e521861508
We may fail to memory map the package on 32 bit builds for packages with 2GiB+ size. This cl tries to install the package with fuse when memory map fails in such cases. Bug: 127071893 Test: build 32 bit version sailfish, push package and block.map, reboot into recovery with the corresponding update_package argument. Change-Id: I5dae4f3e27ccaf8d64ff3657d36f0e75db2330b0
243 lines
7.5 KiB
C++
243 lines
7.5 KiB
C++
/*
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* Copyright 2006 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 "otautil/sysutil.h"
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#include <errno.h> // TEMP_FAILURE_RETRY
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#include <fcntl.h>
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#include <inttypes.h>
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#include <sys/mman.h>
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#include <sys/stat.h>
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#include <sys/types.h>
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#include <algorithm>
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#include <limits>
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#include <string>
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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/properties.h>
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#include <android-base/strings.h>
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#include <android-base/unique_fd.h>
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#include <cutils/android_reboot.h>
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BlockMapData BlockMapData::ParseBlockMapFile(const std::string& block_map_path) {
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std::string content;
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if (!android::base::ReadFileToString(block_map_path, &content)) {
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PLOG(ERROR) << "Failed to read " << block_map_path;
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return {};
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}
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std::vector<std::string> lines = android::base::Split(android::base::Trim(content), "\n");
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if (lines.size() < 4) {
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LOG(ERROR) << "Block map file is too short: " << lines.size();
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return {};
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}
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const std::string& block_dev = lines[0];
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uint64_t file_size;
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uint32_t blksize;
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if (sscanf(lines[1].c_str(), "%" SCNu64 "%" SCNu32, &file_size, &blksize) != 2) {
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LOG(ERROR) << "Failed to parse file size and block size: " << lines[1];
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return {};
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}
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if (file_size == 0 || blksize == 0) {
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LOG(ERROR) << "Invalid size in block map file: size " << file_size << ", blksize " << blksize;
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return {};
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}
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size_t range_count;
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if (sscanf(lines[2].c_str(), "%zu", &range_count) != 1) {
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LOG(ERROR) << "Failed to parse block map header: " << lines[2];
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return {};
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}
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uint64_t blocks = ((file_size - 1) / blksize) + 1;
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if (blocks > std::numeric_limits<uint32_t>::max() || range_count == 0 ||
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lines.size() != 3 + range_count) {
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LOG(ERROR) << "Invalid data in block map file: size " << file_size << ", blksize " << blksize
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<< ", range_count " << range_count << ", lines " << lines.size();
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return {};
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}
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RangeSet ranges;
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uint64_t remaining_blocks = blocks;
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for (size_t i = 0; i < range_count; ++i) {
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const std::string& line = lines[i + 3];
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uint64_t start, end;
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if (sscanf(line.c_str(), "%" SCNu64 "%" SCNu64, &start, &end) != 2) {
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LOG(ERROR) << "failed to parse range " << i << ": " << line;
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return {};
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}
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uint64_t range_blocks = end - start;
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if (end <= start || range_blocks > remaining_blocks) {
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LOG(ERROR) << "Invalid range: " << start << " " << end;
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return {};
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}
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ranges.PushBack({ start, end });
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remaining_blocks -= range_blocks;
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}
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if (remaining_blocks != 0) {
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LOG(ERROR) << "Invalid ranges: remaining blocks " << remaining_blocks;
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return {};
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}
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return BlockMapData(block_dev, file_size, blksize, std::move(ranges));
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}
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bool MemMapping::MapFD(int fd) {
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struct stat sb;
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if (fstat(fd, &sb) == -1) {
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PLOG(ERROR) << "fstat(" << fd << ") failed";
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return false;
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}
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void* memPtr = mmap(nullptr, sb.st_size, PROT_READ, MAP_PRIVATE, fd, 0);
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if (memPtr == MAP_FAILED) {
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PLOG(ERROR) << "mmap(" << sb.st_size << ", R, PRIVATE, " << fd << ", 0) failed";
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return false;
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}
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addr = static_cast<unsigned char*>(memPtr);
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length = sb.st_size;
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ranges_.clear();
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ranges_.emplace_back(MappedRange{ memPtr, static_cast<size_t>(sb.st_size) });
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return true;
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}
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bool MemMapping::MapBlockFile(const std::string& filename) {
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auto block_map_data = BlockMapData::ParseBlockMapFile(filename);
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if (!block_map_data) {
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return false;
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}
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if (block_map_data.file_size() > std::numeric_limits<size_t>::max()) {
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LOG(ERROR) << "File size is too large for mmap " << block_map_data.file_size();
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return false;
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}
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// Reserve enough contiguous address space for the whole file.
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uint32_t blksize = block_map_data.block_size();
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uint64_t blocks = ((block_map_data.file_size() - 1) / blksize) + 1;
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void* reserve = mmap(nullptr, blocks * blksize, PROT_NONE, MAP_PRIVATE | MAP_ANON, -1, 0);
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if (reserve == MAP_FAILED) {
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PLOG(ERROR) << "failed to reserve address space";
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return false;
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}
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android::base::unique_fd fd(TEMP_FAILURE_RETRY(open(block_map_data.path().c_str(), O_RDONLY)));
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if (fd == -1) {
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PLOG(ERROR) << "failed to open block device " << block_map_data.path();
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munmap(reserve, blocks * blksize);
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return false;
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}
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ranges_.clear();
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auto next = static_cast<unsigned char*>(reserve);
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size_t remaining_size = blocks * blksize;
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for (const auto& [start, end] : block_map_data.block_ranges()) {
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size_t range_size = (end - start) * blksize;
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void* range_start = mmap(next, range_size, PROT_READ, MAP_PRIVATE | MAP_FIXED, fd,
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static_cast<off_t>(start) * blksize);
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if (range_start == MAP_FAILED) {
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PLOG(ERROR) << "failed to map range " << start << ": " << end;
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munmap(reserve, blocks * blksize);
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return false;
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}
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ranges_.emplace_back(MappedRange{ range_start, range_size });
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next += range_size;
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remaining_size -= range_size;
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}
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if (remaining_size != 0) {
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LOG(ERROR) << "Invalid ranges: remaining_size " << remaining_size;
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munmap(reserve, blocks * blksize);
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return false;
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}
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addr = static_cast<unsigned char*>(reserve);
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length = block_map_data.file_size();
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LOG(INFO) << "mmapped " << block_map_data.block_ranges().size() << " ranges";
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return true;
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}
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bool MemMapping::MapFile(const std::string& fn) {
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if (fn.empty()) {
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LOG(ERROR) << "Empty filename";
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return false;
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}
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if (fn[0] == '@') {
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// Block map file "@/cache/recovery/block.map".
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if (!MapBlockFile(fn.substr(1))) {
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LOG(ERROR) << "Map of '" << fn << "' failed";
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return false;
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}
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} else {
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// This is a regular file.
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android::base::unique_fd fd(TEMP_FAILURE_RETRY(open(fn.c_str(), O_RDONLY)));
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if (fd == -1) {
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PLOG(ERROR) << "Unable to open '" << fn << "'";
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return false;
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}
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if (!MapFD(fd)) {
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LOG(ERROR) << "Map of '" << fn << "' failed";
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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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MemMapping::~MemMapping() {
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for (const auto& range : ranges_) {
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if (munmap(range.addr, range.length) == -1) {
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PLOG(ERROR) << "Failed to munmap(" << range.addr << ", " << range.length << ")";
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}
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};
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ranges_.clear();
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}
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bool Reboot(std::string_view target) {
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std::string cmd = "reboot," + std::string(target);
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// Honor the quiescent mode if applicable.
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if (target != "bootloader" && target != "fastboot" &&
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android::base::GetBoolProperty("ro.boot.quiescent", false)) {
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cmd += ",quiescent";
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}
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return android::base::SetProperty(ANDROID_RB_PROPERTY, cmd);
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}
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bool Shutdown(std::string_view target) {
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std::string cmd = "shutdown," + std::string(target);
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return android::base::SetProperty(ANDROID_RB_PROPERTY, cmd);
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}
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std::vector<char*> StringVectorToNullTerminatedArray(const std::vector<std::string>& args) {
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std::vector<char*> result(args.size());
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std::transform(args.cbegin(), args.cend(), result.begin(),
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[](const std::string& arg) { return const_cast<char*>(arg.c_str()); });
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result.push_back(nullptr);
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return result;
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}
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