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			/* | 
		
		
	
		
			
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			 * Copyright (c) 2018 Paul B Mahol | 
		
		
	
		
			
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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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			#include "libavutil/avassert.h" | 
		
		
	
		
			
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			#include "libavutil/avstring.h" | 
		
		
	
		
			
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			#include "libavutil/opt.h" | 
		
		
	
		
			
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			#include "audio.h" | 
		
		
	
		
			
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			#include "avfilter.h" | 
		
		
	
		
			
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			#include "internal.h" | 
		
		
	
		
			
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			typedef struct AudioIIRContext { | 
		
		
	
		
			
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			    const AVClass *class; | 
		
		
	
		
			
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			    char *a_str, *b_str; | 
		
		
	
		
			
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			    double dry_gain, wet_gain; | 
		
		
	
		
			
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			    int *nb_a, *nb_b; | 
		
		
	
		
			
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			    double **a, **b; | 
		
		
	
		
			
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			    double **input, **output; | 
		
		
	
		
			
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			    int clippings; | 
		
		
	
		
			
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			    int channels; | 
		
		
	
		
			
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			    void (*iir_frame)(AVFilterContext *ctx, AVFrame *in, AVFrame *out); | 
		
		
	
		
			
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			} AudioIIRContext; | 
		
		
	
		
			
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			static int query_formats(AVFilterContext *ctx) | 
		
		
	
		
			
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			{ | 
		
		
	
		
			
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			    AVFilterFormats *formats; | 
		
		
	
		
			
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			    AVFilterChannelLayouts *layouts; | 
		
		
	
		
			
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			    static const enum AVSampleFormat sample_fmts[] = { | 
		
		
	
		
			
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			        AV_SAMPLE_FMT_DBLP, | 
		
		
	
		
			
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			        AV_SAMPLE_FMT_FLTP, | 
		
		
	
		
			
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			        AV_SAMPLE_FMT_S32P, | 
		
		
	
		
			
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			        AV_SAMPLE_FMT_S16P, | 
		
		
	
		
			
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			        AV_SAMPLE_FMT_NONE | 
		
		
	
		
			
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			    }; | 
		
		
	
		
			
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			    int ret; | 
		
		
	
		
			
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			    layouts = ff_all_channel_counts(); | 
		
		
	
		
			
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			    if (!layouts) | 
		
		
	
		
			
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			        return AVERROR(ENOMEM); | 
		
		
	
		
			
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			    ret = ff_set_common_channel_layouts(ctx, layouts); | 
		
		
	
		
			
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			    if (ret < 0) | 
		
		
	
		
			
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			        return ret; | 
		
		
	
		
			
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			    formats = ff_make_format_list(sample_fmts); | 
		
		
	
		
			
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			    if (!formats) | 
		
		
	
		
			
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			        return AVERROR(ENOMEM); | 
		
		
	
		
			
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			    ret = ff_set_common_formats(ctx, formats); | 
		
		
	
		
			
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			    if (ret < 0) | 
		
		
	
		
			
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			        return ret; | 
		
		
	
		
			
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			    formats = ff_all_samplerates(); | 
		
		
	
		
			
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			    if (!formats) | 
		
		
	
		
			
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			        return AVERROR(ENOMEM); | 
		
		
	
		
			
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			    return ff_set_common_samplerates(ctx, formats); | 
		
		
	
		
			
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			} | 
		
		
	
		
			
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			#define IIR_FRAME(name, type, min, max, need_clipping)                  \ | 
		
		
	
		
			
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			static void iir_frame_## name(AVFilterContext *ctx, AVFrame *in, AVFrame *out)  \ | 
		
		
	
		
			
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			{                                                                       \ | 
		
		
	
		
			
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			    AudioIIRContext *s = ctx->priv;                                     \ | 
		
		
	
		
			
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			    const double ig = s->dry_gain;                                      \ | 
		
		
	
		
			
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			    const double og = s->wet_gain;                                      \ | 
		
		
	
		
			
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			    int ch, n;                                                          \ | 
		
		
	
		
			
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			                                                                        \ | 
		
		
	
		
			
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			    for (ch = 0; ch < out->channels; ch++) {                            \ | 
		
		
	
		
			
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			        const type *src = (const type *)in->extended_data[ch];          \ | 
		
		
	
		
			
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			        double *ic = (double *)s->input[ch];                            \ | 
		
		
	
		
			
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			        double *oc = (double *)s->output[ch];                           \ | 
		
		
	
		
			
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			        const int nb_a = s->nb_a[ch];                                   \ | 
		
		
	
		
			
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			        const int nb_b = s->nb_b[ch];                                   \ | 
		
		
	
		
			
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			        const double *a = s->a[ch];                                     \ | 
		
		
	
		
			
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			        const double *b = s->b[ch];                                     \ | 
		
		
	
		
			
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			        type *dst = (type *)out->extended_data[ch];                     \ | 
		
		
	
		
			
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			                                                                        \ | 
		
		
	
		
			
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			        for (n = 0; n < in->nb_samples; n++) {                          \ | 
		
		
	
		
			
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			            double sample = 0.;                                         \ | 
		
		
	
		
			
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			            int x;                                                      \ | 
		
		
	
		
			
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			                                                                        \ | 
		
		
	
		
			
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			            memmove(&ic[1], &ic[0], (nb_b - 1) * sizeof(*ic));          \ | 
		
		
	
		
			
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			            memmove(&oc[1], &oc[0], (nb_a - 1) * sizeof(*oc));          \ | 
		
		
	
		
			
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			            ic[0] = src[n] * ig;                                        \ | 
		
		
	
		
			
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			            for (x = 0; x < nb_b; x++)                                  \ | 
		
		
	
		
			
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			                sample += b[x] * ic[x];                                 \ | 
		
		
	
		
			
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			                                                                        \ | 
		
		
	
		
			
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			            for (x = 1; x < nb_a; x++)                                  \ | 
		
		
	
		
			
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			                sample -= a[x] * oc[x];                                 \ | 
		
		
	
		
			
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			                                                                        \ | 
		
		
	
		
			
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			            oc[0] = sample;                                             \ | 
		
		
	
		
			
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			            sample *= og;                                               \ | 
		
		
	
		
			
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			            if (need_clipping && sample < min) {                        \ | 
		
		
	
		
			
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			                s->clippings++;                                         \ | 
		
		
	
		
			
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			                dst[n] = min;                                           \ | 
		
		
	
		
			
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			            } else if (need_clipping && sample > max) {                 \ | 
		
		
	
		
			
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			                s->clippings++;                                         \ | 
		
		
	
		
			
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			                dst[n] = max;                                           \ | 
		
		
	
		
			
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			            } else {                                                    \ | 
		
		
	
		
			
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			                dst[n] = sample;                                        \ | 
		
		
	
		
			
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			            }                                                           \ | 
		
		
	
		
			
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			        }                                                               \ | 
		
		
	
		
			
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			    }                                                                   \ | 
		
		
	
		
			
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			} | 
		
		
	
		
			
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			IIR_FRAME(s16p, int16_t, INT16_MIN, INT16_MAX, 1) | 
		
		
	
		
			
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			IIR_FRAME(s32p, int32_t, INT32_MIN, INT32_MAX, 1) | 
		
		
	
		
			
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			IIR_FRAME(fltp, float,         -1.,        1., 0) | 
		
		
	
		
			
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			IIR_FRAME(dblp, double,        -1.,        1., 0) | 
		
		
	
		
			
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			static void count_coefficients(char *item_str, int *nb_items) | 
		
		
	
		
			
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			{ | 
		
		
	
		
			
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			    char *p; | 
		
		
	
		
			
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			    *nb_items = 1; | 
		
		
	
		
			
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			    for (p = item_str; *p && *p != '|'; p++) { | 
		
		
	
		
			
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			        if (*p == ' ') | 
		
		
	
		
			
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			            (*nb_items)++; | 
		
		
	
		
			
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			    } | 
		
		
	
		
			
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			} | 
		
		
	
		
			
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			static int read_coefficients(AVFilterContext *ctx, char *item_str, int nb_items, double *dst) | 
		
		
	
		
			
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			{ | 
		
		
	
		
			
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			    char *p, *arg, *old_str, *saveptr = NULL; | 
		
		
	
		
			
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			    int i; | 
		
		
	
		
			
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			    p = old_str = av_strdup(item_str); | 
		
		
	
		
			
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			    if (!p) | 
		
		
	
		
			
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			        return AVERROR(ENOMEM); | 
		
		
	
		
			
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			    for (i = 0; i < nb_items; i++) { | 
		
		
	
		
			
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			        if (!(arg = av_strtok(p, " ", &saveptr))) | 
		
		
	
		
			
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			            break; | 
		
		
	
		
			
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			        p = NULL; | 
		
		
	
		
			
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			        if (sscanf(arg, "%lf", &dst[i]) != 1) { | 
		
		
	
		
			
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			            av_log(ctx, AV_LOG_ERROR, "Invalid coefficients supplied: %s\n", arg); | 
		
		
	
		
			
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			            return AVERROR(EINVAL); | 
		
		
	
		
			
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			        } | 
		
		
	
		
			
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			    } | 
		
		
	
		
			
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			    av_freep(&old_str); | 
		
		
	
		
			
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			    return 0; | 
		
		
	
		
			
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			} | 
		
		
	
		
			
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			static int read_channels(AVFilterContext *ctx, int channels, uint8_t *item_str, int *nb, double **c, double **cache) | 
		
		
	
		
			
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			{ | 
		
		
	
		
			
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			    char *p, *arg, *old_str, *prev_arg = NULL, *saveptr = NULL; | 
		
		
	
		
			
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			    int i, ret; | 
		
		
	
		
			
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			    p = old_str = av_strdup(item_str); | 
		
		
	
		
			
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			    if (!p) | 
		
		
	
		
			
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			        return AVERROR(ENOMEM); | 
		
		
	
		
			
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			    for (i = 0; i < channels; i++) { | 
		
		
	
		
			
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			        if (!(arg = av_strtok(p, "|", &saveptr))) | 
		
		
	
		
			
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			            arg = prev_arg; | 
		
		
	
		
			
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			        p = NULL; | 
		
		
	
		
			
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			        count_coefficients(arg, &nb[i]); | 
		
		
	
		
			
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			        cache[i] = av_calloc(nb[i], sizeof(cache[i])); | 
		
		
	
		
			
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			        c[i] = av_calloc(nb[i], sizeof(c[i])); | 
		
		
	
		
			
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			        if (!c[i] || !cache[i]) | 
		
		
	
		
			
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			            return AVERROR(ENOMEM); | 
		
		
	
		
			
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			        ret = read_coefficients(ctx, arg, nb[i], c[i]); | 
		
		
	
		
			
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			        if (ret < 0) | 
		
		
	
		
			
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			            return ret; | 
		
		
	
		
			
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			        prev_arg = arg; | 
		
		
	
		
			
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			    } | 
		
		
	
		
			
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			    av_freep(&old_str); | 
		
		
	
		
			
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			    return 0; | 
		
		
	
		
			
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			} | 
		
		
	
		
			
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			static int config_output(AVFilterLink *outlink) | 
		
		
	
		
			
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			{ | 
		
		
	
		
			
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			    AVFilterContext *ctx = outlink->src; | 
		
		
	
		
			
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			    AudioIIRContext *s = ctx->priv; | 
		
		
	
		
			
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			    AVFilterLink *inlink = ctx->inputs[0]; | 
		
		
	
		
			
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			    int ch, ret, i; | 
		
		
	
		
			
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			    s->channels = inlink->channels; | 
		
		
	
		
			
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			    s->a = av_calloc(inlink->channels, sizeof(*s->a)); | 
		
		
	
		
			
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			    s->b = av_calloc(inlink->channels, sizeof(*s->b)); | 
		
		
	
		
			
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			    s->nb_a = av_calloc(inlink->channels, sizeof(*s->nb_a)); | 
		
		
	
		
			
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			    s->nb_b = av_calloc(inlink->channels, sizeof(*s->nb_b)); | 
		
		
	
		
			
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			    s->input = av_calloc(inlink->channels, sizeof(*s->input)); | 
		
		
	
		
			
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			    s->output = av_calloc(inlink->channels, sizeof(*s->output)); | 
		
		
	
		
			
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			    if (!s->a || !s->b || !s->nb_a || !s->nb_b || !s->input || !s->output) | 
		
		
	
		
			
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			        return AVERROR(ENOMEM); | 
		
		
	
		
			
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			    ret = read_channels(ctx, inlink->channels, s->a_str, s->nb_a, s->a, s->output); | 
		
		
	
		
			
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			    if (ret < 0) | 
		
		
	
		
			
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			        return ret; | 
		
		
	
		
			
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			    ret = read_channels(ctx, inlink->channels, s->b_str, s->nb_b, s->b, s->input); | 
		
		
	
		
			
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			    if (ret < 0) | 
		
		
	
		
			
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			        return ret; | 
		
		
	
		
			
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			    for (ch = 0; ch < inlink->channels; ch++) { | 
		
		
	
		
			
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			        for (i = 1; i < s->nb_a[ch]; i++) { | 
		
		
	
		
			
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			            s->a[ch][i] /= s->a[ch][0]; | 
		
		
	
		
			
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			        } | 
		
		
	
		
			
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			        for (i = 0; i < s->nb_b[ch]; i++) { | 
		
		
	
		
			
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			            s->b[ch][i] /= s->a[ch][0]; | 
		
		
	
		
			
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			        } | 
		
		
	
		
			
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			    } | 
		
		
	
		
			
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			    switch (inlink->format) { | 
		
		
	
		
			
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			    case AV_SAMPLE_FMT_DBLP: s->iir_frame = iir_frame_dblp; break; | 
		
		
	
		
			
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			    case AV_SAMPLE_FMT_FLTP: s->iir_frame = iir_frame_fltp; break; | 
		
		
	
		
			
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			    case AV_SAMPLE_FMT_S32P: s->iir_frame = iir_frame_s32p; break; | 
		
		
	
		
			
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			    case AV_SAMPLE_FMT_S16P: s->iir_frame = iir_frame_s16p; break; | 
		
		
	
		
			
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			    } | 
		
		
	
		
			
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			    return 0; | 
		
		
	
		
			
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			} | 
		
		
	
		
			
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			static int filter_frame(AVFilterLink *inlink, AVFrame *in) | 
		
		
	
		
			
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			{ | 
		
		
	
		
			
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			    AVFilterContext *ctx = inlink->dst; | 
		
		
	
		
			
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			    AudioIIRContext *s = ctx->priv; | 
		
		
	
		
			
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			    AVFilterLink *outlink = ctx->outputs[0]; | 
		
		
	
		
			
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			    AVFrame *out; | 
		
		
	
		
			
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  | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			    if (av_frame_is_writable(in)) { | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			        out = in; | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			    } else { | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			        out = ff_get_audio_buffer(outlink, in->nb_samples); | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			        if (!out) { | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			            av_frame_free(&in); | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			            return AVERROR(ENOMEM); | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			        } | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			        av_frame_copy_props(out, in); | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			    } | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			
  | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			    s->iir_frame(ctx, in, out); | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			
  | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			    if (s->clippings > 0) | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			        av_log(ctx, AV_LOG_WARNING, "clipping %d times. Please reduce gain.\n", s->clippings); | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			    s->clippings = 0; | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			
  | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			    if (in != out) | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			        av_frame_free(&in); | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			
  | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			    return ff_filter_frame(outlink, out); | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			} | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			
  | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			static av_cold void uninit(AVFilterContext *ctx) | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			{ | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			    AudioIIRContext *s = ctx->priv; | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			    int ch; | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			
  | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			    if (s->a) { | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			        for (ch = 0; ch < s->channels; ch++) { | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			            av_freep(&s->a[ch]); | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			            av_freep(&s->output[ch]); | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			        } | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			    } | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			    av_freep(&s->a); | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			
  | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			    if (s->b) { | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			        for (ch = 0; ch < s->channels; ch++) { | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			            av_freep(&s->b[ch]); | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			            av_freep(&s->input[ch]); | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			        } | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			    } | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			    av_freep(&s->b); | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			
  | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			    av_freep(&s->input); | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			    av_freep(&s->output); | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			
  | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			    av_freep(&s->nb_a); | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			    av_freep(&s->nb_b); | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			} | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			
  | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			static const AVFilterPad inputs[] = { | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			    { | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			        .name         = "default", | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			        .type         = AVMEDIA_TYPE_AUDIO, | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			        .filter_frame = filter_frame, | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			    }, | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			    { NULL } | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			}; | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			
  | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			static const AVFilterPad outputs[] = { | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			    { | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			        .name         = "default", | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			        .type         = AVMEDIA_TYPE_AUDIO, | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			        .config_props = config_output, | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			    }, | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			    { NULL } | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			}; | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			
  | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			#define OFFSET(x) offsetof(AudioIIRContext, x) | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			#define AF AV_OPT_FLAG_AUDIO_PARAM|AV_OPT_FLAG_FILTERING_PARAM | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			
  | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			static const AVOption aiir_options[] = { | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			    { "a", "set A/denominator/poles coefficients", OFFSET(a_str),    AV_OPT_TYPE_STRING, {.str="1 1"}, 0, 0, AF }, | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			    { "b", "set B/numerator/zeros coefficients",   OFFSET(b_str),    AV_OPT_TYPE_STRING, {.str="1 1"}, 0, 0, AF }, | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			    { "dry", "set dry gain",                       OFFSET(dry_gain), AV_OPT_TYPE_DOUBLE, {.dbl=1},     0, 1, AF }, | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			    { "wet", "set wet gain",                       OFFSET(wet_gain), AV_OPT_TYPE_DOUBLE, {.dbl=1},     0, 1, AF }, | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			    { NULL }, | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			}; | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			
  | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			AVFILTER_DEFINE_CLASS(aiir); | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			
  | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			AVFilter ff_af_aiir = { | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			    .name          = "aiir", | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			    .description   = NULL_IF_CONFIG_SMALL("Apply Infinite Impulse Response filter with supplied coefficients."), | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			    .priv_size     = sizeof(AudioIIRContext), | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			    .uninit        = uninit, | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			    .query_formats = query_formats, | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			    .inputs        = inputs, | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			    .outputs       = outputs, | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			    .priv_class    = &aiir_class, | 
		
		
	
		
			
			 | 
			 | 
			
			 | 
			}; |