425 lines
14 KiB
C++
425 lines
14 KiB
C++
/*
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* Copyright (c) 2016-present, Facebook, Inc.
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* All rights reserved.
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*
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* This source code is licensed under both the BSD-style license (found in the
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* LICENSE file in the root directory of this source tree) and the GPLv2 (found
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* in the COPYING file in the root directory of this source tree).
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*/
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#include "Options.h"
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#include "util.h"
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#include "utils/ScopeGuard.h"
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#include <algorithm>
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#include <cassert>
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#include <cstdio>
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#include <cstring>
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#include <iterator>
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#include <thread>
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#include <vector>
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namespace pzstd {
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namespace {
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unsigned defaultNumThreads() {
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#ifdef PZSTD_NUM_THREADS
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return PZSTD_NUM_THREADS;
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#else
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return std::thread::hardware_concurrency();
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#endif
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}
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unsigned parseUnsigned(const char **arg) {
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unsigned result = 0;
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while (**arg >= '0' && **arg <= '9') {
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result *= 10;
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result += **arg - '0';
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++(*arg);
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}
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return result;
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}
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const char *getArgument(const char *options, const char **argv, int &i,
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int argc) {
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if (options[1] != 0) {
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return options + 1;
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}
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++i;
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if (i == argc) {
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std::fprintf(stderr, "Option -%c requires an argument, but none provided\n",
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*options);
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return nullptr;
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}
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return argv[i];
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}
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const std::string kZstdExtension = ".zst";
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constexpr char kStdIn[] = "-";
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constexpr char kStdOut[] = "-";
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constexpr unsigned kDefaultCompressionLevel = 3;
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constexpr unsigned kMaxNonUltraCompressionLevel = 19;
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#ifdef _WIN32
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const char nullOutput[] = "nul";
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#else
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const char nullOutput[] = "/dev/null";
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#endif
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void notSupported(const char *option) {
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std::fprintf(stderr, "Operation not supported: %s\n", option);
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}
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void usage() {
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std::fprintf(stderr, "Usage:\n");
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std::fprintf(stderr, " pzstd [args] [FILE(s)]\n");
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std::fprintf(stderr, "Parallel ZSTD options:\n");
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std::fprintf(stderr, " -p, --processes # : number of threads to use for (de)compression (default:<numcpus>)\n");
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std::fprintf(stderr, "ZSTD options:\n");
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std::fprintf(stderr, " -# : # compression level (1-%d, default:%d)\n", kMaxNonUltraCompressionLevel, kDefaultCompressionLevel);
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std::fprintf(stderr, " -d, --decompress : decompression\n");
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std::fprintf(stderr, " -o file : result stored into `file` (only if 1 input file)\n");
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std::fprintf(stderr, " -f, --force : overwrite output without prompting, (de)compress links\n");
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std::fprintf(stderr, " --rm : remove source file(s) after successful (de)compression\n");
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std::fprintf(stderr, " -k, --keep : preserve source file(s) (default)\n");
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std::fprintf(stderr, " -h, --help : display help and exit\n");
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std::fprintf(stderr, " -V, --version : display version number and exit\n");
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std::fprintf(stderr, " -v, --verbose : verbose mode; specify multiple times to increase log level (default:2)\n");
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std::fprintf(stderr, " -q, --quiet : suppress warnings; specify twice to suppress errors too\n");
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std::fprintf(stderr, " -c, --stdout : force write to standard output, even if it is the console\n");
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#ifdef UTIL_HAS_CREATEFILELIST
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std::fprintf(stderr, " -r : operate recursively on directories\n");
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#endif
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std::fprintf(stderr, " --ultra : enable levels beyond %i, up to %i (requires more memory)\n", kMaxNonUltraCompressionLevel, ZSTD_maxCLevel());
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std::fprintf(stderr, " -C, --check : integrity check (default)\n");
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std::fprintf(stderr, " --no-check : no integrity check\n");
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std::fprintf(stderr, " -t, --test : test compressed file integrity\n");
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std::fprintf(stderr, " -- : all arguments after \"--\" are treated as files\n");
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}
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} // anonymous namespace
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Options::Options()
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: numThreads(defaultNumThreads()), maxWindowLog(23),
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compressionLevel(kDefaultCompressionLevel), decompress(false),
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overwrite(false), keepSource(true), writeMode(WriteMode::Auto),
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checksum(true), verbosity(2) {}
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Options::Status Options::parse(int argc, const char **argv) {
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bool test = false;
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bool recursive = false;
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bool ultra = false;
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bool forceStdout = false;
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bool followLinks = false;
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// Local copy of input files, which are pointers into argv.
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std::vector<const char *> localInputFiles;
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for (int i = 1; i < argc; ++i) {
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const char *arg = argv[i];
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// Protect against empty arguments
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if (arg[0] == 0) {
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continue;
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}
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// Everything after "--" is an input file
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if (!std::strcmp(arg, "--")) {
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++i;
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std::copy(argv + i, argv + argc, std::back_inserter(localInputFiles));
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break;
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}
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// Long arguments that don't have a short option
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{
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bool isLongOption = true;
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if (!std::strcmp(arg, "--rm")) {
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keepSource = false;
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} else if (!std::strcmp(arg, "--ultra")) {
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ultra = true;
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maxWindowLog = 0;
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} else if (!std::strcmp(arg, "--no-check")) {
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checksum = false;
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} else if (!std::strcmp(arg, "--sparse")) {
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writeMode = WriteMode::Sparse;
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notSupported("Sparse mode");
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return Status::Failure;
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} else if (!std::strcmp(arg, "--no-sparse")) {
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writeMode = WriteMode::Regular;
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notSupported("Sparse mode");
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return Status::Failure;
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} else if (!std::strcmp(arg, "--dictID")) {
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notSupported(arg);
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return Status::Failure;
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} else if (!std::strcmp(arg, "--no-dictID")) {
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notSupported(arg);
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return Status::Failure;
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} else {
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isLongOption = false;
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}
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if (isLongOption) {
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continue;
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}
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}
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// Arguments with a short option simply set their short option.
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const char *options = nullptr;
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if (!std::strcmp(arg, "--processes")) {
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options = "p";
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} else if (!std::strcmp(arg, "--version")) {
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options = "V";
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} else if (!std::strcmp(arg, "--help")) {
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options = "h";
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} else if (!std::strcmp(arg, "--decompress")) {
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options = "d";
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} else if (!std::strcmp(arg, "--force")) {
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options = "f";
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} else if (!std::strcmp(arg, "--stdout")) {
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options = "c";
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} else if (!std::strcmp(arg, "--keep")) {
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options = "k";
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} else if (!std::strcmp(arg, "--verbose")) {
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options = "v";
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} else if (!std::strcmp(arg, "--quiet")) {
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options = "q";
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} else if (!std::strcmp(arg, "--check")) {
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options = "C";
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} else if (!std::strcmp(arg, "--test")) {
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options = "t";
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} else if (arg[0] == '-' && arg[1] != 0) {
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options = arg + 1;
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} else {
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localInputFiles.emplace_back(arg);
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continue;
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}
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assert(options != nullptr);
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bool finished = false;
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while (!finished && *options != 0) {
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// Parse the compression level
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if (*options >= '0' && *options <= '9') {
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compressionLevel = parseUnsigned(&options);
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continue;
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}
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switch (*options) {
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case 'h':
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case 'H':
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usage();
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return Status::Message;
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case 'V':
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std::fprintf(stderr, "PZSTD version: %s.\n", ZSTD_VERSION_STRING);
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return Status::Message;
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case 'p': {
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finished = true;
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const char *optionArgument = getArgument(options, argv, i, argc);
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if (optionArgument == nullptr) {
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return Status::Failure;
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}
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if (*optionArgument < '0' || *optionArgument > '9') {
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std::fprintf(stderr, "Option -p expects a number, but %s provided\n",
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optionArgument);
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return Status::Failure;
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}
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numThreads = parseUnsigned(&optionArgument);
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if (*optionArgument != 0) {
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std::fprintf(stderr,
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"Option -p expects a number, but %u%s provided\n",
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numThreads, optionArgument);
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return Status::Failure;
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}
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break;
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}
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case 'o': {
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finished = true;
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const char *optionArgument = getArgument(options, argv, i, argc);
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if (optionArgument == nullptr) {
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return Status::Failure;
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}
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outputFile = optionArgument;
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break;
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}
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case 'C':
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checksum = true;
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break;
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case 'k':
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keepSource = true;
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break;
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case 'd':
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decompress = true;
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break;
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case 'f':
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overwrite = true;
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forceStdout = true;
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followLinks = true;
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break;
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case 't':
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test = true;
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decompress = true;
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break;
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#ifdef UTIL_HAS_CREATEFILELIST
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case 'r':
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recursive = true;
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break;
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#endif
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case 'c':
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outputFile = kStdOut;
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forceStdout = true;
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break;
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case 'v':
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++verbosity;
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break;
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case 'q':
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--verbosity;
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// Ignore them for now
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break;
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// Unsupported options from Zstd
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case 'D':
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case 's':
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notSupported("Zstd dictionaries.");
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return Status::Failure;
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case 'b':
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case 'e':
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case 'i':
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case 'B':
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notSupported("Zstd benchmarking options.");
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return Status::Failure;
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default:
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std::fprintf(stderr, "Invalid argument: %s\n", arg);
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return Status::Failure;
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}
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if (!finished) {
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++options;
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}
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} // while (*options != 0);
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} // for (int i = 1; i < argc; ++i);
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// Set options for test mode
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if (test) {
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outputFile = nullOutput;
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keepSource = true;
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}
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// Input file defaults to standard input if not provided.
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if (localInputFiles.empty()) {
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localInputFiles.emplace_back(kStdIn);
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}
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// Check validity of input files
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if (localInputFiles.size() > 1) {
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const auto it = std::find(localInputFiles.begin(), localInputFiles.end(),
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std::string{kStdIn});
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if (it != localInputFiles.end()) {
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std::fprintf(
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stderr,
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"Cannot specify standard input when handling multiple files\n");
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return Status::Failure;
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}
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}
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if (localInputFiles.size() > 1 || recursive) {
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if (!outputFile.empty() && outputFile != nullOutput) {
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std::fprintf(
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stderr,
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"Cannot specify an output file when handling multiple inputs\n");
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return Status::Failure;
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}
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}
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g_utilDisplayLevel = verbosity;
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// Remove local input files that are symbolic links
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if (!followLinks) {
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std::remove_if(localInputFiles.begin(), localInputFiles.end(),
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[&](const char *path) {
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bool isLink = UTIL_isLink(path);
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if (isLink && verbosity >= 2) {
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std::fprintf(
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stderr,
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"Warning : %s is symbolic link, ignoring\n",
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path);
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}
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return isLink;
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});
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}
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// Translate input files/directories into files to (de)compress
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if (recursive) {
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FileNamesTable* const files = UTIL_createExpandedFNT(localInputFiles.data(), localInputFiles.size(), followLinks);
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if (files == nullptr) {
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std::fprintf(stderr, "Error traversing directories\n");
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return Status::Failure;
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}
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auto guard =
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makeScopeGuard([&] { UTIL_freeFileNamesTable(files); });
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if (files->tableSize == 0) {
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std::fprintf(stderr, "No files found\n");
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return Status::Failure;
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}
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inputFiles.resize(files->tableSize);
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std::copy(files->fileNames, files->fileNames + files->tableSize, inputFiles.begin());
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} else {
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inputFiles.resize(localInputFiles.size());
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std::copy(localInputFiles.begin(), localInputFiles.end(),
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inputFiles.begin());
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}
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localInputFiles.clear();
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assert(!inputFiles.empty());
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// If reading from standard input, default to standard output
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if (inputFiles[0] == kStdIn && outputFile.empty()) {
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assert(inputFiles.size() == 1);
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outputFile = "-";
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}
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if (inputFiles[0] == kStdIn && IS_CONSOLE(stdin)) {
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assert(inputFiles.size() == 1);
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std::fprintf(stderr, "Cannot read input from interactive console\n");
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return Status::Failure;
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}
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if (outputFile == "-" && IS_CONSOLE(stdout) && !(forceStdout && decompress)) {
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std::fprintf(stderr, "Will not write to console stdout unless -c or -f is "
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"specified and decompressing\n");
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return Status::Failure;
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}
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// Check compression level
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{
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unsigned maxCLevel =
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ultra ? ZSTD_maxCLevel() : kMaxNonUltraCompressionLevel;
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if (compressionLevel > maxCLevel || compressionLevel == 0) {
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std::fprintf(stderr, "Invalid compression level %u.\n", compressionLevel);
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return Status::Failure;
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}
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}
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// Check that numThreads is set
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if (numThreads == 0) {
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std::fprintf(stderr, "Invalid arguments: # of threads not specified "
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"and unable to determine hardware concurrency.\n");
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return Status::Failure;
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}
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// Modify verbosity
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// If we are piping input and output, turn off interaction
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if (inputFiles[0] == kStdIn && outputFile == kStdOut && verbosity == 2) {
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verbosity = 1;
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}
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// If we are in multi-file mode, turn off interaction
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if (inputFiles.size() > 1 && verbosity == 2) {
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verbosity = 1;
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}
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return Status::Success;
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}
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std::string Options::getOutputFile(const std::string &inputFile) const {
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if (!outputFile.empty()) {
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return outputFile;
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}
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// Attempt to add/remove zstd extension from the input file
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if (decompress) {
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int stemSize = inputFile.size() - kZstdExtension.size();
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if (stemSize > 0 && inputFile.substr(stemSize) == kZstdExtension) {
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return inputFile.substr(0, stemSize);
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} else {
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return "";
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}
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} else {
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return inputFile + kZstdExtension;
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}
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}
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}
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