xref: /openbmc/linux/security/keys/big_key.c (revision b4d0d230ccfb5d1a9ea85da64aa584df7c148ee9)
1*b4d0d230SThomas Gleixner // SPDX-License-Identifier: GPL-2.0-or-later
2ab3c3587SDavid Howells /* Large capacity key type
3ab3c3587SDavid Howells  *
4428490e3SJason A. Donenfeld  * Copyright (C) 2017 Jason A. Donenfeld <Jason@zx2c4.com>. All Rights Reserved.
5ab3c3587SDavid Howells  * Copyright (C) 2013 Red Hat, Inc. All Rights Reserved.
6ab3c3587SDavid Howells  * Written by David Howells (dhowells@redhat.com)
7ab3c3587SDavid Howells  */
8ab3c3587SDavid Howells 
97df3e59cSDavid Howells #define pr_fmt(fmt) "big_key: "fmt
10ab3c3587SDavid Howells #include <linux/init.h>
11ab3c3587SDavid Howells #include <linux/seq_file.h>
12ab3c3587SDavid Howells #include <linux/file.h>
13ab3c3587SDavid Howells #include <linux/shmem_fs.h>
14ab3c3587SDavid Howells #include <linux/err.h>
1513100a72SKirill Marinushkin #include <linux/scatterlist.h>
16428490e3SJason A. Donenfeld #include <linux/random.h>
17514c6032SRandy Dunlap #include <linux/vmalloc.h>
18ab3c3587SDavid Howells #include <keys/user-type.h>
19ab3c3587SDavid Howells #include <keys/big_key-type.h>
20428490e3SJason A. Donenfeld #include <crypto/aead.h>
21a964f395STycho Andersen #include <crypto/gcm.h>
22ab3c3587SDavid Howells 
23d9f4bb1aSDavid Howells struct big_key_buf {
24d9f4bb1aSDavid Howells 	unsigned int		nr_pages;
25d9f4bb1aSDavid Howells 	void			*virt;
26d9f4bb1aSDavid Howells 	struct scatterlist	*sg;
27d9f4bb1aSDavid Howells 	struct page		*pages[];
28d9f4bb1aSDavid Howells };
29d9f4bb1aSDavid Howells 
30ab3c3587SDavid Howells /*
31146aa8b1SDavid Howells  * Layout of key payload words.
32146aa8b1SDavid Howells  */
33146aa8b1SDavid Howells enum {
34146aa8b1SDavid Howells 	big_key_data,
35146aa8b1SDavid Howells 	big_key_path,
36146aa8b1SDavid Howells 	big_key_path_2nd_part,
37146aa8b1SDavid Howells 	big_key_len,
38146aa8b1SDavid Howells };
39146aa8b1SDavid Howells 
40146aa8b1SDavid Howells /*
4113100a72SKirill Marinushkin  * Crypto operation with big_key data
4213100a72SKirill Marinushkin  */
4313100a72SKirill Marinushkin enum big_key_op {
4413100a72SKirill Marinushkin 	BIG_KEY_ENC,
4513100a72SKirill Marinushkin 	BIG_KEY_DEC,
4613100a72SKirill Marinushkin };
4713100a72SKirill Marinushkin 
4813100a72SKirill Marinushkin /*
49ab3c3587SDavid Howells  * If the data is under this limit, there's no point creating a shm file to
50ab3c3587SDavid Howells  * hold it as the permanently resident metadata for the shmem fs will be at
51ab3c3587SDavid Howells  * least as large as the data.
52ab3c3587SDavid Howells  */
53ab3c3587SDavid Howells #define BIG_KEY_FILE_THRESHOLD (sizeof(struct inode) + sizeof(struct dentry))
54ab3c3587SDavid Howells 
55ab3c3587SDavid Howells /*
5613100a72SKirill Marinushkin  * Key size for big_key data encryption
5713100a72SKirill Marinushkin  */
58428490e3SJason A. Donenfeld #define ENC_KEY_SIZE 32
59428490e3SJason A. Donenfeld 
60428490e3SJason A. Donenfeld /*
61428490e3SJason A. Donenfeld  * Authentication tag length
62428490e3SJason A. Donenfeld  */
63428490e3SJason A. Donenfeld #define ENC_AUTHTAG_SIZE 16
6413100a72SKirill Marinushkin 
6513100a72SKirill Marinushkin /*
66ab3c3587SDavid Howells  * big_key defined keys take an arbitrary string as the description and an
67ab3c3587SDavid Howells  * arbitrary blob of data as the payload
68ab3c3587SDavid Howells  */
69ab3c3587SDavid Howells struct key_type key_type_big_key = {
70ab3c3587SDavid Howells 	.name			= "big_key",
71002edaf7SDavid Howells 	.preparse		= big_key_preparse,
72002edaf7SDavid Howells 	.free_preparse		= big_key_free_preparse,
73002edaf7SDavid Howells 	.instantiate		= generic_key_instantiate,
74ab3c3587SDavid Howells 	.revoke			= big_key_revoke,
75ab3c3587SDavid Howells 	.destroy		= big_key_destroy,
76ab3c3587SDavid Howells 	.describe		= big_key_describe,
77ab3c3587SDavid Howells 	.read			= big_key_read,
78428490e3SJason A. Donenfeld 	/* no ->update(); don't add it without changing big_key_crypt() nonce */
79ab3c3587SDavid Howells };
80ab3c3587SDavid Howells 
81ab3c3587SDavid Howells /*
82428490e3SJason A. Donenfeld  * Crypto names for big_key data authenticated encryption
8313100a72SKirill Marinushkin  */
84428490e3SJason A. Donenfeld static const char big_key_alg_name[] = "gcm(aes)";
85a964f395STycho Andersen #define BIG_KEY_IV_SIZE		GCM_AES_IV_SIZE
8613100a72SKirill Marinushkin 
8713100a72SKirill Marinushkin /*
88428490e3SJason A. Donenfeld  * Crypto algorithms for big_key data authenticated encryption
8913100a72SKirill Marinushkin  */
90428490e3SJason A. Donenfeld static struct crypto_aead *big_key_aead;
9113100a72SKirill Marinushkin 
9213100a72SKirill Marinushkin /*
93428490e3SJason A. Donenfeld  * Since changing the key affects the entire object, we need a mutex.
9413100a72SKirill Marinushkin  */
95428490e3SJason A. Donenfeld static DEFINE_MUTEX(big_key_aead_lock);
9613100a72SKirill Marinushkin 
9713100a72SKirill Marinushkin /*
9813100a72SKirill Marinushkin  * Encrypt/decrypt big_key data
9913100a72SKirill Marinushkin  */
100d9f4bb1aSDavid Howells static int big_key_crypt(enum big_key_op op, struct big_key_buf *buf, size_t datalen, u8 *key)
10113100a72SKirill Marinushkin {
102428490e3SJason A. Donenfeld 	int ret;
103428490e3SJason A. Donenfeld 	struct aead_request *aead_req;
104428490e3SJason A. Donenfeld 	/* We always use a zero nonce. The reason we can get away with this is
105428490e3SJason A. Donenfeld 	 * because we're using a different randomly generated key for every
106428490e3SJason A. Donenfeld 	 * different encryption. Notably, too, key_type_big_key doesn't define
107428490e3SJason A. Donenfeld 	 * an .update function, so there's no chance we'll wind up reusing the
108428490e3SJason A. Donenfeld 	 * key to encrypt updated data. Simply put: one key, one encryption.
109428490e3SJason A. Donenfeld 	 */
110a964f395STycho Andersen 	u8 zero_nonce[BIG_KEY_IV_SIZE];
11113100a72SKirill Marinushkin 
112428490e3SJason A. Donenfeld 	aead_req = aead_request_alloc(big_key_aead, GFP_KERNEL);
113428490e3SJason A. Donenfeld 	if (!aead_req)
114428490e3SJason A. Donenfeld 		return -ENOMEM;
115428490e3SJason A. Donenfeld 
116428490e3SJason A. Donenfeld 	memset(zero_nonce, 0, sizeof(zero_nonce));
117d9f4bb1aSDavid Howells 	aead_request_set_crypt(aead_req, buf->sg, buf->sg, datalen, zero_nonce);
118428490e3SJason A. Donenfeld 	aead_request_set_callback(aead_req, CRYPTO_TFM_REQ_MAY_SLEEP, NULL, NULL);
119428490e3SJason A. Donenfeld 	aead_request_set_ad(aead_req, 0);
120428490e3SJason A. Donenfeld 
121428490e3SJason A. Donenfeld 	mutex_lock(&big_key_aead_lock);
122428490e3SJason A. Donenfeld 	if (crypto_aead_setkey(big_key_aead, key, ENC_KEY_SIZE)) {
12313100a72SKirill Marinushkin 		ret = -EAGAIN;
12413100a72SKirill Marinushkin 		goto error;
12513100a72SKirill Marinushkin 	}
12613100a72SKirill Marinushkin 	if (op == BIG_KEY_ENC)
127428490e3SJason A. Donenfeld 		ret = crypto_aead_encrypt(aead_req);
12813100a72SKirill Marinushkin 	else
129428490e3SJason A. Donenfeld 		ret = crypto_aead_decrypt(aead_req);
13013100a72SKirill Marinushkin error:
131428490e3SJason A. Donenfeld 	mutex_unlock(&big_key_aead_lock);
132428490e3SJason A. Donenfeld 	aead_request_free(aead_req);
13313100a72SKirill Marinushkin 	return ret;
13413100a72SKirill Marinushkin }
13513100a72SKirill Marinushkin 
13613100a72SKirill Marinushkin /*
137d9f4bb1aSDavid Howells  * Free up the buffer.
138d9f4bb1aSDavid Howells  */
139d9f4bb1aSDavid Howells static void big_key_free_buffer(struct big_key_buf *buf)
140d9f4bb1aSDavid Howells {
141d9f4bb1aSDavid Howells 	unsigned int i;
142d9f4bb1aSDavid Howells 
143d9f4bb1aSDavid Howells 	if (buf->virt) {
144d9f4bb1aSDavid Howells 		memset(buf->virt, 0, buf->nr_pages * PAGE_SIZE);
145d9f4bb1aSDavid Howells 		vunmap(buf->virt);
146d9f4bb1aSDavid Howells 	}
147d9f4bb1aSDavid Howells 
148d9f4bb1aSDavid Howells 	for (i = 0; i < buf->nr_pages; i++)
149d9f4bb1aSDavid Howells 		if (buf->pages[i])
150d9f4bb1aSDavid Howells 			__free_page(buf->pages[i]);
151d9f4bb1aSDavid Howells 
152d9f4bb1aSDavid Howells 	kfree(buf);
153d9f4bb1aSDavid Howells }
154d9f4bb1aSDavid Howells 
155d9f4bb1aSDavid Howells /*
156d9f4bb1aSDavid Howells  * Allocate a buffer consisting of a set of pages with a virtual mapping
157d9f4bb1aSDavid Howells  * applied over them.
158d9f4bb1aSDavid Howells  */
159d9f4bb1aSDavid Howells static void *big_key_alloc_buffer(size_t len)
160d9f4bb1aSDavid Howells {
161d9f4bb1aSDavid Howells 	struct big_key_buf *buf;
162d9f4bb1aSDavid Howells 	unsigned int npg = (len + PAGE_SIZE - 1) >> PAGE_SHIFT;
163d9f4bb1aSDavid Howells 	unsigned int i, l;
164d9f4bb1aSDavid Howells 
165d9f4bb1aSDavid Howells 	buf = kzalloc(sizeof(struct big_key_buf) +
166d9f4bb1aSDavid Howells 		      sizeof(struct page) * npg +
167d9f4bb1aSDavid Howells 		      sizeof(struct scatterlist) * npg,
168d9f4bb1aSDavid Howells 		      GFP_KERNEL);
169d9f4bb1aSDavid Howells 	if (!buf)
170d9f4bb1aSDavid Howells 		return NULL;
171d9f4bb1aSDavid Howells 
172d9f4bb1aSDavid Howells 	buf->nr_pages = npg;
173d9f4bb1aSDavid Howells 	buf->sg = (void *)(buf->pages + npg);
174d9f4bb1aSDavid Howells 	sg_init_table(buf->sg, npg);
175d9f4bb1aSDavid Howells 
176d9f4bb1aSDavid Howells 	for (i = 0; i < buf->nr_pages; i++) {
177d9f4bb1aSDavid Howells 		buf->pages[i] = alloc_page(GFP_KERNEL);
178d9f4bb1aSDavid Howells 		if (!buf->pages[i])
179d9f4bb1aSDavid Howells 			goto nomem;
180d9f4bb1aSDavid Howells 
181d9f4bb1aSDavid Howells 		l = min_t(size_t, len, PAGE_SIZE);
182d9f4bb1aSDavid Howells 		sg_set_page(&buf->sg[i], buf->pages[i], l, 0);
183d9f4bb1aSDavid Howells 		len -= l;
184d9f4bb1aSDavid Howells 	}
185d9f4bb1aSDavid Howells 
186d9f4bb1aSDavid Howells 	buf->virt = vmap(buf->pages, buf->nr_pages, VM_MAP, PAGE_KERNEL);
187d9f4bb1aSDavid Howells 	if (!buf->virt)
188d9f4bb1aSDavid Howells 		goto nomem;
189d9f4bb1aSDavid Howells 
190d9f4bb1aSDavid Howells 	return buf;
191d9f4bb1aSDavid Howells 
192d9f4bb1aSDavid Howells nomem:
193d9f4bb1aSDavid Howells 	big_key_free_buffer(buf);
194d9f4bb1aSDavid Howells 	return NULL;
195d9f4bb1aSDavid Howells }
196d9f4bb1aSDavid Howells 
197d9f4bb1aSDavid Howells /*
198002edaf7SDavid Howells  * Preparse a big key
199ab3c3587SDavid Howells  */
200002edaf7SDavid Howells int big_key_preparse(struct key_preparsed_payload *prep)
201ab3c3587SDavid Howells {
202d9f4bb1aSDavid Howells 	struct big_key_buf *buf;
203146aa8b1SDavid Howells 	struct path *path = (struct path *)&prep->payload.data[big_key_path];
204ab3c3587SDavid Howells 	struct file *file;
20513100a72SKirill Marinushkin 	u8 *enckey;
206ab3c3587SDavid Howells 	ssize_t written;
207d9f4bb1aSDavid Howells 	size_t datalen = prep->datalen, enclen = datalen + ENC_AUTHTAG_SIZE;
208ab3c3587SDavid Howells 	int ret;
209ab3c3587SDavid Howells 
210ab3c3587SDavid Howells 	if (datalen <= 0 || datalen > 1024 * 1024 || !prep->data)
211d9f4bb1aSDavid Howells 		return -EINVAL;
212ab3c3587SDavid Howells 
213ab3c3587SDavid Howells 	/* Set an arbitrary quota */
214002edaf7SDavid Howells 	prep->quotalen = 16;
215ab3c3587SDavid Howells 
216146aa8b1SDavid Howells 	prep->payload.data[big_key_len] = (void *)(unsigned long)datalen;
217ab3c3587SDavid Howells 
218ab3c3587SDavid Howells 	if (datalen > BIG_KEY_FILE_THRESHOLD) {
219ab3c3587SDavid Howells 		/* Create a shmem file to store the data in.  This will permit the data
220ab3c3587SDavid Howells 		 * to be swapped out if needed.
221ab3c3587SDavid Howells 		 *
22213100a72SKirill Marinushkin 		 * File content is stored encrypted with randomly generated key.
223ab3c3587SDavid Howells 		 */
224e13ec939SChristoph Hellwig 		loff_t pos = 0;
22513100a72SKirill Marinushkin 
226d9f4bb1aSDavid Howells 		buf = big_key_alloc_buffer(enclen);
227d9f4bb1aSDavid Howells 		if (!buf)
22813100a72SKirill Marinushkin 			return -ENOMEM;
229d9f4bb1aSDavid Howells 		memcpy(buf->virt, prep->data, datalen);
23013100a72SKirill Marinushkin 
23113100a72SKirill Marinushkin 		/* generate random key */
23213100a72SKirill Marinushkin 		enckey = kmalloc(ENC_KEY_SIZE, GFP_KERNEL);
23313100a72SKirill Marinushkin 		if (!enckey) {
23413100a72SKirill Marinushkin 			ret = -ENOMEM;
235002edaf7SDavid Howells 			goto error;
236d2b86970SWei Yongjun 		}
237428490e3SJason A. Donenfeld 		ret = get_random_bytes_wait(enckey, ENC_KEY_SIZE);
238428490e3SJason A. Donenfeld 		if (unlikely(ret))
23913100a72SKirill Marinushkin 			goto err_enckey;
24013100a72SKirill Marinushkin 
24113100a72SKirill Marinushkin 		/* encrypt aligned data */
242d9f4bb1aSDavid Howells 		ret = big_key_crypt(BIG_KEY_ENC, buf, datalen, enckey);
24313100a72SKirill Marinushkin 		if (ret)
24413100a72SKirill Marinushkin 			goto err_enckey;
24513100a72SKirill Marinushkin 
24613100a72SKirill Marinushkin 		/* save aligned data to file */
24713100a72SKirill Marinushkin 		file = shmem_kernel_file_setup("", enclen, 0);
24813100a72SKirill Marinushkin 		if (IS_ERR(file)) {
24913100a72SKirill Marinushkin 			ret = PTR_ERR(file);
25013100a72SKirill Marinushkin 			goto err_enckey;
25113100a72SKirill Marinushkin 		}
25213100a72SKirill Marinushkin 
253d9f4bb1aSDavid Howells 		written = kernel_write(file, buf->virt, enclen, &pos);
25413100a72SKirill Marinushkin 		if (written != enclen) {
25597826c82SDavid Howells 			ret = written;
256ab3c3587SDavid Howells 			if (written >= 0)
257ab3c3587SDavid Howells 				ret = -ENOMEM;
258ab3c3587SDavid Howells 			goto err_fput;
259ab3c3587SDavid Howells 		}
260ab3c3587SDavid Howells 
261ab3c3587SDavid Howells 		/* Pin the mount and dentry to the key so that we can open it again
262ab3c3587SDavid Howells 		 * later
263ab3c3587SDavid Howells 		 */
26413100a72SKirill Marinushkin 		prep->payload.data[big_key_data] = enckey;
265ab3c3587SDavid Howells 		*path = file->f_path;
266ab3c3587SDavid Howells 		path_get(path);
267ab3c3587SDavid Howells 		fput(file);
268d9f4bb1aSDavid Howells 		big_key_free_buffer(buf);
269ab3c3587SDavid Howells 	} else {
270ab3c3587SDavid Howells 		/* Just store the data in a buffer */
271ab3c3587SDavid Howells 		void *data = kmalloc(datalen, GFP_KERNEL);
27213100a72SKirill Marinushkin 
273002edaf7SDavid Howells 		if (!data)
274002edaf7SDavid Howells 			return -ENOMEM;
275ab3c3587SDavid Howells 
276146aa8b1SDavid Howells 		prep->payload.data[big_key_data] = data;
277146aa8b1SDavid Howells 		memcpy(data, prep->data, prep->datalen);
278ab3c3587SDavid Howells 	}
279ab3c3587SDavid Howells 	return 0;
280ab3c3587SDavid Howells 
281ab3c3587SDavid Howells err_fput:
282ab3c3587SDavid Howells 	fput(file);
28313100a72SKirill Marinushkin err_enckey:
28491080180SJason A. Donenfeld 	kzfree(enckey);
285ab3c3587SDavid Howells error:
286d9f4bb1aSDavid Howells 	big_key_free_buffer(buf);
287ab3c3587SDavid Howells 	return ret;
288ab3c3587SDavid Howells }
289ab3c3587SDavid Howells 
290ab3c3587SDavid Howells /*
291002edaf7SDavid Howells  * Clear preparsement.
292002edaf7SDavid Howells  */
293002edaf7SDavid Howells void big_key_free_preparse(struct key_preparsed_payload *prep)
294002edaf7SDavid Howells {
295002edaf7SDavid Howells 	if (prep->datalen > BIG_KEY_FILE_THRESHOLD) {
296146aa8b1SDavid Howells 		struct path *path = (struct path *)&prep->payload.data[big_key_path];
29713100a72SKirill Marinushkin 
298002edaf7SDavid Howells 		path_put(path);
299002edaf7SDavid Howells 	}
30091080180SJason A. Donenfeld 	kzfree(prep->payload.data[big_key_data]);
301002edaf7SDavid Howells }
302002edaf7SDavid Howells 
303002edaf7SDavid Howells /*
304ab3c3587SDavid Howells  * dispose of the links from a revoked keyring
305ab3c3587SDavid Howells  * - called with the key sem write-locked
306ab3c3587SDavid Howells  */
307ab3c3587SDavid Howells void big_key_revoke(struct key *key)
308ab3c3587SDavid Howells {
309146aa8b1SDavid Howells 	struct path *path = (struct path *)&key->payload.data[big_key_path];
310ab3c3587SDavid Howells 
311ab3c3587SDavid Howells 	/* clear the quota */
312ab3c3587SDavid Howells 	key_payload_reserve(key, 0);
313363b02daSDavid Howells 	if (key_is_positive(key) &&
314146aa8b1SDavid Howells 	    (size_t)key->payload.data[big_key_len] > BIG_KEY_FILE_THRESHOLD)
315ab3c3587SDavid Howells 		vfs_truncate(path, 0);
316ab3c3587SDavid Howells }
317ab3c3587SDavid Howells 
318ab3c3587SDavid Howells /*
319ab3c3587SDavid Howells  * dispose of the data dangling from the corpse of a big_key key
320ab3c3587SDavid Howells  */
321ab3c3587SDavid Howells void big_key_destroy(struct key *key)
322ab3c3587SDavid Howells {
323146aa8b1SDavid Howells 	size_t datalen = (size_t)key->payload.data[big_key_len];
324146aa8b1SDavid Howells 
32513100a72SKirill Marinushkin 	if (datalen > BIG_KEY_FILE_THRESHOLD) {
326146aa8b1SDavid Howells 		struct path *path = (struct path *)&key->payload.data[big_key_path];
32713100a72SKirill Marinushkin 
328ab3c3587SDavid Howells 		path_put(path);
329ab3c3587SDavid Howells 		path->mnt = NULL;
330ab3c3587SDavid Howells 		path->dentry = NULL;
33113100a72SKirill Marinushkin 	}
33291080180SJason A. Donenfeld 	kzfree(key->payload.data[big_key_data]);
333146aa8b1SDavid Howells 	key->payload.data[big_key_data] = NULL;
334ab3c3587SDavid Howells }
335ab3c3587SDavid Howells 
336ab3c3587SDavid Howells /*
337ab3c3587SDavid Howells  * describe the big_key key
338ab3c3587SDavid Howells  */
339ab3c3587SDavid Howells void big_key_describe(const struct key *key, struct seq_file *m)
340ab3c3587SDavid Howells {
341146aa8b1SDavid Howells 	size_t datalen = (size_t)key->payload.data[big_key_len];
342ab3c3587SDavid Howells 
343ab3c3587SDavid Howells 	seq_puts(m, key->description);
344ab3c3587SDavid Howells 
345363b02daSDavid Howells 	if (key_is_positive(key))
346146aa8b1SDavid Howells 		seq_printf(m, ": %zu [%s]",
347ab3c3587SDavid Howells 			   datalen,
348ab3c3587SDavid Howells 			   datalen > BIG_KEY_FILE_THRESHOLD ? "file" : "buff");
349ab3c3587SDavid Howells }
350ab3c3587SDavid Howells 
351ab3c3587SDavid Howells /*
352ab3c3587SDavid Howells  * read the key data
353ab3c3587SDavid Howells  * - the key's semaphore is read-locked
354ab3c3587SDavid Howells  */
355ab3c3587SDavid Howells long big_key_read(const struct key *key, char __user *buffer, size_t buflen)
356ab3c3587SDavid Howells {
357146aa8b1SDavid Howells 	size_t datalen = (size_t)key->payload.data[big_key_len];
358ab3c3587SDavid Howells 	long ret;
359ab3c3587SDavid Howells 
360ab3c3587SDavid Howells 	if (!buffer || buflen < datalen)
361ab3c3587SDavid Howells 		return datalen;
362ab3c3587SDavid Howells 
363ab3c3587SDavid Howells 	if (datalen > BIG_KEY_FILE_THRESHOLD) {
364d9f4bb1aSDavid Howells 		struct big_key_buf *buf;
365146aa8b1SDavid Howells 		struct path *path = (struct path *)&key->payload.data[big_key_path];
366ab3c3587SDavid Howells 		struct file *file;
36713100a72SKirill Marinushkin 		u8 *enckey = (u8 *)key->payload.data[big_key_data];
368428490e3SJason A. Donenfeld 		size_t enclen = datalen + ENC_AUTHTAG_SIZE;
369bdd1d2d3SChristoph Hellwig 		loff_t pos = 0;
37013100a72SKirill Marinushkin 
371d9f4bb1aSDavid Howells 		buf = big_key_alloc_buffer(enclen);
372d9f4bb1aSDavid Howells 		if (!buf)
37313100a72SKirill Marinushkin 			return -ENOMEM;
374ab3c3587SDavid Howells 
375ab3c3587SDavid Howells 		file = dentry_open(path, O_RDONLY, current_cred());
37613100a72SKirill Marinushkin 		if (IS_ERR(file)) {
37713100a72SKirill Marinushkin 			ret = PTR_ERR(file);
37813100a72SKirill Marinushkin 			goto error;
37913100a72SKirill Marinushkin 		}
380ab3c3587SDavid Howells 
38113100a72SKirill Marinushkin 		/* read file to kernel and decrypt */
382d9f4bb1aSDavid Howells 		ret = kernel_read(file, buf->virt, enclen, &pos);
38313100a72SKirill Marinushkin 		if (ret >= 0 && ret != enclen) {
384ab3c3587SDavid Howells 			ret = -EIO;
38513100a72SKirill Marinushkin 			goto err_fput;
38613100a72SKirill Marinushkin 		}
38713100a72SKirill Marinushkin 
388d9f4bb1aSDavid Howells 		ret = big_key_crypt(BIG_KEY_DEC, buf, enclen, enckey);
38913100a72SKirill Marinushkin 		if (ret)
39013100a72SKirill Marinushkin 			goto err_fput;
39113100a72SKirill Marinushkin 
39213100a72SKirill Marinushkin 		ret = datalen;
39313100a72SKirill Marinushkin 
39413100a72SKirill Marinushkin 		/* copy decrypted data to user */
395d9f4bb1aSDavid Howells 		if (copy_to_user(buffer, buf->virt, datalen) != 0)
39613100a72SKirill Marinushkin 			ret = -EFAULT;
39713100a72SKirill Marinushkin 
39813100a72SKirill Marinushkin err_fput:
39913100a72SKirill Marinushkin 		fput(file);
40013100a72SKirill Marinushkin error:
401d9f4bb1aSDavid Howells 		big_key_free_buffer(buf);
402ab3c3587SDavid Howells 	} else {
403ab3c3587SDavid Howells 		ret = datalen;
404146aa8b1SDavid Howells 		if (copy_to_user(buffer, key->payload.data[big_key_data],
405146aa8b1SDavid Howells 				 datalen) != 0)
406ab3c3587SDavid Howells 			ret = -EFAULT;
407ab3c3587SDavid Howells 	}
408ab3c3587SDavid Howells 
409ab3c3587SDavid Howells 	return ret;
410ab3c3587SDavid Howells }
411ab3c3587SDavid Howells 
41213100a72SKirill Marinushkin /*
41313100a72SKirill Marinushkin  * Register key type
41413100a72SKirill Marinushkin  */
415ab3c3587SDavid Howells static int __init big_key_init(void)
416ab3c3587SDavid Howells {
4177df3e59cSDavid Howells 	int ret;
4187df3e59cSDavid Howells 
41913100a72SKirill Marinushkin 	/* init block cipher */
420428490e3SJason A. Donenfeld 	big_key_aead = crypto_alloc_aead(big_key_alg_name, 0, CRYPTO_ALG_ASYNC);
421428490e3SJason A. Donenfeld 	if (IS_ERR(big_key_aead)) {
422428490e3SJason A. Donenfeld 		ret = PTR_ERR(big_key_aead);
4237df3e59cSDavid Howells 		pr_err("Can't alloc crypto: %d\n", ret);
424428490e3SJason A. Donenfeld 		return ret;
4257df3e59cSDavid Howells 	}
426a964f395STycho Andersen 
427a964f395STycho Andersen 	if (unlikely(crypto_aead_ivsize(big_key_aead) != BIG_KEY_IV_SIZE)) {
428a964f395STycho Andersen 		WARN(1, "big key algorithm changed?");
429a964f395STycho Andersen 		ret = -EINVAL;
430a964f395STycho Andersen 		goto free_aead;
431a964f395STycho Andersen 	}
432a964f395STycho Andersen 
433428490e3SJason A. Donenfeld 	ret = crypto_aead_setauthsize(big_key_aead, ENC_AUTHTAG_SIZE);
434428490e3SJason A. Donenfeld 	if (ret < 0) {
435428490e3SJason A. Donenfeld 		pr_err("Can't set crypto auth tag len: %d\n", ret);
436428490e3SJason A. Donenfeld 		goto free_aead;
437428490e3SJason A. Donenfeld 	}
4387df3e59cSDavid Howells 
4397df3e59cSDavid Howells 	ret = register_key_type(&key_type_big_key);
4407df3e59cSDavid Howells 	if (ret < 0) {
4417df3e59cSDavid Howells 		pr_err("Can't register type: %d\n", ret);
442428490e3SJason A. Donenfeld 		goto free_aead;
44313100a72SKirill Marinushkin 	}
44413100a72SKirill Marinushkin 
44513100a72SKirill Marinushkin 	return 0;
44613100a72SKirill Marinushkin 
447428490e3SJason A. Donenfeld free_aead:
448428490e3SJason A. Donenfeld 	crypto_free_aead(big_key_aead);
44913100a72SKirill Marinushkin 	return ret;
45013100a72SKirill Marinushkin }
45113100a72SKirill Marinushkin 
4527df3e59cSDavid Howells late_initcall(big_key_init);
453