xref: /openbmc/linux/crypto/async_tx/async_pq.c (revision e62d9491030613a29400f68f63f1b67c46cf2559)
1*e62d9491SThomas Gleixner // SPDX-License-Identifier: GPL-2.0-or-later
2b2f46fd8SDan Williams /*
3b2f46fd8SDan Williams  * Copyright(c) 2007 Yuri Tikhonov <yur@emcraft.com>
4b2f46fd8SDan Williams  * Copyright(c) 2009 Intel Corporation
5b2f46fd8SDan Williams  */
6b2f46fd8SDan Williams #include <linux/kernel.h>
7b2f46fd8SDan Williams #include <linux/interrupt.h>
84bb33cc8SPaul Gortmaker #include <linux/module.h>
9b2f46fd8SDan Williams #include <linux/dma-mapping.h>
10b2f46fd8SDan Williams #include <linux/raid/pq.h>
11b2f46fd8SDan Williams #include <linux/async_tx.h>
125a0e3ad6STejun Heo #include <linux/gfp.h>
13b2f46fd8SDan Williams 
14b2f46fd8SDan Williams /**
15030b0772SDan Williams  * pq_scribble_page - space to hold throwaway P or Q buffer for
16030b0772SDan Williams  * synchronous gen_syndrome
17b2f46fd8SDan Williams  */
18030b0772SDan Williams static struct page *pq_scribble_page;
19b2f46fd8SDan Williams 
20b2f46fd8SDan Williams /* the struct page *blocks[] parameter passed to async_gen_syndrome()
21b2f46fd8SDan Williams  * and async_syndrome_val() contains the 'P' destination address at
22b2f46fd8SDan Williams  * blocks[disks-2] and the 'Q' destination address at blocks[disks-1]
23b2f46fd8SDan Williams  *
24b2f46fd8SDan Williams  * note: these are macros as they are used as lvalues
25b2f46fd8SDan Williams  */
26b2f46fd8SDan Williams #define P(b, d) (b[d-2])
27b2f46fd8SDan Williams #define Q(b, d) (b[d-1])
28b2f46fd8SDan Williams 
2989a7e2f7SKyle Spiers #define MAX_DISKS 255
3089a7e2f7SKyle Spiers 
31b2f46fd8SDan Williams /**
32b2f46fd8SDan Williams  * do_async_gen_syndrome - asynchronously calculate P and/or Q
33b2f46fd8SDan Williams  */
34b2f46fd8SDan Williams static __async_inline struct dma_async_tx_descriptor *
357476bd79SDan Williams do_async_gen_syndrome(struct dma_chan *chan,
367476bd79SDan Williams 		      const unsigned char *scfs, int disks,
377476bd79SDan Williams 		      struct dmaengine_unmap_data *unmap,
387476bd79SDan Williams 		      enum dma_ctrl_flags dma_flags,
39b2f46fd8SDan Williams 		      struct async_submit_ctl *submit)
40b2f46fd8SDan Williams {
41b2f46fd8SDan Williams 	struct dma_async_tx_descriptor *tx = NULL;
42b2f46fd8SDan Williams 	struct dma_device *dma = chan->device;
43b2f46fd8SDan Williams 	enum async_tx_flags flags_orig = submit->flags;
44b2f46fd8SDan Williams 	dma_async_tx_callback cb_fn_orig = submit->cb_fn;
45b2f46fd8SDan Williams 	dma_async_tx_callback cb_param_orig = submit->cb_param;
46b2f46fd8SDan Williams 	int src_cnt = disks - 2;
47b2f46fd8SDan Williams 	unsigned short pq_src_cnt;
48b2f46fd8SDan Williams 	dma_addr_t dma_dest[2];
49b2f46fd8SDan Williams 	int src_off = 0;
50b2f46fd8SDan Williams 
51b2f46fd8SDan Williams 	while (src_cnt > 0) {
52b2f46fd8SDan Williams 		submit->flags = flags_orig;
53b2f46fd8SDan Williams 		pq_src_cnt = min(src_cnt, dma_maxpq(dma, dma_flags));
54b2f46fd8SDan Williams 		/* if we are submitting additional pqs, leave the chain open,
55b2f46fd8SDan Williams 		 * clear the callback parameters, and leave the destination
56b2f46fd8SDan Williams 		 * buffers mapped
57b2f46fd8SDan Williams 		 */
58b2f46fd8SDan Williams 		if (src_cnt > pq_src_cnt) {
59b2f46fd8SDan Williams 			submit->flags &= ~ASYNC_TX_ACK;
600403e382SDan Williams 			submit->flags |= ASYNC_TX_FENCE;
61b2f46fd8SDan Williams 			submit->cb_fn = NULL;
62b2f46fd8SDan Williams 			submit->cb_param = NULL;
63b2f46fd8SDan Williams 		} else {
64b2f46fd8SDan Williams 			submit->cb_fn = cb_fn_orig;
65b2f46fd8SDan Williams 			submit->cb_param = cb_param_orig;
66b2f46fd8SDan Williams 			if (cb_fn_orig)
67b2f46fd8SDan Williams 				dma_flags |= DMA_PREP_INTERRUPT;
68b2f46fd8SDan Williams 		}
69baae03a0SAnup Patel 		if (submit->flags & ASYNC_TX_FENCE)
70baae03a0SAnup Patel 			dma_flags |= DMA_PREP_FENCE;
71b2f46fd8SDan Williams 
727476bd79SDan Williams 		/* Drivers force forward progress in case they can not provide
737476bd79SDan Williams 		 * a descriptor
74b2f46fd8SDan Williams 		 */
75b2f46fd8SDan Williams 		for (;;) {
767476bd79SDan Williams 			dma_dest[0] = unmap->addr[disks - 2];
777476bd79SDan Williams 			dma_dest[1] = unmap->addr[disks - 1];
78b2f46fd8SDan Williams 			tx = dma->device_prep_dma_pq(chan, dma_dest,
797476bd79SDan Williams 						     &unmap->addr[src_off],
80b2f46fd8SDan Williams 						     pq_src_cnt,
817476bd79SDan Williams 						     &scfs[src_off], unmap->len,
82b2f46fd8SDan Williams 						     dma_flags);
83b2f46fd8SDan Williams 			if (likely(tx))
84b2f46fd8SDan Williams 				break;
85b2f46fd8SDan Williams 			async_tx_quiesce(&submit->depend_tx);
86b2f46fd8SDan Williams 			dma_async_issue_pending(chan);
87b2f46fd8SDan Williams 		}
88b2f46fd8SDan Williams 
897476bd79SDan Williams 		dma_set_unmap(tx, unmap);
90b2f46fd8SDan Williams 		async_tx_submit(chan, tx, submit);
91b2f46fd8SDan Williams 		submit->depend_tx = tx;
92b2f46fd8SDan Williams 
93b2f46fd8SDan Williams 		/* drop completed sources */
94b2f46fd8SDan Williams 		src_cnt -= pq_src_cnt;
95b2f46fd8SDan Williams 		src_off += pq_src_cnt;
96b2f46fd8SDan Williams 
97b2f46fd8SDan Williams 		dma_flags |= DMA_PREP_CONTINUE;
98b2f46fd8SDan Williams 	}
99b2f46fd8SDan Williams 
100b2f46fd8SDan Williams 	return tx;
101b2f46fd8SDan Williams }
102b2f46fd8SDan Williams 
103b2f46fd8SDan Williams /**
104b2f46fd8SDan Williams  * do_sync_gen_syndrome - synchronously calculate a raid6 syndrome
105b2f46fd8SDan Williams  */
106b2f46fd8SDan Williams static void
107b2f46fd8SDan Williams do_sync_gen_syndrome(struct page **blocks, unsigned int offset, int disks,
108b2f46fd8SDan Williams 		     size_t len, struct async_submit_ctl *submit)
109b2f46fd8SDan Williams {
110b2f46fd8SDan Williams 	void **srcs;
111b2f46fd8SDan Williams 	int i;
112584acdd4SMarkus Stockhausen 	int start = -1, stop = disks - 3;
113b2f46fd8SDan Williams 
114b2f46fd8SDan Williams 	if (submit->scribble)
115b2f46fd8SDan Williams 		srcs = submit->scribble;
116b2f46fd8SDan Williams 	else
117b2f46fd8SDan Williams 		srcs = (void **) blocks;
118b2f46fd8SDan Williams 
119b2f46fd8SDan Williams 	for (i = 0; i < disks; i++) {
1205dd33c9aSNeilBrown 		if (blocks[i] == NULL) {
121b2f46fd8SDan Williams 			BUG_ON(i > disks - 3); /* P or Q can't be zero */
1225dd33c9aSNeilBrown 			srcs[i] = (void*)raid6_empty_zero_page;
123584acdd4SMarkus Stockhausen 		} else {
124b2f46fd8SDan Williams 			srcs[i] = page_address(blocks[i]) + offset;
125584acdd4SMarkus Stockhausen 			if (i < disks - 2) {
126584acdd4SMarkus Stockhausen 				stop = i;
127584acdd4SMarkus Stockhausen 				if (start == -1)
128584acdd4SMarkus Stockhausen 					start = i;
129b2f46fd8SDan Williams 			}
130584acdd4SMarkus Stockhausen 		}
131584acdd4SMarkus Stockhausen 	}
132584acdd4SMarkus Stockhausen 	if (submit->flags & ASYNC_TX_PQ_XOR_DST) {
133584acdd4SMarkus Stockhausen 		BUG_ON(!raid6_call.xor_syndrome);
134584acdd4SMarkus Stockhausen 		if (start >= 0)
135584acdd4SMarkus Stockhausen 			raid6_call.xor_syndrome(disks, start, stop, len, srcs);
136584acdd4SMarkus Stockhausen 	} else
137b2f46fd8SDan Williams 		raid6_call.gen_syndrome(disks, len, srcs);
138b2f46fd8SDan Williams 	async_tx_sync_epilog(submit);
139b2f46fd8SDan Williams }
140b2f46fd8SDan Williams 
141b2f46fd8SDan Williams /**
142b2f46fd8SDan Williams  * async_gen_syndrome - asynchronously calculate a raid6 syndrome
143b2f46fd8SDan Williams  * @blocks: source blocks from idx 0..disks-3, P @ disks-2 and Q @ disks-1
144b2f46fd8SDan Williams  * @offset: common offset into each block (src and dest) to start transaction
145b2f46fd8SDan Williams  * @disks: number of blocks (including missing P or Q, see below)
146b2f46fd8SDan Williams  * @len: length of operation in bytes
147b2f46fd8SDan Williams  * @submit: submission/completion modifiers
148b2f46fd8SDan Williams  *
149b2f46fd8SDan Williams  * General note: This routine assumes a field of GF(2^8) with a
150b2f46fd8SDan Williams  * primitive polynomial of 0x11d and a generator of {02}.
151b2f46fd8SDan Williams  *
152b2f46fd8SDan Williams  * 'disks' note: callers can optionally omit either P or Q (but not
153b2f46fd8SDan Williams  * both) from the calculation by setting blocks[disks-2] or
154b2f46fd8SDan Williams  * blocks[disks-1] to NULL.  When P or Q is omitted 'len' must be <=
155b2f46fd8SDan Williams  * PAGE_SIZE as a temporary buffer of this size is used in the
156b2f46fd8SDan Williams  * synchronous path.  'disks' always accounts for both destination
1575676470fSDan Williams  * buffers.  If any source buffers (blocks[i] where i < disks - 2) are
1585676470fSDan Williams  * set to NULL those buffers will be replaced with the raid6_zero_page
1595676470fSDan Williams  * in the synchronous path and omitted in the hardware-asynchronous
1605676470fSDan Williams  * path.
161b2f46fd8SDan Williams  */
162b2f46fd8SDan Williams struct dma_async_tx_descriptor *
163b2f46fd8SDan Williams async_gen_syndrome(struct page **blocks, unsigned int offset, int disks,
164b2f46fd8SDan Williams 		   size_t len, struct async_submit_ctl *submit)
165b2f46fd8SDan Williams {
166b2f46fd8SDan Williams 	int src_cnt = disks - 2;
167b2f46fd8SDan Williams 	struct dma_chan *chan = async_tx_find_channel(submit, DMA_PQ,
168b2f46fd8SDan Williams 						      &P(blocks, disks), 2,
169b2f46fd8SDan Williams 						      blocks, src_cnt, len);
170b2f46fd8SDan Williams 	struct dma_device *device = chan ? chan->device : NULL;
1717476bd79SDan Williams 	struct dmaengine_unmap_data *unmap = NULL;
172b2f46fd8SDan Williams 
17389a7e2f7SKyle Spiers 	BUG_ON(disks > MAX_DISKS || !(P(blocks, disks) || Q(blocks, disks)));
174b2f46fd8SDan Williams 
1757476bd79SDan Williams 	if (device)
176b02bab6bSNeilBrown 		unmap = dmaengine_get_unmap_data(device->dev, disks, GFP_NOWAIT);
177b2f46fd8SDan Williams 
178584acdd4SMarkus Stockhausen 	/* XORing P/Q is only implemented in software */
179584acdd4SMarkus Stockhausen 	if (unmap && !(submit->flags & ASYNC_TX_PQ_XOR_DST) &&
180b2f46fd8SDan Williams 	    (src_cnt <= dma_maxpq(device, 0) ||
18183544ae9SDan Williams 	     dma_maxpq(device, DMA_PREP_CONTINUE) > 0) &&
18283544ae9SDan Williams 	    is_dma_pq_aligned(device, offset, 0, len)) {
1837476bd79SDan Williams 		struct dma_async_tx_descriptor *tx;
1847476bd79SDan Williams 		enum dma_ctrl_flags dma_flags = 0;
18589a7e2f7SKyle Spiers 		unsigned char coefs[MAX_DISKS];
1867476bd79SDan Williams 		int i, j;
1877476bd79SDan Williams 
188b2f46fd8SDan Williams 		/* run the p+q asynchronously */
189b2f46fd8SDan Williams 		pr_debug("%s: (async) disks: %d len: %zu\n",
190b2f46fd8SDan Williams 			 __func__, disks, len);
1917476bd79SDan Williams 
1927476bd79SDan Williams 		/* convert source addresses being careful to collapse 'empty'
1937476bd79SDan Williams 		 * sources and update the coefficients accordingly
1947476bd79SDan Williams 		 */
1957476bd79SDan Williams 		unmap->len = len;
1967476bd79SDan Williams 		for (i = 0, j = 0; i < src_cnt; i++) {
1977476bd79SDan Williams 			if (blocks[i] == NULL)
1987476bd79SDan Williams 				continue;
1997476bd79SDan Williams 			unmap->addr[j] = dma_map_page(device->dev, blocks[i], offset,
2007476bd79SDan Williams 						      len, DMA_TO_DEVICE);
2017476bd79SDan Williams 			coefs[j] = raid6_gfexp[i];
2027476bd79SDan Williams 			unmap->to_cnt++;
2037476bd79SDan Williams 			j++;
204b2f46fd8SDan Williams 		}
205b2f46fd8SDan Williams 
2067476bd79SDan Williams 		/*
2077476bd79SDan Williams 		 * DMAs use destinations as sources,
2087476bd79SDan Williams 		 * so use BIDIRECTIONAL mapping
2097476bd79SDan Williams 		 */
2107476bd79SDan Williams 		unmap->bidi_cnt++;
2117476bd79SDan Williams 		if (P(blocks, disks))
2127476bd79SDan Williams 			unmap->addr[j++] = dma_map_page(device->dev, P(blocks, disks),
2137476bd79SDan Williams 							offset, len, DMA_BIDIRECTIONAL);
2147476bd79SDan Williams 		else {
2157476bd79SDan Williams 			unmap->addr[j++] = 0;
2167476bd79SDan Williams 			dma_flags |= DMA_PREP_PQ_DISABLE_P;
2177476bd79SDan Williams 		}
2187476bd79SDan Williams 
2197476bd79SDan Williams 		unmap->bidi_cnt++;
2207476bd79SDan Williams 		if (Q(blocks, disks))
2217476bd79SDan Williams 			unmap->addr[j++] = dma_map_page(device->dev, Q(blocks, disks),
2227476bd79SDan Williams 						       offset, len, DMA_BIDIRECTIONAL);
2237476bd79SDan Williams 		else {
2247476bd79SDan Williams 			unmap->addr[j++] = 0;
2257476bd79SDan Williams 			dma_flags |= DMA_PREP_PQ_DISABLE_Q;
2267476bd79SDan Williams 		}
2277476bd79SDan Williams 
2287476bd79SDan Williams 		tx = do_async_gen_syndrome(chan, coefs, j, unmap, dma_flags, submit);
2297476bd79SDan Williams 		dmaengine_unmap_put(unmap);
2307476bd79SDan Williams 		return tx;
2317476bd79SDan Williams 	}
2327476bd79SDan Williams 
2337476bd79SDan Williams 	dmaengine_unmap_put(unmap);
2347476bd79SDan Williams 
235b2f46fd8SDan Williams 	/* run the pq synchronously */
236b2f46fd8SDan Williams 	pr_debug("%s: (sync) disks: %d len: %zu\n", __func__, disks, len);
237b2f46fd8SDan Williams 
238b2f46fd8SDan Williams 	/* wait for any prerequisite operations */
239b2f46fd8SDan Williams 	async_tx_quiesce(&submit->depend_tx);
240b2f46fd8SDan Williams 
241b2f46fd8SDan Williams 	if (!P(blocks, disks)) {
242030b0772SDan Williams 		P(blocks, disks) = pq_scribble_page;
243b2f46fd8SDan Williams 		BUG_ON(len + offset > PAGE_SIZE);
244b2f46fd8SDan Williams 	}
245b2f46fd8SDan Williams 	if (!Q(blocks, disks)) {
246030b0772SDan Williams 		Q(blocks, disks) = pq_scribble_page;
247b2f46fd8SDan Williams 		BUG_ON(len + offset > PAGE_SIZE);
248b2f46fd8SDan Williams 	}
249b2f46fd8SDan Williams 	do_sync_gen_syndrome(blocks, offset, disks, len, submit);
250b2f46fd8SDan Williams 
251b2f46fd8SDan Williams 	return NULL;
252b2f46fd8SDan Williams }
253b2f46fd8SDan Williams EXPORT_SYMBOL_GPL(async_gen_syndrome);
254b2f46fd8SDan Williams 
2557b3cc2b1SDan Williams static inline struct dma_chan *
2567b3cc2b1SDan Williams pq_val_chan(struct async_submit_ctl *submit, struct page **blocks, int disks, size_t len)
2577b3cc2b1SDan Williams {
2587b3cc2b1SDan Williams 	#ifdef CONFIG_ASYNC_TX_DISABLE_PQ_VAL_DMA
2597b3cc2b1SDan Williams 	return NULL;
2607b3cc2b1SDan Williams 	#endif
2617b3cc2b1SDan Williams 	return async_tx_find_channel(submit, DMA_PQ_VAL, NULL, 0,  blocks,
2627b3cc2b1SDan Williams 				     disks, len);
2637b3cc2b1SDan Williams }
2647b3cc2b1SDan Williams 
265b2f46fd8SDan Williams /**
266b2f46fd8SDan Williams  * async_syndrome_val - asynchronously validate a raid6 syndrome
267b2f46fd8SDan Williams  * @blocks: source blocks from idx 0..disks-3, P @ disks-2 and Q @ disks-1
268b2f46fd8SDan Williams  * @offset: common offset into each block (src and dest) to start transaction
269b2f46fd8SDan Williams  * @disks: number of blocks (including missing P or Q, see below)
270b2f46fd8SDan Williams  * @len: length of operation in bytes
271b2f46fd8SDan Williams  * @pqres: on val failure SUM_CHECK_P_RESULT and/or SUM_CHECK_Q_RESULT are set
272b2f46fd8SDan Williams  * @spare: temporary result buffer for the synchronous case
273b2f46fd8SDan Williams  * @submit: submission / completion modifiers
274b2f46fd8SDan Williams  *
275b2f46fd8SDan Williams  * The same notes from async_gen_syndrome apply to the 'blocks',
276b2f46fd8SDan Williams  * and 'disks' parameters of this routine.  The synchronous path
277b2f46fd8SDan Williams  * requires a temporary result buffer and submit->scribble to be
278b2f46fd8SDan Williams  * specified.
279b2f46fd8SDan Williams  */
280b2f46fd8SDan Williams struct dma_async_tx_descriptor *
281b2f46fd8SDan Williams async_syndrome_val(struct page **blocks, unsigned int offset, int disks,
282b2f46fd8SDan Williams 		   size_t len, enum sum_check_flags *pqres, struct page *spare,
283b2f46fd8SDan Williams 		   struct async_submit_ctl *submit)
284b2f46fd8SDan Williams {
2857b3cc2b1SDan Williams 	struct dma_chan *chan = pq_val_chan(submit, blocks, disks, len);
286b2f46fd8SDan Williams 	struct dma_device *device = chan ? chan->device : NULL;
287b2f46fd8SDan Williams 	struct dma_async_tx_descriptor *tx;
28889a7e2f7SKyle Spiers 	unsigned char coefs[MAX_DISKS];
289b2f46fd8SDan Williams 	enum dma_ctrl_flags dma_flags = submit->cb_fn ? DMA_PREP_INTERRUPT : 0;
2901786b943SDan Williams 	struct dmaengine_unmap_data *unmap = NULL;
291b2f46fd8SDan Williams 
29289a7e2f7SKyle Spiers 	BUG_ON(disks < 4 || disks > MAX_DISKS);
293b2f46fd8SDan Williams 
2941786b943SDan Williams 	if (device)
295b02bab6bSNeilBrown 		unmap = dmaengine_get_unmap_data(device->dev, disks, GFP_NOWAIT);
296b2f46fd8SDan Williams 
2971786b943SDan Williams 	if (unmap && disks <= dma_maxpq(device, 0) &&
29883544ae9SDan Williams 	    is_dma_pq_aligned(device, offset, 0, len)) {
299b2f46fd8SDan Williams 		struct device *dev = device->dev;
3001786b943SDan Williams 		dma_addr_t pq[2];
3011786b943SDan Williams 		int i, j = 0, src_cnt = 0;
302b2f46fd8SDan Williams 
303b2f46fd8SDan Williams 		pr_debug("%s: (async) disks: %d len: %zu\n",
304b2f46fd8SDan Williams 			 __func__, disks, len);
3051786b943SDan Williams 
3061786b943SDan Williams 		unmap->len = len;
3071786b943SDan Williams 		for (i = 0; i < disks-2; i++)
3081786b943SDan Williams 			if (likely(blocks[i])) {
3091786b943SDan Williams 				unmap->addr[j] = dma_map_page(dev, blocks[i],
3101786b943SDan Williams 							      offset, len,
3111786b943SDan Williams 							      DMA_TO_DEVICE);
3121786b943SDan Williams 				coefs[j] = raid6_gfexp[i];
3131786b943SDan Williams 				unmap->to_cnt++;
3141786b943SDan Williams 				src_cnt++;
3151786b943SDan Williams 				j++;
3161786b943SDan Williams 			}
3171786b943SDan Williams 
3181786b943SDan Williams 		if (!P(blocks, disks)) {
3191786b943SDan Williams 			pq[0] = 0;
320b2f46fd8SDan Williams 			dma_flags |= DMA_PREP_PQ_DISABLE_P;
3211786b943SDan Williams 		} else {
322b2141e69SNeilBrown 			pq[0] = dma_map_page(dev, P(blocks, disks),
323b2141e69SNeilBrown 					     offset, len,
324b2141e69SNeilBrown 					     DMA_TO_DEVICE);
3251786b943SDan Williams 			unmap->addr[j++] = pq[0];
3261786b943SDan Williams 			unmap->to_cnt++;
3271786b943SDan Williams 		}
3281786b943SDan Williams 		if (!Q(blocks, disks)) {
3291786b943SDan Williams 			pq[1] = 0;
330b2f46fd8SDan Williams 			dma_flags |= DMA_PREP_PQ_DISABLE_Q;
3311786b943SDan Williams 		} else {
332b2141e69SNeilBrown 			pq[1] = dma_map_page(dev, Q(blocks, disks),
333b2141e69SNeilBrown 					     offset, len,
334b2141e69SNeilBrown 					     DMA_TO_DEVICE);
3351786b943SDan Williams 			unmap->addr[j++] = pq[1];
3361786b943SDan Williams 			unmap->to_cnt++;
3371786b943SDan Williams 		}
338b2141e69SNeilBrown 
3390403e382SDan Williams 		if (submit->flags & ASYNC_TX_FENCE)
3400403e382SDan Williams 			dma_flags |= DMA_PREP_FENCE;
341b2f46fd8SDan Williams 		for (;;) {
3421786b943SDan Williams 			tx = device->device_prep_dma_pq_val(chan, pq,
3431786b943SDan Williams 							    unmap->addr,
344b2141e69SNeilBrown 							    src_cnt,
345b2141e69SNeilBrown 							    coefs,
346b2f46fd8SDan Williams 							    len, pqres,
347b2f46fd8SDan Williams 							    dma_flags);
348b2f46fd8SDan Williams 			if (likely(tx))
349b2f46fd8SDan Williams 				break;
350b2f46fd8SDan Williams 			async_tx_quiesce(&submit->depend_tx);
351b2f46fd8SDan Williams 			dma_async_issue_pending(chan);
352b2f46fd8SDan Williams 		}
3531786b943SDan Williams 
3541786b943SDan Williams 		dma_set_unmap(tx, unmap);
355b2f46fd8SDan Williams 		async_tx_submit(chan, tx, submit);
356b2f46fd8SDan Williams 	} else {
357b2f46fd8SDan Williams 		struct page *p_src = P(blocks, disks);
358b2f46fd8SDan Williams 		struct page *q_src = Q(blocks, disks);
359b2f46fd8SDan Williams 		enum async_tx_flags flags_orig = submit->flags;
360b2f46fd8SDan Williams 		dma_async_tx_callback cb_fn_orig = submit->cb_fn;
361b2f46fd8SDan Williams 		void *scribble = submit->scribble;
362b2f46fd8SDan Williams 		void *cb_param_orig = submit->cb_param;
363b2f46fd8SDan Williams 		void *p, *q, *s;
364b2f46fd8SDan Williams 
365b2f46fd8SDan Williams 		pr_debug("%s: (sync) disks: %d len: %zu\n",
366b2f46fd8SDan Williams 			 __func__, disks, len);
367b2f46fd8SDan Williams 
368b2f46fd8SDan Williams 		/* caller must provide a temporary result buffer and
369b2f46fd8SDan Williams 		 * allow the input parameters to be preserved
370b2f46fd8SDan Williams 		 */
371b2f46fd8SDan Williams 		BUG_ON(!spare || !scribble);
372b2f46fd8SDan Williams 
373b2f46fd8SDan Williams 		/* wait for any prerequisite operations */
374b2f46fd8SDan Williams 		async_tx_quiesce(&submit->depend_tx);
375b2f46fd8SDan Williams 
376b2f46fd8SDan Williams 		/* recompute p and/or q into the temporary buffer and then
377b2f46fd8SDan Williams 		 * check to see the result matches the current value
378b2f46fd8SDan Williams 		 */
379b2f46fd8SDan Williams 		tx = NULL;
380b2f46fd8SDan Williams 		*pqres = 0;
381b2f46fd8SDan Williams 		if (p_src) {
382b2f46fd8SDan Williams 			init_async_submit(submit, ASYNC_TX_XOR_ZERO_DST, NULL,
383b2f46fd8SDan Williams 					  NULL, NULL, scribble);
384b2f46fd8SDan Williams 			tx = async_xor(spare, blocks, offset, disks-2, len, submit);
385b2f46fd8SDan Williams 			async_tx_quiesce(&tx);
386b2f46fd8SDan Williams 			p = page_address(p_src) + offset;
387b2f46fd8SDan Williams 			s = page_address(spare) + offset;
388b2f46fd8SDan Williams 			*pqres |= !!memcmp(p, s, len) << SUM_CHECK_P;
389b2f46fd8SDan Williams 		}
390b2f46fd8SDan Williams 
391b2f46fd8SDan Williams 		if (q_src) {
392b2f46fd8SDan Williams 			P(blocks, disks) = NULL;
393b2f46fd8SDan Williams 			Q(blocks, disks) = spare;
394b2f46fd8SDan Williams 			init_async_submit(submit, 0, NULL, NULL, NULL, scribble);
395b2f46fd8SDan Williams 			tx = async_gen_syndrome(blocks, offset, disks, len, submit);
396b2f46fd8SDan Williams 			async_tx_quiesce(&tx);
397b2f46fd8SDan Williams 			q = page_address(q_src) + offset;
398b2f46fd8SDan Williams 			s = page_address(spare) + offset;
399b2f46fd8SDan Williams 			*pqres |= !!memcmp(q, s, len) << SUM_CHECK_Q;
400b2f46fd8SDan Williams 		}
401b2f46fd8SDan Williams 
402b2f46fd8SDan Williams 		/* restore P, Q and submit */
403b2f46fd8SDan Williams 		P(blocks, disks) = p_src;
404b2f46fd8SDan Williams 		Q(blocks, disks) = q_src;
405b2f46fd8SDan Williams 
406b2f46fd8SDan Williams 		submit->cb_fn = cb_fn_orig;
407b2f46fd8SDan Williams 		submit->cb_param = cb_param_orig;
408b2f46fd8SDan Williams 		submit->flags = flags_orig;
409b2f46fd8SDan Williams 		async_tx_sync_epilog(submit);
410c8475090SJustin Maggard 		tx = NULL;
411b2f46fd8SDan Williams 	}
412c8475090SJustin Maggard 	dmaengine_unmap_put(unmap);
413c8475090SJustin Maggard 
414c8475090SJustin Maggard 	return tx;
415b2f46fd8SDan Williams }
416b2f46fd8SDan Williams EXPORT_SYMBOL_GPL(async_syndrome_val);
417b2f46fd8SDan Williams 
418b2f46fd8SDan Williams static int __init async_pq_init(void)
419b2f46fd8SDan Williams {
420030b0772SDan Williams 	pq_scribble_page = alloc_page(GFP_KERNEL);
421b2f46fd8SDan Williams 
422030b0772SDan Williams 	if (pq_scribble_page)
423b2f46fd8SDan Williams 		return 0;
424b2f46fd8SDan Williams 
425b2f46fd8SDan Williams 	pr_err("%s: failed to allocate required spare page\n", __func__);
426b2f46fd8SDan Williams 
427b2f46fd8SDan Williams 	return -ENOMEM;
428b2f46fd8SDan Williams }
429b2f46fd8SDan Williams 
430b2f46fd8SDan Williams static void __exit async_pq_exit(void)
431b2f46fd8SDan Williams {
43295813b8fSJoonsoo Kim 	__free_page(pq_scribble_page);
433b2f46fd8SDan Williams }
434b2f46fd8SDan Williams 
435b2f46fd8SDan Williams module_init(async_pq_init);
436b2f46fd8SDan Williams module_exit(async_pq_exit);
437b2f46fd8SDan Williams 
438b2f46fd8SDan Williams MODULE_DESCRIPTION("asynchronous raid6 syndrome generation/validation");
439b2f46fd8SDan Williams MODULE_LICENSE("GPL");
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