wavpack: renamed variables and modified coding style slightly
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7b7340f703
commit
ed6f60460d
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@ -46,13 +46,19 @@ static struct {
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{ "disc", TAG_ITEM_DISC },
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};
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/** A pointer type for format converter function. */
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typedef void (*format_samples_t)(
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int bytes_per_sample,
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void *buffer, uint32_t count
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);
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/*
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* This function has been borrowed from the tiny player found on
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* wavpack.com. Modifications were required because mpd only handles
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* max 24-bit samples.
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*/
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static void
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format_samples_int(int bytes_per_sample, void *buffer, uint32_t samcnt)
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format_samples_int(int bytes_per_sample, void *buffer, uint32_t count)
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{
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int32_t *src = buffer;
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@ -68,7 +74,7 @@ format_samples_int(int bytes_per_sample, void *buffer, uint32_t samcnt)
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assert(sizeof(uchar) <= sizeof(uint32_t));
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/* pass through and align 8-bit samples */
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while (samcnt--) {
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while (count--) {
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*dst++ = *src++;
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}
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break;
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@ -78,7 +84,7 @@ format_samples_int(int bytes_per_sample, void *buffer, uint32_t samcnt)
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assert(sizeof(uint16_t) <= sizeof(uint32_t));
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/* pass through and align 16-bit samples */
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while (samcnt--) {
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while (count--) {
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*dst++ = *src++;
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}
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break;
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@ -91,7 +97,7 @@ format_samples_int(int bytes_per_sample, void *buffer, uint32_t samcnt)
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assert(sizeof(uint32_t) <= sizeof(uint32_t));
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/* downsample to 24-bit */
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while (samcnt--) {
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while (count--) {
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*dst++ = *src++ >> 8;
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}
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break;
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@ -104,13 +110,13 @@ format_samples_int(int bytes_per_sample, void *buffer, uint32_t samcnt)
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*/
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static void
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format_samples_float(mpd_unused int bytes_per_sample, void *buffer,
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uint32_t samcnt)
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uint32_t count)
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{
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int32_t *dst = buffer;
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float *src = buffer;
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assert(sizeof(int32_t) <= sizeof(float));
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while (samcnt--) {
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while (count--) {
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*dst++ = (int32_t)(*src++ + 0.5f);
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}
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}
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@ -120,18 +126,16 @@ format_samples_float(mpd_unused int bytes_per_sample, void *buffer,
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* Requires an already opened WavpackContext.
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*/
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static void
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wavpack_decode(struct decoder * decoder, WavpackContext *wpc, bool canseek,
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struct replay_gain_info *replayGainInfo)
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wavpack_decode(struct decoder *decoder, WavpackContext *wpc, bool can_seek,
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struct replay_gain_info *replay_gain_info)
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{
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struct audio_format audio_format;
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void (*format_samples)(int bytes_per_sample,
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void *buffer, uint32_t samcnt);
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format_samples_t format_samples;
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char chunk[CHUNK_SIZE];
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float file_time;
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int samplesreq, samplesgot;
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int allsamples;
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int position, outsamplesize;
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int bytes_per_sample;
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int samples_requested, samples_got;
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float total_time, current_time;
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int bytes_per_sample, output_sample_size;
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int position;
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audio_format.sample_rate = WavpackGetSampleRate(wpc);
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audio_format.channels = WavpackGetReducedChannels(wpc);
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@ -150,26 +154,30 @@ wavpack_decode(struct decoder * decoder, WavpackContext *wpc, bool canseek,
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format_samples = format_samples_int;
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}
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allsamples = WavpackGetNumSamples(wpc);
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total_time = WavpackGetNumSamples(wpc);
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total_time /= audio_format.sample_rate;
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bytes_per_sample = WavpackGetBytesPerSample(wpc);
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outsamplesize = audio_format_frame_size(&audio_format);
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output_sample_size = bytes_per_sample;
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if (output_sample_size == 3) {
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output_sample_size = 4;
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}
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output_sample_size *= audio_format.channels;
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/* wavpack gives us all kind of samples in a 32-bit space */
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samplesreq = sizeof(chunk) / (4 * audio_format.channels);
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samples_requested = sizeof(chunk) / (4 * audio_format.channels);
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decoder_initialized(decoder, &audio_format, canseek,
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(float)allsamples / audio_format.sample_rate);
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decoder_initialized(decoder, &audio_format, can_seek, total_time);
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position = 0;
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do {
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if (decoder_get_command(decoder) == DECODE_COMMAND_SEEK) {
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if (canseek) {
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if (can_seek) {
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int where;
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where = decoder_seek_where(decoder) *
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audio_format.sample_rate;
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where = decoder_seek_where(decoder);
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where *= audio_format.sample_rate;
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if (WavpackSeekSample(wpc, where)) {
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position = where;
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decoder_command_finished(decoder);
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@ -185,23 +193,29 @@ wavpack_decode(struct decoder * decoder, WavpackContext *wpc, bool canseek,
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break;
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}
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samplesgot = WavpackUnpackSamples(wpc,
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(int32_t *)chunk, samplesreq);
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if (samplesgot > 0) {
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samples_got = WavpackUnpackSamples(
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wpc, (int32_t *)chunk, samples_requested
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);
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if (samples_got > 0) {
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int bitrate = (int)(WavpackGetInstantBitrate(wpc) /
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1000 + 0.5);
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position += samplesgot;
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file_time = (float)position / audio_format.sample_rate;
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position += samples_got;
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current_time = position;
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current_time /= audio_format.sample_rate;
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format_samples(bytes_per_sample, chunk,
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samplesgot * audio_format.channels);
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format_samples(
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bytes_per_sample, chunk,
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samples_got * audio_format.channels
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);
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decoder_data(decoder, NULL, chunk,
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samplesgot * outsamplesize,
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file_time, bitrate,
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replayGainInfo);
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decoder_data(
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decoder, NULL, chunk,
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samples_got * output_sample_size,
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current_time, bitrate,
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replay_gain_info
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);
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}
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} while (samplesgot == samplesreq);
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} while (samples_got != samples_requested);
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}
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/**
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@ -230,17 +244,22 @@ wavpack_replaygain(WavpackContext *wpc)
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replay_gain_info = replay_gain_info_new();
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found = wavpack_tag_float(wpc, "replaygain_track_gain",
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&replay_gain_info->tuples[REPLAY_GAIN_TRACK].gain)
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wavpack_tag_float(wpc, "replaygain_track_peak",
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&replay_gain_info->tuples[REPLAY_GAIN_TRACK].peak)
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wavpack_tag_float(wpc, "replaygain_album_gain",
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&replay_gain_info->tuples[REPLAY_GAIN_ALBUM].gain)
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wavpack_tag_float(wpc, "replaygain_album_peak",
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&replay_gain_info->tuples[REPLAY_GAIN_ALBUM].peak);
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found |= wavpack_tag_float(
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wpc, "replaygain_track_gain",
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&replay_gain_info->tuples[REPLAY_GAIN_TRACK].gain
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);
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found |= wavpack_tag_float(
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wpc, "replaygain_track_peak",
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&replay_gain_info->tuples[REPLAY_GAIN_TRACK].peak
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);
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found |= wavpack_tag_float(
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wpc, "replaygain_album_gain",
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&replay_gain_info->tuples[REPLAY_GAIN_ALBUM].gain
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);
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found |= wavpack_tag_float(
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wpc, "replaygain_album_peak",
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&replay_gain_info->tuples[REPLAY_GAIN_ALBUM].peak
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);
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if (found) {
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return replay_gain_info;
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@ -261,38 +280,39 @@ wavpack_tagdup(const char *fname)
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struct tag *tag;
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char error[ERRORLEN];
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char *s;
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int ssize;
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int j;
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int size, allocated_size;
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wpc = WavpackOpenFileInput(fname, error, OPEN_TAGS, 0);
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if (wpc == NULL) {
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g_warning("failed to open WavPack file \"%s\": %s\n",
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fname, error);
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g_warning(
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"failed to open WavPack file \"%s\": %s\n",
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fname, error
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);
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return NULL;
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}
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tag = tag_new();
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tag->time =
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(float)WavpackGetNumSamples(wpc) / WavpackGetSampleRate(wpc);
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tag->time = WavpackGetNumSamples(wpc);
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tag->time /= WavpackGetSampleRate(wpc);
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ssize = 0;
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allocated_size = 0;
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s = NULL;
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for (unsigned i = 0; i < G_N_ELEMENTS(tagtypes); ++i) {
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j = WavpackGetTagItem(wpc, tagtypes[i].name, NULL, 0);
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if (j > 0) {
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++j;
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size = WavpackGetTagItem(wpc, tagtypes[i].name, NULL, 0);
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if (size > 0) {
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++size; /* EOS */
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if (s == NULL) {
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s = g_malloc(j);
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ssize = j;
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} else if (j > ssize) {
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char *t = (char *)g_realloc(s, j);
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ssize = j;
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s = g_malloc(size);
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allocated_size = size;
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} else if (size > allocated_size) {
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char *t = (char *)g_realloc(s, size);
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allocated_size = size;
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s = t;
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}
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WavpackGetTagItem(wpc, tagtypes[i].name, s, j);
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WavpackGetTagItem(wpc, tagtypes[i].name, s, size);
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tag_add_item(tag, tagtypes[i].type, s);
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}
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}
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@ -342,8 +362,9 @@ wavpack_input_read_bytes(void *id, void *data, int32_t bcount)
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/* wavpack fails if we return a partial read, so we just wait
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until the buffer is full */
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while (bcount > 0) {
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size_t nbytes = decoder_read(wpin(id)->decoder, wpin(id)->is,
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buf, bcount);
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size_t nbytes = decoder_read(
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wpin(id)->decoder, wpin(id)->is, buf, bcount
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);
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if (nbytes == 0) {
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/* EOF, error or a decoder command */
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break;
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@ -450,8 +471,9 @@ wavpack_open_wvc(struct decoder *decoder, struct input_stream *is_wvc,
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* And we try to buffer in order to get know
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* about a possible 404 error.
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*/
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nbytes = decoder_read(decoder, is_wvc,
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&first_byte, sizeof(first_byte));
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nbytes = decoder_read(
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decoder, is_wvc, &first_byte, sizeof(first_byte)
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);
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if (nbytes == 0) {
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input_stream_close(is_wvc);
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return false;
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@ -474,23 +496,24 @@ wavpack_streamdecode(struct decoder * decoder, struct input_stream *is)
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struct input_stream is_wvc;
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int open_flags = OPEN_2CH_MAX | OPEN_NORMALIZE /*| OPEN_STREAMING*/;
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struct wavpack_input isp, isp_wvc;
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bool canseek = is->seekable;
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bool can_seek = is->seekable;
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if (wavpack_open_wvc(decoder, &is_wvc, &isp_wvc)) {
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open_flags |= OPEN_WVC;
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canseek &= is_wvc.seekable;
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can_seek &= is_wvc.seekable;
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}
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wavpack_input_init(&isp, decoder, is);
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wpc = WavpackOpenFileInputEx(&mpd_is_reader, &isp, &isp_wvc, error,
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open_flags, 23);
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wpc = WavpackOpenFileInputEx(
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&mpd_is_reader, &isp, &isp_wvc, error, open_flags, 23
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);
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if (wpc == NULL) {
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g_warning("failed to open WavPack stream: %s\n", error);
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return;
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}
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wavpack_decode(decoder, wpc, canseek, NULL);
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wavpack_decode(decoder, wpc, can_seek, NULL);
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WavpackCloseFile(wpc);
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if (open_flags & OPEN_WVC) {
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@ -508,12 +531,15 @@ wavpack_filedecode(struct decoder *decoder, const char *fname)
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WavpackContext *wpc;
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struct replay_gain_info *replay_gain_info;
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wpc = WavpackOpenFileInput(fname, error,
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OPEN_TAGS | OPEN_WVC |
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OPEN_2CH_MAX | OPEN_NORMALIZE, 23);
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wpc = WavpackOpenFileInput(
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fname, error,
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OPEN_TAGS | OPEN_WVC | OPEN_2CH_MAX | OPEN_NORMALIZE, 23
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);
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if (wpc == NULL) {
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g_warning("failed to open WavPack file \"%s\": %s\n",
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fname, error);
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g_warning(
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"failed to open WavPack file \"%s\": %s\n",
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fname, error
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);
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return;
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}
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@ -528,8 +554,15 @@ wavpack_filedecode(struct decoder *decoder, const char *fname)
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WavpackCloseFile(wpc);
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}
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static char const *const wavpack_suffixes[] = { "wv", NULL };
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static char const *const wavpack_mime_types[] = { "audio/x-wavpack", NULL };
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static char const *const wavpack_suffixes[] = {
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"wv",
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NULL
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};
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static char const *const wavpack_mime_types[] = {
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"audio/x-wavpack",
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NULL
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};
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const struct decoder_plugin wavpack_plugin = {
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.name = "wavpack",
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