trivial.c
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上传日期:2020-07-06
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文件大小:6k
源码类别:

midi

开发平台:

Unix_Linux

  1. /*****************************************************************************
  2.  * trivial.c : trivial channel mixer plug-in (drops unwanted channels)
  3.  *****************************************************************************
  4.  * Copyright (C) 2002, 2006 the VideoLAN team
  5.  * $Id: ee393ed48deac87a410381317b587a827b08d844 $
  6.  *
  7.  * Authors: Christophe Massiot <massiot@via.ecp.fr>
  8.  *
  9.  * This program is free software; you can redistribute it and/or modify
  10.  * it under the terms of the GNU General Public License as published by
  11.  * the Free Software Foundation; either version 2 of the License, or
  12.  * (at your option) any later version.
  13.  *
  14.  * This program is distributed in the hope that it will be useful,
  15.  * but WITHOUT ANY WARRANTY; without even the implied warranty of
  16.  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
  17.  * GNU General Public License for more details.
  18.  *
  19.  * You should have received a copy of the GNU General Public License
  20.  * along with this program; if not, write to the Free Software
  21.  * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston MA 02110-1301, USA.
  22.  *****************************************************************************/
  23. /*****************************************************************************
  24.  * Preamble
  25.  *****************************************************************************/
  26. #ifdef HAVE_CONFIG_H
  27. # include "config.h"
  28. #endif
  29. #include <vlc_common.h>
  30. #include <vlc_plugin.h>
  31. #include <vlc_aout.h>
  32. /*****************************************************************************
  33.  * Local prototypes
  34.  *****************************************************************************/
  35. static int  Create    ( vlc_object_t * );
  36. static void DoWork    ( aout_instance_t *, aout_filter_t *, aout_buffer_t *,
  37.                         aout_buffer_t * );
  38. /*****************************************************************************
  39.  * Module descriptor
  40.  *****************************************************************************/
  41. vlc_module_begin ()
  42.     set_description( N_("Audio filter for trivial channel mixing") )
  43.     set_capability( "audio filter", 1 )
  44.     set_category( CAT_AUDIO )
  45.     set_subcategory( SUBCAT_AUDIO_MISC )
  46.     set_callbacks( Create, NULL )
  47. vlc_module_end ()
  48. /*****************************************************************************
  49.  * Create: allocate trivial channel mixer
  50.  *****************************************************************************/
  51. static int Create( vlc_object_t *p_this )
  52. {
  53.     aout_filter_t * p_filter = (aout_filter_t *)p_this;
  54.     if ( (p_filter->input.i_physical_channels
  55.            == p_filter->output.i_physical_channels
  56.            && p_filter->input.i_original_channels
  57.                == p_filter->output.i_original_channels)
  58.           || p_filter->input.i_format != p_filter->output.i_format
  59.           || p_filter->input.i_rate != p_filter->output.i_rate
  60.           || (p_filter->input.i_format != VLC_FOURCC('f','l','3','2')
  61.                && p_filter->input.i_format != VLC_FOURCC('f','i','3','2')) )
  62.     {
  63.         return -1;
  64.     }
  65.     p_filter->pf_do_work = DoWork;
  66.     if ( aout_FormatNbChannels( &p_filter->input )
  67.            > aout_FormatNbChannels( &p_filter->output ) )
  68.     {
  69.         /* Downmixing */
  70.         p_filter->b_in_place = 1;
  71.     }
  72.     else
  73.     {
  74.         /* Upmixing */
  75.         p_filter->b_in_place = 0;
  76.     }
  77.     return 0;
  78. }
  79. /*****************************************************************************
  80.  * SparseCopy: trivially downmix or upmix a buffer
  81.  *****************************************************************************/
  82. static void SparseCopy( int32_t * p_dest, const int32_t * p_src, size_t i_len,
  83.                         int i_output_stride, int i_input_stride )
  84. {
  85.     int i;
  86.     for ( i = i_len; i--; )
  87.     {
  88.         int j;
  89.         for ( j = 0; j < i_output_stride; j++ )
  90.         {
  91.             p_dest[j] = p_src[j % i_input_stride];
  92.         }
  93.         p_src += i_input_stride;
  94.         p_dest += i_output_stride;
  95.     }
  96. }
  97. /*****************************************************************************
  98.  * DoWork: convert a buffer
  99.  *****************************************************************************/
  100. static void DoWork( aout_instance_t * p_aout, aout_filter_t * p_filter,
  101.                     aout_buffer_t * p_in_buf, aout_buffer_t * p_out_buf )
  102. {
  103.     VLC_UNUSED(p_aout);
  104.     int i_input_nb = aout_FormatNbChannels( &p_filter->input );
  105.     int i_output_nb = aout_FormatNbChannels( &p_filter->output );
  106.     int32_t * p_dest = (int32_t *)p_out_buf->p_buffer;
  107.     int32_t * p_src = (int32_t *)p_in_buf->p_buffer;
  108.     p_out_buf->i_nb_samples = p_in_buf->i_nb_samples;
  109.     p_out_buf->i_nb_bytes = p_in_buf->i_nb_bytes * i_output_nb / i_input_nb;
  110.     if ( (p_filter->output.i_original_channels & AOUT_CHAN_PHYSMASK)
  111.                 != (p_filter->input.i_original_channels & AOUT_CHAN_PHYSMASK)
  112.            && (p_filter->input.i_original_channels & AOUT_CHAN_PHYSMASK)
  113.                 == (AOUT_CHAN_LEFT | AOUT_CHAN_RIGHT) )
  114.     {
  115.         int i;
  116.         /* This is a bit special. */
  117.         if ( !(p_filter->output.i_original_channels & AOUT_CHAN_LEFT) )
  118.         {
  119.             p_src++;
  120.         }
  121.         if ( p_filter->output.i_physical_channels == AOUT_CHAN_CENTER )
  122.         {
  123.             /* Mono mode */
  124.             for ( i = p_in_buf->i_nb_samples; i--; )
  125.             {
  126.                 *p_dest = *p_src;
  127.                 p_dest++;
  128.                 p_src += 2;
  129.             }
  130.         }
  131.         else
  132.         {
  133.             /* Fake-stereo mode */
  134.             for ( i = p_in_buf->i_nb_samples; i--; )
  135.             {
  136.                 *p_dest = *p_src;
  137.                 p_dest++;
  138.                 *p_dest = *p_src;
  139.                 p_dest++;
  140.                 p_src += 2;
  141.             }
  142.         }
  143.     }
  144.     else if ( p_filter->output.i_original_channels
  145.                                     & AOUT_CHAN_REVERSESTEREO )
  146.     {
  147.         /* Reverse-stereo mode */
  148.         int i;
  149.         for ( i = p_in_buf->i_nb_samples; i--; )
  150.         {
  151.             *p_dest = p_src[1];
  152.             p_dest++;
  153.             *p_dest = p_src[0];
  154.             p_dest++;
  155.             p_src += 2;
  156.         }
  157.     }
  158.     else
  159.     {
  160.         SparseCopy( p_dest, p_src, p_in_buf->i_nb_samples, i_output_nb,
  161.                     i_input_nb );
  162.     }
  163. }