cc3b6c2f5b
The input_stream object should only be closed by the MPD core (i.e. decoder_thread.c / decoder_run()). A decoder plugin which attempts to close it will result in a segmentation fault.
207 lines
5.4 KiB
C
207 lines
5.4 KiB
C
/* the Music Player Daemon (MPD)
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* Copyright (C) 2003-2007 by Warren Dukes (warren.dukes@gmail.com)
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* This project's homepage is: http://www.musicpd.org
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*
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* libaudiofile (wave) support added by Eric Wong <normalperson@yhbt.net>
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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 2 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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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
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*/
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#include "../decoder_api.h"
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#include <audiofile.h>
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#include <af_vfs.h>
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#include <assert.h>
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#include <glib.h>
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#undef G_LOG_DOMAIN
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#define G_LOG_DOMAIN "audiofile"
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/* pick 1020 since its devisible for 8,16,24, and 32-bit audio */
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#define CHUNK_SIZE 1020
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static int getAudiofileTotalTime(const char *file)
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{
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int total_time;
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AFfilehandle af_fp = afOpenFile(file, "r", NULL);
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if (af_fp == AF_NULL_FILEHANDLE) {
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return -1;
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}
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total_time = (int)
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((double)afGetFrameCount(af_fp, AF_DEFAULT_TRACK)
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/ afGetRate(af_fp, AF_DEFAULT_TRACK));
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afCloseFile(af_fp);
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return total_time;
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}
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static ssize_t
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audiofile_file_read(AFvirtualfile *vfile, void *data, size_t nbytes)
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{
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struct input_stream *is = (struct input_stream *) vfile->closure;
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return input_stream_read(is, data, nbytes);
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}
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static long
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audiofile_file_length(AFvirtualfile *vfile)
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{
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struct input_stream *is = (struct input_stream *) vfile->closure;
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return is->size;
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}
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static long
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audiofile_file_tell(AFvirtualfile *vfile)
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{
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struct input_stream *is = (struct input_stream *) vfile->closure;
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return is->offset;
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}
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static void
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audiofile_file_destroy(AFvirtualfile *vfile)
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{
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assert(vfile->closure != NULL);
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vfile->closure = NULL;
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}
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static long
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audiofile_file_seek(AFvirtualfile *vfile, long offset, int is_relative)
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{
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struct input_stream *is = (struct input_stream *) vfile->closure;
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int whence = (is_relative ? SEEK_CUR : SEEK_SET);
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if (input_stream_seek(is, offset, whence)) {
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return is->offset;
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} else {
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return -1;
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}
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}
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static AFvirtualfile *
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setup_virtual_fops(struct input_stream *stream)
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{
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AFvirtualfile *vf = g_malloc(sizeof(AFvirtualfile));
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vf->closure = stream;
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vf->write = NULL;
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vf->read = audiofile_file_read;
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vf->length = audiofile_file_length;
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vf->destroy = audiofile_file_destroy;
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vf->seek = audiofile_file_seek;
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vf->tell = audiofile_file_tell;
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return vf;
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}
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static void
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audiofile_streamdecode(struct decoder * decoder, struct input_stream *inStream)
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{
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AFvirtualfile *vf;
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int fs, frame_count;
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AFfilehandle af_fp;
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int bits;
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struct audio_format audio_format;
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float total_time;
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uint16_t bitRate;
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int ret, current = 0;
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char chunk[CHUNK_SIZE];
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vf = setup_virtual_fops(inStream);
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af_fp = afOpenVirtualFile(vf, "r", NULL);
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if (af_fp == AF_NULL_FILEHANDLE) {
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g_warning("failed to input stream\n");
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return;
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}
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afSetVirtualSampleFormat(af_fp, AF_DEFAULT_TRACK,
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AF_SAMPFMT_TWOSCOMP, 16);
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afGetVirtualSampleFormat(af_fp, AF_DEFAULT_TRACK, &fs, &bits);
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audio_format.bits = (uint8_t)bits;
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audio_format.sample_rate =
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(unsigned int)afGetRate(af_fp, AF_DEFAULT_TRACK);
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audio_format.channels =
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(uint8_t)afGetVirtualChannels(af_fp, AF_DEFAULT_TRACK);
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if (!audio_format_valid(&audio_format)) {
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g_warning("Invalid audio format: %u:%u:%u\n",
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audio_format.sample_rate, audio_format.bits,
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audio_format.channels);
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afCloseFile(af_fp);
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return;
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}
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frame_count = afGetFrameCount(af_fp, AF_DEFAULT_TRACK);
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total_time = ((float)frame_count / (float)audio_format.sample_rate);
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bitRate = (uint16_t)(inStream->size * 8.0 / total_time / 1000.0 + 0.5);
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fs = (int)afGetVirtualFrameSize(af_fp, AF_DEFAULT_TRACK, 1);
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decoder_initialized(decoder, &audio_format, true, total_time);
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do {
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if (decoder_get_command(decoder) == DECODE_COMMAND_SEEK) {
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current = decoder_seek_where(decoder) *
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audio_format.sample_rate;
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afSeekFrame(af_fp, AF_DEFAULT_TRACK, current);
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decoder_command_finished(decoder);
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}
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ret = afReadFrames(af_fp, AF_DEFAULT_TRACK, chunk,
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CHUNK_SIZE / fs);
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if (ret <= 0)
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break;
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current += ret;
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decoder_data(decoder, NULL,
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chunk, ret * fs,
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(float)current / (float)audio_format.sample_rate,
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bitRate, NULL);
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} while (decoder_get_command(decoder) != DECODE_COMMAND_STOP);
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afCloseFile(af_fp);
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}
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static struct tag *audiofile_tag_dup(const char *file)
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{
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struct tag *ret = NULL;
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int total_time = getAudiofileTotalTime(file);
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if (total_time >= 0) {
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ret = tag_new();
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ret->time = total_time;
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} else {
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g_debug("Failed to get total song time from: %s\n",
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file);
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}
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return ret;
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}
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static const char *const audiofile_suffixes[] = {
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"wav", "au", "aiff", "aif", NULL
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};
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static const char *const audiofile_mime_types[] = {
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"audio/x-wav",
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"audio/x-aiff",
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NULL
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};
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const struct decoder_plugin audiofilePlugin = {
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.name = "audiofile",
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.stream_decode = audiofile_streamdecode,
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.tag_dup = audiofile_tag_dup,
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.suffixes = audiofile_suffixes,
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.mime_types = audiofile_mime_types,
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};
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