jccolext-altivec.c 11 KB

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  1. /*
  2. * AltiVec optimizations for libjpeg-turbo
  3. *
  4. * Copyright (C) 2014-2015, D. R. Commander. All Rights Reserved.
  5. * Copyright (C) 2014, Jay Foad. All Rights Reserved.
  6. *
  7. * This software is provided 'as-is', without any express or implied
  8. * warranty. In no event will the authors be held liable for any damages
  9. * arising from the use of this software.
  10. *
  11. * Permission is granted to anyone to use this software for any purpose,
  12. * including commercial applications, and to alter it and redistribute it
  13. * freely, subject to the following restrictions:
  14. *
  15. * 1. The origin of this software must not be misrepresented; you must not
  16. * claim that you wrote the original software. If you use this software
  17. * in a product, an acknowledgment in the product documentation would be
  18. * appreciated but is not required.
  19. * 2. Altered source versions must be plainly marked as such, and must not be
  20. * misrepresented as being the original software.
  21. * 3. This notice may not be removed or altered from any source distribution.
  22. */
  23. /* This file is included by jccolor-altivec.c */
  24. void jsimd_rgb_ycc_convert_altivec (JDIMENSION img_width, JSAMPARRAY input_buf,
  25. JSAMPIMAGE output_buf,
  26. JDIMENSION output_row, int num_rows)
  27. {
  28. JSAMPROW inptr, outptr0, outptr1, outptr2;
  29. int pitch = img_width * RGB_PIXELSIZE, num_cols;
  30. #if __BIG_ENDIAN__
  31. int offset;
  32. #endif
  33. unsigned char __attribute__((aligned(16))) tmpbuf[RGB_PIXELSIZE * 16];
  34. __vector unsigned char rgb0, rgb1 = {0}, rgb2 = {0},
  35. rgbg0, rgbg1, rgbg2, rgbg3, y, cb, cr;
  36. #if __BIG_ENDIAN__ || RGB_PIXELSIZE == 4
  37. __vector unsigned char rgb3 = {0};
  38. #endif
  39. #if __BIG_ENDIAN__ && RGB_PIXELSIZE == 4
  40. __vector unsigned char rgb4 = {0};
  41. #endif
  42. __vector short rg0, rg1, rg2, rg3, bg0, bg1, bg2, bg3;
  43. __vector unsigned short yl, yh, crl, crh, cbl, cbh;
  44. __vector int y0, y1, y2, y3, cr0, cr1, cr2, cr3, cb0, cb1, cb2, cb3;
  45. /* Constants */
  46. __vector short pw_f0299_f0337 = { __4X2(F_0_299, F_0_337) },
  47. pw_f0114_f0250 = { __4X2(F_0_114, F_0_250) },
  48. pw_mf016_mf033 = { __4X2(-F_0_168, -F_0_331) },
  49. pw_mf008_mf041 = { __4X2(-F_0_081, -F_0_418) };
  50. __vector unsigned short pw_f050_f000 = { __4X2(F_0_500, 0) };
  51. __vector int pd_onehalf = { __4X(ONE_HALF) },
  52. pd_onehalfm1_cj = { __4X(ONE_HALF - 1 + (CENTERJSAMPLE << SCALEBITS)) };
  53. __vector unsigned char pb_zero = { __16X(0) },
  54. #if __BIG_ENDIAN__
  55. shift_pack_index = {0,1,4,5,8,9,12,13,16,17,20,21,24,25,28,29};
  56. #else
  57. shift_pack_index = {2,3,6,7,10,11,14,15,18,19,22,23,26,27,30,31};
  58. #endif
  59. while (--num_rows >= 0) {
  60. inptr = *input_buf++;
  61. outptr0 = output_buf[0][output_row];
  62. outptr1 = output_buf[1][output_row];
  63. outptr2 = output_buf[2][output_row];
  64. output_row++;
  65. for (num_cols = pitch; num_cols > 0;
  66. num_cols -= RGB_PIXELSIZE * 16, inptr += RGB_PIXELSIZE * 16,
  67. outptr0 += 16, outptr1 += 16, outptr2 += 16) {
  68. #if __BIG_ENDIAN__
  69. /* Load 16 pixels == 48 or 64 bytes */
  70. offset = (size_t)inptr & 15;
  71. if (offset) {
  72. __vector unsigned char unaligned_shift_index;
  73. int bytes = num_cols + offset;
  74. if (bytes < (RGB_PIXELSIZE + 1) * 16 && (bytes & 15)) {
  75. /* Slow path to prevent buffer overread. Since there is no way to
  76. * read a partial AltiVec register, overread would occur on the last
  77. * chunk of the last image row if the right edge is not on a 16-byte
  78. * boundary. It could also occur on other rows if the bytes per row
  79. * is low enough. Since we can't determine whether we're on the last
  80. * image row, we have to assume every row is the last.
  81. */
  82. memcpy(tmpbuf, inptr, min(num_cols, RGB_PIXELSIZE * 16));
  83. rgb0 = vec_ld(0, tmpbuf);
  84. rgb1 = vec_ld(16, tmpbuf);
  85. rgb2 = vec_ld(32, tmpbuf);
  86. #if RGB_PIXELSIZE == 4
  87. rgb3 = vec_ld(48, tmpbuf);
  88. #endif
  89. } else {
  90. /* Fast path */
  91. rgb0 = vec_ld(0, inptr);
  92. if (bytes > 16)
  93. rgb1 = vec_ld(16, inptr);
  94. if (bytes > 32)
  95. rgb2 = vec_ld(32, inptr);
  96. if (bytes > 48)
  97. rgb3 = vec_ld(48, inptr);
  98. #if RGB_PIXELSIZE == 4
  99. if (bytes > 64)
  100. rgb4 = vec_ld(64, inptr);
  101. #endif
  102. unaligned_shift_index = vec_lvsl(0, inptr);
  103. rgb0 = vec_perm(rgb0, rgb1, unaligned_shift_index);
  104. rgb1 = vec_perm(rgb1, rgb2, unaligned_shift_index);
  105. rgb2 = vec_perm(rgb2, rgb3, unaligned_shift_index);
  106. #if RGB_PIXELSIZE == 4
  107. rgb3 = vec_perm(rgb3, rgb4, unaligned_shift_index);
  108. #endif
  109. }
  110. } else {
  111. #endif /* __BIG_ENDIAN__ */
  112. if (num_cols < RGB_PIXELSIZE * 16 && (num_cols & 15)) {
  113. /* Slow path */
  114. memcpy(tmpbuf, inptr, min(num_cols, RGB_PIXELSIZE * 16));
  115. rgb0 = VEC_LD(0, tmpbuf);
  116. rgb1 = VEC_LD(16, tmpbuf);
  117. rgb2 = VEC_LD(32, tmpbuf);
  118. #if RGB_PIXELSIZE == 4
  119. rgb3 = VEC_LD(48, tmpbuf);
  120. #endif
  121. } else {
  122. /* Fast path */
  123. rgb0 = VEC_LD(0, inptr);
  124. if (num_cols > 16)
  125. rgb1 = VEC_LD(16, inptr);
  126. if (num_cols > 32)
  127. rgb2 = VEC_LD(32, inptr);
  128. #if RGB_PIXELSIZE == 4
  129. if (num_cols > 48)
  130. rgb3 = VEC_LD(48, inptr);
  131. #endif
  132. }
  133. #if __BIG_ENDIAN__
  134. }
  135. #endif
  136. #if RGB_PIXELSIZE == 3
  137. /* rgb0 = R0 G0 B0 R1 G1 B1 R2 G2 B2 R3 G3 B3 R4 G4 B4 R5
  138. * rgb1 = G5 B5 R6 G6 B6 R7 G7 B7 R8 G8 B8 R9 G9 B9 Ra Ga
  139. * rgb2 = Ba Rb Gb Bb Rc Gc Bc Rd Gd Bd Re Ge Be Rf Gf Bf
  140. *
  141. * rgbg0 = R0 G0 R1 G1 R2 G2 R3 G3 B0 G0 B1 G1 B2 G2 B3 G3
  142. * rgbg1 = R4 G4 R5 G5 R6 G6 R7 G7 B4 G4 B5 G5 B6 G6 B7 G7
  143. * rgbg2 = R8 G8 R9 G9 Ra Ga Rb Gb B8 G8 B9 G9 Ba Ga Bb Gb
  144. * rgbg3 = Rc Gc Rd Gd Re Ge Rf Gf Bc Gc Bd Gd Be Ge Bf Gf
  145. */
  146. rgbg0 = vec_perm(rgb0, rgb0, (__vector unsigned char)RGBG_INDEX0);
  147. rgbg1 = vec_perm(rgb0, rgb1, (__vector unsigned char)RGBG_INDEX1);
  148. rgbg2 = vec_perm(rgb1, rgb2, (__vector unsigned char)RGBG_INDEX2);
  149. rgbg3 = vec_perm(rgb2, rgb2, (__vector unsigned char)RGBG_INDEX3);
  150. #else
  151. /* rgb0 = R0 G0 B0 X0 R1 G1 B1 X1 R2 G2 B2 X2 R3 G3 B3 X3
  152. * rgb1 = R4 G4 B4 X4 R5 G5 B5 X5 R6 G6 B6 X6 R7 G7 B7 X7
  153. * rgb2 = R8 G8 B8 X8 R9 G9 B9 X9 Ra Ga Ba Xa Rb Gb Bb Xb
  154. * rgb3 = Rc Gc Bc Xc Rd Gd Bd Xd Re Ge Be Xe Rf Gf Bf Xf
  155. *
  156. * rgbg0 = R0 G0 R1 G1 R2 G2 R3 G3 B0 G0 B1 G1 B2 G2 B3 G3
  157. * rgbg1 = R4 G4 R5 G5 R6 G6 R7 G7 B4 G4 B5 G5 B6 G6 B7 G7
  158. * rgbg2 = R8 G8 R9 G9 Ra Ga Rb Gb B8 G8 B9 G9 Ba Ga Bb Gb
  159. * rgbg3 = Rc Gc Rd Gd Re Ge Rf Gf Bc Gc Bd Gd Be Ge Bf Gf
  160. */
  161. rgbg0 = vec_perm(rgb0, rgb0, (__vector unsigned char)RGBG_INDEX);
  162. rgbg1 = vec_perm(rgb1, rgb1, (__vector unsigned char)RGBG_INDEX);
  163. rgbg2 = vec_perm(rgb2, rgb2, (__vector unsigned char)RGBG_INDEX);
  164. rgbg3 = vec_perm(rgb3, rgb3, (__vector unsigned char)RGBG_INDEX);
  165. #endif
  166. /* rg0 = R0 G0 R1 G1 R2 G2 R3 G3
  167. * bg0 = B0 G0 B1 G1 B2 G2 B3 G3
  168. * ...
  169. *
  170. * NOTE: We have to use vec_merge*() here because vec_unpack*() doesn't
  171. * support unsigned vectors.
  172. */
  173. rg0 = (__vector signed short)VEC_UNPACKHU(rgbg0);
  174. bg0 = (__vector signed short)VEC_UNPACKLU(rgbg0);
  175. rg1 = (__vector signed short)VEC_UNPACKHU(rgbg1);
  176. bg1 = (__vector signed short)VEC_UNPACKLU(rgbg1);
  177. rg2 = (__vector signed short)VEC_UNPACKHU(rgbg2);
  178. bg2 = (__vector signed short)VEC_UNPACKLU(rgbg2);
  179. rg3 = (__vector signed short)VEC_UNPACKHU(rgbg3);
  180. bg3 = (__vector signed short)VEC_UNPACKLU(rgbg3);
  181. /* (Original)
  182. * Y = 0.29900 * R + 0.58700 * G + 0.11400 * B
  183. * Cb = -0.16874 * R - 0.33126 * G + 0.50000 * B + CENTERJSAMPLE
  184. * Cr = 0.50000 * R - 0.41869 * G - 0.08131 * B + CENTERJSAMPLE
  185. *
  186. * (This implementation)
  187. * Y = 0.29900 * R + 0.33700 * G + 0.11400 * B + 0.25000 * G
  188. * Cb = -0.16874 * R - 0.33126 * G + 0.50000 * B + CENTERJSAMPLE
  189. * Cr = 0.50000 * R - 0.41869 * G - 0.08131 * B + CENTERJSAMPLE
  190. */
  191. /* Calculate Y values */
  192. y0 = vec_msums(rg0, pw_f0299_f0337, pd_onehalf);
  193. y1 = vec_msums(rg1, pw_f0299_f0337, pd_onehalf);
  194. y2 = vec_msums(rg2, pw_f0299_f0337, pd_onehalf);
  195. y3 = vec_msums(rg3, pw_f0299_f0337, pd_onehalf);
  196. y0 = vec_msums(bg0, pw_f0114_f0250, y0);
  197. y1 = vec_msums(bg1, pw_f0114_f0250, y1);
  198. y2 = vec_msums(bg2, pw_f0114_f0250, y2);
  199. y3 = vec_msums(bg3, pw_f0114_f0250, y3);
  200. /* Clever way to avoid 4 shifts + 2 packs. This packs the high word from
  201. * each dword into a new 16-bit vector, which is the equivalent of
  202. * descaling the 32-bit results (right-shifting by 16 bits) and then
  203. * packing them.
  204. */
  205. yl = vec_perm((__vector unsigned short)y0, (__vector unsigned short)y1,
  206. shift_pack_index);
  207. yh = vec_perm((__vector unsigned short)y2, (__vector unsigned short)y3,
  208. shift_pack_index);
  209. y = vec_pack(yl, yh);
  210. vec_st(y, 0, outptr0);
  211. /* Calculate Cb values */
  212. cb0 = vec_msums(rg0, pw_mf016_mf033, pd_onehalfm1_cj);
  213. cb1 = vec_msums(rg1, pw_mf016_mf033, pd_onehalfm1_cj);
  214. cb2 = vec_msums(rg2, pw_mf016_mf033, pd_onehalfm1_cj);
  215. cb3 = vec_msums(rg3, pw_mf016_mf033, pd_onehalfm1_cj);
  216. cb0 = (__vector int)vec_msum((__vector unsigned short)bg0, pw_f050_f000,
  217. (__vector unsigned int)cb0);
  218. cb1 = (__vector int)vec_msum((__vector unsigned short)bg1, pw_f050_f000,
  219. (__vector unsigned int)cb1);
  220. cb2 = (__vector int)vec_msum((__vector unsigned short)bg2, pw_f050_f000,
  221. (__vector unsigned int)cb2);
  222. cb3 = (__vector int)vec_msum((__vector unsigned short)bg3, pw_f050_f000,
  223. (__vector unsigned int)cb3);
  224. cbl = vec_perm((__vector unsigned short)cb0,
  225. (__vector unsigned short)cb1, shift_pack_index);
  226. cbh = vec_perm((__vector unsigned short)cb2,
  227. (__vector unsigned short)cb3, shift_pack_index);
  228. cb = vec_pack(cbl, cbh);
  229. vec_st(cb, 0, outptr1);
  230. /* Calculate Cr values */
  231. cr0 = vec_msums(bg0, pw_mf008_mf041, pd_onehalfm1_cj);
  232. cr1 = vec_msums(bg1, pw_mf008_mf041, pd_onehalfm1_cj);
  233. cr2 = vec_msums(bg2, pw_mf008_mf041, pd_onehalfm1_cj);
  234. cr3 = vec_msums(bg3, pw_mf008_mf041, pd_onehalfm1_cj);
  235. cr0 = (__vector int)vec_msum((__vector unsigned short)rg0, pw_f050_f000,
  236. (__vector unsigned int)cr0);
  237. cr1 = (__vector int)vec_msum((__vector unsigned short)rg1, pw_f050_f000,
  238. (__vector unsigned int)cr1);
  239. cr2 = (__vector int)vec_msum((__vector unsigned short)rg2, pw_f050_f000,
  240. (__vector unsigned int)cr2);
  241. cr3 = (__vector int)vec_msum((__vector unsigned short)rg3, pw_f050_f000,
  242. (__vector unsigned int)cr3);
  243. crl = vec_perm((__vector unsigned short)cr0,
  244. (__vector unsigned short)cr1, shift_pack_index);
  245. crh = vec_perm((__vector unsigned short)cr2,
  246. (__vector unsigned short)cr3, shift_pack_index);
  247. cr = vec_pack(crl, crh);
  248. vec_st(cr, 0, outptr2);
  249. }
  250. }
  251. }