2 * software RGB to RGB converter
3 * pluralize by software PAL8 to RGB converter
4 * software YUV to YUV converter
5 * software YUV to RGB converter
6 * Written by Nick Kurshev.
7 * palette & YUV & runtime CPU stuff by Michael (michaelni@gmx.at)
9 * This file is part of FFmpeg.
11 * FFmpeg is free software; you can redistribute it and/or modify
12 * it under the terms of the GNU General Public License as published by
13 * the Free Software Foundation; either version 2 of the License, or
14 * (at your option) any later version.
16 * FFmpeg is distributed in the hope that it will be useful,
17 * but WITHOUT ANY WARRANTY; without even the implied warranty of
18 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
19 * GNU General Public License for more details.
21 * You should have received a copy of the GNU General Public License
22 * along with FFmpeg; if not, write to the Free Software
23 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
25 * The C code (not assembly, MMX, ...) of this file can be used
26 * under the LGPL license.
30 #include "libavutil/x86_cpu.h"
31 #include "libavutil/bswap.h"
34 #include "swscale_internal.h"
36 #define FAST_BGR2YV12 // use 7-bit instead of 15-bit coefficients
38 void (*rgb24tobgr32
)(const uint8_t *src
, uint8_t *dst
, long src_size
);
39 void (*rgb24tobgr16
)(const uint8_t *src
, uint8_t *dst
, long src_size
);
40 void (*rgb24tobgr15
)(const uint8_t *src
, uint8_t *dst
, long src_size
);
41 void (*rgb32tobgr24
)(const uint8_t *src
, uint8_t *dst
, long src_size
);
42 void (*rgb32to16
)(const uint8_t *src
, uint8_t *dst
, long src_size
);
43 void (*rgb32to15
)(const uint8_t *src
, uint8_t *dst
, long src_size
);
44 void (*rgb15to16
)(const uint8_t *src
, uint8_t *dst
, long src_size
);
45 void (*rgb15tobgr24
)(const uint8_t *src
, uint8_t *dst
, long src_size
);
46 void (*rgb15to32
)(const uint8_t *src
, uint8_t *dst
, long src_size
);
47 void (*rgb16to15
)(const uint8_t *src
, uint8_t *dst
, long src_size
);
48 void (*rgb16tobgr24
)(const uint8_t *src
, uint8_t *dst
, long src_size
);
49 void (*rgb16to32
)(const uint8_t *src
, uint8_t *dst
, long src_size
);
50 void (*rgb24tobgr24
)(const uint8_t *src
, uint8_t *dst
, long src_size
);
51 void (*rgb24to16
)(const uint8_t *src
, uint8_t *dst
, long src_size
);
52 void (*rgb24to15
)(const uint8_t *src
, uint8_t *dst
, long src_size
);
53 void (*rgb32tobgr32
)(const uint8_t *src
, uint8_t *dst
, long src_size
);
54 void (*rgb32tobgr16
)(const uint8_t *src
, uint8_t *dst
, long src_size
);
55 void (*rgb32tobgr15
)(const uint8_t *src
, uint8_t *dst
, long src_size
);
57 void (*yv12toyuy2
)(const uint8_t *ysrc
, const uint8_t *usrc
, const uint8_t *vsrc
, uint8_t *dst
,
58 long width
, long height
,
59 long lumStride
, long chromStride
, long dstStride
);
60 void (*yv12touyvy
)(const uint8_t *ysrc
, const uint8_t *usrc
, const uint8_t *vsrc
, uint8_t *dst
,
61 long width
, long height
,
62 long lumStride
, long chromStride
, long dstStride
);
63 void (*yuv422ptoyuy2
)(const uint8_t *ysrc
, const uint8_t *usrc
, const uint8_t *vsrc
, uint8_t *dst
,
64 long width
, long height
,
65 long lumStride
, long chromStride
, long dstStride
);
66 void (*yuv422ptouyvy
)(const uint8_t *ysrc
, const uint8_t *usrc
, const uint8_t *vsrc
, uint8_t *dst
,
67 long width
, long height
,
68 long lumStride
, long chromStride
, long dstStride
);
69 void (*yuy2toyv12
)(const uint8_t *src
, uint8_t *ydst
, uint8_t *udst
, uint8_t *vdst
,
70 long width
, long height
,
71 long lumStride
, long chromStride
, long srcStride
);
72 void (*rgb24toyv12
)(const uint8_t *src
, uint8_t *ydst
, uint8_t *udst
, uint8_t *vdst
,
73 long width
, long height
,
74 long lumStride
, long chromStride
, long srcStride
);
75 void (*planar2x
)(const uint8_t *src
, uint8_t *dst
, long width
, long height
,
76 long srcStride
, long dstStride
);
77 void (*interleaveBytes
)(uint8_t *src1
, uint8_t *src2
, uint8_t *dst
,
78 long width
, long height
, long src1Stride
,
79 long src2Stride
, long dstStride
);
80 void (*vu9_to_vu12
)(const uint8_t *src1
, const uint8_t *src2
,
81 uint8_t *dst1
, uint8_t *dst2
,
82 long width
, long height
,
83 long srcStride1
, long srcStride2
,
84 long dstStride1
, long dstStride2
);
85 void (*yvu9_to_yuy2
)(const uint8_t *src1
, const uint8_t *src2
, const uint8_t *src3
,
87 long width
, long height
,
88 long srcStride1
, long srcStride2
,
89 long srcStride3
, long dstStride
);
90 void (*uyvytoyuv420
)(uint8_t *ydst
, uint8_t *udst
, uint8_t *vdst
, const uint8_t *src
,
91 long width
, long height
,
92 long lumStride
, long chromStride
, long srcStride
);
93 void (*uyvytoyuv422
)(uint8_t *ydst
, uint8_t *udst
, uint8_t *vdst
, const uint8_t *src
,
94 long width
, long height
,
95 long lumStride
, long chromStride
, long srcStride
);
96 void (*yuyvtoyuv420
)(uint8_t *ydst
, uint8_t *udst
, uint8_t *vdst
, const uint8_t *src
,
97 long width
, long height
,
98 long lumStride
, long chromStride
, long srcStride
);
99 void (*yuyvtoyuv422
)(uint8_t *ydst
, uint8_t *udst
, uint8_t *vdst
, const uint8_t *src
,
100 long width
, long height
,
101 long lumStride
, long chromStride
, long srcStride
);
104 #if ARCH_X86 && CONFIG_GPL
105 DECLARE_ASM_CONST(8, uint64_t, mmx_null
) = 0x0000000000000000ULL
;
106 DECLARE_ASM_CONST(8, uint64_t, mmx_one
) = 0xFFFFFFFFFFFFFFFFULL
;
107 DECLARE_ASM_CONST(8, uint64_t, mask32b
) = 0x000000FF000000FFULL
;
108 DECLARE_ASM_CONST(8, uint64_t, mask32g
) = 0x0000FF000000FF00ULL
;
109 DECLARE_ASM_CONST(8, uint64_t, mask32r
) = 0x00FF000000FF0000ULL
;
110 DECLARE_ASM_CONST(8, uint64_t, mask32a
) = 0xFF000000FF000000ULL
;
111 DECLARE_ASM_CONST(8, uint64_t, mask32
) = 0x00FFFFFF00FFFFFFULL
;
112 DECLARE_ASM_CONST(8, uint64_t, mask3216br
) = 0x00F800F800F800F8ULL
;
113 DECLARE_ASM_CONST(8, uint64_t, mask3216g
) = 0x0000FC000000FC00ULL
;
114 DECLARE_ASM_CONST(8, uint64_t, mask3215g
) = 0x0000F8000000F800ULL
;
115 DECLARE_ASM_CONST(8, uint64_t, mul3216
) = 0x2000000420000004ULL
;
116 DECLARE_ASM_CONST(8, uint64_t, mul3215
) = 0x2000000820000008ULL
;
117 DECLARE_ASM_CONST(8, uint64_t, mask24b
) = 0x00FF0000FF0000FFULL
;
118 DECLARE_ASM_CONST(8, uint64_t, mask24g
) = 0xFF0000FF0000FF00ULL
;
119 DECLARE_ASM_CONST(8, uint64_t, mask24r
) = 0x0000FF0000FF0000ULL
;
120 DECLARE_ASM_CONST(8, uint64_t, mask24l
) = 0x0000000000FFFFFFULL
;
121 DECLARE_ASM_CONST(8, uint64_t, mask24h
) = 0x0000FFFFFF000000ULL
;
122 DECLARE_ASM_CONST(8, uint64_t, mask24hh
) = 0xffff000000000000ULL
;
123 DECLARE_ASM_CONST(8, uint64_t, mask24hhh
) = 0xffffffff00000000ULL
;
124 DECLARE_ASM_CONST(8, uint64_t, mask24hhhh
) = 0xffffffffffff0000ULL
;
125 DECLARE_ASM_CONST(8, uint64_t, mask15b
) = 0x001F001F001F001FULL
; /* 00000000 00011111 xxB */
126 DECLARE_ASM_CONST(8, uint64_t, mask15rg
) = 0x7FE07FE07FE07FE0ULL
; /* 01111111 11100000 RGx */
127 DECLARE_ASM_CONST(8, uint64_t, mask15s
) = 0xFFE0FFE0FFE0FFE0ULL
;
128 DECLARE_ASM_CONST(8, uint64_t, mask15g
) = 0x03E003E003E003E0ULL
;
129 DECLARE_ASM_CONST(8, uint64_t, mask15r
) = 0x7C007C007C007C00ULL
;
130 #define mask16b mask15b
131 DECLARE_ASM_CONST(8, uint64_t, mask16g
) = 0x07E007E007E007E0ULL
;
132 DECLARE_ASM_CONST(8, uint64_t, mask16r
) = 0xF800F800F800F800ULL
;
133 DECLARE_ASM_CONST(8, uint64_t, red_16mask
) = 0x0000f8000000f800ULL
;
134 DECLARE_ASM_CONST(8, uint64_t, green_16mask
) = 0x000007e0000007e0ULL
;
135 DECLARE_ASM_CONST(8, uint64_t, blue_16mask
) = 0x0000001f0000001fULL
;
136 DECLARE_ASM_CONST(8, uint64_t, red_15mask
) = 0x00007c0000007c00ULL
;
137 DECLARE_ASM_CONST(8, uint64_t, green_15mask
) = 0x000003e0000003e0ULL
;
138 DECLARE_ASM_CONST(8, uint64_t, blue_15mask
) = 0x0000001f0000001fULL
;
139 #endif /* ARCH_X86 */
141 #define RGB2YUV_SHIFT 8
142 #define BY ((int)( 0.098*(1<<RGB2YUV_SHIFT)+0.5))
143 #define BV ((int)(-0.071*(1<<RGB2YUV_SHIFT)+0.5))
144 #define BU ((int)( 0.439*(1<<RGB2YUV_SHIFT)+0.5))
145 #define GY ((int)( 0.504*(1<<RGB2YUV_SHIFT)+0.5))
146 #define GV ((int)(-0.368*(1<<RGB2YUV_SHIFT)+0.5))
147 #define GU ((int)(-0.291*(1<<RGB2YUV_SHIFT)+0.5))
148 #define RY ((int)( 0.257*(1<<RGB2YUV_SHIFT)+0.5))
149 #define RV ((int)( 0.439*(1<<RGB2YUV_SHIFT)+0.5))
150 #define RU ((int)(-0.148*(1<<RGB2YUV_SHIFT)+0.5))
152 //Note: We have C, MMX, MMX2, 3DNOW versions, there is no 3DNOW + MMX2 one.
160 #define HAVE_AMD3DNOW 0
162 #define RENAME(a) a ## _C
163 #include "rgb2rgb_template.c"
165 #if ARCH_X86 && CONFIG_GPL
171 #define RENAME(a) a ## _MMX
172 #include "rgb2rgb_template.c"
178 #define RENAME(a) a ## _MMX2
179 #include "rgb2rgb_template.c"
186 #define HAVE_AMD3DNOW 1
187 #define RENAME(a) a ## _3DNOW
188 #include "rgb2rgb_template.c"
190 #endif //ARCH_X86 || ARCH_X86_64
193 RGB15->RGB16 original by Strepto/Astral
194 ported to gcc & bugfixed : A'rpi
195 MMX2, 3DNOW optimization by Nick Kurshev
196 32-bit C version, and and&add trick by Michael Niedermayer
199 void sws_rgb2rgb_init(int flags
){
200 #if (HAVE_MMX2 || HAVE_AMD3DNOW || HAVE_MMX) && CONFIG_GPL
201 if (flags
& SWS_CPU_CAPS_MMX2
)
203 else if (flags
& SWS_CPU_CAPS_3DNOW
)
204 rgb2rgb_init_3DNOW();
205 else if (flags
& SWS_CPU_CAPS_MMX
)
208 #endif /* HAVE_MMX2 || HAVE_AMD3DNOW || HAVE_MMX */
213 * Convert the palette to the same packet 32-bit format as the palette
215 void palette8topacked32(const uint8_t *src
, uint8_t *dst
, long num_pixels
, const uint8_t *palette
)
219 for (i
=0; i
<num_pixels
; i
++)
220 ((uint32_t *) dst
)[i
] = ((const uint32_t *) palette
)[src
[i
]];
224 * Palette format: ABCD -> dst format: ABC
226 void palette8topacked24(const uint8_t *src
, uint8_t *dst
, long num_pixels
, const uint8_t *palette
)
230 for (i
=0; i
<num_pixels
; i
++)
233 dst
[0]= palette
[src
[i
]*4+0];
234 dst
[1]= palette
[src
[i
]*4+1];
235 dst
[2]= palette
[src
[i
]*4+2];
241 * Palette is assumed to contain BGR16, see rgb32to16 to convert the palette.
243 void palette8torgb16(const uint8_t *src
, uint8_t *dst
, long num_pixels
, const uint8_t *palette
)
246 for (i
=0; i
<num_pixels
; i
++)
247 ((uint16_t *)dst
)[i
] = ((const uint16_t *)palette
)[src
[i
]];
249 void palette8tobgr16(const uint8_t *src
, uint8_t *dst
, long num_pixels
, const uint8_t *palette
)
252 for (i
=0; i
<num_pixels
; i
++)
253 ((uint16_t *)dst
)[i
] = bswap_16(((const uint16_t *)palette
)[src
[i
]]);
257 * Palette is assumed to contain BGR15, see rgb32to15 to convert the palette.
259 void palette8torgb15(const uint8_t *src
, uint8_t *dst
, long num_pixels
, const uint8_t *palette
)
262 for (i
=0; i
<num_pixels
; i
++)
263 ((uint16_t *)dst
)[i
] = ((const uint16_t *)palette
)[src
[i
]];
265 void palette8tobgr15(const uint8_t *src
, uint8_t *dst
, long num_pixels
, const uint8_t *palette
)
268 for (i
=0; i
<num_pixels
; i
++)
269 ((uint16_t *)dst
)[i
] = bswap_16(((const uint16_t *)palette
)[src
[i
]]);
272 void rgb32to24(const uint8_t *src
, uint8_t *dst
, long src_size
)
275 long num_pixels
= src_size
>> 2;
276 for (i
=0; i
<num_pixels
; i
++)
278 #ifdef WORDS_BIGENDIAN
279 /* RGB32 (= A,B,G,R) -> BGR24 (= B,G,R) */
280 dst
[3*i
+ 0] = src
[4*i
+ 1];
281 dst
[3*i
+ 1] = src
[4*i
+ 2];
282 dst
[3*i
+ 2] = src
[4*i
+ 3];
284 dst
[3*i
+ 0] = src
[4*i
+ 2];
285 dst
[3*i
+ 1] = src
[4*i
+ 1];
286 dst
[3*i
+ 2] = src
[4*i
+ 0];
291 void rgb24to32(const uint8_t *src
, uint8_t *dst
, long src_size
)
294 for (i
=0; 3*i
<src_size
; i
++)
296 #ifdef WORDS_BIGENDIAN
297 /* RGB24 (= R,G,B) -> BGR32 (= A,R,G,B) */
299 dst
[4*i
+ 1] = src
[3*i
+ 0];
300 dst
[4*i
+ 2] = src
[3*i
+ 1];
301 dst
[4*i
+ 3] = src
[3*i
+ 2];
303 dst
[4*i
+ 0] = src
[3*i
+ 2];
304 dst
[4*i
+ 1] = src
[3*i
+ 1];
305 dst
[4*i
+ 2] = src
[3*i
+ 0];
311 void rgb16tobgr32(const uint8_t *src
, uint8_t *dst
, long src_size
)
315 const uint16_t *s
= (const uint16_t *)src
;
316 end
= s
+ src_size
/2;
319 register uint16_t bgr
;
321 #ifdef WORDS_BIGENDIAN
323 *d
++ = (bgr
&0x1F)<<3;
324 *d
++ = (bgr
&0x7E0)>>3;
325 *d
++ = (bgr
&0xF800)>>8;
327 *d
++ = (bgr
&0xF800)>>8;
328 *d
++ = (bgr
&0x7E0)>>3;
329 *d
++ = (bgr
&0x1F)<<3;
335 void rgb16to24(const uint8_t *src
, uint8_t *dst
, long src_size
)
339 const uint16_t *s
= (const uint16_t *)src
;
340 end
= s
+ src_size
/2;
343 register uint16_t bgr
;
345 *d
++ = (bgr
&0xF800)>>8;
346 *d
++ = (bgr
&0x7E0)>>3;
347 *d
++ = (bgr
&0x1F)<<3;
351 void rgb16tobgr16(const uint8_t *src
, uint8_t *dst
, long src_size
)
354 long num_pixels
= src_size
>> 1;
356 for (i
=0; i
<num_pixels
; i
++)
358 unsigned rgb
= ((const uint16_t*)src
)[i
];
359 ((uint16_t*)dst
)[i
] = (rgb
>>11) | (rgb
&0x7E0) | (rgb
<<11);
363 void rgb16tobgr15(const uint8_t *src
, uint8_t *dst
, long src_size
)
366 long num_pixels
= src_size
>> 1;
368 for (i
=0; i
<num_pixels
; i
++)
370 unsigned rgb
= ((const uint16_t*)src
)[i
];
371 ((uint16_t*)dst
)[i
] = (rgb
>>11) | ((rgb
&0x7C0)>>1) | ((rgb
&0x1F)<<10);
375 void rgb15tobgr32(const uint8_t *src
, uint8_t *dst
, long src_size
)
379 const uint16_t *s
= (const uint16_t *)src
;
380 end
= s
+ src_size
/2;
383 register uint16_t bgr
;
385 #ifdef WORDS_BIGENDIAN
387 *d
++ = (bgr
&0x1F)<<3;
388 *d
++ = (bgr
&0x3E0)>>2;
389 *d
++ = (bgr
&0x7C00)>>7;
391 *d
++ = (bgr
&0x7C00)>>7;
392 *d
++ = (bgr
&0x3E0)>>2;
393 *d
++ = (bgr
&0x1F)<<3;
399 void rgb15to24(const uint8_t *src
, uint8_t *dst
, long src_size
)
403 const uint16_t *s
= (const uint16_t *)src
;
404 end
= s
+ src_size
/2;
407 register uint16_t bgr
;
409 *d
++ = (bgr
&0x7C00)>>7;
410 *d
++ = (bgr
&0x3E0)>>2;
411 *d
++ = (bgr
&0x1F)<<3;
415 void rgb15tobgr16(const uint8_t *src
, uint8_t *dst
, long src_size
)
418 long num_pixels
= src_size
>> 1;
420 for (i
=0; i
<num_pixels
; i
++)
422 unsigned rgb
= ((const uint16_t*)src
)[i
];
423 ((uint16_t*)dst
)[i
] = ((rgb
&0x7C00)>>10) | ((rgb
&0x3E0)<<1) | (rgb
<<11);
427 void rgb15tobgr15(const uint8_t *src
, uint8_t *dst
, long src_size
)
430 long num_pixels
= src_size
>> 1;
432 for (i
=0; i
<num_pixels
; i
++)
435 unsigned rgb
= ((const uint16_t*)src
)[i
];
437 ((uint16_t*)dst
)[i
] = (br
>>10) | (rgb
&0x3E0) | (br
<<10);
441 void bgr8torgb8(const uint8_t *src
, uint8_t *dst
, long src_size
)
444 long num_pixels
= src_size
;
445 for (i
=0; i
<num_pixels
; i
++)
448 register uint8_t rgb
;
453 dst
[i
] = ((b
<<1)&0x07) | ((g
&0x07)<<3) | ((r
&0x03)<<6);