9dabc9ef32
The current code keeps a pointer to a local variable which doesn't work too well. Change this to a unique_ptr and allocate the source object that will be used instead. Test: All unit tests pass. Test: fastboot -w flashall on a mokey which crashed without this change. Change-Id: Ief5437374181e514928c45dd540b42898901a137
370 lines
14 KiB
C++
370 lines
14 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.h"
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#include "fastboot_driver_mock.h"
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#include <gtest/gtest.h>
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#include <iostream>
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#include <memory>
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#include "android-base/strings.h"
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#include "gmock/gmock.h"
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using android::base::Split;
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using testing::_;
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class ParseTest : public ::testing ::Test {
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protected:
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void SetUp() override {
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fp = std::make_unique<FlashingPlan>();
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fp->slot_override = "b";
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fp->secondary_slot = "a";
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fp->wants_wipe = false;
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}
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void TearDown() override {}
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std::unique_ptr<FlashingPlan> fp;
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private:
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};
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static std::vector<std::unique_ptr<Task>> collectTasks(FlashingPlan* fp,
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const std::vector<std::string>& commands) {
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std::vector<std::vector<std::string>> vec_commands;
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for (auto& command : commands) {
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vec_commands.emplace_back(android::base::Split(command, " "));
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}
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std::vector<std::unique_ptr<Task>> tasks;
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for (auto& command : vec_commands) {
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tasks.emplace_back(ParseFastbootInfoLine(fp, command));
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}
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return tasks;
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}
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std::unique_ptr<Task> ParseCommand(FlashingPlan* fp, std::string command) {
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std::vector<std::string> vec_command = android::base::Split(command, " ");
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return ParseFastbootInfoLine(fp, vec_command);
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}
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// tests if tasks_a is a superset of tasks_b. Used for checking to ensure all partitions flashed
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// from hardcoded image list is also flashed in new fastboot-info.txt
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static bool compareTaskList(std::vector<std::unique_ptr<Task>>& tasks_a,
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std::vector<std::unique_ptr<Task>>& tasks_b) {
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std::set<std::string> list;
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for (auto& task : tasks_a) {
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list.insert(task->ToString());
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}
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for (auto& task : tasks_b) {
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if (list.find(task->ToString()) == list.end()) {
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std::cout << "ERROR: " << task->ToString()
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<< " not found in task list created by fastboot-info.txt";
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return false;
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}
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}
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return true;
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}
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static std::string tasksToString(std::vector<std::unique_ptr<Task>>& tasks) {
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std::string output;
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for (auto& task : tasks) {
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output.append(task->ToString());
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output.append("\n");
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}
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return output;
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}
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TEST_F(ParseTest, CorrectFlashTaskFormed) {
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std::vector<std::string> commands = {"flash dtbo", "flash --slot-other system system_other.img",
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"flash system", "flash --apply-vbmeta vbmeta"};
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std::vector<std::unique_ptr<Task>> tasks = collectTasks(fp.get(), commands);
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std::vector<std::vector<std::string>> expected_values{
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{"dtbo", "dtbo_b", "b", "dtbo.img"},
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{"system", "system_a", "a", "system_other.img"},
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{"system", "system_b", "b", "system.img"},
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{"vbmeta", "vbmeta_b", "b", "vbmeta.img"}
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};
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for (auto& task : tasks) {
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ASSERT_TRUE(task != nullptr);
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}
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for (size_t i = 0; i < tasks.size(); i++) {
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auto task = tasks[i]->AsFlashTask();
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ASSERT_TRUE(task != nullptr);
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ASSERT_EQ(task->GetPartition(), expected_values[i][0]);
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ASSERT_EQ(task->GetPartitionAndSlot(), expected_values[i][1]);
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ASSERT_EQ(task->GetSlot(), expected_values[i][2]);
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ASSERT_EQ(task->GetImageName(), expected_values[i][3]);
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}
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}
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TEST_F(ParseTest, VersionCheckCorrect) {
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std::vector<std::string> correct_versions = {"version 1", "version 22", "version 5",
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"version 17"};
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std::vector<std::string> bad_versions = {"version", "version .01", "version x1",
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"version 1.0.1", "version 1.", "s 1.0",
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"version 1.0 2.0", "version 100.00", "version 1 2"};
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for (auto& version : correct_versions) {
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ASSERT_TRUE(CheckFastbootInfoRequirements(android::base::Split(version, " "), 26))
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<< version;
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}
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// returning False for failing version check
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for (auto& version : correct_versions) {
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ASSERT_FALSE(CheckFastbootInfoRequirements(android::base::Split(version, " "), 0))
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<< version;
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}
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// returning False for bad format
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for (auto& version : bad_versions) {
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ASSERT_FALSE(CheckFastbootInfoRequirements(android::base::Split(version, " "), 100))
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<< version;
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}
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}
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TEST_F(ParseTest, BadFastbootInput) {
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ASSERT_EQ(ParseCommand(fp.get(), "flash"), nullptr);
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ASSERT_EQ(ParseCommand(fp.get(), "flash --slot-other --apply-vbmeta"), nullptr);
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ASSERT_EQ(ParseCommand(fp.get(), "flash --apply-vbmeta"), nullptr);
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ASSERT_EQ(ParseCommand(fp.get(), "if-wipe"), nullptr);
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ASSERT_EQ(ParseCommand(fp.get(), "if-wipe flash"), nullptr);
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ASSERT_EQ(ParseCommand(fp.get(), "wipe dtbo"), nullptr);
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ASSERT_EQ(ParseCommand(fp.get(), "update-super dtbo"), nullptr);
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ASSERT_EQ(ParseCommand(fp.get(), "flash system system.img system"), nullptr);
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ASSERT_EQ(ParseCommand(fp.get(), "reboot bootloader fastboot"), nullptr);
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ASSERT_EQ(ParseCommand(fp.get(),
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"flash --slot-other --apply-vbmeta system system_other.img system"),
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nullptr);
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ASSERT_EQ(ParseCommand(fp.get(), "erase"), nullptr);
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ASSERT_EQ(ParseCommand(fp.get(), "erase dtbo dtbo"), nullptr);
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ASSERT_EQ(ParseCommand(fp.get(), "wipe this"), nullptr);
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}
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TEST_F(ParseTest, CorrectTaskFormed) {
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std::vector<std::string> commands = {"flash dtbo", "flash --slot-other system system_other.img",
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"reboot bootloader", "update-super", "erase cache"};
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std::vector<std::unique_ptr<Task>> tasks = collectTasks(fp.get(), commands);
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ASSERT_TRUE(tasks[0]->AsFlashTask());
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ASSERT_TRUE(tasks[0]->AsFlashTask());
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ASSERT_TRUE(tasks[1]->AsFlashTask());
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ASSERT_TRUE(tasks[2]->AsRebootTask());
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ASSERT_TRUE(tasks[3]->AsUpdateSuperTask());
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ASSERT_TRUE(tasks[4]->AsWipeTask());
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}
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TEST_F(ParseTest, CorrectDriverCalls) {
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fastboot::MockFastbootDriver fb;
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fp->fb = &fb;
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EXPECT_CALL(fb, RebootTo(_, _, _)).Times(1);
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EXPECT_CALL(fb, Reboot(_, _)).Times(1);
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EXPECT_CALL(fb, WaitForDisconnect()).Times(2);
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std::vector<std::string> commands = {"reboot bootloader", "reboot"};
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std::vector<std::unique_ptr<Task>> tasks = collectTasks(fp.get(), commands);
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for (auto& task : tasks) {
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task->Run();
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}
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}
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TEST_F(ParseTest, CorrectTaskLists) {
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if (!get_android_product_out()) {
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GTEST_SKIP();
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}
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fp->source.reset(new LocalImageSource);
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fp->sparse_limit = std::numeric_limits<int64_t>::max();
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fastboot::MockFastbootDriver fb;
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fp->fb = &fb;
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fp->should_optimize_flash_super = false;
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ON_CALL(fb, GetVar("super-partition-name", _, _))
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.WillByDefault(testing::Return(fastboot::BAD_ARG));
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FlashAllTool tool(fp.get());
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fp->should_use_fastboot_info = false;
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auto hardcoded_tasks = tool.CollectTasks();
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fp->should_use_fastboot_info = true;
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auto fastboot_info_tasks = tool.CollectTasks();
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auto is_non_flash_task = [](const auto& task) -> bool {
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return task->AsFlashTask() == nullptr;
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};
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// remove non flash tasks for testing purposes
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hardcoded_tasks.erase(
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std::remove_if(hardcoded_tasks.begin(), hardcoded_tasks.end(), is_non_flash_task),
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hardcoded_tasks.end());
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fastboot_info_tasks.erase(std::remove_if(fastboot_info_tasks.begin(), fastboot_info_tasks.end(),
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is_non_flash_task),
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fastboot_info_tasks.end());
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if (!compareTaskList(fastboot_info_tasks, hardcoded_tasks)) {
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std::cout << "\n\n---Hardcoded Task List---\n"
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<< tasksToString(hardcoded_tasks) << "\n---Fastboot-Info Task List---\n"
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<< tasksToString(fastboot_info_tasks);
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}
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ASSERT_TRUE(compareTaskList(fastboot_info_tasks, hardcoded_tasks));
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ASSERT_TRUE(fastboot_info_tasks.size() >= hardcoded_tasks.size())
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<< "size of fastboot-info task list: " << fastboot_info_tasks.size()
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<< " size of hardcoded task list: " << hardcoded_tasks.size();
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}
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TEST_F(ParseTest, IsDynamicParitiontest) {
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if (!get_android_product_out()) {
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GTEST_SKIP();
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}
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fp->source.reset(new LocalImageSource);
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fastboot::MockFastbootDriver fb;
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fp->fb = &fb;
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fp->should_optimize_flash_super = true;
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fp->should_use_fastboot_info = true;
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std::vector<std::pair<std::string, bool>> test_cases = {
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{"flash boot", false},
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{"flash init_boot", false},
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{"flash --apply-vbmeta vbmeta", false},
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{"flash product", true},
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{"flash system", true},
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{"flash --slot-other system system_other.img", true},
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};
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for (auto& test : test_cases) {
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std::unique_ptr<Task> task =
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ParseFastbootInfoLine(fp.get(), android::base::Tokenize(test.first, " "));
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auto flash_task = task->AsFlashTask();
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ASSERT_FALSE(flash_task == nullptr);
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ASSERT_EQ(FlashTask::IsDynamicParitition(fp->source.get(), flash_task), test.second);
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}
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}
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TEST_F(ParseTest, CanOptimizeTest) {
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if (!get_android_product_out()) {
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GTEST_SKIP();
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}
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fp->source.reset(new LocalImageSource);
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fp->sparse_limit = std::numeric_limits<int64_t>::max();
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fastboot::MockFastbootDriver fb;
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fp->fb = &fb;
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fp->should_optimize_flash_super = false;
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fp->should_use_fastboot_info = true;
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std::vector<std::pair<std::vector<std::string>, bool>> patternmatchtest = {
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{{"flash boot", "flash init_boot", "flash vendor_boot", "reboot fastboot",
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"update-super", "flash product", "flash system", "flash system_ext", "flash odm",
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"if-wipe erase userdata"},
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true},
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{{"flash boot", "flash init_boot", "flash vendor_boot", "reboot fastboot",
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"update-super", "flash product", "flash system", "flash system_ext", "flash odm",
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"if-wipe erase userdata"},
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true},
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{{"flash boot", "flash init_boot", "flash vendor_boot", "reboot fastboot",
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"flash product", "flash system", "flash system_ext", "flash odm",
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"if-wipe erase userdata"},
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false},
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{{"flash boot", "flash init_boot", "flash vendor_boot", "update-super", "flash product",
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"flash system", "flash system_ext", "flash odm", "if-wipe erase userdata"},
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false},
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};
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auto remove_if_callback = [&](const auto& task) -> bool { return !!task->AsResizeTask(); };
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for (auto& test : patternmatchtest) {
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std::vector<std::unique_ptr<Task>> tasks = ParseFastbootInfo(fp.get(), test.first);
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tasks.erase(std::remove_if(tasks.begin(), tasks.end(), remove_if_callback), tasks.end());
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ASSERT_EQ(OptimizedFlashSuperTask::CanOptimize(fp->source.get(), tasks), test.second);
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}
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}
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// Note: this test is exclusively testing that optimized flash super pattern matches a given task
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// list and is able to optimized based on a correct sequence of tasks
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TEST_F(ParseTest, OptimizedFlashSuperPatternMatchTest) {
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if (!get_android_product_out()) {
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GTEST_SKIP();
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}
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fp->source.reset(new LocalImageSource);
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fp->sparse_limit = std::numeric_limits<int64_t>::max();
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fastboot::MockFastbootDriver fb;
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fp->fb = &fb;
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fp->should_optimize_flash_super = true;
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fp->should_use_fastboot_info = true;
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ON_CALL(fb, GetVar("super-partition-name", _, _))
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.WillByDefault(testing::Return(fastboot::BAD_ARG));
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ON_CALL(fb, GetVar("slot-count", _, _))
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.WillByDefault(testing::DoAll(testing::SetArgPointee<1>("2"),
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testing::Return(fastboot::SUCCESS)));
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ON_CALL(fb, GetVar("partition-size:super", _, _))
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.WillByDefault(testing::DoAll(testing::SetArgPointee<1>("1000"),
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testing::Return(fastboot::SUCCESS)));
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std::vector<std::pair<std::vector<std::string>, bool>> patternmatchtest = {
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{{"flash boot", "flash init_boot", "flash vendor_boot", "reboot fastboot",
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"update-super", "flash product", "flash system", "flash system_ext", "flash odm",
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"if-wipe erase userdata"},
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true},
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{{"flash boot", "flash init_boot", "flash vendor_boot", "reboot fastboot",
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"update-super", "flash product", "flash system", "flash system_ext", "flash odm",
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"if-wipe erase userdata"},
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true},
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{{"flash boot", "flash init_boot", "flash vendor_boot", "reboot fastboot",
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"flash product", "flash system", "flash system_ext", "flash odm",
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"if-wipe erase userdata"},
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false},
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{{"flash boot", "flash init_boot", "flash vendor_boot", "update-super", "flash product",
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"flash system", "flash system_ext", "flash odm", "if-wipe erase userdata"},
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false},
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};
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for (auto& test : patternmatchtest) {
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std::vector<std::unique_ptr<Task>> tasks = ParseFastbootInfo(fp.get(), test.first);
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// Check to make sure we have an optimized flash super task && no more dynamic partition
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// flashing tasks
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auto&& IsOptimized = [](const FlashingPlan* fp,
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const std::vector<std::unique_ptr<Task>>& tasks) {
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bool contains_optimized_task = false;
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for (auto& task : tasks) {
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if (auto optimized_task = task->AsOptimizedFlashSuperTask()) {
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contains_optimized_task = true;
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}
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if (auto flash_task = task->AsFlashTask()) {
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if (FlashTask::IsDynamicParitition(fp->source.get(), flash_task)) {
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return false;
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}
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}
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}
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return contains_optimized_task;
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};
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ASSERT_EQ(IsOptimized(fp.get(), tasks), test.second);
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}
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}
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