You can not select more than 25 topics Topics must start with a letter or number, can include dashes ('-') and can be up to 35 characters long.

610 lines
22KB

  1. /*
  2. * DSP utils
  3. * Copyright (c) 2000, 2001, 2002 Fabrice Bellard.
  4. * Copyright (c) 2002-2004 Michael Niedermayer <michaelni@gmx.at>
  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 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., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  19. */
  20. /**
  21. * @file dsputil.h
  22. * DSP utils.
  23. * note, many functions in here may use MMX which trashes the FPU state, it is
  24. * absolutely necessary to call emms_c() between dsp & float/double code
  25. */
  26. #ifndef DSPUTIL_H
  27. #define DSPUTIL_H
  28. #include "common.h"
  29. #include "avcodec.h"
  30. //#define DEBUG
  31. /* dct code */
  32. typedef short DCTELEM;
  33. void fdct_ifast (DCTELEM *data);
  34. void fdct_ifast248 (DCTELEM *data);
  35. void ff_jpeg_fdct_islow (DCTELEM *data);
  36. void ff_fdct248_islow (DCTELEM *data);
  37. void j_rev_dct (DCTELEM *data);
  38. void j_rev_dct4 (DCTELEM *data);
  39. void j_rev_dct2 (DCTELEM *data);
  40. void j_rev_dct1 (DCTELEM *data);
  41. void ff_fdct_mmx(DCTELEM *block);
  42. void ff_fdct_mmx2(DCTELEM *block);
  43. void ff_fdct_sse2(DCTELEM *block);
  44. void ff_h264_idct8_add_c(uint8_t *dst, DCTELEM *block, int stride);
  45. void ff_h264_idct_add_c(uint8_t *dst, DCTELEM *block, int stride);
  46. void ff_h264_lowres_idct_add_c(uint8_t *dst, int stride, DCTELEM *block);
  47. void ff_h264_lowres_idct_put_c(uint8_t *dst, int stride, DCTELEM *block);
  48. /* encoding scans */
  49. extern const uint8_t ff_alternate_horizontal_scan[64];
  50. extern const uint8_t ff_alternate_vertical_scan[64];
  51. extern const uint8_t ff_zigzag_direct[64];
  52. extern const uint8_t ff_zigzag248_direct[64];
  53. /* pixel operations */
  54. #define MAX_NEG_CROP 1024
  55. /* temporary */
  56. extern uint32_t squareTbl[512];
  57. extern uint8_t cropTbl[256 + 2 * MAX_NEG_CROP];
  58. /* VP3 DSP functions */
  59. void ff_vp3_idct_c(DCTELEM *block/* align 16*/);
  60. void ff_vp3_idct_put_c(uint8_t *dest/*align 8*/, int line_size, DCTELEM *block/*align 16*/);
  61. void ff_vp3_idct_add_c(uint8_t *dest/*align 8*/, int line_size, DCTELEM *block/*align 16*/);
  62. /* minimum alignment rules ;)
  63. if u notice errors in the align stuff, need more alignment for some asm code for some cpu
  64. or need to use a function with less aligned data then send a mail to the ffmpeg-dev list, ...
  65. !warning these alignments might not match reallity, (missing attribute((align)) stuff somewhere possible)
  66. i (michael) didnt check them, these are just the alignents which i think could be reached easily ...
  67. !future video codecs might need functions with less strict alignment
  68. */
  69. /*
  70. void get_pixels_c(DCTELEM *block, const uint8_t *pixels, int line_size);
  71. void diff_pixels_c(DCTELEM *block, const uint8_t *s1, const uint8_t *s2, int stride);
  72. void put_pixels_clamped_c(const DCTELEM *block, uint8_t *pixels, int line_size);
  73. void add_pixels_clamped_c(const DCTELEM *block, uint8_t *pixels, int line_size);
  74. void clear_blocks_c(DCTELEM *blocks);
  75. */
  76. /* add and put pixel (decoding) */
  77. // blocksizes for op_pixels_func are 8x4,8x8 16x8 16x16
  78. //h for op_pixels_func is limited to {width/2, width} but never larger than 16 and never smaller then 4
  79. typedef void (*op_pixels_func)(uint8_t *block/*align width (8 or 16)*/, const uint8_t *pixels/*align 1*/, int line_size, int h);
  80. typedef void (*tpel_mc_func)(uint8_t *block/*align width (8 or 16)*/, const uint8_t *pixels/*align 1*/, int line_size, int w, int h);
  81. typedef void (*qpel_mc_func)(uint8_t *dst/*align width (8 or 16)*/, uint8_t *src/*align 1*/, int stride);
  82. typedef void (*h264_chroma_mc_func)(uint8_t *dst/*align 8*/, uint8_t *src/*align 1*/, int srcStride, int h, int x, int y);
  83. typedef void (*h264_weight_func)(uint8_t *block, int stride, int log2_denom, int weight, int offset);
  84. typedef void (*h264_biweight_func)(uint8_t *dst, uint8_t *src, int stride, int log2_denom, int weightd, int weights, int offset);
  85. #define DEF_OLD_QPEL(name)\
  86. void ff_put_ ## name (uint8_t *dst/*align width (8 or 16)*/, uint8_t *src/*align 1*/, int stride);\
  87. void ff_put_no_rnd_ ## name (uint8_t *dst/*align width (8 or 16)*/, uint8_t *src/*align 1*/, int stride);\
  88. void ff_avg_ ## name (uint8_t *dst/*align width (8 or 16)*/, uint8_t *src/*align 1*/, int stride);
  89. DEF_OLD_QPEL(qpel16_mc11_old_c)
  90. DEF_OLD_QPEL(qpel16_mc31_old_c)
  91. DEF_OLD_QPEL(qpel16_mc12_old_c)
  92. DEF_OLD_QPEL(qpel16_mc32_old_c)
  93. DEF_OLD_QPEL(qpel16_mc13_old_c)
  94. DEF_OLD_QPEL(qpel16_mc33_old_c)
  95. DEF_OLD_QPEL(qpel8_mc11_old_c)
  96. DEF_OLD_QPEL(qpel8_mc31_old_c)
  97. DEF_OLD_QPEL(qpel8_mc12_old_c)
  98. DEF_OLD_QPEL(qpel8_mc32_old_c)
  99. DEF_OLD_QPEL(qpel8_mc13_old_c)
  100. DEF_OLD_QPEL(qpel8_mc33_old_c)
  101. #define CALL_2X_PIXELS(a, b, n)\
  102. static void a(uint8_t *block, const uint8_t *pixels, int line_size, int h){\
  103. b(block , pixels , line_size, h);\
  104. b(block+n, pixels+n, line_size, h);\
  105. }
  106. /* motion estimation */
  107. // h is limited to {width/2, width, 2*width} but never larger than 16 and never smaller then 2
  108. // allthough currently h<4 is not used as functions with width <8 are not used and neither implemented
  109. typedef int (*me_cmp_func)(void /*MpegEncContext*/ *s, uint8_t *blk1/*align width (8 or 16)*/, uint8_t *blk2/*align 1*/, int line_size, int h)/* __attribute__ ((const))*/;
  110. /**
  111. * DSPContext.
  112. */
  113. typedef struct DSPContext {
  114. /* pixel ops : interface with DCT */
  115. void (*get_pixels)(DCTELEM *block/*align 16*/, const uint8_t *pixels/*align 8*/, int line_size);
  116. void (*diff_pixels)(DCTELEM *block/*align 16*/, const uint8_t *s1/*align 8*/, const uint8_t *s2/*align 8*/, int stride);
  117. void (*put_pixels_clamped)(const DCTELEM *block/*align 16*/, uint8_t *pixels/*align 8*/, int line_size);
  118. void (*put_signed_pixels_clamped)(const DCTELEM *block/*align 16*/, uint8_t *pixels/*align 8*/, int line_size);
  119. void (*add_pixels_clamped)(const DCTELEM *block/*align 16*/, uint8_t *pixels/*align 8*/, int line_size);
  120. void (*add_pixels8)(uint8_t *pixels, DCTELEM *block, int line_size);
  121. void (*add_pixels4)(uint8_t *pixels, DCTELEM *block, int line_size);
  122. /**
  123. * translational global motion compensation.
  124. */
  125. void (*gmc1)(uint8_t *dst/*align 8*/, uint8_t *src/*align 1*/, int srcStride, int h, int x16, int y16, int rounder);
  126. /**
  127. * global motion compensation.
  128. */
  129. void (*gmc )(uint8_t *dst/*align 8*/, uint8_t *src/*align 1*/, int stride, int h, int ox, int oy,
  130. int dxx, int dxy, int dyx, int dyy, int shift, int r, int width, int height);
  131. void (*clear_blocks)(DCTELEM *blocks/*align 16*/);
  132. int (*pix_sum)(uint8_t * pix, int line_size);
  133. int (*pix_norm1)(uint8_t * pix, int line_size);
  134. // 16x16 8x8 4x4 2x2 16x8 8x4 4x2 8x16 4x8 2x4
  135. me_cmp_func sad[5]; /* identical to pix_absAxA except additional void * */
  136. me_cmp_func sse[5];
  137. me_cmp_func hadamard8_diff[5];
  138. me_cmp_func dct_sad[5];
  139. me_cmp_func quant_psnr[5];
  140. me_cmp_func bit[5];
  141. me_cmp_func rd[5];
  142. me_cmp_func vsad[5];
  143. me_cmp_func vsse[5];
  144. me_cmp_func nsse[5];
  145. me_cmp_func w53[5];
  146. me_cmp_func w97[5];
  147. me_cmp_func dct_max[5];
  148. me_cmp_func dct264_sad[5];
  149. me_cmp_func me_pre_cmp[5];
  150. me_cmp_func me_cmp[5];
  151. me_cmp_func me_sub_cmp[5];
  152. me_cmp_func mb_cmp[5];
  153. me_cmp_func ildct_cmp[5]; //only width 16 used
  154. me_cmp_func frame_skip_cmp[5]; //only width 8 used
  155. /**
  156. * Halfpel motion compensation with rounding (a+b+1)>>1.
  157. * this is an array[4][4] of motion compensation funcions for 4
  158. * horizontal blocksizes (8,16) and the 4 halfpel positions<br>
  159. * *pixels_tab[ 0->16xH 1->8xH ][ xhalfpel + 2*yhalfpel ]
  160. * @param block destination where the result is stored
  161. * @param pixels source
  162. * @param line_size number of bytes in a horizontal line of block
  163. * @param h height
  164. */
  165. op_pixels_func put_pixels_tab[4][4];
  166. /**
  167. * Halfpel motion compensation with rounding (a+b+1)>>1.
  168. * This is an array[4][4] of motion compensation functions for 4
  169. * horizontal blocksizes (8,16) and the 4 halfpel positions<br>
  170. * *pixels_tab[ 0->16xH 1->8xH ][ xhalfpel + 2*yhalfpel ]
  171. * @param block destination into which the result is averaged (a+b+1)>>1
  172. * @param pixels source
  173. * @param line_size number of bytes in a horizontal line of block
  174. * @param h height
  175. */
  176. op_pixels_func avg_pixels_tab[4][4];
  177. /**
  178. * Halfpel motion compensation with no rounding (a+b)>>1.
  179. * this is an array[2][4] of motion compensation funcions for 2
  180. * horizontal blocksizes (8,16) and the 4 halfpel positions<br>
  181. * *pixels_tab[ 0->16xH 1->8xH ][ xhalfpel + 2*yhalfpel ]
  182. * @param block destination where the result is stored
  183. * @param pixels source
  184. * @param line_size number of bytes in a horizontal line of block
  185. * @param h height
  186. */
  187. op_pixels_func put_no_rnd_pixels_tab[4][4];
  188. /**
  189. * Halfpel motion compensation with no rounding (a+b)>>1.
  190. * this is an array[2][4] of motion compensation funcions for 2
  191. * horizontal blocksizes (8,16) and the 4 halfpel positions<br>
  192. * *pixels_tab[ 0->16xH 1->8xH ][ xhalfpel + 2*yhalfpel ]
  193. * @param block destination into which the result is averaged (a+b)>>1
  194. * @param pixels source
  195. * @param line_size number of bytes in a horizontal line of block
  196. * @param h height
  197. */
  198. op_pixels_func avg_no_rnd_pixels_tab[4][4];
  199. void (*put_no_rnd_pixels_l2[2])(uint8_t *block/*align width (8 or 16)*/, const uint8_t *a/*align 1*/, const uint8_t *b/*align 1*/, int line_size, int h);
  200. /**
  201. * Thirdpel motion compensation with rounding (a+b+1)>>1.
  202. * this is an array[12] of motion compensation funcions for the 9 thirdpel positions<br>
  203. * *pixels_tab[ xthirdpel + 4*ythirdpel ]
  204. * @param block destination where the result is stored
  205. * @param pixels source
  206. * @param line_size number of bytes in a horizontal line of block
  207. * @param h height
  208. */
  209. tpel_mc_func put_tpel_pixels_tab[11]; //FIXME individual func ptr per width?
  210. tpel_mc_func avg_tpel_pixels_tab[11]; //FIXME individual func ptr per width?
  211. qpel_mc_func put_qpel_pixels_tab[2][16];
  212. qpel_mc_func avg_qpel_pixels_tab[2][16];
  213. qpel_mc_func put_no_rnd_qpel_pixels_tab[2][16];
  214. qpel_mc_func avg_no_rnd_qpel_pixels_tab[2][16];
  215. qpel_mc_func put_mspel_pixels_tab[8];
  216. /**
  217. * h264 Chram MC
  218. */
  219. h264_chroma_mc_func put_h264_chroma_pixels_tab[3];
  220. h264_chroma_mc_func avg_h264_chroma_pixels_tab[3];
  221. qpel_mc_func put_h264_qpel_pixels_tab[4][16];
  222. qpel_mc_func avg_h264_qpel_pixels_tab[4][16];
  223. h264_weight_func weight_h264_pixels_tab[10];
  224. h264_biweight_func biweight_h264_pixels_tab[10];
  225. me_cmp_func pix_abs[2][4];
  226. /* huffyuv specific */
  227. void (*add_bytes)(uint8_t *dst/*align 16*/, uint8_t *src/*align 16*/, int w);
  228. void (*diff_bytes)(uint8_t *dst/*align 16*/, uint8_t *src1/*align 16*/, uint8_t *src2/*align 1*/,int w);
  229. /**
  230. * subtract huffyuv's variant of median prediction
  231. * note, this might read from src1[-1], src2[-1]
  232. */
  233. void (*sub_hfyu_median_prediction)(uint8_t *dst, uint8_t *src1, uint8_t *src2, int w, int *left, int *left_top);
  234. void (*bswap_buf)(uint32_t *dst, uint32_t *src, int w);
  235. void (*h264_v_loop_filter_luma)(uint8_t *pix, int stride, int alpha, int beta, int8_t *tc0);
  236. void (*h264_h_loop_filter_luma)(uint8_t *pix, int stride, int alpha, int beta, int8_t *tc0);
  237. void (*h264_v_loop_filter_chroma)(uint8_t *pix, int stride, int alpha, int beta, int8_t *tc0);
  238. void (*h264_h_loop_filter_chroma)(uint8_t *pix, int stride, int alpha, int beta, int8_t *tc0);
  239. void (*h264_v_loop_filter_chroma_intra)(uint8_t *pix, int stride, int alpha, int beta);
  240. void (*h264_h_loop_filter_chroma_intra)(uint8_t *pix, int stride, int alpha, int beta);
  241. void (*h263_v_loop_filter)(uint8_t *src, int stride, int qscale);
  242. void (*h263_h_loop_filter)(uint8_t *src, int stride, int qscale);
  243. void (*h261_loop_filter)(uint8_t *src, int stride);
  244. /* (I)DCT */
  245. void (*fdct)(DCTELEM *block/* align 16*/);
  246. void (*fdct248)(DCTELEM *block/* align 16*/);
  247. /* IDCT really*/
  248. void (*idct)(DCTELEM *block/* align 16*/);
  249. /**
  250. * block -> idct -> clip to unsigned 8 bit -> dest.
  251. * (-1392, 0, 0, ...) -> idct -> (-174, -174, ...) -> put -> (0, 0, ...)
  252. * @param line_size size in bytes of a horizotal line of dest
  253. */
  254. void (*idct_put)(uint8_t *dest/*align 8*/, int line_size, DCTELEM *block/*align 16*/);
  255. /**
  256. * block -> idct -> add dest -> clip to unsigned 8 bit -> dest.
  257. * @param line_size size in bytes of a horizotal line of dest
  258. */
  259. void (*idct_add)(uint8_t *dest/*align 8*/, int line_size, DCTELEM *block/*align 16*/);
  260. /**
  261. * idct input permutation.
  262. * several optimized IDCTs need a permutated input (relative to the normal order of the reference
  263. * IDCT)
  264. * this permutation must be performed before the idct_put/add, note, normally this can be merged
  265. * with the zigzag/alternate scan<br>
  266. * an example to avoid confusion:
  267. * - (->decode coeffs -> zigzag reorder -> dequant -> reference idct ->...)
  268. * - (x -> referece dct -> reference idct -> x)
  269. * - (x -> referece dct -> simple_mmx_perm = idct_permutation -> simple_idct_mmx -> x)
  270. * - (->decode coeffs -> zigzag reorder -> simple_mmx_perm -> dequant -> simple_idct_mmx ->...)
  271. */
  272. uint8_t idct_permutation[64];
  273. int idct_permutation_type;
  274. #define FF_NO_IDCT_PERM 1
  275. #define FF_LIBMPEG2_IDCT_PERM 2
  276. #define FF_SIMPLE_IDCT_PERM 3
  277. #define FF_TRANSPOSE_IDCT_PERM 4
  278. #define FF_PARTTRANS_IDCT_PERM 5
  279. int (*try_8x8basis)(int16_t rem[64], int16_t weight[64], int16_t basis[64], int scale);
  280. void (*add_8x8basis)(int16_t rem[64], int16_t basis[64], int scale);
  281. #define BASIS_SHIFT 16
  282. #define RECON_SHIFT 6
  283. void (*h264_idct_add)(uint8_t *dst, DCTELEM *block, int stride);
  284. void (*h264_idct8_add)(uint8_t *dst, DCTELEM *block, int stride);
  285. } DSPContext;
  286. void dsputil_static_init(void);
  287. void dsputil_init(DSPContext* p, AVCodecContext *avctx);
  288. /**
  289. * permute block according to permuatation.
  290. * @param last last non zero element in scantable order
  291. */
  292. void ff_block_permute(DCTELEM *block, uint8_t *permutation, const uint8_t *scantable, int last);
  293. void ff_set_cmp(DSPContext* c, me_cmp_func *cmp, int type);
  294. #define BYTE_VEC32(c) ((c)*0x01010101UL)
  295. static inline uint32_t rnd_avg32(uint32_t a, uint32_t b)
  296. {
  297. return (a | b) - (((a ^ b) & ~BYTE_VEC32(0x01)) >> 1);
  298. }
  299. static inline uint32_t no_rnd_avg32(uint32_t a, uint32_t b)
  300. {
  301. return (a & b) + (((a ^ b) & ~BYTE_VEC32(0x01)) >> 1);
  302. }
  303. static inline int get_penalty_factor(int lambda, int lambda2, int type){
  304. switch(type&0xFF){
  305. default:
  306. case FF_CMP_SAD:
  307. return lambda>>FF_LAMBDA_SHIFT;
  308. case FF_CMP_DCT:
  309. return (3*lambda)>>(FF_LAMBDA_SHIFT+1);
  310. case FF_CMP_W53:
  311. return (4*lambda)>>(FF_LAMBDA_SHIFT);
  312. case FF_CMP_W97:
  313. return (2*lambda)>>(FF_LAMBDA_SHIFT);
  314. case FF_CMP_SATD:
  315. case FF_CMP_DCT264:
  316. return (2*lambda)>>FF_LAMBDA_SHIFT;
  317. case FF_CMP_RD:
  318. case FF_CMP_PSNR:
  319. case FF_CMP_SSE:
  320. case FF_CMP_NSSE:
  321. return lambda2>>FF_LAMBDA_SHIFT;
  322. case FF_CMP_BIT:
  323. return 1;
  324. }
  325. }
  326. /**
  327. * Empty mmx state.
  328. * this must be called between any dsp function and float/double code.
  329. * for example sin(); dsp->idct_put(); emms_c(); cos()
  330. */
  331. #define emms_c()
  332. /* should be defined by architectures supporting
  333. one or more MultiMedia extension */
  334. int mm_support(void);
  335. #ifdef __GNUC__
  336. #define DECLARE_ALIGNED_16(t,v) t v __attribute__ ((aligned (16)))
  337. #else
  338. #define DECLARE_ALIGNED_16(t,v) __declspec(align(16)) t v
  339. #endif
  340. #if defined(HAVE_MMX)
  341. #undef emms_c
  342. #define MM_MMX 0x0001 /* standard MMX */
  343. #define MM_3DNOW 0x0004 /* AMD 3DNOW */
  344. #define MM_MMXEXT 0x0002 /* SSE integer functions or AMD MMX ext */
  345. #define MM_SSE 0x0008 /* SSE functions */
  346. #define MM_SSE2 0x0010 /* PIV SSE2 functions */
  347. #define MM_3DNOWEXT 0x0020 /* AMD 3DNowExt */
  348. extern int mm_flags;
  349. void add_pixels_clamped_mmx(const DCTELEM *block, uint8_t *pixels, int line_size);
  350. void put_pixels_clamped_mmx(const DCTELEM *block, uint8_t *pixels, int line_size);
  351. void put_signed_pixels_clamped_mmx(const DCTELEM *block, uint8_t *pixels, int line_size);
  352. static inline void emms(void)
  353. {
  354. __asm __volatile ("emms;":::"memory");
  355. }
  356. #define emms_c() \
  357. {\
  358. if (mm_flags & MM_MMX)\
  359. emms();\
  360. }
  361. #ifdef __GNUC__
  362. #define DECLARE_ALIGNED_8(t,v) t v __attribute__ ((aligned (8)))
  363. #else
  364. #define DECLARE_ALIGNED_8(t,v) __declspec(align(8)) t v
  365. #endif
  366. #define STRIDE_ALIGN 8
  367. void dsputil_init_mmx(DSPContext* c, AVCodecContext *avctx);
  368. void dsputil_init_pix_mmx(DSPContext* c, AVCodecContext *avctx);
  369. #elif defined(ARCH_ARMV4L)
  370. /* This is to use 4 bytes read to the IDCT pointers for some 'zero'
  371. line optimizations */
  372. #define DECLARE_ALIGNED_8(t,v) t v __attribute__ ((aligned (4)))
  373. #define STRIDE_ALIGN 4
  374. #define MM_IWMMXT 0x0100 /* XScale IWMMXT */
  375. extern int mm_flags;
  376. void dsputil_init_armv4l(DSPContext* c, AVCodecContext *avctx);
  377. #elif defined(HAVE_MLIB)
  378. /* SPARC/VIS IDCT needs 8-byte aligned DCT blocks */
  379. #define DECLARE_ALIGNED_8(t,v) t v __attribute__ ((aligned (8)))
  380. #define STRIDE_ALIGN 8
  381. void dsputil_init_mlib(DSPContext* c, AVCodecContext *avctx);
  382. #elif defined(ARCH_SPARC)
  383. /* SPARC/VIS IDCT needs 8-byte aligned DCT blocks */
  384. #define DECLARE_ALIGNED_8(t,v) t v __attribute__ ((aligned (8)))
  385. #define STRIDE_ALIGN 8
  386. void dsputil_init_vis(DSPContext* c, AVCodecContext *avctx);
  387. #elif defined(ARCH_ALPHA)
  388. #define DECLARE_ALIGNED_8(t,v) t v __attribute__ ((aligned (8)))
  389. #define STRIDE_ALIGN 8
  390. void dsputil_init_alpha(DSPContext* c, AVCodecContext *avctx);
  391. #elif defined(ARCH_POWERPC)
  392. #define MM_ALTIVEC 0x0001 /* standard AltiVec */
  393. extern int mm_flags;
  394. #if defined(HAVE_ALTIVEC) && !defined(CONFIG_DARWIN)
  395. #define pixel altivec_pixel
  396. #include <altivec.h>
  397. #undef pixel
  398. #endif
  399. #define DECLARE_ALIGNED_8(t,v) t v __attribute__ ((aligned (16)))
  400. #define STRIDE_ALIGN 16
  401. void dsputil_init_ppc(DSPContext* c, AVCodecContext *avctx);
  402. #elif defined(HAVE_MMI)
  403. #define DECLARE_ALIGNED_8(t,v) t v __attribute__ ((aligned (16)))
  404. #define STRIDE_ALIGN 16
  405. void dsputil_init_mmi(DSPContext* c, AVCodecContext *avctx);
  406. #elif defined(ARCH_SH4)
  407. #define DECLARE_ALIGNED_8(t,v) t v __attribute__ ((aligned (8)))
  408. #define STRIDE_ALIGN 8
  409. void dsputil_init_sh4(DSPContext* c, AVCodecContext *avctx);
  410. #else
  411. #define DECLARE_ALIGNED_8(t,v) t v __attribute__ ((aligned (8)))
  412. #define STRIDE_ALIGN 8
  413. #endif
  414. #ifdef __GNUC__
  415. struct unaligned_64 { uint64_t l; } __attribute__((packed));
  416. struct unaligned_32 { uint32_t l; } __attribute__((packed));
  417. struct unaligned_16 { uint16_t l; } __attribute__((packed));
  418. #define LD16(a) (((const struct unaligned_16 *) (a))->l)
  419. #define LD32(a) (((const struct unaligned_32 *) (a))->l)
  420. #define LD64(a) (((const struct unaligned_64 *) (a))->l)
  421. #define ST16(a, b) (((struct unaligned_16 *) (a))->l) = (b)
  422. #define ST32(a, b) (((struct unaligned_32 *) (a))->l) = (b)
  423. #else /* __GNUC__ */
  424. #define LD16(a) (*((uint16_t*)(a)))
  425. #define LD32(a) (*((uint32_t*)(a)))
  426. #define LD64(a) (*((uint64_t*)(a)))
  427. #define ST32(a, b) *((uint32_t*)(a)) = (b)
  428. #endif /* !__GNUC__ */
  429. /* PSNR */
  430. void get_psnr(uint8_t *orig_image[3], uint8_t *coded_image[3],
  431. int orig_linesize[3], int coded_linesize,
  432. AVCodecContext *avctx);
  433. /* FFT computation */
  434. /* NOTE: soon integer code will be added, so you must use the
  435. FFTSample type */
  436. typedef float FFTSample;
  437. typedef struct FFTComplex {
  438. FFTSample re, im;
  439. } FFTComplex;
  440. typedef struct FFTContext {
  441. int nbits;
  442. int inverse;
  443. uint16_t *revtab;
  444. FFTComplex *exptab;
  445. FFTComplex *exptab1; /* only used by SSE code */
  446. void (*fft_calc)(struct FFTContext *s, FFTComplex *z);
  447. } FFTContext;
  448. int ff_fft_init(FFTContext *s, int nbits, int inverse);
  449. void ff_fft_permute(FFTContext *s, FFTComplex *z);
  450. void ff_fft_calc_c(FFTContext *s, FFTComplex *z);
  451. void ff_fft_calc_sse(FFTContext *s, FFTComplex *z);
  452. void ff_fft_calc_altivec(FFTContext *s, FFTComplex *z);
  453. static inline void ff_fft_calc(FFTContext *s, FFTComplex *z)
  454. {
  455. s->fft_calc(s, z);
  456. }
  457. void ff_fft_end(FFTContext *s);
  458. /* MDCT computation */
  459. typedef struct MDCTContext {
  460. int n; /* size of MDCT (i.e. number of input data * 2) */
  461. int nbits; /* n = 2^nbits */
  462. /* pre/post rotation tables */
  463. FFTSample *tcos;
  464. FFTSample *tsin;
  465. FFTContext fft;
  466. } MDCTContext;
  467. int ff_mdct_init(MDCTContext *s, int nbits, int inverse);
  468. void ff_imdct_calc(MDCTContext *s, FFTSample *output,
  469. const FFTSample *input, FFTSample *tmp);
  470. void ff_mdct_calc(MDCTContext *s, FFTSample *out,
  471. const FFTSample *input, FFTSample *tmp);
  472. void ff_mdct_end(MDCTContext *s);
  473. #define WARPER8_16(name8, name16)\
  474. static int name16(void /*MpegEncContext*/ *s, uint8_t *dst, uint8_t *src, int stride, int h){\
  475. return name8(s, dst , src , stride, h)\
  476. +name8(s, dst+8 , src+8 , stride, h);\
  477. }
  478. #define WARPER8_16_SQ(name8, name16)\
  479. static int name16(void /*MpegEncContext*/ *s, uint8_t *dst, uint8_t *src, int stride, int h){\
  480. int score=0;\
  481. score +=name8(s, dst , src , stride, 8);\
  482. score +=name8(s, dst+8 , src+8 , stride, 8);\
  483. if(h==16){\
  484. dst += 8*stride;\
  485. src += 8*stride;\
  486. score +=name8(s, dst , src , stride, 8);\
  487. score +=name8(s, dst+8 , src+8 , stride, 8);\
  488. }\
  489. return score;\
  490. }
  491. #endif