recov_rvv.c 5.3 KB

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  1. // SPDX-License-Identifier: GPL-2.0-only
  2. /*
  3. * Copyright 2024 Institute of Software, CAS.
  4. * Author: Chunyan Zhang <zhangchunyan@iscas.ac.cn>
  5. */
  6. #include <linux/raid/pq.h>
  7. #include "rvv.h"
  8. static void __raid6_2data_recov_rvv(int bytes, u8 *p, u8 *q, u8 *dp,
  9. u8 *dq, const u8 *pbmul,
  10. const u8 *qmul)
  11. {
  12. asm volatile (".option push\n"
  13. ".option arch,+v\n"
  14. "vsetvli x0, %[avl], e8, m1, ta, ma\n"
  15. ".option pop\n"
  16. : :
  17. [avl]"r"(16)
  18. );
  19. /*
  20. * while ( bytes-- ) {
  21. * uint8_t px, qx, db;
  22. *
  23. * px = *p ^ *dp;
  24. * qx = qmul[*q ^ *dq];
  25. * *dq++ = db = pbmul[px] ^ qx;
  26. * *dp++ = db ^ px;
  27. * p++; q++;
  28. * }
  29. */
  30. while (bytes) {
  31. /*
  32. * v0:px, v1:dp,
  33. * v2:qx, v3:dq,
  34. * v4:vx, v5:vy,
  35. * v6:qm0, v7:qm1,
  36. * v8:pm0, v9:pm1,
  37. * v14:p/qm[vx], v15:p/qm[vy]
  38. */
  39. asm volatile (".option push\n"
  40. ".option arch,+v\n"
  41. "vle8.v v0, (%[px])\n"
  42. "vle8.v v1, (%[dp])\n"
  43. "vxor.vv v0, v0, v1\n"
  44. "vle8.v v2, (%[qx])\n"
  45. "vle8.v v3, (%[dq])\n"
  46. "vxor.vv v4, v2, v3\n"
  47. "vsrl.vi v5, v4, 4\n"
  48. "vand.vi v4, v4, 0xf\n"
  49. "vle8.v v6, (%[qm0])\n"
  50. "vle8.v v7, (%[qm1])\n"
  51. "vrgather.vv v14, v6, v4\n" /* v14 = qm[vx] */
  52. "vrgather.vv v15, v7, v5\n" /* v15 = qm[vy] */
  53. "vxor.vv v2, v14, v15\n" /* v2 = qmul[*q ^ *dq] */
  54. "vsrl.vi v5, v0, 4\n"
  55. "vand.vi v4, v0, 0xf\n"
  56. "vle8.v v8, (%[pm0])\n"
  57. "vle8.v v9, (%[pm1])\n"
  58. "vrgather.vv v14, v8, v4\n" /* v14 = pm[vx] */
  59. "vrgather.vv v15, v9, v5\n" /* v15 = pm[vy] */
  60. "vxor.vv v4, v14, v15\n" /* v4 = pbmul[px] */
  61. "vxor.vv v3, v4, v2\n" /* v3 = db = pbmul[px] ^ qx */
  62. "vxor.vv v1, v3, v0\n" /* v1 = db ^ px; */
  63. "vse8.v v3, (%[dq])\n"
  64. "vse8.v v1, (%[dp])\n"
  65. ".option pop\n"
  66. : :
  67. [px]"r"(p),
  68. [dp]"r"(dp),
  69. [qx]"r"(q),
  70. [dq]"r"(dq),
  71. [qm0]"r"(qmul),
  72. [qm1]"r"(qmul + 16),
  73. [pm0]"r"(pbmul),
  74. [pm1]"r"(pbmul + 16)
  75. :);
  76. bytes -= 16;
  77. p += 16;
  78. q += 16;
  79. dp += 16;
  80. dq += 16;
  81. }
  82. }
  83. static void __raid6_datap_recov_rvv(int bytes, u8 *p, u8 *q,
  84. u8 *dq, const u8 *qmul)
  85. {
  86. asm volatile (".option push\n"
  87. ".option arch,+v\n"
  88. "vsetvli x0, %[avl], e8, m1, ta, ma\n"
  89. ".option pop\n"
  90. : :
  91. [avl]"r"(16)
  92. );
  93. /*
  94. * while (bytes--) {
  95. * *p++ ^= *dq = qmul[*q ^ *dq];
  96. * q++; dq++;
  97. * }
  98. */
  99. while (bytes) {
  100. /*
  101. * v0:vx, v1:vy,
  102. * v2:dq, v3:p,
  103. * v4:qm0, v5:qm1,
  104. * v10:m[vx], v11:m[vy]
  105. */
  106. asm volatile (".option push\n"
  107. ".option arch,+v\n"
  108. "vle8.v v0, (%[vx])\n"
  109. "vle8.v v2, (%[dq])\n"
  110. "vxor.vv v0, v0, v2\n"
  111. "vsrl.vi v1, v0, 4\n"
  112. "vand.vi v0, v0, 0xf\n"
  113. "vle8.v v4, (%[qm0])\n"
  114. "vle8.v v5, (%[qm1])\n"
  115. "vrgather.vv v10, v4, v0\n"
  116. "vrgather.vv v11, v5, v1\n"
  117. "vxor.vv v0, v10, v11\n"
  118. "vle8.v v1, (%[vy])\n"
  119. "vxor.vv v1, v0, v1\n"
  120. "vse8.v v0, (%[dq])\n"
  121. "vse8.v v1, (%[vy])\n"
  122. ".option pop\n"
  123. : :
  124. [vx]"r"(q),
  125. [vy]"r"(p),
  126. [dq]"r"(dq),
  127. [qm0]"r"(qmul),
  128. [qm1]"r"(qmul + 16)
  129. :);
  130. bytes -= 16;
  131. p += 16;
  132. q += 16;
  133. dq += 16;
  134. }
  135. }
  136. static void raid6_2data_recov_rvv(int disks, size_t bytes, int faila,
  137. int failb, void **ptrs)
  138. {
  139. u8 *p, *q, *dp, *dq;
  140. const u8 *pbmul; /* P multiplier table for B data */
  141. const u8 *qmul; /* Q multiplier table (for both) */
  142. p = (u8 *)ptrs[disks - 2];
  143. q = (u8 *)ptrs[disks - 1];
  144. /*
  145. * Compute syndrome with zero for the missing data pages
  146. * Use the dead data pages as temporary storage for
  147. * delta p and delta q
  148. */
  149. dp = (u8 *)ptrs[faila];
  150. ptrs[faila] = raid6_get_zero_page();
  151. ptrs[disks - 2] = dp;
  152. dq = (u8 *)ptrs[failb];
  153. ptrs[failb] = raid6_get_zero_page();
  154. ptrs[disks - 1] = dq;
  155. raid6_call.gen_syndrome(disks, bytes, ptrs);
  156. /* Restore pointer table */
  157. ptrs[faila] = dp;
  158. ptrs[failb] = dq;
  159. ptrs[disks - 2] = p;
  160. ptrs[disks - 1] = q;
  161. /* Now, pick the proper data tables */
  162. pbmul = raid6_vgfmul[raid6_gfexi[failb - faila]];
  163. qmul = raid6_vgfmul[raid6_gfinv[raid6_gfexp[faila] ^
  164. raid6_gfexp[failb]]];
  165. kernel_vector_begin();
  166. __raid6_2data_recov_rvv(bytes, p, q, dp, dq, pbmul, qmul);
  167. kernel_vector_end();
  168. }
  169. static void raid6_datap_recov_rvv(int disks, size_t bytes, int faila,
  170. void **ptrs)
  171. {
  172. u8 *p, *q, *dq;
  173. const u8 *qmul; /* Q multiplier table */
  174. p = (u8 *)ptrs[disks - 2];
  175. q = (u8 *)ptrs[disks - 1];
  176. /*
  177. * Compute syndrome with zero for the missing data page
  178. * Use the dead data page as temporary storage for delta q
  179. */
  180. dq = (u8 *)ptrs[faila];
  181. ptrs[faila] = raid6_get_zero_page();
  182. ptrs[disks - 1] = dq;
  183. raid6_call.gen_syndrome(disks, bytes, ptrs);
  184. /* Restore pointer table */
  185. ptrs[faila] = dq;
  186. ptrs[disks - 1] = q;
  187. /* Now, pick the proper data tables */
  188. qmul = raid6_vgfmul[raid6_gfinv[raid6_gfexp[faila]]];
  189. kernel_vector_begin();
  190. __raid6_datap_recov_rvv(bytes, p, q, dq, qmul);
  191. kernel_vector_end();
  192. }
  193. const struct raid6_recov_calls raid6_recov_rvv = {
  194. .data2 = raid6_2data_recov_rvv,
  195. .datap = raid6_datap_recov_rvv,
  196. .valid = rvv_has_vector,
  197. .name = "rvv",
  198. .priority = 1,
  199. };