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cbaf0c049c
Fixes #22628.
414 lines
12 KiB
C
414 lines
12 KiB
C
/* Copyright (c) 2004, Roger Dingledine.
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* Copyright (c) 2004-2006, Roger Dingledine, Nick Mathewson.
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* Copyright (c) 2007-2017, The Tor Project, Inc. */
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/* See LICENSE for licensing information */
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/**
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* \file compress_zstd.c
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* \brief Compression backend for Zstandard.
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*
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* This module should never be invoked directly. Use the compress module
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* instead.
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**/
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#include "orconfig.h"
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#include "util.h"
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#include "torlog.h"
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#include "compress.h"
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#include "compress_zstd.h"
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#ifdef HAVE_ZSTD
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#include <zstd.h>
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#endif
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/** Total number of bytes allocated for Zstandard state. */
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static atomic_counter_t total_zstd_allocation;
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#ifdef HAVE_ZSTD
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/** Given <b>level</b> return the memory level. */
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static int
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memory_level(compression_level_t level)
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{
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switch (level) {
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default:
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case BEST_COMPRESSION:
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case HIGH_COMPRESSION: return 9;
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case MEDIUM_COMPRESSION: return 8;
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case LOW_COMPRESSION: return 7;
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}
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}
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#endif // HAVE_ZSTD.
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/** Return 1 if Zstandard compression is supported; otherwise 0. */
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int
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tor_zstd_method_supported(void)
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{
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#ifdef HAVE_ZSTD
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return 1;
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#else
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return 0;
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#endif
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}
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/** Return a string representation of the version of the currently running
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* version of libzstd. Returns NULL if Zstandard is unsupported. */
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const char *
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tor_zstd_get_version_str(void)
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{
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#ifdef HAVE_ZSTD
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static char version_str[16];
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size_t version_number;
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version_number = ZSTD_versionNumber();
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tor_snprintf(version_str, sizeof(version_str),
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"%lu.%lu.%lu",
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version_number / 10000 % 100,
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version_number / 100 % 100,
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version_number % 100);
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return version_str;
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#else
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return NULL;
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#endif
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}
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/** Return a string representation of the version of the version of libzstd
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* used at compilation time. Returns NULL if Zstandard is unsupported. */
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const char *
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tor_zstd_get_header_version_str(void)
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{
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#ifdef HAVE_ZSTD
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return ZSTD_VERSION_STRING;
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#else
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return NULL;
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#endif
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}
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/** Internal Zstandard state for incremental compression/decompression.
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* The body of this struct is not exposed. */
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struct tor_zstd_compress_state_t {
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#ifdef HAVE_ZSTD
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union {
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/** Compression stream. Used when <b>compress</b> is true. */
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ZSTD_CStream *compress_stream;
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/** Decompression stream. Used when <b>compress</b> is false. */
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ZSTD_DStream *decompress_stream;
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} u; /**< Zstandard stream objects. */
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#endif // HAVE_ZSTD.
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int compress; /**< True if we are compressing; false if we are inflating */
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/** Number of bytes read so far. Used to detect compression bombs. */
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size_t input_so_far;
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/** Number of bytes written so far. Used to detect compression bombs. */
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size_t output_so_far;
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/** Approximate number of bytes allocated for this object. */
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size_t allocation;
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};
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#ifdef HAVE_ZSTD
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/** Return an approximate number of bytes stored in memory to hold the
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* Zstandard compression/decompression state. */
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static size_t
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tor_zstd_state_size_precalc(int compress, int preset)
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{
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tor_assert(preset > 0);
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size_t memory_usage = sizeof(tor_zstd_compress_state_t);
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// The Zstandard library provides a number of functions that would be useful
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// here, but they are, unfortunately, still considered experimental and are
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// thus only available in libzstd if we link against the library statically.
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//
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// The code in this function tries to approximate the calculations without
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// being able to use the following:
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//
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// - We do not have access to neither the internal members of ZSTD_CStream
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// and ZSTD_DStream and their internal context objects.
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//
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// - We cannot use ZSTD_sizeof_CStream() and ZSTD_sizeof_DStream() since they
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// are unexposed.
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//
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// In the future it might be useful to check if libzstd have started
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// providing these functions in a stable manner and simplify this function.
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if (compress) {
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// We try to approximate the ZSTD_sizeof_CStream(ZSTD_CStream *stream)
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// function here. This function uses the following fields to make its
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// estimate:
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// - sizeof(ZSTD_CStream): Around 192 bytes on a 64-bit machine:
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memory_usage += 192;
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// - ZSTD_sizeof_CCtx(stream->cctx): This function requires access to
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// variables that are not exposed via the public API. We use a _very_
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// simplified function to calculate the estimated amount of bytes used in
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// this struct.
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// memory_usage += (preset - 0.5) * 1024 * 1024;
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memory_usage += (preset * 1024 * 1024) - (512 * 1024);
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// - ZSTD_sizeof_CDict(stream->cdictLocal): Unused in Tor: 0 bytes.
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// - stream->outBuffSize: 128 KB:
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memory_usage += 128 * 1024;
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// - stream->inBuffSize: 2048 KB:
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memory_usage += 2048 * 1024;
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} else {
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// We try to approximate the ZSTD_sizeof_DStream(ZSTD_DStream *stream)
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// function here. This function uses the following fields to make its
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// estimate:
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// - sizeof(ZSTD_DStream): Around 208 bytes on a 64-bit machine:
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memory_usage += 208;
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// - ZSTD_sizeof_DCtx(stream->dctx): Around 150 KB.
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memory_usage += 150 * 1024;
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// - ZSTD_sizeof_DDict(stream->ddictLocal): Unused in Tor: 0 bytes.
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// - stream->inBuffSize: 0 KB.
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// - stream->outBuffSize: 0 KB.
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}
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return memory_usage;
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}
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#endif // HAVE_ZSTD.
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/** Construct and return a tor_zstd_compress_state_t object using
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* <b>method</b>. If <b>compress</b>, it's for compression; otherwise it's for
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* decompression. */
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tor_zstd_compress_state_t *
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tor_zstd_compress_new(int compress,
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compress_method_t method,
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compression_level_t level)
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{
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tor_assert(method == ZSTD_METHOD);
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#ifdef HAVE_ZSTD
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const int preset = memory_level(level);
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tor_zstd_compress_state_t *result;
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size_t retval;
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result = tor_malloc_zero(sizeof(tor_zstd_compress_state_t));
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result->compress = compress;
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result->allocation = tor_zstd_state_size_precalc(compress, preset);
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if (compress) {
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result->u.compress_stream = ZSTD_createCStream();
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if (result->u.compress_stream == NULL) {
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log_warn(LD_GENERAL, "Error while creating Zstandard stream");
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goto err;
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}
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retval = ZSTD_initCStream(result->u.compress_stream, preset);
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if (ZSTD_isError(retval)) {
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log_warn(LD_GENERAL, "Zstandard stream initialization error: %s",
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ZSTD_getErrorName(retval));
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goto err;
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}
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} else {
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result->u.decompress_stream = ZSTD_createDStream();
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if (result->u.decompress_stream == NULL) {
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log_warn(LD_GENERAL, "Error while creating Zstandard stream");
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goto err;
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}
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retval = ZSTD_initDStream(result->u.decompress_stream);
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if (ZSTD_isError(retval)) {
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log_warn(LD_GENERAL, "Zstandard stream initialization error: %s",
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ZSTD_getErrorName(retval));
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goto err;
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}
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}
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atomic_counter_add(&total_zstd_allocation, result->allocation);
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return result;
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err:
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if (compress) {
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ZSTD_freeCStream(result->u.compress_stream);
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} else {
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ZSTD_freeDStream(result->u.decompress_stream);
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}
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tor_free(result);
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return NULL;
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#else // HAVE_ZSTD.
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(void)compress;
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(void)method;
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(void)level;
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return NULL;
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#endif // HAVE_ZSTD.
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}
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/** Compress/decompress some bytes using <b>state</b>. Read up to
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* *<b>in_len</b> bytes from *<b>in</b>, and write up to *<b>out_len</b> bytes
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* to *<b>out</b>, adjusting the values as we go. If <b>finish</b> is true,
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* we've reached the end of the input.
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*
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* Return TOR_COMPRESS_DONE if we've finished the entire
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* compression/decompression.
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* Return TOR_COMPRESS_OK if we're processed everything from the input.
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* Return TOR_COMPRESS_BUFFER_FULL if we're out of space on <b>out</b>.
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* Return TOR_COMPRESS_ERROR if the stream is corrupt.
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*/
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tor_compress_output_t
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tor_zstd_compress_process(tor_zstd_compress_state_t *state,
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char **out, size_t *out_len,
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const char **in, size_t *in_len,
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int finish)
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{
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#ifdef HAVE_ZSTD
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size_t retval;
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tor_assert(state != NULL);
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tor_assert(*in_len <= UINT_MAX);
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tor_assert(*out_len <= UINT_MAX);
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ZSTD_inBuffer input = { *in, *in_len, 0 };
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ZSTD_outBuffer output = { *out, *out_len, 0 };
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if (state->compress) {
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retval = ZSTD_compressStream(state->u.compress_stream,
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&output, &input);
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} else {
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retval = ZSTD_decompressStream(state->u.decompress_stream,
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&output, &input);
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}
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state->input_so_far += input.pos;
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state->output_so_far += output.pos;
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*out = (char *)output.dst + output.pos;
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*out_len = output.size - output.pos;
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*in = (char *)input.src + input.pos;
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*in_len = input.size - input.pos;
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if (! state->compress &&
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tor_compress_is_compression_bomb(state->input_so_far,
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state->output_so_far)) {
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log_warn(LD_DIR, "Possible compression bomb; abandoning stream.");
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return TOR_COMPRESS_ERROR;
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}
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if (ZSTD_isError(retval)) {
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log_warn(LD_GENERAL, "Zstandard %s didn't finish: %s.",
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state->compress ? "compression" : "decompression",
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ZSTD_getErrorName(retval));
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return TOR_COMPRESS_ERROR;
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}
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if (state->compress && !finish) {
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retval = ZSTD_flushStream(state->u.compress_stream, &output);
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*out = (char *)output.dst + output.pos;
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*out_len = output.size - output.pos;
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if (ZSTD_isError(retval)) {
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log_warn(LD_GENERAL, "Zstandard compression unable to flush: %s.",
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ZSTD_getErrorName(retval));
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return TOR_COMPRESS_ERROR;
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}
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// ZSTD_flushStream returns 0 if the frame is done, or >0 if it
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// is incomplete.
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if (retval > 0)
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return TOR_COMPRESS_BUFFER_FULL;
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}
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if (!finish) {
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// We're not done with the input, so no need to flush.
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return TOR_COMPRESS_OK;
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} else if (state->compress) {
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retval = ZSTD_endStream(state->u.compress_stream, &output);
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*out = (char *)output.dst + output.pos;
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*out_len = output.size - output.pos;
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if (ZSTD_isError(retval)) {
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log_warn(LD_GENERAL, "Zstandard compression unable to write "
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"epilogue: %s.",
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ZSTD_getErrorName(retval));
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return TOR_COMPRESS_ERROR;
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}
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// endStream returns the number of bytes that is needed to write the
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// epilogue.
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if (retval > 0)
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return TOR_COMPRESS_BUFFER_FULL;
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return TOR_COMPRESS_DONE;
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} else /* if (!state->compress) */ {
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// ZSTD_decompressStream returns 0 if the frame is done, or >0 if it
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// is incomplete.
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// We check this above.
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tor_assert_nonfatal(!ZSTD_isError(retval));
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// Start a new frame if this frame is done
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if (retval == 0)
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return TOR_COMPRESS_DONE;
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// Don't check out_len, it might have some space left if the next output
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// chunk is larger than the remaining space
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else if (*in_len > 0)
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return TOR_COMPRESS_BUFFER_FULL;
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else
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return TOR_COMPRESS_OK;
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}
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#else // HAVE_ZSTD.
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(void)state;
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(void)out;
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(void)out_len;
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(void)in;
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(void)in_len;
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(void)finish;
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return TOR_COMPRESS_ERROR;
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#endif // HAVE_ZSTD.
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}
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/** Deallocate <b>state</b>. */
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void
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tor_zstd_compress_free(tor_zstd_compress_state_t *state)
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{
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if (state == NULL)
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return;
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atomic_counter_sub(&total_zstd_allocation, state->allocation);
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#ifdef HAVE_ZSTD
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if (state->compress) {
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ZSTD_freeCStream(state->u.compress_stream);
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} else {
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ZSTD_freeDStream(state->u.decompress_stream);
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}
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#endif // HAVE_ZSTD.
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tor_free(state);
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}
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/** Return the approximate number of bytes allocated for <b>state</b>. */
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size_t
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tor_zstd_compress_state_size(const tor_zstd_compress_state_t *state)
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{
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tor_assert(state != NULL);
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return state->allocation;
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}
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/** Return the approximate number of bytes allocated for all Zstandard
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* states. */
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size_t
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tor_zstd_get_total_allocation(void)
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{
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return atomic_counter_get(&total_zstd_allocation);
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}
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/** Initialize the zstd module */
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void
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tor_zstd_init(void)
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{
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atomic_counter_init(&total_zstd_allocation);
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}
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