rgb2rgb.c 20 KB

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  1. /*
  2. *
  3. * rgb2rgb.c, Software RGB to RGB convertor
  4. * pluralize by Software PAL8 to RGB convertor
  5. * Software YUV to YUV convertor
  6. * Software YUV to RGB convertor
  7. * Written by Nick Kurshev.
  8. * palette & yuv & runtime cpu stuff by Michael (michaelni@gmx.at) (under GPL)
  9. */
  10. #include <inttypes.h>
  11. #include "config.h"
  12. #include "rgb2rgb.h"
  13. #include "swscale.h"
  14. #include "swscale_internal.h"
  15. #include "x86_cpu.h"
  16. #include "bswap.h"
  17. #ifdef USE_FASTMEMCPY
  18. #include "libvo/fastmemcpy.h"
  19. #endif
  20. #define FAST_BGR2YV12 // use 7 bit coeffs instead of 15bit
  21. void (*rgb24to32)(const uint8_t *src,uint8_t *dst,long src_size);
  22. void (*rgb24to16)(const uint8_t *src,uint8_t *dst,long src_size);
  23. void (*rgb24to15)(const uint8_t *src,uint8_t *dst,long src_size);
  24. void (*rgb32to24)(const uint8_t *src,uint8_t *dst,long src_size);
  25. void (*rgb32to16)(const uint8_t *src,uint8_t *dst,long src_size);
  26. void (*rgb32to15)(const uint8_t *src,uint8_t *dst,long src_size);
  27. void (*rgb15to16)(const uint8_t *src,uint8_t *dst,long src_size);
  28. void (*rgb15to24)(const uint8_t *src,uint8_t *dst,long src_size);
  29. void (*rgb15to32)(const uint8_t *src,uint8_t *dst,long src_size);
  30. void (*rgb16to15)(const uint8_t *src,uint8_t *dst,long src_size);
  31. void (*rgb16to24)(const uint8_t *src,uint8_t *dst,long src_size);
  32. void (*rgb16to32)(const uint8_t *src,uint8_t *dst,long src_size);
  33. //void (*rgb24tobgr32)(const uint8_t *src, uint8_t *dst, long src_size);
  34. void (*rgb24tobgr24)(const uint8_t *src, uint8_t *dst, long src_size);
  35. void (*rgb24tobgr16)(const uint8_t *src, uint8_t *dst, long src_size);
  36. void (*rgb24tobgr15)(const uint8_t *src, uint8_t *dst, long src_size);
  37. void (*rgb32tobgr32)(const uint8_t *src, uint8_t *dst, long src_size);
  38. //void (*rgb32tobgr24)(const uint8_t *src, uint8_t *dst, long src_size);
  39. void (*rgb32tobgr16)(const uint8_t *src, uint8_t *dst, long src_size);
  40. void (*rgb32tobgr15)(const uint8_t *src, uint8_t *dst, long src_size);
  41. void (*yv12toyuy2)(const uint8_t *ysrc, const uint8_t *usrc, const uint8_t *vsrc, uint8_t *dst,
  42. long width, long height,
  43. long lumStride, long chromStride, long dstStride);
  44. void (*yv12touyvy)(const uint8_t *ysrc, const uint8_t *usrc, const uint8_t *vsrc, uint8_t *dst,
  45. long width, long height,
  46. long lumStride, long chromStride, long dstStride);
  47. void (*yuv422ptoyuy2)(const uint8_t *ysrc, const uint8_t *usrc, const uint8_t *vsrc, uint8_t *dst,
  48. long width, long height,
  49. long lumStride, long chromStride, long dstStride);
  50. void (*yuy2toyv12)(const uint8_t *src, uint8_t *ydst, uint8_t *udst, uint8_t *vdst,
  51. long width, long height,
  52. long lumStride, long chromStride, long srcStride);
  53. void (*rgb24toyv12)(const uint8_t *src, uint8_t *ydst, uint8_t *udst, uint8_t *vdst,
  54. long width, long height,
  55. long lumStride, long chromStride, long srcStride);
  56. void (*planar2x)(const uint8_t *src, uint8_t *dst, long width, long height,
  57. long srcStride, long dstStride);
  58. void (*interleaveBytes)(uint8_t *src1, uint8_t *src2, uint8_t *dst,
  59. long width, long height, long src1Stride,
  60. long src2Stride, long dstStride);
  61. void (*vu9_to_vu12)(const uint8_t *src1, const uint8_t *src2,
  62. uint8_t *dst1, uint8_t *dst2,
  63. long width, long height,
  64. long srcStride1, long srcStride2,
  65. long dstStride1, long dstStride2);
  66. void (*yvu9_to_yuy2)(const uint8_t *src1, const uint8_t *src2, const uint8_t *src3,
  67. uint8_t *dst,
  68. long width, long height,
  69. long srcStride1, long srcStride2,
  70. long srcStride3, long dstStride);
  71. #if defined(ARCH_X86) || defined(ARCH_X86_64)
  72. static const uint64_t mmx_null __attribute__((aligned(8))) = 0x0000000000000000ULL;
  73. static const uint64_t mmx_one __attribute__((aligned(8))) = 0xFFFFFFFFFFFFFFFFULL;
  74. static const uint64_t mask32b attribute_used __attribute__((aligned(8))) = 0x000000FF000000FFULL;
  75. static const uint64_t mask32g attribute_used __attribute__((aligned(8))) = 0x0000FF000000FF00ULL;
  76. static const uint64_t mask32r attribute_used __attribute__((aligned(8))) = 0x00FF000000FF0000ULL;
  77. static const uint64_t mask32 __attribute__((aligned(8))) = 0x00FFFFFF00FFFFFFULL;
  78. static const uint64_t mask3216br __attribute__((aligned(8)))=0x00F800F800F800F8ULL;
  79. static const uint64_t mask3216g __attribute__((aligned(8)))=0x0000FC000000FC00ULL;
  80. static const uint64_t mask3215g __attribute__((aligned(8)))=0x0000F8000000F800ULL;
  81. static const uint64_t mul3216 __attribute__((aligned(8))) = 0x2000000420000004ULL;
  82. static const uint64_t mul3215 __attribute__((aligned(8))) = 0x2000000820000008ULL;
  83. static const uint64_t mask24b attribute_used __attribute__((aligned(8))) = 0x00FF0000FF0000FFULL;
  84. static const uint64_t mask24g attribute_used __attribute__((aligned(8))) = 0xFF0000FF0000FF00ULL;
  85. static const uint64_t mask24r attribute_used __attribute__((aligned(8))) = 0x0000FF0000FF0000ULL;
  86. static const uint64_t mask24l __attribute__((aligned(8))) = 0x0000000000FFFFFFULL;
  87. static const uint64_t mask24h __attribute__((aligned(8))) = 0x0000FFFFFF000000ULL;
  88. static const uint64_t mask24hh __attribute__((aligned(8))) = 0xffff000000000000ULL;
  89. static const uint64_t mask24hhh __attribute__((aligned(8))) = 0xffffffff00000000ULL;
  90. static const uint64_t mask24hhhh __attribute__((aligned(8))) = 0xffffffffffff0000ULL;
  91. static const uint64_t mask15b __attribute__((aligned(8))) = 0x001F001F001F001FULL; /* 00000000 00011111 xxB */
  92. static const uint64_t mask15rg __attribute__((aligned(8))) = 0x7FE07FE07FE07FE0ULL; /* 01111111 11100000 RGx */
  93. static const uint64_t mask15s __attribute__((aligned(8))) = 0xFFE0FFE0FFE0FFE0ULL;
  94. static const uint64_t mask15g __attribute__((aligned(8))) = 0x03E003E003E003E0ULL;
  95. static const uint64_t mask15r __attribute__((aligned(8))) = 0x7C007C007C007C00ULL;
  96. #define mask16b mask15b
  97. static const uint64_t mask16g __attribute__((aligned(8))) = 0x07E007E007E007E0ULL;
  98. static const uint64_t mask16r __attribute__((aligned(8))) = 0xF800F800F800F800ULL;
  99. static const uint64_t red_16mask __attribute__((aligned(8))) = 0x0000f8000000f800ULL;
  100. static const uint64_t green_16mask __attribute__((aligned(8)))= 0x000007e0000007e0ULL;
  101. static const uint64_t blue_16mask __attribute__((aligned(8))) = 0x0000001f0000001fULL;
  102. static const uint64_t red_15mask __attribute__((aligned(8))) = 0x00007c000000f800ULL;
  103. static const uint64_t green_15mask __attribute__((aligned(8)))= 0x000003e0000007e0ULL;
  104. static const uint64_t blue_15mask __attribute__((aligned(8))) = 0x0000001f0000001fULL;
  105. #ifdef FAST_BGR2YV12
  106. static const uint64_t bgr2YCoeff attribute_used __attribute__((aligned(8))) = 0x000000210041000DULL;
  107. static const uint64_t bgr2UCoeff attribute_used __attribute__((aligned(8))) = 0x0000FFEEFFDC0038ULL;
  108. static const uint64_t bgr2VCoeff attribute_used __attribute__((aligned(8))) = 0x00000038FFD2FFF8ULL;
  109. #else
  110. static const uint64_t bgr2YCoeff attribute_used __attribute__((aligned(8))) = 0x000020E540830C8BULL;
  111. static const uint64_t bgr2UCoeff attribute_used __attribute__((aligned(8))) = 0x0000ED0FDAC23831ULL;
  112. static const uint64_t bgr2VCoeff attribute_used __attribute__((aligned(8))) = 0x00003831D0E6F6EAULL;
  113. #endif
  114. static const uint64_t bgr2YOffset attribute_used __attribute__((aligned(8))) = 0x1010101010101010ULL;
  115. static const uint64_t bgr2UVOffset attribute_used __attribute__((aligned(8)))= 0x8080808080808080ULL;
  116. static const uint64_t w1111 attribute_used __attribute__((aligned(8))) = 0x0001000100010001ULL;
  117. #if 0
  118. static volatile uint64_t __attribute__((aligned(8))) b5Dither;
  119. static volatile uint64_t __attribute__((aligned(8))) g5Dither;
  120. static volatile uint64_t __attribute__((aligned(8))) g6Dither;
  121. static volatile uint64_t __attribute__((aligned(8))) r5Dither;
  122. static uint64_t __attribute__((aligned(8))) dither4[2]={
  123. 0x0103010301030103LL,
  124. 0x0200020002000200LL,};
  125. static uint64_t __attribute__((aligned(8))) dither8[2]={
  126. 0x0602060206020602LL,
  127. 0x0004000400040004LL,};
  128. #endif
  129. #endif
  130. #define RGB2YUV_SHIFT 8
  131. #define BY ((int)( 0.098*(1<<RGB2YUV_SHIFT)+0.5))
  132. #define BV ((int)(-0.071*(1<<RGB2YUV_SHIFT)+0.5))
  133. #define BU ((int)( 0.439*(1<<RGB2YUV_SHIFT)+0.5))
  134. #define GY ((int)( 0.504*(1<<RGB2YUV_SHIFT)+0.5))
  135. #define GV ((int)(-0.368*(1<<RGB2YUV_SHIFT)+0.5))
  136. #define GU ((int)(-0.291*(1<<RGB2YUV_SHIFT)+0.5))
  137. #define RY ((int)( 0.257*(1<<RGB2YUV_SHIFT)+0.5))
  138. #define RV ((int)( 0.439*(1<<RGB2YUV_SHIFT)+0.5))
  139. #define RU ((int)(-0.148*(1<<RGB2YUV_SHIFT)+0.5))
  140. //Note: we have C, MMX, MMX2, 3DNOW version therse no 3DNOW+MMX2 one
  141. //Plain C versions
  142. #undef HAVE_MMX
  143. #undef HAVE_MMX2
  144. #undef HAVE_3DNOW
  145. #undef HAVE_SSE2
  146. #define RENAME(a) a ## _C
  147. #include "rgb2rgb_template.c"
  148. #if defined(ARCH_X86) || defined(ARCH_X86_64)
  149. //MMX versions
  150. #undef RENAME
  151. #define HAVE_MMX
  152. #undef HAVE_MMX2
  153. #undef HAVE_3DNOW
  154. #undef HAVE_SSE2
  155. #define RENAME(a) a ## _MMX
  156. #include "rgb2rgb_template.c"
  157. //MMX2 versions
  158. #undef RENAME
  159. #define HAVE_MMX
  160. #define HAVE_MMX2
  161. #undef HAVE_3DNOW
  162. #undef HAVE_SSE2
  163. #define RENAME(a) a ## _MMX2
  164. #include "rgb2rgb_template.c"
  165. //3DNOW versions
  166. #undef RENAME
  167. #define HAVE_MMX
  168. #undef HAVE_MMX2
  169. #define HAVE_3DNOW
  170. #undef HAVE_SSE2
  171. #define RENAME(a) a ## _3DNOW
  172. #include "rgb2rgb_template.c"
  173. #endif //ARCH_X86 || ARCH_X86_64
  174. /*
  175. rgb15->rgb16 Original by Strepto/Astral
  176. ported to gcc & bugfixed : A'rpi
  177. MMX2, 3DNOW optimization by Nick Kurshev
  178. 32bit c version, and and&add trick by Michael Niedermayer
  179. */
  180. void sws_rgb2rgb_init(int flags){
  181. #if defined(ARCH_X86) || defined(ARCH_X86_64)
  182. if(flags & SWS_CPU_CAPS_MMX2){
  183. rgb15to16= rgb15to16_MMX2;
  184. rgb15to24= rgb15to24_MMX2;
  185. rgb15to32= rgb15to32_MMX2;
  186. rgb16to24= rgb16to24_MMX2;
  187. rgb16to32= rgb16to32_MMX2;
  188. rgb16to15= rgb16to15_MMX2;
  189. rgb24to16= rgb24to16_MMX2;
  190. rgb24to15= rgb24to15_MMX2;
  191. rgb24to32= rgb24to32_MMX2;
  192. rgb32to16= rgb32to16_MMX2;
  193. rgb32to15= rgb32to15_MMX2;
  194. rgb32to24= rgb32to24_MMX2;
  195. rgb24tobgr15= rgb24tobgr15_MMX2;
  196. rgb24tobgr16= rgb24tobgr16_MMX2;
  197. rgb24tobgr24= rgb24tobgr24_MMX2;
  198. rgb32tobgr32= rgb32tobgr32_MMX2;
  199. rgb32tobgr16= rgb32tobgr16_MMX2;
  200. rgb32tobgr15= rgb32tobgr15_MMX2;
  201. yv12toyuy2= yv12toyuy2_MMX2;
  202. yv12touyvy= yv12touyvy_MMX2;
  203. yuv422ptoyuy2= yuv422ptoyuy2_MMX2;
  204. yuy2toyv12= yuy2toyv12_MMX2;
  205. // uyvytoyv12= uyvytoyv12_MMX2;
  206. // yvu9toyv12= yvu9toyv12_MMX2;
  207. planar2x= planar2x_MMX2;
  208. rgb24toyv12= rgb24toyv12_MMX2;
  209. interleaveBytes= interleaveBytes_MMX2;
  210. vu9_to_vu12= vu9_to_vu12_MMX2;
  211. yvu9_to_yuy2= yvu9_to_yuy2_MMX2;
  212. }else if(flags & SWS_CPU_CAPS_3DNOW){
  213. rgb15to16= rgb15to16_3DNOW;
  214. rgb15to24= rgb15to24_3DNOW;
  215. rgb15to32= rgb15to32_3DNOW;
  216. rgb16to24= rgb16to24_3DNOW;
  217. rgb16to32= rgb16to32_3DNOW;
  218. rgb16to15= rgb16to15_3DNOW;
  219. rgb24to16= rgb24to16_3DNOW;
  220. rgb24to15= rgb24to15_3DNOW;
  221. rgb24to32= rgb24to32_3DNOW;
  222. rgb32to16= rgb32to16_3DNOW;
  223. rgb32to15= rgb32to15_3DNOW;
  224. rgb32to24= rgb32to24_3DNOW;
  225. rgb24tobgr15= rgb24tobgr15_3DNOW;
  226. rgb24tobgr16= rgb24tobgr16_3DNOW;
  227. rgb24tobgr24= rgb24tobgr24_3DNOW;
  228. rgb32tobgr32= rgb32tobgr32_3DNOW;
  229. rgb32tobgr16= rgb32tobgr16_3DNOW;
  230. rgb32tobgr15= rgb32tobgr15_3DNOW;
  231. yv12toyuy2= yv12toyuy2_3DNOW;
  232. yv12touyvy= yv12touyvy_3DNOW;
  233. yuv422ptoyuy2= yuv422ptoyuy2_3DNOW;
  234. yuy2toyv12= yuy2toyv12_3DNOW;
  235. // uyvytoyv12= uyvytoyv12_3DNOW;
  236. // yvu9toyv12= yvu9toyv12_3DNOW;
  237. planar2x= planar2x_3DNOW;
  238. rgb24toyv12= rgb24toyv12_3DNOW;
  239. interleaveBytes= interleaveBytes_3DNOW;
  240. vu9_to_vu12= vu9_to_vu12_3DNOW;
  241. yvu9_to_yuy2= yvu9_to_yuy2_3DNOW;
  242. }else if(flags & SWS_CPU_CAPS_MMX){
  243. rgb15to16= rgb15to16_MMX;
  244. rgb15to24= rgb15to24_MMX;
  245. rgb15to32= rgb15to32_MMX;
  246. rgb16to24= rgb16to24_MMX;
  247. rgb16to32= rgb16to32_MMX;
  248. rgb16to15= rgb16to15_MMX;
  249. rgb24to16= rgb24to16_MMX;
  250. rgb24to15= rgb24to15_MMX;
  251. rgb24to32= rgb24to32_MMX;
  252. rgb32to16= rgb32to16_MMX;
  253. rgb32to15= rgb32to15_MMX;
  254. rgb32to24= rgb32to24_MMX;
  255. rgb24tobgr15= rgb24tobgr15_MMX;
  256. rgb24tobgr16= rgb24tobgr16_MMX;
  257. rgb24tobgr24= rgb24tobgr24_MMX;
  258. rgb32tobgr32= rgb32tobgr32_MMX;
  259. rgb32tobgr16= rgb32tobgr16_MMX;
  260. rgb32tobgr15= rgb32tobgr15_MMX;
  261. yv12toyuy2= yv12toyuy2_MMX;
  262. yv12touyvy= yv12touyvy_MMX;
  263. yuv422ptoyuy2= yuv422ptoyuy2_MMX;
  264. yuy2toyv12= yuy2toyv12_MMX;
  265. // uyvytoyv12= uyvytoyv12_MMX;
  266. // yvu9toyv12= yvu9toyv12_MMX;
  267. planar2x= planar2x_MMX;
  268. rgb24toyv12= rgb24toyv12_MMX;
  269. interleaveBytes= interleaveBytes_MMX;
  270. vu9_to_vu12= vu9_to_vu12_MMX;
  271. yvu9_to_yuy2= yvu9_to_yuy2_MMX;
  272. }else
  273. #endif
  274. {
  275. rgb15to16= rgb15to16_C;
  276. rgb15to24= rgb15to24_C;
  277. rgb15to32= rgb15to32_C;
  278. rgb16to24= rgb16to24_C;
  279. rgb16to32= rgb16to32_C;
  280. rgb16to15= rgb16to15_C;
  281. rgb24to16= rgb24to16_C;
  282. rgb24to15= rgb24to15_C;
  283. rgb24to32= rgb24to32_C;
  284. rgb32to16= rgb32to16_C;
  285. rgb32to15= rgb32to15_C;
  286. rgb32to24= rgb32to24_C;
  287. rgb24tobgr15= rgb24tobgr15_C;
  288. rgb24tobgr16= rgb24tobgr16_C;
  289. rgb24tobgr24= rgb24tobgr24_C;
  290. rgb32tobgr32= rgb32tobgr32_C;
  291. rgb32tobgr16= rgb32tobgr16_C;
  292. rgb32tobgr15= rgb32tobgr15_C;
  293. yv12toyuy2= yv12toyuy2_C;
  294. yv12touyvy= yv12touyvy_C;
  295. yuv422ptoyuy2= yuv422ptoyuy2_C;
  296. yuy2toyv12= yuy2toyv12_C;
  297. // uyvytoyv12= uyvytoyv12_C;
  298. // yvu9toyv12= yvu9toyv12_C;
  299. planar2x= planar2x_C;
  300. rgb24toyv12= rgb24toyv12_C;
  301. interleaveBytes= interleaveBytes_C;
  302. vu9_to_vu12= vu9_to_vu12_C;
  303. yvu9_to_yuy2= yvu9_to_yuy2_C;
  304. }
  305. }
  306. /**
  307. * Pallete is assumed to contain bgr32
  308. */
  309. void palette8torgb32(const uint8_t *src, uint8_t *dst, long num_pixels, const uint8_t *palette)
  310. {
  311. long i;
  312. /*
  313. for(i=0; i<num_pixels; i++)
  314. ((unsigned *)dst)[i] = ((unsigned *)palette)[ src[i] ];
  315. */
  316. for(i=0; i<num_pixels; i++)
  317. {
  318. #ifdef WORDS_BIGENDIAN
  319. dst[3]= palette[ src[i]*4+2 ];
  320. dst[2]= palette[ src[i]*4+1 ];
  321. dst[1]= palette[ src[i]*4+0 ];
  322. #else
  323. //FIXME slow?
  324. dst[0]= palette[ src[i]*4+2 ];
  325. dst[1]= palette[ src[i]*4+1 ];
  326. dst[2]= palette[ src[i]*4+0 ];
  327. //dst[3]= 0; /* do we need this cleansing? */
  328. #endif
  329. dst+= 4;
  330. }
  331. }
  332. void palette8tobgr32(const uint8_t *src, uint8_t *dst, long num_pixels, const uint8_t *palette)
  333. {
  334. long i;
  335. for(i=0; i<num_pixels; i++)
  336. {
  337. #ifdef WORDS_BIGENDIAN
  338. dst[3]= palette[ src[i]*4+0 ];
  339. dst[2]= palette[ src[i]*4+1 ];
  340. dst[1]= palette[ src[i]*4+2 ];
  341. #else
  342. //FIXME slow?
  343. dst[0]= palette[ src[i]*4+0 ];
  344. dst[1]= palette[ src[i]*4+1 ];
  345. dst[2]= palette[ src[i]*4+2 ];
  346. //dst[3]= 0; /* do we need this cleansing? */
  347. #endif
  348. dst+= 4;
  349. }
  350. }
  351. /**
  352. * Pallete is assumed to contain bgr32
  353. */
  354. void palette8torgb24(const uint8_t *src, uint8_t *dst, long num_pixels, const uint8_t *palette)
  355. {
  356. long i;
  357. /*
  358. writes 1 byte o much and might cause alignment issues on some architectures?
  359. for(i=0; i<num_pixels; i++)
  360. ((unsigned *)(&dst[i*3])) = ((unsigned *)palette)[ src[i] ];
  361. */
  362. for(i=0; i<num_pixels; i++)
  363. {
  364. //FIXME slow?
  365. dst[0]= palette[ src[i]*4+2 ];
  366. dst[1]= palette[ src[i]*4+1 ];
  367. dst[2]= palette[ src[i]*4+0 ];
  368. dst+= 3;
  369. }
  370. }
  371. void palette8tobgr24(const uint8_t *src, uint8_t *dst, long num_pixels, const uint8_t *palette)
  372. {
  373. long i;
  374. /*
  375. writes 1 byte o much and might cause alignment issues on some architectures?
  376. for(i=0; i<num_pixels; i++)
  377. ((unsigned *)(&dst[i*3])) = ((unsigned *)palette)[ src[i] ];
  378. */
  379. for(i=0; i<num_pixels; i++)
  380. {
  381. //FIXME slow?
  382. dst[0]= palette[ src[i]*4+0 ];
  383. dst[1]= palette[ src[i]*4+1 ];
  384. dst[2]= palette[ src[i]*4+2 ];
  385. dst+= 3;
  386. }
  387. }
  388. /**
  389. * Palette is assumed to contain bgr16, see rgb32to16 to convert the palette
  390. */
  391. void palette8torgb16(const uint8_t *src, uint8_t *dst, long num_pixels, const uint8_t *palette)
  392. {
  393. long i;
  394. for(i=0; i<num_pixels; i++)
  395. ((uint16_t *)dst)[i] = ((uint16_t *)palette)[ src[i] ];
  396. }
  397. void palette8tobgr16(const uint8_t *src, uint8_t *dst, long num_pixels, const uint8_t *palette)
  398. {
  399. long i;
  400. for(i=0; i<num_pixels; i++)
  401. ((uint16_t *)dst)[i] = bswap_16(((uint16_t *)palette)[ src[i] ]);
  402. }
  403. /**
  404. * Pallete is assumed to contain bgr15, see rgb32to15 to convert the palette
  405. */
  406. void palette8torgb15(const uint8_t *src, uint8_t *dst, long num_pixels, const uint8_t *palette)
  407. {
  408. long i;
  409. for(i=0; i<num_pixels; i++)
  410. ((uint16_t *)dst)[i] = ((uint16_t *)palette)[ src[i] ];
  411. }
  412. void palette8tobgr15(const uint8_t *src, uint8_t *dst, long num_pixels, const uint8_t *palette)
  413. {
  414. long i;
  415. for(i=0; i<num_pixels; i++)
  416. ((uint16_t *)dst)[i] = bswap_16(((uint16_t *)palette)[ src[i] ]);
  417. }
  418. void rgb32tobgr24(const uint8_t *src, uint8_t *dst, long src_size)
  419. {
  420. long i;
  421. long num_pixels = src_size >> 2;
  422. for(i=0; i<num_pixels; i++)
  423. {
  424. #ifdef WORDS_BIGENDIAN
  425. /* RGB32 (= A,B,G,R) -> BGR24 (= B,G,R) */
  426. dst[3*i + 0] = src[4*i + 1];
  427. dst[3*i + 1] = src[4*i + 2];
  428. dst[3*i + 2] = src[4*i + 3];
  429. #else
  430. dst[3*i + 0] = src[4*i + 2];
  431. dst[3*i + 1] = src[4*i + 1];
  432. dst[3*i + 2] = src[4*i + 0];
  433. #endif
  434. }
  435. }
  436. void rgb24tobgr32(const uint8_t *src, uint8_t *dst, long src_size)
  437. {
  438. long i;
  439. for(i=0; 3*i<src_size; i++)
  440. {
  441. #ifdef WORDS_BIGENDIAN
  442. /* RGB24 (= R,G,B) -> BGR32 (= A,R,G,B) */
  443. dst[4*i + 0] = 0;
  444. dst[4*i + 1] = src[3*i + 0];
  445. dst[4*i + 2] = src[3*i + 1];
  446. dst[4*i + 3] = src[3*i + 2];
  447. #else
  448. dst[4*i + 0] = src[3*i + 2];
  449. dst[4*i + 1] = src[3*i + 1];
  450. dst[4*i + 2] = src[3*i + 0];
  451. dst[4*i + 3] = 0;
  452. #endif
  453. }
  454. }
  455. void rgb16tobgr32(const uint8_t *src, uint8_t *dst, long src_size)
  456. {
  457. const uint16_t *end;
  458. uint8_t *d = (uint8_t *)dst;
  459. const uint16_t *s = (uint16_t *)src;
  460. end = s + src_size/2;
  461. while(s < end)
  462. {
  463. register uint16_t bgr;
  464. bgr = *s++;
  465. #ifdef WORDS_BIGENDIAN
  466. *d++ = 0;
  467. *d++ = (bgr&0x1F)<<3;
  468. *d++ = (bgr&0x7E0)>>3;
  469. *d++ = (bgr&0xF800)>>8;
  470. #else
  471. *d++ = (bgr&0xF800)>>8;
  472. *d++ = (bgr&0x7E0)>>3;
  473. *d++ = (bgr&0x1F)<<3;
  474. *d++ = 0;
  475. #endif
  476. }
  477. }
  478. void rgb16tobgr24(const uint8_t *src, uint8_t *dst, long src_size)
  479. {
  480. const uint16_t *end;
  481. uint8_t *d = (uint8_t *)dst;
  482. const uint16_t *s = (const uint16_t *)src;
  483. end = s + src_size/2;
  484. while(s < end)
  485. {
  486. register uint16_t bgr;
  487. bgr = *s++;
  488. *d++ = (bgr&0xF800)>>8;
  489. *d++ = (bgr&0x7E0)>>3;
  490. *d++ = (bgr&0x1F)<<3;
  491. }
  492. }
  493. void rgb16tobgr16(const uint8_t *src, uint8_t *dst, long src_size)
  494. {
  495. long i;
  496. long num_pixels = src_size >> 1;
  497. for(i=0; i<num_pixels; i++)
  498. {
  499. unsigned b,g,r;
  500. register uint16_t rgb;
  501. rgb = src[2*i];
  502. r = rgb&0x1F;
  503. g = (rgb&0x7E0)>>5;
  504. b = (rgb&0xF800)>>11;
  505. dst[2*i] = (b&0x1F) | ((g&0x3F)<<5) | ((r&0x1F)<<11);
  506. }
  507. }
  508. void rgb16tobgr15(const uint8_t *src, uint8_t *dst, long src_size)
  509. {
  510. long i;
  511. long num_pixels = src_size >> 1;
  512. for(i=0; i<num_pixels; i++)
  513. {
  514. unsigned b,g,r;
  515. register uint16_t rgb;
  516. rgb = src[2*i];
  517. r = rgb&0x1F;
  518. g = (rgb&0x7E0)>>5;
  519. b = (rgb&0xF800)>>11;
  520. dst[2*i] = (b&0x1F) | ((g&0x1F)<<5) | ((r&0x1F)<<10);
  521. }
  522. }
  523. void rgb15tobgr32(const uint8_t *src, uint8_t *dst, long src_size)
  524. {
  525. const uint16_t *end;
  526. uint8_t *d = (uint8_t *)dst;
  527. const uint16_t *s = (const uint16_t *)src;
  528. end = s + src_size/2;
  529. while(s < end)
  530. {
  531. register uint16_t bgr;
  532. bgr = *s++;
  533. #ifdef WORDS_BIGENDIAN
  534. *d++ = 0;
  535. *d++ = (bgr&0x1F)<<3;
  536. *d++ = (bgr&0x3E0)>>2;
  537. *d++ = (bgr&0x7C00)>>7;
  538. #else
  539. *d++ = (bgr&0x7C00)>>7;
  540. *d++ = (bgr&0x3E0)>>2;
  541. *d++ = (bgr&0x1F)<<3;
  542. *d++ = 0;
  543. #endif
  544. }
  545. }
  546. void rgb15tobgr24(const uint8_t *src, uint8_t *dst, long src_size)
  547. {
  548. const uint16_t *end;
  549. uint8_t *d = (uint8_t *)dst;
  550. const uint16_t *s = (uint16_t *)src;
  551. end = s + src_size/2;
  552. while(s < end)
  553. {
  554. register uint16_t bgr;
  555. bgr = *s++;
  556. *d++ = (bgr&0x7C00)>>7;
  557. *d++ = (bgr&0x3E0)>>2;
  558. *d++ = (bgr&0x1F)<<3;
  559. }
  560. }
  561. void rgb15tobgr16(const uint8_t *src, uint8_t *dst, long src_size)
  562. {
  563. long i;
  564. long num_pixels = src_size >> 1;
  565. for(i=0; i<num_pixels; i++)
  566. {
  567. unsigned b,g,r;
  568. register uint16_t rgb;
  569. rgb = src[2*i];
  570. r = rgb&0x1F;
  571. g = (rgb&0x3E0)>>5;
  572. b = (rgb&0x7C00)>>10;
  573. dst[2*i] = (b&0x1F) | ((g&0x3F)<<5) | ((r&0x1F)<<11);
  574. }
  575. }
  576. void rgb15tobgr15(const uint8_t *src, uint8_t *dst, long src_size)
  577. {
  578. long i;
  579. long num_pixels = src_size >> 1;
  580. for(i=0; i<num_pixels; i++)
  581. {
  582. unsigned b,g,r;
  583. register uint16_t rgb;
  584. rgb = src[2*i];
  585. r = rgb&0x1F;
  586. g = (rgb&0x3E0)>>5;
  587. b = (rgb&0x7C00)>>10;
  588. dst[2*i] = (b&0x1F) | ((g&0x1F)<<5) | ((r&0x1F)<<10);
  589. }
  590. }
  591. void rgb8tobgr8(const uint8_t *src, uint8_t *dst, long src_size)
  592. {
  593. long i;
  594. long num_pixels = src_size;
  595. for(i=0; i<num_pixels; i++)
  596. {
  597. unsigned b,g,r;
  598. register uint8_t rgb;
  599. rgb = src[i];
  600. r = (rgb&0x07);
  601. g = (rgb&0x38)>>3;
  602. b = (rgb&0xC0)>>6;
  603. dst[i] = ((b<<1)&0x07) | ((g&0x07)<<3) | ((r&0x03)<<6);
  604. }
  605. }