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cgemv_t_4.c 22 kB

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  1. /***************************************************************************
  2. Copyright (c) 2019, The OpenBLAS Project
  3. All rights reserved.
  4. Redistribution and use in source and binary forms, with or without
  5. modification, are permitted provided that the following conditions are
  6. met:
  7. 1. Redistributions of source code must retain the above copyright
  8. notice, this list of conditions and the following disclaimer.
  9. 2. Redistributions in binary form must reproduce the above copyright
  10. notice, this list of conditions and the following disclaimer in
  11. the documentation and/or other materials provided with the
  12. distribution.
  13. 3. Neither the name of the OpenBLAS project nor the names of
  14. its contributors may be used to endorse or promote products
  15. derived from this software without specific prior written permission.
  16. THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
  17. AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
  18. IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
  19. ARE DISCLAIMED. IN NO EVENT SHALL THE OPENBLAS PROJECT OR CONTRIBUTORS BE
  20. LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
  21. DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
  22. SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
  23. CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
  24. OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE
  25. USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
  26. *****************************************************************************/
  27. #include "common.h"
  28. #define NBMAX 2048
  29. static void cgemv_kernel_4x4(BLASLONG n, FLOAT **ap, FLOAT *x, FLOAT *y,
  30. FLOAT *alpha) {
  31. register FLOAT *ap0 = ap[0];
  32. register FLOAT *ap1 = ap[1];
  33. register FLOAT *ap2 = ap[2];
  34. register FLOAT *ap3 = ap[3];
  35. __asm__("vzero %%v16\n\t"
  36. "vzero %%v17\n\t"
  37. "vzero %%v18\n\t"
  38. "vzero %%v19\n\t"
  39. "vzero %%v20\n\t"
  40. "vzero %%v21\n\t"
  41. "vzero %%v22\n\t"
  42. "vzero %%v23\n\t"
  43. "vleib %%v2,0,0\n\t"
  44. "vleib %%v2,1,1\n\t"
  45. "vleib %%v2,2,2\n\t"
  46. "vleib %%v2,3,3\n\t"
  47. "vleib %%v2,0,4\n\t"
  48. "vleib %%v2,1,5\n\t"
  49. "vleib %%v2,2,6\n\t"
  50. "vleib %%v2,3,7\n\t"
  51. "vleib %%v2,8,8\n\t"
  52. "vleib %%v2,9,9\n\t"
  53. "vleib %%v2,10,10\n\t"
  54. "vleib %%v2,11,11\n\t"
  55. "vleib %%v2,8,12\n\t"
  56. "vleib %%v2,9,13\n\t"
  57. "vleib %%v2,10,14\n\t"
  58. "vleib %%v2,11,15\n\t"
  59. "vleib %%v3,4,0\n\t"
  60. "vleib %%v3,5,1\n\t"
  61. "vleib %%v3,6,2\n\t"
  62. "vleib %%v3,7,3\n\t"
  63. "vleib %%v3,4,4\n\t"
  64. "vleib %%v3,5,5\n\t"
  65. "vleib %%v3,6,6\n\t"
  66. "vleib %%v3,7,7\n\t"
  67. "vleib %%v3,12,8\n\t"
  68. "vleib %%v3,13,9\n\t"
  69. "vleib %%v3,14,10\n\t"
  70. "vleib %%v3,15,11\n\t"
  71. "vleib %%v3,12,12\n\t"
  72. "vleib %%v3,13,13\n\t"
  73. "vleib %%v3,14,14\n\t"
  74. "vleib %%v3,15,15\n\t"
  75. "xgr %%r1,%%r1\n\t"
  76. "srlg %[n],%[n],1\n\t"
  77. "0:\n\t"
  78. "pfd 1,1024(%%r1,%[ap0])\n\t"
  79. "pfd 1,1024(%%r1,%[ap1])\n\t"
  80. "pfd 1,1024(%%r1,%[ap2])\n\t"
  81. "pfd 1,1024(%%r1,%[ap3])\n\t"
  82. "pfd 1,1024(%%r1,%[x])\n\t"
  83. "vl %%v0,0(%%r1,%[x])\n\t"
  84. #if ( !defined(CONJ) && !defined(XCONJ) ) || ( defined(CONJ) && defined(XCONJ) )
  85. "vlef %%v1,4(%%r1,%[x]),0\n\t"
  86. "vlef %%v1,12(%%r1,%[x]),2\n\t"
  87. "vflcsb %%v1,%%v1\n\t"
  88. "vlef %%v1,0(%%r1,%[x]),1\n\t"
  89. "vlef %%v1,8(%%r1,%[x]),3\n\t"
  90. #else
  91. "vlef %%v1,0(%%r1,%[x]),1\n\t"
  92. "vlef %%v1,8(%%r1,%[x]),3\n\t"
  93. "vflcsb %%v1,%%v1\n\t"
  94. "vlef %%v1,4(%%r1,%[x]),0\n\t"
  95. "vlef %%v1,12(%%r1,%[x]),2\n\t"
  96. #endif
  97. "vl %%v24,0(%%r1,%[ap0])\n\t"
  98. "vperm %%v25,%%v24,%%v24,%%v3\n\t"
  99. "vperm %%v24,%%v24,%%v24,%%v2\n\t"
  100. "vl %%v26,0(%%r1,%[ap1])\n\t"
  101. "vperm %%v27,%%v26,%%v26,%%v3\n\t"
  102. "vperm %%v26,%%v26,%%v26,%%v2\n\t"
  103. "vl %%v28,0(%%r1,%[ap2])\n\t"
  104. "vperm %%v29,%%v28,%%v28,%%v3\n\t"
  105. "vperm %%v28,%%v28,%%v28,%%v2\n\t"
  106. "vl %%v30,0(%%r1,%[ap3])\n\t"
  107. "vperm %%v31,%%v30,%%v30,%%v3\n\t"
  108. "vperm %%v30,%%v30,%%v30,%%v2\n\t"
  109. "vfmasb %%v16,%%v24,%%v0,%%v16\n\t"
  110. "vfmasb %%v20,%%v25,%%v1,%%v20\n\t"
  111. "vfmasb %%v17,%%v26,%%v0,%%v17\n\t"
  112. "vfmasb %%v21,%%v27,%%v1,%%v21\n\t"
  113. "vfmasb %%v18,%%v28,%%v0,%%v18\n\t"
  114. "vfmasb %%v22,%%v29,%%v1,%%v22\n\t"
  115. "vfmasb %%v19,%%v30,%%v0,%%v19\n\t"
  116. "vfmasb %%v23,%%v31,%%v1,%%v23\n\t"
  117. "agfi %%r1,16\n\t"
  118. "brctg %[n],0b\n\t"
  119. "vfasb %%v16,%%v16,%%v20\n\t"
  120. "vfasb %%v17,%%v17,%%v21\n\t"
  121. "vfasb %%v18,%%v18,%%v22\n\t"
  122. "vfasb %%v19,%%v19,%%v23\n\t"
  123. "vrepg %%v20,%%v16,1\n\t"
  124. "vrepg %%v21,%%v17,1\n\t"
  125. "vrepg %%v22,%%v18,1\n\t"
  126. "vrepg %%v23,%%v19,1\n\t"
  127. "vfasb %%v16,%%v16,%%v20\n\t"
  128. "vfasb %%v17,%%v17,%%v21\n\t"
  129. "vfasb %%v18,%%v18,%%v22\n\t"
  130. "vfasb %%v19,%%v19,%%v23\n\t"
  131. "vmrhg %%v16,%%v16,%%v17\n\t"
  132. "vmrhg %%v17,%%v18,%%v19\n\t"
  133. "verllg %%v18,%%v16,32\n\t"
  134. "verllg %%v19,%%v17,32\n\t"
  135. #if !defined(XCONJ)
  136. "vlrepf %%v20,0(%[alpha])\n\t"
  137. "vlef %%v21,4(%[alpha]),0\n\t"
  138. "vlef %%v21,4(%[alpha]),2\n\t"
  139. "vflcsb %%v21,%%v21\n\t"
  140. "vlef %%v21,4(%[alpha]),1\n\t"
  141. "vlef %%v21,4(%[alpha]),3\n\t"
  142. #else
  143. "vlef %%v20,0(%[alpha]),1\n\t"
  144. "vlef %%v20,0(%[alpha]),3\n\t"
  145. "vflcsb %%v20,%%v20\n\t"
  146. "vlef %%v20,0(%[alpha]),0\n\t"
  147. "vlef %%v20,0(%[alpha]),2\n\t"
  148. "vlrepf %%v21,4(%[alpha])\n\t"
  149. #endif
  150. "vl %%v22,0(%[y])\n\t"
  151. "vl %%v23,16(%[y])\n\t"
  152. "vfmasb %%v22,%%v16,%%v20,%%v22\n\t"
  153. "vfmasb %%v22,%%v18,%%v21,%%v22\n\t"
  154. "vfmasb %%v23,%%v17,%%v20,%%v23\n\t"
  155. "vfmasb %%v23,%%v19,%%v21,%%v23\n\t"
  156. "vst %%v22,0(%[y])\n\t"
  157. "vst %%v23,16(%[y])"
  158. : "+m"(*(FLOAT (*)[8]) y),[n] "+&r"(n)
  159. : [y] "a"(y), "m"(*(const FLOAT (*)[n * 2]) ap0),[ap0] "a"(ap0),
  160. "m"(*(const FLOAT (*)[n * 2]) ap1),[ap1] "a"(ap1),
  161. "m"(*(const FLOAT (*)[n * 2]) ap2),[ap2] "a"(ap2),
  162. "m"(*(const FLOAT (*)[n * 2]) ap3),[ap3] "a"(ap3),
  163. "m"(*(const FLOAT (*)[n * 2]) x),[x] "a"(x),
  164. "m"(*(const FLOAT (*)[2]) alpha),[alpha] "a"(alpha)
  165. : "cc", "r1", "v0", "v1", "v2", "v3", "v16", "v17", "v18", "v19", "v20",
  166. "v21", "v22", "v23", "v24", "v25", "v26", "v27", "v28", "v29", "v30",
  167. "v31");
  168. }
  169. static void cgemv_kernel_4x2(BLASLONG n, FLOAT **ap, FLOAT *x, FLOAT *y,
  170. FLOAT *alpha) {
  171. register FLOAT *ap0 = ap[0];
  172. register FLOAT *ap1 = ap[1];
  173. __asm__("vzero %%v16\n\t"
  174. "vzero %%v17\n\t"
  175. "vzero %%v18\n\t"
  176. "vzero %%v19\n\t"
  177. "vleib %%v2,0,0\n\t"
  178. "vleib %%v2,1,1\n\t"
  179. "vleib %%v2,2,2\n\t"
  180. "vleib %%v2,3,3\n\t"
  181. "vleib %%v2,0,4\n\t"
  182. "vleib %%v2,1,5\n\t"
  183. "vleib %%v2,2,6\n\t"
  184. "vleib %%v2,3,7\n\t"
  185. "vleib %%v2,8,8\n\t"
  186. "vleib %%v2,9,9\n\t"
  187. "vleib %%v2,10,10\n\t"
  188. "vleib %%v2,11,11\n\t"
  189. "vleib %%v2,8,12\n\t"
  190. "vleib %%v2,9,13\n\t"
  191. "vleib %%v2,10,14\n\t"
  192. "vleib %%v2,11,15\n\t"
  193. "vleib %%v3,4,0\n\t"
  194. "vleib %%v3,5,1\n\t"
  195. "vleib %%v3,6,2\n\t"
  196. "vleib %%v3,7,3\n\t"
  197. "vleib %%v3,4,4\n\t"
  198. "vleib %%v3,5,5\n\t"
  199. "vleib %%v3,6,6\n\t"
  200. "vleib %%v3,7,7\n\t"
  201. "vleib %%v3,12,8\n\t"
  202. "vleib %%v3,13,9\n\t"
  203. "vleib %%v3,14,10\n\t"
  204. "vleib %%v3,15,11\n\t"
  205. "vleib %%v3,12,12\n\t"
  206. "vleib %%v3,13,13\n\t"
  207. "vleib %%v3,14,14\n\t"
  208. "vleib %%v3,15,15\n\t"
  209. "xgr %%r1,%%r1\n\t"
  210. "srlg %[n],%[n],1\n\t"
  211. "0:\n\t"
  212. "pfd 1,1024(%%r1,%[ap0])\n\t"
  213. "pfd 1,1024(%%r1,%[ap1])\n\t"
  214. "pfd 1,1024(%%r1,%[x])\n\t"
  215. "vl %%v0,0(%%r1,%[x])\n\t"
  216. #if ( !defined(CONJ) && !defined(XCONJ) ) || ( defined(CONJ) && defined(XCONJ) )
  217. "vlef %%v1,4(%%r1,%[x]),0\n\t"
  218. "vlef %%v1,12(%%r1,%[x]),2\n\t"
  219. "vflcsb %%v1,%%v1\n\t"
  220. "vlef %%v1,0(%%r1,%[x]),1\n\t"
  221. "vlef %%v1,8(%%r1,%[x]),3\n\t"
  222. #else
  223. "vlef %%v1,0(%%r1,%[x]),1\n\t"
  224. "vlef %%v1,8(%%r1,%[x]),3\n\t"
  225. "vflcsb %%v1,%%v1\n\t"
  226. "vlef %%v1,4(%%r1,%[x]),0\n\t"
  227. "vlef %%v1,12(%%r1,%[x]),2\n\t"
  228. #endif
  229. "vl %%v20,0(%%r1,%[ap0])\n\t"
  230. "vperm %%v21,%%v20,%%v20,%%v3\n\t"
  231. "vperm %%v20,%%v20,%%v20,%%v2\n\t"
  232. "vl %%v22,0(%%r1,%[ap1])\n\t"
  233. "vperm %%v23,%%v22,%%v22,%%v3\n\t"
  234. "vperm %%v22,%%v22,%%v22,%%v2\n\t"
  235. "vfmasb %%v16,%%v20,%%v0,%%v16\n\t"
  236. "vfmasb %%v18,%%v21,%%v1,%%v18\n\t"
  237. "vfmasb %%v17,%%v22,%%v0,%%v17\n\t"
  238. "vfmasb %%v19,%%v23,%%v1,%%v19\n\t"
  239. "agfi %%r1,16\n\t"
  240. "brctg %[n],0b\n\t"
  241. "vfasb %%v16,%%v16,%%v18\n\t"
  242. "vfasb %%v17,%%v17,%%v19\n\t"
  243. "vrepg %%v18,%%v16,1\n\t"
  244. "vrepg %%v19,%%v17,1\n\t"
  245. "vfasb %%v16,%%v16,%%v18\n\t"
  246. "vfasb %%v17,%%v17,%%v19\n\t"
  247. "vmrhg %%v16,%%v16,%%v17\n\t"
  248. "verllg %%v17,%%v16,32\n\t"
  249. #if !defined(XCONJ)
  250. "vlrepf %%v18,0(%[alpha])\n\t"
  251. "vlef %%v19,4(%[alpha]),0\n\t"
  252. "vlef %%v19,4(%[alpha]),2\n\t"
  253. "vflcsb %%v19,%%v19\n\t"
  254. "vlef %%v19,4(%[alpha]),1\n\t"
  255. "vlef %%v19,4(%[alpha]),3\n\t"
  256. #else
  257. "vlef %%v18,0(%[alpha]),1\n\t"
  258. "vlef %%v18,0(%[alpha]),3\n\t"
  259. "vflcsb %%v18,%%v18\n\t"
  260. "vlef %%v18,0(%[alpha]),0\n\t"
  261. "vlef %%v18,0(%[alpha]),2\n\t"
  262. "vlrepf %%v19,4(%[alpha])\n\t"
  263. #endif
  264. "vl %%v20,0(%[y])\n\t"
  265. "vfmasb %%v20,%%v16,%%v18,%%v20\n\t"
  266. "vfmasb %%v20,%%v17,%%v19,%%v20\n\t"
  267. "vst %%v20,0(%[y])"
  268. : "+m"(*(FLOAT (*)[4]) y),[n] "+&r"(n)
  269. : [y] "a"(y), "m"(*(const FLOAT (*)[n * 2]) ap0),[ap0] "a"(ap0),
  270. "m"(*(const FLOAT (*)[n * 2]) ap1),[ap1] "a"(ap1),
  271. "m"(*(const FLOAT (*)[n * 2]) x),[x] "a"(x),
  272. "m"(*(const FLOAT (*)[2]) alpha),[alpha] "a"(alpha)
  273. : "cc", "r1", "v0", "v1", "v2", "v3", "v16", "v17", "v18", "v19", "v20",
  274. "v21", "v22", "v23");
  275. }
  276. static void cgemv_kernel_4x1(BLASLONG n, FLOAT *ap, FLOAT *x, FLOAT *y,
  277. FLOAT *alpha) {
  278. __asm__("vzero %%v16\n\t"
  279. "vzero %%v17\n\t"
  280. "vleib %%v2,0,0\n\t"
  281. "vleib %%v2,1,1\n\t"
  282. "vleib %%v2,2,2\n\t"
  283. "vleib %%v2,3,3\n\t"
  284. "vleib %%v2,0,4\n\t"
  285. "vleib %%v2,1,5\n\t"
  286. "vleib %%v2,2,6\n\t"
  287. "vleib %%v2,3,7\n\t"
  288. "vleib %%v2,8,8\n\t"
  289. "vleib %%v2,9,9\n\t"
  290. "vleib %%v2,10,10\n\t"
  291. "vleib %%v2,11,11\n\t"
  292. "vleib %%v2,8,12\n\t"
  293. "vleib %%v2,9,13\n\t"
  294. "vleib %%v2,10,14\n\t"
  295. "vleib %%v2,11,15\n\t"
  296. "vleib %%v3,4,0\n\t"
  297. "vleib %%v3,5,1\n\t"
  298. "vleib %%v3,6,2\n\t"
  299. "vleib %%v3,7,3\n\t"
  300. "vleib %%v3,4,4\n\t"
  301. "vleib %%v3,5,5\n\t"
  302. "vleib %%v3,6,6\n\t"
  303. "vleib %%v3,7,7\n\t"
  304. "vleib %%v3,12,8\n\t"
  305. "vleib %%v3,13,9\n\t"
  306. "vleib %%v3,14,10\n\t"
  307. "vleib %%v3,15,11\n\t"
  308. "vleib %%v3,12,12\n\t"
  309. "vleib %%v3,13,13\n\t"
  310. "vleib %%v3,14,14\n\t"
  311. "vleib %%v3,15,15\n\t"
  312. "xgr %%r1,%%r1\n\t"
  313. "srlg %[n],%[n],1\n\t"
  314. "0:\n\t"
  315. "pfd 1,1024(%%r1,%[ap])\n\t"
  316. "pfd 1,1024(%%r1,%[x])\n\t"
  317. "vl %%v0,0(%%r1,%[x])\n\t"
  318. #if ( !defined(CONJ) && !defined(XCONJ) ) || ( defined(CONJ) && defined(XCONJ) )
  319. "vlef %%v1,4(%%r1,%[x]),0\n\t"
  320. "vlef %%v1,12(%%r1,%[x]),2\n\t"
  321. "vflcsb %%v1,%%v1\n\t"
  322. "vlef %%v1,0(%%r1,%[x]),1\n\t"
  323. "vlef %%v1,8(%%r1,%[x]),3\n\t"
  324. #else
  325. "vlef %%v1,0(%%r1,%[x]),1\n\t"
  326. "vlef %%v1,8(%%r1,%[x]),3\n\t"
  327. "vflcsb %%v1,%%v1\n\t"
  328. "vlef %%v1,4(%%r1,%[x]),0\n\t"
  329. "vlef %%v1,12(%%r1,%[x]),2\n\t"
  330. #endif
  331. "vl %%v18,0(%%r1,%[ap])\n\t"
  332. "vperm %%v19,%%v18,%%v18,%%v3\n\t"
  333. "vperm %%v18,%%v18,%%v18,%%v2\n\t"
  334. "vfmasb %%v16,%%v18,%%v0,%%v16\n\t"
  335. "vfmasb %%v17,%%v19,%%v1,%%v17\n\t"
  336. "agfi %%r1,16\n\t"
  337. "brctg %[n],0b\n\t"
  338. "vfasb %%v16,%%v16,%%v17\n\t"
  339. "vrepg %%v17,%%v16,1\n\t"
  340. "vfasb %%v16,%%v16,%%v17\n\t"
  341. "verllg %%v17,%%v16,32\n\t"
  342. #if !defined(XCONJ)
  343. "vlrepf %%v18,0(%[alpha])\n\t"
  344. "vlef %%v19,4(%[alpha]),0\n\t"
  345. "vflcsb %%v19,%%v19\n\t"
  346. "vlef %%v19,4(%[alpha]),1\n\t"
  347. #else
  348. "vlef %%v18,0(%[alpha]),1\n\t"
  349. "vflcsb %%v18,%%v18\n\t"
  350. "vlef %%v18,0(%[alpha]),0\n\t"
  351. "vlrepf %%v19,4(%[alpha])\n\t"
  352. #endif
  353. "vleg %%v0,0(%[y]),0\n\t"
  354. "vfmasb %%v0,%%v16,%%v18,%%v0\n\t"
  355. "vfmasb %%v0,%%v17,%%v19,%%v0\n\t"
  356. "vsteg %%v0,0(%[y]),0"
  357. : "+m"(*(FLOAT (*)[2]) y),[n] "+&r"(n)
  358. : [y] "a"(y), "m"(*(const FLOAT (*)[n * 2]) ap),[ap] "a"(ap),
  359. "m"(*(const FLOAT (*)[n * 2]) x),[x] "a"(x),
  360. "m"(*(const FLOAT (*)[2]) alpha),[alpha] "a"(alpha)
  361. : "cc", "r1", "v0", "v1", "v2", "v3", "v16", "v17", "v18", "v19");
  362. }
  363. static void copy_x(BLASLONG n, FLOAT *src, FLOAT *dest, BLASLONG inc_src) {
  364. BLASLONG i;
  365. for (i = 0; i < n; i++) {
  366. *dest = *src;
  367. *(dest + 1) = *(src + 1);
  368. dest += 2;
  369. src += inc_src;
  370. }
  371. }
  372. int CNAME(BLASLONG m, BLASLONG n, BLASLONG dummy1, FLOAT alpha_r, FLOAT alpha_i,
  373. FLOAT *a, BLASLONG lda, FLOAT *x, BLASLONG inc_x, FLOAT *y,
  374. BLASLONG inc_y, FLOAT *buffer) {
  375. BLASLONG i;
  376. BLASLONG j;
  377. FLOAT *a_ptr;
  378. FLOAT *x_ptr;
  379. FLOAT *y_ptr;
  380. FLOAT *ap[8];
  381. BLASLONG n1;
  382. BLASLONG m1;
  383. BLASLONG m2;
  384. BLASLONG m3;
  385. BLASLONG n2;
  386. BLASLONG lda4;
  387. FLOAT ybuffer[8], *xbuffer;
  388. FLOAT alpha[2];
  389. if (m < 1)
  390. return (0);
  391. if (n < 1)
  392. return (0);
  393. inc_x <<= 1;
  394. inc_y <<= 1;
  395. lda <<= 1;
  396. lda4 = lda << 2;
  397. xbuffer = buffer;
  398. n1 = n >> 2;
  399. n2 = n & 3;
  400. m3 = m & 3;
  401. m1 = m - m3;
  402. m2 = (m & (NBMAX - 1)) - m3;
  403. alpha[0] = alpha_r;
  404. alpha[1] = alpha_i;
  405. BLASLONG NB = NBMAX;
  406. while (NB == NBMAX) {
  407. m1 -= NB;
  408. if (m1 < 0) {
  409. if (m2 == 0)
  410. break;
  411. NB = m2;
  412. }
  413. y_ptr = y;
  414. a_ptr = a;
  415. x_ptr = x;
  416. ap[0] = a_ptr;
  417. ap[1] = a_ptr + lda;
  418. ap[2] = ap[1] + lda;
  419. ap[3] = ap[2] + lda;
  420. if (inc_x != 2)
  421. copy_x(NB, x_ptr, xbuffer, inc_x);
  422. else
  423. xbuffer = x_ptr;
  424. if (inc_y == 2) {
  425. for (i = 0; i < n1; i++) {
  426. cgemv_kernel_4x4(NB, ap, xbuffer, y_ptr, alpha);
  427. ap[0] += lda4;
  428. ap[1] += lda4;
  429. ap[2] += lda4;
  430. ap[3] += lda4;
  431. a_ptr += lda4;
  432. y_ptr += 8;
  433. }
  434. if (n2 & 2) {
  435. cgemv_kernel_4x2(NB, ap, xbuffer, y_ptr, alpha);
  436. a_ptr += lda * 2;
  437. y_ptr += 4;
  438. }
  439. if (n2 & 1) {
  440. cgemv_kernel_4x1(NB, a_ptr, xbuffer, y_ptr, alpha);
  441. /* a_ptr += lda;
  442. y_ptr += 2; */
  443. }
  444. } else {
  445. for (i = 0; i < n1; i++) {
  446. memset(ybuffer, 0, sizeof(ybuffer));
  447. cgemv_kernel_4x4(NB, ap, xbuffer, ybuffer, alpha);
  448. ap[0] += lda4;
  449. ap[1] += lda4;
  450. ap[2] += lda4;
  451. ap[3] += lda4;
  452. a_ptr += lda4;
  453. y_ptr[0] += ybuffer[0];
  454. y_ptr[1] += ybuffer[1];
  455. y_ptr += inc_y;
  456. y_ptr[0] += ybuffer[2];
  457. y_ptr[1] += ybuffer[3];
  458. y_ptr += inc_y;
  459. y_ptr[0] += ybuffer[4];
  460. y_ptr[1] += ybuffer[5];
  461. y_ptr += inc_y;
  462. y_ptr[0] += ybuffer[6];
  463. y_ptr[1] += ybuffer[7];
  464. y_ptr += inc_y;
  465. }
  466. for (i = 0; i < n2; i++) {
  467. memset(ybuffer, 0, sizeof(ybuffer));
  468. cgemv_kernel_4x1(NB, a_ptr, xbuffer, ybuffer, alpha);
  469. a_ptr += lda;
  470. y_ptr[0] += ybuffer[0];
  471. y_ptr[1] += ybuffer[1];
  472. y_ptr += inc_y;
  473. }
  474. }
  475. a += 2 * NB;
  476. x += NB * inc_x;
  477. }
  478. if (m3 == 0)
  479. return (0);
  480. x_ptr = x;
  481. j = 0;
  482. a_ptr = a;
  483. y_ptr = y;
  484. if (m3 == 3) {
  485. FLOAT temp_r;
  486. FLOAT temp_i;
  487. FLOAT x0 = x_ptr[0];
  488. FLOAT x1 = x_ptr[1];
  489. x_ptr += inc_x;
  490. FLOAT x2 = x_ptr[0];
  491. FLOAT x3 = x_ptr[1];
  492. x_ptr += inc_x;
  493. FLOAT x4 = x_ptr[0];
  494. FLOAT x5 = x_ptr[1];
  495. while (j < n) {
  496. #if ( !defined(CONJ) && !defined(XCONJ) ) || ( defined(CONJ) && defined(XCONJ) )
  497. temp_r = a_ptr[0] * x0 - a_ptr[1] * x1;
  498. temp_i = a_ptr[0] * x1 + a_ptr[1] * x0;
  499. temp_r += a_ptr[2] * x2 - a_ptr[3] * x3;
  500. temp_i += a_ptr[2] * x3 + a_ptr[3] * x2;
  501. temp_r += a_ptr[4] * x4 - a_ptr[5] * x5;
  502. temp_i += a_ptr[4] * x5 + a_ptr[5] * x4;
  503. #else
  504. temp_r = a_ptr[0] * x0 + a_ptr[1] * x1;
  505. temp_i = a_ptr[0] * x1 - a_ptr[1] * x0;
  506. temp_r += a_ptr[2] * x2 + a_ptr[3] * x3;
  507. temp_i += a_ptr[2] * x3 - a_ptr[3] * x2;
  508. temp_r += a_ptr[4] * x4 + a_ptr[5] * x5;
  509. temp_i += a_ptr[4] * x5 - a_ptr[5] * x4;
  510. #endif
  511. #if !defined(XCONJ)
  512. y_ptr[0] += alpha_r * temp_r - alpha_i * temp_i;
  513. y_ptr[1] += alpha_r * temp_i + alpha_i * temp_r;
  514. #else
  515. y_ptr[0] += alpha_r * temp_r + alpha_i * temp_i;
  516. y_ptr[1] -= alpha_r * temp_i - alpha_i * temp_r;
  517. #endif
  518. a_ptr += lda;
  519. y_ptr += inc_y;
  520. j++;
  521. }
  522. return (0);
  523. }
  524. if (m3 == 2) {
  525. FLOAT temp_r;
  526. FLOAT temp_i;
  527. FLOAT temp_r1;
  528. FLOAT temp_i1;
  529. FLOAT x0 = x_ptr[0];
  530. FLOAT x1 = x_ptr[1];
  531. x_ptr += inc_x;
  532. FLOAT x2 = x_ptr[0];
  533. FLOAT x3 = x_ptr[1];
  534. FLOAT ar = alpha[0];
  535. FLOAT ai = alpha[1];
  536. while (j < (n & -2)) {
  537. #if ( !defined(CONJ) && !defined(XCONJ) ) || ( defined(CONJ) && defined(XCONJ) )
  538. temp_r = a_ptr[0] * x0 - a_ptr[1] * x1;
  539. temp_i = a_ptr[0] * x1 + a_ptr[1] * x0;
  540. temp_r += a_ptr[2] * x2 - a_ptr[3] * x3;
  541. temp_i += a_ptr[2] * x3 + a_ptr[3] * x2;
  542. a_ptr += lda;
  543. temp_r1 = a_ptr[0] * x0 - a_ptr[1] * x1;
  544. temp_i1 = a_ptr[0] * x1 + a_ptr[1] * x0;
  545. temp_r1 += a_ptr[2] * x2 - a_ptr[3] * x3;
  546. temp_i1 += a_ptr[2] * x3 + a_ptr[3] * x2;
  547. #else
  548. temp_r = a_ptr[0] * x0 + a_ptr[1] * x1;
  549. temp_i = a_ptr[0] * x1 - a_ptr[1] * x0;
  550. temp_r += a_ptr[2] * x2 + a_ptr[3] * x3;
  551. temp_i += a_ptr[2] * x3 - a_ptr[3] * x2;
  552. a_ptr += lda;
  553. temp_r1 = a_ptr[0] * x0 + a_ptr[1] * x1;
  554. temp_i1 = a_ptr[0] * x1 - a_ptr[1] * x0;
  555. temp_r1 += a_ptr[2] * x2 + a_ptr[3] * x3;
  556. temp_i1 += a_ptr[2] * x3 - a_ptr[3] * x2;
  557. #endif
  558. #if !defined(XCONJ)
  559. y_ptr[0] += ar * temp_r - ai * temp_i;
  560. y_ptr[1] += ar * temp_i + ai * temp_r;
  561. y_ptr += inc_y;
  562. y_ptr[0] += ar * temp_r1 - ai * temp_i1;
  563. y_ptr[1] += ar * temp_i1 + ai * temp_r1;
  564. #else
  565. y_ptr[0] += ar * temp_r + ai * temp_i;
  566. y_ptr[1] -= ar * temp_i - ai * temp_r;
  567. y_ptr += inc_y;
  568. y_ptr[0] += ar * temp_r1 + ai * temp_i1;
  569. y_ptr[1] -= ar * temp_i1 - ai * temp_r1;
  570. #endif
  571. a_ptr += lda;
  572. y_ptr += inc_y;
  573. j += 2;
  574. }
  575. while (j < n) {
  576. #if ( !defined(CONJ) && !defined(XCONJ) ) || ( defined(CONJ) && defined(XCONJ) )
  577. temp_r = a_ptr[0] * x0 - a_ptr[1] * x1;
  578. temp_i = a_ptr[0] * x1 + a_ptr[1] * x0;
  579. temp_r += a_ptr[2] * x2 - a_ptr[3] * x3;
  580. temp_i += a_ptr[2] * x3 + a_ptr[3] * x2;
  581. #else
  582. temp_r = a_ptr[0] * x0 + a_ptr[1] * x1;
  583. temp_i = a_ptr[0] * x1 - a_ptr[1] * x0;
  584. temp_r += a_ptr[2] * x2 + a_ptr[3] * x3;
  585. temp_i += a_ptr[2] * x3 - a_ptr[3] * x2;
  586. #endif
  587. #if !defined(XCONJ)
  588. y_ptr[0] += ar * temp_r - ai * temp_i;
  589. y_ptr[1] += ar * temp_i + ai * temp_r;
  590. #else
  591. y_ptr[0] += ar * temp_r + ai * temp_i;
  592. y_ptr[1] -= ar * temp_i - ai * temp_r;
  593. #endif
  594. a_ptr += lda;
  595. y_ptr += inc_y;
  596. j++;
  597. }
  598. return (0);
  599. }
  600. if (m3 == 1) {
  601. FLOAT temp_r;
  602. FLOAT temp_i;
  603. FLOAT temp_r1;
  604. FLOAT temp_i1;
  605. FLOAT x0 = x_ptr[0];
  606. FLOAT x1 = x_ptr[1];
  607. FLOAT ar = alpha[0];
  608. FLOAT ai = alpha[1];
  609. while (j < (n & -2)) {
  610. #if ( !defined(CONJ) && !defined(XCONJ) ) || ( defined(CONJ) && defined(XCONJ) )
  611. temp_r = a_ptr[0] * x0 - a_ptr[1] * x1;
  612. temp_i = a_ptr[0] * x1 + a_ptr[1] * x0;
  613. a_ptr += lda;
  614. temp_r1 = a_ptr[0] * x0 - a_ptr[1] * x1;
  615. temp_i1 = a_ptr[0] * x1 + a_ptr[1] * x0;
  616. #else
  617. temp_r = a_ptr[0] * x0 + a_ptr[1] * x1;
  618. temp_i = a_ptr[0] * x1 - a_ptr[1] * x0;
  619. a_ptr += lda;
  620. temp_r1 = a_ptr[0] * x0 + a_ptr[1] * x1;
  621. temp_i1 = a_ptr[0] * x1 - a_ptr[1] * x0;
  622. #endif
  623. #if !defined(XCONJ)
  624. y_ptr[0] += ar * temp_r - ai * temp_i;
  625. y_ptr[1] += ar * temp_i + ai * temp_r;
  626. y_ptr += inc_y;
  627. y_ptr[0] += ar * temp_r1 - ai * temp_i1;
  628. y_ptr[1] += ar * temp_i1 + ai * temp_r1;
  629. #else
  630. y_ptr[0] += ar * temp_r + ai * temp_i;
  631. y_ptr[1] -= ar * temp_i - ai * temp_r;
  632. y_ptr += inc_y;
  633. y_ptr[0] += ar * temp_r1 + ai * temp_i1;
  634. y_ptr[1] -= ar * temp_i1 - ai * temp_r1;
  635. #endif
  636. a_ptr += lda;
  637. y_ptr += inc_y;
  638. j += 2;
  639. }
  640. while (j < n) {
  641. #if ( !defined(CONJ) && !defined(XCONJ) ) || ( defined(CONJ) && defined(XCONJ) )
  642. temp_r = a_ptr[0] * x0 - a_ptr[1] * x1;
  643. temp_i = a_ptr[0] * x1 + a_ptr[1] * x0;
  644. #else
  645. temp_r = a_ptr[0] * x0 + a_ptr[1] * x1;
  646. temp_i = a_ptr[0] * x1 - a_ptr[1] * x0;
  647. #endif
  648. #if !defined(XCONJ)
  649. y_ptr[0] += ar * temp_r - ai * temp_i;
  650. y_ptr[1] += ar * temp_i + ai * temp_r;
  651. #else
  652. y_ptr[0] += ar * temp_r + ai * temp_i;
  653. y_ptr[1] -= ar * temp_i - ai * temp_r;
  654. #endif
  655. a_ptr += lda;
  656. y_ptr += inc_y;
  657. j++;
  658. }
  659. return (0);
  660. }
  661. return (0);
  662. }