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  1. /*
  2. * Originally provided by Intel at Application Note AP-922.
  3. *
  4. * Column code adapted from Peter Gubanov.
  5. * Copyright (c) 2000-2001 Peter Gubanov <peter@elecard.net.ru>
  6. * http://www.elecard.com/peter/idct.shtml
  7. * rounding trick copyright (c) 2000 Michel Lespinasse <walken@zoy.org>
  8. *
  9. * MMI port and (c) 2002 by Leon van Stuivenberg
  10. *
  11. * This library is free software; you can redistribute it and/or
  12. * modify it under the terms of the GNU Lesser General Public
  13. * License as published by the Free Software Foundation; either
  14. * version 2 of the License, or (at your option) any later version.
  15. *
  16. * This library is distributed in the hope that it will be useful,
  17. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  18. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  19. * Lesser General Public License for more details.
  20. *
  21. * You should have received a copy of the GNU Lesser General Public
  22. * License along with this library; if not, write to the Free Software
  23. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  24. *
  25. */
  26. #include "../common.h"
  27. #include "../dsputil.h"
  28. #include "mmi.h"
  29. #define BITS_INV_ACC 5 // 4 or 5 for IEEE
  30. #define SHIFT_INV_ROW (16 - BITS_INV_ACC)
  31. #define SHIFT_INV_COL (1 + BITS_INV_ACC)
  32. #define TG1 6518
  33. #define TG2 13573
  34. #define TG3 21895
  35. #define CS4 23170
  36. #define ROUNDER_0 0
  37. #define ROUNDER_1 16
  38. #define TAB_i_04 (32+0)
  39. #define TAB_i_17 (32+64)
  40. #define TAB_i_26 (32+128)
  41. #define TAB_i_35 (32+192)
  42. #define TG_1_16 (32+256+0)
  43. #define TG_2_16 (32+256+16)
  44. #define TG_3_16 (32+256+32)
  45. #define COS_4_16 (32+256+48)
  46. #define CLIPMAX (32+256+64+0)
  47. static short consttable[] align16 = {
  48. /* rounder 0*/ // assume SHIFT_INV_ROW == 11
  49. 0x3ff, 1, 0x3ff, 1, 0x3ff, 1, 0x3ff, 1,
  50. /* rounder 1*/
  51. 0x3ff, 0, 0x3ff, 0, 0x3ff, 0, 0x3ff, 0,
  52. /* row 0/4*/
  53. 16384, 21407, -16384, -21407, 22725, 19266, -22725, -12873,
  54. 8867, 16384, 8867, 16384, 4520, 12873, -4520, 19266,
  55. 16384, -8867, 16384, -8867, 12873, -22725, 19266, -22725,
  56. 21407, -16384, -21407, 16384, 19266, 4520, -12873, 4520,
  57. /* row 1/7*/
  58. 22725, 29692, -22725, -29692, 31521, 26722, -31521, -17855,
  59. 12299, 22725, 12299, 22725, 6270, 17855, -6270, 26722,
  60. 22725, -12299, 22725, -12299, 17855, -31521, 26722, -31521,
  61. 29692, -22725, -29692, 22725, 26722, 6270, -17855, 6270,
  62. /* row 2/6*/
  63. 21407, 27969, -21407, -27969, 29692, 25172, -29692, -16819,
  64. 11585, 21407, 11585, 21407, 5906, 16819, -5906, 25172,
  65. 21407, -11585, 21407, -11585, 16819, -29692, 25172, -29692,
  66. 27969, -21407, -27969, 21407, 25172, 5906, -16819, 5906,
  67. /*row 3/5*/
  68. 19266, 25172, -19266, -25172, 26722, 22654, -26722, -15137,
  69. 10426, 19266, 10426, 19266, 5315, 15137, -5315, 22654,
  70. 19266, -10426, 19266, -10426, 15137, -26722, 22654, -26722,
  71. 25172, -19266, -25172, 19266, 22654, 5315, -15137, 5315,
  72. /*column constants*/
  73. TG1, TG1, TG1, TG1, TG1, TG1, TG1, TG1,
  74. TG2, TG2, TG2, TG2, TG2, TG2, TG2, TG2,
  75. TG3, TG3, TG3, TG3, TG3, TG3, TG3, TG3,
  76. CS4, CS4, CS4, CS4, CS4, CS4, CS4, CS4,
  77. /* clamp */
  78. 255, 255, 255, 255, 255, 255, 255, 255
  79. };
  80. #define DCT_8_INV_ROW1(blk, rowoff, taboff, rnd, outreg) { \
  81. lq(blk, rowoff, $16); /* r16 = x7 x5 x3 x1 x6 x4 x2 x0 */ \
  82. /*slot*/ \
  83. lq($24, 0+taboff, $17); /* r17 = w */ \
  84. /*delay slot $16*/ \
  85. lq($24, 16+taboff, $18);/* r18 = w */ \
  86. prevh($16, $2); /* r2 = x1 x3 x5 x7 x0 x2 x4 x6 */ \
  87. lq($24, 32+taboff, $19);/* r19 = w */ \
  88. phmadh($17, $16, $17); /* r17 = b1"b0'a1"a0' */ \
  89. lq($24, 48+taboff, $20);/* r20 = w */ \
  90. phmadh($18, $2, $18); /* r18 = b1'b0"a1'a0" */ \
  91. phmadh($19, $16, $19); /* r19 = b3"b2'a3"a2' */ \
  92. phmadh($20, $2, $20); /* r20 = b3'b2"a3'a2" */ \
  93. paddw($17, $18, $17); /* r17 = (b1)(b0)(a1)(a0) */ \
  94. paddw($19, $20, $19); /* r19 = (b3)(b2)(a3)(a2) */ \
  95. pcpyld($19, $17, $18); /* r18 = (a3)(a2)(a1)(a0) */ \
  96. pcpyud($17, $19, $20); /* r20 = (b3)(b2)(b1)(b0) */ \
  97. paddw($18, rnd, $18); /* r18 = (a3)(a2)(a1)(a0) */\
  98. paddw($18, $20, $17); /* r17 = ()()()(a0+b0) */ \
  99. psubw($18, $20, $20); /* r20 = ()()()(a0-b0) */ \
  100. psraw($17, SHIFT_INV_ROW, $17); /* r17 = (y3 y2 y1 y0) */ \
  101. psraw($20, SHIFT_INV_ROW, $20); /* r20 = (y4 y5 y6 y7) */ \
  102. ppach($20, $17, outreg);/* out = y4 y5 y6 y7 y3 y2 y1 y0 Note order */ \
  103. \
  104. prevh(outreg, $2); \
  105. pcpyud($2, $2, $2); \
  106. pcpyld($2, outreg, outreg); \
  107. }
  108. #define DCT_8_INV_COL8() \
  109. \
  110. lq($24, TG_3_16, $2); /* r2 = tn3 */ \
  111. \
  112. pmulth($11, $2, $17); /* r17 = x3 * tn3 (6420) */ \
  113. psraw($17, 15, $17); \
  114. pmfhl_uw($3); /* r3 = 7531 */ \
  115. psraw($3, 15, $3); \
  116. pinteh($3, $17, $17); /* r17 = x3 * tn3 */ \
  117. psubh($17, $13, $17); /* r17 = tm35 */ \
  118. \
  119. pmulth($13, $2, $18); /* r18 = x5 * tn3 (6420) */ \
  120. psraw($18, 15, $18); \
  121. pmfhl_uw($3); /* r3 = 7531 */ \
  122. psraw($3, 15, $3); \
  123. pinteh($3, $18, $18); /* r18 = x5 * tn3 */ \
  124. paddh($18, $11, $18); /* r18 = tp35 */ \
  125. \
  126. lq($24, TG_1_16, $2); /* r2 = tn1 */ \
  127. \
  128. pmulth($15, $2, $19); /* r19 = x7 * tn1 (6420) */ \
  129. psraw($19, 15, $19); \
  130. pmfhl_uw($3); /* r3 = 7531 */ \
  131. psraw($3, 15, $3); \
  132. pinteh($3, $19, $19); /* r19 = x7 * tn1 */ \
  133. paddh($19, $9, $19); /* r19 = tp17 */ \
  134. \
  135. pmulth($9, $2, $20); /* r20 = x1 * tn1 (6420) */ \
  136. psraw($20, 15, $20); \
  137. pmfhl_uw($3); /* r3 = 7531 */ \
  138. psraw($3, 15, $3); \
  139. pinteh($3, $20, $20); /* r20 = x1 * tn1 */ \
  140. psubh($20, $15, $20); /* r20 = tm17 */ \
  141. \
  142. psubh($19, $18, $3); /* r3 = t1 */ \
  143. paddh($20, $17, $16); /* r16 = t2 */ \
  144. psubh($20, $17, $23); /* r23 = b3 */ \
  145. paddh($19, $18, $20); /* r20 = b0 */ \
  146. \
  147. lq($24, COS_4_16, $2); /* r2 = cs4 */ \
  148. \
  149. paddh($3, $16, $21); /* r21 = t1+t2 */ \
  150. psubh($3, $16, $22); /* r22 = t1-t2 */ \
  151. \
  152. pmulth($21, $2, $21); /* r21 = cs4 * (t1+t2) 6420 */ \
  153. psraw($21, 15, $21); \
  154. pmfhl_uw($3); /* r3 = 7531 */ \
  155. psraw($3, 15, $3); \
  156. pinteh($3, $21, $21); /* r21 = b1 */ \
  157. \
  158. pmulth($22, $2, $22); /* r22 = cs4 * (t1-t2) 6420 */ \
  159. psraw($22, 15, $22); \
  160. pmfhl_uw($3); /* r3 = 7531 */ \
  161. psraw($3, 15, $3); \
  162. pinteh($3, $22, $22); /* r22 = b2 */ \
  163. \
  164. lq($24, TG_2_16, $2); /* r2 = tn2 */ \
  165. \
  166. pmulth($10, $2, $17); /* r17 = x2 * tn2 (6420) */ \
  167. psraw($17, 15, $17); \
  168. pmfhl_uw($3); /* r3 = 7531 */ \
  169. psraw($3, 15, $3); \
  170. pinteh($3, $17, $17); /* r17 = x3 * tn3 */ \
  171. psubh($17, $14, $17); /* r17 = tm26 */ \
  172. \
  173. pmulth($14, $2, $18); /* r18 = x6 * tn2 (6420) */ \
  174. psraw($18, 15, $18); \
  175. pmfhl_uw($3); /* r3 = 7531 */ \
  176. psraw($3, 15, $3); \
  177. pinteh($3, $18, $18); /* r18 = x6 * tn2 */ \
  178. paddh($18, $10, $18); /* r18 = tp26 */ \
  179. \
  180. paddh($8, $12, $2); /* r2 = tp04 */ \
  181. psubh($8, $12, $3); /* r3 = tm04 */ \
  182. \
  183. paddh($2, $18, $16); /* r16 = a0 */ \
  184. psubh($2, $18, $19); /* r19 = a3 */ \
  185. psubh($3, $17, $18); /* r18 = a2 */ \
  186. paddh($3, $17, $17); /* r17 = a1 */
  187. #define DCT_8_INV_COL8_STORE(blk) \
  188. \
  189. paddh($16, $20, $2); /* y0 a0+b0 */ \
  190. psubh($16, $20, $16); /* y7 a0-b0 */ \
  191. psrah($2, SHIFT_INV_COL, $2); \
  192. psrah($16, SHIFT_INV_COL, $16); \
  193. sq($2, 0, blk); \
  194. sq($16, 112, blk); \
  195. \
  196. paddh($17, $21, $3); /* y1 a1+b1 */ \
  197. psubh($17, $21, $17); /* y6 a1-b1 */ \
  198. psrah($3, SHIFT_INV_COL, $3); \
  199. psrah($17, SHIFT_INV_COL, $17); \
  200. sq($3, 16, blk); \
  201. sq($17, 96, blk); \
  202. \
  203. paddh($18, $22, $2); /* y2 a2+b2 */ \
  204. psubh($18, $22, $18); /* y5 a2-b2 */ \
  205. psrah($2, SHIFT_INV_COL, $2); \
  206. psrah($18, SHIFT_INV_COL, $18); \
  207. sq($2, 32, blk); \
  208. sq($18, 80, blk); \
  209. \
  210. paddh($19, $23, $3); /* y3 a3+b3 */ \
  211. psubh($19, $23, $19); /* y4 a3-b3 */ \
  212. psrah($3, SHIFT_INV_COL, $3); \
  213. psrah($19, SHIFT_INV_COL, $19); \
  214. sq($3, 48, blk); \
  215. sq($19, 64, blk);
  216. #define DCT_8_INV_COL8_PMS() \
  217. paddh($16, $20, $2); /* y0 a0+b0 */ \
  218. psubh($16, $20, $20); /* y7 a0-b0 */ \
  219. psrah($2, SHIFT_INV_COL, $16); \
  220. psrah($20, SHIFT_INV_COL, $20); \
  221. \
  222. paddh($17, $21, $3); /* y1 a1+b1 */ \
  223. psubh($17, $21, $21); /* y6 a1-b1 */ \
  224. psrah($3, SHIFT_INV_COL, $17); \
  225. psrah($21, SHIFT_INV_COL, $21); \
  226. \
  227. paddh($18, $22, $2); /* y2 a2+b2 */ \
  228. psubh($18, $22, $22); /* y5 a2-b2 */ \
  229. psrah($2, SHIFT_INV_COL, $18); \
  230. psrah($22, SHIFT_INV_COL, $22); \
  231. \
  232. paddh($19, $23, $3); /* y3 a3+b3 */ \
  233. psubh($19, $23, $23); /* y4 a3-b3 */ \
  234. psrah($3, SHIFT_INV_COL, $19); \
  235. psrah($23, SHIFT_INV_COL, $23);
  236. #define PUT(rs) \
  237. pminh(rs, $11, $2); \
  238. pmaxh($2, $0, $2); \
  239. ppacb($0, $2, $2); \
  240. sd3(2, 0, 4); \
  241. __asm__ __volatile__ ("add $4, $5, $4");
  242. #define DCT_8_INV_COL8_PUT() \
  243. PUT($16); \
  244. PUT($17); \
  245. PUT($18); \
  246. PUT($19); \
  247. PUT($23); \
  248. PUT($22); \
  249. PUT($21); \
  250. PUT($20);
  251. #define ADD(rs) \
  252. ld3(4, 0, 2); \
  253. pextlb($0, $2, $2); \
  254. paddh($2, rs, $2); \
  255. pminh($2, $11, $2); \
  256. pmaxh($2, $0, $2); \
  257. ppacb($0, $2, $2); \
  258. sd3(2, 0, 4); \
  259. __asm__ __volatile__ ("add $4, $5, $4");
  260. /*fixme: schedule*/
  261. #define DCT_8_INV_COL8_ADD() \
  262. ADD($16); \
  263. ADD($17); \
  264. ADD($18); \
  265. ADD($19); \
  266. ADD($23); \
  267. ADD($22); \
  268. ADD($21); \
  269. ADD($20);
  270. void ff_mmi_idct(int16_t * block)
  271. {
  272. /* $4 = block */
  273. __asm__ __volatile__("la $24, %0"::"m"(consttable[0]));
  274. lq($24, ROUNDER_0, $8);
  275. lq($24, ROUNDER_1, $7);
  276. DCT_8_INV_ROW1($4, 0, TAB_i_04, $8, $8);
  277. DCT_8_INV_ROW1($4, 16, TAB_i_17, $7, $9);
  278. DCT_8_INV_ROW1($4, 32, TAB_i_26, $7, $10);
  279. DCT_8_INV_ROW1($4, 48, TAB_i_35, $7, $11);
  280. DCT_8_INV_ROW1($4, 64, TAB_i_04, $7, $12);
  281. DCT_8_INV_ROW1($4, 80, TAB_i_35, $7, $13);
  282. DCT_8_INV_ROW1($4, 96, TAB_i_26, $7, $14);
  283. DCT_8_INV_ROW1($4, 112, TAB_i_17, $7, $15);
  284. DCT_8_INV_COL8();
  285. DCT_8_INV_COL8_STORE($4);
  286. //let savedtemp regs be saved
  287. __asm__ __volatile__(" ":::"$16", "$17", "$18", "$19", "$20", "$21", "$22", "$23");
  288. }
  289. void ff_mmi_idct_put(uint8_t *dest, int line_size, DCTELEM *block)
  290. {
  291. /* $4 = dest, $5 = line_size, $6 = block */
  292. __asm__ __volatile__("la $24, %0"::"m"(consttable[0]));
  293. lq($24, ROUNDER_0, $8);
  294. lq($24, ROUNDER_1, $7);
  295. DCT_8_INV_ROW1($6, 0, TAB_i_04, $8, $8);
  296. DCT_8_INV_ROW1($6, 16, TAB_i_17, $7, $9);
  297. DCT_8_INV_ROW1($6, 32, TAB_i_26, $7, $10);
  298. DCT_8_INV_ROW1($6, 48, TAB_i_35, $7, $11);
  299. DCT_8_INV_ROW1($6, 64, TAB_i_04, $7, $12);
  300. DCT_8_INV_ROW1($6, 80, TAB_i_35, $7, $13);
  301. DCT_8_INV_ROW1($6, 96, TAB_i_26, $7, $14);
  302. DCT_8_INV_ROW1($6, 112, TAB_i_17, $7, $15);
  303. DCT_8_INV_COL8();
  304. lq($24, CLIPMAX, $11);
  305. DCT_8_INV_COL8_PMS();
  306. DCT_8_INV_COL8_PUT();
  307. //let savedtemp regs be saved
  308. __asm__ __volatile__(" ":::"$16", "$17", "$18", "$19", "$20", "$21", "$22", "$23");
  309. }
  310. void ff_mmi_idct_add(uint8_t *dest, int line_size, DCTELEM *block)
  311. {
  312. /* $4 = dest, $5 = line_size, $6 = block */
  313. __asm__ __volatile__("la $24, %0"::"m"(consttable[0]));
  314. lq($24, ROUNDER_0, $8);
  315. lq($24, ROUNDER_1, $7);
  316. DCT_8_INV_ROW1($6, 0, TAB_i_04, $8, $8);
  317. DCT_8_INV_ROW1($6, 16, TAB_i_17, $7, $9);
  318. DCT_8_INV_ROW1($6, 32, TAB_i_26, $7, $10);
  319. DCT_8_INV_ROW1($6, 48, TAB_i_35, $7, $11);
  320. DCT_8_INV_ROW1($6, 64, TAB_i_04, $7, $12);
  321. DCT_8_INV_ROW1($6, 80, TAB_i_35, $7, $13);
  322. DCT_8_INV_ROW1($6, 96, TAB_i_26, $7, $14);
  323. DCT_8_INV_ROW1($6, 112, TAB_i_17, $7, $15);
  324. DCT_8_INV_COL8();
  325. lq($24, CLIPMAX, $11);
  326. DCT_8_INV_COL8_PMS();
  327. DCT_8_INV_COL8_ADD();
  328. //let savedtemp regs be saved
  329. __asm__ __volatile__(" ":::"$16", "$17", "$18", "$19", "$20", "$21", "$22", "$23");
  330. }