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zgemv_n.S 11 kB

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  1. /*******************************************************************************
  2. Copyright (c) 2015, 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. #define ASSEMBLER
  28. #include "common.h"
  29. #define M x0 /* Y vector length */
  30. #define N x1 /* X vector length */
  31. #define A x3 /* A vector address */
  32. #define LDA x4 /* A stride */
  33. #define X x5 /* X vector address */
  34. #define INC_X x6 /* X stride */
  35. #define Y x7 /* Y vector address */
  36. #define INC_Y x2 /* Y stride */
  37. #define A_PTR x9 /* loop A vector address */
  38. #define Y_IPTR x10 /* loop Y vector address */
  39. #define J x11 /* loop variable */
  40. #define I x12 /* loop variable */
  41. #define Y_OPTR x13 /* loop Y vector address */
  42. #define X_PTR x14 /* loop X vector address */
  43. #define A_PRE_SIZE 768
  44. #define Y_PRE_SIZE 768
  45. /*******************************************************************************
  46. * Macro definitions
  47. *******************************************************************************/
  48. #if !defined(DOUBLE)
  49. #define ALPHA_R s0
  50. #define ALPHA_I s1
  51. #define SHZ 3
  52. #else
  53. #define ALPHA_R d0
  54. #define ALPHA_I d1
  55. #define SHZ 4
  56. #endif
  57. /******************************************************************************/
  58. .macro SAVE_REGS
  59. add sp, sp, #-(11 * 16)
  60. stp d8, d9, [sp, #(0 * 16)]
  61. stp d10, d11, [sp, #(1 * 16)]
  62. stp d12, d13, [sp, #(2 * 16)]
  63. stp d14, d15, [sp, #(3 * 16)]
  64. stp d16, d17, [sp, #(4 * 16)]
  65. stp x18, x19, [sp, #(5 * 16)]
  66. stp x20, x21, [sp, #(6 * 16)]
  67. stp x22, x23, [sp, #(7 * 16)]
  68. stp x24, x25, [sp, #(8 * 16)]
  69. stp x26, x27, [sp, #(9 * 16)]
  70. str x28, [sp, #(10 * 16)]
  71. .endm
  72. .macro RESTORE_REGS
  73. ldp d8, d9, [sp, #(0 * 16)]
  74. ldp d10, d11, [sp, #(1 * 16)]
  75. ldp d12, d13, [sp, #(2 * 16)]
  76. ldp d14, d15, [sp, #(3 * 16)]
  77. ldp d16, d17, [sp, #(4 * 16)]
  78. ldp x18, x19, [sp, #(5 * 16)]
  79. ldp x20, x21, [sp, #(6 * 16)]
  80. ldp x22, x23, [sp, #(7 * 16)]
  81. ldp x24, x25, [sp, #(8 * 16)]
  82. ldp x26, x27, [sp, #(9 * 16)]
  83. ldr x28, [sp, #(10 * 16)]
  84. add sp, sp, #(11*16)
  85. .endm
  86. .macro INIT
  87. #if !defined(DOUBLE)
  88. ins v0.s[1], v0.s[0] // R(ALPHA), R(ALPHA)
  89. eor v2.16b, v2.16b, v2.16b
  90. fsub s2, s2, ALPHA_I
  91. ins v1.s[1], v2.s[0] // -I(ALPHA), I(ALPHA)
  92. #if !defined(XCONJ)
  93. ext v1.8b, v1.8b, v1.8b, #4 // I(ALPHA), -I(ALPHA)
  94. #endif
  95. #else
  96. ins v0.d[1], v0.d[0] // R(ALPHA), R(ALPHA)
  97. eor v2.16b, v2.16b, v2.16b
  98. fsub d2, d2, ALPHA_I
  99. ins v1.d[1], v2.d[0] // -I(ALPHA), I(ALPHA)
  100. #if !defined(XCONJ)
  101. ext v1.16b, v1.16b, v1.16b, #8 // I(ALPHA), -I(ALPHA)
  102. #endif
  103. #endif
  104. .endm
  105. .macro INIT_LOOP
  106. #if !defined(DOUBLE)
  107. ld1 {v2.2s}, [X_PTR] // [I(X), R(X)]
  108. ext v3.8b, v2.8b, v2.8b, #4 // [R(X), I(X)]
  109. fmul v2.2s, v0.2s, v2.2s
  110. fmla v2.2s, v1.2s, v3.2s // [I(TEMP), R(TEMP)]
  111. ins v3.s[0], v2.s[1]
  112. /********** INIT_LOOP FOR F4 LOOP **********/
  113. #if !defined(CONJ)
  114. #if !defined(XCONJ)
  115. dup v21.4s, v2.s[0] // R[TEMP]
  116. dup v22.4s, v2.s[0] // R[TEMP]
  117. eor v25.16b, v25.16b, v25.16b
  118. fsub s25, s25, s3
  119. dup v23.4s, v25.s[0] // -I[TEMP]
  120. dup v24.4s, v3.s[0] // I[TEMP]
  121. #else
  122. dup v21.4s, v2.s[0] // R[TEMP]
  123. dup v22.4s, v2.s[0] // R[TEMP]
  124. dup v23.4s, v3.s[0] // I[TEMP]
  125. eor v25.16b, v25.16b, v25.16b
  126. fsub s25, s25, s3
  127. dup v24.4s, v25.s[0] // -I[TEMP]
  128. #endif
  129. #else // CONJ
  130. #if !defined(XCONJ)
  131. dup v21.4s, v2.s[0] // R[TEMP]
  132. eor v25.16b, v25.16b, v25.16b
  133. fsub s25, s25, s2
  134. dup v22.4s, v25.s[0] // R[TEMP]
  135. dup v23.4s, v3.s[0] // I[TEMP]
  136. dup v24.4s, v3.s[0] // I[TEMP]
  137. #else
  138. dup v21.4s, v2.s[0] // R[TEMP]
  139. eor v25.16b, v25.16b, v25.16b
  140. fsub s25, s25, s2
  141. dup v22.4s, v25.s[0] // R[TEMP]
  142. eor v25.16b, v25.16b, v25.16b
  143. fsub s25, s25, s3
  144. dup v23.4s, v25.s[0] // I[TEMP]
  145. dup v24.4s, v25.s[0] // I[TEMP]
  146. #endif
  147. #endif // CONJ
  148. /****** INIT_LOOP FOR F1 AND S1 LOOP ******/
  149. #if !defined(CONJ)
  150. #if !defined(XCONJ)
  151. eor v4.16b, v4.16b, v4.16b
  152. fsub s4, s4, s3
  153. ins v3.s[1], v4.s[0]
  154. ext v3.8b, v3.8b, v3.8b, #4 // [I(TEMP), -I(TEMP)]
  155. ins v2.s[1], v2.s[0] // [R(TEMP), R(TEMP)]
  156. #else
  157. eor v4.16b, v4.16b, v4.16b
  158. fsub s4, s4, s3
  159. ins v3.s[1], v4.s[0] // [-I(TEMP), I(TEMP)]
  160. ins v2.s[1], v2.s[0] // [R(TEMP), R(TEMP)]
  161. #endif
  162. #else // CONJ
  163. #if !defined(XCONJ)
  164. ins v3.s[1], v3.s[0] // [I(TEMP), I(TEMP)]
  165. eor v4.16b, v4.16b, v4.16b
  166. fsub s4, s4, s2
  167. ins v2.s[1], v4.s[0] // [-R(TEMP), R(TEMP)]
  168. #else
  169. eor v4.16b, v4.16b, v4.16b
  170. fsub s3, s4, s3
  171. ins v3.s[1], v3.s[0] // [-I(TEMP), -I(TEMP)]
  172. eor v4.16b, v4.16b, v4.16b
  173. fsub s4, s4, s2
  174. ins v2.s[1], v4.s[0] // [-R(TEMP), R(TEMP)]
  175. #endif
  176. #endif // CONJ
  177. #else // DOUBLE
  178. ld1 {v2.2d}, [X_PTR] // [I(X), R(X)]
  179. ext v3.16b, v2.16b, v2.16b, #8 // [R(X), I(X)]
  180. fmul v2.2d, v0.2d, v2.2d
  181. fmla v2.2d, v1.2d, v3.2d // [I(TEMP), R(TEMP)]
  182. ins v3.d[0], v2.d[1] // I(TEMP)
  183. /****** INIT_LOOP FOR F4 LOOP ******/
  184. #if !defined(CONJ)
  185. #if !defined(XCONJ)
  186. dup v21.2d, v2.d[0] // R[TEMP]
  187. dup v22.2d, v2.d[0] // R[TEMP]
  188. eor v25.16b, v25.16b, v25.16b
  189. fsub d25, d25, d3
  190. dup v23.2d, v25.d[0] // -I[TEMP]
  191. dup v24.2d, v3.d[0] // I[TEMP]
  192. #else
  193. dup v21.2d, v2.d[0] // R[TEMP]
  194. dup v22.2d, v2.d[0] // R[TEMP]
  195. dup v23.2d, v3.d[0] // I[TEMP]
  196. eor v25.16b, v25.16b, v25.16b
  197. fsub d25, d25, d3
  198. dup v24.2d, v25.d[0] // -I[TEMP]
  199. #endif
  200. #else // CONJ
  201. #if !defined(XCONJ)
  202. dup v21.2d, v2.d[0] // R[TEMP]
  203. eor v25.16b, v25.16b, v25.16b
  204. fsub d25, d25, d2
  205. dup v22.2d, v25.d[0] // R[TEMP]
  206. dup v23.2d, v3.d[0] // I[TEMP]
  207. dup v24.2d, v3.d[0] // I[TEMP]
  208. #else
  209. dup v21.2d, v2.d[0] // R[TEMP]
  210. eor v25.16b, v25.16b, v25.16b
  211. fsub d25, d25, d2
  212. dup v22.2d, v25.d[0] // R[TEMP]
  213. eor v25.16b, v25.16b, v25.16b
  214. fsub d25, d25, d3
  215. dup v23.2d, v25.d[0] // I[TEMP]
  216. dup v24.2d, v25.d[0] // I[TEMP]
  217. #endif
  218. #endif // CONJ
  219. /****** INIT_LOOP FOR F1 AND S1 LOOP ******/
  220. #if !defined(CONJ)
  221. #if !defined(XCONJ)
  222. eor v4.16b, v4.16b, v4.16b
  223. fsub d4, d4, d3
  224. ins v3.d[1], v4.d[0]
  225. ext v3.16b, v3.16b, v3.16b, #8 // [I(TEMP), -I(TEMP)]
  226. ins v2.d[1], v2.d[0] // [R(TEMP), R(TEMP)]
  227. #else
  228. eor v4.16b, v4.16b, v4.16b
  229. fsub d4, d4, d3
  230. ins v3.d[1], v4.d[0] // [-I(TEMP), I(TEMP)]
  231. ins v2.d[1], v2.d[0] // [R(TEMP), R(TEMP)]
  232. #endif
  233. #else // CONJ
  234. #if !defined(XCONJ)
  235. ins v3.d[1], v3.d[0] // [I(TEMP), I(TEMP)]
  236. eor v4.16b, v4.16b, v4.16b
  237. fsub d4, d4, d2
  238. ins v2.d[1], v4.d[0] // [-R(TEMP), R(TEMP)]
  239. #else
  240. eor v4.16b, v4.16b, v4.16b
  241. fsub d3, d4, d3
  242. ins v3.d[1], v3.d[0] // [-I(TEMP), -I(TEMP)]
  243. eor v4.16b, v4.16b, v4.16b
  244. fsub d4, d4, d2
  245. ins v2.d[1], v4.d[0] // [-R(TEMP), R(TEMP)]
  246. #endif
  247. #endif // CONJ
  248. #endif // DOUBLE
  249. .endm
  250. .macro KERNEL_F4
  251. #if !defined(DOUBLE)
  252. ld2 {v13.4s, v14.4s}, [A_PTR], #32
  253. ld2 {v15.4s, v16.4s}, [Y_IPTR], #32
  254. prfm PLDL1KEEP, [A_PTR, #A_PRE_SIZE]
  255. prfm PLDL1KEEP, [Y_IPTR, #Y_PRE_SIZE]
  256. fmla v15.4s, v21.4s, v13.4s
  257. fmla v15.4s, v23.4s, v14.4s
  258. fmla v16.4s, v22.4s, v14.4s
  259. fmla v16.4s, v24.4s, v13.4s
  260. st2 {v15.4s, v16.4s}, [Y_OPTR], #32
  261. #else // DOUBLE
  262. ld2 {v13.2d, v14.2d}, [A_PTR], #32
  263. ld2 {v15.2d, v16.2d}, [Y_IPTR], #32
  264. prfm PLDL1KEEP, [A_PTR, #A_PRE_SIZE]
  265. fmla v15.2d, v21.2d, v13.2d
  266. fmla v15.2d, v23.2d, v14.2d
  267. fmla v16.2d, v22.2d, v14.2d
  268. fmla v16.2d, v24.2d, v13.2d
  269. st2 {v15.2d, v16.2d}, [Y_OPTR], #32
  270. ld2 {v17.2d, v18.2d}, [A_PTR], #32
  271. ld2 {v19.2d, v20.2d}, [Y_IPTR], #32
  272. prfm PLDL1KEEP, [Y_IPTR, #Y_PRE_SIZE]
  273. fmla v19.2d, v21.2d, v17.2d
  274. fmla v19.2d, v23.2d, v18.2d
  275. fmla v20.2d, v22.2d, v18.2d
  276. fmla v20.2d, v24.2d, v17.2d
  277. st2 {v19.2d, v20.2d}, [Y_OPTR], #32
  278. #endif
  279. .endm
  280. .macro KERNEL_F1
  281. #if !defined(DOUBLE)
  282. ld1 {v4.2s}, [A_PTR], #8
  283. ld1 {v5.2s}, [Y_IPTR], #8
  284. ext v6.8b, v4.8b, v4.8b, #4
  285. fmla v5.2s, v2.2s, v4.2s
  286. fmla v5.2s, v3.2s, v6.2s
  287. st1 {v5.2s}, [Y_OPTR], #8
  288. #else // DOUBLE
  289. ld1 {v4.2d}, [A_PTR], #16
  290. ld1 {v5.2d}, [Y_IPTR], #16
  291. ext v6.16b, v4.16b, v4.16b, #8
  292. fmla v5.2d, v2.2d, v4.2d
  293. fmla v5.2d, v3.2d, v6.2d
  294. st1 {v5.2d}, [Y_OPTR], #16
  295. #endif
  296. .endm
  297. .macro INIT_S
  298. lsl INC_Y, INC_Y, #SHZ
  299. .endm
  300. .macro KERNEL_S1
  301. #if !defined(DOUBLE)
  302. ld1 {v4.2s}, [A_PTR], #8
  303. ld1 {v5.2s}, [Y_IPTR], INC_Y
  304. ext v6.8b, v4.8b, v4.8b, #4
  305. fmla v5.2s, v2.2s, v4.2s
  306. fmla v5.2s, v3.2s, v6.2s
  307. st1 {v5.2s}, [Y_OPTR], INC_Y
  308. #else // DOUBLE
  309. ld1 {v4.2d}, [A_PTR], #16
  310. ld1 {v5.2d}, [Y_IPTR], INC_Y
  311. ext v6.16b, v4.16b, v4.16b, #8
  312. fmla v5.2d, v2.2d, v4.2d
  313. fmla v5.2d, v3.2d, v6.2d
  314. st1 {v5.2d}, [Y_OPTR], INC_Y
  315. #endif
  316. .endm
  317. /*******************************************************************************
  318. * End of macro definitions
  319. *******************************************************************************/
  320. PROLOGUE
  321. ldr INC_Y, [sp]
  322. SAVE_REGS
  323. cmp N, xzr
  324. ble .Lzgemv_n_kernel_L999
  325. cmp M, xzr
  326. ble .Lzgemv_n_kernel_L999
  327. lsl LDA, LDA, #SHZ
  328. lsl INC_X, INC_X, #SHZ
  329. mov J, N
  330. INIT
  331. cmp INC_Y, #1
  332. bne .Lzgemv_n_kernel_S_BEGIN
  333. .Lzgemv_n_kernel_F_LOOP:
  334. mov A_PTR, A
  335. mov Y_IPTR, Y
  336. mov Y_OPTR, Y
  337. mov X_PTR, X
  338. add X, X, INC_X
  339. INIT_LOOP
  340. asr I, M, #2
  341. cmp I, xzr
  342. beq .Lzgemv_n_kernel_F1
  343. .Lzgemv_n_kernel_F4:
  344. KERNEL_F4
  345. subs I, I, #1
  346. bne .Lzgemv_n_kernel_F4
  347. .Lzgemv_n_kernel_F1:
  348. ands I, M, #3
  349. ble .Lzgemv_n_kernel_F_END
  350. .Lzgemv_n_kernel_F10:
  351. KERNEL_F1
  352. subs I, I, #1
  353. bne .Lzgemv_n_kernel_F10
  354. .Lzgemv_n_kernel_F_END:
  355. add A, A, LDA
  356. subs J, J, #1
  357. bne .Lzgemv_n_kernel_F_LOOP
  358. b .Lzgemv_n_kernel_L999
  359. .Lzgemv_n_kernel_S_BEGIN:
  360. INIT_S
  361. .Lzgemv_n_kernel_S_LOOP:
  362. mov A_PTR, A
  363. mov Y_IPTR, Y
  364. mov Y_OPTR, Y
  365. mov X_PTR, X
  366. add X, X, INC_X
  367. INIT_LOOP
  368. asr I, M, #2
  369. cmp I, xzr
  370. ble .Lzgemv_n_kernel_S1
  371. .Lzgemv_n_kernel_S4:
  372. KERNEL_S1
  373. KERNEL_S1
  374. KERNEL_S1
  375. KERNEL_S1
  376. subs I, I, #1
  377. bne .Lzgemv_n_kernel_S4
  378. .Lzgemv_n_kernel_S1:
  379. ands I, M, #3
  380. ble .Lzgemv_n_kernel_S_END
  381. .Lzgemv_n_kernel_S10:
  382. KERNEL_S1
  383. subs I, I, #1
  384. bne .Lzgemv_n_kernel_S10
  385. .Lzgemv_n_kernel_S_END:
  386. add A, A, LDA
  387. subs J, J, #1
  388. bne .Lzgemv_n_kernel_S_LOOP
  389. .Lzgemv_n_kernel_L999:
  390. RESTORE_REGS
  391. mov w0, wzr
  392. ret
  393. EPILOGUE