mirror of https://github.com/mpv-player/mpv
319 lines
10 KiB
C
319 lines
10 KiB
C
/*
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* audio filter for runtime AC-3 encoding with libavcodec.
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*
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* Copyright (C) 2007 Ulion <ulion A gmail P com>
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*
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* This file is part of MPlayer.
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*
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* MPlayer 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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* MPlayer 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 MPlayer; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
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*/
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <inttypes.h>
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#include "config.h"
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#include "af.h"
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#include "help_mp.h"
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#include "reorder_ch.h"
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#include "libavcodec/avcodec.h"
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#include "libavcodec/ac3.h"
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// Data for specific instances of this filter
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typedef struct af_ac3enc_s {
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struct AVCodec *lavc_acodec;
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struct AVCodecContext *lavc_actx;
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int add_iec61937_header;
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int bit_rate;
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char *pending_data;
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int pending_len;
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int expect_len;
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int min_channel_num;
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} af_ac3enc_t;
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extern int avcodec_initialized;
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// Initialization and runtime control
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static int control(struct af_instance_s *af, int cmd, void *arg)
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{
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af_ac3enc_t *s = (af_ac3enc_t *)af->setup;
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af_data_t *data = (af_data_t *)arg;
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int i, bit_rate, test_output_res;
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static const int default_bit_rate[AC3_MAX_CHANNELS+1] = \
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{0, 96000, 192000, 256000, 384000, 448000, 448000};
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switch (cmd){
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case AF_CONTROL_REINIT:
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if (data->format == AF_FORMAT_AC3 || data->nch < s->min_channel_num)
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return AF_DETACH;
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s->pending_len = 0;
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s->expect_len = AC3_FRAME_SIZE * data->nch * data->bps;
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if (s->add_iec61937_header)
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af->mul = (double)AC3_FRAME_SIZE * 2 * 2 / s->expect_len;
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else
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af->mul = (double)AC3_MAX_CODED_FRAME_SIZE / s->expect_len;
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af_msg(AF_MSG_DEBUG0, "af_lavcac3enc reinit: %d, %d, %f, %d.\n",
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data->nch, data->rate, af->mul, s->expect_len);
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af->data->format = AF_FORMAT_S16_NE;
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if (data->rate == 48000 || data->rate == 44100 || data->rate == 32000)
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af->data->rate = data->rate;
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else
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af->data->rate = 48000;
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if (data->nch > AC3_MAX_CHANNELS)
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af->data->nch = AC3_MAX_CHANNELS;
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else
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af->data->nch = data->nch;
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af->data->bps = 2;
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test_output_res = af_test_output(af, data);
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bit_rate = s->bit_rate ? s->bit_rate : default_bit_rate[af->data->nch];
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if (s->lavc_actx->channels != af->data->nch ||
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s->lavc_actx->sample_rate != af->data->rate ||
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s->lavc_actx->bit_rate != bit_rate) {
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if (s->lavc_actx->codec)
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avcodec_close(s->lavc_actx);
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// Put sample parameters
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s->lavc_actx->channels = af->data->nch;
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s->lavc_actx->sample_rate = af->data->rate;
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s->lavc_actx->bit_rate = bit_rate;
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if(avcodec_open(s->lavc_actx, s->lavc_acodec) < 0) {
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af_msg(AF_MSG_ERROR, MSGTR_CouldntOpenCodec, "ac3", bit_rate);
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return AF_ERROR;
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}
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}
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af->data->format = AF_FORMAT_AC3;
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af->data->nch = 2;
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return test_output_res;
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case AF_CONTROL_COMMAND_LINE:
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af_msg(AF_MSG_DEBUG0, "af_lavcac3enc cmdline: %s.\n", (char*)arg);
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s->bit_rate = 0;
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s->min_channel_num = 0;
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s->add_iec61937_header = 0;
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sscanf((char*)arg,"%d:%d:%d", &s->add_iec61937_header, &s->bit_rate,
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&s->min_channel_num);
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if (s->bit_rate < 1000)
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s->bit_rate *= 1000;
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if (s->bit_rate) {
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for (i = 0; i < 19; ++i)
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if (ff_ac3_bitrate_tab[i] * 1000 == s->bit_rate)
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break;
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if (i >= 19) {
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af_msg(AF_MSG_WARN, "af_lavcac3enc unable set unsupported "
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"bitrate %d, use default bitrate (check manpage to see "
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"supported bitrates).\n", s->bit_rate);
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s->bit_rate = 0;
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}
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}
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if (s->min_channel_num == 0)
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s->min_channel_num = 5;
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af_msg(AF_MSG_VERBOSE, "af_lavcac3enc config spdif:%d, bitrate:%d, "
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"minchnum:%d.\n", s->add_iec61937_header, s->bit_rate,
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s->min_channel_num);
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return AF_OK;
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}
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return AF_UNKNOWN;
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}
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// Deallocate memory
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static void uninit(struct af_instance_s* af)
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{
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if (af->data)
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free(af->data->audio);
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free(af->data);
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if (af->setup) {
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af_ac3enc_t *s = af->setup;
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af->setup = NULL;
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if(s->lavc_actx) {
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if (s->lavc_actx->codec)
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avcodec_close(s->lavc_actx);
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free(s->lavc_actx);
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}
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free(s->pending_data);
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free(s);
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}
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}
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// Filter data through filter
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static af_data_t* play(struct af_instance_s* af, af_data_t* data)
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{
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af_ac3enc_t *s = af->setup;
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af_data_t *c = data; // Current working data
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af_data_t *l;
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int len, left, outsize = 0, destsize;
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char *buf, *src, *dest;
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int max_output_len;
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int frame_num = (data->len + s->pending_len) / s->expect_len;
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if (s->add_iec61937_header)
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max_output_len = AC3_FRAME_SIZE * 2 * 2 * frame_num;
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else
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max_output_len = AC3_MAX_CODED_FRAME_SIZE * frame_num;
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if (af->data->len < max_output_len) {
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af_msg(AF_MSG_VERBOSE,"[libaf] Reallocating memory in module %s, "
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"old len = %i, new len = %i\n", af->info->name, af->data->len,
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max_output_len);
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free(af->data->audio);
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af->data->audio = malloc(max_output_len);
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if (!af->data->audio) {
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af_msg(AF_MSG_FATAL,"[libaf] Could not allocate memory \n");
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return NULL;
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}
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af->data->len = max_output_len;
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}
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l = af->data; // Local data
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buf = (char *)l->audio;
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src = (char *)c->audio;
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left = c->len;
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while (left > 0) {
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if (left + s->pending_len < s->expect_len) {
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memcpy(s->pending_data + s->pending_len, src, left);
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src += left;
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s->pending_len += left;
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left = 0;
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break;
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}
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dest = s->add_iec61937_header ? buf + 8 : buf;
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destsize = (char *)l->audio + l->len - buf;
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if (s->pending_len) {
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int needs = s->expect_len - s->pending_len;
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if (needs > 0) {
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memcpy(s->pending_data + s->pending_len, src, needs);
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src += needs;
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left -= needs;
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}
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if (c->nch >= 5)
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reorder_channel_nch(s->pending_data,
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AF_CHANNEL_LAYOUT_MPLAYER_DEFAULT,
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AF_CHANNEL_LAYOUT_LAVC_AC3_DEFAULT,
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c->nch,
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s->expect_len / 2, 2);
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len = avcodec_encode_audio(s->lavc_actx, dest, destsize,
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(void *)s->pending_data);
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s->pending_len = 0;
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}
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else {
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if (c->nch >= 5)
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reorder_channel_nch(src,
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AF_CHANNEL_LAYOUT_MPLAYER_DEFAULT,
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AF_CHANNEL_LAYOUT_LAVC_AC3_DEFAULT,
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c->nch,
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s->expect_len / 2, 2);
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len = avcodec_encode_audio(s->lavc_actx,dest,destsize,(void *)src);
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src += s->expect_len;
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left -= s->expect_len;
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}
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af_msg(AF_MSG_DEBUG0, "avcodec_encode_audio got %d, pending %d.\n",
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len, s->pending_len);
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if (s->add_iec61937_header) {
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int16_t *out = (int16_t *)buf;
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int bsmod = dest[5] & 0x7;
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#ifndef WORDS_BIGENDIAN
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int i;
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char tmp;
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for (i = 0; i < len; i += 2) {
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tmp = dest[i];
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dest[i] = dest[i+1];
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dest[i+1] = tmp;
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}
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if (len & 1) {
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dest[len] = dest[len-1];
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dest[len-1] = 0;
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len++;
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}
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#endif
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out[0] = 0xF872; // iec 61937 syncword 1
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out[1] = 0x4E1F; // iec 61937 syncword 2
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out[2] = 0x0001; // data-type ac3
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out[2] |= bsmod << 8; // bsmod
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out[3] = len << 3; // number of bits in payload
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memset(buf + 8 + len, 0, AC3_FRAME_SIZE * 2 * 2 - 8 - len);
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len = AC3_FRAME_SIZE * 2 * 2;
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}
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outsize += len;
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buf += len;
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}
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c->audio = l->audio;
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c->nch = 2;
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c->bps = 2;
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c->len = outsize;
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af_msg(AF_MSG_DEBUG0, "play return size %d, pending %d\n",
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outsize, s->pending_len);
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return c;
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}
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static int af_open(af_instance_t* af){
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af_ac3enc_t *s = calloc(1,sizeof(af_ac3enc_t));
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int pending_space = 2 * AC3_MAX_CHANNELS * AC3_FRAME_SIZE;
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s->pending_data = calloc(pending_space, sizeof(char));
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af->control=control;
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af->uninit=uninit;
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af->play=play;
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af->mul=1;
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af->data=calloc(1,sizeof(af_data_t));
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af->setup=s;
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if (!avcodec_initialized){
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avcodec_init();
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avcodec_register_all();
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avcodec_initialized=1;
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}
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s->lavc_acodec = avcodec_find_encoder_by_name("ac3");
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if (!s->lavc_acodec) {
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af_msg(AF_MSG_ERROR, MSGTR_LavcAudioCodecNotFound, "ac3");
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return AF_ERROR;
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}
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s->lavc_actx = avcodec_alloc_context();
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if (!s->lavc_actx) {
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af_msg(AF_MSG_ERROR, MSGTR_CouldntAllocateLavcContext);
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return AF_ERROR;
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}
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return AF_OK;
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}
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af_info_t af_info_lavcac3enc = {
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"runtime encode to ac3 using libavcodec",
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"lavcac3enc",
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"Ulion",
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"",
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AF_FLAGS_REENTRANT,
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af_open
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};
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