forked from mirrors/linux
		
	Continuing from this commit: 52f5684c8e
("kernel: use macros from compiler.h instead of __attribute__((...))")
I submitted 4 total patches. They are part of task I've taken up to
increase compiler portability in the kernel. I've cleaned up the
subsystems under /kernel /mm /block and /security, this patch targets
/crypto.
There is <linux/compiler.h> which provides macros for various gcc specific
constructs. Eg: __weak for __attribute__((weak)). I've cleaned all
instances of gcc specific attributes with the right macros for the crypto
subsystem.
I had to make one additional change into compiler-gcc.h for the case when
one wants to use this: __attribute__((aligned) and not specify an alignment
factor. From the gcc docs, this will result in the largest alignment for
that data type on the target machine so I've named the macro
__aligned_largest. Please advise if another name is more appropriate.
Signed-off-by: Gideon Israel Dsouza <gidisrael@gmail.com>
Signed-off-by: Herbert Xu <herbert@gondor.apana.org.au>
		
	
			
		
			
				
	
	
		
			561 lines
		
	
	
	
		
			15 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			561 lines
		
	
	
	
		
			15 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
/*
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 * Block chaining cipher operations.
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 *
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 * Generic encrypt/decrypt wrapper for ciphers, handles operations across
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 * multiple page boundaries by using temporary blocks.  In user context,
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 * the kernel is given a chance to schedule us once per page.
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 *
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 * Copyright (c) 2006 Herbert Xu <herbert@gondor.apana.org.au>
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 *
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 * This program is free software; you can redistribute it and/or modify it
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 * under the terms of the GNU General Public License as published by the Free
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 * Software Foundation; either version 2 of the License, or (at your option)
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 * any later version.
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 *
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 */
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#include <crypto/aead.h>
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#include <crypto/internal/skcipher.h>
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#include <crypto/scatterwalk.h>
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#include <linux/errno.h>
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#include <linux/hardirq.h>
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#include <linux/kernel.h>
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#include <linux/module.h>
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#include <linux/seq_file.h>
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#include <linux/slab.h>
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#include <linux/string.h>
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#include <linux/cryptouser.h>
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#include <linux/compiler.h>
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#include <net/netlink.h>
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#include "internal.h"
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enum {
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	BLKCIPHER_WALK_PHYS = 1 << 0,
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	BLKCIPHER_WALK_SLOW = 1 << 1,
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	BLKCIPHER_WALK_COPY = 1 << 2,
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	BLKCIPHER_WALK_DIFF = 1 << 3,
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};
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static int blkcipher_walk_next(struct blkcipher_desc *desc,
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			       struct blkcipher_walk *walk);
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static int blkcipher_walk_first(struct blkcipher_desc *desc,
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				struct blkcipher_walk *walk);
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static inline void blkcipher_map_src(struct blkcipher_walk *walk)
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{
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	walk->src.virt.addr = scatterwalk_map(&walk->in);
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}
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static inline void blkcipher_map_dst(struct blkcipher_walk *walk)
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{
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	walk->dst.virt.addr = scatterwalk_map(&walk->out);
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}
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static inline void blkcipher_unmap_src(struct blkcipher_walk *walk)
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{
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	scatterwalk_unmap(walk->src.virt.addr);
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}
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static inline void blkcipher_unmap_dst(struct blkcipher_walk *walk)
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{
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	scatterwalk_unmap(walk->dst.virt.addr);
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}
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/* Get a spot of the specified length that does not straddle a page.
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 * The caller needs to ensure that there is enough space for this operation.
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 */
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static inline u8 *blkcipher_get_spot(u8 *start, unsigned int len)
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{
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	u8 *end_page = (u8 *)(((unsigned long)(start + len - 1)) & PAGE_MASK);
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	return max(start, end_page);
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}
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static inline unsigned int blkcipher_done_slow(struct blkcipher_walk *walk,
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					       unsigned int bsize)
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{
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	u8 *addr;
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	addr = (u8 *)ALIGN((unsigned long)walk->buffer, walk->alignmask + 1);
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	addr = blkcipher_get_spot(addr, bsize);
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	scatterwalk_copychunks(addr, &walk->out, bsize, 1);
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	return bsize;
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}
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static inline unsigned int blkcipher_done_fast(struct blkcipher_walk *walk,
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					       unsigned int n)
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{
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	if (walk->flags & BLKCIPHER_WALK_COPY) {
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		blkcipher_map_dst(walk);
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		memcpy(walk->dst.virt.addr, walk->page, n);
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		blkcipher_unmap_dst(walk);
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	} else if (!(walk->flags & BLKCIPHER_WALK_PHYS)) {
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		if (walk->flags & BLKCIPHER_WALK_DIFF)
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			blkcipher_unmap_dst(walk);
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		blkcipher_unmap_src(walk);
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	}
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	scatterwalk_advance(&walk->in, n);
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	scatterwalk_advance(&walk->out, n);
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	return n;
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}
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int blkcipher_walk_done(struct blkcipher_desc *desc,
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			struct blkcipher_walk *walk, int err)
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{
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	unsigned int nbytes = 0;
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	if (likely(err >= 0)) {
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		unsigned int n = walk->nbytes - err;
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		if (likely(!(walk->flags & BLKCIPHER_WALK_SLOW)))
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			n = blkcipher_done_fast(walk, n);
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		else if (WARN_ON(err)) {
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			err = -EINVAL;
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			goto err;
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		} else
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			n = blkcipher_done_slow(walk, n);
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		nbytes = walk->total - n;
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		err = 0;
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	}
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	scatterwalk_done(&walk->in, 0, nbytes);
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	scatterwalk_done(&walk->out, 1, nbytes);
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err:
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	walk->total = nbytes;
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	walk->nbytes = nbytes;
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	if (nbytes) {
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		crypto_yield(desc->flags);
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		return blkcipher_walk_next(desc, walk);
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	}
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	if (walk->iv != desc->info)
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		memcpy(desc->info, walk->iv, walk->ivsize);
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	if (walk->buffer != walk->page)
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		kfree(walk->buffer);
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	if (walk->page)
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		free_page((unsigned long)walk->page);
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	return err;
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}
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EXPORT_SYMBOL_GPL(blkcipher_walk_done);
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static inline int blkcipher_next_slow(struct blkcipher_desc *desc,
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				      struct blkcipher_walk *walk,
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				      unsigned int bsize,
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				      unsigned int alignmask)
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{
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	unsigned int n;
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	unsigned aligned_bsize = ALIGN(bsize, alignmask + 1);
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	if (walk->buffer)
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		goto ok;
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	walk->buffer = walk->page;
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	if (walk->buffer)
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		goto ok;
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	n = aligned_bsize * 3 - (alignmask + 1) +
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	    (alignmask & ~(crypto_tfm_ctx_alignment() - 1));
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	walk->buffer = kmalloc(n, GFP_ATOMIC);
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	if (!walk->buffer)
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		return blkcipher_walk_done(desc, walk, -ENOMEM);
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ok:
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	walk->dst.virt.addr = (u8 *)ALIGN((unsigned long)walk->buffer,
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					  alignmask + 1);
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	walk->dst.virt.addr = blkcipher_get_spot(walk->dst.virt.addr, bsize);
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	walk->src.virt.addr = blkcipher_get_spot(walk->dst.virt.addr +
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						 aligned_bsize, bsize);
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	scatterwalk_copychunks(walk->src.virt.addr, &walk->in, bsize, 0);
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	walk->nbytes = bsize;
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	walk->flags |= BLKCIPHER_WALK_SLOW;
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	return 0;
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}
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static inline int blkcipher_next_copy(struct blkcipher_walk *walk)
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{
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	u8 *tmp = walk->page;
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	blkcipher_map_src(walk);
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	memcpy(tmp, walk->src.virt.addr, walk->nbytes);
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	blkcipher_unmap_src(walk);
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	walk->src.virt.addr = tmp;
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	walk->dst.virt.addr = tmp;
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	return 0;
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}
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static inline int blkcipher_next_fast(struct blkcipher_desc *desc,
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				      struct blkcipher_walk *walk)
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{
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	unsigned long diff;
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	walk->src.phys.page = scatterwalk_page(&walk->in);
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	walk->src.phys.offset = offset_in_page(walk->in.offset);
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	walk->dst.phys.page = scatterwalk_page(&walk->out);
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	walk->dst.phys.offset = offset_in_page(walk->out.offset);
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	if (walk->flags & BLKCIPHER_WALK_PHYS)
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		return 0;
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	diff = walk->src.phys.offset - walk->dst.phys.offset;
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	diff |= walk->src.virt.page - walk->dst.virt.page;
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	blkcipher_map_src(walk);
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	walk->dst.virt.addr = walk->src.virt.addr;
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	if (diff) {
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		walk->flags |= BLKCIPHER_WALK_DIFF;
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		blkcipher_map_dst(walk);
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	}
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	return 0;
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}
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static int blkcipher_walk_next(struct blkcipher_desc *desc,
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			       struct blkcipher_walk *walk)
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{
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	unsigned int bsize;
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	unsigned int n;
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	int err;
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	n = walk->total;
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	if (unlikely(n < walk->cipher_blocksize)) {
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		desc->flags |= CRYPTO_TFM_RES_BAD_BLOCK_LEN;
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		return blkcipher_walk_done(desc, walk, -EINVAL);
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	}
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	bsize = min(walk->walk_blocksize, n);
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	walk->flags &= ~(BLKCIPHER_WALK_SLOW | BLKCIPHER_WALK_COPY |
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			 BLKCIPHER_WALK_DIFF);
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	if (!scatterwalk_aligned(&walk->in, walk->alignmask) ||
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	    !scatterwalk_aligned(&walk->out, walk->alignmask)) {
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		walk->flags |= BLKCIPHER_WALK_COPY;
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		if (!walk->page) {
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			walk->page = (void *)__get_free_page(GFP_ATOMIC);
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			if (!walk->page)
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				n = 0;
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		}
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	}
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	n = scatterwalk_clamp(&walk->in, n);
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	n = scatterwalk_clamp(&walk->out, n);
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	if (unlikely(n < bsize)) {
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		err = blkcipher_next_slow(desc, walk, bsize, walk->alignmask);
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		goto set_phys_lowmem;
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	}
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	walk->nbytes = n;
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	if (walk->flags & BLKCIPHER_WALK_COPY) {
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		err = blkcipher_next_copy(walk);
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		goto set_phys_lowmem;
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	}
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	return blkcipher_next_fast(desc, walk);
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set_phys_lowmem:
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	if (walk->flags & BLKCIPHER_WALK_PHYS) {
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		walk->src.phys.page = virt_to_page(walk->src.virt.addr);
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		walk->dst.phys.page = virt_to_page(walk->dst.virt.addr);
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		walk->src.phys.offset &= PAGE_SIZE - 1;
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		walk->dst.phys.offset &= PAGE_SIZE - 1;
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	}
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	return err;
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}
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static inline int blkcipher_copy_iv(struct blkcipher_walk *walk)
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{
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	unsigned bs = walk->walk_blocksize;
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	unsigned aligned_bs = ALIGN(bs, walk->alignmask + 1);
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	unsigned int size = aligned_bs * 2 +
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			    walk->ivsize + max(aligned_bs, walk->ivsize) -
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			    (walk->alignmask + 1);
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	u8 *iv;
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	size += walk->alignmask & ~(crypto_tfm_ctx_alignment() - 1);
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	walk->buffer = kmalloc(size, GFP_ATOMIC);
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	if (!walk->buffer)
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		return -ENOMEM;
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	iv = (u8 *)ALIGN((unsigned long)walk->buffer, walk->alignmask + 1);
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	iv = blkcipher_get_spot(iv, bs) + aligned_bs;
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	iv = blkcipher_get_spot(iv, bs) + aligned_bs;
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	iv = blkcipher_get_spot(iv, walk->ivsize);
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	walk->iv = memcpy(iv, walk->iv, walk->ivsize);
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	return 0;
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}
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int blkcipher_walk_virt(struct blkcipher_desc *desc,
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			struct blkcipher_walk *walk)
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{
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	walk->flags &= ~BLKCIPHER_WALK_PHYS;
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	walk->walk_blocksize = crypto_blkcipher_blocksize(desc->tfm);
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	walk->cipher_blocksize = walk->walk_blocksize;
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	walk->ivsize = crypto_blkcipher_ivsize(desc->tfm);
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	walk->alignmask = crypto_blkcipher_alignmask(desc->tfm);
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	return blkcipher_walk_first(desc, walk);
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}
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EXPORT_SYMBOL_GPL(blkcipher_walk_virt);
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int blkcipher_walk_phys(struct blkcipher_desc *desc,
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			struct blkcipher_walk *walk)
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{
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	walk->flags |= BLKCIPHER_WALK_PHYS;
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	walk->walk_blocksize = crypto_blkcipher_blocksize(desc->tfm);
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	walk->cipher_blocksize = walk->walk_blocksize;
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	walk->ivsize = crypto_blkcipher_ivsize(desc->tfm);
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	walk->alignmask = crypto_blkcipher_alignmask(desc->tfm);
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	return blkcipher_walk_first(desc, walk);
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}
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EXPORT_SYMBOL_GPL(blkcipher_walk_phys);
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static int blkcipher_walk_first(struct blkcipher_desc *desc,
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				struct blkcipher_walk *walk)
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{
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	if (WARN_ON_ONCE(in_irq()))
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		return -EDEADLK;
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	walk->iv = desc->info;
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	walk->nbytes = walk->total;
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	if (unlikely(!walk->total))
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		return 0;
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	walk->buffer = NULL;
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	if (unlikely(((unsigned long)walk->iv & walk->alignmask))) {
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		int err = blkcipher_copy_iv(walk);
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		if (err)
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			return err;
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	}
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	scatterwalk_start(&walk->in, walk->in.sg);
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	scatterwalk_start(&walk->out, walk->out.sg);
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	walk->page = NULL;
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	return blkcipher_walk_next(desc, walk);
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}
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int blkcipher_walk_virt_block(struct blkcipher_desc *desc,
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			      struct blkcipher_walk *walk,
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			      unsigned int blocksize)
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{
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	walk->flags &= ~BLKCIPHER_WALK_PHYS;
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	walk->walk_blocksize = blocksize;
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	walk->cipher_blocksize = crypto_blkcipher_blocksize(desc->tfm);
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	walk->ivsize = crypto_blkcipher_ivsize(desc->tfm);
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	walk->alignmask = crypto_blkcipher_alignmask(desc->tfm);
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	return blkcipher_walk_first(desc, walk);
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}
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EXPORT_SYMBOL_GPL(blkcipher_walk_virt_block);
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int blkcipher_aead_walk_virt_block(struct blkcipher_desc *desc,
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				   struct blkcipher_walk *walk,
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				   struct crypto_aead *tfm,
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				   unsigned int blocksize)
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{
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	walk->flags &= ~BLKCIPHER_WALK_PHYS;
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	walk->walk_blocksize = blocksize;
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	walk->cipher_blocksize = crypto_aead_blocksize(tfm);
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	walk->ivsize = crypto_aead_ivsize(tfm);
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	walk->alignmask = crypto_aead_alignmask(tfm);
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	return blkcipher_walk_first(desc, walk);
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}
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EXPORT_SYMBOL_GPL(blkcipher_aead_walk_virt_block);
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static int setkey_unaligned(struct crypto_tfm *tfm, const u8 *key,
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			    unsigned int keylen)
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{
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	struct blkcipher_alg *cipher = &tfm->__crt_alg->cra_blkcipher;
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	unsigned long alignmask = crypto_tfm_alg_alignmask(tfm);
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	int ret;
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	u8 *buffer, *alignbuffer;
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	unsigned long absize;
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	absize = keylen + alignmask;
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	buffer = kmalloc(absize, GFP_ATOMIC);
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	if (!buffer)
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		return -ENOMEM;
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	alignbuffer = (u8 *)ALIGN((unsigned long)buffer, alignmask + 1);
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	memcpy(alignbuffer, key, keylen);
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	ret = cipher->setkey(tfm, alignbuffer, keylen);
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	memset(alignbuffer, 0, keylen);
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	kfree(buffer);
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	return ret;
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}
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static int setkey(struct crypto_tfm *tfm, const u8 *key, unsigned int keylen)
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{
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	struct blkcipher_alg *cipher = &tfm->__crt_alg->cra_blkcipher;
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	unsigned long alignmask = crypto_tfm_alg_alignmask(tfm);
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	if (keylen < cipher->min_keysize || keylen > cipher->max_keysize) {
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		tfm->crt_flags |= CRYPTO_TFM_RES_BAD_KEY_LEN;
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		return -EINVAL;
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	}
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 | 
						|
	if ((unsigned long)key & alignmask)
 | 
						|
		return setkey_unaligned(tfm, key, keylen);
 | 
						|
 | 
						|
	return cipher->setkey(tfm, key, keylen);
 | 
						|
}
 | 
						|
 | 
						|
static int async_setkey(struct crypto_ablkcipher *tfm, const u8 *key,
 | 
						|
			unsigned int keylen)
 | 
						|
{
 | 
						|
	return setkey(crypto_ablkcipher_tfm(tfm), key, keylen);
 | 
						|
}
 | 
						|
 | 
						|
static int async_encrypt(struct ablkcipher_request *req)
 | 
						|
{
 | 
						|
	struct crypto_tfm *tfm = req->base.tfm;
 | 
						|
	struct blkcipher_alg *alg = &tfm->__crt_alg->cra_blkcipher;
 | 
						|
	struct blkcipher_desc desc = {
 | 
						|
		.tfm = __crypto_blkcipher_cast(tfm),
 | 
						|
		.info = req->info,
 | 
						|
		.flags = req->base.flags,
 | 
						|
	};
 | 
						|
 | 
						|
 | 
						|
	return alg->encrypt(&desc, req->dst, req->src, req->nbytes);
 | 
						|
}
 | 
						|
 | 
						|
static int async_decrypt(struct ablkcipher_request *req)
 | 
						|
{
 | 
						|
	struct crypto_tfm *tfm = req->base.tfm;
 | 
						|
	struct blkcipher_alg *alg = &tfm->__crt_alg->cra_blkcipher;
 | 
						|
	struct blkcipher_desc desc = {
 | 
						|
		.tfm = __crypto_blkcipher_cast(tfm),
 | 
						|
		.info = req->info,
 | 
						|
		.flags = req->base.flags,
 | 
						|
	};
 | 
						|
 | 
						|
	return alg->decrypt(&desc, req->dst, req->src, req->nbytes);
 | 
						|
}
 | 
						|
 | 
						|
static unsigned int crypto_blkcipher_ctxsize(struct crypto_alg *alg, u32 type,
 | 
						|
					     u32 mask)
 | 
						|
{
 | 
						|
	struct blkcipher_alg *cipher = &alg->cra_blkcipher;
 | 
						|
	unsigned int len = alg->cra_ctxsize;
 | 
						|
 | 
						|
	if ((mask & CRYPTO_ALG_TYPE_MASK) == CRYPTO_ALG_TYPE_MASK &&
 | 
						|
	    cipher->ivsize) {
 | 
						|
		len = ALIGN(len, (unsigned long)alg->cra_alignmask + 1);
 | 
						|
		len += cipher->ivsize;
 | 
						|
	}
 | 
						|
 | 
						|
	return len;
 | 
						|
}
 | 
						|
 | 
						|
static int crypto_init_blkcipher_ops_async(struct crypto_tfm *tfm)
 | 
						|
{
 | 
						|
	struct ablkcipher_tfm *crt = &tfm->crt_ablkcipher;
 | 
						|
	struct blkcipher_alg *alg = &tfm->__crt_alg->cra_blkcipher;
 | 
						|
 | 
						|
	crt->setkey = async_setkey;
 | 
						|
	crt->encrypt = async_encrypt;
 | 
						|
	crt->decrypt = async_decrypt;
 | 
						|
	crt->base = __crypto_ablkcipher_cast(tfm);
 | 
						|
	crt->ivsize = alg->ivsize;
 | 
						|
 | 
						|
	return 0;
 | 
						|
}
 | 
						|
 | 
						|
static int crypto_init_blkcipher_ops_sync(struct crypto_tfm *tfm)
 | 
						|
{
 | 
						|
	struct blkcipher_tfm *crt = &tfm->crt_blkcipher;
 | 
						|
	struct blkcipher_alg *alg = &tfm->__crt_alg->cra_blkcipher;
 | 
						|
	unsigned long align = crypto_tfm_alg_alignmask(tfm) + 1;
 | 
						|
	unsigned long addr;
 | 
						|
 | 
						|
	crt->setkey = setkey;
 | 
						|
	crt->encrypt = alg->encrypt;
 | 
						|
	crt->decrypt = alg->decrypt;
 | 
						|
 | 
						|
	addr = (unsigned long)crypto_tfm_ctx(tfm);
 | 
						|
	addr = ALIGN(addr, align);
 | 
						|
	addr += ALIGN(tfm->__crt_alg->cra_ctxsize, align);
 | 
						|
	crt->iv = (void *)addr;
 | 
						|
 | 
						|
	return 0;
 | 
						|
}
 | 
						|
 | 
						|
static int crypto_init_blkcipher_ops(struct crypto_tfm *tfm, u32 type, u32 mask)
 | 
						|
{
 | 
						|
	struct blkcipher_alg *alg = &tfm->__crt_alg->cra_blkcipher;
 | 
						|
 | 
						|
	if (alg->ivsize > PAGE_SIZE / 8)
 | 
						|
		return -EINVAL;
 | 
						|
 | 
						|
	if ((mask & CRYPTO_ALG_TYPE_MASK) == CRYPTO_ALG_TYPE_MASK)
 | 
						|
		return crypto_init_blkcipher_ops_sync(tfm);
 | 
						|
	else
 | 
						|
		return crypto_init_blkcipher_ops_async(tfm);
 | 
						|
}
 | 
						|
 | 
						|
#ifdef CONFIG_NET
 | 
						|
static int crypto_blkcipher_report(struct sk_buff *skb, struct crypto_alg *alg)
 | 
						|
{
 | 
						|
	struct crypto_report_blkcipher rblkcipher;
 | 
						|
 | 
						|
	strncpy(rblkcipher.type, "blkcipher", sizeof(rblkcipher.type));
 | 
						|
	strncpy(rblkcipher.geniv, alg->cra_blkcipher.geniv ?: "<default>",
 | 
						|
		sizeof(rblkcipher.geniv));
 | 
						|
 | 
						|
	rblkcipher.blocksize = alg->cra_blocksize;
 | 
						|
	rblkcipher.min_keysize = alg->cra_blkcipher.min_keysize;
 | 
						|
	rblkcipher.max_keysize = alg->cra_blkcipher.max_keysize;
 | 
						|
	rblkcipher.ivsize = alg->cra_blkcipher.ivsize;
 | 
						|
 | 
						|
	if (nla_put(skb, CRYPTOCFGA_REPORT_BLKCIPHER,
 | 
						|
		    sizeof(struct crypto_report_blkcipher), &rblkcipher))
 | 
						|
		goto nla_put_failure;
 | 
						|
	return 0;
 | 
						|
 | 
						|
nla_put_failure:
 | 
						|
	return -EMSGSIZE;
 | 
						|
}
 | 
						|
#else
 | 
						|
static int crypto_blkcipher_report(struct sk_buff *skb, struct crypto_alg *alg)
 | 
						|
{
 | 
						|
	return -ENOSYS;
 | 
						|
}
 | 
						|
#endif
 | 
						|
 | 
						|
static void crypto_blkcipher_show(struct seq_file *m, struct crypto_alg *alg)
 | 
						|
	__maybe_unused;
 | 
						|
static void crypto_blkcipher_show(struct seq_file *m, struct crypto_alg *alg)
 | 
						|
{
 | 
						|
	seq_printf(m, "type         : blkcipher\n");
 | 
						|
	seq_printf(m, "blocksize    : %u\n", alg->cra_blocksize);
 | 
						|
	seq_printf(m, "min keysize  : %u\n", alg->cra_blkcipher.min_keysize);
 | 
						|
	seq_printf(m, "max keysize  : %u\n", alg->cra_blkcipher.max_keysize);
 | 
						|
	seq_printf(m, "ivsize       : %u\n", alg->cra_blkcipher.ivsize);
 | 
						|
	seq_printf(m, "geniv        : %s\n", alg->cra_blkcipher.geniv ?:
 | 
						|
					     "<default>");
 | 
						|
}
 | 
						|
 | 
						|
const struct crypto_type crypto_blkcipher_type = {
 | 
						|
	.ctxsize = crypto_blkcipher_ctxsize,
 | 
						|
	.init = crypto_init_blkcipher_ops,
 | 
						|
#ifdef CONFIG_PROC_FS
 | 
						|
	.show = crypto_blkcipher_show,
 | 
						|
#endif
 | 
						|
	.report = crypto_blkcipher_report,
 | 
						|
};
 | 
						|
EXPORT_SYMBOL_GPL(crypto_blkcipher_type);
 | 
						|
 | 
						|
MODULE_LICENSE("GPL");
 | 
						|
MODULE_DESCRIPTION("Generic block chaining cipher type");
 |