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  1. /*
  2. * Copyright (c) 2013 Seppo Tomperi
  3. * Copyright (c) 2013 - 2014 Pierre-Edouard Lepere
  4. *
  5. * This file is part of Libav.
  6. *
  7. * Libav is free software; you can redistribute it and/or
  8. * modify it under the terms of the GNU Lesser General Public
  9. * License as published by the Free Software Foundation; either
  10. * version 2.1 of the License, or (at your option) any later version.
  11. *
  12. * Libav is distributed in the hope that it will be useful,
  13. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  14. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  15. * Lesser General Public License for more details.
  16. *
  17. * You should have received a copy of the GNU Lesser General Public
  18. * License along with Libav; if not, write to the Free Software
  19. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  20. */
  21. #include "config.h"
  22. #include "libavutil/cpu.h"
  23. #include "libavutil/x86/cpu.h"
  24. #include "libavcodec/hevcdsp.h"
  25. #define LFC_FUNC(DIR, DEPTH, OPT) \
  26. void ff_hevc_ ## DIR ## _loop_filter_chroma_ ## DEPTH ## _ ## OPT(uint8_t *pix, ptrdiff_t stride, int *tc, uint8_t *no_p, uint8_t *no_q);
  27. #define LFL_FUNC(DIR, DEPTH, OPT) \
  28. void ff_hevc_ ## DIR ## _loop_filter_luma_ ## DEPTH ## _ ## OPT(uint8_t *pix, ptrdiff_t stride, int beta, int *tc, uint8_t *no_p, uint8_t *no_q);
  29. #define LFC_FUNCS(type, depth) \
  30. LFC_FUNC(h, depth, sse2) \
  31. LFC_FUNC(v, depth, sse2)
  32. #define LFL_FUNCS(type, depth) \
  33. LFL_FUNC(h, depth, ssse3) \
  34. LFL_FUNC(v, depth, ssse3)
  35. LFC_FUNCS(uint8_t, 8)
  36. LFC_FUNCS(uint8_t, 10)
  37. LFL_FUNCS(uint8_t, 8)
  38. LFL_FUNCS(uint8_t, 10)
  39. #define GET_PIXELS(width, depth, cf) \
  40. void ff_hevc_get_pixels_ ## width ## _ ## depth ## _ ## cf(int16_t *dst, ptrdiff_t dststride, \
  41. uint8_t *src, ptrdiff_t srcstride, \
  42. int height, int mx, int my, int16_t *mcbuffer);
  43. GET_PIXELS(4, 8, sse2)
  44. GET_PIXELS(8, 8, sse2)
  45. GET_PIXELS(12, 8, sse2)
  46. GET_PIXELS(16, 8, sse2)
  47. GET_PIXELS(24, 8, sse2)
  48. GET_PIXELS(32, 8, sse2)
  49. GET_PIXELS(48, 8, sse2)
  50. GET_PIXELS(64, 8, sse2)
  51. GET_PIXELS(4, 10, sse2)
  52. GET_PIXELS(8, 10, sse2)
  53. GET_PIXELS(12, 10, sse2)
  54. GET_PIXELS(16, 10, sse2)
  55. GET_PIXELS(24, 10, sse2)
  56. GET_PIXELS(32, 10, sse2)
  57. GET_PIXELS(48, 10, sse2)
  58. GET_PIXELS(64, 10, sse2)
  59. /* those are independent of the bit depth, so declared separately */
  60. #define INTERP_HV_FUNC(width, cf) \
  61. void ff_hevc_qpel_hv_ ## width ## _ ## cf(int16_t *dst, ptrdiff_t dststride, \
  62. int16_t *src, ptrdiff_t srcstride, \
  63. int height, int mx, int my, int16_t *mcbuffer); \
  64. void ff_hevc_epel_hv_ ## width ## _ ## cf(int16_t *dst, ptrdiff_t dststride, \
  65. int16_t *src, ptrdiff_t srcstride, \
  66. int height, int mx, int my, int16_t *mcbuffer);
  67. INTERP_HV_FUNC(4, avx)
  68. INTERP_HV_FUNC(8, avx)
  69. INTERP_HV_FUNC(12, avx)
  70. INTERP_HV_FUNC(16, avx)
  71. INTERP_HV_FUNC(24, avx)
  72. INTERP_HV_FUNC(32, avx)
  73. INTERP_HV_FUNC(48, avx)
  74. INTERP_HV_FUNC(64, avx)
  75. #if ARCH_X86_64
  76. #define QPEL_FUNC_HV(width, depth, cf_h, cf_v, cf_hv) \
  77. static void hevc_qpel_hv_ ## width ## _ ## depth ## _ ## cf_hv(int16_t *dst, ptrdiff_t dststride, \
  78. uint8_t *src, ptrdiff_t srcstride, \
  79. int height, int mx, int my, int16_t *mcbuffer) \
  80. { \
  81. const ptrdiff_t stride = FFALIGN(width + 7, 8); \
  82. ff_hevc_qpel_h_ ## width ## _ ## depth ## _ ## cf_h(mcbuffer, 2 * stride, src - 3 * srcstride, srcstride, \
  83. height + 7, mx, my, mcbuffer); \
  84. ff_hevc_qpel_hv_ ## width ## _ ## cf_hv(dst, dststride, mcbuffer + 3 * stride, 2 * stride, \
  85. height, mx, my, mcbuffer); \
  86. }
  87. #else
  88. #define QPEL_FUNC_HV(width, depth, cf_h, cf_v, cf_hv)
  89. #endif
  90. #define QPEL_FUNCS(width, depth, cf_h, cf_v, cf_hv) \
  91. void ff_hevc_qpel_h_ ## width ## _ ## depth ## _ ## cf_h(int16_t *dst, ptrdiff_t dststride, \
  92. uint8_t *src, ptrdiff_t srcstride, \
  93. int height, int mx, int my, int16_t *mcbuffer); \
  94. void ff_hevc_qpel_v_ ## width ## _ ## depth ## _ ## cf_v(int16_t *dst, ptrdiff_t dststride, \
  95. uint8_t *src, ptrdiff_t srcstride, \
  96. int height, int mx, int my, int16_t *mcbuffer); \
  97. QPEL_FUNC_HV(width, depth, cf_h, cf_v, cf_hv)
  98. QPEL_FUNCS(4, 8, ssse3, ssse3, avx)
  99. QPEL_FUNCS(8, 8, ssse3, ssse3, avx)
  100. QPEL_FUNCS(12, 8, ssse3, ssse3, avx)
  101. QPEL_FUNCS(16, 8, ssse3, ssse3, avx)
  102. QPEL_FUNCS(24, 8, ssse3, ssse3, avx)
  103. QPEL_FUNCS(32, 8, ssse3, ssse3, avx)
  104. QPEL_FUNCS(48, 8, ssse3, ssse3, avx)
  105. QPEL_FUNCS(64, 8, ssse3, ssse3, avx)
  106. QPEL_FUNCS(4, 10, avx, avx, avx)
  107. QPEL_FUNCS(8, 10, avx, avx, avx)
  108. QPEL_FUNCS(12, 10, avx, avx, avx)
  109. QPEL_FUNCS(16, 10, avx, avx, avx)
  110. QPEL_FUNCS(24, 10, avx, avx, avx)
  111. QPEL_FUNCS(32, 10, avx, avx, avx)
  112. QPEL_FUNCS(48, 10, avx, avx, avx)
  113. QPEL_FUNCS(64, 10, avx, avx, avx)
  114. #if ARCH_X86_64
  115. #define EPEL_FUNC_HV(width, depth, cf_h, cf_v, cf_hv) \
  116. static void hevc_epel_hv_ ## width ## _ ## depth ## _ ## cf_hv(int16_t *dst, ptrdiff_t dststride, \
  117. uint8_t *src, ptrdiff_t srcstride, \
  118. int height, int mx, int my, int16_t *mcbuffer) \
  119. { \
  120. const ptrdiff_t stride = FFALIGN(width + 3, 8); \
  121. ff_hevc_epel_h_ ## width ## _ ## depth ## _ ## cf_h(mcbuffer, 2 * stride, src - srcstride, srcstride, \
  122. height + 3, mx, my, mcbuffer); \
  123. ff_hevc_epel_hv_ ## width ## _ ## cf_hv(dst, dststride, mcbuffer + stride, 2 * stride, \
  124. height, mx, my, mcbuffer); \
  125. }
  126. #else
  127. #define EPEL_FUNC_HV(width, depth, cf_h, cf_v, cf_hv)
  128. #endif
  129. #define EPEL_FUNCS(width, depth, cf_h, cf_v, cf_hv) \
  130. void ff_hevc_epel_h_ ## width ## _ ## depth ## _ ## cf_h(int16_t *dst, ptrdiff_t dststride, \
  131. uint8_t *src, ptrdiff_t srcstride, \
  132. int height, int mx, int my, int16_t *mcbuffer); \
  133. void ff_hevc_epel_v_ ## width ## _ ## depth ## _ ## cf_v(int16_t *dst, ptrdiff_t dststride, \
  134. uint8_t *src, ptrdiff_t srcstride, \
  135. int height, int mx, int my, int16_t *mcbuffer); \
  136. EPEL_FUNC_HV(width, depth, cf_h, cf_v, cf_hv)
  137. EPEL_FUNCS(4, 8, ssse3, ssse3, avx)
  138. EPEL_FUNCS(8, 8, ssse3, ssse3, avx)
  139. EPEL_FUNCS(12, 8, ssse3, ssse3, avx)
  140. EPEL_FUNCS(16, 8, ssse3, ssse3, avx)
  141. EPEL_FUNCS(24, 8, ssse3, ssse3, avx)
  142. EPEL_FUNCS(32, 8, ssse3, ssse3, avx)
  143. EPEL_FUNCS(4, 10, avx, avx, avx)
  144. EPEL_FUNCS(8, 10, avx, avx, avx)
  145. EPEL_FUNCS(12, 10, avx, avx, avx)
  146. EPEL_FUNCS(16, 10, avx, avx, avx)
  147. EPEL_FUNCS(24, 10, avx, avx, avx)
  148. EPEL_FUNCS(32, 10, avx, avx, avx)
  149. #define PUT_PRED(width, depth, cf_uw, cf_w) \
  150. void ff_hevc_put_unweighted_pred_ ## width ## _ ## depth ## _ ## cf_uw(uint8_t *dst, ptrdiff_t dststride, \
  151. int16_t *src, ptrdiff_t srcstride, \
  152. int height); \
  153. void ff_hevc_put_unweighted_pred_avg_ ## width ## _ ## depth ## _ ## cf_uw(uint8_t *dst, ptrdiff_t dststride, \
  154. int16_t *src1, int16_t *src2, \
  155. ptrdiff_t srcstride, int height); \
  156. void ff_hevc_put_weighted_pred_ ## width ## _ ## depth ## _ ## cf_w(uint8_t denom, int16_t weight, int16_t offset, \
  157. uint8_t *dst, ptrdiff_t dststride, \
  158. int16_t *src, ptrdiff_t srcstride, \
  159. int height); \
  160. void ff_hevc_put_weighted_pred_avg_ ## width ## _ ## depth ## _ ## cf_w(uint8_t denom, int16_t weight0, int16_t weight1, \
  161. int16_t offset0, int16_t offset1, \
  162. uint8_t *dst, ptrdiff_t dststride, \
  163. int16_t *src0, int16_t *src1, ptrdiff_t srcstride, \
  164. int height);
  165. PUT_PRED(4, 8, sse2, sse4)
  166. PUT_PRED(8, 8, sse2, sse4)
  167. PUT_PRED(12, 8, sse2, sse4)
  168. PUT_PRED(16, 8, sse2, sse4)
  169. PUT_PRED(24, 8, sse2, sse4)
  170. PUT_PRED(32, 8, sse2, sse4)
  171. PUT_PRED(48, 8, sse2, sse4)
  172. PUT_PRED(64, 8, sse2, sse4)
  173. PUT_PRED(4, 10, sse2, sse4)
  174. PUT_PRED(8, 10, sse2, sse4)
  175. PUT_PRED(12, 10, sse2, sse4)
  176. PUT_PRED(16, 10, sse2, sse4)
  177. PUT_PRED(24, 10, sse2, sse4)
  178. PUT_PRED(32, 10, sse2, sse4)
  179. PUT_PRED(48, 10, sse2, sse4)
  180. PUT_PRED(64, 10, sse2, sse4)
  181. void ff_hevc_dsp_init_x86(HEVCDSPContext *c, const int bit_depth)
  182. {
  183. int cpu_flags = av_get_cpu_flags();
  184. #define SET_LUMA_FUNCS(tabname, funcname, depth, cf) \
  185. c->tabname[0] = funcname ## _4_ ## depth ## _ ## cf; \
  186. c->tabname[1] = funcname ## _8_ ## depth ## _ ## cf; \
  187. c->tabname[2] = funcname ## _12_ ## depth ## _ ## cf; \
  188. c->tabname[3] = funcname ## _16_ ## depth ## _ ## cf; \
  189. c->tabname[4] = funcname ## _24_ ## depth ## _ ## cf; \
  190. c->tabname[5] = funcname ## _32_ ## depth ## _ ## cf; \
  191. c->tabname[6] = funcname ## _48_ ## depth ## _ ## cf; \
  192. c->tabname[7] = funcname ## _64_ ## depth ## _ ## cf;
  193. #define SET_CHROMA_FUNCS(tabname, funcname, depth, cf) \
  194. c->tabname[1] = funcname ## _4_ ## depth ## _ ## cf; \
  195. c->tabname[3] = funcname ## _8_ ## depth ## _ ## cf; \
  196. c->tabname[4] = funcname ## _12_ ## depth ## _ ## cf; \
  197. c->tabname[5] = funcname ## _16_ ## depth ## _ ## cf; \
  198. c->tabname[6] = funcname ## _24_ ## depth ## _ ## cf; \
  199. c->tabname[7] = funcname ## _32_ ## depth ## _ ## cf;
  200. #define SET_QPEL_FUNCS(v, h, depth, cf, name) SET_LUMA_FUNCS (put_hevc_qpel[v][h], name, depth, cf)
  201. #define SET_EPEL_FUNCS(v, h, depth, cf, name) SET_CHROMA_FUNCS(put_hevc_epel[v][h], name, depth, cf)
  202. if (bit_depth == 8) {
  203. if (EXTERNAL_SSE2(cpu_flags)) {
  204. c->hevc_v_loop_filter_chroma = ff_hevc_v_loop_filter_chroma_8_sse2;
  205. c->hevc_h_loop_filter_chroma = ff_hevc_h_loop_filter_chroma_8_sse2;
  206. SET_QPEL_FUNCS(0, 0, 8, sse2, ff_hevc_get_pixels);
  207. SET_EPEL_FUNCS(0, 0, 8, sse2, ff_hevc_get_pixels);
  208. SET_LUMA_FUNCS(put_unweighted_pred, ff_hevc_put_unweighted_pred, 8, sse2);
  209. SET_LUMA_FUNCS(put_unweighted_pred_avg, ff_hevc_put_unweighted_pred_avg, 8, sse2);
  210. SET_CHROMA_FUNCS(put_unweighted_pred_chroma, ff_hevc_put_unweighted_pred, 8, sse2);
  211. SET_CHROMA_FUNCS(put_unweighted_pred_avg_chroma, ff_hevc_put_unweighted_pred_avg, 8, sse2);
  212. }
  213. if (EXTERNAL_SSSE3(cpu_flags)) {
  214. SET_QPEL_FUNCS(0, 1, 8, ssse3, ff_hevc_qpel_h);
  215. SET_QPEL_FUNCS(1, 0, 8, ssse3, ff_hevc_qpel_v);
  216. SET_EPEL_FUNCS(0, 1, 8, ssse3, ff_hevc_epel_h);
  217. SET_EPEL_FUNCS(1, 0, 8, ssse3, ff_hevc_epel_v);
  218. }
  219. } else if (bit_depth == 10) {
  220. if (EXTERNAL_SSE2(cpu_flags)) {
  221. c->hevc_v_loop_filter_chroma = ff_hevc_v_loop_filter_chroma_10_sse2;
  222. c->hevc_h_loop_filter_chroma = ff_hevc_h_loop_filter_chroma_10_sse2;
  223. SET_QPEL_FUNCS(0, 0, 10, sse2, ff_hevc_get_pixels);
  224. SET_EPEL_FUNCS(0, 0, 10, sse2, ff_hevc_get_pixels);
  225. SET_LUMA_FUNCS(put_unweighted_pred, ff_hevc_put_unweighted_pred, 10, sse2);
  226. SET_LUMA_FUNCS(put_unweighted_pred_avg, ff_hevc_put_unweighted_pred_avg, 10, sse2);
  227. SET_CHROMA_FUNCS(put_unweighted_pred_chroma, ff_hevc_put_unweighted_pred, 10, sse2);
  228. SET_CHROMA_FUNCS(put_unweighted_pred_avg_chroma, ff_hevc_put_unweighted_pred_avg, 10, sse2);
  229. }
  230. }
  231. #if ARCH_X86_64
  232. if (bit_depth == 8) {
  233. if (EXTERNAL_SSSE3(cpu_flags)) {
  234. c->hevc_v_loop_filter_luma = ff_hevc_v_loop_filter_luma_8_ssse3;
  235. c->hevc_h_loop_filter_luma = ff_hevc_h_loop_filter_luma_8_ssse3;
  236. }
  237. if (EXTERNAL_SSE4(cpu_flags)) {
  238. SET_LUMA_FUNCS(weighted_pred, ff_hevc_put_weighted_pred, 8, sse4);
  239. SET_CHROMA_FUNCS(weighted_pred_chroma, ff_hevc_put_weighted_pred, 8, sse4);
  240. SET_LUMA_FUNCS(weighted_pred_avg, ff_hevc_put_weighted_pred_avg, 8, sse4);
  241. SET_CHROMA_FUNCS(weighted_pred_avg_chroma, ff_hevc_put_weighted_pred_avg, 8, sse4);
  242. }
  243. if (EXTERNAL_AVX(cpu_flags)) {
  244. SET_QPEL_FUNCS(1, 1, 8, avx, hevc_qpel_hv);
  245. SET_EPEL_FUNCS(1, 1, 8, avx, hevc_epel_hv);
  246. }
  247. } else if (bit_depth == 10) {
  248. if (EXTERNAL_SSSE3(cpu_flags)) {
  249. c->hevc_v_loop_filter_luma = ff_hevc_v_loop_filter_luma_10_ssse3;
  250. c->hevc_h_loop_filter_luma = ff_hevc_h_loop_filter_luma_10_ssse3;
  251. }
  252. if (EXTERNAL_SSE4(cpu_flags)) {
  253. SET_LUMA_FUNCS(weighted_pred, ff_hevc_put_weighted_pred, 10, sse4);
  254. SET_CHROMA_FUNCS(weighted_pred_chroma, ff_hevc_put_weighted_pred, 10, sse4);
  255. SET_LUMA_FUNCS(weighted_pred_avg, ff_hevc_put_weighted_pred_avg, 10, sse4);
  256. SET_CHROMA_FUNCS(weighted_pred_avg_chroma, ff_hevc_put_weighted_pred_avg, 10, sse4);
  257. }
  258. if (EXTERNAL_AVX(cpu_flags)) {
  259. SET_QPEL_FUNCS(0, 1, 10, avx, ff_hevc_qpel_h);
  260. SET_QPEL_FUNCS(1, 0, 10, avx, ff_hevc_qpel_v);
  261. SET_QPEL_FUNCS(1, 1, 10, avx, hevc_qpel_hv);
  262. SET_EPEL_FUNCS(0, 1, 10, avx, ff_hevc_epel_h);
  263. SET_EPEL_FUNCS(1, 0, 10, avx, ff_hevc_epel_v);
  264. SET_EPEL_FUNCS(1, 1, 10, avx, hevc_epel_hv);
  265. }
  266. }
  267. #endif /* ARCH_X86_64 */
  268. }