xref: /openbmc/linux/fs/ecryptfs/crypto.c (revision 37028758f92d0a3eb74bcfbecf6bc477072e9e28)
1237fead6SMichael Halcrow /**
2237fead6SMichael Halcrow  * eCryptfs: Linux filesystem encryption layer
3237fead6SMichael Halcrow  *
4237fead6SMichael Halcrow  * Copyright (C) 1997-2004 Erez Zadok
5237fead6SMichael Halcrow  * Copyright (C) 2001-2004 Stony Brook University
6dd2a3b7aSMichael Halcrow  * Copyright (C) 2004-2007 International Business Machines Corp.
7237fead6SMichael Halcrow  *   Author(s): Michael A. Halcrow <mahalcro@us.ibm.com>
8237fead6SMichael Halcrow  *   		Michael C. Thompson <mcthomps@us.ibm.com>
9237fead6SMichael Halcrow  *
10237fead6SMichael Halcrow  * This program is free software; you can redistribute it and/or
11237fead6SMichael Halcrow  * modify it under the terms of the GNU General Public License as
12237fead6SMichael Halcrow  * published by the Free Software Foundation; either version 2 of the
13237fead6SMichael Halcrow  * License, or (at your option) any later version.
14237fead6SMichael Halcrow  *
15237fead6SMichael Halcrow  * This program is distributed in the hope that it will be useful, but
16237fead6SMichael Halcrow  * WITHOUT ANY WARRANTY; without even the implied warranty of
17237fead6SMichael Halcrow  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
18237fead6SMichael Halcrow  * General Public License for more details.
19237fead6SMichael Halcrow  *
20237fead6SMichael Halcrow  * You should have received a copy of the GNU General Public License
21237fead6SMichael Halcrow  * along with this program; if not, write to the Free Software
22237fead6SMichael Halcrow  * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA
23237fead6SMichael Halcrow  * 02111-1307, USA.
24237fead6SMichael Halcrow  */
25237fead6SMichael Halcrow 
26237fead6SMichael Halcrow #include <linux/fs.h>
27237fead6SMichael Halcrow #include <linux/mount.h>
28237fead6SMichael Halcrow #include <linux/pagemap.h>
29237fead6SMichael Halcrow #include <linux/random.h>
30237fead6SMichael Halcrow #include <linux/compiler.h>
31237fead6SMichael Halcrow #include <linux/key.h>
32237fead6SMichael Halcrow #include <linux/namei.h>
33237fead6SMichael Halcrow #include <linux/crypto.h>
34237fead6SMichael Halcrow #include <linux/file.h>
35237fead6SMichael Halcrow #include <linux/scatterlist.h>
365a0e3ad6STejun Heo #include <linux/slab.h>
3729335c6aSHarvey Harrison #include <asm/unaligned.h>
38237fead6SMichael Halcrow #include "ecryptfs_kernel.h"
39237fead6SMichael Halcrow 
40237fead6SMichael Halcrow static int
41237fead6SMichael Halcrow ecryptfs_decrypt_page_offset(struct ecryptfs_crypt_stat *crypt_stat,
42237fead6SMichael Halcrow 			     struct page *dst_page, int dst_offset,
43237fead6SMichael Halcrow 			     struct page *src_page, int src_offset, int size,
44237fead6SMichael Halcrow 			     unsigned char *iv);
45237fead6SMichael Halcrow static int
46237fead6SMichael Halcrow ecryptfs_encrypt_page_offset(struct ecryptfs_crypt_stat *crypt_stat,
47237fead6SMichael Halcrow 			     struct page *dst_page, int dst_offset,
48237fead6SMichael Halcrow 			     struct page *src_page, int src_offset, int size,
49237fead6SMichael Halcrow 			     unsigned char *iv);
50237fead6SMichael Halcrow 
51237fead6SMichael Halcrow /**
52237fead6SMichael Halcrow  * ecryptfs_to_hex
53237fead6SMichael Halcrow  * @dst: Buffer to take hex character representation of contents of
54237fead6SMichael Halcrow  *       src; must be at least of size (src_size * 2)
55237fead6SMichael Halcrow  * @src: Buffer to be converted to a hex string respresentation
56237fead6SMichael Halcrow  * @src_size: number of bytes to convert
57237fead6SMichael Halcrow  */
58237fead6SMichael Halcrow void ecryptfs_to_hex(char *dst, char *src, size_t src_size)
59237fead6SMichael Halcrow {
60237fead6SMichael Halcrow 	int x;
61237fead6SMichael Halcrow 
62237fead6SMichael Halcrow 	for (x = 0; x < src_size; x++)
63237fead6SMichael Halcrow 		sprintf(&dst[x * 2], "%.2x", (unsigned char)src[x]);
64237fead6SMichael Halcrow }
65237fead6SMichael Halcrow 
66237fead6SMichael Halcrow /**
67237fead6SMichael Halcrow  * ecryptfs_from_hex
68237fead6SMichael Halcrow  * @dst: Buffer to take the bytes from src hex; must be at least of
69237fead6SMichael Halcrow  *       size (src_size / 2)
70237fead6SMichael Halcrow  * @src: Buffer to be converted from a hex string respresentation to raw value
71237fead6SMichael Halcrow  * @dst_size: size of dst buffer, or number of hex characters pairs to convert
72237fead6SMichael Halcrow  */
73237fead6SMichael Halcrow void ecryptfs_from_hex(char *dst, char *src, int dst_size)
74237fead6SMichael Halcrow {
75237fead6SMichael Halcrow 	int x;
76237fead6SMichael Halcrow 	char tmp[3] = { 0, };
77237fead6SMichael Halcrow 
78237fead6SMichael Halcrow 	for (x = 0; x < dst_size; x++) {
79237fead6SMichael Halcrow 		tmp[0] = src[x * 2];
80237fead6SMichael Halcrow 		tmp[1] = src[x * 2 + 1];
81237fead6SMichael Halcrow 		dst[x] = (unsigned char)simple_strtol(tmp, NULL, 16);
82237fead6SMichael Halcrow 	}
83237fead6SMichael Halcrow }
84237fead6SMichael Halcrow 
85237fead6SMichael Halcrow /**
86237fead6SMichael Halcrow  * ecryptfs_calculate_md5 - calculates the md5 of @src
87237fead6SMichael Halcrow  * @dst: Pointer to 16 bytes of allocated memory
88237fead6SMichael Halcrow  * @crypt_stat: Pointer to crypt_stat struct for the current inode
89237fead6SMichael Halcrow  * @src: Data to be md5'd
90237fead6SMichael Halcrow  * @len: Length of @src
91237fead6SMichael Halcrow  *
92237fead6SMichael Halcrow  * Uses the allocated crypto context that crypt_stat references to
93237fead6SMichael Halcrow  * generate the MD5 sum of the contents of src.
94237fead6SMichael Halcrow  */
95237fead6SMichael Halcrow static int ecryptfs_calculate_md5(char *dst,
96237fead6SMichael Halcrow 				  struct ecryptfs_crypt_stat *crypt_stat,
97237fead6SMichael Halcrow 				  char *src, int len)
98237fead6SMichael Halcrow {
99237fead6SMichael Halcrow 	struct scatterlist sg;
100565d9724SMichael Halcrow 	struct hash_desc desc = {
101565d9724SMichael Halcrow 		.tfm = crypt_stat->hash_tfm,
102565d9724SMichael Halcrow 		.flags = CRYPTO_TFM_REQ_MAY_SLEEP
103565d9724SMichael Halcrow 	};
104565d9724SMichael Halcrow 	int rc = 0;
105237fead6SMichael Halcrow 
106565d9724SMichael Halcrow 	mutex_lock(&crypt_stat->cs_hash_tfm_mutex);
107237fead6SMichael Halcrow 	sg_init_one(&sg, (u8 *)src, len);
108565d9724SMichael Halcrow 	if (!desc.tfm) {
109565d9724SMichael Halcrow 		desc.tfm = crypto_alloc_hash(ECRYPTFS_DEFAULT_HASH, 0,
110565d9724SMichael Halcrow 					     CRYPTO_ALG_ASYNC);
111565d9724SMichael Halcrow 		if (IS_ERR(desc.tfm)) {
112565d9724SMichael Halcrow 			rc = PTR_ERR(desc.tfm);
113237fead6SMichael Halcrow 			ecryptfs_printk(KERN_ERR, "Error attempting to "
114565d9724SMichael Halcrow 					"allocate crypto context; rc = [%d]\n",
115565d9724SMichael Halcrow 					rc);
116237fead6SMichael Halcrow 			goto out;
117237fead6SMichael Halcrow 		}
118565d9724SMichael Halcrow 		crypt_stat->hash_tfm = desc.tfm;
119237fead6SMichael Halcrow 	}
1208a29f2b0SMichael Halcrow 	rc = crypto_hash_init(&desc);
1218a29f2b0SMichael Halcrow 	if (rc) {
1228a29f2b0SMichael Halcrow 		printk(KERN_ERR
1238a29f2b0SMichael Halcrow 		       "%s: Error initializing crypto hash; rc = [%d]\n",
12418d1dbf1SHarvey Harrison 		       __func__, rc);
1258a29f2b0SMichael Halcrow 		goto out;
1268a29f2b0SMichael Halcrow 	}
1278a29f2b0SMichael Halcrow 	rc = crypto_hash_update(&desc, &sg, len);
1288a29f2b0SMichael Halcrow 	if (rc) {
1298a29f2b0SMichael Halcrow 		printk(KERN_ERR
1308a29f2b0SMichael Halcrow 		       "%s: Error updating crypto hash; rc = [%d]\n",
13118d1dbf1SHarvey Harrison 		       __func__, rc);
1328a29f2b0SMichael Halcrow 		goto out;
1338a29f2b0SMichael Halcrow 	}
1348a29f2b0SMichael Halcrow 	rc = crypto_hash_final(&desc, dst);
1358a29f2b0SMichael Halcrow 	if (rc) {
1368a29f2b0SMichael Halcrow 		printk(KERN_ERR
1378a29f2b0SMichael Halcrow 		       "%s: Error finalizing crypto hash; rc = [%d]\n",
13818d1dbf1SHarvey Harrison 		       __func__, rc);
1398a29f2b0SMichael Halcrow 		goto out;
1408a29f2b0SMichael Halcrow 	}
141237fead6SMichael Halcrow out:
1428a29f2b0SMichael Halcrow 	mutex_unlock(&crypt_stat->cs_hash_tfm_mutex);
143237fead6SMichael Halcrow 	return rc;
144237fead6SMichael Halcrow }
145237fead6SMichael Halcrow 
146cd9d67dfSMichael Halcrow static int ecryptfs_crypto_api_algify_cipher_name(char **algified_name,
1478bba066fSMichael Halcrow 						  char *cipher_name,
1488bba066fSMichael Halcrow 						  char *chaining_modifier)
1498bba066fSMichael Halcrow {
1508bba066fSMichael Halcrow 	int cipher_name_len = strlen(cipher_name);
1518bba066fSMichael Halcrow 	int chaining_modifier_len = strlen(chaining_modifier);
1528bba066fSMichael Halcrow 	int algified_name_len;
1538bba066fSMichael Halcrow 	int rc;
1548bba066fSMichael Halcrow 
1558bba066fSMichael Halcrow 	algified_name_len = (chaining_modifier_len + cipher_name_len + 3);
1568bba066fSMichael Halcrow 	(*algified_name) = kmalloc(algified_name_len, GFP_KERNEL);
1577bd473fcSMichael Halcrow 	if (!(*algified_name)) {
1588bba066fSMichael Halcrow 		rc = -ENOMEM;
1598bba066fSMichael Halcrow 		goto out;
1608bba066fSMichael Halcrow 	}
1618bba066fSMichael Halcrow 	snprintf((*algified_name), algified_name_len, "%s(%s)",
1628bba066fSMichael Halcrow 		 chaining_modifier, cipher_name);
1638bba066fSMichael Halcrow 	rc = 0;
1648bba066fSMichael Halcrow out:
1658bba066fSMichael Halcrow 	return rc;
1668bba066fSMichael Halcrow }
1678bba066fSMichael Halcrow 
168237fead6SMichael Halcrow /**
169237fead6SMichael Halcrow  * ecryptfs_derive_iv
170237fead6SMichael Halcrow  * @iv: destination for the derived iv vale
171237fead6SMichael Halcrow  * @crypt_stat: Pointer to crypt_stat struct for the current inode
172d6a13c17SMichael Halcrow  * @offset: Offset of the extent whose IV we are to derive
173237fead6SMichael Halcrow  *
174237fead6SMichael Halcrow  * Generate the initialization vector from the given root IV and page
175237fead6SMichael Halcrow  * offset.
176237fead6SMichael Halcrow  *
177237fead6SMichael Halcrow  * Returns zero on success; non-zero on error.
178237fead6SMichael Halcrow  */
179a34f60f7SMichael Halcrow int ecryptfs_derive_iv(char *iv, struct ecryptfs_crypt_stat *crypt_stat,
180d6a13c17SMichael Halcrow 		       loff_t offset)
181237fead6SMichael Halcrow {
182237fead6SMichael Halcrow 	int rc = 0;
183237fead6SMichael Halcrow 	char dst[MD5_DIGEST_SIZE];
184237fead6SMichael Halcrow 	char src[ECRYPTFS_MAX_IV_BYTES + 16];
185237fead6SMichael Halcrow 
186237fead6SMichael Halcrow 	if (unlikely(ecryptfs_verbosity > 0)) {
187237fead6SMichael Halcrow 		ecryptfs_printk(KERN_DEBUG, "root iv:\n");
188237fead6SMichael Halcrow 		ecryptfs_dump_hex(crypt_stat->root_iv, crypt_stat->iv_bytes);
189237fead6SMichael Halcrow 	}
190237fead6SMichael Halcrow 	/* TODO: It is probably secure to just cast the least
191237fead6SMichael Halcrow 	 * significant bits of the root IV into an unsigned long and
192237fead6SMichael Halcrow 	 * add the offset to that rather than go through all this
193237fead6SMichael Halcrow 	 * hashing business. -Halcrow */
194237fead6SMichael Halcrow 	memcpy(src, crypt_stat->root_iv, crypt_stat->iv_bytes);
195237fead6SMichael Halcrow 	memset((src + crypt_stat->iv_bytes), 0, 16);
196d6a13c17SMichael Halcrow 	snprintf((src + crypt_stat->iv_bytes), 16, "%lld", offset);
197237fead6SMichael Halcrow 	if (unlikely(ecryptfs_verbosity > 0)) {
198237fead6SMichael Halcrow 		ecryptfs_printk(KERN_DEBUG, "source:\n");
199237fead6SMichael Halcrow 		ecryptfs_dump_hex(src, (crypt_stat->iv_bytes + 16));
200237fead6SMichael Halcrow 	}
201237fead6SMichael Halcrow 	rc = ecryptfs_calculate_md5(dst, crypt_stat, src,
202237fead6SMichael Halcrow 				    (crypt_stat->iv_bytes + 16));
203237fead6SMichael Halcrow 	if (rc) {
204237fead6SMichael Halcrow 		ecryptfs_printk(KERN_WARNING, "Error attempting to compute "
205237fead6SMichael Halcrow 				"MD5 while generating IV for a page\n");
206237fead6SMichael Halcrow 		goto out;
207237fead6SMichael Halcrow 	}
208237fead6SMichael Halcrow 	memcpy(iv, dst, crypt_stat->iv_bytes);
209237fead6SMichael Halcrow 	if (unlikely(ecryptfs_verbosity > 0)) {
210237fead6SMichael Halcrow 		ecryptfs_printk(KERN_DEBUG, "derived iv:\n");
211237fead6SMichael Halcrow 		ecryptfs_dump_hex(iv, crypt_stat->iv_bytes);
212237fead6SMichael Halcrow 	}
213237fead6SMichael Halcrow out:
214237fead6SMichael Halcrow 	return rc;
215237fead6SMichael Halcrow }
216237fead6SMichael Halcrow 
217237fead6SMichael Halcrow /**
218237fead6SMichael Halcrow  * ecryptfs_init_crypt_stat
219237fead6SMichael Halcrow  * @crypt_stat: Pointer to the crypt_stat struct to initialize.
220237fead6SMichael Halcrow  *
221237fead6SMichael Halcrow  * Initialize the crypt_stat structure.
222237fead6SMichael Halcrow  */
223237fead6SMichael Halcrow void
224237fead6SMichael Halcrow ecryptfs_init_crypt_stat(struct ecryptfs_crypt_stat *crypt_stat)
225237fead6SMichael Halcrow {
226237fead6SMichael Halcrow 	memset((void *)crypt_stat, 0, sizeof(struct ecryptfs_crypt_stat));
227f4aad16aSMichael Halcrow 	INIT_LIST_HEAD(&crypt_stat->keysig_list);
228f4aad16aSMichael Halcrow 	mutex_init(&crypt_stat->keysig_list_mutex);
229237fead6SMichael Halcrow 	mutex_init(&crypt_stat->cs_mutex);
230237fead6SMichael Halcrow 	mutex_init(&crypt_stat->cs_tfm_mutex);
231565d9724SMichael Halcrow 	mutex_init(&crypt_stat->cs_hash_tfm_mutex);
232e2bd99ecSMichael Halcrow 	crypt_stat->flags |= ECRYPTFS_STRUCT_INITIALIZED;
233237fead6SMichael Halcrow }
234237fead6SMichael Halcrow 
235237fead6SMichael Halcrow /**
236fcd12835SMichael Halcrow  * ecryptfs_destroy_crypt_stat
237237fead6SMichael Halcrow  * @crypt_stat: Pointer to the crypt_stat struct to initialize.
238237fead6SMichael Halcrow  *
239237fead6SMichael Halcrow  * Releases all memory associated with a crypt_stat struct.
240237fead6SMichael Halcrow  */
241fcd12835SMichael Halcrow void ecryptfs_destroy_crypt_stat(struct ecryptfs_crypt_stat *crypt_stat)
242237fead6SMichael Halcrow {
243f4aad16aSMichael Halcrow 	struct ecryptfs_key_sig *key_sig, *key_sig_tmp;
244f4aad16aSMichael Halcrow 
245237fead6SMichael Halcrow 	if (crypt_stat->tfm)
2468bba066fSMichael Halcrow 		crypto_free_blkcipher(crypt_stat->tfm);
247565d9724SMichael Halcrow 	if (crypt_stat->hash_tfm)
248565d9724SMichael Halcrow 		crypto_free_hash(crypt_stat->hash_tfm);
249f4aad16aSMichael Halcrow 	list_for_each_entry_safe(key_sig, key_sig_tmp,
250f4aad16aSMichael Halcrow 				 &crypt_stat->keysig_list, crypt_stat_list) {
251f4aad16aSMichael Halcrow 		list_del(&key_sig->crypt_stat_list);
252f4aad16aSMichael Halcrow 		kmem_cache_free(ecryptfs_key_sig_cache, key_sig);
253f4aad16aSMichael Halcrow 	}
254237fead6SMichael Halcrow 	memset(crypt_stat, 0, sizeof(struct ecryptfs_crypt_stat));
255237fead6SMichael Halcrow }
256237fead6SMichael Halcrow 
257fcd12835SMichael Halcrow void ecryptfs_destroy_mount_crypt_stat(
258237fead6SMichael Halcrow 	struct ecryptfs_mount_crypt_stat *mount_crypt_stat)
259237fead6SMichael Halcrow {
260f4aad16aSMichael Halcrow 	struct ecryptfs_global_auth_tok *auth_tok, *auth_tok_tmp;
261f4aad16aSMichael Halcrow 
262f4aad16aSMichael Halcrow 	if (!(mount_crypt_stat->flags & ECRYPTFS_MOUNT_CRYPT_STAT_INITIALIZED))
263f4aad16aSMichael Halcrow 		return;
264f4aad16aSMichael Halcrow 	mutex_lock(&mount_crypt_stat->global_auth_tok_list_mutex);
265f4aad16aSMichael Halcrow 	list_for_each_entry_safe(auth_tok, auth_tok_tmp,
266f4aad16aSMichael Halcrow 				 &mount_crypt_stat->global_auth_tok_list,
267f4aad16aSMichael Halcrow 				 mount_crypt_stat_list) {
268f4aad16aSMichael Halcrow 		list_del(&auth_tok->mount_crypt_stat_list);
269f4aad16aSMichael Halcrow 		if (auth_tok->global_auth_tok_key
270f4aad16aSMichael Halcrow 		    && !(auth_tok->flags & ECRYPTFS_AUTH_TOK_INVALID))
271f4aad16aSMichael Halcrow 			key_put(auth_tok->global_auth_tok_key);
272f4aad16aSMichael Halcrow 		kmem_cache_free(ecryptfs_global_auth_tok_cache, auth_tok);
273f4aad16aSMichael Halcrow 	}
274f4aad16aSMichael Halcrow 	mutex_unlock(&mount_crypt_stat->global_auth_tok_list_mutex);
275237fead6SMichael Halcrow 	memset(mount_crypt_stat, 0, sizeof(struct ecryptfs_mount_crypt_stat));
276237fead6SMichael Halcrow }
277237fead6SMichael Halcrow 
278237fead6SMichael Halcrow /**
279237fead6SMichael Halcrow  * virt_to_scatterlist
280237fead6SMichael Halcrow  * @addr: Virtual address
281237fead6SMichael Halcrow  * @size: Size of data; should be an even multiple of the block size
282237fead6SMichael Halcrow  * @sg: Pointer to scatterlist array; set to NULL to obtain only
283237fead6SMichael Halcrow  *      the number of scatterlist structs required in array
284237fead6SMichael Halcrow  * @sg_size: Max array size
285237fead6SMichael Halcrow  *
286237fead6SMichael Halcrow  * Fills in a scatterlist array with page references for a passed
287237fead6SMichael Halcrow  * virtual address.
288237fead6SMichael Halcrow  *
289237fead6SMichael Halcrow  * Returns the number of scatterlist structs in array used
290237fead6SMichael Halcrow  */
291237fead6SMichael Halcrow int virt_to_scatterlist(const void *addr, int size, struct scatterlist *sg,
292237fead6SMichael Halcrow 			int sg_size)
293237fead6SMichael Halcrow {
294237fead6SMichael Halcrow 	int i = 0;
295237fead6SMichael Halcrow 	struct page *pg;
296237fead6SMichael Halcrow 	int offset;
297237fead6SMichael Halcrow 	int remainder_of_page;
298237fead6SMichael Halcrow 
29968e3f5ddSHerbert Xu 	sg_init_table(sg, sg_size);
30068e3f5ddSHerbert Xu 
301237fead6SMichael Halcrow 	while (size > 0 && i < sg_size) {
302237fead6SMichael Halcrow 		pg = virt_to_page(addr);
303237fead6SMichael Halcrow 		offset = offset_in_page(addr);
304642f1490SJens Axboe 		if (sg)
305642f1490SJens Axboe 			sg_set_page(&sg[i], pg, 0, offset);
306237fead6SMichael Halcrow 		remainder_of_page = PAGE_CACHE_SIZE - offset;
307237fead6SMichael Halcrow 		if (size >= remainder_of_page) {
308237fead6SMichael Halcrow 			if (sg)
309237fead6SMichael Halcrow 				sg[i].length = remainder_of_page;
310237fead6SMichael Halcrow 			addr += remainder_of_page;
311237fead6SMichael Halcrow 			size -= remainder_of_page;
312237fead6SMichael Halcrow 		} else {
313237fead6SMichael Halcrow 			if (sg)
314237fead6SMichael Halcrow 				sg[i].length = size;
315237fead6SMichael Halcrow 			addr += size;
316237fead6SMichael Halcrow 			size = 0;
317237fead6SMichael Halcrow 		}
318237fead6SMichael Halcrow 		i++;
319237fead6SMichael Halcrow 	}
320237fead6SMichael Halcrow 	if (size > 0)
321237fead6SMichael Halcrow 		return -ENOMEM;
322237fead6SMichael Halcrow 	return i;
323237fead6SMichael Halcrow }
324237fead6SMichael Halcrow 
325237fead6SMichael Halcrow /**
326237fead6SMichael Halcrow  * encrypt_scatterlist
327237fead6SMichael Halcrow  * @crypt_stat: Pointer to the crypt_stat struct to initialize.
328237fead6SMichael Halcrow  * @dest_sg: Destination of encrypted data
329237fead6SMichael Halcrow  * @src_sg: Data to be encrypted
330237fead6SMichael Halcrow  * @size: Length of data to be encrypted
331237fead6SMichael Halcrow  * @iv: iv to use during encryption
332237fead6SMichael Halcrow  *
333237fead6SMichael Halcrow  * Returns the number of bytes encrypted; negative value on error
334237fead6SMichael Halcrow  */
335237fead6SMichael Halcrow static int encrypt_scatterlist(struct ecryptfs_crypt_stat *crypt_stat,
336237fead6SMichael Halcrow 			       struct scatterlist *dest_sg,
337237fead6SMichael Halcrow 			       struct scatterlist *src_sg, int size,
338237fead6SMichael Halcrow 			       unsigned char *iv)
339237fead6SMichael Halcrow {
3408bba066fSMichael Halcrow 	struct blkcipher_desc desc = {
3418bba066fSMichael Halcrow 		.tfm = crypt_stat->tfm,
3428bba066fSMichael Halcrow 		.info = iv,
3438bba066fSMichael Halcrow 		.flags = CRYPTO_TFM_REQ_MAY_SLEEP
3448bba066fSMichael Halcrow 	};
345237fead6SMichael Halcrow 	int rc = 0;
346237fead6SMichael Halcrow 
347237fead6SMichael Halcrow 	BUG_ON(!crypt_stat || !crypt_stat->tfm
348e2bd99ecSMichael Halcrow 	       || !(crypt_stat->flags & ECRYPTFS_STRUCT_INITIALIZED));
349237fead6SMichael Halcrow 	if (unlikely(ecryptfs_verbosity > 0)) {
350f24b3887STyler Hicks 		ecryptfs_printk(KERN_DEBUG, "Key size [%zd]; key:\n",
351237fead6SMichael Halcrow 				crypt_stat->key_size);
352237fead6SMichael Halcrow 		ecryptfs_dump_hex(crypt_stat->key,
353237fead6SMichael Halcrow 				  crypt_stat->key_size);
354237fead6SMichael Halcrow 	}
355237fead6SMichael Halcrow 	/* Consider doing this once, when the file is opened */
356237fead6SMichael Halcrow 	mutex_lock(&crypt_stat->cs_tfm_mutex);
3578e3a6f16STrevor Highland 	if (!(crypt_stat->flags & ECRYPTFS_KEY_SET)) {
3588bba066fSMichael Halcrow 		rc = crypto_blkcipher_setkey(crypt_stat->tfm, crypt_stat->key,
359237fead6SMichael Halcrow 					     crypt_stat->key_size);
3608e3a6f16STrevor Highland 		crypt_stat->flags |= ECRYPTFS_KEY_SET;
3618e3a6f16STrevor Highland 	}
362237fead6SMichael Halcrow 	if (rc) {
363237fead6SMichael Halcrow 		ecryptfs_printk(KERN_ERR, "Error setting key; rc = [%d]\n",
364237fead6SMichael Halcrow 				rc);
365237fead6SMichael Halcrow 		mutex_unlock(&crypt_stat->cs_tfm_mutex);
366237fead6SMichael Halcrow 		rc = -EINVAL;
367237fead6SMichael Halcrow 		goto out;
368237fead6SMichael Halcrow 	}
369237fead6SMichael Halcrow 	ecryptfs_printk(KERN_DEBUG, "Encrypting [%d] bytes.\n", size);
3708bba066fSMichael Halcrow 	crypto_blkcipher_encrypt_iv(&desc, dest_sg, src_sg, size);
371237fead6SMichael Halcrow 	mutex_unlock(&crypt_stat->cs_tfm_mutex);
372237fead6SMichael Halcrow out:
373237fead6SMichael Halcrow 	return rc;
374237fead6SMichael Halcrow }
375237fead6SMichael Halcrow 
376237fead6SMichael Halcrow /**
3770216f7f7SMichael Halcrow  * ecryptfs_lower_offset_for_extent
378237fead6SMichael Halcrow  *
3790216f7f7SMichael Halcrow  * Convert an eCryptfs page index into a lower byte offset
380237fead6SMichael Halcrow  */
3817896b631SAdrian Bunk static void ecryptfs_lower_offset_for_extent(loff_t *offset, loff_t extent_num,
3820216f7f7SMichael Halcrow 					     struct ecryptfs_crypt_stat *crypt_stat)
383237fead6SMichael Halcrow {
384157f1071STyler Hicks 	(*offset) = ecryptfs_lower_header_size(crypt_stat)
385157f1071STyler Hicks 		    + (crypt_stat->extent_size * extent_num);
3860216f7f7SMichael Halcrow }
387237fead6SMichael Halcrow 
3880216f7f7SMichael Halcrow /**
3890216f7f7SMichael Halcrow  * ecryptfs_encrypt_extent
3900216f7f7SMichael Halcrow  * @enc_extent_page: Allocated page into which to encrypt the data in
3910216f7f7SMichael Halcrow  *                   @page
3920216f7f7SMichael Halcrow  * @crypt_stat: crypt_stat containing cryptographic context for the
3930216f7f7SMichael Halcrow  *              encryption operation
3940216f7f7SMichael Halcrow  * @page: Page containing plaintext data extent to encrypt
3950216f7f7SMichael Halcrow  * @extent_offset: Page extent offset for use in generating IV
3960216f7f7SMichael Halcrow  *
3970216f7f7SMichael Halcrow  * Encrypts one extent of data.
3980216f7f7SMichael Halcrow  *
3990216f7f7SMichael Halcrow  * Return zero on success; non-zero otherwise
4000216f7f7SMichael Halcrow  */
4010216f7f7SMichael Halcrow static int ecryptfs_encrypt_extent(struct page *enc_extent_page,
4020216f7f7SMichael Halcrow 				   struct ecryptfs_crypt_stat *crypt_stat,
4030216f7f7SMichael Halcrow 				   struct page *page,
4040216f7f7SMichael Halcrow 				   unsigned long extent_offset)
4050216f7f7SMichael Halcrow {
406d6a13c17SMichael Halcrow 	loff_t extent_base;
4070216f7f7SMichael Halcrow 	char extent_iv[ECRYPTFS_MAX_IV_BYTES];
4080216f7f7SMichael Halcrow 	int rc;
4090216f7f7SMichael Halcrow 
410d6a13c17SMichael Halcrow 	extent_base = (((loff_t)page->index)
4110216f7f7SMichael Halcrow 		       * (PAGE_CACHE_SIZE / crypt_stat->extent_size));
412237fead6SMichael Halcrow 	rc = ecryptfs_derive_iv(extent_iv, crypt_stat,
4130216f7f7SMichael Halcrow 				(extent_base + extent_offset));
414237fead6SMichael Halcrow 	if (rc) {
415888d57bbSJoe Perches 		ecryptfs_printk(KERN_ERR, "Error attempting to derive IV for "
416888d57bbSJoe Perches 			"extent [0x%.16llx]; rc = [%d]\n",
417888d57bbSJoe Perches 			(unsigned long long)(extent_base + extent_offset), rc);
418237fead6SMichael Halcrow 		goto out;
419237fead6SMichael Halcrow 	}
4200216f7f7SMichael Halcrow 	rc = ecryptfs_encrypt_page_offset(crypt_stat, enc_extent_page, 0,
4210216f7f7SMichael Halcrow 					  page, (extent_offset
4220216f7f7SMichael Halcrow 						 * crypt_stat->extent_size),
423237fead6SMichael Halcrow 					  crypt_stat->extent_size, extent_iv);
4240216f7f7SMichael Halcrow 	if (rc < 0) {
4250216f7f7SMichael Halcrow 		printk(KERN_ERR "%s: Error attempting to encrypt page with "
4260216f7f7SMichael Halcrow 		       "page->index = [%ld], extent_offset = [%ld]; "
42718d1dbf1SHarvey Harrison 		       "rc = [%d]\n", __func__, page->index, extent_offset,
4280216f7f7SMichael Halcrow 		       rc);
4290216f7f7SMichael Halcrow 		goto out;
4300216f7f7SMichael Halcrow 	}
4310216f7f7SMichael Halcrow 	rc = 0;
4320216f7f7SMichael Halcrow out:
4330216f7f7SMichael Halcrow 	return rc;
4340216f7f7SMichael Halcrow }
4350216f7f7SMichael Halcrow 
4360216f7f7SMichael Halcrow /**
4370216f7f7SMichael Halcrow  * ecryptfs_encrypt_page
4380216f7f7SMichael Halcrow  * @page: Page mapped from the eCryptfs inode for the file; contains
4390216f7f7SMichael Halcrow  *        decrypted content that needs to be encrypted (to a temporary
4400216f7f7SMichael Halcrow  *        page; not in place) and written out to the lower file
4410216f7f7SMichael Halcrow  *
4420216f7f7SMichael Halcrow  * Encrypt an eCryptfs page. This is done on a per-extent basis. Note
4430216f7f7SMichael Halcrow  * that eCryptfs pages may straddle the lower pages -- for instance,
4440216f7f7SMichael Halcrow  * if the file was created on a machine with an 8K page size
4450216f7f7SMichael Halcrow  * (resulting in an 8K header), and then the file is copied onto a
4460216f7f7SMichael Halcrow  * host with a 32K page size, then when reading page 0 of the eCryptfs
4470216f7f7SMichael Halcrow  * file, 24K of page 0 of the lower file will be read and decrypted,
4480216f7f7SMichael Halcrow  * and then 8K of page 1 of the lower file will be read and decrypted.
4490216f7f7SMichael Halcrow  *
4500216f7f7SMichael Halcrow  * Returns zero on success; negative on error
4510216f7f7SMichael Halcrow  */
4520216f7f7SMichael Halcrow int ecryptfs_encrypt_page(struct page *page)
4530216f7f7SMichael Halcrow {
4540216f7f7SMichael Halcrow 	struct inode *ecryptfs_inode;
4550216f7f7SMichael Halcrow 	struct ecryptfs_crypt_stat *crypt_stat;
4567fcba054SEric Sandeen 	char *enc_extent_virt;
4577fcba054SEric Sandeen 	struct page *enc_extent_page = NULL;
4580216f7f7SMichael Halcrow 	loff_t extent_offset;
4590216f7f7SMichael Halcrow 	int rc = 0;
4600216f7f7SMichael Halcrow 
4610216f7f7SMichael Halcrow 	ecryptfs_inode = page->mapping->host;
4620216f7f7SMichael Halcrow 	crypt_stat =
4630216f7f7SMichael Halcrow 		&(ecryptfs_inode_to_private(ecryptfs_inode)->crypt_stat);
46413a791b4STyler Hicks 	BUG_ON(!(crypt_stat->flags & ECRYPTFS_ENCRYPTED));
4657fcba054SEric Sandeen 	enc_extent_page = alloc_page(GFP_USER);
4667fcba054SEric Sandeen 	if (!enc_extent_page) {
4670216f7f7SMichael Halcrow 		rc = -ENOMEM;
4680216f7f7SMichael Halcrow 		ecryptfs_printk(KERN_ERR, "Error allocating memory for "
4690216f7f7SMichael Halcrow 				"encrypted extent\n");
4700216f7f7SMichael Halcrow 		goto out;
4710216f7f7SMichael Halcrow 	}
4727fcba054SEric Sandeen 	enc_extent_virt = kmap(enc_extent_page);
4730216f7f7SMichael Halcrow 	for (extent_offset = 0;
4740216f7f7SMichael Halcrow 	     extent_offset < (PAGE_CACHE_SIZE / crypt_stat->extent_size);
4750216f7f7SMichael Halcrow 	     extent_offset++) {
4760216f7f7SMichael Halcrow 		loff_t offset;
4770216f7f7SMichael Halcrow 
4780216f7f7SMichael Halcrow 		rc = ecryptfs_encrypt_extent(enc_extent_page, crypt_stat, page,
4790216f7f7SMichael Halcrow 					     extent_offset);
4800216f7f7SMichael Halcrow 		if (rc) {
4810216f7f7SMichael Halcrow 			printk(KERN_ERR "%s: Error encrypting extent; "
48218d1dbf1SHarvey Harrison 			       "rc = [%d]\n", __func__, rc);
4830216f7f7SMichael Halcrow 			goto out;
4840216f7f7SMichael Halcrow 		}
4850216f7f7SMichael Halcrow 		ecryptfs_lower_offset_for_extent(
486d6a13c17SMichael Halcrow 			&offset, ((((loff_t)page->index)
487d6a13c17SMichael Halcrow 				   * (PAGE_CACHE_SIZE
4880216f7f7SMichael Halcrow 				      / crypt_stat->extent_size))
4890216f7f7SMichael Halcrow 				  + extent_offset), crypt_stat);
4900216f7f7SMichael Halcrow 		rc = ecryptfs_write_lower(ecryptfs_inode, enc_extent_virt,
4910216f7f7SMichael Halcrow 					  offset, crypt_stat->extent_size);
49296a7b9c2STyler Hicks 		if (rc < 0) {
4930216f7f7SMichael Halcrow 			ecryptfs_printk(KERN_ERR, "Error attempting "
4940216f7f7SMichael Halcrow 					"to write lower page; rc = [%d]"
4950216f7f7SMichael Halcrow 					"\n", rc);
4960216f7f7SMichael Halcrow 			goto out;
4970216f7f7SMichael Halcrow 		}
498237fead6SMichael Halcrow 	}
49996a7b9c2STyler Hicks 	rc = 0;
5000216f7f7SMichael Halcrow out:
5017fcba054SEric Sandeen 	if (enc_extent_page) {
5027fcba054SEric Sandeen 		kunmap(enc_extent_page);
5037fcba054SEric Sandeen 		__free_page(enc_extent_page);
5047fcba054SEric Sandeen 	}
5050216f7f7SMichael Halcrow 	return rc;
5060216f7f7SMichael Halcrow }
5070216f7f7SMichael Halcrow 
5080216f7f7SMichael Halcrow static int ecryptfs_decrypt_extent(struct page *page,
5090216f7f7SMichael Halcrow 				   struct ecryptfs_crypt_stat *crypt_stat,
5100216f7f7SMichael Halcrow 				   struct page *enc_extent_page,
5110216f7f7SMichael Halcrow 				   unsigned long extent_offset)
5120216f7f7SMichael Halcrow {
513d6a13c17SMichael Halcrow 	loff_t extent_base;
5140216f7f7SMichael Halcrow 	char extent_iv[ECRYPTFS_MAX_IV_BYTES];
5150216f7f7SMichael Halcrow 	int rc;
5160216f7f7SMichael Halcrow 
517d6a13c17SMichael Halcrow 	extent_base = (((loff_t)page->index)
5180216f7f7SMichael Halcrow 		       * (PAGE_CACHE_SIZE / crypt_stat->extent_size));
5190216f7f7SMichael Halcrow 	rc = ecryptfs_derive_iv(extent_iv, crypt_stat,
5200216f7f7SMichael Halcrow 				(extent_base + extent_offset));
521237fead6SMichael Halcrow 	if (rc) {
522888d57bbSJoe Perches 		ecryptfs_printk(KERN_ERR, "Error attempting to derive IV for "
523888d57bbSJoe Perches 			"extent [0x%.16llx]; rc = [%d]\n",
524888d57bbSJoe Perches 			(unsigned long long)(extent_base + extent_offset), rc);
525237fead6SMichael Halcrow 		goto out;
526237fead6SMichael Halcrow 	}
5270216f7f7SMichael Halcrow 	rc = ecryptfs_decrypt_page_offset(crypt_stat, page,
5280216f7f7SMichael Halcrow 					  (extent_offset
5290216f7f7SMichael Halcrow 					   * crypt_stat->extent_size),
5300216f7f7SMichael Halcrow 					  enc_extent_page, 0,
5310216f7f7SMichael Halcrow 					  crypt_stat->extent_size, extent_iv);
5320216f7f7SMichael Halcrow 	if (rc < 0) {
5330216f7f7SMichael Halcrow 		printk(KERN_ERR "%s: Error attempting to decrypt to page with "
5340216f7f7SMichael Halcrow 		       "page->index = [%ld], extent_offset = [%ld]; "
53518d1dbf1SHarvey Harrison 		       "rc = [%d]\n", __func__, page->index, extent_offset,
5360216f7f7SMichael Halcrow 		       rc);
5370216f7f7SMichael Halcrow 		goto out;
5380216f7f7SMichael Halcrow 	}
5390216f7f7SMichael Halcrow 	rc = 0;
540237fead6SMichael Halcrow out:
541237fead6SMichael Halcrow 	return rc;
542237fead6SMichael Halcrow }
543237fead6SMichael Halcrow 
544237fead6SMichael Halcrow /**
545237fead6SMichael Halcrow  * ecryptfs_decrypt_page
5460216f7f7SMichael Halcrow  * @page: Page mapped from the eCryptfs inode for the file; data read
5470216f7f7SMichael Halcrow  *        and decrypted from the lower file will be written into this
5480216f7f7SMichael Halcrow  *        page
549237fead6SMichael Halcrow  *
550237fead6SMichael Halcrow  * Decrypt an eCryptfs page. This is done on a per-extent basis. Note
551237fead6SMichael Halcrow  * that eCryptfs pages may straddle the lower pages -- for instance,
552237fead6SMichael Halcrow  * if the file was created on a machine with an 8K page size
553237fead6SMichael Halcrow  * (resulting in an 8K header), and then the file is copied onto a
554237fead6SMichael Halcrow  * host with a 32K page size, then when reading page 0 of the eCryptfs
555237fead6SMichael Halcrow  * file, 24K of page 0 of the lower file will be read and decrypted,
556237fead6SMichael Halcrow  * and then 8K of page 1 of the lower file will be read and decrypted.
557237fead6SMichael Halcrow  *
558237fead6SMichael Halcrow  * Returns zero on success; negative on error
559237fead6SMichael Halcrow  */
5600216f7f7SMichael Halcrow int ecryptfs_decrypt_page(struct page *page)
561237fead6SMichael Halcrow {
5620216f7f7SMichael Halcrow 	struct inode *ecryptfs_inode;
563237fead6SMichael Halcrow 	struct ecryptfs_crypt_stat *crypt_stat;
5647fcba054SEric Sandeen 	char *enc_extent_virt;
5657fcba054SEric Sandeen 	struct page *enc_extent_page = NULL;
5660216f7f7SMichael Halcrow 	unsigned long extent_offset;
567237fead6SMichael Halcrow 	int rc = 0;
568237fead6SMichael Halcrow 
5690216f7f7SMichael Halcrow 	ecryptfs_inode = page->mapping->host;
5700216f7f7SMichael Halcrow 	crypt_stat =
5710216f7f7SMichael Halcrow 		&(ecryptfs_inode_to_private(ecryptfs_inode)->crypt_stat);
57213a791b4STyler Hicks 	BUG_ON(!(crypt_stat->flags & ECRYPTFS_ENCRYPTED));
5737fcba054SEric Sandeen 	enc_extent_page = alloc_page(GFP_USER);
5747fcba054SEric Sandeen 	if (!enc_extent_page) {
575237fead6SMichael Halcrow 		rc = -ENOMEM;
5760216f7f7SMichael Halcrow 		ecryptfs_printk(KERN_ERR, "Error allocating memory for "
5770216f7f7SMichael Halcrow 				"encrypted extent\n");
57816a72c45SMichael Halcrow 		goto out;
579237fead6SMichael Halcrow 	}
5807fcba054SEric Sandeen 	enc_extent_virt = kmap(enc_extent_page);
5810216f7f7SMichael Halcrow 	for (extent_offset = 0;
5820216f7f7SMichael Halcrow 	     extent_offset < (PAGE_CACHE_SIZE / crypt_stat->extent_size);
5830216f7f7SMichael Halcrow 	     extent_offset++) {
5840216f7f7SMichael Halcrow 		loff_t offset;
5850216f7f7SMichael Halcrow 
5860216f7f7SMichael Halcrow 		ecryptfs_lower_offset_for_extent(
5870216f7f7SMichael Halcrow 			&offset, ((page->index * (PAGE_CACHE_SIZE
5880216f7f7SMichael Halcrow 						  / crypt_stat->extent_size))
5890216f7f7SMichael Halcrow 				  + extent_offset), crypt_stat);
5900216f7f7SMichael Halcrow 		rc = ecryptfs_read_lower(enc_extent_virt, offset,
591237fead6SMichael Halcrow 					 crypt_stat->extent_size,
5920216f7f7SMichael Halcrow 					 ecryptfs_inode);
59396a7b9c2STyler Hicks 		if (rc < 0) {
5940216f7f7SMichael Halcrow 			ecryptfs_printk(KERN_ERR, "Error attempting "
5950216f7f7SMichael Halcrow 					"to read lower page; rc = [%d]"
5960216f7f7SMichael Halcrow 					"\n", rc);
59716a72c45SMichael Halcrow 			goto out;
598237fead6SMichael Halcrow 		}
5990216f7f7SMichael Halcrow 		rc = ecryptfs_decrypt_extent(page, crypt_stat, enc_extent_page,
6000216f7f7SMichael Halcrow 					     extent_offset);
6010216f7f7SMichael Halcrow 		if (rc) {
6020216f7f7SMichael Halcrow 			printk(KERN_ERR "%s: Error encrypting extent; "
60318d1dbf1SHarvey Harrison 			       "rc = [%d]\n", __func__, rc);
60416a72c45SMichael Halcrow 			goto out;
605237fead6SMichael Halcrow 		}
606237fead6SMichael Halcrow 	}
607237fead6SMichael Halcrow out:
6087fcba054SEric Sandeen 	if (enc_extent_page) {
6097fcba054SEric Sandeen 		kunmap(enc_extent_page);
6107fcba054SEric Sandeen 		__free_page(enc_extent_page);
6117fcba054SEric Sandeen 	}
612237fead6SMichael Halcrow 	return rc;
613237fead6SMichael Halcrow }
614237fead6SMichael Halcrow 
615237fead6SMichael Halcrow /**
616237fead6SMichael Halcrow  * decrypt_scatterlist
61722e78fafSMichael Halcrow  * @crypt_stat: Cryptographic context
61822e78fafSMichael Halcrow  * @dest_sg: The destination scatterlist to decrypt into
61922e78fafSMichael Halcrow  * @src_sg: The source scatterlist to decrypt from
62022e78fafSMichael Halcrow  * @size: The number of bytes to decrypt
62122e78fafSMichael Halcrow  * @iv: The initialization vector to use for the decryption
622237fead6SMichael Halcrow  *
623237fead6SMichael Halcrow  * Returns the number of bytes decrypted; negative value on error
624237fead6SMichael Halcrow  */
625237fead6SMichael Halcrow static int decrypt_scatterlist(struct ecryptfs_crypt_stat *crypt_stat,
626237fead6SMichael Halcrow 			       struct scatterlist *dest_sg,
627237fead6SMichael Halcrow 			       struct scatterlist *src_sg, int size,
628237fead6SMichael Halcrow 			       unsigned char *iv)
629237fead6SMichael Halcrow {
6308bba066fSMichael Halcrow 	struct blkcipher_desc desc = {
6318bba066fSMichael Halcrow 		.tfm = crypt_stat->tfm,
6328bba066fSMichael Halcrow 		.info = iv,
6338bba066fSMichael Halcrow 		.flags = CRYPTO_TFM_REQ_MAY_SLEEP
6348bba066fSMichael Halcrow 	};
635237fead6SMichael Halcrow 	int rc = 0;
636237fead6SMichael Halcrow 
637237fead6SMichael Halcrow 	/* Consider doing this once, when the file is opened */
638237fead6SMichael Halcrow 	mutex_lock(&crypt_stat->cs_tfm_mutex);
6398bba066fSMichael Halcrow 	rc = crypto_blkcipher_setkey(crypt_stat->tfm, crypt_stat->key,
640237fead6SMichael Halcrow 				     crypt_stat->key_size);
641237fead6SMichael Halcrow 	if (rc) {
642237fead6SMichael Halcrow 		ecryptfs_printk(KERN_ERR, "Error setting key; rc = [%d]\n",
643237fead6SMichael Halcrow 				rc);
644237fead6SMichael Halcrow 		mutex_unlock(&crypt_stat->cs_tfm_mutex);
645237fead6SMichael Halcrow 		rc = -EINVAL;
646237fead6SMichael Halcrow 		goto out;
647237fead6SMichael Halcrow 	}
648237fead6SMichael Halcrow 	ecryptfs_printk(KERN_DEBUG, "Decrypting [%d] bytes.\n", size);
6498bba066fSMichael Halcrow 	rc = crypto_blkcipher_decrypt_iv(&desc, dest_sg, src_sg, size);
650237fead6SMichael Halcrow 	mutex_unlock(&crypt_stat->cs_tfm_mutex);
651237fead6SMichael Halcrow 	if (rc) {
652237fead6SMichael Halcrow 		ecryptfs_printk(KERN_ERR, "Error decrypting; rc = [%d]\n",
653237fead6SMichael Halcrow 				rc);
654237fead6SMichael Halcrow 		goto out;
655237fead6SMichael Halcrow 	}
656237fead6SMichael Halcrow 	rc = size;
657237fead6SMichael Halcrow out:
658237fead6SMichael Halcrow 	return rc;
659237fead6SMichael Halcrow }
660237fead6SMichael Halcrow 
661237fead6SMichael Halcrow /**
662237fead6SMichael Halcrow  * ecryptfs_encrypt_page_offset
66322e78fafSMichael Halcrow  * @crypt_stat: The cryptographic context
66422e78fafSMichael Halcrow  * @dst_page: The page to encrypt into
66522e78fafSMichael Halcrow  * @dst_offset: The offset in the page to encrypt into
66622e78fafSMichael Halcrow  * @src_page: The page to encrypt from
66722e78fafSMichael Halcrow  * @src_offset: The offset in the page to encrypt from
66822e78fafSMichael Halcrow  * @size: The number of bytes to encrypt
66922e78fafSMichael Halcrow  * @iv: The initialization vector to use for the encryption
670237fead6SMichael Halcrow  *
671237fead6SMichael Halcrow  * Returns the number of bytes encrypted
672237fead6SMichael Halcrow  */
673237fead6SMichael Halcrow static int
674237fead6SMichael Halcrow ecryptfs_encrypt_page_offset(struct ecryptfs_crypt_stat *crypt_stat,
675237fead6SMichael Halcrow 			     struct page *dst_page, int dst_offset,
676237fead6SMichael Halcrow 			     struct page *src_page, int src_offset, int size,
677237fead6SMichael Halcrow 			     unsigned char *iv)
678237fead6SMichael Halcrow {
679237fead6SMichael Halcrow 	struct scatterlist src_sg, dst_sg;
680237fead6SMichael Halcrow 
68160c74f81SJens Axboe 	sg_init_table(&src_sg, 1);
68260c74f81SJens Axboe 	sg_init_table(&dst_sg, 1);
68360c74f81SJens Axboe 
684642f1490SJens Axboe 	sg_set_page(&src_sg, src_page, size, src_offset);
685642f1490SJens Axboe 	sg_set_page(&dst_sg, dst_page, size, dst_offset);
686237fead6SMichael Halcrow 	return encrypt_scatterlist(crypt_stat, &dst_sg, &src_sg, size, iv);
687237fead6SMichael Halcrow }
688237fead6SMichael Halcrow 
689237fead6SMichael Halcrow /**
690237fead6SMichael Halcrow  * ecryptfs_decrypt_page_offset
69122e78fafSMichael Halcrow  * @crypt_stat: The cryptographic context
69222e78fafSMichael Halcrow  * @dst_page: The page to decrypt into
69322e78fafSMichael Halcrow  * @dst_offset: The offset in the page to decrypt into
69422e78fafSMichael Halcrow  * @src_page: The page to decrypt from
69522e78fafSMichael Halcrow  * @src_offset: The offset in the page to decrypt from
69622e78fafSMichael Halcrow  * @size: The number of bytes to decrypt
69722e78fafSMichael Halcrow  * @iv: The initialization vector to use for the decryption
698237fead6SMichael Halcrow  *
699237fead6SMichael Halcrow  * Returns the number of bytes decrypted
700237fead6SMichael Halcrow  */
701237fead6SMichael Halcrow static int
702237fead6SMichael Halcrow ecryptfs_decrypt_page_offset(struct ecryptfs_crypt_stat *crypt_stat,
703237fead6SMichael Halcrow 			     struct page *dst_page, int dst_offset,
704237fead6SMichael Halcrow 			     struct page *src_page, int src_offset, int size,
705237fead6SMichael Halcrow 			     unsigned char *iv)
706237fead6SMichael Halcrow {
707237fead6SMichael Halcrow 	struct scatterlist src_sg, dst_sg;
708237fead6SMichael Halcrow 
70960c74f81SJens Axboe 	sg_init_table(&src_sg, 1);
710642f1490SJens Axboe 	sg_set_page(&src_sg, src_page, size, src_offset);
71160c74f81SJens Axboe 
712642f1490SJens Axboe 	sg_init_table(&dst_sg, 1);
713642f1490SJens Axboe 	sg_set_page(&dst_sg, dst_page, size, dst_offset);
714642f1490SJens Axboe 
715237fead6SMichael Halcrow 	return decrypt_scatterlist(crypt_stat, &dst_sg, &src_sg, size, iv);
716237fead6SMichael Halcrow }
717237fead6SMichael Halcrow 
718237fead6SMichael Halcrow #define ECRYPTFS_MAX_SCATTERLIST_LEN 4
719237fead6SMichael Halcrow 
720237fead6SMichael Halcrow /**
721237fead6SMichael Halcrow  * ecryptfs_init_crypt_ctx
722421f91d2SUwe Kleine-König  * @crypt_stat: Uninitialized crypt stats structure
723237fead6SMichael Halcrow  *
724237fead6SMichael Halcrow  * Initialize the crypto context.
725237fead6SMichael Halcrow  *
726237fead6SMichael Halcrow  * TODO: Performance: Keep a cache of initialized cipher contexts;
727237fead6SMichael Halcrow  * only init if needed
728237fead6SMichael Halcrow  */
729237fead6SMichael Halcrow int ecryptfs_init_crypt_ctx(struct ecryptfs_crypt_stat *crypt_stat)
730237fead6SMichael Halcrow {
7318bba066fSMichael Halcrow 	char *full_alg_name;
732237fead6SMichael Halcrow 	int rc = -EINVAL;
733237fead6SMichael Halcrow 
734237fead6SMichael Halcrow 	if (!crypt_stat->cipher) {
735237fead6SMichael Halcrow 		ecryptfs_printk(KERN_ERR, "No cipher specified\n");
736237fead6SMichael Halcrow 		goto out;
737237fead6SMichael Halcrow 	}
738237fead6SMichael Halcrow 	ecryptfs_printk(KERN_DEBUG,
739237fead6SMichael Halcrow 			"Initializing cipher [%s]; strlen = [%d]; "
740f24b3887STyler Hicks 			"key_size_bits = [%zd]\n",
741237fead6SMichael Halcrow 			crypt_stat->cipher, (int)strlen(crypt_stat->cipher),
742237fead6SMichael Halcrow 			crypt_stat->key_size << 3);
743237fead6SMichael Halcrow 	if (crypt_stat->tfm) {
744237fead6SMichael Halcrow 		rc = 0;
745237fead6SMichael Halcrow 		goto out;
746237fead6SMichael Halcrow 	}
747237fead6SMichael Halcrow 	mutex_lock(&crypt_stat->cs_tfm_mutex);
7488bba066fSMichael Halcrow 	rc = ecryptfs_crypto_api_algify_cipher_name(&full_alg_name,
7498bba066fSMichael Halcrow 						    crypt_stat->cipher, "cbc");
7508bba066fSMichael Halcrow 	if (rc)
751c8161f64SEric Sandeen 		goto out_unlock;
7528bba066fSMichael Halcrow 	crypt_stat->tfm = crypto_alloc_blkcipher(full_alg_name, 0,
7538bba066fSMichael Halcrow 						 CRYPTO_ALG_ASYNC);
7548bba066fSMichael Halcrow 	kfree(full_alg_name);
755de88777eSAkinobu Mita 	if (IS_ERR(crypt_stat->tfm)) {
756de88777eSAkinobu Mita 		rc = PTR_ERR(crypt_stat->tfm);
757b0105eaeSTyler Hicks 		crypt_stat->tfm = NULL;
758237fead6SMichael Halcrow 		ecryptfs_printk(KERN_ERR, "cryptfs: init_crypt_ctx(): "
759237fead6SMichael Halcrow 				"Error initializing cipher [%s]\n",
760237fead6SMichael Halcrow 				crypt_stat->cipher);
761c8161f64SEric Sandeen 		goto out_unlock;
762237fead6SMichael Halcrow 	}
763f1ddcaf3SHerbert Xu 	crypto_blkcipher_set_flags(crypt_stat->tfm, CRYPTO_TFM_REQ_WEAK_KEY);
764237fead6SMichael Halcrow 	rc = 0;
765c8161f64SEric Sandeen out_unlock:
766c8161f64SEric Sandeen 	mutex_unlock(&crypt_stat->cs_tfm_mutex);
767237fead6SMichael Halcrow out:
768237fead6SMichael Halcrow 	return rc;
769237fead6SMichael Halcrow }
770237fead6SMichael Halcrow 
771237fead6SMichael Halcrow static void set_extent_mask_and_shift(struct ecryptfs_crypt_stat *crypt_stat)
772237fead6SMichael Halcrow {
773237fead6SMichael Halcrow 	int extent_size_tmp;
774237fead6SMichael Halcrow 
775237fead6SMichael Halcrow 	crypt_stat->extent_mask = 0xFFFFFFFF;
776237fead6SMichael Halcrow 	crypt_stat->extent_shift = 0;
777237fead6SMichael Halcrow 	if (crypt_stat->extent_size == 0)
778237fead6SMichael Halcrow 		return;
779237fead6SMichael Halcrow 	extent_size_tmp = crypt_stat->extent_size;
780237fead6SMichael Halcrow 	while ((extent_size_tmp & 0x01) == 0) {
781237fead6SMichael Halcrow 		extent_size_tmp >>= 1;
782237fead6SMichael Halcrow 		crypt_stat->extent_mask <<= 1;
783237fead6SMichael Halcrow 		crypt_stat->extent_shift++;
784237fead6SMichael Halcrow 	}
785237fead6SMichael Halcrow }
786237fead6SMichael Halcrow 
787237fead6SMichael Halcrow void ecryptfs_set_default_sizes(struct ecryptfs_crypt_stat *crypt_stat)
788237fead6SMichael Halcrow {
789237fead6SMichael Halcrow 	/* Default values; may be overwritten as we are parsing the
790237fead6SMichael Halcrow 	 * packets. */
791237fead6SMichael Halcrow 	crypt_stat->extent_size = ECRYPTFS_DEFAULT_EXTENT_SIZE;
792237fead6SMichael Halcrow 	set_extent_mask_and_shift(crypt_stat);
793237fead6SMichael Halcrow 	crypt_stat->iv_bytes = ECRYPTFS_DEFAULT_IV_BYTES;
794dd2a3b7aSMichael Halcrow 	if (crypt_stat->flags & ECRYPTFS_METADATA_IN_XATTR)
795fa3ef1cbSTyler Hicks 		crypt_stat->metadata_size = ECRYPTFS_MINIMUM_HEADER_EXTENT_SIZE;
79645eaab79SMichael Halcrow 	else {
79745eaab79SMichael Halcrow 		if (PAGE_CACHE_SIZE <= ECRYPTFS_MINIMUM_HEADER_EXTENT_SIZE)
798fa3ef1cbSTyler Hicks 			crypt_stat->metadata_size =
799cc11beffSMichael Halcrow 				ECRYPTFS_MINIMUM_HEADER_EXTENT_SIZE;
800dd2a3b7aSMichael Halcrow 		else
801fa3ef1cbSTyler Hicks 			crypt_stat->metadata_size = PAGE_CACHE_SIZE;
80245eaab79SMichael Halcrow 	}
803237fead6SMichael Halcrow }
804237fead6SMichael Halcrow 
805237fead6SMichael Halcrow /**
806237fead6SMichael Halcrow  * ecryptfs_compute_root_iv
807237fead6SMichael Halcrow  * @crypt_stats
808237fead6SMichael Halcrow  *
809237fead6SMichael Halcrow  * On error, sets the root IV to all 0's.
810237fead6SMichael Halcrow  */
811237fead6SMichael Halcrow int ecryptfs_compute_root_iv(struct ecryptfs_crypt_stat *crypt_stat)
812237fead6SMichael Halcrow {
813237fead6SMichael Halcrow 	int rc = 0;
814237fead6SMichael Halcrow 	char dst[MD5_DIGEST_SIZE];
815237fead6SMichael Halcrow 
816237fead6SMichael Halcrow 	BUG_ON(crypt_stat->iv_bytes > MD5_DIGEST_SIZE);
817237fead6SMichael Halcrow 	BUG_ON(crypt_stat->iv_bytes <= 0);
818e2bd99ecSMichael Halcrow 	if (!(crypt_stat->flags & ECRYPTFS_KEY_VALID)) {
819237fead6SMichael Halcrow 		rc = -EINVAL;
820237fead6SMichael Halcrow 		ecryptfs_printk(KERN_WARNING, "Session key not valid; "
821237fead6SMichael Halcrow 				"cannot generate root IV\n");
822237fead6SMichael Halcrow 		goto out;
823237fead6SMichael Halcrow 	}
824237fead6SMichael Halcrow 	rc = ecryptfs_calculate_md5(dst, crypt_stat, crypt_stat->key,
825237fead6SMichael Halcrow 				    crypt_stat->key_size);
826237fead6SMichael Halcrow 	if (rc) {
827237fead6SMichael Halcrow 		ecryptfs_printk(KERN_WARNING, "Error attempting to compute "
828237fead6SMichael Halcrow 				"MD5 while generating root IV\n");
829237fead6SMichael Halcrow 		goto out;
830237fead6SMichael Halcrow 	}
831237fead6SMichael Halcrow 	memcpy(crypt_stat->root_iv, dst, crypt_stat->iv_bytes);
832237fead6SMichael Halcrow out:
833237fead6SMichael Halcrow 	if (rc) {
834237fead6SMichael Halcrow 		memset(crypt_stat->root_iv, 0, crypt_stat->iv_bytes);
835e2bd99ecSMichael Halcrow 		crypt_stat->flags |= ECRYPTFS_SECURITY_WARNING;
836237fead6SMichael Halcrow 	}
837237fead6SMichael Halcrow 	return rc;
838237fead6SMichael Halcrow }
839237fead6SMichael Halcrow 
840237fead6SMichael Halcrow static void ecryptfs_generate_new_key(struct ecryptfs_crypt_stat *crypt_stat)
841237fead6SMichael Halcrow {
842237fead6SMichael Halcrow 	get_random_bytes(crypt_stat->key, crypt_stat->key_size);
843e2bd99ecSMichael Halcrow 	crypt_stat->flags |= ECRYPTFS_KEY_VALID;
844237fead6SMichael Halcrow 	ecryptfs_compute_root_iv(crypt_stat);
845237fead6SMichael Halcrow 	if (unlikely(ecryptfs_verbosity > 0)) {
846237fead6SMichael Halcrow 		ecryptfs_printk(KERN_DEBUG, "Generated new session key:\n");
847237fead6SMichael Halcrow 		ecryptfs_dump_hex(crypt_stat->key,
848237fead6SMichael Halcrow 				  crypt_stat->key_size);
849237fead6SMichael Halcrow 	}
850237fead6SMichael Halcrow }
851237fead6SMichael Halcrow 
852237fead6SMichael Halcrow /**
85317398957SMichael Halcrow  * ecryptfs_copy_mount_wide_flags_to_inode_flags
85422e78fafSMichael Halcrow  * @crypt_stat: The inode's cryptographic context
85522e78fafSMichael Halcrow  * @mount_crypt_stat: The mount point's cryptographic context
85617398957SMichael Halcrow  *
85717398957SMichael Halcrow  * This function propagates the mount-wide flags to individual inode
85817398957SMichael Halcrow  * flags.
85917398957SMichael Halcrow  */
86017398957SMichael Halcrow static void ecryptfs_copy_mount_wide_flags_to_inode_flags(
86117398957SMichael Halcrow 	struct ecryptfs_crypt_stat *crypt_stat,
86217398957SMichael Halcrow 	struct ecryptfs_mount_crypt_stat *mount_crypt_stat)
86317398957SMichael Halcrow {
86417398957SMichael Halcrow 	if (mount_crypt_stat->flags & ECRYPTFS_XATTR_METADATA_ENABLED)
86517398957SMichael Halcrow 		crypt_stat->flags |= ECRYPTFS_METADATA_IN_XATTR;
86617398957SMichael Halcrow 	if (mount_crypt_stat->flags & ECRYPTFS_ENCRYPTED_VIEW_ENABLED)
86717398957SMichael Halcrow 		crypt_stat->flags |= ECRYPTFS_VIEW_AS_ENCRYPTED;
868addd65adSMichael Halcrow 	if (mount_crypt_stat->flags & ECRYPTFS_GLOBAL_ENCRYPT_FILENAMES) {
869addd65adSMichael Halcrow 		crypt_stat->flags |= ECRYPTFS_ENCRYPT_FILENAMES;
870addd65adSMichael Halcrow 		if (mount_crypt_stat->flags
871addd65adSMichael Halcrow 		    & ECRYPTFS_GLOBAL_ENCFN_USE_MOUNT_FNEK)
872addd65adSMichael Halcrow 			crypt_stat->flags |= ECRYPTFS_ENCFN_USE_MOUNT_FNEK;
873addd65adSMichael Halcrow 		else if (mount_crypt_stat->flags
874addd65adSMichael Halcrow 			 & ECRYPTFS_GLOBAL_ENCFN_USE_FEK)
875addd65adSMichael Halcrow 			crypt_stat->flags |= ECRYPTFS_ENCFN_USE_FEK;
876addd65adSMichael Halcrow 	}
87717398957SMichael Halcrow }
87817398957SMichael Halcrow 
879f4aad16aSMichael Halcrow static int ecryptfs_copy_mount_wide_sigs_to_inode_sigs(
880f4aad16aSMichael Halcrow 	struct ecryptfs_crypt_stat *crypt_stat,
881f4aad16aSMichael Halcrow 	struct ecryptfs_mount_crypt_stat *mount_crypt_stat)
882f4aad16aSMichael Halcrow {
883f4aad16aSMichael Halcrow 	struct ecryptfs_global_auth_tok *global_auth_tok;
884f4aad16aSMichael Halcrow 	int rc = 0;
885f4aad16aSMichael Halcrow 
886aa06117fSRoland Dreier 	mutex_lock(&crypt_stat->keysig_list_mutex);
887f4aad16aSMichael Halcrow 	mutex_lock(&mount_crypt_stat->global_auth_tok_list_mutex);
888aa06117fSRoland Dreier 
889f4aad16aSMichael Halcrow 	list_for_each_entry(global_auth_tok,
890f4aad16aSMichael Halcrow 			    &mount_crypt_stat->global_auth_tok_list,
891f4aad16aSMichael Halcrow 			    mount_crypt_stat_list) {
89284814d64STyler Hicks 		if (global_auth_tok->flags & ECRYPTFS_AUTH_TOK_FNEK)
89384814d64STyler Hicks 			continue;
894f4aad16aSMichael Halcrow 		rc = ecryptfs_add_keysig(crypt_stat, global_auth_tok->sig);
895f4aad16aSMichael Halcrow 		if (rc) {
896f4aad16aSMichael Halcrow 			printk(KERN_ERR "Error adding keysig; rc = [%d]\n", rc);
897f4aad16aSMichael Halcrow 			goto out;
898f4aad16aSMichael Halcrow 		}
899f4aad16aSMichael Halcrow 	}
900aa06117fSRoland Dreier 
901f4aad16aSMichael Halcrow out:
902aa06117fSRoland Dreier 	mutex_unlock(&mount_crypt_stat->global_auth_tok_list_mutex);
903aa06117fSRoland Dreier 	mutex_unlock(&crypt_stat->keysig_list_mutex);
904f4aad16aSMichael Halcrow 	return rc;
905f4aad16aSMichael Halcrow }
906f4aad16aSMichael Halcrow 
90717398957SMichael Halcrow /**
908237fead6SMichael Halcrow  * ecryptfs_set_default_crypt_stat_vals
90922e78fafSMichael Halcrow  * @crypt_stat: The inode's cryptographic context
91022e78fafSMichael Halcrow  * @mount_crypt_stat: The mount point's cryptographic context
911237fead6SMichael Halcrow  *
912237fead6SMichael Halcrow  * Default values in the event that policy does not override them.
913237fead6SMichael Halcrow  */
914237fead6SMichael Halcrow static void ecryptfs_set_default_crypt_stat_vals(
915237fead6SMichael Halcrow 	struct ecryptfs_crypt_stat *crypt_stat,
916237fead6SMichael Halcrow 	struct ecryptfs_mount_crypt_stat *mount_crypt_stat)
917237fead6SMichael Halcrow {
91817398957SMichael Halcrow 	ecryptfs_copy_mount_wide_flags_to_inode_flags(crypt_stat,
91917398957SMichael Halcrow 						      mount_crypt_stat);
920237fead6SMichael Halcrow 	ecryptfs_set_default_sizes(crypt_stat);
921237fead6SMichael Halcrow 	strcpy(crypt_stat->cipher, ECRYPTFS_DEFAULT_CIPHER);
922237fead6SMichael Halcrow 	crypt_stat->key_size = ECRYPTFS_DEFAULT_KEY_BYTES;
923e2bd99ecSMichael Halcrow 	crypt_stat->flags &= ~(ECRYPTFS_KEY_VALID);
924237fead6SMichael Halcrow 	crypt_stat->file_version = ECRYPTFS_FILE_VERSION;
925237fead6SMichael Halcrow 	crypt_stat->mount_crypt_stat = mount_crypt_stat;
926237fead6SMichael Halcrow }
927237fead6SMichael Halcrow 
928237fead6SMichael Halcrow /**
929237fead6SMichael Halcrow  * ecryptfs_new_file_context
930b59db43aSTyler Hicks  * @ecryptfs_inode: The eCryptfs inode
931237fead6SMichael Halcrow  *
932237fead6SMichael Halcrow  * If the crypto context for the file has not yet been established,
933237fead6SMichael Halcrow  * this is where we do that.  Establishing a new crypto context
934237fead6SMichael Halcrow  * involves the following decisions:
935237fead6SMichael Halcrow  *  - What cipher to use?
936237fead6SMichael Halcrow  *  - What set of authentication tokens to use?
937237fead6SMichael Halcrow  * Here we just worry about getting enough information into the
938237fead6SMichael Halcrow  * authentication tokens so that we know that they are available.
939237fead6SMichael Halcrow  * We associate the available authentication tokens with the new file
940237fead6SMichael Halcrow  * via the set of signatures in the crypt_stat struct.  Later, when
941237fead6SMichael Halcrow  * the headers are actually written out, we may again defer to
942237fead6SMichael Halcrow  * userspace to perform the encryption of the session key; for the
943237fead6SMichael Halcrow  * foreseeable future, this will be the case with public key packets.
944237fead6SMichael Halcrow  *
945237fead6SMichael Halcrow  * Returns zero on success; non-zero otherwise
946237fead6SMichael Halcrow  */
947b59db43aSTyler Hicks int ecryptfs_new_file_context(struct inode *ecryptfs_inode)
948237fead6SMichael Halcrow {
949237fead6SMichael Halcrow 	struct ecryptfs_crypt_stat *crypt_stat =
950b59db43aSTyler Hicks 	    &ecryptfs_inode_to_private(ecryptfs_inode)->crypt_stat;
951237fead6SMichael Halcrow 	struct ecryptfs_mount_crypt_stat *mount_crypt_stat =
952237fead6SMichael Halcrow 	    &ecryptfs_superblock_to_private(
953b59db43aSTyler Hicks 		    ecryptfs_inode->i_sb)->mount_crypt_stat;
954237fead6SMichael Halcrow 	int cipher_name_len;
955f4aad16aSMichael Halcrow 	int rc = 0;
956237fead6SMichael Halcrow 
957237fead6SMichael Halcrow 	ecryptfs_set_default_crypt_stat_vals(crypt_stat, mount_crypt_stat);
958af655dc6SMichael Halcrow 	crypt_stat->flags |= (ECRYPTFS_ENCRYPTED | ECRYPTFS_KEY_VALID);
95917398957SMichael Halcrow 	ecryptfs_copy_mount_wide_flags_to_inode_flags(crypt_stat,
96017398957SMichael Halcrow 						      mount_crypt_stat);
961f4aad16aSMichael Halcrow 	rc = ecryptfs_copy_mount_wide_sigs_to_inode_sigs(crypt_stat,
962f4aad16aSMichael Halcrow 							 mount_crypt_stat);
963f4aad16aSMichael Halcrow 	if (rc) {
964f4aad16aSMichael Halcrow 		printk(KERN_ERR "Error attempting to copy mount-wide key sigs "
965f4aad16aSMichael Halcrow 		       "to the inode key sigs; rc = [%d]\n", rc);
966f4aad16aSMichael Halcrow 		goto out;
967f4aad16aSMichael Halcrow 	}
968237fead6SMichael Halcrow 	cipher_name_len =
969237fead6SMichael Halcrow 		strlen(mount_crypt_stat->global_default_cipher_name);
970237fead6SMichael Halcrow 	memcpy(crypt_stat->cipher,
971237fead6SMichael Halcrow 	       mount_crypt_stat->global_default_cipher_name,
972237fead6SMichael Halcrow 	       cipher_name_len);
973237fead6SMichael Halcrow 	crypt_stat->cipher[cipher_name_len] = '\0';
974237fead6SMichael Halcrow 	crypt_stat->key_size =
975237fead6SMichael Halcrow 		mount_crypt_stat->global_default_cipher_key_size;
976237fead6SMichael Halcrow 	ecryptfs_generate_new_key(crypt_stat);
977237fead6SMichael Halcrow 	rc = ecryptfs_init_crypt_ctx(crypt_stat);
978237fead6SMichael Halcrow 	if (rc)
979237fead6SMichael Halcrow 		ecryptfs_printk(KERN_ERR, "Error initializing cryptographic "
980237fead6SMichael Halcrow 				"context for cipher [%s]: rc = [%d]\n",
981237fead6SMichael Halcrow 				crypt_stat->cipher, rc);
982f4aad16aSMichael Halcrow out:
983237fead6SMichael Halcrow 	return rc;
984237fead6SMichael Halcrow }
985237fead6SMichael Halcrow 
986237fead6SMichael Halcrow /**
9877a86617eSTyler Hicks  * ecryptfs_validate_marker - check for the ecryptfs marker
988237fead6SMichael Halcrow  * @data: The data block in which to check
989237fead6SMichael Halcrow  *
9907a86617eSTyler Hicks  * Returns zero if marker found; -EINVAL if not found
991237fead6SMichael Halcrow  */
9927a86617eSTyler Hicks static int ecryptfs_validate_marker(char *data)
993237fead6SMichael Halcrow {
994237fead6SMichael Halcrow 	u32 m_1, m_2;
995237fead6SMichael Halcrow 
99629335c6aSHarvey Harrison 	m_1 = get_unaligned_be32(data);
99729335c6aSHarvey Harrison 	m_2 = get_unaligned_be32(data + 4);
998237fead6SMichael Halcrow 	if ((m_1 ^ MAGIC_ECRYPTFS_MARKER) == m_2)
9997a86617eSTyler Hicks 		return 0;
1000237fead6SMichael Halcrow 	ecryptfs_printk(KERN_DEBUG, "m_1 = [0x%.8x]; m_2 = [0x%.8x]; "
1001237fead6SMichael Halcrow 			"MAGIC_ECRYPTFS_MARKER = [0x%.8x]\n", m_1, m_2,
1002237fead6SMichael Halcrow 			MAGIC_ECRYPTFS_MARKER);
1003237fead6SMichael Halcrow 	ecryptfs_printk(KERN_DEBUG, "(m_1 ^ MAGIC_ECRYPTFS_MARKER) = "
1004237fead6SMichael Halcrow 			"[0x%.8x]\n", (m_1 ^ MAGIC_ECRYPTFS_MARKER));
10057a86617eSTyler Hicks 	return -EINVAL;
1006237fead6SMichael Halcrow }
1007237fead6SMichael Halcrow 
1008237fead6SMichael Halcrow struct ecryptfs_flag_map_elem {
1009237fead6SMichael Halcrow 	u32 file_flag;
1010237fead6SMichael Halcrow 	u32 local_flag;
1011237fead6SMichael Halcrow };
1012237fead6SMichael Halcrow 
1013237fead6SMichael Halcrow /* Add support for additional flags by adding elements here. */
1014237fead6SMichael Halcrow static struct ecryptfs_flag_map_elem ecryptfs_flag_map[] = {
1015237fead6SMichael Halcrow 	{0x00000001, ECRYPTFS_ENABLE_HMAC},
1016dd2a3b7aSMichael Halcrow 	{0x00000002, ECRYPTFS_ENCRYPTED},
1017addd65adSMichael Halcrow 	{0x00000004, ECRYPTFS_METADATA_IN_XATTR},
1018addd65adSMichael Halcrow 	{0x00000008, ECRYPTFS_ENCRYPT_FILENAMES}
1019237fead6SMichael Halcrow };
1020237fead6SMichael Halcrow 
1021237fead6SMichael Halcrow /**
1022237fead6SMichael Halcrow  * ecryptfs_process_flags
102322e78fafSMichael Halcrow  * @crypt_stat: The cryptographic context
1024237fead6SMichael Halcrow  * @page_virt: Source data to be parsed
1025237fead6SMichael Halcrow  * @bytes_read: Updated with the number of bytes read
1026237fead6SMichael Halcrow  *
1027237fead6SMichael Halcrow  * Returns zero on success; non-zero if the flag set is invalid
1028237fead6SMichael Halcrow  */
1029237fead6SMichael Halcrow static int ecryptfs_process_flags(struct ecryptfs_crypt_stat *crypt_stat,
1030237fead6SMichael Halcrow 				  char *page_virt, int *bytes_read)
1031237fead6SMichael Halcrow {
1032237fead6SMichael Halcrow 	int rc = 0;
1033237fead6SMichael Halcrow 	int i;
1034237fead6SMichael Halcrow 	u32 flags;
1035237fead6SMichael Halcrow 
103629335c6aSHarvey Harrison 	flags = get_unaligned_be32(page_virt);
1037237fead6SMichael Halcrow 	for (i = 0; i < ((sizeof(ecryptfs_flag_map)
1038237fead6SMichael Halcrow 			  / sizeof(struct ecryptfs_flag_map_elem))); i++)
1039237fead6SMichael Halcrow 		if (flags & ecryptfs_flag_map[i].file_flag) {
1040e2bd99ecSMichael Halcrow 			crypt_stat->flags |= ecryptfs_flag_map[i].local_flag;
1041237fead6SMichael Halcrow 		} else
1042e2bd99ecSMichael Halcrow 			crypt_stat->flags &= ~(ecryptfs_flag_map[i].local_flag);
1043237fead6SMichael Halcrow 	/* Version is in top 8 bits of the 32-bit flag vector */
1044237fead6SMichael Halcrow 	crypt_stat->file_version = ((flags >> 24) & 0xFF);
1045237fead6SMichael Halcrow 	(*bytes_read) = 4;
1046237fead6SMichael Halcrow 	return rc;
1047237fead6SMichael Halcrow }
1048237fead6SMichael Halcrow 
1049237fead6SMichael Halcrow /**
1050237fead6SMichael Halcrow  * write_ecryptfs_marker
1051237fead6SMichael Halcrow  * @page_virt: The pointer to in a page to begin writing the marker
1052237fead6SMichael Halcrow  * @written: Number of bytes written
1053237fead6SMichael Halcrow  *
1054237fead6SMichael Halcrow  * Marker = 0x3c81b7f5
1055237fead6SMichael Halcrow  */
1056237fead6SMichael Halcrow static void write_ecryptfs_marker(char *page_virt, size_t *written)
1057237fead6SMichael Halcrow {
1058237fead6SMichael Halcrow 	u32 m_1, m_2;
1059237fead6SMichael Halcrow 
1060237fead6SMichael Halcrow 	get_random_bytes(&m_1, (MAGIC_ECRYPTFS_MARKER_SIZE_BYTES / 2));
1061237fead6SMichael Halcrow 	m_2 = (m_1 ^ MAGIC_ECRYPTFS_MARKER);
106229335c6aSHarvey Harrison 	put_unaligned_be32(m_1, page_virt);
106329335c6aSHarvey Harrison 	page_virt += (MAGIC_ECRYPTFS_MARKER_SIZE_BYTES / 2);
106429335c6aSHarvey Harrison 	put_unaligned_be32(m_2, page_virt);
1065237fead6SMichael Halcrow 	(*written) = MAGIC_ECRYPTFS_MARKER_SIZE_BYTES;
1066237fead6SMichael Halcrow }
1067237fead6SMichael Halcrow 
1068f4e60e6bSTyler Hicks void ecryptfs_write_crypt_stat_flags(char *page_virt,
1069f4e60e6bSTyler Hicks 				     struct ecryptfs_crypt_stat *crypt_stat,
1070237fead6SMichael Halcrow 				     size_t *written)
1071237fead6SMichael Halcrow {
1072237fead6SMichael Halcrow 	u32 flags = 0;
1073237fead6SMichael Halcrow 	int i;
1074237fead6SMichael Halcrow 
1075237fead6SMichael Halcrow 	for (i = 0; i < ((sizeof(ecryptfs_flag_map)
1076237fead6SMichael Halcrow 			  / sizeof(struct ecryptfs_flag_map_elem))); i++)
1077e2bd99ecSMichael Halcrow 		if (crypt_stat->flags & ecryptfs_flag_map[i].local_flag)
1078237fead6SMichael Halcrow 			flags |= ecryptfs_flag_map[i].file_flag;
1079237fead6SMichael Halcrow 	/* Version is in top 8 bits of the 32-bit flag vector */
1080237fead6SMichael Halcrow 	flags |= ((((u8)crypt_stat->file_version) << 24) & 0xFF000000);
108129335c6aSHarvey Harrison 	put_unaligned_be32(flags, page_virt);
1082237fead6SMichael Halcrow 	(*written) = 4;
1083237fead6SMichael Halcrow }
1084237fead6SMichael Halcrow 
1085237fead6SMichael Halcrow struct ecryptfs_cipher_code_str_map_elem {
1086237fead6SMichael Halcrow 	char cipher_str[16];
108719e66a67STrevor Highland 	u8 cipher_code;
1088237fead6SMichael Halcrow };
1089237fead6SMichael Halcrow 
1090237fead6SMichael Halcrow /* Add support for additional ciphers by adding elements here. The
1091237fead6SMichael Halcrow  * cipher_code is whatever OpenPGP applicatoins use to identify the
1092237fead6SMichael Halcrow  * ciphers. List in order of probability. */
1093237fead6SMichael Halcrow static struct ecryptfs_cipher_code_str_map_elem
1094237fead6SMichael Halcrow ecryptfs_cipher_code_str_map[] = {
1095237fead6SMichael Halcrow 	{"aes",RFC2440_CIPHER_AES_128 },
1096237fead6SMichael Halcrow 	{"blowfish", RFC2440_CIPHER_BLOWFISH},
1097237fead6SMichael Halcrow 	{"des3_ede", RFC2440_CIPHER_DES3_EDE},
1098237fead6SMichael Halcrow 	{"cast5", RFC2440_CIPHER_CAST_5},
1099237fead6SMichael Halcrow 	{"twofish", RFC2440_CIPHER_TWOFISH},
1100237fead6SMichael Halcrow 	{"cast6", RFC2440_CIPHER_CAST_6},
1101237fead6SMichael Halcrow 	{"aes", RFC2440_CIPHER_AES_192},
1102237fead6SMichael Halcrow 	{"aes", RFC2440_CIPHER_AES_256}
1103237fead6SMichael Halcrow };
1104237fead6SMichael Halcrow 
1105237fead6SMichael Halcrow /**
1106237fead6SMichael Halcrow  * ecryptfs_code_for_cipher_string
11079c79f34fSMichael Halcrow  * @cipher_name: The string alias for the cipher
11089c79f34fSMichael Halcrow  * @key_bytes: Length of key in bytes; used for AES code selection
1109237fead6SMichael Halcrow  *
1110237fead6SMichael Halcrow  * Returns zero on no match, or the cipher code on match
1111237fead6SMichael Halcrow  */
11129c79f34fSMichael Halcrow u8 ecryptfs_code_for_cipher_string(char *cipher_name, size_t key_bytes)
1113237fead6SMichael Halcrow {
1114237fead6SMichael Halcrow 	int i;
111519e66a67STrevor Highland 	u8 code = 0;
1116237fead6SMichael Halcrow 	struct ecryptfs_cipher_code_str_map_elem *map =
1117237fead6SMichael Halcrow 		ecryptfs_cipher_code_str_map;
1118237fead6SMichael Halcrow 
11199c79f34fSMichael Halcrow 	if (strcmp(cipher_name, "aes") == 0) {
11209c79f34fSMichael Halcrow 		switch (key_bytes) {
1121237fead6SMichael Halcrow 		case 16:
1122237fead6SMichael Halcrow 			code = RFC2440_CIPHER_AES_128;
1123237fead6SMichael Halcrow 			break;
1124237fead6SMichael Halcrow 		case 24:
1125237fead6SMichael Halcrow 			code = RFC2440_CIPHER_AES_192;
1126237fead6SMichael Halcrow 			break;
1127237fead6SMichael Halcrow 		case 32:
1128237fead6SMichael Halcrow 			code = RFC2440_CIPHER_AES_256;
1129237fead6SMichael Halcrow 		}
1130237fead6SMichael Halcrow 	} else {
1131237fead6SMichael Halcrow 		for (i = 0; i < ARRAY_SIZE(ecryptfs_cipher_code_str_map); i++)
11329c79f34fSMichael Halcrow 			if (strcmp(cipher_name, map[i].cipher_str) == 0) {
1133237fead6SMichael Halcrow 				code = map[i].cipher_code;
1134237fead6SMichael Halcrow 				break;
1135237fead6SMichael Halcrow 			}
1136237fead6SMichael Halcrow 	}
1137237fead6SMichael Halcrow 	return code;
1138237fead6SMichael Halcrow }
1139237fead6SMichael Halcrow 
1140237fead6SMichael Halcrow /**
1141237fead6SMichael Halcrow  * ecryptfs_cipher_code_to_string
1142237fead6SMichael Halcrow  * @str: Destination to write out the cipher name
1143237fead6SMichael Halcrow  * @cipher_code: The code to convert to cipher name string
1144237fead6SMichael Halcrow  *
1145237fead6SMichael Halcrow  * Returns zero on success
1146237fead6SMichael Halcrow  */
114719e66a67STrevor Highland int ecryptfs_cipher_code_to_string(char *str, u8 cipher_code)
1148237fead6SMichael Halcrow {
1149237fead6SMichael Halcrow 	int rc = 0;
1150237fead6SMichael Halcrow 	int i;
1151237fead6SMichael Halcrow 
1152237fead6SMichael Halcrow 	str[0] = '\0';
1153237fead6SMichael Halcrow 	for (i = 0; i < ARRAY_SIZE(ecryptfs_cipher_code_str_map); i++)
1154237fead6SMichael Halcrow 		if (cipher_code == ecryptfs_cipher_code_str_map[i].cipher_code)
1155237fead6SMichael Halcrow 			strcpy(str, ecryptfs_cipher_code_str_map[i].cipher_str);
1156237fead6SMichael Halcrow 	if (str[0] == '\0') {
1157237fead6SMichael Halcrow 		ecryptfs_printk(KERN_WARNING, "Cipher code not recognized: "
1158237fead6SMichael Halcrow 				"[%d]\n", cipher_code);
1159237fead6SMichael Halcrow 		rc = -EINVAL;
1160237fead6SMichael Halcrow 	}
1161237fead6SMichael Halcrow 	return rc;
1162237fead6SMichael Halcrow }
1163237fead6SMichael Halcrow 
1164778aeb42STyler Hicks int ecryptfs_read_and_validate_header_region(struct inode *inode)
1165dd2a3b7aSMichael Halcrow {
1166778aeb42STyler Hicks 	u8 file_size[ECRYPTFS_SIZE_AND_MARKER_BYTES];
1167778aeb42STyler Hicks 	u8 *marker = file_size + ECRYPTFS_FILE_SIZE_BYTES;
1168dd2a3b7aSMichael Halcrow 	int rc;
1169dd2a3b7aSMichael Halcrow 
1170778aeb42STyler Hicks 	rc = ecryptfs_read_lower(file_size, 0, ECRYPTFS_SIZE_AND_MARKER_BYTES,
1171778aeb42STyler Hicks 				 inode);
1172778aeb42STyler Hicks 	if (rc < ECRYPTFS_SIZE_AND_MARKER_BYTES)
1173778aeb42STyler Hicks 		return rc >= 0 ? -EINVAL : rc;
1174778aeb42STyler Hicks 	rc = ecryptfs_validate_marker(marker);
1175778aeb42STyler Hicks 	if (!rc)
1176778aeb42STyler Hicks 		ecryptfs_i_size_init(file_size, inode);
1177dd2a3b7aSMichael Halcrow 	return rc;
1178dd2a3b7aSMichael Halcrow }
1179dd2a3b7aSMichael Halcrow 
1180e77a56ddSMichael Halcrow void
1181e77a56ddSMichael Halcrow ecryptfs_write_header_metadata(char *virt,
1182e77a56ddSMichael Halcrow 			       struct ecryptfs_crypt_stat *crypt_stat,
1183237fead6SMichael Halcrow 			       size_t *written)
1184237fead6SMichael Halcrow {
1185237fead6SMichael Halcrow 	u32 header_extent_size;
1186237fead6SMichael Halcrow 	u16 num_header_extents_at_front;
1187237fead6SMichael Halcrow 
118845eaab79SMichael Halcrow 	header_extent_size = (u32)crypt_stat->extent_size;
1189237fead6SMichael Halcrow 	num_header_extents_at_front =
1190fa3ef1cbSTyler Hicks 		(u16)(crypt_stat->metadata_size / crypt_stat->extent_size);
119129335c6aSHarvey Harrison 	put_unaligned_be32(header_extent_size, virt);
1192237fead6SMichael Halcrow 	virt += 4;
119329335c6aSHarvey Harrison 	put_unaligned_be16(num_header_extents_at_front, virt);
1194237fead6SMichael Halcrow 	(*written) = 6;
1195237fead6SMichael Halcrow }
1196237fead6SMichael Halcrow 
119730632870STyler Hicks struct kmem_cache *ecryptfs_header_cache;
1198237fead6SMichael Halcrow 
1199237fead6SMichael Halcrow /**
1200237fead6SMichael Halcrow  * ecryptfs_write_headers_virt
120122e78fafSMichael Halcrow  * @page_virt: The virtual address to write the headers to
120287b811c3SEric Sandeen  * @max: The size of memory allocated at page_virt
120322e78fafSMichael Halcrow  * @size: Set to the number of bytes written by this function
120422e78fafSMichael Halcrow  * @crypt_stat: The cryptographic context
120522e78fafSMichael Halcrow  * @ecryptfs_dentry: The eCryptfs dentry
1206237fead6SMichael Halcrow  *
1207237fead6SMichael Halcrow  * Format version: 1
1208237fead6SMichael Halcrow  *
1209237fead6SMichael Halcrow  *   Header Extent:
1210237fead6SMichael Halcrow  *     Octets 0-7:        Unencrypted file size (big-endian)
1211237fead6SMichael Halcrow  *     Octets 8-15:       eCryptfs special marker
1212237fead6SMichael Halcrow  *     Octets 16-19:      Flags
1213237fead6SMichael Halcrow  *      Octet 16:         File format version number (between 0 and 255)
1214237fead6SMichael Halcrow  *      Octets 17-18:     Reserved
1215237fead6SMichael Halcrow  *      Octet 19:         Bit 1 (lsb): Reserved
1216237fead6SMichael Halcrow  *                        Bit 2: Encrypted?
1217237fead6SMichael Halcrow  *                        Bits 3-8: Reserved
1218237fead6SMichael Halcrow  *     Octets 20-23:      Header extent size (big-endian)
1219237fead6SMichael Halcrow  *     Octets 24-25:      Number of header extents at front of file
1220237fead6SMichael Halcrow  *                        (big-endian)
1221237fead6SMichael Halcrow  *     Octet  26:         Begin RFC 2440 authentication token packet set
1222237fead6SMichael Halcrow  *   Data Extent 0:
1223237fead6SMichael Halcrow  *     Lower data (CBC encrypted)
1224237fead6SMichael Halcrow  *   Data Extent 1:
1225237fead6SMichael Halcrow  *     Lower data (CBC encrypted)
1226237fead6SMichael Halcrow  *   ...
1227237fead6SMichael Halcrow  *
1228237fead6SMichael Halcrow  * Returns zero on success
1229237fead6SMichael Halcrow  */
123087b811c3SEric Sandeen static int ecryptfs_write_headers_virt(char *page_virt, size_t max,
123187b811c3SEric Sandeen 				       size_t *size,
1232237fead6SMichael Halcrow 				       struct ecryptfs_crypt_stat *crypt_stat,
1233237fead6SMichael Halcrow 				       struct dentry *ecryptfs_dentry)
1234237fead6SMichael Halcrow {
1235237fead6SMichael Halcrow 	int rc;
1236237fead6SMichael Halcrow 	size_t written;
1237237fead6SMichael Halcrow 	size_t offset;
1238237fead6SMichael Halcrow 
1239237fead6SMichael Halcrow 	offset = ECRYPTFS_FILE_SIZE_BYTES;
1240237fead6SMichael Halcrow 	write_ecryptfs_marker((page_virt + offset), &written);
1241237fead6SMichael Halcrow 	offset += written;
1242f4e60e6bSTyler Hicks 	ecryptfs_write_crypt_stat_flags((page_virt + offset), crypt_stat,
1243f4e60e6bSTyler Hicks 					&written);
1244237fead6SMichael Halcrow 	offset += written;
1245e77a56ddSMichael Halcrow 	ecryptfs_write_header_metadata((page_virt + offset), crypt_stat,
1246e77a56ddSMichael Halcrow 				       &written);
1247237fead6SMichael Halcrow 	offset += written;
1248237fead6SMichael Halcrow 	rc = ecryptfs_generate_key_packet_set((page_virt + offset), crypt_stat,
1249237fead6SMichael Halcrow 					      ecryptfs_dentry, &written,
125087b811c3SEric Sandeen 					      max - offset);
1251237fead6SMichael Halcrow 	if (rc)
1252237fead6SMichael Halcrow 		ecryptfs_printk(KERN_WARNING, "Error generating key packet "
1253237fead6SMichael Halcrow 				"set; rc = [%d]\n", rc);
1254dd2a3b7aSMichael Halcrow 	if (size) {
1255dd2a3b7aSMichael Halcrow 		offset += written;
1256dd2a3b7aSMichael Halcrow 		*size = offset;
1257dd2a3b7aSMichael Halcrow 	}
1258dd2a3b7aSMichael Halcrow 	return rc;
1259dd2a3b7aSMichael Halcrow }
1260dd2a3b7aSMichael Halcrow 
126122e78fafSMichael Halcrow static int
1262b59db43aSTyler Hicks ecryptfs_write_metadata_to_contents(struct inode *ecryptfs_inode,
12638faece5fSTyler Hicks 				    char *virt, size_t virt_len)
1264dd2a3b7aSMichael Halcrow {
1265d7cdc5feSMichael Halcrow 	int rc;
1266dd2a3b7aSMichael Halcrow 
1267b59db43aSTyler Hicks 	rc = ecryptfs_write_lower(ecryptfs_inode, virt,
12688faece5fSTyler Hicks 				  0, virt_len);
126996a7b9c2STyler Hicks 	if (rc < 0)
1270d7cdc5feSMichael Halcrow 		printk(KERN_ERR "%s: Error attempting to write header "
127196a7b9c2STyler Hicks 		       "information to lower file; rc = [%d]\n", __func__, rc);
127296a7b9c2STyler Hicks 	else
127396a7b9c2STyler Hicks 		rc = 0;
127470456600SMichael Halcrow 	return rc;
1275dd2a3b7aSMichael Halcrow }
1276dd2a3b7aSMichael Halcrow 
127722e78fafSMichael Halcrow static int
127822e78fafSMichael Halcrow ecryptfs_write_metadata_to_xattr(struct dentry *ecryptfs_dentry,
1279dd2a3b7aSMichael Halcrow 				 char *page_virt, size_t size)
1280dd2a3b7aSMichael Halcrow {
1281dd2a3b7aSMichael Halcrow 	int rc;
1282dd2a3b7aSMichael Halcrow 
1283dd2a3b7aSMichael Halcrow 	rc = ecryptfs_setxattr(ecryptfs_dentry, ECRYPTFS_XATTR_NAME, page_virt,
1284dd2a3b7aSMichael Halcrow 			       size, 0);
1285237fead6SMichael Halcrow 	return rc;
1286237fead6SMichael Halcrow }
1287237fead6SMichael Halcrow 
12888faece5fSTyler Hicks static unsigned long ecryptfs_get_zeroed_pages(gfp_t gfp_mask,
12898faece5fSTyler Hicks 					       unsigned int order)
12908faece5fSTyler Hicks {
12918faece5fSTyler Hicks 	struct page *page;
12928faece5fSTyler Hicks 
12938faece5fSTyler Hicks 	page = alloc_pages(gfp_mask | __GFP_ZERO, order);
12948faece5fSTyler Hicks 	if (page)
12958faece5fSTyler Hicks 		return (unsigned long) page_address(page);
12968faece5fSTyler Hicks 	return 0;
12978faece5fSTyler Hicks }
12988faece5fSTyler Hicks 
1299237fead6SMichael Halcrow /**
1300dd2a3b7aSMichael Halcrow  * ecryptfs_write_metadata
1301b59db43aSTyler Hicks  * @ecryptfs_dentry: The eCryptfs dentry, which should be negative
1302b59db43aSTyler Hicks  * @ecryptfs_inode: The newly created eCryptfs inode
1303237fead6SMichael Halcrow  *
1304237fead6SMichael Halcrow  * Write the file headers out.  This will likely involve a userspace
1305237fead6SMichael Halcrow  * callout, in which the session key is encrypted with one or more
1306237fead6SMichael Halcrow  * public keys and/or the passphrase necessary to do the encryption is
1307237fead6SMichael Halcrow  * retrieved via a prompt.  Exactly what happens at this point should
1308237fead6SMichael Halcrow  * be policy-dependent.
1309237fead6SMichael Halcrow  *
1310237fead6SMichael Halcrow  * Returns zero on success; non-zero on error
1311237fead6SMichael Halcrow  */
1312b59db43aSTyler Hicks int ecryptfs_write_metadata(struct dentry *ecryptfs_dentry,
1313b59db43aSTyler Hicks 			    struct inode *ecryptfs_inode)
1314237fead6SMichael Halcrow {
1315d7cdc5feSMichael Halcrow 	struct ecryptfs_crypt_stat *crypt_stat =
1316b59db43aSTyler Hicks 		&ecryptfs_inode_to_private(ecryptfs_inode)->crypt_stat;
13178faece5fSTyler Hicks 	unsigned int order;
1318cc11beffSMichael Halcrow 	char *virt;
13198faece5fSTyler Hicks 	size_t virt_len;
1320d7cdc5feSMichael Halcrow 	size_t size = 0;
1321237fead6SMichael Halcrow 	int rc = 0;
1322237fead6SMichael Halcrow 
1323e2bd99ecSMichael Halcrow 	if (likely(crypt_stat->flags & ECRYPTFS_ENCRYPTED)) {
1324e2bd99ecSMichael Halcrow 		if (!(crypt_stat->flags & ECRYPTFS_KEY_VALID)) {
1325d7cdc5feSMichael Halcrow 			printk(KERN_ERR "Key is invalid; bailing out\n");
1326237fead6SMichael Halcrow 			rc = -EINVAL;
1327237fead6SMichael Halcrow 			goto out;
1328237fead6SMichael Halcrow 		}
1329237fead6SMichael Halcrow 	} else {
1330cc11beffSMichael Halcrow 		printk(KERN_WARNING "%s: Encrypted flag not set\n",
133118d1dbf1SHarvey Harrison 		       __func__);
1332237fead6SMichael Halcrow 		rc = -EINVAL;
1333237fead6SMichael Halcrow 		goto out;
1334237fead6SMichael Halcrow 	}
1335fa3ef1cbSTyler Hicks 	virt_len = crypt_stat->metadata_size;
13368faece5fSTyler Hicks 	order = get_order(virt_len);
1337237fead6SMichael Halcrow 	/* Released in this function */
13388faece5fSTyler Hicks 	virt = (char *)ecryptfs_get_zeroed_pages(GFP_KERNEL, order);
1339cc11beffSMichael Halcrow 	if (!virt) {
134018d1dbf1SHarvey Harrison 		printk(KERN_ERR "%s: Out of memory\n", __func__);
1341237fead6SMichael Halcrow 		rc = -ENOMEM;
1342237fead6SMichael Halcrow 		goto out;
1343237fead6SMichael Halcrow 	}
1344bd4f0fe8STyler Hicks 	/* Zeroed page ensures the in-header unencrypted i_size is set to 0 */
13458faece5fSTyler Hicks 	rc = ecryptfs_write_headers_virt(virt, virt_len, &size, crypt_stat,
13468faece5fSTyler Hicks 					 ecryptfs_dentry);
1347237fead6SMichael Halcrow 	if (unlikely(rc)) {
1348cc11beffSMichael Halcrow 		printk(KERN_ERR "%s: Error whilst writing headers; rc = [%d]\n",
134918d1dbf1SHarvey Harrison 		       __func__, rc);
1350237fead6SMichael Halcrow 		goto out_free;
1351237fead6SMichael Halcrow 	}
1352dd2a3b7aSMichael Halcrow 	if (crypt_stat->flags & ECRYPTFS_METADATA_IN_XATTR)
13538faece5fSTyler Hicks 		rc = ecryptfs_write_metadata_to_xattr(ecryptfs_dentry, virt,
13548faece5fSTyler Hicks 						      size);
1355dd2a3b7aSMichael Halcrow 	else
1356b59db43aSTyler Hicks 		rc = ecryptfs_write_metadata_to_contents(ecryptfs_inode, virt,
13578faece5fSTyler Hicks 							 virt_len);
1358dd2a3b7aSMichael Halcrow 	if (rc) {
1359cc11beffSMichael Halcrow 		printk(KERN_ERR "%s: Error writing metadata out to lower file; "
136018d1dbf1SHarvey Harrison 		       "rc = [%d]\n", __func__, rc);
1361dd2a3b7aSMichael Halcrow 		goto out_free;
1362237fead6SMichael Halcrow 	}
1363237fead6SMichael Halcrow out_free:
13648faece5fSTyler Hicks 	free_pages((unsigned long)virt, order);
1365237fead6SMichael Halcrow out:
1366237fead6SMichael Halcrow 	return rc;
1367237fead6SMichael Halcrow }
1368237fead6SMichael Halcrow 
1369dd2a3b7aSMichael Halcrow #define ECRYPTFS_DONT_VALIDATE_HEADER_SIZE 0
1370dd2a3b7aSMichael Halcrow #define ECRYPTFS_VALIDATE_HEADER_SIZE 1
1371237fead6SMichael Halcrow static int parse_header_metadata(struct ecryptfs_crypt_stat *crypt_stat,
1372dd2a3b7aSMichael Halcrow 				 char *virt, int *bytes_read,
1373dd2a3b7aSMichael Halcrow 				 int validate_header_size)
1374237fead6SMichael Halcrow {
1375237fead6SMichael Halcrow 	int rc = 0;
1376237fead6SMichael Halcrow 	u32 header_extent_size;
1377237fead6SMichael Halcrow 	u16 num_header_extents_at_front;
1378237fead6SMichael Halcrow 
137929335c6aSHarvey Harrison 	header_extent_size = get_unaligned_be32(virt);
138029335c6aSHarvey Harrison 	virt += sizeof(__be32);
138129335c6aSHarvey Harrison 	num_header_extents_at_front = get_unaligned_be16(virt);
1382fa3ef1cbSTyler Hicks 	crypt_stat->metadata_size = (((size_t)num_header_extents_at_front
1383cc11beffSMichael Halcrow 				     * (size_t)header_extent_size));
138429335c6aSHarvey Harrison 	(*bytes_read) = (sizeof(__be32) + sizeof(__be16));
1385dd2a3b7aSMichael Halcrow 	if ((validate_header_size == ECRYPTFS_VALIDATE_HEADER_SIZE)
1386fa3ef1cbSTyler Hicks 	    && (crypt_stat->metadata_size
1387dd2a3b7aSMichael Halcrow 		< ECRYPTFS_MINIMUM_HEADER_EXTENT_SIZE)) {
1388237fead6SMichael Halcrow 		rc = -EINVAL;
1389cc11beffSMichael Halcrow 		printk(KERN_WARNING "Invalid header size: [%zd]\n",
1390fa3ef1cbSTyler Hicks 		       crypt_stat->metadata_size);
1391237fead6SMichael Halcrow 	}
1392237fead6SMichael Halcrow 	return rc;
1393237fead6SMichael Halcrow }
1394237fead6SMichael Halcrow 
1395237fead6SMichael Halcrow /**
1396237fead6SMichael Halcrow  * set_default_header_data
139722e78fafSMichael Halcrow  * @crypt_stat: The cryptographic context
1398237fead6SMichael Halcrow  *
1399237fead6SMichael Halcrow  * For version 0 file format; this function is only for backwards
1400237fead6SMichael Halcrow  * compatibility for files created with the prior versions of
1401237fead6SMichael Halcrow  * eCryptfs.
1402237fead6SMichael Halcrow  */
1403237fead6SMichael Halcrow static void set_default_header_data(struct ecryptfs_crypt_stat *crypt_stat)
1404237fead6SMichael Halcrow {
1405fa3ef1cbSTyler Hicks 	crypt_stat->metadata_size = ECRYPTFS_MINIMUM_HEADER_EXTENT_SIZE;
1406237fead6SMichael Halcrow }
1407237fead6SMichael Halcrow 
14083aeb86eaSTyler Hicks void ecryptfs_i_size_init(const char *page_virt, struct inode *inode)
14093aeb86eaSTyler Hicks {
14103aeb86eaSTyler Hicks 	struct ecryptfs_mount_crypt_stat *mount_crypt_stat;
14113aeb86eaSTyler Hicks 	struct ecryptfs_crypt_stat *crypt_stat;
14123aeb86eaSTyler Hicks 	u64 file_size;
14133aeb86eaSTyler Hicks 
14143aeb86eaSTyler Hicks 	crypt_stat = &ecryptfs_inode_to_private(inode)->crypt_stat;
14153aeb86eaSTyler Hicks 	mount_crypt_stat =
14163aeb86eaSTyler Hicks 		&ecryptfs_superblock_to_private(inode->i_sb)->mount_crypt_stat;
14173aeb86eaSTyler Hicks 	if (mount_crypt_stat->flags & ECRYPTFS_ENCRYPTED_VIEW_ENABLED) {
14183aeb86eaSTyler Hicks 		file_size = i_size_read(ecryptfs_inode_to_lower(inode));
14193aeb86eaSTyler Hicks 		if (crypt_stat->flags & ECRYPTFS_METADATA_IN_XATTR)
14203aeb86eaSTyler Hicks 			file_size += crypt_stat->metadata_size;
14213aeb86eaSTyler Hicks 	} else
14223aeb86eaSTyler Hicks 		file_size = get_unaligned_be64(page_virt);
14233aeb86eaSTyler Hicks 	i_size_write(inode, (loff_t)file_size);
14243aeb86eaSTyler Hicks 	crypt_stat->flags |= ECRYPTFS_I_SIZE_INITIALIZED;
14253aeb86eaSTyler Hicks }
14263aeb86eaSTyler Hicks 
1427237fead6SMichael Halcrow /**
1428237fead6SMichael Halcrow  * ecryptfs_read_headers_virt
142922e78fafSMichael Halcrow  * @page_virt: The virtual address into which to read the headers
143022e78fafSMichael Halcrow  * @crypt_stat: The cryptographic context
143122e78fafSMichael Halcrow  * @ecryptfs_dentry: The eCryptfs dentry
143222e78fafSMichael Halcrow  * @validate_header_size: Whether to validate the header size while reading
1433237fead6SMichael Halcrow  *
1434237fead6SMichael Halcrow  * Read/parse the header data. The header format is detailed in the
1435237fead6SMichael Halcrow  * comment block for the ecryptfs_write_headers_virt() function.
1436237fead6SMichael Halcrow  *
1437237fead6SMichael Halcrow  * Returns zero on success
1438237fead6SMichael Halcrow  */
1439237fead6SMichael Halcrow static int ecryptfs_read_headers_virt(char *page_virt,
1440237fead6SMichael Halcrow 				      struct ecryptfs_crypt_stat *crypt_stat,
1441dd2a3b7aSMichael Halcrow 				      struct dentry *ecryptfs_dentry,
1442dd2a3b7aSMichael Halcrow 				      int validate_header_size)
1443237fead6SMichael Halcrow {
1444237fead6SMichael Halcrow 	int rc = 0;
1445237fead6SMichael Halcrow 	int offset;
1446237fead6SMichael Halcrow 	int bytes_read;
1447237fead6SMichael Halcrow 
1448237fead6SMichael Halcrow 	ecryptfs_set_default_sizes(crypt_stat);
1449237fead6SMichael Halcrow 	crypt_stat->mount_crypt_stat = &ecryptfs_superblock_to_private(
1450237fead6SMichael Halcrow 		ecryptfs_dentry->d_sb)->mount_crypt_stat;
1451237fead6SMichael Halcrow 	offset = ECRYPTFS_FILE_SIZE_BYTES;
14527a86617eSTyler Hicks 	rc = ecryptfs_validate_marker(page_virt + offset);
14537a86617eSTyler Hicks 	if (rc)
1454237fead6SMichael Halcrow 		goto out;
14553aeb86eaSTyler Hicks 	if (!(crypt_stat->flags & ECRYPTFS_I_SIZE_INITIALIZED))
14563aeb86eaSTyler Hicks 		ecryptfs_i_size_init(page_virt, ecryptfs_dentry->d_inode);
1457237fead6SMichael Halcrow 	offset += MAGIC_ECRYPTFS_MARKER_SIZE_BYTES;
1458237fead6SMichael Halcrow 	rc = ecryptfs_process_flags(crypt_stat, (page_virt + offset),
1459237fead6SMichael Halcrow 				    &bytes_read);
1460237fead6SMichael Halcrow 	if (rc) {
1461237fead6SMichael Halcrow 		ecryptfs_printk(KERN_WARNING, "Error processing flags\n");
1462237fead6SMichael Halcrow 		goto out;
1463237fead6SMichael Halcrow 	}
1464237fead6SMichael Halcrow 	if (crypt_stat->file_version > ECRYPTFS_SUPPORTED_FILE_VERSION) {
1465237fead6SMichael Halcrow 		ecryptfs_printk(KERN_WARNING, "File version is [%d]; only "
1466237fead6SMichael Halcrow 				"file version [%d] is supported by this "
1467237fead6SMichael Halcrow 				"version of eCryptfs\n",
1468237fead6SMichael Halcrow 				crypt_stat->file_version,
1469237fead6SMichael Halcrow 				ECRYPTFS_SUPPORTED_FILE_VERSION);
1470237fead6SMichael Halcrow 		rc = -EINVAL;
1471237fead6SMichael Halcrow 		goto out;
1472237fead6SMichael Halcrow 	}
1473237fead6SMichael Halcrow 	offset += bytes_read;
1474237fead6SMichael Halcrow 	if (crypt_stat->file_version >= 1) {
1475237fead6SMichael Halcrow 		rc = parse_header_metadata(crypt_stat, (page_virt + offset),
1476dd2a3b7aSMichael Halcrow 					   &bytes_read, validate_header_size);
1477237fead6SMichael Halcrow 		if (rc) {
1478237fead6SMichael Halcrow 			ecryptfs_printk(KERN_WARNING, "Error reading header "
1479237fead6SMichael Halcrow 					"metadata; rc = [%d]\n", rc);
1480237fead6SMichael Halcrow 		}
1481237fead6SMichael Halcrow 		offset += bytes_read;
1482237fead6SMichael Halcrow 	} else
1483237fead6SMichael Halcrow 		set_default_header_data(crypt_stat);
1484237fead6SMichael Halcrow 	rc = ecryptfs_parse_packet_set(crypt_stat, (page_virt + offset),
1485237fead6SMichael Halcrow 				       ecryptfs_dentry);
1486237fead6SMichael Halcrow out:
1487237fead6SMichael Halcrow 	return rc;
1488237fead6SMichael Halcrow }
1489237fead6SMichael Halcrow 
1490237fead6SMichael Halcrow /**
1491dd2a3b7aSMichael Halcrow  * ecryptfs_read_xattr_region
149222e78fafSMichael Halcrow  * @page_virt: The vitual address into which to read the xattr data
14932ed92554SMichael Halcrow  * @ecryptfs_inode: The eCryptfs inode
1494dd2a3b7aSMichael Halcrow  *
1495dd2a3b7aSMichael Halcrow  * Attempts to read the crypto metadata from the extended attribute
1496dd2a3b7aSMichael Halcrow  * region of the lower file.
149722e78fafSMichael Halcrow  *
149822e78fafSMichael Halcrow  * Returns zero on success; non-zero on error
1499dd2a3b7aSMichael Halcrow  */
1500d7cdc5feSMichael Halcrow int ecryptfs_read_xattr_region(char *page_virt, struct inode *ecryptfs_inode)
1501dd2a3b7aSMichael Halcrow {
1502d7cdc5feSMichael Halcrow 	struct dentry *lower_dentry =
1503d7cdc5feSMichael Halcrow 		ecryptfs_inode_to_private(ecryptfs_inode)->lower_file->f_dentry;
1504dd2a3b7aSMichael Halcrow 	ssize_t size;
1505dd2a3b7aSMichael Halcrow 	int rc = 0;
1506dd2a3b7aSMichael Halcrow 
1507d7cdc5feSMichael Halcrow 	size = ecryptfs_getxattr_lower(lower_dentry, ECRYPTFS_XATTR_NAME,
1508dd2a3b7aSMichael Halcrow 				       page_virt, ECRYPTFS_DEFAULT_EXTENT_SIZE);
1509dd2a3b7aSMichael Halcrow 	if (size < 0) {
151025bd8174SMichael Halcrow 		if (unlikely(ecryptfs_verbosity > 0))
151125bd8174SMichael Halcrow 			printk(KERN_INFO "Error attempting to read the [%s] "
151225bd8174SMichael Halcrow 			       "xattr from the lower file; return value = "
151325bd8174SMichael Halcrow 			       "[%zd]\n", ECRYPTFS_XATTR_NAME, size);
1514dd2a3b7aSMichael Halcrow 		rc = -EINVAL;
1515dd2a3b7aSMichael Halcrow 		goto out;
1516dd2a3b7aSMichael Halcrow 	}
1517dd2a3b7aSMichael Halcrow out:
1518dd2a3b7aSMichael Halcrow 	return rc;
1519dd2a3b7aSMichael Halcrow }
1520dd2a3b7aSMichael Halcrow 
1521778aeb42STyler Hicks int ecryptfs_read_and_validate_xattr_region(struct dentry *dentry,
15223b06b3ebSTyler Hicks 					    struct inode *inode)
1523dd2a3b7aSMichael Halcrow {
1524778aeb42STyler Hicks 	u8 file_size[ECRYPTFS_SIZE_AND_MARKER_BYTES];
1525778aeb42STyler Hicks 	u8 *marker = file_size + ECRYPTFS_FILE_SIZE_BYTES;
1526dd2a3b7aSMichael Halcrow 	int rc;
1527dd2a3b7aSMichael Halcrow 
1528778aeb42STyler Hicks 	rc = ecryptfs_getxattr_lower(ecryptfs_dentry_to_lower(dentry),
1529778aeb42STyler Hicks 				     ECRYPTFS_XATTR_NAME, file_size,
1530778aeb42STyler Hicks 				     ECRYPTFS_SIZE_AND_MARKER_BYTES);
1531778aeb42STyler Hicks 	if (rc < ECRYPTFS_SIZE_AND_MARKER_BYTES)
1532778aeb42STyler Hicks 		return rc >= 0 ? -EINVAL : rc;
1533778aeb42STyler Hicks 	rc = ecryptfs_validate_marker(marker);
1534778aeb42STyler Hicks 	if (!rc)
1535778aeb42STyler Hicks 		ecryptfs_i_size_init(file_size, inode);
1536dd2a3b7aSMichael Halcrow 	return rc;
1537dd2a3b7aSMichael Halcrow }
1538dd2a3b7aSMichael Halcrow 
1539dd2a3b7aSMichael Halcrow /**
1540dd2a3b7aSMichael Halcrow  * ecryptfs_read_metadata
1541dd2a3b7aSMichael Halcrow  *
1542dd2a3b7aSMichael Halcrow  * Common entry point for reading file metadata. From here, we could
1543dd2a3b7aSMichael Halcrow  * retrieve the header information from the header region of the file,
1544dd2a3b7aSMichael Halcrow  * the xattr region of the file, or some other repostory that is
1545dd2a3b7aSMichael Halcrow  * stored separately from the file itself. The current implementation
1546dd2a3b7aSMichael Halcrow  * supports retrieving the metadata information from the file contents
1547dd2a3b7aSMichael Halcrow  * and from the xattr region.
1548237fead6SMichael Halcrow  *
1549237fead6SMichael Halcrow  * Returns zero if valid headers found and parsed; non-zero otherwise
1550237fead6SMichael Halcrow  */
1551d7cdc5feSMichael Halcrow int ecryptfs_read_metadata(struct dentry *ecryptfs_dentry)
1552237fead6SMichael Halcrow {
1553bb450361STim Gardner 	int rc;
1554bb450361STim Gardner 	char *page_virt;
1555d7cdc5feSMichael Halcrow 	struct inode *ecryptfs_inode = ecryptfs_dentry->d_inode;
1556237fead6SMichael Halcrow 	struct ecryptfs_crypt_stat *crypt_stat =
1557d7cdc5feSMichael Halcrow 	    &ecryptfs_inode_to_private(ecryptfs_inode)->crypt_stat;
1558e77a56ddSMichael Halcrow 	struct ecryptfs_mount_crypt_stat *mount_crypt_stat =
1559e77a56ddSMichael Halcrow 		&ecryptfs_superblock_to_private(
1560e77a56ddSMichael Halcrow 			ecryptfs_dentry->d_sb)->mount_crypt_stat;
1561237fead6SMichael Halcrow 
1562e77a56ddSMichael Halcrow 	ecryptfs_copy_mount_wide_flags_to_inode_flags(crypt_stat,
1563e77a56ddSMichael Halcrow 						      mount_crypt_stat);
1564237fead6SMichael Halcrow 	/* Read the first page from the underlying file */
156530632870STyler Hicks 	page_virt = kmem_cache_alloc(ecryptfs_header_cache, GFP_USER);
1566237fead6SMichael Halcrow 	if (!page_virt) {
1567237fead6SMichael Halcrow 		rc = -ENOMEM;
1568d7cdc5feSMichael Halcrow 		printk(KERN_ERR "%s: Unable to allocate page_virt\n",
156918d1dbf1SHarvey Harrison 		       __func__);
1570237fead6SMichael Halcrow 		goto out;
1571237fead6SMichael Halcrow 	}
1572d7cdc5feSMichael Halcrow 	rc = ecryptfs_read_lower(page_virt, 0, crypt_stat->extent_size,
1573d7cdc5feSMichael Halcrow 				 ecryptfs_inode);
157496a7b9c2STyler Hicks 	if (rc >= 0)
1575237fead6SMichael Halcrow 		rc = ecryptfs_read_headers_virt(page_virt, crypt_stat,
1576dd2a3b7aSMichael Halcrow 						ecryptfs_dentry,
1577dd2a3b7aSMichael Halcrow 						ECRYPTFS_VALIDATE_HEADER_SIZE);
1578dd2a3b7aSMichael Halcrow 	if (rc) {
1579bb450361STim Gardner 		/* metadata is not in the file header, so try xattrs */
15801984c23fSTyler Hicks 		memset(page_virt, 0, PAGE_CACHE_SIZE);
1581d7cdc5feSMichael Halcrow 		rc = ecryptfs_read_xattr_region(page_virt, ecryptfs_inode);
1582237fead6SMichael Halcrow 		if (rc) {
1583dd2a3b7aSMichael Halcrow 			printk(KERN_DEBUG "Valid eCryptfs headers not found in "
158430373dc0STim Gardner 			       "file header region or xattr region, inode %lu\n",
158530373dc0STim Gardner 				ecryptfs_inode->i_ino);
1586237fead6SMichael Halcrow 			rc = -EINVAL;
1587dd2a3b7aSMichael Halcrow 			goto out;
1588dd2a3b7aSMichael Halcrow 		}
1589dd2a3b7aSMichael Halcrow 		rc = ecryptfs_read_headers_virt(page_virt, crypt_stat,
1590dd2a3b7aSMichael Halcrow 						ecryptfs_dentry,
1591dd2a3b7aSMichael Halcrow 						ECRYPTFS_DONT_VALIDATE_HEADER_SIZE);
1592dd2a3b7aSMichael Halcrow 		if (rc) {
1593dd2a3b7aSMichael Halcrow 			printk(KERN_DEBUG "Valid eCryptfs headers not found in "
159430373dc0STim Gardner 			       "file xattr region either, inode %lu\n",
159530373dc0STim Gardner 				ecryptfs_inode->i_ino);
1596dd2a3b7aSMichael Halcrow 			rc = -EINVAL;
1597dd2a3b7aSMichael Halcrow 		}
1598dd2a3b7aSMichael Halcrow 		if (crypt_stat->mount_crypt_stat->flags
1599dd2a3b7aSMichael Halcrow 		    & ECRYPTFS_XATTR_METADATA_ENABLED) {
1600dd2a3b7aSMichael Halcrow 			crypt_stat->flags |= ECRYPTFS_METADATA_IN_XATTR;
1601dd2a3b7aSMichael Halcrow 		} else {
1602dd2a3b7aSMichael Halcrow 			printk(KERN_WARNING "Attempt to access file with "
1603dd2a3b7aSMichael Halcrow 			       "crypto metadata only in the extended attribute "
1604dd2a3b7aSMichael Halcrow 			       "region, but eCryptfs was mounted without "
1605dd2a3b7aSMichael Halcrow 			       "xattr support enabled. eCryptfs will not treat "
160630373dc0STim Gardner 			       "this like an encrypted file, inode %lu\n",
160730373dc0STim Gardner 				ecryptfs_inode->i_ino);
1608dd2a3b7aSMichael Halcrow 			rc = -EINVAL;
1609dd2a3b7aSMichael Halcrow 		}
1610237fead6SMichael Halcrow 	}
1611237fead6SMichael Halcrow out:
1612237fead6SMichael Halcrow 	if (page_virt) {
1613237fead6SMichael Halcrow 		memset(page_virt, 0, PAGE_CACHE_SIZE);
161430632870STyler Hicks 		kmem_cache_free(ecryptfs_header_cache, page_virt);
1615237fead6SMichael Halcrow 	}
1616237fead6SMichael Halcrow 	return rc;
1617237fead6SMichael Halcrow }
1618237fead6SMichael Halcrow 
1619237fead6SMichael Halcrow /**
162051ca58dcSMichael Halcrow  * ecryptfs_encrypt_filename - encrypt filename
162151ca58dcSMichael Halcrow  *
162251ca58dcSMichael Halcrow  * CBC-encrypts the filename. We do not want to encrypt the same
162351ca58dcSMichael Halcrow  * filename with the same key and IV, which may happen with hard
162451ca58dcSMichael Halcrow  * links, so we prepend random bits to each filename.
162551ca58dcSMichael Halcrow  *
162651ca58dcSMichael Halcrow  * Returns zero on success; non-zero otherwise
162751ca58dcSMichael Halcrow  */
162851ca58dcSMichael Halcrow static int
162951ca58dcSMichael Halcrow ecryptfs_encrypt_filename(struct ecryptfs_filename *filename,
163051ca58dcSMichael Halcrow 			  struct ecryptfs_crypt_stat *crypt_stat,
163151ca58dcSMichael Halcrow 			  struct ecryptfs_mount_crypt_stat *mount_crypt_stat)
163251ca58dcSMichael Halcrow {
163351ca58dcSMichael Halcrow 	int rc = 0;
163451ca58dcSMichael Halcrow 
163551ca58dcSMichael Halcrow 	filename->encrypted_filename = NULL;
163651ca58dcSMichael Halcrow 	filename->encrypted_filename_size = 0;
163751ca58dcSMichael Halcrow 	if ((crypt_stat && (crypt_stat->flags & ECRYPTFS_ENCFN_USE_MOUNT_FNEK))
163851ca58dcSMichael Halcrow 	    || (mount_crypt_stat && (mount_crypt_stat->flags
163951ca58dcSMichael Halcrow 				     & ECRYPTFS_GLOBAL_ENCFN_USE_MOUNT_FNEK))) {
164051ca58dcSMichael Halcrow 		size_t packet_size;
164151ca58dcSMichael Halcrow 		size_t remaining_bytes;
164251ca58dcSMichael Halcrow 
164351ca58dcSMichael Halcrow 		rc = ecryptfs_write_tag_70_packet(
164451ca58dcSMichael Halcrow 			NULL, NULL,
164551ca58dcSMichael Halcrow 			&filename->encrypted_filename_size,
164651ca58dcSMichael Halcrow 			mount_crypt_stat, NULL,
164751ca58dcSMichael Halcrow 			filename->filename_size);
164851ca58dcSMichael Halcrow 		if (rc) {
164951ca58dcSMichael Halcrow 			printk(KERN_ERR "%s: Error attempting to get packet "
165051ca58dcSMichael Halcrow 			       "size for tag 72; rc = [%d]\n", __func__,
165151ca58dcSMichael Halcrow 			       rc);
165251ca58dcSMichael Halcrow 			filename->encrypted_filename_size = 0;
165351ca58dcSMichael Halcrow 			goto out;
165451ca58dcSMichael Halcrow 		}
165551ca58dcSMichael Halcrow 		filename->encrypted_filename =
165651ca58dcSMichael Halcrow 			kmalloc(filename->encrypted_filename_size, GFP_KERNEL);
165751ca58dcSMichael Halcrow 		if (!filename->encrypted_filename) {
165851ca58dcSMichael Halcrow 			printk(KERN_ERR "%s: Out of memory whilst attempting "
1659df261c52SMichael Halcrow 			       "to kmalloc [%zd] bytes\n", __func__,
166051ca58dcSMichael Halcrow 			       filename->encrypted_filename_size);
166151ca58dcSMichael Halcrow 			rc = -ENOMEM;
166251ca58dcSMichael Halcrow 			goto out;
166351ca58dcSMichael Halcrow 		}
166451ca58dcSMichael Halcrow 		remaining_bytes = filename->encrypted_filename_size;
166551ca58dcSMichael Halcrow 		rc = ecryptfs_write_tag_70_packet(filename->encrypted_filename,
166651ca58dcSMichael Halcrow 						  &remaining_bytes,
166751ca58dcSMichael Halcrow 						  &packet_size,
166851ca58dcSMichael Halcrow 						  mount_crypt_stat,
166951ca58dcSMichael Halcrow 						  filename->filename,
167051ca58dcSMichael Halcrow 						  filename->filename_size);
167151ca58dcSMichael Halcrow 		if (rc) {
167251ca58dcSMichael Halcrow 			printk(KERN_ERR "%s: Error attempting to generate "
167351ca58dcSMichael Halcrow 			       "tag 70 packet; rc = [%d]\n", __func__,
167451ca58dcSMichael Halcrow 			       rc);
167551ca58dcSMichael Halcrow 			kfree(filename->encrypted_filename);
167651ca58dcSMichael Halcrow 			filename->encrypted_filename = NULL;
167751ca58dcSMichael Halcrow 			filename->encrypted_filename_size = 0;
167851ca58dcSMichael Halcrow 			goto out;
167951ca58dcSMichael Halcrow 		}
168051ca58dcSMichael Halcrow 		filename->encrypted_filename_size = packet_size;
168151ca58dcSMichael Halcrow 	} else {
168251ca58dcSMichael Halcrow 		printk(KERN_ERR "%s: No support for requested filename "
168351ca58dcSMichael Halcrow 		       "encryption method in this release\n", __func__);
1684df6ad33bSTyler Hicks 		rc = -EOPNOTSUPP;
168551ca58dcSMichael Halcrow 		goto out;
168651ca58dcSMichael Halcrow 	}
168751ca58dcSMichael Halcrow out:
168851ca58dcSMichael Halcrow 	return rc;
168951ca58dcSMichael Halcrow }
169051ca58dcSMichael Halcrow 
169151ca58dcSMichael Halcrow static int ecryptfs_copy_filename(char **copied_name, size_t *copied_name_size,
169251ca58dcSMichael Halcrow 				  const char *name, size_t name_size)
169351ca58dcSMichael Halcrow {
169451ca58dcSMichael Halcrow 	int rc = 0;
169551ca58dcSMichael Halcrow 
1696fd9fc842STyler Hicks 	(*copied_name) = kmalloc((name_size + 1), GFP_KERNEL);
169751ca58dcSMichael Halcrow 	if (!(*copied_name)) {
169851ca58dcSMichael Halcrow 		rc = -ENOMEM;
169951ca58dcSMichael Halcrow 		goto out;
170051ca58dcSMichael Halcrow 	}
170151ca58dcSMichael Halcrow 	memcpy((void *)(*copied_name), (void *)name, name_size);
170251ca58dcSMichael Halcrow 	(*copied_name)[(name_size)] = '\0';	/* Only for convenience
170351ca58dcSMichael Halcrow 						 * in printing out the
170451ca58dcSMichael Halcrow 						 * string in debug
170551ca58dcSMichael Halcrow 						 * messages */
1706fd9fc842STyler Hicks 	(*copied_name_size) = name_size;
170751ca58dcSMichael Halcrow out:
170851ca58dcSMichael Halcrow 	return rc;
170951ca58dcSMichael Halcrow }
171051ca58dcSMichael Halcrow 
171151ca58dcSMichael Halcrow /**
1712f4aad16aSMichael Halcrow  * ecryptfs_process_key_cipher - Perform key cipher initialization.
1713237fead6SMichael Halcrow  * @key_tfm: Crypto context for key material, set by this function
1714e5d9cbdeSMichael Halcrow  * @cipher_name: Name of the cipher
1715e5d9cbdeSMichael Halcrow  * @key_size: Size of the key in bytes
1716237fead6SMichael Halcrow  *
1717237fead6SMichael Halcrow  * Returns zero on success. Any crypto_tfm structs allocated here
1718237fead6SMichael Halcrow  * should be released by other functions, such as on a superblock put
1719237fead6SMichael Halcrow  * event, regardless of whether this function succeeds for fails.
1720237fead6SMichael Halcrow  */
1721cd9d67dfSMichael Halcrow static int
1722f4aad16aSMichael Halcrow ecryptfs_process_key_cipher(struct crypto_blkcipher **key_tfm,
1723f4aad16aSMichael Halcrow 			    char *cipher_name, size_t *key_size)
1724237fead6SMichael Halcrow {
1725237fead6SMichael Halcrow 	char dummy_key[ECRYPTFS_MAX_KEY_BYTES];
1726ece550f5SDan Carpenter 	char *full_alg_name = NULL;
1727237fead6SMichael Halcrow 	int rc;
1728237fead6SMichael Halcrow 
1729e5d9cbdeSMichael Halcrow 	*key_tfm = NULL;
1730e5d9cbdeSMichael Halcrow 	if (*key_size > ECRYPTFS_MAX_KEY_BYTES) {
1731237fead6SMichael Halcrow 		rc = -EINVAL;
1732df261c52SMichael Halcrow 		printk(KERN_ERR "Requested key size is [%zd] bytes; maximum "
1733e5d9cbdeSMichael Halcrow 		      "allowable is [%d]\n", *key_size, ECRYPTFS_MAX_KEY_BYTES);
1734237fead6SMichael Halcrow 		goto out;
1735237fead6SMichael Halcrow 	}
17368bba066fSMichael Halcrow 	rc = ecryptfs_crypto_api_algify_cipher_name(&full_alg_name, cipher_name,
17378bba066fSMichael Halcrow 						    "ecb");
17388bba066fSMichael Halcrow 	if (rc)
17398bba066fSMichael Halcrow 		goto out;
17408bba066fSMichael Halcrow 	*key_tfm = crypto_alloc_blkcipher(full_alg_name, 0, CRYPTO_ALG_ASYNC);
17418bba066fSMichael Halcrow 	if (IS_ERR(*key_tfm)) {
17428bba066fSMichael Halcrow 		rc = PTR_ERR(*key_tfm);
1743237fead6SMichael Halcrow 		printk(KERN_ERR "Unable to allocate crypto cipher with name "
174438268498SDave Hansen 		       "[%s]; rc = [%d]\n", full_alg_name, rc);
1745237fead6SMichael Halcrow 		goto out;
1746237fead6SMichael Halcrow 	}
17478bba066fSMichael Halcrow 	crypto_blkcipher_set_flags(*key_tfm, CRYPTO_TFM_REQ_WEAK_KEY);
17488bba066fSMichael Halcrow 	if (*key_size == 0) {
17498bba066fSMichael Halcrow 		struct blkcipher_alg *alg = crypto_blkcipher_alg(*key_tfm);
17508bba066fSMichael Halcrow 
17518bba066fSMichael Halcrow 		*key_size = alg->max_keysize;
17528bba066fSMichael Halcrow 	}
1753e5d9cbdeSMichael Halcrow 	get_random_bytes(dummy_key, *key_size);
17548bba066fSMichael Halcrow 	rc = crypto_blkcipher_setkey(*key_tfm, dummy_key, *key_size);
1755237fead6SMichael Halcrow 	if (rc) {
1756df261c52SMichael Halcrow 		printk(KERN_ERR "Error attempting to set key of size [%zd] for "
175738268498SDave Hansen 		       "cipher [%s]; rc = [%d]\n", *key_size, full_alg_name,
175838268498SDave Hansen 		       rc);
1759237fead6SMichael Halcrow 		rc = -EINVAL;
1760237fead6SMichael Halcrow 		goto out;
1761237fead6SMichael Halcrow 	}
1762237fead6SMichael Halcrow out:
1763ece550f5SDan Carpenter 	kfree(full_alg_name);
1764237fead6SMichael Halcrow 	return rc;
1765237fead6SMichael Halcrow }
1766f4aad16aSMichael Halcrow 
1767f4aad16aSMichael Halcrow struct kmem_cache *ecryptfs_key_tfm_cache;
17687896b631SAdrian Bunk static struct list_head key_tfm_list;
1769af440f52SEric Sandeen struct mutex key_tfm_list_mutex;
1770f4aad16aSMichael Halcrow 
17717371a382SJerome Marchand int __init ecryptfs_init_crypto(void)
1772f4aad16aSMichael Halcrow {
1773f4aad16aSMichael Halcrow 	mutex_init(&key_tfm_list_mutex);
1774f4aad16aSMichael Halcrow 	INIT_LIST_HEAD(&key_tfm_list);
1775f4aad16aSMichael Halcrow 	return 0;
1776f4aad16aSMichael Halcrow }
1777f4aad16aSMichael Halcrow 
1778af440f52SEric Sandeen /**
1779af440f52SEric Sandeen  * ecryptfs_destroy_crypto - free all cached key_tfms on key_tfm_list
1780af440f52SEric Sandeen  *
1781af440f52SEric Sandeen  * Called only at module unload time
1782af440f52SEric Sandeen  */
1783fcd12835SMichael Halcrow int ecryptfs_destroy_crypto(void)
1784f4aad16aSMichael Halcrow {
1785f4aad16aSMichael Halcrow 	struct ecryptfs_key_tfm *key_tfm, *key_tfm_tmp;
1786f4aad16aSMichael Halcrow 
1787f4aad16aSMichael Halcrow 	mutex_lock(&key_tfm_list_mutex);
1788f4aad16aSMichael Halcrow 	list_for_each_entry_safe(key_tfm, key_tfm_tmp, &key_tfm_list,
1789f4aad16aSMichael Halcrow 				 key_tfm_list) {
1790f4aad16aSMichael Halcrow 		list_del(&key_tfm->key_tfm_list);
1791f4aad16aSMichael Halcrow 		if (key_tfm->key_tfm)
1792f4aad16aSMichael Halcrow 			crypto_free_blkcipher(key_tfm->key_tfm);
1793f4aad16aSMichael Halcrow 		kmem_cache_free(ecryptfs_key_tfm_cache, key_tfm);
1794f4aad16aSMichael Halcrow 	}
1795f4aad16aSMichael Halcrow 	mutex_unlock(&key_tfm_list_mutex);
1796f4aad16aSMichael Halcrow 	return 0;
1797f4aad16aSMichael Halcrow }
1798f4aad16aSMichael Halcrow 
1799f4aad16aSMichael Halcrow int
1800f4aad16aSMichael Halcrow ecryptfs_add_new_key_tfm(struct ecryptfs_key_tfm **key_tfm, char *cipher_name,
1801f4aad16aSMichael Halcrow 			 size_t key_size)
1802f4aad16aSMichael Halcrow {
1803f4aad16aSMichael Halcrow 	struct ecryptfs_key_tfm *tmp_tfm;
1804f4aad16aSMichael Halcrow 	int rc = 0;
1805f4aad16aSMichael Halcrow 
1806af440f52SEric Sandeen 	BUG_ON(!mutex_is_locked(&key_tfm_list_mutex));
1807af440f52SEric Sandeen 
1808f4aad16aSMichael Halcrow 	tmp_tfm = kmem_cache_alloc(ecryptfs_key_tfm_cache, GFP_KERNEL);
1809f4aad16aSMichael Halcrow 	if (key_tfm != NULL)
1810f4aad16aSMichael Halcrow 		(*key_tfm) = tmp_tfm;
1811f4aad16aSMichael Halcrow 	if (!tmp_tfm) {
1812f4aad16aSMichael Halcrow 		rc = -ENOMEM;
1813f4aad16aSMichael Halcrow 		printk(KERN_ERR "Error attempting to allocate from "
1814f4aad16aSMichael Halcrow 		       "ecryptfs_key_tfm_cache\n");
1815f4aad16aSMichael Halcrow 		goto out;
1816f4aad16aSMichael Halcrow 	}
1817f4aad16aSMichael Halcrow 	mutex_init(&tmp_tfm->key_tfm_mutex);
1818f4aad16aSMichael Halcrow 	strncpy(tmp_tfm->cipher_name, cipher_name,
1819f4aad16aSMichael Halcrow 		ECRYPTFS_MAX_CIPHER_NAME_SIZE);
1820b8862906SEric Sandeen 	tmp_tfm->cipher_name[ECRYPTFS_MAX_CIPHER_NAME_SIZE] = '\0';
1821f4aad16aSMichael Halcrow 	tmp_tfm->key_size = key_size;
18225dda6992SMichael Halcrow 	rc = ecryptfs_process_key_cipher(&tmp_tfm->key_tfm,
1823f4aad16aSMichael Halcrow 					 tmp_tfm->cipher_name,
18245dda6992SMichael Halcrow 					 &tmp_tfm->key_size);
18255dda6992SMichael Halcrow 	if (rc) {
1826f4aad16aSMichael Halcrow 		printk(KERN_ERR "Error attempting to initialize key TFM "
1827f4aad16aSMichael Halcrow 		       "cipher with name = [%s]; rc = [%d]\n",
1828f4aad16aSMichael Halcrow 		       tmp_tfm->cipher_name, rc);
1829f4aad16aSMichael Halcrow 		kmem_cache_free(ecryptfs_key_tfm_cache, tmp_tfm);
1830f4aad16aSMichael Halcrow 		if (key_tfm != NULL)
1831f4aad16aSMichael Halcrow 			(*key_tfm) = NULL;
1832f4aad16aSMichael Halcrow 		goto out;
1833f4aad16aSMichael Halcrow 	}
1834f4aad16aSMichael Halcrow 	list_add(&tmp_tfm->key_tfm_list, &key_tfm_list);
1835f4aad16aSMichael Halcrow out:
1836f4aad16aSMichael Halcrow 	return rc;
1837f4aad16aSMichael Halcrow }
1838f4aad16aSMichael Halcrow 
1839af440f52SEric Sandeen /**
1840af440f52SEric Sandeen  * ecryptfs_tfm_exists - Search for existing tfm for cipher_name.
1841af440f52SEric Sandeen  * @cipher_name: the name of the cipher to search for
1842af440f52SEric Sandeen  * @key_tfm: set to corresponding tfm if found
1843af440f52SEric Sandeen  *
1844af440f52SEric Sandeen  * Searches for cached key_tfm matching @cipher_name
1845af440f52SEric Sandeen  * Must be called with &key_tfm_list_mutex held
1846af440f52SEric Sandeen  * Returns 1 if found, with @key_tfm set
1847af440f52SEric Sandeen  * Returns 0 if not found, with @key_tfm set to NULL
1848af440f52SEric Sandeen  */
1849af440f52SEric Sandeen int ecryptfs_tfm_exists(char *cipher_name, struct ecryptfs_key_tfm **key_tfm)
1850af440f52SEric Sandeen {
1851af440f52SEric Sandeen 	struct ecryptfs_key_tfm *tmp_key_tfm;
1852af440f52SEric Sandeen 
1853af440f52SEric Sandeen 	BUG_ON(!mutex_is_locked(&key_tfm_list_mutex));
1854af440f52SEric Sandeen 
1855af440f52SEric Sandeen 	list_for_each_entry(tmp_key_tfm, &key_tfm_list, key_tfm_list) {
1856af440f52SEric Sandeen 		if (strcmp(tmp_key_tfm->cipher_name, cipher_name) == 0) {
1857af440f52SEric Sandeen 			if (key_tfm)
1858af440f52SEric Sandeen 				(*key_tfm) = tmp_key_tfm;
1859af440f52SEric Sandeen 			return 1;
1860af440f52SEric Sandeen 		}
1861af440f52SEric Sandeen 	}
1862af440f52SEric Sandeen 	if (key_tfm)
1863af440f52SEric Sandeen 		(*key_tfm) = NULL;
1864af440f52SEric Sandeen 	return 0;
1865af440f52SEric Sandeen }
1866af440f52SEric Sandeen 
1867af440f52SEric Sandeen /**
1868af440f52SEric Sandeen  * ecryptfs_get_tfm_and_mutex_for_cipher_name
1869af440f52SEric Sandeen  *
1870af440f52SEric Sandeen  * @tfm: set to cached tfm found, or new tfm created
1871af440f52SEric Sandeen  * @tfm_mutex: set to mutex for cached tfm found, or new tfm created
1872af440f52SEric Sandeen  * @cipher_name: the name of the cipher to search for and/or add
1873af440f52SEric Sandeen  *
1874af440f52SEric Sandeen  * Sets pointers to @tfm & @tfm_mutex matching @cipher_name.
1875af440f52SEric Sandeen  * Searches for cached item first, and creates new if not found.
1876af440f52SEric Sandeen  * Returns 0 on success, non-zero if adding new cipher failed
1877af440f52SEric Sandeen  */
1878f4aad16aSMichael Halcrow int ecryptfs_get_tfm_and_mutex_for_cipher_name(struct crypto_blkcipher **tfm,
1879f4aad16aSMichael Halcrow 					       struct mutex **tfm_mutex,
1880f4aad16aSMichael Halcrow 					       char *cipher_name)
1881f4aad16aSMichael Halcrow {
1882f4aad16aSMichael Halcrow 	struct ecryptfs_key_tfm *key_tfm;
1883f4aad16aSMichael Halcrow 	int rc = 0;
1884f4aad16aSMichael Halcrow 
1885f4aad16aSMichael Halcrow 	(*tfm) = NULL;
1886f4aad16aSMichael Halcrow 	(*tfm_mutex) = NULL;
1887af440f52SEric Sandeen 
1888f4aad16aSMichael Halcrow 	mutex_lock(&key_tfm_list_mutex);
1889af440f52SEric Sandeen 	if (!ecryptfs_tfm_exists(cipher_name, &key_tfm)) {
18905dda6992SMichael Halcrow 		rc = ecryptfs_add_new_key_tfm(&key_tfm, cipher_name, 0);
18915dda6992SMichael Halcrow 		if (rc) {
1892af440f52SEric Sandeen 			printk(KERN_ERR "Error adding new key_tfm to list; "
1893af440f52SEric Sandeen 					"rc = [%d]\n", rc);
1894f4aad16aSMichael Halcrow 			goto out;
1895f4aad16aSMichael Halcrow 		}
1896af440f52SEric Sandeen 	}
1897f4aad16aSMichael Halcrow 	(*tfm) = key_tfm->key_tfm;
1898f4aad16aSMichael Halcrow 	(*tfm_mutex) = &key_tfm->key_tfm_mutex;
1899f4aad16aSMichael Halcrow out:
190071fd5179SCyrill Gorcunov 	mutex_unlock(&key_tfm_list_mutex);
1901f4aad16aSMichael Halcrow 	return rc;
1902f4aad16aSMichael Halcrow }
190351ca58dcSMichael Halcrow 
190451ca58dcSMichael Halcrow /* 64 characters forming a 6-bit target field */
190551ca58dcSMichael Halcrow static unsigned char *portable_filename_chars = ("-.0123456789ABCD"
190651ca58dcSMichael Halcrow 						 "EFGHIJKLMNOPQRST"
190751ca58dcSMichael Halcrow 						 "UVWXYZabcdefghij"
190851ca58dcSMichael Halcrow 						 "klmnopqrstuvwxyz");
190951ca58dcSMichael Halcrow 
191051ca58dcSMichael Halcrow /* We could either offset on every reverse map or just pad some 0x00's
191151ca58dcSMichael Halcrow  * at the front here */
19120f751e64STyler Hicks static const unsigned char filename_rev_map[256] = {
191351ca58dcSMichael Halcrow 	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, /* 7 */
191451ca58dcSMichael Halcrow 	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, /* 15 */
191551ca58dcSMichael Halcrow 	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, /* 23 */
191651ca58dcSMichael Halcrow 	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, /* 31 */
191751ca58dcSMichael Halcrow 	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, /* 39 */
191851ca58dcSMichael Halcrow 	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x01, 0x00, /* 47 */
191951ca58dcSMichael Halcrow 	0x02, 0x03, 0x04, 0x05, 0x06, 0x07, 0x08, 0x09, /* 55 */
192051ca58dcSMichael Halcrow 	0x0A, 0x0B, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, /* 63 */
192151ca58dcSMichael Halcrow 	0x00, 0x0C, 0x0D, 0x0E, 0x0F, 0x10, 0x11, 0x12, /* 71 */
192251ca58dcSMichael Halcrow 	0x13, 0x14, 0x15, 0x16, 0x17, 0x18, 0x19, 0x1A, /* 79 */
192351ca58dcSMichael Halcrow 	0x1B, 0x1C, 0x1D, 0x1E, 0x1F, 0x20, 0x21, 0x22, /* 87 */
192451ca58dcSMichael Halcrow 	0x23, 0x24, 0x25, 0x00, 0x00, 0x00, 0x00, 0x00, /* 95 */
192551ca58dcSMichael Halcrow 	0x00, 0x26, 0x27, 0x28, 0x29, 0x2A, 0x2B, 0x2C, /* 103 */
192651ca58dcSMichael Halcrow 	0x2D, 0x2E, 0x2F, 0x30, 0x31, 0x32, 0x33, 0x34, /* 111 */
192751ca58dcSMichael Halcrow 	0x35, 0x36, 0x37, 0x38, 0x39, 0x3A, 0x3B, 0x3C, /* 119 */
19280f751e64STyler Hicks 	0x3D, 0x3E, 0x3F /* 123 - 255 initialized to 0x00 */
192951ca58dcSMichael Halcrow };
193051ca58dcSMichael Halcrow 
193151ca58dcSMichael Halcrow /**
193251ca58dcSMichael Halcrow  * ecryptfs_encode_for_filename
193351ca58dcSMichael Halcrow  * @dst: Destination location for encoded filename
193451ca58dcSMichael Halcrow  * @dst_size: Size of the encoded filename in bytes
193551ca58dcSMichael Halcrow  * @src: Source location for the filename to encode
193651ca58dcSMichael Halcrow  * @src_size: Size of the source in bytes
193751ca58dcSMichael Halcrow  */
1938*37028758SCong Ding static void ecryptfs_encode_for_filename(unsigned char *dst, size_t *dst_size,
193951ca58dcSMichael Halcrow 				  unsigned char *src, size_t src_size)
194051ca58dcSMichael Halcrow {
194151ca58dcSMichael Halcrow 	size_t num_blocks;
194251ca58dcSMichael Halcrow 	size_t block_num = 0;
194351ca58dcSMichael Halcrow 	size_t dst_offset = 0;
194451ca58dcSMichael Halcrow 	unsigned char last_block[3];
194551ca58dcSMichael Halcrow 
194651ca58dcSMichael Halcrow 	if (src_size == 0) {
194751ca58dcSMichael Halcrow 		(*dst_size) = 0;
194851ca58dcSMichael Halcrow 		goto out;
194951ca58dcSMichael Halcrow 	}
195051ca58dcSMichael Halcrow 	num_blocks = (src_size / 3);
195151ca58dcSMichael Halcrow 	if ((src_size % 3) == 0) {
195251ca58dcSMichael Halcrow 		memcpy(last_block, (&src[src_size - 3]), 3);
195351ca58dcSMichael Halcrow 	} else {
195451ca58dcSMichael Halcrow 		num_blocks++;
195551ca58dcSMichael Halcrow 		last_block[2] = 0x00;
195651ca58dcSMichael Halcrow 		switch (src_size % 3) {
195751ca58dcSMichael Halcrow 		case 1:
195851ca58dcSMichael Halcrow 			last_block[0] = src[src_size - 1];
195951ca58dcSMichael Halcrow 			last_block[1] = 0x00;
196051ca58dcSMichael Halcrow 			break;
196151ca58dcSMichael Halcrow 		case 2:
196251ca58dcSMichael Halcrow 			last_block[0] = src[src_size - 2];
196351ca58dcSMichael Halcrow 			last_block[1] = src[src_size - 1];
196451ca58dcSMichael Halcrow 		}
196551ca58dcSMichael Halcrow 	}
196651ca58dcSMichael Halcrow 	(*dst_size) = (num_blocks * 4);
196751ca58dcSMichael Halcrow 	if (!dst)
196851ca58dcSMichael Halcrow 		goto out;
196951ca58dcSMichael Halcrow 	while (block_num < num_blocks) {
197051ca58dcSMichael Halcrow 		unsigned char *src_block;
197151ca58dcSMichael Halcrow 		unsigned char dst_block[4];
197251ca58dcSMichael Halcrow 
197351ca58dcSMichael Halcrow 		if (block_num == (num_blocks - 1))
197451ca58dcSMichael Halcrow 			src_block = last_block;
197551ca58dcSMichael Halcrow 		else
197651ca58dcSMichael Halcrow 			src_block = &src[block_num * 3];
197751ca58dcSMichael Halcrow 		dst_block[0] = ((src_block[0] >> 2) & 0x3F);
197851ca58dcSMichael Halcrow 		dst_block[1] = (((src_block[0] << 4) & 0x30)
197951ca58dcSMichael Halcrow 				| ((src_block[1] >> 4) & 0x0F));
198051ca58dcSMichael Halcrow 		dst_block[2] = (((src_block[1] << 2) & 0x3C)
198151ca58dcSMichael Halcrow 				| ((src_block[2] >> 6) & 0x03));
198251ca58dcSMichael Halcrow 		dst_block[3] = (src_block[2] & 0x3F);
198351ca58dcSMichael Halcrow 		dst[dst_offset++] = portable_filename_chars[dst_block[0]];
198451ca58dcSMichael Halcrow 		dst[dst_offset++] = portable_filename_chars[dst_block[1]];
198551ca58dcSMichael Halcrow 		dst[dst_offset++] = portable_filename_chars[dst_block[2]];
198651ca58dcSMichael Halcrow 		dst[dst_offset++] = portable_filename_chars[dst_block[3]];
198751ca58dcSMichael Halcrow 		block_num++;
198851ca58dcSMichael Halcrow 	}
198951ca58dcSMichael Halcrow out:
199051ca58dcSMichael Halcrow 	return;
199151ca58dcSMichael Halcrow }
199251ca58dcSMichael Halcrow 
19934a26620dSTyler Hicks static size_t ecryptfs_max_decoded_size(size_t encoded_size)
19944a26620dSTyler Hicks {
19954a26620dSTyler Hicks 	/* Not exact; conservatively long. Every block of 4
19964a26620dSTyler Hicks 	 * encoded characters decodes into a block of 3
19974a26620dSTyler Hicks 	 * decoded characters. This segment of code provides
19984a26620dSTyler Hicks 	 * the caller with the maximum amount of allocated
19994a26620dSTyler Hicks 	 * space that @dst will need to point to in a
20004a26620dSTyler Hicks 	 * subsequent call. */
20014a26620dSTyler Hicks 	return ((encoded_size + 1) * 3) / 4;
20024a26620dSTyler Hicks }
20034a26620dSTyler Hicks 
200471c11c37SMichael Halcrow /**
200571c11c37SMichael Halcrow  * ecryptfs_decode_from_filename
200671c11c37SMichael Halcrow  * @dst: If NULL, this function only sets @dst_size and returns. If
200771c11c37SMichael Halcrow  *       non-NULL, this function decodes the encoded octets in @src
200871c11c37SMichael Halcrow  *       into the memory that @dst points to.
200971c11c37SMichael Halcrow  * @dst_size: Set to the size of the decoded string.
201071c11c37SMichael Halcrow  * @src: The encoded set of octets to decode.
201171c11c37SMichael Halcrow  * @src_size: The size of the encoded set of octets to decode.
201271c11c37SMichael Halcrow  */
201371c11c37SMichael Halcrow static void
201471c11c37SMichael Halcrow ecryptfs_decode_from_filename(unsigned char *dst, size_t *dst_size,
201551ca58dcSMichael Halcrow 			      const unsigned char *src, size_t src_size)
201651ca58dcSMichael Halcrow {
201751ca58dcSMichael Halcrow 	u8 current_bit_offset = 0;
201851ca58dcSMichael Halcrow 	size_t src_byte_offset = 0;
201951ca58dcSMichael Halcrow 	size_t dst_byte_offset = 0;
202051ca58dcSMichael Halcrow 
202151ca58dcSMichael Halcrow 	if (dst == NULL) {
20224a26620dSTyler Hicks 		(*dst_size) = ecryptfs_max_decoded_size(src_size);
202351ca58dcSMichael Halcrow 		goto out;
202451ca58dcSMichael Halcrow 	}
202551ca58dcSMichael Halcrow 	while (src_byte_offset < src_size) {
202651ca58dcSMichael Halcrow 		unsigned char src_byte =
202751ca58dcSMichael Halcrow 				filename_rev_map[(int)src[src_byte_offset]];
202851ca58dcSMichael Halcrow 
202951ca58dcSMichael Halcrow 		switch (current_bit_offset) {
203051ca58dcSMichael Halcrow 		case 0:
203151ca58dcSMichael Halcrow 			dst[dst_byte_offset] = (src_byte << 2);
203251ca58dcSMichael Halcrow 			current_bit_offset = 6;
203351ca58dcSMichael Halcrow 			break;
203451ca58dcSMichael Halcrow 		case 6:
203551ca58dcSMichael Halcrow 			dst[dst_byte_offset++] |= (src_byte >> 4);
203651ca58dcSMichael Halcrow 			dst[dst_byte_offset] = ((src_byte & 0xF)
203751ca58dcSMichael Halcrow 						 << 4);
203851ca58dcSMichael Halcrow 			current_bit_offset = 4;
203951ca58dcSMichael Halcrow 			break;
204051ca58dcSMichael Halcrow 		case 4:
204151ca58dcSMichael Halcrow 			dst[dst_byte_offset++] |= (src_byte >> 2);
204251ca58dcSMichael Halcrow 			dst[dst_byte_offset] = (src_byte << 6);
204351ca58dcSMichael Halcrow 			current_bit_offset = 2;
204451ca58dcSMichael Halcrow 			break;
204551ca58dcSMichael Halcrow 		case 2:
204651ca58dcSMichael Halcrow 			dst[dst_byte_offset++] |= (src_byte);
204751ca58dcSMichael Halcrow 			dst[dst_byte_offset] = 0;
204851ca58dcSMichael Halcrow 			current_bit_offset = 0;
204951ca58dcSMichael Halcrow 			break;
205051ca58dcSMichael Halcrow 		}
205151ca58dcSMichael Halcrow 		src_byte_offset++;
205251ca58dcSMichael Halcrow 	}
205351ca58dcSMichael Halcrow 	(*dst_size) = dst_byte_offset;
205451ca58dcSMichael Halcrow out:
205571c11c37SMichael Halcrow 	return;
205651ca58dcSMichael Halcrow }
205751ca58dcSMichael Halcrow 
205851ca58dcSMichael Halcrow /**
205951ca58dcSMichael Halcrow  * ecryptfs_encrypt_and_encode_filename - converts a plaintext file name to cipher text
206051ca58dcSMichael Halcrow  * @crypt_stat: The crypt_stat struct associated with the file anem to encode
206151ca58dcSMichael Halcrow  * @name: The plaintext name
206251ca58dcSMichael Halcrow  * @length: The length of the plaintext
206351ca58dcSMichael Halcrow  * @encoded_name: The encypted name
206451ca58dcSMichael Halcrow  *
206551ca58dcSMichael Halcrow  * Encrypts and encodes a filename into something that constitutes a
206651ca58dcSMichael Halcrow  * valid filename for a filesystem, with printable characters.
206751ca58dcSMichael Halcrow  *
206851ca58dcSMichael Halcrow  * We assume that we have a properly initialized crypto context,
206951ca58dcSMichael Halcrow  * pointed to by crypt_stat->tfm.
207051ca58dcSMichael Halcrow  *
207151ca58dcSMichael Halcrow  * Returns zero on success; non-zero on otherwise
207251ca58dcSMichael Halcrow  */
207351ca58dcSMichael Halcrow int ecryptfs_encrypt_and_encode_filename(
207451ca58dcSMichael Halcrow 	char **encoded_name,
207551ca58dcSMichael Halcrow 	size_t *encoded_name_size,
207651ca58dcSMichael Halcrow 	struct ecryptfs_crypt_stat *crypt_stat,
207751ca58dcSMichael Halcrow 	struct ecryptfs_mount_crypt_stat *mount_crypt_stat,
207851ca58dcSMichael Halcrow 	const char *name, size_t name_size)
207951ca58dcSMichael Halcrow {
208051ca58dcSMichael Halcrow 	size_t encoded_name_no_prefix_size;
208151ca58dcSMichael Halcrow 	int rc = 0;
208251ca58dcSMichael Halcrow 
208351ca58dcSMichael Halcrow 	(*encoded_name) = NULL;
208451ca58dcSMichael Halcrow 	(*encoded_name_size) = 0;
208551ca58dcSMichael Halcrow 	if ((crypt_stat && (crypt_stat->flags & ECRYPTFS_ENCRYPT_FILENAMES))
208651ca58dcSMichael Halcrow 	    || (mount_crypt_stat && (mount_crypt_stat->flags
208751ca58dcSMichael Halcrow 				     & ECRYPTFS_GLOBAL_ENCRYPT_FILENAMES))) {
208851ca58dcSMichael Halcrow 		struct ecryptfs_filename *filename;
208951ca58dcSMichael Halcrow 
209051ca58dcSMichael Halcrow 		filename = kzalloc(sizeof(*filename), GFP_KERNEL);
209151ca58dcSMichael Halcrow 		if (!filename) {
209251ca58dcSMichael Halcrow 			printk(KERN_ERR "%s: Out of memory whilst attempting "
2093a8f12864SMichael Halcrow 			       "to kzalloc [%zd] bytes\n", __func__,
209451ca58dcSMichael Halcrow 			       sizeof(*filename));
209551ca58dcSMichael Halcrow 			rc = -ENOMEM;
209651ca58dcSMichael Halcrow 			goto out;
209751ca58dcSMichael Halcrow 		}
209851ca58dcSMichael Halcrow 		filename->filename = (char *)name;
209951ca58dcSMichael Halcrow 		filename->filename_size = name_size;
210051ca58dcSMichael Halcrow 		rc = ecryptfs_encrypt_filename(filename, crypt_stat,
210151ca58dcSMichael Halcrow 					       mount_crypt_stat);
210251ca58dcSMichael Halcrow 		if (rc) {
210351ca58dcSMichael Halcrow 			printk(KERN_ERR "%s: Error attempting to encrypt "
210451ca58dcSMichael Halcrow 			       "filename; rc = [%d]\n", __func__, rc);
210551ca58dcSMichael Halcrow 			kfree(filename);
210651ca58dcSMichael Halcrow 			goto out;
210751ca58dcSMichael Halcrow 		}
210851ca58dcSMichael Halcrow 		ecryptfs_encode_for_filename(
210951ca58dcSMichael Halcrow 			NULL, &encoded_name_no_prefix_size,
211051ca58dcSMichael Halcrow 			filename->encrypted_filename,
211151ca58dcSMichael Halcrow 			filename->encrypted_filename_size);
211251ca58dcSMichael Halcrow 		if ((crypt_stat && (crypt_stat->flags
211351ca58dcSMichael Halcrow 				    & ECRYPTFS_ENCFN_USE_MOUNT_FNEK))
211451ca58dcSMichael Halcrow 		    || (mount_crypt_stat
211551ca58dcSMichael Halcrow 			&& (mount_crypt_stat->flags
211651ca58dcSMichael Halcrow 			    & ECRYPTFS_GLOBAL_ENCFN_USE_MOUNT_FNEK)))
211751ca58dcSMichael Halcrow 			(*encoded_name_size) =
211851ca58dcSMichael Halcrow 				(ECRYPTFS_FNEK_ENCRYPTED_FILENAME_PREFIX_SIZE
211951ca58dcSMichael Halcrow 				 + encoded_name_no_prefix_size);
212051ca58dcSMichael Halcrow 		else
212151ca58dcSMichael Halcrow 			(*encoded_name_size) =
212251ca58dcSMichael Halcrow 				(ECRYPTFS_FEK_ENCRYPTED_FILENAME_PREFIX_SIZE
212351ca58dcSMichael Halcrow 				 + encoded_name_no_prefix_size);
212451ca58dcSMichael Halcrow 		(*encoded_name) = kmalloc((*encoded_name_size) + 1, GFP_KERNEL);
212551ca58dcSMichael Halcrow 		if (!(*encoded_name)) {
212651ca58dcSMichael Halcrow 			printk(KERN_ERR "%s: Out of memory whilst attempting "
2127a8f12864SMichael Halcrow 			       "to kzalloc [%zd] bytes\n", __func__,
212851ca58dcSMichael Halcrow 			       (*encoded_name_size));
212951ca58dcSMichael Halcrow 			rc = -ENOMEM;
213051ca58dcSMichael Halcrow 			kfree(filename->encrypted_filename);
213151ca58dcSMichael Halcrow 			kfree(filename);
213251ca58dcSMichael Halcrow 			goto out;
213351ca58dcSMichael Halcrow 		}
213451ca58dcSMichael Halcrow 		if ((crypt_stat && (crypt_stat->flags
213551ca58dcSMichael Halcrow 				    & ECRYPTFS_ENCFN_USE_MOUNT_FNEK))
213651ca58dcSMichael Halcrow 		    || (mount_crypt_stat
213751ca58dcSMichael Halcrow 			&& (mount_crypt_stat->flags
213851ca58dcSMichael Halcrow 			    & ECRYPTFS_GLOBAL_ENCFN_USE_MOUNT_FNEK))) {
213951ca58dcSMichael Halcrow 			memcpy((*encoded_name),
214051ca58dcSMichael Halcrow 			       ECRYPTFS_FNEK_ENCRYPTED_FILENAME_PREFIX,
214151ca58dcSMichael Halcrow 			       ECRYPTFS_FNEK_ENCRYPTED_FILENAME_PREFIX_SIZE);
214251ca58dcSMichael Halcrow 			ecryptfs_encode_for_filename(
214351ca58dcSMichael Halcrow 			    ((*encoded_name)
214451ca58dcSMichael Halcrow 			     + ECRYPTFS_FNEK_ENCRYPTED_FILENAME_PREFIX_SIZE),
214551ca58dcSMichael Halcrow 			    &encoded_name_no_prefix_size,
214651ca58dcSMichael Halcrow 			    filename->encrypted_filename,
214751ca58dcSMichael Halcrow 			    filename->encrypted_filename_size);
214851ca58dcSMichael Halcrow 			(*encoded_name_size) =
214951ca58dcSMichael Halcrow 				(ECRYPTFS_FNEK_ENCRYPTED_FILENAME_PREFIX_SIZE
215051ca58dcSMichael Halcrow 				 + encoded_name_no_prefix_size);
215151ca58dcSMichael Halcrow 			(*encoded_name)[(*encoded_name_size)] = '\0';
215251ca58dcSMichael Halcrow 		} else {
2153df6ad33bSTyler Hicks 			rc = -EOPNOTSUPP;
215451ca58dcSMichael Halcrow 		}
215551ca58dcSMichael Halcrow 		if (rc) {
215651ca58dcSMichael Halcrow 			printk(KERN_ERR "%s: Error attempting to encode "
215751ca58dcSMichael Halcrow 			       "encrypted filename; rc = [%d]\n", __func__,
215851ca58dcSMichael Halcrow 			       rc);
215951ca58dcSMichael Halcrow 			kfree((*encoded_name));
216051ca58dcSMichael Halcrow 			(*encoded_name) = NULL;
216151ca58dcSMichael Halcrow 			(*encoded_name_size) = 0;
216251ca58dcSMichael Halcrow 		}
216351ca58dcSMichael Halcrow 		kfree(filename->encrypted_filename);
216451ca58dcSMichael Halcrow 		kfree(filename);
216551ca58dcSMichael Halcrow 	} else {
216651ca58dcSMichael Halcrow 		rc = ecryptfs_copy_filename(encoded_name,
216751ca58dcSMichael Halcrow 					    encoded_name_size,
216851ca58dcSMichael Halcrow 					    name, name_size);
216951ca58dcSMichael Halcrow 	}
217051ca58dcSMichael Halcrow out:
217151ca58dcSMichael Halcrow 	return rc;
217251ca58dcSMichael Halcrow }
217351ca58dcSMichael Halcrow 
217451ca58dcSMichael Halcrow /**
217551ca58dcSMichael Halcrow  * ecryptfs_decode_and_decrypt_filename - converts the encoded cipher text name to decoded plaintext
217651ca58dcSMichael Halcrow  * @plaintext_name: The plaintext name
217751ca58dcSMichael Halcrow  * @plaintext_name_size: The plaintext name size
217851ca58dcSMichael Halcrow  * @ecryptfs_dir_dentry: eCryptfs directory dentry
217951ca58dcSMichael Halcrow  * @name: The filename in cipher text
218051ca58dcSMichael Halcrow  * @name_size: The cipher text name size
218151ca58dcSMichael Halcrow  *
218251ca58dcSMichael Halcrow  * Decrypts and decodes the filename.
218351ca58dcSMichael Halcrow  *
218451ca58dcSMichael Halcrow  * Returns zero on error; non-zero otherwise
218551ca58dcSMichael Halcrow  */
218651ca58dcSMichael Halcrow int ecryptfs_decode_and_decrypt_filename(char **plaintext_name,
218751ca58dcSMichael Halcrow 					 size_t *plaintext_name_size,
218851ca58dcSMichael Halcrow 					 struct dentry *ecryptfs_dir_dentry,
218951ca58dcSMichael Halcrow 					 const char *name, size_t name_size)
219051ca58dcSMichael Halcrow {
21912aac0cf8STyler Hicks 	struct ecryptfs_mount_crypt_stat *mount_crypt_stat =
21922aac0cf8STyler Hicks 		&ecryptfs_superblock_to_private(
21932aac0cf8STyler Hicks 			ecryptfs_dir_dentry->d_sb)->mount_crypt_stat;
219451ca58dcSMichael Halcrow 	char *decoded_name;
219551ca58dcSMichael Halcrow 	size_t decoded_name_size;
219651ca58dcSMichael Halcrow 	size_t packet_size;
219751ca58dcSMichael Halcrow 	int rc = 0;
219851ca58dcSMichael Halcrow 
21992aac0cf8STyler Hicks 	if ((mount_crypt_stat->flags & ECRYPTFS_GLOBAL_ENCRYPT_FILENAMES)
22002aac0cf8STyler Hicks 	    && !(mount_crypt_stat->flags & ECRYPTFS_ENCRYPTED_VIEW_ENABLED)
22012aac0cf8STyler Hicks 	    && (name_size > ECRYPTFS_FNEK_ENCRYPTED_FILENAME_PREFIX_SIZE)
220251ca58dcSMichael Halcrow 	    && (strncmp(name, ECRYPTFS_FNEK_ENCRYPTED_FILENAME_PREFIX,
220351ca58dcSMichael Halcrow 			ECRYPTFS_FNEK_ENCRYPTED_FILENAME_PREFIX_SIZE) == 0)) {
220451ca58dcSMichael Halcrow 		const char *orig_name = name;
220551ca58dcSMichael Halcrow 		size_t orig_name_size = name_size;
220651ca58dcSMichael Halcrow 
220751ca58dcSMichael Halcrow 		name += ECRYPTFS_FNEK_ENCRYPTED_FILENAME_PREFIX_SIZE;
220851ca58dcSMichael Halcrow 		name_size -= ECRYPTFS_FNEK_ENCRYPTED_FILENAME_PREFIX_SIZE;
220971c11c37SMichael Halcrow 		ecryptfs_decode_from_filename(NULL, &decoded_name_size,
221051ca58dcSMichael Halcrow 					      name, name_size);
221151ca58dcSMichael Halcrow 		decoded_name = kmalloc(decoded_name_size, GFP_KERNEL);
221251ca58dcSMichael Halcrow 		if (!decoded_name) {
221351ca58dcSMichael Halcrow 			printk(KERN_ERR "%s: Out of memory whilst attempting "
2214df261c52SMichael Halcrow 			       "to kmalloc [%zd] bytes\n", __func__,
221551ca58dcSMichael Halcrow 			       decoded_name_size);
221651ca58dcSMichael Halcrow 			rc = -ENOMEM;
221751ca58dcSMichael Halcrow 			goto out;
221851ca58dcSMichael Halcrow 		}
221971c11c37SMichael Halcrow 		ecryptfs_decode_from_filename(decoded_name, &decoded_name_size,
222051ca58dcSMichael Halcrow 					      name, name_size);
222151ca58dcSMichael Halcrow 		rc = ecryptfs_parse_tag_70_packet(plaintext_name,
222251ca58dcSMichael Halcrow 						  plaintext_name_size,
222351ca58dcSMichael Halcrow 						  &packet_size,
222451ca58dcSMichael Halcrow 						  mount_crypt_stat,
222551ca58dcSMichael Halcrow 						  decoded_name,
222651ca58dcSMichael Halcrow 						  decoded_name_size);
222751ca58dcSMichael Halcrow 		if (rc) {
222851ca58dcSMichael Halcrow 			printk(KERN_INFO "%s: Could not parse tag 70 packet "
222951ca58dcSMichael Halcrow 			       "from filename; copying through filename "
223051ca58dcSMichael Halcrow 			       "as-is\n", __func__);
223151ca58dcSMichael Halcrow 			rc = ecryptfs_copy_filename(plaintext_name,
223251ca58dcSMichael Halcrow 						    plaintext_name_size,
223351ca58dcSMichael Halcrow 						    orig_name, orig_name_size);
223451ca58dcSMichael Halcrow 			goto out_free;
223551ca58dcSMichael Halcrow 		}
223651ca58dcSMichael Halcrow 	} else {
223751ca58dcSMichael Halcrow 		rc = ecryptfs_copy_filename(plaintext_name,
223851ca58dcSMichael Halcrow 					    plaintext_name_size,
223951ca58dcSMichael Halcrow 					    name, name_size);
224051ca58dcSMichael Halcrow 		goto out;
224151ca58dcSMichael Halcrow 	}
224251ca58dcSMichael Halcrow out_free:
224351ca58dcSMichael Halcrow 	kfree(decoded_name);
224451ca58dcSMichael Halcrow out:
224551ca58dcSMichael Halcrow 	return rc;
224651ca58dcSMichael Halcrow }
22474a26620dSTyler Hicks 
22484a26620dSTyler Hicks #define ENC_NAME_MAX_BLOCKLEN_8_OR_16	143
22494a26620dSTyler Hicks 
22504a26620dSTyler Hicks int ecryptfs_set_f_namelen(long *namelen, long lower_namelen,
22514a26620dSTyler Hicks 			   struct ecryptfs_mount_crypt_stat *mount_crypt_stat)
22524a26620dSTyler Hicks {
22534a26620dSTyler Hicks 	struct blkcipher_desc desc;
22544a26620dSTyler Hicks 	struct mutex *tfm_mutex;
22554a26620dSTyler Hicks 	size_t cipher_blocksize;
22564a26620dSTyler Hicks 	int rc;
22574a26620dSTyler Hicks 
22584a26620dSTyler Hicks 	if (!(mount_crypt_stat->flags & ECRYPTFS_GLOBAL_ENCRYPT_FILENAMES)) {
22594a26620dSTyler Hicks 		(*namelen) = lower_namelen;
22604a26620dSTyler Hicks 		return 0;
22614a26620dSTyler Hicks 	}
22624a26620dSTyler Hicks 
22634a26620dSTyler Hicks 	rc = ecryptfs_get_tfm_and_mutex_for_cipher_name(&desc.tfm, &tfm_mutex,
22644a26620dSTyler Hicks 			mount_crypt_stat->global_default_fn_cipher_name);
22654a26620dSTyler Hicks 	if (unlikely(rc)) {
22664a26620dSTyler Hicks 		(*namelen) = 0;
22674a26620dSTyler Hicks 		return rc;
22684a26620dSTyler Hicks 	}
22694a26620dSTyler Hicks 
22704a26620dSTyler Hicks 	mutex_lock(tfm_mutex);
22714a26620dSTyler Hicks 	cipher_blocksize = crypto_blkcipher_blocksize(desc.tfm);
22724a26620dSTyler Hicks 	mutex_unlock(tfm_mutex);
22734a26620dSTyler Hicks 
22744a26620dSTyler Hicks 	/* Return an exact amount for the common cases */
22754a26620dSTyler Hicks 	if (lower_namelen == NAME_MAX
22764a26620dSTyler Hicks 	    && (cipher_blocksize == 8 || cipher_blocksize == 16)) {
22774a26620dSTyler Hicks 		(*namelen) = ENC_NAME_MAX_BLOCKLEN_8_OR_16;
22784a26620dSTyler Hicks 		return 0;
22794a26620dSTyler Hicks 	}
22804a26620dSTyler Hicks 
22814a26620dSTyler Hicks 	/* Return a safe estimate for the uncommon cases */
22824a26620dSTyler Hicks 	(*namelen) = lower_namelen;
22834a26620dSTyler Hicks 	(*namelen) -= ECRYPTFS_FNEK_ENCRYPTED_FILENAME_PREFIX_SIZE;
22844a26620dSTyler Hicks 	/* Since this is the max decoded size, subtract 1 "decoded block" len */
22854a26620dSTyler Hicks 	(*namelen) = ecryptfs_max_decoded_size(*namelen) - 3;
22864a26620dSTyler Hicks 	(*namelen) -= ECRYPTFS_TAG_70_MAX_METADATA_SIZE;
22874a26620dSTyler Hicks 	(*namelen) -= ECRYPTFS_FILENAME_MIN_RANDOM_PREPEND_BYTES;
22884a26620dSTyler Hicks 	/* Worst case is that the filename is padded nearly a full block size */
22894a26620dSTyler Hicks 	(*namelen) -= cipher_blocksize - 1;
22904a26620dSTyler Hicks 
22914a26620dSTyler Hicks 	if ((*namelen) < 0)
22924a26620dSTyler Hicks 		(*namelen) = 0;
22934a26620dSTyler Hicks 
22944a26620dSTyler Hicks 	return 0;
22954a26620dSTyler Hicks }
2296