mirror of
https://github.com/sle118/squeezelite-esp32.git
synced 2025-12-06 11:36:59 +03:00
335 lines
9.8 KiB
C
335 lines
9.8 KiB
C
/*
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* Squeezelite - lightweight headless squeezeplay emulator for linux
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*
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* (c) Adrian Smith 2012, triode1@btinternet.com
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*
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* This program is free software: you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation, either version 3 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program. If not, see <http://www.gnu.org/licenses/>.
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*
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*/
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#include "squeezelite.h"
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#include <FLAC/stream_decoder.h>
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#if BYTES_PER_FRAME == 4
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#define ALIGN8(n) (n << 8)
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#define ALIGN16(n) (n)
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#define ALIGN24(n) (n >> 8)
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#define ALIGN32(n) (n >> 16)
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#else
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#define ALIGN8(n) (n << 24)
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#define ALIGN16(n) (n << 16)
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#define ALIGN24(n) (n << 8)
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#define ALIGN32(n) (n)
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#endif
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struct flac {
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FLAC__StreamDecoder *decoder;
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u8_t container;
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#if !LINKALL
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// FLAC symbols to be dynamically loaded
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const char **FLAC__StreamDecoderErrorStatusString;
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const char **FLAC__StreamDecoderStateString;
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FLAC__StreamDecoder * (* FLAC__stream_decoder_new)(void);
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FLAC__bool (* FLAC__stream_decoder_reset)(FLAC__StreamDecoder *decoder);
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void (* FLAC__stream_decoder_delete)(FLAC__StreamDecoder *decoder);
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FLAC__StreamDecoderInitStatus (* FLAC__stream_decoder_init_stream)(
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FLAC__StreamDecoder *decoder,
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FLAC__StreamDecoderReadCallback read_callback,
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FLAC__StreamDecoderSeekCallback seek_callback,
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FLAC__StreamDecoderTellCallback tell_callback,
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FLAC__StreamDecoderLengthCallback length_callback,
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FLAC__StreamDecoderEofCallback eof_callback,
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FLAC__StreamDecoderWriteCallback write_callback,
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FLAC__StreamDecoderMetadataCallback metadata_callback,
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FLAC__StreamDecoderErrorCallback error_callback,
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void *client_data
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);
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FLAC__StreamDecoderInitStatus (* FLAC__stream_decoder_init_ogg_stream)(
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FLAC__StreamDecoder *decoder,
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FLAC__StreamDecoderReadCallback read_callback,
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FLAC__StreamDecoderSeekCallback seek_callback,
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FLAC__StreamDecoderTellCallback tell_callback,
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FLAC__StreamDecoderLengthCallback length_callback,
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FLAC__StreamDecoderEofCallback eof_callback,
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FLAC__StreamDecoderWriteCallback write_callback,
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FLAC__StreamDecoderMetadataCallback metadata_callback,
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FLAC__StreamDecoderErrorCallback error_callback,
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void *client_data
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);
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FLAC__bool (* FLAC__stream_decoder_process_single)(FLAC__StreamDecoder *decoder);
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FLAC__StreamDecoderState (* FLAC__stream_decoder_get_state)(const FLAC__StreamDecoder *decoder);
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#endif
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};
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static struct flac *f;
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extern log_level loglevel;
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extern struct buffer *streambuf;
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extern struct buffer *outputbuf;
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extern struct streamstate stream;
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extern struct outputstate output;
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extern struct decodestate decode;
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extern struct processstate process;
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#define LOCK_S mutex_lock(streambuf->mutex)
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#define UNLOCK_S mutex_unlock(streambuf->mutex)
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#define LOCK_O mutex_lock(outputbuf->mutex)
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#define UNLOCK_O mutex_unlock(outputbuf->mutex)
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#if PROCESS
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#define LOCK_O_direct if (decode.direct) mutex_lock(outputbuf->mutex)
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#define UNLOCK_O_direct if (decode.direct) mutex_unlock(outputbuf->mutex)
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#define IF_DIRECT(x) if (decode.direct) { x }
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#define IF_PROCESS(x) if (!decode.direct) { x }
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#else
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#define LOCK_O_direct mutex_lock(outputbuf->mutex)
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#define UNLOCK_O_direct mutex_unlock(outputbuf->mutex)
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#define IF_DIRECT(x) { x }
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#define IF_PROCESS(x)
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#endif
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#if LINKALL
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#define FLAC(h, fn, ...) (FLAC__ ## fn)(__VA_ARGS__)
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#define FLAC_A(h, a) (FLAC__ ## a)
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#else
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#define FLAC(h, fn, ...) (h)->FLAC__##fn(__VA_ARGS__)
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#define FLAC_A(h, a) (h)->FLAC__ ## a
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#endif
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static FLAC__StreamDecoderReadStatus read_cb(const FLAC__StreamDecoder *decoder, FLAC__byte buffer[], size_t *want, void *client_data) {
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size_t bytes;
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bool end;
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LOCK_S;
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bytes = min(_buf_used(streambuf), _buf_cont_read(streambuf));
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bytes = min(bytes, *want);
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end = (stream.state <= DISCONNECT && bytes == 0);
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memcpy(buffer, streambuf->readp, bytes);
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_buf_inc_readp(streambuf, bytes);
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UNLOCK_S;
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*want = bytes;
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return end ? FLAC__STREAM_DECODER_READ_STATUS_END_OF_STREAM : FLAC__STREAM_DECODER_READ_STATUS_CONTINUE;
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}
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static FLAC__StreamDecoderWriteStatus write_cb(const FLAC__StreamDecoder *decoder, const FLAC__Frame *frame,
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const FLAC__int32 *const buffer[], void *client_data) {
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size_t frames = frame->header.blocksize;
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unsigned bits_per_sample = frame->header.bits_per_sample;
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unsigned channels = frame->header.channels;
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FLAC__int32 *lptr = (FLAC__int32 *)buffer[0];
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FLAC__int32 *rptr = (FLAC__int32 *)buffer[channels > 1 ? 1 : 0];
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if (decode.new_stream) {
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LOCK_O;
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LOG_INFO("setting track_start");
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output.track_start = outputbuf->writep;
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decode.new_stream = false;
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#if DSD
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#if SL_LITTLE_ENDIAN
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#define MARKER_OFFSET 2
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#else
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#define MARKER_OFFSET 1
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#endif
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if (bits_per_sample == 24 && is_stream_dop(((u8_t *)lptr) + MARKER_OFFSET, ((u8_t *)rptr) + MARKER_OFFSET, 4, frames)) {
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LOG_INFO("file contains DOP");
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if (output.dsdfmt == DOP_S24_LE || output.dsdfmt == DOP_S24_3LE)
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output.next_fmt = output.dsdfmt;
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else
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output.next_fmt = DOP;
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output.next_sample_rate = frame->header.sample_rate;
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output.fade = FADE_INACTIVE;
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} else {
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output.next_sample_rate = decode_newstream(frame->header.sample_rate, output.supported_rates);
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output.next_fmt = PCM;
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if (output.fade_mode) _checkfade(true);
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}
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#else
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output.next_sample_rate = decode_newstream(frame->header.sample_rate, output.supported_rates);
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if (output.fade_mode) _checkfade(true);
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#endif
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UNLOCK_O;
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}
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LOCK_O_direct;
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while (frames > 0) {
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frames_t f;
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frames_t count;
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ISAMPLE_T *optr;
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IF_DIRECT(
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optr = (ISAMPLE_T *)outputbuf->writep;
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f = min(_buf_space(outputbuf), _buf_cont_write(outputbuf)) / BYTES_PER_FRAME;
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);
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IF_PROCESS(
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optr = (ISAMPLE_T *)process.inbuf;
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f = process.max_in_frames;
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);
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f = min(f, frames);
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count = f;
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if (bits_per_sample == 8) {
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while (count--) {
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*optr++ = ALIGN8(*lptr++);
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*optr++ = ALIGN8(*rptr++);
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}
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} else if (bits_per_sample == 16) {
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while (count--) {
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*optr++ = ALIGN16(*lptr++);
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*optr++ = ALIGN16(*rptr++);
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}
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} else if (bits_per_sample == 24) {
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while (count--) {
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*optr++ = ALIGN24(*lptr++);
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*optr++ = ALIGN24(*rptr++);
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}
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} else if (bits_per_sample == 32) {
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while (count--) {
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*optr++ = ALIGN32(*lptr++);
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*optr++ = ALIGN32(*rptr++);
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}
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} else {
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LOG_ERROR("unsupported bits per sample: %u", bits_per_sample);
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}
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frames -= f;
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IF_DIRECT(
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_buf_inc_writep(outputbuf, f * BYTES_PER_FRAME);
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);
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IF_PROCESS(
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process.in_frames = f;
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if (frames) LOG_ERROR("unhandled case");
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);
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}
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UNLOCK_O_direct;
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return FLAC__STREAM_DECODER_WRITE_STATUS_CONTINUE;
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}
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static void error_cb(const FLAC__StreamDecoder *decoder, FLAC__StreamDecoderErrorStatus status, void *client_data) {
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LOG_INFO("flac error: %s", FLAC_A(f, StreamDecoderErrorStatusString)[status]);
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}
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static void flac_close(void) {
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FLAC(f, stream_decoder_delete, f->decoder);
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f->decoder = NULL;
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}
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static void flac_open(u8_t sample_size, u8_t sample_rate, u8_t channels, u8_t endianness) {
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if ( f->decoder && f->container != sample_size ) {
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flac_close();
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}
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f->container = sample_size;
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if (f->decoder) {
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FLAC(f, stream_decoder_reset, f->decoder);
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} else {
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f->decoder = FLAC(f, stream_decoder_new);
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}
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if ( f->container == 'o' ) {
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LOG_INFO("ogg/flac container - using init_ogg_stream");
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FLAC(f, stream_decoder_init_ogg_stream, f->decoder, &read_cb, NULL, NULL, NULL, NULL, &write_cb, NULL, &error_cb, NULL);
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} else {
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FLAC(f, stream_decoder_init_stream, f->decoder, &read_cb, NULL, NULL, NULL, NULL, &write_cb, NULL, &error_cb, NULL);
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}
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}
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static decode_state flac_decode(void) {
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bool ok = FLAC(f, stream_decoder_process_single, f->decoder);
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FLAC__StreamDecoderState state = FLAC(f, stream_decoder_get_state, f->decoder);
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if (!ok && state != FLAC__STREAM_DECODER_END_OF_STREAM) {
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LOG_INFO("flac error: %s", FLAC_A(f, StreamDecoderStateString)[state]);
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};
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if (state == FLAC__STREAM_DECODER_END_OF_STREAM) {
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return DECODE_COMPLETE;
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} else if (state > FLAC__STREAM_DECODER_END_OF_STREAM) {
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return DECODE_ERROR;
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} else {
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return DECODE_RUNNING;
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}
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}
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static bool load_flac() {
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#if !LINKALL
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void *handle = dlopen(LIBFLAC, RTLD_NOW);
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char *err;
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if (!handle) {
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LOG_INFO("dlerror: %s", dlerror());
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return false;
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}
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f->FLAC__StreamDecoderErrorStatusString = dlsym(handle, "FLAC__StreamDecoderErrorStatusString");
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f->FLAC__StreamDecoderStateString = dlsym(handle, "FLAC__StreamDecoderStateString");
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f->FLAC__stream_decoder_new = dlsym(handle, "FLAC__stream_decoder_new");
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f->FLAC__stream_decoder_reset = dlsym(handle, "FLAC__stream_decoder_reset");
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f->FLAC__stream_decoder_delete = dlsym(handle, "FLAC__stream_decoder_delete");
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f->FLAC__stream_decoder_init_stream = dlsym(handle, "FLAC__stream_decoder_init_stream");
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f->FLAC__stream_decoder_init_ogg_stream = dlsym(handle, "FLAC__stream_decoder_init_ogg_stream");
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f->FLAC__stream_decoder_process_single = dlsym(handle, "FLAC__stream_decoder_process_single");
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f->FLAC__stream_decoder_get_state = dlsym(handle, "FLAC__stream_decoder_get_state");
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if ((err = dlerror()) != NULL) {
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LOG_INFO("dlerror: %s", err);
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return false;
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}
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LOG_INFO("loaded "LIBFLAC);
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#endif
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return true;
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}
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struct codec *register_flac(void) {
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static struct codec ret = {
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'f', // id
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"ogf,flc", // types
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16384, // min read
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204800, // min space
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flac_open, // open
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flac_close, // close
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flac_decode, // decode
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};
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f = malloc(sizeof(struct flac));
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if (!f) {
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return NULL;
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}
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f->decoder = NULL;
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if (!load_flac()) {
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return NULL;
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}
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LOG_INFO("using flac to decode ogf,flc");
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return &ret;
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}
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