#include "orconfig.h"
#include "lib/log/log.h"
#include "lib/log/util_bug.h"
#include "lib/compress/compress.h"
#include "lib/compress/compress_zlib.h"
#include "lib/thread/threads.h"
#ifndef _LARGEFILE64_SOURCE
#define _LARGEFILE64_SOURCE 0
#endif
#ifndef _LFS64_LARGEFILE
#define _LFS64_LARGEFILE 0
#endif
#ifndef _FILE_OFFSET_BITS
#define _FILE_OFFSET_BITS 0
#endif
#ifndef off64_t
#define off64_t int64_t
#endif
#include <zlib.h>
#if defined ZLIB_VERNUM && ZLIB_VERNUM < 0x1200
#error "We require zlib version 1.2 or later."
#endif
static size_t tor_zlib_state_size_precalc(int inflate,
int windowbits, int memlevel);
static atomic_counter_t total_zlib_allocation;
static int
memory_level(compression_level_t level)
{
switch (level) {
default:
case BEST_COMPRESSION: return 9;
case HIGH_COMPRESSION: return 8;
case MEDIUM_COMPRESSION: return 7;
case LOW_COMPRESSION: return 6;
}
}
static inline int
method_bits(compress_method_t method, compression_level_t level)
{
const int flag = method == GZIP_METHOD ? 16 : 0;
switch (level) {
default:
case BEST_COMPRESSION:
case HIGH_COMPRESSION: return flag + 15;
case MEDIUM_COMPRESSION: return flag + 13;
case LOW_COMPRESSION: return flag + 11;
}
}
int
tor_zlib_method_supported(void)
{
return 1;
}
const char *
tor_zlib_get_version_str(void)
{
return zlibVersion();
}
const char *
tor_zlib_get_header_version_str(void)
{
return ZLIB_VERSION;
}
struct tor_zlib_compress_state_t {
struct z_stream_s stream;
int compress;
size_t input_so_far;
size_t output_so_far;
size_t allocation;
};
static size_t
tor_zlib_state_size_precalc(int inflate_, int windowbits, int memlevel)
{
windowbits &= 15;
#define A_FEW_KILOBYTES 2048
if (inflate_) {
return sizeof(tor_zlib_compress_state_t) + sizeof(struct z_stream_s) +
(1 << 15) + A_FEW_KILOBYTES;
} else {
return sizeof(tor_zlib_compress_state_t) + sizeof(struct z_stream_s) +
(1 << (windowbits + 2)) + (1 << (memlevel + 9)) + A_FEW_KILOBYTES;
}
#undef A_FEW_KILOBYTES
}
tor_zlib_compress_state_t *
tor_zlib_compress_new(int compress_,
compress_method_t method,
compression_level_t compression_level)
{
tor_zlib_compress_state_t *out;
int bits, memlevel;
if (! compress_) {
compression_level = BEST_COMPRESSION;
}
out = tor_malloc_zero(sizeof(tor_zlib_compress_state_t));
out->stream.zalloc = Z_NULL;
out->stream.zfree = Z_NULL;
out->stream.opaque = NULL;
out->compress = compress_;
bits = method_bits(method, compression_level);
memlevel = memory_level(compression_level);
if (compress_) {
if (deflateInit2(&out->stream, Z_BEST_COMPRESSION, Z_DEFLATED,
bits, memlevel,
Z_DEFAULT_STRATEGY) != Z_OK)
goto err; } else {
if (inflateInit2(&out->stream, bits) != Z_OK)
goto err; }
out->allocation = tor_zlib_state_size_precalc(!compress_, bits, memlevel);
atomic_counter_add(&total_zlib_allocation, out->allocation);
return out;
err:
tor_free(out);
return NULL;
}
tor_compress_output_t
tor_zlib_compress_process(tor_zlib_compress_state_t *state,
char **out, size_t *out_len,
const char **in, size_t *in_len,
int finish)
{
int err;
tor_assert(state != NULL);
if (*in_len > UINT_MAX ||
*out_len > UINT_MAX) {
return TOR_COMPRESS_ERROR;
}
state->stream.next_in = (unsigned char*) *in;
state->stream.avail_in = (unsigned int)*in_len;
state->stream.next_out = (unsigned char*) *out;
state->stream.avail_out = (unsigned int)*out_len;
if (state->compress) {
err = deflate(&state->stream, finish ? Z_FINISH : Z_NO_FLUSH);
} else {
err = inflate(&state->stream, finish ? Z_FINISH : Z_SYNC_FLUSH);
}
state->input_so_far += state->stream.next_in - ((unsigned char*)*in);
state->output_so_far += state->stream.next_out - ((unsigned char*)*out);
*out = (char*) state->stream.next_out;
*out_len = state->stream.avail_out;
*in = (const char *) state->stream.next_in;
*in_len = state->stream.avail_in;
if (! state->compress &&
tor_compress_is_compression_bomb(state->input_so_far,
state->output_so_far)) {
log_warn(LD_DIR, "Possible zlib bomb; abandoning stream.");
return TOR_COMPRESS_ERROR;
}
switch (err)
{
case Z_STREAM_END:
return TOR_COMPRESS_DONE;
case Z_BUF_ERROR:
if (state->stream.avail_in == 0 && !finish)
return TOR_COMPRESS_OK;
return TOR_COMPRESS_BUFFER_FULL;
case Z_OK:
if (state->stream.avail_out == 0 || finish)
return TOR_COMPRESS_BUFFER_FULL;
return TOR_COMPRESS_OK;
default:
log_warn(LD_GENERAL, "Gzip returned an error: %s",
state->stream.msg ? state->stream.msg : "<no message>");
return TOR_COMPRESS_ERROR;
}
}
void
tor_zlib_compress_free_(tor_zlib_compress_state_t *state)
{
if (state == NULL)
return;
atomic_counter_sub(&total_zlib_allocation, state->allocation);
if (state->compress)
deflateEnd(&state->stream);
else
inflateEnd(&state->stream);
tor_free(state);
}
size_t
tor_zlib_compress_state_size(const tor_zlib_compress_state_t *state)
{
tor_assert(state != NULL);
return state->allocation;
}
size_t
tor_zlib_get_total_allocation(void)
{
return atomic_counter_get(&total_zlib_allocation);
}
void
tor_zlib_init(void)
{
atomic_counter_init(&total_zlib_allocation);
}