]> git.sesse.net Git - mlt/blob - src/modules/avformat/filter_avcolour_space.c
Disable colorspace normalization - not working yet.
[mlt] / src / modules / avformat / filter_avcolour_space.c
1 /*
2  * filter_avcolour_space.c -- Colour space filter
3  * Copyright (C) 2004-2005 Ushodaya Enterprises Limited
4  * Author: Charles Yates <charles.yates@pandora.be>
5  *
6  * This library is free software; you can redistribute it and/or
7  * modify it under the terms of the GNU Lesser General Public
8  * License as published by the Free Software Foundation; either
9  * version 2.1 of the License, or (at your option) any later version.
10  *
11  * This library is distributed in the hope that it will be useful,
12  * but WITHOUT ANY WARRANTY; without even the implied warranty of
13  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
14  * Lesser General Public License for more details.
15  *
16  * You should have received a copy of the GNU Lesser General Public
17  * License along with this library; if not, write to the Free Software
18  * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA  02111-1307  USA
19  */
20
21 #include <framework/mlt_filter.h>
22 #include <framework/mlt_frame.h>
23 #include <framework/mlt_log.h>
24 #include <framework/mlt_profile.h>
25
26 // ffmpeg Header files
27 #include <libavformat/avformat.h>
28 #ifdef SWSCALE
29 #include <libswscale/swscale.h>
30 #endif
31
32 #if LIBAVUTIL_VERSION_INT < (50<<16)
33 #define PIX_FMT_YUYV422 PIX_FMT_YUV422
34 #endif
35
36 #include <stdio.h>
37 #include <stdlib.h>
38
39 #if 0 // This test might come in handy elsewhere someday.
40 static int is_big_endian( )
41 {
42         union { int i; char c[ 4 ]; } big_endian_test;
43         big_endian_test.i = 1;
44
45         return big_endian_test.c[ 0 ] != 1;
46 }
47 #endif
48
49 static int convert_mlt_to_av_cs( mlt_image_format format )
50 {
51         int value = 0;
52
53         switch( format )
54         {
55                 case mlt_image_rgb24:
56                         value = PIX_FMT_RGB24;
57                         break;
58                 case mlt_image_rgb24a:
59                 case mlt_image_opengl:
60                         value = PIX_FMT_RGBA;
61                         break;
62                 case mlt_image_yuv422:
63                         value = PIX_FMT_YUYV422;
64                         break;
65                 case mlt_image_yuv420p:
66                         value = PIX_FMT_YUV420P;
67                         break;
68                 case mlt_image_none:
69                         mlt_log_error( NULL, "[filter avcolor_space] Invalid format\n" );
70                         break;
71         }
72
73         return value;
74 }
75
76 static void set_luma_transfer( struct SwsContext *context, int colorspace, int use_full_range )
77 {
78 #if defined(SWSCALE) && (LIBSWSCALE_VERSION_INT >= ((0<<16)+(7<<8)+2))
79         int *coefficients;
80         int full_range;
81         int brightness, contrast, saturation;
82
83         if ( sws_getColorspaceDetails( context, &coefficients, &full_range, &coefficients, &full_range,
84                         &brightness, &contrast, &saturation ) != -1 )
85         {
86                 // Don't change these from defaults unless explicitly told to.
87                 if ( use_full_range >= 0 )
88                         full_range = use_full_range;
89                 switch ( colorspace )
90                 {
91                 case 170:
92                 case 470:
93                 case 601:
94                 case 624:
95                         coefficients = sws_getCoefficients( SWS_CS_ITU601 );
96                         break;
97                 case 240:
98                         coefficients = sws_getCoefficients( SWS_CS_SMPTE240M );
99                         break;
100                 case 709:
101                         coefficients = sws_getCoefficients( SWS_CS_ITU709 );
102                         break;
103                 }
104                 sws_setColorspaceDetails( context, coefficients, full_range, coefficients, full_range,
105                         brightness, contrast, saturation );
106         }
107 #endif
108 }
109
110 static void av_convert_image( uint8_t *out, uint8_t *in, int out_fmt, int in_fmt,
111         int width, int height, int colorspace, int use_full_range )
112 {
113         AVPicture input;
114         AVPicture output;
115 #ifdef SWSCALE
116         int flags = SWS_BILINEAR | SWS_ACCURATE_RND;
117
118         if ( out_fmt == PIX_FMT_YUYV422 )
119                 flags |= SWS_FULL_CHR_H_INP;
120         else
121                 flags |= SWS_FULL_CHR_H_INT;
122 #ifdef USE_MMX
123         flags |= SWS_CPU_CAPS_MMX;
124 #endif
125 #ifdef USE_SSE
126         flags |= SWS_CPU_CAPS_MMX2;
127 #endif
128 #endif /* SWSCALE */
129
130         avpicture_fill( &input, in, in_fmt, width, height );
131         avpicture_fill( &output, out, out_fmt, width, height );
132 #ifdef SWSCALE
133         struct SwsContext *context = sws_getContext( width, height, in_fmt,
134                 width, height, out_fmt, flags, NULL, NULL, NULL);
135         set_luma_transfer( context, colorspace, use_full_range );
136         sws_scale( context, input.data, input.linesize, 0, height,
137                 output.data, output.linesize);
138         sws_freeContext( context );
139 #else
140         img_convert( &output, out_fmt, &input, in_fmt, width, height );
141 #endif
142 }
143
144 /** Do it :-).
145 */
146
147 static int convert_image( mlt_frame frame, uint8_t **image, mlt_image_format *format, mlt_image_format output_format )
148 {
149         mlt_properties properties = MLT_FRAME_PROPERTIES( frame );
150         int width = mlt_properties_get_int( properties, "width" );
151         int height = mlt_properties_get_int( properties, "height" );
152         int error = 0;
153
154         if ( *format != output_format )
155         {
156                 int colorspace = mlt_properties_get_int( properties, "colorspace" );
157                 int force_full_luma = -1;
158                 
159                 mlt_log_debug( NULL, "[filter avcolor_space] %s -> %s @ %dx%d space %d\n",
160                         mlt_image_format_name( *format ), mlt_image_format_name( output_format ),
161                         width, height, colorspace );
162
163                 int in_fmt = convert_mlt_to_av_cs( *format );
164                 int out_fmt = convert_mlt_to_av_cs( output_format );
165                 int size = avpicture_get_size( out_fmt, width, height );
166                 uint8_t *output = mlt_pool_alloc( size );
167
168                 if ( *format == mlt_image_rgb24a || *format == mlt_image_opengl )
169                 {
170                         register int len = width * height;
171                         uint8_t *alpha = mlt_pool_alloc( len );
172
173                         if ( alpha )
174                         {
175                                 // Extract the alpha mask from the RGBA image using Duff's Device
176                                 register uint8_t *s = *image + 3; // start on the alpha component
177                                 register uint8_t *d = alpha;
178                                 register int n = ( len + 7 ) / 8;
179
180                                 switch ( len % 8 )
181                                 {
182                                         case 0: do { *d++ = *s; s += 4;
183                                         case 7:          *d++ = *s; s += 4;
184                                         case 6:          *d++ = *s; s += 4;
185                                         case 5:          *d++ = *s; s += 4;
186                                         case 4:          *d++ = *s; s += 4;
187                                         case 3:          *d++ = *s; s += 4;
188                                         case 2:          *d++ = *s; s += 4;
189                                         case 1:          *d++ = *s; s += 4;
190                                                         }
191                                                         while ( --n > 0 );
192                                 }
193                                 mlt_properties_set_data( properties, "alpha", alpha, len, mlt_pool_release, NULL );
194                                 frame->get_alpha_mask = NULL;
195                         }
196                 }
197
198                 // Update the output
199                 if ( *format == mlt_image_yuv422 && mlt_properties_get( properties, "force_full_luma" )
200                      && ( output_format == mlt_image_rgb24 || output_format == mlt_image_rgb24a ) )
201                 {
202                         // By removing the frame property we only permit the luma to skip scaling once.
203                         // Thereafter, we let swscale scale the luma range as it pleases since it seems
204                         // we do not have control over the RGB to YUV conversion.
205                         force_full_luma = mlt_properties_get_int( properties, "force_full_luma" );                      
206                         mlt_properties_set( properties, "force_full_luma", NULL );
207                 }
208                 av_convert_image( output, *image, out_fmt, in_fmt, width, height, colorspace, force_full_luma );
209                 *image = output;
210                 *format = output_format;
211                 mlt_properties_set_data( properties, "image", output, size, mlt_pool_release, NULL );
212                 mlt_properties_set_int( properties, "format", output_format );
213
214                 if ( output_format == mlt_image_rgb24a || output_format == mlt_image_opengl )
215                 {
216                         register int len = width * height;
217                         int alpha_size = 0;
218                         uint8_t *alpha = mlt_frame_get_alpha_mask( frame );
219                         mlt_properties_get_data( properties, "alpha", &alpha_size );
220
221                         if ( alpha && alpha_size >= len )
222                         {
223                                 // Merge the alpha mask from into the RGBA image using Duff's Device
224                                 register uint8_t *s = alpha;
225                                 register uint8_t *d = *image + 3; // start on the alpha component
226                                 register int n = ( len + 7 ) / 8;
227
228                                 switch ( len % 8 )
229                                 {
230                                         case 0: do { *d = *s++; d += 4;
231                                         case 7:          *d = *s++; d += 4;
232                                         case 6:          *d = *s++; d += 4;
233                                         case 5:          *d = *s++; d += 4;
234                                         case 4:          *d = *s++; d += 4;
235                                         case 3:          *d = *s++; d += 4;
236                                         case 2:          *d = *s++; d += 4;
237                                         case 1:          *d = *s++; d += 4;
238                                                         }
239                                                         while ( --n > 0 );
240                                 }
241                         }
242                 }
243         }
244         return error;
245 }
246
247 /* TODO: The below is not working because swscale does not have
248  * adjustable coefficients yet for RGB->YUV */
249
250 static int get_image( mlt_frame frame, uint8_t **image, mlt_image_format *format, int *width, int *height, int writable )
251 {
252         int error = 0;
253         mlt_profile profile = (mlt_profile) mlt_frame_pop_get_image( frame );
254         mlt_properties properties = MLT_FRAME_PROPERTIES(frame);
255         mlt_image_format format_from = *format;
256         mlt_image_format format_to = mlt_image_rgb24;
257         
258         error = mlt_frame_get_image( frame, image, format, width, height, writable );
259         
260         int frame_colorspace = mlt_properties_get_int( properties, "colorspace" );
261         
262         if ( !error && *format == mlt_image_yuv422 && profile->colorspace > 0 &&
263              frame_colorspace > 0 && frame_colorspace != profile->colorspace )
264         {
265                 mlt_log_debug( NULL, "[filter avcolor_space] colorspace %d -> %d\n",
266                         frame_colorspace, profile->colorspace );
267                 
268                 // Convert to RGB using frame's colorspace
269                 error = convert_image( frame, image, &format_from, format_to );
270
271                 // Convert to YUV using profile's colorspace
272                 if ( !error )
273                 {
274                         *image = mlt_properties_get_data( properties, "image", NULL );
275                         format_from = mlt_image_rgb24;
276                         format_to = *format;
277                         mlt_properties_set_int( properties, "colorspace", profile->colorspace );
278                         error = convert_image( frame, image, &format_from, format_to );
279                         *image = mlt_properties_get_data( properties, "image", NULL );
280                 }
281         }
282         
283         return error;
284 }
285
286 /** Filter processing.
287 */
288
289 static mlt_frame filter_process( mlt_filter filter, mlt_frame frame )
290 {
291         // Set a default colorspace on the frame if not yet set by the producer.
292         // The producer may still change it during get_image.
293         // This way we do not have to modify each producer to set a valid colorspace.
294         mlt_properties properties = MLT_FRAME_PROPERTIES(frame);
295         if ( mlt_properties_get_int( properties, "colorspace" ) <= 0 )
296                 mlt_properties_set_int( properties, "colorspace", mlt_service_profile( MLT_FILTER_SERVICE(filter) )->colorspace );
297
298         frame->convert_image = convert_image;
299     
300 //      Not working yet - see comment for get_image() above.
301 //      mlt_frame_push_service( frame, mlt_service_profile( MLT_FILTER_SERVICE( filter ) ) );
302 //      mlt_frame_push_get_image( frame, get_image );
303
304         return frame;
305 }
306
307 /** Constructor for the filter.
308 */
309
310 mlt_filter filter_avcolour_space_init( void *arg )
311 {
312 #ifdef SWSCALE
313 #if (LIBSWSCALE_VERSION_INT >= ((0<<16)+(7<<8)+2))
314         // Test to see if swscale accepts the arg as resolution
315         if ( arg )
316         {
317                 int width = (int) arg;
318                 struct SwsContext *context = sws_getContext( width, width, PIX_FMT_RGB32, 64, 64, PIX_FMT_RGB32, SWS_BILINEAR, NULL, NULL, NULL);
319                 if ( context )
320                         sws_freeContext( context );
321                 else
322                         return NULL;
323         }               
324 #else
325         return NULL;
326 #endif
327 #endif
328         mlt_filter this = mlt_filter_new( );
329         if ( this != NULL )
330                 this->process = filter_process;
331         return this;
332 }
333