forked from mirrors/linux
		
	mm/zswap: add the flag can_sleep_mapped
Patch series "Fix the compatibility of zsmalloc and zswap". Patch #1 adds a flag to zpool, then zswap used to determine if zpool drivers such as zbud/z3fold/zsmalloc will enter an atomic context after mapping. The difference between zbud/z3fold and zsmalloc is that zsmalloc requires an atomic context that since its map function holds a preempt-disabled, but zbud/z3fold don't require an atomic context. So patch #2 sets flag sleep_mapped to true indicating that zbud/z3fold can sleep after mapping. zsmalloc didn't support sleep after mapping, so don't set that flag to true. This patch (of 2): Add a flag to zpool, named is "can_sleep_mapped", and have it set true for zbud/z3fold, not set this flag for zsmalloc, so its default value is false. Then zswap could go the current path if the flag is true; and if it's false, copy data from src to a temporary buffer, then unmap the handle, take the mutex, process the buffer instead of src to avoid sleeping function called from atomic context. [natechancellor@gmail.com: add return value in zswap_frontswap_load] Link: https://lkml.kernel.org/r/20210121214804.926843-1-natechancellor@gmail.com [tiantao6@hisilicon.com: fix potential memory leak] Link: https://lkml.kernel.org/r/1611538365-51811-1-git-send-email-tiantao6@hisilicon.com [colin.king@canonical.com: fix potential uninitialized pointer read on tmp] Link: https://lkml.kernel.org/r/20210128141728.639030-1-colin.king@canonical.com [tiantao6@hisilicon.com: fix variable 'entry' is uninitialized when used] Link: https://lkml.kernel.org/r/1611223030-58346-1-git-send-email-tiantao6@hisilicon.comLink: https://lkml.kernel.org/r/1611035683-12732-1-git-send-email-tiantao6@hisilicon.com Link: https://lkml.kernel.org/r/1611035683-12732-2-git-send-email-tiantao6@hisilicon.com Signed-off-by: Tian Tao <tiantao6@hisilicon.com> Signed-off-by: Nathan Chancellor <natechancellor@gmail.com> Signed-off-by: Colin Ian King <colin.king@canonical.com> Reviewed-by: Vitaly Wool <vitaly.wool@konsulko.com> Acked-by: Sebastian Andrzej Siewior <bigeasy@linutronix.de> Reported-by: Mike Galbraith <efault@gmx.de> Cc: Barry Song <song.bao.hua@hisilicon.com> Cc: Dan Streetman <ddstreet@ieee.org> Cc: Seth Jennings <sjenning@redhat.com> Cc: Dan Carpenter <dan.carpenter@oracle.com> Signed-off-by: Andrew Morton <akpm@linux-foundation.org> Signed-off-by: Linus Torvalds <torvalds@linux-foundation.org>
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					 3 changed files with 62 additions and 5 deletions
				
			
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					@ -73,6 +73,7 @@ u64 zpool_get_total_size(struct zpool *pool);
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 * @malloc:	allocate mem from a pool.
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					 * @malloc:	allocate mem from a pool.
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 * @free:	free mem from a pool.
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					 * @free:	free mem from a pool.
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 * @shrink:	shrink the pool.
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					 * @shrink:	shrink the pool.
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					 * @sleep_mapped: whether zpool driver can sleep during map.
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 * @map:	map a handle.
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					 * @map:	map a handle.
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 * @unmap:	unmap a handle.
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					 * @unmap:	unmap a handle.
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 * @total_size:	get total size of a pool.
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					 * @total_size:	get total size of a pool.
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					@ -100,6 +101,7 @@ struct zpool_driver {
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	int (*shrink)(void *pool, unsigned int pages,
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						int (*shrink)(void *pool, unsigned int pages,
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				unsigned int *reclaimed);
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									unsigned int *reclaimed);
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						bool sleep_mapped;
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	void *(*map)(void *pool, unsigned long handle,
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						void *(*map)(void *pool, unsigned long handle,
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				enum zpool_mapmode mm);
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									enum zpool_mapmode mm);
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	void (*unmap)(void *pool, unsigned long handle);
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						void (*unmap)(void *pool, unsigned long handle);
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					@ -112,5 +114,6 @@ void zpool_register_driver(struct zpool_driver *driver);
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int zpool_unregister_driver(struct zpool_driver *driver);
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					int zpool_unregister_driver(struct zpool_driver *driver);
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bool zpool_evictable(struct zpool *pool);
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					bool zpool_evictable(struct zpool *pool);
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					bool zpool_can_sleep_mapped(struct zpool *pool);
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#endif
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					#endif
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										13
									
								
								mm/zpool.c
									
									
									
									
									
								
							
							
						
						
									
										13
									
								
								mm/zpool.c
									
									
									
									
									
								
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					@ -23,6 +23,7 @@ struct zpool {
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	void *pool;
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						void *pool;
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	const struct zpool_ops *ops;
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						const struct zpool_ops *ops;
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	bool evictable;
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						bool evictable;
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						bool can_sleep_mapped;
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	struct list_head list;
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						struct list_head list;
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};
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					};
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					@ -183,6 +184,7 @@ struct zpool *zpool_create_pool(const char *type, const char *name, gfp_t gfp,
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	zpool->pool = driver->create(name, gfp, ops, zpool);
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						zpool->pool = driver->create(name, gfp, ops, zpool);
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	zpool->ops = ops;
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						zpool->ops = ops;
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	zpool->evictable = driver->shrink && ops && ops->evict;
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						zpool->evictable = driver->shrink && ops && ops->evict;
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						zpool->can_sleep_mapped = driver->sleep_mapped;
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	if (!zpool->pool) {
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						if (!zpool->pool) {
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		pr_err("couldn't create %s pool\n", type);
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							pr_err("couldn't create %s pool\n", type);
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					@ -393,6 +395,17 @@ bool zpool_evictable(struct zpool *zpool)
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	return zpool->evictable;
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						return zpool->evictable;
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}
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					}
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					/**
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					 * zpool_can_sleep_mapped - Test if zpool can sleep when do mapped.
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					 * @zpool:	The zpool to test
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					 *
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					 * Returns: true if zpool can sleep; false otherwise.
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					 */
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					bool zpool_can_sleep_mapped(struct zpool *zpool)
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					{
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						return zpool->can_sleep_mapped;
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					}
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MODULE_LICENSE("GPL");
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					MODULE_LICENSE("GPL");
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MODULE_AUTHOR("Dan Streetman <ddstreet@ieee.org>");
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					MODULE_AUTHOR("Dan Streetman <ddstreet@ieee.org>");
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MODULE_DESCRIPTION("Common API for compressed memory storage");
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					MODULE_DESCRIPTION("Common API for compressed memory storage");
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										47
									
								
								mm/zswap.c
									
									
									
									
									
								
							
							
						
						
									
										47
									
								
								mm/zswap.c
									
									
									
									
									
								
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					@ -935,13 +935,19 @@ static int zswap_writeback_entry(struct zpool *pool, unsigned long handle)
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	struct scatterlist input, output;
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						struct scatterlist input, output;
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	struct crypto_acomp_ctx *acomp_ctx;
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						struct crypto_acomp_ctx *acomp_ctx;
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	u8 *src;
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						u8 *src, *tmp = NULL;
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	unsigned int dlen;
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						unsigned int dlen;
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	int ret;
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						int ret;
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	struct writeback_control wbc = {
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						struct writeback_control wbc = {
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		.sync_mode = WB_SYNC_NONE,
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							.sync_mode = WB_SYNC_NONE,
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	};
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						};
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						if (!zpool_can_sleep_mapped(pool)) {
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							tmp = kmalloc(PAGE_SIZE, GFP_ATOMIC);
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							if (!tmp)
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								return -ENOMEM;
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						}
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	/* extract swpentry from data */
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						/* extract swpentry from data */
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	zhdr = zpool_map_handle(pool, handle, ZPOOL_MM_RO);
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						zhdr = zpool_map_handle(pool, handle, ZPOOL_MM_RO);
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	swpentry = zhdr->swpentry; /* here */
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						swpentry = zhdr->swpentry; /* here */
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					@ -955,6 +961,7 @@ static int zswap_writeback_entry(struct zpool *pool, unsigned long handle)
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		/* entry was invalidated */
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							/* entry was invalidated */
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		spin_unlock(&tree->lock);
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							spin_unlock(&tree->lock);
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		zpool_unmap_handle(pool, handle);
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							zpool_unmap_handle(pool, handle);
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							kfree(tmp);
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		return 0;
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							return 0;
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	}
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						}
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	spin_unlock(&tree->lock);
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						spin_unlock(&tree->lock);
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					@ -979,6 +986,14 @@ static int zswap_writeback_entry(struct zpool *pool, unsigned long handle)
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		dlen = PAGE_SIZE;
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							dlen = PAGE_SIZE;
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		src = (u8 *)zhdr + sizeof(struct zswap_header);
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							src = (u8 *)zhdr + sizeof(struct zswap_header);
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							if (!zpool_can_sleep_mapped(pool)) {
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								memcpy(tmp, src, entry->length);
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								src = tmp;
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								zpool_unmap_handle(pool, handle);
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							}
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		mutex_lock(acomp_ctx->mutex);
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							mutex_lock(acomp_ctx->mutex);
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		sg_init_one(&input, src, entry->length);
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							sg_init_one(&input, src, entry->length);
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		sg_init_table(&output, 1);
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							sg_init_table(&output, 1);
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					@ -1033,7 +1048,11 @@ static int zswap_writeback_entry(struct zpool *pool, unsigned long handle)
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	spin_unlock(&tree->lock);
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						spin_unlock(&tree->lock);
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end:
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					end:
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						if (zpool_can_sleep_mapped(pool))
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		zpool_unmap_handle(pool, handle);
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							zpool_unmap_handle(pool, handle);
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						else
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							kfree(tmp);
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	return ret;
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						return ret;
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}
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					}
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					@ -1235,7 +1254,7 @@ static int zswap_frontswap_load(unsigned type, pgoff_t offset,
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	struct zswap_entry *entry;
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						struct zswap_entry *entry;
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	struct scatterlist input, output;
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						struct scatterlist input, output;
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	struct crypto_acomp_ctx *acomp_ctx;
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						struct crypto_acomp_ctx *acomp_ctx;
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	u8 *src, *dst;
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						u8 *src, *dst, *tmp;
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	unsigned int dlen;
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						unsigned int dlen;
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	int ret;
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						int ret;
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					@ -1253,15 +1272,33 @@ static int zswap_frontswap_load(unsigned type, pgoff_t offset,
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		dst = kmap_atomic(page);
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							dst = kmap_atomic(page);
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		zswap_fill_page(dst, entry->value);
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							zswap_fill_page(dst, entry->value);
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		kunmap_atomic(dst);
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							kunmap_atomic(dst);
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							ret = 0;
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		goto freeentry;
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							goto freeentry;
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	}
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						}
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						if (!zpool_can_sleep_mapped(entry->pool->zpool)) {
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							tmp = kmalloc(entry->length, GFP_ATOMIC);
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							if (!tmp) {
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								ret = -ENOMEM;
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								goto freeentry;
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							}
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						}
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	/* decompress */
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						/* decompress */
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	dlen = PAGE_SIZE;
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						dlen = PAGE_SIZE;
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	src = zpool_map_handle(entry->pool->zpool, entry->handle, ZPOOL_MM_RO);
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						src = zpool_map_handle(entry->pool->zpool, entry->handle, ZPOOL_MM_RO);
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	if (zpool_evictable(entry->pool->zpool))
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						if (zpool_evictable(entry->pool->zpool))
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		src += sizeof(struct zswap_header);
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							src += sizeof(struct zswap_header);
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						if (!zpool_can_sleep_mapped(entry->pool->zpool)) {
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							memcpy(tmp, src, entry->length);
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							src = tmp;
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							zpool_unmap_handle(entry->pool->zpool, entry->handle);
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						}
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	acomp_ctx = raw_cpu_ptr(entry->pool->acomp_ctx);
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						acomp_ctx = raw_cpu_ptr(entry->pool->acomp_ctx);
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	mutex_lock(acomp_ctx->mutex);
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						mutex_lock(acomp_ctx->mutex);
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	sg_init_one(&input, src, entry->length);
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						sg_init_one(&input, src, entry->length);
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					@ -1271,7 +1308,11 @@ static int zswap_frontswap_load(unsigned type, pgoff_t offset,
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	ret = crypto_wait_req(crypto_acomp_decompress(acomp_ctx->req), &acomp_ctx->wait);
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						ret = crypto_wait_req(crypto_acomp_decompress(acomp_ctx->req), &acomp_ctx->wait);
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	mutex_unlock(acomp_ctx->mutex);
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						mutex_unlock(acomp_ctx->mutex);
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						if (zpool_can_sleep_mapped(entry->pool->zpool))
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		zpool_unmap_handle(entry->pool->zpool, entry->handle);
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							zpool_unmap_handle(entry->pool->zpool, entry->handle);
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						else
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							kfree(tmp);
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	BUG_ON(ret);
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						BUG_ON(ret);
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freeentry:
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					freeentry:
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					@ -1279,7 +1320,7 @@ static int zswap_frontswap_load(unsigned type, pgoff_t offset,
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	zswap_entry_put(tree, entry);
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						zswap_entry_put(tree, entry);
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	spin_unlock(&tree->lock);
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						spin_unlock(&tree->lock);
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	return 0;
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						return ret;
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}
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					}
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/* frees an entry in zswap */
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					/* frees an entry in zswap */
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