NG2memcpy.S 12 KB

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  1. /* NG2memcpy.S: Niagara-2 optimized memcpy.
  2. *
  3. * Copyright (C) 2007 David S. Miller (davem@davemloft.net)
  4. */
  5. #ifdef __KERNEL__
  6. #include <asm/visasm.h>
  7. #include <asm/asi.h>
  8. #define GLOBAL_SPARE %g7
  9. #else
  10. #define ASI_PNF 0x82
  11. #define ASI_BLK_P 0xf0
  12. #define ASI_BLK_INIT_QUAD_LDD_P 0xe2
  13. #define FPRS_FEF 0x04
  14. #ifdef MEMCPY_DEBUG
  15. #define VISEntryHalf rd %fprs, %o5; wr %g0, FPRS_FEF, %fprs; \
  16. clr %g1; clr %g2; clr %g3; clr %g5; subcc %g0, %g0, %g0;
  17. #define VISExitHalf and %o5, FPRS_FEF, %o5; wr %o5, 0x0, %fprs
  18. #else
  19. #define VISEntryHalf rd %fprs, %o5; wr %g0, FPRS_FEF, %fprs
  20. #define VISExitHalf and %o5, FPRS_FEF, %o5; wr %o5, 0x0, %fprs
  21. #endif
  22. #define GLOBAL_SPARE %g5
  23. #endif
  24. #ifndef STORE_ASI
  25. #ifndef SIMULATE_NIAGARA_ON_NON_NIAGARA
  26. #define STORE_ASI ASI_BLK_INIT_QUAD_LDD_P
  27. #else
  28. #define STORE_ASI 0x80 /* ASI_P */
  29. #endif
  30. #endif
  31. #ifndef EX_LD
  32. #define EX_LD(x) x
  33. #endif
  34. #ifndef EX_LD_FP
  35. #define EX_LD_FP(x) x
  36. #endif
  37. #ifndef EX_ST
  38. #define EX_ST(x) x
  39. #endif
  40. #ifndef EX_ST_FP
  41. #define EX_ST_FP(x) x
  42. #endif
  43. #ifndef EX_RETVAL
  44. #define EX_RETVAL(x) x
  45. #endif
  46. #ifndef LOAD
  47. #define LOAD(type,addr,dest) type [addr], dest
  48. #endif
  49. #ifndef LOAD_BLK
  50. #define LOAD_BLK(addr,dest) ldda [addr] ASI_BLK_P, dest
  51. #endif
  52. #ifndef STORE
  53. #ifndef MEMCPY_DEBUG
  54. #define STORE(type,src,addr) type src, [addr]
  55. #else
  56. #define STORE(type,src,addr) type##a src, [addr] 0x80
  57. #endif
  58. #endif
  59. #ifndef STORE_BLK
  60. #define STORE_BLK(src,addr) stda src, [addr] ASI_BLK_P
  61. #endif
  62. #ifndef STORE_INIT
  63. #define STORE_INIT(src,addr) stxa src, [addr] STORE_ASI
  64. #endif
  65. #ifndef FUNC_NAME
  66. #define FUNC_NAME NG2memcpy
  67. #endif
  68. #ifndef PREAMBLE
  69. #define PREAMBLE
  70. #endif
  71. #ifndef XCC
  72. #define XCC xcc
  73. #endif
  74. #define FREG_FROB(x0, x1, x2, x3, x4, x5, x6, x7, x8) \
  75. faligndata %x0, %x1, %f0; \
  76. faligndata %x1, %x2, %f2; \
  77. faligndata %x2, %x3, %f4; \
  78. faligndata %x3, %x4, %f6; \
  79. faligndata %x4, %x5, %f8; \
  80. faligndata %x5, %x6, %f10; \
  81. faligndata %x6, %x7, %f12; \
  82. faligndata %x7, %x8, %f14;
  83. #define FREG_MOVE_1(x0) \
  84. fsrc2 %x0, %f0;
  85. #define FREG_MOVE_2(x0, x1) \
  86. fsrc2 %x0, %f0; \
  87. fsrc2 %x1, %f2;
  88. #define FREG_MOVE_3(x0, x1, x2) \
  89. fsrc2 %x0, %f0; \
  90. fsrc2 %x1, %f2; \
  91. fsrc2 %x2, %f4;
  92. #define FREG_MOVE_4(x0, x1, x2, x3) \
  93. fsrc2 %x0, %f0; \
  94. fsrc2 %x1, %f2; \
  95. fsrc2 %x2, %f4; \
  96. fsrc2 %x3, %f6;
  97. #define FREG_MOVE_5(x0, x1, x2, x3, x4) \
  98. fsrc2 %x0, %f0; \
  99. fsrc2 %x1, %f2; \
  100. fsrc2 %x2, %f4; \
  101. fsrc2 %x3, %f6; \
  102. fsrc2 %x4, %f8;
  103. #define FREG_MOVE_6(x0, x1, x2, x3, x4, x5) \
  104. fsrc2 %x0, %f0; \
  105. fsrc2 %x1, %f2; \
  106. fsrc2 %x2, %f4; \
  107. fsrc2 %x3, %f6; \
  108. fsrc2 %x4, %f8; \
  109. fsrc2 %x5, %f10;
  110. #define FREG_MOVE_7(x0, x1, x2, x3, x4, x5, x6) \
  111. fsrc2 %x0, %f0; \
  112. fsrc2 %x1, %f2; \
  113. fsrc2 %x2, %f4; \
  114. fsrc2 %x3, %f6; \
  115. fsrc2 %x4, %f8; \
  116. fsrc2 %x5, %f10; \
  117. fsrc2 %x6, %f12;
  118. #define FREG_MOVE_8(x0, x1, x2, x3, x4, x5, x6, x7) \
  119. fsrc2 %x0, %f0; \
  120. fsrc2 %x1, %f2; \
  121. fsrc2 %x2, %f4; \
  122. fsrc2 %x3, %f6; \
  123. fsrc2 %x4, %f8; \
  124. fsrc2 %x5, %f10; \
  125. fsrc2 %x6, %f12; \
  126. fsrc2 %x7, %f14;
  127. #define FREG_LOAD_1(base, x0) \
  128. EX_LD_FP(LOAD(ldd, base + 0x00, %x0))
  129. #define FREG_LOAD_2(base, x0, x1) \
  130. EX_LD_FP(LOAD(ldd, base + 0x00, %x0)); \
  131. EX_LD_FP(LOAD(ldd, base + 0x08, %x1));
  132. #define FREG_LOAD_3(base, x0, x1, x2) \
  133. EX_LD_FP(LOAD(ldd, base + 0x00, %x0)); \
  134. EX_LD_FP(LOAD(ldd, base + 0x08, %x1)); \
  135. EX_LD_FP(LOAD(ldd, base + 0x10, %x2));
  136. #define FREG_LOAD_4(base, x0, x1, x2, x3) \
  137. EX_LD_FP(LOAD(ldd, base + 0x00, %x0)); \
  138. EX_LD_FP(LOAD(ldd, base + 0x08, %x1)); \
  139. EX_LD_FP(LOAD(ldd, base + 0x10, %x2)); \
  140. EX_LD_FP(LOAD(ldd, base + 0x18, %x3));
  141. #define FREG_LOAD_5(base, x0, x1, x2, x3, x4) \
  142. EX_LD_FP(LOAD(ldd, base + 0x00, %x0)); \
  143. EX_LD_FP(LOAD(ldd, base + 0x08, %x1)); \
  144. EX_LD_FP(LOAD(ldd, base + 0x10, %x2)); \
  145. EX_LD_FP(LOAD(ldd, base + 0x18, %x3)); \
  146. EX_LD_FP(LOAD(ldd, base + 0x20, %x4));
  147. #define FREG_LOAD_6(base, x0, x1, x2, x3, x4, x5) \
  148. EX_LD_FP(LOAD(ldd, base + 0x00, %x0)); \
  149. EX_LD_FP(LOAD(ldd, base + 0x08, %x1)); \
  150. EX_LD_FP(LOAD(ldd, base + 0x10, %x2)); \
  151. EX_LD_FP(LOAD(ldd, base + 0x18, %x3)); \
  152. EX_LD_FP(LOAD(ldd, base + 0x20, %x4)); \
  153. EX_LD_FP(LOAD(ldd, base + 0x28, %x5));
  154. #define FREG_LOAD_7(base, x0, x1, x2, x3, x4, x5, x6) \
  155. EX_LD_FP(LOAD(ldd, base + 0x00, %x0)); \
  156. EX_LD_FP(LOAD(ldd, base + 0x08, %x1)); \
  157. EX_LD_FP(LOAD(ldd, base + 0x10, %x2)); \
  158. EX_LD_FP(LOAD(ldd, base + 0x18, %x3)); \
  159. EX_LD_FP(LOAD(ldd, base + 0x20, %x4)); \
  160. EX_LD_FP(LOAD(ldd, base + 0x28, %x5)); \
  161. EX_LD_FP(LOAD(ldd, base + 0x30, %x6));
  162. .register %g2,#scratch
  163. .register %g3,#scratch
  164. .text
  165. .align 64
  166. .globl FUNC_NAME
  167. .type FUNC_NAME,#function
  168. FUNC_NAME: /* %o0=dst, %o1=src, %o2=len */
  169. srlx %o2, 31, %g2
  170. cmp %g2, 0
  171. tne %xcc, 5
  172. PREAMBLE
  173. mov %o0, %o3
  174. cmp %o2, 0
  175. be,pn %XCC, 85f
  176. or %o0, %o1, GLOBAL_SPARE
  177. cmp %o2, 16
  178. blu,a,pn %XCC, 80f
  179. or GLOBAL_SPARE, %o2, GLOBAL_SPARE
  180. /* 2 blocks (128 bytes) is the minimum we can do the block
  181. * copy with. We need to ensure that we'll iterate at least
  182. * once in the block copy loop. At worst we'll need to align
  183. * the destination to a 64-byte boundary which can chew up
  184. * to (64 - 1) bytes from the length before we perform the
  185. * block copy loop.
  186. *
  187. * However, the cut-off point, performance wise, is around
  188. * 4 64-byte blocks.
  189. */
  190. cmp %o2, (4 * 64)
  191. blu,pt %XCC, 75f
  192. andcc GLOBAL_SPARE, 0x7, %g0
  193. /* %o0: dst
  194. * %o1: src
  195. * %o2: len (known to be >= 128)
  196. *
  197. * The block copy loops can use %o4, %g2, %g3 as
  198. * temporaries while copying the data. %o5 must
  199. * be preserved between VISEntryHalf and VISExitHalf
  200. */
  201. LOAD(prefetch, %o1 + 0x000, #one_read)
  202. LOAD(prefetch, %o1 + 0x040, #one_read)
  203. LOAD(prefetch, %o1 + 0x080, #one_read)
  204. /* Align destination on 64-byte boundary. */
  205. andcc %o0, (64 - 1), %o4
  206. be,pt %XCC, 2f
  207. sub %o4, 64, %o4
  208. sub %g0, %o4, %o4 ! bytes to align dst
  209. sub %o2, %o4, %o2
  210. 1: subcc %o4, 1, %o4
  211. EX_LD(LOAD(ldub, %o1, %g1))
  212. EX_ST(STORE(stb, %g1, %o0))
  213. add %o1, 1, %o1
  214. bne,pt %XCC, 1b
  215. add %o0, 1, %o0
  216. 2:
  217. /* Clobbers o5/g1/g2/g3/g7/icc/xcc. We must preserve
  218. * o5 from here until we hit VISExitHalf.
  219. */
  220. VISEntryHalf
  221. membar #Sync
  222. alignaddr %o1, %g0, %g0
  223. add %o1, (64 - 1), %o4
  224. andn %o4, (64 - 1), %o4
  225. andn %o2, (64 - 1), %g1
  226. sub %o2, %g1, %o2
  227. and %o1, (64 - 1), %g2
  228. add %o1, %g1, %o1
  229. sub %o0, %o4, %g3
  230. brz,pt %g2, 190f
  231. cmp %g2, 32
  232. blu,a 5f
  233. cmp %g2, 16
  234. cmp %g2, 48
  235. blu,a 4f
  236. cmp %g2, 40
  237. cmp %g2, 56
  238. blu 170f
  239. nop
  240. ba,a,pt %xcc, 180f
  241. 4: /* 32 <= low bits < 48 */
  242. blu 150f
  243. nop
  244. ba,a,pt %xcc, 160f
  245. 5: /* 0 < low bits < 32 */
  246. blu,a 6f
  247. cmp %g2, 8
  248. cmp %g2, 24
  249. blu 130f
  250. nop
  251. ba,a,pt %xcc, 140f
  252. 6: /* 0 < low bits < 16 */
  253. bgeu 120f
  254. nop
  255. /* fall through for 0 < low bits < 8 */
  256. 110: sub %o4, 64, %g2
  257. EX_LD_FP(LOAD_BLK(%g2, %f0))
  258. 1: EX_ST_FP(STORE_INIT(%g0, %o4 + %g3))
  259. EX_LD_FP(LOAD_BLK(%o4, %f16))
  260. FREG_FROB(f0, f2, f4, f6, f8, f10, f12, f14, f16)
  261. EX_ST_FP(STORE_BLK(%f0, %o4 + %g3))
  262. FREG_MOVE_8(f16, f18, f20, f22, f24, f26, f28, f30)
  263. subcc %g1, 64, %g1
  264. add %o4, 64, %o4
  265. bne,pt %xcc, 1b
  266. LOAD(prefetch, %o4 + 64, #one_read)
  267. ba,pt %xcc, 195f
  268. nop
  269. 120: sub %o4, 56, %g2
  270. FREG_LOAD_7(%g2, f0, f2, f4, f6, f8, f10, f12)
  271. 1: EX_ST_FP(STORE_INIT(%g0, %o4 + %g3))
  272. EX_LD_FP(LOAD_BLK(%o4, %f16))
  273. FREG_FROB(f0, f2, f4, f6, f8, f10, f12, f16, f18)
  274. EX_ST_FP(STORE_BLK(%f0, %o4 + %g3))
  275. FREG_MOVE_7(f18, f20, f22, f24, f26, f28, f30)
  276. subcc %g1, 64, %g1
  277. add %o4, 64, %o4
  278. bne,pt %xcc, 1b
  279. LOAD(prefetch, %o4 + 64, #one_read)
  280. ba,pt %xcc, 195f
  281. nop
  282. 130: sub %o4, 48, %g2
  283. FREG_LOAD_6(%g2, f0, f2, f4, f6, f8, f10)
  284. 1: EX_ST_FP(STORE_INIT(%g0, %o4 + %g3))
  285. EX_LD_FP(LOAD_BLK(%o4, %f16))
  286. FREG_FROB(f0, f2, f4, f6, f8, f10, f16, f18, f20)
  287. EX_ST_FP(STORE_BLK(%f0, %o4 + %g3))
  288. FREG_MOVE_6(f20, f22, f24, f26, f28, f30)
  289. subcc %g1, 64, %g1
  290. add %o4, 64, %o4
  291. bne,pt %xcc, 1b
  292. LOAD(prefetch, %o4 + 64, #one_read)
  293. ba,pt %xcc, 195f
  294. nop
  295. 140: sub %o4, 40, %g2
  296. FREG_LOAD_5(%g2, f0, f2, f4, f6, f8)
  297. 1: EX_ST_FP(STORE_INIT(%g0, %o4 + %g3))
  298. EX_LD_FP(LOAD_BLK(%o4, %f16))
  299. FREG_FROB(f0, f2, f4, f6, f8, f16, f18, f20, f22)
  300. EX_ST_FP(STORE_BLK(%f0, %o4 + %g3))
  301. FREG_MOVE_5(f22, f24, f26, f28, f30)
  302. subcc %g1, 64, %g1
  303. add %o4, 64, %o4
  304. bne,pt %xcc, 1b
  305. LOAD(prefetch, %o4 + 64, #one_read)
  306. ba,pt %xcc, 195f
  307. nop
  308. 150: sub %o4, 32, %g2
  309. FREG_LOAD_4(%g2, f0, f2, f4, f6)
  310. 1: EX_ST_FP(STORE_INIT(%g0, %o4 + %g3))
  311. EX_LD_FP(LOAD_BLK(%o4, %f16))
  312. FREG_FROB(f0, f2, f4, f6, f16, f18, f20, f22, f24)
  313. EX_ST_FP(STORE_BLK(%f0, %o4 + %g3))
  314. FREG_MOVE_4(f24, f26, f28, f30)
  315. subcc %g1, 64, %g1
  316. add %o4, 64, %o4
  317. bne,pt %xcc, 1b
  318. LOAD(prefetch, %o4 + 64, #one_read)
  319. ba,pt %xcc, 195f
  320. nop
  321. 160: sub %o4, 24, %g2
  322. FREG_LOAD_3(%g2, f0, f2, f4)
  323. 1: EX_ST_FP(STORE_INIT(%g0, %o4 + %g3))
  324. EX_LD_FP(LOAD_BLK(%o4, %f16))
  325. FREG_FROB(f0, f2, f4, f16, f18, f20, f22, f24, f26)
  326. EX_ST_FP(STORE_BLK(%f0, %o4 + %g3))
  327. FREG_MOVE_3(f26, f28, f30)
  328. subcc %g1, 64, %g1
  329. add %o4, 64, %o4
  330. bne,pt %xcc, 1b
  331. LOAD(prefetch, %o4 + 64, #one_read)
  332. ba,pt %xcc, 195f
  333. nop
  334. 170: sub %o4, 16, %g2
  335. FREG_LOAD_2(%g2, f0, f2)
  336. 1: EX_ST_FP(STORE_INIT(%g0, %o4 + %g3))
  337. EX_LD_FP(LOAD_BLK(%o4, %f16))
  338. FREG_FROB(f0, f2, f16, f18, f20, f22, f24, f26, f28)
  339. EX_ST_FP(STORE_BLK(%f0, %o4 + %g3))
  340. FREG_MOVE_2(f28, f30)
  341. subcc %g1, 64, %g1
  342. add %o4, 64, %o4
  343. bne,pt %xcc, 1b
  344. LOAD(prefetch, %o4 + 64, #one_read)
  345. ba,pt %xcc, 195f
  346. nop
  347. 180: sub %o4, 8, %g2
  348. FREG_LOAD_1(%g2, f0)
  349. 1: EX_ST_FP(STORE_INIT(%g0, %o4 + %g3))
  350. EX_LD_FP(LOAD_BLK(%o4, %f16))
  351. FREG_FROB(f0, f16, f18, f20, f22, f24, f26, f28, f30)
  352. EX_ST_FP(STORE_BLK(%f0, %o4 + %g3))
  353. FREG_MOVE_1(f30)
  354. subcc %g1, 64, %g1
  355. add %o4, 64, %o4
  356. bne,pt %xcc, 1b
  357. LOAD(prefetch, %o4 + 64, #one_read)
  358. ba,pt %xcc, 195f
  359. nop
  360. 190:
  361. 1: EX_ST_FP(STORE_INIT(%g0, %o4 + %g3))
  362. subcc %g1, 64, %g1
  363. EX_LD_FP(LOAD_BLK(%o4, %f0))
  364. EX_ST_FP(STORE_BLK(%f0, %o4 + %g3))
  365. add %o4, 64, %o4
  366. bne,pt %xcc, 1b
  367. LOAD(prefetch, %o4 + 64, #one_read)
  368. 195:
  369. add %o4, %g3, %o0
  370. membar #Sync
  371. VISExitHalf
  372. /* %o2 contains any final bytes still needed to be copied
  373. * over. If anything is left, we copy it one byte at a time.
  374. */
  375. brz,pt %o2, 85f
  376. sub %o0, %o1, GLOBAL_SPARE
  377. ba,a,pt %XCC, 90f
  378. .align 64
  379. 75: /* 16 < len <= 64 */
  380. bne,pn %XCC, 75f
  381. sub %o0, %o1, GLOBAL_SPARE
  382. 72:
  383. andn %o2, 0xf, %o4
  384. and %o2, 0xf, %o2
  385. 1: subcc %o4, 0x10, %o4
  386. EX_LD(LOAD(ldx, %o1, %o5))
  387. add %o1, 0x08, %o1
  388. EX_LD(LOAD(ldx, %o1, %g1))
  389. sub %o1, 0x08, %o1
  390. EX_ST(STORE(stx, %o5, %o1 + GLOBAL_SPARE))
  391. add %o1, 0x8, %o1
  392. EX_ST(STORE(stx, %g1, %o1 + GLOBAL_SPARE))
  393. bgu,pt %XCC, 1b
  394. add %o1, 0x8, %o1
  395. 73: andcc %o2, 0x8, %g0
  396. be,pt %XCC, 1f
  397. nop
  398. sub %o2, 0x8, %o2
  399. EX_LD(LOAD(ldx, %o1, %o5))
  400. EX_ST(STORE(stx, %o5, %o1 + GLOBAL_SPARE))
  401. add %o1, 0x8, %o1
  402. 1: andcc %o2, 0x4, %g0
  403. be,pt %XCC, 1f
  404. nop
  405. sub %o2, 0x4, %o2
  406. EX_LD(LOAD(lduw, %o1, %o5))
  407. EX_ST(STORE(stw, %o5, %o1 + GLOBAL_SPARE))
  408. add %o1, 0x4, %o1
  409. 1: cmp %o2, 0
  410. be,pt %XCC, 85f
  411. nop
  412. ba,pt %xcc, 90f
  413. nop
  414. 75:
  415. andcc %o0, 0x7, %g1
  416. sub %g1, 0x8, %g1
  417. be,pn %icc, 2f
  418. sub %g0, %g1, %g1
  419. sub %o2, %g1, %o2
  420. 1: subcc %g1, 1, %g1
  421. EX_LD(LOAD(ldub, %o1, %o5))
  422. EX_ST(STORE(stb, %o5, %o1 + GLOBAL_SPARE))
  423. bgu,pt %icc, 1b
  424. add %o1, 1, %o1
  425. 2: add %o1, GLOBAL_SPARE, %o0
  426. andcc %o1, 0x7, %g1
  427. bne,pt %icc, 8f
  428. sll %g1, 3, %g1
  429. cmp %o2, 16
  430. bgeu,pt %icc, 72b
  431. nop
  432. ba,a,pt %xcc, 73b
  433. 8: mov 64, GLOBAL_SPARE
  434. andn %o1, 0x7, %o1
  435. EX_LD(LOAD(ldx, %o1, %g2))
  436. sub GLOBAL_SPARE, %g1, GLOBAL_SPARE
  437. andn %o2, 0x7, %o4
  438. sllx %g2, %g1, %g2
  439. 1: add %o1, 0x8, %o1
  440. EX_LD(LOAD(ldx, %o1, %g3))
  441. subcc %o4, 0x8, %o4
  442. srlx %g3, GLOBAL_SPARE, %o5
  443. or %o5, %g2, %o5
  444. EX_ST(STORE(stx, %o5, %o0))
  445. add %o0, 0x8, %o0
  446. bgu,pt %icc, 1b
  447. sllx %g3, %g1, %g2
  448. srl %g1, 3, %g1
  449. andcc %o2, 0x7, %o2
  450. be,pn %icc, 85f
  451. add %o1, %g1, %o1
  452. ba,pt %xcc, 90f
  453. sub %o0, %o1, GLOBAL_SPARE
  454. .align 64
  455. 80: /* 0 < len <= 16 */
  456. andcc GLOBAL_SPARE, 0x3, %g0
  457. bne,pn %XCC, 90f
  458. sub %o0, %o1, GLOBAL_SPARE
  459. 1:
  460. subcc %o2, 4, %o2
  461. EX_LD(LOAD(lduw, %o1, %g1))
  462. EX_ST(STORE(stw, %g1, %o1 + GLOBAL_SPARE))
  463. bgu,pt %XCC, 1b
  464. add %o1, 4, %o1
  465. 85: retl
  466. mov EX_RETVAL(%o3), %o0
  467. .align 32
  468. 90:
  469. subcc %o2, 1, %o2
  470. EX_LD(LOAD(ldub, %o1, %g1))
  471. EX_ST(STORE(stb, %g1, %o1 + GLOBAL_SPARE))
  472. bgu,pt %XCC, 90b
  473. add %o1, 1, %o1
  474. retl
  475. mov EX_RETVAL(%o3), %o0
  476. .size FUNC_NAME, .-FUNC_NAME