postprocess_altivec_template.c 54 KB

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  1. /*
  2. * AltiVec optimizations (C) 2004 Romain Dolbeau <romain@dolbeau.org>
  3. *
  4. * based on code by Copyright (C) 2001-2003 Michael Niedermayer (michaelni@gmx.at)
  5. *
  6. * This file is part of FFmpeg.
  7. *
  8. * FFmpeg is free software; you can redistribute it and/or modify
  9. * it under the terms of the GNU General Public License as published by
  10. * the Free Software Foundation; either version 2 of the License, or
  11. * (at your option) any later version.
  12. *
  13. * FFmpeg is distributed in the hope that it will be useful,
  14. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  15. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  16. * GNU General Public License for more details.
  17. *
  18. * You should have received a copy of the GNU General Public License
  19. * along with FFmpeg; if not, write to the Free Software
  20. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  21. */
  22. #include "libavutil/avutil.h"
  23. #define ALTIVEC_TRANSPOSE_8x8_SHORT(src_a,src_b,src_c,src_d,src_e,src_f,src_g,src_h) \
  24. do { \
  25. __typeof__(src_a) tempA1, tempB1, tempC1, tempD1; \
  26. __typeof__(src_a) tempE1, tempF1, tempG1, tempH1; \
  27. __typeof__(src_a) tempA2, tempB2, tempC2, tempD2; \
  28. __typeof__(src_a) tempE2, tempF2, tempG2, tempH2; \
  29. tempA1 = vec_mergeh (src_a, src_e); \
  30. tempB1 = vec_mergel (src_a, src_e); \
  31. tempC1 = vec_mergeh (src_b, src_f); \
  32. tempD1 = vec_mergel (src_b, src_f); \
  33. tempE1 = vec_mergeh (src_c, src_g); \
  34. tempF1 = vec_mergel (src_c, src_g); \
  35. tempG1 = vec_mergeh (src_d, src_h); \
  36. tempH1 = vec_mergel (src_d, src_h); \
  37. tempA2 = vec_mergeh (tempA1, tempE1); \
  38. tempB2 = vec_mergel (tempA1, tempE1); \
  39. tempC2 = vec_mergeh (tempB1, tempF1); \
  40. tempD2 = vec_mergel (tempB1, tempF1); \
  41. tempE2 = vec_mergeh (tempC1, tempG1); \
  42. tempF2 = vec_mergel (tempC1, tempG1); \
  43. tempG2 = vec_mergeh (tempD1, tempH1); \
  44. tempH2 = vec_mergel (tempD1, tempH1); \
  45. src_a = vec_mergeh (tempA2, tempE2); \
  46. src_b = vec_mergel (tempA2, tempE2); \
  47. src_c = vec_mergeh (tempB2, tempF2); \
  48. src_d = vec_mergel (tempB2, tempF2); \
  49. src_e = vec_mergeh (tempC2, tempG2); \
  50. src_f = vec_mergel (tempC2, tempG2); \
  51. src_g = vec_mergeh (tempD2, tempH2); \
  52. src_h = vec_mergel (tempD2, tempH2); \
  53. } while (0)
  54. static inline int vertClassify_altivec(uint8_t src[], int stride, PPContext *c) {
  55. /*
  56. this code makes no assumption on src or stride.
  57. One could remove the recomputation of the perm
  58. vector by assuming (stride % 16) == 0, unfortunately
  59. this is not always true.
  60. */
  61. short data_0 = ((c->nonBQP*c->ppMode.baseDcDiff)>>8) + 1;
  62. DECLARE_ALIGNED(16, short, data)[8] =
  63. {
  64. data_0,
  65. data_0 * 2 + 1,
  66. c->QP * 2,
  67. c->QP * 4
  68. };
  69. int numEq;
  70. uint8_t *src2 = src;
  71. vector signed short v_dcOffset;
  72. vector signed short v2QP;
  73. vector unsigned short v4QP;
  74. vector unsigned short v_dcThreshold;
  75. const int properStride = (stride % 16);
  76. const int srcAlign = ((unsigned long)src2 % 16);
  77. const int two_vectors = ((srcAlign > 8) || properStride) ? 1 : 0;
  78. const vector signed int zero = vec_splat_s32(0);
  79. const vector signed short mask = vec_splat_s16(1);
  80. vector signed int v_numEq = vec_splat_s32(0);
  81. vector signed short v_data = vec_ld(0, data);
  82. vector signed short v_srcAss0, v_srcAss1, v_srcAss2, v_srcAss3,
  83. v_srcAss4, v_srcAss5, v_srcAss6, v_srcAss7;
  84. //FIXME avoid this mess if possible
  85. register int j0 = 0,
  86. j1 = stride,
  87. j2 = 2 * stride,
  88. j3 = 3 * stride,
  89. j4 = 4 * stride,
  90. j5 = 5 * stride,
  91. j6 = 6 * stride,
  92. j7 = 7 * stride;
  93. vector unsigned char v_srcA0, v_srcA1, v_srcA2, v_srcA3,
  94. v_srcA4, v_srcA5, v_srcA6, v_srcA7;
  95. v_dcOffset = vec_splat(v_data, 0);
  96. v_dcThreshold = (vector unsigned short)vec_splat(v_data, 1);
  97. v2QP = vec_splat(v_data, 2);
  98. v4QP = (vector unsigned short)vec_splat(v_data, 3);
  99. src2 += stride * 4;
  100. #define LOAD_LINE(i) \
  101. { \
  102. vector unsigned char perm##i = vec_lvsl(j##i, src2); \
  103. vector unsigned char v_srcA2##i; \
  104. vector unsigned char v_srcA1##i = vec_ld(j##i, src2); \
  105. if (two_vectors) \
  106. v_srcA2##i = vec_ld(j##i + 16, src2); \
  107. v_srcA##i = \
  108. vec_perm(v_srcA1##i, v_srcA2##i, perm##i); \
  109. v_srcAss##i = \
  110. (vector signed short)vec_mergeh((vector signed char)zero, \
  111. (vector signed char)v_srcA##i); }
  112. #define LOAD_LINE_ALIGNED(i) \
  113. v_srcA##i = vec_ld(j##i, src2); \
  114. v_srcAss##i = \
  115. (vector signed short)vec_mergeh((vector signed char)zero, \
  116. (vector signed char)v_srcA##i)
  117. /* Special-casing the aligned case is worthwhile, as all calls from
  118. * the (transposed) horizontable deblocks will be aligned, in addition
  119. * to the naturally aligned vertical deblocks. */
  120. if (properStride && srcAlign) {
  121. LOAD_LINE_ALIGNED(0);
  122. LOAD_LINE_ALIGNED(1);
  123. LOAD_LINE_ALIGNED(2);
  124. LOAD_LINE_ALIGNED(3);
  125. LOAD_LINE_ALIGNED(4);
  126. LOAD_LINE_ALIGNED(5);
  127. LOAD_LINE_ALIGNED(6);
  128. LOAD_LINE_ALIGNED(7);
  129. } else {
  130. LOAD_LINE(0);
  131. LOAD_LINE(1);
  132. LOAD_LINE(2);
  133. LOAD_LINE(3);
  134. LOAD_LINE(4);
  135. LOAD_LINE(5);
  136. LOAD_LINE(6);
  137. LOAD_LINE(7);
  138. }
  139. #undef LOAD_LINE
  140. #undef LOAD_LINE_ALIGNED
  141. #define ITER(i, j) \
  142. const vector signed short v_diff##i = \
  143. vec_sub(v_srcAss##i, v_srcAss##j); \
  144. const vector signed short v_sum##i = \
  145. vec_add(v_diff##i, v_dcOffset); \
  146. const vector signed short v_comp##i = \
  147. (vector signed short)vec_cmplt((vector unsigned short)v_sum##i, \
  148. v_dcThreshold); \
  149. const vector signed short v_part##i = vec_and(mask, v_comp##i);
  150. {
  151. ITER(0, 1)
  152. ITER(1, 2)
  153. ITER(2, 3)
  154. ITER(3, 4)
  155. ITER(4, 5)
  156. ITER(5, 6)
  157. ITER(6, 7)
  158. v_numEq = vec_sum4s(v_part0, v_numEq);
  159. v_numEq = vec_sum4s(v_part1, v_numEq);
  160. v_numEq = vec_sum4s(v_part2, v_numEq);
  161. v_numEq = vec_sum4s(v_part3, v_numEq);
  162. v_numEq = vec_sum4s(v_part4, v_numEq);
  163. v_numEq = vec_sum4s(v_part5, v_numEq);
  164. v_numEq = vec_sum4s(v_part6, v_numEq);
  165. }
  166. #undef ITER
  167. v_numEq = vec_sums(v_numEq, zero);
  168. v_numEq = vec_splat(v_numEq, 3);
  169. vec_ste(v_numEq, 0, &numEq);
  170. if (numEq > c->ppMode.flatnessThreshold){
  171. const vector unsigned char mmoP1 = (const vector unsigned char)
  172. {0x1f, 0x1f, 0x1f, 0x1f, 0x1f, 0x1f, 0x1f, 0x1f,
  173. 0x00, 0x01, 0x12, 0x13, 0x08, 0x09, 0x1A, 0x1B};
  174. const vector unsigned char mmoP2 = (const vector unsigned char)
  175. {0x04, 0x05, 0x16, 0x17, 0x0C, 0x0D, 0x1E, 0x1F,
  176. 0x1f, 0x1f, 0x1f, 0x1f, 0x1f, 0x1f, 0x1f, 0x1f};
  177. const vector unsigned char mmoP = (const vector unsigned char)
  178. vec_lvsl(8, (unsigned char*)0);
  179. vector signed short mmoL1 = vec_perm(v_srcAss0, v_srcAss2, mmoP1);
  180. vector signed short mmoL2 = vec_perm(v_srcAss4, v_srcAss6, mmoP2);
  181. vector signed short mmoL = vec_perm(mmoL1, mmoL2, mmoP);
  182. vector signed short mmoR1 = vec_perm(v_srcAss5, v_srcAss7, mmoP1);
  183. vector signed short mmoR2 = vec_perm(v_srcAss1, v_srcAss3, mmoP2);
  184. vector signed short mmoR = vec_perm(mmoR1, mmoR2, mmoP);
  185. vector signed short mmoDiff = vec_sub(mmoL, mmoR);
  186. vector unsigned short mmoSum = (vector unsigned short)vec_add(mmoDiff, v2QP);
  187. if (vec_any_gt(mmoSum, v4QP))
  188. return 0;
  189. else
  190. return 1;
  191. }
  192. else return 2;
  193. }
  194. static inline void doVertLowPass_altivec(uint8_t *src, int stride, PPContext *c) {
  195. /*
  196. this code makes no assumption on src or stride.
  197. One could remove the recomputation of the perm
  198. vector by assuming (stride % 16) == 0, unfortunately
  199. this is not always true. Quite a lot of load/stores
  200. can be removed by assuming proper alignment of
  201. src & stride :-(
  202. */
  203. uint8_t *src2 = src;
  204. const vector signed int zero = vec_splat_s32(0);
  205. const int properStride = (stride % 16);
  206. const int srcAlign = ((unsigned long)src2 % 16);
  207. DECLARE_ALIGNED(16, short, qp)[8] = {c->QP};
  208. vector signed short vqp = vec_ld(0, qp);
  209. vector signed short vb0, vb1, vb2, vb3, vb4, vb5, vb6, vb7, vb8, vb9;
  210. vector unsigned char vbA0, av_uninit(vbA1), av_uninit(vbA2), av_uninit(vbA3), av_uninit(vbA4), av_uninit(vbA5), av_uninit(vbA6), av_uninit(vbA7), av_uninit(vbA8), vbA9;
  211. vector unsigned char vbB0, av_uninit(vbB1), av_uninit(vbB2), av_uninit(vbB3), av_uninit(vbB4), av_uninit(vbB5), av_uninit(vbB6), av_uninit(vbB7), av_uninit(vbB8), vbB9;
  212. vector unsigned char vbT0, vbT1, vbT2, vbT3, vbT4, vbT5, vbT6, vbT7, vbT8, vbT9;
  213. vector unsigned char perml0, perml1, perml2, perml3, perml4,
  214. perml5, perml6, perml7, perml8, perml9;
  215. register int j0 = 0,
  216. j1 = stride,
  217. j2 = 2 * stride,
  218. j3 = 3 * stride,
  219. j4 = 4 * stride,
  220. j5 = 5 * stride,
  221. j6 = 6 * stride,
  222. j7 = 7 * stride,
  223. j8 = 8 * stride,
  224. j9 = 9 * stride;
  225. vqp = vec_splat(vqp, 0);
  226. src2 += stride*3;
  227. #define LOAD_LINE(i) \
  228. perml##i = vec_lvsl(i * stride, src2); \
  229. vbA##i = vec_ld(i * stride, src2); \
  230. vbB##i = vec_ld(i * stride + 16, src2); \
  231. vbT##i = vec_perm(vbA##i, vbB##i, perml##i); \
  232. vb##i = \
  233. (vector signed short)vec_mergeh((vector unsigned char)zero, \
  234. (vector unsigned char)vbT##i)
  235. #define LOAD_LINE_ALIGNED(i) \
  236. vbT##i = vec_ld(j##i, src2); \
  237. vb##i = \
  238. (vector signed short)vec_mergeh((vector signed char)zero, \
  239. (vector signed char)vbT##i)
  240. /* Special-casing the aligned case is worthwhile, as all calls from
  241. * the (transposed) horizontable deblocks will be aligned, in addition
  242. * to the naturally aligned vertical deblocks. */
  243. if (properStride && srcAlign) {
  244. LOAD_LINE_ALIGNED(0);
  245. LOAD_LINE_ALIGNED(1);
  246. LOAD_LINE_ALIGNED(2);
  247. LOAD_LINE_ALIGNED(3);
  248. LOAD_LINE_ALIGNED(4);
  249. LOAD_LINE_ALIGNED(5);
  250. LOAD_LINE_ALIGNED(6);
  251. LOAD_LINE_ALIGNED(7);
  252. LOAD_LINE_ALIGNED(8);
  253. LOAD_LINE_ALIGNED(9);
  254. } else {
  255. LOAD_LINE(0);
  256. LOAD_LINE(1);
  257. LOAD_LINE(2);
  258. LOAD_LINE(3);
  259. LOAD_LINE(4);
  260. LOAD_LINE(5);
  261. LOAD_LINE(6);
  262. LOAD_LINE(7);
  263. LOAD_LINE(8);
  264. LOAD_LINE(9);
  265. }
  266. #undef LOAD_LINE
  267. #undef LOAD_LINE_ALIGNED
  268. {
  269. const vector unsigned short v_2 = vec_splat_u16(2);
  270. const vector unsigned short v_4 = vec_splat_u16(4);
  271. const vector signed short v_diff01 = vec_sub(vb0, vb1);
  272. const vector unsigned short v_cmp01 =
  273. (const vector unsigned short) vec_cmplt(vec_abs(v_diff01), vqp);
  274. const vector signed short v_first = vec_sel(vb1, vb0, v_cmp01);
  275. const vector signed short v_diff89 = vec_sub(vb8, vb9);
  276. const vector unsigned short v_cmp89 =
  277. (const vector unsigned short) vec_cmplt(vec_abs(v_diff89), vqp);
  278. const vector signed short v_last = vec_sel(vb8, vb9, v_cmp89);
  279. const vector signed short temp01 = vec_mladd(v_first, (vector signed short)v_4, vb1);
  280. const vector signed short temp02 = vec_add(vb2, vb3);
  281. const vector signed short temp03 = vec_add(temp01, (vector signed short)v_4);
  282. const vector signed short v_sumsB0 = vec_add(temp02, temp03);
  283. const vector signed short temp11 = vec_sub(v_sumsB0, v_first);
  284. const vector signed short v_sumsB1 = vec_add(temp11, vb4);
  285. const vector signed short temp21 = vec_sub(v_sumsB1, v_first);
  286. const vector signed short v_sumsB2 = vec_add(temp21, vb5);
  287. const vector signed short temp31 = vec_sub(v_sumsB2, v_first);
  288. const vector signed short v_sumsB3 = vec_add(temp31, vb6);
  289. const vector signed short temp41 = vec_sub(v_sumsB3, v_first);
  290. const vector signed short v_sumsB4 = vec_add(temp41, vb7);
  291. const vector signed short temp51 = vec_sub(v_sumsB4, vb1);
  292. const vector signed short v_sumsB5 = vec_add(temp51, vb8);
  293. const vector signed short temp61 = vec_sub(v_sumsB5, vb2);
  294. const vector signed short v_sumsB6 = vec_add(temp61, v_last);
  295. const vector signed short temp71 = vec_sub(v_sumsB6, vb3);
  296. const vector signed short v_sumsB7 = vec_add(temp71, v_last);
  297. const vector signed short temp81 = vec_sub(v_sumsB7, vb4);
  298. const vector signed short v_sumsB8 = vec_add(temp81, v_last);
  299. const vector signed short temp91 = vec_sub(v_sumsB8, vb5);
  300. const vector signed short v_sumsB9 = vec_add(temp91, v_last);
  301. #define COMPUTE_VR(i, j, k) \
  302. const vector signed short temps1##i = \
  303. vec_add(v_sumsB##i, v_sumsB##k); \
  304. const vector signed short temps2##i = \
  305. vec_mladd(vb##j, (vector signed short)v_2, temps1##i); \
  306. const vector signed short vr##j = vec_sra(temps2##i, v_4)
  307. COMPUTE_VR(0, 1, 2);
  308. COMPUTE_VR(1, 2, 3);
  309. COMPUTE_VR(2, 3, 4);
  310. COMPUTE_VR(3, 4, 5);
  311. COMPUTE_VR(4, 5, 6);
  312. COMPUTE_VR(5, 6, 7);
  313. COMPUTE_VR(6, 7, 8);
  314. COMPUTE_VR(7, 8, 9);
  315. const vector signed char neg1 = vec_splat_s8(-1);
  316. const vector unsigned char permHH = (const vector unsigned char){0x00, 0x01, 0x02, 0x03, 0x04, 0x05, 0x06, 0x07,
  317. 0x18, 0x19, 0x1A, 0x1B, 0x1C, 0x1D, 0x1E, 0x1F};
  318. #define PACK_AND_STORE(i) \
  319. { const vector unsigned char perms##i = \
  320. vec_lvsr(i * stride, src2); \
  321. const vector unsigned char vf##i = \
  322. vec_packsu(vr##i, (vector signed short)zero); \
  323. const vector unsigned char vg##i = \
  324. vec_perm(vf##i, vbT##i, permHH); \
  325. const vector unsigned char mask##i = \
  326. vec_perm((vector unsigned char)zero, (vector unsigned char)neg1, perms##i); \
  327. const vector unsigned char vg2##i = \
  328. vec_perm(vg##i, vg##i, perms##i); \
  329. const vector unsigned char svA##i = \
  330. vec_sel(vbA##i, vg2##i, mask##i); \
  331. const vector unsigned char svB##i = \
  332. vec_sel(vg2##i, vbB##i, mask##i); \
  333. vec_st(svA##i, i * stride, src2); \
  334. vec_st(svB##i, i * stride + 16, src2);}
  335. #define PACK_AND_STORE_ALIGNED(i) \
  336. { const vector unsigned char vf##i = \
  337. vec_packsu(vr##i, (vector signed short)zero); \
  338. const vector unsigned char vg##i = \
  339. vec_perm(vf##i, vbT##i, permHH); \
  340. vec_st(vg##i, i * stride, src2);}
  341. /* Special-casing the aligned case is worthwhile, as all calls from
  342. * the (transposed) horizontable deblocks will be aligned, in addition
  343. * to the naturally aligned vertical deblocks. */
  344. if (properStride && srcAlign) {
  345. PACK_AND_STORE_ALIGNED(1)
  346. PACK_AND_STORE_ALIGNED(2)
  347. PACK_AND_STORE_ALIGNED(3)
  348. PACK_AND_STORE_ALIGNED(4)
  349. PACK_AND_STORE_ALIGNED(5)
  350. PACK_AND_STORE_ALIGNED(6)
  351. PACK_AND_STORE_ALIGNED(7)
  352. PACK_AND_STORE_ALIGNED(8)
  353. } else {
  354. PACK_AND_STORE(1)
  355. PACK_AND_STORE(2)
  356. PACK_AND_STORE(3)
  357. PACK_AND_STORE(4)
  358. PACK_AND_STORE(5)
  359. PACK_AND_STORE(6)
  360. PACK_AND_STORE(7)
  361. PACK_AND_STORE(8)
  362. }
  363. #undef PACK_AND_STORE
  364. #undef PACK_AND_STORE_ALIGNED
  365. }
  366. }
  367. static inline void doVertDefFilter_altivec(uint8_t src[], int stride, PPContext *c) {
  368. /*
  369. this code makes no assumption on src or stride.
  370. One could remove the recomputation of the perm
  371. vector by assuming (stride % 16) == 0, unfortunately
  372. this is not always true. Quite a lot of load/stores
  373. can be removed by assuming proper alignment of
  374. src & stride :-(
  375. */
  376. uint8_t *src2 = src + stride*3;
  377. const vector signed int zero = vec_splat_s32(0);
  378. DECLARE_ALIGNED(16, short, qp)[8] = {8*c->QP};
  379. vector signed short vqp = vec_splat(
  380. (vector signed short)vec_ld(0, qp), 0);
  381. #define LOAD_LINE(i) \
  382. const vector unsigned char perm##i = \
  383. vec_lvsl(i * stride, src2); \
  384. const vector unsigned char vbA##i = \
  385. vec_ld(i * stride, src2); \
  386. const vector unsigned char vbB##i = \
  387. vec_ld(i * stride + 16, src2); \
  388. const vector unsigned char vbT##i = \
  389. vec_perm(vbA##i, vbB##i, perm##i); \
  390. const vector signed short vb##i = \
  391. (vector signed short)vec_mergeh((vector unsigned char)zero, \
  392. (vector unsigned char)vbT##i)
  393. LOAD_LINE(1);
  394. LOAD_LINE(2);
  395. LOAD_LINE(3);
  396. LOAD_LINE(4);
  397. LOAD_LINE(5);
  398. LOAD_LINE(6);
  399. LOAD_LINE(7);
  400. LOAD_LINE(8);
  401. #undef LOAD_LINE
  402. const vector signed short v_1 = vec_splat_s16(1);
  403. const vector signed short v_2 = vec_splat_s16(2);
  404. const vector signed short v_5 = vec_splat_s16(5);
  405. const vector signed short v_32 = vec_sl(v_1,
  406. (vector unsigned short)v_5);
  407. /* middle energy */
  408. const vector signed short l3minusl6 = vec_sub(vb3, vb6);
  409. const vector signed short l5minusl4 = vec_sub(vb5, vb4);
  410. const vector signed short twotimes_l3minusl6 = vec_mladd(v_2, l3minusl6, (vector signed short)zero);
  411. const vector signed short mE = vec_mladd(v_5, l5minusl4, twotimes_l3minusl6);
  412. const vector signed short absmE = vec_abs(mE);
  413. /* left & right energy */
  414. const vector signed short l1minusl4 = vec_sub(vb1, vb4);
  415. const vector signed short l3minusl2 = vec_sub(vb3, vb2);
  416. const vector signed short l5minusl8 = vec_sub(vb5, vb8);
  417. const vector signed short l7minusl6 = vec_sub(vb7, vb6);
  418. const vector signed short twotimes_l1minusl4 = vec_mladd(v_2, l1minusl4, (vector signed short)zero);
  419. const vector signed short twotimes_l5minusl8 = vec_mladd(v_2, l5minusl8, (vector signed short)zero);
  420. const vector signed short lE = vec_mladd(v_5, l3minusl2, twotimes_l1minusl4);
  421. const vector signed short rE = vec_mladd(v_5, l7minusl6, twotimes_l5minusl8);
  422. /* d */
  423. const vector signed short ddiff = vec_sub(absmE,
  424. vec_min(vec_abs(lE),
  425. vec_abs(rE)));
  426. const vector signed short ddiffclamp = vec_max(ddiff, (vector signed short)zero);
  427. const vector signed short dtimes64 = vec_mladd(v_5, ddiffclamp, v_32);
  428. const vector signed short d = vec_sra(dtimes64, vec_splat_u16(6));
  429. const vector signed short minusd = vec_sub((vector signed short)zero, d);
  430. const vector signed short finald = vec_sel(minusd,
  431. d,
  432. vec_cmpgt(vec_sub((vector signed short)zero, mE),
  433. (vector signed short)zero));
  434. /* q */
  435. const vector signed short qtimes2 = vec_sub(vb4, vb5);
  436. /* for a shift right to behave like /2, we need to add one
  437. to all negative integer */
  438. const vector signed short rounddown = vec_sel((vector signed short)zero,
  439. v_1,
  440. vec_cmplt(qtimes2, (vector signed short)zero));
  441. const vector signed short q = vec_sra(vec_add(qtimes2, rounddown), vec_splat_u16(1));
  442. /* clamp */
  443. const vector signed short dclamp_P1 = vec_max((vector signed short)zero, finald);
  444. const vector signed short dclamp_P = vec_min(dclamp_P1, q);
  445. const vector signed short dclamp_N1 = vec_min((vector signed short)zero, finald);
  446. const vector signed short dclamp_N = vec_max(dclamp_N1, q);
  447. const vector signed short dclampedfinal = vec_sel(dclamp_N,
  448. dclamp_P,
  449. vec_cmpgt(q, (vector signed short)zero));
  450. const vector signed short dornotd = vec_sel((vector signed short)zero,
  451. dclampedfinal,
  452. vec_cmplt(absmE, vqp));
  453. /* add/subtract to l4 and l5 */
  454. const vector signed short vb4minusd = vec_sub(vb4, dornotd);
  455. const vector signed short vb5plusd = vec_add(vb5, dornotd);
  456. /* finally, stores */
  457. const vector unsigned char st4 = vec_packsu(vb4minusd, (vector signed short)zero);
  458. const vector unsigned char st5 = vec_packsu(vb5plusd, (vector signed short)zero);
  459. const vector signed char neg1 = vec_splat_s8(-1);
  460. const vector unsigned char permHH = (const vector unsigned char){0x00, 0x01, 0x02, 0x03, 0x04, 0x05, 0x06, 0x07,
  461. 0x18, 0x19, 0x1A, 0x1B, 0x1C, 0x1D, 0x1E, 0x1F};
  462. #define STORE(i) \
  463. { const vector unsigned char perms##i = \
  464. vec_lvsr(i * stride, src2); \
  465. const vector unsigned char vg##i = \
  466. vec_perm(st##i, vbT##i, permHH); \
  467. const vector unsigned char mask##i = \
  468. vec_perm((vector unsigned char)zero, (vector unsigned char)neg1, perms##i); \
  469. const vector unsigned char vg2##i = \
  470. vec_perm(vg##i, vg##i, perms##i); \
  471. const vector unsigned char svA##i = \
  472. vec_sel(vbA##i, vg2##i, mask##i); \
  473. const vector unsigned char svB##i = \
  474. vec_sel(vg2##i, vbB##i, mask##i); \
  475. vec_st(svA##i, i * stride, src2); \
  476. vec_st(svB##i, i * stride + 16, src2);}
  477. STORE(4)
  478. STORE(5)
  479. }
  480. static inline void dering_altivec(uint8_t src[], int stride, PPContext *c) {
  481. /*
  482. this code makes no assumption on src or stride.
  483. One could remove the recomputation of the perm
  484. vector by assuming (stride % 16) == 0, unfortunately
  485. this is not always true. Quite a lot of load/stores
  486. can be removed by assuming proper alignment of
  487. src & stride :-(
  488. */
  489. uint8_t *srcCopy = src;
  490. DECLARE_ALIGNED(16, uint8_t, dt)[16];
  491. const vector signed int zero = vec_splat_s32(0);
  492. vector unsigned char v_dt;
  493. dt[0] = deringThreshold;
  494. v_dt = vec_splat(vec_ld(0, dt), 0);
  495. #define LOAD_LINE(i) \
  496. const vector unsigned char perm##i = \
  497. vec_lvsl(i * stride, srcCopy); \
  498. vector unsigned char sA##i = vec_ld(i * stride, srcCopy); \
  499. vector unsigned char sB##i = vec_ld(i * stride + 16, srcCopy); \
  500. vector unsigned char src##i = vec_perm(sA##i, sB##i, perm##i)
  501. LOAD_LINE(0);
  502. LOAD_LINE(1);
  503. LOAD_LINE(2);
  504. LOAD_LINE(3);
  505. LOAD_LINE(4);
  506. LOAD_LINE(5);
  507. LOAD_LINE(6);
  508. LOAD_LINE(7);
  509. LOAD_LINE(8);
  510. LOAD_LINE(9);
  511. #undef LOAD_LINE
  512. vector unsigned char v_avg;
  513. {
  514. const vector unsigned char trunc_perm = (vector unsigned char)
  515. {0x01, 0x02, 0x03, 0x04, 0x05, 0x06, 0x07, 0x08,
  516. 0x11, 0x12, 0x13, 0x14, 0x15, 0x16, 0x17, 0x18};
  517. const vector unsigned char trunc_src12 = vec_perm(src1, src2, trunc_perm);
  518. const vector unsigned char trunc_src34 = vec_perm(src3, src4, trunc_perm);
  519. const vector unsigned char trunc_src56 = vec_perm(src5, src6, trunc_perm);
  520. const vector unsigned char trunc_src78 = vec_perm(src7, src8, trunc_perm);
  521. #define EXTRACT(op) do { \
  522. const vector unsigned char s##op##_1 = vec_##op(trunc_src12, trunc_src34); \
  523. const vector unsigned char s##op##_2 = vec_##op(trunc_src56, trunc_src78); \
  524. const vector unsigned char s##op##_6 = vec_##op(s##op##_1, s##op##_2); \
  525. const vector unsigned char s##op##_8h = vec_mergeh(s##op##_6, s##op##_6); \
  526. const vector unsigned char s##op##_8l = vec_mergel(s##op##_6, s##op##_6); \
  527. const vector unsigned char s##op##_9 = vec_##op(s##op##_8h, s##op##_8l); \
  528. const vector unsigned char s##op##_9h = vec_mergeh(s##op##_9, s##op##_9); \
  529. const vector unsigned char s##op##_9l = vec_mergel(s##op##_9, s##op##_9); \
  530. const vector unsigned char s##op##_10 = vec_##op(s##op##_9h, s##op##_9l); \
  531. const vector unsigned char s##op##_10h = vec_mergeh(s##op##_10, s##op##_10); \
  532. const vector unsigned char s##op##_10l = vec_mergel(s##op##_10, s##op##_10); \
  533. const vector unsigned char s##op##_11 = vec_##op(s##op##_10h, s##op##_10l); \
  534. const vector unsigned char s##op##_11h = vec_mergeh(s##op##_11, s##op##_11); \
  535. const vector unsigned char s##op##_11l = vec_mergel(s##op##_11, s##op##_11); \
  536. v_##op = vec_##op(s##op##_11h, s##op##_11l); } while (0)
  537. vector unsigned char v_min;
  538. vector unsigned char v_max;
  539. EXTRACT(min);
  540. EXTRACT(max);
  541. #undef EXTRACT
  542. if (vec_all_lt(vec_sub(v_max, v_min), v_dt))
  543. return;
  544. v_avg = vec_avg(v_min, v_max);
  545. }
  546. DECLARE_ALIGNED(16, signed int, S)[8];
  547. {
  548. const vector unsigned short mask1 = (vector unsigned short)
  549. {0x0001, 0x0002, 0x0004, 0x0008,
  550. 0x0010, 0x0020, 0x0040, 0x0080};
  551. const vector unsigned short mask2 = (vector unsigned short)
  552. {0x0100, 0x0200, 0x0000, 0x0000,
  553. 0x0000, 0x0000, 0x0000, 0x0000};
  554. const vector unsigned int vuint32_16 = vec_sl(vec_splat_u32(1), vec_splat_u32(4));
  555. const vector unsigned int vuint32_1 = vec_splat_u32(1);
  556. #define COMPARE(i) \
  557. vector signed int sum##i; \
  558. do { \
  559. const vector unsigned char cmp##i = \
  560. (vector unsigned char)vec_cmpgt(src##i, v_avg); \
  561. const vector unsigned short cmpHi##i = \
  562. (vector unsigned short)vec_mergeh(cmp##i, cmp##i); \
  563. const vector unsigned short cmpLi##i = \
  564. (vector unsigned short)vec_mergel(cmp##i, cmp##i); \
  565. const vector signed short cmpHf##i = \
  566. (vector signed short)vec_and(cmpHi##i, mask1); \
  567. const vector signed short cmpLf##i = \
  568. (vector signed short)vec_and(cmpLi##i, mask2); \
  569. const vector signed int sump##i = vec_sum4s(cmpHf##i, zero); \
  570. const vector signed int sumq##i = vec_sum4s(cmpLf##i, sump##i); \
  571. sum##i = vec_sums(sumq##i, zero); } while (0)
  572. COMPARE(0);
  573. COMPARE(1);
  574. COMPARE(2);
  575. COMPARE(3);
  576. COMPARE(4);
  577. COMPARE(5);
  578. COMPARE(6);
  579. COMPARE(7);
  580. COMPARE(8);
  581. COMPARE(9);
  582. #undef COMPARE
  583. vector signed int sumA2;
  584. vector signed int sumB2;
  585. {
  586. const vector signed int sump02 = vec_mergel(sum0, sum2);
  587. const vector signed int sump13 = vec_mergel(sum1, sum3);
  588. const vector signed int sumA = vec_mergel(sump02, sump13);
  589. const vector signed int sump46 = vec_mergel(sum4, sum6);
  590. const vector signed int sump57 = vec_mergel(sum5, sum7);
  591. const vector signed int sumB = vec_mergel(sump46, sump57);
  592. const vector signed int sump8A = vec_mergel(sum8, zero);
  593. const vector signed int sump9B = vec_mergel(sum9, zero);
  594. const vector signed int sumC = vec_mergel(sump8A, sump9B);
  595. const vector signed int tA = vec_sl(vec_nor(zero, sumA), vuint32_16);
  596. const vector signed int tB = vec_sl(vec_nor(zero, sumB), vuint32_16);
  597. const vector signed int tC = vec_sl(vec_nor(zero, sumC), vuint32_16);
  598. const vector signed int t2A = vec_or(sumA, tA);
  599. const vector signed int t2B = vec_or(sumB, tB);
  600. const vector signed int t2C = vec_or(sumC, tC);
  601. const vector signed int t3A = vec_and(vec_sra(t2A, vuint32_1),
  602. vec_sl(t2A, vuint32_1));
  603. const vector signed int t3B = vec_and(vec_sra(t2B, vuint32_1),
  604. vec_sl(t2B, vuint32_1));
  605. const vector signed int t3C = vec_and(vec_sra(t2C, vuint32_1),
  606. vec_sl(t2C, vuint32_1));
  607. const vector signed int yA = vec_and(t2A, t3A);
  608. const vector signed int yB = vec_and(t2B, t3B);
  609. const vector signed int yC = vec_and(t2C, t3C);
  610. const vector unsigned char strangeperm1 = vec_lvsl(4, (unsigned char*)0);
  611. const vector unsigned char strangeperm2 = vec_lvsl(8, (unsigned char*)0);
  612. const vector signed int sumAd4 = vec_perm(yA, yB, strangeperm1);
  613. const vector signed int sumAd8 = vec_perm(yA, yB, strangeperm2);
  614. const vector signed int sumBd4 = vec_perm(yB, yC, strangeperm1);
  615. const vector signed int sumBd8 = vec_perm(yB, yC, strangeperm2);
  616. const vector signed int sumAp = vec_and(yA,
  617. vec_and(sumAd4,sumAd8));
  618. const vector signed int sumBp = vec_and(yB,
  619. vec_and(sumBd4,sumBd8));
  620. sumA2 = vec_or(sumAp,
  621. vec_sra(sumAp,
  622. vuint32_16));
  623. sumB2 = vec_or(sumBp,
  624. vec_sra(sumBp,
  625. vuint32_16));
  626. }
  627. vec_st(sumA2, 0, S);
  628. vec_st(sumB2, 16, S);
  629. }
  630. /* I'm not sure the following is actually faster
  631. than straight, unvectorized C code :-( */
  632. DECLARE_ALIGNED(16, int, tQP2)[4];
  633. tQP2[0]= c->QP/2 + 1;
  634. vector signed int vQP2 = vec_ld(0, tQP2);
  635. vQP2 = vec_splat(vQP2, 0);
  636. const vector signed int vsint32_8 = vec_splat_s32(8);
  637. const vector unsigned int vuint32_4 = vec_splat_u32(4);
  638. const vector unsigned char permA1 = (vector unsigned char)
  639. {0x00, 0x01, 0x02, 0x10, 0x11, 0x12, 0x1F, 0x1F,
  640. 0x1F, 0x1F, 0x1F, 0x1F, 0x1F, 0x1F, 0x1F, 0x1F};
  641. const vector unsigned char permA2 = (vector unsigned char)
  642. {0x00, 0x01, 0x02, 0x03, 0x04, 0x05, 0x10, 0x11,
  643. 0x12, 0x1F, 0x1F, 0x1F, 0x1F, 0x1F, 0x1F, 0x1F};
  644. const vector unsigned char permA1inc = (vector unsigned char)
  645. {0x01, 0x01, 0x01, 0x01, 0x01, 0x01, 0x00, 0x00,
  646. 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00};
  647. const vector unsigned char permA2inc = (vector unsigned char)
  648. {0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x01, 0x01,
  649. 0x01, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00};
  650. const vector unsigned char magic = (vector unsigned char)
  651. {0x01, 0x02, 0x01, 0x02, 0x04, 0x02, 0x01, 0x02,
  652. 0x01, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00};
  653. const vector unsigned char extractPerm = (vector unsigned char)
  654. {0x10, 0x10, 0x10, 0x01, 0x10, 0x10, 0x10, 0x01,
  655. 0x10, 0x10, 0x10, 0x01, 0x10, 0x10, 0x10, 0x01};
  656. const vector unsigned char extractPermInc = (vector unsigned char)
  657. {0x00, 0x00, 0x00, 0x01, 0x00, 0x00, 0x00, 0x01,
  658. 0x00, 0x00, 0x00, 0x01, 0x00, 0x00, 0x00, 0x01};
  659. const vector unsigned char identity = vec_lvsl(0,(unsigned char *)0);
  660. const vector unsigned char tenRight = (vector unsigned char)
  661. {0x00, 0x10, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
  662. 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00};
  663. const vector unsigned char eightLeft = (vector unsigned char)
  664. {0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
  665. 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x08};
  666. #define F_INIT(i) \
  667. vector unsigned char tenRightM##i = tenRight; \
  668. vector unsigned char permA1M##i = permA1; \
  669. vector unsigned char permA2M##i = permA2; \
  670. vector unsigned char extractPermM##i = extractPerm
  671. #define F2(i, j, k, l) \
  672. if (S[i] & (1 << (l+1))) { \
  673. const vector unsigned char a_##j##_A##l = \
  674. vec_perm(src##i, src##j, permA1M##i); \
  675. const vector unsigned char a_##j##_B##l = \
  676. vec_perm(a_##j##_A##l, src##k, permA2M##i); \
  677. const vector signed int a_##j##_sump##l = \
  678. (vector signed int)vec_msum(a_##j##_B##l, magic, \
  679. (vector unsigned int)zero); \
  680. vector signed int F_##j##_##l = \
  681. vec_sr(vec_sums(a_##j##_sump##l, vsint32_8), vuint32_4); \
  682. F_##j##_##l = vec_splat(F_##j##_##l, 3); \
  683. const vector signed int p_##j##_##l = \
  684. (vector signed int)vec_perm(src##j, \
  685. (vector unsigned char)zero, \
  686. extractPermM##i); \
  687. const vector signed int sum_##j##_##l = vec_add( p_##j##_##l, vQP2);\
  688. const vector signed int diff_##j##_##l = vec_sub( p_##j##_##l, vQP2);\
  689. vector signed int newpm_##j##_##l; \
  690. if (vec_all_lt(sum_##j##_##l, F_##j##_##l)) \
  691. newpm_##j##_##l = sum_##j##_##l; \
  692. else if (vec_all_gt(diff_##j##_##l, F_##j##_##l)) \
  693. newpm_##j##_##l = diff_##j##_##l; \
  694. else newpm_##j##_##l = F_##j##_##l; \
  695. const vector unsigned char newpm2_##j##_##l = \
  696. vec_splat((vector unsigned char)newpm_##j##_##l, 15); \
  697. const vector unsigned char mask##j##l = vec_add(identity, \
  698. tenRightM##i); \
  699. src##j = vec_perm(src##j, newpm2_##j##_##l, mask##j##l); \
  700. } \
  701. permA1M##i = vec_add(permA1M##i, permA1inc); \
  702. permA2M##i = vec_add(permA2M##i, permA2inc); \
  703. tenRightM##i = vec_sro(tenRightM##i, eightLeft); \
  704. extractPermM##i = vec_add(extractPermM##i, extractPermInc)
  705. #define ITER(i, j, k) \
  706. F_INIT(i); \
  707. F2(i, j, k, 0); \
  708. F2(i, j, k, 1); \
  709. F2(i, j, k, 2); \
  710. F2(i, j, k, 3); \
  711. F2(i, j, k, 4); \
  712. F2(i, j, k, 5); \
  713. F2(i, j, k, 6); \
  714. F2(i, j, k, 7)
  715. ITER(0, 1, 2);
  716. ITER(1, 2, 3);
  717. ITER(2, 3, 4);
  718. ITER(3, 4, 5);
  719. ITER(4, 5, 6);
  720. ITER(5, 6, 7);
  721. ITER(6, 7, 8);
  722. ITER(7, 8, 9);
  723. const vector signed char neg1 = vec_splat_s8(-1);
  724. #define STORE_LINE(i) \
  725. const vector unsigned char permST##i = \
  726. vec_lvsr(i * stride, srcCopy); \
  727. const vector unsigned char maskST##i = \
  728. vec_perm((vector unsigned char)zero, \
  729. (vector unsigned char)neg1, permST##i);\
  730. src##i = vec_perm(src##i ,src##i, permST##i); \
  731. sA##i= vec_sel(sA##i, src##i, maskST##i); \
  732. sB##i= vec_sel(src##i, sB##i, maskST##i); \
  733. vec_st(sA##i, i * stride, srcCopy); \
  734. vec_st(sB##i, i * stride + 16, srcCopy)
  735. STORE_LINE(1);
  736. STORE_LINE(2);
  737. STORE_LINE(3);
  738. STORE_LINE(4);
  739. STORE_LINE(5);
  740. STORE_LINE(6);
  741. STORE_LINE(7);
  742. STORE_LINE(8);
  743. #undef STORE_LINE
  744. #undef ITER
  745. #undef F2
  746. }
  747. #define doHorizLowPass_altivec(a...) doHorizLowPass_C(a)
  748. #define doHorizDefFilter_altivec(a...) doHorizDefFilter_C(a)
  749. #define do_a_deblock_altivec(a...) do_a_deblock_C(a)
  750. static inline void RENAME(tempNoiseReducer)(uint8_t *src, int stride,
  751. uint8_t *tempBlurred, uint32_t *tempBlurredPast, int *maxNoise)
  752. {
  753. const vector signed int zero = vec_splat_s32(0);
  754. const vector signed short vsint16_1 = vec_splat_s16(1);
  755. vector signed int v_dp = zero;
  756. vector signed int v_sysdp = zero;
  757. int d, sysd, i;
  758. tempBlurredPast[127]= maxNoise[0];
  759. tempBlurredPast[128]= maxNoise[1];
  760. tempBlurredPast[129]= maxNoise[2];
  761. #define LOAD_LINE(src, i) \
  762. register int j##src##i = i * stride; \
  763. vector unsigned char perm##src##i = vec_lvsl(j##src##i, src); \
  764. const vector unsigned char v_##src##A1##i = vec_ld(j##src##i, src); \
  765. const vector unsigned char v_##src##A2##i = vec_ld(j##src##i + 16, src); \
  766. const vector unsigned char v_##src##A##i = \
  767. vec_perm(v_##src##A1##i, v_##src##A2##i, perm##src##i); \
  768. vector signed short v_##src##Ass##i = \
  769. (vector signed short)vec_mergeh((vector signed char)zero, \
  770. (vector signed char)v_##src##A##i)
  771. LOAD_LINE(src, 0);
  772. LOAD_LINE(src, 1);
  773. LOAD_LINE(src, 2);
  774. LOAD_LINE(src, 3);
  775. LOAD_LINE(src, 4);
  776. LOAD_LINE(src, 5);
  777. LOAD_LINE(src, 6);
  778. LOAD_LINE(src, 7);
  779. LOAD_LINE(tempBlurred, 0);
  780. LOAD_LINE(tempBlurred, 1);
  781. LOAD_LINE(tempBlurred, 2);
  782. LOAD_LINE(tempBlurred, 3);
  783. LOAD_LINE(tempBlurred, 4);
  784. LOAD_LINE(tempBlurred, 5);
  785. LOAD_LINE(tempBlurred, 6);
  786. LOAD_LINE(tempBlurred, 7);
  787. #undef LOAD_LINE
  788. #define ACCUMULATE_DIFFS(i) \
  789. vector signed short v_d##i = vec_sub(v_tempBlurredAss##i, \
  790. v_srcAss##i); \
  791. v_dp = vec_msums(v_d##i, v_d##i, v_dp); \
  792. v_sysdp = vec_msums(v_d##i, vsint16_1, v_sysdp)
  793. ACCUMULATE_DIFFS(0);
  794. ACCUMULATE_DIFFS(1);
  795. ACCUMULATE_DIFFS(2);
  796. ACCUMULATE_DIFFS(3);
  797. ACCUMULATE_DIFFS(4);
  798. ACCUMULATE_DIFFS(5);
  799. ACCUMULATE_DIFFS(6);
  800. ACCUMULATE_DIFFS(7);
  801. #undef ACCUMULATE_DIFFS
  802. v_dp = vec_sums(v_dp, zero);
  803. v_sysdp = vec_sums(v_sysdp, zero);
  804. v_dp = vec_splat(v_dp, 3);
  805. v_sysdp = vec_splat(v_sysdp, 3);
  806. vec_ste(v_dp, 0, &d);
  807. vec_ste(v_sysdp, 0, &sysd);
  808. i = d;
  809. d = (4*d
  810. +(*(tempBlurredPast-256))
  811. +(*(tempBlurredPast-1))+ (*(tempBlurredPast+1))
  812. +(*(tempBlurredPast+256))
  813. +4)>>3;
  814. *tempBlurredPast=i;
  815. if (d > maxNoise[1]) {
  816. if (d < maxNoise[2]) {
  817. #define OP(i) v_tempBlurredAss##i = vec_avg(v_tempBlurredAss##i, v_srcAss##i);
  818. OP(0);
  819. OP(1);
  820. OP(2);
  821. OP(3);
  822. OP(4);
  823. OP(5);
  824. OP(6);
  825. OP(7);
  826. #undef OP
  827. } else {
  828. #define OP(i) v_tempBlurredAss##i = v_srcAss##i;
  829. OP(0);
  830. OP(1);
  831. OP(2);
  832. OP(3);
  833. OP(4);
  834. OP(5);
  835. OP(6);
  836. OP(7);
  837. #undef OP
  838. }
  839. } else {
  840. if (d < maxNoise[0]) {
  841. const vector signed short vsint16_7 = vec_splat_s16(7);
  842. const vector signed short vsint16_4 = vec_splat_s16(4);
  843. const vector unsigned short vuint16_3 = vec_splat_u16(3);
  844. #define OP(i) \
  845. const vector signed short v_temp##i = \
  846. vec_mladd(v_tempBlurredAss##i, \
  847. vsint16_7, v_srcAss##i); \
  848. const vector signed short v_temp2##i = \
  849. vec_add(v_temp##i, vsint16_4); \
  850. v_tempBlurredAss##i = vec_sr(v_temp2##i, vuint16_3)
  851. OP(0);
  852. OP(1);
  853. OP(2);
  854. OP(3);
  855. OP(4);
  856. OP(5);
  857. OP(6);
  858. OP(7);
  859. #undef OP
  860. } else {
  861. const vector signed short vsint16_3 = vec_splat_s16(3);
  862. const vector signed short vsint16_2 = vec_splat_s16(2);
  863. #define OP(i) \
  864. const vector signed short v_temp##i = \
  865. vec_mladd(v_tempBlurredAss##i, \
  866. vsint16_3, v_srcAss##i); \
  867. const vector signed short v_temp2##i = \
  868. vec_add(v_temp##i, vsint16_2); \
  869. v_tempBlurredAss##i = vec_sr(v_temp2##i, (vector unsigned short)vsint16_2)
  870. OP(0);
  871. OP(1);
  872. OP(2);
  873. OP(3);
  874. OP(4);
  875. OP(5);
  876. OP(6);
  877. OP(7);
  878. #undef OP
  879. }
  880. }
  881. const vector signed char neg1 = vec_splat_s8(-1);
  882. const vector unsigned char permHH = (const vector unsigned char){0x00, 0x01, 0x02, 0x03, 0x04, 0x05, 0x06, 0x07,
  883. 0x18, 0x19, 0x1A, 0x1B, 0x1C, 0x1D, 0x1E, 0x1F};
  884. #define PACK_AND_STORE(src, i) \
  885. const vector unsigned char perms##src##i = \
  886. vec_lvsr(i * stride, src); \
  887. const vector unsigned char vf##src##i = \
  888. vec_packsu(v_tempBlurredAss##i, (vector signed short)zero); \
  889. const vector unsigned char vg##src##i = \
  890. vec_perm(vf##src##i, v_##src##A##i, permHH); \
  891. const vector unsigned char mask##src##i = \
  892. vec_perm((vector unsigned char)zero, (vector unsigned char)neg1, perms##src##i); \
  893. const vector unsigned char vg2##src##i = \
  894. vec_perm(vg##src##i, vg##src##i, perms##src##i); \
  895. const vector unsigned char svA##src##i = \
  896. vec_sel(v_##src##A1##i, vg2##src##i, mask##src##i); \
  897. const vector unsigned char svB##src##i = \
  898. vec_sel(vg2##src##i, v_##src##A2##i, mask##src##i); \
  899. vec_st(svA##src##i, i * stride, src); \
  900. vec_st(svB##src##i, i * stride + 16, src)
  901. PACK_AND_STORE(src, 0);
  902. PACK_AND_STORE(src, 1);
  903. PACK_AND_STORE(src, 2);
  904. PACK_AND_STORE(src, 3);
  905. PACK_AND_STORE(src, 4);
  906. PACK_AND_STORE(src, 5);
  907. PACK_AND_STORE(src, 6);
  908. PACK_AND_STORE(src, 7);
  909. PACK_AND_STORE(tempBlurred, 0);
  910. PACK_AND_STORE(tempBlurred, 1);
  911. PACK_AND_STORE(tempBlurred, 2);
  912. PACK_AND_STORE(tempBlurred, 3);
  913. PACK_AND_STORE(tempBlurred, 4);
  914. PACK_AND_STORE(tempBlurred, 5);
  915. PACK_AND_STORE(tempBlurred, 6);
  916. PACK_AND_STORE(tempBlurred, 7);
  917. #undef PACK_AND_STORE
  918. }
  919. static inline void transpose_16x8_char_toPackedAlign_altivec(unsigned char* dst, unsigned char* src, int stride) {
  920. const vector unsigned char zero = vec_splat_u8(0);
  921. #define LOAD_DOUBLE_LINE(i, j) \
  922. vector unsigned char perm1##i = vec_lvsl(i * stride, src); \
  923. vector unsigned char perm2##i = vec_lvsl(j * stride, src); \
  924. vector unsigned char srcA##i = vec_ld(i * stride, src); \
  925. vector unsigned char srcB##i = vec_ld(i * stride + 16, src); \
  926. vector unsigned char srcC##i = vec_ld(j * stride, src); \
  927. vector unsigned char srcD##i = vec_ld(j * stride+ 16, src); \
  928. vector unsigned char src##i = vec_perm(srcA##i, srcB##i, perm1##i); \
  929. vector unsigned char src##j = vec_perm(srcC##i, srcD##i, perm2##i)
  930. LOAD_DOUBLE_LINE(0, 1);
  931. LOAD_DOUBLE_LINE(2, 3);
  932. LOAD_DOUBLE_LINE(4, 5);
  933. LOAD_DOUBLE_LINE(6, 7);
  934. #undef LOAD_DOUBLE_LINE
  935. vector unsigned char tempA = vec_mergeh(src0, zero);
  936. vector unsigned char tempB = vec_mergel(src0, zero);
  937. vector unsigned char tempC = vec_mergeh(src1, zero);
  938. vector unsigned char tempD = vec_mergel(src1, zero);
  939. vector unsigned char tempE = vec_mergeh(src2, zero);
  940. vector unsigned char tempF = vec_mergel(src2, zero);
  941. vector unsigned char tempG = vec_mergeh(src3, zero);
  942. vector unsigned char tempH = vec_mergel(src3, zero);
  943. vector unsigned char tempI = vec_mergeh(src4, zero);
  944. vector unsigned char tempJ = vec_mergel(src4, zero);
  945. vector unsigned char tempK = vec_mergeh(src5, zero);
  946. vector unsigned char tempL = vec_mergel(src5, zero);
  947. vector unsigned char tempM = vec_mergeh(src6, zero);
  948. vector unsigned char tempN = vec_mergel(src6, zero);
  949. vector unsigned char tempO = vec_mergeh(src7, zero);
  950. vector unsigned char tempP = vec_mergel(src7, zero);
  951. vector unsigned char temp0 = vec_mergeh(tempA, tempI);
  952. vector unsigned char temp1 = vec_mergel(tempA, tempI);
  953. vector unsigned char temp2 = vec_mergeh(tempB, tempJ);
  954. vector unsigned char temp3 = vec_mergel(tempB, tempJ);
  955. vector unsigned char temp4 = vec_mergeh(tempC, tempK);
  956. vector unsigned char temp5 = vec_mergel(tempC, tempK);
  957. vector unsigned char temp6 = vec_mergeh(tempD, tempL);
  958. vector unsigned char temp7 = vec_mergel(tempD, tempL);
  959. vector unsigned char temp8 = vec_mergeh(tempE, tempM);
  960. vector unsigned char temp9 = vec_mergel(tempE, tempM);
  961. vector unsigned char temp10 = vec_mergeh(tempF, tempN);
  962. vector unsigned char temp11 = vec_mergel(tempF, tempN);
  963. vector unsigned char temp12 = vec_mergeh(tempG, tempO);
  964. vector unsigned char temp13 = vec_mergel(tempG, tempO);
  965. vector unsigned char temp14 = vec_mergeh(tempH, tempP);
  966. vector unsigned char temp15 = vec_mergel(tempH, tempP);
  967. tempA = vec_mergeh(temp0, temp8);
  968. tempB = vec_mergel(temp0, temp8);
  969. tempC = vec_mergeh(temp1, temp9);
  970. tempD = vec_mergel(temp1, temp9);
  971. tempE = vec_mergeh(temp2, temp10);
  972. tempF = vec_mergel(temp2, temp10);
  973. tempG = vec_mergeh(temp3, temp11);
  974. tempH = vec_mergel(temp3, temp11);
  975. tempI = vec_mergeh(temp4, temp12);
  976. tempJ = vec_mergel(temp4, temp12);
  977. tempK = vec_mergeh(temp5, temp13);
  978. tempL = vec_mergel(temp5, temp13);
  979. tempM = vec_mergeh(temp6, temp14);
  980. tempN = vec_mergel(temp6, temp14);
  981. tempO = vec_mergeh(temp7, temp15);
  982. tempP = vec_mergel(temp7, temp15);
  983. temp0 = vec_mergeh(tempA, tempI);
  984. temp1 = vec_mergel(tempA, tempI);
  985. temp2 = vec_mergeh(tempB, tempJ);
  986. temp3 = vec_mergel(tempB, tempJ);
  987. temp4 = vec_mergeh(tempC, tempK);
  988. temp5 = vec_mergel(tempC, tempK);
  989. temp6 = vec_mergeh(tempD, tempL);
  990. temp7 = vec_mergel(tempD, tempL);
  991. temp8 = vec_mergeh(tempE, tempM);
  992. temp9 = vec_mergel(tempE, tempM);
  993. temp10 = vec_mergeh(tempF, tempN);
  994. temp11 = vec_mergel(tempF, tempN);
  995. temp12 = vec_mergeh(tempG, tempO);
  996. temp13 = vec_mergel(tempG, tempO);
  997. temp14 = vec_mergeh(tempH, tempP);
  998. temp15 = vec_mergel(tempH, tempP);
  999. vec_st(temp0, 0, dst);
  1000. vec_st(temp1, 16, dst);
  1001. vec_st(temp2, 32, dst);
  1002. vec_st(temp3, 48, dst);
  1003. vec_st(temp4, 64, dst);
  1004. vec_st(temp5, 80, dst);
  1005. vec_st(temp6, 96, dst);
  1006. vec_st(temp7, 112, dst);
  1007. vec_st(temp8, 128, dst);
  1008. vec_st(temp9, 144, dst);
  1009. vec_st(temp10, 160, dst);
  1010. vec_st(temp11, 176, dst);
  1011. vec_st(temp12, 192, dst);
  1012. vec_st(temp13, 208, dst);
  1013. vec_st(temp14, 224, dst);
  1014. vec_st(temp15, 240, dst);
  1015. }
  1016. static inline void transpose_8x16_char_fromPackedAlign_altivec(unsigned char* dst, unsigned char* src, int stride) {
  1017. const vector unsigned char zero = vec_splat_u8(0);
  1018. #define LOAD_DOUBLE_LINE(i, j) \
  1019. vector unsigned char src##i = vec_ld(i * 16, src); \
  1020. vector unsigned char src##j = vec_ld(j * 16, src)
  1021. LOAD_DOUBLE_LINE(0, 1);
  1022. LOAD_DOUBLE_LINE(2, 3);
  1023. LOAD_DOUBLE_LINE(4, 5);
  1024. LOAD_DOUBLE_LINE(6, 7);
  1025. LOAD_DOUBLE_LINE(8, 9);
  1026. LOAD_DOUBLE_LINE(10, 11);
  1027. LOAD_DOUBLE_LINE(12, 13);
  1028. LOAD_DOUBLE_LINE(14, 15);
  1029. #undef LOAD_DOUBLE_LINE
  1030. vector unsigned char tempA = vec_mergeh(src0, src8);
  1031. vector unsigned char tempB;
  1032. vector unsigned char tempC = vec_mergeh(src1, src9);
  1033. vector unsigned char tempD;
  1034. vector unsigned char tempE = vec_mergeh(src2, src10);
  1035. vector unsigned char tempG = vec_mergeh(src3, src11);
  1036. vector unsigned char tempI = vec_mergeh(src4, src12);
  1037. vector unsigned char tempJ;
  1038. vector unsigned char tempK = vec_mergeh(src5, src13);
  1039. vector unsigned char tempL;
  1040. vector unsigned char tempM = vec_mergeh(src6, src14);
  1041. vector unsigned char tempO = vec_mergeh(src7, src15);
  1042. vector unsigned char temp0 = vec_mergeh(tempA, tempI);
  1043. vector unsigned char temp1 = vec_mergel(tempA, tempI);
  1044. vector unsigned char temp2;
  1045. vector unsigned char temp3;
  1046. vector unsigned char temp4 = vec_mergeh(tempC, tempK);
  1047. vector unsigned char temp5 = vec_mergel(tempC, tempK);
  1048. vector unsigned char temp6;
  1049. vector unsigned char temp7;
  1050. vector unsigned char temp8 = vec_mergeh(tempE, tempM);
  1051. vector unsigned char temp9 = vec_mergel(tempE, tempM);
  1052. vector unsigned char temp12 = vec_mergeh(tempG, tempO);
  1053. vector unsigned char temp13 = vec_mergel(tempG, tempO);
  1054. tempA = vec_mergeh(temp0, temp8);
  1055. tempB = vec_mergel(temp0, temp8);
  1056. tempC = vec_mergeh(temp1, temp9);
  1057. tempD = vec_mergel(temp1, temp9);
  1058. tempI = vec_mergeh(temp4, temp12);
  1059. tempJ = vec_mergel(temp4, temp12);
  1060. tempK = vec_mergeh(temp5, temp13);
  1061. tempL = vec_mergel(temp5, temp13);
  1062. temp0 = vec_mergeh(tempA, tempI);
  1063. temp1 = vec_mergel(tempA, tempI);
  1064. temp2 = vec_mergeh(tempB, tempJ);
  1065. temp3 = vec_mergel(tempB, tempJ);
  1066. temp4 = vec_mergeh(tempC, tempK);
  1067. temp5 = vec_mergel(tempC, tempK);
  1068. temp6 = vec_mergeh(tempD, tempL);
  1069. temp7 = vec_mergel(tempD, tempL);
  1070. const vector signed char neg1 = vec_splat_s8(-1);
  1071. #define STORE_DOUBLE_LINE(i, j) \
  1072. vector unsigned char dstA##i = vec_ld(i * stride, dst); \
  1073. vector unsigned char dstB##i = vec_ld(i * stride + 16, dst); \
  1074. vector unsigned char dstA##j = vec_ld(j * stride, dst); \
  1075. vector unsigned char dstB##j = vec_ld(j * stride+ 16, dst); \
  1076. vector unsigned char align##i = vec_lvsr(i * stride, dst); \
  1077. vector unsigned char align##j = vec_lvsr(j * stride, dst); \
  1078. vector unsigned char mask##i = vec_perm(zero, (vector unsigned char)neg1, align##i); \
  1079. vector unsigned char mask##j = vec_perm(zero, (vector unsigned char)neg1, align##j); \
  1080. vector unsigned char dstR##i = vec_perm(temp##i, temp##i, align##i);\
  1081. vector unsigned char dstR##j = vec_perm(temp##j, temp##j, align##j);\
  1082. vector unsigned char dstAF##i = vec_sel(dstA##i, dstR##i, mask##i); \
  1083. vector unsigned char dstBF##i = vec_sel(dstR##i, dstB##i, mask##i); \
  1084. vector unsigned char dstAF##j = vec_sel(dstA##j, dstR##j, mask##j); \
  1085. vector unsigned char dstBF##j = vec_sel(dstR##j, dstB##j, mask##j); \
  1086. vec_st(dstAF##i, i * stride, dst); \
  1087. vec_st(dstBF##i, i * stride + 16, dst); \
  1088. vec_st(dstAF##j, j * stride, dst); \
  1089. vec_st(dstBF##j, j * stride + 16, dst)
  1090. STORE_DOUBLE_LINE(0,1);
  1091. STORE_DOUBLE_LINE(2,3);
  1092. STORE_DOUBLE_LINE(4,5);
  1093. STORE_DOUBLE_LINE(6,7);
  1094. }