mirror of https://github.com/mpv-player/mpv
179 lines
4.1 KiB
C
179 lines
4.1 KiB
C
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/*=============================================================================
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//
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// This software has been released under the terms of the GNU General Public
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// license. See http://www.gnu.org/copyleft/gpl.html for details.
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//
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// Copyright 2006 Michael Niedermayer
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// Copyright 2004 Alex Beregszaszi & Pierre Lombard (original af_extrastereo.c upon which this is based)
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//
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//=============================================================================
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*/
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <unistd.h>
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#include <inttypes.h>
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#include <math.h>
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#include <limits.h>
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#include "af.h"
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// Data for specific instances of this filter
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typedef struct af_sinesuppress_s
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{
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double freq;
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double decay;
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double real;
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double imag;
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double ref;
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double pos;
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}af_sinesuppress_t;
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static af_data_t* play_s16(struct af_instance_s* af, af_data_t* data);
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static af_data_t* play_float(struct af_instance_s* af, af_data_t* data);
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// Initialization and runtime control
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static int control(struct af_instance_s* af, int cmd, void* arg)
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{
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af_sinesuppress_t* s = (af_sinesuppress_t*)af->setup;
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switch(cmd){
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case AF_CONTROL_REINIT:{
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// Sanity check
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if(!arg) return AF_ERROR;
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af->data->rate = ((af_data_t*)arg)->rate;
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af->data->nch = 1;
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#if 0
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if (((af_data_t*)arg)->format == AF_FORMAT_FLOAT_NE)
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{
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af->data->format = AF_FORMAT_FLOAT_NE;
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af->data->bps = 4;
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af->play = play_float;
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}// else
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#endif
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{
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af->data->format = AF_FORMAT_S16_NE;
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af->data->bps = 2;
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af->play = play_s16;
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}
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return af_test_output(af,(af_data_t*)arg);
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}
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case AF_CONTROL_COMMAND_LINE:{
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float f1,f2;
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sscanf((char*)arg,"%f:%f", &f1,&f2);
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s->freq = f1;
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s->decay = f2;
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return AF_OK;
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}
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case AF_CONTROL_SS_FREQ | AF_CONTROL_SET:
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s->freq = *(float*)arg;
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return AF_OK;
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case AF_CONTROL_SS_FREQ | AF_CONTROL_GET:
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*(float*)arg = s->freq;
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return AF_OK;
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case AF_CONTROL_SS_DECAY | AF_CONTROL_SET:
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s->decay = *(float*)arg;
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return AF_OK;
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case AF_CONTROL_SS_DECAY | AF_CONTROL_GET:
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*(float*)arg = s->decay;
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return AF_OK;
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}
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return AF_UNKNOWN;
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}
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// Deallocate memory
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static void uninit(struct af_instance_s* af)
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{
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if(af->data)
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free(af->data);
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if(af->setup)
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free(af->setup);
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}
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// Filter data through filter
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static af_data_t* play_s16(struct af_instance_s* af, af_data_t* data)
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{
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af_sinesuppress_t *s = af->setup;
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register int i = 0;
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int16_t *a = (int16_t*)data->audio; // Audio data
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int len = data->len/2; // Number of samples
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int avg, l, r;
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for (i = 0; i < len; i++)
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{
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double co= cos(s->pos);
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double si= sin(s->pos);
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s->real += co * a[i];
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s->imag += si * a[i];
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s->ref += co * co;
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a[i] -= (s->real * co + s->imag * si) / s->ref;
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s->real -= s->real * s->decay;
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s->imag -= s->imag * s->decay;
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s->ref -= s->ref * s->decay;
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s->pos += 2 * M_PI * s->freq / data->rate;
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}
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af_msg(AF_MSG_VERBOSE,"[sinesuppress] f:%8.2f: amp:%8.2f\n", s->freq, sqrt(s->real*s->real + s->imag*s->imag) / s->ref);
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return data;
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}
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#if 0
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static af_data_t* play_float(struct af_instance_s* af, af_data_t* data)
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{
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af_sinesuppress_t *s = af->setup;
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register int i = 0;
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float *a = (float*)data->audio; // Audio data
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int len = data->len/4; // Number of samples
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float avg, l, r;
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for (i = 0; i < len; i+=2)
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{
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avg = (a[i] + a[i + 1]) / 2;
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/* l = avg + (s->mul * (a[i] - avg));
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r = avg + (s->mul * (a[i + 1] - avg));*/
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a[i] = af_softclip(l);
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a[i + 1] = af_softclip(r);
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}
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return data;
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}
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#endif
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// Allocate memory and set function pointers
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static int open(af_instance_t* af){
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af->control=control;
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af->uninit=uninit;
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af->play=play_s16;
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af->mul.n=1;
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af->mul.d=1;
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af->data=calloc(1,sizeof(af_data_t));
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af->setup=calloc(1,sizeof(af_sinesuppress_t));
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if(af->data == NULL || af->setup == NULL)
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return AF_ERROR;
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((af_sinesuppress_t*)af->setup)->freq = 50.0;
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((af_sinesuppress_t*)af->setup)->decay = 0.0001;
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return AF_OK;
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}
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// Description of this filter
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af_info_t af_info_sinesuppress = {
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"Sine Suppress",
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"sinesuppress",
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"Michael Niedermayer",
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"",
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0,
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open
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};
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