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* include/vlc_common.h:
[vlc] / modules / audio_filter / channel_mixer / trivial.c
1 /*****************************************************************************
2  * trivial.c : trivial channel mixer plug-in (drops unwanted channels)
3  *****************************************************************************
4  * Copyright (C) 2002 VideoLAN
5  * $Id: trivial.c,v 1.12 2003/10/25 00:49:13 sam Exp $
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., 59 Temple Place - Suite 330, Boston, MA  02111, USA.
22  *****************************************************************************/
23
24 /*****************************************************************************
25  * Preamble
26  *****************************************************************************/
27 #include <stdlib.h>                                      /* malloc(), free() */
28 #include <string.h>
29
30 #include <vlc/vlc.h>
31 #include "audio_output.h"
32 #include "aout_internal.h"
33
34 /*****************************************************************************
35  * Local prototypes
36  *****************************************************************************/
37 static int  Create    ( vlc_object_t * );
38
39 static void DoWork    ( aout_instance_t *, aout_filter_t *, aout_buffer_t *,
40                         aout_buffer_t * );
41
42 /*****************************************************************************
43  * Module descriptor
44  *****************************************************************************/
45 vlc_module_begin();
46     set_description( _("audio filter for trivial channel mixing") );
47     set_capability( "audio filter", 1 );
48     set_callbacks( Create, NULL );
49 vlc_module_end();
50
51 /*****************************************************************************
52  * Create: allocate trivial channel mixer
53  *****************************************************************************/
54 static int Create( vlc_object_t *p_this )
55 {
56     aout_filter_t * p_filter = (aout_filter_t *)p_this;
57
58     if ( (p_filter->input.i_physical_channels
59            == p_filter->output.i_physical_channels
60            && p_filter->input.i_original_channels
61                == p_filter->output.i_original_channels)
62           || p_filter->input.i_format != p_filter->output.i_format
63           || p_filter->input.i_rate != p_filter->output.i_rate
64           || (p_filter->input.i_format != VLC_FOURCC('f','l','3','2')
65                && p_filter->input.i_format != VLC_FOURCC('f','i','3','2')) )
66     {
67         return -1;
68     }
69
70     p_filter->pf_do_work = DoWork;
71     if ( aout_FormatNbChannels( &p_filter->input )
72            > aout_FormatNbChannels( &p_filter->output ) )
73     {
74         /* Downmixing */
75         p_filter->b_in_place = 1;
76     }
77     else
78     {
79         /* Upmixing */
80         p_filter->b_in_place = 0;
81     }
82
83     return 0;
84 }
85
86 /*****************************************************************************
87  * SparseCopy: trivially downmix or upmix a buffer
88  *****************************************************************************/
89 static void SparseCopy( int32_t * p_dest, const int32_t * p_src, size_t i_len,
90                         int i_output_stride, int i_input_stride )
91 {
92     int i;
93     for ( i = i_len; i--; )
94     {
95         int j;
96         for ( j = 0; j < i_output_stride; j++ )
97         {
98             p_dest[j] = p_src[j % i_input_stride];
99         }
100         p_src += i_input_stride;
101         p_dest += i_output_stride;
102     }
103 }
104
105 /*****************************************************************************
106  * DoWork: convert a buffer
107  *****************************************************************************/
108 static void DoWork( aout_instance_t * p_aout, aout_filter_t * p_filter,
109                     aout_buffer_t * p_in_buf, aout_buffer_t * p_out_buf )
110 {
111     int i_input_nb = aout_FormatNbChannels( &p_filter->input );
112     int i_output_nb = aout_FormatNbChannels( &p_filter->output );
113     int32_t * p_dest = (int32_t *)p_out_buf->p_buffer;
114     int32_t * p_src = (int32_t *)p_in_buf->p_buffer;
115
116     p_out_buf->i_nb_samples = p_in_buf->i_nb_samples;
117     p_out_buf->i_nb_bytes = p_in_buf->i_nb_bytes * i_output_nb / i_input_nb;
118
119     if ( (p_filter->output.i_original_channels & AOUT_CHAN_PHYSMASK)
120                 != (p_filter->input.i_original_channels & AOUT_CHAN_PHYSMASK)
121            && (p_filter->input.i_original_channels & AOUT_CHAN_PHYSMASK)
122                 == (AOUT_CHAN_LEFT | AOUT_CHAN_RIGHT) )
123     {
124         int i;
125         /* This is a bit special. */
126         if ( !(p_filter->output.i_original_channels & AOUT_CHAN_LEFT) )
127         {
128             p_src++;
129         }
130         if ( p_filter->output.i_physical_channels == AOUT_CHAN_CENTER )
131         {
132             /* Mono mode */
133             for ( i = p_in_buf->i_nb_samples; i--; )
134             {
135                 *p_dest = *p_src;
136                 p_dest++;
137                 p_src += 2;
138             }
139         }
140         else
141         {
142             /* Fake-stereo mode */
143             for ( i = p_in_buf->i_nb_samples; i--; )
144             {
145                 *p_dest = *p_src;
146                 p_dest++;
147                 *p_dest = *p_src;
148                 p_dest++;
149                 p_src += 2;
150             }
151         }
152     }
153     else if ( p_filter->output.i_original_channels
154                                     & AOUT_CHAN_REVERSESTEREO )
155     {
156         /* Reverse-stereo mode */
157         int i;
158         for ( i = p_in_buf->i_nb_samples; i--; )
159         {
160             *p_dest = p_src[1];
161             p_dest++;
162             *p_dest = p_src[0];
163             p_dest++;
164             p_src += 2;
165         }
166     }
167     else
168     {
169         SparseCopy( p_dest, p_src, p_in_buf->i_nb_samples, i_output_nb,
170                     i_input_nb );
171     }
172 }
173