520 lines
15 KiB
C
520 lines
15 KiB
C
// ITU-T H.222.0(06/2012)
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// Information technology - Generic coding of moving pictures and associated audio information: Systems
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// 2.5.3.1 Program stream(p74)
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#include <stdio.h>
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#include <stdlib.h>
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#include "mpeg-ps.h"
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#include "mpeg-ps-internal.h"
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#include "mpeg-pes-internal.h"
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#include "mpeg-util.h"
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#include <assert.h>
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#include <string.h>
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#include <stdbool.h>
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#include <errno.h>
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#define N_BUFFER_INIT 256
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#define N_BUFFER_MAX (512*1024)
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#define N_BUFFER_INC (8000)
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enum ps_demuxer_state_t
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{
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PS_DEMUXER_STATE_START = 0,
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PS_DEMUXER_STATE_DATA,
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};
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struct ps_demuxer_t
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{
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struct psm_t psm;
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struct psd_t psd;
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struct ps_pack_header_t pkhd;
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struct ps_system_header_t system;
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enum ps_demuxer_state_t state;
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struct pes_t* pes;
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size_t pes_length;
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struct
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{
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uint8_t* ptr;
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size_t len, cap;
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} buffer;
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int start;
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int sync;
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ps_demuxer_onpacket onpacket;
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void* param;
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struct ps_demuxer_notify_t notify;
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void* notify_param;
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uint32_t ver; // psm notify version
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};
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static void ps_demuxer_notify(struct ps_demuxer_t* ps);
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static int ps_demuxer_find_startcode(struct mpeg_bits_t *reader)
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{
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uint8_t v8;
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size_t zeros;
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zeros = 0;
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while (1)
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{
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v8 = mpeg_bits_read8(reader);
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if (0 != mpeg_bits_error(reader))
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break;
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if (0x01 == v8 && zeros >= 2)
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return 0;
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zeros = 0x00 != v8 ? 0 : (zeros + 1);
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}
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return -1;
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}
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#if defined(MPEG_ZERO_PAYLOAD_LENGTH)
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static int ps_demuxer_find_pes_start(struct mpeg_bits_t* reader)
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{
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size_t origin, offset;
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origin = mpeg_bits_tell(reader);
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while (0 == mpeg_bits_error(reader))
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{
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if (0 != ps_demuxer_find_startcode(reader))
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break;
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offset = mpeg_bits_tell(reader);
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if (PES_SID_START == mpeg_bits_read8(reader) && 0 == mpeg_bits_error(reader))
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{
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mpeg_bits_seek(reader, origin);
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return (int)(offset - origin - 3);
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}
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mpeg_bits_seek(reader, offset); // restore
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}
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mpeg_bits_seek(reader, origin);
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return -1;
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}
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#endif
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static int ps_sync_start_probe(struct mpeg_bits_t* reader)
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{
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if (0x000001 == mpeg_bits_tryread(reader, 3))
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return MPEG_ERROR_OK;
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if (mpeg_bits_tell(reader) + 3 > mpeg_bits_length(reader))
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return MPEG_ERROR_NEED_MORE_DATA;
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return MPEG_ERROR_INVALID_DATA;
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}
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static int ps_demuxer_onpes(void* param, int program, int stream, int codecid, int flags, int64_t pts, int64_t dts, const void* data, size_t bytes)
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{
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struct ps_demuxer_t* ps;
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ps = (struct ps_demuxer_t*)param;
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assert(0 == program); // unused(ts demux only)
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return ps->onpacket(ps->param, stream, codecid, flags, pts, dts, data, bytes);
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}
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static struct pes_t* psm_fetch(struct psm_t* psm, uint8_t sid)
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{
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size_t i;
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for (i = 0; i < psm->stream_count; ++i)
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{
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if (psm->streams[i].sid == sid)
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return &psm->streams[i];
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}
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if (psm->stream_count < sizeof(psm->streams) / sizeof(psm->streams[0]))
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{
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// '110x xxxx'
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// ISO/IEC 13818-3 or ISO/IEC 11172-3 or ISO/IEC 13818-7 or
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// ISO/IEC 14496-3 or ISO/IEC 23008-3 audio stream number 'x xxxx'
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// '1110 xxxx'
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// Rec. ITU-T H.262 | ISO/IEC 13818-2, ISO/IEC 11172-2, ISO/IEC 14496-2,
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// Rec. ITU-T H.264 | ISO/IEC 14496-10 or
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// Rec. ITU-T H.265 | ISO/IEC 23008-2 video stream number 'xxxx'
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// guess stream codec id
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#if defined(MPEG_GUESS_STREAM) || defined(MPEG_H26X_VERIFY)
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if (0xE0 <= sid && sid <= 0xEF)
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{
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psm->streams[psm->stream_count].pid = sid;
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psm->streams[psm->stream_count].codecid = PSI_STREAM_RESERVED; // unknown
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return &psm->streams[psm->stream_count++];
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}
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#endif
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#if defined(MPEG_GUESS_STREAM)
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if(0xC0 <= sid && sid <= 0xDF)
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{
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psm->streams[psm->stream_count].pid = sid;
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psm->streams[psm->stream_count].codecid = PSI_STREAM_AAC;
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return &psm->streams[psm->stream_count++];
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}
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#endif
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}
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return NULL;
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}
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static int ps_demuxer_packet(struct ps_demuxer_t *ps, const uint8_t* data, size_t bytes, size_t *consume)
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{
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int r;
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struct pes_t* pes;
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pes = ps->pes;
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#if defined(MPEG_LIVING_VIDEO_FRAME_DEMUX)
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// video packet size > 0xFFFF, split by pts/dts
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if (PES_SID_VIDEO == pes->sid
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&& PSI_STREAM_H264 != pes->codecid && PSI_STREAM_H265 != pes->codecid && PSI_STREAM_H266 != pes->codecid
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&& (pes->pkt.size > 0 || pes->len + pes->PES_header_data_length + 3 == 0xFFFF))
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pes->len = 0;
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#endif
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pes->flags = pes->data_alignment_indicator ? MPEG_FLAG_IDR_FRAME : 0;
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r = pes_packet(&pes->pkt, pes, data, bytes, consume, ps->start, ps_demuxer_onpes, ps);
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ps->start = 0; // clear start flags
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return r;
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}
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static int ps_demuxer_skip(struct ps_demuxer_t* ps, struct mpeg_bits_t* reader, uint8_t v8)
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{
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// '110x xxxx' ISO/IEC 13818-3 or ISO/IEC 11172-3 or ISO/IEC 13818-7 or ISO/IEC 14496-3 or ISO/IEC 23008-3 audio stream number 'x xxxx'
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// '1110 xxxx' Rec. ITU-T H.262 | ISO/IEC 13818-2, ISO/IEC 11172-2, ISO/IEC 14496-2, Rec. ITU-T H.264 | ISO/IEC 14496-10, Rec. ITU-T H.265 | ISO/IEC 23008-2, Rec. ITU-T H.266 | ISO/IEC 23090-3 or ISO/IEC 23094-1 video stream number 'xxxx'
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// '1111 1101' extended_stream_id
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if ((v8 >= 0xC0 && v8 <= 0xDF) || (v8 >= 0xE0 && v8 <= 0xEF) || v8 == PES_SID_PRIVATE_1 || v8 == 0xFD)
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{
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// skip PES
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mpeg_bits_skip(reader, mpeg_bits_read16(reader));
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if (mpeg_bits_error(reader))
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return MPEG_ERROR_NEED_MORE_DATA;
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}
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else
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{
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// backward 1-step
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mpeg_bits_seek(reader, mpeg_bits_tell(reader) - 1);
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assert(0 == mpeg_bits_error(reader));
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ps->sync = 0; // wait for next start packet
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}
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return MPEG_ERROR_OK;
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}
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static int ps_demuxer_header(struct ps_demuxer_t* ps, struct mpeg_bits_t* reader)
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{
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int r;
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size_t n;
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size_t off;
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uint8_t v8;
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struct pes_t* pes;
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for (off = mpeg_bits_tell(reader); 0 == ps_demuxer_find_startcode(reader); off = mpeg_bits_tell(reader))
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{
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r = MPEG_ERROR_OK;
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v8 = mpeg_bits_read8(reader);
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if (mpeg_bits_error(reader))
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break;
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if (!ps->sync && v8 != PES_SID_START)
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{
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// backward 1-step
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mpeg_bits_seek(reader, mpeg_bits_tell(reader) - 1);
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assert(0 == mpeg_bits_error(reader));
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continue; // wait for 00 00 01 BA
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}
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// fix HIK H.265: 00 00 01 BA 00 00 01 E0 ...
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if (0x000001 == (mpeg_bits_tryread(reader, 3) & 0xFFFFFF))
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continue;
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switch (v8)
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{
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case PES_SID_START:
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r = pack_header_read(&ps->pkhd, reader);
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r = MPEG_ERROR_OK == r ? ps_sync_start_probe(reader) : r;
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ps->start = MPEG_ERROR_OK == r ? 1 : ps->start;
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ps->sync = MPEG_ERROR_OK == r ? 1 : 0;
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break;
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case PES_SID_SYS:
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r = system_header_read(&ps->system, reader);
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break;
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case PES_SID_END:
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r = MPEG_ERROR_OK;
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break;
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case PES_SID_PSM:
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n = ps->psm.stream_count;
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r = psm_read(&ps->psm, reader);
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if (n != ps->psm.stream_count || ps->ver != ps->psm.ver)
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ps_demuxer_notify(ps); // TODO: check psm stream sid
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ps->ver = ps->psm.ver;
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break;
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case PES_SID_PSD:
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r = psd_read(&ps->psd, reader);
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break;
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case PES_SID_PRIVATE_2:
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case PES_SID_ECM:
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case PES_SID_EMM:
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case PES_SID_DSMCC:
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case PES_SID_H222_E:
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// stream data
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case PES_SID_PADDING:
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// padding
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mpeg_bits_skip(reader, mpeg_bits_read16(reader));
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r = mpeg_bits_error(reader) ? MPEG_ERROR_NEED_MORE_DATA : MPEG_ERROR_OK;
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break;
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// ffmpeg mpeg.c mpegps_read_pes_header
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//case 0x1c0:
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//case 0x1df:
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//case 0x1e0:
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//case 0x1ef:
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//case 0x1bd:
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//case 0x01fd:
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// break;
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default:
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pes = psm_fetch(&ps->psm, v8);
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if (pes)
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{
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pes->sid = v8;
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r = ps->pkhd.mpeg2 ? pes_read_header(pes, reader) : pes_read_mpeg1_header(pes, reader);
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if (MPEG_ERROR_OK == r)
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{
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#if defined(MPEG_ZERO_PAYLOAD_LENGTH)
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// fix H.264/H.265 ps payload zero-length
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if (0 == pes->len && 0xE0 <= pes->sid && pes->sid <= 0xEF)
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{
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r = ps_demuxer_find_pes_start(reader);
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if (-1 == r)
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return (int)off;
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pes->len = r;
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r = MPEG_ERROR_OK;
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}
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#endif
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ps->pes = pes;
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ps->pes_length = 0; // init
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ps->state = PS_DEMUXER_STATE_DATA; // next state: handle packet
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return (int)mpeg_bits_tell(reader);
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}
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}
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else // pes == NULL
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{
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r = ps_demuxer_skip(ps, reader, v8);
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}
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break;
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}
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if (r < 0)
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return r; // user handler error
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else if (r == MPEG_ERROR_NEED_MORE_DATA)
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break;
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}
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return (int)off;
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}
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static int ps_demuxer_buffer(struct ps_demuxer_t* ps, const uint8_t* data, size_t bytes)
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{
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void* ptr;
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if (ps->buffer.len + bytes > ps->buffer.cap)
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{
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if (ps->buffer.len + bytes > N_BUFFER_MAX)
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return -E2BIG;
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ptr = realloc(ps->buffer.ptr == (uint8_t*)(ps + 1) ? NULL : ps->buffer.ptr, ps->buffer.len + bytes + N_BUFFER_INC);
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if (!ptr)
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return -ENOMEM;
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if (ps->buffer.ptr == (uint8_t*)(ps + 1))
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memcpy(ptr, ps->buffer.ptr, ps->buffer.len);
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ps->buffer.ptr = (uint8_t*)ptr;
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ps->buffer.cap = ps->buffer.len + bytes + N_BUFFER_INC;
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}
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memmove(ps->buffer.ptr + ps->buffer.len, data, bytes);
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ps->buffer.len += bytes;
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return 0;
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}
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int ps_demuxer_input(struct ps_demuxer_t* ps, const uint8_t* data, size_t bytes)
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{
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int r;
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size_t i, consume;
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struct mpeg_bits_t reader;
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for(i = 0; i < bytes; )
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{
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switch (ps->state)
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{
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case PS_DEMUXER_STATE_START:
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mpeg_bits_init2(&reader, ps->buffer.ptr, ps->buffer.len, data + i, bytes - i);
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r = ps_demuxer_header(ps, &reader);
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if (r >= 0)
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{
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assert(r <= ps->buffer.len + (bytes - i));
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if (r >= ps->buffer.len)
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{
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r -= (int)ps->buffer.len;
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i += r;
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ps->buffer.len = 0;
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}
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else if(r > 0)
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{
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memmove(ps->buffer.ptr, ps->buffer.ptr + r, ps->buffer.len - r);
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ps->buffer.len -= r;
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}
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else
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{
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assert(0 == r);
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}
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if (PS_DEMUXER_STATE_START == ps->state && i < bytes)
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{
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// stash buffer
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r = ps_demuxer_buffer(ps, data + i, bytes - i);
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return 0 == r ? (int)bytes : r;
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}
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}
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break;
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case PS_DEMUXER_STATE_DATA:
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assert(ps->pes && ps->pes_length <= ps->pes->len);
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// cache
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if (ps->buffer.len > 0)
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{
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if (ps->buffer.len >= ps->pes->len - ps->pes_length)
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{
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r = ps_demuxer_packet(ps, ps->buffer.ptr, ps->pes->len - ps->pes_length, &consume);
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memmove(ps->buffer.ptr, ps->buffer.ptr + consume, ps->buffer.len - consume);
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ps->buffer.len -= consume; // ps->pes->len - ps->pes_length; // fix: pack start code in video data
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ps->pes_length = 0;
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ps->start = 0; // clear start flag
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ps->state = PS_DEMUXER_STATE_START; // next round
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//next round
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}
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else
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{
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// need more data
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r = ps_demuxer_packet(ps, ps->buffer.ptr, ps->buffer.len, &consume);
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ps->pes_length = consume == ps->buffer.len ? ps->pes_length + consume : 0;
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ps->start = consume == ps->buffer.len ? ps->start : 0;
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ps->state = consume == ps->buffer.len ? ps->state : PS_DEMUXER_STATE_START;
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ps->buffer.len = 0; // clear
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// fall through
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}
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}
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if (PS_DEMUXER_STATE_DATA == ps->state)
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{
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if (bytes - i >= ps->pes->len - ps->pes_length)
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{
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r = ps_demuxer_packet(ps, data + i, ps->pes->len - ps->pes_length, &consume);
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i += consume; // ps->pes->len - ps->pes_length; // fix: pack start code in video data
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ps->pes_length = 0;
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ps->start = 0; // clear start flag
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ps->state = PS_DEMUXER_STATE_START; // next round
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}
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else
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{
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// need more data
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r = ps_demuxer_packet(ps, data + i, bytes - i, &consume);
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ps->pes_length = consume == bytes - i ? ps->pes_length + (bytes - i) : 0;
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ps->start = consume == bytes - i ? ps->start : 0;
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ps->state = consume == bytes - i ? ps->state : PS_DEMUXER_STATE_START;
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i += consume; //i = bytes; // fix: pack start code in video data
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}
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}
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break;
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default:
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assert(0);
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return -1;
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}
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if (r < 0)
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{
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ps->state = PS_DEMUXER_STATE_START; // skip error, try find next start code
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ps->buffer.len = 0; // clear buffer
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return r;
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}
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}
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return (int)bytes;
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}
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struct ps_demuxer_t* ps_demuxer_create(ps_demuxer_onpacket onpacket, void* param)
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{
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struct ps_demuxer_t* ps;
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ps = calloc(1, sizeof(struct ps_demuxer_t) + N_BUFFER_INIT);
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if(!ps)
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return NULL;
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ps->state = PS_DEMUXER_STATE_START;
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ps->pkhd.mpeg2 = 1;
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ps->onpacket = onpacket;
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ps->param = param;
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ps->buffer.ptr = (uint8_t*)(ps + 1);
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ps->buffer.cap = N_BUFFER_INIT;
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ps->ver = 0xFFFFFFFF; // fix: guest stream add stream internal, alway notify on firstly
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return ps;
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}
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int ps_demuxer_destroy(struct ps_demuxer_t* ps)
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{
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size_t i;
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struct pes_t* pes;
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for (i = 0; i < ps->psm.stream_count; i++)
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{
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pes = &ps->psm.streams[i];
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if (pes->pkt.data)
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free(pes->pkt.data);
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pes->pkt.data = NULL;
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}
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if (ps->buffer.ptr != (uint8_t*)(ps + 1))
|
|
{
|
|
assert(ps->buffer.cap > N_BUFFER_INIT);
|
|
free(ps->buffer.ptr);
|
|
ps->buffer.ptr = NULL;
|
|
}
|
|
free(ps);
|
|
return 0;
|
|
}
|
|
|
|
void ps_demuxer_set_notify(struct ps_demuxer_t* ps, struct ps_demuxer_notify_t *notify, void* param)
|
|
{
|
|
ps->notify_param = param;
|
|
memcpy(&ps->notify, notify, sizeof(ps->notify));
|
|
}
|
|
|
|
static void ps_demuxer_notify(struct ps_demuxer_t* ps)
|
|
{
|
|
size_t i;
|
|
struct pes_t* pes;
|
|
if (!ps->notify.onstream)
|
|
return;
|
|
|
|
for (i = 0; i < ps->psm.stream_count; i++)
|
|
{
|
|
pes = &ps->psm.streams[i];
|
|
ps->notify.onstream(ps->notify_param, pes->pid, pes->codecid, pes->esinfo, pes->esinfo_len, i + 1 >= ps->psm.stream_count ? 1 : 0);
|
|
}
|
|
}
|