swscale_internal.h 21 KB

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  1. /*
  2. * Copyright (C) 2001-2003 Michael Niedermayer <michaelni@gmx.at>
  3. *
  4. * This file is part of Libav.
  5. *
  6. * Libav 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. * Libav 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 Libav; if not, write to the Free Software
  18. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  19. */
  20. #ifndef SWSCALE_SWSCALE_INTERNAL_H
  21. #define SWSCALE_SWSCALE_INTERNAL_H
  22. #include "config.h"
  23. #if HAVE_ALTIVEC_H
  24. #include <altivec.h>
  25. #endif
  26. #include "libavutil/avutil.h"
  27. #define STR(s) AV_TOSTRING(s) //AV_STRINGIFY is too long
  28. #define FAST_BGR2YV12 //use 7-bit instead of 15-bit coefficients
  29. #define MAX_FILTER_SIZE 256
  30. #if HAVE_BIGENDIAN
  31. #define ALT32_CORR (-1)
  32. #else
  33. #define ALT32_CORR 1
  34. #endif
  35. #if ARCH_X86_64
  36. # define APCK_PTR2 8
  37. # define APCK_COEF 16
  38. # define APCK_SIZE 24
  39. #else
  40. # define APCK_PTR2 4
  41. # define APCK_COEF 8
  42. # define APCK_SIZE 16
  43. #endif
  44. struct SwsContext;
  45. typedef int (*SwsFunc)(struct SwsContext *context, const uint8_t* src[],
  46. int srcStride[], int srcSliceY, int srcSliceH,
  47. uint8_t* dst[], int dstStride[]);
  48. /* This struct should be aligned on at least a 32-byte boundary. */
  49. typedef struct SwsContext {
  50. /**
  51. * info on struct for av_log
  52. */
  53. const AVClass *av_class;
  54. /**
  55. * Note that src, dst, srcStride, dstStride will be copied in the
  56. * sws_scale() wrapper so they can be freely modified here.
  57. */
  58. SwsFunc swScale;
  59. int srcW; ///< Width of source luma/alpha planes.
  60. int srcH; ///< Height of source luma/alpha planes.
  61. int dstH; ///< Height of destination luma/alpha planes.
  62. int chrSrcW; ///< Width of source chroma planes.
  63. int chrSrcH; ///< Height of source chroma planes.
  64. int chrDstW; ///< Width of destination chroma planes.
  65. int chrDstH; ///< Height of destination chroma planes.
  66. int lumXInc, chrXInc;
  67. int lumYInc, chrYInc;
  68. enum PixelFormat dstFormat; ///< Destination pixel format.
  69. enum PixelFormat srcFormat; ///< Source pixel format.
  70. int dstFormatBpp; ///< Number of bits per pixel of the destination pixel format.
  71. int srcFormatBpp; ///< Number of bits per pixel of the source pixel format.
  72. int chrSrcHSubSample; ///< Binary logarithm of horizontal subsampling factor between luma/alpha and chroma planes in source image.
  73. int chrSrcVSubSample; ///< Binary logarithm of vertical subsampling factor between luma/alpha and chroma planes in source image.
  74. int chrDstHSubSample; ///< Binary logarithm of horizontal subsampling factor between luma/alpha and chroma planes in destination image.
  75. int chrDstVSubSample; ///< Binary logarithm of vertical subsampling factor between luma/alpha and chroma planes in destination image.
  76. int vChrDrop; ///< Binary logarithm of extra vertical subsampling factor in source image chroma planes specified by user.
  77. int sliceDir; ///< Direction that slices are fed to the scaler (1 = top-to-bottom, -1 = bottom-to-top).
  78. double param[2]; ///< Input parameters for scaling algorithms that need them.
  79. uint32_t pal_yuv[256];
  80. uint32_t pal_rgb[256];
  81. /**
  82. * @name Scaled horizontal lines ring buffer.
  83. * The horizontal scaler keeps just enough scaled lines in a ring buffer
  84. * so they may be passed to the vertical scaler. The pointers to the
  85. * allocated buffers for each line are duplicated in sequence in the ring
  86. * buffer to simplify indexing and avoid wrapping around between lines
  87. * inside the vertical scaler code. The wrapping is done before the
  88. * vertical scaler is called.
  89. */
  90. //@{
  91. int16_t **lumPixBuf; ///< Ring buffer for scaled horizontal luma plane lines to be fed to the vertical scaler.
  92. int16_t **chrUPixBuf; ///< Ring buffer for scaled horizontal chroma plane lines to be fed to the vertical scaler.
  93. int16_t **chrVPixBuf; ///< Ring buffer for scaled horizontal chroma plane lines to be fed to the vertical scaler.
  94. int16_t **alpPixBuf; ///< Ring buffer for scaled horizontal alpha plane lines to be fed to the vertical scaler.
  95. int vLumBufSize; ///< Number of vertical luma/alpha lines allocated in the ring buffer.
  96. int vChrBufSize; ///< Number of vertical chroma lines allocated in the ring buffer.
  97. int lastInLumBuf; ///< Last scaled horizontal luma/alpha line from source in the ring buffer.
  98. int lastInChrBuf; ///< Last scaled horizontal chroma line from source in the ring buffer.
  99. int lumBufIndex; ///< Index in ring buffer of the last scaled horizontal luma/alpha line from source.
  100. int chrBufIndex; ///< Index in ring buffer of the last scaled horizontal chroma line from source.
  101. //@}
  102. uint8_t *formatConvBuffer;
  103. /**
  104. * @name Horizontal and vertical filters.
  105. * To better understand the following fields, here is a pseudo-code of
  106. * their usage in filtering a horizontal line:
  107. * @code
  108. * for (i = 0; i < width; i++) {
  109. * dst[i] = 0;
  110. * for (j = 0; j < filterSize; j++)
  111. * dst[i] += src[ filterPos[i] + j ] * filter[ filterSize * i + j ];
  112. * dst[i] >>= FRAC_BITS; // The actual implementation is fixed-point.
  113. * }
  114. * @endcode
  115. */
  116. //@{
  117. int16_t *hLumFilter; ///< Array of horizontal filter coefficients for luma/alpha planes.
  118. int16_t *hChrFilter; ///< Array of horizontal filter coefficients for chroma planes.
  119. int16_t *vLumFilter; ///< Array of vertical filter coefficients for luma/alpha planes.
  120. int16_t *vChrFilter; ///< Array of vertical filter coefficients for chroma planes.
  121. int16_t *hLumFilterPos; ///< Array of horizontal filter starting positions for each dst[i] for luma/alpha planes.
  122. int16_t *hChrFilterPos; ///< Array of horizontal filter starting positions for each dst[i] for chroma planes.
  123. int16_t *vLumFilterPos; ///< Array of vertical filter starting positions for each dst[i] for luma/alpha planes.
  124. int16_t *vChrFilterPos; ///< Array of vertical filter starting positions for each dst[i] for chroma planes.
  125. int hLumFilterSize; ///< Horizontal filter size for luma/alpha pixels.
  126. int hChrFilterSize; ///< Horizontal filter size for chroma pixels.
  127. int vLumFilterSize; ///< Vertical filter size for luma/alpha pixels.
  128. int vChrFilterSize; ///< Vertical filter size for chroma pixels.
  129. //@}
  130. int lumMmx2FilterCodeSize; ///< Runtime-generated MMX2 horizontal fast bilinear scaler code size for luma/alpha planes.
  131. int chrMmx2FilterCodeSize; ///< Runtime-generated MMX2 horizontal fast bilinear scaler code size for chroma planes.
  132. uint8_t *lumMmx2FilterCode; ///< Runtime-generated MMX2 horizontal fast bilinear scaler code for luma/alpha planes.
  133. uint8_t *chrMmx2FilterCode; ///< Runtime-generated MMX2 horizontal fast bilinear scaler code for chroma planes.
  134. int canMMX2BeUsed;
  135. int dstY; ///< Last destination vertical line output from last slice.
  136. int flags; ///< Flags passed by the user to select scaler algorithm, optimizations, subsampling, etc...
  137. void * yuvTable; // pointer to the yuv->rgb table start so it can be freed()
  138. uint8_t * table_rV[256];
  139. uint8_t * table_gU[256];
  140. int table_gV[256];
  141. uint8_t * table_bU[256];
  142. //Colorspace stuff
  143. int contrast, brightness, saturation; // for sws_getColorspaceDetails
  144. int srcColorspaceTable[4];
  145. int dstColorspaceTable[4];
  146. int srcRange; ///< 0 = MPG YUV range, 1 = JPG YUV range (source image).
  147. int dstRange; ///< 0 = MPG YUV range, 1 = JPG YUV range (destination image).
  148. int yuv2rgb_y_offset;
  149. int yuv2rgb_y_coeff;
  150. int yuv2rgb_v2r_coeff;
  151. int yuv2rgb_v2g_coeff;
  152. int yuv2rgb_u2g_coeff;
  153. int yuv2rgb_u2b_coeff;
  154. #define RED_DITHER "0*8"
  155. #define GREEN_DITHER "1*8"
  156. #define BLUE_DITHER "2*8"
  157. #define Y_COEFF "3*8"
  158. #define VR_COEFF "4*8"
  159. #define UB_COEFF "5*8"
  160. #define VG_COEFF "6*8"
  161. #define UG_COEFF "7*8"
  162. #define Y_OFFSET "8*8"
  163. #define U_OFFSET "9*8"
  164. #define V_OFFSET "10*8"
  165. #define LUM_MMX_FILTER_OFFSET "11*8"
  166. #define CHR_MMX_FILTER_OFFSET "11*8+4*4*256"
  167. #define DSTW_OFFSET "11*8+4*4*256*2" //do not change, it is hardcoded in the ASM
  168. #define ESP_OFFSET "11*8+4*4*256*2+8"
  169. #define VROUNDER_OFFSET "11*8+4*4*256*2+16"
  170. #define U_TEMP "11*8+4*4*256*2+24"
  171. #define V_TEMP "11*8+4*4*256*2+32"
  172. #define Y_TEMP "11*8+4*4*256*2+40"
  173. #define ALP_MMX_FILTER_OFFSET "11*8+4*4*256*2+48"
  174. #define UV_OFF "11*8+4*4*256*3+48"
  175. #define UV_OFFx2 "11*8+4*4*256*3+56"
  176. DECLARE_ALIGNED(8, uint64_t, redDither);
  177. DECLARE_ALIGNED(8, uint64_t, greenDither);
  178. DECLARE_ALIGNED(8, uint64_t, blueDither);
  179. DECLARE_ALIGNED(8, uint64_t, yCoeff);
  180. DECLARE_ALIGNED(8, uint64_t, vrCoeff);
  181. DECLARE_ALIGNED(8, uint64_t, ubCoeff);
  182. DECLARE_ALIGNED(8, uint64_t, vgCoeff);
  183. DECLARE_ALIGNED(8, uint64_t, ugCoeff);
  184. DECLARE_ALIGNED(8, uint64_t, yOffset);
  185. DECLARE_ALIGNED(8, uint64_t, uOffset);
  186. DECLARE_ALIGNED(8, uint64_t, vOffset);
  187. int32_t lumMmxFilter[4*MAX_FILTER_SIZE];
  188. int32_t chrMmxFilter[4*MAX_FILTER_SIZE];
  189. int dstW; ///< Width of destination luma/alpha planes.
  190. DECLARE_ALIGNED(8, uint64_t, esp);
  191. DECLARE_ALIGNED(8, uint64_t, vRounder);
  192. DECLARE_ALIGNED(8, uint64_t, u_temp);
  193. DECLARE_ALIGNED(8, uint64_t, v_temp);
  194. DECLARE_ALIGNED(8, uint64_t, y_temp);
  195. int32_t alpMmxFilter[4*MAX_FILTER_SIZE];
  196. DECLARE_ALIGNED(8, ptrdiff_t, uv_off); ///< offset (in pixels) between u and v planes
  197. DECLARE_ALIGNED(8, ptrdiff_t, uv_offx2); ///< offset (in bytes) between u and v planes
  198. #if HAVE_ALTIVEC
  199. vector signed short CY;
  200. vector signed short CRV;
  201. vector signed short CBU;
  202. vector signed short CGU;
  203. vector signed short CGV;
  204. vector signed short OY;
  205. vector unsigned short CSHIFT;
  206. vector signed short *vYCoeffsBank, *vCCoeffsBank;
  207. #endif
  208. #if ARCH_BFIN
  209. DECLARE_ALIGNED(4, uint32_t, oy);
  210. DECLARE_ALIGNED(4, uint32_t, oc);
  211. DECLARE_ALIGNED(4, uint32_t, zero);
  212. DECLARE_ALIGNED(4, uint32_t, cy);
  213. DECLARE_ALIGNED(4, uint32_t, crv);
  214. DECLARE_ALIGNED(4, uint32_t, rmask);
  215. DECLARE_ALIGNED(4, uint32_t, cbu);
  216. DECLARE_ALIGNED(4, uint32_t, bmask);
  217. DECLARE_ALIGNED(4, uint32_t, cgu);
  218. DECLARE_ALIGNED(4, uint32_t, cgv);
  219. DECLARE_ALIGNED(4, uint32_t, gmask);
  220. #endif
  221. #if HAVE_VIS
  222. DECLARE_ALIGNED(8, uint64_t, sparc_coeffs)[10];
  223. #endif
  224. /* function pointers for swScale() */
  225. void (*yuv2nv12X )(struct SwsContext *c,
  226. const int16_t *lumFilter, const int16_t **lumSrc, int lumFilterSize,
  227. const int16_t *chrFilter, const int16_t **chrUSrc,
  228. const int16_t **chrVSrc, int chrFilterSize,
  229. uint8_t *dest, uint8_t *uDest,
  230. int dstW, int chrDstW, int dstFormat);
  231. void (*yuv2yuv1 )(struct SwsContext *c,
  232. const int16_t *lumSrc, const int16_t *chrUSrc,
  233. const int16_t *chrVSrc, const int16_t *alpSrc,
  234. uint8_t *dest,
  235. uint8_t *uDest, uint8_t *vDest, uint8_t *aDest,
  236. int dstW, int chrDstW);
  237. void (*yuv2yuvX )(struct SwsContext *c,
  238. const int16_t *lumFilter, const int16_t **lumSrc, int lumFilterSize,
  239. const int16_t *chrFilter, const int16_t **chrUSrc,
  240. const int16_t **chrVSrc, int chrFilterSize,
  241. const int16_t **alpSrc,
  242. uint8_t *dest,
  243. uint8_t *uDest, uint8_t *vDest, uint8_t *aDest,
  244. int dstW, int chrDstW);
  245. void (*yuv2packed1)(struct SwsContext *c,
  246. const uint16_t *buf0,
  247. const uint16_t *ubuf0, const uint16_t *ubuf1,
  248. const uint16_t *vbuf0, const uint16_t *vbuf1,
  249. const uint16_t *abuf0,
  250. uint8_t *dest,
  251. int dstW, int uvalpha, int dstFormat, int flags, int y);
  252. void (*yuv2packed2)(struct SwsContext *c,
  253. const uint16_t *buf0, const uint16_t *buf1,
  254. const uint16_t *ubuf0, const uint16_t *ubuf1,
  255. const uint16_t *vbuf0, const uint16_t *vbuf1,
  256. const uint16_t *abuf0, const uint16_t *abuf1,
  257. uint8_t *dest,
  258. int dstW, int yalpha, int uvalpha, int y);
  259. void (*yuv2packedX)(struct SwsContext *c,
  260. const int16_t *lumFilter, const int16_t **lumSrc, int lumFilterSize,
  261. const int16_t *chrFilter, const int16_t **chrUSrc,
  262. const int16_t **chrVSrc, int chrFilterSize,
  263. const int16_t **alpSrc, uint8_t *dest,
  264. int dstW, int dstY);
  265. void (*lumToYV12)(uint8_t *dst, const uint8_t *src,
  266. int width, uint32_t *pal); ///< Unscaled conversion of luma plane to YV12 for horizontal scaler.
  267. void (*alpToYV12)(uint8_t *dst, const uint8_t *src,
  268. int width, uint32_t *pal); ///< Unscaled conversion of alpha plane to YV12 for horizontal scaler.
  269. void (*chrToYV12)(uint8_t *dstU, uint8_t *dstV,
  270. const uint8_t *src1, const uint8_t *src2,
  271. int width, uint32_t *pal); ///< Unscaled conversion of chroma planes to YV12 for horizontal scaler.
  272. void (*hyscale_fast)(struct SwsContext *c,
  273. int16_t *dst, int dstWidth,
  274. const uint8_t *src, int srcW, int xInc);
  275. void (*hcscale_fast)(struct SwsContext *c,
  276. int16_t *dst1, int16_t *dst2, int dstWidth,
  277. const uint8_t *src1, const uint8_t *src2,
  278. int srcW, int xInc);
  279. void (*hScale)(int16_t *dst, int dstW, const uint8_t *src, int srcW,
  280. int xInc, const int16_t *filter, const int16_t *filterPos,
  281. int filterSize);
  282. void (*lumConvertRange)(uint16_t *dst, int width); ///< Color range conversion function for luma plane if needed.
  283. void (*chrConvertRange)(uint16_t *dst1, uint16_t *dst2, int width); ///< Color range conversion function for chroma planes if needed.
  284. int lumSrcOffset; ///< Offset given to luma src pointers passed to horizontal input functions.
  285. int chrSrcOffset; ///< Offset given to chroma src pointers passed to horizontal input functions.
  286. int alpSrcOffset; ///< Offset given to alpha src pointers passed to horizontal input functions.
  287. int needs_hcscale; ///< Set if there are chroma planes to be converted.
  288. } SwsContext;
  289. //FIXME check init (where 0)
  290. SwsFunc ff_yuv2rgb_get_func_ptr(SwsContext *c);
  291. int ff_yuv2rgb_c_init_tables(SwsContext *c, const int inv_table[4],
  292. int fullRange, int brightness,
  293. int contrast, int saturation);
  294. void ff_yuv2rgb_init_tables_altivec(SwsContext *c, const int inv_table[4],
  295. int brightness, int contrast, int saturation);
  296. void updateMMXDitherTables(SwsContext *c, int dstY, int lumBufIndex, int chrBufIndex,
  297. int lastInLumBuf, int lastInChrBuf);
  298. SwsFunc ff_yuv2rgb_init_mmx(SwsContext *c);
  299. SwsFunc ff_yuv2rgb_init_vis(SwsContext *c);
  300. SwsFunc ff_yuv2rgb_init_mlib(SwsContext *c);
  301. SwsFunc ff_yuv2rgb_init_altivec(SwsContext *c);
  302. SwsFunc ff_yuv2rgb_get_func_ptr_bfin(SwsContext *c);
  303. void ff_bfin_get_unscaled_swscale(SwsContext *c);
  304. const char *sws_format_name(enum PixelFormat format);
  305. //FIXME replace this with something faster
  306. #define is16BPS(x) ( \
  307. (x)==PIX_FMT_GRAY16BE \
  308. || (x)==PIX_FMT_GRAY16LE \
  309. || (x)==PIX_FMT_BGR48BE \
  310. || (x)==PIX_FMT_BGR48LE \
  311. || (x)==PIX_FMT_RGB48BE \
  312. || (x)==PIX_FMT_RGB48LE \
  313. || (x)==PIX_FMT_YUV420P16LE \
  314. || (x)==PIX_FMT_YUV422P16LE \
  315. || (x)==PIX_FMT_YUV444P16LE \
  316. || (x)==PIX_FMT_YUV420P16BE \
  317. || (x)==PIX_FMT_YUV422P16BE \
  318. || (x)==PIX_FMT_YUV444P16BE \
  319. )
  320. #define is9_OR_10BPS(x) ( \
  321. (x)==PIX_FMT_YUV420P9LE \
  322. || (x)==PIX_FMT_YUV420P9BE \
  323. || (x)==PIX_FMT_YUV420P10LE \
  324. || (x)==PIX_FMT_YUV420P10BE \
  325. )
  326. #define isBE(x) ((x)&1)
  327. #define isPlanar8YUV(x) ( \
  328. (x)==PIX_FMT_YUV410P \
  329. || (x)==PIX_FMT_YUV420P \
  330. || (x)==PIX_FMT_YUVA420P \
  331. || (x)==PIX_FMT_YUV411P \
  332. || (x)==PIX_FMT_YUV422P \
  333. || (x)==PIX_FMT_YUV444P \
  334. || (x)==PIX_FMT_YUV440P \
  335. || (x)==PIX_FMT_NV12 \
  336. || (x)==PIX_FMT_NV21 \
  337. )
  338. #define isPlanarYUV(x) ( \
  339. isPlanar8YUV(x) \
  340. || (x)==PIX_FMT_YUV420P9LE \
  341. || (x)==PIX_FMT_YUV420P10LE \
  342. || (x)==PIX_FMT_YUV420P16LE \
  343. || (x)==PIX_FMT_YUV422P16LE \
  344. || (x)==PIX_FMT_YUV444P16LE \
  345. || (x)==PIX_FMT_YUV420P9BE \
  346. || (x)==PIX_FMT_YUV420P10BE \
  347. || (x)==PIX_FMT_YUV420P16BE \
  348. || (x)==PIX_FMT_YUV422P16BE \
  349. || (x)==PIX_FMT_YUV444P16BE \
  350. )
  351. #define isYUV(x) ( \
  352. (x)==PIX_FMT_UYVY422 \
  353. || (x)==PIX_FMT_YUYV422 \
  354. || isPlanarYUV(x) \
  355. )
  356. #define isGray(x) ( \
  357. (x)==PIX_FMT_GRAY8 \
  358. || (x)==PIX_FMT_Y400A \
  359. || (x)==PIX_FMT_GRAY16BE \
  360. || (x)==PIX_FMT_GRAY16LE \
  361. )
  362. #define isGray16(x) ( \
  363. (x)==PIX_FMT_GRAY16BE \
  364. || (x)==PIX_FMT_GRAY16LE \
  365. )
  366. #define isRGBinInt(x) ( \
  367. (x)==PIX_FMT_RGB48BE \
  368. || (x)==PIX_FMT_RGB48LE \
  369. || (x)==PIX_FMT_RGB32 \
  370. || (x)==PIX_FMT_RGB32_1 \
  371. || (x)==PIX_FMT_RGB24 \
  372. || (x)==PIX_FMT_RGB565BE \
  373. || (x)==PIX_FMT_RGB565LE \
  374. || (x)==PIX_FMT_RGB555BE \
  375. || (x)==PIX_FMT_RGB555LE \
  376. || (x)==PIX_FMT_RGB444BE \
  377. || (x)==PIX_FMT_RGB444LE \
  378. || (x)==PIX_FMT_RGB8 \
  379. || (x)==PIX_FMT_RGB4 \
  380. || (x)==PIX_FMT_RGB4_BYTE \
  381. || (x)==PIX_FMT_MONOBLACK \
  382. || (x)==PIX_FMT_MONOWHITE \
  383. )
  384. #define isBGRinInt(x) ( \
  385. (x)==PIX_FMT_BGR48BE \
  386. || (x)==PIX_FMT_BGR48LE \
  387. || (x)==PIX_FMT_BGR32 \
  388. || (x)==PIX_FMT_BGR32_1 \
  389. || (x)==PIX_FMT_BGR24 \
  390. || (x)==PIX_FMT_BGR565BE \
  391. || (x)==PIX_FMT_BGR565LE \
  392. || (x)==PIX_FMT_BGR555BE \
  393. || (x)==PIX_FMT_BGR555LE \
  394. || (x)==PIX_FMT_BGR444BE \
  395. || (x)==PIX_FMT_BGR444LE \
  396. || (x)==PIX_FMT_BGR8 \
  397. || (x)==PIX_FMT_BGR4 \
  398. || (x)==PIX_FMT_BGR4_BYTE \
  399. || (x)==PIX_FMT_MONOBLACK \
  400. || (x)==PIX_FMT_MONOWHITE \
  401. )
  402. #define isRGBinBytes(x) ( \
  403. (x)==PIX_FMT_RGB48BE \
  404. || (x)==PIX_FMT_RGB48LE \
  405. || (x)==PIX_FMT_RGBA \
  406. || (x)==PIX_FMT_ARGB \
  407. || (x)==PIX_FMT_RGB24 \
  408. )
  409. #define isBGRinBytes(x) ( \
  410. (x)==PIX_FMT_BGR48BE \
  411. || (x)==PIX_FMT_BGR48LE \
  412. || (x)==PIX_FMT_BGRA \
  413. || (x)==PIX_FMT_ABGR \
  414. || (x)==PIX_FMT_BGR24 \
  415. )
  416. #define isAnyRGB(x) ( \
  417. isRGBinInt(x) \
  418. || isBGRinInt(x) \
  419. )
  420. #define isALPHA(x) ( \
  421. (x)==PIX_FMT_BGR32 \
  422. || (x)==PIX_FMT_BGR32_1 \
  423. || (x)==PIX_FMT_RGB32 \
  424. || (x)==PIX_FMT_RGB32_1 \
  425. || (x)==PIX_FMT_Y400A \
  426. || (x)==PIX_FMT_YUVA420P \
  427. )
  428. #define usePal(x) ((av_pix_fmt_descriptors[x].flags & PIX_FMT_PAL) || (x) == PIX_FMT_Y400A)
  429. extern const uint64_t ff_dither4[2];
  430. extern const uint64_t ff_dither8[2];
  431. extern const AVClass sws_context_class;
  432. /**
  433. * Sets c->swScale to an unscaled converter if one exists for the specific
  434. * source and destination formats, bit depths, flags, etc.
  435. */
  436. void ff_get_unscaled_swscale(SwsContext *c);
  437. void ff_swscale_get_unscaled_altivec(SwsContext *c);
  438. /**
  439. * Returns function pointer to fastest main scaler path function depending
  440. * on architecture and available optimizations.
  441. */
  442. SwsFunc ff_getSwsFunc(SwsContext *c);
  443. void ff_sws_init_swScale_altivec(SwsContext *c);
  444. void ff_sws_init_swScale_mmx(SwsContext *c);
  445. #endif /* SWSCALE_SWSCALE_INTERNAL_H */