1fff690c18
Adding test cases for correct formation of optimized flash super task. We are adding an explicit pattern match for this task to be correctly formed. Changing Optimized flash task to only remove the reboot to userspace as a user might want to reboot back to bootloader after flashing. We also need to change a couple functions to take a IFastbootDriver to mock up the initialization path. Test: fastboot_test Bug: 297085098 Change-Id: Ic5c63bd4057ca6d64647134e5ce33fef12077fdb
314 lines
11 KiB
C++
314 lines
11 KiB
C++
//
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// Copyright (C) 2023 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 "task.h"
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#include "fastboot_driver.h"
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#include <android-base/logging.h>
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#include <android-base/parseint.h>
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#include "fastboot.h"
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#include "filesystem.h"
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#include "super_flash_helper.h"
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#include "util.h"
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using namespace std::string_literals;
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FlashTask::FlashTask(const std::string& slot, const std::string& pname, const std::string& fname,
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const bool apply_vbmeta, const FlashingPlan* fp)
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: pname_(pname), fname_(fname), slot_(slot), apply_vbmeta_(apply_vbmeta), fp_(fp) {}
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bool FlashTask::IsDynamicParitition(const ImageSource* source, const FlashTask* task) {
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std::vector<char> contents;
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if (!source->ReadFile("super_empty.img", &contents)) {
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return false;
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}
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auto metadata = android::fs_mgr::ReadFromImageBlob(contents.data(), contents.size());
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return should_flash_in_userspace(*metadata.get(), task->GetPartitionAndSlot());
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}
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void FlashTask::Run() {
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auto flash = [&](const std::string& partition) {
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if (should_flash_in_userspace(partition) && !is_userspace_fastboot() && !fp_->force_flash) {
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die("The partition you are trying to flash is dynamic, and "
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"should be flashed via fastbootd. Please run:\n"
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"\n"
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" fastboot reboot fastboot\n"
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"\n"
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"And try again. If you are intentionally trying to "
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"overwrite a fixed partition, use --force.");
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}
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do_flash(partition.c_str(), fname_.c_str(), apply_vbmeta_, fp_);
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};
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do_for_partitions(pname_, slot_, flash, true);
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}
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std::string FlashTask::ToString() const {
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std::string apply_vbmeta_string = "";
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if (apply_vbmeta_) {
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apply_vbmeta_string = " --apply_vbmeta";
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}
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return "flash" + apply_vbmeta_string + " " + pname_ + " " + fname_;
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}
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std::string FlashTask::GetPartitionAndSlot() const {
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auto slot = slot_;
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if (slot.empty()) {
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slot = get_current_slot();
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}
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if (slot.empty()) {
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return pname_;
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}
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if (slot == "all") {
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LOG(FATAL) << "Cannot retrieve a singular name when using all slots";
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}
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return pname_ + "_" + slot;
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}
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RebootTask::RebootTask(const FlashingPlan* fp) : fp_(fp){};
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RebootTask::RebootTask(const FlashingPlan* fp, const std::string& reboot_target)
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: reboot_target_(reboot_target), fp_(fp){};
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void RebootTask::Run() {
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if (reboot_target_ == "fastboot") {
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if (!is_userspace_fastboot()) {
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reboot_to_userspace_fastboot();
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fp_->fb->WaitForDisconnect();
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}
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} else if (reboot_target_ == "recovery") {
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fp_->fb->RebootTo("recovery");
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fp_->fb->WaitForDisconnect();
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} else if (reboot_target_ == "bootloader") {
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fp_->fb->RebootTo("bootloader");
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fp_->fb->WaitForDisconnect();
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} else if (reboot_target_ == "") {
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fp_->fb->Reboot();
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fp_->fb->WaitForDisconnect();
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} else {
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syntax_error("unknown reboot target %s", reboot_target_.c_str());
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}
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}
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std::string RebootTask::ToString() const {
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return "reboot " + reboot_target_;
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}
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OptimizedFlashSuperTask::OptimizedFlashSuperTask(const std::string& super_name,
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std::unique_ptr<SuperFlashHelper> helper,
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SparsePtr sparse_layout, uint64_t super_size,
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const FlashingPlan* fp)
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: super_name_(super_name),
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helper_(std::move(helper)),
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sparse_layout_(std::move(sparse_layout)),
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super_size_(super_size),
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fp_(fp) {}
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void OptimizedFlashSuperTask::Run() {
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// Use the reported super partition size as the upper limit, rather than
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// sparse_file_len, which (1) can fail and (2) is kind of expensive, since
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// it will map in all of the embedded fds.
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std::vector<SparsePtr> files;
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if (int limit = get_sparse_limit(super_size_, fp_)) {
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files = resparse_file(sparse_layout_.get(), limit);
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} else {
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files.emplace_back(std::move(sparse_layout_));
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}
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// Send the data to the device.
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flash_partition_files(super_name_, files);
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}
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std::string OptimizedFlashSuperTask::ToString() const {
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return "optimized-flash-super";
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}
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// This looks for a block within tasks that has the following pattern [reboot fastboot,
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// update-super, $LIST_OF_DYNAMIC_FLASH_TASKS] and returns true if this is found.Theoretically
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// this check is just a pattern match and could break if fastboot-info has a bunch of junk commands
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// but all devices should pretty much follow this pattern
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bool OptimizedFlashSuperTask::CanOptimize(const ImageSource* source,
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const std::vector<std::unique_ptr<Task>>& tasks) {
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for (size_t i = 0; i < tasks.size(); i++) {
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auto reboot_task = tasks[i]->AsRebootTask();
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if (!reboot_task || reboot_task->GetTarget() != "fastboot") {
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continue;
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}
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// The check for i >= tasks.size() - 2 is because we are peeking two tasks ahead. We need to
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// check for an update-super && flash {dynamic_partition}
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if (i >= tasks.size() - 2 || !tasks[i + 1]->AsUpdateSuperTask()) {
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continue;
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}
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auto flash_task = tasks[i + 2]->AsFlashTask();
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if (!FlashTask::IsDynamicParitition(source, flash_task)) {
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continue;
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}
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return true;
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}
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return false;
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}
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std::unique_ptr<OptimizedFlashSuperTask> OptimizedFlashSuperTask::Initialize(
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const FlashingPlan* fp, std::vector<std::unique_ptr<Task>>& tasks) {
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if (!fp->should_optimize_flash_super) {
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LOG(INFO) << "super optimization is disabled";
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return nullptr;
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}
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if (!supports_AB(fp->fb)) {
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LOG(VERBOSE) << "Cannot optimize flashing super on non-AB device";
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return nullptr;
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}
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if (fp->slot_override == "all") {
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LOG(VERBOSE) << "Cannot optimize flashing super for all slots";
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return nullptr;
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}
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if (!CanOptimize(fp->source, tasks)) {
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return nullptr;
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}
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// Does this device use dynamic partitions at all?
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unique_fd fd = fp->source->OpenFile("super_empty.img");
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if (fd < 0) {
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LOG(VERBOSE) << "could not open super_empty.img";
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return nullptr;
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}
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std::string super_name;
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// Try to find whether there is a super partition.
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if (fp->fb->GetVar("super-partition-name", &super_name) != fastboot::SUCCESS) {
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super_name = "super";
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}
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uint64_t partition_size;
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std::string partition_size_str;
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if (fp->fb->GetVar("partition-size:" + super_name, &partition_size_str) != fastboot::SUCCESS) {
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LOG(VERBOSE) << "Cannot optimize super flashing: could not determine super partition";
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return nullptr;
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}
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partition_size_str = fb_fix_numeric_var(partition_size_str);
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if (!android::base::ParseUint(partition_size_str, &partition_size)) {
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LOG(VERBOSE) << "Could not parse " << super_name << " size: " << partition_size_str;
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return nullptr;
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}
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std::unique_ptr<SuperFlashHelper> helper = std::make_unique<SuperFlashHelper>(*fp->source);
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if (!helper->Open(fd)) {
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return nullptr;
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}
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for (const auto& task : tasks) {
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if (auto flash_task = task->AsFlashTask()) {
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auto partition = flash_task->GetPartitionAndSlot();
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if (!helper->AddPartition(partition, flash_task->GetImageName(), false)) {
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return nullptr;
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}
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}
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}
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auto s = helper->GetSparseLayout();
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if (!s) return nullptr;
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// Remove tasks that are concatenated into this optimized task
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auto remove_if_callback = [&](const auto& task) -> bool {
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if (auto flash_task = task->AsFlashTask()) {
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return helper->WillFlash(flash_task->GetPartitionAndSlot());
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} else if (auto update_super_task = task->AsUpdateSuperTask()) {
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return true;
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} else if (auto reboot_task = task->AsRebootTask()) {
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if (reboot_task->GetTarget() == "fastboot") {
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return true;
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}
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}
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return false;
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};
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tasks.erase(std::remove_if(tasks.begin(), tasks.end(), remove_if_callback), tasks.end());
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return std::make_unique<OptimizedFlashSuperTask>(super_name, std::move(helper), std::move(s),
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partition_size, fp);
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}
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UpdateSuperTask::UpdateSuperTask(const FlashingPlan* fp) : fp_(fp) {}
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void UpdateSuperTask::Run() {
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unique_fd fd = fp_->source->OpenFile("super_empty.img");
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if (fd < 0) {
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return;
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}
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if (!is_userspace_fastboot()) {
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reboot_to_userspace_fastboot();
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}
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std::string super_name;
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if (fp_->fb->GetVar("super-partition-name", &super_name) != fastboot::RetCode::SUCCESS) {
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super_name = "super";
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}
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fp_->fb->Download(super_name, fd, get_file_size(fd));
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std::string command = "update-super:" + super_name;
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if (fp_->wants_wipe) {
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command += ":wipe";
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}
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fp_->fb->RawCommand(command, "Updating super partition");
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}
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std::string UpdateSuperTask::ToString() const {
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return "update-super";
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}
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ResizeTask::ResizeTask(const FlashingPlan* fp, const std::string& pname, const std::string& size,
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const std::string& slot)
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: fp_(fp), pname_(pname), size_(size), slot_(slot) {}
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void ResizeTask::Run() {
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auto resize_partition = [this](const std::string& partition) -> void {
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if (is_logical(partition)) {
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fp_->fb->ResizePartition(partition, size_);
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}
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};
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do_for_partitions(pname_, slot_, resize_partition, false);
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}
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std::string ResizeTask::ToString() const {
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return "resize " + pname_;
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}
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DeleteTask::DeleteTask(const FlashingPlan* fp, const std::string& pname) : fp_(fp), pname_(pname){};
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void DeleteTask::Run() {
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fp_->fb->DeletePartition(pname_);
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}
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std::string DeleteTask::ToString() const {
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return "delete " + pname_;
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}
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WipeTask::WipeTask(const FlashingPlan* fp, const std::string& pname) : fp_(fp), pname_(pname){};
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void WipeTask::Run() {
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std::string partition_type;
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if (fp_->fb->GetVar("partition-type:" + pname_, &partition_type) != fastboot::SUCCESS) {
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LOG(ERROR) << "wipe task partition not found: " << pname_;
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return;
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}
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if (partition_type.empty()) return;
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if (fp_->fb->Erase(pname_) != fastboot::SUCCESS) {
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LOG(ERROR) << "wipe task erase failed with partition: " << pname_;
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return;
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}
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fb_perform_format(pname_, 1, partition_type, "", fp_->fs_options, fp_);
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}
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std::string WipeTask::ToString() const {
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return "erase " + pname_;
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}
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