1761 lines
		
	
	
		
			67 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			1761 lines
		
	
	
		
			67 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
| /*
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|  * Copyright (c) 2017 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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| 
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| #include "libavutil/avassert.h"
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| #include "libavutil/channel_layout.h"
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| #include "libavutil/opt.h"
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| #include "libavutil/tx.h"
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| #include "avfilter.h"
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| #include "audio.h"
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| #include "filters.h"
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| #include "internal.h"
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| #include "formats.h"
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| #include "window_func.h"
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| 
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| typedef struct AudioSurroundContext {
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|     const AVClass *class;
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| 
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|     char *out_channel_layout_str;
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|     char *in_channel_layout_str;
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| 
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|     float level_in;
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|     float level_out;
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|     float fc_in;
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|     float fc_out;
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|     float fl_in;
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|     float fl_out;
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|     float fr_in;
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|     float fr_out;
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|     float sl_in;
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|     float sl_out;
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|     float sr_in;
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|     float sr_out;
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|     float bl_in;
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|     float bl_out;
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|     float br_in;
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|     float br_out;
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|     float bc_in;
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|     float bc_out;
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|     float lfe_in;
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|     float lfe_out;
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|     int   lfe_mode;
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|     float angle;
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|     int   win_size;
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|     int   win_func;
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|     float overlap;
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| 
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|     float all_x;
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|     float all_y;
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| 
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|     float fc_x;
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|     float fl_x;
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|     float fr_x;
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|     float bl_x;
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|     float br_x;
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|     float sl_x;
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|     float sr_x;
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|     float bc_x;
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| 
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|     float fc_y;
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|     float fl_y;
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|     float fr_y;
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|     float bl_y;
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|     float br_y;
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|     float sl_y;
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|     float sr_y;
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|     float bc_y;
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| 
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|     float *input_levels;
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|     float *output_levels;
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|     int output_lfe;
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|     int lowcutf;
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|     int highcutf;
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| 
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|     float lowcut;
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|     float highcut;
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| 
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|     AVChannelLayout out_channel_layout;
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|     AVChannelLayout in_channel_layout;
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|     int nb_in_channels;
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|     int nb_out_channels;
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| 
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|     AVFrame *input_in;
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|     AVFrame *input;
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|     AVFrame *output;
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|     AVFrame *output_out;
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|     AVFrame *overlap_buffer;
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|     AVFrame *window;
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| 
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|     int buf_size;
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|     int hop_size;
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|     AVTXContext **rdft, **irdft;
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|     av_tx_fn tx_fn, itx_fn;
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|     float *window_func_lut;
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| 
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|     void (*filter)(AVFilterContext *ctx);
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|     void (*upmix_stereo)(AVFilterContext *ctx,
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|                          float l_phase,
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|                          float r_phase,
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|                          float c_phase,
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|                          float mag_total,
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|                          float x, float y,
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|                          int n);
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|     void (*upmix_2_1)(AVFilterContext *ctx,
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|                       float l_phase,
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|                       float r_phase,
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|                       float c_phase,
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|                       float mag_total,
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|                       float lfe_im,
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|                       float lfe_re,
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|                       float x, float y,
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|                       int n);
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|     void (*upmix_3_0)(AVFilterContext *ctx,
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|                       float l_phase,
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|                       float r_phase,
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|                       float c_mag,
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|                       float c_phase,
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|                       float mag_total,
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|                       float x, float y,
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|                       int n);
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|     void (*upmix_5_0)(AVFilterContext *ctx,
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|                       float c_re, float c_im,
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|                       float mag_totall, float mag_totalr,
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|                       float fl_phase, float fr_phase,
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|                       float bl_phase, float br_phase,
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|                       float sl_phase, float sr_phase,
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|                       float xl, float yl,
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|                       float xr, float yr,
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|                       int n);
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|     void (*upmix_5_1)(AVFilterContext *ctx,
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|                       float c_re, float c_im,
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|                       float lfe_re, float lfe_im,
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|                       float mag_totall, float mag_totalr,
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|                       float fl_phase, float fr_phase,
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|                       float bl_phase, float br_phase,
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|                       float sl_phase, float sr_phase,
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|                       float xl, float yl,
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|                       float xr, float yr,
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|                       int n);
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| } AudioSurroundContext;
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| 
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| static int query_formats(AVFilterContext *ctx)
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| {
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|     AudioSurroundContext *s = ctx->priv;
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|     AVFilterFormats *formats = NULL;
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|     AVFilterChannelLayouts *layouts = NULL;
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|     int ret;
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| 
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|     ret = ff_add_format(&formats, AV_SAMPLE_FMT_FLTP);
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|     if (ret)
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|         return ret;
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|     ret = ff_set_common_formats(ctx, formats);
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|     if (ret)
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|         return ret;
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| 
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|     layouts = NULL;
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|     ret = ff_add_channel_layout(&layouts, &s->out_channel_layout);
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|     if (ret)
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|         return ret;
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| 
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|     ret = ff_channel_layouts_ref(layouts, &ctx->outputs[0]->incfg.channel_layouts);
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|     if (ret)
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|         return ret;
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| 
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|     layouts = NULL;
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|     ret = ff_add_channel_layout(&layouts, &s->in_channel_layout);
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|     if (ret)
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|         return ret;
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| 
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|     ret = ff_channel_layouts_ref(layouts, &ctx->inputs[0]->outcfg.channel_layouts);
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|     if (ret)
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|         return ret;
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| 
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|     return ff_set_common_all_samplerates(ctx);
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| }
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| 
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| static int config_input(AVFilterLink *inlink)
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| {
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|     AVFilterContext *ctx = inlink->dst;
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|     AudioSurroundContext *s = ctx->priv;
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|     int ch;
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| 
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|     s->rdft = av_calloc(inlink->ch_layout.nb_channels, sizeof(*s->rdft));
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|     if (!s->rdft)
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|         return AVERROR(ENOMEM);
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|     s->nb_in_channels = inlink->ch_layout.nb_channels;
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| 
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|     for (ch = 0; ch < inlink->ch_layout.nb_channels; ch++) {
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|         float scale = 1.f;
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| 
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|         av_tx_init(&s->rdft[ch], &s->tx_fn, AV_TX_FLOAT_RDFT, 0, s->buf_size, &scale, 0);
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|         if (!s->rdft[ch])
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|             return AVERROR(ENOMEM);
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|     }
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|     s->input_levels = av_malloc_array(s->nb_in_channels, sizeof(*s->input_levels));
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|     if (!s->input_levels)
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|         return AVERROR(ENOMEM);
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|     for (ch = 0;  ch < s->nb_in_channels; ch++)
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|         s->input_levels[ch] = s->level_in;
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|     ch = av_channel_layout_index_from_channel(&inlink->ch_layout, AV_CHAN_FRONT_CENTER);
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|     if (ch >= 0)
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|         s->input_levels[ch] *= s->fc_in;
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|     ch = av_channel_layout_index_from_channel(&inlink->ch_layout, AV_CHAN_FRONT_LEFT);
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|     if (ch >= 0)
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|         s->input_levels[ch] *= s->fl_in;
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|     ch = av_channel_layout_index_from_channel(&inlink->ch_layout, AV_CHAN_FRONT_RIGHT);
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|     if (ch >= 0)
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|         s->input_levels[ch] *= s->fr_in;
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|     ch = av_channel_layout_index_from_channel(&inlink->ch_layout, AV_CHAN_SIDE_LEFT);
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|     if (ch >= 0)
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|         s->input_levels[ch] *= s->sl_in;
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|     ch = av_channel_layout_index_from_channel(&inlink->ch_layout, AV_CHAN_SIDE_RIGHT);
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|     if (ch >= 0)
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|         s->input_levels[ch] *= s->sr_in;
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|     ch = av_channel_layout_index_from_channel(&inlink->ch_layout, AV_CHAN_BACK_LEFT);
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|     if (ch >= 0)
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|         s->input_levels[ch] *= s->bl_in;
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|     ch = av_channel_layout_index_from_channel(&inlink->ch_layout, AV_CHAN_BACK_RIGHT);
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|     if (ch >= 0)
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|         s->input_levels[ch] *= s->br_in;
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|     ch = av_channel_layout_index_from_channel(&inlink->ch_layout, AV_CHAN_BACK_CENTER);
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|     if (ch >= 0)
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|         s->input_levels[ch] *= s->bc_in;
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|     ch = av_channel_layout_index_from_channel(&inlink->ch_layout, AV_CHAN_LOW_FREQUENCY);
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|     if (ch >= 0)
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|         s->input_levels[ch] *= s->lfe_in;
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| 
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|     s->window = ff_get_audio_buffer(inlink, s->buf_size * 2);
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|     if (!s->window)
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|         return AVERROR(ENOMEM);
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| 
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|     s->input_in = ff_get_audio_buffer(inlink, s->buf_size * 2);
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|     if (!s->input_in)
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|         return AVERROR(ENOMEM);
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| 
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|     s->input = ff_get_audio_buffer(inlink, s->buf_size + 2);
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|     if (!s->input)
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|         return AVERROR(ENOMEM);
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| 
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|     s->lowcut = 1.f * s->lowcutf / (inlink->sample_rate * 0.5) * (s->buf_size / 2);
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|     s->highcut = 1.f * s->highcutf / (inlink->sample_rate * 0.5) * (s->buf_size / 2);
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| 
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|     return 0;
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| }
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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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|     AudioSurroundContext *s = ctx->priv;
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|     int ch;
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| 
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|     s->irdft = av_calloc(outlink->ch_layout.nb_channels, sizeof(*s->irdft));
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|     if (!s->irdft)
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|         return AVERROR(ENOMEM);
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|     s->nb_out_channels = outlink->ch_layout.nb_channels;
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| 
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|     for (ch = 0; ch < outlink->ch_layout.nb_channels; ch++) {
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|         float iscale = 1.f;
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| 
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|         av_tx_init(&s->irdft[ch], &s->itx_fn, AV_TX_FLOAT_RDFT, 1, s->buf_size, &iscale, 0);
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|         if (!s->irdft[ch])
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|             return AVERROR(ENOMEM);
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|     }
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|     s->output_levels = av_malloc_array(s->nb_out_channels, sizeof(*s->output_levels));
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|     if (!s->output_levels)
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|         return AVERROR(ENOMEM);
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|     for (ch = 0;  ch < s->nb_out_channels; ch++)
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|         s->output_levels[ch] = s->level_out;
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|     ch = av_channel_layout_index_from_channel(&outlink->ch_layout, AV_CHAN_FRONT_CENTER);
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|     if (ch >= 0)
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|         s->output_levels[ch] *= s->fc_out;
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|     ch = av_channel_layout_index_from_channel(&outlink->ch_layout, AV_CHAN_FRONT_LEFT);
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|     if (ch >= 0)
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|         s->output_levels[ch] *= s->fl_out;
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|     ch = av_channel_layout_index_from_channel(&outlink->ch_layout, AV_CHAN_FRONT_RIGHT);
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|     if (ch >= 0)
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|         s->output_levels[ch] *= s->fr_out;
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|     ch = av_channel_layout_index_from_channel(&outlink->ch_layout, AV_CHAN_SIDE_LEFT);
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|     if (ch >= 0)
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|         s->output_levels[ch] *= s->sl_out;
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|     ch = av_channel_layout_index_from_channel(&outlink->ch_layout, AV_CHAN_SIDE_RIGHT);
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|     if (ch >= 0)
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|         s->output_levels[ch] *= s->sr_out;
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|     ch = av_channel_layout_index_from_channel(&outlink->ch_layout, AV_CHAN_BACK_LEFT);
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|     if (ch >= 0)
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|         s->output_levels[ch] *= s->bl_out;
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|     ch = av_channel_layout_index_from_channel(&outlink->ch_layout, AV_CHAN_BACK_RIGHT);
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|     if (ch >= 0)
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|         s->output_levels[ch] *= s->br_out;
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|     ch = av_channel_layout_index_from_channel(&outlink->ch_layout, AV_CHAN_BACK_CENTER);
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|     if (ch >= 0)
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|         s->output_levels[ch] *= s->bc_out;
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|     ch = av_channel_layout_index_from_channel(&outlink->ch_layout, AV_CHAN_LOW_FREQUENCY);
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|     if (ch >= 0)
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|         s->output_levels[ch] *= s->lfe_out;
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| 
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|     s->output_out = ff_get_audio_buffer(outlink, s->buf_size + 2);
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|     s->output = ff_get_audio_buffer(outlink, s->buf_size + 2);
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|     s->overlap_buffer = ff_get_audio_buffer(outlink, s->buf_size * 2);
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|     if (!s->overlap_buffer || !s->output || !s->output_out)
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|         return AVERROR(ENOMEM);
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| 
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|     return 0;
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| }
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| 
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| static void stereo_transform(float *x, float *y, float angle)
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| {
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|     float reference, r, a;
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| 
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|     if (angle == 90.f)
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|         return;
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| 
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|     reference = angle * M_PI / 180.f;
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|     r = hypotf(*x, *y);
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|     a = atan2f(*x, *y);
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| 
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|     if (fabsf(a) <= M_PI_4)
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|         a *= reference / M_PI_2;
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|     else
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|         a = M_PI + 2 * (-2 * M_PI + reference) * (M_PI - fabsf(a)) * FFDIFFSIGN(a, 0) / (3 * M_PI);
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| 
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|     *x = av_clipf(sinf(a) * r, -1.f, 1.f);
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|     *y = av_clipf(cosf(a) * r, -1.f, 1.f);
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| }
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| 
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| static void stereo_position(float a, float p, float *x, float *y)
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| {
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|     av_assert2(a >= -1.f && a <= 1.f);
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|     av_assert2(p >= 0.f && p <= M_PI);
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|     *x = av_clipf(a+a*FFMAX(0, p*p-M_PI_2), -1.f, 1.f);
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|     *y = av_clipf(cosf(a*M_PI_2+M_PI)*cosf(M_PI_2-p/M_PI)*M_LN10+1, -1.f, 1.f);
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| }
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| 
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| static inline void get_lfe(int output_lfe, int n, float lowcut, float highcut,
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|                            float *lfe_mag, float *mag_total, int lfe_mode)
 | |
| {
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|     if (output_lfe && n < highcut) {
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|         *lfe_mag    = n < lowcut ? 1.f : .5f*(1.f+cosf(M_PI*(lowcut-n)/(lowcut-highcut)));
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|         *lfe_mag   *= *mag_total;
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|         if (lfe_mode)
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|             *mag_total -= *lfe_mag;
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|     } else {
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|         *lfe_mag = 0.f;
 | |
|     }
 | |
| }
 | |
| 
 | |
| static void upmix_1_0(AVFilterContext *ctx,
 | |
|                       float l_phase,
 | |
|                       float r_phase,
 | |
|                       float c_phase,
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|                       float mag_total,
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|                       float x, float y,
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|                       int n)
 | |
| {
 | |
|     AudioSurroundContext *s = ctx->priv;
 | |
|     float mag, *dst;
 | |
| 
 | |
|     dst = (float *)s->output->extended_data[0];
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| 
 | |
|     mag = powf(1.f - fabsf(x), s->fc_x) * powf((y + 1.f) * .5f, s->fc_y) * mag_total;
 | |
| 
 | |
|     dst[2 * n    ] = mag * cosf(c_phase);
 | |
|     dst[2 * n + 1] = mag * sinf(c_phase);
 | |
| }
 | |
| 
 | |
| static void upmix_stereo(AVFilterContext *ctx,
 | |
|                          float l_phase,
 | |
|                          float r_phase,
 | |
|                          float c_phase,
 | |
|                          float mag_total,
 | |
|                          float x, float y,
 | |
|                          int n)
 | |
| {
 | |
|     AudioSurroundContext *s = ctx->priv;
 | |
|     float l_mag, r_mag, *dstl, *dstr;
 | |
| 
 | |
|     dstl = (float *)s->output->extended_data[0];
 | |
|     dstr = (float *)s->output->extended_data[1];
 | |
| 
 | |
|     l_mag = powf(.5f * ( x + 1.f), s->fl_x) * powf((y + 1.f) * .5f, s->fl_y) * mag_total;
 | |
|     r_mag = powf(.5f * (-x + 1.f), s->fr_x) * powf((y + 1.f) * .5f, s->fr_y) * mag_total;
 | |
| 
 | |
|     dstl[2 * n    ] = l_mag * cosf(l_phase);
 | |
|     dstl[2 * n + 1] = l_mag * sinf(l_phase);
 | |
| 
 | |
|     dstr[2 * n    ] = r_mag * cosf(r_phase);
 | |
|     dstr[2 * n + 1] = r_mag * sinf(r_phase);
 | |
| }
 | |
| 
 | |
| static void upmix_2_1(AVFilterContext *ctx,
 | |
|                       float l_phase,
 | |
|                       float r_phase,
 | |
|                       float c_phase,
 | |
|                       float mag_total,
 | |
|                       float x, float y,
 | |
|                       int n)
 | |
| {
 | |
|     AudioSurroundContext *s = ctx->priv;
 | |
|     float lfe_mag, l_mag, r_mag, *dstl, *dstr, *dstlfe;
 | |
| 
 | |
|     dstl = (float *)s->output->extended_data[0];
 | |
|     dstr = (float *)s->output->extended_data[1];
 | |
|     dstlfe = (float *)s->output->extended_data[2];
 | |
| 
 | |
|     get_lfe(s->output_lfe, n, s->lowcut, s->highcut, &lfe_mag, &mag_total, s->lfe_mode);
 | |
| 
 | |
|     l_mag = powf(.5f * ( x + 1.f), s->fl_x) * powf((y + 1.f) * .5f, s->fl_y) * mag_total;
 | |
|     r_mag = powf(.5f * (-x + 1.f), s->fr_x) * powf((y + 1.f) * .5f, s->fr_y) * mag_total;
 | |
| 
 | |
|     dstl[2 * n    ] = l_mag * cosf(l_phase);
 | |
|     dstl[2 * n + 1] = l_mag * sinf(l_phase);
 | |
| 
 | |
|     dstr[2 * n    ] = r_mag * cosf(r_phase);
 | |
|     dstr[2 * n + 1] = r_mag * sinf(r_phase);
 | |
| 
 | |
|     dstlfe[2 * n    ] = lfe_mag * cosf(c_phase);
 | |
|     dstlfe[2 * n + 1] = lfe_mag * sinf(c_phase);
 | |
| }
 | |
| 
 | |
| static void upmix_3_0(AVFilterContext *ctx,
 | |
|                       float l_phase,
 | |
|                       float r_phase,
 | |
|                       float c_phase,
 | |
|                       float mag_total,
 | |
|                       float x, float y,
 | |
|                       int n)
 | |
| {
 | |
|     AudioSurroundContext *s = ctx->priv;
 | |
|     float l_mag, r_mag, c_mag, *dstc, *dstl, *dstr;
 | |
| 
 | |
|     dstl = (float *)s->output->extended_data[0];
 | |
|     dstr = (float *)s->output->extended_data[1];
 | |
|     dstc = (float *)s->output->extended_data[2];
 | |
| 
 | |
|     c_mag = powf(1.f - fabsf(x),   s->fc_x) * powf((y + 1.f) * .5f, s->fc_y) * mag_total;
 | |
|     l_mag = powf(.5f * ( x + 1.f), s->fl_x) * powf((y + 1.f) * .5f, s->fl_y) * mag_total;
 | |
|     r_mag = powf(.5f * (-x + 1.f), s->fr_x) * powf((y + 1.f) * .5f, s->fr_y) * mag_total;
 | |
| 
 | |
|     dstl[2 * n    ] = l_mag * cosf(l_phase);
 | |
|     dstl[2 * n + 1] = l_mag * sinf(l_phase);
 | |
| 
 | |
|     dstr[2 * n    ] = r_mag * cosf(r_phase);
 | |
|     dstr[2 * n + 1] = r_mag * sinf(r_phase);
 | |
| 
 | |
|     dstc[2 * n    ] = c_mag * cosf(c_phase);
 | |
|     dstc[2 * n + 1] = c_mag * sinf(c_phase);
 | |
| }
 | |
| 
 | |
| static void upmix_3_1(AVFilterContext *ctx,
 | |
|                       float l_phase,
 | |
|                       float r_phase,
 | |
|                       float c_phase,
 | |
|                       float mag_total,
 | |
|                       float x, float y,
 | |
|                       int n)
 | |
| {
 | |
|     AudioSurroundContext *s = ctx->priv;
 | |
|     float lfe_mag, l_mag, r_mag, c_mag, *dstc, *dstl, *dstr, *dstlfe;
 | |
| 
 | |
|     dstl = (float *)s->output->extended_data[0];
 | |
|     dstr = (float *)s->output->extended_data[1];
 | |
|     dstc = (float *)s->output->extended_data[2];
 | |
|     dstlfe = (float *)s->output->extended_data[3];
 | |
| 
 | |
|     get_lfe(s->output_lfe, n, s->lowcut, s->highcut, &lfe_mag, &mag_total, s->lfe_mode);
 | |
| 
 | |
|     c_mag = powf(1.f - fabsf(x),   s->fc_x) * powf((y + 1.f) * .5f, s->fc_y) * mag_total;
 | |
|     l_mag = powf(.5f * ( x + 1.f), s->fl_x) * powf((y + 1.f) * .5f, s->fl_y) * mag_total;
 | |
|     r_mag = powf(.5f * (-x + 1.f), s->fr_x) * powf((y + 1.f) * .5f, s->fr_y) * mag_total;
 | |
| 
 | |
|     dstl[2 * n    ] = l_mag * cosf(l_phase);
 | |
|     dstl[2 * n + 1] = l_mag * sinf(l_phase);
 | |
| 
 | |
|     dstr[2 * n    ] = r_mag * cosf(r_phase);
 | |
|     dstr[2 * n + 1] = r_mag * sinf(r_phase);
 | |
| 
 | |
|     dstc[2 * n    ] = c_mag * cosf(c_phase);
 | |
|     dstc[2 * n + 1] = c_mag * sinf(c_phase);
 | |
| 
 | |
|     dstlfe[2 * n    ] = lfe_mag * cosf(c_phase);
 | |
|     dstlfe[2 * n + 1] = lfe_mag * sinf(c_phase);
 | |
| }
 | |
| 
 | |
| static void upmix_3_1_surround(AVFilterContext *ctx,
 | |
|                                float l_phase,
 | |
|                                float r_phase,
 | |
|                                float c_phase,
 | |
|                                float c_mag,
 | |
|                                float mag_total,
 | |
|                                float x, float y,
 | |
|                                int n)
 | |
| {
 | |
|     AudioSurroundContext *s = ctx->priv;
 | |
|     float lfe_mag, l_mag, r_mag, *dstc, *dstl, *dstr, *dstlfe;
 | |
| 
 | |
|     dstl = (float *)s->output->extended_data[0];
 | |
|     dstr = (float *)s->output->extended_data[1];
 | |
|     dstc = (float *)s->output->extended_data[2];
 | |
|     dstlfe = (float *)s->output->extended_data[3];
 | |
| 
 | |
|     get_lfe(s->output_lfe, n, s->lowcut, s->highcut, &lfe_mag, &c_mag, s->lfe_mode);
 | |
| 
 | |
|     l_mag = powf(.5f * ( x + 1.f), s->fl_x) * powf((y + 1.f) * .5f, s->fl_y) * mag_total;
 | |
|     r_mag = powf(.5f * (-x + 1.f), s->fr_x) * powf((y + 1.f) * .5f, s->fr_y) * mag_total;
 | |
| 
 | |
|     dstl[2 * n    ] = l_mag * cosf(l_phase);
 | |
|     dstl[2 * n + 1] = l_mag * sinf(l_phase);
 | |
| 
 | |
|     dstr[2 * n    ] = r_mag * cosf(r_phase);
 | |
|     dstr[2 * n + 1] = r_mag * sinf(r_phase);
 | |
| 
 | |
|     dstc[2 * n    ] = c_mag * cosf(c_phase);
 | |
|     dstc[2 * n + 1] = c_mag * sinf(c_phase);
 | |
| 
 | |
|     dstlfe[2 * n    ] = lfe_mag * cosf(c_phase);
 | |
|     dstlfe[2 * n + 1] = lfe_mag * sinf(c_phase);
 | |
| }
 | |
| 
 | |
| static void upmix_4_0(AVFilterContext *ctx,
 | |
|                       float l_phase,
 | |
|                       float r_phase,
 | |
|                       float c_phase,
 | |
|                       float mag_total,
 | |
|                       float x, float y,
 | |
|                       int n)
 | |
| {
 | |
|     AudioSurroundContext *s = ctx->priv;
 | |
|     float b_mag, l_mag, r_mag, c_mag, *dstc, *dstl, *dstr, *dstb;
 | |
| 
 | |
|     dstl = (float *)s->output->extended_data[0];
 | |
|     dstr = (float *)s->output->extended_data[1];
 | |
|     dstc = (float *)s->output->extended_data[2];
 | |
|     dstb = (float *)s->output->extended_data[3];
 | |
| 
 | |
|     c_mag = powf(1.f - fabsf(x),   s->fc_x) * powf((y + 1.f) * .5f, s->fc_y) * mag_total;
 | |
|     b_mag = powf(1.f - fabsf(x),   s->bc_x) * powf((1.f - y) * .5f, s->bc_y) * mag_total;
 | |
|     l_mag = powf(.5f * ( x + 1.f), s->fl_x) * powf((y + 1.f) * .5f, s->fl_y) * mag_total;
 | |
|     r_mag = powf(.5f * (-x + 1.f), s->fr_x) * powf((y + 1.f) * .5f, s->fr_y) * mag_total;
 | |
| 
 | |
|     dstl[2 * n    ] = l_mag * cosf(l_phase);
 | |
|     dstl[2 * n + 1] = l_mag * sinf(l_phase);
 | |
| 
 | |
|     dstr[2 * n    ] = r_mag * cosf(r_phase);
 | |
|     dstr[2 * n + 1] = r_mag * sinf(r_phase);
 | |
| 
 | |
|     dstc[2 * n    ] = c_mag * cosf(c_phase);
 | |
|     dstc[2 * n + 1] = c_mag * sinf(c_phase);
 | |
| 
 | |
|     dstb[2 * n    ] = b_mag * cosf(c_phase);
 | |
|     dstb[2 * n + 1] = b_mag * sinf(c_phase);
 | |
| }
 | |
| 
 | |
| static void upmix_4_1(AVFilterContext *ctx,
 | |
|                       float l_phase,
 | |
|                       float r_phase,
 | |
|                       float c_phase,
 | |
|                       float mag_total,
 | |
|                       float x, float y,
 | |
|                       int n)
 | |
| {
 | |
|     AudioSurroundContext *s = ctx->priv;
 | |
|     float lfe_mag, b_mag, l_mag, r_mag, c_mag, *dstc, *dstl, *dstr, *dstb, *dstlfe;
 | |
| 
 | |
|     dstl = (float *)s->output->extended_data[0];
 | |
|     dstr = (float *)s->output->extended_data[1];
 | |
|     dstc = (float *)s->output->extended_data[2];
 | |
|     dstlfe = (float *)s->output->extended_data[3];
 | |
|     dstb = (float *)s->output->extended_data[4];
 | |
| 
 | |
|     get_lfe(s->output_lfe, n, s->lowcut, s->highcut, &lfe_mag, &mag_total, s->lfe_mode);
 | |
| 
 | |
|     dstlfe[2 * n    ] = lfe_mag * cosf(c_phase);
 | |
|     dstlfe[2 * n + 1] = lfe_mag * sinf(c_phase);
 | |
| 
 | |
|     c_mag = powf(1.f - fabsf(x),   s->fc_x) * powf((y + 1.f) * .5f, s->fc_y) * mag_total;
 | |
|     b_mag = powf(1.f - fabsf(x),   s->bc_x) * powf((1.f - y) * .5f, s->bc_y) * mag_total;
 | |
|     l_mag = powf(.5f * ( x + 1.f), s->fl_x) * powf((y + 1.f) * .5f, s->fl_y) * mag_total;
 | |
|     r_mag = powf(.5f * (-x + 1.f), s->fr_x) * powf((y + 1.f) * .5f, s->fr_y) * mag_total;
 | |
| 
 | |
|     dstl[2 * n    ] = l_mag * cosf(l_phase);
 | |
|     dstl[2 * n + 1] = l_mag * sinf(l_phase);
 | |
| 
 | |
|     dstr[2 * n    ] = r_mag * cosf(r_phase);
 | |
|     dstr[2 * n + 1] = r_mag * sinf(r_phase);
 | |
| 
 | |
|     dstc[2 * n    ] = c_mag * cosf(c_phase);
 | |
|     dstc[2 * n + 1] = c_mag * sinf(c_phase);
 | |
| 
 | |
|     dstb[2 * n    ] = b_mag * cosf(c_phase);
 | |
|     dstb[2 * n + 1] = b_mag * sinf(c_phase);
 | |
| }
 | |
| 
 | |
| static void upmix_5_0_back(AVFilterContext *ctx,
 | |
|                            float l_phase,
 | |
|                            float r_phase,
 | |
|                            float c_phase,
 | |
|                            float mag_total,
 | |
|                            float x, float y,
 | |
|                            int n)
 | |
| {
 | |
|     AudioSurroundContext *s = ctx->priv;
 | |
|     float l_mag, r_mag, ls_mag, rs_mag, c_mag, *dstc, *dstl, *dstr, *dstls, *dstrs;
 | |
| 
 | |
|     dstl  = (float *)s->output->extended_data[0];
 | |
|     dstr  = (float *)s->output->extended_data[1];
 | |
|     dstc  = (float *)s->output->extended_data[2];
 | |
|     dstls = (float *)s->output->extended_data[3];
 | |
|     dstrs = (float *)s->output->extended_data[4];
 | |
| 
 | |
|     c_mag  = powf(1.f - fabsf(x),   s->fc_x) * powf((y + 1.f) * .5f, s->fc_y) * mag_total;
 | |
|     l_mag  = powf(.5f * ( x + 1.f), s->fl_x) * powf((y + 1.f) * .5f, s->fl_y) * mag_total;
 | |
|     r_mag  = powf(.5f * (-x + 1.f), s->fr_x) * powf((y + 1.f) * .5f, s->fr_y) * mag_total;
 | |
|     ls_mag = powf(.5f * ( x + 1.f), s->bl_x) * powf(1.f - ((y + 1.f) * .5f), s->bl_y) * mag_total;
 | |
|     rs_mag = powf(.5f * (-x + 1.f), s->br_x) * powf(1.f - ((y + 1.f) * .5f), s->br_y) * mag_total;
 | |
| 
 | |
|     dstl[2 * n    ] = l_mag * cosf(l_phase);
 | |
|     dstl[2 * n + 1] = l_mag * sinf(l_phase);
 | |
| 
 | |
|     dstr[2 * n    ] = r_mag * cosf(r_phase);
 | |
|     dstr[2 * n + 1] = r_mag * sinf(r_phase);
 | |
| 
 | |
|     dstc[2 * n    ] = c_mag * cosf(c_phase);
 | |
|     dstc[2 * n + 1] = c_mag * sinf(c_phase);
 | |
| 
 | |
|     dstls[2 * n    ] = ls_mag * cosf(l_phase);
 | |
|     dstls[2 * n + 1] = ls_mag * sinf(l_phase);
 | |
| 
 | |
|     dstrs[2 * n    ] = rs_mag * cosf(r_phase);
 | |
|     dstrs[2 * n + 1] = rs_mag * sinf(r_phase);
 | |
| }
 | |
| 
 | |
| static void upmix_5_1_back(AVFilterContext *ctx,
 | |
|                            float l_phase,
 | |
|                            float r_phase,
 | |
|                            float c_phase,
 | |
|                            float mag_total,
 | |
|                            float x, float y,
 | |
|                            int n)
 | |
| {
 | |
|     AudioSurroundContext *s = ctx->priv;
 | |
|     float lfe_mag, l_mag, r_mag, ls_mag, rs_mag, c_mag, *dstc, *dstl, *dstr, *dstls, *dstrs, *dstlfe;
 | |
| 
 | |
|     dstl  = (float *)s->output->extended_data[0];
 | |
|     dstr  = (float *)s->output->extended_data[1];
 | |
|     dstc  = (float *)s->output->extended_data[2];
 | |
|     dstlfe = (float *)s->output->extended_data[3];
 | |
|     dstls = (float *)s->output->extended_data[4];
 | |
|     dstrs = (float *)s->output->extended_data[5];
 | |
| 
 | |
|     get_lfe(s->output_lfe, n, s->lowcut, s->highcut, &lfe_mag, &mag_total, s->lfe_mode);
 | |
| 
 | |
|     c_mag  = powf(1.f - fabsf(x),   s->fc_x) * powf((y + 1.f) * .5f, s->fc_y) * mag_total;
 | |
|     l_mag  = powf(.5f * ( x + 1.f), s->fl_x) * powf((y + 1.f) * .5f, s->fl_y) * mag_total;
 | |
|     r_mag  = powf(.5f * (-x + 1.f), s->fr_x) * powf((y + 1.f) * .5f, s->fr_y) * mag_total;
 | |
|     ls_mag = powf(.5f * ( x + 1.f), s->bl_x) * powf(1.f - ((y + 1.f) * .5f), s->bl_y) * mag_total;
 | |
|     rs_mag = powf(.5f * (-x + 1.f), s->br_x) * powf(1.f - ((y + 1.f) * .5f), s->br_y) * mag_total;
 | |
| 
 | |
|     dstl[2 * n    ] = l_mag * cosf(l_phase);
 | |
|     dstl[2 * n + 1] = l_mag * sinf(l_phase);
 | |
| 
 | |
|     dstr[2 * n    ] = r_mag * cosf(r_phase);
 | |
|     dstr[2 * n + 1] = r_mag * sinf(r_phase);
 | |
| 
 | |
|     dstc[2 * n    ] = c_mag * cosf(c_phase);
 | |
|     dstc[2 * n + 1] = c_mag * sinf(c_phase);
 | |
| 
 | |
|     dstlfe[2 * n    ] = lfe_mag * cosf(c_phase);
 | |
|     dstlfe[2 * n + 1] = lfe_mag * sinf(c_phase);
 | |
| 
 | |
|     dstls[2 * n    ] = ls_mag * cosf(l_phase);
 | |
|     dstls[2 * n + 1] = ls_mag * sinf(l_phase);
 | |
| 
 | |
|     dstrs[2 * n    ] = rs_mag * cosf(r_phase);
 | |
|     dstrs[2 * n + 1] = rs_mag * sinf(r_phase);
 | |
| }
 | |
| 
 | |
| static void upmix_6_0(AVFilterContext *ctx,
 | |
|                       float l_phase,
 | |
|                       float r_phase,
 | |
|                       float c_phase,
 | |
|                       float mag_total,
 | |
|                       float x, float y,
 | |
|                       int n)
 | |
| {
 | |
|     AudioSurroundContext *s = ctx->priv;
 | |
|     float l_mag, r_mag, ls_mag, rs_mag, c_mag, b_mag, *dstc, *dstb, *dstl, *dstr, *dstls, *dstrs;
 | |
| 
 | |
|     dstl  = (float *)s->output->extended_data[0];
 | |
|     dstr  = (float *)s->output->extended_data[1];
 | |
|     dstc  = (float *)s->output->extended_data[2];
 | |
|     dstb  = (float *)s->output->extended_data[3];
 | |
|     dstls = (float *)s->output->extended_data[4];
 | |
|     dstrs = (float *)s->output->extended_data[5];
 | |
| 
 | |
|     c_mag  = powf(1.f - fabsf(x),   s->fc_x) * powf((y + 1.f) * .5f, s->fc_y) * mag_total;
 | |
|     b_mag  = powf(1.f - fabsf(x),   s->bc_x) * powf((1.f - y) * .5f, s->bc_y) * mag_total;
 | |
|     l_mag  = powf(.5f * ( x + 1.f), s->fl_x) * powf((y + 1.f) * .5f, s->fl_y) * mag_total;
 | |
|     r_mag  = powf(.5f * (-x + 1.f), s->fr_x) * powf((y + 1.f) * .5f, s->fr_y) * mag_total;
 | |
|     ls_mag = powf(.5f * ( x + 1.f), s->bl_x) * powf(1.f - ((y + 1.f) * .5f), s->bl_y) * mag_total;
 | |
|     rs_mag = powf(.5f * (-x + 1.f), s->br_x) * powf(1.f - ((y + 1.f) * .5f), s->br_y) * mag_total;
 | |
| 
 | |
|     dstl[2 * n    ] = l_mag * cosf(l_phase);
 | |
|     dstl[2 * n + 1] = l_mag * sinf(l_phase);
 | |
| 
 | |
|     dstr[2 * n    ] = r_mag * cosf(r_phase);
 | |
|     dstr[2 * n + 1] = r_mag * sinf(r_phase);
 | |
| 
 | |
|     dstc[2 * n    ] = c_mag * cosf(c_phase);
 | |
|     dstc[2 * n + 1] = c_mag * sinf(c_phase);
 | |
| 
 | |
|     dstls[2 * n    ] = ls_mag * cosf(l_phase);
 | |
|     dstls[2 * n + 1] = ls_mag * sinf(l_phase);
 | |
| 
 | |
|     dstrs[2 * n    ] = rs_mag * cosf(r_phase);
 | |
|     dstrs[2 * n + 1] = rs_mag * sinf(r_phase);
 | |
| 
 | |
|     dstb[2 * n    ] = b_mag * cosf(c_phase);
 | |
|     dstb[2 * n + 1] = b_mag * sinf(c_phase);
 | |
| }
 | |
| 
 | |
| static void upmix_6_1(AVFilterContext *ctx,
 | |
|                       float l_phase,
 | |
|                       float r_phase,
 | |
|                       float c_phase,
 | |
|                       float mag_total,
 | |
|                       float x, float y,
 | |
|                       int n)
 | |
| {
 | |
|     AudioSurroundContext *s = ctx->priv;
 | |
|     float lfe_mag, l_mag, r_mag, ls_mag, rs_mag, c_mag, b_mag, *dstc, *dstb, *dstl, *dstr, *dstls, *dstrs, *dstlfe;
 | |
| 
 | |
|     dstl  = (float *)s->output->extended_data[0];
 | |
|     dstr  = (float *)s->output->extended_data[1];
 | |
|     dstc  = (float *)s->output->extended_data[2];
 | |
|     dstlfe = (float *)s->output->extended_data[3];
 | |
|     dstb  = (float *)s->output->extended_data[4];
 | |
|     dstls = (float *)s->output->extended_data[5];
 | |
|     dstrs = (float *)s->output->extended_data[6];
 | |
| 
 | |
|     get_lfe(s->output_lfe, n, s->lowcut, s->highcut, &lfe_mag, &mag_total, s->lfe_mode);
 | |
| 
 | |
|     c_mag  = powf(1.f - fabsf(x),   s->fc_x) * powf((y + 1.f) * .5f, s->fc_y) * mag_total;
 | |
|     b_mag  = powf(1.f - fabsf(x),   s->bc_x) * powf((1.f - y) * .5f, s->bc_y) * mag_total;
 | |
|     l_mag  = powf(.5f * ( x + 1.f), s->fl_x) * powf((y + 1.f) * .5f, s->fl_y) * mag_total;
 | |
|     r_mag  = powf(.5f * (-x + 1.f), s->fr_x) * powf((y + 1.f) * .5f, s->fr_y) * mag_total;
 | |
|     ls_mag = powf(.5f * ( x + 1.f), s->bl_x) * powf(1.f - ((y + 1.f) * .5f), s->bl_y) * mag_total;
 | |
|     rs_mag = powf(.5f * (-x + 1.f), s->br_x) * powf(1.f - ((y + 1.f) * .5f), s->br_y) * mag_total;
 | |
| 
 | |
|     dstl[2 * n    ] = l_mag * cosf(l_phase);
 | |
|     dstl[2 * n + 1] = l_mag * sinf(l_phase);
 | |
| 
 | |
|     dstr[2 * n    ] = r_mag * cosf(r_phase);
 | |
|     dstr[2 * n + 1] = r_mag * sinf(r_phase);
 | |
| 
 | |
|     dstc[2 * n    ] = c_mag * cosf(c_phase);
 | |
|     dstc[2 * n + 1] = c_mag * sinf(c_phase);
 | |
| 
 | |
|     dstlfe[2 * n    ] = lfe_mag * cosf(c_phase);
 | |
|     dstlfe[2 * n + 1] = lfe_mag * sinf(c_phase);
 | |
| 
 | |
|     dstls[2 * n    ] = ls_mag * cosf(l_phase);
 | |
|     dstls[2 * n + 1] = ls_mag * sinf(l_phase);
 | |
| 
 | |
|     dstrs[2 * n    ] = rs_mag * cosf(r_phase);
 | |
|     dstrs[2 * n + 1] = rs_mag * sinf(r_phase);
 | |
| 
 | |
|     dstb[2 * n    ] = b_mag * cosf(c_phase);
 | |
|     dstb[2 * n + 1] = b_mag * sinf(c_phase);
 | |
| }
 | |
| 
 | |
| static void upmix_5_1_back_surround(AVFilterContext *ctx,
 | |
|                                     float l_phase,
 | |
|                                     float r_phase,
 | |
|                                     float c_phase,
 | |
|                                     float c_mag,
 | |
|                                     float mag_total,
 | |
|                                     float x, float y,
 | |
|                                     int n)
 | |
| {
 | |
|     AudioSurroundContext *s = ctx->priv;
 | |
|     float lfe_mag, l_mag, r_mag, *dstc, *dstl, *dstr, *dstlfe;
 | |
|     float ls_mag, rs_mag, *dstls, *dstrs;
 | |
| 
 | |
|     dstl = (float *)s->output->extended_data[0];
 | |
|     dstr = (float *)s->output->extended_data[1];
 | |
|     dstc = (float *)s->output->extended_data[2];
 | |
|     dstlfe = (float *)s->output->extended_data[3];
 | |
|     dstls = (float *)s->output->extended_data[4];
 | |
|     dstrs = (float *)s->output->extended_data[5];
 | |
| 
 | |
|     get_lfe(s->output_lfe, n, s->lowcut, s->highcut, &lfe_mag, &c_mag, s->lfe_mode);
 | |
| 
 | |
|     l_mag = powf(.5f * ( x + 1.f),  s->fl_x) * powf((y + 1.f) * .5f, s->fl_y) * mag_total;
 | |
|     r_mag = powf(.5f * (-x + 1.f),  s->fr_x) * powf((y + 1.f) * .5f, s->fr_y) * mag_total;
 | |
|     ls_mag = powf(.5f * ( x + 1.f), s->bl_x) * powf(1.f - ((y + 1.f) * .5f), s->bl_y) * mag_total;
 | |
|     rs_mag = powf(.5f * (-x + 1.f), s->br_x) * powf(1.f - ((y + 1.f) * .5f), s->br_y) * mag_total;
 | |
| 
 | |
|     dstl[2 * n    ] = l_mag * cosf(l_phase);
 | |
|     dstl[2 * n + 1] = l_mag * sinf(l_phase);
 | |
| 
 | |
|     dstr[2 * n    ] = r_mag * cosf(r_phase);
 | |
|     dstr[2 * n + 1] = r_mag * sinf(r_phase);
 | |
| 
 | |
|     dstc[2 * n    ] = c_mag * cosf(c_phase);
 | |
|     dstc[2 * n + 1] = c_mag * sinf(c_phase);
 | |
| 
 | |
|     dstlfe[2 * n    ] = lfe_mag * cosf(c_phase);
 | |
|     dstlfe[2 * n + 1] = lfe_mag * sinf(c_phase);
 | |
| 
 | |
|     dstls[2 * n    ] = ls_mag * cosf(l_phase);
 | |
|     dstls[2 * n + 1] = ls_mag * sinf(l_phase);
 | |
| 
 | |
|     dstrs[2 * n    ] = rs_mag * cosf(r_phase);
 | |
|     dstrs[2 * n + 1] = rs_mag * sinf(r_phase);
 | |
| }
 | |
| 
 | |
| static void upmix_5_1_back_2_1(AVFilterContext *ctx,
 | |
|                                float l_phase,
 | |
|                                float r_phase,
 | |
|                                float c_phase,
 | |
|                                float mag_total,
 | |
|                                float lfe_re,
 | |
|                                float lfe_im,
 | |
|                                float x, float y,
 | |
|                                int n)
 | |
| {
 | |
|     AudioSurroundContext *s = ctx->priv;
 | |
|     float c_mag, l_mag, r_mag, *dstc, *dstl, *dstr, *dstlfe;
 | |
|     float ls_mag, rs_mag, *dstls, *dstrs;
 | |
| 
 | |
|     dstl = (float *)s->output->extended_data[0];
 | |
|     dstr = (float *)s->output->extended_data[1];
 | |
|     dstc = (float *)s->output->extended_data[2];
 | |
|     dstlfe = (float *)s->output->extended_data[3];
 | |
|     dstls = (float *)s->output->extended_data[4];
 | |
|     dstrs = (float *)s->output->extended_data[5];
 | |
| 
 | |
|     c_mag  = powf(1.f - fabsf(x),   s->fc_x) * powf((y + 1.f) * .5f, s->fc_y) * mag_total;
 | |
|     l_mag  = powf(.5f * ( x + 1.f), s->fl_x) * powf((y + 1.f) * .5f, s->fl_y) * mag_total;
 | |
|     r_mag  = powf(.5f * (-x + 1.f), s->fr_x) * powf((y + 1.f) * .5f, s->fr_y) * mag_total;
 | |
|     ls_mag = powf(.5f * ( x + 1.f), s->bl_x) * powf(1.f - ((y + 1.f) * .5f), s->bl_y) * mag_total;
 | |
|     rs_mag = powf(.5f * (-x + 1.f), s->br_x) * powf(1.f - ((y + 1.f) * .5f), s->br_y) * mag_total;
 | |
| 
 | |
|     dstl[2 * n    ] = l_mag * cosf(l_phase);
 | |
|     dstl[2 * n + 1] = l_mag * sinf(l_phase);
 | |
| 
 | |
|     dstr[2 * n    ] = r_mag * cosf(r_phase);
 | |
|     dstr[2 * n + 1] = r_mag * sinf(r_phase);
 | |
| 
 | |
|     dstc[2 * n    ] = c_mag * cosf(c_phase);
 | |
|     dstc[2 * n + 1] = c_mag * sinf(c_phase);
 | |
| 
 | |
|     dstlfe[2 * n    ] = lfe_re;
 | |
|     dstlfe[2 * n + 1] = lfe_im;
 | |
| 
 | |
|     dstls[2 * n    ] = ls_mag * cosf(l_phase);
 | |
|     dstls[2 * n + 1] = ls_mag * sinf(l_phase);
 | |
| 
 | |
|     dstrs[2 * n    ] = rs_mag * cosf(r_phase);
 | |
|     dstrs[2 * n + 1] = rs_mag * sinf(r_phase);
 | |
| }
 | |
| 
 | |
| static void upmix_7_0(AVFilterContext *ctx,
 | |
|                       float l_phase,
 | |
|                       float r_phase,
 | |
|                       float c_phase,
 | |
|                       float mag_total,
 | |
|                       float x, float y,
 | |
|                       int n)
 | |
| {
 | |
|     float l_mag, r_mag, ls_mag, rs_mag, c_mag, lb_mag, rb_mag;
 | |
|     float *dstc, *dstl, *dstr, *dstls, *dstrs, *dstlb, *dstrb;
 | |
|     AudioSurroundContext *s = ctx->priv;
 | |
| 
 | |
|     dstl  = (float *)s->output->extended_data[0];
 | |
|     dstr  = (float *)s->output->extended_data[1];
 | |
|     dstc  = (float *)s->output->extended_data[2];
 | |
|     dstlb = (float *)s->output->extended_data[3];
 | |
|     dstrb = (float *)s->output->extended_data[4];
 | |
|     dstls = (float *)s->output->extended_data[5];
 | |
|     dstrs = (float *)s->output->extended_data[6];
 | |
| 
 | |
|     c_mag  = powf(1.f - fabsf(x),   s->fc_x) * powf((y + 1.f) * .5f, s->fc_y) * mag_total;
 | |
|     l_mag  = powf(.5f * ( x + 1.f), s->fl_x) * powf((y + 1.f) * .5f, s->fl_y) * mag_total;
 | |
|     r_mag  = powf(.5f * (-x + 1.f), s->fr_x) * powf((y + 1.f) * .5f, s->fr_y) * mag_total;
 | |
|     lb_mag = powf(.5f * ( x + 1.f), s->bl_x) * powf(1.f - ((y + 1.f) * .5f), s->bl_y) * mag_total;
 | |
|     rb_mag = powf(.5f * (-x + 1.f), s->br_x) * powf(1.f - ((y + 1.f) * .5f), s->br_y) * mag_total;
 | |
|     ls_mag = powf(.5f * ( x + 1.f), s->sl_x) * powf(1.f - fabsf(y), s->sl_y) * mag_total;
 | |
|     rs_mag = powf(.5f * (-x + 1.f), s->sr_x) * powf(1.f - fabsf(y), s->sr_y) * mag_total;
 | |
| 
 | |
|     dstl[2 * n    ] = l_mag * cosf(l_phase);
 | |
|     dstl[2 * n + 1] = l_mag * sinf(l_phase);
 | |
| 
 | |
|     dstr[2 * n    ] = r_mag * cosf(r_phase);
 | |
|     dstr[2 * n + 1] = r_mag * sinf(r_phase);
 | |
| 
 | |
|     dstc[2 * n    ] = c_mag * cosf(c_phase);
 | |
|     dstc[2 * n + 1] = c_mag * sinf(c_phase);
 | |
| 
 | |
|     dstlb[2 * n    ] = lb_mag * cosf(l_phase);
 | |
|     dstlb[2 * n + 1] = lb_mag * sinf(l_phase);
 | |
| 
 | |
|     dstrb[2 * n    ] = rb_mag * cosf(r_phase);
 | |
|     dstrb[2 * n + 1] = rb_mag * sinf(r_phase);
 | |
| 
 | |
|     dstls[2 * n    ] = ls_mag * cosf(l_phase);
 | |
|     dstls[2 * n + 1] = ls_mag * sinf(l_phase);
 | |
| 
 | |
|     dstrs[2 * n    ] = rs_mag * cosf(r_phase);
 | |
|     dstrs[2 * n + 1] = rs_mag * sinf(r_phase);
 | |
| }
 | |
| 
 | |
| static void upmix_7_1(AVFilterContext *ctx,
 | |
|                       float l_phase,
 | |
|                       float r_phase,
 | |
|                       float c_phase,
 | |
|                       float mag_total,
 | |
|                       float x, float y,
 | |
|                       int n)
 | |
| {
 | |
|     float lfe_mag, l_mag, r_mag, ls_mag, rs_mag, c_mag, lb_mag, rb_mag;
 | |
|     float *dstc, *dstl, *dstr, *dstls, *dstrs, *dstlb, *dstrb, *dstlfe;
 | |
|     AudioSurroundContext *s = ctx->priv;
 | |
| 
 | |
|     dstl  = (float *)s->output->extended_data[0];
 | |
|     dstr  = (float *)s->output->extended_data[1];
 | |
|     dstc  = (float *)s->output->extended_data[2];
 | |
|     dstlfe = (float *)s->output->extended_data[3];
 | |
|     dstlb = (float *)s->output->extended_data[4];
 | |
|     dstrb = (float *)s->output->extended_data[5];
 | |
|     dstls = (float *)s->output->extended_data[6];
 | |
|     dstrs = (float *)s->output->extended_data[7];
 | |
| 
 | |
|     get_lfe(s->output_lfe, n, s->lowcut, s->highcut, &lfe_mag, &mag_total, s->lfe_mode);
 | |
| 
 | |
|     c_mag  = powf(1.f - fabsf(x), s->fc_x)   * powf((y + 1.f) * .5f, s->fc_y) * mag_total;
 | |
|     l_mag  = powf(.5f * ( x + 1.f), s->fl_x) * powf((y + 1.f) * .5f, s->fl_y) * mag_total;
 | |
|     r_mag  = powf(.5f * (-x + 1.f), s->fr_x) * powf((y + 1.f) * .5f, s->fr_y) * mag_total;
 | |
|     lb_mag = powf(.5f * ( x + 1.f), s->bl_x) * powf(1.f - ((y + 1.f) * .5f), s->bl_y) * mag_total;
 | |
|     rb_mag = powf(.5f * (-x + 1.f), s->br_x) * powf(1.f - ((y + 1.f) * .5f), s->br_y) * mag_total;
 | |
|     ls_mag = powf(.5f * ( x + 1.f), s->sl_x) * powf(1.f - fabsf(y), s->sl_y) * mag_total;
 | |
|     rs_mag = powf(.5f * (-x + 1.f), s->sr_x) * powf(1.f - fabsf(y), s->sr_y) * mag_total;
 | |
| 
 | |
|     dstl[2 * n    ] = l_mag * cosf(l_phase);
 | |
|     dstl[2 * n + 1] = l_mag * sinf(l_phase);
 | |
| 
 | |
|     dstr[2 * n    ] = r_mag * cosf(r_phase);
 | |
|     dstr[2 * n + 1] = r_mag * sinf(r_phase);
 | |
| 
 | |
|     dstc[2 * n    ] = c_mag * cosf(c_phase);
 | |
|     dstc[2 * n + 1] = c_mag * sinf(c_phase);
 | |
| 
 | |
|     dstlfe[2 * n    ] = lfe_mag * cosf(c_phase);
 | |
|     dstlfe[2 * n + 1] = lfe_mag * sinf(c_phase);
 | |
| 
 | |
|     dstlb[2 * n    ] = lb_mag * cosf(l_phase);
 | |
|     dstlb[2 * n + 1] = lb_mag * sinf(l_phase);
 | |
| 
 | |
|     dstrb[2 * n    ] = rb_mag * cosf(r_phase);
 | |
|     dstrb[2 * n + 1] = rb_mag * sinf(r_phase);
 | |
| 
 | |
|     dstls[2 * n    ] = ls_mag * cosf(l_phase);
 | |
|     dstls[2 * n + 1] = ls_mag * sinf(l_phase);
 | |
| 
 | |
|     dstrs[2 * n    ] = rs_mag * cosf(r_phase);
 | |
|     dstrs[2 * n + 1] = rs_mag * sinf(r_phase);
 | |
| }
 | |
| 
 | |
| static void upmix_7_1_5_0_side(AVFilterContext *ctx,
 | |
|                                float c_re, float c_im,
 | |
|                                float mag_totall, float mag_totalr,
 | |
|                                float fl_phase, float fr_phase,
 | |
|                                float bl_phase, float br_phase,
 | |
|                                float sl_phase, float sr_phase,
 | |
|                                float xl, float yl,
 | |
|                                float xr, float yr,
 | |
|                                int n)
 | |
| {
 | |
|     float fl_mag, fr_mag, ls_mag, rs_mag, lb_mag, rb_mag;
 | |
|     float *dstc, *dstl, *dstr, *dstls, *dstrs, *dstlb, *dstrb, *dstlfe;
 | |
|     float lfe_mag, c_phase, mag_total = (mag_totall + mag_totalr) * 0.5;
 | |
|     AudioSurroundContext *s = ctx->priv;
 | |
| 
 | |
|     dstl  = (float *)s->output->extended_data[0];
 | |
|     dstr  = (float *)s->output->extended_data[1];
 | |
|     dstc  = (float *)s->output->extended_data[2];
 | |
|     dstlfe = (float *)s->output->extended_data[3];
 | |
|     dstlb = (float *)s->output->extended_data[4];
 | |
|     dstrb = (float *)s->output->extended_data[5];
 | |
|     dstls = (float *)s->output->extended_data[6];
 | |
|     dstrs = (float *)s->output->extended_data[7];
 | |
| 
 | |
|     c_phase = atan2f(c_im, c_re);
 | |
| 
 | |
|     get_lfe(s->output_lfe, n, s->lowcut, s->highcut, &lfe_mag, &mag_total, s->lfe_mode);
 | |
| 
 | |
|     fl_mag = powf(.5f * (xl + 1.f), s->fl_x) * powf((yl + 1.f) * .5f, s->fl_y) * mag_totall;
 | |
|     fr_mag = powf(.5f * (xr + 1.f), s->fr_x) * powf((yr + 1.f) * .5f, s->fr_y) * mag_totalr;
 | |
|     lb_mag = powf(.5f * (-xl + 1.f), s->bl_x) * powf((yl + 1.f) * .5f, s->bl_y) * mag_totall;
 | |
|     rb_mag = powf(.5f * (-xr + 1.f), s->br_x) * powf((yr + 1.f) * .5f, s->br_y) * mag_totalr;
 | |
|     ls_mag = powf(1.f - fabsf(xl), s->sl_x) * powf((yl + 1.f) * .5f, s->sl_y) * mag_totall;
 | |
|     rs_mag = powf(1.f - fabsf(xr), s->sr_x) * powf((yr + 1.f) * .5f, s->sr_y) * mag_totalr;
 | |
| 
 | |
|     dstl[2 * n    ] = fl_mag * cosf(fl_phase);
 | |
|     dstl[2 * n + 1] = fl_mag * sinf(fl_phase);
 | |
| 
 | |
|     dstr[2 * n    ] = fr_mag * cosf(fr_phase);
 | |
|     dstr[2 * n + 1] = fr_mag * sinf(fr_phase);
 | |
| 
 | |
|     dstc[2 * n    ] = c_re;
 | |
|     dstc[2 * n + 1] = c_im;
 | |
| 
 | |
|     dstlfe[2 * n    ] = lfe_mag * cosf(c_phase);
 | |
|     dstlfe[2 * n + 1] = lfe_mag * sinf(c_phase);
 | |
| 
 | |
|     dstlb[2 * n    ] = lb_mag * cosf(bl_phase);
 | |
|     dstlb[2 * n + 1] = lb_mag * sinf(bl_phase);
 | |
| 
 | |
|     dstrb[2 * n    ] = rb_mag * cosf(br_phase);
 | |
|     dstrb[2 * n + 1] = rb_mag * sinf(br_phase);
 | |
| 
 | |
|     dstls[2 * n    ] = ls_mag * cosf(sl_phase);
 | |
|     dstls[2 * n + 1] = ls_mag * sinf(sl_phase);
 | |
| 
 | |
|     dstrs[2 * n    ] = rs_mag * cosf(sr_phase);
 | |
|     dstrs[2 * n + 1] = rs_mag * sinf(sr_phase);
 | |
| }
 | |
| 
 | |
| static void upmix_7_1_5_1(AVFilterContext *ctx,
 | |
|                           float c_re, float c_im,
 | |
|                           float lfe_re, float lfe_im,
 | |
|                           float mag_totall, float mag_totalr,
 | |
|                           float fl_phase, float fr_phase,
 | |
|                           float bl_phase, float br_phase,
 | |
|                           float sl_phase, float sr_phase,
 | |
|                           float xl, float yl,
 | |
|                           float xr, float yr,
 | |
|                           int n)
 | |
| {
 | |
|     float fl_mag, fr_mag, ls_mag, rs_mag, lb_mag, rb_mag;
 | |
|     float *dstc, *dstl, *dstr, *dstls, *dstrs, *dstlb, *dstrb, *dstlfe;
 | |
|     AudioSurroundContext *s = ctx->priv;
 | |
| 
 | |
|     dstl  = (float *)s->output->extended_data[0];
 | |
|     dstr  = (float *)s->output->extended_data[1];
 | |
|     dstc  = (float *)s->output->extended_data[2];
 | |
|     dstlfe = (float *)s->output->extended_data[3];
 | |
|     dstlb = (float *)s->output->extended_data[4];
 | |
|     dstrb = (float *)s->output->extended_data[5];
 | |
|     dstls = (float *)s->output->extended_data[6];
 | |
|     dstrs = (float *)s->output->extended_data[7];
 | |
| 
 | |
|     fl_mag = powf(.5f * (xl + 1.f), s->fl_x) * powf((yl + 1.f) * .5f, s->fl_y) * mag_totall;
 | |
|     fr_mag = powf(.5f * (xr + 1.f), s->fr_x) * powf((yr + 1.f) * .5f, s->fr_y) * mag_totalr;
 | |
|     lb_mag = powf(.5f * (-xl + 1.f), s->bl_x) * powf((yl + 1.f) * .5f, s->bl_y) * mag_totall;
 | |
|     rb_mag = powf(.5f * (-xr + 1.f), s->br_x) * powf((yr + 1.f) * .5f, s->br_y) * mag_totalr;
 | |
|     ls_mag = powf(1.f - fabsf(xl), s->sl_x) * powf((yl + 1.f) * .5f, s->sl_y) * mag_totall;
 | |
|     rs_mag = powf(1.f - fabsf(xr), s->sr_x) * powf((yr + 1.f) * .5f, s->sr_y) * mag_totalr;
 | |
| 
 | |
|     dstl[2 * n    ] = fl_mag * cosf(fl_phase);
 | |
|     dstl[2 * n + 1] = fl_mag * sinf(fl_phase);
 | |
| 
 | |
|     dstr[2 * n    ] = fr_mag * cosf(fr_phase);
 | |
|     dstr[2 * n + 1] = fr_mag * sinf(fr_phase);
 | |
| 
 | |
|     dstc[2 * n    ] = c_re;
 | |
|     dstc[2 * n + 1] = c_im;
 | |
| 
 | |
|     dstlfe[2 * n    ] = lfe_re;
 | |
|     dstlfe[2 * n + 1] = lfe_im;
 | |
| 
 | |
|     dstlb[2 * n    ] = lb_mag * cosf(bl_phase);
 | |
|     dstlb[2 * n + 1] = lb_mag * sinf(bl_phase);
 | |
| 
 | |
|     dstrb[2 * n    ] = rb_mag * cosf(br_phase);
 | |
|     dstrb[2 * n + 1] = rb_mag * sinf(br_phase);
 | |
| 
 | |
|     dstls[2 * n    ] = ls_mag * cosf(sl_phase);
 | |
|     dstls[2 * n + 1] = ls_mag * sinf(sl_phase);
 | |
| 
 | |
|     dstrs[2 * n    ] = rs_mag * cosf(sr_phase);
 | |
|     dstrs[2 * n + 1] = rs_mag * sinf(sr_phase);
 | |
| }
 | |
| 
 | |
| static void filter_stereo(AVFilterContext *ctx)
 | |
| {
 | |
|     AudioSurroundContext *s = ctx->priv;
 | |
|     float *srcl, *srcr;
 | |
|     int n;
 | |
| 
 | |
|     srcl = (float *)s->input->extended_data[0];
 | |
|     srcr = (float *)s->input->extended_data[1];
 | |
| 
 | |
|     for (n = 0; n < s->buf_size / 2 + 1; n++) {
 | |
|         float l_re = srcl[2 * n], r_re = srcr[2 * n];
 | |
|         float l_im = srcl[2 * n + 1], r_im = srcr[2 * n + 1];
 | |
|         float c_phase = atan2f(l_im + r_im, l_re + r_re);
 | |
|         float l_mag = hypotf(l_re, l_im);
 | |
|         float r_mag = hypotf(r_re, r_im);
 | |
|         float l_phase = atan2f(l_im, l_re);
 | |
|         float r_phase = atan2f(r_im, r_re);
 | |
|         float phase_dif = fabsf(l_phase - r_phase);
 | |
|         float mag_sum = l_mag + r_mag;
 | |
|         float mag_dif = mag_sum < 0.000001 ? FFDIFFSIGN(l_mag, r_mag) : (l_mag - r_mag) / mag_sum;
 | |
|         float mag_total = hypotf(l_mag, r_mag);
 | |
|         float x, y;
 | |
| 
 | |
|         if (phase_dif > M_PI)
 | |
|             phase_dif = 2 * M_PI - phase_dif;
 | |
| 
 | |
|         stereo_position(mag_dif, phase_dif, &x, &y);
 | |
|         stereo_transform(&x, &y, s->angle);
 | |
| 
 | |
|         s->upmix_stereo(ctx, l_phase, r_phase, c_phase, mag_total, x, y, n);
 | |
|     }
 | |
| }
 | |
| 
 | |
| static void filter_surround(AVFilterContext *ctx)
 | |
| {
 | |
|     AudioSurroundContext *s = ctx->priv;
 | |
|     float *srcl, *srcr, *srcc;
 | |
|     int n;
 | |
| 
 | |
|     srcl = (float *)s->input->extended_data[0];
 | |
|     srcr = (float *)s->input->extended_data[1];
 | |
|     srcc = (float *)s->input->extended_data[2];
 | |
| 
 | |
|     for (n = 0; n < s->buf_size / 2 + 1; n++) {
 | |
|         float l_re = srcl[2 * n], r_re = srcr[2 * n];
 | |
|         float l_im = srcl[2 * n + 1], r_im = srcr[2 * n + 1];
 | |
|         float c_re = srcc[2 * n], c_im = srcc[2 * n + 1];
 | |
|         float c_mag = hypotf(c_re, c_im);
 | |
|         float c_phase = atan2f(c_im, c_re);
 | |
|         float l_mag = hypotf(l_re, l_im);
 | |
|         float r_mag = hypotf(r_re, r_im);
 | |
|         float l_phase = atan2f(l_im, l_re);
 | |
|         float r_phase = atan2f(r_im, r_re);
 | |
|         float phase_dif = fabsf(l_phase - r_phase);
 | |
|         float mag_sum = l_mag + r_mag;
 | |
|         float mag_dif = mag_sum < 0.000001 ? FFDIFFSIGN(l_mag, r_mag) : (l_mag - r_mag) / mag_sum;
 | |
|         float mag_total = hypotf(l_mag, r_mag);
 | |
|         float x, y;
 | |
| 
 | |
|         if (phase_dif > M_PI)
 | |
|             phase_dif = 2 * M_PI - phase_dif;
 | |
| 
 | |
|         stereo_position(mag_dif, phase_dif, &x, &y);
 | |
|         stereo_transform(&x, &y, s->angle);
 | |
| 
 | |
|         s->upmix_3_0(ctx, l_phase, r_phase, c_phase, c_mag, mag_total, x, y, n);
 | |
|     }
 | |
| }
 | |
| 
 | |
| static void filter_2_1(AVFilterContext *ctx)
 | |
| {
 | |
|     AudioSurroundContext *s = ctx->priv;
 | |
|     float *srcl, *srcr, *srclfe;
 | |
|     int n;
 | |
| 
 | |
|     srcl = (float *)s->input->extended_data[0];
 | |
|     srcr = (float *)s->input->extended_data[1];
 | |
|     srclfe = (float *)s->input->extended_data[2];
 | |
| 
 | |
|     for (n = 0; n < s->buf_size / 2 + 1; n++) {
 | |
|         float l_re = srcl[2 * n], r_re = srcr[2 * n];
 | |
|         float l_im = srcl[2 * n + 1], r_im = srcr[2 * n + 1];
 | |
|         float lfe_re = srclfe[2 * n], lfe_im = srclfe[2 * n + 1];
 | |
|         float c_phase = atan2f(l_im + r_im, l_re + r_re);
 | |
|         float l_mag = hypotf(l_re, l_im);
 | |
|         float r_mag = hypotf(r_re, r_im);
 | |
|         float l_phase = atan2f(l_im, l_re);
 | |
|         float r_phase = atan2f(r_im, r_re);
 | |
|         float phase_dif = fabsf(l_phase - r_phase);
 | |
|         float mag_sum = l_mag + r_mag;
 | |
|         float mag_dif = mag_sum < 0.000001 ? FFDIFFSIGN(l_mag, r_mag) : (l_mag - r_mag) / mag_sum;
 | |
|         float mag_total = hypotf(l_mag, r_mag);
 | |
|         float x, y;
 | |
| 
 | |
|         if (phase_dif > M_PI)
 | |
|             phase_dif = 2 * M_PI - phase_dif;
 | |
| 
 | |
|         stereo_position(mag_dif, phase_dif, &x, &y);
 | |
|         stereo_transform(&x, &y, s->angle);
 | |
| 
 | |
|         s->upmix_2_1(ctx, l_phase, r_phase, c_phase, mag_total, lfe_re, lfe_im, x, y, n);
 | |
|     }
 | |
| }
 | |
| 
 | |
| static void filter_5_0_side(AVFilterContext *ctx)
 | |
| {
 | |
|     AudioSurroundContext *s = ctx->priv;
 | |
|     float *srcl, *srcr, *srcc, *srcsl, *srcsr;
 | |
|     int n;
 | |
| 
 | |
|     srcl = (float *)s->input->extended_data[0];
 | |
|     srcr = (float *)s->input->extended_data[1];
 | |
|     srcc = (float *)s->input->extended_data[2];
 | |
|     srcsl = (float *)s->input->extended_data[3];
 | |
|     srcsr = (float *)s->input->extended_data[4];
 | |
| 
 | |
|     for (n = 0; n < s->buf_size / 2 + 1; n++) {
 | |
|         float fl_re = srcl[2 * n], fr_re = srcr[2 * n];
 | |
|         float fl_im = srcl[2 * n + 1], fr_im = srcr[2 * n + 1];
 | |
|         float c_re = srcc[2 * n], c_im = srcc[2 * n + 1];
 | |
|         float sl_re = srcsl[2 * n], sl_im = srcsl[2 * n + 1];
 | |
|         float sr_re = srcsr[2 * n], sr_im = srcsr[2 * n + 1];
 | |
|         float fl_mag = hypotf(fl_re, fl_im);
 | |
|         float fr_mag = hypotf(fr_re, fr_im);
 | |
|         float fl_phase = atan2f(fl_im, fl_re);
 | |
|         float fr_phase = atan2f(fr_im, fr_re);
 | |
|         float sl_mag = hypotf(sl_re, sl_im);
 | |
|         float sr_mag = hypotf(sr_re, sr_im);
 | |
|         float sl_phase = atan2f(sl_im, sl_re);
 | |
|         float sr_phase = atan2f(sr_im, sr_re);
 | |
|         float phase_difl = fabsf(fl_phase - sl_phase);
 | |
|         float phase_difr = fabsf(fr_phase - sr_phase);
 | |
|         float magl_sum = fl_mag + sl_mag;
 | |
|         float magr_sum = fr_mag + sr_mag;
 | |
|         float mag_difl = magl_sum < 0.000001 ? FFDIFFSIGN(fl_mag, sl_mag) : (fl_mag - sl_mag) / magl_sum;
 | |
|         float mag_difr = magr_sum < 0.000001 ? FFDIFFSIGN(fr_mag, sr_mag) : (fr_mag - sr_mag) / magr_sum;
 | |
|         float mag_totall = hypotf(fl_mag, sl_mag);
 | |
|         float mag_totalr = hypotf(fr_mag, sr_mag);
 | |
|         float bl_phase = atan2f(fl_im + sl_im, fl_re + sl_re);
 | |
|         float br_phase = atan2f(fr_im + sr_im, fr_re + sr_re);
 | |
|         float xl, yl;
 | |
|         float xr, yr;
 | |
| 
 | |
|         if (phase_difl > M_PI)
 | |
|             phase_difl = 2 * M_PI - phase_difl;
 | |
| 
 | |
|         if (phase_difr > M_PI)
 | |
|             phase_difr = 2 * M_PI - phase_difr;
 | |
| 
 | |
|         stereo_position(mag_difl, phase_difl, &xl, &yl);
 | |
|         stereo_position(mag_difr, phase_difr, &xr, &yr);
 | |
| 
 | |
|         s->upmix_5_0(ctx, c_re, c_im,
 | |
|                      mag_totall, mag_totalr,
 | |
|                      fl_phase, fr_phase,
 | |
|                      bl_phase, br_phase,
 | |
|                      sl_phase, sr_phase,
 | |
|                      xl, yl, xr, yr, n);
 | |
|     }
 | |
| }
 | |
| 
 | |
| static void filter_5_1_side(AVFilterContext *ctx)
 | |
| {
 | |
|     AudioSurroundContext *s = ctx->priv;
 | |
|     float *srcl, *srcr, *srcc, *srclfe, *srcsl, *srcsr;
 | |
|     int n;
 | |
| 
 | |
|     srcl = (float *)s->input->extended_data[0];
 | |
|     srcr = (float *)s->input->extended_data[1];
 | |
|     srcc = (float *)s->input->extended_data[2];
 | |
|     srclfe = (float *)s->input->extended_data[3];
 | |
|     srcsl = (float *)s->input->extended_data[4];
 | |
|     srcsr = (float *)s->input->extended_data[5];
 | |
| 
 | |
|     for (n = 0; n < s->buf_size / 2 + 1; n++) {
 | |
|         float fl_re = srcl[2 * n], fr_re = srcr[2 * n];
 | |
|         float fl_im = srcl[2 * n + 1], fr_im = srcr[2 * n + 1];
 | |
|         float c_re = srcc[2 * n], c_im = srcc[2 * n + 1];
 | |
|         float lfe_re = srclfe[2 * n], lfe_im = srclfe[2 * n + 1];
 | |
|         float sl_re = srcsl[2 * n], sl_im = srcsl[2 * n + 1];
 | |
|         float sr_re = srcsr[2 * n], sr_im = srcsr[2 * n + 1];
 | |
|         float fl_mag = hypotf(fl_re, fl_im);
 | |
|         float fr_mag = hypotf(fr_re, fr_im);
 | |
|         float fl_phase = atan2f(fl_im, fl_re);
 | |
|         float fr_phase = atan2f(fr_im, fr_re);
 | |
|         float sl_mag = hypotf(sl_re, sl_im);
 | |
|         float sr_mag = hypotf(sr_re, sr_im);
 | |
|         float sl_phase = atan2f(sl_im, sl_re);
 | |
|         float sr_phase = atan2f(sr_im, sr_re);
 | |
|         float phase_difl = fabsf(fl_phase - sl_phase);
 | |
|         float phase_difr = fabsf(fr_phase - sr_phase);
 | |
|         float magl_sum = fl_mag + sl_mag;
 | |
|         float magr_sum = fr_mag + sr_mag;
 | |
|         float mag_difl = magl_sum < 0.000001 ? FFDIFFSIGN(fl_mag, sl_mag) : (fl_mag - sl_mag) / magl_sum;
 | |
|         float mag_difr = magr_sum < 0.000001 ? FFDIFFSIGN(fr_mag, sr_mag) : (fr_mag - sr_mag) / magr_sum;
 | |
|         float mag_totall = hypotf(fl_mag, sl_mag);
 | |
|         float mag_totalr = hypotf(fr_mag, sr_mag);
 | |
|         float bl_phase = atan2f(fl_im + sl_im, fl_re + sl_re);
 | |
|         float br_phase = atan2f(fr_im + sr_im, fr_re + sr_re);
 | |
|         float xl, yl;
 | |
|         float xr, yr;
 | |
| 
 | |
|         if (phase_difl > M_PI)
 | |
|             phase_difl = 2 * M_PI - phase_difl;
 | |
| 
 | |
|         if (phase_difr > M_PI)
 | |
|             phase_difr = 2 * M_PI - phase_difr;
 | |
| 
 | |
|         stereo_position(mag_difl, phase_difl, &xl, &yl);
 | |
|         stereo_position(mag_difr, phase_difr, &xr, &yr);
 | |
| 
 | |
|         s->upmix_5_1(ctx, c_re, c_im, lfe_re, lfe_im,
 | |
|                      mag_totall, mag_totalr,
 | |
|                      fl_phase, fr_phase,
 | |
|                      bl_phase, br_phase,
 | |
|                      sl_phase, sr_phase,
 | |
|                      xl, yl, xr, yr, n);
 | |
|     }
 | |
| }
 | |
| 
 | |
| static void filter_5_1_back(AVFilterContext *ctx)
 | |
| {
 | |
|     AudioSurroundContext *s = ctx->priv;
 | |
|     float *srcl, *srcr, *srcc, *srclfe, *srcbl, *srcbr;
 | |
|     int n;
 | |
| 
 | |
|     srcl = (float *)s->input->extended_data[0];
 | |
|     srcr = (float *)s->input->extended_data[1];
 | |
|     srcc = (float *)s->input->extended_data[2];
 | |
|     srclfe = (float *)s->input->extended_data[3];
 | |
|     srcbl = (float *)s->input->extended_data[4];
 | |
|     srcbr = (float *)s->input->extended_data[5];
 | |
| 
 | |
|     for (n = 0; n < s->buf_size / 2 + 1; n++) {
 | |
|         float fl_re = srcl[2 * n], fr_re = srcr[2 * n];
 | |
|         float fl_im = srcl[2 * n + 1], fr_im = srcr[2 * n + 1];
 | |
|         float c_re = srcc[2 * n], c_im = srcc[2 * n + 1];
 | |
|         float lfe_re = srclfe[2 * n], lfe_im = srclfe[2 * n + 1];
 | |
|         float bl_re = srcbl[2 * n], bl_im = srcbl[2 * n + 1];
 | |
|         float br_re = srcbr[2 * n], br_im = srcbr[2 * n + 1];
 | |
|         float fl_mag = hypotf(fl_re, fl_im);
 | |
|         float fr_mag = hypotf(fr_re, fr_im);
 | |
|         float fl_phase = atan2f(fl_im, fl_re);
 | |
|         float fr_phase = atan2f(fr_im, fr_re);
 | |
|         float bl_mag = hypotf(bl_re, bl_im);
 | |
|         float br_mag = hypotf(br_re, br_im);
 | |
|         float bl_phase = atan2f(bl_im, bl_re);
 | |
|         float br_phase = atan2f(br_im, br_re);
 | |
|         float phase_difl = fabsf(fl_phase - bl_phase);
 | |
|         float phase_difr = fabsf(fr_phase - br_phase);
 | |
|         float magl_sum = fl_mag + bl_mag;
 | |
|         float magr_sum = fr_mag + br_mag;
 | |
|         float mag_difl = magl_sum < 0.000001 ? FFDIFFSIGN(fl_mag, bl_mag) : (fl_mag - bl_mag) / magl_sum;
 | |
|         float mag_difr = magr_sum < 0.000001 ? FFDIFFSIGN(fr_mag, br_mag) : (fr_mag - br_mag) / magr_sum;
 | |
|         float mag_totall = hypotf(fl_mag, bl_mag);
 | |
|         float mag_totalr = hypotf(fr_mag, br_mag);
 | |
|         float sl_phase = atan2f(fl_im + bl_im, fl_re + bl_re);
 | |
|         float sr_phase = atan2f(fr_im + br_im, fr_re + br_re);
 | |
|         float xl, yl;
 | |
|         float xr, yr;
 | |
| 
 | |
|         if (phase_difl > M_PI)
 | |
|             phase_difl = 2 * M_PI - phase_difl;
 | |
| 
 | |
|         if (phase_difr > M_PI)
 | |
|             phase_difr = 2 * M_PI - phase_difr;
 | |
| 
 | |
|         stereo_position(mag_difl, phase_difl, &xl, &yl);
 | |
|         stereo_position(mag_difr, phase_difr, &xr, &yr);
 | |
| 
 | |
|         s->upmix_5_1(ctx, c_re, c_im, lfe_re, lfe_im,
 | |
|                      mag_totall, mag_totalr,
 | |
|                      fl_phase, fr_phase,
 | |
|                      bl_phase, br_phase,
 | |
|                      sl_phase, sr_phase,
 | |
|                      xl, yl, xr, yr, n);
 | |
|     }
 | |
| }
 | |
| 
 | |
| static av_cold int init(AVFilterContext *ctx)
 | |
| {
 | |
|     AudioSurroundContext *s = ctx->priv;
 | |
|     float overlap;
 | |
|     int64_t in_channel_layout, out_channel_layout;
 | |
|     int i, ret;
 | |
| 
 | |
|     if ((ret = av_channel_layout_from_string(&s->out_channel_layout, s->out_channel_layout_str)) < 0) {
 | |
|         av_log(ctx, AV_LOG_ERROR, "Error parsing output channel layout '%s'.\n",
 | |
|                s->out_channel_layout_str);
 | |
|         return ret;
 | |
|     }
 | |
| 
 | |
|     if ((ret = av_channel_layout_from_string(&s->in_channel_layout, s->in_channel_layout_str)) < 0) {
 | |
|         av_log(ctx, AV_LOG_ERROR, "Error parsing input channel layout '%s'.\n",
 | |
|                s->in_channel_layout_str);
 | |
|         return AVERROR(EINVAL);
 | |
|     }
 | |
| 
 | |
|     if (s->lowcutf >= s->highcutf) {
 | |
|         av_log(ctx, AV_LOG_ERROR, "Low cut-off '%d' should be less than high cut-off '%d'.\n",
 | |
|                s->lowcutf, s->highcutf);
 | |
|         return AVERROR(EINVAL);
 | |
|     }
 | |
| 
 | |
|     in_channel_layout  = s->in_channel_layout.order == AV_CHANNEL_ORDER_NATIVE ?
 | |
|                          s->in_channel_layout.u.mask : 0;
 | |
|     out_channel_layout = s->out_channel_layout.order == AV_CHANNEL_ORDER_NATIVE ?
 | |
|                          s->out_channel_layout.u.mask : 0;
 | |
| 
 | |
|     switch (in_channel_layout) {
 | |
|     case AV_CH_LAYOUT_STEREO:
 | |
|         s->filter = filter_stereo;
 | |
|         switch (out_channel_layout) {
 | |
|         case AV_CH_LAYOUT_MONO:
 | |
|             s->upmix_stereo = upmix_1_0;
 | |
|             break;
 | |
|         case AV_CH_LAYOUT_STEREO:
 | |
|             s->upmix_stereo = upmix_stereo;
 | |
|             break;
 | |
|         case AV_CH_LAYOUT_2POINT1:
 | |
|             s->upmix_stereo = upmix_2_1;
 | |
|             break;
 | |
|         case AV_CH_LAYOUT_SURROUND:
 | |
|             s->upmix_stereo = upmix_3_0;
 | |
|             break;
 | |
|         case AV_CH_LAYOUT_3POINT1:
 | |
|             s->upmix_stereo = upmix_3_1;
 | |
|             break;
 | |
|         case AV_CH_LAYOUT_4POINT0:
 | |
|             s->upmix_stereo = upmix_4_0;
 | |
|             break;
 | |
|         case AV_CH_LAYOUT_4POINT1:
 | |
|             s->upmix_stereo = upmix_4_1;
 | |
|             break;
 | |
|         case AV_CH_LAYOUT_5POINT0_BACK:
 | |
|             s->upmix_stereo = upmix_5_0_back;
 | |
|             break;
 | |
|         case AV_CH_LAYOUT_5POINT1_BACK:
 | |
|             s->upmix_stereo = upmix_5_1_back;
 | |
|             break;
 | |
|         case AV_CH_LAYOUT_6POINT0:
 | |
|             s->upmix_stereo = upmix_6_0;
 | |
|             break;
 | |
|         case AV_CH_LAYOUT_6POINT1:
 | |
|             s->upmix_stereo = upmix_6_1;
 | |
|             break;
 | |
|         case AV_CH_LAYOUT_7POINT0:
 | |
|             s->upmix_stereo = upmix_7_0;
 | |
|             break;
 | |
|         case AV_CH_LAYOUT_7POINT1:
 | |
|             s->upmix_stereo = upmix_7_1;
 | |
|             break;
 | |
|         default:
 | |
|             goto fail;
 | |
|         }
 | |
|         break;
 | |
|     case AV_CH_LAYOUT_2POINT1:
 | |
|         s->filter = filter_2_1;
 | |
|         switch (out_channel_layout) {
 | |
|         case AV_CH_LAYOUT_5POINT1_BACK:
 | |
|             s->upmix_2_1 = upmix_5_1_back_2_1;
 | |
|             break;
 | |
|         default:
 | |
|             goto fail;
 | |
|         }
 | |
|         break;
 | |
|     case AV_CH_LAYOUT_SURROUND:
 | |
|         s->filter = filter_surround;
 | |
|         switch (out_channel_layout) {
 | |
|         case AV_CH_LAYOUT_3POINT1:
 | |
|             s->upmix_3_0 = upmix_3_1_surround;
 | |
|             break;
 | |
|         case AV_CH_LAYOUT_5POINT1_BACK:
 | |
|             s->upmix_3_0 = upmix_5_1_back_surround;
 | |
|             break;
 | |
|         default:
 | |
|             goto fail;
 | |
|         }
 | |
|         break;
 | |
|     case AV_CH_LAYOUT_5POINT0:
 | |
|         s->filter = filter_5_0_side;
 | |
|         switch (out_channel_layout) {
 | |
|         case AV_CH_LAYOUT_7POINT1:
 | |
|             s->upmix_5_0 = upmix_7_1_5_0_side;
 | |
|             break;
 | |
|         default:
 | |
|             goto fail;
 | |
|         }
 | |
|         break;
 | |
|     case AV_CH_LAYOUT_5POINT1:
 | |
|         s->filter = filter_5_1_side;
 | |
|         switch (out_channel_layout) {
 | |
|         case AV_CH_LAYOUT_7POINT1:
 | |
|             s->upmix_5_1 = upmix_7_1_5_1;
 | |
|             break;
 | |
|         default:
 | |
|             goto fail;
 | |
|         }
 | |
|         break;
 | |
|     case AV_CH_LAYOUT_5POINT1_BACK:
 | |
|         s->filter = filter_5_1_back;
 | |
|         switch (out_channel_layout) {
 | |
|         case AV_CH_LAYOUT_7POINT1:
 | |
|             s->upmix_5_1 = upmix_7_1_5_1;
 | |
|             break;
 | |
|         default:
 | |
|             goto fail;
 | |
|         }
 | |
|         break;
 | |
|     default:
 | |
| fail:
 | |
|         av_log(ctx, AV_LOG_ERROR, "Unsupported upmix: '%s' -> '%s'.\n",
 | |
|                s->in_channel_layout_str, s->out_channel_layout_str);
 | |
|         return AVERROR(EINVAL);
 | |
|     }
 | |
| 
 | |
|     s->buf_size = 1 << av_log2(s->win_size);
 | |
| 
 | |
|     s->window_func_lut = av_calloc(s->buf_size, sizeof(*s->window_func_lut));
 | |
|     if (!s->window_func_lut)
 | |
|         return AVERROR(ENOMEM);
 | |
| 
 | |
|     generate_window_func(s->window_func_lut, s->buf_size, s->win_func, &overlap);
 | |
|     if (s->overlap == 1)
 | |
|         s->overlap = overlap;
 | |
| 
 | |
|     for (i = 0; i < s->buf_size; i++)
 | |
|         s->window_func_lut[i] = sqrtf(s->window_func_lut[i] / s->buf_size);
 | |
|     s->hop_size = s->buf_size * (1. - s->overlap);
 | |
|     if (s->hop_size <= 0)
 | |
|         return AVERROR(EINVAL);
 | |
| 
 | |
|     if (s->all_x >= 0.f)
 | |
|         s->fc_x = s->fl_x = s->fr_x = s->bc_x = s->sl_x = s->sr_x = s->bl_x = s->br_x = s->all_x;
 | |
|     if (s->all_y >= 0.f)
 | |
|         s->fc_y = s->fl_y = s->fr_y = s->bc_y = s->sl_y = s->sr_y = s->bl_y = s->br_y = s->all_y;
 | |
| 
 | |
|     return 0;
 | |
| }
 | |
| 
 | |
| static int fft_channel(AVFilterContext *ctx, void *arg, int ch, int nb_jobs)
 | |
| {
 | |
|     AudioSurroundContext *s = ctx->priv;
 | |
|     float *src = (float *)s->input_in->extended_data[ch];
 | |
|     float *win = (float *)s->window->extended_data[ch];
 | |
|     const int offset = s->buf_size - s->hop_size;
 | |
|     const float level_in = s->input_levels[ch];
 | |
|     AVFrame *in = arg;
 | |
| 
 | |
|     memmove(src, &src[s->hop_size], offset * sizeof(float));
 | |
|     memcpy(&src[offset], in->extended_data[ch], in->nb_samples * sizeof(float));
 | |
|     memset(&src[offset + in->nb_samples], 0, (s->hop_size - in->nb_samples) * sizeof(float));
 | |
| 
 | |
|     for (int n = 0; n < s->buf_size; n++) {
 | |
|         win[n] = src[n] * s->window_func_lut[n] * level_in;
 | |
|     }
 | |
| 
 | |
|     s->tx_fn(s->rdft[ch], (float *)s->input->extended_data[ch], win, sizeof(float));
 | |
| 
 | |
|     return 0;
 | |
| }
 | |
| 
 | |
| static int ifft_channel(AVFilterContext *ctx, void *arg, int ch, int nb_jobs)
 | |
| {
 | |
|     AudioSurroundContext *s = ctx->priv;
 | |
|     const float level_out = s->output_levels[ch];
 | |
|     AVFrame *out = arg;
 | |
|     float *dst, *ptr;
 | |
|     int n;
 | |
| 
 | |
|     dst = (float *)s->output_out->extended_data[ch];
 | |
|     ptr = (float *)s->overlap_buffer->extended_data[ch];
 | |
|     s->itx_fn(s->irdft[ch], dst, (float *)s->output->extended_data[ch], sizeof(float));
 | |
| 
 | |
|     memmove(s->overlap_buffer->extended_data[ch],
 | |
|             s->overlap_buffer->extended_data[ch] + s->hop_size * sizeof(float),
 | |
|             s->buf_size * sizeof(float));
 | |
|     memset(s->overlap_buffer->extended_data[ch] + s->buf_size * sizeof(float),
 | |
|            0, s->hop_size * sizeof(float));
 | |
| 
 | |
|     for (n = 0; n < s->buf_size; n++) {
 | |
|         ptr[n] += dst[n] * s->window_func_lut[n] * level_out;
 | |
|     }
 | |
| 
 | |
|     ptr = (float *)s->overlap_buffer->extended_data[ch];
 | |
|     dst = (float *)out->extended_data[ch];
 | |
|     memcpy(dst, ptr, s->hop_size * sizeof(float));
 | |
| 
 | |
|     return 0;
 | |
| }
 | |
| 
 | |
| static int filter_frame(AVFilterLink *inlink, AVFrame *in)
 | |
| {
 | |
|     AVFilterContext *ctx = inlink->dst;
 | |
|     AVFilterLink *outlink = ctx->outputs[0];
 | |
|     AudioSurroundContext *s = ctx->priv;
 | |
|     AVFrame *out;
 | |
| 
 | |
|     ff_filter_execute(ctx, fft_channel, in, NULL, inlink->ch_layout.nb_channels);
 | |
| 
 | |
|     s->filter(ctx);
 | |
| 
 | |
|     out = ff_get_audio_buffer(outlink, s->hop_size);
 | |
|     if (!out)
 | |
|         return AVERROR(ENOMEM);
 | |
| 
 | |
|     ff_filter_execute(ctx, ifft_channel, out, NULL, outlink->ch_layout.nb_channels);
 | |
| 
 | |
|     out->pts = in->pts;
 | |
|     out->nb_samples = in->nb_samples;
 | |
| 
 | |
|     av_frame_free(&in);
 | |
|     return ff_filter_frame(outlink, out);
 | |
| }
 | |
| 
 | |
| static int activate(AVFilterContext *ctx)
 | |
| {
 | |
|     AVFilterLink *inlink = ctx->inputs[0];
 | |
|     AVFilterLink *outlink = ctx->outputs[0];
 | |
|     AudioSurroundContext *s = ctx->priv;
 | |
|     AVFrame *in = NULL;
 | |
|     int ret = 0, status;
 | |
|     int64_t pts;
 | |
| 
 | |
|     FF_FILTER_FORWARD_STATUS_BACK(outlink, inlink);
 | |
| 
 | |
|     ret = ff_inlink_consume_samples(inlink, s->hop_size, s->hop_size, &in);
 | |
|     if (ret < 0)
 | |
|         return ret;
 | |
| 
 | |
|     if (ret > 0)
 | |
|         ret = filter_frame(inlink, in);
 | |
|     if (ret < 0)
 | |
|         return ret;
 | |
| 
 | |
|     if (ff_inlink_queued_samples(inlink) >= s->hop_size) {
 | |
|         ff_filter_set_ready(ctx, 10);
 | |
|         return 0;
 | |
|     }
 | |
| 
 | |
|     if (ff_inlink_acknowledge_status(inlink, &status, &pts)) {
 | |
|         ff_outlink_set_status(outlink, status, pts);
 | |
|         return 0;
 | |
|     }
 | |
| 
 | |
|     FF_FILTER_FORWARD_WANTED(outlink, inlink);
 | |
| 
 | |
|     return FFERROR_NOT_READY;
 | |
| }
 | |
| 
 | |
| static av_cold void uninit(AVFilterContext *ctx)
 | |
| {
 | |
|     AudioSurroundContext *s = ctx->priv;
 | |
| 
 | |
|     av_frame_free(&s->window);
 | |
|     av_frame_free(&s->input_in);
 | |
|     av_frame_free(&s->input);
 | |
|     av_frame_free(&s->output);
 | |
|     av_frame_free(&s->output_out);
 | |
|     av_frame_free(&s->overlap_buffer);
 | |
| 
 | |
|     for (int ch = 0; ch < s->nb_in_channels; ch++)
 | |
|         av_tx_uninit(&s->rdft[ch]);
 | |
|     for (int ch = 0; ch < s->nb_out_channels; ch++)
 | |
|         av_tx_uninit(&s->irdft[ch]);
 | |
|     av_freep(&s->input_levels);
 | |
|     av_freep(&s->output_levels);
 | |
|     av_freep(&s->rdft);
 | |
|     av_freep(&s->irdft);
 | |
|     av_freep(&s->window_func_lut);
 | |
| }
 | |
| 
 | |
| #define OFFSET(x) offsetof(AudioSurroundContext, x)
 | |
| #define FLAGS AV_OPT_FLAG_AUDIO_PARAM|AV_OPT_FLAG_FILTERING_PARAM
 | |
| 
 | |
| static const AVOption surround_options[] = {
 | |
|     { "chl_out",   "set output channel layout", OFFSET(out_channel_layout_str), AV_OPT_TYPE_STRING, {.str="5.1"}, 0,   0, FLAGS },
 | |
|     { "chl_in",    "set input channel layout",  OFFSET(in_channel_layout_str),  AV_OPT_TYPE_STRING, {.str="stereo"},0, 0, FLAGS },
 | |
|     { "level_in",  "set input level",           OFFSET(level_in),               AV_OPT_TYPE_FLOAT,  {.dbl=1},     0,  10, FLAGS },
 | |
|     { "level_out", "set output level",          OFFSET(level_out),              AV_OPT_TYPE_FLOAT,  {.dbl=1},     0,  10, FLAGS },
 | |
|     { "lfe",       "output LFE",                OFFSET(output_lfe),             AV_OPT_TYPE_BOOL,   {.i64=1},     0,   1, FLAGS },
 | |
|     { "lfe_low",   "LFE low cut off",           OFFSET(lowcutf),                AV_OPT_TYPE_INT,    {.i64=128},   0, 256, FLAGS },
 | |
|     { "lfe_high",  "LFE high cut off",          OFFSET(highcutf),               AV_OPT_TYPE_INT,    {.i64=256},   0, 512, FLAGS },
 | |
|     { "lfe_mode",  "set LFE channel mode",      OFFSET(lfe_mode),               AV_OPT_TYPE_INT,    {.i64=0},     0,   1, FLAGS, "lfe_mode" },
 | |
|     {  "add",      "just add LFE channel",                  0,                  AV_OPT_TYPE_CONST,  {.i64=0},     0,   1, FLAGS, "lfe_mode" },
 | |
|     {  "sub",      "substract LFE channel with others",     0,                  AV_OPT_TYPE_CONST,  {.i64=1},     0,   1, FLAGS, "lfe_mode" },
 | |
|     { "angle",     "set soundfield transform angle",        OFFSET(angle),      AV_OPT_TYPE_FLOAT,  {.dbl=90},    0, 360, FLAGS },
 | |
|     { "fc_in",     "set front center channel input level",  OFFSET(fc_in),      AV_OPT_TYPE_FLOAT,  {.dbl=1},     0,  10, FLAGS },
 | |
|     { "fc_out",    "set front center channel output level", OFFSET(fc_out),     AV_OPT_TYPE_FLOAT,  {.dbl=1},     0,  10, FLAGS },
 | |
|     { "fl_in",     "set front left channel input level",    OFFSET(fl_in),      AV_OPT_TYPE_FLOAT,  {.dbl=1},     0,  10, FLAGS },
 | |
|     { "fl_out",    "set front left channel output level",   OFFSET(fl_out),     AV_OPT_TYPE_FLOAT,  {.dbl=1},     0,  10, FLAGS },
 | |
|     { "fr_in",     "set front right channel input level",   OFFSET(fr_in),      AV_OPT_TYPE_FLOAT,  {.dbl=1},     0,  10, FLAGS },
 | |
|     { "fr_out",    "set front right channel output level",  OFFSET(fr_out),     AV_OPT_TYPE_FLOAT,  {.dbl=1},     0,  10, FLAGS },
 | |
|     { "sl_in",     "set side left channel input level",     OFFSET(sl_in),      AV_OPT_TYPE_FLOAT,  {.dbl=1},     0,  10, FLAGS },
 | |
|     { "sl_out",    "set side left channel output level",    OFFSET(sl_out),     AV_OPT_TYPE_FLOAT,  {.dbl=1},     0,  10, FLAGS },
 | |
|     { "sr_in",     "set side right channel input level",    OFFSET(sr_in),      AV_OPT_TYPE_FLOAT,  {.dbl=1},     0,  10, FLAGS },
 | |
|     { "sr_out",    "set side right channel output level",   OFFSET(sr_out),     AV_OPT_TYPE_FLOAT,  {.dbl=1},     0,  10, FLAGS },
 | |
|     { "bl_in",     "set back left channel input level",     OFFSET(bl_in),      AV_OPT_TYPE_FLOAT,  {.dbl=1},     0,  10, FLAGS },
 | |
|     { "bl_out",    "set back left channel output level",    OFFSET(bl_out),     AV_OPT_TYPE_FLOAT,  {.dbl=1},     0,  10, FLAGS },
 | |
|     { "br_in",     "set back right channel input level",    OFFSET(br_in),      AV_OPT_TYPE_FLOAT,  {.dbl=1},     0,  10, FLAGS },
 | |
|     { "br_out",    "set back right channel output level",   OFFSET(br_out),     AV_OPT_TYPE_FLOAT,  {.dbl=1},     0,  10, FLAGS },
 | |
|     { "bc_in",     "set back center channel input level",   OFFSET(bc_in),      AV_OPT_TYPE_FLOAT,  {.dbl=1},     0,  10, FLAGS },
 | |
|     { "bc_out",    "set back center channel output level",  OFFSET(bc_out),     AV_OPT_TYPE_FLOAT,  {.dbl=1},     0,  10, FLAGS },
 | |
|     { "lfe_in",    "set lfe channel input level",  OFFSET(lfe_in),              AV_OPT_TYPE_FLOAT,  {.dbl=1},     0,  10, FLAGS },
 | |
|     { "lfe_out",   "set lfe channel output level", OFFSET(lfe_out),             AV_OPT_TYPE_FLOAT,  {.dbl=1},     0,  10, FLAGS },
 | |
|     { "allx",      "set all channel's x spread",         OFFSET(all_x),         AV_OPT_TYPE_FLOAT,  {.dbl=-1},   -1,  15, FLAGS },
 | |
|     { "ally",      "set all channel's y spread",         OFFSET(all_y),         AV_OPT_TYPE_FLOAT,  {.dbl=-1},   -1,  15, FLAGS },
 | |
|     { "fcx",       "set front center channel x spread",  OFFSET(fc_x),          AV_OPT_TYPE_FLOAT,  {.dbl=0.5}, .06,  15, FLAGS },
 | |
|     { "flx",       "set front left channel x spread",    OFFSET(fl_x),          AV_OPT_TYPE_FLOAT,  {.dbl=0.5}, .06,  15, FLAGS },
 | |
|     { "frx",       "set front right channel x spread",   OFFSET(fr_x),          AV_OPT_TYPE_FLOAT,  {.dbl=0.5}, .06,  15, FLAGS },
 | |
|     { "blx",       "set back left channel x spread",     OFFSET(bl_x),          AV_OPT_TYPE_FLOAT,  {.dbl=0.5}, .06,  15, FLAGS },
 | |
|     { "brx",       "set back right channel x spread",    OFFSET(br_x),          AV_OPT_TYPE_FLOAT,  {.dbl=0.5}, .06,  15, FLAGS },
 | |
|     { "slx",       "set side left channel x spread",     OFFSET(sl_x),          AV_OPT_TYPE_FLOAT,  {.dbl=0.5}, .06,  15, FLAGS },
 | |
|     { "srx",       "set side right channel x spread",    OFFSET(sr_x),          AV_OPT_TYPE_FLOAT,  {.dbl=0.5}, .06,  15, FLAGS },
 | |
|     { "bcx",       "set back center channel x spread",   OFFSET(bc_x),          AV_OPT_TYPE_FLOAT,  {.dbl=0.5}, .06,  15, FLAGS },
 | |
|     { "fcy",       "set front center channel y spread",  OFFSET(fc_y),          AV_OPT_TYPE_FLOAT,  {.dbl=0.5}, .06,  15, FLAGS },
 | |
|     { "fly",       "set front left channel y spread",    OFFSET(fl_y),          AV_OPT_TYPE_FLOAT,  {.dbl=0.5}, .06,  15, FLAGS },
 | |
|     { "fry",       "set front right channel y spread",   OFFSET(fr_y),          AV_OPT_TYPE_FLOAT,  {.dbl=0.5}, .06,  15, FLAGS },
 | |
|     { "bly",       "set back left channel y spread",     OFFSET(bl_y),          AV_OPT_TYPE_FLOAT,  {.dbl=0.5}, .06,  15, FLAGS },
 | |
|     { "bry",       "set back right channel y spread",    OFFSET(br_y),          AV_OPT_TYPE_FLOAT,  {.dbl=0.5}, .06,  15, FLAGS },
 | |
|     { "sly",       "set side left channel y spread",     OFFSET(sl_y),          AV_OPT_TYPE_FLOAT,  {.dbl=0.5}, .06,  15, FLAGS },
 | |
|     { "sry",       "set side right channel y spread",    OFFSET(sr_y),          AV_OPT_TYPE_FLOAT,  {.dbl=0.5}, .06,  15, FLAGS },
 | |
|     { "bcy",       "set back center channel y spread",   OFFSET(bc_y),          AV_OPT_TYPE_FLOAT,  {.dbl=0.5}, .06,  15, FLAGS },
 | |
|     { "win_size", "set window size", OFFSET(win_size), AV_OPT_TYPE_INT, {.i64 = 4096}, 1024, 65536, FLAGS },
 | |
|     WIN_FUNC_OPTION("win_func", OFFSET(win_func), FLAGS, WFUNC_HANNING),
 | |
|     { "overlap", "set window overlap", OFFSET(overlap), AV_OPT_TYPE_FLOAT, {.dbl=0.5}, 0, 1, FLAGS },
 | |
|     { NULL }
 | |
| };
 | |
| 
 | |
| AVFILTER_DEFINE_CLASS(surround);
 | |
| 
 | |
| static const AVFilterPad inputs[] = {
 | |
|     {
 | |
|         .name         = "default",
 | |
|         .type         = AVMEDIA_TYPE_AUDIO,
 | |
|         .config_props = config_input,
 | |
|     },
 | |
| };
 | |
| 
 | |
| static const AVFilterPad outputs[] = {
 | |
|     {
 | |
|         .name          = "default",
 | |
|         .type          = AVMEDIA_TYPE_AUDIO,
 | |
|         .config_props  = config_output,
 | |
|     },
 | |
| };
 | |
| 
 | |
| const AVFilter ff_af_surround = {
 | |
|     .name           = "surround",
 | |
|     .description    = NULL_IF_CONFIG_SMALL("Apply audio surround upmix filter."),
 | |
|     .priv_size      = sizeof(AudioSurroundContext),
 | |
|     .priv_class     = &surround_class,
 | |
|     .init           = init,
 | |
|     .uninit         = uninit,
 | |
|     .activate       = activate,
 | |
|     FILTER_INPUTS(inputs),
 | |
|     FILTER_OUTPUTS(outputs),
 | |
|     FILTER_QUERY_FUNC(query_formats),
 | |
|     .flags          = AVFILTER_FLAG_SLICE_THREADS,
 | |
| };
 |