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zdot.S 10 kB

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  1. /*********************************************************************/
  2. /* Copyright 2009, 2010 The University of Texas at Austin. */
  3. /* All rights reserved. */
  4. /* */
  5. /* Redistribution and use in source and binary forms, with or */
  6. /* without modification, are permitted provided that the following */
  7. /* conditions are met: */
  8. /* */
  9. /* 1. Redistributions of source code must retain the above */
  10. /* copyright notice, this list of conditions and the following */
  11. /* disclaimer. */
  12. /* */
  13. /* 2. Redistributions in binary form must reproduce the above */
  14. /* copyright notice, this list of conditions and the following */
  15. /* disclaimer in the documentation and/or other materials */
  16. /* provided with the distribution. */
  17. /* */
  18. /* THIS SOFTWARE IS PROVIDED BY THE UNIVERSITY OF TEXAS AT */
  19. /* AUSTIN ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, */
  20. /* INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF */
  21. /* MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE */
  22. /* DISCLAIMED. IN NO EVENT SHALL THE UNIVERSITY OF TEXAS AT */
  23. /* AUSTIN OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, */
  24. /* INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES */
  25. /* (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE */
  26. /* GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR */
  27. /* BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF */
  28. /* LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT */
  29. /* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT */
  30. /* OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE */
  31. /* POSSIBILITY OF SUCH DAMAGE. */
  32. /* */
  33. /* The views and conclusions contained in the software and */
  34. /* documentation are those of the authors and should not be */
  35. /* interpreted as representing official policies, either expressed */
  36. /* or implied, of The University of Texas at Austin. */
  37. /*********************************************************************/
  38. #define ASSEMBLER
  39. #include "common.h"
  40. #ifdef DOUBLE
  41. #define PREFETCH_SIZE (13 * 16)
  42. #else
  43. #define PREFETCH_SIZE ( 9 * 32)
  44. #endif
  45. #if defined(F_INTERFACE) && defined(RETURN_BY_STACK)
  46. #define N r33
  47. #define X1 r34
  48. #define INCX r35
  49. #define Y1 r36
  50. #define INCY r37
  51. #else
  52. #define N r32
  53. #define X1 r33
  54. #define INCX r34
  55. #define Y1 r35
  56. #define INCY r36
  57. #endif
  58. #define PRE1 r2
  59. #define PRE2 r3
  60. #define I r14
  61. #define J r15
  62. #define Y2 r16
  63. #define X2 r17
  64. #define INCXM1 r18
  65. #define INCYM1 r19
  66. #define INCX16 r20
  67. #define INCY16 r21
  68. #define INCX3M1 r22
  69. #define INCY3M1 r23
  70. #define XX r24
  71. #define YY r25
  72. #define PR r30
  73. #define ARLC r31
  74. #define ALPHA f8
  75. PROLOGUE
  76. .prologue
  77. PROFCODE
  78. { .mfi
  79. mov f8 = f0
  80. .save ar.lc, ARLC
  81. mov ARLC = ar.lc
  82. }
  83. { .mfi
  84. mov f9 = f0
  85. }
  86. ;;
  87. .body
  88. #ifdef F_INTERFACE
  89. LDINT N = [N]
  90. LDINT INCX = [INCX]
  91. LDINT INCY = [INCY]
  92. ;;
  93. #ifndef USE64BITINT
  94. sxt4 N = N
  95. sxt4 INCX = INCX
  96. sxt4 INCY = INCY
  97. ;;
  98. #endif
  99. #endif
  100. { .mmi
  101. shladd INCX = INCX, ZBASE_SHIFT, r0
  102. shladd INCY = INCY, ZBASE_SHIFT, r0
  103. mov PR = pr
  104. }
  105. { .mib
  106. cmp.lt p0, p7 = r0, N
  107. mov r26 = 1
  108. (p7) br.cond.spnt .L1000
  109. }
  110. ;;
  111. #ifdef F_INTERFACE
  112. cmp.le p0, p6 = r0, INCX
  113. cmp.le p0, p7 = r0, INCY
  114. sub r26 = r26, N
  115. ;;
  116. setf.sig f32 = r26
  117. setf.sig f33 = INCX
  118. setf.sig f34 = INCY
  119. ;;
  120. xmpy.l f33 = f32, f33
  121. xmpy.l f34 = f32, f34
  122. ;;
  123. getf.sig r26 = f33
  124. getf.sig r27 = f34
  125. ;;
  126. (p6) add X1 = X1, r26
  127. (p7) add Y1 = Y1, r27
  128. ;;
  129. #endif
  130. { .mfi
  131. #ifdef DOUBLE
  132. adds PRE1 = (PREFETCH_SIZE + 4) * SIZE, X1
  133. #else
  134. adds PRE1 = (PREFETCH_SIZE + 8) * SIZE, X1
  135. #endif
  136. mov f10 = f0
  137. mov pr.rot= 0
  138. }
  139. { .mfi
  140. and J = 7, N
  141. mov f11 = f0
  142. shr I = N, 3
  143. }
  144. ;;
  145. { .mfi
  146. #ifdef DOUBLE
  147. adds PRE2 = (PREFETCH_SIZE + 6) * SIZE, Y1
  148. #else
  149. adds PRE2 = (PREFETCH_SIZE + 12) * SIZE, Y1
  150. #endif
  151. mov f12 = f0
  152. mov ar.ec = 3
  153. }
  154. { .mmf
  155. shladd INCX16 = INCX, 3, r0
  156. shladd INCY16 = INCY, 3, r0
  157. mov f13 = f0
  158. }
  159. ;;
  160. { .mmf
  161. shladd INCX3M1 = INCX, 1, INCX
  162. shladd INCY3M1 = INCY, 1, INCY
  163. mov f14 = f0
  164. }
  165. { .mmf
  166. adds INCXM1 = -SIZE, INCX
  167. adds INCYM1 = -SIZE, INCY
  168. mov f15 = f0
  169. }
  170. ;;
  171. { .mmi
  172. adds INCX3M1 = -SIZE, INCX3M1
  173. adds INCY3M1 = -SIZE, INCY3M1
  174. tbit.z p0, p12 = N, 2
  175. }
  176. { .mmi
  177. cmp.eq p8 ,p0 = r0, I
  178. cmp.eq p16, p0 = r0, r0
  179. adds I = -1, I
  180. }
  181. ;;
  182. { .mmi
  183. shladd X2 = INCX, 1, X1
  184. shladd Y2 = INCY, 1, Y1
  185. mov ar.lc = I
  186. }
  187. { .mmb
  188. mov XX = X1
  189. mov YY = Y1
  190. (p8) br.cond.dpnt .L55
  191. }
  192. ;;
  193. .align 32
  194. .L52:
  195. { .mmf
  196. (p16) lfetch.nt1 [PRE1], INCX16
  197. (p16) LDFD f32 = [X1], SIZE
  198. (p18) FMA f8 = f34, f82, f8
  199. }
  200. { .mmf
  201. (p16) LDFD f44 = [X2], SIZE
  202. nop.m 0
  203. (p18) FMA f9 = f34, f85, f9
  204. }
  205. ;;
  206. { .mmf
  207. (p16) LDFD f80 = [Y1], SIZE
  208. (p16) LDFD f92 = [Y2], SIZE
  209. (p18) FMA f10 = f37, f82, f10
  210. }
  211. { .mmf
  212. nop.m 0
  213. nop.m 0
  214. (p18) FMA f11 = f37, f85, f11
  215. }
  216. ;;
  217. { .mmf
  218. (p16) lfetch.nt1 [PRE2], INCY16
  219. (p16) LDFD f35 = [X1], INCXM1
  220. (p18) FMA f12 = f40, f88, f12
  221. }
  222. { .mmf
  223. (p16) LDFD f47 = [X2], INCXM1
  224. nop.m 0
  225. (p18) FMA f13 = f40, f91, f13
  226. }
  227. ;;
  228. { .mmf
  229. (p16) LDFD f83 = [Y1], INCYM1
  230. (p16) LDFD f95 = [Y2], INCYM1
  231. (p18) FMA f14 = f43, f88, f14
  232. }
  233. { .mmf
  234. nop.m 0
  235. nop.m 0
  236. (p18) FMA f15 = f43, f91, f15
  237. }
  238. ;;
  239. { .mmf
  240. (p16) LDFD f38 = [X1], SIZE
  241. (p16) LDFD f50 = [X2], SIZE
  242. (p18) FMA f8 = f46, f94, f8
  243. }
  244. { .mmf
  245. nop.m 0
  246. nop.m 0
  247. (p18) FMA f9 = f46, f97, f9
  248. }
  249. ;;
  250. { .mmf
  251. (p16) LDFD f86 = [Y1], SIZE
  252. (p16) LDFD f98 = [Y2], SIZE
  253. (p18) FMA f10 = f49, f94, f10
  254. }
  255. { .mmf
  256. nop.m 0
  257. nop.m 0
  258. (p18) FMA f11 = f49, f97, f11
  259. }
  260. ;;
  261. { .mmf
  262. (p16) LDFD f41 = [X1], INCX3M1
  263. (p16) LDFD f53 = [X2], INCX3M1
  264. (p18) FMA f12 = f52, f100, f12
  265. }
  266. { .mmf
  267. nop.m 0
  268. nop.m 0
  269. (p18) FMA f13 = f52, f103, f13
  270. }
  271. ;;
  272. { .mmf
  273. (p16) LDFD f89 = [Y1], INCY3M1
  274. (p16) LDFD f101 = [Y2], INCY3M1
  275. (p18) FMA f14 = f55, f100, f14
  276. }
  277. { .mmf
  278. nop.m 0
  279. nop.m 0
  280. (p18) FMA f15 = f55, f103, f15
  281. }
  282. ;;
  283. { .mmf
  284. (p16) LDFD f56 = [X1], SIZE
  285. (p16) LDFD f68 = [X2], SIZE
  286. (p18) FMA f8 = f58, f106, f8
  287. }
  288. { .mmf
  289. nop.m 0
  290. nop.m 0
  291. (p18) FMA f9 = f58, f109, f9
  292. }
  293. ;;
  294. { .mmf
  295. (p16) LDFD f104 = [Y1], SIZE
  296. (p16) LDFD f116 = [Y2], SIZE
  297. (p18) FMA f10 = f61, f106, f10
  298. }
  299. { .mmf
  300. nop.m 0
  301. nop.m 0
  302. (p18) FMA f11 = f61, f109, f11
  303. }
  304. ;;
  305. { .mmf
  306. (p16) LDFD f59 = [X1], INCXM1
  307. (p16) LDFD f71 = [X2], INCXM1
  308. (p18) FMA f12 = f64, f112, f12
  309. }
  310. { .mmf
  311. nop.m 0
  312. nop.m 0
  313. (p18) FMA f13 = f64, f115, f13
  314. }
  315. ;;
  316. { .mmf
  317. (p16) LDFD f107 = [Y1], INCYM1
  318. (p16) LDFD f119 = [Y2], INCYM1
  319. (p18) FMA f14 = f67, f112, f14
  320. }
  321. { .mmf
  322. nop.m 0
  323. nop.m 0
  324. (p18) FMA f15 = f67, f115, f15
  325. }
  326. ;;
  327. { .mmf
  328. (p16) LDFD f62 = [X1], SIZE
  329. (p16) LDFD f74 = [X2], SIZE
  330. (p18) FMA f8 = f70, f118, f8
  331. }
  332. { .mmf
  333. nop.m 0
  334. nop.m 0
  335. (p18) FMA f9 = f70, f121, f9
  336. }
  337. ;;
  338. { .mmf
  339. (p16) LDFD f110 = [Y1], SIZE
  340. (p16) LDFD f122 = [Y2], SIZE
  341. (p18) FMA f10 = f73, f118, f10
  342. }
  343. { .mmf
  344. nop.m 0
  345. nop.m 0
  346. (p18) FMA f11 = f73, f121, f11
  347. }
  348. ;;
  349. { .mmf
  350. (p16) LDFD f65 = [X1], INCX3M1
  351. (p16) LDFD f77 = [X2], INCX3M1
  352. (p18) FMA f12 = f76, f124, f12
  353. }
  354. { .mmf
  355. (p16) add XX = INCX16, XX
  356. (p16) add YY = INCY16, YY
  357. (p18) FMA f13 = f76, f127, f13
  358. }
  359. ;;
  360. { .mmf
  361. (p16) LDFD f113 = [Y1], INCY3M1
  362. (p16) LDFD f125 = [Y2], INCY3M1
  363. (p18) FMA f14 = f79, f124, f14
  364. }
  365. { .mfb
  366. nop.m 0
  367. (p18) FMA f15 = f79, f127, f15
  368. br.ctop.sptk.few .L52
  369. }
  370. ;;
  371. .align 32
  372. .L55:
  373. (p12) LDFD f32 = [X1], SIZE
  374. (p12) LDFD f40 = [X2], SIZE
  375. tbit.z p0, p13 = N, 1
  376. (p12) LDFD f34 = [Y1], SIZE
  377. (p12) LDFD f42 = [Y2], SIZE
  378. tbit.z p0, p14 = N, 0
  379. ;;
  380. (p12) LDFD f33 = [X1], INCXM1
  381. (p12) LDFD f41 = [X2], INCXM1
  382. cmp.eq p9, p0 = r0, J
  383. (p12) LDFD f35 = [Y1], INCYM1
  384. (p12) LDFD f43 = [Y2], INCYM1
  385. (p9) br.cond.dptk .L999
  386. ;;
  387. (p12) LDFD f36 = [X1], SIZE
  388. (p12) LDFD f44 = [X2], SIZE
  389. (p12) shladd XX = INCX, 2, XX
  390. (p12) LDFD f38 = [Y1], SIZE
  391. (p12) LDFD f46 = [Y2], SIZE
  392. (p12) shladd YY = INCY, 2, YY
  393. ;;
  394. (p12) LDFD f37 = [X1], INCX3M1
  395. (p12) LDFD f45 = [X2], INCX3M1
  396. (p13) shladd XX = INCX, 1, XX
  397. (p12) LDFD f39 = [Y1], INCY3M1
  398. (p12) LDFD f47 = [Y2], INCY3M1
  399. (p13) shladd YY = INCY, 1, YY
  400. ;;
  401. (p13) LDFD f48 = [X1], SIZE
  402. (p13) LDFD f50 = [Y1], SIZE
  403. (p14) LDFD f56 = [XX], SIZE
  404. (p14) LDFD f58 = [YY], SIZE
  405. ;;
  406. (p13) LDFD f49 = [X1], INCXM1
  407. (p13) LDFD f51 = [Y1], INCYM1
  408. (p14) LDFD f57 = [XX]
  409. (p14) LDFD f59 = [YY]
  410. ;;
  411. (p13) LDFD f52 = [X1], SIZE
  412. (p13) LDFD f54 = [Y1], SIZE
  413. ;;
  414. (p13) LDFD f53 = [X1]
  415. (p13) LDFD f55 = [Y1]
  416. ;;
  417. (p12) FMA f8 = f32, f34, f8
  418. (p12) FMA f9 = f32, f35, f9
  419. (p12) FMA f10 = f33, f34, f10
  420. (p12) FMA f11 = f33, f35, f11
  421. (p12) FMA f12 = f36, f38, f12
  422. (p12) FMA f13 = f36, f39, f13
  423. (p12) FMA f14 = f37, f38, f14
  424. (p12) FMA f15 = f37, f39, f15
  425. ;;
  426. (p12) FMA f8 = f40, f42, f8
  427. (p12) FMA f9 = f40, f43, f9
  428. (p12) FMA f10 = f41, f42, f10
  429. (p12) FMA f11 = f41, f43, f11
  430. (p12) FMA f12 = f44, f46, f12
  431. (p12) FMA f13 = f44, f47, f13
  432. (p12) FMA f14 = f45, f46, f14
  433. (p12) FMA f15 = f45, f47, f15
  434. ;;
  435. (p13) FMA f8 = f48, f50, f8
  436. (p13) FMA f9 = f48, f51, f9
  437. (p13) FMA f10 = f49, f50, f10
  438. (p13) FMA f11 = f49, f51, f11
  439. (p13) FMA f12 = f52, f54, f12
  440. (p13) FMA f13 = f52, f55, f13
  441. (p13) FMA f14 = f53, f54, f14
  442. (p13) FMA f15 = f53, f55, f15
  443. ;;
  444. (p14) FMA f8 = f56, f58, f8
  445. (p14) FMA f9 = f56, f59, f9
  446. (p14) FMA f10 = f57, f58, f10
  447. (p14) FMA f11 = f57, f59, f11
  448. .align 32
  449. ;;
  450. .L999:
  451. FADD f8 = f8, f12
  452. FADD f9 = f9, f13
  453. FADD f10 = f10, f14
  454. FADD f11 = f11, f15
  455. mov ar.lc = ARLC
  456. ;;
  457. #ifndef CONJ
  458. FSUB f8 = f8, f11
  459. FADD f9 = f9, f10
  460. #else
  461. FADD f8 = f8, f11
  462. FSUB f9 = f9, f10
  463. #endif
  464. ;;
  465. .align 32
  466. .L1000:
  467. #if defined(F_INTERFACE) && defined(RETURN_BY_STACK)
  468. STFD [r32] = f8, SIZE
  469. ;;
  470. STFD [r32] = f9, SIZE
  471. #endif
  472. mov pr = PR, -65474
  473. br.ret.sptk.many b0
  474. EPILOGUE