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723 lines
26 KiB
723 lines
26 KiB
/* |
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* Copyright (C) 2007 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 "install.h" |
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|
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#include <ctype.h> |
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#include <errno.h> |
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#include <fcntl.h> |
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#include <inttypes.h> |
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#include <limits.h> |
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#include <string.h> |
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#include <sys/stat.h> |
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#include <sys/wait.h> |
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#include <unistd.h> |
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#include <algorithm> |
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#include <atomic> |
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#include <chrono> |
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#include <condition_variable> |
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#include <functional> |
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#include <limits> |
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#include <map> |
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#include <mutex> |
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#include <string> |
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#include <thread> |
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#include <vector> |
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#include <android-base/file.h> |
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#include <android-base/logging.h> |
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#include <android-base/parsedouble.h> |
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#include <android-base/parseint.h> |
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#include <android-base/properties.h> |
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#include <android-base/stringprintf.h> |
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#include <android-base/strings.h> |
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#include <vintf/VintfObjectRecovery.h> |
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#include <ziparchive/zip_archive.h> |
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#include "common.h" |
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#include "error_code.h" |
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#include "otautil/SysUtil.h" |
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#include "otautil/ThermalUtil.h" |
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#include "private/install.h" |
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#include "roots.h" |
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#include "ui.h" |
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#include "verifier.h" |
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#include "mt_install.h" |
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using namespace std::chrono_literals; |
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// Default allocation of progress bar segments to operations |
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static constexpr int VERIFICATION_PROGRESS_TIME = 60; |
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static constexpr float VERIFICATION_PROGRESS_FRACTION = 0.25; |
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static std::condition_variable finish_log_temperature; |
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// This function parses and returns the build.version.incremental |
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static std::string parse_build_number(const std::string& str) { |
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size_t pos = str.find('='); |
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if (pos != std::string::npos) { |
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return android::base::Trim(str.substr(pos+1)); |
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} |
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LOG(ERROR) << "Failed to parse build number in " << str; |
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return ""; |
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} |
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bool read_metadata_from_package(ZipArchiveHandle zip, std::string* metadata) { |
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CHECK(metadata != nullptr); |
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static constexpr const char* METADATA_PATH = "META-INF/com/android/metadata"; |
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ZipString path(METADATA_PATH); |
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ZipEntry entry; |
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if (FindEntry(zip, path, &entry) != 0) { |
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LOG(ERROR) << "Failed to find " << METADATA_PATH; |
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return false; |
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} |
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uint32_t length = entry.uncompressed_length; |
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metadata->resize(length, '\0'); |
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int32_t err = ExtractToMemory(zip, &entry, reinterpret_cast<uint8_t*>(&(*metadata)[0]), length); |
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if (err != 0) { |
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LOG(ERROR) << "Failed to extract " << METADATA_PATH << ": " << ErrorCodeString(err); |
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return false; |
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} |
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return true; |
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} |
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// Read the build.version.incremental of src/tgt from the metadata and log it to last_install. |
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static void read_source_target_build(ZipArchiveHandle zip, std::vector<std::string>* log_buffer) { |
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std::string metadata; |
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if (!read_metadata_from_package(zip, &metadata)) { |
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return; |
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} |
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// Examples of the pre-build and post-build strings in metadata: |
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// pre-build-incremental=2943039 |
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// post-build-incremental=2951741 |
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std::vector<std::string> lines = android::base::Split(metadata, "\n"); |
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for (const std::string& line : lines) { |
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std::string str = android::base::Trim(line); |
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if (android::base::StartsWith(str, "pre-build-incremental")) { |
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std::string source_build = parse_build_number(str); |
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if (!source_build.empty()) { |
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log_buffer->push_back("source_build: " + source_build); |
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} |
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} else if (android::base::StartsWith(str, "post-build-incremental")) { |
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std::string target_build = parse_build_number(str); |
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if (!target_build.empty()) { |
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log_buffer->push_back("target_build: " + target_build); |
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} |
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} |
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} |
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} |
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#ifdef AB_OTA_UPDATER |
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// Parses the metadata of the OTA package in |zip| and checks whether we are |
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// allowed to accept this A/B package. Downgrading is not allowed unless |
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// explicitly enabled in the package and only for incremental packages. |
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static int check_newer_ab_build(ZipArchiveHandle zip) { |
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std::string metadata_str; |
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if (!read_metadata_from_package(zip, &metadata_str)) { |
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return INSTALL_CORRUPT; |
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} |
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std::map<std::string, std::string> metadata; |
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for (const std::string& line : android::base::Split(metadata_str, "\n")) { |
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size_t eq = line.find('='); |
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if (eq != std::string::npos) { |
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metadata[line.substr(0, eq)] = line.substr(eq + 1); |
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} |
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} |
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std::string value = android::base::GetProperty("ro.product.device", ""); |
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const std::string& pkg_device = metadata["pre-device"]; |
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if (pkg_device != value || pkg_device.empty()) { |
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LOG(ERROR) << "Package is for product " << pkg_device << " but expected " << value; |
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return INSTALL_ERROR; |
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} |
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// We allow the package to not have any serialno, but if it has a non-empty |
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// value it should match. |
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value = android::base::GetProperty("ro.serialno", ""); |
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const std::string& pkg_serial_no = metadata["serialno"]; |
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if (!pkg_serial_no.empty() && pkg_serial_no != value) { |
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LOG(ERROR) << "Package is for serial " << pkg_serial_no; |
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return INSTALL_ERROR; |
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} |
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if (metadata["ota-type"] != "AB") { |
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LOG(ERROR) << "Package is not A/B"; |
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return INSTALL_ERROR; |
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} |
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// Incremental updates should match the current build. |
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value = android::base::GetProperty("ro.build.version.incremental", ""); |
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const std::string& pkg_pre_build = metadata["pre-build-incremental"]; |
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if (!pkg_pre_build.empty() && pkg_pre_build != value) { |
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LOG(ERROR) << "Package is for source build " << pkg_pre_build << " but expected " << value; |
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return INSTALL_ERROR; |
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} |
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value = android::base::GetProperty("ro.build.fingerprint", ""); |
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const std::string& pkg_pre_build_fingerprint = metadata["pre-build"]; |
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if (!pkg_pre_build_fingerprint.empty() && pkg_pre_build_fingerprint != value) { |
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LOG(ERROR) << "Package is for source build " << pkg_pre_build_fingerprint << " but expected " |
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<< value; |
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return INSTALL_ERROR; |
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} |
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// Check for downgrade version. |
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int64_t build_timestamp = |
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android::base::GetIntProperty("ro.build.date.utc", std::numeric_limits<int64_t>::max()); |
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int64_t pkg_post_timestamp = 0; |
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// We allow to full update to the same version we are running, in case there |
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// is a problem with the current copy of that version. |
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if (metadata["post-timestamp"].empty() || |
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!android::base::ParseInt(metadata["post-timestamp"].c_str(), &pkg_post_timestamp) || |
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pkg_post_timestamp < build_timestamp) { |
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if (metadata["ota-downgrade"] != "yes") { |
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LOG(ERROR) << "Update package is older than the current build, expected a build " |
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"newer than timestamp " |
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<< build_timestamp << " but package has timestamp " << pkg_post_timestamp |
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<< " and downgrade not allowed."; |
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return INSTALL_ERROR; |
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} |
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if (pkg_pre_build_fingerprint.empty()) { |
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LOG(ERROR) << "Downgrade package must have a pre-build version set, not allowed."; |
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return INSTALL_ERROR; |
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} |
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} |
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return 0; |
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} |
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int update_binary_command(const std::string& package, ZipArchiveHandle zip, |
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const std::string& binary_path, int /* retry_count */, int status_fd, |
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std::vector<std::string>* cmd) { |
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CHECK(cmd != nullptr); |
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int ret = check_newer_ab_build(zip); |
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if (ret != 0) { |
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return ret; |
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} |
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// For A/B updates we extract the payload properties to a buffer and obtain the RAW payload offset |
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// in the zip file. |
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static constexpr const char* AB_OTA_PAYLOAD_PROPERTIES = "payload_properties.txt"; |
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ZipString property_name(AB_OTA_PAYLOAD_PROPERTIES); |
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ZipEntry properties_entry; |
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if (FindEntry(zip, property_name, &properties_entry) != 0) { |
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LOG(ERROR) << "Failed to find " << AB_OTA_PAYLOAD_PROPERTIES; |
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return INSTALL_CORRUPT; |
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} |
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uint32_t properties_entry_length = properties_entry.uncompressed_length; |
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std::vector<uint8_t> payload_properties(properties_entry_length); |
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int32_t err = |
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ExtractToMemory(zip, &properties_entry, payload_properties.data(), properties_entry_length); |
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if (err != 0) { |
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LOG(ERROR) << "Failed to extract " << AB_OTA_PAYLOAD_PROPERTIES << ": " << ErrorCodeString(err); |
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return INSTALL_CORRUPT; |
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} |
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static constexpr const char* AB_OTA_PAYLOAD = "payload.bin"; |
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ZipString payload_name(AB_OTA_PAYLOAD); |
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ZipEntry payload_entry; |
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if (FindEntry(zip, payload_name, &payload_entry) != 0) { |
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LOG(ERROR) << "Failed to find " << AB_OTA_PAYLOAD; |
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return INSTALL_CORRUPT; |
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} |
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long payload_offset = payload_entry.offset; |
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*cmd = { |
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binary_path, |
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"--payload=file://" + package, |
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android::base::StringPrintf("--offset=%ld", payload_offset), |
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"--headers=" + std::string(payload_properties.begin(), payload_properties.end()), |
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android::base::StringPrintf("--status_fd=%d", status_fd), |
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}; |
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return 0; |
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} |
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#else // !AB_OTA_UPDATER |
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int update_binary_command(const std::string& package, ZipArchiveHandle zip, |
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const std::string& binary_path, int retry_count, int status_fd, |
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std::vector<std::string>* cmd) { |
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CHECK(cmd != nullptr); |
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// On traditional updates we extract the update binary from the package. |
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static constexpr const char* UPDATE_BINARY_NAME = "META-INF/com/google/android/update-binary"; |
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ZipString binary_name(UPDATE_BINARY_NAME); |
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ZipEntry binary_entry; |
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if (FindEntry(zip, binary_name, &binary_entry) != 0) { |
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LOG(ERROR) << "Failed to find update binary " << UPDATE_BINARY_NAME; |
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return INSTALL_CORRUPT; |
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} |
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unlink(binary_path.c_str()); |
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int fd = open(binary_path.c_str(), O_CREAT | O_WRONLY | O_TRUNC | O_CLOEXEC, 0755); |
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if (fd == -1) { |
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PLOG(ERROR) << "Failed to create " << binary_path; |
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return INSTALL_ERROR; |
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} |
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int32_t error = ExtractEntryToFile(zip, &binary_entry, fd); |
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close(fd); |
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if (error != 0) { |
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LOG(ERROR) << "Failed to extract " << UPDATE_BINARY_NAME << ": " << ErrorCodeString(error); |
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return INSTALL_ERROR; |
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} |
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*cmd = { |
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binary_path, |
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EXPAND(RECOVERY_API_VERSION), // defined in Android.mk |
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std::to_string(status_fd), |
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package, |
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}; |
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if (retry_count > 0) { |
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cmd->push_back("retry"); |
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} |
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return 0; |
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} |
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#endif // !AB_OTA_UPDATER |
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static void log_max_temperature(int* max_temperature, const std::atomic<bool>& logger_finished) { |
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CHECK(max_temperature != nullptr); |
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std::mutex mtx; |
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std::unique_lock<std::mutex> lck(mtx); |
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while (!logger_finished.load() && |
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finish_log_temperature.wait_for(lck, 20s) == std::cv_status::timeout) { |
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*max_temperature = std::max(*max_temperature, GetMaxValueFromThermalZone()); |
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} |
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} |
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// If the package contains an update binary, extract it and run it. |
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static int try_update_binary(const std::string& package, ZipArchiveHandle zip, bool* wipe_cache, |
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std::vector<std::string>* log_buffer, int retry_count, |
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int* max_temperature) { |
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read_source_target_build(zip, log_buffer); |
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int pipefd[2]; |
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pipe(pipefd); |
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std::vector<std::string> args; |
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#ifdef AB_OTA_UPDATER |
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int ret = update_binary_command(package, zip, "/sbin/update_engine_sideload", retry_count, |
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pipefd[1], &args); |
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#else |
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int ret = update_binary_command(package, zip, "/tmp/update-binary", retry_count, pipefd[1], |
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&args); |
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#endif |
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if (ret) { |
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close(pipefd[0]); |
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close(pipefd[1]); |
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return ret; |
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} |
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|
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// When executing the update binary contained in the package, the |
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// arguments passed are: |
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// |
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// - the version number for this interface |
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// |
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// - an FD to which the program can write in order to update the |
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// progress bar. The program can write single-line commands: |
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// |
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// progress <frac> <secs> |
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// fill up the next <frac> part of of the progress bar |
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// over <secs> seconds. If <secs> is zero, use |
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// set_progress commands to manually control the |
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// progress of this segment of the bar. |
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// |
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// set_progress <frac> |
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// <frac> should be between 0.0 and 1.0; sets the |
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// progress bar within the segment defined by the most |
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// recent progress command. |
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// |
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// ui_print <string> |
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// display <string> on the screen. |
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// |
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// wipe_cache |
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// a wipe of cache will be performed following a successful |
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// installation. |
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// |
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// clear_display |
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// turn off the text display. |
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// |
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// enable_reboot |
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// packages can explicitly request that they want the user |
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// to be able to reboot during installation (useful for |
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// debugging packages that don't exit). |
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// |
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// retry_update |
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// updater encounters some issue during the update. It requests |
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// a reboot to retry the same package automatically. |
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// |
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// log <string> |
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// updater requests logging the string (e.g. cause of the |
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// failure). |
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// |
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// - the name of the package zip file. |
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// |
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// - an optional argument "retry" if this update is a retry of a failed |
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// update attempt. |
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// |
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|
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// Convert the vector to a NULL-terminated char* array suitable for execv. |
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const char* chr_args[args.size() + 1]; |
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chr_args[args.size()] = nullptr; |
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for (size_t i = 0; i < args.size(); i++) { |
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chr_args[i] = args[i].c_str(); |
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} |
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pid_t pid = fork(); |
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if (pid == -1) { |
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close(pipefd[0]); |
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close(pipefd[1]); |
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PLOG(ERROR) << "Failed to fork update binary"; |
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return INSTALL_ERROR; |
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} |
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if (pid == 0) { |
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umask(022); |
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close(pipefd[0]); |
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execv(chr_args[0], const_cast<char**>(chr_args)); |
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// Bug: 34769056 |
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// We shouldn't use LOG/PLOG in the forked process, since they may cause |
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// the child process to hang. This deadlock results from an improperly |
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// copied mutex in the ui functions. |
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fprintf(stdout, "E:Can't run %s (%s)\n", chr_args[0], strerror(errno)); |
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_exit(EXIT_FAILURE); |
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} |
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close(pipefd[1]); |
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std::atomic<bool> logger_finished(false); |
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std::thread temperature_logger(log_max_temperature, max_temperature, std::ref(logger_finished)); |
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*wipe_cache = false; |
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bool retry_update = false; |
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char buffer[1024]; |
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FILE* from_child = fdopen(pipefd[0], "r"); |
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while (fgets(buffer, sizeof(buffer), from_child) != nullptr) { |
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std::string line(buffer); |
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size_t space = line.find_first_of(" \n"); |
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std::string command(line.substr(0, space)); |
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if (command.empty()) continue; |
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|
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// Get rid of the leading and trailing space and/or newline. |
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std::string args = space == std::string::npos ? "" : android::base::Trim(line.substr(space)); |
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|
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if (command == "progress") { |
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std::vector<std::string> tokens = android::base::Split(args, " "); |
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double fraction; |
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int seconds; |
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if (tokens.size() == 2 && android::base::ParseDouble(tokens[0].c_str(), &fraction) && |
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android::base::ParseInt(tokens[1], &seconds)) { |
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ui->ShowProgress(fraction * (1 - VERIFICATION_PROGRESS_FRACTION), seconds); |
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} else { |
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LOG(ERROR) << "invalid \"progress\" parameters: " << line; |
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} |
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} else if (command == "set_progress") { |
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std::vector<std::string> tokens = android::base::Split(args, " "); |
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double fraction; |
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if (tokens.size() == 1 && android::base::ParseDouble(tokens[0].c_str(), &fraction)) { |
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ui->SetProgress(fraction); |
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} else { |
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LOG(ERROR) << "invalid \"set_progress\" parameters: " << line; |
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} |
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} else if (command == "ui_print") { |
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ui->PrintOnScreenOnly("%s\n", args.c_str()); |
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fflush(stdout); |
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} else if (command == "wipe_cache") { |
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*wipe_cache = true; |
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} else if (command == "clear_display") { |
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ui->SetBackground(RecoveryUI::NONE); |
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} else if (command == "enable_reboot") { |
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// packages can explicitly request that they want the user |
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// to be able to reboot during installation (useful for |
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// debugging packages that don't exit). |
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ui->SetEnableReboot(true); |
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} else if (command == "retry_update") { |
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retry_update = true; |
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} else if (command == "log") { |
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if (!args.empty()) { |
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// Save the logging request from updater and write to last_install later. |
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log_buffer->push_back(args); |
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} else { |
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LOG(ERROR) << "invalid \"log\" parameters: " << line; |
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} |
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} else { |
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LOG(ERROR) << "unknown command [" << command << "]"; |
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} |
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} |
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fclose(from_child); |
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|
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int status; |
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waitpid(pid, &status, 0); |
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|
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logger_finished.store(true); |
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finish_log_temperature.notify_one(); |
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temperature_logger.join(); |
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|
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if (retry_update) { |
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return INSTALL_RETRY; |
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} |
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if (!WIFEXITED(status) || WEXITSTATUS(status) != 0) { |
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LOG(ERROR) << "Error in " << package << " (Status " << WEXITSTATUS(status) << ")"; |
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return INSTALL_ERROR; |
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} |
|
|
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return INSTALL_SUCCESS; |
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} |
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|
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// Verifes the compatibility info in a Treble-compatible package. Returns true directly if the |
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// entry doesn't exist. Note that the compatibility info is packed in a zip file inside the OTA |
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// package. |
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bool verify_package_compatibility(ZipArchiveHandle package_zip) { |
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LOG(INFO) << "Verifying package compatibility..."; |
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|
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static constexpr const char* COMPATIBILITY_ZIP_ENTRY = "compatibility.zip"; |
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ZipString compatibility_entry_name(COMPATIBILITY_ZIP_ENTRY); |
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ZipEntry compatibility_entry; |
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if (FindEntry(package_zip, compatibility_entry_name, &compatibility_entry) != 0) { |
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LOG(INFO) << "Package doesn't contain " << COMPATIBILITY_ZIP_ENTRY << " entry"; |
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return true; |
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} |
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|
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std::string zip_content(compatibility_entry.uncompressed_length, '\0'); |
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int32_t ret; |
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if ((ret = ExtractToMemory(package_zip, &compatibility_entry, |
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reinterpret_cast<uint8_t*>(&zip_content[0]), |
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compatibility_entry.uncompressed_length)) != 0) { |
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LOG(ERROR) << "Failed to read " << COMPATIBILITY_ZIP_ENTRY << ": " << ErrorCodeString(ret); |
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return false; |
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} |
|
|
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ZipArchiveHandle zip_handle; |
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ret = OpenArchiveFromMemory(static_cast<void*>(const_cast<char*>(zip_content.data())), |
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zip_content.size(), COMPATIBILITY_ZIP_ENTRY, &zip_handle); |
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if (ret != 0) { |
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LOG(ERROR) << "Failed to OpenArchiveFromMemory: " << ErrorCodeString(ret); |
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return false; |
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} |
|
|
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// Iterate all the entries inside COMPATIBILITY_ZIP_ENTRY and read the contents. |
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void* cookie; |
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ret = StartIteration(zip_handle, &cookie, nullptr, nullptr); |
|
if (ret != 0) { |
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LOG(ERROR) << "Failed to start iterating zip entries: " << ErrorCodeString(ret); |
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CloseArchive(zip_handle); |
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return false; |
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} |
|
std::unique_ptr<void, decltype(&EndIteration)> guard(cookie, EndIteration); |
|
|
|
std::vector<std::string> compatibility_info; |
|
ZipEntry info_entry; |
|
ZipString info_name; |
|
while (Next(cookie, &info_entry, &info_name) == 0) { |
|
std::string content(info_entry.uncompressed_length, '\0'); |
|
int32_t ret = ExtractToMemory(zip_handle, &info_entry, reinterpret_cast<uint8_t*>(&content[0]), |
|
info_entry.uncompressed_length); |
|
if (ret != 0) { |
|
LOG(ERROR) << "Failed to read " << info_name.name << ": " << ErrorCodeString(ret); |
|
CloseArchive(zip_handle); |
|
return false; |
|
} |
|
compatibility_info.emplace_back(std::move(content)); |
|
} |
|
CloseArchive(zip_handle); |
|
|
|
// VintfObjectRecovery::CheckCompatibility returns zero on success. |
|
std::string err; |
|
int result = android::vintf::VintfObjectRecovery::CheckCompatibility(compatibility_info, &err); |
|
if (result == 0) { |
|
return true; |
|
} |
|
|
|
LOG(ERROR) << "Failed to verify package compatibility (result " << result << "): " << err; |
|
return false; |
|
} |
|
|
|
static int really_install_package(const std::string& path, bool* wipe_cache, bool needs_mount, |
|
std::vector<std::string>* log_buffer, int retry_count, |
|
int* max_temperature) { |
|
ui->SetBackground(RecoveryUI::INSTALLING_UPDATE); |
|
ui->Print("Finding update package...\n"); |
|
// Give verification half the progress bar... |
|
ui->SetProgressType(RecoveryUI::DETERMINATE); |
|
ui->ShowProgress(VERIFICATION_PROGRESS_FRACTION, VERIFICATION_PROGRESS_TIME); |
|
LOG(INFO) << "Update location: " << path; |
|
|
|
// Map the update package into memory. |
|
ui->Print("Opening update package...\n"); |
|
|
|
if (needs_mount) { |
|
if (path[0] == '@') { |
|
ensure_path_mounted(path.substr(1).c_str()); |
|
} else { |
|
ensure_path_mounted(path.c_str()); |
|
} |
|
} |
|
|
|
MemMapping map; |
|
if (!map.MapFile(path)) { |
|
LOG(ERROR) << "failed to map file"; |
|
return INSTALL_CORRUPT; |
|
} |
|
|
|
// Verify package. |
|
if (!verify_package(map.addr, map.length)) { |
|
log_buffer->push_back(android::base::StringPrintf("error: %d", kZipVerificationFailure)); |
|
return INSTALL_CORRUPT; |
|
} |
|
|
|
// Try to open the package. |
|
ZipArchiveHandle zip; |
|
int err = OpenArchiveFromMemory(map.addr, map.length, path.c_str(), &zip); |
|
if (err != 0) { |
|
LOG(ERROR) << "Can't open " << path << " : " << ErrorCodeString(err); |
|
log_buffer->push_back(android::base::StringPrintf("error: %d", kZipOpenFailure)); |
|
CloseArchive(zip); |
|
return INSTALL_CORRUPT; |
|
} |
|
// Check partition size between source and target |
|
#ifndef AB_OTA_UPDATER |
|
int ret=INSTALL_SUCCESS; |
|
if (mt_really_install_package_check_part_size(ret, path.c_str(), needs_mount, zip)) { |
|
CloseArchive(zip); |
|
return ret; |
|
} |
|
#endif |
|
|
|
// Additionally verify the compatibility of the package. |
|
if (!verify_package_compatibility(zip)) { |
|
log_buffer->push_back(android::base::StringPrintf("error: %d", kPackageCompatibilityFailure)); |
|
CloseArchive(zip); |
|
return INSTALL_CORRUPT; |
|
} |
|
|
|
// Verify and install the contents of the package. |
|
ui->Print("Installing update...\n"); |
|
if (retry_count > 0) { |
|
ui->Print("Retry attempt: %d\n", retry_count); |
|
} |
|
ui->SetEnableReboot(false); |
|
int result = try_update_binary(path, zip, wipe_cache, log_buffer, retry_count, max_temperature); |
|
ui->SetEnableReboot(true); |
|
ui->Print("\n"); |
|
|
|
CloseArchive(zip); |
|
return result; |
|
} |
|
|
|
int install_package(const std::string& path, bool* wipe_cache, const std::string& install_file, |
|
bool needs_mount, int retry_count) { |
|
CHECK(!path.empty()); |
|
CHECK(!install_file.empty()); |
|
CHECK(wipe_cache != nullptr); |
|
|
|
modified_flash = true; |
|
auto start = std::chrono::system_clock::now(); |
|
|
|
int start_temperature = GetMaxValueFromThermalZone(); |
|
int max_temperature = start_temperature; |
|
|
|
int result; |
|
std::vector<std::string> log_buffer; |
|
if (setup_install_mounts() != 0) { |
|
LOG(ERROR) << "failed to set up expected mounts for install; aborting"; |
|
result = INSTALL_ERROR; |
|
} else { |
|
result = really_install_package(path, wipe_cache, needs_mount, &log_buffer, retry_count, |
|
&max_temperature); |
|
} |
|
|
|
// Measure the time spent to apply OTA update in seconds. |
|
std::chrono::duration<double> duration = std::chrono::system_clock::now() - start; |
|
int time_total = static_cast<int>(duration.count()); |
|
|
|
bool has_cache = volume_for_mount_point("/cache") != nullptr; |
|
// Skip logging the uncrypt_status on devices without /cache. |
|
if (has_cache) { |
|
static constexpr const char* UNCRYPT_STATUS = "/cache/recovery/uncrypt_status"; |
|
if (ensure_path_mounted(UNCRYPT_STATUS) != 0) { |
|
LOG(WARNING) << "Can't mount " << UNCRYPT_STATUS; |
|
} else { |
|
std::string uncrypt_status; |
|
if (!android::base::ReadFileToString(UNCRYPT_STATUS, &uncrypt_status)) { |
|
PLOG(WARNING) << "failed to read uncrypt status"; |
|
} else if (!android::base::StartsWith(uncrypt_status, "uncrypt_")) { |
|
LOG(WARNING) << "corrupted uncrypt_status: " << uncrypt_status; |
|
} else { |
|
log_buffer.push_back(android::base::Trim(uncrypt_status)); |
|
} |
|
} |
|
} |
|
|
|
// The first two lines need to be the package name and install result. |
|
std::vector<std::string> log_header = { |
|
path, |
|
result == INSTALL_SUCCESS ? "1" : "0", |
|
"time_total: " + std::to_string(time_total), |
|
"retry: " + std::to_string(retry_count), |
|
}; |
|
|
|
int end_temperature = GetMaxValueFromThermalZone(); |
|
max_temperature = std::max(end_temperature, max_temperature); |
|
if (start_temperature > 0) { |
|
log_buffer.push_back("temperature_start: " + std::to_string(start_temperature)); |
|
} |
|
if (end_temperature > 0) { |
|
log_buffer.push_back("temperature_end: " + std::to_string(end_temperature)); |
|
} |
|
if (max_temperature > 0) { |
|
log_buffer.push_back("temperature_max: " + std::to_string(max_temperature)); |
|
} |
|
|
|
std::string log_content = |
|
android::base::Join(log_header, "\n") + "\n" + android::base::Join(log_buffer, "\n") + "\n"; |
|
if (!android::base::WriteStringToFile(log_content, install_file)) { |
|
PLOG(ERROR) << "failed to write " << install_file; |
|
} |
|
|
|
// Write a copy into last_log. |
|
LOG(INFO) << log_content; |
|
|
|
return result; |
|
} |
|
|
|
bool verify_package(const unsigned char* package_data, size_t package_size) { |
|
static constexpr const char* PUBLIC_KEYS_FILE = "/res/keys"; |
|
std::vector<Certificate> loadedKeys; |
|
if (!load_keys(PUBLIC_KEYS_FILE, loadedKeys)) { |
|
LOG(ERROR) << "Failed to load keys"; |
|
return false; |
|
} |
|
LOG(INFO) << loadedKeys.size() << " key(s) loaded from " << PUBLIC_KEYS_FILE; |
|
|
|
// Verify package. |
|
ui->Print("Verifying update package...\n"); |
|
auto t0 = std::chrono::system_clock::now(); |
|
int err = verify_file(package_data, package_size, loadedKeys, |
|
std::bind(&RecoveryUI::SetProgress, ui, std::placeholders::_1)); |
|
std::chrono::duration<double> duration = std::chrono::system_clock::now() - t0; |
|
ui->Print("Update package verification took %.1f s (result %d).\n", duration.count(), err); |
|
if (err != VERIFY_SUCCESS) { |
|
LOG(ERROR) << "Signature verification failed"; |
|
LOG(ERROR) << "error: " << kZipVerificationFailure; |
|
return false; |
|
} |
|
return true; |
|
}
|
|
|