503 lines
12 KiB
C
503 lines
12 KiB
C
/******************************************************************************
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Copyright (C) 2014 by Hugh Bailey <obs.jim@gmail.com>
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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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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, see <http://www.gnu.org/licenses/>.
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******************************************************************************/
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#include <obs.h>
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#include <stdio.h>
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#include <util/dstr.h>
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#include <util/array-serializer.h>
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#include "flv-mux.h"
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#include "obs-output-ver.h"
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#include "rtmp-helpers.h"
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/* TODO: FIXME: this is currently hard-coded to h264 and aac! ..not that we'll
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* use anything else for a long time. */
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//#define DEBUG_TIMESTAMPS
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//#define WRITE_FLV_HEADER
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#define VIDEO_HEADER_SIZE 5
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#define VIDEODATA_AVCVIDEOPACKET 7.0
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#define AUDIODATA_AAC 10.0
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static inline double encoder_bitrate(obs_encoder_t *encoder)
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{
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obs_data_t *settings = obs_encoder_get_settings(encoder);
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double bitrate = obs_data_get_double(settings, "bitrate");
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obs_data_release(settings);
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return bitrate;
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}
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#define FLV_INFO_SIZE_OFFSET 42
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void write_file_info(FILE *file, int64_t duration_ms, int64_t size)
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{
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char buf[64];
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char *enc = buf;
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char *end = enc + sizeof(buf);
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fseek(file, FLV_INFO_SIZE_OFFSET, SEEK_SET);
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enc_num_val(&enc, end, "duration", (double)duration_ms / 1000.0);
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enc_num_val(&enc, end, "fileSize", (double)size);
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fwrite(buf, 1, enc - buf, file);
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}
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static void build_flv_meta_data(obs_output_t *context, uint8_t **output,
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size_t *size)
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{
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obs_encoder_t *vencoder = obs_output_get_video_encoder(context);
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obs_encoder_t *aencoder = obs_output_get_audio_encoder(context, 0);
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video_t *video = obs_encoder_video(vencoder);
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audio_t *audio = obs_encoder_audio(aencoder);
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char buf[4096];
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char *enc = buf;
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char *end = enc + sizeof(buf);
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struct dstr encoder_name = {0};
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enc_str(&enc, end, "@setDataFrame");
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enc_str(&enc, end, "onMetaData");
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*enc++ = AMF_ECMA_ARRAY;
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enc = AMF_EncodeInt32(enc, end, 20);
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enc_num_val(&enc, end, "duration", 0.0);
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enc_num_val(&enc, end, "fileSize", 0.0);
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enc_num_val(&enc, end, "width",
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(double)obs_encoder_get_width(vencoder));
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enc_num_val(&enc, end, "height",
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(double)obs_encoder_get_height(vencoder));
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enc_num_val(&enc, end, "videocodecid", VIDEODATA_AVCVIDEOPACKET);
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enc_num_val(&enc, end, "videodatarate", encoder_bitrate(vencoder));
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enc_num_val(&enc, end, "framerate", video_output_get_frame_rate(video));
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enc_num_val(&enc, end, "audiocodecid", AUDIODATA_AAC);
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enc_num_val(&enc, end, "audiodatarate", encoder_bitrate(aencoder));
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enc_num_val(&enc, end, "audiosamplerate",
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(double)obs_encoder_get_sample_rate(aencoder));
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enc_num_val(&enc, end, "audiosamplesize", 16.0);
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enc_num_val(&enc, end, "audiochannels",
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(double)audio_output_get_channels(audio));
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enc_bool_val(&enc, end, "stereo",
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audio_output_get_channels(audio) == 2);
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enc_bool_val(&enc, end, "2.1", audio_output_get_channels(audio) == 3);
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enc_bool_val(&enc, end, "3.1", audio_output_get_channels(audio) == 4);
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enc_bool_val(&enc, end, "4.0", audio_output_get_channels(audio) == 4);
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enc_bool_val(&enc, end, "4.1", audio_output_get_channels(audio) == 5);
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enc_bool_val(&enc, end, "5.1", audio_output_get_channels(audio) == 6);
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enc_bool_val(&enc, end, "7.1", audio_output_get_channels(audio) == 8);
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dstr_printf(&encoder_name, "%s (libobs version ", MODULE_NAME);
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#ifdef HAVE_OBSCONFIG_H
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dstr_cat(&encoder_name, OBS_VERSION);
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#else
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dstr_catf(&encoder_name, "%d.%d.%d", LIBOBS_API_MAJOR_VER,
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LIBOBS_API_MINOR_VER, LIBOBS_API_PATCH_VER);
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#endif
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dstr_cat(&encoder_name, ")");
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enc_str_val(&enc, end, "encoder", encoder_name.array);
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dstr_free(&encoder_name);
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*enc++ = 0;
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*enc++ = 0;
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*enc++ = AMF_OBJECT_END;
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*size = enc - buf;
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*output = bmemdup(buf, *size);
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}
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void flv_meta_data(obs_output_t *context, uint8_t **output, size_t *size,
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bool write_header)
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{
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struct array_output_data data;
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struct serializer s;
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uint8_t *meta_data = NULL;
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size_t meta_data_size;
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uint32_t start_pos;
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array_output_serializer_init(&s, &data);
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build_flv_meta_data(context, &meta_data, &meta_data_size);
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if (write_header) {
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s_write(&s, "FLV", 3);
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s_w8(&s, 1);
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s_w8(&s, 5);
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s_wb32(&s, 9);
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s_wb32(&s, 0);
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}
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start_pos = serializer_get_pos(&s);
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s_w8(&s, RTMP_PACKET_TYPE_INFO);
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s_wb24(&s, (uint32_t)meta_data_size);
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s_wb32(&s, 0);
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s_wb24(&s, 0);
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s_write(&s, meta_data, meta_data_size);
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s_wb32(&s, (uint32_t)serializer_get_pos(&s) - start_pos - 1);
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*output = data.bytes.array;
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*size = data.bytes.num;
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bfree(meta_data);
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}
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#ifdef DEBUG_TIMESTAMPS
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static int32_t last_time = 0;
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#endif
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static void flv_video(struct serializer *s, int32_t dts_offset,
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struct encoder_packet *packet, bool is_header)
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{
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int64_t offset = packet->pts - packet->dts;
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int32_t time_ms = get_ms_time(packet, packet->dts) - dts_offset;
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if (!packet->data || !packet->size)
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return;
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s_w8(s, RTMP_PACKET_TYPE_VIDEO);
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#ifdef DEBUG_TIMESTAMPS
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blog(LOG_DEBUG, "Video: %lu", time_ms);
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if (last_time > time_ms)
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blog(LOG_DEBUG, "Non-monotonic");
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last_time = time_ms;
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#endif
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s_wb24(s, (uint32_t)packet->size + 5);
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s_wb24(s, time_ms);
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s_w8(s, (time_ms >> 24) & 0x7F);
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s_wb24(s, 0);
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/* these are the 5 extra bytes mentioned above */
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s_w8(s, packet->keyframe ? 0x17 : 0x27);
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s_w8(s, is_header ? 0 : 1);
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s_wb24(s, get_ms_time(packet, offset));
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s_write(s, packet->data, packet->size);
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/* write tag size (starting byte doesn't count) */
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s_wb32(s, (uint32_t)serializer_get_pos(s) - 1);
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}
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static void flv_audio(struct serializer *s, int32_t dts_offset,
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struct encoder_packet *packet, bool is_header)
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{
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int32_t time_ms = get_ms_time(packet, packet->dts) - dts_offset;
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if (!packet->data || !packet->size)
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return;
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s_w8(s, RTMP_PACKET_TYPE_AUDIO);
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#ifdef DEBUG_TIMESTAMPS
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blog(LOG_DEBUG, "Audio: %lu", time_ms);
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if (last_time > time_ms)
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blog(LOG_DEBUG, "Non-monotonic");
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last_time = time_ms;
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#endif
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s_wb24(s, (uint32_t)packet->size + 2);
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s_wb24(s, time_ms);
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s_w8(s, (time_ms >> 24) & 0x7F);
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s_wb24(s, 0);
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/* these are the two extra bytes mentioned above */
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s_w8(s, 0xaf);
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s_w8(s, is_header ? 0 : 1);
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s_write(s, packet->data, packet->size);
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/* write tag size (starting byte doesn't count) */
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s_wb32(s, (uint32_t)serializer_get_pos(s) - 1);
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}
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void flv_packet_mux(struct encoder_packet *packet, int32_t dts_offset,
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uint8_t **output, size_t *size, bool is_header)
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{
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struct array_output_data data;
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struct serializer s;
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array_output_serializer_init(&s, &data);
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if (packet->type == OBS_ENCODER_VIDEO)
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flv_video(&s, dts_offset, packet, is_header);
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else
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flv_audio(&s, dts_offset, packet, is_header);
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*output = data.bytes.array;
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*size = data.bytes.num;
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}
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/* ------------------------------------------------------------------------- */
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/* stuff for additional media streams */
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#define s_amf_conststring(s, str) \
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do { \
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const size_t len = sizeof(str) - 1; \
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s_wb16(s, (uint16_t)len); \
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serialize(s, str, len); \
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} while (false)
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#define s_amf_double(s, d) \
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do { \
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double d_val = d; \
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uint64_t u_val = *(uint64_t *)&d_val; \
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s_wb64(s, u_val); \
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} while (false)
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static void flv_build_additional_meta_data(uint8_t **data, size_t *size)
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{
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struct array_output_data out;
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struct serializer s;
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array_output_serializer_init(&s, &out);
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s_w8(&s, AMF_STRING);
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s_amf_conststring(&s, "@setDataFrame");
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s_w8(&s, AMF_STRING);
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s_amf_conststring(&s, "onExpectAdditionalMedia");
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s_w8(&s, AMF_OBJECT);
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{
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s_amf_conststring(&s, "processingIntents");
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s_w8(&s, AMF_STRICT_ARRAY);
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s_wb32(&s, 1);
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{
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s_w8(&s, AMF_STRING);
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s_amf_conststring(&s, "ArchiveProgramNarrationAudio");
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}
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/* ---- */
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s_amf_conststring(&s, "additionalMedia");
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s_w8(&s, AMF_OBJECT);
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{
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s_amf_conststring(&s, "stream0");
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s_w8(&s, AMF_OBJECT);
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{
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s_amf_conststring(&s, "type");
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s_w8(&s, AMF_NUMBER);
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s_amf_double(&s, RTMP_PACKET_TYPE_AUDIO);
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/* ---- */
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s_amf_conststring(&s, "mediaLabels");
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s_w8(&s, AMF_OBJECT);
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{
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s_amf_conststring(&s, "contentType");
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s_w8(&s, AMF_STRING);
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s_amf_conststring(&s, "PNAR");
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}
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s_wb24(&s, AMF_OBJECT_END);
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}
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s_wb24(&s, AMF_OBJECT_END);
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}
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s_wb24(&s, AMF_OBJECT_END);
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/* ---- */
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s_amf_conststring(&s, "defaultMedia");
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s_w8(&s, AMF_OBJECT);
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{
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s_amf_conststring(&s, "audio");
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s_w8(&s, AMF_OBJECT);
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{
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s_amf_conststring(&s, "mediaLabels");
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s_w8(&s, AMF_OBJECT);
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{
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s_amf_conststring(&s, "contentType");
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s_w8(&s, AMF_STRING);
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s_amf_conststring(&s, "PRM");
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}
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s_wb24(&s, AMF_OBJECT_END);
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}
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s_wb24(&s, AMF_OBJECT_END);
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}
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s_wb24(&s, AMF_OBJECT_END);
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}
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s_wb24(&s, AMF_OBJECT_END);
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*data = out.bytes.array;
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*size = out.bytes.num;
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}
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void flv_additional_meta_data(obs_output_t *context, uint8_t **data,
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size_t *size)
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{
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UNUSED_PARAMETER(context);
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struct array_output_data out;
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struct serializer s;
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uint8_t *meta_data = NULL;
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size_t meta_data_size;
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flv_build_additional_meta_data(&meta_data, &meta_data_size);
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array_output_serializer_init(&s, &out);
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s_w8(&s, RTMP_PACKET_TYPE_INFO); //18
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s_wb24(&s, (uint32_t)meta_data_size);
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s_wb32(&s, 0);
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s_wb24(&s, 0);
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s_write(&s, meta_data, meta_data_size);
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bfree(meta_data);
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s_wb32(&s, (uint32_t)serializer_get_pos(&s) - 1);
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*data = out.bytes.array;
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*size = out.bytes.num;
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}
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static inline void s_u29(struct serializer *s, uint32_t val)
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{
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if (val <= 0x7F) {
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s_w8(s, val);
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} else if (val <= 0x3FFF) {
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s_w8(s, 0x80 | (val >> 7));
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s_w8(s, val & 0x7F);
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} else if (val <= 0x1FFFFF) {
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s_w8(s, 0x80 | (val >> 14));
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s_w8(s, 0x80 | ((val >> 7) & 0x7F));
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s_w8(s, val & 0x7F);
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} else {
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s_w8(s, 0x80 | (val >> 22));
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s_w8(s, 0x80 | ((val >> 15) & 0x7F));
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s_w8(s, 0x80 | ((val >> 8) & 0x7F));
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s_w8(s, val & 0xFF);
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}
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}
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static inline void s_u29b_value(struct serializer *s, uint32_t val)
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{
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s_u29(s, 1 | ((val & 0xFFFFFFF) << 1));
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}
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static void flv_build_additional_audio(uint8_t **data, size_t *size,
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struct encoder_packet *packet,
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bool is_header, size_t index)
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{
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UNUSED_PARAMETER(index);
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struct array_output_data out;
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struct serializer s;
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array_output_serializer_init(&s, &out);
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s_w8(&s, AMF_STRING);
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s_amf_conststring(&s, "additionalMedia");
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s_w8(&s, AMF_OBJECT);
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{
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s_amf_conststring(&s, "id");
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s_w8(&s, AMF_STRING);
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s_amf_conststring(&s, "stream0");
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/* ----- */
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s_amf_conststring(&s, "media");
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s_w8(&s, AMF_AVMPLUS);
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s_w8(&s, AMF3_BYTE_ARRAY);
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s_u29b_value(&s, (uint32_t)packet->size + 2);
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s_w8(&s, 0xaf);
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s_w8(&s, is_header ? 0 : 1);
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s_write(&s, packet->data, packet->size);
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}
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s_wb24(&s, AMF_OBJECT_END);
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*data = out.bytes.array;
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*size = out.bytes.num;
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}
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static void flv_additional_audio(struct serializer *s, int32_t dts_offset,
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struct encoder_packet *packet, bool is_header,
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size_t index)
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{
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int32_t time_ms = get_ms_time(packet, packet->dts) - dts_offset;
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uint8_t *data;
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size_t size;
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if (!packet->data || !packet->size)
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return;
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flv_build_additional_audio(&data, &size, packet, is_header, index);
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s_w8(s, RTMP_PACKET_TYPE_INFO); //18
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#ifdef DEBUG_TIMESTAMPS
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blog(LOG_DEBUG, "Audio2: %lu", time_ms);
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if (last_time > time_ms)
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blog(LOG_DEBUG, "Non-monotonic");
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last_time = time_ms;
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#endif
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s_wb24(s, (uint32_t)size);
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s_wb24(s, time_ms);
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s_w8(s, (time_ms >> 24) & 0x7F);
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s_wb24(s, 0);
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serialize(s, data, size);
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bfree(data);
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s_wb32(s, (uint32_t)serializer_get_pos(s) - 1);
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}
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void flv_additional_packet_mux(struct encoder_packet *packet,
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int32_t dts_offset, uint8_t **data, size_t *size,
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bool is_header, size_t index)
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{
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struct array_output_data out;
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struct serializer s;
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array_output_serializer_init(&s, &out);
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if (packet->type == OBS_ENCODER_VIDEO) {
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//currently unsupported
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bcrash("who said you could output an additional video packet?");
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} else {
|
|
flv_additional_audio(&s, dts_offset, packet, is_header, index);
|
|
}
|
|
|
|
*data = out.bytes.array;
|
|
*size = out.bytes.num;
|
|
}
|