185 lines
5.4 KiB
C++
185 lines
5.4 KiB
C++
/*
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* Copyright (C) 2008 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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#pragma once
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#include <ziparchive/zip_archive.h>
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#include <stdint.h>
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#include <stdlib.h>
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#include <unistd.h>
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#include <memory>
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#include <vector>
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#include "android-base/macros.h"
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#include "android-base/mapped_file.h"
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static const char* kErrorMessages[] = {
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"Success",
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"Iteration ended",
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"Zlib error",
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"Invalid file",
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"Invalid handle",
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"Duplicate entries in archive",
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"Empty archive",
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"Entry not found",
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"Invalid offset",
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"Inconsistent information",
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"Invalid entry name",
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"I/O error",
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"File mapping failed",
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};
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enum ErrorCodes : int32_t {
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kIterationEnd = -1,
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// We encountered a Zlib error when inflating a stream from this file.
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// Usually indicates file corruption.
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kZlibError = -2,
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// The input file cannot be processed as a zip archive. Usually because
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// it's too small, too large or does not have a valid signature.
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kInvalidFile = -3,
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// An invalid iteration / ziparchive handle was passed in as an input
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// argument.
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kInvalidHandle = -4,
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// The zip archive contained two (or possibly more) entries with the same
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// name.
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kDuplicateEntry = -5,
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// The zip archive contains no entries.
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kEmptyArchive = -6,
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// The specified entry was not found in the archive.
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kEntryNotFound = -7,
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// The zip archive contained an invalid local file header pointer.
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kInvalidOffset = -8,
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// The zip archive contained inconsistent entry information. This could
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// be because the central directory & local file header did not agree, or
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// if the actual uncompressed length or crc32 do not match their declared
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// values.
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kInconsistentInformation = -9,
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// An invalid entry name was encountered.
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kInvalidEntryName = -10,
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// An I/O related system call (read, lseek, ftruncate, map) failed.
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kIoError = -11,
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// We were not able to mmap the central directory or entry contents.
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kMmapFailed = -12,
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kLastErrorCode = kMmapFailed,
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};
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class MappedZipFile {
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public:
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explicit MappedZipFile(const int fd)
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: has_fd_(true), fd_(fd), base_ptr_(nullptr), data_length_(0) {}
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explicit MappedZipFile(void* address, size_t length)
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: has_fd_(false), fd_(-1), base_ptr_(address), data_length_(static_cast<off64_t>(length)) {}
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bool HasFd() const { return has_fd_; }
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int GetFileDescriptor() const;
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void* GetBasePtr() const;
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off64_t GetFileLength() const;
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bool ReadAtOffset(uint8_t* buf, size_t len, off64_t off) const;
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private:
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// If has_fd_ is true, fd is valid and we'll read contents of a zip archive
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// from the file. Otherwise, we're opening the archive from a memory mapped
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// file. In that case, base_ptr_ points to the start of the memory region and
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// data_length_ defines the file length.
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const bool has_fd_;
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const int fd_;
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void* const base_ptr_;
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const off64_t data_length_;
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};
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class CentralDirectory {
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public:
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CentralDirectory(void) : base_ptr_(nullptr), length_(0) {}
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const uint8_t* GetBasePtr() const { return base_ptr_; }
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size_t GetMapLength() const { return length_; }
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void Initialize(void* map_base_ptr, off64_t cd_start_offset, size_t cd_size);
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private:
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const uint8_t* base_ptr_;
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size_t length_;
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};
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/**
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* More space efficient string representation of strings in an mmaped zipped file than
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* std::string_view or ZipString. Using ZipString as an entry in the ZipArchive hashtable wastes
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* space. ZipString stores a pointer to a string (on 64 bit, 8 bytes) and the length to read from
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* that pointer, 2 bytes. Because of alignment, the structure consumes 16 bytes, wasting 6 bytes.
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* ZipStringOffset stores a 4 byte offset from a fixed location in the memory mapped file instead
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* of the entire address, consuming 8 bytes with alignment.
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*/
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struct ZipStringOffset {
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uint32_t name_offset;
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uint16_t name_length;
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const ZipString GetZipString(const uint8_t* start) const {
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ZipString zip_string;
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zip_string.name = start + name_offset;
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zip_string.name_length = name_length;
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return zip_string;
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}
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};
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struct ZipArchive {
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// open Zip archive
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mutable MappedZipFile mapped_zip;
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const bool close_file;
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// mapped central directory area
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off64_t directory_offset;
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CentralDirectory central_directory;
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std::unique_ptr<android::base::MappedFile> directory_map;
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// number of entries in the Zip archive
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uint16_t num_entries;
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// We know how many entries are in the Zip archive, so we can have a
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// fixed-size hash table. We define a load factor of 0.75 and over
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// allocate so the maximum number entries can never be higher than
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// ((4 * UINT16_MAX) / 3 + 1) which can safely fit into a uint32_t.
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uint32_t hash_table_size;
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ZipStringOffset* hash_table;
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ZipArchive(const int fd, bool assume_ownership);
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ZipArchive(void* address, size_t length);
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~ZipArchive();
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bool InitializeCentralDirectory(off64_t cd_start_offset, size_t cd_size);
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};
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