recov_avx2.c 8.8 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313
  1. // SPDX-License-Identifier: GPL-2.0-only
  2. /*
  3. * Copyright (C) 2012 Intel Corporation
  4. * Author: Jim Kukunas <[email protected]>
  5. */
  6. #include <linux/raid/pq.h>
  7. #include "x86.h"
  8. static int raid6_has_avx2(void)
  9. {
  10. return boot_cpu_has(X86_FEATURE_AVX2) &&
  11. boot_cpu_has(X86_FEATURE_AVX);
  12. }
  13. static void raid6_2data_recov_avx2(int disks, size_t bytes, int faila,
  14. int failb, void **ptrs)
  15. {
  16. u8 *p, *q, *dp, *dq;
  17. const u8 *pbmul; /* P multiplier table for B data */
  18. const u8 *qmul; /* Q multiplier table (for both) */
  19. const u8 x0f = 0x0f;
  20. p = (u8 *)ptrs[disks-2];
  21. q = (u8 *)ptrs[disks-1];
  22. /* Compute syndrome with zero for the missing data pages
  23. Use the dead data pages as temporary storage for
  24. delta p and delta q */
  25. dp = (u8 *)ptrs[faila];
  26. ptrs[faila] = (void *)raid6_empty_zero_page;
  27. ptrs[disks-2] = dp;
  28. dq = (u8 *)ptrs[failb];
  29. ptrs[failb] = (void *)raid6_empty_zero_page;
  30. ptrs[disks-1] = dq;
  31. raid6_call.gen_syndrome(disks, bytes, ptrs);
  32. /* Restore pointer table */
  33. ptrs[faila] = dp;
  34. ptrs[failb] = dq;
  35. ptrs[disks-2] = p;
  36. ptrs[disks-1] = q;
  37. /* Now, pick the proper data tables */
  38. pbmul = raid6_vgfmul[raid6_gfexi[failb-faila]];
  39. qmul = raid6_vgfmul[raid6_gfinv[raid6_gfexp[faila] ^
  40. raid6_gfexp[failb]]];
  41. kernel_fpu_begin();
  42. /* ymm0 = x0f[16] */
  43. asm volatile("vpbroadcastb %0, %%ymm7" : : "m" (x0f));
  44. while (bytes) {
  45. #ifdef CONFIG_X86_64
  46. asm volatile("vmovdqa %0, %%ymm1" : : "m" (q[0]));
  47. asm volatile("vmovdqa %0, %%ymm9" : : "m" (q[32]));
  48. asm volatile("vmovdqa %0, %%ymm0" : : "m" (p[0]));
  49. asm volatile("vmovdqa %0, %%ymm8" : : "m" (p[32]));
  50. asm volatile("vpxor %0, %%ymm1, %%ymm1" : : "m" (dq[0]));
  51. asm volatile("vpxor %0, %%ymm9, %%ymm9" : : "m" (dq[32]));
  52. asm volatile("vpxor %0, %%ymm0, %%ymm0" : : "m" (dp[0]));
  53. asm volatile("vpxor %0, %%ymm8, %%ymm8" : : "m" (dp[32]));
  54. /*
  55. * 1 = dq[0] ^ q[0]
  56. * 9 = dq[32] ^ q[32]
  57. * 0 = dp[0] ^ p[0]
  58. * 8 = dp[32] ^ p[32]
  59. */
  60. asm volatile("vbroadcasti128 %0, %%ymm4" : : "m" (qmul[0]));
  61. asm volatile("vbroadcasti128 %0, %%ymm5" : : "m" (qmul[16]));
  62. asm volatile("vpsraw $4, %ymm1, %ymm3");
  63. asm volatile("vpsraw $4, %ymm9, %ymm12");
  64. asm volatile("vpand %ymm7, %ymm1, %ymm1");
  65. asm volatile("vpand %ymm7, %ymm9, %ymm9");
  66. asm volatile("vpand %ymm7, %ymm3, %ymm3");
  67. asm volatile("vpand %ymm7, %ymm12, %ymm12");
  68. asm volatile("vpshufb %ymm9, %ymm4, %ymm14");
  69. asm volatile("vpshufb %ymm1, %ymm4, %ymm4");
  70. asm volatile("vpshufb %ymm12, %ymm5, %ymm15");
  71. asm volatile("vpshufb %ymm3, %ymm5, %ymm5");
  72. asm volatile("vpxor %ymm14, %ymm15, %ymm15");
  73. asm volatile("vpxor %ymm4, %ymm5, %ymm5");
  74. /*
  75. * 5 = qx[0]
  76. * 15 = qx[32]
  77. */
  78. asm volatile("vbroadcasti128 %0, %%ymm4" : : "m" (pbmul[0]));
  79. asm volatile("vbroadcasti128 %0, %%ymm1" : : "m" (pbmul[16]));
  80. asm volatile("vpsraw $4, %ymm0, %ymm2");
  81. asm volatile("vpsraw $4, %ymm8, %ymm6");
  82. asm volatile("vpand %ymm7, %ymm0, %ymm3");
  83. asm volatile("vpand %ymm7, %ymm8, %ymm14");
  84. asm volatile("vpand %ymm7, %ymm2, %ymm2");
  85. asm volatile("vpand %ymm7, %ymm6, %ymm6");
  86. asm volatile("vpshufb %ymm14, %ymm4, %ymm12");
  87. asm volatile("vpshufb %ymm3, %ymm4, %ymm4");
  88. asm volatile("vpshufb %ymm6, %ymm1, %ymm13");
  89. asm volatile("vpshufb %ymm2, %ymm1, %ymm1");
  90. asm volatile("vpxor %ymm4, %ymm1, %ymm1");
  91. asm volatile("vpxor %ymm12, %ymm13, %ymm13");
  92. /*
  93. * 1 = pbmul[px[0]]
  94. * 13 = pbmul[px[32]]
  95. */
  96. asm volatile("vpxor %ymm5, %ymm1, %ymm1");
  97. asm volatile("vpxor %ymm15, %ymm13, %ymm13");
  98. /*
  99. * 1 = db = DQ
  100. * 13 = db[32] = DQ[32]
  101. */
  102. asm volatile("vmovdqa %%ymm1, %0" : "=m" (dq[0]));
  103. asm volatile("vmovdqa %%ymm13,%0" : "=m" (dq[32]));
  104. asm volatile("vpxor %ymm1, %ymm0, %ymm0");
  105. asm volatile("vpxor %ymm13, %ymm8, %ymm8");
  106. asm volatile("vmovdqa %%ymm0, %0" : "=m" (dp[0]));
  107. asm volatile("vmovdqa %%ymm8, %0" : "=m" (dp[32]));
  108. bytes -= 64;
  109. p += 64;
  110. q += 64;
  111. dp += 64;
  112. dq += 64;
  113. #else
  114. asm volatile("vmovdqa %0, %%ymm1" : : "m" (*q));
  115. asm volatile("vmovdqa %0, %%ymm0" : : "m" (*p));
  116. asm volatile("vpxor %0, %%ymm1, %%ymm1" : : "m" (*dq));
  117. asm volatile("vpxor %0, %%ymm0, %%ymm0" : : "m" (*dp));
  118. /* 1 = dq ^ q; 0 = dp ^ p */
  119. asm volatile("vbroadcasti128 %0, %%ymm4" : : "m" (qmul[0]));
  120. asm volatile("vbroadcasti128 %0, %%ymm5" : : "m" (qmul[16]));
  121. /*
  122. * 1 = dq ^ q
  123. * 3 = dq ^ p >> 4
  124. */
  125. asm volatile("vpsraw $4, %ymm1, %ymm3");
  126. asm volatile("vpand %ymm7, %ymm1, %ymm1");
  127. asm volatile("vpand %ymm7, %ymm3, %ymm3");
  128. asm volatile("vpshufb %ymm1, %ymm4, %ymm4");
  129. asm volatile("vpshufb %ymm3, %ymm5, %ymm5");
  130. asm volatile("vpxor %ymm4, %ymm5, %ymm5");
  131. /* 5 = qx */
  132. asm volatile("vbroadcasti128 %0, %%ymm4" : : "m" (pbmul[0]));
  133. asm volatile("vbroadcasti128 %0, %%ymm1" : : "m" (pbmul[16]));
  134. asm volatile("vpsraw $4, %ymm0, %ymm2");
  135. asm volatile("vpand %ymm7, %ymm0, %ymm3");
  136. asm volatile("vpand %ymm7, %ymm2, %ymm2");
  137. asm volatile("vpshufb %ymm3, %ymm4, %ymm4");
  138. asm volatile("vpshufb %ymm2, %ymm1, %ymm1");
  139. asm volatile("vpxor %ymm4, %ymm1, %ymm1");
  140. /* 1 = pbmul[px] */
  141. asm volatile("vpxor %ymm5, %ymm1, %ymm1");
  142. /* 1 = db = DQ */
  143. asm volatile("vmovdqa %%ymm1, %0" : "=m" (dq[0]));
  144. asm volatile("vpxor %ymm1, %ymm0, %ymm0");
  145. asm volatile("vmovdqa %%ymm0, %0" : "=m" (dp[0]));
  146. bytes -= 32;
  147. p += 32;
  148. q += 32;
  149. dp += 32;
  150. dq += 32;
  151. #endif
  152. }
  153. kernel_fpu_end();
  154. }
  155. static void raid6_datap_recov_avx2(int disks, size_t bytes, int faila,
  156. void **ptrs)
  157. {
  158. u8 *p, *q, *dq;
  159. const u8 *qmul; /* Q multiplier table */
  160. const u8 x0f = 0x0f;
  161. p = (u8 *)ptrs[disks-2];
  162. q = (u8 *)ptrs[disks-1];
  163. /* Compute syndrome with zero for the missing data page
  164. Use the dead data page as temporary storage for delta q */
  165. dq = (u8 *)ptrs[faila];
  166. ptrs[faila] = (void *)raid6_empty_zero_page;
  167. ptrs[disks-1] = dq;
  168. raid6_call.gen_syndrome(disks, bytes, ptrs);
  169. /* Restore pointer table */
  170. ptrs[faila] = dq;
  171. ptrs[disks-1] = q;
  172. /* Now, pick the proper data tables */
  173. qmul = raid6_vgfmul[raid6_gfinv[raid6_gfexp[faila]]];
  174. kernel_fpu_begin();
  175. asm volatile("vpbroadcastb %0, %%ymm7" : : "m" (x0f));
  176. while (bytes) {
  177. #ifdef CONFIG_X86_64
  178. asm volatile("vmovdqa %0, %%ymm3" : : "m" (dq[0]));
  179. asm volatile("vmovdqa %0, %%ymm8" : : "m" (dq[32]));
  180. asm volatile("vpxor %0, %%ymm3, %%ymm3" : : "m" (q[0]));
  181. asm volatile("vpxor %0, %%ymm8, %%ymm8" : : "m" (q[32]));
  182. /*
  183. * 3 = q[0] ^ dq[0]
  184. * 8 = q[32] ^ dq[32]
  185. */
  186. asm volatile("vbroadcasti128 %0, %%ymm0" : : "m" (qmul[0]));
  187. asm volatile("vmovapd %ymm0, %ymm13");
  188. asm volatile("vbroadcasti128 %0, %%ymm1" : : "m" (qmul[16]));
  189. asm volatile("vmovapd %ymm1, %ymm14");
  190. asm volatile("vpsraw $4, %ymm3, %ymm6");
  191. asm volatile("vpsraw $4, %ymm8, %ymm12");
  192. asm volatile("vpand %ymm7, %ymm3, %ymm3");
  193. asm volatile("vpand %ymm7, %ymm8, %ymm8");
  194. asm volatile("vpand %ymm7, %ymm6, %ymm6");
  195. asm volatile("vpand %ymm7, %ymm12, %ymm12");
  196. asm volatile("vpshufb %ymm3, %ymm0, %ymm0");
  197. asm volatile("vpshufb %ymm8, %ymm13, %ymm13");
  198. asm volatile("vpshufb %ymm6, %ymm1, %ymm1");
  199. asm volatile("vpshufb %ymm12, %ymm14, %ymm14");
  200. asm volatile("vpxor %ymm0, %ymm1, %ymm1");
  201. asm volatile("vpxor %ymm13, %ymm14, %ymm14");
  202. /*
  203. * 1 = qmul[q[0] ^ dq[0]]
  204. * 14 = qmul[q[32] ^ dq[32]]
  205. */
  206. asm volatile("vmovdqa %0, %%ymm2" : : "m" (p[0]));
  207. asm volatile("vmovdqa %0, %%ymm12" : : "m" (p[32]));
  208. asm volatile("vpxor %ymm1, %ymm2, %ymm2");
  209. asm volatile("vpxor %ymm14, %ymm12, %ymm12");
  210. /*
  211. * 2 = p[0] ^ qmul[q[0] ^ dq[0]]
  212. * 12 = p[32] ^ qmul[q[32] ^ dq[32]]
  213. */
  214. asm volatile("vmovdqa %%ymm1, %0" : "=m" (dq[0]));
  215. asm volatile("vmovdqa %%ymm14, %0" : "=m" (dq[32]));
  216. asm volatile("vmovdqa %%ymm2, %0" : "=m" (p[0]));
  217. asm volatile("vmovdqa %%ymm12,%0" : "=m" (p[32]));
  218. bytes -= 64;
  219. p += 64;
  220. q += 64;
  221. dq += 64;
  222. #else
  223. asm volatile("vmovdqa %0, %%ymm3" : : "m" (dq[0]));
  224. asm volatile("vpxor %0, %%ymm3, %%ymm3" : : "m" (q[0]));
  225. /* 3 = q ^ dq */
  226. asm volatile("vbroadcasti128 %0, %%ymm0" : : "m" (qmul[0]));
  227. asm volatile("vbroadcasti128 %0, %%ymm1" : : "m" (qmul[16]));
  228. asm volatile("vpsraw $4, %ymm3, %ymm6");
  229. asm volatile("vpand %ymm7, %ymm3, %ymm3");
  230. asm volatile("vpand %ymm7, %ymm6, %ymm6");
  231. asm volatile("vpshufb %ymm3, %ymm0, %ymm0");
  232. asm volatile("vpshufb %ymm6, %ymm1, %ymm1");
  233. asm volatile("vpxor %ymm0, %ymm1, %ymm1");
  234. /* 1 = qmul[q ^ dq] */
  235. asm volatile("vmovdqa %0, %%ymm2" : : "m" (p[0]));
  236. asm volatile("vpxor %ymm1, %ymm2, %ymm2");
  237. /* 2 = p ^ qmul[q ^ dq] */
  238. asm volatile("vmovdqa %%ymm1, %0" : "=m" (dq[0]));
  239. asm volatile("vmovdqa %%ymm2, %0" : "=m" (p[0]));
  240. bytes -= 32;
  241. p += 32;
  242. q += 32;
  243. dq += 32;
  244. #endif
  245. }
  246. kernel_fpu_end();
  247. }
  248. const struct raid6_recov_calls raid6_recov_avx2 = {
  249. .data2 = raid6_2data_recov_avx2,
  250. .datap = raid6_datap_recov_avx2,
  251. .valid = raid6_has_avx2,
  252. #ifdef CONFIG_X86_64
  253. .name = "avx2x2",
  254. #else
  255. .name = "avx2x1",
  256. #endif
  257. .priority = 2,
  258. };