74b093f6e1
The encoder fuzzer initialized before setting up. This is now swapped without upsetting the way the datasource is queried
184 lines
6.3 KiB
C++
184 lines
6.3 KiB
C++
/* Copyright 2019 Guido Vranken
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*
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* Permission is hereby granted, free of charge, to any person obtaining
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* a copy of this software and associated documentation files (the
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* "Software"), to deal in the Software without restriction, including
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* without limitation the rights to use, copy, modify, merge, publish,
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* distribute, sublicense, and/or sell copies of the Software, and to
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* permit persons to whom the Software is furnished to do so, subject
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* to the following conditions:
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*
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* The above copyright notice and this permission notice shall be
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* included in all copies or substantial portions of the Software.
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
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* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
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* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
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* NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
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* BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
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* ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
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* CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
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* SOFTWARE.
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*/
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#include <cstddef>
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#include <cstdint>
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#include <limits>
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#include <fuzzing/datasource/datasource.hpp>
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#include <fuzzing/memory.hpp>
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#include "FLAC++/encoder.h"
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#define SAMPLE_VALUE_LIMIT (1024*1024*10)
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static_assert(SAMPLE_VALUE_LIMIT <= std::numeric_limits<FLAC__int32>::max(), "Invalid SAMPLE_VALUE_LIMIT");
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static_assert(-SAMPLE_VALUE_LIMIT >= std::numeric_limits<FLAC__int32>::min(), "Invalid SAMPLE_VALUE_LIMIT");
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namespace FLAC {
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namespace Encoder {
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class FuzzerStream : public Stream {
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private:
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// fuzzing::datasource::Datasource& ds;
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public:
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FuzzerStream(fuzzing::datasource::Datasource&) :
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Stream() { }
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::FLAC__StreamEncoderWriteStatus write_callback(const FLAC__byte buffer[], size_t bytes, uint32_t /* samples */, uint32_t /* current_frame */) override {
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fuzzing::memory::memory_test(buffer, bytes);
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#if 0
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try {
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if ( ds.Get<bool>() == true ) {
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return FLAC__STREAM_ENCODER_WRITE_STATUS_FATAL_ERROR;
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}
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} catch ( ... ) { }
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#endif
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return FLAC__STREAM_ENCODER_WRITE_STATUS_OK;
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}
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};
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}
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}
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extern "C" int LLVMFuzzerTestOneInput(const uint8_t *data, size_t size) {
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fuzzing::datasource::Datasource ds(data, size);
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FLAC::Encoder::FuzzerStream encoder(ds);
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bool use_ogg;
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const int channels = 2;
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encoder.set_channels(channels);
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encoder.set_bits_per_sample(16);
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try {
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use_ogg = ! ds.Get<bool>();
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{
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const bool res = encoder.set_streamable_subset(ds.Get<bool>());
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fuzzing::memory::memory_test(res);
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}
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{
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const bool res = encoder.set_ogg_serial_number(ds.Get<long>());
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fuzzing::memory::memory_test(res);
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}
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{
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const bool res = encoder.set_verify(ds.Get<bool>());
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fuzzing::memory::memory_test(res);
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}
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{
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const bool res = encoder.set_compression_level(ds.Get<uint8_t>());
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fuzzing::memory::memory_test(res);
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}
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{
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const bool res = encoder.set_do_exhaustive_model_search(ds.Get<bool>());
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fuzzing::memory::memory_test(res);
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}
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{
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const bool res = encoder.set_do_mid_side_stereo(ds.Get<bool>());
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fuzzing::memory::memory_test(res);
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}
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{
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const bool res = encoder.set_loose_mid_side_stereo(ds.Get<bool>());
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fuzzing::memory::memory_test(res);
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}
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{
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const auto s = ds.Get<std::string>();
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const bool res = encoder.set_apodization(s.data());
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fuzzing::memory::memory_test(res);
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}
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{
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const bool res = encoder.set_max_lpc_order(ds.Get<uint8_t>());
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fuzzing::memory::memory_test(res);
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}
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{
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const bool res = encoder.set_qlp_coeff_precision(ds.Get<uint32_t>());
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fuzzing::memory::memory_test(res);
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}
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{
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const bool res = encoder.set_do_qlp_coeff_prec_search(ds.Get<bool>());
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fuzzing::memory::memory_test(res);
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}
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{
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const bool res = encoder.set_do_escape_coding(ds.Get<bool>());
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fuzzing::memory::memory_test(res);
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}
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{
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const bool res = encoder.set_min_residual_partition_order(ds.Get<uint32_t>());
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fuzzing::memory::memory_test(res);
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}
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{
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const bool res = encoder.set_max_residual_partition_order(ds.Get<uint32_t>());
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fuzzing::memory::memory_test(res);
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}
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{
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const bool res = encoder.set_rice_parameter_search_dist(ds.Get<uint32_t>());
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fuzzing::memory::memory_test(res);
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}
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{
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const bool res = encoder.set_total_samples_estimate(ds.Get<uint64_t>());
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fuzzing::memory::memory_test(res);
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}
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{
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::FLAC__StreamEncoderInitStatus ret;
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if ( !use_ogg ) {
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ret = encoder.init();
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} else {
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ret = encoder.init_ogg();
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}
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if ( ret != FLAC__STREAM_ENCODER_INIT_STATUS_OK ) {
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goto end;
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}
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}
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while ( ds.Get<bool>() ) {
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{
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auto dat = ds.GetVector<FLAC__int32>();
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for (size_t i = 0; i < dat.size(); i++) {
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if ( SAMPLE_VALUE_LIMIT != 0 ) {
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if ( dat[i] < -SAMPLE_VALUE_LIMIT ) {
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dat[i] = -SAMPLE_VALUE_LIMIT;
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} else if ( dat[i] > SAMPLE_VALUE_LIMIT ) {
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dat[i] = SAMPLE_VALUE_LIMIT;
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}
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}
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}
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const uint32_t samples = dat.size() / 2;
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if ( samples > 0 ) {
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const int32_t* ptr = dat.data();
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const bool res = encoder.process_interleaved(ptr, samples);
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fuzzing::memory::memory_test(res);
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}
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}
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}
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} catch ( ... ) { }
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end:
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{
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const bool res = encoder.finish();
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fuzzing::memory::memory_test(res);
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}
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return 0;
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}
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