Commit b9ad0094 authored by d s's avatar d s Committed by Michael Niedermayer

AviSynth demuxer rewrite.

Dynamically loads the library itself, rather than through VfW.
Supports AvxSynth on Linux and OS X.

Supports the new colorspaces added in AviSynth 2.6 when used
with AviSynth 2.6.
parent 47540c8a
...@@ -3917,7 +3917,9 @@ for func in $MATH_FUNCS; do ...@@ -3917,7 +3917,9 @@ for func in $MATH_FUNCS; do
done done
# these are off by default, so fail if requested and not available # these are off by default, so fail if requested and not available
enabled avisynth && require2 vfw32 "windows.h vfw.h" AVIFileInit -lavifil32 enabled avisynth && { { check_lib2 "windows.h" LoadLibrary; } ||
{ check_lib2 "dlfcn.h" dlopen -ldl; } ||
die "ERROR: LoadLibrary/dlopen not found for avisynth"; }
enabled fontconfig && require_pkg_config fontconfig "fontconfig/fontconfig.h" FcInit enabled fontconfig && require_pkg_config fontconfig "fontconfig/fontconfig.h" FcInit
enabled frei0r && { check_header frei0r.h || die "ERROR: frei0r.h header not found"; } enabled frei0r && { check_header frei0r.h || die "ERROR: frei0r.h header not found"; }
enabled gnutls && require_pkg_config gnutls gnutls/gnutls.h gnutls_global_init enabled gnutls && require_pkg_config gnutls gnutls/gnutls.h gnutls_global_init
......
/* /*
* AVISynth support * Avi/AvxSynth support
* Copyright (c) 2006 DivX, Inc. * Copyright (c) 2012 AvxSynth Team.
*
* This file is part of FFmpeg.
* *
* This file is part of FFmpeg
* FFmpeg is free software; you can redistribute it and/or * FFmpeg is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public * modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either * License as published by the Free Software Foundation; either
...@@ -21,214 +20,619 @@ ...@@ -21,214 +20,619 @@
#include "avformat.h" #include "avformat.h"
#include "internal.h" #include "internal.h"
#include "riff.h" #include "libavcodec/internal.h"
// Enable function pointer definitions for runtime loading.
#define AVSC_NO_DECLSPEC
// Shut up ffmpeg error messages.
// avisynth_c.h contains inline functions that call these functions.
#undef malloc
#undef free
#undef printf
// Platform-specific directives for AviSynth vs AvxSynth.
#ifdef _WIN32
#include <windows.h>
#undef EXTERN_C
#include "compat/avisynth/avisynth_c.h"
#define AVISYNTH_LIB "avisynth"
#else
#include <dlfcn.h>
#include "compat/avisynth/avxsynth_c.h"
#if defined (__APPLE__)
#define AVISYNTH_LIB "libavxsynth.dylib"
#else
#define AVISYNTH_LIB "libavxsynth.so"
#endif
#define LoadLibrary(x) dlopen(x, RTLD_NOW | RTLD_GLOBAL)
#define GetProcAddress dlsym
#define FreeLibrary dlclose
#endif
#include <windows.h> // AvxSynth doesn't have these colorspaces, so disable them
#include <vfw.h> #ifndef _WIN32
#define avs_is_yv24(vi) 0
#define avs_is_yv16(vi) 0
#define avs_is_yv411(vi) 0
#define avs_is_y8(vi) 0
#endif
typedef struct { typedef struct {
PAVISTREAM handle; void *library;
AVISTREAMINFO info; #define AVSC_DECLARE_FUNC(name) name##_func name
DWORD read; AVSC_DECLARE_FUNC(avs_create_script_environment);
LONG chunck_size; AVSC_DECLARE_FUNC(avs_delete_script_environment);
LONG chunck_samples; AVSC_DECLARE_FUNC(avs_get_error);
} AVISynthStream; AVSC_DECLARE_FUNC(avs_clip_get_error);
AVSC_DECLARE_FUNC(avs_invoke);
AVSC_DECLARE_FUNC(avs_release_value);
AVSC_DECLARE_FUNC(avs_get_video_info);
AVSC_DECLARE_FUNC(avs_take_clip);
AVSC_DECLARE_FUNC(avs_release_clip);
AVSC_DECLARE_FUNC(avs_bit_blt);
AVSC_DECLARE_FUNC(avs_get_audio);
AVSC_DECLARE_FUNC(avs_get_frame);
AVSC_DECLARE_FUNC(avs_release_video_frame);
#undef AVSC_DECLARE_FUNC
} AviSynthLibrary;
struct AviSynthContext {
AVS_ScriptEnvironment *env;
AVS_Clip *clip;
const AVS_VideoInfo *vi;
// avisynth_read_packet_video() iterates over this.
int n_planes;
const int *planes;
int curr_stream;
int curr_frame;
int64_t curr_sample;
int error;
// Linked list pointers.
struct AviSynthContext *next;
};
typedef struct AviSynthContext AviSynthContext;
typedef struct { static const int avs_planes_packed[1] = {0};
PAVIFILE file; static const int avs_planes_grey[1] = {AVS_PLANAR_Y};
AVISynthStream *streams; static const int avs_planes_yuv[3] = {AVS_PLANAR_Y, AVS_PLANAR_U, AVS_PLANAR_V};
int nb_streams;
int next_stream; // A conflict between C++ global objects, atexit, and dynamic loading requires
} AVISynthContext; // us to register our own atexit handler to prevent double freeing.
static AviSynthLibrary *avs_library = NULL;
static int avisynth_read_header(AVFormatContext *s) static int avs_atexit_called = 0;
{
AVISynthContext *avs = s->priv_data; // Linked list of AviSynthContexts. An atexit handler destroys this list.
HRESULT res; static AviSynthContext *avs_ctx_list = NULL;
AVIFILEINFO info;
DWORD id; static av_cold void avisynth_atexit_handler(void);
AVStream *st;
AVISynthStream *stream; static av_cold int avisynth_load_library(void) {
wchar_t filename_wchar[1024] = { 0 }; avs_library = av_mallocz(sizeof(AviSynthLibrary));
char filename_char[1024] = { 0 }; if (!avs_library)
return AVERROR_UNKNOWN;
AVIFileInit();
avs_library->library = LoadLibrary(AVISYNTH_LIB);
/* avisynth can't accept UTF-8 filename */ if (!avs_library->library)
MultiByteToWideChar(CP_UTF8, 0, s->filename, -1, filename_wchar, 1024); goto init_fail;
WideCharToMultiByte(CP_THREAD_ACP, 0, filename_wchar, -1, filename_char, 1024, NULL, NULL);
res = AVIFileOpen(&avs->file, filename_char, OF_READ|OF_SHARE_DENY_WRITE, NULL); #define LOAD_AVS_FUNC(name, continue_on_fail) \
if (res != S_OK) { \
{ avs_library->name = (void*)GetProcAddress(avs_library->library, #name); \
av_log(s, AV_LOG_ERROR, "AVIFileOpen failed with error %ld\n", res); if(!continue_on_fail && !avs_library->name) \
AVIFileExit(); goto fail; \
return -1; }
} LOAD_AVS_FUNC(avs_create_script_environment, 0);
LOAD_AVS_FUNC(avs_delete_script_environment, 0);
res = AVIFileInfo(avs->file, &info, sizeof(info)); LOAD_AVS_FUNC(avs_get_error, 1); // New to AviSynth 2.6
if (res != S_OK) LOAD_AVS_FUNC(avs_clip_get_error, 0);
{ LOAD_AVS_FUNC(avs_invoke, 0);
av_log(s, AV_LOG_ERROR, "AVIFileInfo failed with error %ld\n", res); LOAD_AVS_FUNC(avs_release_value, 0);
AVIFileExit(); LOAD_AVS_FUNC(avs_get_video_info, 0);
return -1; LOAD_AVS_FUNC(avs_take_clip, 0);
} LOAD_AVS_FUNC(avs_release_clip, 0);
LOAD_AVS_FUNC(avs_bit_blt, 0);
avs->streams = av_mallocz(info.dwStreams * sizeof(AVISynthStream)); LOAD_AVS_FUNC(avs_get_audio, 0);
LOAD_AVS_FUNC(avs_get_frame, 0);
for (id=0; id<info.dwStreams; id++) LOAD_AVS_FUNC(avs_release_video_frame, 0);
{ #undef LOAD_AVS_FUNC
stream = &avs->streams[id];
stream->read = 0; atexit(avisynth_atexit_handler);
if (AVIFileGetStream(avs->file, &stream->handle, 0, id) == S_OK) return 0;
{
if (AVIStreamInfo(stream->handle, &stream->info, sizeof(stream->info)) == S_OK) fail:
{ FreeLibrary(avs_library->library);
if (stream->info.fccType == streamtypeAUDIO) init_fail:
{ av_freep(&avs_library);
WAVEFORMATEX wvfmt; return AVERROR_UNKNOWN;
LONG struct_size = sizeof(WAVEFORMATEX); }
if (AVIStreamReadFormat(stream->handle, 0, &wvfmt, &struct_size) != S_OK)
continue; // Note that avisynth_context_create and avisynth_context_destroy
// do not allocate or free the actual context! That is taken care of
st = avformat_new_stream(s, NULL); // by libavformat.
st->id = id; static av_cold int avisynth_context_create(AVFormatContext *s) {
st->codec->codec_type = AVMEDIA_TYPE_AUDIO; AviSynthContext *avs = (AviSynthContext *)s->priv_data;
int ret;
st->codec->block_align = wvfmt.nBlockAlign;
st->codec->channels = wvfmt.nChannels; if (!avs_library) {
st->codec->sample_rate = wvfmt.nSamplesPerSec; if (ret = avisynth_load_library())
st->codec->bit_rate = wvfmt.nAvgBytesPerSec * 8; return ret;
st->codec->bits_per_coded_sample = wvfmt.wBitsPerSample; }
stream->chunck_samples = wvfmt.nSamplesPerSec * (uint64_t)info.dwScale / (uint64_t)info.dwRate; if (!avs)
stream->chunck_size = stream->chunck_samples * wvfmt.nChannels * wvfmt.wBitsPerSample / 8; return AVERROR_UNKNOWN;
st->codec->codec_tag = wvfmt.wFormatTag; if (!avs_ctx_list) {
st->codec->codec_id = ff_wav_codec_get_id(wvfmt.wFormatTag, st->codec->bits_per_coded_sample); avs_ctx_list = avs;
} } else {
else if (stream->info.fccType == streamtypeVIDEO) avs->next = avs_ctx_list;
{ avs_ctx_list = avs;
BITMAPINFO imgfmt; }
LONG struct_size = sizeof(BITMAPINFO);
stream->chunck_size = stream->info.dwSampleSize;
stream->chunck_samples = 1;
if (AVIStreamReadFormat(stream->handle, 0, &imgfmt, &struct_size) != S_OK)
continue;
st = avformat_new_stream(s, NULL);
st->id = id;
st->codec->codec_type = AVMEDIA_TYPE_VIDEO;
st->avg_frame_rate.num = stream->info.dwRate;
st->avg_frame_rate.den = stream->info.dwScale;
#if FF_API_R_FRAME_RATE
st->r_frame_rate = st->avg_frame_rate;
#endif
st->codec->width = imgfmt.bmiHeader.biWidth; avs->env = avs_library->avs_create_script_environment(3);
st->codec->height = imgfmt.bmiHeader.biHeight; if (avs_library->avs_get_error) {
const char *error = avs_library->avs_get_error(avs->env);
st->codec->bits_per_coded_sample = imgfmt.bmiHeader.biBitCount; if (error) {
st->codec->bit_rate = (uint64_t)stream->info.dwSampleSize * (uint64_t)stream->info.dwRate * 8 / (uint64_t)stream->info.dwScale; av_log(s, AV_LOG_ERROR, "%s\n", error);
st->codec->codec_tag = imgfmt.bmiHeader.biCompression; av_free(avs);
st->codec->codec_id = ff_codec_get_id(ff_codec_bmp_tags, imgfmt.bmiHeader.biCompression); return AVERROR_UNKNOWN;
if (st->codec->codec_id == AV_CODEC_ID_RAWVIDEO && imgfmt.bmiHeader.biCompression== BI_RGB) {
st->codec->extradata = av_malloc(9 + FF_INPUT_BUFFER_PADDING_SIZE);
if (st->codec->extradata) {
st->codec->extradata_size = 9;
memcpy(st->codec->extradata, "BottomUp", 9);
}
}
st->duration = stream->info.dwLength;
}
else
{
AVIStreamRelease(stream->handle);
continue;
}
avs->nb_streams++;
st->codec->stream_codec_tag = stream->info.fccHandler;
avpriv_set_pts_info(st, 64, info.dwScale, info.dwRate);
st->start_time = stream->info.dwStart;
}
} }
} }
return 0; return 0;
} }
static int avisynth_read_packet(AVFormatContext *s, AVPacket *pkt) static av_cold void avisynth_context_destroy(AviSynthContext *avs) {
{ if (avs_atexit_called)
AVISynthContext *avs = s->priv_data; return;
HRESULT res;
AVISynthStream *stream; if (avs == avs_ctx_list) {
int stream_id = avs->next_stream; avs_ctx_list = avs->next;
LONG read_size; } else {
AviSynthContext *prev = avs_ctx_list;
while (prev->next != avs)
prev = prev->next;
prev->next = avs->next;
}
// handle interleaving manually... if (avs->clip) {
stream = &avs->streams[stream_id]; avs_library->avs_release_clip(avs->clip);
avs->clip = NULL;
}
if (avs->env) {
avs_library->avs_delete_script_environment(avs->env);
avs->env = NULL;
}
}
if (stream->read >= stream->info.dwLength) static av_cold void avisynth_atexit_handler(void) {
return AVERROR(EIO); AviSynthContext *avs = avs_ctx_list;
if (av_new_packet(pkt, stream->chunck_size)) while (avs) {
return AVERROR(EIO); AviSynthContext *next = avs->next;
pkt->stream_index = stream_id; avisynth_context_destroy(avs);
pkt->pts = avs->streams[stream_id].read / avs->streams[stream_id].chunck_samples; avs = next;
}
FreeLibrary(avs_library->library);
av_freep(&avs_library);
res = AVIStreamRead(stream->handle, stream->read, stream->chunck_samples, pkt->data, stream->chunck_size, &read_size, NULL); avs_atexit_called = 1;
}
pkt->size = read_size; // Create AVStream from audio and video data.
static int avisynth_create_stream_video(AVFormatContext *s, AVStream *st) {
AviSynthContext *avs = s->priv_data;
int planar = 0; // 0: packed, 1: YUV, 2: Y8
st->codec->codec_type = AVMEDIA_TYPE_VIDEO;
st->codec->codec_id = CODEC_ID_RAWVIDEO;
st->codec->width = avs->vi->width;
st->codec->height = avs->vi->height;
st->time_base = (AVRational) {avs->vi->fps_denominator, avs->vi->fps_numerator};
st->avg_frame_rate = (AVRational) {avs->vi->fps_numerator, avs->vi->fps_denominator};
st->start_time = 0;
st->duration = avs->vi->num_frames;
st->nb_frames = avs->vi->num_frames;
switch (avs->vi->pixel_type) {
#ifdef _WIN32
case AVS_CS_YV24:
st->codec->pix_fmt = PIX_FMT_YUV444P;
planar = 1;
break;
case AVS_CS_YV16:
st->codec->pix_fmt = PIX_FMT_YUV422P;
planar = 1;
break;
case AVS_CS_YV411:
st->codec->pix_fmt = PIX_FMT_YUV411P;
planar = 1;
break;
case AVS_CS_Y8:
st->codec->pix_fmt = PIX_FMT_GRAY8;
planar = 2;
break;
#endif
case AVS_CS_BGR24:
st->codec->pix_fmt = PIX_FMT_RGB24;
break;
case AVS_CS_BGR32:
st->codec->pix_fmt = PIX_FMT_RGB32;
break;
case AVS_CS_YUY2:
st->codec->pix_fmt = PIX_FMT_YUYV422;
break;
case AVS_CS_YV12:
st->codec->pix_fmt = PIX_FMT_YUV420P;
planar = 1;
break;
case AVS_CS_I420: // Is this even used anywhere?
st->codec->pix_fmt = PIX_FMT_YUV420P;
planar = 1;
break;
default:
av_log(s, AV_LOG_ERROR, "unknown AviSynth colorspace %d\n", avs->vi->pixel_type);
avs->error = 1;
return AVERROR_UNKNOWN;
}
stream->read += stream->chunck_samples; switch (planar) {
case 2: // Y8
avs->n_planes = 1;
avs->planes = avs_planes_grey;
break;
case 1: // YUV
avs->n_planes = 3;
avs->planes = avs_planes_yuv;
break;
default:
avs->n_planes = 1;
avs->planes = avs_planes_packed;
}
return 0;
}
// prepare for the next stream to read static int avisynth_create_stream_audio(AVFormatContext *s, AVStream *st) {
do { AviSynthContext *avs = s->priv_data;
avs->next_stream = (avs->next_stream+1) % avs->nb_streams;
} while (avs->next_stream != stream_id && s->streams[avs->next_stream]->discard >= AVDISCARD_ALL); st->codec->codec_type = AVMEDIA_TYPE_AUDIO;
st->codec->sample_rate = avs->vi->audio_samples_per_second;
st->codec->channels = avs->vi->nchannels;
st->time_base = (AVRational) {1, avs->vi->audio_samples_per_second};
switch (avs->vi->sample_type) {
case AVS_SAMPLE_INT8:
st->codec->codec_id = CODEC_ID_PCM_U8;
break;
case AVS_SAMPLE_INT16:
st->codec->codec_id = CODEC_ID_PCM_S16LE;
break;
case AVS_SAMPLE_INT24:
st->codec->codec_id = CODEC_ID_PCM_S24LE;
break;
case AVS_SAMPLE_INT32:
st->codec->codec_id = CODEC_ID_PCM_S32LE;
break;
case AVS_SAMPLE_FLOAT:
st->codec->codec_id = CODEC_ID_PCM_F32LE;
break;
default:
av_log(s, AV_LOG_ERROR, "unknown AviSynth sample type %d\n", avs->vi->sample_type);
avs->error = 1;
return AVERROR_UNKNOWN;
}
return 0;
}
return (res == S_OK) ? pkt->size : -1; static int avisynth_create_stream(AVFormatContext *s) {
AviSynthContext *avs = s->priv_data;
AVStream *st;
int ret;
int id = 0;
if (avs_has_video(avs->vi)) {
st = avformat_new_stream(s, NULL);
if (!st)
return AVERROR_UNKNOWN;
st->id = id++;
if (ret = avisynth_create_stream_video(s, st))
return ret;
}
if (avs_has_audio(avs->vi)) {
st = avformat_new_stream(s, NULL);
if (!st)
return AVERROR_UNKNOWN;
st->id = id++;
if (ret = avisynth_create_stream_audio(s, st))
return ret;
}
return 0;
} }
static int avisynth_read_close(AVFormatContext *s) static int avisynth_open_file(AVFormatContext *s) {
{ AviSynthContext *avs = (AviSynthContext *)s->priv_data;
AVISynthContext *avs = s->priv_data; AVS_Value arg, val;
int i; int ret;
if (ret = avisynth_context_create(s))
return ret;
for (i=0;i<avs->nb_streams;i++) arg = avs_new_value_string(s->filename);
{ val = avs_library->avs_invoke(avs->env, "Import", arg, 0);
AVIStreamRelease(avs->streams[i].handle); if (avs_is_error(val)) {
av_log(s, AV_LOG_ERROR, "%s\n", avs_as_error(val));
ret = AVERROR_UNKNOWN;
goto fail;
} }
if (!avs_is_clip(val)) {
av_log(s, AV_LOG_ERROR, "%s\n", "AviSynth script did not return a clip");
ret = AVERROR_UNKNOWN;
goto fail;
}
avs->clip = avs_library->avs_take_clip(val, avs->env);
avs->vi = avs_library->avs_get_video_info(avs->clip);
// Release the AVS_Value as it will go out of scope.
avs_library->avs_release_value(val);
if (ret = avisynth_create_stream(s))
goto fail;
return 0;
av_free(avs->streams); fail:
AVIFileRelease(avs->file); avisynth_context_destroy(avs);
AVIFileExit(); return ret;
return 0;
} }
static int avisynth_read_seek(AVFormatContext *s, int stream_index, int64_t pts, int flags) static void avisynth_next_stream(AVFormatContext *s, AVStream **st, AVPacket *pkt, int *discard) {
{ AviSynthContext *avs = s->priv_data;
AVISynthContext *avs = s->priv_data;
int stream_id;
for (stream_id = 0; stream_id < avs->nb_streams; stream_id++) pkt->stream_index = avs->curr_stream++;
{ avs->curr_stream %= s->nb_streams;
avs->streams[stream_id].read = pts * avs->streams[stream_id].chunck_samples;
*st = s->streams[pkt->stream_index];
if ((*st)->discard == AVDISCARD_ALL)
*discard = 1;
else
*discard = 0;
return;
}
// Copy AviSynth clip data into an AVPacket.
static int avisynth_read_packet_video(AVFormatContext *s, AVPacket *pkt, int discard) {
AviSynthContext *avs = s->priv_data;
AVS_VideoFrame *frame;
unsigned char* dst_p;
const unsigned char* src_p;
int i, plane, rowsize, planeheight, pitch, bits;
const char* error;
if (avs->curr_frame >= avs->vi->num_frames)
return AVERROR_EOF;
// This must happen even if the stream is discarded to prevent desync.
avs->curr_frame++;
if (discard)
return 0;
pkt->pts = avs->curr_frame;
pkt->dts = avs->curr_frame;
pkt->duration = 1;
// Define the bpp values for the new AviSynth 2.6 colorspaces
if (avs_is_yv24(avs->vi)) {
bits = 24;
} else if (avs_is_yv16(avs->vi)) {
bits = 16;
} else if (avs_is_yv411(avs->vi)) {
bits = 12;
} else if (avs_is_y8(avs->vi)) {
bits = 8;
} else {
bits = avs_bits_per_pixel(avs->vi);
}
// Without cast to int64_t, calculation overflows at about 9k x 9k resolution.
pkt->size = (((int64_t)avs->vi->width * (int64_t)avs->vi->height) * bits) / 8;
if (!pkt->size)
return AVERROR_UNKNOWN;
pkt->data = av_malloc(pkt->size);
if (!pkt->data)
return AVERROR_UNKNOWN;
frame = avs_library->avs_get_frame(avs->clip, avs->curr_frame);
error = avs_library->avs_clip_get_error(avs->clip);
if (error) {
av_log(s, AV_LOG_ERROR, "%s\n", error);
avs->error = 1;
av_freep(&pkt->data);
return AVERROR_UNKNOWN;
}
dst_p = pkt->data;
for (i = 0; i < avs->n_planes; i++) {
plane = avs->planes[i];
src_p = avs_get_read_ptr_p(frame, plane);
rowsize = avs_get_row_size_p(frame, plane);
planeheight = avs_get_height_p(frame, plane);
pitch = avs_get_pitch_p(frame, plane);
// Flip RGB video.
if (avs_is_rgb24(avs->vi) || avs_is_rgb(avs->vi)) {
src_p = src_p + (planeheight - 1) * pitch;
pitch = -pitch;
}
avs_library->avs_bit_blt(avs->env, dst_p, rowsize, src_p, pitch, rowsize, planeheight);
dst_p += rowsize * planeheight;
}
avs_library->avs_release_video_frame(frame);
return 0;
}
static int avisynth_read_packet_audio(AVFormatContext *s, AVPacket *pkt, int discard) {
AviSynthContext *avs = s->priv_data;
AVRational fps, samplerate;
int samples;
const char* error;
if (avs->curr_sample >= avs->vi->num_audio_samples)
return AVERROR_EOF;
fps.num = avs->vi->fps_numerator;
fps.den = avs->vi->fps_denominator;
samplerate.num = avs->vi->audio_samples_per_second;
samplerate.den = 1;
if (avs_has_video(avs->vi)) {
if (avs->curr_frame < avs->vi->num_frames)
samples = av_rescale_q(avs->curr_frame, samplerate, fps) - avs->curr_sample;
else
samples = av_rescale_q(1, samplerate, fps);
} else {
samples = 1000;
}
// After seeking, audio may catch up with video.
if (samples <= 0) {
pkt->size = 0;
pkt->data = NULL;
return 0;
}
if (avs->curr_sample + samples > avs->vi->num_audio_samples)
samples = avs->vi->num_audio_samples - avs->curr_sample;
// This must happen even if the stream is discarded to prevent desync.
avs->curr_sample += samples;
if (discard)
return 0;
pkt->pts = avs->curr_sample;
pkt->dts = avs->curr_sample;
pkt->duration = samples;
pkt->size = avs_bytes_per_channel_sample(avs->vi) * samples * avs->vi->nchannels;
if (!pkt->size)
return AVERROR_UNKNOWN;
pkt->data = av_malloc(pkt->size);
if (!pkt->data)
return AVERROR_UNKNOWN;
avs_library->avs_get_audio(avs->clip, pkt->data, avs->curr_sample, samples);
error = avs_library->avs_clip_get_error(avs->clip);
if (error) {
av_log(s, AV_LOG_ERROR, "%s\n", error);
avs->error = 1;
av_freep(&pkt->data);
return AVERROR_UNKNOWN;
}
return 0;
}
static av_cold int avisynth_read_header(AVFormatContext *s) {
int ret;
// Calling library must implement a lock for thread-safe opens.
if (ret = avpriv_lock_avformat())
return ret;
if (ret = avisynth_open_file(s)) {
avpriv_unlock_avformat();
return ret;
}
avpriv_unlock_avformat();
return 0;
}
static int avisynth_read_packet(AVFormatContext *s, AVPacket *pkt) {
AviSynthContext *avs = s->priv_data;
AVStream *st;
int discard = 0;
int ret;
if (avs->error)
return AVERROR_UNKNOWN;
pkt->destruct = av_destruct_packet;
// If either stream reaches EOF, try to read the other one before giving up.
avisynth_next_stream(s, &st, pkt, &discard);
if (st->codec->codec_type == AVMEDIA_TYPE_VIDEO) {
ret = avisynth_read_packet_video(s, pkt, discard);
if (ret == AVERROR_EOF && avs_has_audio(avs->vi)) {
avisynth_next_stream(s, &st, pkt, &discard);
return avisynth_read_packet_audio(s, pkt, discard);
}
return ret;
} else {
ret = avisynth_read_packet_audio(s, pkt, discard);
if (ret == AVERROR_EOF && avs_has_video(avs->vi)) {
avisynth_next_stream(s, &st, pkt, &discard);
return avisynth_read_packet_video(s, pkt, discard);
}
return ret;
}
}
static av_cold int avisynth_read_close(AVFormatContext *s) {
if (avpriv_lock_avformat())
return AVERROR_UNKNOWN;
avisynth_context_destroy(s->priv_data);
avpriv_unlock_avformat();
return 0;
}
static int avisynth_read_seek(AVFormatContext *s, int stream_index, int64_t timestamp, int flags) {
AviSynthContext *avs = s->priv_data;
AVStream *st;
AVRational fps, samplerate;
if (avs->error)
return AVERROR_UNKNOWN;
fps = (AVRational) {avs->vi->fps_numerator, avs->vi->fps_denominator};
samplerate = (AVRational) {avs->vi->audio_samples_per_second, 1};
st = s->streams[stream_index];
if (st->codec->codec_type == AVMEDIA_TYPE_VIDEO) {
// AviSynth frame counts are signed int.
if ((timestamp >= avs->vi->num_frames) || (timestamp > INT_MAX) || (timestamp < 0))
return AVERROR_EOF;
avs->curr_frame = timestamp;
if (avs_has_audio(avs->vi))
avs->curr_sample = av_rescale_q(timestamp, samplerate, fps);
} else {
if ((timestamp >= avs->vi->num_audio_samples) || (timestamp < 0))
return AVERROR_EOF;
// Force frame granularity for seeking.
if (avs_has_video(avs->vi)) {
avs->curr_frame = av_rescale_q(timestamp, fps, samplerate);
avs->curr_sample = av_rescale_q(avs->curr_frame, samplerate, fps);
} else {
avs->curr_sample = timestamp;
}
} }
return 0; return 0;
} }
AVInputFormat ff_avisynth_demuxer = { AVInputFormat ff_avisynth_demuxer = {
.name = "avisynth", .name = "avisynth",
.long_name = NULL_IF_CONFIG_SMALL("AVISynth"), .long_name = NULL_IF_CONFIG_SMALL("AviSynth script"),
.priv_data_size = sizeof(AVISynthContext), .priv_data_size = sizeof(AviSynthContext),
.read_header = avisynth_read_header, .read_header = avisynth_read_header,
.read_packet = avisynth_read_packet, .read_packet = avisynth_read_packet,
.read_close = avisynth_read_close, .read_close = avisynth_read_close,
......
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