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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 swscale.c
  6. *
  7. * This file is part of FFmpeg.
  8. *
  9. * FFmpeg is free software; you can redistribute it and/or
  10. * modify it under the terms of the GNU Lesser General Public
  11. * License as published by the Free Software Foundation; either
  12. * version 2.1 of the License, or (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 GNU
  17. * Lesser General Public License for more details.
  18. *
  19. * You should have received a copy of the GNU Lesser General Public
  20. * License 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. #include <inttypes.h>
  24. #include "config.h"
  25. #include "libswscale/swscale.h"
  26. #include "libswscale/swscale_internal.h"
  27. #include "libavutil/attributes.h"
  28. #include "libavutil/cpu.h"
  29. #include "yuv2rgb_altivec.h"
  30. #include "libavutil/ppc/util_altivec.h"
  31. #if HAVE_ALTIVEC
  32. #define vzero vec_splat_s32(0)
  33. #if HAVE_BIGENDIAN
  34. #define GET_LS(a,b,c,s) {\
  35. vector signed short l2 = vec_ld(((b) << 1) + 16, s);\
  36. ls = vec_perm(a, l2, c);\
  37. a = l2;\
  38. }
  39. #define GET_VF(a, b, c,d) {\
  40. a = vec_mergeh(c, d);\
  41. b = vec_mergel(c, d);\
  42. }
  43. #else
  44. #define GET_LS(a,b,c,s) {\
  45. ls = a;\
  46. a = vec_vsx_ld(((b) << 1) + 16, s);\
  47. }
  48. #define GET_VF(a, b, c, d) {\
  49. a = vec_mergel(d, c);\
  50. b = vec_mergeh(d, c);\
  51. }
  52. #endif
  53. #define yuv2planeX_8(d1, d2, l1, src, x, perm, filter) do {\
  54. vector signed short ls;\
  55. GET_LS(l1, x, perm, src);\
  56. vector signed int i1 = vec_mule(filter, ls);\
  57. vector signed int i2 = vec_mulo(filter, ls);\
  58. vector signed int vf1, vf2;\
  59. GET_VF(vf1, vf2, i1, i2);\
  60. d1 = vec_add(d1, vf1);\
  61. d2 = vec_add(d2, vf2);\
  62. } while (0)
  63. #if HAVE_BIGENDIAN
  64. #define LOAD_FILTER(vf,f) {\
  65. vector unsigned char perm0 = vec_lvsl(joffset, f);\
  66. vf = vec_ld(joffset, f);\
  67. vf = vec_perm(vf, vf, perm0);\
  68. }
  69. #define LOAD_L1(ll1,s,p){\
  70. p = vec_lvsl(xoffset, s);\
  71. ll1 = vec_ld(xoffset, s);\
  72. }
  73. #else
  74. #define LOAD_FILTER(vf,f) {\
  75. vf = vec_vsx_ld(joffset, f);\
  76. }
  77. #define LOAD_L1(ll1,s,p){\
  78. ll1 = vec_vsx_ld(xoffset, s);\
  79. }
  80. #endif
  81. static void yuv2planeX_16_altivec(const int16_t *filter, int filterSize,
  82. const int16_t **src, uint8_t *dest,
  83. const uint8_t *dither, int offset, int x)
  84. {
  85. register int i, j;
  86. LOCAL_ALIGNED(16, int, val, [16]);
  87. vector signed int vo1, vo2, vo3, vo4;
  88. vector unsigned short vs1, vs2;
  89. vector unsigned char vf;
  90. vector unsigned int altivec_vectorShiftInt19 =
  91. vec_add(vec_splat_u32(10), vec_splat_u32(9));
  92. for (i = 0; i < 16; i++)
  93. val[i] = dither[(x + i + offset) & 7] << 12;
  94. vo1 = vec_ld(0, val);
  95. vo2 = vec_ld(16, val);
  96. vo3 = vec_ld(32, val);
  97. vo4 = vec_ld(48, val);
  98. for (j = 0; j < filterSize; j++) {
  99. unsigned int joffset=j<<1;
  100. unsigned int xoffset=x<<1;
  101. vector unsigned char perm;
  102. vector signed short l1,vLumFilter;
  103. LOAD_FILTER(vLumFilter,filter);
  104. vLumFilter = vec_splat(vLumFilter, 0);
  105. LOAD_L1(l1,src[j],perm);
  106. yuv2planeX_8(vo1, vo2, l1, src[j], x, perm, vLumFilter);
  107. yuv2planeX_8(vo3, vo4, l1, src[j], x + 8, perm, vLumFilter);
  108. }
  109. vo1 = vec_sra(vo1, altivec_vectorShiftInt19);
  110. vo2 = vec_sra(vo2, altivec_vectorShiftInt19);
  111. vo3 = vec_sra(vo3, altivec_vectorShiftInt19);
  112. vo4 = vec_sra(vo4, altivec_vectorShiftInt19);
  113. vs1 = vec_packsu(vo1, vo2);
  114. vs2 = vec_packsu(vo3, vo4);
  115. vf = vec_packsu(vs1, vs2);
  116. VEC_ST(vf, 0, dest);
  117. }
  118. static inline void yuv2planeX_u(const int16_t *filter, int filterSize,
  119. const int16_t **src, uint8_t *dest, int dstW,
  120. const uint8_t *dither, int offset, int x)
  121. {
  122. int i, j;
  123. for (i = x; i < dstW; i++) {
  124. int t = dither[(i + offset) & 7] << 12;
  125. for (j = 0; j < filterSize; j++)
  126. t += src[j][i] * filter[j];
  127. dest[i] = av_clip_uint8(t >> 19);
  128. }
  129. }
  130. static void yuv2planeX_altivec(const int16_t *filter, int filterSize,
  131. const int16_t **src, uint8_t *dest, int dstW,
  132. const uint8_t *dither, int offset)
  133. {
  134. int dst_u = -(uintptr_t)dest & 15;
  135. int i;
  136. yuv2planeX_u(filter, filterSize, src, dest, dst_u, dither, offset, 0);
  137. for (i = dst_u; i < dstW - 15; i += 16)
  138. yuv2planeX_16_altivec(filter, filterSize, src, dest + i, dither,
  139. offset, i);
  140. yuv2planeX_u(filter, filterSize, src, dest, dstW, dither, offset, i);
  141. }
  142. #if HAVE_BIGENDIAN
  143. // The 3 above is 2 (filterSize == 4) + 1 (sizeof(short) == 2).
  144. // The neat trick: We only care for half the elements,
  145. // high or low depending on (i<<3)%16 (it's 0 or 8 here),
  146. // and we're going to use vec_mule, so we choose
  147. // carefully how to "unpack" the elements into the even slots.
  148. #define GET_VF4(a, vf, f) {\
  149. vf = vec_ld(a<< 3, f);\
  150. if ((a << 3) % 16)\
  151. vf = vec_mergel(vf, (vector signed short)vzero);\
  152. else\
  153. vf = vec_mergeh(vf, (vector signed short)vzero);\
  154. }
  155. #define FIRST_LOAD(sv, pos, s, per) {\
  156. sv = vec_ld(pos, s);\
  157. per = vec_lvsl(pos, s);\
  158. }
  159. #define UPDATE_PTR(s0, d0, s1, d1) {\
  160. d0 = s0;\
  161. d1 = s1;\
  162. }
  163. #define LOAD_SRCV(pos, a, s, per, v0, v1, vf) {\
  164. v1 = vec_ld(pos + a + 16, s);\
  165. vf = vec_perm(v0, v1, per);\
  166. }
  167. #define LOAD_SRCV8(pos, a, s, per, v0, v1, vf) {\
  168. if ((((uintptr_t)s + pos) % 16) > 8) {\
  169. v1 = vec_ld(pos + a + 16, s);\
  170. }\
  171. vf = vec_perm(v0, src_v1, per);\
  172. }
  173. #define GET_VFD(a, b, f, vf0, vf1, per, vf, off) {\
  174. vf1 = vec_ld((a * 2 * filterSize) + (b * 2) + 16 + off, f);\
  175. vf = vec_perm(vf0, vf1, per);\
  176. }
  177. #else /* else of #if HAVE_BIGENDIAN */
  178. #define GET_VF4(a, vf, f) {\
  179. vf = (vector signed short)vec_vsx_ld(a << 3, f);\
  180. vf = vec_mergeh(vf, (vector signed short)vzero);\
  181. }
  182. #define FIRST_LOAD(sv, pos, s, per) {}
  183. #define UPDATE_PTR(s0, d0, s1, d1) {}
  184. #define LOAD_SRCV(pos, a, s, per, v0, v1, vf) {\
  185. vf = vec_vsx_ld(pos + a, s);\
  186. }
  187. #define LOAD_SRCV8(pos, a, s, per, v0, v1, vf) LOAD_SRCV(pos, a, s, per, v0, v1, vf)
  188. #define GET_VFD(a, b, f, vf0, vf1, per, vf, off) {\
  189. vf = vec_vsx_ld((a * 2 * filterSize) + (b * 2) + off, f);\
  190. }
  191. #endif /* end of #if HAVE_BIGENDIAN */
  192. static void hScale_altivec_real(SwsContext *c, int16_t *dst, int dstW,
  193. const uint8_t *src, const int16_t *filter,
  194. const int32_t *filterPos, int filterSize)
  195. {
  196. register int i;
  197. LOCAL_ALIGNED(16, int, tempo, [4]);
  198. if (filterSize % 4) {
  199. for (i = 0; i < dstW; i++) {
  200. register int j;
  201. register int srcPos = filterPos[i];
  202. register int val = 0;
  203. for (j = 0; j < filterSize; j++)
  204. val += ((int)src[srcPos + j]) * filter[filterSize * i + j];
  205. dst[i] = FFMIN(val >> 7, (1 << 15) - 1);
  206. }
  207. } else
  208. switch (filterSize) {
  209. case 4:
  210. for (i = 0; i < dstW; i++) {
  211. register int srcPos = filterPos[i];
  212. vector unsigned char src_vF = unaligned_load(srcPos, src);
  213. vector signed short src_v, filter_v;
  214. vector signed int val_vEven, val_s;
  215. src_v = // vec_unpackh sign-extends...
  216. (vector signed short)(VEC_MERGEH((vector unsigned char)vzero, src_vF));
  217. // now put our elements in the even slots
  218. src_v = vec_mergeh(src_v, (vector signed short)vzero);
  219. GET_VF4(i, filter_v, filter);
  220. val_vEven = vec_mule(src_v, filter_v);
  221. val_s = vec_sums(val_vEven, vzero);
  222. vec_st(val_s, 0, tempo);
  223. dst[i] = FFMIN(tempo[3] >> 7, (1 << 15) - 1);
  224. }
  225. break;
  226. case 8:
  227. for (i = 0; i < dstW; i++) {
  228. register int srcPos = filterPos[i];
  229. vector unsigned char src_vF, src_v0, src_v1;
  230. vector unsigned char permS;
  231. vector signed short src_v, filter_v;
  232. vector signed int val_v, val_s;
  233. FIRST_LOAD(src_v0, srcPos, src, permS);
  234. LOAD_SRCV8(srcPos, 0, src, permS, src_v0, src_v1, src_vF);
  235. src_v = // vec_unpackh sign-extends...
  236. (vector signed short)(VEC_MERGEH((vector unsigned char)vzero, src_vF));
  237. filter_v = vec_ld(i << 4, filter);
  238. val_v = vec_msums(src_v, filter_v, (vector signed int)vzero);
  239. val_s = vec_sums(val_v, vzero);
  240. vec_st(val_s, 0, tempo);
  241. dst[i] = FFMIN(tempo[3] >> 7, (1 << 15) - 1);
  242. }
  243. break;
  244. case 16:
  245. for (i = 0; i < dstW; i++) {
  246. register int srcPos = filterPos[i];
  247. vector unsigned char src_vF = unaligned_load(srcPos, src);
  248. vector signed short src_vA = // vec_unpackh sign-extends...
  249. (vector signed short)(VEC_MERGEH((vector unsigned char)vzero, src_vF));
  250. vector signed short src_vB = // vec_unpackh sign-extends...
  251. (vector signed short)(VEC_MERGEL((vector unsigned char)vzero, src_vF));
  252. vector signed short filter_v0 = vec_ld(i << 5, filter);
  253. vector signed short filter_v1 = vec_ld((i << 5) + 16, filter);
  254. vector signed int val_acc = vec_msums(src_vA, filter_v0, (vector signed int)vzero);
  255. vector signed int val_v = vec_msums(src_vB, filter_v1, val_acc);
  256. vector signed int val_s = vec_sums(val_v, vzero);
  257. VEC_ST(val_s, 0, tempo);
  258. dst[i] = FFMIN(tempo[3] >> 7, (1 << 15) - 1);
  259. }
  260. break;
  261. default:
  262. for (i = 0; i < dstW; i++) {
  263. register int j, offset = i * 2 * filterSize;
  264. register int srcPos = filterPos[i];
  265. vector signed int val_s, val_v = (vector signed int)vzero;
  266. vector signed short filter_v0R;
  267. vector unsigned char permF, src_v0, permS;
  268. FIRST_LOAD(filter_v0R, offset, filter, permF);
  269. FIRST_LOAD(src_v0, srcPos, src, permS);
  270. for (j = 0; j < filterSize - 15; j += 16) {
  271. vector unsigned char src_v1, src_vF;
  272. vector signed short filter_v1R, filter_v2R, filter_v0, filter_v1;
  273. LOAD_SRCV(srcPos, j, src, permS, src_v0, src_v1, src_vF);
  274. vector signed short src_vA = // vec_unpackh sign-extends...
  275. (vector signed short)(VEC_MERGEH((vector unsigned char)vzero, src_vF));
  276. vector signed short src_vB = // vec_unpackh sign-extends...
  277. (vector signed short)(VEC_MERGEL((vector unsigned char)vzero, src_vF));
  278. GET_VFD(i, j, filter, filter_v0R, filter_v1R, permF, filter_v0, 0);
  279. GET_VFD(i, j, filter, filter_v1R, filter_v2R, permF, filter_v1, 16);
  280. vector signed int val_acc = vec_msums(src_vA, filter_v0, val_v);
  281. val_v = vec_msums(src_vB, filter_v1, val_acc);
  282. UPDATE_PTR(filter_v2R, filter_v0R, src_v1, src_v0);
  283. }
  284. if (j < filterSize - 7) {
  285. // loading src_v0 is useless, it's already done above
  286. vector unsigned char src_v1, src_vF;
  287. vector signed short src_v, filter_v1R, filter_v;
  288. LOAD_SRCV8(srcPos, j, src, permS, src_v0, src_v1, src_vF);
  289. src_v = // vec_unpackh sign-extends...
  290. (vector signed short)(VEC_MERGEH((vector unsigned char)vzero, src_vF));
  291. GET_VFD(i, j, filter, filter_v0R, filter_v1R, permF, filter_v, 0);
  292. val_v = vec_msums(src_v, filter_v, val_v);
  293. }
  294. val_s = vec_sums(val_v, vzero);
  295. VEC_ST(val_s, 0, tempo);
  296. dst[i] = FFMIN(tempo[3] >> 7, (1 << 15) - 1);
  297. }
  298. }
  299. }
  300. #endif /* HAVE_ALTIVEC */
  301. av_cold void ff_sws_init_swscale_ppc(SwsContext *c)
  302. {
  303. #if HAVE_ALTIVEC
  304. enum AVPixelFormat dstFormat = c->dstFormat;
  305. if (!(av_get_cpu_flags() & AV_CPU_FLAG_ALTIVEC))
  306. return;
  307. if (c->srcBpc == 8 && c->dstBpc <= 14) {
  308. c->hyScale = c->hcScale = hScale_altivec_real;
  309. }
  310. if (!is16BPS(dstFormat) && !is9_OR_10BPS(dstFormat) &&
  311. dstFormat != AV_PIX_FMT_NV12 && dstFormat != AV_PIX_FMT_NV21 &&
  312. !c->alpPixBuf) {
  313. c->yuv2planeX = yuv2planeX_altivec;
  314. }
  315. /* The following list of supported dstFormat values should
  316. * match what's found in the body of ff_yuv2packedX_altivec() */
  317. if (!(c->flags & (SWS_BITEXACT | SWS_FULL_CHR_H_INT)) && !c->alpPixBuf) {
  318. switch (c->dstFormat) {
  319. case AV_PIX_FMT_ABGR:
  320. c->yuv2packedX = ff_yuv2abgr_X_altivec;
  321. break;
  322. case AV_PIX_FMT_BGRA:
  323. c->yuv2packedX = ff_yuv2bgra_X_altivec;
  324. break;
  325. case AV_PIX_FMT_ARGB:
  326. c->yuv2packedX = ff_yuv2argb_X_altivec;
  327. break;
  328. case AV_PIX_FMT_RGBA:
  329. c->yuv2packedX = ff_yuv2rgba_X_altivec;
  330. break;
  331. case AV_PIX_FMT_BGR24:
  332. c->yuv2packedX = ff_yuv2bgr24_X_altivec;
  333. break;
  334. case AV_PIX_FMT_RGB24:
  335. c->yuv2packedX = ff_yuv2rgb24_X_altivec;
  336. break;
  337. }
  338. }
  339. #endif /* HAVE_ALTIVEC */
  340. }