xref: /openbmc/linux/crypto/algif_skcipher.c (revision 2c3f8b162106a7d12097d02eb22459f57fab8247)
18ff59090SHerbert Xu /*
28ff59090SHerbert Xu  * algif_skcipher: User-space interface for skcipher algorithms
38ff59090SHerbert Xu  *
48ff59090SHerbert Xu  * This file provides the user-space API for symmetric key ciphers.
58ff59090SHerbert Xu  *
68ff59090SHerbert Xu  * Copyright (c) 2010 Herbert Xu <herbert@gondor.apana.org.au>
78ff59090SHerbert Xu  *
88ff59090SHerbert Xu  * This program is free software; you can redistribute it and/or modify it
98ff59090SHerbert Xu  * under the terms of the GNU General Public License as published by the Free
108ff59090SHerbert Xu  * Software Foundation; either version 2 of the License, or (at your option)
118ff59090SHerbert Xu  * any later version.
128ff59090SHerbert Xu  *
13e870456dSStephan Mueller  * The following concept of the memory management is used:
14e870456dSStephan Mueller  *
15e870456dSStephan Mueller  * The kernel maintains two SGLs, the TX SGL and the RX SGL. The TX SGL is
16e870456dSStephan Mueller  * filled by user space with the data submitted via sendpage/sendmsg. Filling
17e870456dSStephan Mueller  * up the TX SGL does not cause a crypto operation -- the data will only be
18e870456dSStephan Mueller  * tracked by the kernel. Upon receipt of one recvmsg call, the caller must
19e870456dSStephan Mueller  * provide a buffer which is tracked with the RX SGL.
20e870456dSStephan Mueller  *
21e870456dSStephan Mueller  * During the processing of the recvmsg operation, the cipher request is
22e870456dSStephan Mueller  * allocated and prepared. As part of the recvmsg operation, the processed
23e870456dSStephan Mueller  * TX buffers are extracted from the TX SGL into a separate SGL.
24e870456dSStephan Mueller  *
25e870456dSStephan Mueller  * After the completion of the crypto operation, the RX SGL and the cipher
26e870456dSStephan Mueller  * request is released. The extracted TX SGL parts are released together with
27e870456dSStephan Mueller  * the RX SGL release.
288ff59090SHerbert Xu  */
298ff59090SHerbert Xu 
308ff59090SHerbert Xu #include <crypto/scatterwalk.h>
318ff59090SHerbert Xu #include <crypto/skcipher.h>
328ff59090SHerbert Xu #include <crypto/if_alg.h>
338ff59090SHerbert Xu #include <linux/init.h>
348ff59090SHerbert Xu #include <linux/list.h>
358ff59090SHerbert Xu #include <linux/kernel.h>
368ff59090SHerbert Xu #include <linux/mm.h>
378ff59090SHerbert Xu #include <linux/module.h>
388ff59090SHerbert Xu #include <linux/net.h>
398ff59090SHerbert Xu #include <net/sock.h>
408ff59090SHerbert Xu 
41dd504589SHerbert Xu struct skcipher_tfm {
42dd504589SHerbert Xu 	struct crypto_skcipher *skcipher;
43dd504589SHerbert Xu 	bool has_key;
44dd504589SHerbert Xu };
45dd504589SHerbert Xu 
461b784140SYing Xue static int skcipher_sendmsg(struct socket *sock, struct msghdr *msg,
471b784140SYing Xue 			    size_t size)
488ff59090SHerbert Xu {
498ff59090SHerbert Xu 	struct sock *sk = sock->sk;
508ff59090SHerbert Xu 	struct alg_sock *ask = alg_sk(sk);
516454c2b8SHerbert Xu 	struct sock *psk = ask->parent;
526454c2b8SHerbert Xu 	struct alg_sock *pask = alg_sk(psk);
536454c2b8SHerbert Xu 	struct skcipher_tfm *skc = pask->private;
546454c2b8SHerbert Xu 	struct crypto_skcipher *tfm = skc->skcipher;
550d96e4baSHerbert Xu 	unsigned ivsize = crypto_skcipher_ivsize(tfm);
568ff59090SHerbert Xu 
572d97591eSStephan Mueller 	return af_alg_sendmsg(sock, msg, size, ivsize);
58a596999bSTadeusz Struk }
59a596999bSTadeusz Struk 
60e870456dSStephan Mueller static int _skcipher_recvmsg(struct socket *sock, struct msghdr *msg,
61e870456dSStephan Mueller 			     size_t ignored, int flags)
62a596999bSTadeusz Struk {
63a596999bSTadeusz Struk 	struct sock *sk = sock->sk;
64a596999bSTadeusz Struk 	struct alg_sock *ask = alg_sk(sk);
65ec69bbfbSHerbert Xu 	struct sock *psk = ask->parent;
66ec69bbfbSHerbert Xu 	struct alg_sock *pask = alg_sk(psk);
672d97591eSStephan Mueller 	struct af_alg_ctx *ctx = ask->private;
68ec69bbfbSHerbert Xu 	struct skcipher_tfm *skc = pask->private;
69ec69bbfbSHerbert Xu 	struct crypto_skcipher *tfm = skc->skcipher;
70e870456dSStephan Mueller 	unsigned int bs = crypto_skcipher_blocksize(tfm);
712d97591eSStephan Mueller 	struct af_alg_async_req *areq;
72e870456dSStephan Mueller 	int err = 0;
73e870456dSStephan Mueller 	size_t len = 0;
74ec69bbfbSHerbert Xu 
75e870456dSStephan Mueller 	/* Allocate cipher request for current operation. */
762d97591eSStephan Mueller 	areq = af_alg_alloc_areq(sk, sizeof(struct af_alg_async_req) +
772d97591eSStephan Mueller 				     crypto_skcipher_reqsize(tfm));
782d97591eSStephan Mueller 	if (IS_ERR(areq))
792d97591eSStephan Mueller 		return PTR_ERR(areq);
80ec69bbfbSHerbert Xu 
81e870456dSStephan Mueller 	/* convert iovecs of output buffers into RX SGL */
822d97591eSStephan Mueller 	err = af_alg_get_rsgl(sk, msg, flags, areq, -1, &len);
83a596999bSTadeusz Struk 	if (err)
84a596999bSTadeusz Struk 		goto free;
85a596999bSTadeusz Struk 
86e870456dSStephan Mueller 	/* Process only as much RX buffers for which we have TX data */
87e870456dSStephan Mueller 	if (len > ctx->used)
88e870456dSStephan Mueller 		len = ctx->used;
89033f46b3Stadeusz.struk@intel.com 
90e870456dSStephan Mueller 	/*
91e870456dSStephan Mueller 	 * If more buffers are to be expected to be processed, process only
92e870456dSStephan Mueller 	 * full block size buffers.
93e870456dSStephan Mueller 	 */
94e870456dSStephan Mueller 	if (ctx->more || len < ctx->used)
95e870456dSStephan Mueller 		len -= len % bs;
96a596999bSTadeusz Struk 
97e870456dSStephan Mueller 	/*
98e870456dSStephan Mueller 	 * Create a per request TX SGL for this request which tracks the
99e870456dSStephan Mueller 	 * SG entries from the global TX SGL.
100e870456dSStephan Mueller 	 */
1012d97591eSStephan Mueller 	areq->tsgl_entries = af_alg_count_tsgl(sk, len, 0);
102e870456dSStephan Mueller 	if (!areq->tsgl_entries)
103e870456dSStephan Mueller 		areq->tsgl_entries = 1;
104e870456dSStephan Mueller 	areq->tsgl = sock_kmalloc(sk, sizeof(*areq->tsgl) * areq->tsgl_entries,
105e870456dSStephan Mueller 				  GFP_KERNEL);
106e870456dSStephan Mueller 	if (!areq->tsgl) {
107e870456dSStephan Mueller 		err = -ENOMEM;
108bc97e57eSHerbert Xu 		goto free;
109e870456dSStephan Mueller 	}
110e870456dSStephan Mueller 	sg_init_table(areq->tsgl, areq->tsgl_entries);
1112d97591eSStephan Mueller 	af_alg_pull_tsgl(sk, len, areq->tsgl, 0);
1128ff59090SHerbert Xu 
113e870456dSStephan Mueller 	/* Initialize the crypto operation */
1142d97591eSStephan Mueller 	skcipher_request_set_tfm(&areq->cra_u.skcipher_req, tfm);
1152d97591eSStephan Mueller 	skcipher_request_set_crypt(&areq->cra_u.skcipher_req, areq->tsgl,
1162d97591eSStephan Mueller 				   areq->first_rsgl.sgl.sg, len, ctx->iv);
1174f0414e5SHerbert Xu 
118e870456dSStephan Mueller 	if (msg->msg_iocb && !is_sync_kiocb(msg->msg_iocb)) {
119e870456dSStephan Mueller 		/* AIO operation */
120e870456dSStephan Mueller 		areq->iocb = msg->msg_iocb;
1212d97591eSStephan Mueller 		skcipher_request_set_callback(&areq->cra_u.skcipher_req,
122e870456dSStephan Mueller 					      CRYPTO_TFM_REQ_MAY_SLEEP,
1232d97591eSStephan Mueller 					      af_alg_async_cb, areq);
1242d97591eSStephan Mueller 		err = ctx->enc ?
1252d97591eSStephan Mueller 			crypto_skcipher_encrypt(&areq->cra_u.skcipher_req) :
1262d97591eSStephan Mueller 			crypto_skcipher_decrypt(&areq->cra_u.skcipher_req);
127e870456dSStephan Mueller 	} else {
128e870456dSStephan Mueller 		/* Synchronous operation */
1292d97591eSStephan Mueller 		skcipher_request_set_callback(&areq->cra_u.skcipher_req,
130e870456dSStephan Mueller 					      CRYPTO_TFM_REQ_MAY_SLEEP |
131e870456dSStephan Mueller 					      CRYPTO_TFM_REQ_MAY_BACKLOG,
132*2c3f8b16SGilad Ben-Yossef 					      crypto_req_done, &ctx->wait);
133*2c3f8b16SGilad Ben-Yossef 		err = crypto_wait_req(ctx->enc ?
1342d97591eSStephan Mueller 			crypto_skcipher_encrypt(&areq->cra_u.skcipher_req) :
1352d97591eSStephan Mueller 			crypto_skcipher_decrypt(&areq->cra_u.skcipher_req),
136*2c3f8b16SGilad Ben-Yossef 						 &ctx->wait);
1378ff59090SHerbert Xu 	}
1388ff59090SHerbert Xu 
139e870456dSStephan Mueller 	/* AIO operation in progress */
140e870456dSStephan Mueller 	if (err == -EINPROGRESS) {
141e870456dSStephan Mueller 		sock_hold(sk);
1422d97591eSStephan Mueller 
1432d97591eSStephan Mueller 		/* Remember output size that will be generated. */
1442d97591eSStephan Mueller 		areq->outlen = len;
1452d97591eSStephan Mueller 
146e870456dSStephan Mueller 		return -EIOCBQUEUED;
147e870456dSStephan Mueller 	}
1488ff59090SHerbert Xu 
149e870456dSStephan Mueller free:
1502d97591eSStephan Mueller 	af_alg_free_areq_sgls(areq);
1512d97591eSStephan Mueller 	sock_kfree_s(sk, areq, areq->areqlen);
1528ff59090SHerbert Xu 
153e870456dSStephan Mueller 	return err ? err : len;
1548ff59090SHerbert Xu }
1558ff59090SHerbert Xu 
156a596999bSTadeusz Struk static int skcipher_recvmsg(struct socket *sock, struct msghdr *msg,
157a596999bSTadeusz Struk 			    size_t ignored, int flags)
158a596999bSTadeusz Struk {
159e870456dSStephan Mueller 	struct sock *sk = sock->sk;
160e870456dSStephan Mueller 	int ret = 0;
161e870456dSStephan Mueller 
162e870456dSStephan Mueller 	lock_sock(sk);
163e870456dSStephan Mueller 	while (msg_data_left(msg)) {
164e870456dSStephan Mueller 		int err = _skcipher_recvmsg(sock, msg, ignored, flags);
165e870456dSStephan Mueller 
166e870456dSStephan Mueller 		/*
167e870456dSStephan Mueller 		 * This error covers -EIOCBQUEUED which implies that we can
168e870456dSStephan Mueller 		 * only handle one AIO request. If the caller wants to have
169e870456dSStephan Mueller 		 * multiple AIO requests in parallel, he must make multiple
170e870456dSStephan Mueller 		 * separate AIO calls.
1715703c826SStephan Mueller 		 *
1725703c826SStephan Mueller 		 * Also return the error if no data has been processed so far.
173e870456dSStephan Mueller 		 */
174e870456dSStephan Mueller 		if (err <= 0) {
1755703c826SStephan Mueller 			if (err == -EIOCBQUEUED || !ret)
176e870456dSStephan Mueller 				ret = err;
177e870456dSStephan Mueller 			goto out;
178e870456dSStephan Mueller 		}
179e870456dSStephan Mueller 
180e870456dSStephan Mueller 		ret += err;
181e870456dSStephan Mueller 	}
182e870456dSStephan Mueller 
183e870456dSStephan Mueller out:
1842d97591eSStephan Mueller 	af_alg_wmem_wakeup(sk);
185e870456dSStephan Mueller 	release_sock(sk);
186e870456dSStephan Mueller 	return ret;
187a596999bSTadeusz Struk }
1888ff59090SHerbert Xu 
1898ff59090SHerbert Xu 
1908ff59090SHerbert Xu static struct proto_ops algif_skcipher_ops = {
1918ff59090SHerbert Xu 	.family		=	PF_ALG,
1928ff59090SHerbert Xu 
1938ff59090SHerbert Xu 	.connect	=	sock_no_connect,
1948ff59090SHerbert Xu 	.socketpair	=	sock_no_socketpair,
1958ff59090SHerbert Xu 	.getname	=	sock_no_getname,
1968ff59090SHerbert Xu 	.ioctl		=	sock_no_ioctl,
1978ff59090SHerbert Xu 	.listen		=	sock_no_listen,
1988ff59090SHerbert Xu 	.shutdown	=	sock_no_shutdown,
1998ff59090SHerbert Xu 	.getsockopt	=	sock_no_getsockopt,
2008ff59090SHerbert Xu 	.mmap		=	sock_no_mmap,
2018ff59090SHerbert Xu 	.bind		=	sock_no_bind,
2028ff59090SHerbert Xu 	.accept		=	sock_no_accept,
2038ff59090SHerbert Xu 	.setsockopt	=	sock_no_setsockopt,
2048ff59090SHerbert Xu 
2058ff59090SHerbert Xu 	.release	=	af_alg_release,
2068ff59090SHerbert Xu 	.sendmsg	=	skcipher_sendmsg,
2072d97591eSStephan Mueller 	.sendpage	=	af_alg_sendpage,
2088ff59090SHerbert Xu 	.recvmsg	=	skcipher_recvmsg,
2092d97591eSStephan Mueller 	.poll		=	af_alg_poll,
2108ff59090SHerbert Xu };
2118ff59090SHerbert Xu 
212a0fa2d03SHerbert Xu static int skcipher_check_key(struct socket *sock)
213a0fa2d03SHerbert Xu {
2141822793aSHerbert Xu 	int err = 0;
215a0fa2d03SHerbert Xu 	struct sock *psk;
216a0fa2d03SHerbert Xu 	struct alg_sock *pask;
217a0fa2d03SHerbert Xu 	struct skcipher_tfm *tfm;
218a0fa2d03SHerbert Xu 	struct sock *sk = sock->sk;
219a0fa2d03SHerbert Xu 	struct alg_sock *ask = alg_sk(sk);
220a0fa2d03SHerbert Xu 
2211822793aSHerbert Xu 	lock_sock(sk);
222a0fa2d03SHerbert Xu 	if (ask->refcnt)
2231822793aSHerbert Xu 		goto unlock_child;
224a0fa2d03SHerbert Xu 
225a0fa2d03SHerbert Xu 	psk = ask->parent;
226a0fa2d03SHerbert Xu 	pask = alg_sk(ask->parent);
227a0fa2d03SHerbert Xu 	tfm = pask->private;
228a0fa2d03SHerbert Xu 
229a0fa2d03SHerbert Xu 	err = -ENOKEY;
2301822793aSHerbert Xu 	lock_sock_nested(psk, SINGLE_DEPTH_NESTING);
231a0fa2d03SHerbert Xu 	if (!tfm->has_key)
232a0fa2d03SHerbert Xu 		goto unlock;
233a0fa2d03SHerbert Xu 
234a0fa2d03SHerbert Xu 	if (!pask->refcnt++)
235a0fa2d03SHerbert Xu 		sock_hold(psk);
236a0fa2d03SHerbert Xu 
237a0fa2d03SHerbert Xu 	ask->refcnt = 1;
238a0fa2d03SHerbert Xu 	sock_put(psk);
239a0fa2d03SHerbert Xu 
240a0fa2d03SHerbert Xu 	err = 0;
241a0fa2d03SHerbert Xu 
242a0fa2d03SHerbert Xu unlock:
243a0fa2d03SHerbert Xu 	release_sock(psk);
2441822793aSHerbert Xu unlock_child:
2451822793aSHerbert Xu 	release_sock(sk);
246a0fa2d03SHerbert Xu 
247a0fa2d03SHerbert Xu 	return err;
248a0fa2d03SHerbert Xu }
249a0fa2d03SHerbert Xu 
250a0fa2d03SHerbert Xu static int skcipher_sendmsg_nokey(struct socket *sock, struct msghdr *msg,
251a0fa2d03SHerbert Xu 				  size_t size)
252a0fa2d03SHerbert Xu {
253a0fa2d03SHerbert Xu 	int err;
254a0fa2d03SHerbert Xu 
255a0fa2d03SHerbert Xu 	err = skcipher_check_key(sock);
256a0fa2d03SHerbert Xu 	if (err)
257a0fa2d03SHerbert Xu 		return err;
258a0fa2d03SHerbert Xu 
259a0fa2d03SHerbert Xu 	return skcipher_sendmsg(sock, msg, size);
260a0fa2d03SHerbert Xu }
261a0fa2d03SHerbert Xu 
262a0fa2d03SHerbert Xu static ssize_t skcipher_sendpage_nokey(struct socket *sock, struct page *page,
263a0fa2d03SHerbert Xu 				       int offset, size_t size, int flags)
264a0fa2d03SHerbert Xu {
265a0fa2d03SHerbert Xu 	int err;
266a0fa2d03SHerbert Xu 
267a0fa2d03SHerbert Xu 	err = skcipher_check_key(sock);
268a0fa2d03SHerbert Xu 	if (err)
269a0fa2d03SHerbert Xu 		return err;
270a0fa2d03SHerbert Xu 
2712d97591eSStephan Mueller 	return af_alg_sendpage(sock, page, offset, size, flags);
272a0fa2d03SHerbert Xu }
273a0fa2d03SHerbert Xu 
274a0fa2d03SHerbert Xu static int skcipher_recvmsg_nokey(struct socket *sock, struct msghdr *msg,
275a0fa2d03SHerbert Xu 				  size_t ignored, int flags)
276a0fa2d03SHerbert Xu {
277a0fa2d03SHerbert Xu 	int err;
278a0fa2d03SHerbert Xu 
279a0fa2d03SHerbert Xu 	err = skcipher_check_key(sock);
280a0fa2d03SHerbert Xu 	if (err)
281a0fa2d03SHerbert Xu 		return err;
282a0fa2d03SHerbert Xu 
283a0fa2d03SHerbert Xu 	return skcipher_recvmsg(sock, msg, ignored, flags);
284a0fa2d03SHerbert Xu }
285a0fa2d03SHerbert Xu 
286a0fa2d03SHerbert Xu static struct proto_ops algif_skcipher_ops_nokey = {
287a0fa2d03SHerbert Xu 	.family		=	PF_ALG,
288a0fa2d03SHerbert Xu 
289a0fa2d03SHerbert Xu 	.connect	=	sock_no_connect,
290a0fa2d03SHerbert Xu 	.socketpair	=	sock_no_socketpair,
291a0fa2d03SHerbert Xu 	.getname	=	sock_no_getname,
292a0fa2d03SHerbert Xu 	.ioctl		=	sock_no_ioctl,
293a0fa2d03SHerbert Xu 	.listen		=	sock_no_listen,
294a0fa2d03SHerbert Xu 	.shutdown	=	sock_no_shutdown,
295a0fa2d03SHerbert Xu 	.getsockopt	=	sock_no_getsockopt,
296a0fa2d03SHerbert Xu 	.mmap		=	sock_no_mmap,
297a0fa2d03SHerbert Xu 	.bind		=	sock_no_bind,
298a0fa2d03SHerbert Xu 	.accept		=	sock_no_accept,
299a0fa2d03SHerbert Xu 	.setsockopt	=	sock_no_setsockopt,
300a0fa2d03SHerbert Xu 
301a0fa2d03SHerbert Xu 	.release	=	af_alg_release,
302a0fa2d03SHerbert Xu 	.sendmsg	=	skcipher_sendmsg_nokey,
303a0fa2d03SHerbert Xu 	.sendpage	=	skcipher_sendpage_nokey,
304a0fa2d03SHerbert Xu 	.recvmsg	=	skcipher_recvmsg_nokey,
3052d97591eSStephan Mueller 	.poll		=	af_alg_poll,
306a0fa2d03SHerbert Xu };
307a0fa2d03SHerbert Xu 
3088ff59090SHerbert Xu static void *skcipher_bind(const char *name, u32 type, u32 mask)
3098ff59090SHerbert Xu {
310dd504589SHerbert Xu 	struct skcipher_tfm *tfm;
311dd504589SHerbert Xu 	struct crypto_skcipher *skcipher;
312dd504589SHerbert Xu 
313dd504589SHerbert Xu 	tfm = kzalloc(sizeof(*tfm), GFP_KERNEL);
314dd504589SHerbert Xu 	if (!tfm)
315dd504589SHerbert Xu 		return ERR_PTR(-ENOMEM);
316dd504589SHerbert Xu 
317dd504589SHerbert Xu 	skcipher = crypto_alloc_skcipher(name, type, mask);
318dd504589SHerbert Xu 	if (IS_ERR(skcipher)) {
319dd504589SHerbert Xu 		kfree(tfm);
320dd504589SHerbert Xu 		return ERR_CAST(skcipher);
321dd504589SHerbert Xu 	}
322dd504589SHerbert Xu 
323dd504589SHerbert Xu 	tfm->skcipher = skcipher;
324dd504589SHerbert Xu 
325dd504589SHerbert Xu 	return tfm;
3268ff59090SHerbert Xu }
3278ff59090SHerbert Xu 
3288ff59090SHerbert Xu static void skcipher_release(void *private)
3298ff59090SHerbert Xu {
330dd504589SHerbert Xu 	struct skcipher_tfm *tfm = private;
331dd504589SHerbert Xu 
332dd504589SHerbert Xu 	crypto_free_skcipher(tfm->skcipher);
333dd504589SHerbert Xu 	kfree(tfm);
3348ff59090SHerbert Xu }
3358ff59090SHerbert Xu 
3368ff59090SHerbert Xu static int skcipher_setkey(void *private, const u8 *key, unsigned int keylen)
3378ff59090SHerbert Xu {
338dd504589SHerbert Xu 	struct skcipher_tfm *tfm = private;
339dd504589SHerbert Xu 	int err;
340dd504589SHerbert Xu 
341dd504589SHerbert Xu 	err = crypto_skcipher_setkey(tfm->skcipher, key, keylen);
342dd504589SHerbert Xu 	tfm->has_key = !err;
343dd504589SHerbert Xu 
344dd504589SHerbert Xu 	return err;
3458ff59090SHerbert Xu }
3468ff59090SHerbert Xu 
3478ff59090SHerbert Xu static void skcipher_sock_destruct(struct sock *sk)
3488ff59090SHerbert Xu {
3498ff59090SHerbert Xu 	struct alg_sock *ask = alg_sk(sk);
3502d97591eSStephan Mueller 	struct af_alg_ctx *ctx = ask->private;
351e870456dSStephan Mueller 	struct sock *psk = ask->parent;
352e870456dSStephan Mueller 	struct alg_sock *pask = alg_sk(psk);
353e870456dSStephan Mueller 	struct skcipher_tfm *skc = pask->private;
354e870456dSStephan Mueller 	struct crypto_skcipher *tfm = skc->skcipher;
3558ff59090SHerbert Xu 
3562d97591eSStephan Mueller 	af_alg_pull_tsgl(sk, ctx->used, NULL, 0);
3570d96e4baSHerbert Xu 	sock_kzfree_s(sk, ctx->iv, crypto_skcipher_ivsize(tfm));
3588ff59090SHerbert Xu 	sock_kfree_s(sk, ctx, ctx->len);
3598ff59090SHerbert Xu 	af_alg_release_parent(sk);
3608ff59090SHerbert Xu }
3618ff59090SHerbert Xu 
362d7b65aeeSHerbert Xu static int skcipher_accept_parent_nokey(void *private, struct sock *sk)
3638ff59090SHerbert Xu {
3642d97591eSStephan Mueller 	struct af_alg_ctx *ctx;
3658ff59090SHerbert Xu 	struct alg_sock *ask = alg_sk(sk);
366dd504589SHerbert Xu 	struct skcipher_tfm *tfm = private;
367dd504589SHerbert Xu 	struct crypto_skcipher *skcipher = tfm->skcipher;
368e870456dSStephan Mueller 	unsigned int len = sizeof(*ctx);
3698ff59090SHerbert Xu 
3708ff59090SHerbert Xu 	ctx = sock_kmalloc(sk, len, GFP_KERNEL);
3718ff59090SHerbert Xu 	if (!ctx)
3728ff59090SHerbert Xu 		return -ENOMEM;
3738ff59090SHerbert Xu 
374dd504589SHerbert Xu 	ctx->iv = sock_kmalloc(sk, crypto_skcipher_ivsize(skcipher),
3758ff59090SHerbert Xu 			       GFP_KERNEL);
3768ff59090SHerbert Xu 	if (!ctx->iv) {
3778ff59090SHerbert Xu 		sock_kfree_s(sk, ctx, len);
3788ff59090SHerbert Xu 		return -ENOMEM;
3798ff59090SHerbert Xu 	}
3808ff59090SHerbert Xu 
381dd504589SHerbert Xu 	memset(ctx->iv, 0, crypto_skcipher_ivsize(skcipher));
3828ff59090SHerbert Xu 
383e870456dSStephan Mueller 	INIT_LIST_HEAD(&ctx->tsgl_list);
3848ff59090SHerbert Xu 	ctx->len = len;
3858ff59090SHerbert Xu 	ctx->used = 0;
386e870456dSStephan Mueller 	ctx->rcvused = 0;
3878ff59090SHerbert Xu 	ctx->more = 0;
3888ff59090SHerbert Xu 	ctx->merge = 0;
3898ff59090SHerbert Xu 	ctx->enc = 0;
390*2c3f8b16SGilad Ben-Yossef 	crypto_init_wait(&ctx->wait);
3918ff59090SHerbert Xu 
3928ff59090SHerbert Xu 	ask->private = ctx;
3938ff59090SHerbert Xu 
3948ff59090SHerbert Xu 	sk->sk_destruct = skcipher_sock_destruct;
3958ff59090SHerbert Xu 
3968ff59090SHerbert Xu 	return 0;
3978ff59090SHerbert Xu }
3988ff59090SHerbert Xu 
399a0fa2d03SHerbert Xu static int skcipher_accept_parent(void *private, struct sock *sk)
400a0fa2d03SHerbert Xu {
401a0fa2d03SHerbert Xu 	struct skcipher_tfm *tfm = private;
402a0fa2d03SHerbert Xu 
4036e8d8ecfSHerbert Xu 	if (!tfm->has_key && crypto_skcipher_has_setkey(tfm->skcipher))
404a0fa2d03SHerbert Xu 		return -ENOKEY;
405a0fa2d03SHerbert Xu 
406d7b65aeeSHerbert Xu 	return skcipher_accept_parent_nokey(private, sk);
407a0fa2d03SHerbert Xu }
408a0fa2d03SHerbert Xu 
4098ff59090SHerbert Xu static const struct af_alg_type algif_type_skcipher = {
4108ff59090SHerbert Xu 	.bind		=	skcipher_bind,
4118ff59090SHerbert Xu 	.release	=	skcipher_release,
4128ff59090SHerbert Xu 	.setkey		=	skcipher_setkey,
4138ff59090SHerbert Xu 	.accept		=	skcipher_accept_parent,
414a0fa2d03SHerbert Xu 	.accept_nokey	=	skcipher_accept_parent_nokey,
4158ff59090SHerbert Xu 	.ops		=	&algif_skcipher_ops,
416a0fa2d03SHerbert Xu 	.ops_nokey	=	&algif_skcipher_ops_nokey,
4178ff59090SHerbert Xu 	.name		=	"skcipher",
4188ff59090SHerbert Xu 	.owner		=	THIS_MODULE
4198ff59090SHerbert Xu };
4208ff59090SHerbert Xu 
4218ff59090SHerbert Xu static int __init algif_skcipher_init(void)
4228ff59090SHerbert Xu {
4238ff59090SHerbert Xu 	return af_alg_register_type(&algif_type_skcipher);
4248ff59090SHerbert Xu }
4258ff59090SHerbert Xu 
4268ff59090SHerbert Xu static void __exit algif_skcipher_exit(void)
4278ff59090SHerbert Xu {
4288ff59090SHerbert Xu 	int err = af_alg_unregister_type(&algif_type_skcipher);
4298ff59090SHerbert Xu 	BUG_ON(err);
4308ff59090SHerbert Xu }
4318ff59090SHerbert Xu 
4328ff59090SHerbert Xu module_init(algif_skcipher_init);
4338ff59090SHerbert Xu module_exit(algif_skcipher_exit);
4348ff59090SHerbert Xu MODULE_LICENSE("GPL");
435