swscale_altivec_template.c 22 KB

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  1. /*
  2. * AltiVec-enhanced yuv2yuvX
  3. *
  4. * Copyright (C) 2004 Romain Dolbeau <romain@dolbeau.org>
  5. * based on the equivalent C code in "postproc/swscale.c"
  6. *
  7. * This file is part of FFmpeg.
  8. *
  9. * FFmpeg is free software; you can redistribute it and/or modify
  10. * it under the terms of the GNU General Public License as published by
  11. * the Free Software Foundation; either version 2 of the License, or
  12. * (at your option) any later version.
  13. *
  14. * FFmpeg is distributed in the hope that it will be useful,
  15. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  16. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  17. * GNU General Public License for more details.
  18. *
  19. * You should have received a copy of the GNU General Public License
  20. * along with FFmpeg; if not, write to the Free Software
  21. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  22. */
  23. #ifdef CONFIG_DARWIN
  24. #define AVV(x...) (x)
  25. #else
  26. #define AVV(x...) {x}
  27. #endif
  28. #define vzero vec_splat_s32(0)
  29. static inline void
  30. altivec_packIntArrayToCharArray(int *val, uint8_t* dest, int dstW) {
  31. register int i;
  32. vector unsigned int altivec_vectorShiftInt19 =
  33. vec_add(vec_splat_u32(10),vec_splat_u32(9));
  34. if ((unsigned long)dest % 16) {
  35. /* badly aligned store, we force store alignement */
  36. /* and will handle load misalignement on val w/ vec_perm */
  37. vector unsigned char perm1;
  38. vector signed int v1;
  39. for (i = 0 ; (i < dstW) &&
  40. (((unsigned long)dest + i) % 16) ; i++) {
  41. int t = val[i] >> 19;
  42. dest[i] = (t < 0) ? 0 : ((t > 255) ? 255 : t);
  43. }
  44. perm1 = vec_lvsl(i << 2, val);
  45. v1 = vec_ld(i << 2, val);
  46. for ( ; i < (dstW - 15); i+=16) {
  47. int offset = i << 2;
  48. vector signed int v2 = vec_ld(offset + 16, val);
  49. vector signed int v3 = vec_ld(offset + 32, val);
  50. vector signed int v4 = vec_ld(offset + 48, val);
  51. vector signed int v5 = vec_ld(offset + 64, val);
  52. vector signed int v12 = vec_perm(v1,v2,perm1);
  53. vector signed int v23 = vec_perm(v2,v3,perm1);
  54. vector signed int v34 = vec_perm(v3,v4,perm1);
  55. vector signed int v45 = vec_perm(v4,v5,perm1);
  56. vector signed int vA = vec_sra(v12, altivec_vectorShiftInt19);
  57. vector signed int vB = vec_sra(v23, altivec_vectorShiftInt19);
  58. vector signed int vC = vec_sra(v34, altivec_vectorShiftInt19);
  59. vector signed int vD = vec_sra(v45, altivec_vectorShiftInt19);
  60. vector unsigned short vs1 = vec_packsu(vA, vB);
  61. vector unsigned short vs2 = vec_packsu(vC, vD);
  62. vector unsigned char vf = vec_packsu(vs1, vs2);
  63. vec_st(vf, i, dest);
  64. v1 = v5;
  65. }
  66. } else { // dest is properly aligned, great
  67. for (i = 0; i < (dstW - 15); i+=16) {
  68. int offset = i << 2;
  69. vector signed int v1 = vec_ld(offset, val);
  70. vector signed int v2 = vec_ld(offset + 16, val);
  71. vector signed int v3 = vec_ld(offset + 32, val);
  72. vector signed int v4 = vec_ld(offset + 48, val);
  73. vector signed int v5 = vec_sra(v1, altivec_vectorShiftInt19);
  74. vector signed int v6 = vec_sra(v2, altivec_vectorShiftInt19);
  75. vector signed int v7 = vec_sra(v3, altivec_vectorShiftInt19);
  76. vector signed int v8 = vec_sra(v4, altivec_vectorShiftInt19);
  77. vector unsigned short vs1 = vec_packsu(v5, v6);
  78. vector unsigned short vs2 = vec_packsu(v7, v8);
  79. vector unsigned char vf = vec_packsu(vs1, vs2);
  80. vec_st(vf, i, dest);
  81. }
  82. }
  83. for ( ; i < dstW ; i++) {
  84. int t = val[i] >> 19;
  85. dest[i] = (t < 0) ? 0 : ((t > 255) ? 255 : t);
  86. }
  87. }
  88. static inline void
  89. yuv2yuvX_altivec_real(int16_t *lumFilter, int16_t **lumSrc, int lumFilterSize,
  90. int16_t *chrFilter, int16_t **chrSrc, int chrFilterSize,
  91. uint8_t *dest, uint8_t *uDest, uint8_t *vDest, int dstW, int chrDstW)
  92. {
  93. const vector signed int vini = {(1 << 18), (1 << 18), (1 << 18), (1 << 18)};
  94. register int i, j;
  95. {
  96. int __attribute__ ((aligned (16))) val[dstW];
  97. for (i = 0; i < (dstW -7); i+=4) {
  98. vec_st(vini, i << 2, val);
  99. }
  100. for (; i < dstW; i++) {
  101. val[i] = (1 << 18);
  102. }
  103. for (j = 0; j < lumFilterSize; j++) {
  104. vector signed short l1, vLumFilter = vec_ld(j << 1, lumFilter);
  105. vector unsigned char perm, perm0 = vec_lvsl(j << 1, lumFilter);
  106. vLumFilter = vec_perm(vLumFilter, vLumFilter, perm0);
  107. vLumFilter = vec_splat(vLumFilter, 0); // lumFilter[j] is loaded 8 times in vLumFilter
  108. perm = vec_lvsl(0, lumSrc[j]);
  109. l1 = vec_ld(0, lumSrc[j]);
  110. for (i = 0; i < (dstW - 7); i+=8) {
  111. int offset = i << 2;
  112. vector signed short l2 = vec_ld((i << 1) + 16, lumSrc[j]);
  113. vector signed int v1 = vec_ld(offset, val);
  114. vector signed int v2 = vec_ld(offset + 16, val);
  115. vector signed short ls = vec_perm(l1, l2, perm); // lumSrc[j][i] ... lumSrc[j][i+7]
  116. vector signed int i1 = vec_mule(vLumFilter, ls);
  117. vector signed int i2 = vec_mulo(vLumFilter, ls);
  118. vector signed int vf1 = vec_mergeh(i1, i2);
  119. vector signed int vf2 = vec_mergel(i1, i2); // lumSrc[j][i] * lumFilter[j] ... lumSrc[j][i+7] * lumFilter[j]
  120. vector signed int vo1 = vec_add(v1, vf1);
  121. vector signed int vo2 = vec_add(v2, vf2);
  122. vec_st(vo1, offset, val);
  123. vec_st(vo2, offset + 16, val);
  124. l1 = l2;
  125. }
  126. for ( ; i < dstW; i++) {
  127. val[i] += lumSrc[j][i] * lumFilter[j];
  128. }
  129. }
  130. altivec_packIntArrayToCharArray(val,dest,dstW);
  131. }
  132. if (uDest != 0) {
  133. int __attribute__ ((aligned (16))) u[chrDstW];
  134. int __attribute__ ((aligned (16))) v[chrDstW];
  135. for (i = 0; i < (chrDstW -7); i+=4) {
  136. vec_st(vini, i << 2, u);
  137. vec_st(vini, i << 2, v);
  138. }
  139. for (; i < chrDstW; i++) {
  140. u[i] = (1 << 18);
  141. v[i] = (1 << 18);
  142. }
  143. for (j = 0; j < chrFilterSize; j++) {
  144. vector signed short l1, l1_V, vChrFilter = vec_ld(j << 1, chrFilter);
  145. vector unsigned char perm, perm0 = vec_lvsl(j << 1, chrFilter);
  146. vChrFilter = vec_perm(vChrFilter, vChrFilter, perm0);
  147. vChrFilter = vec_splat(vChrFilter, 0); // chrFilter[j] is loaded 8 times in vChrFilter
  148. perm = vec_lvsl(0, chrSrc[j]);
  149. l1 = vec_ld(0, chrSrc[j]);
  150. l1_V = vec_ld(2048 << 1, chrSrc[j]);
  151. for (i = 0; i < (chrDstW - 7); i+=8) {
  152. int offset = i << 2;
  153. vector signed short l2 = vec_ld((i << 1) + 16, chrSrc[j]);
  154. vector signed short l2_V = vec_ld(((i + 2048) << 1) + 16, chrSrc[j]);
  155. vector signed int v1 = vec_ld(offset, u);
  156. vector signed int v2 = vec_ld(offset + 16, u);
  157. vector signed int v1_V = vec_ld(offset, v);
  158. vector signed int v2_V = vec_ld(offset + 16, v);
  159. vector signed short ls = vec_perm(l1, l2, perm); // chrSrc[j][i] ... chrSrc[j][i+7]
  160. vector signed short ls_V = vec_perm(l1_V, l2_V, perm); // chrSrc[j][i+2048] ... chrSrc[j][i+2055]
  161. vector signed int i1 = vec_mule(vChrFilter, ls);
  162. vector signed int i2 = vec_mulo(vChrFilter, ls);
  163. vector signed int i1_V = vec_mule(vChrFilter, ls_V);
  164. vector signed int i2_V = vec_mulo(vChrFilter, ls_V);
  165. vector signed int vf1 = vec_mergeh(i1, i2);
  166. vector signed int vf2 = vec_mergel(i1, i2); // chrSrc[j][i] * chrFilter[j] ... chrSrc[j][i+7] * chrFilter[j]
  167. vector signed int vf1_V = vec_mergeh(i1_V, i2_V);
  168. vector signed int vf2_V = vec_mergel(i1_V, i2_V); // chrSrc[j][i] * chrFilter[j] ... chrSrc[j][i+7] * chrFilter[j]
  169. vector signed int vo1 = vec_add(v1, vf1);
  170. vector signed int vo2 = vec_add(v2, vf2);
  171. vector signed int vo1_V = vec_add(v1_V, vf1_V);
  172. vector signed int vo2_V = vec_add(v2_V, vf2_V);
  173. vec_st(vo1, offset, u);
  174. vec_st(vo2, offset + 16, u);
  175. vec_st(vo1_V, offset, v);
  176. vec_st(vo2_V, offset + 16, v);
  177. l1 = l2;
  178. l1_V = l2_V;
  179. }
  180. for ( ; i < chrDstW; i++) {
  181. u[i] += chrSrc[j][i] * chrFilter[j];
  182. v[i] += chrSrc[j][i + 2048] * chrFilter[j];
  183. }
  184. }
  185. altivec_packIntArrayToCharArray(u,uDest,chrDstW);
  186. altivec_packIntArrayToCharArray(v,vDest,chrDstW);
  187. }
  188. }
  189. static inline void hScale_altivec_real(int16_t *dst, int dstW, uint8_t *src, int srcW, int xInc, int16_t *filter, int16_t *filterPos, int filterSize) {
  190. register int i;
  191. int __attribute__ ((aligned (16))) tempo[4];
  192. if (filterSize % 4) {
  193. for (i=0; i<dstW; i++) {
  194. register int j;
  195. register int srcPos = filterPos[i];
  196. register int val = 0;
  197. for (j=0; j<filterSize; j++) {
  198. val += ((int)src[srcPos + j])*filter[filterSize*i + j];
  199. }
  200. dst[i] = av_clip(val>>7, 0, (1<<15)-1);
  201. }
  202. }
  203. else
  204. switch (filterSize) {
  205. case 4:
  206. {
  207. for (i=0; i<dstW; i++) {
  208. register int srcPos = filterPos[i];
  209. vector unsigned char src_v0 = vec_ld(srcPos, src);
  210. vector unsigned char src_v1, src_vF;
  211. vector signed short src_v, filter_v;
  212. vector signed int val_vEven, val_s;
  213. if ((((int)src + srcPos)% 16) > 12) {
  214. src_v1 = vec_ld(srcPos + 16, src);
  215. }
  216. src_vF = vec_perm(src_v0, src_v1, vec_lvsl(srcPos, src));
  217. src_v = // vec_unpackh sign-extends...
  218. (vector signed short)(vec_mergeh((vector unsigned char)vzero, src_vF));
  219. // now put our elements in the even slots
  220. src_v = vec_mergeh(src_v, (vector signed short)vzero);
  221. filter_v = vec_ld(i << 3, filter);
  222. // the 3 above is 2 (filterSize == 4) + 1 (sizeof(short) == 2)
  223. // the neat trick : we only care for half the elements,
  224. // high or low depending on (i<<3)%16 (it's 0 or 8 here),
  225. // and we're going to use vec_mule, so we chose
  226. // carefully how to "unpack" the elements into the even slots
  227. if ((i << 3) % 16)
  228. filter_v = vec_mergel(filter_v,(vector signed short)vzero);
  229. else
  230. filter_v = vec_mergeh(filter_v,(vector signed short)vzero);
  231. val_vEven = vec_mule(src_v, filter_v);
  232. val_s = vec_sums(val_vEven, vzero);
  233. vec_st(val_s, 0, tempo);
  234. dst[i] = av_clip(tempo[3]>>7, 0, (1<<15)-1);
  235. }
  236. }
  237. break;
  238. case 8:
  239. {
  240. for (i=0; i<dstW; i++) {
  241. register int srcPos = filterPos[i];
  242. vector unsigned char src_v0 = vec_ld(srcPos, src);
  243. vector unsigned char src_v1, src_vF;
  244. vector signed short src_v, filter_v;
  245. vector signed int val_v, val_s;
  246. if ((((int)src + srcPos)% 16) > 8) {
  247. src_v1 = vec_ld(srcPos + 16, src);
  248. }
  249. src_vF = vec_perm(src_v0, src_v1, vec_lvsl(srcPos, src));
  250. src_v = // vec_unpackh sign-extends...
  251. (vector signed short)(vec_mergeh((vector unsigned char)vzero, src_vF));
  252. filter_v = vec_ld(i << 4, filter);
  253. // the 4 above is 3 (filterSize == 8) + 1 (sizeof(short) == 2)
  254. val_v = vec_msums(src_v, filter_v, (vector signed int)vzero);
  255. val_s = vec_sums(val_v, vzero);
  256. vec_st(val_s, 0, tempo);
  257. dst[i] = av_clip(tempo[3]>>7, 0, (1<<15)-1);
  258. }
  259. }
  260. break;
  261. case 16:
  262. {
  263. for (i=0; i<dstW; i++) {
  264. register int srcPos = filterPos[i];
  265. vector unsigned char src_v0 = vec_ld(srcPos, src);
  266. vector unsigned char src_v1 = vec_ld(srcPos + 16, src);
  267. vector unsigned char src_vF = vec_perm(src_v0, src_v1, vec_lvsl(srcPos, src));
  268. vector signed short src_vA = // vec_unpackh sign-extends...
  269. (vector signed short)(vec_mergeh((vector unsigned char)vzero, src_vF));
  270. vector signed short src_vB = // vec_unpackh sign-extends...
  271. (vector signed short)(vec_mergel((vector unsigned char)vzero, src_vF));
  272. vector signed short filter_v0 = vec_ld(i << 5, filter);
  273. vector signed short filter_v1 = vec_ld((i << 5) + 16, filter);
  274. // the 5 above are 4 (filterSize == 16) + 1 (sizeof(short) == 2)
  275. vector signed int val_acc = vec_msums(src_vA, filter_v0, (vector signed int)vzero);
  276. vector signed int val_v = vec_msums(src_vB, filter_v1, val_acc);
  277. vector signed int val_s = vec_sums(val_v, vzero);
  278. vec_st(val_s, 0, tempo);
  279. dst[i] = av_clip(tempo[3]>>7, 0, (1<<15)-1);
  280. }
  281. }
  282. break;
  283. default:
  284. {
  285. for (i=0; i<dstW; i++) {
  286. register int j;
  287. register int srcPos = filterPos[i];
  288. vector signed int val_s, val_v = (vector signed int)vzero;
  289. vector signed short filter_v0R = vec_ld(i * 2 * filterSize, filter);
  290. vector unsigned char permF = vec_lvsl((i * 2 * filterSize), filter);
  291. vector unsigned char src_v0 = vec_ld(srcPos, src);
  292. vector unsigned char permS = vec_lvsl(srcPos, src);
  293. for (j = 0 ; j < filterSize - 15; j += 16) {
  294. vector unsigned char src_v1 = vec_ld(srcPos + j + 16, src);
  295. vector unsigned char src_vF = vec_perm(src_v0, src_v1, permS);
  296. vector signed short src_vA = // vec_unpackh sign-extends...
  297. (vector signed short)(vec_mergeh((vector unsigned char)vzero, src_vF));
  298. vector signed short src_vB = // vec_unpackh sign-extends...
  299. (vector signed short)(vec_mergel((vector unsigned char)vzero, src_vF));
  300. vector signed short filter_v1R = vec_ld((i * 2 * filterSize) + (j * 2) + 16, filter);
  301. vector signed short filter_v2R = vec_ld((i * 2 * filterSize) + (j * 2) + 32, filter);
  302. vector signed short filter_v0 = vec_perm(filter_v0R, filter_v1R, permF);
  303. vector signed short filter_v1 = vec_perm(filter_v1R, filter_v2R, permF);
  304. vector signed int val_acc = vec_msums(src_vA, filter_v0, val_v);
  305. val_v = vec_msums(src_vB, filter_v1, val_acc);
  306. filter_v0R = filter_v2R;
  307. src_v0 = src_v1;
  308. }
  309. if (j < (filterSize-7)) {
  310. // loading src_v0 is useless, it's already done above
  311. //vector unsigned char src_v0 = vec_ld(srcPos + j, src);
  312. vector unsigned char src_v1, src_vF;
  313. vector signed short src_v, filter_v1R, filter_v;
  314. if ((((int)src + srcPos)% 16) > 8) {
  315. src_v1 = vec_ld(srcPos + j + 16, src);
  316. }
  317. src_vF = vec_perm(src_v0, src_v1, permS);
  318. src_v = // vec_unpackh sign-extends...
  319. (vector signed short)(vec_mergeh((vector unsigned char)vzero, src_vF));
  320. // loading filter_v0R is useless, it's already done above
  321. //vector signed short filter_v0R = vec_ld((i * 2 * filterSize) + j, filter);
  322. filter_v1R = vec_ld((i * 2 * filterSize) + (j * 2) + 16, filter);
  323. filter_v = vec_perm(filter_v0R, filter_v1R, permF);
  324. val_v = vec_msums(src_v, filter_v, val_v);
  325. }
  326. val_s = vec_sums(val_v, vzero);
  327. vec_st(val_s, 0, tempo);
  328. dst[i] = av_clip(tempo[3]>>7, 0, (1<<15)-1);
  329. }
  330. }
  331. }
  332. }
  333. static inline int yv12toyuy2_unscaled_altivec(SwsContext *c, uint8_t* src[], int srcStride[], int srcSliceY,
  334. int srcSliceH, uint8_t* dstParam[], int dstStride_a[]) {
  335. uint8_t *dst=dstParam[0] + dstStride_a[0]*srcSliceY;
  336. // yv12toyuy2( src[0],src[1],src[2],dst,c->srcW,srcSliceH,srcStride[0],srcStride[1],dstStride[0] );
  337. uint8_t *ysrc = src[0];
  338. uint8_t *usrc = src[1];
  339. uint8_t *vsrc = src[2];
  340. const int width = c->srcW;
  341. const int height = srcSliceH;
  342. const int lumStride = srcStride[0];
  343. const int chromStride = srcStride[1];
  344. const int dstStride = dstStride_a[0];
  345. const vector unsigned char yperm = vec_lvsl(0, ysrc);
  346. const int vertLumPerChroma = 2;
  347. register unsigned int y;
  348. if (width&15) {
  349. yv12toyuy2( ysrc, usrc, vsrc, dst,c->srcW,srcSliceH, lumStride, chromStride, dstStride);
  350. return srcSliceH;
  351. }
  352. /* this code assume:
  353. 1) dst is 16 bytes-aligned
  354. 2) dstStride is a multiple of 16
  355. 3) width is a multiple of 16
  356. 4) lum&chrom stride are multiple of 8
  357. */
  358. for (y=0; y<height; y++) {
  359. int i;
  360. for (i = 0; i < width - 31; i+= 32) {
  361. const unsigned int j = i >> 1;
  362. vector unsigned char v_yA = vec_ld(i, ysrc);
  363. vector unsigned char v_yB = vec_ld(i + 16, ysrc);
  364. vector unsigned char v_yC = vec_ld(i + 32, ysrc);
  365. vector unsigned char v_y1 = vec_perm(v_yA, v_yB, yperm);
  366. vector unsigned char v_y2 = vec_perm(v_yB, v_yC, yperm);
  367. vector unsigned char v_uA = vec_ld(j, usrc);
  368. vector unsigned char v_uB = vec_ld(j + 16, usrc);
  369. vector unsigned char v_u = vec_perm(v_uA, v_uB, vec_lvsl(j, usrc));
  370. vector unsigned char v_vA = vec_ld(j, vsrc);
  371. vector unsigned char v_vB = vec_ld(j + 16, vsrc);
  372. vector unsigned char v_v = vec_perm(v_vA, v_vB, vec_lvsl(j, vsrc));
  373. vector unsigned char v_uv_a = vec_mergeh(v_u, v_v);
  374. vector unsigned char v_uv_b = vec_mergel(v_u, v_v);
  375. vector unsigned char v_yuy2_0 = vec_mergeh(v_y1, v_uv_a);
  376. vector unsigned char v_yuy2_1 = vec_mergel(v_y1, v_uv_a);
  377. vector unsigned char v_yuy2_2 = vec_mergeh(v_y2, v_uv_b);
  378. vector unsigned char v_yuy2_3 = vec_mergel(v_y2, v_uv_b);
  379. vec_st(v_yuy2_0, (i << 1), dst);
  380. vec_st(v_yuy2_1, (i << 1) + 16, dst);
  381. vec_st(v_yuy2_2, (i << 1) + 32, dst);
  382. vec_st(v_yuy2_3, (i << 1) + 48, dst);
  383. }
  384. if (i < width) {
  385. const unsigned int j = i >> 1;
  386. vector unsigned char v_y1 = vec_ld(i, ysrc);
  387. vector unsigned char v_u = vec_ld(j, usrc);
  388. vector unsigned char v_v = vec_ld(j, vsrc);
  389. vector unsigned char v_uv_a = vec_mergeh(v_u, v_v);
  390. vector unsigned char v_yuy2_0 = vec_mergeh(v_y1, v_uv_a);
  391. vector unsigned char v_yuy2_1 = vec_mergel(v_y1, v_uv_a);
  392. vec_st(v_yuy2_0, (i << 1), dst);
  393. vec_st(v_yuy2_1, (i << 1) + 16, dst);
  394. }
  395. if ( (y&(vertLumPerChroma-1))==(vertLumPerChroma-1) ) {
  396. usrc += chromStride;
  397. vsrc += chromStride;
  398. }
  399. ysrc += lumStride;
  400. dst += dstStride;
  401. }
  402. return srcSliceH;
  403. }
  404. static inline int yv12touyvy_unscaled_altivec(SwsContext *c, uint8_t* src[], int srcStride[], int srcSliceY,
  405. int srcSliceH, uint8_t* dstParam[], int dstStride_a[]) {
  406. uint8_t *dst=dstParam[0] + dstStride_a[0]*srcSliceY;
  407. // yv12toyuy2( src[0],src[1],src[2],dst,c->srcW,srcSliceH,srcStride[0],srcStride[1],dstStride[0] );
  408. uint8_t *ysrc = src[0];
  409. uint8_t *usrc = src[1];
  410. uint8_t *vsrc = src[2];
  411. const int width = c->srcW;
  412. const int height = srcSliceH;
  413. const int lumStride = srcStride[0];
  414. const int chromStride = srcStride[1];
  415. const int dstStride = dstStride_a[0];
  416. const int vertLumPerChroma = 2;
  417. const vector unsigned char yperm = vec_lvsl(0, ysrc);
  418. register unsigned int y;
  419. if (width&15) {
  420. yv12touyvy( ysrc, usrc, vsrc, dst,c->srcW,srcSliceH, lumStride, chromStride, dstStride);
  421. return srcSliceH;
  422. }
  423. /* this code assume:
  424. 1) dst is 16 bytes-aligned
  425. 2) dstStride is a multiple of 16
  426. 3) width is a multiple of 16
  427. 4) lum&chrom stride are multiple of 8
  428. */
  429. for (y=0; y<height; y++) {
  430. int i;
  431. for (i = 0; i < width - 31; i+= 32) {
  432. const unsigned int j = i >> 1;
  433. vector unsigned char v_yA = vec_ld(i, ysrc);
  434. vector unsigned char v_yB = vec_ld(i + 16, ysrc);
  435. vector unsigned char v_yC = vec_ld(i + 32, ysrc);
  436. vector unsigned char v_y1 = vec_perm(v_yA, v_yB, yperm);
  437. vector unsigned char v_y2 = vec_perm(v_yB, v_yC, yperm);
  438. vector unsigned char v_uA = vec_ld(j, usrc);
  439. vector unsigned char v_uB = vec_ld(j + 16, usrc);
  440. vector unsigned char v_u = vec_perm(v_uA, v_uB, vec_lvsl(j, usrc));
  441. vector unsigned char v_vA = vec_ld(j, vsrc);
  442. vector unsigned char v_vB = vec_ld(j + 16, vsrc);
  443. vector unsigned char v_v = vec_perm(v_vA, v_vB, vec_lvsl(j, vsrc));
  444. vector unsigned char v_uv_a = vec_mergeh(v_u, v_v);
  445. vector unsigned char v_uv_b = vec_mergel(v_u, v_v);
  446. vector unsigned char v_uyvy_0 = vec_mergeh(v_uv_a, v_y1);
  447. vector unsigned char v_uyvy_1 = vec_mergel(v_uv_a, v_y1);
  448. vector unsigned char v_uyvy_2 = vec_mergeh(v_uv_b, v_y2);
  449. vector unsigned char v_uyvy_3 = vec_mergel(v_uv_b, v_y2);
  450. vec_st(v_uyvy_0, (i << 1), dst);
  451. vec_st(v_uyvy_1, (i << 1) + 16, dst);
  452. vec_st(v_uyvy_2, (i << 1) + 32, dst);
  453. vec_st(v_uyvy_3, (i << 1) + 48, dst);
  454. }
  455. if (i < width) {
  456. const unsigned int j = i >> 1;
  457. vector unsigned char v_y1 = vec_ld(i, ysrc);
  458. vector unsigned char v_u = vec_ld(j, usrc);
  459. vector unsigned char v_v = vec_ld(j, vsrc);
  460. vector unsigned char v_uv_a = vec_mergeh(v_u, v_v);
  461. vector unsigned char v_uyvy_0 = vec_mergeh(v_uv_a, v_y1);
  462. vector unsigned char v_uyvy_1 = vec_mergel(v_uv_a, v_y1);
  463. vec_st(v_uyvy_0, (i << 1), dst);
  464. vec_st(v_uyvy_1, (i << 1) + 16, dst);
  465. }
  466. if ( (y&(vertLumPerChroma-1))==(vertLumPerChroma-1) ) {
  467. usrc += chromStride;
  468. vsrc += chromStride;
  469. }
  470. ysrc += lumStride;
  471. dst += dstStride;
  472. }
  473. return srcSliceH;
  474. }