1b2f46fd8SDan Williams /* 2b2f46fd8SDan Williams * Copyright(c) 2007 Yuri Tikhonov <yur@emcraft.com> 3b2f46fd8SDan Williams * Copyright(c) 2009 Intel Corporation 4b2f46fd8SDan Williams * 5b2f46fd8SDan Williams * This program is free software; you can redistribute it and/or modify it 6b2f46fd8SDan Williams * under the terms of the GNU General Public License as published by the Free 7b2f46fd8SDan Williams * Software Foundation; either version 2 of the License, or (at your option) 8b2f46fd8SDan Williams * any later version. 9b2f46fd8SDan Williams * 10b2f46fd8SDan Williams * This program is distributed in the hope that it will be useful, but WITHOUT 11b2f46fd8SDan Williams * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or 12b2f46fd8SDan Williams * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for 13b2f46fd8SDan Williams * more details. 14b2f46fd8SDan Williams * 15b2f46fd8SDan Williams * You should have received a copy of the GNU General Public License along with 16b2f46fd8SDan Williams * this program; if not, write to the Free Software Foundation, Inc., 59 17b2f46fd8SDan Williams * Temple Place - Suite 330, Boston, MA 02111-1307, USA. 18b2f46fd8SDan Williams * 19b2f46fd8SDan Williams * The full GNU General Public License is included in this distribution in the 20b2f46fd8SDan Williams * file called COPYING. 21b2f46fd8SDan Williams */ 22b2f46fd8SDan Williams #include <linux/kernel.h> 23b2f46fd8SDan Williams #include <linux/interrupt.h> 24b2f46fd8SDan Williams #include <linux/dma-mapping.h> 25b2f46fd8SDan Williams #include <linux/raid/pq.h> 26b2f46fd8SDan Williams #include <linux/async_tx.h> 27b2f46fd8SDan Williams 28b2f46fd8SDan Williams /** 29030b0772SDan Williams * pq_scribble_page - space to hold throwaway P or Q buffer for 30030b0772SDan Williams * synchronous gen_syndrome 31b2f46fd8SDan Williams */ 32030b0772SDan Williams static struct page *pq_scribble_page; 33b2f46fd8SDan Williams 34b2f46fd8SDan Williams /* the struct page *blocks[] parameter passed to async_gen_syndrome() 35b2f46fd8SDan Williams * and async_syndrome_val() contains the 'P' destination address at 36b2f46fd8SDan Williams * blocks[disks-2] and the 'Q' destination address at blocks[disks-1] 37b2f46fd8SDan Williams * 38b2f46fd8SDan Williams * note: these are macros as they are used as lvalues 39b2f46fd8SDan Williams */ 40b2f46fd8SDan Williams #define P(b, d) (b[d-2]) 41b2f46fd8SDan Williams #define Q(b, d) (b[d-1]) 42b2f46fd8SDan Williams 43b2f46fd8SDan Williams /** 44b2f46fd8SDan Williams * do_async_gen_syndrome - asynchronously calculate P and/or Q 45b2f46fd8SDan Williams */ 46b2f46fd8SDan Williams static __async_inline struct dma_async_tx_descriptor * 47b2f46fd8SDan Williams do_async_gen_syndrome(struct dma_chan *chan, struct page **blocks, 48b2f46fd8SDan Williams const unsigned char *scfs, unsigned int offset, int disks, 49b2f46fd8SDan Williams size_t len, dma_addr_t *dma_src, 50b2f46fd8SDan Williams struct async_submit_ctl *submit) 51b2f46fd8SDan Williams { 52b2f46fd8SDan Williams struct dma_async_tx_descriptor *tx = NULL; 53b2f46fd8SDan Williams struct dma_device *dma = chan->device; 54b2f46fd8SDan Williams enum dma_ctrl_flags dma_flags = 0; 55b2f46fd8SDan Williams enum async_tx_flags flags_orig = submit->flags; 56b2f46fd8SDan Williams dma_async_tx_callback cb_fn_orig = submit->cb_fn; 57b2f46fd8SDan Williams dma_async_tx_callback cb_param_orig = submit->cb_param; 58b2f46fd8SDan Williams int src_cnt = disks - 2; 59b2f46fd8SDan Williams unsigned char coefs[src_cnt]; 60b2f46fd8SDan Williams unsigned short pq_src_cnt; 61b2f46fd8SDan Williams dma_addr_t dma_dest[2]; 62b2f46fd8SDan Williams int src_off = 0; 63b2f46fd8SDan Williams int idx; 64b2f46fd8SDan Williams int i; 65b2f46fd8SDan Williams 66b2f46fd8SDan Williams /* DMAs use destinations as sources, so use BIDIRECTIONAL mapping */ 67b2f46fd8SDan Williams if (P(blocks, disks)) 68b2f46fd8SDan Williams dma_dest[0] = dma_map_page(dma->dev, P(blocks, disks), offset, 69b2f46fd8SDan Williams len, DMA_BIDIRECTIONAL); 70b2f46fd8SDan Williams else 71b2f46fd8SDan Williams dma_flags |= DMA_PREP_PQ_DISABLE_P; 72b2f46fd8SDan Williams if (Q(blocks, disks)) 73b2f46fd8SDan Williams dma_dest[1] = dma_map_page(dma->dev, Q(blocks, disks), offset, 74b2f46fd8SDan Williams len, DMA_BIDIRECTIONAL); 75b2f46fd8SDan Williams else 76b2f46fd8SDan Williams dma_flags |= DMA_PREP_PQ_DISABLE_Q; 77b2f46fd8SDan Williams 78b2f46fd8SDan Williams /* convert source addresses being careful to collapse 'empty' 79b2f46fd8SDan Williams * sources and update the coefficients accordingly 80b2f46fd8SDan Williams */ 81b2f46fd8SDan Williams for (i = 0, idx = 0; i < src_cnt; i++) { 825dd33c9aSNeilBrown if (blocks[i] == NULL) 83b2f46fd8SDan Williams continue; 84b2f46fd8SDan Williams dma_src[idx] = dma_map_page(dma->dev, blocks[i], offset, len, 85b2f46fd8SDan Williams DMA_TO_DEVICE); 86b2f46fd8SDan Williams coefs[idx] = scfs[i]; 87b2f46fd8SDan Williams idx++; 88b2f46fd8SDan Williams } 89b2f46fd8SDan Williams src_cnt = idx; 90b2f46fd8SDan Williams 91b2f46fd8SDan Williams while (src_cnt > 0) { 92b2f46fd8SDan Williams submit->flags = flags_orig; 93b2f46fd8SDan Williams pq_src_cnt = min(src_cnt, dma_maxpq(dma, dma_flags)); 94b2f46fd8SDan Williams /* if we are submitting additional pqs, leave the chain open, 95b2f46fd8SDan Williams * clear the callback parameters, and leave the destination 96b2f46fd8SDan Williams * buffers mapped 97b2f46fd8SDan Williams */ 98b2f46fd8SDan Williams if (src_cnt > pq_src_cnt) { 99b2f46fd8SDan Williams submit->flags &= ~ASYNC_TX_ACK; 1000403e382SDan Williams submit->flags |= ASYNC_TX_FENCE; 101b2f46fd8SDan Williams dma_flags |= DMA_COMPL_SKIP_DEST_UNMAP; 102b2f46fd8SDan Williams submit->cb_fn = NULL; 103b2f46fd8SDan Williams submit->cb_param = NULL; 104b2f46fd8SDan Williams } else { 105b2f46fd8SDan Williams dma_flags &= ~DMA_COMPL_SKIP_DEST_UNMAP; 106b2f46fd8SDan Williams submit->cb_fn = cb_fn_orig; 107b2f46fd8SDan Williams submit->cb_param = cb_param_orig; 108b2f46fd8SDan Williams if (cb_fn_orig) 109b2f46fd8SDan Williams dma_flags |= DMA_PREP_INTERRUPT; 110b2f46fd8SDan Williams } 1110403e382SDan Williams if (submit->flags & ASYNC_TX_FENCE) 1120403e382SDan Williams dma_flags |= DMA_PREP_FENCE; 113b2f46fd8SDan Williams 114b2f46fd8SDan Williams /* Since we have clobbered the src_list we are committed 115b2f46fd8SDan Williams * to doing this asynchronously. Drivers force forward 116b2f46fd8SDan Williams * progress in case they can not provide a descriptor 117b2f46fd8SDan Williams */ 118b2f46fd8SDan Williams for (;;) { 119b2f46fd8SDan Williams tx = dma->device_prep_dma_pq(chan, dma_dest, 120b2f46fd8SDan Williams &dma_src[src_off], 121b2f46fd8SDan Williams pq_src_cnt, 122b2f46fd8SDan Williams &coefs[src_off], len, 123b2f46fd8SDan Williams dma_flags); 124b2f46fd8SDan Williams if (likely(tx)) 125b2f46fd8SDan Williams break; 126b2f46fd8SDan Williams async_tx_quiesce(&submit->depend_tx); 127b2f46fd8SDan Williams dma_async_issue_pending(chan); 128b2f46fd8SDan Williams } 129b2f46fd8SDan Williams 130b2f46fd8SDan Williams async_tx_submit(chan, tx, submit); 131b2f46fd8SDan Williams submit->depend_tx = tx; 132b2f46fd8SDan Williams 133b2f46fd8SDan Williams /* drop completed sources */ 134b2f46fd8SDan Williams src_cnt -= pq_src_cnt; 135b2f46fd8SDan Williams src_off += pq_src_cnt; 136b2f46fd8SDan Williams 137b2f46fd8SDan Williams dma_flags |= DMA_PREP_CONTINUE; 138b2f46fd8SDan Williams } 139b2f46fd8SDan Williams 140b2f46fd8SDan Williams return tx; 141b2f46fd8SDan Williams } 142b2f46fd8SDan Williams 143b2f46fd8SDan Williams /** 144b2f46fd8SDan Williams * do_sync_gen_syndrome - synchronously calculate a raid6 syndrome 145b2f46fd8SDan Williams */ 146b2f46fd8SDan Williams static void 147b2f46fd8SDan Williams do_sync_gen_syndrome(struct page **blocks, unsigned int offset, int disks, 148b2f46fd8SDan Williams size_t len, struct async_submit_ctl *submit) 149b2f46fd8SDan Williams { 150b2f46fd8SDan Williams void **srcs; 151b2f46fd8SDan Williams int i; 152b2f46fd8SDan Williams 153b2f46fd8SDan Williams if (submit->scribble) 154b2f46fd8SDan Williams srcs = submit->scribble; 155b2f46fd8SDan Williams else 156b2f46fd8SDan Williams srcs = (void **) blocks; 157b2f46fd8SDan Williams 158b2f46fd8SDan Williams for (i = 0; i < disks; i++) { 1595dd33c9aSNeilBrown if (blocks[i] == NULL) { 160b2f46fd8SDan Williams BUG_ON(i > disks - 3); /* P or Q can't be zero */ 1615dd33c9aSNeilBrown srcs[i] = (void*)raid6_empty_zero_page; 162b2f46fd8SDan Williams } else 163b2f46fd8SDan Williams srcs[i] = page_address(blocks[i]) + offset; 164b2f46fd8SDan Williams } 165b2f46fd8SDan Williams raid6_call.gen_syndrome(disks, len, srcs); 166b2f46fd8SDan Williams async_tx_sync_epilog(submit); 167b2f46fd8SDan Williams } 168b2f46fd8SDan Williams 169b2f46fd8SDan Williams /** 170b2f46fd8SDan Williams * async_gen_syndrome - asynchronously calculate a raid6 syndrome 171b2f46fd8SDan Williams * @blocks: source blocks from idx 0..disks-3, P @ disks-2 and Q @ disks-1 172b2f46fd8SDan Williams * @offset: common offset into each block (src and dest) to start transaction 173b2f46fd8SDan Williams * @disks: number of blocks (including missing P or Q, see below) 174b2f46fd8SDan Williams * @len: length of operation in bytes 175b2f46fd8SDan Williams * @submit: submission/completion modifiers 176b2f46fd8SDan Williams * 177b2f46fd8SDan Williams * General note: This routine assumes a field of GF(2^8) with a 178b2f46fd8SDan Williams * primitive polynomial of 0x11d and a generator of {02}. 179b2f46fd8SDan Williams * 180b2f46fd8SDan Williams * 'disks' note: callers can optionally omit either P or Q (but not 181b2f46fd8SDan Williams * both) from the calculation by setting blocks[disks-2] or 182b2f46fd8SDan Williams * blocks[disks-1] to NULL. When P or Q is omitted 'len' must be <= 183b2f46fd8SDan Williams * PAGE_SIZE as a temporary buffer of this size is used in the 184b2f46fd8SDan Williams * synchronous path. 'disks' always accounts for both destination 1855676470fSDan Williams * buffers. If any source buffers (blocks[i] where i < disks - 2) are 1865676470fSDan Williams * set to NULL those buffers will be replaced with the raid6_zero_page 1875676470fSDan Williams * in the synchronous path and omitted in the hardware-asynchronous 1885676470fSDan Williams * path. 189b2f46fd8SDan Williams * 190b2f46fd8SDan Williams * 'blocks' note: if submit->scribble is NULL then the contents of 1915676470fSDan Williams * 'blocks' may be overwritten to perform address conversions 1925676470fSDan Williams * (dma_map_page() or page_address()). 193b2f46fd8SDan Williams */ 194b2f46fd8SDan Williams struct dma_async_tx_descriptor * 195b2f46fd8SDan Williams async_gen_syndrome(struct page **blocks, unsigned int offset, int disks, 196b2f46fd8SDan Williams size_t len, struct async_submit_ctl *submit) 197b2f46fd8SDan Williams { 198b2f46fd8SDan Williams int src_cnt = disks - 2; 199b2f46fd8SDan Williams struct dma_chan *chan = async_tx_find_channel(submit, DMA_PQ, 200b2f46fd8SDan Williams &P(blocks, disks), 2, 201b2f46fd8SDan Williams blocks, src_cnt, len); 202b2f46fd8SDan Williams struct dma_device *device = chan ? chan->device : NULL; 203b2f46fd8SDan Williams dma_addr_t *dma_src = NULL; 204b2f46fd8SDan Williams 205b2f46fd8SDan Williams BUG_ON(disks > 255 || !(P(blocks, disks) || Q(blocks, disks))); 206b2f46fd8SDan Williams 207b2f46fd8SDan Williams if (submit->scribble) 208b2f46fd8SDan Williams dma_src = submit->scribble; 209b2f46fd8SDan Williams else if (sizeof(dma_addr_t) <= sizeof(struct page *)) 210b2f46fd8SDan Williams dma_src = (dma_addr_t *) blocks; 211b2f46fd8SDan Williams 212b2f46fd8SDan Williams if (dma_src && device && 213b2f46fd8SDan Williams (src_cnt <= dma_maxpq(device, 0) || 21483544ae9SDan Williams dma_maxpq(device, DMA_PREP_CONTINUE) > 0) && 21583544ae9SDan Williams is_dma_pq_aligned(device, offset, 0, len)) { 216b2f46fd8SDan Williams /* run the p+q asynchronously */ 217b2f46fd8SDan Williams pr_debug("%s: (async) disks: %d len: %zu\n", 218b2f46fd8SDan Williams __func__, disks, len); 219b2f46fd8SDan Williams return do_async_gen_syndrome(chan, blocks, raid6_gfexp, offset, 220b2f46fd8SDan Williams disks, len, dma_src, submit); 221b2f46fd8SDan Williams } 222b2f46fd8SDan Williams 223b2f46fd8SDan Williams /* run the pq synchronously */ 224b2f46fd8SDan Williams pr_debug("%s: (sync) disks: %d len: %zu\n", __func__, disks, len); 225b2f46fd8SDan Williams 226b2f46fd8SDan Williams /* wait for any prerequisite operations */ 227b2f46fd8SDan Williams async_tx_quiesce(&submit->depend_tx); 228b2f46fd8SDan Williams 229b2f46fd8SDan Williams if (!P(blocks, disks)) { 230030b0772SDan Williams P(blocks, disks) = pq_scribble_page; 231b2f46fd8SDan Williams BUG_ON(len + offset > PAGE_SIZE); 232b2f46fd8SDan Williams } 233b2f46fd8SDan Williams if (!Q(blocks, disks)) { 234030b0772SDan Williams Q(blocks, disks) = pq_scribble_page; 235b2f46fd8SDan Williams BUG_ON(len + offset > PAGE_SIZE); 236b2f46fd8SDan Williams } 237b2f46fd8SDan Williams do_sync_gen_syndrome(blocks, offset, disks, len, submit); 238b2f46fd8SDan Williams 239b2f46fd8SDan Williams return NULL; 240b2f46fd8SDan Williams } 241b2f46fd8SDan Williams EXPORT_SYMBOL_GPL(async_gen_syndrome); 242b2f46fd8SDan Williams 243*7b3cc2b1SDan Williams static inline struct dma_chan * 244*7b3cc2b1SDan Williams pq_val_chan(struct async_submit_ctl *submit, struct page **blocks, int disks, size_t len) 245*7b3cc2b1SDan Williams { 246*7b3cc2b1SDan Williams #ifdef CONFIG_ASYNC_TX_DISABLE_PQ_VAL_DMA 247*7b3cc2b1SDan Williams return NULL; 248*7b3cc2b1SDan Williams #endif 249*7b3cc2b1SDan Williams return async_tx_find_channel(submit, DMA_PQ_VAL, NULL, 0, blocks, 250*7b3cc2b1SDan Williams disks, len); 251*7b3cc2b1SDan Williams } 252*7b3cc2b1SDan Williams 253b2f46fd8SDan Williams /** 254b2f46fd8SDan Williams * async_syndrome_val - asynchronously validate a raid6 syndrome 255b2f46fd8SDan Williams * @blocks: source blocks from idx 0..disks-3, P @ disks-2 and Q @ disks-1 256b2f46fd8SDan Williams * @offset: common offset into each block (src and dest) to start transaction 257b2f46fd8SDan Williams * @disks: number of blocks (including missing P or Q, see below) 258b2f46fd8SDan Williams * @len: length of operation in bytes 259b2f46fd8SDan Williams * @pqres: on val failure SUM_CHECK_P_RESULT and/or SUM_CHECK_Q_RESULT are set 260b2f46fd8SDan Williams * @spare: temporary result buffer for the synchronous case 261b2f46fd8SDan Williams * @submit: submission / completion modifiers 262b2f46fd8SDan Williams * 263b2f46fd8SDan Williams * The same notes from async_gen_syndrome apply to the 'blocks', 264b2f46fd8SDan Williams * and 'disks' parameters of this routine. The synchronous path 265b2f46fd8SDan Williams * requires a temporary result buffer and submit->scribble to be 266b2f46fd8SDan Williams * specified. 267b2f46fd8SDan Williams */ 268b2f46fd8SDan Williams struct dma_async_tx_descriptor * 269b2f46fd8SDan Williams async_syndrome_val(struct page **blocks, unsigned int offset, int disks, 270b2f46fd8SDan Williams size_t len, enum sum_check_flags *pqres, struct page *spare, 271b2f46fd8SDan Williams struct async_submit_ctl *submit) 272b2f46fd8SDan Williams { 273*7b3cc2b1SDan Williams struct dma_chan *chan = pq_val_chan(submit, blocks, disks, len); 274b2f46fd8SDan Williams struct dma_device *device = chan ? chan->device : NULL; 275b2f46fd8SDan Williams struct dma_async_tx_descriptor *tx; 276b2141e69SNeilBrown unsigned char coefs[disks-2]; 277b2f46fd8SDan Williams enum dma_ctrl_flags dma_flags = submit->cb_fn ? DMA_PREP_INTERRUPT : 0; 278b2f46fd8SDan Williams dma_addr_t *dma_src = NULL; 279b2141e69SNeilBrown int src_cnt = 0; 280b2f46fd8SDan Williams 281b2f46fd8SDan Williams BUG_ON(disks < 4); 282b2f46fd8SDan Williams 283b2f46fd8SDan Williams if (submit->scribble) 284b2f46fd8SDan Williams dma_src = submit->scribble; 285b2f46fd8SDan Williams else if (sizeof(dma_addr_t) <= sizeof(struct page *)) 286b2f46fd8SDan Williams dma_src = (dma_addr_t *) blocks; 287b2f46fd8SDan Williams 28883544ae9SDan Williams if (dma_src && device && disks <= dma_maxpq(device, 0) && 28983544ae9SDan Williams is_dma_pq_aligned(device, offset, 0, len)) { 290b2f46fd8SDan Williams struct device *dev = device->dev; 291b2f46fd8SDan Williams dma_addr_t *pq = &dma_src[disks-2]; 292b2f46fd8SDan Williams int i; 293b2f46fd8SDan Williams 294b2f46fd8SDan Williams pr_debug("%s: (async) disks: %d len: %zu\n", 295b2f46fd8SDan Williams __func__, disks, len); 296b2f46fd8SDan Williams if (!P(blocks, disks)) 297b2f46fd8SDan Williams dma_flags |= DMA_PREP_PQ_DISABLE_P; 298b2141e69SNeilBrown else 299b2141e69SNeilBrown pq[0] = dma_map_page(dev, P(blocks, disks), 300b2141e69SNeilBrown offset, len, 301b2141e69SNeilBrown DMA_TO_DEVICE); 302b2f46fd8SDan Williams if (!Q(blocks, disks)) 303b2f46fd8SDan Williams dma_flags |= DMA_PREP_PQ_DISABLE_Q; 304b2141e69SNeilBrown else 305b2141e69SNeilBrown pq[1] = dma_map_page(dev, Q(blocks, disks), 306b2141e69SNeilBrown offset, len, 307b2141e69SNeilBrown DMA_TO_DEVICE); 308b2141e69SNeilBrown 3090403e382SDan Williams if (submit->flags & ASYNC_TX_FENCE) 3100403e382SDan Williams dma_flags |= DMA_PREP_FENCE; 311b2141e69SNeilBrown for (i = 0; i < disks-2; i++) 312b2141e69SNeilBrown if (likely(blocks[i])) { 313b2141e69SNeilBrown dma_src[src_cnt] = dma_map_page(dev, blocks[i], 314b2141e69SNeilBrown offset, len, 315b2141e69SNeilBrown DMA_TO_DEVICE); 316b2141e69SNeilBrown coefs[src_cnt] = raid6_gfexp[i]; 317b2141e69SNeilBrown src_cnt++; 318b2141e69SNeilBrown } 319b2f46fd8SDan Williams 320b2f46fd8SDan Williams for (;;) { 321b2f46fd8SDan Williams tx = device->device_prep_dma_pq_val(chan, pq, dma_src, 322b2141e69SNeilBrown src_cnt, 323b2141e69SNeilBrown coefs, 324b2f46fd8SDan Williams len, pqres, 325b2f46fd8SDan Williams dma_flags); 326b2f46fd8SDan Williams if (likely(tx)) 327b2f46fd8SDan Williams break; 328b2f46fd8SDan Williams async_tx_quiesce(&submit->depend_tx); 329b2f46fd8SDan Williams dma_async_issue_pending(chan); 330b2f46fd8SDan Williams } 331b2f46fd8SDan Williams async_tx_submit(chan, tx, submit); 332b2f46fd8SDan Williams 333b2f46fd8SDan Williams return tx; 334b2f46fd8SDan Williams } else { 335b2f46fd8SDan Williams struct page *p_src = P(blocks, disks); 336b2f46fd8SDan Williams struct page *q_src = Q(blocks, disks); 337b2f46fd8SDan Williams enum async_tx_flags flags_orig = submit->flags; 338b2f46fd8SDan Williams dma_async_tx_callback cb_fn_orig = submit->cb_fn; 339b2f46fd8SDan Williams void *scribble = submit->scribble; 340b2f46fd8SDan Williams void *cb_param_orig = submit->cb_param; 341b2f46fd8SDan Williams void *p, *q, *s; 342b2f46fd8SDan Williams 343b2f46fd8SDan Williams pr_debug("%s: (sync) disks: %d len: %zu\n", 344b2f46fd8SDan Williams __func__, disks, len); 345b2f46fd8SDan Williams 346b2f46fd8SDan Williams /* caller must provide a temporary result buffer and 347b2f46fd8SDan Williams * allow the input parameters to be preserved 348b2f46fd8SDan Williams */ 349b2f46fd8SDan Williams BUG_ON(!spare || !scribble); 350b2f46fd8SDan Williams 351b2f46fd8SDan Williams /* wait for any prerequisite operations */ 352b2f46fd8SDan Williams async_tx_quiesce(&submit->depend_tx); 353b2f46fd8SDan Williams 354b2f46fd8SDan Williams /* recompute p and/or q into the temporary buffer and then 355b2f46fd8SDan Williams * check to see the result matches the current value 356b2f46fd8SDan Williams */ 357b2f46fd8SDan Williams tx = NULL; 358b2f46fd8SDan Williams *pqres = 0; 359b2f46fd8SDan Williams if (p_src) { 360b2f46fd8SDan Williams init_async_submit(submit, ASYNC_TX_XOR_ZERO_DST, NULL, 361b2f46fd8SDan Williams NULL, NULL, scribble); 362b2f46fd8SDan Williams tx = async_xor(spare, blocks, offset, disks-2, len, submit); 363b2f46fd8SDan Williams async_tx_quiesce(&tx); 364b2f46fd8SDan Williams p = page_address(p_src) + offset; 365b2f46fd8SDan Williams s = page_address(spare) + offset; 366b2f46fd8SDan Williams *pqres |= !!memcmp(p, s, len) << SUM_CHECK_P; 367b2f46fd8SDan Williams } 368b2f46fd8SDan Williams 369b2f46fd8SDan Williams if (q_src) { 370b2f46fd8SDan Williams P(blocks, disks) = NULL; 371b2f46fd8SDan Williams Q(blocks, disks) = spare; 372b2f46fd8SDan Williams init_async_submit(submit, 0, NULL, NULL, NULL, scribble); 373b2f46fd8SDan Williams tx = async_gen_syndrome(blocks, offset, disks, len, submit); 374b2f46fd8SDan Williams async_tx_quiesce(&tx); 375b2f46fd8SDan Williams q = page_address(q_src) + offset; 376b2f46fd8SDan Williams s = page_address(spare) + offset; 377b2f46fd8SDan Williams *pqres |= !!memcmp(q, s, len) << SUM_CHECK_Q; 378b2f46fd8SDan Williams } 379b2f46fd8SDan Williams 380b2f46fd8SDan Williams /* restore P, Q and submit */ 381b2f46fd8SDan Williams P(blocks, disks) = p_src; 382b2f46fd8SDan Williams Q(blocks, disks) = q_src; 383b2f46fd8SDan Williams 384b2f46fd8SDan Williams submit->cb_fn = cb_fn_orig; 385b2f46fd8SDan Williams submit->cb_param = cb_param_orig; 386b2f46fd8SDan Williams submit->flags = flags_orig; 387b2f46fd8SDan Williams async_tx_sync_epilog(submit); 388b2f46fd8SDan Williams 389b2f46fd8SDan Williams return NULL; 390b2f46fd8SDan Williams } 391b2f46fd8SDan Williams } 392b2f46fd8SDan Williams EXPORT_SYMBOL_GPL(async_syndrome_val); 393b2f46fd8SDan Williams 394b2f46fd8SDan Williams static int __init async_pq_init(void) 395b2f46fd8SDan Williams { 396030b0772SDan Williams pq_scribble_page = alloc_page(GFP_KERNEL); 397b2f46fd8SDan Williams 398030b0772SDan Williams if (pq_scribble_page) 399b2f46fd8SDan Williams return 0; 400b2f46fd8SDan Williams 401b2f46fd8SDan Williams pr_err("%s: failed to allocate required spare page\n", __func__); 402b2f46fd8SDan Williams 403b2f46fd8SDan Williams return -ENOMEM; 404b2f46fd8SDan Williams } 405b2f46fd8SDan Williams 406b2f46fd8SDan Williams static void __exit async_pq_exit(void) 407b2f46fd8SDan Williams { 408030b0772SDan Williams put_page(pq_scribble_page); 409b2f46fd8SDan Williams } 410b2f46fd8SDan Williams 411b2f46fd8SDan Williams module_init(async_pq_init); 412b2f46fd8SDan Williams module_exit(async_pq_exit); 413b2f46fd8SDan Williams 414b2f46fd8SDan Williams MODULE_DESCRIPTION("asynchronous raid6 syndrome generation/validation"); 415b2f46fd8SDan Williams MODULE_LICENSE("GPL"); 416