async_pq.c 12 KB

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  1. /*
  2. * Copyright(c) 2007 Yuri Tikhonov <yur@emcraft.com>
  3. * Copyright(c) 2009 Intel Corporation
  4. *
  5. * This program is free software; you can redistribute it and/or modify it
  6. * under the terms of the GNU General Public License as published by the Free
  7. * Software Foundation; either version 2 of the License, or (at your option)
  8. * any later version.
  9. *
  10. * This program is distributed in the hope that it will be useful, but WITHOUT
  11. * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
  12. * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
  13. * more details.
  14. *
  15. * You should have received a copy of the GNU General Public License along with
  16. * this program; if not, write to the Free Software Foundation, Inc., 59
  17. * Temple Place - Suite 330, Boston, MA 02111-1307, USA.
  18. *
  19. * The full GNU General Public License is included in this distribution in the
  20. * file called COPYING.
  21. */
  22. #include <linux/kernel.h>
  23. #include <linux/interrupt.h>
  24. #include <linux/dma-mapping.h>
  25. #include <linux/raid/pq.h>
  26. #include <linux/async_tx.h>
  27. /**
  28. * scribble - space to hold throwaway P buffer for synchronous gen_syndrome
  29. */
  30. static struct page *scribble;
  31. /* the struct page *blocks[] parameter passed to async_gen_syndrome()
  32. * and async_syndrome_val() contains the 'P' destination address at
  33. * blocks[disks-2] and the 'Q' destination address at blocks[disks-1]
  34. *
  35. * note: these are macros as they are used as lvalues
  36. */
  37. #define P(b, d) (b[d-2])
  38. #define Q(b, d) (b[d-1])
  39. /**
  40. * do_async_gen_syndrome - asynchronously calculate P and/or Q
  41. */
  42. static __async_inline struct dma_async_tx_descriptor *
  43. do_async_gen_syndrome(struct dma_chan *chan, struct page **blocks,
  44. const unsigned char *scfs, unsigned int offset, int disks,
  45. size_t len, dma_addr_t *dma_src,
  46. struct async_submit_ctl *submit)
  47. {
  48. struct dma_async_tx_descriptor *tx = NULL;
  49. struct dma_device *dma = chan->device;
  50. enum dma_ctrl_flags dma_flags = 0;
  51. enum async_tx_flags flags_orig = submit->flags;
  52. dma_async_tx_callback cb_fn_orig = submit->cb_fn;
  53. dma_async_tx_callback cb_param_orig = submit->cb_param;
  54. int src_cnt = disks - 2;
  55. unsigned char coefs[src_cnt];
  56. unsigned short pq_src_cnt;
  57. dma_addr_t dma_dest[2];
  58. int src_off = 0;
  59. int idx;
  60. int i;
  61. /* DMAs use destinations as sources, so use BIDIRECTIONAL mapping */
  62. if (P(blocks, disks))
  63. dma_dest[0] = dma_map_page(dma->dev, P(blocks, disks), offset,
  64. len, DMA_BIDIRECTIONAL);
  65. else
  66. dma_flags |= DMA_PREP_PQ_DISABLE_P;
  67. if (Q(blocks, disks))
  68. dma_dest[1] = dma_map_page(dma->dev, Q(blocks, disks), offset,
  69. len, DMA_BIDIRECTIONAL);
  70. else
  71. dma_flags |= DMA_PREP_PQ_DISABLE_Q;
  72. /* convert source addresses being careful to collapse 'empty'
  73. * sources and update the coefficients accordingly
  74. */
  75. for (i = 0, idx = 0; i < src_cnt; i++) {
  76. if (blocks[i] == NULL)
  77. continue;
  78. dma_src[idx] = dma_map_page(dma->dev, blocks[i], offset, len,
  79. DMA_TO_DEVICE);
  80. coefs[idx] = scfs[i];
  81. idx++;
  82. }
  83. src_cnt = idx;
  84. while (src_cnt > 0) {
  85. submit->flags = flags_orig;
  86. pq_src_cnt = min(src_cnt, dma_maxpq(dma, dma_flags));
  87. /* if we are submitting additional pqs, leave the chain open,
  88. * clear the callback parameters, and leave the destination
  89. * buffers mapped
  90. */
  91. if (src_cnt > pq_src_cnt) {
  92. submit->flags &= ~ASYNC_TX_ACK;
  93. submit->flags |= ASYNC_TX_FENCE;
  94. dma_flags |= DMA_COMPL_SKIP_DEST_UNMAP;
  95. submit->cb_fn = NULL;
  96. submit->cb_param = NULL;
  97. } else {
  98. dma_flags &= ~DMA_COMPL_SKIP_DEST_UNMAP;
  99. submit->cb_fn = cb_fn_orig;
  100. submit->cb_param = cb_param_orig;
  101. if (cb_fn_orig)
  102. dma_flags |= DMA_PREP_INTERRUPT;
  103. }
  104. if (submit->flags & ASYNC_TX_FENCE)
  105. dma_flags |= DMA_PREP_FENCE;
  106. /* Since we have clobbered the src_list we are committed
  107. * to doing this asynchronously. Drivers force forward
  108. * progress in case they can not provide a descriptor
  109. */
  110. for (;;) {
  111. tx = dma->device_prep_dma_pq(chan, dma_dest,
  112. &dma_src[src_off],
  113. pq_src_cnt,
  114. &coefs[src_off], len,
  115. dma_flags);
  116. if (likely(tx))
  117. break;
  118. async_tx_quiesce(&submit->depend_tx);
  119. dma_async_issue_pending(chan);
  120. }
  121. async_tx_submit(chan, tx, submit);
  122. submit->depend_tx = tx;
  123. /* drop completed sources */
  124. src_cnt -= pq_src_cnt;
  125. src_off += pq_src_cnt;
  126. dma_flags |= DMA_PREP_CONTINUE;
  127. }
  128. return tx;
  129. }
  130. /**
  131. * do_sync_gen_syndrome - synchronously calculate a raid6 syndrome
  132. */
  133. static void
  134. do_sync_gen_syndrome(struct page **blocks, unsigned int offset, int disks,
  135. size_t len, struct async_submit_ctl *submit)
  136. {
  137. void **srcs;
  138. int i;
  139. if (submit->scribble)
  140. srcs = submit->scribble;
  141. else
  142. srcs = (void **) blocks;
  143. for (i = 0; i < disks; i++) {
  144. if (blocks[i] == NULL) {
  145. BUG_ON(i > disks - 3); /* P or Q can't be zero */
  146. srcs[i] = (void*)raid6_empty_zero_page;
  147. } else
  148. srcs[i] = page_address(blocks[i]) + offset;
  149. }
  150. raid6_call.gen_syndrome(disks, len, srcs);
  151. async_tx_sync_epilog(submit);
  152. }
  153. /**
  154. * async_gen_syndrome - asynchronously calculate a raid6 syndrome
  155. * @blocks: source blocks from idx 0..disks-3, P @ disks-2 and Q @ disks-1
  156. * @offset: common offset into each block (src and dest) to start transaction
  157. * @disks: number of blocks (including missing P or Q, see below)
  158. * @len: length of operation in bytes
  159. * @submit: submission/completion modifiers
  160. *
  161. * General note: This routine assumes a field of GF(2^8) with a
  162. * primitive polynomial of 0x11d and a generator of {02}.
  163. *
  164. * 'disks' note: callers can optionally omit either P or Q (but not
  165. * both) from the calculation by setting blocks[disks-2] or
  166. * blocks[disks-1] to NULL. When P or Q is omitted 'len' must be <=
  167. * PAGE_SIZE as a temporary buffer of this size is used in the
  168. * synchronous path. 'disks' always accounts for both destination
  169. * buffers.
  170. *
  171. * 'blocks' note: if submit->scribble is NULL then the contents of
  172. * 'blocks' may be overridden
  173. */
  174. struct dma_async_tx_descriptor *
  175. async_gen_syndrome(struct page **blocks, unsigned int offset, int disks,
  176. size_t len, struct async_submit_ctl *submit)
  177. {
  178. int src_cnt = disks - 2;
  179. struct dma_chan *chan = async_tx_find_channel(submit, DMA_PQ,
  180. &P(blocks, disks), 2,
  181. blocks, src_cnt, len);
  182. struct dma_device *device = chan ? chan->device : NULL;
  183. dma_addr_t *dma_src = NULL;
  184. BUG_ON(disks > 255 || !(P(blocks, disks) || Q(blocks, disks)));
  185. if (submit->scribble)
  186. dma_src = submit->scribble;
  187. else if (sizeof(dma_addr_t) <= sizeof(struct page *))
  188. dma_src = (dma_addr_t *) blocks;
  189. if (dma_src && device &&
  190. (src_cnt <= dma_maxpq(device, 0) ||
  191. dma_maxpq(device, DMA_PREP_CONTINUE) > 0) &&
  192. is_dma_pq_aligned(device, offset, 0, len)) {
  193. /* run the p+q asynchronously */
  194. pr_debug("%s: (async) disks: %d len: %zu\n",
  195. __func__, disks, len);
  196. return do_async_gen_syndrome(chan, blocks, raid6_gfexp, offset,
  197. disks, len, dma_src, submit);
  198. }
  199. /* run the pq synchronously */
  200. pr_debug("%s: (sync) disks: %d len: %zu\n", __func__, disks, len);
  201. /* wait for any prerequisite operations */
  202. async_tx_quiesce(&submit->depend_tx);
  203. if (!P(blocks, disks)) {
  204. P(blocks, disks) = scribble;
  205. BUG_ON(len + offset > PAGE_SIZE);
  206. }
  207. if (!Q(blocks, disks)) {
  208. Q(blocks, disks) = scribble;
  209. BUG_ON(len + offset > PAGE_SIZE);
  210. }
  211. do_sync_gen_syndrome(blocks, offset, disks, len, submit);
  212. return NULL;
  213. }
  214. EXPORT_SYMBOL_GPL(async_gen_syndrome);
  215. /**
  216. * async_syndrome_val - asynchronously validate a raid6 syndrome
  217. * @blocks: source blocks from idx 0..disks-3, P @ disks-2 and Q @ disks-1
  218. * @offset: common offset into each block (src and dest) to start transaction
  219. * @disks: number of blocks (including missing P or Q, see below)
  220. * @len: length of operation in bytes
  221. * @pqres: on val failure SUM_CHECK_P_RESULT and/or SUM_CHECK_Q_RESULT are set
  222. * @spare: temporary result buffer for the synchronous case
  223. * @submit: submission / completion modifiers
  224. *
  225. * The same notes from async_gen_syndrome apply to the 'blocks',
  226. * and 'disks' parameters of this routine. The synchronous path
  227. * requires a temporary result buffer and submit->scribble to be
  228. * specified.
  229. */
  230. struct dma_async_tx_descriptor *
  231. async_syndrome_val(struct page **blocks, unsigned int offset, int disks,
  232. size_t len, enum sum_check_flags *pqres, struct page *spare,
  233. struct async_submit_ctl *submit)
  234. {
  235. struct dma_chan *chan = async_tx_find_channel(submit, DMA_PQ_VAL,
  236. NULL, 0, blocks, disks,
  237. len);
  238. struct dma_device *device = chan ? chan->device : NULL;
  239. struct dma_async_tx_descriptor *tx;
  240. unsigned char coefs[disks-2];
  241. enum dma_ctrl_flags dma_flags = submit->cb_fn ? DMA_PREP_INTERRUPT : 0;
  242. dma_addr_t *dma_src = NULL;
  243. int src_cnt = 0;
  244. BUG_ON(disks < 4);
  245. if (submit->scribble)
  246. dma_src = submit->scribble;
  247. else if (sizeof(dma_addr_t) <= sizeof(struct page *))
  248. dma_src = (dma_addr_t *) blocks;
  249. if (dma_src && device && disks <= dma_maxpq(device, 0) &&
  250. is_dma_pq_aligned(device, offset, 0, len)) {
  251. struct device *dev = device->dev;
  252. dma_addr_t *pq = &dma_src[disks-2];
  253. int i;
  254. pr_debug("%s: (async) disks: %d len: %zu\n",
  255. __func__, disks, len);
  256. if (!P(blocks, disks))
  257. dma_flags |= DMA_PREP_PQ_DISABLE_P;
  258. else
  259. pq[0] = dma_map_page(dev, P(blocks,disks),
  260. offset, len,
  261. DMA_TO_DEVICE);
  262. if (!Q(blocks, disks))
  263. dma_flags |= DMA_PREP_PQ_DISABLE_Q;
  264. else
  265. pq[1] = dma_map_page(dev, Q(blocks,disks),
  266. offset, len,
  267. DMA_TO_DEVICE);
  268. if (submit->flags & ASYNC_TX_FENCE)
  269. dma_flags |= DMA_PREP_FENCE;
  270. for (i = 0; i < disks-2; i++)
  271. if (likely(blocks[i])) {
  272. dma_src[src_cnt] = dma_map_page(dev, blocks[i],
  273. offset, len,
  274. DMA_TO_DEVICE);
  275. coefs[src_cnt] = raid6_gfexp[i];
  276. src_cnt++;
  277. }
  278. pq[1] = dma_map_page(dev, Q(blocks,disks),
  279. offset, len,
  280. DMA_TO_DEVICE);
  281. for (;;) {
  282. tx = device->device_prep_dma_pq_val(chan, pq, dma_src,
  283. src_cnt,
  284. coefs,
  285. len, pqres,
  286. dma_flags);
  287. if (likely(tx))
  288. break;
  289. async_tx_quiesce(&submit->depend_tx);
  290. dma_async_issue_pending(chan);
  291. }
  292. async_tx_submit(chan, tx, submit);
  293. return tx;
  294. } else {
  295. struct page *p_src = P(blocks, disks);
  296. struct page *q_src = Q(blocks, disks);
  297. enum async_tx_flags flags_orig = submit->flags;
  298. dma_async_tx_callback cb_fn_orig = submit->cb_fn;
  299. void *scribble = submit->scribble;
  300. void *cb_param_orig = submit->cb_param;
  301. void *p, *q, *s;
  302. pr_debug("%s: (sync) disks: %d len: %zu\n",
  303. __func__, disks, len);
  304. /* caller must provide a temporary result buffer and
  305. * allow the input parameters to be preserved
  306. */
  307. BUG_ON(!spare || !scribble);
  308. /* wait for any prerequisite operations */
  309. async_tx_quiesce(&submit->depend_tx);
  310. /* recompute p and/or q into the temporary buffer and then
  311. * check to see the result matches the current value
  312. */
  313. tx = NULL;
  314. *pqres = 0;
  315. if (p_src) {
  316. init_async_submit(submit, ASYNC_TX_XOR_ZERO_DST, NULL,
  317. NULL, NULL, scribble);
  318. tx = async_xor(spare, blocks, offset, disks-2, len, submit);
  319. async_tx_quiesce(&tx);
  320. p = page_address(p_src) + offset;
  321. s = page_address(spare) + offset;
  322. *pqres |= !!memcmp(p, s, len) << SUM_CHECK_P;
  323. }
  324. if (q_src) {
  325. P(blocks, disks) = NULL;
  326. Q(blocks, disks) = spare;
  327. init_async_submit(submit, 0, NULL, NULL, NULL, scribble);
  328. tx = async_gen_syndrome(blocks, offset, disks, len, submit);
  329. async_tx_quiesce(&tx);
  330. q = page_address(q_src) + offset;
  331. s = page_address(spare) + offset;
  332. *pqres |= !!memcmp(q, s, len) << SUM_CHECK_Q;
  333. }
  334. /* restore P, Q and submit */
  335. P(blocks, disks) = p_src;
  336. Q(blocks, disks) = q_src;
  337. submit->cb_fn = cb_fn_orig;
  338. submit->cb_param = cb_param_orig;
  339. submit->flags = flags_orig;
  340. async_tx_sync_epilog(submit);
  341. return NULL;
  342. }
  343. }
  344. EXPORT_SYMBOL_GPL(async_syndrome_val);
  345. static int __init async_pq_init(void)
  346. {
  347. scribble = alloc_page(GFP_KERNEL);
  348. if (scribble)
  349. return 0;
  350. pr_err("%s: failed to allocate required spare page\n", __func__);
  351. return -ENOMEM;
  352. }
  353. static void __exit async_pq_exit(void)
  354. {
  355. put_page(scribble);
  356. }
  357. module_init(async_pq_init);
  358. module_exit(async_pq_exit);
  359. MODULE_DESCRIPTION("asynchronous raid6 syndrome generation/validation");
  360. MODULE_LICENSE("GPL");