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David Howellsab3c3582013-09-24 10:35:18 +01001/* Large capacity key type
2 *
3 * Copyright (C) 2013 Red Hat, Inc. All Rights Reserved.
4 * Written by David Howells (dhowells@redhat.com)
5 *
6 * This program is free software; you can redistribute it and/or
7 * modify it under the terms of the GNU General Public Licence
8 * as published by the Free Software Foundation; either version
9 * 2 of the Licence, or (at your option) any later version.
10 */
11
David Howells7df3e592016-10-26 15:02:01 +010012#define pr_fmt(fmt) "big_key: "fmt
David Howellsab3c3582013-09-24 10:35:18 +010013#include <linux/init.h>
14#include <linux/seq_file.h>
15#include <linux/file.h>
16#include <linux/shmem_fs.h>
17#include <linux/err.h>
Kirill Marinushkin13100a72016-04-12 19:54:58 +010018#include <linux/scatterlist.h>
David Howellsab3c3582013-09-24 10:35:18 +010019#include <keys/user-type.h>
20#include <keys/big_key-type.h>
Kirill Marinushkin13100a72016-04-12 19:54:58 +010021#include <crypto/rng.h>
Herbert Xud56d72c2016-06-22 22:13:53 +080022#include <crypto/skcipher.h>
David Howellsab3c3582013-09-24 10:35:18 +010023
David Howellsab3c3582013-09-24 10:35:18 +010024/*
David Howells146aa8b2015-10-21 14:04:48 +010025 * Layout of key payload words.
26 */
27enum {
28 big_key_data,
29 big_key_path,
30 big_key_path_2nd_part,
31 big_key_len,
32};
33
34/*
Kirill Marinushkin13100a72016-04-12 19:54:58 +010035 * Crypto operation with big_key data
36 */
37enum big_key_op {
38 BIG_KEY_ENC,
39 BIG_KEY_DEC,
40};
41
42/*
David Howellsab3c3582013-09-24 10:35:18 +010043 * If the data is under this limit, there's no point creating a shm file to
44 * hold it as the permanently resident metadata for the shmem fs will be at
45 * least as large as the data.
46 */
47#define BIG_KEY_FILE_THRESHOLD (sizeof(struct inode) + sizeof(struct dentry))
48
49/*
Kirill Marinushkin13100a72016-04-12 19:54:58 +010050 * Key size for big_key data encryption
51 */
52#define ENC_KEY_SIZE 16
53
54/*
David Howellsab3c3582013-09-24 10:35:18 +010055 * big_key defined keys take an arbitrary string as the description and an
56 * arbitrary blob of data as the payload
57 */
58struct key_type key_type_big_key = {
59 .name = "big_key",
David Howells002edaf2014-07-18 18:56:36 +010060 .preparse = big_key_preparse,
61 .free_preparse = big_key_free_preparse,
62 .instantiate = generic_key_instantiate,
David Howellsab3c3582013-09-24 10:35:18 +010063 .revoke = big_key_revoke,
64 .destroy = big_key_destroy,
65 .describe = big_key_describe,
66 .read = big_key_read,
67};
68
69/*
Kirill Marinushkin13100a72016-04-12 19:54:58 +010070 * Crypto names for big_key data encryption
71 */
72static const char big_key_rng_name[] = "stdrng";
73static const char big_key_alg_name[] = "ecb(aes)";
74
75/*
76 * Crypto algorithms for big_key data encryption
77 */
78static struct crypto_rng *big_key_rng;
Herbert Xud56d72c2016-06-22 22:13:53 +080079static struct crypto_skcipher *big_key_skcipher;
Kirill Marinushkin13100a72016-04-12 19:54:58 +010080
81/*
82 * Generate random key to encrypt big_key data
83 */
84static inline int big_key_gen_enckey(u8 *key)
85{
86 return crypto_rng_get_bytes(big_key_rng, key, ENC_KEY_SIZE);
87}
88
89/*
90 * Encrypt/decrypt big_key data
91 */
92static int big_key_crypt(enum big_key_op op, u8 *data, size_t datalen, u8 *key)
93{
94 int ret = -EINVAL;
95 struct scatterlist sgio;
Herbert Xud56d72c2016-06-22 22:13:53 +080096 SKCIPHER_REQUEST_ON_STACK(req, big_key_skcipher);
Kirill Marinushkin13100a72016-04-12 19:54:58 +010097
Herbert Xud56d72c2016-06-22 22:13:53 +080098 if (crypto_skcipher_setkey(big_key_skcipher, key, ENC_KEY_SIZE)) {
Kirill Marinushkin13100a72016-04-12 19:54:58 +010099 ret = -EAGAIN;
100 goto error;
101 }
102
Herbert Xud56d72c2016-06-22 22:13:53 +0800103 skcipher_request_set_tfm(req, big_key_skcipher);
104 skcipher_request_set_callback(req, CRYPTO_TFM_REQ_MAY_SLEEP,
105 NULL, NULL);
Kirill Marinushkin13100a72016-04-12 19:54:58 +0100106
107 sg_init_one(&sgio, data, datalen);
Herbert Xud56d72c2016-06-22 22:13:53 +0800108 skcipher_request_set_crypt(req, &sgio, &sgio, datalen, NULL);
Kirill Marinushkin13100a72016-04-12 19:54:58 +0100109
110 if (op == BIG_KEY_ENC)
Herbert Xud56d72c2016-06-22 22:13:53 +0800111 ret = crypto_skcipher_encrypt(req);
Kirill Marinushkin13100a72016-04-12 19:54:58 +0100112 else
Herbert Xud56d72c2016-06-22 22:13:53 +0800113 ret = crypto_skcipher_decrypt(req);
114
115 skcipher_request_zero(req);
Kirill Marinushkin13100a72016-04-12 19:54:58 +0100116
117error:
118 return ret;
119}
120
121/*
David Howells002edaf2014-07-18 18:56:36 +0100122 * Preparse a big key
David Howellsab3c3582013-09-24 10:35:18 +0100123 */
David Howells002edaf2014-07-18 18:56:36 +0100124int big_key_preparse(struct key_preparsed_payload *prep)
David Howellsab3c3582013-09-24 10:35:18 +0100125{
David Howells146aa8b2015-10-21 14:04:48 +0100126 struct path *path = (struct path *)&prep->payload.data[big_key_path];
David Howellsab3c3582013-09-24 10:35:18 +0100127 struct file *file;
Kirill Marinushkin13100a72016-04-12 19:54:58 +0100128 u8 *enckey;
129 u8 *data = NULL;
David Howellsab3c3582013-09-24 10:35:18 +0100130 ssize_t written;
131 size_t datalen = prep->datalen;
132 int ret;
133
134 ret = -EINVAL;
135 if (datalen <= 0 || datalen > 1024 * 1024 || !prep->data)
136 goto error;
137
138 /* Set an arbitrary quota */
David Howells002edaf2014-07-18 18:56:36 +0100139 prep->quotalen = 16;
David Howellsab3c3582013-09-24 10:35:18 +0100140
David Howells146aa8b2015-10-21 14:04:48 +0100141 prep->payload.data[big_key_len] = (void *)(unsigned long)datalen;
David Howellsab3c3582013-09-24 10:35:18 +0100142
143 if (datalen > BIG_KEY_FILE_THRESHOLD) {
144 /* Create a shmem file to store the data in. This will permit the data
145 * to be swapped out if needed.
146 *
Kirill Marinushkin13100a72016-04-12 19:54:58 +0100147 * File content is stored encrypted with randomly generated key.
David Howellsab3c3582013-09-24 10:35:18 +0100148 */
Herbert Xud56d72c2016-06-22 22:13:53 +0800149 size_t enclen = ALIGN(datalen, crypto_skcipher_blocksize(big_key_skcipher));
Christoph Hellwige13ec932017-09-01 17:39:14 +0200150 loff_t pos = 0;
Kirill Marinushkin13100a72016-04-12 19:54:58 +0100151
152 /* prepare aligned data to encrypt */
153 data = kmalloc(enclen, GFP_KERNEL);
154 if (!data)
155 return -ENOMEM;
156
157 memcpy(data, prep->data, datalen);
158 memset(data + datalen, 0x00, enclen - datalen);
159
160 /* generate random key */
161 enckey = kmalloc(ENC_KEY_SIZE, GFP_KERNEL);
162 if (!enckey) {
163 ret = -ENOMEM;
David Howells002edaf2014-07-18 18:56:36 +0100164 goto error;
Wei Yongjund2b86972013-10-30 11:23:02 +0800165 }
David Howellsab3c3582013-09-24 10:35:18 +0100166
Kirill Marinushkin13100a72016-04-12 19:54:58 +0100167 ret = big_key_gen_enckey(enckey);
168 if (ret)
169 goto err_enckey;
170
171 /* encrypt aligned data */
172 ret = big_key_crypt(BIG_KEY_ENC, data, enclen, enckey);
173 if (ret)
174 goto err_enckey;
175
176 /* save aligned data to file */
177 file = shmem_kernel_file_setup("", enclen, 0);
178 if (IS_ERR(file)) {
179 ret = PTR_ERR(file);
180 goto err_enckey;
181 }
182
Christoph Hellwige13ec932017-09-01 17:39:14 +0200183 written = kernel_write(file, data, enclen, &pos);
Kirill Marinushkin13100a72016-04-12 19:54:58 +0100184 if (written != enclen) {
David Howells97826c82013-11-13 16:51:06 +0000185 ret = written;
David Howellsab3c3582013-09-24 10:35:18 +0100186 if (written >= 0)
187 ret = -ENOMEM;
188 goto err_fput;
189 }
190
191 /* Pin the mount and dentry to the key so that we can open it again
192 * later
193 */
Kirill Marinushkin13100a72016-04-12 19:54:58 +0100194 prep->payload.data[big_key_data] = enckey;
David Howellsab3c3582013-09-24 10:35:18 +0100195 *path = file->f_path;
196 path_get(path);
197 fput(file);
Kirill Marinushkin13100a72016-04-12 19:54:58 +0100198 kfree(data);
David Howellsab3c3582013-09-24 10:35:18 +0100199 } else {
200 /* Just store the data in a buffer */
201 void *data = kmalloc(datalen, GFP_KERNEL);
Kirill Marinushkin13100a72016-04-12 19:54:58 +0100202
David Howells002edaf2014-07-18 18:56:36 +0100203 if (!data)
204 return -ENOMEM;
David Howellsab3c3582013-09-24 10:35:18 +0100205
David Howells146aa8b2015-10-21 14:04:48 +0100206 prep->payload.data[big_key_data] = data;
207 memcpy(data, prep->data, prep->datalen);
David Howellsab3c3582013-09-24 10:35:18 +0100208 }
209 return 0;
210
211err_fput:
212 fput(file);
Kirill Marinushkin13100a72016-04-12 19:54:58 +0100213err_enckey:
214 kfree(enckey);
David Howellsab3c3582013-09-24 10:35:18 +0100215error:
Kirill Marinushkin13100a72016-04-12 19:54:58 +0100216 kfree(data);
David Howellsab3c3582013-09-24 10:35:18 +0100217 return ret;
218}
219
220/*
David Howells002edaf2014-07-18 18:56:36 +0100221 * Clear preparsement.
222 */
223void big_key_free_preparse(struct key_preparsed_payload *prep)
224{
225 if (prep->datalen > BIG_KEY_FILE_THRESHOLD) {
David Howells146aa8b2015-10-21 14:04:48 +0100226 struct path *path = (struct path *)&prep->payload.data[big_key_path];
Kirill Marinushkin13100a72016-04-12 19:54:58 +0100227
David Howells002edaf2014-07-18 18:56:36 +0100228 path_put(path);
David Howells002edaf2014-07-18 18:56:36 +0100229 }
Kirill Marinushkin13100a72016-04-12 19:54:58 +0100230 kfree(prep->payload.data[big_key_data]);
David Howells002edaf2014-07-18 18:56:36 +0100231}
232
233/*
David Howellsab3c3582013-09-24 10:35:18 +0100234 * dispose of the links from a revoked keyring
235 * - called with the key sem write-locked
236 */
237void big_key_revoke(struct key *key)
238{
David Howells146aa8b2015-10-21 14:04:48 +0100239 struct path *path = (struct path *)&key->payload.data[big_key_path];
David Howellsab3c3582013-09-24 10:35:18 +0100240
241 /* clear the quota */
242 key_payload_reserve(key, 0);
David Howells146aa8b2015-10-21 14:04:48 +0100243 if (key_is_instantiated(key) &&
244 (size_t)key->payload.data[big_key_len] > BIG_KEY_FILE_THRESHOLD)
David Howellsab3c3582013-09-24 10:35:18 +0100245 vfs_truncate(path, 0);
246}
247
248/*
249 * dispose of the data dangling from the corpse of a big_key key
250 */
251void big_key_destroy(struct key *key)
252{
David Howells146aa8b2015-10-21 14:04:48 +0100253 size_t datalen = (size_t)key->payload.data[big_key_len];
254
Kirill Marinushkin13100a72016-04-12 19:54:58 +0100255 if (datalen > BIG_KEY_FILE_THRESHOLD) {
David Howells146aa8b2015-10-21 14:04:48 +0100256 struct path *path = (struct path *)&key->payload.data[big_key_path];
Kirill Marinushkin13100a72016-04-12 19:54:58 +0100257
David Howellsab3c3582013-09-24 10:35:18 +0100258 path_put(path);
259 path->mnt = NULL;
260 path->dentry = NULL;
David Howellsab3c3582013-09-24 10:35:18 +0100261 }
Kirill Marinushkin13100a72016-04-12 19:54:58 +0100262 kfree(key->payload.data[big_key_data]);
263 key->payload.data[big_key_data] = NULL;
David Howellsab3c3582013-09-24 10:35:18 +0100264}
265
266/*
267 * describe the big_key key
268 */
269void big_key_describe(const struct key *key, struct seq_file *m)
270{
David Howells146aa8b2015-10-21 14:04:48 +0100271 size_t datalen = (size_t)key->payload.data[big_key_len];
David Howellsab3c3582013-09-24 10:35:18 +0100272
273 seq_puts(m, key->description);
274
275 if (key_is_instantiated(key))
David Howells146aa8b2015-10-21 14:04:48 +0100276 seq_printf(m, ": %zu [%s]",
David Howellsab3c3582013-09-24 10:35:18 +0100277 datalen,
278 datalen > BIG_KEY_FILE_THRESHOLD ? "file" : "buff");
279}
280
281/*
282 * read the key data
283 * - the key's semaphore is read-locked
284 */
285long big_key_read(const struct key *key, char __user *buffer, size_t buflen)
286{
David Howells146aa8b2015-10-21 14:04:48 +0100287 size_t datalen = (size_t)key->payload.data[big_key_len];
David Howellsab3c3582013-09-24 10:35:18 +0100288 long ret;
289
290 if (!buffer || buflen < datalen)
291 return datalen;
292
293 if (datalen > BIG_KEY_FILE_THRESHOLD) {
David Howells146aa8b2015-10-21 14:04:48 +0100294 struct path *path = (struct path *)&key->payload.data[big_key_path];
David Howellsab3c3582013-09-24 10:35:18 +0100295 struct file *file;
Kirill Marinushkin13100a72016-04-12 19:54:58 +0100296 u8 *data;
297 u8 *enckey = (u8 *)key->payload.data[big_key_data];
Herbert Xud56d72c2016-06-22 22:13:53 +0800298 size_t enclen = ALIGN(datalen, crypto_skcipher_blocksize(big_key_skcipher));
Christoph Hellwigbdd1d2d2017-09-01 17:39:13 +0200299 loff_t pos = 0;
Kirill Marinushkin13100a72016-04-12 19:54:58 +0100300
301 data = kmalloc(enclen, GFP_KERNEL);
302 if (!data)
303 return -ENOMEM;
David Howellsab3c3582013-09-24 10:35:18 +0100304
305 file = dentry_open(path, O_RDONLY, current_cred());
Kirill Marinushkin13100a72016-04-12 19:54:58 +0100306 if (IS_ERR(file)) {
307 ret = PTR_ERR(file);
308 goto error;
309 }
David Howellsab3c3582013-09-24 10:35:18 +0100310
Kirill Marinushkin13100a72016-04-12 19:54:58 +0100311 /* read file to kernel and decrypt */
Christoph Hellwigbdd1d2d2017-09-01 17:39:13 +0200312 ret = kernel_read(file, data, enclen, &pos);
Kirill Marinushkin13100a72016-04-12 19:54:58 +0100313 if (ret >= 0 && ret != enclen) {
David Howellsab3c3582013-09-24 10:35:18 +0100314 ret = -EIO;
Kirill Marinushkin13100a72016-04-12 19:54:58 +0100315 goto err_fput;
316 }
317
318 ret = big_key_crypt(BIG_KEY_DEC, data, enclen, enckey);
319 if (ret)
320 goto err_fput;
321
322 ret = datalen;
323
324 /* copy decrypted data to user */
325 if (copy_to_user(buffer, data, datalen) != 0)
326 ret = -EFAULT;
327
328err_fput:
329 fput(file);
330error:
331 kfree(data);
David Howellsab3c3582013-09-24 10:35:18 +0100332 } else {
333 ret = datalen;
David Howells146aa8b2015-10-21 14:04:48 +0100334 if (copy_to_user(buffer, key->payload.data[big_key_data],
335 datalen) != 0)
David Howellsab3c3582013-09-24 10:35:18 +0100336 ret = -EFAULT;
337 }
338
339 return ret;
340}
341
Kirill Marinushkin13100a72016-04-12 19:54:58 +0100342/*
343 * Register key type
344 */
David Howellsab3c3582013-09-24 10:35:18 +0100345static int __init big_key_init(void)
346{
David Howells7df3e592016-10-26 15:02:01 +0100347 struct crypto_skcipher *cipher;
348 struct crypto_rng *rng;
349 int ret;
Kirill Marinushkin13100a72016-04-12 19:54:58 +0100350
David Howells7df3e592016-10-26 15:02:01 +0100351 rng = crypto_alloc_rng(big_key_rng_name, 0, 0);
352 if (IS_ERR(rng)) {
353 pr_err("Can't alloc rng: %ld\n", PTR_ERR(rng));
354 return PTR_ERR(rng);
Kirill Marinushkin13100a72016-04-12 19:54:58 +0100355 }
356
David Howells7df3e592016-10-26 15:02:01 +0100357 big_key_rng = rng;
358
Kirill Marinushkin13100a72016-04-12 19:54:58 +0100359 /* seed RNG */
David Howells7df3e592016-10-26 15:02:01 +0100360 ret = crypto_rng_reset(rng, NULL, crypto_rng_seedsize(rng));
361 if (ret) {
362 pr_err("Can't reset rng: %d\n", ret);
363 goto error_rng;
364 }
Kirill Marinushkin13100a72016-04-12 19:54:58 +0100365
366 /* init block cipher */
David Howells7df3e592016-10-26 15:02:01 +0100367 cipher = crypto_alloc_skcipher(big_key_alg_name, 0, CRYPTO_ALG_ASYNC);
368 if (IS_ERR(cipher)) {
369 ret = PTR_ERR(cipher);
370 pr_err("Can't alloc crypto: %d\n", ret);
371 goto error_rng;
372 }
373
374 big_key_skcipher = cipher;
375
376 ret = register_key_type(&key_type_big_key);
377 if (ret < 0) {
378 pr_err("Can't register type: %d\n", ret);
379 goto error_cipher;
Kirill Marinushkin13100a72016-04-12 19:54:58 +0100380 }
381
382 return 0;
383
David Howells7df3e592016-10-26 15:02:01 +0100384error_cipher:
385 crypto_free_skcipher(big_key_skcipher);
386error_rng:
Kirill Marinushkin13100a72016-04-12 19:54:58 +0100387 crypto_free_rng(big_key_rng);
Kirill Marinushkin13100a72016-04-12 19:54:58 +0100388 return ret;
389}
390
David Howells7df3e592016-10-26 15:02:01 +0100391late_initcall(big_key_init);