AWavLoader.cpp 9.8 KB

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  1. /*
  2. * Copyright (c) 2018-2020, Andreas Kling <kling@serenityos.org>
  3. * All rights reserved.
  4. *
  5. * Redistribution and use in source and binary forms, with or without
  6. * modification, are permitted provided that the following conditions are met:
  7. *
  8. * 1. Redistributions of source code must retain the above copyright notice, this
  9. * list of conditions and the following disclaimer.
  10. *
  11. * 2. Redistributions in binary form must reproduce the above copyright notice,
  12. * this list of conditions and the following disclaimer in the documentation
  13. * and/or other materials provided with the distribution.
  14. *
  15. * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
  16. * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
  17. * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
  18. * DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE
  19. * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
  20. * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
  21. * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
  22. * CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
  23. * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
  24. * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
  25. */
  26. #include <AK/BufferStream.h>
  27. #include <LibAudio/AWavLoader.h>
  28. #include <LibCore/File.h>
  29. #include <LibCore/IODeviceStreamReader.h>
  30. #include <limits>
  31. namespace Audio {
  32. WavLoader::WavLoader(const StringView& path)
  33. : m_file(Core::File::construct(path))
  34. {
  35. if (!m_file->open(Core::IODevice::ReadOnly)) {
  36. m_error_string = String::format("Can't open file: %s", m_file->error_string());
  37. return;
  38. }
  39. parse_header();
  40. m_resampler = make<ResampleHelper>(m_sample_rate, 44100);
  41. }
  42. RefPtr<Buffer> WavLoader::get_more_samples(size_t max_bytes_to_read_from_input)
  43. {
  44. #ifdef AWAVLOADER_DEBUG
  45. dbgprintf("Read WAV of format PCM with num_channels %u sample rate %u, bits per sample %u\n", m_num_channels, m_sample_rate, m_bits_per_sample);
  46. #endif
  47. auto raw_samples = m_file->read(max_bytes_to_read_from_input);
  48. if (raw_samples.is_empty())
  49. return nullptr;
  50. auto buffer = Buffer::from_pcm_data(raw_samples, *m_resampler, m_num_channels, m_bits_per_sample);
  51. //Buffer contains normalized samples, but m_loaded_samples should containt the ammount of actually loaded samples
  52. m_loaded_samples += static_cast<int>(max_bytes_to_read_from_input) / (m_num_channels * (m_bits_per_sample / 8));
  53. m_loaded_samples = min(m_total_samples, m_loaded_samples);
  54. return buffer;
  55. }
  56. void WavLoader::seek(const int position)
  57. {
  58. if (position < 0 || position > m_total_samples)
  59. return;
  60. m_loaded_samples = position;
  61. m_file->seek(position * m_num_channels * (m_bits_per_sample / 8));
  62. }
  63. void WavLoader::reset()
  64. {
  65. seek(0);
  66. }
  67. bool WavLoader::parse_header()
  68. {
  69. Core::IODeviceStreamReader stream(*m_file);
  70. #define CHECK_OK(msg) \
  71. do { \
  72. ASSERT(ok); \
  73. if (stream.handle_read_failure()) { \
  74. m_error_string = String::format("Premature stream EOF at %s", msg); \
  75. return {}; \
  76. } \
  77. if (!ok) { \
  78. m_error_string = String::format("Parsing failed: %s", msg); \
  79. return {}; \
  80. } else { \
  81. dbgprintf("%s is OK!\n", msg); \
  82. } \
  83. } while (0);
  84. bool ok = true;
  85. u32 riff;
  86. stream >> riff;
  87. ok = ok && riff == 0x46464952; // "RIFF"
  88. CHECK_OK("RIFF header");
  89. u32 sz;
  90. stream >> sz;
  91. ok = ok && sz < 1024 * 1024 * 1024; // arbitrary
  92. CHECK_OK("File size");
  93. ASSERT(sz < 1024 * 1024 * 1024);
  94. u32 wave;
  95. stream >> wave;
  96. ok = ok && wave == 0x45564157; // "WAVE"
  97. CHECK_OK("WAVE header");
  98. u32 fmt_id;
  99. stream >> fmt_id;
  100. ok = ok && fmt_id == 0x20746D66; // "FMT"
  101. CHECK_OK("FMT header");
  102. u32 fmt_size;
  103. stream >> fmt_size;
  104. ok = ok && fmt_size == 16;
  105. CHECK_OK("FMT size");
  106. ASSERT(fmt_size == 16);
  107. u16 audio_format;
  108. stream >> audio_format;
  109. CHECK_OK("Audio format"); // incomplete read check
  110. ok = ok && audio_format == 1; // WAVE_FORMAT_PCM
  111. ASSERT(audio_format == 1);
  112. CHECK_OK("Audio format"); // value check
  113. stream >> m_num_channels;
  114. ok = ok && (m_num_channels == 1 || m_num_channels == 2);
  115. CHECK_OK("Channel count");
  116. stream >> m_sample_rate;
  117. CHECK_OK("Sample rate");
  118. u32 byte_rate;
  119. stream >> byte_rate;
  120. CHECK_OK("Byte rate");
  121. u16 block_align;
  122. stream >> block_align;
  123. CHECK_OK("Block align");
  124. stream >> m_bits_per_sample;
  125. CHECK_OK("Bits per sample"); // incomplete read check
  126. ok = ok && (m_bits_per_sample == 8 || m_bits_per_sample == 16 || m_bits_per_sample == 24);
  127. ASSERT(m_bits_per_sample == 8 || m_bits_per_sample == 16 || m_bits_per_sample == 24);
  128. CHECK_OK("Bits per sample"); // value check
  129. // Read chunks until we find DATA
  130. bool found_data = false;
  131. u32 data_sz = 0;
  132. while (true) {
  133. u32 chunk_id;
  134. stream >> chunk_id;
  135. CHECK_OK("Reading chunk ID searching for data");
  136. stream >> data_sz;
  137. CHECK_OK("Reading chunk size searching for data");
  138. if (chunk_id == 0x61746164) { // DATA
  139. found_data = true;
  140. break;
  141. }
  142. }
  143. ok = ok && found_data;
  144. CHECK_OK("Found no data chunk");
  145. ASSERT(found_data);
  146. ok = ok && data_sz < INT32_MAX;
  147. CHECK_OK("Data was too large");
  148. int bytes_per_sample = (m_bits_per_sample / 8) * m_num_channels;
  149. m_total_samples = data_sz / bytes_per_sample;
  150. // Just make sure we're good before we read the data...
  151. ASSERT(!stream.handle_read_failure());
  152. return true;
  153. }
  154. ResampleHelper::ResampleHelper(float source, float target)
  155. : m_ratio(source / target)
  156. {
  157. }
  158. void ResampleHelper::process_sample(float sample_l, float sample_r)
  159. {
  160. m_last_sample_l = sample_l;
  161. m_last_sample_r = sample_r;
  162. m_current_ratio += 1;
  163. }
  164. bool ResampleHelper::read_sample(float& next_l, float& next_r)
  165. {
  166. if (m_current_ratio > 0) {
  167. m_current_ratio -= m_ratio;
  168. next_l = m_last_sample_l;
  169. next_r = m_last_sample_r;
  170. return true;
  171. }
  172. return false;
  173. }
  174. template<typename SampleReader>
  175. static void read_samples_from_stream(BufferStream& stream, SampleReader read_sample, Vector<Sample>& samples, ResampleHelper& resampler, int num_channels)
  176. {
  177. float norm_l = 0;
  178. float norm_r = 0;
  179. switch (num_channels) {
  180. case 1:
  181. for (;;) {
  182. while (resampler.read_sample(norm_l, norm_r)) {
  183. samples.append(Sample(norm_l));
  184. }
  185. norm_l = read_sample(stream);
  186. if (stream.handle_read_failure()) {
  187. break;
  188. }
  189. resampler.process_sample(norm_l, norm_r);
  190. }
  191. break;
  192. case 2:
  193. for (;;) {
  194. while (resampler.read_sample(norm_l, norm_r)) {
  195. samples.append(Sample(norm_l, norm_r));
  196. }
  197. norm_l = read_sample(stream);
  198. norm_r = read_sample(stream);
  199. if (stream.handle_read_failure()) {
  200. break;
  201. }
  202. resampler.process_sample(norm_l, norm_r);
  203. }
  204. break;
  205. default:
  206. ASSERT_NOT_REACHED();
  207. }
  208. }
  209. static float read_norm_sample_24(BufferStream& stream)
  210. {
  211. u8 byte = 0;
  212. stream >> byte;
  213. u32 sample1 = byte;
  214. stream >> byte;
  215. u32 sample2 = byte;
  216. stream >> byte;
  217. u32 sample3 = byte;
  218. i32 value = 0;
  219. value = sample1 << 8;
  220. value |= (sample2 << 16);
  221. value |= (sample3 << 24);
  222. return float(value) / std::numeric_limits<i32>::max();
  223. }
  224. static float read_norm_sample_16(BufferStream& stream)
  225. {
  226. i16 sample = 0;
  227. stream >> sample;
  228. return float(sample) / std::numeric_limits<i16>::max();
  229. }
  230. static float read_norm_sample_8(BufferStream& stream)
  231. {
  232. u8 sample = 0;
  233. stream >> sample;
  234. return float(sample) / std::numeric_limits<u8>::max();
  235. }
  236. // ### can't const this because BufferStream is non-const
  237. // perhaps we need a reading class separate from the writing one, that can be
  238. // entirely consted.
  239. RefPtr<Buffer> Buffer::from_pcm_data(ByteBuffer& data, ResampleHelper& resampler, int num_channels, int bits_per_sample)
  240. {
  241. BufferStream stream(data);
  242. Vector<Sample> fdata;
  243. fdata.ensure_capacity(data.size() / (bits_per_sample / 8));
  244. #ifdef AWAVLOADER_DEBUG
  245. dbg() << "Reading " << bits_per_sample << " bits and " << num_channels << " channels, total bytes: " << data.size();
  246. #endif
  247. switch (bits_per_sample) {
  248. case 8:
  249. read_samples_from_stream(stream, read_norm_sample_8, fdata, resampler, num_channels);
  250. break;
  251. case 16:
  252. read_samples_from_stream(stream, read_norm_sample_16, fdata, resampler, num_channels);
  253. break;
  254. case 24:
  255. read_samples_from_stream(stream, read_norm_sample_24, fdata, resampler, num_channels);
  256. break;
  257. default:
  258. ASSERT_NOT_REACHED();
  259. }
  260. // We should handle this in a better way above, but for now --
  261. // just make sure we're good. Worst case we just write some 0s where they
  262. // don't belong.
  263. ASSERT(!stream.handle_read_failure());
  264. return Buffer::create_with_samples(move(fdata));
  265. }
  266. }