToP2PFile(const void* data,
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size_t length,
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off_t file_offset) {
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if (p2p_sharing_fd_ == -1) {
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if (!SetupP2PSharingFd())
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return;
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}
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// Check that the file is at least |file_offset| bytes long - if
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// it's not something is wrong and we must immediately delete the
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// file to avoid propagating this problem to other peers.
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//
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// How can this happen? It could be that we're resuming an update
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// after a system crash... in this case, it could be that
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//
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// 1. the p2p file didn't get properly synced to stable storage; or
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// 2. the file was deleted at bootup (it's in /var/cache after all); or
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// 3. other reasons
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off_t p2p_size = utils::FileSize(p2p_sharing_fd_);
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if (p2p_size < 0) {
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PLOG(ERROR) << "Error getting file status for p2p file";
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CloseP2PSharingFd(true); // Delete p2p file.
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return;
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}
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if (p2p_size < file_offset) {
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LOG(ERROR) << "Wanting to write to file offset " << file_offset
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<< " but existing p2p file is only " << p2p_size << " bytes.";
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CloseP2PSharingFd(true); // Delete p2p file.
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return;
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}
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off_t cur_file_offset = lseek(p2p_sharing_fd_, file_offset, SEEK_SET);
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if (cur_file_offset != static_cast<off_t>(file_offset)) {
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PLOG(ERROR) << "Error seeking to position " << file_offset
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<< " in p2p file";
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CloseP2PSharingFd(true); // Delete p2p file.
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} else {
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// OK, seeking worked, now write the data
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ssize_t bytes_written = write(p2p_sharing_fd_, data, length);
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if (bytes_written != static_cast<ssize_t>(length)) {
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PLOG(ERROR) << "Error writing " << length << " bytes at file offset "
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<< file_offset << " in p2p file";
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CloseP2PSharingFd(true); // Delete p2p file.
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}
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}
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}
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void DownloadActionChromeos::PerformAction() {
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http_fetcher_->set_delegate(this);
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// Get the InstallPlan and read it
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CHECK(HasInputObject());
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install_plan_ = GetInputObject();
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install_plan_.Dump();
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bytes_received_ = 0;
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bytes_received_previous_payloads_ = 0;
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bytes_total_ = 0;
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for (const auto& payload : install_plan_.payloads)
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bytes_total_ += payload.size;
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if (install_plan_.is_resume) {
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int64_t payload_index = 0;
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if (prefs_->GetInt64(kPrefsUpdateStatePayloadIndex, &payload_index) &&
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static_cast<size_t>(payload_index) < install_plan_.payloads.size()) {
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// Save the index for the resume payload before downloading any previous
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// payload, otherwise it will be overwritten.
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resume_payload_index_ = payload_index;
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for (int i = 0; i < payload_index; i++)
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install_plan_.payloads[i].already_applied = true;
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}
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}
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// TODO(senj): check that install plan has at least one payload.
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if (!payload_)
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payload_ = &install_plan_.payloads[0];
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LOG(INFO) << "Marking new slot as unbootable";
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if (!boot_control_->MarkSlotUnbootable(install_plan_.target_slot)) {
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LOG(WARNING) << "Unable to mark new slot "
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<< BootControlInterface::SlotName(install_plan_.target_slot)
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<< ". Proceeding with the update anyway.";
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}
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StartDownloading();
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}
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bool DownloadActionChromeos::LoadCachedManifest(int64_t manifest_size) {
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std::string cached_manifest_bytes;
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if (!prefs_->GetString(kPrefsManifestBytes, &cached_manifest_bytes) ||
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cached_manifest_bytes.size() <= 0) {
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LOG(INFO) << "Cached Manifest data not found";
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return false;
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}
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if (static_cast<int64_t>(cached_manifest_bytes.size()) != manifest_size) {
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LOG(WARNING) << "Cached metadata has unexpected size: "
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<< cached_manifest_bytes.size() << " vs. " << manifest_size;
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return false;
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}
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ErrorCode error;
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const bool success =
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delta_performer_->Write(
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cached_manifest_bytes.data(), cached_manifest_bytes.size(), &error) &&
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delta_performer_->IsManifestValid();
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if (success) {
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LOG(INFO) << "Successfully parsed cached manifest";
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} else {
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// If parsing of cached data failed, fall back to fetch them using HTTP
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LOG(WARNING) << "Cached manifest data fails to load, error code:"
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<< static_cast<int>(error) << "," << error;
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}
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return success;
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}
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void DownloadActionChromeos::StartDownloading() {
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download_active_ = true;
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http_fetcher_->ClearRanges();
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if (writer_ && writer_ != delta_performer_.get()) {
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LOG(INFO) << "Using writer for test.";
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} else {
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delta_performer_.reset(new DeltaPerformer(prefs_,
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boot_control_,
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hardware_,
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delegate_,
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&install_plan_,
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payload_,
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interactive_));
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writer_ = delta_performer_.get();
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}
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if (install_plan_.is_resume &&
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payload_ == &install_plan_.payloads[resume_payload_index_]) {
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// Resuming an update so parse the cached manifest first
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int64_t manifest_metadata_size = 0;
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int64_t manifest_signature_size = 0;
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prefs_->GetInt64(kPrefsManifestMetadataSize, &manifest_metadata_size);
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prefs_->GetInt64(kPrefsManifestSignatureSize, &manifest_signature_size);
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// TODO(zhangkelvin) Add unittest for success and fallback route
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if (!LoadCachedManifest(manifest_metadata_size + manifest_signature_size)) {
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if (delta_performer_) {
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// Create a new DeltaPerformer to reset all its state
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delta_performer_ = std::make_unique<DeltaPerformer>(prefs_,
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boot_control_,
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hardware_,
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delegate_,
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&install_plan_,
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payload_,
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interactive_);
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writer_ = delta_performer_.get();
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}
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http_fetcher_->AddRange(base_offset_,
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manifest_metadata_size + manifest_signature_size);
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}
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// If there're remaining unprocessed data blobs, fetch them. Be careful not
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// to request data beyond the end of the payload to avoid 416 HTTP response
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// error codes.
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int64_t next_data_offset = 0;
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prefs_->GetInt64(kPrefsUpdateStateNextDataOffset, &next_data_offset);
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uint64_t resume_offset =
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manifest_metadata_size + manifest_signature_size + next_data_offset;
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if (!payload_->size) {
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http_fetcher_->AddRange(base_offset_ + resume_offset);
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} else if (resume_offset < payload_->size) {
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http_fetcher_->AddRange(base_offset_ + resume_offset,
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payload_->size - resume_offset);
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}
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} else {
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if (payload_->size) {
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http_fetcher_->AddRange(base_offset_, payload_->size);
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} else {
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// If no payload size is passed we assume we read until the end of the
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// stream.
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http_fetcher_->AddRange(base_offset_);
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}
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}
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if (SystemState::Get() != nullptr) {
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const PayloadStateInterface* payload_state =
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SystemState::Get()->payload_state();
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string file_id = utils::CalculateP2PFileId(payload_->hash, payload_->size);
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if (payload_state->GetUsingP2PForSharing()) {
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// If we're sharing the update, store the file_id to convey
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// that we should write to the file.
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p2p_file_id_ = file_id;
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LOG(INFO) << "p2p file id: " << p2p_file_id_;
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} else {
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// Even if we're not sharing the update, it could be that
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// there's a partial file from a previous attempt with the same
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// hash. If this is the case, we NEED to clean it up otherwise
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// we're essentially timing out other peers downloading from us
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// (since we're never going to complete the file).
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FilePath path = SystemState::Get()->p2p_manager()->FileGetPath(file_id);
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if (!path.empty()) {
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if (unlink(path.value().c_str()) != 0) {
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PLOG(ERROR) << "Error deleting p2p file " << path.value();
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} else {
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LOG(INFO) << "Deleting partial p2p file " << path.value()
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<< " since we're not using p2p to share.";
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}
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}
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}
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// Tweak timeouts on the HTTP fetcher if we're downloading from a
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// local peer.
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if (payload_state->GetUsingP2PForDownloading() &&
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payload_state->GetP2PUrl() == install_plan_.download_url) {
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LOG(INFO) << "Tweaking HTTP fetcher since we're downloading via p2p";
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http_fetcher_->set_low_speed_limit(kDownloadP2PLowSpeedLimitBps,
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kDownloadP2PLowSpeedTimeSeconds);
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http_fetcher_->set_max_retry_count(kDownloadP2PMaxRetryCount);
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http_fetcher_->set_connect_timeout(kDownloadP2PConnectTimeoutSeconds);
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}
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}
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http_fetcher_->BeginTransfer(install_plan_.download_url);
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}
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void DownloadActionChromeos::SuspendAction() {
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http_fetcher_->Pause();
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}
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void DownloadActionChromeos::ResumeAction() {
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http_fetcher_->Unpause();
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}
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void DownloadActionChromeos::TerminateProcessing() {
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if (writer_) {
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writer_->Close();
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writer_ = nullptr;
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}
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download_active_ = false;
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CloseP2PSharingFd(false); // Keep p2p file.
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// Terminates the transfer. The action is terminated, if necessary, when the
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// TransferTerminated callback is received.
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http_fetcher_->TerminateTransfer();
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}
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void DownloadActionChromeos::SeekToOffset(off_t offset) {
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bytes_received_ = offset;
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}
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bool DownloadActionChromeos::ReceivedBytes(HttpFetcher* fetcher,
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const void* bytes,
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size_t length) {
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// Note that bytes_received_ is the current offset.
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if (!p2p_file_id_.empty()) {
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WriteToP2PFile(bytes, length, bytes_received_);
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}
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bytes_received_ += length;
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uint64_t bytes_downloaded_total =
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bytes_received_previous_payloads_ + bytes_received_;
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if (delegate_ && download_active_) {
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delegate_->BytesReceived(length, bytes_downloaded_total, bytes_total_);
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}
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if (writer_ && !writer_->Write(bytes, length, &code_)) {
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if (code_ != ErrorCode::kSuccess) {
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LOG(ERROR) << "Error " << utils::ErrorCodeToString(code_) << " (" << code_
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<< ") in DeltaPerformer's Write method when "
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<< "processing the received payload -- Terminating processing";
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}
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// Delete p2p file, if applicable.
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if (!p2p_file_id_.empty())
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CloseP2PSharingFd(true);
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// Don't tell the action processor that the action is complete until we get
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// the TransferTerminated callback. Otherwise, this and the HTTP fetcher
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// objects may get destroyed before all callbacks are complete.
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TerminateProcessing();
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return false;
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}
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// Call p2p_manager_->FileMakeVisible() when we've successfully
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// verified the manifest!
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if (!p2p_visible_ && SystemState::Get() && delta_performer_.get() &&
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delta_performer_->IsManifestValid()) {
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LOG(INFO) << "Manifest has been validated. Making p2p file visible.";
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SystemState::Get()->p2p_manager()->FileMakeVisible(p2p_file_id_);
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p2p_visible_ = true;
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}
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return true;
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}
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void DownloadActionChromeos::TransferComplete(HttpFetcher* fetcher,
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bool successful) {
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if (writer_) {
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LOG_IF(WARNING, writer_->Close() != 0) << "Error closing the writer.";
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if (delta_performer_.get() == writer_) {
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// no delta_performer_ in tests, so leave the test writer in place
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writer_ = nullptr;
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}
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}
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download_active_ = false;
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ErrorCode code =
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successful ? ErrorCode::kSuccess : ErrorCode::kDownloadTransferError;
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if (code == ErrorCode::kSuccess) {
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if (delta_performer_ && !payload_->already_applied)
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code = delta_performer_->VerifyPayload(payload_->hash, payload_->size);
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if (code == ErrorCode::kSuccess) {
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if (payload_ < &install_plan_.payloads.back() &&
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SystemState::Get()->payload_state()->NextPayload()) {
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LOG(INFO) << "Incrementing to next payload";
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// No need to reset if this payload was already applied.
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if (delta_performer_ && !payload_->already_applied)
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DeltaPerformer::ResetUpdateProgress(prefs_, false);
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// Start downloading next payload.
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bytes_received_previous_payloads_ += payload_->size;
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payload_++;
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install_plan_.download_url =
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SystemState::Get()->payload_state()->GetCurrentUrl();
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StartDownloading();
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return;
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}
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// All payloads have been applied and verified.
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if (delegate_)
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delegate_->DownloadComplete();
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std::string histogram_output;
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base::StatisticsRecorder::WriteGraph(
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"UpdateEngine.DownloadActionChromeos.", &histogram_output);
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LOG(INFO) << histogram_output;
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} else {
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LOG(ERROR) << "Download of " << install_plan_.download_url
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<< " failed due to payload verification error.";
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// Delete p2p file, if applicable.
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if (!p2p_file_id_.empty())
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CloseP2PSharingFd(true);
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}
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}
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// Write the path to the output pipe if we're successful.
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if (code == ErrorCode::kSuccess && HasOutputPipe())
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SetOutputObject(install_plan_);
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processor_->ActionComplete(this, code);
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}
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void DownloadActionChromeos::TransferTerminated(HttpFetcher* fetcher) {
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if (code_ != ErrorCode::kSuccess) {
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processor_->ActionComplete(this, code_);
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} else if (payload_->already_applied) {
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LOG(INFO) << "TransferTerminated with ErrorCode::kSuccess when the current "
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"payload has already applied, treating as TransferComplete.";
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TransferComplete(fetcher, true);
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}
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}
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} // namespace chromeos_update_engine
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