rv30dsp.c 13 KB

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  1. /*
  2. * RV30 decoder motion compensation functions
  3. * Copyright (c) 2007 Konstantin Shishkov
  4. *
  5. * This file is part of FFmpeg.
  6. *
  7. * FFmpeg 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. * FFmpeg 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 FFmpeg; if not, write to the Free Software
  19. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  20. */
  21. /**
  22. * @file libavcodec/rv30dsp.c
  23. * RV30 decoder motion compensation functions
  24. */
  25. #include "avcodec.h"
  26. #include "dsputil.h"
  27. #define RV30_LOWPASS(OPNAME, OP) \
  28. static av_unused void OPNAME ## rv30_tpel8_h_lowpass(uint8_t *dst, uint8_t *src, int dstStride, int srcStride, const int C1, const int C2){\
  29. const int h=8;\
  30. uint8_t *cm = ff_cropTbl + MAX_NEG_CROP;\
  31. int i;\
  32. for(i=0; i<h; i++)\
  33. {\
  34. OP(dst[0], (-(src[-1]+src[2]) + src[0]*C1 + src[1]*C2 + 8)>>4);\
  35. OP(dst[1], (-(src[ 0]+src[3]) + src[1]*C1 + src[2]*C2 + 8)>>4);\
  36. OP(dst[2], (-(src[ 1]+src[4]) + src[2]*C1 + src[3]*C2 + 8)>>4);\
  37. OP(dst[3], (-(src[ 2]+src[5]) + src[3]*C1 + src[4]*C2 + 8)>>4);\
  38. OP(dst[4], (-(src[ 3]+src[6]) + src[4]*C1 + src[5]*C2 + 8)>>4);\
  39. OP(dst[5], (-(src[ 4]+src[7]) + src[5]*C1 + src[6]*C2 + 8)>>4);\
  40. OP(dst[6], (-(src[ 5]+src[8]) + src[6]*C1 + src[7]*C2 + 8)>>4);\
  41. OP(dst[7], (-(src[ 6]+src[9]) + src[7]*C1 + src[8]*C2 + 8)>>4);\
  42. dst+=dstStride;\
  43. src+=srcStride;\
  44. }\
  45. }\
  46. \
  47. static void OPNAME ## rv30_tpel8_v_lowpass(uint8_t *dst, uint8_t *src, int dstStride, int srcStride, const int C1, const int C2){\
  48. const int w=8;\
  49. uint8_t *cm = ff_cropTbl + MAX_NEG_CROP;\
  50. int i;\
  51. for(i=0; i<w; i++)\
  52. {\
  53. const int srcA= src[-1*srcStride];\
  54. const int src0= src[0 *srcStride];\
  55. const int src1= src[1 *srcStride];\
  56. const int src2= src[2 *srcStride];\
  57. const int src3= src[3 *srcStride];\
  58. const int src4= src[4 *srcStride];\
  59. const int src5= src[5 *srcStride];\
  60. const int src6= src[6 *srcStride];\
  61. const int src7= src[7 *srcStride];\
  62. const int src8= src[8 *srcStride];\
  63. const int src9= src[9 *srcStride];\
  64. OP(dst[0*dstStride], (-(srcA+src2) + src0*C1 + src1*C2 + 8)>>4);\
  65. OP(dst[1*dstStride], (-(src0+src3) + src1*C1 + src2*C2 + 8)>>4);\
  66. OP(dst[2*dstStride], (-(src1+src4) + src2*C1 + src3*C2 + 8)>>4);\
  67. OP(dst[3*dstStride], (-(src2+src5) + src3*C1 + src4*C2 + 8)>>4);\
  68. OP(dst[4*dstStride], (-(src3+src6) + src4*C1 + src5*C2 + 8)>>4);\
  69. OP(dst[5*dstStride], (-(src4+src7) + src5*C1 + src6*C2 + 8)>>4);\
  70. OP(dst[6*dstStride], (-(src5+src8) + src6*C1 + src7*C2 + 8)>>4);\
  71. OP(dst[7*dstStride], (-(src6+src9) + src7*C1 + src8*C2 + 8)>>4);\
  72. dst++;\
  73. src++;\
  74. }\
  75. }\
  76. \
  77. static void OPNAME ## rv30_tpel8_hv_lowpass(uint8_t *dst, uint8_t *src, int dstStride, int srcStride){\
  78. const int w = 8;\
  79. const int h = 8;\
  80. uint8_t *cm = ff_cropTbl + MAX_NEG_CROP;\
  81. int i, j;\
  82. for(j = 0; j < h; j++){\
  83. for(i = 0; i < w; i++){\
  84. OP(dst[i], (\
  85. src[srcStride*-1+i-1] -12*src[srcStride*-1+i] -6*src[srcStride*-1+i+1] +src[srcStride*-1+i+2]+\
  86. -12*src[srcStride* 0+i-1] +144*src[srcStride* 0+i] +72*src[srcStride* 0+i+1] -12*src[srcStride* 0+i+2] +\
  87. -6*src[srcStride* 1+i-1] +72*src[srcStride* 1+i] +36*src[srcStride* 1+i+1] -6*src[srcStride* 1+i+2] +\
  88. src[srcStride* 2+i-1] -12*src[srcStride* 2+i] -6*src[srcStride* 2+i+1] +src[srcStride* 2+i+2] +\
  89. 128)>>8);\
  90. }\
  91. src += srcStride;\
  92. dst += dstStride;\
  93. }\
  94. }\
  95. \
  96. static void OPNAME ## rv30_tpel8_hhv_lowpass(uint8_t *dst, uint8_t *src, int dstStride, int srcStride){\
  97. const int w = 8;\
  98. const int h = 8;\
  99. uint8_t *cm = ff_cropTbl + MAX_NEG_CROP;\
  100. int i, j;\
  101. for(j = 0; j < h; j++){\
  102. for(i = 0; i < w; i++){\
  103. OP(dst[i], (\
  104. src[srcStride*-1+i-1] -12*src[srcStride*-1+i+1] -6*src[srcStride*-1+i] +src[srcStride*-1+i+2]+\
  105. -12*src[srcStride* 0+i-1] +144*src[srcStride* 0+i+1] +72*src[srcStride* 0+i] -12*src[srcStride* 0+i+2]+\
  106. -6*src[srcStride* 1+i-1] +72*src[srcStride* 1+i+1] +36*src[srcStride* 1+i] -6*src[srcStride* 1+i+2]+\
  107. src[srcStride* 2+i-1] -12*src[srcStride* 2+i+1] -6*src[srcStride* 2+i] +src[srcStride* 2+i+2]+\
  108. 128)>>8);\
  109. }\
  110. src += srcStride;\
  111. dst += dstStride;\
  112. }\
  113. }\
  114. \
  115. static void OPNAME ## rv30_tpel8_hvv_lowpass(uint8_t *dst, uint8_t *src, int dstStride, int srcStride){\
  116. const int w = 8;\
  117. const int h = 8;\
  118. uint8_t *cm = ff_cropTbl + MAX_NEG_CROP;\
  119. int i, j;\
  120. for(j = 0; j < h; j++){\
  121. for(i = 0; i < w; i++){\
  122. OP(dst[i], (\
  123. src[srcStride*-1+i-1] -12*src[srcStride*-1+i] -6*src[srcStride*-1+i+1] +src[srcStride*-1+i+2]+\
  124. -6*src[srcStride* 0+i-1] +72*src[srcStride* 0+i] +36*src[srcStride* 0+i+1] -6*src[srcStride* 0+i+2]+\
  125. -12*src[srcStride* 1+i-1] +144*src[srcStride* 1+i] +72*src[srcStride* 1+i+1] -12*src[srcStride* 1+i+2]+\
  126. src[srcStride* 2+i-1] -12*src[srcStride* 2+i] -6*src[srcStride* 2+i+1] +src[srcStride* 2+i+2]+\
  127. 128)>>8);\
  128. }\
  129. src += srcStride;\
  130. dst += dstStride;\
  131. }\
  132. }\
  133. \
  134. static void OPNAME ## rv30_tpel8_hhvv_lowpass(uint8_t *dst, uint8_t *src, int dstStride, int srcStride){\
  135. const int w = 8;\
  136. const int h = 8;\
  137. uint8_t *cm = ff_cropTbl + MAX_NEG_CROP;\
  138. int i, j;\
  139. for(j = 0; j < h; j++){\
  140. for(i = 0; i < w; i++){\
  141. OP(dst[i], (\
  142. 36*src[i+srcStride*0] +54*src[i+1+srcStride*0] +6*src[i+2+srcStride*0]+\
  143. 54*src[i+srcStride*1] +81*src[i+1+srcStride*1] +9*src[i+2+srcStride*1]+\
  144. 6*src[i+srcStride*2] + 9*src[i+1+srcStride*2] + src[i+2+srcStride*2]+\
  145. 128)>>8);\
  146. }\
  147. src += srcStride;\
  148. dst += dstStride;\
  149. }\
  150. }\
  151. \
  152. static void OPNAME ## rv30_tpel16_v_lowpass(uint8_t *dst, uint8_t *src, int dstStride, int srcStride, const int C1, const int C2){\
  153. OPNAME ## rv30_tpel8_v_lowpass(dst , src , dstStride, srcStride, C1, C2);\
  154. OPNAME ## rv30_tpel8_v_lowpass(dst+8, src+8, dstStride, srcStride, C1, C2);\
  155. src += 8*srcStride;\
  156. dst += 8*dstStride;\
  157. OPNAME ## rv30_tpel8_v_lowpass(dst , src , dstStride, srcStride, C1, C2);\
  158. OPNAME ## rv30_tpel8_v_lowpass(dst+8, src+8, dstStride, srcStride, C1, C2);\
  159. }\
  160. \
  161. static void OPNAME ## rv30_tpel16_h_lowpass(uint8_t *dst, uint8_t *src, int dstStride, int srcStride, const int C1, const int C2){\
  162. OPNAME ## rv30_tpel8_h_lowpass(dst , src , dstStride, srcStride, C1, C2);\
  163. OPNAME ## rv30_tpel8_h_lowpass(dst+8, src+8, dstStride, srcStride, C1, C2);\
  164. src += 8*srcStride;\
  165. dst += 8*dstStride;\
  166. OPNAME ## rv30_tpel8_h_lowpass(dst , src , dstStride, srcStride, C1, C2);\
  167. OPNAME ## rv30_tpel8_h_lowpass(dst+8, src+8, dstStride, srcStride, C1, C2);\
  168. }\
  169. \
  170. static void OPNAME ## rv30_tpel16_hv_lowpass(uint8_t *dst, uint8_t *src, int dstStride, int srcStride){\
  171. OPNAME ## rv30_tpel8_hv_lowpass(dst , src , dstStride, srcStride);\
  172. OPNAME ## rv30_tpel8_hv_lowpass(dst+8, src+8, dstStride, srcStride);\
  173. src += 8*srcStride;\
  174. dst += 8*dstStride;\
  175. OPNAME ## rv30_tpel8_hv_lowpass(dst , src , dstStride, srcStride);\
  176. OPNAME ## rv30_tpel8_hv_lowpass(dst+8, src+8, dstStride, srcStride);\
  177. }\
  178. \
  179. static void OPNAME ## rv30_tpel16_hhv_lowpass(uint8_t *dst, uint8_t *src, int dstStride, int srcStride){\
  180. OPNAME ## rv30_tpel8_hhv_lowpass(dst , src , dstStride, srcStride);\
  181. OPNAME ## rv30_tpel8_hhv_lowpass(dst+8, src+8, dstStride, srcStride);\
  182. src += 8*srcStride;\
  183. dst += 8*dstStride;\
  184. OPNAME ## rv30_tpel8_hhv_lowpass(dst , src , dstStride, srcStride);\
  185. OPNAME ## rv30_tpel8_hhv_lowpass(dst+8, src+8, dstStride, srcStride);\
  186. }\
  187. \
  188. static void OPNAME ## rv30_tpel16_hvv_lowpass(uint8_t *dst, uint8_t *src, int dstStride, int srcStride){\
  189. OPNAME ## rv30_tpel8_hvv_lowpass(dst , src , dstStride, srcStride);\
  190. OPNAME ## rv30_tpel8_hvv_lowpass(dst+8, src+8, dstStride, srcStride);\
  191. src += 8*srcStride;\
  192. dst += 8*dstStride;\
  193. OPNAME ## rv30_tpel8_hvv_lowpass(dst , src , dstStride, srcStride);\
  194. OPNAME ## rv30_tpel8_hvv_lowpass(dst+8, src+8, dstStride, srcStride);\
  195. }\
  196. \
  197. static void OPNAME ## rv30_tpel16_hhvv_lowpass(uint8_t *dst, uint8_t *src, int dstStride, int srcStride){\
  198. OPNAME ## rv30_tpel8_hhvv_lowpass(dst , src , dstStride, srcStride);\
  199. OPNAME ## rv30_tpel8_hhvv_lowpass(dst+8, src+8, dstStride, srcStride);\
  200. src += 8*srcStride;\
  201. dst += 8*dstStride;\
  202. OPNAME ## rv30_tpel8_hhvv_lowpass(dst , src , dstStride, srcStride);\
  203. OPNAME ## rv30_tpel8_hhvv_lowpass(dst+8, src+8, dstStride, srcStride);\
  204. }\
  205. \
  206. #define RV30_MC(OPNAME, SIZE) \
  207. static void OPNAME ## rv30_tpel ## SIZE ## _mc10_c(uint8_t *dst, uint8_t *src, int stride){\
  208. OPNAME ## rv30_tpel ## SIZE ## _h_lowpass(dst, src, stride, stride, 12, 6);\
  209. }\
  210. \
  211. static void OPNAME ## rv30_tpel ## SIZE ## _mc20_c(uint8_t *dst, uint8_t *src, int stride){\
  212. OPNAME ## rv30_tpel ## SIZE ## _h_lowpass(dst, src, stride, stride, 6, 12);\
  213. }\
  214. \
  215. static void OPNAME ## rv30_tpel ## SIZE ## _mc01_c(uint8_t *dst, uint8_t *src, int stride){\
  216. OPNAME ## rv30_tpel ## SIZE ## _v_lowpass(dst, src, stride, stride, 12, 6);\
  217. }\
  218. \
  219. static void OPNAME ## rv30_tpel ## SIZE ## _mc02_c(uint8_t *dst, uint8_t *src, int stride){\
  220. OPNAME ## rv30_tpel ## SIZE ## _v_lowpass(dst, src, stride, stride, 6, 12);\
  221. }\
  222. \
  223. static void OPNAME ## rv30_tpel ## SIZE ## _mc11_c(uint8_t *dst, uint8_t *src, int stride){\
  224. OPNAME ## rv30_tpel ## SIZE ## _hv_lowpass(dst, src, stride, stride);\
  225. }\
  226. \
  227. static void OPNAME ## rv30_tpel ## SIZE ## _mc12_c(uint8_t *dst, uint8_t *src, int stride){\
  228. OPNAME ## rv30_tpel ## SIZE ## _hvv_lowpass(dst, src, stride, stride);\
  229. }\
  230. \
  231. static void OPNAME ## rv30_tpel ## SIZE ## _mc21_c(uint8_t *dst, uint8_t *src, int stride){\
  232. OPNAME ## rv30_tpel ## SIZE ## _hhv_lowpass(dst, src, stride, stride);\
  233. }\
  234. \
  235. static void OPNAME ## rv30_tpel ## SIZE ## _mc22_c(uint8_t *dst, uint8_t *src, int stride){\
  236. OPNAME ## rv30_tpel ## SIZE ## _hhvv_lowpass(dst, src, stride, stride);\
  237. }\
  238. \
  239. #define op_avg(a, b) a = (((a)+cm[b]+1)>>1)
  240. #define op_put(a, b) a = cm[b]
  241. RV30_LOWPASS(put_ , op_put)
  242. RV30_LOWPASS(avg_ , op_avg)
  243. RV30_MC(put_, 8)
  244. RV30_MC(put_, 16)
  245. RV30_MC(avg_, 8)
  246. RV30_MC(avg_, 16)
  247. void ff_rv30dsp_init(DSPContext* c, AVCodecContext *avctx) {
  248. c->put_rv30_tpel_pixels_tab[0][ 0] = c->put_h264_qpel_pixels_tab[0][0];
  249. c->put_rv30_tpel_pixels_tab[0][ 1] = put_rv30_tpel16_mc10_c;
  250. c->put_rv30_tpel_pixels_tab[0][ 2] = put_rv30_tpel16_mc20_c;
  251. c->put_rv30_tpel_pixels_tab[0][ 4] = put_rv30_tpel16_mc01_c;
  252. c->put_rv30_tpel_pixels_tab[0][ 5] = put_rv30_tpel16_mc11_c;
  253. c->put_rv30_tpel_pixels_tab[0][ 6] = put_rv30_tpel16_mc21_c;
  254. c->put_rv30_tpel_pixels_tab[0][ 8] = put_rv30_tpel16_mc02_c;
  255. c->put_rv30_tpel_pixels_tab[0][ 9] = put_rv30_tpel16_mc12_c;
  256. c->put_rv30_tpel_pixels_tab[0][10] = put_rv30_tpel16_mc22_c;
  257. c->avg_rv30_tpel_pixels_tab[0][ 0] = c->avg_h264_qpel_pixels_tab[0][0];
  258. c->avg_rv30_tpel_pixels_tab[0][ 1] = avg_rv30_tpel16_mc10_c;
  259. c->avg_rv30_tpel_pixels_tab[0][ 2] = avg_rv30_tpel16_mc20_c;
  260. c->avg_rv30_tpel_pixels_tab[0][ 4] = avg_rv30_tpel16_mc01_c;
  261. c->avg_rv30_tpel_pixels_tab[0][ 5] = avg_rv30_tpel16_mc11_c;
  262. c->avg_rv30_tpel_pixels_tab[0][ 6] = avg_rv30_tpel16_mc21_c;
  263. c->avg_rv30_tpel_pixels_tab[0][ 8] = avg_rv30_tpel16_mc02_c;
  264. c->avg_rv30_tpel_pixels_tab[0][ 9] = avg_rv30_tpel16_mc12_c;
  265. c->avg_rv30_tpel_pixels_tab[0][10] = avg_rv30_tpel16_mc22_c;
  266. c->put_rv30_tpel_pixels_tab[1][ 0] = c->put_h264_qpel_pixels_tab[1][0];
  267. c->put_rv30_tpel_pixels_tab[1][ 1] = put_rv30_tpel8_mc10_c;
  268. c->put_rv30_tpel_pixels_tab[1][ 2] = put_rv30_tpel8_mc20_c;
  269. c->put_rv30_tpel_pixels_tab[1][ 4] = put_rv30_tpel8_mc01_c;
  270. c->put_rv30_tpel_pixels_tab[1][ 5] = put_rv30_tpel8_mc11_c;
  271. c->put_rv30_tpel_pixels_tab[1][ 6] = put_rv30_tpel8_mc21_c;
  272. c->put_rv30_tpel_pixels_tab[1][ 8] = put_rv30_tpel8_mc02_c;
  273. c->put_rv30_tpel_pixels_tab[1][ 9] = put_rv30_tpel8_mc12_c;
  274. c->put_rv30_tpel_pixels_tab[1][10] = put_rv30_tpel8_mc22_c;
  275. c->avg_rv30_tpel_pixels_tab[1][ 0] = c->avg_h264_qpel_pixels_tab[1][0];
  276. c->avg_rv30_tpel_pixels_tab[1][ 1] = avg_rv30_tpel8_mc10_c;
  277. c->avg_rv30_tpel_pixels_tab[1][ 2] = avg_rv30_tpel8_mc20_c;
  278. c->avg_rv30_tpel_pixels_tab[1][ 4] = avg_rv30_tpel8_mc01_c;
  279. c->avg_rv30_tpel_pixels_tab[1][ 5] = avg_rv30_tpel8_mc11_c;
  280. c->avg_rv30_tpel_pixels_tab[1][ 6] = avg_rv30_tpel8_mc21_c;
  281. c->avg_rv30_tpel_pixels_tab[1][ 8] = avg_rv30_tpel8_mc02_c;
  282. c->avg_rv30_tpel_pixels_tab[1][ 9] = avg_rv30_tpel8_mc12_c;
  283. c->avg_rv30_tpel_pixels_tab[1][10] = avg_rv30_tpel8_mc22_c;
  284. }