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Merge remote branch 'origin/maint-0.2.2'
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commit
f550c96ade
5
changes/bug2324_uncompress
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5
changes/bug2324_uncompress
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@ -0,0 +1,5 @@
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o Major bugfixes (security):
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- Prevent a DoS attack by disallowing any zlib-compressed data
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whose compression factor is implausibly high. Fixes the
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second part of bug2324; found by doors.
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@ -79,6 +79,33 @@ method_bits(compress_method_t method)
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return method == GZIP_METHOD ? 15+16 : 15;
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return method == GZIP_METHOD ? 15+16 : 15;
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}
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}
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/* These macros define the maximum allowable compression factor. Anything of
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* size greater than CHECK_FOR_COMPRESSION_BOMB_AFTER is not allowed to
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* have an uncompression factor (uncompressed size:compressed size ratio) of
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* any greater than MAX_UNCOMPRESSION_FACTOR.
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*
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* Picking a value for MAX_UNCOMPRESSION_FACTOR is a trade-off: we want it to
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* be small to limit the attack multiplier, but we also want it to be large
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* enough so that no legitimate document --even ones we might invent in the
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* future -- ever compresses by a factor of greater than
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* MAX_UNCOMPRESSION_FACTOR. Within those parameters, there's a reasonably
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* large range of possible values. IMO, anything over 8 is probably safe; IMO
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* anything under 50 is probably sufficient.
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*/
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#define MAX_UNCOMPRESSION_FACTOR 25
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#define CHECK_FOR_COMPRESSION_BOMB_AFTER (1024*64)
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/** Return true if uncompressing an input of size <b>in_size</b> to an input
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* of size at least <b>size_out</b> looks like a compression bomb. */
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static int
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is_compression_bomb(size_t size_in, size_t size_out)
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{
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if (size_in == 0 || size_out < CHECK_FOR_COMPRESSION_BOMB_AFTER)
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return 0;
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return (size_out / size_in > MAX_UNCOMPRESSION_FACTOR);
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}
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/** Given <b>in_len</b> bytes at <b>in</b>, compress them into a newly
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/** Given <b>in_len</b> bytes at <b>in</b>, compress them into a newly
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* allocated buffer, using the method described in <b>method</b>. Store the
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* allocated buffer, using the method described in <b>method</b>. Store the
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* compressed string in *<b>out</b>, and its length in *<b>out_len</b>.
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* compressed string in *<b>out</b>, and its length in *<b>out_len</b>.
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@ -181,6 +208,12 @@ tor_gzip_compress(char **out, size_t *out_len,
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}
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}
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tor_free(stream);
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tor_free(stream);
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if (is_compression_bomb(*out_len, in_len)) {
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log_warn(LD_BUG, "We compressed something and got an insanely high "
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"compression factor; other Tors would think this was a zlib bomb.");
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goto err;
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}
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return 0;
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return 0;
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err:
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err:
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if (stream) {
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if (stream) {
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@ -243,7 +276,7 @@ tor_gzip_uncompress(char **out, size_t *out_len,
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out_size = in_len * 2; /* guess 50% compression. */
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out_size = in_len * 2; /* guess 50% compression. */
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if (out_size < 1024) out_size = 1024;
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if (out_size < 1024) out_size = 1024;
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if (out_size > UINT_MAX)
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if (out_size >= SIZE_T_CEILING || out_size > UINT_MAX)
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goto err;
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goto err;
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*out = tor_malloc(out_size);
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*out = tor_malloc(out_size);
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@ -283,7 +316,16 @@ tor_gzip_uncompress(char **out, size_t *out_len,
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old_size = out_size;
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old_size = out_size;
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out_size *= 2;
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out_size *= 2;
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if (out_size < old_size) {
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if (out_size < old_size) {
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log_warn(LD_GENERAL, "Size overflow in compression.");
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log_warn(LD_GENERAL, "Size overflow in uncompression.");
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goto err;
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}
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if (is_compression_bomb(in_len, out_size)) {
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log_warn(LD_GENERAL, "Input looks like a possible zlib bomb; "
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"not proceeding.");
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goto err;
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}
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if (out_size >= SIZE_T_CEILING) {
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log_warn(LD_BUG, "Hit SIZE_T_CEILING limit while uncompressing.");
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goto err;
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goto err;
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}
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}
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*out = tor_realloc(*out, out_size);
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*out = tor_realloc(*out, out_size);
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@ -349,6 +391,11 @@ detect_compression_method(const char *in, size_t in_len)
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struct tor_zlib_state_t {
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struct tor_zlib_state_t {
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struct z_stream_s stream;
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struct z_stream_s stream;
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int compress;
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int compress;
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/* Number of bytes read so far. Used to detect zlib bombs. */
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size_t input_so_far;
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/* Number of bytes written so far. Used to detect zlib bombs. */
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size_t output_so_far;
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};
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};
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/** Construct and return a tor_zlib_state_t object using <b>method</b>. If
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/** Construct and return a tor_zlib_state_t object using <b>method</b>. If
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@ -415,11 +462,20 @@ tor_zlib_process(tor_zlib_state_t *state,
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err = inflate(&state->stream, finish ? Z_FINISH : Z_SYNC_FLUSH);
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err = inflate(&state->stream, finish ? Z_FINISH : Z_SYNC_FLUSH);
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}
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}
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state->input_so_far += state->stream.next_in - ((unsigned char*)*in);
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state->output_so_far += state->stream.next_out - ((unsigned char*)*out);
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*out = (char*) state->stream.next_out;
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*out = (char*) state->stream.next_out;
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*out_len = state->stream.avail_out;
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*out_len = state->stream.avail_out;
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*in = (const char *) state->stream.next_in;
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*in = (const char *) state->stream.next_in;
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*in_len = state->stream.avail_in;
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*in_len = state->stream.avail_in;
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if (! state->compress &&
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is_compression_bomb(state->input_so_far, state->output_so_far)) {
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log_warn(LD_DIR, "Possible zlib bomb; abandoning stream.");
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return TOR_ZLIB_ERR;
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}
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switch (err)
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switch (err)
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{
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{
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case Z_STREAM_END:
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case Z_STREAM_END:
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