* qatar/master: lavfi: do not export the filters from shared objects Conflicts: libavfilter/af_amix.c libavfilter/af_anull.c libavfilter/asrc_anullsrc.c libavfilter/f_select.c libavfilter/f_settb.c libavfilter/split.c libavfilter/src_movie.c libavfilter/vf_aspect.c libavfilter/vf_blackframe.c libavfilter/vf_colorbalance.c libavfilter/vf_copy.c libavfilter/vf_crop.c libavfilter/vf_cropdetect.c libavfilter/vf_drawbox.c libavfilter/vf_format.c libavfilter/vf_framestep.c libavfilter/vf_frei0r.c libavfilter/vf_hflip.c libavfilter/vf_libopencv.c libavfilter/vf_lut.c libavfilter/vf_null.c libavfilter/vf_overlay.c libavfilter/vf_scale.c libavfilter/vf_transpose.c libavfilter/vf_unsharp.c libavfilter/vf_vflip.c Merged-by: Michael Niedermayer <michaelni@gmx.at>
		
			
				
	
	
		
			431 lines
		
	
	
		
			16 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			431 lines
		
	
	
		
			16 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
/*
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 * Copyright (c) 2011 Michael Niedermayer
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 *
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 * This file is part of FFmpeg.
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 *
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 * FFmpeg is free software; you can redistribute it and/or
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 * modify it under the terms of the GNU Lesser General Public
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 * License as published by the Free Software Foundation; either
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 * version 2.1 of the License, or (at your option) any later version.
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 *
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 * FFmpeg 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 GNU
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 * Lesser General Public License for more details.
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 *
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 * You should have received a copy of the GNU Lesser General Public
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 * License along with FFmpeg; 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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 * The vsrc_color filter from Stefano Sabatini was used as template to create
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 * this
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 */
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/**
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 * @file
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 * Mandelbrot fraktal renderer
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 */
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#include "avfilter.h"
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#include "formats.h"
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#include "video.h"
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#include "internal.h"
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#include "libavutil/imgutils.h"
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#include "libavutil/opt.h"
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#include "libavutil/parseutils.h"
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#include <float.h>
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#include <math.h>
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#define SQR(a) ((a)*(a))
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enum Outer{
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    ITERATION_COUNT,
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    NORMALIZED_ITERATION_COUNT,
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    WHITE,
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    OUTZ,
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};
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enum Inner{
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    BLACK,
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    PERIOD,
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    CONVTIME,
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    MINCOL,
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};
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typedef struct Point {
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    double p[2];
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    uint32_t val;
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} Point;
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typedef struct {
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    const AVClass *class;
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    int w, h;
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    AVRational frame_rate;
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    uint64_t pts;
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    int maxiter;
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    double start_x;
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    double start_y;
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    double start_scale;
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    double end_scale;
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    double end_pts;
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    double bailout;
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    enum Outer outer;
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    enum Inner inner;
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    int cache_allocated;
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    int cache_used;
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    Point *point_cache;
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    Point *next_cache;
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    double (*zyklus)[2];
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    uint32_t dither;
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    double morphxf;
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    double morphyf;
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    double morphamp;
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} MBContext;
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#define OFFSET(x) offsetof(MBContext, x)
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#define FLAGS AV_OPT_FLAG_VIDEO_PARAM|AV_OPT_FLAG_FILTERING_PARAM
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static const AVOption mandelbrot_options[] = {
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    {"size",        "set frame size",                OFFSET(w),       AV_OPT_TYPE_IMAGE_SIZE, {.str="640x480"},  CHAR_MIN, CHAR_MAX, FLAGS },
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    {"s",           "set frame size",                OFFSET(w),       AV_OPT_TYPE_IMAGE_SIZE, {.str="640x480"},  CHAR_MIN, CHAR_MAX, FLAGS },
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    {"rate",        "set frame rate",                OFFSET(frame_rate), AV_OPT_TYPE_VIDEO_RATE, {.str="25"},  CHAR_MIN, CHAR_MAX, FLAGS },
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    {"r",           "set frame rate",                OFFSET(frame_rate), AV_OPT_TYPE_VIDEO_RATE, {.str="25"},  CHAR_MIN, CHAR_MAX, FLAGS },
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    {"maxiter",     "set max iterations number",     OFFSET(maxiter), AV_OPT_TYPE_INT,        {.i64=7189},  1,        INT_MAX, FLAGS },
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    {"start_x",     "set the initial x position",    OFFSET(start_x), AV_OPT_TYPE_DOUBLE,     {.dbl=-0.743643887037158704752191506114774}, -100, 100, FLAGS },
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    {"start_y",     "set the initial y position",    OFFSET(start_y), AV_OPT_TYPE_DOUBLE,     {.dbl=-0.131825904205311970493132056385139}, -100, 100, FLAGS },
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    {"start_scale", "set the initial scale value",   OFFSET(start_scale), AV_OPT_TYPE_DOUBLE, {.dbl=3.0},  0, FLT_MAX, FLAGS },
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    {"end_scale",   "set the terminal scale value",  OFFSET(end_scale), AV_OPT_TYPE_DOUBLE,   {.dbl=0.3},  0, FLT_MAX, FLAGS },
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    {"end_pts",     "set the terminal pts value",    OFFSET(end_pts), AV_OPT_TYPE_DOUBLE,     {.dbl=400},  0, INT64_MAX, FLAGS },
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    {"bailout",     "set the bailout value",         OFFSET(bailout), AV_OPT_TYPE_DOUBLE,     {.dbl=10},   0, FLT_MAX, FLAGS },
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    {"morphxf",     "set morph x frequency",         OFFSET(morphxf), AV_OPT_TYPE_DOUBLE,     {.dbl=0.01},   -FLT_MAX, FLT_MAX, FLAGS },
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    {"morphyf",     "set morph y frequency",         OFFSET(morphyf), AV_OPT_TYPE_DOUBLE,     {.dbl=0.0123}, -FLT_MAX, FLT_MAX, FLAGS },
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    {"morphamp",    "set morph amplitude",           OFFSET(morphamp), AV_OPT_TYPE_DOUBLE,    {.dbl=0},      -FLT_MAX, FLT_MAX, FLAGS },
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    {"outer",       "set outer coloring mode",       OFFSET(outer), AV_OPT_TYPE_INT, {.i64=NORMALIZED_ITERATION_COUNT}, 0, INT_MAX, FLAGS, "outer" },
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    {"iteration_count", "set iteration count mode",  0, AV_OPT_TYPE_CONST, {.i64=ITERATION_COUNT}, INT_MIN, INT_MAX, FLAGS, "outer" },
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    {"normalized_iteration_count", "set normalized iteration count mode",   0, AV_OPT_TYPE_CONST, {.i64=NORMALIZED_ITERATION_COUNT}, INT_MIN, INT_MAX, FLAGS, "outer" },
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    {"white", "set white mode",                      0, AV_OPT_TYPE_CONST, {.i64=WHITE}, INT_MIN, INT_MAX, FLAGS, "outer" },
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    {"outz",        "set outz mode",                 0, AV_OPT_TYPE_CONST, {.i64=OUTZ}, INT_MIN, INT_MAX, FLAGS, "outer" },
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    {"inner",       "set inner coloring mode",       OFFSET(inner), AV_OPT_TYPE_INT, {.i64=MINCOL}, 0, INT_MAX, FLAGS, "inner" },
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    {"black",       "set black mode",                0, AV_OPT_TYPE_CONST, {.i64=BLACK}, INT_MIN, INT_MAX, FLAGS, "inner"},
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    {"period",      "set period mode",               0, AV_OPT_TYPE_CONST, {.i64=PERIOD}, INT_MIN, INT_MAX, FLAGS, "inner"},
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    {"convergence", "show time until convergence",   0, AV_OPT_TYPE_CONST, {.i64=CONVTIME}, INT_MIN, INT_MAX, FLAGS, "inner"},
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    {"mincol",      "color based on point closest to the origin of the iterations",   0, AV_OPT_TYPE_CONST, {.i64=MINCOL}, INT_MIN, INT_MAX, FLAGS, "inner"},
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    {NULL},
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};
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AVFILTER_DEFINE_CLASS(mandelbrot);
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static av_cold int init(AVFilterContext *ctx)
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{
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    MBContext *mb = ctx->priv;
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    mb->bailout *= mb->bailout;
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    mb->start_scale /=mb->h;
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    mb->end_scale /=mb->h;
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    mb->cache_allocated = mb->w * mb->h * 3;
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    mb->cache_used = 0;
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    mb->point_cache= av_malloc(sizeof(*mb->point_cache)*mb->cache_allocated);
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    mb-> next_cache= av_malloc(sizeof(*mb-> next_cache)*mb->cache_allocated);
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    mb-> zyklus    = av_malloc(sizeof(*mb->zyklus) * (mb->maxiter+16));
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    return 0;
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}
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static av_cold void uninit(AVFilterContext *ctx)
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{
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    MBContext *mb = ctx->priv;
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    av_freep(&mb->point_cache);
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    av_freep(&mb-> next_cache);
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    av_freep(&mb->zyklus);
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}
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static int query_formats(AVFilterContext *ctx)
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{
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    static const enum AVPixelFormat pix_fmts[] = {
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        AV_PIX_FMT_BGR32,
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        AV_PIX_FMT_NONE
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    };
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    ff_set_common_formats(ctx, ff_make_format_list(pix_fmts));
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    return 0;
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}
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static int config_props(AVFilterLink *inlink)
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{
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    AVFilterContext *ctx = inlink->src;
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    MBContext *mb = ctx->priv;
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    if (av_image_check_size(mb->w, mb->h, 0, ctx) < 0)
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        return AVERROR(EINVAL);
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    inlink->w = mb->w;
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    inlink->h = mb->h;
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    inlink->time_base = av_inv_q(mb->frame_rate);
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    return 0;
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}
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static void fill_from_cache(AVFilterContext *ctx, uint32_t *color, int *in_cidx, int *out_cidx, double py, double scale){
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    MBContext *mb = ctx->priv;
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    if(mb->morphamp)
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        return;
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    for(; *in_cidx < mb->cache_used; (*in_cidx)++){
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        Point *p= &mb->point_cache[*in_cidx];
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        int x;
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        if(p->p[1] > py)
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            break;
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        x= round((p->p[0] - mb->start_x) / scale + mb->w/2);
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        if(x<0 || x >= mb->w)
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            continue;
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        if(color) color[x] = p->val;
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        if(out_cidx && *out_cidx < mb->cache_allocated)
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            mb->next_cache[(*out_cidx)++]= *p;
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    }
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}
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static int interpol(MBContext *mb, uint32_t *color, int x, int y, int linesize)
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{
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    uint32_t a,b,c,d, i;
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    uint32_t ipol=0xFF000000;
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    int dist;
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    if(!x || !y || x+1==mb->w || y+1==mb->h)
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        return 0;
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    dist= FFMAX(FFABS(x-(mb->w>>1))*mb->h, FFABS(y-(mb->h>>1))*mb->w);
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    if(dist<(mb->w*mb->h>>3))
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        return 0;
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    a=color[(x+1) + (y+0)*linesize];
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    b=color[(x-1) + (y+1)*linesize];
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    c=color[(x+0) + (y+1)*linesize];
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    d=color[(x+1) + (y+1)*linesize];
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    if(a&&c){
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        b= color[(x-1) + (y+0)*linesize];
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        d= color[(x+0) + (y-1)*linesize];
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    }else if(b&&d){
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        a= color[(x+1) + (y-1)*linesize];
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        c= color[(x-1) + (y-1)*linesize];
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    }else if(c){
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        d= color[(x+0) + (y-1)*linesize];
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        a= color[(x-1) + (y+0)*linesize];
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        b= color[(x+1) + (y-1)*linesize];
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    }else if(d){
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        c= color[(x-1) + (y-1)*linesize];
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        a= color[(x-1) + (y+0)*linesize];
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        b= color[(x+1) + (y-1)*linesize];
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    }else
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        return 0;
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    for(i=0; i<3; i++){
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        int s= 8*i;
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        uint8_t ac= a>>s;
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        uint8_t bc= b>>s;
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        uint8_t cc= c>>s;
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        uint8_t dc= d>>s;
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        int ipolab= (ac + bc);
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        int ipolcd= (cc + dc);
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        if(FFABS(ipolab - ipolcd) > 5)
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            return 0;
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        if(FFABS(ac-bc)+FFABS(cc-dc) > 20)
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            return 0;
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        ipol |= ((ipolab + ipolcd + 2)/4)<<s;
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    }
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    color[x + y*linesize]= ipol;
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    return 1;
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}
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static void draw_mandelbrot(AVFilterContext *ctx, uint32_t *color, int linesize, int64_t pts)
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{
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    MBContext *mb = ctx->priv;
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    int x,y,i, in_cidx=0, next_cidx=0, tmp_cidx;
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    double scale= mb->start_scale*pow(mb->end_scale/mb->start_scale, pts/mb->end_pts);
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    int use_zyklus=0;
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    fill_from_cache(ctx, NULL, &in_cidx, NULL, mb->start_y+scale*(-mb->h/2-0.5), scale);
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    tmp_cidx= in_cidx;
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    memset(color, 0, sizeof(*color)*mb->w);
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    for(y=0; y<mb->h; y++){
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        int y1= y+1;
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        const double ci=mb->start_y+scale*(y-mb->h/2);
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        fill_from_cache(ctx, NULL, &in_cidx, &next_cidx, ci, scale);
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        if(y1<mb->h){
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            memset(color+linesize*y1, 0, sizeof(*color)*mb->w);
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            fill_from_cache(ctx, color+linesize*y1, &tmp_cidx, NULL, ci + 3*scale/2, scale);
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        }
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        for(x=0; x<mb->w; x++){
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            float av_uninit(epsilon);
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            const double cr=mb->start_x+scale*(x-mb->w/2);
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            double zr=cr;
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            double zi=ci;
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            uint32_t c=0;
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            double dv= mb->dither / (double)(1LL<<32);
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            mb->dither= mb->dither*1664525+1013904223;
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            if(color[x + y*linesize] & 0xFF000000)
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                continue;
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            if(!mb->morphamp){
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                if(interpol(mb, color, x, y, linesize)){
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                    if(next_cidx < mb->cache_allocated){
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                        mb->next_cache[next_cidx  ].p[0]= cr;
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                        mb->next_cache[next_cidx  ].p[1]= ci;
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                        mb->next_cache[next_cidx++].val = color[x + y*linesize];
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                    }
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                    continue;
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                }
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            }else{
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                zr += cos(pts * mb->morphxf) * mb->morphamp;
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                zi += sin(pts * mb->morphyf) * mb->morphamp;
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            }
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            use_zyklus= (x==0 || mb->inner!=BLACK ||color[x-1 + y*linesize] == 0xFF000000);
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            if(use_zyklus)
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                epsilon= scale*1*sqrt(SQR(x-mb->w/2) + SQR(y-mb->h/2))/mb->w;
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#define Z_Z2_C(outr,outi,inr,ini)\
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            outr= inr*inr - ini*ini + cr;\
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            outi= 2*inr*ini + ci;
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#define Z_Z2_C_ZYKLUS(outr,outi,inr,ini, Z)\
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            Z_Z2_C(outr,outi,inr,ini)\
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            if(use_zyklus){\
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                if(Z && fabs(mb->zyklus[i>>1][0]-outr)+fabs(mb->zyklus[i>>1][1]-outi) <= epsilon)\
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                    break;\
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            }\
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            mb->zyklus[i][0]= outr;\
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            mb->zyklus[i][1]= outi;\
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            for(i=0; i<mb->maxiter-8; i++){
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                double t;
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                Z_Z2_C_ZYKLUS(t, zi, zr, zi, 0)
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                i++;
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                Z_Z2_C_ZYKLUS(zr, zi, t, zi, 1)
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                i++;
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                Z_Z2_C_ZYKLUS(t, zi, zr, zi, 0)
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                i++;
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                Z_Z2_C_ZYKLUS(zr, zi, t, zi, 1)
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                i++;
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                Z_Z2_C_ZYKLUS(t, zi, zr, zi, 0)
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                i++;
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                Z_Z2_C_ZYKLUS(zr, zi, t, zi, 1)
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                i++;
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                Z_Z2_C_ZYKLUS(t, zi, zr, zi, 0)
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                i++;
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                Z_Z2_C_ZYKLUS(zr, zi, t, zi, 1)
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                if(zr*zr + zi*zi > mb->bailout){
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                    i-= FFMIN(7, i);
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                    for(; i<mb->maxiter; i++){
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                        zr= mb->zyklus[i][0];
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                        zi= mb->zyklus[i][1];
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                        if(zr*zr + zi*zi > mb->bailout){
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                            switch(mb->outer){
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                            case            ITERATION_COUNT:
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                                zr = i;
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                                c = lrintf((sin(zr)+1)*127) + lrintf((sin(zr/1.234)+1)*127)*256*256 + lrintf((sin(zr/100)+1)*127)*256;
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                                break;
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                            case NORMALIZED_ITERATION_COUNT:
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                                zr = i + log2(log(mb->bailout) / log(zr*zr + zi*zi));
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                                c = lrintf((sin(zr)+1)*127) + lrintf((sin(zr/1.234)+1)*127)*256*256 + lrintf((sin(zr/100)+1)*127)*256;
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                                break;
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                            case                      WHITE:
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                                c = 0xFFFFFF;
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                                break;
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                            case                      OUTZ:
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                                zr /= mb->bailout;
 | 
						|
                                zi /= mb->bailout;
 | 
						|
                                c = (((int)(zr*128+128))&0xFF)*256 + (((int)(zi*128+128))&0xFF);
 | 
						|
                            }
 | 
						|
                            break;
 | 
						|
                        }
 | 
						|
                    }
 | 
						|
                    break;
 | 
						|
                }
 | 
						|
            }
 | 
						|
            if(!c){
 | 
						|
                if(mb->inner==PERIOD){
 | 
						|
                int j;
 | 
						|
                for(j=i-1; j; j--)
 | 
						|
                    if(SQR(mb->zyklus[j][0]-zr) + SQR(mb->zyklus[j][1]-zi) < epsilon*epsilon*10)
 | 
						|
                        break;
 | 
						|
                if(j){
 | 
						|
                    c= i-j;
 | 
						|
                    c= ((c<<5)&0xE0) + ((c<<10)&0xE000) + ((c<<15)&0xE00000);
 | 
						|
                }
 | 
						|
                }else if(mb->inner==CONVTIME){
 | 
						|
                    c= floor(i*255.0/mb->maxiter+dv)*0x010101;
 | 
						|
                } else if(mb->inner==MINCOL){
 | 
						|
                    int j;
 | 
						|
                    double closest=9999;
 | 
						|
                    int closest_index=0;
 | 
						|
                    for(j=i-1; j>=0; j--)
 | 
						|
                        if(SQR(mb->zyklus[j][0]) + SQR(mb->zyklus[j][1]) < closest){
 | 
						|
                            closest= SQR(mb->zyklus[j][0]) + SQR(mb->zyklus[j][1]);
 | 
						|
                            closest_index= j;
 | 
						|
                        }
 | 
						|
                    closest = sqrt(closest);
 | 
						|
                    c= lrintf((mb->zyklus[closest_index][0]/closest+1)*127+dv) + lrintf((mb->zyklus[closest_index][1]/closest+1)*127+dv)*256;
 | 
						|
                }
 | 
						|
            }
 | 
						|
            c |= 0xFF000000;
 | 
						|
            color[x + y*linesize]= c;
 | 
						|
            if(next_cidx < mb->cache_allocated){
 | 
						|
                mb->next_cache[next_cidx  ].p[0]= cr;
 | 
						|
                mb->next_cache[next_cidx  ].p[1]= ci;
 | 
						|
                mb->next_cache[next_cidx++].val = c;
 | 
						|
            }
 | 
						|
        }
 | 
						|
        fill_from_cache(ctx, NULL, &in_cidx, &next_cidx, ci + scale/2, scale);
 | 
						|
    }
 | 
						|
    FFSWAP(void*, mb->next_cache, mb->point_cache);
 | 
						|
    mb->cache_used = next_cidx;
 | 
						|
    if(mb->cache_used == mb->cache_allocated)
 | 
						|
        av_log(ctx, AV_LOG_INFO, "Mandelbrot cache is too small!\n");
 | 
						|
}
 | 
						|
 | 
						|
static int request_frame(AVFilterLink *link)
 | 
						|
{
 | 
						|
    MBContext *mb = link->src->priv;
 | 
						|
    AVFrame *picref = ff_get_video_buffer(link, mb->w, mb->h);
 | 
						|
    if (!picref)
 | 
						|
        return AVERROR(ENOMEM);
 | 
						|
 | 
						|
    picref->sample_aspect_ratio = (AVRational) {1, 1};
 | 
						|
    picref->pts = mb->pts++;
 | 
						|
 | 
						|
    draw_mandelbrot(link->src, (uint32_t*)picref->data[0], picref->linesize[0]/4, picref->pts);
 | 
						|
    return ff_filter_frame(link, picref);
 | 
						|
}
 | 
						|
 | 
						|
static const AVFilterPad mandelbrot_outputs[] = {
 | 
						|
    {
 | 
						|
        .name          = "default",
 | 
						|
        .type          = AVMEDIA_TYPE_VIDEO,
 | 
						|
        .request_frame = request_frame,
 | 
						|
        .config_props  = config_props,
 | 
						|
    },
 | 
						|
    { NULL }
 | 
						|
};
 | 
						|
 | 
						|
AVFilter ff_vsrc_mandelbrot = {
 | 
						|
    .name          = "mandelbrot",
 | 
						|
    .description   = NULL_IF_CONFIG_SMALL("Render a Mandelbrot fractal."),
 | 
						|
    .priv_size     = sizeof(MBContext),
 | 
						|
    .priv_class    = &mandelbrot_class,
 | 
						|
    .init          = init,
 | 
						|
    .uninit        = uninit,
 | 
						|
    .query_formats = query_formats,
 | 
						|
    .inputs        = NULL,
 | 
						|
    .outputs       = mandelbrot_outputs,
 | 
						|
};
 |