blob: cc1a52a3b20afa349a8de1c2939b0dc7abe5b1f1 [file] [log] [blame]
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001/*
2 * Copyright (C) 2010 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17/* TO DO:
18 * 1. Perhaps keep several copies of the encrypted key, in case something
19 * goes horribly wrong?
20 *
21 */
22
23#include <sys/types.h>
Ken Sumralle550f782013-08-20 13:48:23 -070024#include <sys/wait.h>
Ken Sumrall8f869aa2010-12-03 03:47:09 -080025#include <sys/stat.h>
Paul Lawrencef4faa572014-01-29 13:31:03 -080026#include <ctype.h>
Ken Sumrall8f869aa2010-12-03 03:47:09 -080027#include <fcntl.h>
Elliott Hughes73737162014-06-25 17:27:42 -070028#include <inttypes.h>
Ken Sumrall8f869aa2010-12-03 03:47:09 -080029#include <unistd.h>
30#include <stdio.h>
31#include <sys/ioctl.h>
32#include <linux/dm-ioctl.h>
33#include <libgen.h>
34#include <stdlib.h>
35#include <sys/param.h>
36#include <string.h>
37#include <sys/mount.h>
38#include <openssl/evp.h>
39#include <errno.h>
Ken Sumrall3ed82362011-01-28 23:31:16 -080040#include <ext4.h>
Ken Sumrall29d8da82011-05-18 17:20:07 -070041#include <linux/kdev_t.h>
Ken Sumralle5032c42012-04-01 23:58:44 -070042#include <fs_mgr.h>
Ken Sumrall8f869aa2010-12-03 03:47:09 -080043#include "cryptfs.h"
44#define LOG_TAG "Cryptfs"
45#include "cutils/log.h"
46#include "cutils/properties.h"
Ken Sumralladfba362013-06-04 16:37:52 -070047#include "cutils/android_reboot.h"
Ken Sumrall5d4c68e2011-01-30 19:06:03 -080048#include "hardware_legacy/power.h"
Ken Sumralle550f782013-08-20 13:48:23 -070049#include <logwrap/logwrap.h>
Ken Sumrall29d8da82011-05-18 17:20:07 -070050#include "VolumeManager.h"
Ken Sumrall9caab762013-06-11 19:10:20 -070051#include "VoldUtil.h"
Kenny Rootc4c70f12013-06-14 12:11:38 -070052#include "crypto_scrypt.h"
Paul Lawrenceae59fe62014-01-21 08:23:27 -080053#include "ext4_utils.h"
Daniel Rosenberge82df162014-08-15 22:19:23 +000054#include "f2fs_sparseblock.h"
Paul Lawrence87999172014-02-20 12:21:31 -080055#include "CheckBattery.h"
jessica_yu3f14fe42014-09-22 15:57:40 +080056#include "Process.h"
Ken Sumrall8f869aa2010-12-03 03:47:09 -080057
Paul Lawrence69f4ebd2014-04-14 12:17:14 -070058#include <hardware/keymaster.h>
59
Mark Salyzyn3e971272014-01-21 13:27:04 -080060#define UNUSED __attribute__((unused))
61
Mark Salyzyn5eecc442014-02-12 14:16:14 -080062#define UNUSED __attribute__((unused))
63
Ken Sumrall8f869aa2010-12-03 03:47:09 -080064#define DM_CRYPT_BUF_SIZE 4096
65
Jason parks70a4b3f2011-01-28 10:10:47 -060066#define HASH_COUNT 2000
67#define KEY_LEN_BYTES 16
68#define IV_LEN_BYTES 16
69
Ken Sumrall29d8da82011-05-18 17:20:07 -070070#define KEY_IN_FOOTER "footer"
71
Paul Lawrencef4faa572014-01-29 13:31:03 -080072// "default_password" encoded into hex (d=0x64 etc)
73#define DEFAULT_PASSWORD "64656661756c745f70617373776f7264"
74
Ken Sumrall29d8da82011-05-18 17:20:07 -070075#define EXT4_FS 1
JP Abgrall62c7af32014-06-16 13:01:23 -070076#define F2FS_FS 2
Ken Sumrall29d8da82011-05-18 17:20:07 -070077
Ken Sumralle919efe2012-09-29 17:07:41 -070078#define TABLE_LOAD_RETRIES 10
79
Shawn Willden47ba10d2014-09-03 17:07:06 -060080#define RSA_KEY_SIZE 2048
81#define RSA_KEY_SIZE_BYTES (RSA_KEY_SIZE / 8)
82#define RSA_EXPONENT 0x10001
Paul Lawrence69f4ebd2014-04-14 12:17:14 -070083
Paul Lawrence8e3f4512014-09-08 10:11:17 -070084#define RETRY_MOUNT_ATTEMPTS 10
85#define RETRY_MOUNT_DELAY_SECONDS 1
86
Ken Sumrall8f869aa2010-12-03 03:47:09 -080087char *me = "cryptfs";
88
Jason parks70a4b3f2011-01-28 10:10:47 -060089static unsigned char saved_master_key[KEY_LEN_BYTES];
Ken Sumrall3ad90722011-10-04 20:38:29 -070090static char *saved_mount_point;
Jason parks70a4b3f2011-01-28 10:10:47 -060091static int master_key_saved = 0;
Ken Sumrall160b4d62013-04-22 12:15:39 -070092static struct crypt_persist_data *persist_data = NULL;
Ken Sumrall56ad03c2013-02-13 13:00:19 -080093
Paul Lawrence69f4ebd2014-04-14 12:17:14 -070094static int keymaster_init(keymaster_device_t **keymaster_dev)
95{
96 int rc;
97
98 const hw_module_t* mod;
99 rc = hw_get_module_by_class(KEYSTORE_HARDWARE_MODULE_ID, NULL, &mod);
100 if (rc) {
101 ALOGE("could not find any keystore module");
102 goto out;
103 }
104
105 rc = keymaster_open(mod, keymaster_dev);
106 if (rc) {
107 ALOGE("could not open keymaster device in %s (%s)",
108 KEYSTORE_HARDWARE_MODULE_ID, strerror(-rc));
109 goto out;
110 }
111
112 return 0;
113
114out:
115 *keymaster_dev = NULL;
116 return rc;
117}
118
119/* Should we use keymaster? */
120static int keymaster_check_compatibility()
121{
122 keymaster_device_t *keymaster_dev = 0;
123 int rc = 0;
124
125 if (keymaster_init(&keymaster_dev)) {
126 SLOGE("Failed to init keymaster");
127 rc = -1;
128 goto out;
129 }
130
Paul Lawrence8c008392014-05-06 14:02:48 -0700131 SLOGI("keymaster version is %d", keymaster_dev->common.module->module_api_version);
132
133 if (keymaster_dev->common.module->module_api_version
134 < KEYMASTER_MODULE_API_VERSION_0_3) {
135 rc = 0;
136 goto out;
137 }
138
Paul Lawrence69f4ebd2014-04-14 12:17:14 -0700139 if (keymaster_dev->flags & KEYMASTER_BLOBS_ARE_STANDALONE) {
140 rc = 1;
141 }
142
143out:
144 keymaster_close(keymaster_dev);
145 return rc;
146}
147
148/* Create a new keymaster key and store it in this footer */
149static int keymaster_create_key(struct crypt_mnt_ftr *ftr)
150{
151 uint8_t* key = 0;
152 keymaster_device_t *keymaster_dev = 0;
153
154 if (keymaster_init(&keymaster_dev)) {
155 SLOGE("Failed to init keymaster");
156 return -1;
157 }
158
159 int rc = 0;
160
161 keymaster_rsa_keygen_params_t params;
162 memset(&params, '\0', sizeof(params));
Shawn Willden47ba10d2014-09-03 17:07:06 -0600163 params.public_exponent = RSA_EXPONENT;
164 params.modulus_size = RSA_KEY_SIZE;
Paul Lawrence69f4ebd2014-04-14 12:17:14 -0700165
166 size_t key_size;
167 if (keymaster_dev->generate_keypair(keymaster_dev, TYPE_RSA, &params,
168 &key, &key_size)) {
169 SLOGE("Failed to generate keypair");
170 rc = -1;
171 goto out;
172 }
173
174 if (key_size > KEYMASTER_BLOB_SIZE) {
175 SLOGE("Keymaster key too large for crypto footer");
176 rc = -1;
177 goto out;
178 }
179
180 memcpy(ftr->keymaster_blob, key, key_size);
181 ftr->keymaster_blob_size = key_size;
182
183out:
184 keymaster_close(keymaster_dev);
185 free(key);
186 return rc;
187}
188
Shawn Willdene17a9c42014-09-08 13:04:08 -0600189/* This signs the given object using the keymaster key. */
190static int keymaster_sign_object(struct crypt_mnt_ftr *ftr,
Shawn Willden47ba10d2014-09-03 17:07:06 -0600191 const unsigned char *object,
192 const size_t object_size,
193 unsigned char **signature,
194 size_t *signature_size)
195{
196 int rc = 0;
197 keymaster_device_t *keymaster_dev = 0;
198 if (keymaster_init(&keymaster_dev)) {
199 SLOGE("Failed to init keymaster");
200 return -1;
201 }
202
203 /* We currently set the digest type to DIGEST_NONE because it's the
204 * only supported value for keymaster. A similar issue exists with
205 * PADDING_NONE. Long term both of these should likely change.
206 */
207 keymaster_rsa_sign_params_t params;
208 params.digest_type = DIGEST_NONE;
209 params.padding_type = PADDING_NONE;
210
211 unsigned char to_sign[RSA_KEY_SIZE_BYTES];
Shawn Willdene17a9c42014-09-08 13:04:08 -0600212 size_t to_sign_size = sizeof(to_sign);
Shawn Willden47ba10d2014-09-03 17:07:06 -0600213 memset(to_sign, 0, RSA_KEY_SIZE_BYTES);
Shawn Willden47ba10d2014-09-03 17:07:06 -0600214
Shawn Willdene17a9c42014-09-08 13:04:08 -0600215 // To sign a message with RSA, the message must satisfy two
216 // constraints:
217 //
218 // 1. The message, when interpreted as a big-endian numeric value, must
219 // be strictly less than the public modulus of the RSA key. Note
220 // that because the most significant bit of the public modulus is
221 // guaranteed to be 1 (else it's an (n-1)-bit key, not an n-bit
222 // key), an n-bit message with most significant bit 0 always
223 // satisfies this requirement.
224 //
225 // 2. The message must have the same length in bits as the public
226 // modulus of the RSA key. This requirement isn't mathematically
227 // necessary, but is necessary to ensure consistency in
228 // implementations.
229 switch (ftr->kdf_type) {
230 case KDF_SCRYPT_KEYMASTER_UNPADDED:
231 // This is broken: It produces a message which is shorter than
232 // the public modulus, failing criterion 2.
233 memcpy(to_sign, object, object_size);
234 to_sign_size = object_size;
235 SLOGI("Signing unpadded object");
236 break;
237 case KDF_SCRYPT_KEYMASTER_BADLY_PADDED:
238 // This is broken: Since the value of object is uniformly
239 // distributed, it produces a message that is larger than the
240 // public modulus with probability 0.25.
241 memcpy(to_sign, object, min(RSA_KEY_SIZE_BYTES, object_size));
242 SLOGI("Signing end-padded object");
243 break;
244 case KDF_SCRYPT_KEYMASTER:
245 // This ensures the most significant byte of the signed message
246 // is zero. We could have zero-padded to the left instead, but
247 // this approach is slightly more robust against changes in
248 // object size. However, it's still broken (but not unusably
249 // so) because we really should be using a proper RSA padding
250 // function, such as OAEP.
251 //
252 // TODO(paullawrence): When keymaster 0.4 is available, change
253 // this to use the padding options it provides.
254 memcpy(to_sign + 1, object, min(RSA_KEY_SIZE_BYTES - 1, object_size));
255 SLOGI("Signing safely-padded object");
256 break;
257 default:
258 SLOGE("Unknown KDF type %d", ftr->kdf_type);
259 return -1;
260 }
261
Shawn Willden47ba10d2014-09-03 17:07:06 -0600262 rc = keymaster_dev->sign_data(keymaster_dev,
263 &params,
264 ftr->keymaster_blob,
265 ftr->keymaster_blob_size,
266 to_sign,
Shawn Willdene17a9c42014-09-08 13:04:08 -0600267 to_sign_size,
Shawn Willden47ba10d2014-09-03 17:07:06 -0600268 signature,
269 signature_size);
270
271 keymaster_close(keymaster_dev);
272 return rc;
273}
274
Paul Lawrence399317e2014-03-10 13:20:50 -0700275/* Store password when userdata is successfully decrypted and mounted.
276 * Cleared by cryptfs_clear_password
277 *
278 * To avoid a double prompt at boot, we need to store the CryptKeeper
279 * password and pass it to KeyGuard, which uses it to unlock KeyStore.
280 * Since the entire framework is torn down and rebuilt after encryption,
281 * we have to use a daemon or similar to store the password. Since vold
282 * is secured against IPC except from system processes, it seems a reasonable
283 * place to store this.
284 *
285 * password should be cleared once it has been used.
286 *
287 * password is aged out after password_max_age_seconds seconds.
Paul Lawrence684dbdf2014-02-07 12:07:22 -0800288 */
Paul Lawrence399317e2014-03-10 13:20:50 -0700289static char* password = 0;
290static int password_expiry_time = 0;
291static const int password_max_age_seconds = 60;
Paul Lawrence684dbdf2014-02-07 12:07:22 -0800292
Ken Sumrall56ad03c2013-02-13 13:00:19 -0800293extern struct fstab *fstab;
Ken Sumrall8ddbe402011-01-17 15:26:29 -0800294
Paul Lawrence87999172014-02-20 12:21:31 -0800295enum RebootType {reboot, recovery, shutdown};
296static void cryptfs_reboot(enum RebootType rt)
Ken Sumralladfba362013-06-04 16:37:52 -0700297{
Paul Lawrence87999172014-02-20 12:21:31 -0800298 switch(rt) {
299 case reboot:
300 property_set(ANDROID_RB_PROPERTY, "reboot");
301 break;
302
303 case recovery:
304 property_set(ANDROID_RB_PROPERTY, "reboot,recovery");
305 break;
306
307 case shutdown:
308 property_set(ANDROID_RB_PROPERTY, "shutdown");
309 break;
Ken Sumralladfba362013-06-04 16:37:52 -0700310 }
Paul Lawrence87999172014-02-20 12:21:31 -0800311
Ken Sumralladfba362013-06-04 16:37:52 -0700312 sleep(20);
313
314 /* Shouldn't get here, reboot should happen before sleep times out */
315 return;
316}
317
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800318static void ioctl_init(struct dm_ioctl *io, size_t dataSize, const char *name, unsigned flags)
319{
320 memset(io, 0, dataSize);
321 io->data_size = dataSize;
322 io->data_start = sizeof(struct dm_ioctl);
323 io->version[0] = 4;
324 io->version[1] = 0;
325 io->version[2] = 0;
326 io->flags = flags;
327 if (name) {
328 strncpy(io->name, name, sizeof(io->name));
329 }
330}
331
Kenny Rootc4c70f12013-06-14 12:11:38 -0700332/**
333 * Gets the default device scrypt parameters for key derivation time tuning.
334 * The parameters should lead to about one second derivation time for the
335 * given device.
336 */
337static void get_device_scrypt_params(struct crypt_mnt_ftr *ftr) {
338 const int default_params[] = SCRYPT_DEFAULTS;
339 int params[] = SCRYPT_DEFAULTS;
340 char paramstr[PROPERTY_VALUE_MAX];
341 char *token;
342 char *saveptr;
343 int i;
344
345 property_get(SCRYPT_PROP, paramstr, "");
346 if (paramstr[0] != '\0') {
347 /*
348 * The token we're looking for should be three integers separated by
349 * colons (e.g., "12:8:1"). Scan the property to make sure it matches.
350 */
Kenny Root2947e342013-08-14 15:54:49 -0700351 for (i = 0, token = strtok_r(paramstr, ":", &saveptr);
352 token != NULL && i < 3;
Kenny Rootc4c70f12013-06-14 12:11:38 -0700353 i++, token = strtok_r(NULL, ":", &saveptr)) {
354 char *endptr;
355 params[i] = strtol(token, &endptr, 10);
356
357 /*
358 * Check that there was a valid number and it's 8-bit. If not,
359 * break out and the end check will take the default values.
360 */
361 if ((*token == '\0') || (*endptr != '\0') || params[i] < 0 || params[i] > 255) {
362 break;
363 }
364 }
365
366 /*
367 * If there were not enough tokens or a token was malformed (not an
368 * integer), it will end up here and the default parameters can be
369 * taken.
370 */
371 if ((i != 3) || (token != NULL)) {
372 SLOGW("bad scrypt parameters '%s' should be like '12:8:1'; using defaults", paramstr);
373 memcpy(params, default_params, sizeof(params));
374 }
375 }
376
377 ftr->N_factor = params[0];
378 ftr->r_factor = params[1];
379 ftr->p_factor = params[2];
380}
381
Ken Sumrall3ed82362011-01-28 23:31:16 -0800382static unsigned int get_fs_size(char *dev)
383{
384 int fd, block_size;
385 struct ext4_super_block sb;
386 off64_t len;
387
388 if ((fd = open(dev, O_RDONLY)) < 0) {
389 SLOGE("Cannot open device to get filesystem size ");
390 return 0;
391 }
392
393 if (lseek64(fd, 1024, SEEK_SET) < 0) {
394 SLOGE("Cannot seek to superblock");
395 return 0;
396 }
397
398 if (read(fd, &sb, sizeof(sb)) != sizeof(sb)) {
399 SLOGE("Cannot read superblock");
400 return 0;
401 }
402
403 close(fd);
404
Daniel Rosenberge82df162014-08-15 22:19:23 +0000405 if (le32_to_cpu(sb.s_magic) != EXT4_SUPER_MAGIC) {
406 SLOGE("Not a valid ext4 superblock");
407 return 0;
408 }
Ken Sumrall3ed82362011-01-28 23:31:16 -0800409 block_size = 1024 << sb.s_log_block_size;
410 /* compute length in bytes */
411 len = ( ((off64_t)sb.s_blocks_count_hi << 32) + sb.s_blocks_count_lo) * block_size;
412
413 /* return length in sectors */
414 return (unsigned int) (len / 512);
415}
416
Ken Sumrall160b4d62013-04-22 12:15:39 -0700417static int get_crypt_ftr_info(char **metadata_fname, off64_t *off)
418{
419 static int cached_data = 0;
420 static off64_t cached_off = 0;
421 static char cached_metadata_fname[PROPERTY_VALUE_MAX] = "";
422 int fd;
423 char key_loc[PROPERTY_VALUE_MAX];
424 char real_blkdev[PROPERTY_VALUE_MAX];
425 unsigned int nr_sec;
426 int rc = -1;
427
428 if (!cached_data) {
429 fs_mgr_get_crypt_info(fstab, key_loc, real_blkdev, sizeof(key_loc));
430
431 if (!strcmp(key_loc, KEY_IN_FOOTER)) {
432 if ( (fd = open(real_blkdev, O_RDWR)) < 0) {
433 SLOGE("Cannot open real block device %s\n", real_blkdev);
434 return -1;
435 }
436
437 if ((nr_sec = get_blkdev_size(fd))) {
438 /* If it's an encrypted Android partition, the last 16 Kbytes contain the
439 * encryption info footer and key, and plenty of bytes to spare for future
440 * growth.
441 */
442 strlcpy(cached_metadata_fname, real_blkdev, sizeof(cached_metadata_fname));
443 cached_off = ((off64_t)nr_sec * 512) - CRYPT_FOOTER_OFFSET;
444 cached_data = 1;
445 } else {
446 SLOGE("Cannot get size of block device %s\n", real_blkdev);
447 }
448 close(fd);
449 } else {
450 strlcpy(cached_metadata_fname, key_loc, sizeof(cached_metadata_fname));
451 cached_off = 0;
452 cached_data = 1;
453 }
454 }
455
456 if (cached_data) {
457 if (metadata_fname) {
458 *metadata_fname = cached_metadata_fname;
459 }
460 if (off) {
461 *off = cached_off;
462 }
463 rc = 0;
464 }
465
466 return rc;
467}
468
Ken Sumralle8744072011-01-18 22:01:55 -0800469/* key or salt can be NULL, in which case just skip writing that value. Useful to
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800470 * update the failed mount count but not change the key.
471 */
Ken Sumrall160b4d62013-04-22 12:15:39 -0700472static int put_crypt_ftr_and_key(struct crypt_mnt_ftr *crypt_ftr)
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800473{
474 int fd;
475 unsigned int nr_sec, cnt;
Ken Sumrall160b4d62013-04-22 12:15:39 -0700476 /* starting_off is set to the SEEK_SET offset
477 * where the crypto structure starts
478 */
479 off64_t starting_off;
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800480 int rc = -1;
Ken Sumrall160b4d62013-04-22 12:15:39 -0700481 char *fname = NULL;
Ken Sumrall3be890f2011-09-14 16:53:46 -0700482 struct stat statbuf;
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800483
Ken Sumrall160b4d62013-04-22 12:15:39 -0700484 if (get_crypt_ftr_info(&fname, &starting_off)) {
485 SLOGE("Unable to get crypt_ftr_info\n");
486 return -1;
487 }
488 if (fname[0] != '/') {
Ken Sumralle5032c42012-04-01 23:58:44 -0700489 SLOGE("Unexpected value for crypto key location\n");
Ken Sumrall160b4d62013-04-22 12:15:39 -0700490 return -1;
491 }
Ken Sumralle550f782013-08-20 13:48:23 -0700492 if ( (fd = open(fname, O_RDWR | O_CREAT, 0600)) < 0) {
493 SLOGE("Cannot open footer file %s for put\n", fname);
Ken Sumrall160b4d62013-04-22 12:15:39 -0700494 return -1;
495 }
496
497 /* Seek to the start of the crypt footer */
498 if (lseek64(fd, starting_off, SEEK_SET) == -1) {
499 SLOGE("Cannot seek to real block device footer\n");
500 goto errout;
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800501 }
502
503 if ((cnt = write(fd, crypt_ftr, sizeof(struct crypt_mnt_ftr))) != sizeof(struct crypt_mnt_ftr)) {
504 SLOGE("Cannot write real block device footer\n");
505 goto errout;
506 }
507
Ken Sumrall3be890f2011-09-14 16:53:46 -0700508 fstat(fd, &statbuf);
509 /* If the keys are kept on a raw block device, do not try to truncate it. */
Ken Sumralle550f782013-08-20 13:48:23 -0700510 if (S_ISREG(statbuf.st_mode)) {
Ken Sumrall29d8da82011-05-18 17:20:07 -0700511 if (ftruncate(fd, 0x4000)) {
Colin Cross59846b62014-02-06 20:34:29 -0800512 SLOGE("Cannot set footer file size\n");
Ken Sumralle8744072011-01-18 22:01:55 -0800513 goto errout;
514 }
515 }
516
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800517 /* Success! */
518 rc = 0;
519
520errout:
521 close(fd);
522 return rc;
523
524}
525
Ken Sumrall160b4d62013-04-22 12:15:39 -0700526static inline int unix_read(int fd, void* buff, int len)
527{
528 return TEMP_FAILURE_RETRY(read(fd, buff, len));
529}
530
531static inline int unix_write(int fd, const void* buff, int len)
532{
533 return TEMP_FAILURE_RETRY(write(fd, buff, len));
534}
535
536static void init_empty_persist_data(struct crypt_persist_data *pdata, int len)
537{
538 memset(pdata, 0, len);
539 pdata->persist_magic = PERSIST_DATA_MAGIC;
540 pdata->persist_valid_entries = 0;
541}
542
543/* A routine to update the passed in crypt_ftr to the lastest version.
544 * fd is open read/write on the device that holds the crypto footer and persistent
545 * data, crypt_ftr is a pointer to the struct to be updated, and offset is the
546 * absolute offset to the start of the crypt_mnt_ftr on the passed in fd.
547 */
548static void upgrade_crypt_ftr(int fd, struct crypt_mnt_ftr *crypt_ftr, off64_t offset)
549{
Kenny Root7434b312013-06-14 11:29:53 -0700550 int orig_major = crypt_ftr->major_version;
551 int orig_minor = crypt_ftr->minor_version;
Ken Sumrall160b4d62013-04-22 12:15:39 -0700552
Kenny Root7434b312013-06-14 11:29:53 -0700553 if ((crypt_ftr->major_version == 1) && (crypt_ftr->minor_version == 0)) {
554 struct crypt_persist_data *pdata;
555 off64_t pdata_offset = offset + CRYPT_FOOTER_TO_PERSIST_OFFSET;
Ken Sumrall160b4d62013-04-22 12:15:39 -0700556
Kenny Rootc4c70f12013-06-14 12:11:38 -0700557 SLOGW("upgrading crypto footer to 1.1");
558
Kenny Root7434b312013-06-14 11:29:53 -0700559 pdata = malloc(CRYPT_PERSIST_DATA_SIZE);
560 if (pdata == NULL) {
561 SLOGE("Cannot allocate persisent data\n");
562 return;
563 }
564 memset(pdata, 0, CRYPT_PERSIST_DATA_SIZE);
565
566 /* Need to initialize the persistent data area */
567 if (lseek64(fd, pdata_offset, SEEK_SET) == -1) {
568 SLOGE("Cannot seek to persisent data offset\n");
569 return;
570 }
571 /* Write all zeros to the first copy, making it invalid */
572 unix_write(fd, pdata, CRYPT_PERSIST_DATA_SIZE);
573
574 /* Write a valid but empty structure to the second copy */
575 init_empty_persist_data(pdata, CRYPT_PERSIST_DATA_SIZE);
576 unix_write(fd, pdata, CRYPT_PERSIST_DATA_SIZE);
577
578 /* Update the footer */
579 crypt_ftr->persist_data_size = CRYPT_PERSIST_DATA_SIZE;
580 crypt_ftr->persist_data_offset[0] = pdata_offset;
581 crypt_ftr->persist_data_offset[1] = pdata_offset + CRYPT_PERSIST_DATA_SIZE;
582 crypt_ftr->minor_version = 1;
Ken Sumrall160b4d62013-04-22 12:15:39 -0700583 }
584
Paul Lawrencef4faa572014-01-29 13:31:03 -0800585 if ((crypt_ftr->major_version == 1) && (crypt_ftr->minor_version == 1)) {
Kenny Rootc4c70f12013-06-14 12:11:38 -0700586 SLOGW("upgrading crypto footer to 1.2");
JP Abgrall7bdfa522013-11-15 13:42:56 -0800587 /* But keep the old kdf_type.
588 * It will get updated later to KDF_SCRYPT after the password has been verified.
589 */
Kenny Rootc4c70f12013-06-14 12:11:38 -0700590 crypt_ftr->kdf_type = KDF_PBKDF2;
591 get_device_scrypt_params(crypt_ftr);
592 crypt_ftr->minor_version = 2;
593 }
594
Paul Lawrencef4faa572014-01-29 13:31:03 -0800595 if ((crypt_ftr->major_version == 1) && (crypt_ftr->minor_version == 2)) {
596 SLOGW("upgrading crypto footer to 1.3");
597 crypt_ftr->crypt_type = CRYPT_TYPE_PASSWORD;
598 crypt_ftr->minor_version = 3;
599 }
600
Kenny Root7434b312013-06-14 11:29:53 -0700601 if ((orig_major != crypt_ftr->major_version) || (orig_minor != crypt_ftr->minor_version)) {
602 if (lseek64(fd, offset, SEEK_SET) == -1) {
603 SLOGE("Cannot seek to crypt footer\n");
604 return;
605 }
606 unix_write(fd, crypt_ftr, sizeof(struct crypt_mnt_ftr));
Ken Sumrall160b4d62013-04-22 12:15:39 -0700607 }
Ken Sumrall160b4d62013-04-22 12:15:39 -0700608}
609
610
611static int get_crypt_ftr_and_key(struct crypt_mnt_ftr *crypt_ftr)
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800612{
613 int fd;
614 unsigned int nr_sec, cnt;
Ken Sumrall160b4d62013-04-22 12:15:39 -0700615 off64_t starting_off;
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800616 int rc = -1;
Ken Sumrall160b4d62013-04-22 12:15:39 -0700617 char *fname = NULL;
Ken Sumrall29d8da82011-05-18 17:20:07 -0700618 struct stat statbuf;
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800619
Ken Sumrall160b4d62013-04-22 12:15:39 -0700620 if (get_crypt_ftr_info(&fname, &starting_off)) {
621 SLOGE("Unable to get crypt_ftr_info\n");
622 return -1;
623 }
624 if (fname[0] != '/') {
Ken Sumralle5032c42012-04-01 23:58:44 -0700625 SLOGE("Unexpected value for crypto key location\n");
Ken Sumrall160b4d62013-04-22 12:15:39 -0700626 return -1;
627 }
628 if ( (fd = open(fname, O_RDWR)) < 0) {
Ken Sumralle550f782013-08-20 13:48:23 -0700629 SLOGE("Cannot open footer file %s for get\n", fname);
Ken Sumrall160b4d62013-04-22 12:15:39 -0700630 return -1;
631 }
632
633 /* Make sure it's 16 Kbytes in length */
634 fstat(fd, &statbuf);
635 if (S_ISREG(statbuf.st_mode) && (statbuf.st_size != 0x4000)) {
636 SLOGE("footer file %s is not the expected size!\n", fname);
637 goto errout;
638 }
639
640 /* Seek to the start of the crypt footer */
641 if (lseek64(fd, starting_off, SEEK_SET) == -1) {
642 SLOGE("Cannot seek to real block device footer\n");
643 goto errout;
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800644 }
645
646 if ( (cnt = read(fd, crypt_ftr, sizeof(struct crypt_mnt_ftr))) != sizeof(struct crypt_mnt_ftr)) {
647 SLOGE("Cannot read real block device footer\n");
648 goto errout;
649 }
650
651 if (crypt_ftr->magic != CRYPT_MNT_MAGIC) {
Ken Sumrall29d8da82011-05-18 17:20:07 -0700652 SLOGE("Bad magic for real block device %s\n", fname);
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800653 goto errout;
654 }
655
Kenny Rootc96a5f82013-06-14 12:08:28 -0700656 if (crypt_ftr->major_version != CURRENT_MAJOR_VERSION) {
657 SLOGE("Cannot understand major version %d real block device footer; expected %d\n",
658 crypt_ftr->major_version, CURRENT_MAJOR_VERSION);
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800659 goto errout;
660 }
661
Kenny Rootc96a5f82013-06-14 12:08:28 -0700662 if (crypt_ftr->minor_version > CURRENT_MINOR_VERSION) {
663 SLOGW("Warning: crypto footer minor version %d, expected <= %d, continuing...\n",
664 crypt_ftr->minor_version, CURRENT_MINOR_VERSION);
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800665 }
666
Ken Sumrall160b4d62013-04-22 12:15:39 -0700667 /* If this is a verion 1.0 crypt_ftr, make it a 1.1 crypt footer, and update the
668 * copy on disk before returning.
669 */
Kenny Rootc96a5f82013-06-14 12:08:28 -0700670 if (crypt_ftr->minor_version < CURRENT_MINOR_VERSION) {
Ken Sumrall160b4d62013-04-22 12:15:39 -0700671 upgrade_crypt_ftr(fd, crypt_ftr, starting_off);
Ken Sumralle8744072011-01-18 22:01:55 -0800672 }
673
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800674 /* Success! */
675 rc = 0;
676
677errout:
678 close(fd);
679 return rc;
680}
681
Ken Sumrall160b4d62013-04-22 12:15:39 -0700682static int validate_persistent_data_storage(struct crypt_mnt_ftr *crypt_ftr)
683{
684 if (crypt_ftr->persist_data_offset[0] + crypt_ftr->persist_data_size >
685 crypt_ftr->persist_data_offset[1]) {
686 SLOGE("Crypt_ftr persist data regions overlap");
687 return -1;
688 }
689
690 if (crypt_ftr->persist_data_offset[0] >= crypt_ftr->persist_data_offset[1]) {
691 SLOGE("Crypt_ftr persist data region 0 starts after region 1");
692 return -1;
693 }
694
695 if (((crypt_ftr->persist_data_offset[1] + crypt_ftr->persist_data_size) -
696 (crypt_ftr->persist_data_offset[0] - CRYPT_FOOTER_TO_PERSIST_OFFSET)) >
697 CRYPT_FOOTER_OFFSET) {
698 SLOGE("Persistent data extends past crypto footer");
699 return -1;
700 }
701
702 return 0;
703}
704
705static int load_persistent_data(void)
706{
707 struct crypt_mnt_ftr crypt_ftr;
708 struct crypt_persist_data *pdata = NULL;
709 char encrypted_state[PROPERTY_VALUE_MAX];
710 char *fname;
711 int found = 0;
712 int fd;
713 int ret;
714 int i;
715
716 if (persist_data) {
717 /* Nothing to do, we've already loaded or initialized it */
718 return 0;
719 }
720
721
722 /* If not encrypted, just allocate an empty table and initialize it */
723 property_get("ro.crypto.state", encrypted_state, "");
724 if (strcmp(encrypted_state, "encrypted") ) {
725 pdata = malloc(CRYPT_PERSIST_DATA_SIZE);
726 if (pdata) {
727 init_empty_persist_data(pdata, CRYPT_PERSIST_DATA_SIZE);
728 persist_data = pdata;
729 return 0;
730 }
731 return -1;
732 }
733
734 if(get_crypt_ftr_and_key(&crypt_ftr)) {
735 return -1;
736 }
737
Paul Lawrence8561b5c2014-03-17 14:10:51 -0700738 if ((crypt_ftr.major_version < 1)
739 || (crypt_ftr.major_version == 1 && crypt_ftr.minor_version < 1)) {
Ken Sumrall160b4d62013-04-22 12:15:39 -0700740 SLOGE("Crypt_ftr version doesn't support persistent data");
741 return -1;
742 }
743
744 if (get_crypt_ftr_info(&fname, NULL)) {
745 return -1;
746 }
747
748 ret = validate_persistent_data_storage(&crypt_ftr);
749 if (ret) {
750 return -1;
751 }
752
753 fd = open(fname, O_RDONLY);
754 if (fd < 0) {
755 SLOGE("Cannot open %s metadata file", fname);
756 return -1;
757 }
758
759 if (persist_data == NULL) {
760 pdata = malloc(crypt_ftr.persist_data_size);
761 if (pdata == NULL) {
762 SLOGE("Cannot allocate memory for persistent data");
763 goto err;
764 }
765 }
766
767 for (i = 0; i < 2; i++) {
768 if (lseek64(fd, crypt_ftr.persist_data_offset[i], SEEK_SET) < 0) {
769 SLOGE("Cannot seek to read persistent data on %s", fname);
770 goto err2;
771 }
772 if (unix_read(fd, pdata, crypt_ftr.persist_data_size) < 0){
773 SLOGE("Error reading persistent data on iteration %d", i);
774 goto err2;
775 }
776 if (pdata->persist_magic == PERSIST_DATA_MAGIC) {
777 found = 1;
778 break;
779 }
780 }
781
782 if (!found) {
783 SLOGI("Could not find valid persistent data, creating");
784 init_empty_persist_data(pdata, crypt_ftr.persist_data_size);
785 }
786
787 /* Success */
788 persist_data = pdata;
789 close(fd);
790 return 0;
791
792err2:
793 free(pdata);
794
795err:
796 close(fd);
797 return -1;
798}
799
800static int save_persistent_data(void)
801{
802 struct crypt_mnt_ftr crypt_ftr;
803 struct crypt_persist_data *pdata;
804 char *fname;
805 off64_t write_offset;
806 off64_t erase_offset;
807 int found = 0;
808 int fd;
809 int ret;
810
811 if (persist_data == NULL) {
812 SLOGE("No persistent data to save");
813 return -1;
814 }
815
816 if(get_crypt_ftr_and_key(&crypt_ftr)) {
817 return -1;
818 }
819
Paul Lawrence8561b5c2014-03-17 14:10:51 -0700820 if ((crypt_ftr.major_version < 1)
821 || (crypt_ftr.major_version == 1 && crypt_ftr.minor_version < 1)) {
Ken Sumrall160b4d62013-04-22 12:15:39 -0700822 SLOGE("Crypt_ftr version doesn't support persistent data");
823 return -1;
824 }
825
826 ret = validate_persistent_data_storage(&crypt_ftr);
827 if (ret) {
828 return -1;
829 }
830
831 if (get_crypt_ftr_info(&fname, NULL)) {
832 return -1;
833 }
834
835 fd = open(fname, O_RDWR);
836 if (fd < 0) {
837 SLOGE("Cannot open %s metadata file", fname);
838 return -1;
839 }
840
841 pdata = malloc(crypt_ftr.persist_data_size);
842 if (pdata == NULL) {
843 SLOGE("Cannot allocate persistant data");
844 goto err;
845 }
846
847 if (lseek64(fd, crypt_ftr.persist_data_offset[0], SEEK_SET) < 0) {
848 SLOGE("Cannot seek to read persistent data on %s", fname);
849 goto err2;
850 }
851
852 if (unix_read(fd, pdata, crypt_ftr.persist_data_size) < 0) {
853 SLOGE("Error reading persistent data before save");
854 goto err2;
855 }
856
857 if (pdata->persist_magic == PERSIST_DATA_MAGIC) {
858 /* The first copy is the curent valid copy, so write to
859 * the second copy and erase this one */
860 write_offset = crypt_ftr.persist_data_offset[1];
861 erase_offset = crypt_ftr.persist_data_offset[0];
862 } else {
863 /* The second copy must be the valid copy, so write to
864 * the first copy, and erase the second */
865 write_offset = crypt_ftr.persist_data_offset[0];
866 erase_offset = crypt_ftr.persist_data_offset[1];
867 }
868
869 /* Write the new copy first, if successful, then erase the old copy */
870 if (lseek(fd, write_offset, SEEK_SET) < 0) {
871 SLOGE("Cannot seek to write persistent data");
872 goto err2;
873 }
874 if (unix_write(fd, persist_data, crypt_ftr.persist_data_size) ==
875 (int) crypt_ftr.persist_data_size) {
876 if (lseek(fd, erase_offset, SEEK_SET) < 0) {
877 SLOGE("Cannot seek to erase previous persistent data");
878 goto err2;
879 }
880 fsync(fd);
881 memset(pdata, 0, crypt_ftr.persist_data_size);
882 if (unix_write(fd, pdata, crypt_ftr.persist_data_size) !=
883 (int) crypt_ftr.persist_data_size) {
884 SLOGE("Cannot write to erase previous persistent data");
885 goto err2;
886 }
887 fsync(fd);
888 } else {
889 SLOGE("Cannot write to save persistent data");
890 goto err2;
891 }
892
893 /* Success */
894 free(pdata);
895 close(fd);
896 return 0;
897
898err2:
899 free(pdata);
900err:
901 close(fd);
902 return -1;
903}
904
Paul Lawrencef4faa572014-01-29 13:31:03 -0800905static int hexdigit (char c)
906{
907 if (c >= '0' && c <= '9') return c - '0';
908 c = tolower(c);
909 if (c >= 'a' && c <= 'f') return c - 'a' + 10;
910 return -1;
911}
912
913static unsigned char* convert_hex_ascii_to_key(const char* master_key_ascii,
914 unsigned int* out_keysize)
915{
916 unsigned int i;
917 *out_keysize = 0;
918
919 size_t size = strlen (master_key_ascii);
920 if (size % 2) {
921 SLOGE("Trying to convert ascii string of odd length");
922 return NULL;
923 }
924
925 unsigned char* master_key = (unsigned char*) malloc(size / 2);
926 if (master_key == 0) {
927 SLOGE("Cannot allocate");
928 return NULL;
929 }
930
931 for (i = 0; i < size; i += 2) {
932 int high_nibble = hexdigit (master_key_ascii[i]);
933 int low_nibble = hexdigit (master_key_ascii[i + 1]);
934
935 if(high_nibble < 0 || low_nibble < 0) {
936 SLOGE("Invalid hex string");
937 free (master_key);
938 return NULL;
939 }
940
941 master_key[*out_keysize] = high_nibble * 16 + low_nibble;
942 (*out_keysize)++;
943 }
944
945 return master_key;
946}
947
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800948/* Convert a binary key of specified length into an ascii hex string equivalent,
949 * without the leading 0x and with null termination
950 */
Paul Lawrencef4faa572014-01-29 13:31:03 -0800951static void convert_key_to_hex_ascii(unsigned char *master_key, unsigned int keysize,
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800952 char *master_key_ascii)
953{
954 unsigned int i, a;
955 unsigned char nibble;
956
957 for (i=0, a=0; i<keysize; i++, a+=2) {
958 /* For each byte, write out two ascii hex digits */
959 nibble = (master_key[i] >> 4) & 0xf;
960 master_key_ascii[a] = nibble + (nibble > 9 ? 0x37 : 0x30);
961
962 nibble = master_key[i] & 0xf;
963 master_key_ascii[a+1] = nibble + (nibble > 9 ? 0x37 : 0x30);
964 }
965
966 /* Add the null termination */
967 master_key_ascii[a] = '\0';
968
969}
970
Ken Sumralldb5e0262013-02-05 17:39:48 -0800971static int load_crypto_mapping_table(struct crypt_mnt_ftr *crypt_ftr, unsigned char *master_key,
972 char *real_blk_name, const char *name, int fd,
973 char *extra_params)
974{
975 char buffer[DM_CRYPT_BUF_SIZE];
976 struct dm_ioctl *io;
977 struct dm_target_spec *tgt;
978 char *crypt_params;
979 char master_key_ascii[129]; /* Large enough to hold 512 bit key and null */
980 int i;
981
982 io = (struct dm_ioctl *) buffer;
983
984 /* Load the mapping table for this device */
985 tgt = (struct dm_target_spec *) &buffer[sizeof(struct dm_ioctl)];
986
987 ioctl_init(io, DM_CRYPT_BUF_SIZE, name, 0);
988 io->target_count = 1;
989 tgt->status = 0;
990 tgt->sector_start = 0;
991 tgt->length = crypt_ftr->fs_size;
992 strcpy(tgt->target_type, "crypt");
993
994 crypt_params = buffer + sizeof(struct dm_ioctl) + sizeof(struct dm_target_spec);
995 convert_key_to_hex_ascii(master_key, crypt_ftr->keysize, master_key_ascii);
996 sprintf(crypt_params, "%s %s 0 %s 0 %s", crypt_ftr->crypto_type_name,
997 master_key_ascii, real_blk_name, extra_params);
998 crypt_params += strlen(crypt_params) + 1;
999 crypt_params = (char *) (((unsigned long)crypt_params + 7) & ~8); /* Align to an 8 byte boundary */
1000 tgt->next = crypt_params - buffer;
1001
1002 for (i = 0; i < TABLE_LOAD_RETRIES; i++) {
1003 if (! ioctl(fd, DM_TABLE_LOAD, io)) {
1004 break;
1005 }
1006 usleep(500000);
1007 }
1008
1009 if (i == TABLE_LOAD_RETRIES) {
1010 /* We failed to load the table, return an error */
1011 return -1;
1012 } else {
1013 return i + 1;
1014 }
1015}
1016
1017
1018static int get_dm_crypt_version(int fd, const char *name, int *version)
1019{
1020 char buffer[DM_CRYPT_BUF_SIZE];
1021 struct dm_ioctl *io;
1022 struct dm_target_versions *v;
1023 int i;
1024
1025 io = (struct dm_ioctl *) buffer;
1026
1027 ioctl_init(io, DM_CRYPT_BUF_SIZE, name, 0);
1028
1029 if (ioctl(fd, DM_LIST_VERSIONS, io)) {
1030 return -1;
1031 }
1032
1033 /* Iterate over the returned versions, looking for name of "crypt".
1034 * When found, get and return the version.
1035 */
1036 v = (struct dm_target_versions *) &buffer[sizeof(struct dm_ioctl)];
1037 while (v->next) {
1038 if (! strcmp(v->name, "crypt")) {
1039 /* We found the crypt driver, return the version, and get out */
1040 version[0] = v->version[0];
1041 version[1] = v->version[1];
1042 version[2] = v->version[2];
1043 return 0;
1044 }
1045 v = (struct dm_target_versions *)(((char *)v) + v->next);
1046 }
1047
1048 return -1;
1049}
1050
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001051static int create_crypto_blk_dev(struct crypt_mnt_ftr *crypt_ftr, unsigned char *master_key,
Ken Sumrall29d8da82011-05-18 17:20:07 -07001052 char *real_blk_name, char *crypto_blk_name, const char *name)
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001053{
1054 char buffer[DM_CRYPT_BUF_SIZE];
1055 char master_key_ascii[129]; /* Large enough to hold 512 bit key and null */
1056 char *crypt_params;
1057 struct dm_ioctl *io;
1058 struct dm_target_spec *tgt;
1059 unsigned int minor;
1060 int fd;
Ken Sumralle919efe2012-09-29 17:07:41 -07001061 int i;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001062 int retval = -1;
Ken Sumralldb5e0262013-02-05 17:39:48 -08001063 int version[3];
1064 char *extra_params;
1065 int load_count;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001066
1067 if ((fd = open("/dev/device-mapper", O_RDWR)) < 0 ) {
1068 SLOGE("Cannot open device-mapper\n");
1069 goto errout;
1070 }
1071
1072 io = (struct dm_ioctl *) buffer;
1073
1074 ioctl_init(io, DM_CRYPT_BUF_SIZE, name, 0);
1075 if (ioctl(fd, DM_DEV_CREATE, io)) {
1076 SLOGE("Cannot create dm-crypt device\n");
1077 goto errout;
1078 }
1079
1080 /* Get the device status, in particular, the name of it's device file */
1081 ioctl_init(io, DM_CRYPT_BUF_SIZE, name, 0);
1082 if (ioctl(fd, DM_DEV_STATUS, io)) {
1083 SLOGE("Cannot retrieve dm-crypt device status\n");
1084 goto errout;
1085 }
1086 minor = (io->dev & 0xff) | ((io->dev >> 12) & 0xfff00);
1087 snprintf(crypto_blk_name, MAXPATHLEN, "/dev/block/dm-%u", minor);
1088
Ken Sumralldb5e0262013-02-05 17:39:48 -08001089 extra_params = "";
1090 if (! get_dm_crypt_version(fd, name, version)) {
1091 /* Support for allow_discards was added in version 1.11.0 */
1092 if ((version[0] >= 2) ||
1093 ((version[0] == 1) && (version[1] >= 11))) {
1094 extra_params = "1 allow_discards";
1095 SLOGI("Enabling support for allow_discards in dmcrypt.\n");
1096 }
Ken Sumralle919efe2012-09-29 17:07:41 -07001097 }
1098
Ken Sumralldb5e0262013-02-05 17:39:48 -08001099 load_count = load_crypto_mapping_table(crypt_ftr, master_key, real_blk_name, name,
1100 fd, extra_params);
1101 if (load_count < 0) {
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001102 SLOGE("Cannot load dm-crypt mapping table.\n");
1103 goto errout;
Ken Sumralldb5e0262013-02-05 17:39:48 -08001104 } else if (load_count > 1) {
1105 SLOGI("Took %d tries to load dmcrypt table.\n", load_count);
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001106 }
1107
1108 /* Resume this device to activate it */
Ken Sumralldb5e0262013-02-05 17:39:48 -08001109 ioctl_init(io, DM_CRYPT_BUF_SIZE, name, 0);
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001110
1111 if (ioctl(fd, DM_DEV_SUSPEND, io)) {
1112 SLOGE("Cannot resume the dm-crypt device\n");
1113 goto errout;
1114 }
1115
1116 /* We made it here with no errors. Woot! */
1117 retval = 0;
1118
1119errout:
1120 close(fd); /* If fd is <0 from a failed open call, it's safe to just ignore the close error */
1121
1122 return retval;
1123}
1124
Ken Sumrall29d8da82011-05-18 17:20:07 -07001125static int delete_crypto_blk_dev(char *name)
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001126{
1127 int fd;
1128 char buffer[DM_CRYPT_BUF_SIZE];
1129 struct dm_ioctl *io;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001130 int retval = -1;
1131
1132 if ((fd = open("/dev/device-mapper", O_RDWR)) < 0 ) {
1133 SLOGE("Cannot open device-mapper\n");
1134 goto errout;
1135 }
1136
1137 io = (struct dm_ioctl *) buffer;
1138
1139 ioctl_init(io, DM_CRYPT_BUF_SIZE, name, 0);
1140 if (ioctl(fd, DM_DEV_REMOVE, io)) {
1141 SLOGE("Cannot remove dm-crypt device\n");
1142 goto errout;
1143 }
1144
1145 /* We made it here with no errors. Woot! */
1146 retval = 0;
1147
1148errout:
1149 close(fd); /* If fd is <0 from a failed open call, it's safe to just ignore the close error */
1150
1151 return retval;
1152
1153}
1154
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001155static int pbkdf2(const char *passwd, const unsigned char *salt,
Paul Lawrencef4faa572014-01-29 13:31:03 -08001156 unsigned char *ikey, void *params UNUSED)
1157{
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001158 SLOGI("Using pbkdf2 for cryptfs KDF");
1159
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001160 /* Turn the password into a key and IV that can decrypt the master key */
Paul Lawrencef4faa572014-01-29 13:31:03 -08001161 unsigned int keysize;
1162 char* master_key = (char*)convert_hex_ascii_to_key(passwd, &keysize);
1163 if (!master_key) return -1;
1164 PKCS5_PBKDF2_HMAC_SHA1(master_key, keysize, salt, SALT_LEN,
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001165 HASH_COUNT, KEY_LEN_BYTES+IV_LEN_BYTES, ikey);
Paul Lawrencef4faa572014-01-29 13:31:03 -08001166
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001167 memset(master_key, 0, keysize);
Paul Lawrencef4faa572014-01-29 13:31:03 -08001168 free (master_key);
1169 return 0;
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001170}
1171
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001172static int scrypt(const char *passwd, const unsigned char *salt,
Paul Lawrencef4faa572014-01-29 13:31:03 -08001173 unsigned char *ikey, void *params)
1174{
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001175 SLOGI("Using scrypt for cryptfs KDF");
1176
Kenny Rootc4c70f12013-06-14 12:11:38 -07001177 struct crypt_mnt_ftr *ftr = (struct crypt_mnt_ftr *) params;
1178
1179 int N = 1 << ftr->N_factor;
1180 int r = 1 << ftr->r_factor;
1181 int p = 1 << ftr->p_factor;
1182
1183 /* Turn the password into a key and IV that can decrypt the master key */
Paul Lawrencef4faa572014-01-29 13:31:03 -08001184 unsigned int keysize;
1185 unsigned char* master_key = convert_hex_ascii_to_key(passwd, &keysize);
1186 if (!master_key) return -1;
1187 crypto_scrypt(master_key, keysize, salt, SALT_LEN, N, r, p, ikey,
Kenny Rootc4c70f12013-06-14 12:11:38 -07001188 KEY_LEN_BYTES + IV_LEN_BYTES);
Paul Lawrencef4faa572014-01-29 13:31:03 -08001189
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001190 memset(master_key, 0, keysize);
Paul Lawrencef4faa572014-01-29 13:31:03 -08001191 free (master_key);
1192 return 0;
Kenny Rootc4c70f12013-06-14 12:11:38 -07001193}
1194
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001195static int scrypt_keymaster(const char *passwd, const unsigned char *salt,
1196 unsigned char *ikey, void *params)
1197{
1198 SLOGI("Using scrypt with keymaster for cryptfs KDF");
1199
1200 int rc;
1201 unsigned int key_size;
1202 size_t signature_size;
1203 unsigned char* signature;
1204 struct crypt_mnt_ftr *ftr = (struct crypt_mnt_ftr *) params;
1205
1206 int N = 1 << ftr->N_factor;
1207 int r = 1 << ftr->r_factor;
1208 int p = 1 << ftr->p_factor;
1209
1210 unsigned char* master_key = convert_hex_ascii_to_key(passwd, &key_size);
1211 if (!master_key) {
1212 SLOGE("Failed to convert passwd from hex");
1213 return -1;
1214 }
1215
1216 rc = crypto_scrypt(master_key, key_size, salt, SALT_LEN,
1217 N, r, p, ikey, KEY_LEN_BYTES + IV_LEN_BYTES);
1218 memset(master_key, 0, key_size);
1219 free(master_key);
1220
1221 if (rc) {
1222 SLOGE("scrypt failed");
1223 return -1;
1224 }
1225
Shawn Willdene17a9c42014-09-08 13:04:08 -06001226 if (keymaster_sign_object(ftr, ikey, KEY_LEN_BYTES + IV_LEN_BYTES,
1227 &signature, &signature_size)) {
1228 SLOGE("Signing failed");
1229 return -1;
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001230 }
1231
1232 rc = crypto_scrypt(signature, signature_size, salt, SALT_LEN,
1233 N, r, p, ikey, KEY_LEN_BYTES + IV_LEN_BYTES);
1234 free(signature);
1235
1236 if (rc) {
1237 SLOGE("scrypt failed");
1238 return -1;
1239 }
1240
1241 return 0;
1242}
1243
1244static int encrypt_master_key(const char *passwd, const unsigned char *salt,
1245 const unsigned char *decrypted_master_key,
Kenny Rootc4c70f12013-06-14 12:11:38 -07001246 unsigned char *encrypted_master_key,
1247 struct crypt_mnt_ftr *crypt_ftr)
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001248{
1249 unsigned char ikey[32+32] = { 0 }; /* Big enough to hold a 256 bit key and 256 bit IV */
1250 EVP_CIPHER_CTX e_ctx;
1251 int encrypted_len, final_len;
Paul Lawrenced0c7b172014-08-08 14:28:10 -07001252 int rc = 0;
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001253
Paul Lawrenced0c7b172014-08-08 14:28:10 -07001254 /* Turn the password into an intermediate key and IV that can decrypt the master key */
Kenny Rootc4c70f12013-06-14 12:11:38 -07001255 get_device_scrypt_params(crypt_ftr);
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001256
1257 switch (crypt_ftr->kdf_type) {
Shawn Willdene17a9c42014-09-08 13:04:08 -06001258 case KDF_SCRYPT_KEYMASTER_UNPADDED:
1259 case KDF_SCRYPT_KEYMASTER_BADLY_PADDED:
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001260 case KDF_SCRYPT_KEYMASTER:
1261 if (keymaster_create_key(crypt_ftr)) {
1262 SLOGE("keymaster_create_key failed");
1263 return -1;
1264 }
1265
1266 if (scrypt_keymaster(passwd, salt, ikey, crypt_ftr)) {
1267 SLOGE("scrypt failed");
1268 return -1;
1269 }
1270 break;
1271
1272 case KDF_SCRYPT:
1273 if (scrypt(passwd, salt, ikey, crypt_ftr)) {
1274 SLOGE("scrypt failed");
1275 return -1;
1276 }
1277 break;
1278
1279 default:
1280 SLOGE("Invalid kdf_type");
Paul Lawrencef4faa572014-01-29 13:31:03 -08001281 return -1;
1282 }
Kenny Rootc4c70f12013-06-14 12:11:38 -07001283
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001284 /* Initialize the decryption engine */
1285 if (! EVP_EncryptInit(&e_ctx, EVP_aes_128_cbc(), ikey, ikey+KEY_LEN_BYTES)) {
1286 SLOGE("EVP_EncryptInit failed\n");
1287 return -1;
1288 }
1289 EVP_CIPHER_CTX_set_padding(&e_ctx, 0); /* Turn off padding as our data is block aligned */
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001290
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001291 /* Encrypt the master key */
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001292 if (! EVP_EncryptUpdate(&e_ctx, encrypted_master_key, &encrypted_len,
1293 decrypted_master_key, KEY_LEN_BYTES)) {
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001294 SLOGE("EVP_EncryptUpdate failed\n");
1295 return -1;
1296 }
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001297 if (! EVP_EncryptFinal(&e_ctx, encrypted_master_key + encrypted_len, &final_len)) {
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001298 SLOGE("EVP_EncryptFinal failed\n");
1299 return -1;
1300 }
1301
1302 if (encrypted_len + final_len != KEY_LEN_BYTES) {
1303 SLOGE("EVP_Encryption length check failed with %d, %d bytes\n", encrypted_len, final_len);
1304 return -1;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001305 }
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001306
Paul Lawrenced0c7b172014-08-08 14:28:10 -07001307 /* Store the scrypt of the intermediate key, so we can validate if it's a
1308 password error or mount error when things go wrong.
1309 Note there's no need to check for errors, since if this is incorrect, we
1310 simply won't wipe userdata, which is the correct default behavior
1311 */
1312 int N = 1 << crypt_ftr->N_factor;
1313 int r = 1 << crypt_ftr->r_factor;
1314 int p = 1 << crypt_ftr->p_factor;
1315
1316 rc = crypto_scrypt(ikey, KEY_LEN_BYTES,
1317 crypt_ftr->salt, sizeof(crypt_ftr->salt), N, r, p,
1318 crypt_ftr->scrypted_intermediate_key,
1319 sizeof(crypt_ftr->scrypted_intermediate_key));
1320
1321 if (rc) {
1322 SLOGE("encrypt_master_key: crypto_scrypt failed");
1323 }
1324
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001325 return 0;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001326}
1327
JP Abgrall7bdfa522013-11-15 13:42:56 -08001328static int decrypt_master_key_aux(char *passwd, unsigned char *salt,
Paul Lawrenced0c7b172014-08-08 14:28:10 -07001329 unsigned char *encrypted_master_key,
1330 unsigned char *decrypted_master_key,
1331 kdf_func kdf, void *kdf_params,
1332 unsigned char** intermediate_key,
1333 size_t* intermediate_key_size)
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001334{
1335 unsigned char ikey[32+32] = { 0 }; /* Big enough to hold a 256 bit key and 256 bit IV */
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001336 EVP_CIPHER_CTX d_ctx;
1337 int decrypted_len, final_len;
1338
Paul Lawrenced0c7b172014-08-08 14:28:10 -07001339 /* Turn the password into an intermediate key and IV that can decrypt the
1340 master key */
Paul Lawrencef4faa572014-01-29 13:31:03 -08001341 if (kdf(passwd, salt, ikey, kdf_params)) {
1342 SLOGE("kdf failed");
1343 return -1;
1344 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001345
1346 /* Initialize the decryption engine */
1347 if (! EVP_DecryptInit(&d_ctx, EVP_aes_128_cbc(), ikey, ikey+KEY_LEN_BYTES)) {
1348 return -1;
1349 }
1350 EVP_CIPHER_CTX_set_padding(&d_ctx, 0); /* Turn off padding as our data is block aligned */
1351 /* Decrypt the master key */
1352 if (! EVP_DecryptUpdate(&d_ctx, decrypted_master_key, &decrypted_len,
1353 encrypted_master_key, KEY_LEN_BYTES)) {
1354 return -1;
1355 }
1356 if (! EVP_DecryptFinal(&d_ctx, decrypted_master_key + decrypted_len, &final_len)) {
1357 return -1;
1358 }
1359
1360 if (decrypted_len + final_len != KEY_LEN_BYTES) {
1361 return -1;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001362 }
Paul Lawrenced0c7b172014-08-08 14:28:10 -07001363
1364 /* Copy intermediate key if needed by params */
1365 if (intermediate_key && intermediate_key_size) {
1366 *intermediate_key = (unsigned char*) malloc(KEY_LEN_BYTES);
1367 if (intermediate_key) {
1368 memcpy(*intermediate_key, ikey, KEY_LEN_BYTES);
1369 *intermediate_key_size = KEY_LEN_BYTES;
1370 }
1371 }
1372
1373 return 0;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001374}
1375
Kenny Rootc4c70f12013-06-14 12:11:38 -07001376static void get_kdf_func(struct crypt_mnt_ftr *ftr, kdf_func *kdf, void** kdf_params)
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001377{
Shawn Willdene17a9c42014-09-08 13:04:08 -06001378 if (ftr->kdf_type == KDF_SCRYPT_KEYMASTER_UNPADDED ||
1379 ftr->kdf_type == KDF_SCRYPT_KEYMASTER_BADLY_PADDED ||
1380 ftr->kdf_type == KDF_SCRYPT_KEYMASTER) {
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001381 *kdf = scrypt_keymaster;
1382 *kdf_params = ftr;
1383 } else if (ftr->kdf_type == KDF_SCRYPT) {
Kenny Rootc4c70f12013-06-14 12:11:38 -07001384 *kdf = scrypt;
1385 *kdf_params = ftr;
1386 } else {
1387 *kdf = pbkdf2;
1388 *kdf_params = NULL;
1389 }
1390}
1391
JP Abgrall7bdfa522013-11-15 13:42:56 -08001392static int decrypt_master_key(char *passwd, unsigned char *decrypted_master_key,
Paul Lawrenced0c7b172014-08-08 14:28:10 -07001393 struct crypt_mnt_ftr *crypt_ftr,
1394 unsigned char** intermediate_key,
1395 size_t* intermediate_key_size)
Kenny Rootc4c70f12013-06-14 12:11:38 -07001396{
1397 kdf_func kdf;
1398 void *kdf_params;
1399 int ret;
1400
1401 get_kdf_func(crypt_ftr, &kdf, &kdf_params);
Paul Lawrenced0c7b172014-08-08 14:28:10 -07001402 ret = decrypt_master_key_aux(passwd, crypt_ftr->salt, crypt_ftr->master_key,
1403 decrypted_master_key, kdf, kdf_params,
1404 intermediate_key, intermediate_key_size);
Kenny Rootc4c70f12013-06-14 12:11:38 -07001405 if (ret != 0) {
1406 SLOGW("failure decrypting master key");
Kenny Rootc4c70f12013-06-14 12:11:38 -07001407 }
1408
1409 return ret;
1410}
1411
1412static int create_encrypted_random_key(char *passwd, unsigned char *master_key, unsigned char *salt,
1413 struct crypt_mnt_ftr *crypt_ftr) {
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001414 int fd;
Ken Sumralle8744072011-01-18 22:01:55 -08001415 unsigned char key_buf[KEY_LEN_BYTES];
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001416 EVP_CIPHER_CTX e_ctx;
1417 int encrypted_len, final_len;
1418
1419 /* Get some random bits for a key */
1420 fd = open("/dev/urandom", O_RDONLY);
Ken Sumralle8744072011-01-18 22:01:55 -08001421 read(fd, key_buf, sizeof(key_buf));
1422 read(fd, salt, SALT_LEN);
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001423 close(fd);
1424
1425 /* Now encrypt it with the password */
Kenny Rootc4c70f12013-06-14 12:11:38 -07001426 return encrypt_master_key(passwd, salt, key_buf, master_key, crypt_ftr);
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001427}
1428
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001429static int wait_and_unmount(char *mountpoint)
1430{
1431 int i, rc;
Ken Sumrall2eaf7132011-01-14 12:45:48 -08001432#define WAIT_UNMOUNT_COUNT 20
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001433
1434 /* Now umount the tmpfs filesystem */
1435 for (i=0; i<WAIT_UNMOUNT_COUNT; i++) {
1436 if (umount(mountpoint)) {
Ken Sumrall29d8da82011-05-18 17:20:07 -07001437 if (errno == EINVAL) {
1438 /* EINVAL is returned if the directory is not a mountpoint,
1439 * i.e. there is no filesystem mounted there. So just get out.
1440 */
1441 break;
1442 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001443 sleep(1);
1444 i++;
1445 } else {
1446 break;
1447 }
1448 }
1449
1450 if (i < WAIT_UNMOUNT_COUNT) {
1451 SLOGD("unmounting %s succeeded\n", mountpoint);
1452 rc = 0;
1453 } else {
jessica_yu3f14fe42014-09-22 15:57:40 +08001454 vold_killProcessesWithOpenFiles(mountpoint, 0);
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001455 SLOGE("unmounting %s failed\n", mountpoint);
1456 rc = -1;
1457 }
1458
1459 return rc;
1460}
1461
Ken Sumrallc5872692013-05-14 15:26:31 -07001462#define DATA_PREP_TIMEOUT 200
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001463static int prep_data_fs(void)
1464{
1465 int i;
1466
1467 /* Do the prep of the /data filesystem */
1468 property_set("vold.post_fs_data_done", "0");
1469 property_set("vold.decrypt", "trigger_post_fs_data");
1470 SLOGD("Just triggered post_fs_data\n");
1471
Ken Sumrallc5872692013-05-14 15:26:31 -07001472 /* Wait a max of 50 seconds, hopefully it takes much less */
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001473 for (i=0; i<DATA_PREP_TIMEOUT; i++) {
Ken Sumrall29d8da82011-05-18 17:20:07 -07001474 char p[PROPERTY_VALUE_MAX];
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001475
1476 property_get("vold.post_fs_data_done", p, "0");
1477 if (*p == '1') {
1478 break;
1479 } else {
1480 usleep(250000);
1481 }
1482 }
1483 if (i == DATA_PREP_TIMEOUT) {
1484 /* Ugh, we failed to prep /data in time. Bail. */
Ken Sumrallc5872692013-05-14 15:26:31 -07001485 SLOGE("post_fs_data timed out!\n");
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001486 return -1;
1487 } else {
1488 SLOGD("post_fs_data done\n");
1489 return 0;
1490 }
1491}
1492
Paul Lawrence74f29f12014-08-28 15:54:10 -07001493static void cryptfs_set_corrupt()
1494{
1495 // Mark the footer as bad
1496 struct crypt_mnt_ftr crypt_ftr;
1497 if (get_crypt_ftr_and_key(&crypt_ftr)) {
1498 SLOGE("Failed to get crypto footer - panic");
1499 return;
1500 }
1501
1502 crypt_ftr.flags |= CRYPT_DATA_CORRUPT;
1503 if (put_crypt_ftr_and_key(&crypt_ftr)) {
1504 SLOGE("Failed to set crypto footer - panic");
1505 return;
1506 }
1507}
1508
1509static void cryptfs_trigger_restart_min_framework()
1510{
1511 if (fs_mgr_do_tmpfs_mount(DATA_MNT_POINT)) {
1512 SLOGE("Failed to mount tmpfs on data - panic");
1513 return;
1514 }
1515
1516 if (property_set("vold.decrypt", "trigger_post_fs_data")) {
1517 SLOGE("Failed to trigger post fs data - panic");
1518 return;
1519 }
1520
1521 if (property_set("vold.decrypt", "trigger_restart_min_framework")) {
1522 SLOGE("Failed to trigger restart min framework - panic");
1523 return;
1524 }
1525}
1526
Paul Lawrence8e3f4512014-09-08 10:11:17 -07001527/* returns < 0 on failure */
Paul Lawrencef4faa572014-01-29 13:31:03 -08001528static int cryptfs_restart_internal(int restart_main)
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001529{
1530 char fs_type[32];
1531 char real_blkdev[MAXPATHLEN];
Ken Sumrall6864b7e2011-01-14 15:20:02 -08001532 char crypto_blkdev[MAXPATHLEN];
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001533 char fs_options[256];
1534 unsigned long mnt_flags;
1535 struct stat statbuf;
1536 int rc = -1, i;
Ken Sumrall0cc16632011-01-18 20:32:26 -08001537 static int restart_successful = 0;
1538
1539 /* Validate that it's OK to call this routine */
Jason parks70a4b3f2011-01-28 10:10:47 -06001540 if (! master_key_saved) {
Ken Sumrall0cc16632011-01-18 20:32:26 -08001541 SLOGE("Encrypted filesystem not validated, aborting");
1542 return -1;
1543 }
1544
1545 if (restart_successful) {
1546 SLOGE("System already restarted with encrypted disk, aborting");
1547 return -1;
1548 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001549
Paul Lawrencef4faa572014-01-29 13:31:03 -08001550 if (restart_main) {
1551 /* Here is where we shut down the framework. The init scripts
1552 * start all services in one of three classes: core, main or late_start.
1553 * On boot, we start core and main. Now, we stop main, but not core,
1554 * as core includes vold and a few other really important things that
1555 * we need to keep running. Once main has stopped, we should be able
1556 * to umount the tmpfs /data, then mount the encrypted /data.
1557 * We then restart the class main, and also the class late_start.
1558 * At the moment, I've only put a few things in late_start that I know
1559 * are not needed to bring up the framework, and that also cause problems
1560 * with unmounting the tmpfs /data, but I hope to add add more services
1561 * to the late_start class as we optimize this to decrease the delay
1562 * till the user is asked for the password to the filesystem.
1563 */
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001564
Paul Lawrencef4faa572014-01-29 13:31:03 -08001565 /* The init files are setup to stop the class main when vold.decrypt is
1566 * set to trigger_reset_main.
1567 */
1568 property_set("vold.decrypt", "trigger_reset_main");
1569 SLOGD("Just asked init to shut down class main\n");
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001570
Paul Lawrencef4faa572014-01-29 13:31:03 -08001571 /* Ugh, shutting down the framework is not synchronous, so until it
1572 * can be fixed, this horrible hack will wait a moment for it all to
1573 * shut down before proceeding. Without it, some devices cannot
1574 * restart the graphics services.
1575 */
1576 sleep(2);
1577 }
Ken Sumrall9dedfd42012-10-09 14:16:59 -07001578
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001579 /* Now that the framework is shutdown, we should be able to umount()
1580 * the tmpfs filesystem, and mount the real one.
1581 */
1582
Ken Sumrall6864b7e2011-01-14 15:20:02 -08001583 property_get("ro.crypto.fs_crypto_blkdev", crypto_blkdev, "");
1584 if (strlen(crypto_blkdev) == 0) {
1585 SLOGE("fs_crypto_blkdev not set\n");
1586 return -1;
1587 }
1588
Ken Sumralle5032c42012-04-01 23:58:44 -07001589 if (! (rc = wait_and_unmount(DATA_MNT_POINT)) ) {
Doug Zongker6fd57712013-12-17 09:43:23 -08001590 /* If ro.crypto.readonly is set to 1, mount the decrypted
1591 * filesystem readonly. This is used when /data is mounted by
1592 * recovery mode.
1593 */
1594 char ro_prop[PROPERTY_VALUE_MAX];
1595 property_get("ro.crypto.readonly", ro_prop, "");
1596 if (strlen(ro_prop) > 0 && atoi(ro_prop)) {
1597 struct fstab_rec* rec = fs_mgr_get_entry_for_mount_point(fstab, DATA_MNT_POINT);
1598 rec->flags |= MS_RDONLY;
1599 }
JP Abgrall62c7af32014-06-16 13:01:23 -07001600
Ken Sumralle5032c42012-04-01 23:58:44 -07001601 /* If that succeeded, then mount the decrypted filesystem */
Paul Lawrence8e3f4512014-09-08 10:11:17 -07001602 int retries = RETRY_MOUNT_ATTEMPTS;
1603 int mount_rc;
1604 while ((mount_rc = fs_mgr_do_mount(fstab, DATA_MNT_POINT,
1605 crypto_blkdev, 0))
1606 != 0) {
1607 if (mount_rc == FS_MGR_DOMNT_BUSY) {
1608 /* TODO: invoke something similar to
1609 Process::killProcessWithOpenFiles(DATA_MNT_POINT,
1610 retries > RETRY_MOUNT_ATTEMPT/2 ? 1 : 2 ) */
1611 SLOGI("Failed to mount %s because it is busy - waiting",
1612 crypto_blkdev);
1613 if (--retries) {
1614 sleep(RETRY_MOUNT_DELAY_SECONDS);
1615 } else {
1616 /* Let's hope that a reboot clears away whatever is keeping
1617 the mount busy */
1618 cryptfs_reboot(reboot);
1619 }
1620 } else {
1621 SLOGE("Failed to mount decrypted data");
1622 cryptfs_set_corrupt();
1623 cryptfs_trigger_restart_min_framework();
1624 SLOGI("Started framework to offer wipe");
1625 return -1;
1626 }
Paul Lawrence74f29f12014-08-28 15:54:10 -07001627 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001628
Ken Sumralle5032c42012-04-01 23:58:44 -07001629 property_set("vold.decrypt", "trigger_load_persist_props");
1630 /* Create necessary paths on /data */
1631 if (prep_data_fs()) {
1632 return -1;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001633 }
Ken Sumralle5032c42012-04-01 23:58:44 -07001634
1635 /* startup service classes main and late_start */
1636 property_set("vold.decrypt", "trigger_restart_framework");
1637 SLOGD("Just triggered restart_framework\n");
1638
1639 /* Give it a few moments to get started */
1640 sleep(1);
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001641 }
1642
Ken Sumrall0cc16632011-01-18 20:32:26 -08001643 if (rc == 0) {
1644 restart_successful = 1;
1645 }
1646
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001647 return rc;
1648}
1649
Paul Lawrencef4faa572014-01-29 13:31:03 -08001650int cryptfs_restart(void)
1651{
1652 /* Call internal implementation forcing a restart of main service group */
1653 return cryptfs_restart_internal(1);
1654}
1655
Mark Salyzyn3e971272014-01-21 13:27:04 -08001656static int do_crypto_complete(char *mount_point UNUSED)
Ken Sumrall7f7dbaa2011-02-01 15:46:41 -08001657{
1658 struct crypt_mnt_ftr crypt_ftr;
Ken Sumrall29d8da82011-05-18 17:20:07 -07001659 char encrypted_state[PROPERTY_VALUE_MAX];
Ken Sumralle1a45852011-12-14 21:24:27 -08001660 char key_loc[PROPERTY_VALUE_MAX];
Ken Sumrall7f7dbaa2011-02-01 15:46:41 -08001661
1662 property_get("ro.crypto.state", encrypted_state, "");
1663 if (strcmp(encrypted_state, "encrypted") ) {
1664 SLOGE("not running with encryption, aborting");
Paul Lawrence74f29f12014-08-28 15:54:10 -07001665 return CRYPTO_COMPLETE_NOT_ENCRYPTED;
Ken Sumrall7f7dbaa2011-02-01 15:46:41 -08001666 }
1667
Ken Sumrall160b4d62013-04-22 12:15:39 -07001668 if (get_crypt_ftr_and_key(&crypt_ftr)) {
Ken Sumrall56ad03c2013-02-13 13:00:19 -08001669 fs_mgr_get_crypt_info(fstab, key_loc, 0, sizeof(key_loc));
Ken Sumralle5032c42012-04-01 23:58:44 -07001670
Ken Sumralle1a45852011-12-14 21:24:27 -08001671 /*
1672 * Only report this error if key_loc is a file and it exists.
1673 * If the device was never encrypted, and /data is not mountable for
1674 * some reason, returning 1 should prevent the UI from presenting the
1675 * a "enter password" screen, or worse, a "press button to wipe the
1676 * device" screen.
1677 */
1678 if ((key_loc[0] == '/') && (access("key_loc", F_OK) == -1)) {
1679 SLOGE("master key file does not exist, aborting");
Paul Lawrence74f29f12014-08-28 15:54:10 -07001680 return CRYPTO_COMPLETE_NOT_ENCRYPTED;
Ken Sumralle1a45852011-12-14 21:24:27 -08001681 } else {
1682 SLOGE("Error getting crypt footer and key\n");
Paul Lawrence74f29f12014-08-28 15:54:10 -07001683 return CRYPTO_COMPLETE_BAD_METADATA;
Ken Sumralle1a45852011-12-14 21:24:27 -08001684 }
Ken Sumrall7f7dbaa2011-02-01 15:46:41 -08001685 }
1686
Paul Lawrence74f29f12014-08-28 15:54:10 -07001687 // Test for possible error flags
1688 if (crypt_ftr.flags & CRYPT_ENCRYPTION_IN_PROGRESS){
1689 SLOGE("Encryption process is partway completed\n");
1690 return CRYPTO_COMPLETE_PARTIAL;
1691 }
1692
1693 if (crypt_ftr.flags & CRYPT_INCONSISTENT_STATE){
1694 SLOGE("Encryption process was interrupted but cannot continue\n");
1695 return CRYPTO_COMPLETE_INCONSISTENT;
1696 }
1697
1698 if (crypt_ftr.flags & CRYPT_DATA_CORRUPT){
1699 SLOGE("Encryption is successful but data is corrupt\n");
1700 return CRYPTO_COMPLETE_CORRUPT;
Ken Sumrall7f7dbaa2011-02-01 15:46:41 -08001701 }
1702
1703 /* We passed the test! We shall diminish, and return to the west */
Paul Lawrence74f29f12014-08-28 15:54:10 -07001704 return CRYPTO_COMPLETE_ENCRYPTED;
Ken Sumrall7f7dbaa2011-02-01 15:46:41 -08001705}
1706
Paul Lawrencef4faa572014-01-29 13:31:03 -08001707static int test_mount_encrypted_fs(struct crypt_mnt_ftr* crypt_ftr,
1708 char *passwd, char *mount_point, char *label)
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001709{
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001710 /* Allocate enough space for a 256 bit key, but we may use less */
Ken Sumrall160b4d62013-04-22 12:15:39 -07001711 unsigned char decrypted_master_key[32];
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001712 char crypto_blkdev[MAXPATHLEN];
1713 char real_blkdev[MAXPATHLEN];
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001714 char tmp_mount_point[64];
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001715 unsigned int orig_failed_decrypt_count;
1716 int rc;
Kenny Rootc4c70f12013-06-14 12:11:38 -07001717 kdf_func kdf;
1718 void *kdf_params;
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001719 int use_keymaster = 0;
1720 int upgrade = 0;
Paul Lawrenced0c7b172014-08-08 14:28:10 -07001721 unsigned char* intermediate_key = 0;
1722 size_t intermediate_key_size = 0;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001723
Paul Lawrencef4faa572014-01-29 13:31:03 -08001724 SLOGD("crypt_ftr->fs_size = %lld\n", crypt_ftr->fs_size);
1725 orig_failed_decrypt_count = crypt_ftr->failed_decrypt_count;
Ken Sumrall0cc16632011-01-18 20:32:26 -08001726
Paul Lawrencef4faa572014-01-29 13:31:03 -08001727 if (! (crypt_ftr->flags & CRYPT_MNT_KEY_UNENCRYPTED) ) {
Paul Lawrenced0c7b172014-08-08 14:28:10 -07001728 if (decrypt_master_key(passwd, decrypted_master_key, crypt_ftr,
1729 &intermediate_key, &intermediate_key_size)) {
JP Abgrall7bdfa522013-11-15 13:42:56 -08001730 SLOGE("Failed to decrypt master key\n");
Paul Lawrenced0c7b172014-08-08 14:28:10 -07001731 rc = -1;
1732 goto errout;
JP Abgrall7bdfa522013-11-15 13:42:56 -08001733 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001734 }
1735
Paul Lawrencef4faa572014-01-29 13:31:03 -08001736 fs_mgr_get_crypt_info(fstab, 0, real_blkdev, sizeof(real_blkdev));
1737
Paul Lawrence74f29f12014-08-28 15:54:10 -07001738 // Create crypto block device - all (non fatal) code paths
1739 // need it
Paul Lawrencef4faa572014-01-29 13:31:03 -08001740 if (create_crypto_blk_dev(crypt_ftr, decrypted_master_key,
1741 real_blkdev, crypto_blkdev, label)) {
Paul Lawrence74f29f12014-08-28 15:54:10 -07001742 SLOGE("Error creating decrypted block device\n");
1743 rc = -1;
1744 goto errout;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001745 }
1746
Paul Lawrence74f29f12014-08-28 15:54:10 -07001747 /* Work out if the problem is the password or the data */
1748 unsigned char scrypted_intermediate_key[sizeof(crypt_ftr->
1749 scrypted_intermediate_key)];
1750 int N = 1 << crypt_ftr->N_factor;
1751 int r = 1 << crypt_ftr->r_factor;
1752 int p = 1 << crypt_ftr->p_factor;
Paul Lawrenced0c7b172014-08-08 14:28:10 -07001753
Paul Lawrence74f29f12014-08-28 15:54:10 -07001754 rc = crypto_scrypt(intermediate_key, intermediate_key_size,
1755 crypt_ftr->salt, sizeof(crypt_ftr->salt),
1756 N, r, p, scrypted_intermediate_key,
1757 sizeof(scrypted_intermediate_key));
Paul Lawrenced0c7b172014-08-08 14:28:10 -07001758
Paul Lawrence74f29f12014-08-28 15:54:10 -07001759 // Does the key match the crypto footer?
1760 if (rc == 0 && memcmp(scrypted_intermediate_key,
1761 crypt_ftr->scrypted_intermediate_key,
1762 sizeof(scrypted_intermediate_key)) == 0) {
1763 SLOGI("Password matches");
1764 rc = 0;
1765 } else {
1766 /* Try mounting the file system anyway, just in case the problem's with
1767 * the footer, not the key. */
1768 sprintf(tmp_mount_point, "%s/tmp_mnt", mount_point);
1769 mkdir(tmp_mount_point, 0755);
1770 if (fs_mgr_do_mount(fstab, DATA_MNT_POINT, crypto_blkdev, tmp_mount_point)) {
1771 SLOGE("Error temp mounting decrypted block device\n");
1772 delete_crypto_blk_dev(label);
1773
Paul Lawrenced0c7b172014-08-08 14:28:10 -07001774 rc = ++crypt_ftr->failed_decrypt_count;
1775 put_crypt_ftr_and_key(crypt_ftr);
Paul Lawrence74f29f12014-08-28 15:54:10 -07001776 } else {
1777 /* Success! */
1778 SLOGI("Password did not match but decrypted drive mounted - continue");
1779 umount(tmp_mount_point);
1780 rc = 0;
Paul Lawrenced0c7b172014-08-08 14:28:10 -07001781 }
Paul Lawrence74f29f12014-08-28 15:54:10 -07001782 }
1783
1784 if (rc == 0) {
1785 crypt_ftr->failed_decrypt_count = 0;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001786
Paul Lawrenced0c7b172014-08-08 14:28:10 -07001787 /* Save the name of the crypto block device
Paul Lawrence74f29f12014-08-28 15:54:10 -07001788 * so we can mount it when restarting the framework. */
Ken Sumrall6864b7e2011-01-14 15:20:02 -08001789 property_set("ro.crypto.fs_crypto_blkdev", crypto_blkdev);
Jason parks70a4b3f2011-01-28 10:10:47 -06001790
1791 /* Also save a the master key so we can reencrypted the key
Paul Lawrence74f29f12014-08-28 15:54:10 -07001792 * the key when we want to change the password on it. */
Jason parks70a4b3f2011-01-28 10:10:47 -06001793 memcpy(saved_master_key, decrypted_master_key, KEY_LEN_BYTES);
Ken Sumrall3ad90722011-10-04 20:38:29 -07001794 saved_mount_point = strdup(mount_point);
Jason parks70a4b3f2011-01-28 10:10:47 -06001795 master_key_saved = 1;
JP Abgrall7bdfa522013-11-15 13:42:56 -08001796 SLOGD("%s(): Master key saved\n", __FUNCTION__);
Ken Sumrall6864b7e2011-01-14 15:20:02 -08001797 rc = 0;
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001798
Paul Lawrence74f29f12014-08-28 15:54:10 -07001799 // Upgrade if we're not using the latest KDF.
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001800 use_keymaster = keymaster_check_compatibility();
1801 if (crypt_ftr->kdf_type == KDF_SCRYPT_KEYMASTER) {
Shawn Willden47ba10d2014-09-03 17:07:06 -06001802 // Don't allow downgrade
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001803 } else if (use_keymaster == 1 && crypt_ftr->kdf_type != KDF_SCRYPT_KEYMASTER) {
1804 crypt_ftr->kdf_type = KDF_SCRYPT_KEYMASTER;
1805 upgrade = 1;
1806 } else if (use_keymaster == 0 && crypt_ftr->kdf_type != KDF_SCRYPT) {
Paul Lawrencef4faa572014-01-29 13:31:03 -08001807 crypt_ftr->kdf_type = KDF_SCRYPT;
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001808 upgrade = 1;
1809 }
1810
1811 if (upgrade) {
Paul Lawrencef4faa572014-01-29 13:31:03 -08001812 rc = encrypt_master_key(passwd, crypt_ftr->salt, saved_master_key,
1813 crypt_ftr->master_key, crypt_ftr);
JP Abgrall7bdfa522013-11-15 13:42:56 -08001814 if (!rc) {
Paul Lawrencef4faa572014-01-29 13:31:03 -08001815 rc = put_crypt_ftr_and_key(crypt_ftr);
JP Abgrall7bdfa522013-11-15 13:42:56 -08001816 }
1817 SLOGD("Key Derivation Function upgrade: rc=%d\n", rc);
Paul Lawrenceb2f682b2014-09-08 11:28:19 -07001818
1819 // Do not fail even if upgrade failed - machine is bootable
1820 // Note that if this code is ever hit, there is a *serious* problem
1821 // since KDFs should never fail. You *must* fix the kdf before
1822 // proceeding!
1823 if (rc) {
1824 SLOGW("Upgrade failed with error %d,"
1825 " but continuing with previous state",
1826 rc);
1827 rc = 0;
1828 }
JP Abgrall7bdfa522013-11-15 13:42:56 -08001829 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001830 }
1831
Paul Lawrenced0c7b172014-08-08 14:28:10 -07001832 errout:
1833 if (intermediate_key) {
1834 memset(intermediate_key, 0, intermediate_key_size);
1835 free(intermediate_key);
1836 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001837 return rc;
1838}
1839
Ken Sumrall0b8b5972011-08-31 16:14:23 -07001840/* Called by vold when it wants to undo the crypto mapping of a volume it
1841 * manages. This is usually in response to a factory reset, when we want
1842 * to undo the crypto mapping so the volume is formatted in the clear.
1843 */
1844int cryptfs_revert_volume(const char *label)
1845{
1846 return delete_crypto_blk_dev((char *)label);
1847}
1848
Ken Sumrall29d8da82011-05-18 17:20:07 -07001849/*
1850 * Called by vold when it's asked to mount an encrypted, nonremovable volume.
1851 * Setup a dm-crypt mapping, use the saved master key from
1852 * setting up the /data mapping, and return the new device path.
1853 */
1854int cryptfs_setup_volume(const char *label, int major, int minor,
1855 char *crypto_sys_path, unsigned int max_path,
1856 int *new_major, int *new_minor)
1857{
1858 char real_blkdev[MAXPATHLEN], crypto_blkdev[MAXPATHLEN];
1859 struct crypt_mnt_ftr sd_crypt_ftr;
Ken Sumrall29d8da82011-05-18 17:20:07 -07001860 struct stat statbuf;
1861 int nr_sec, fd;
1862
1863 sprintf(real_blkdev, "/dev/block/vold/%d:%d", major, minor);
1864
Ken Sumrall160b4d62013-04-22 12:15:39 -07001865 get_crypt_ftr_and_key(&sd_crypt_ftr);
Ken Sumrall29d8da82011-05-18 17:20:07 -07001866
1867 /* Update the fs_size field to be the size of the volume */
1868 fd = open(real_blkdev, O_RDONLY);
1869 nr_sec = get_blkdev_size(fd);
1870 close(fd);
1871 if (nr_sec == 0) {
1872 SLOGE("Cannot get size of volume %s\n", real_blkdev);
1873 return -1;
1874 }
1875
1876 sd_crypt_ftr.fs_size = nr_sec;
1877 create_crypto_blk_dev(&sd_crypt_ftr, saved_master_key, real_blkdev,
1878 crypto_blkdev, label);
1879
1880 stat(crypto_blkdev, &statbuf);
1881 *new_major = MAJOR(statbuf.st_rdev);
1882 *new_minor = MINOR(statbuf.st_rdev);
1883
1884 /* Create path to sys entry for this block device */
1885 snprintf(crypto_sys_path, max_path, "/devices/virtual/block/%s", strrchr(crypto_blkdev, '/')+1);
1886
1887 return 0;
1888}
1889
Ken Sumrall7f7dbaa2011-02-01 15:46:41 -08001890int cryptfs_crypto_complete(void)
1891{
1892 return do_crypto_complete("/data");
1893}
1894
Paul Lawrencef4faa572014-01-29 13:31:03 -08001895int check_unmounted_and_get_ftr(struct crypt_mnt_ftr* crypt_ftr)
1896{
1897 char encrypted_state[PROPERTY_VALUE_MAX];
1898 property_get("ro.crypto.state", encrypted_state, "");
1899 if ( master_key_saved || strcmp(encrypted_state, "encrypted") ) {
1900 SLOGE("encrypted fs already validated or not running with encryption,"
1901 " aborting");
1902 return -1;
1903 }
1904
1905 if (get_crypt_ftr_and_key(crypt_ftr)) {
1906 SLOGE("Error getting crypt footer and key");
1907 return -1;
1908 }
1909
1910 return 0;
1911}
1912
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001913int cryptfs_check_passwd(char *passwd)
1914{
Paul Lawrencef4faa572014-01-29 13:31:03 -08001915 struct crypt_mnt_ftr crypt_ftr;
1916 int rc;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001917
Paul Lawrencef4faa572014-01-29 13:31:03 -08001918 rc = check_unmounted_and_get_ftr(&crypt_ftr);
1919 if (rc)
1920 return rc;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001921
Paul Lawrencef4faa572014-01-29 13:31:03 -08001922 rc = test_mount_encrypted_fs(&crypt_ftr, passwd,
1923 DATA_MNT_POINT, "userdata");
Paul Lawrence684dbdf2014-02-07 12:07:22 -08001924
1925 if (rc == 0 && crypt_ftr.crypt_type != CRYPT_TYPE_DEFAULT) {
Paul Lawrence399317e2014-03-10 13:20:50 -07001926 cryptfs_clear_password();
1927 password = strdup(passwd);
1928 struct timespec now;
1929 clock_gettime(CLOCK_BOOTTIME, &now);
1930 password_expiry_time = now.tv_sec + password_max_age_seconds;
Paul Lawrence684dbdf2014-02-07 12:07:22 -08001931 }
1932
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001933 return rc;
1934}
1935
Ken Sumrall3ad90722011-10-04 20:38:29 -07001936int cryptfs_verify_passwd(char *passwd)
1937{
1938 struct crypt_mnt_ftr crypt_ftr;
1939 /* Allocate enough space for a 256 bit key, but we may use less */
Ken Sumrall160b4d62013-04-22 12:15:39 -07001940 unsigned char decrypted_master_key[32];
Ken Sumrall3ad90722011-10-04 20:38:29 -07001941 char encrypted_state[PROPERTY_VALUE_MAX];
1942 int rc;
1943
1944 property_get("ro.crypto.state", encrypted_state, "");
1945 if (strcmp(encrypted_state, "encrypted") ) {
1946 SLOGE("device not encrypted, aborting");
1947 return -2;
1948 }
1949
1950 if (!master_key_saved) {
1951 SLOGE("encrypted fs not yet mounted, aborting");
1952 return -1;
1953 }
1954
1955 if (!saved_mount_point) {
1956 SLOGE("encrypted fs failed to save mount point, aborting");
1957 return -1;
1958 }
1959
Ken Sumrall160b4d62013-04-22 12:15:39 -07001960 if (get_crypt_ftr_and_key(&crypt_ftr)) {
Ken Sumrall3ad90722011-10-04 20:38:29 -07001961 SLOGE("Error getting crypt footer and key\n");
1962 return -1;
1963 }
1964
1965 if (crypt_ftr.flags & CRYPT_MNT_KEY_UNENCRYPTED) {
1966 /* If the device has no password, then just say the password is valid */
1967 rc = 0;
1968 } else {
Paul Lawrenced0c7b172014-08-08 14:28:10 -07001969 decrypt_master_key(passwd, decrypted_master_key, &crypt_ftr, 0, 0);
Ken Sumrall3ad90722011-10-04 20:38:29 -07001970 if (!memcmp(decrypted_master_key, saved_master_key, crypt_ftr.keysize)) {
1971 /* They match, the password is correct */
1972 rc = 0;
1973 } else {
1974 /* If incorrect, sleep for a bit to prevent dictionary attacks */
1975 sleep(1);
1976 rc = 1;
1977 }
1978 }
1979
1980 return rc;
1981}
1982
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001983/* Initialize a crypt_mnt_ftr structure. The keysize is
1984 * defaulted to 16 bytes, and the filesystem size to 0.
1985 * Presumably, at a minimum, the caller will update the
1986 * filesystem size and crypto_type_name after calling this function.
1987 */
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001988static int cryptfs_init_crypt_mnt_ftr(struct crypt_mnt_ftr *ftr)
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001989{
Ken Sumrall160b4d62013-04-22 12:15:39 -07001990 off64_t off;
1991
1992 memset(ftr, 0, sizeof(struct crypt_mnt_ftr));
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001993 ftr->magic = CRYPT_MNT_MAGIC;
Kenny Rootc96a5f82013-06-14 12:08:28 -07001994 ftr->major_version = CURRENT_MAJOR_VERSION;
1995 ftr->minor_version = CURRENT_MINOR_VERSION;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001996 ftr->ftr_size = sizeof(struct crypt_mnt_ftr);
Jason parks70a4b3f2011-01-28 10:10:47 -06001997 ftr->keysize = KEY_LEN_BYTES;
Ken Sumrall160b4d62013-04-22 12:15:39 -07001998
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001999 switch (keymaster_check_compatibility()) {
2000 case 1:
2001 ftr->kdf_type = KDF_SCRYPT_KEYMASTER;
2002 break;
2003
2004 case 0:
2005 ftr->kdf_type = KDF_SCRYPT;
2006 break;
2007
2008 default:
2009 SLOGE("keymaster_check_compatibility failed");
2010 return -1;
2011 }
2012
Kenny Rootc4c70f12013-06-14 12:11:38 -07002013 get_device_scrypt_params(ftr);
2014
Ken Sumrall160b4d62013-04-22 12:15:39 -07002015 ftr->persist_data_size = CRYPT_PERSIST_DATA_SIZE;
2016 if (get_crypt_ftr_info(NULL, &off) == 0) {
2017 ftr->persist_data_offset[0] = off + CRYPT_FOOTER_TO_PERSIST_OFFSET;
2018 ftr->persist_data_offset[1] = off + CRYPT_FOOTER_TO_PERSIST_OFFSET +
2019 ftr->persist_data_size;
2020 }
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07002021
2022 return 0;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002023}
2024
Ken Sumrall29d8da82011-05-18 17:20:07 -07002025static int cryptfs_enable_wipe(char *crypto_blkdev, off64_t size, int type)
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002026{
Ken Sumralle550f782013-08-20 13:48:23 -07002027 const char *args[10];
2028 char size_str[32]; /* Must be large enough to hold a %lld and null byte */
2029 int num_args;
2030 int status;
2031 int tmp;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002032 int rc = -1;
2033
Ken Sumrall29d8da82011-05-18 17:20:07 -07002034 if (type == EXT4_FS) {
Ken Sumralle550f782013-08-20 13:48:23 -07002035 args[0] = "/system/bin/make_ext4fs";
2036 args[1] = "-a";
2037 args[2] = "/data";
2038 args[3] = "-l";
Elliott Hughes73737162014-06-25 17:27:42 -07002039 snprintf(size_str, sizeof(size_str), "%" PRId64, size * 512);
Ken Sumralle550f782013-08-20 13:48:23 -07002040 args[4] = size_str;
2041 args[5] = crypto_blkdev;
2042 num_args = 6;
2043 SLOGI("Making empty filesystem with command %s %s %s %s %s %s\n",
2044 args[0], args[1], args[2], args[3], args[4], args[5]);
JP Abgrall62c7af32014-06-16 13:01:23 -07002045 } else if (type == F2FS_FS) {
2046 args[0] = "/system/bin/mkfs.f2fs";
2047 args[1] = "-t";
2048 args[2] = "-d1";
2049 args[3] = crypto_blkdev;
Elliott Hughes73737162014-06-25 17:27:42 -07002050 snprintf(size_str, sizeof(size_str), "%" PRId64, size);
JP Abgrall62c7af32014-06-16 13:01:23 -07002051 args[4] = size_str;
2052 num_args = 5;
2053 SLOGI("Making empty filesystem with command %s %s %s %s %s\n",
2054 args[0], args[1], args[2], args[3], args[4]);
Ken Sumrall29d8da82011-05-18 17:20:07 -07002055 } else {
2056 SLOGE("cryptfs_enable_wipe(): unknown filesystem type %d\n", type);
2057 return -1;
2058 }
2059
Ken Sumralle550f782013-08-20 13:48:23 -07002060 tmp = android_fork_execvp(num_args, (char **)args, &status, false, true);
2061
2062 if (tmp != 0) {
2063 SLOGE("Error creating empty filesystem on %s due to logwrap error\n", crypto_blkdev);
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002064 } else {
Ken Sumralle550f782013-08-20 13:48:23 -07002065 if (WIFEXITED(status)) {
2066 if (WEXITSTATUS(status)) {
2067 SLOGE("Error creating filesystem on %s, exit status %d ",
2068 crypto_blkdev, WEXITSTATUS(status));
2069 } else {
2070 SLOGD("Successfully created filesystem on %s\n", crypto_blkdev);
2071 rc = 0;
2072 }
2073 } else {
2074 SLOGE("Error creating filesystem on %s, did not exit normally\n", crypto_blkdev);
2075 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002076 }
2077
2078 return rc;
2079}
2080
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002081#define CRYPT_INPLACE_BUFSIZE 4096
Paul Lawrence87999172014-02-20 12:21:31 -08002082#define CRYPT_SECTORS_PER_BUFSIZE (CRYPT_INPLACE_BUFSIZE / CRYPT_SECTOR_SIZE)
2083#define CRYPT_SECTOR_SIZE 512
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002084
2085/* aligned 32K writes tends to make flash happy.
2086 * SD card association recommends it.
2087 */
2088#define BLOCKS_AT_A_TIME 8
2089
2090struct encryptGroupsData
2091{
2092 int realfd;
2093 int cryptofd;
2094 off64_t numblocks;
2095 off64_t one_pct, cur_pct, new_pct;
2096 off64_t blocks_already_done, tot_numblocks;
Paul Lawrence58c58cf2014-06-04 13:12:21 -07002097 off64_t used_blocks_already_done, tot_used_blocks;
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002098 char* real_blkdev, * crypto_blkdev;
2099 int count;
2100 off64_t offset;
2101 char* buffer;
Paul Lawrence87999172014-02-20 12:21:31 -08002102 off64_t last_written_sector;
2103 int completed;
Paul Lawrencea96d9c92014-06-04 14:05:01 -07002104 time_t time_started;
2105 int remaining_time;
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002106};
2107
Paul Lawrence58c58cf2014-06-04 13:12:21 -07002108static void update_progress(struct encryptGroupsData* data, int is_used)
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002109{
2110 data->blocks_already_done++;
Paul Lawrence58c58cf2014-06-04 13:12:21 -07002111
2112 if (is_used) {
2113 data->used_blocks_already_done++;
2114 }
Paul Lawrence58c58cf2014-06-04 13:12:21 -07002115 if (data->tot_used_blocks) {
2116 data->new_pct = data->used_blocks_already_done / data->one_pct;
2117 } else {
2118 data->new_pct = data->blocks_already_done / data->one_pct;
2119 }
2120
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002121 if (data->new_pct > data->cur_pct) {
2122 char buf[8];
2123 data->cur_pct = data->new_pct;
Elliott Hughescb33f572014-06-25 18:25:11 -07002124 snprintf(buf, sizeof(buf), "%" PRId64, data->cur_pct);
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002125 property_set("vold.encrypt_progress", buf);
2126 }
Paul Lawrencea96d9c92014-06-04 14:05:01 -07002127
2128 if (data->cur_pct >= 5) {
2129 double elapsed_time = difftime(time(NULL), data->time_started);
2130 off64_t remaining_blocks = data->tot_used_blocks
2131 - data->used_blocks_already_done;
2132 int remaining_time = (int)(elapsed_time * remaining_blocks
2133 / data->used_blocks_already_done);
Paul Lawrence71577502014-08-13 14:55:55 -07002134
2135 // Change time only if not yet set, lower, or a lot higher for
2136 // best user experience
Paul Lawrencea96d9c92014-06-04 14:05:01 -07002137 if (data->remaining_time == -1
Paul Lawrence71577502014-08-13 14:55:55 -07002138 || remaining_time < data->remaining_time
2139 || remaining_time > data->remaining_time + 60) {
Paul Lawrencea96d9c92014-06-04 14:05:01 -07002140 char buf[8];
2141 snprintf(buf, sizeof(buf), "%d", remaining_time);
2142 property_set("vold.encrypt_time_remaining", buf);
Paul Lawrencea96d9c92014-06-04 14:05:01 -07002143 data->remaining_time = remaining_time;
2144 }
2145 }
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002146}
2147
Paul Lawrence3846be12014-09-22 11:33:54 -07002148static void log_progress(struct encryptGroupsData const* data, bool completed)
2149{
2150 // Precondition - if completed data = 0 else data != 0
2151
2152 // Track progress so we can skip logging blocks
2153 static off64_t offset = -1;
2154
2155 // Need to close existing 'Encrypting from' log?
2156 if (completed || (offset != -1 && data->offset != offset)) {
2157 SLOGI("Encrypted to sector %" PRId64,
2158 offset / info.block_size * CRYPT_SECTOR_SIZE);
2159 offset = -1;
2160 }
2161
2162 // Need to start new 'Encrypting from' log?
2163 if (!completed && offset != data->offset) {
2164 SLOGI("Encrypting from sector %" PRId64,
2165 data->offset / info.block_size * CRYPT_SECTOR_SIZE);
2166 }
2167
2168 // Update offset
2169 if (!completed) {
2170 offset = data->offset + (off64_t)data->count * info.block_size;
2171 }
2172}
2173
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002174static int flush_outstanding_data(struct encryptGroupsData* data)
2175{
2176 if (data->count == 0) {
2177 return 0;
2178 }
2179
Elliott Hughes231bdba2014-06-25 18:36:19 -07002180 SLOGV("Copying %d blocks at offset %" PRIx64, data->count, data->offset);
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002181
2182 if (pread64(data->realfd, data->buffer,
2183 info.block_size * data->count, data->offset)
2184 <= 0) {
2185 SLOGE("Error reading real_blkdev %s for inplace encrypt",
2186 data->real_blkdev);
2187 return -1;
2188 }
2189
2190 if (pwrite64(data->cryptofd, data->buffer,
2191 info.block_size * data->count, data->offset)
2192 <= 0) {
2193 SLOGE("Error writing crypto_blkdev %s for inplace encrypt",
2194 data->crypto_blkdev);
2195 return -1;
Paul Lawrence87999172014-02-20 12:21:31 -08002196 } else {
Paul Lawrence3846be12014-09-22 11:33:54 -07002197 log_progress(data, false);
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002198 }
2199
2200 data->count = 0;
Paul Lawrence87999172014-02-20 12:21:31 -08002201 data->last_written_sector = (data->offset + data->count)
2202 / info.block_size * CRYPT_SECTOR_SIZE - 1;
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002203 return 0;
2204}
2205
2206static int encrypt_groups(struct encryptGroupsData* data)
2207{
2208 unsigned int i;
2209 u8 *block_bitmap = 0;
2210 unsigned int block;
2211 off64_t ret;
2212 int rc = -1;
2213
2214 data->buffer = malloc(info.block_size * BLOCKS_AT_A_TIME);
2215 if (!data->buffer) {
2216 SLOGE("Failed to allocate crypto buffer");
2217 goto errout;
2218 }
2219
2220 block_bitmap = malloc(info.block_size);
2221 if (!block_bitmap) {
2222 SLOGE("failed to allocate block bitmap");
2223 goto errout;
2224 }
2225
2226 for (i = 0; i < aux_info.groups; ++i) {
2227 SLOGI("Encrypting group %d", i);
2228
2229 u32 first_block = aux_info.first_data_block + i * info.blocks_per_group;
2230 u32 block_count = min(info.blocks_per_group,
2231 aux_info.len_blocks - first_block);
2232
2233 off64_t offset = (u64)info.block_size
2234 * aux_info.bg_desc[i].bg_block_bitmap;
2235
2236 ret = pread64(data->realfd, block_bitmap, info.block_size, offset);
2237 if (ret != (int)info.block_size) {
2238 SLOGE("failed to read all of block group bitmap %d", i);
2239 goto errout;
2240 }
2241
2242 offset = (u64)info.block_size * first_block;
2243
2244 data->count = 0;
2245
2246 for (block = 0; block < block_count; block++) {
Paul Lawrence58c58cf2014-06-04 13:12:21 -07002247 int used = bitmap_get_bit(block_bitmap, block);
2248 update_progress(data, used);
2249 if (used) {
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002250 if (data->count == 0) {
2251 data->offset = offset;
2252 }
2253 data->count++;
2254 } else {
2255 if (flush_outstanding_data(data)) {
2256 goto errout;
2257 }
2258 }
2259
2260 offset += info.block_size;
2261
2262 /* Write data if we are aligned or buffer size reached */
2263 if (offset % (info.block_size * BLOCKS_AT_A_TIME) == 0
2264 || data->count == BLOCKS_AT_A_TIME) {
2265 if (flush_outstanding_data(data)) {
2266 goto errout;
2267 }
2268 }
Paul Lawrence87999172014-02-20 12:21:31 -08002269
Paul Lawrence73d7a022014-06-09 14:10:09 -07002270 if (!is_battery_ok_to_continue()) {
Paul Lawrence87999172014-02-20 12:21:31 -08002271 SLOGE("Stopping encryption due to low battery");
2272 rc = 0;
2273 goto errout;
2274 }
2275
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002276 }
2277 if (flush_outstanding_data(data)) {
2278 goto errout;
2279 }
2280 }
2281
Paul Lawrence87999172014-02-20 12:21:31 -08002282 data->completed = 1;
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002283 rc = 0;
2284
2285errout:
Paul Lawrence3846be12014-09-22 11:33:54 -07002286 log_progress(0, true);
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002287 free(data->buffer);
2288 free(block_bitmap);
2289 return rc;
2290}
2291
2292static int cryptfs_enable_inplace_ext4(char *crypto_blkdev,
2293 char *real_blkdev,
2294 off64_t size,
2295 off64_t *size_already_done,
Paul Lawrence87999172014-02-20 12:21:31 -08002296 off64_t tot_size,
2297 off64_t previously_encrypted_upto)
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002298{
Paul Lawrence58c58cf2014-06-04 13:12:21 -07002299 u32 i;
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002300 struct encryptGroupsData data;
Paul Lawrence74f29f12014-08-28 15:54:10 -07002301 int rc; // Can't initialize without causing warning -Wclobbered
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002302
Paul Lawrence87999172014-02-20 12:21:31 -08002303 if (previously_encrypted_upto > *size_already_done) {
2304 SLOGD("Not fast encrypting since resuming part way through");
2305 return -1;
2306 }
2307
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002308 memset(&data, 0, sizeof(data));
2309 data.real_blkdev = real_blkdev;
2310 data.crypto_blkdev = crypto_blkdev;
2311
2312 if ( (data.realfd = open(real_blkdev, O_RDWR)) < 0) {
2313 SLOGE("Error opening real_blkdev %s for inplace encrypt\n",
2314 real_blkdev);
Paul Lawrence74f29f12014-08-28 15:54:10 -07002315 rc = -1;
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002316 goto errout;
2317 }
2318
2319 if ( (data.cryptofd = open(crypto_blkdev, O_WRONLY)) < 0) {
2320 SLOGE("Error opening crypto_blkdev %s for inplace encrypt\n",
2321 crypto_blkdev);
Paul Lawrence74f29f12014-08-28 15:54:10 -07002322 rc = -1;
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002323 goto errout;
2324 }
2325
2326 if (setjmp(setjmp_env)) {
2327 SLOGE("Reading extent caused an exception");
Paul Lawrence74f29f12014-08-28 15:54:10 -07002328 rc = -1;
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002329 goto errout;
2330 }
2331
2332 if (read_ext(data.realfd, 0) != 0) {
2333 SLOGE("Failed to read extent");
Paul Lawrence74f29f12014-08-28 15:54:10 -07002334 rc = -1;
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002335 goto errout;
2336 }
2337
2338 data.numblocks = size / CRYPT_SECTORS_PER_BUFSIZE;
2339 data.tot_numblocks = tot_size / CRYPT_SECTORS_PER_BUFSIZE;
2340 data.blocks_already_done = *size_already_done / CRYPT_SECTORS_PER_BUFSIZE;
2341
2342 SLOGI("Encrypting filesystem in place...");
2343
Paul Lawrence58c58cf2014-06-04 13:12:21 -07002344 data.tot_used_blocks = data.numblocks;
2345 for (i = 0; i < aux_info.groups; ++i) {
2346 data.tot_used_blocks -= aux_info.bg_desc[i].bg_free_blocks_count;
2347 }
2348
2349 data.one_pct = data.tot_used_blocks / 100;
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002350 data.cur_pct = 0;
Paul Lawrencea96d9c92014-06-04 14:05:01 -07002351 data.time_started = time(NULL);
2352 data.remaining_time = -1;
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002353
2354 rc = encrypt_groups(&data);
2355 if (rc) {
2356 SLOGE("Error encrypting groups");
2357 goto errout;
2358 }
2359
Paul Lawrence87999172014-02-20 12:21:31 -08002360 *size_already_done += data.completed ? size : data.last_written_sector;
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002361 rc = 0;
2362
2363errout:
2364 close(data.realfd);
2365 close(data.cryptofd);
2366
2367 return rc;
2368}
2369
Paul Lawrence3846be12014-09-22 11:33:54 -07002370static void log_progress_f2fs(u64 block, bool completed)
2371{
2372 // Precondition - if completed data = 0 else data != 0
2373
2374 // Track progress so we can skip logging blocks
2375 static u64 last_block = (u64)-1;
2376
2377 // Need to close existing 'Encrypting from' log?
2378 if (completed || (last_block != (u64)-1 && block != last_block + 1)) {
2379 SLOGI("Encrypted to block %" PRId64, last_block);
2380 last_block = -1;
2381 }
2382
2383 // Need to start new 'Encrypting from' log?
2384 if (!completed && (last_block == (u64)-1 || block != last_block + 1)) {
2385 SLOGI("Encrypting from block %" PRId64, block);
2386 }
2387
2388 // Update offset
2389 if (!completed) {
2390 last_block = block;
2391 }
2392}
2393
Daniel Rosenberge82df162014-08-15 22:19:23 +00002394static int encrypt_one_block_f2fs(u64 pos, void *data)
2395{
2396 struct encryptGroupsData *priv_dat = (struct encryptGroupsData *)data;
2397
2398 priv_dat->blocks_already_done = pos - 1;
2399 update_progress(priv_dat, 1);
2400
2401 off64_t offset = pos * CRYPT_INPLACE_BUFSIZE;
2402
2403 if (pread64(priv_dat->realfd, priv_dat->buffer, CRYPT_INPLACE_BUFSIZE, offset) <= 0) {
2404 SLOGE("Error reading real_blkdev %s for inplace encrypt", priv_dat->crypto_blkdev);
2405 return -1;
2406 }
2407
2408 if (pwrite64(priv_dat->cryptofd, priv_dat->buffer, CRYPT_INPLACE_BUFSIZE, offset) <= 0) {
2409 SLOGE("Error writing crypto_blkdev %s for inplace encrypt", priv_dat->crypto_blkdev);
2410 return -1;
2411 } else {
Paul Lawrence3846be12014-09-22 11:33:54 -07002412 log_progress_f2fs(pos, false);
Daniel Rosenberge82df162014-08-15 22:19:23 +00002413 }
2414
2415 return 0;
2416}
2417
2418static int cryptfs_enable_inplace_f2fs(char *crypto_blkdev,
2419 char *real_blkdev,
2420 off64_t size,
2421 off64_t *size_already_done,
2422 off64_t tot_size,
2423 off64_t previously_encrypted_upto)
2424{
2425 u32 i;
2426 struct encryptGroupsData data;
2427 struct f2fs_info *f2fs_info = NULL;
2428 int rc = -1;
2429 if (previously_encrypted_upto > *size_already_done) {
2430 SLOGD("Not fast encrypting since resuming part way through");
2431 return -1;
2432 }
2433 memset(&data, 0, sizeof(data));
2434 data.real_blkdev = real_blkdev;
2435 data.crypto_blkdev = crypto_blkdev;
2436 data.realfd = -1;
2437 data.cryptofd = -1;
2438 if ( (data.realfd = open64(real_blkdev, O_RDWR)) < 0) {
2439 SLOGE("Error opening real_blkdev %s for inplace encrypt\n",
2440 real_blkdev);
2441 goto errout;
2442 }
2443 if ( (data.cryptofd = open64(crypto_blkdev, O_WRONLY)) < 0) {
2444 SLOGE("Error opening crypto_blkdev %s for inplace encrypt\n",
2445 crypto_blkdev);
2446 goto errout;
2447 }
2448
2449 f2fs_info = generate_f2fs_info(data.realfd);
2450 if (!f2fs_info)
2451 goto errout;
2452
2453 data.numblocks = size / CRYPT_SECTORS_PER_BUFSIZE;
2454 data.tot_numblocks = tot_size / CRYPT_SECTORS_PER_BUFSIZE;
2455 data.blocks_already_done = *size_already_done / CRYPT_SECTORS_PER_BUFSIZE;
2456
2457 data.tot_used_blocks = get_num_blocks_used(f2fs_info);
2458
2459 data.one_pct = data.tot_used_blocks / 100;
2460 data.cur_pct = 0;
2461 data.time_started = time(NULL);
2462 data.remaining_time = -1;
2463
2464 data.buffer = malloc(f2fs_info->block_size);
2465 if (!data.buffer) {
2466 SLOGE("Failed to allocate crypto buffer");
2467 goto errout;
2468 }
2469
2470 data.count = 0;
2471
2472 /* Currently, this either runs to completion, or hits a nonrecoverable error */
2473 rc = run_on_used_blocks(data.blocks_already_done, f2fs_info, &encrypt_one_block_f2fs, &data);
2474
2475 if (rc) {
2476 SLOGE("Error in running over blocks");
2477 goto errout;
2478 }
2479
2480 *size_already_done += size;
2481 rc = 0;
2482
2483errout:
2484 if (rc)
2485 SLOGE("Failed to encrypt f2fs filesystem on %s", real_blkdev);
2486
Paul Lawrence3846be12014-09-22 11:33:54 -07002487 log_progress_f2fs(0, true);
Daniel Rosenberge82df162014-08-15 22:19:23 +00002488 free(f2fs_info);
2489 free(data.buffer);
2490 close(data.realfd);
2491 close(data.cryptofd);
2492
2493 return rc;
2494}
2495
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002496static int cryptfs_enable_inplace_full(char *crypto_blkdev, char *real_blkdev,
2497 off64_t size, off64_t *size_already_done,
Paul Lawrence87999172014-02-20 12:21:31 -08002498 off64_t tot_size,
2499 off64_t previously_encrypted_upto)
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002500{
2501 int realfd, cryptofd;
2502 char *buf[CRYPT_INPLACE_BUFSIZE];
2503 int rc = -1;
2504 off64_t numblocks, i, remainder;
Ken Sumrall8ddbe402011-01-17 15:26:29 -08002505 off64_t one_pct, cur_pct, new_pct;
Ken Sumrall29d8da82011-05-18 17:20:07 -07002506 off64_t blocks_already_done, tot_numblocks;
Ken Sumrall8ddbe402011-01-17 15:26:29 -08002507
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002508 if ( (realfd = open(real_blkdev, O_RDONLY)) < 0) {
2509 SLOGE("Error opening real_blkdev %s for inplace encrypt\n", real_blkdev);
2510 return -1;
2511 }
2512
2513 if ( (cryptofd = open(crypto_blkdev, O_WRONLY)) < 0) {
2514 SLOGE("Error opening crypto_blkdev %s for inplace encrypt\n", crypto_blkdev);
2515 close(realfd);
2516 return -1;
2517 }
2518
2519 /* This is pretty much a simple loop of reading 4K, and writing 4K.
2520 * The size passed in is the number of 512 byte sectors in the filesystem.
2521 * So compute the number of whole 4K blocks we should read/write,
2522 * and the remainder.
2523 */
2524 numblocks = size / CRYPT_SECTORS_PER_BUFSIZE;
2525 remainder = size % CRYPT_SECTORS_PER_BUFSIZE;
Ken Sumrall29d8da82011-05-18 17:20:07 -07002526 tot_numblocks = tot_size / CRYPT_SECTORS_PER_BUFSIZE;
2527 blocks_already_done = *size_already_done / CRYPT_SECTORS_PER_BUFSIZE;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002528
2529 SLOGE("Encrypting filesystem in place...");
2530
Paul Lawrence87999172014-02-20 12:21:31 -08002531 i = previously_encrypted_upto + 1 - *size_already_done;
2532
2533 if (lseek64(realfd, i * CRYPT_SECTOR_SIZE, SEEK_SET) < 0) {
2534 SLOGE("Cannot seek to previously encrypted point on %s", real_blkdev);
2535 goto errout;
2536 }
2537
2538 if (lseek64(cryptofd, i * CRYPT_SECTOR_SIZE, SEEK_SET) < 0) {
2539 SLOGE("Cannot seek to previously encrypted point on %s", crypto_blkdev);
2540 goto errout;
2541 }
2542
2543 for (;i < size && i % CRYPT_SECTORS_PER_BUFSIZE != 0; ++i) {
2544 if (unix_read(realfd, buf, CRYPT_SECTOR_SIZE) <= 0) {
2545 SLOGE("Error reading initial sectors from real_blkdev %s for "
2546 "inplace encrypt\n", crypto_blkdev);
2547 goto errout;
2548 }
2549 if (unix_write(cryptofd, buf, CRYPT_SECTOR_SIZE) <= 0) {
2550 SLOGE("Error writing initial sectors to crypto_blkdev %s for "
2551 "inplace encrypt\n", crypto_blkdev);
2552 goto errout;
2553 } else {
Elliott Hughescb33f572014-06-25 18:25:11 -07002554 SLOGI("Encrypted 1 block at %" PRId64, i);
Paul Lawrence87999172014-02-20 12:21:31 -08002555 }
2556 }
2557
Ken Sumrall29d8da82011-05-18 17:20:07 -07002558 one_pct = tot_numblocks / 100;
Ken Sumrall8ddbe402011-01-17 15:26:29 -08002559 cur_pct = 0;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002560 /* process the majority of the filesystem in blocks */
Paul Lawrence87999172014-02-20 12:21:31 -08002561 for (i/=CRYPT_SECTORS_PER_BUFSIZE; i<numblocks; i++) {
Ken Sumrall29d8da82011-05-18 17:20:07 -07002562 new_pct = (i + blocks_already_done) / one_pct;
Ken Sumrall8ddbe402011-01-17 15:26:29 -08002563 if (new_pct > cur_pct) {
2564 char buf[8];
2565
2566 cur_pct = new_pct;
Elliott Hughes73737162014-06-25 17:27:42 -07002567 snprintf(buf, sizeof(buf), "%" PRId64, cur_pct);
Ken Sumrall8ddbe402011-01-17 15:26:29 -08002568 property_set("vold.encrypt_progress", buf);
2569 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002570 if (unix_read(realfd, buf, CRYPT_INPLACE_BUFSIZE) <= 0) {
Paul Lawrence87999172014-02-20 12:21:31 -08002571 SLOGE("Error reading real_blkdev %s for inplace encrypt", crypto_blkdev);
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002572 goto errout;
2573 }
2574 if (unix_write(cryptofd, buf, CRYPT_INPLACE_BUFSIZE) <= 0) {
Paul Lawrence87999172014-02-20 12:21:31 -08002575 SLOGE("Error writing crypto_blkdev %s for inplace encrypt", crypto_blkdev);
2576 goto errout;
2577 } else {
Elliott Hughescb33f572014-06-25 18:25:11 -07002578 SLOGD("Encrypted %d block at %" PRId64,
Paul Lawrence87999172014-02-20 12:21:31 -08002579 CRYPT_SECTORS_PER_BUFSIZE,
2580 i * CRYPT_SECTORS_PER_BUFSIZE);
2581 }
2582
Paul Lawrence73d7a022014-06-09 14:10:09 -07002583 if (!is_battery_ok_to_continue()) {
Paul Lawrence87999172014-02-20 12:21:31 -08002584 SLOGE("Stopping encryption due to low battery");
2585 *size_already_done += (i + 1) * CRYPT_SECTORS_PER_BUFSIZE - 1;
2586 rc = 0;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002587 goto errout;
2588 }
2589 }
2590
2591 /* Do any remaining sectors */
2592 for (i=0; i<remainder; i++) {
Paul Lawrence87999172014-02-20 12:21:31 -08002593 if (unix_read(realfd, buf, CRYPT_SECTOR_SIZE) <= 0) {
2594 SLOGE("Error reading final sectors from real_blkdev %s for inplace encrypt", crypto_blkdev);
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002595 goto errout;
2596 }
Paul Lawrence87999172014-02-20 12:21:31 -08002597 if (unix_write(cryptofd, buf, CRYPT_SECTOR_SIZE) <= 0) {
2598 SLOGE("Error writing final sectors to crypto_blkdev %s for inplace encrypt", crypto_blkdev);
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002599 goto errout;
Paul Lawrence87999172014-02-20 12:21:31 -08002600 } else {
2601 SLOGI("Encrypted 1 block at next location");
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002602 }
2603 }
2604
Ken Sumrall29d8da82011-05-18 17:20:07 -07002605 *size_already_done += size;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002606 rc = 0;
2607
2608errout:
2609 close(realfd);
2610 close(cryptofd);
2611
2612 return rc;
2613}
2614
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002615static int cryptfs_enable_inplace(char *crypto_blkdev, char *real_blkdev,
2616 off64_t size, off64_t *size_already_done,
Paul Lawrence87999172014-02-20 12:21:31 -08002617 off64_t tot_size,
2618 off64_t previously_encrypted_upto)
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002619{
Paul Lawrence87999172014-02-20 12:21:31 -08002620 if (previously_encrypted_upto) {
Elliott Hughescb33f572014-06-25 18:25:11 -07002621 SLOGD("Continuing encryption from %" PRId64, previously_encrypted_upto);
Paul Lawrence87999172014-02-20 12:21:31 -08002622 }
2623
2624 if (*size_already_done + size < previously_encrypted_upto) {
2625 *size_already_done += size;
2626 return 0;
2627 }
2628
Daniel Rosenberge82df162014-08-15 22:19:23 +00002629 /* TODO: identify filesystem type.
2630 * As is, cryptfs_enable_inplace_ext4 will fail on an f2fs partition, and
2631 * then we will drop down to cryptfs_enable_inplace_f2fs.
2632 * */
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002633 if (cryptfs_enable_inplace_ext4(crypto_blkdev, real_blkdev,
Daniel Rosenberge82df162014-08-15 22:19:23 +00002634 size, size_already_done,
2635 tot_size, previously_encrypted_upto) == 0) {
2636 return 0;
2637 }
2638
2639 if (cryptfs_enable_inplace_f2fs(crypto_blkdev, real_blkdev,
2640 size, size_already_done,
2641 tot_size, previously_encrypted_upto) == 0) {
2642 return 0;
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002643 }
2644
2645 return cryptfs_enable_inplace_full(crypto_blkdev, real_blkdev,
Paul Lawrence87999172014-02-20 12:21:31 -08002646 size, size_already_done, tot_size,
2647 previously_encrypted_upto);
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002648}
2649
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002650#define CRYPTO_ENABLE_WIPE 1
2651#define CRYPTO_ENABLE_INPLACE 2
Ken Sumrall8ddbe402011-01-17 15:26:29 -08002652
2653#define FRAMEWORK_BOOT_WAIT 60
2654
Ken Sumrall29d8da82011-05-18 17:20:07 -07002655static inline int should_encrypt(struct volume_info *volume)
2656{
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002657 return (volume->flags & (VOL_ENCRYPTABLE | VOL_NONREMOVABLE)) ==
Ken Sumrall29d8da82011-05-18 17:20:07 -07002658 (VOL_ENCRYPTABLE | VOL_NONREMOVABLE);
2659}
2660
Paul Lawrence87999172014-02-20 12:21:31 -08002661static int cryptfs_SHA256_fileblock(const char* filename, __le8* buf)
2662{
2663 int fd = open(filename, O_RDONLY);
2664 if (fd == -1) {
2665 SLOGE("Error opening file %s", filename);
2666 return -1;
2667 }
2668
2669 char block[CRYPT_INPLACE_BUFSIZE];
2670 memset(block, 0, sizeof(block));
2671 if (unix_read(fd, block, sizeof(block)) < 0) {
2672 SLOGE("Error reading file %s", filename);
2673 close(fd);
2674 return -1;
2675 }
2676
2677 close(fd);
2678
2679 SHA256_CTX c;
2680 SHA256_Init(&c);
2681 SHA256_Update(&c, block, sizeof(block));
2682 SHA256_Final(buf, &c);
2683
2684 return 0;
2685}
2686
JP Abgrall62c7af32014-06-16 13:01:23 -07002687static int get_fs_type(struct fstab_rec *rec)
2688{
2689 if (!strcmp(rec->fs_type, "ext4")) {
2690 return EXT4_FS;
2691 } else if (!strcmp(rec->fs_type, "f2fs")) {
2692 return F2FS_FS;
2693 } else {
2694 return -1;
2695 }
2696}
2697
Paul Lawrence87999172014-02-20 12:21:31 -08002698static int cryptfs_enable_all_volumes(struct crypt_mnt_ftr *crypt_ftr, int how,
2699 char *crypto_blkdev, char *real_blkdev,
2700 int previously_encrypted_upto)
2701{
2702 off64_t cur_encryption_done=0, tot_encryption_size=0;
2703 int i, rc = -1;
2704
Paul Lawrence73d7a022014-06-09 14:10:09 -07002705 if (!is_battery_ok_to_start()) {
2706 SLOGW("Not starting encryption due to low battery");
Paul Lawrence87999172014-02-20 12:21:31 -08002707 return 0;
2708 }
2709
2710 /* The size of the userdata partition, and add in the vold volumes below */
2711 tot_encryption_size = crypt_ftr->fs_size;
2712
2713 if (how == CRYPTO_ENABLE_WIPE) {
JP Abgrall62c7af32014-06-16 13:01:23 -07002714 struct fstab_rec* rec = fs_mgr_get_entry_for_mount_point(fstab, DATA_MNT_POINT);
2715 int fs_type = get_fs_type(rec);
2716 if (fs_type < 0) {
2717 SLOGE("cryptfs_enable: unsupported fs type %s\n", rec->fs_type);
2718 return -1;
2719 }
2720 rc = cryptfs_enable_wipe(crypto_blkdev, crypt_ftr->fs_size, fs_type);
Paul Lawrence87999172014-02-20 12:21:31 -08002721 } else if (how == CRYPTO_ENABLE_INPLACE) {
2722 rc = cryptfs_enable_inplace(crypto_blkdev, real_blkdev,
2723 crypt_ftr->fs_size, &cur_encryption_done,
2724 tot_encryption_size,
2725 previously_encrypted_upto);
2726
Paul Lawrence73d7a022014-06-09 14:10:09 -07002727 if (!rc) {
Paul Lawrence87999172014-02-20 12:21:31 -08002728 crypt_ftr->encrypted_upto = cur_encryption_done;
2729 }
2730
Paul Lawrence73d7a022014-06-09 14:10:09 -07002731 if (!rc && crypt_ftr->encrypted_upto == crypt_ftr->fs_size) {
Paul Lawrence87999172014-02-20 12:21:31 -08002732 /* The inplace routine never actually sets the progress to 100% due
2733 * to the round down nature of integer division, so set it here */
2734 property_set("vold.encrypt_progress", "100");
2735 }
2736 } else {
2737 /* Shouldn't happen */
2738 SLOGE("cryptfs_enable: internal error, unknown option\n");
2739 rc = -1;
2740 }
2741
2742 return rc;
2743}
2744
Paul Lawrence13486032014-02-03 13:28:11 -08002745int cryptfs_enable_internal(char *howarg, int crypt_type, char *passwd,
2746 int allow_reboot)
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002747{
2748 int how = 0;
Paul Lawrence87999172014-02-20 12:21:31 -08002749 char crypto_blkdev[MAXPATHLEN], real_blkdev[MAXPATHLEN];
Ken Sumralle5032c42012-04-01 23:58:44 -07002750 unsigned long nr_sec;
Ken Sumrall160b4d62013-04-22 12:15:39 -07002751 unsigned char decrypted_master_key[KEY_LEN_BYTES];
Ken Sumrall319b1042011-06-14 14:01:55 -07002752 int rc=-1, fd, i, ret;
Paul Lawrence87999172014-02-20 12:21:31 -08002753 struct crypt_mnt_ftr crypt_ftr;
Ken Sumrall160b4d62013-04-22 12:15:39 -07002754 struct crypt_persist_data *pdata;
Ken Sumrall29d8da82011-05-18 17:20:07 -07002755 char encrypted_state[PROPERTY_VALUE_MAX];
Ken Sumrall5d4c68e2011-01-30 19:06:03 -08002756 char lockid[32] = { 0 };
Ken Sumrall29d8da82011-05-18 17:20:07 -07002757 char key_loc[PROPERTY_VALUE_MAX];
2758 char fuse_sdcard[PROPERTY_VALUE_MAX];
2759 char *sd_mnt_point;
Ken Sumrall29d8da82011-05-18 17:20:07 -07002760 int num_vols;
2761 struct volume_info *vol_list = 0;
Paul Lawrence87999172014-02-20 12:21:31 -08002762 off64_t previously_encrypted_upto = 0;
Ken Sumrall29d8da82011-05-18 17:20:07 -07002763
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002764 if (!strcmp(howarg, "wipe")) {
2765 how = CRYPTO_ENABLE_WIPE;
2766 } else if (! strcmp(howarg, "inplace")) {
2767 how = CRYPTO_ENABLE_INPLACE;
2768 } else {
2769 /* Shouldn't happen, as CommandListener vets the args */
Ken Sumrall3ed82362011-01-28 23:31:16 -08002770 goto error_unencrypted;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002771 }
2772
Paul Lawrence87999172014-02-20 12:21:31 -08002773 /* See if an encryption was underway and interrupted */
2774 if (how == CRYPTO_ENABLE_INPLACE
2775 && get_crypt_ftr_and_key(&crypt_ftr) == 0
2776 && (crypt_ftr.flags & CRYPT_ENCRYPTION_IN_PROGRESS)) {
2777 previously_encrypted_upto = crypt_ftr.encrypted_upto;
2778 crypt_ftr.encrypted_upto = 0;
Paul Lawrence6bfed202014-07-28 12:47:22 -07002779 crypt_ftr.flags &= ~CRYPT_ENCRYPTION_IN_PROGRESS;
2780
2781 /* At this point, we are in an inconsistent state. Until we successfully
2782 complete encryption, a reboot will leave us broken. So mark the
2783 encryption failed in case that happens.
2784 On successfully completing encryption, remove this flag */
2785 crypt_ftr.flags |= CRYPT_INCONSISTENT_STATE;
2786
2787 put_crypt_ftr_and_key(&crypt_ftr);
Paul Lawrence87999172014-02-20 12:21:31 -08002788 }
2789
2790 property_get("ro.crypto.state", encrypted_state, "");
2791 if (!strcmp(encrypted_state, "encrypted") && !previously_encrypted_upto) {
2792 SLOGE("Device is already running encrypted, aborting");
2793 goto error_unencrypted;
2794 }
2795
2796 // TODO refactor fs_mgr_get_crypt_info to get both in one call
2797 fs_mgr_get_crypt_info(fstab, key_loc, 0, sizeof(key_loc));
Ken Sumrall56ad03c2013-02-13 13:00:19 -08002798 fs_mgr_get_crypt_info(fstab, 0, real_blkdev, sizeof(real_blkdev));
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002799
Ken Sumrall3ed82362011-01-28 23:31:16 -08002800 /* Get the size of the real block device */
2801 fd = open(real_blkdev, O_RDONLY);
2802 if ( (nr_sec = get_blkdev_size(fd)) == 0) {
2803 SLOGE("Cannot get size of block device %s\n", real_blkdev);
2804 goto error_unencrypted;
2805 }
2806 close(fd);
2807
2808 /* If doing inplace encryption, make sure the orig fs doesn't include the crypto footer */
Ken Sumrall29d8da82011-05-18 17:20:07 -07002809 if ((how == CRYPTO_ENABLE_INPLACE) && (!strcmp(key_loc, KEY_IN_FOOTER))) {
Ken Sumrall3ed82362011-01-28 23:31:16 -08002810 unsigned int fs_size_sec, max_fs_size_sec;
Jim Millera70abc62014-08-15 02:00:45 +00002811 fs_size_sec = get_fs_size(real_blkdev);
Daniel Rosenberge82df162014-08-15 22:19:23 +00002812 if (fs_size_sec == 0)
2813 fs_size_sec = get_f2fs_filesystem_size_sec(real_blkdev);
2814
Paul Lawrence87999172014-02-20 12:21:31 -08002815 max_fs_size_sec = nr_sec - (CRYPT_FOOTER_OFFSET / CRYPT_SECTOR_SIZE);
Ken Sumrall3ed82362011-01-28 23:31:16 -08002816
2817 if (fs_size_sec > max_fs_size_sec) {
2818 SLOGE("Orig filesystem overlaps crypto footer region. Cannot encrypt in place.");
2819 goto error_unencrypted;
2820 }
2821 }
2822
Ken Sumrall5d4c68e2011-01-30 19:06:03 -08002823 /* Get a wakelock as this may take a while, and we don't want the
2824 * device to sleep on us. We'll grab a partial wakelock, and if the UI
2825 * wants to keep the screen on, it can grab a full wakelock.
2826 */
Ken Sumrall29d8da82011-05-18 17:20:07 -07002827 snprintf(lockid, sizeof(lockid), "enablecrypto%d", (int) getpid());
Ken Sumrall5d4c68e2011-01-30 19:06:03 -08002828 acquire_wake_lock(PARTIAL_WAKE_LOCK, lockid);
2829
Jeff Sharkey7382f812012-08-23 14:08:59 -07002830 /* Get the sdcard mount point */
Jeff Sharkeyb77bc462012-10-01 14:36:26 -07002831 sd_mnt_point = getenv("EMULATED_STORAGE_SOURCE");
Jeff Sharkey7382f812012-08-23 14:08:59 -07002832 if (!sd_mnt_point) {
2833 sd_mnt_point = getenv("EXTERNAL_STORAGE");
2834 }
2835 if (!sd_mnt_point) {
2836 sd_mnt_point = "/mnt/sdcard";
2837 }
Ken Sumrall29d8da82011-05-18 17:20:07 -07002838
Paul Lawrence87999172014-02-20 12:21:31 -08002839 /* TODO
2840 * Currently do not have test devices with multiple encryptable volumes.
2841 * When we acquire some, re-add support.
2842 */
Ken Sumrall29d8da82011-05-18 17:20:07 -07002843 num_vols=vold_getNumDirectVolumes();
2844 vol_list = malloc(sizeof(struct volume_info) * num_vols);
2845 vold_getDirectVolumeList(vol_list);
2846
2847 for (i=0; i<num_vols; i++) {
2848 if (should_encrypt(&vol_list[i])) {
Paul Lawrence87999172014-02-20 12:21:31 -08002849 SLOGE("Cannot encrypt if there are multiple encryptable volumes"
2850 "%s\n", vol_list[i].label);
2851 goto error_unencrypted;
Ken Sumrall29d8da82011-05-18 17:20:07 -07002852 }
2853 }
2854
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002855 /* The init files are setup to stop the class main and late start when
Ken Sumrall8ddbe402011-01-17 15:26:29 -08002856 * vold sets trigger_shutdown_framework.
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002857 */
2858 property_set("vold.decrypt", "trigger_shutdown_framework");
2859 SLOGD("Just asked init to shut down class main\n");
2860
Ken Sumrall425524d2012-06-14 20:55:28 -07002861 if (vold_unmountAllAsecs()) {
2862 /* Just report the error. If any are left mounted,
2863 * umounting /data below will fail and handle the error.
2864 */
2865 SLOGE("Error unmounting internal asecs");
2866 }
2867
Ken Sumrall29d8da82011-05-18 17:20:07 -07002868 property_get("ro.crypto.fuse_sdcard", fuse_sdcard, "");
2869 if (!strcmp(fuse_sdcard, "true")) {
2870 /* This is a device using the fuse layer to emulate the sdcard semantics
2871 * on top of the userdata partition. vold does not manage it, it is managed
2872 * by the sdcard service. The sdcard service was killed by the property trigger
2873 * above, so just unmount it now. We must do this _AFTER_ killing the framework,
2874 * unlike the case for vold managed devices above.
2875 */
2876 if (wait_and_unmount(sd_mnt_point)) {
2877 goto error_shutting_down;
2878 }
Ken Sumrall2eaf7132011-01-14 12:45:48 -08002879 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002880
2881 /* Now unmount the /data partition. */
Ken Sumrall8ddbe402011-01-17 15:26:29 -08002882 if (wait_and_unmount(DATA_MNT_POINT)) {
JP Abgrall502dc742013-11-01 13:06:20 -07002883 if (allow_reboot) {
2884 goto error_shutting_down;
2885 } else {
2886 goto error_unencrypted;
2887 }
Ken Sumrall8ddbe402011-01-17 15:26:29 -08002888 }
2889
2890 /* Do extra work for a better UX when doing the long inplace encryption */
2891 if (how == CRYPTO_ENABLE_INPLACE) {
2892 /* Now that /data is unmounted, we need to mount a tmpfs
2893 * /data, set a property saying we're doing inplace encryption,
2894 * and restart the framework.
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002895 */
Ken Sumralle5032c42012-04-01 23:58:44 -07002896 if (fs_mgr_do_tmpfs_mount(DATA_MNT_POINT)) {
Ken Sumrall3ed82362011-01-28 23:31:16 -08002897 goto error_shutting_down;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002898 }
Ken Sumrall8ddbe402011-01-17 15:26:29 -08002899 /* Tells the framework that inplace encryption is starting */
Ken Sumrall7df84122011-01-18 14:04:08 -08002900 property_set("vold.encrypt_progress", "0");
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002901
Ken Sumrall8ddbe402011-01-17 15:26:29 -08002902 /* restart the framework. */
2903 /* Create necessary paths on /data */
2904 if (prep_data_fs()) {
Ken Sumrall3ed82362011-01-28 23:31:16 -08002905 goto error_shutting_down;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002906 }
2907
Ken Sumrall92736ef2012-10-17 20:57:14 -07002908 /* Ugh, shutting down the framework is not synchronous, so until it
2909 * can be fixed, this horrible hack will wait a moment for it all to
2910 * shut down before proceeding. Without it, some devices cannot
2911 * restart the graphics services.
2912 */
2913 sleep(2);
2914
Ken Sumrall8ddbe402011-01-17 15:26:29 -08002915 /* startup service classes main and late_start */
2916 property_set("vold.decrypt", "trigger_restart_min_framework");
2917 SLOGD("Just triggered restart_min_framework\n");
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002918
Ken Sumrall7df84122011-01-18 14:04:08 -08002919 /* OK, the framework is restarted and will soon be showing a
2920 * progress bar. Time to setup an encrypted mapping, and
2921 * either write a new filesystem, or encrypt in place updating
2922 * the progress bar as we work.
Ken Sumrall8ddbe402011-01-17 15:26:29 -08002923 */
2924 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002925
Ken Sumrall8ddbe402011-01-17 15:26:29 -08002926 /* Start the actual work of making an encrypted filesystem */
Ken Sumrall8ddbe402011-01-17 15:26:29 -08002927 /* Initialize a crypt_mnt_ftr for the partition */
Paul Lawrence87999172014-02-20 12:21:31 -08002928 if (previously_encrypted_upto == 0) {
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07002929 if (cryptfs_init_crypt_mnt_ftr(&crypt_ftr)) {
2930 goto error_shutting_down;
2931 }
Ken Sumrall160b4d62013-04-22 12:15:39 -07002932
Paul Lawrence87999172014-02-20 12:21:31 -08002933 if (!strcmp(key_loc, KEY_IN_FOOTER)) {
2934 crypt_ftr.fs_size = nr_sec
2935 - (CRYPT_FOOTER_OFFSET / CRYPT_SECTOR_SIZE);
2936 } else {
2937 crypt_ftr.fs_size = nr_sec;
2938 }
Paul Lawrence6bfed202014-07-28 12:47:22 -07002939 /* At this point, we are in an inconsistent state. Until we successfully
2940 complete encryption, a reboot will leave us broken. So mark the
2941 encryption failed in case that happens.
2942 On successfully completing encryption, remove this flag */
2943 crypt_ftr.flags |= CRYPT_INCONSISTENT_STATE;
Paul Lawrence87999172014-02-20 12:21:31 -08002944 crypt_ftr.crypt_type = crypt_type;
2945 strcpy((char *)crypt_ftr.crypto_type_name, "aes-cbc-essiv:sha256");
Ken Sumrall8ddbe402011-01-17 15:26:29 -08002946
Paul Lawrence87999172014-02-20 12:21:31 -08002947 /* Make an encrypted master key */
2948 if (create_encrypted_random_key(passwd, crypt_ftr.master_key, crypt_ftr.salt, &crypt_ftr)) {
2949 SLOGE("Cannot create encrypted master key\n");
2950 goto error_shutting_down;
2951 }
Ken Sumrall8ddbe402011-01-17 15:26:29 -08002952
Paul Lawrence87999172014-02-20 12:21:31 -08002953 /* Write the key to the end of the partition */
2954 put_crypt_ftr_and_key(&crypt_ftr);
Ken Sumrall8ddbe402011-01-17 15:26:29 -08002955
Paul Lawrence87999172014-02-20 12:21:31 -08002956 /* If any persistent data has been remembered, save it.
2957 * If none, create a valid empty table and save that.
2958 */
2959 if (!persist_data) {
2960 pdata = malloc(CRYPT_PERSIST_DATA_SIZE);
2961 if (pdata) {
2962 init_empty_persist_data(pdata, CRYPT_PERSIST_DATA_SIZE);
2963 persist_data = pdata;
2964 }
2965 }
2966 if (persist_data) {
2967 save_persistent_data();
2968 }
Ken Sumrall160b4d62013-04-22 12:15:39 -07002969 }
2970
Paul Lawrenced0c7b172014-08-08 14:28:10 -07002971 decrypt_master_key(passwd, decrypted_master_key, &crypt_ftr, 0, 0);
Ken Sumrall29d8da82011-05-18 17:20:07 -07002972 create_crypto_blk_dev(&crypt_ftr, decrypted_master_key, real_blkdev, crypto_blkdev,
2973 "userdata");
2974
Paul Lawrence87999172014-02-20 12:21:31 -08002975 /* If we are continuing, check checksums match */
2976 rc = 0;
2977 if (previously_encrypted_upto) {
2978 __le8 hash_first_block[SHA256_DIGEST_LENGTH];
2979 rc = cryptfs_SHA256_fileblock(crypto_blkdev, hash_first_block);
Ken Sumrall128626f2011-06-28 18:45:14 -07002980
Paul Lawrence87999172014-02-20 12:21:31 -08002981 if (!rc && memcmp(hash_first_block, crypt_ftr.hash_first_block,
2982 sizeof(hash_first_block)) != 0) {
2983 SLOGE("Checksums do not match - trigger wipe");
2984 rc = -1;
Ken Sumrall29d8da82011-05-18 17:20:07 -07002985 }
2986 }
Ken Sumrall8ddbe402011-01-17 15:26:29 -08002987
Paul Lawrence87999172014-02-20 12:21:31 -08002988 if (!rc) {
2989 rc = cryptfs_enable_all_volumes(&crypt_ftr, how,
2990 crypto_blkdev, real_blkdev,
2991 previously_encrypted_upto);
2992 }
2993
2994 /* Calculate checksum if we are not finished */
Paul Lawrence73d7a022014-06-09 14:10:09 -07002995 if (!rc && crypt_ftr.encrypted_upto != crypt_ftr.fs_size) {
Paul Lawrence87999172014-02-20 12:21:31 -08002996 rc = cryptfs_SHA256_fileblock(crypto_blkdev,
2997 crypt_ftr.hash_first_block);
Paul Lawrence73d7a022014-06-09 14:10:09 -07002998 if (rc) {
Paul Lawrence87999172014-02-20 12:21:31 -08002999 SLOGE("Error calculating checksum for continuing encryption");
3000 rc = -1;
Ken Sumrall29d8da82011-05-18 17:20:07 -07003001 }
Ken Sumrall8ddbe402011-01-17 15:26:29 -08003002 }
3003
3004 /* Undo the dm-crypt mapping whether we succeed or not */
Ken Sumrall29d8da82011-05-18 17:20:07 -07003005 delete_crypto_blk_dev("userdata");
Ken Sumrall29d8da82011-05-18 17:20:07 -07003006
3007 free(vol_list);
Ken Sumrall8ddbe402011-01-17 15:26:29 -08003008
3009 if (! rc) {
3010 /* Success */
Paul Lawrence6bfed202014-07-28 12:47:22 -07003011 crypt_ftr.flags &= ~CRYPT_INCONSISTENT_STATE;
Ken Sumrall7f7dbaa2011-02-01 15:46:41 -08003012
Paul Lawrence6bfed202014-07-28 12:47:22 -07003013 if (crypt_ftr.encrypted_upto != crypt_ftr.fs_size) {
Paul Lawrence87999172014-02-20 12:21:31 -08003014 SLOGD("Encrypted up to sector %lld - will continue after reboot",
3015 crypt_ftr.encrypted_upto);
Paul Lawrence6bfed202014-07-28 12:47:22 -07003016 crypt_ftr.flags |= CRYPT_ENCRYPTION_IN_PROGRESS;
Paul Lawrence87999172014-02-20 12:21:31 -08003017 }
Paul Lawrence73d7a022014-06-09 14:10:09 -07003018
Paul Lawrence6bfed202014-07-28 12:47:22 -07003019 put_crypt_ftr_and_key(&crypt_ftr);
Ken Sumralld33d4172011-02-01 00:49:13 -08003020
Paul Lawrence73d7a022014-06-09 14:10:09 -07003021 if (crypt_ftr.encrypted_upto == crypt_ftr.fs_size) {
Paul Lawrenceb6672e12014-08-15 07:37:28 -07003022 char value[PROPERTY_VALUE_MAX];
3023 property_get("ro.crypto.state", value, "");
3024 if (!strcmp(value, "")) {
3025 /* default encryption - continue first boot sequence */
3026 property_set("ro.crypto.state", "encrypted");
3027 release_wake_lock(lockid);
3028 cryptfs_check_passwd(DEFAULT_PASSWORD);
3029 cryptfs_restart_internal(1);
3030 return 0;
3031 } else {
3032 sleep(2); /* Give the UI a chance to show 100% progress */
Paul Lawrence87999172014-02-20 12:21:31 -08003033 cryptfs_reboot(reboot);
Paul Lawrenceb6672e12014-08-15 07:37:28 -07003034 }
Paul Lawrence87999172014-02-20 12:21:31 -08003035 } else {
Paul Lawrenceb6672e12014-08-15 07:37:28 -07003036 sleep(2); /* Partially encrypted, ensure writes flushed to ssd */
Paul Lawrence87999172014-02-20 12:21:31 -08003037 cryptfs_reboot(shutdown);
3038 }
Ken Sumrall3ed82362011-01-28 23:31:16 -08003039 } else {
Mike Lockwoodee6d8c42012-02-15 13:43:28 -08003040 char value[PROPERTY_VALUE_MAX];
3041
Ken Sumrall319369a2012-06-27 16:30:18 -07003042 property_get("ro.vold.wipe_on_crypt_fail", value, "0");
Mike Lockwoodee6d8c42012-02-15 13:43:28 -08003043 if (!strcmp(value, "1")) {
3044 /* wipe data if encryption failed */
3045 SLOGE("encryption failed - rebooting into recovery to wipe data\n");
3046 mkdir("/cache/recovery", 0700);
Nick Kralevich4684e582012-06-26 15:07:03 -07003047 int fd = open("/cache/recovery/command", O_RDWR|O_CREAT|O_TRUNC, 0600);
Mike Lockwoodee6d8c42012-02-15 13:43:28 -08003048 if (fd >= 0) {
3049 write(fd, "--wipe_data", strlen("--wipe_data") + 1);
3050 close(fd);
3051 } else {
3052 SLOGE("could not open /cache/recovery/command\n");
3053 }
Paul Lawrence87999172014-02-20 12:21:31 -08003054 cryptfs_reboot(recovery);
Mike Lockwoodee6d8c42012-02-15 13:43:28 -08003055 } else {
3056 /* set property to trigger dialog */
3057 property_set("vold.encrypt_progress", "error_partially_encrypted");
3058 release_wake_lock(lockid);
3059 }
Ken Sumrall3ed82362011-01-28 23:31:16 -08003060 return -1;
Ken Sumrall8ddbe402011-01-17 15:26:29 -08003061 }
3062
Ken Sumrall3ed82362011-01-28 23:31:16 -08003063 /* hrm, the encrypt step claims success, but the reboot failed.
3064 * This should not happen.
3065 * Set the property and return. Hope the framework can deal with it.
3066 */
3067 property_set("vold.encrypt_progress", "error_reboot_failed");
Ken Sumrall5d4c68e2011-01-30 19:06:03 -08003068 release_wake_lock(lockid);
Ken Sumrall8ddbe402011-01-17 15:26:29 -08003069 return rc;
Ken Sumrall3ed82362011-01-28 23:31:16 -08003070
3071error_unencrypted:
Ken Sumrall29d8da82011-05-18 17:20:07 -07003072 free(vol_list);
Ken Sumrall3ed82362011-01-28 23:31:16 -08003073 property_set("vold.encrypt_progress", "error_not_encrypted");
Ken Sumrall5d4c68e2011-01-30 19:06:03 -08003074 if (lockid[0]) {
3075 release_wake_lock(lockid);
3076 }
Ken Sumrall3ed82362011-01-28 23:31:16 -08003077 return -1;
3078
3079error_shutting_down:
3080 /* we failed, and have not encrypted anthing, so the users's data is still intact,
3081 * but the framework is stopped and not restarted to show the error, so it's up to
3082 * vold to restart the system.
3083 */
3084 SLOGE("Error enabling encryption after framework is shutdown, no data changed, restarting system");
Paul Lawrence87999172014-02-20 12:21:31 -08003085 cryptfs_reboot(reboot);
Ken Sumrall3ed82362011-01-28 23:31:16 -08003086
3087 /* shouldn't get here */
3088 property_set("vold.encrypt_progress", "error_shutting_down");
Ken Sumrall29d8da82011-05-18 17:20:07 -07003089 free(vol_list);
Ken Sumrall5d4c68e2011-01-30 19:06:03 -08003090 if (lockid[0]) {
3091 release_wake_lock(lockid);
3092 }
Ken Sumrall3ed82362011-01-28 23:31:16 -08003093 return -1;
Ken Sumrall8ddbe402011-01-17 15:26:29 -08003094}
3095
Paul Lawrence45f10532014-04-04 18:11:56 +00003096int cryptfs_enable(char *howarg, int type, char *passwd, int allow_reboot)
Paul Lawrence13486032014-02-03 13:28:11 -08003097{
Paul Lawrence45f10532014-04-04 18:11:56 +00003098 return cryptfs_enable_internal(howarg, type, passwd, allow_reboot);
Paul Lawrence13486032014-02-03 13:28:11 -08003099}
3100
3101int cryptfs_enable_default(char *howarg, int allow_reboot)
3102{
3103 return cryptfs_enable_internal(howarg, CRYPT_TYPE_DEFAULT,
3104 DEFAULT_PASSWORD, allow_reboot);
3105}
3106
3107int cryptfs_changepw(int crypt_type, const char *newpw)
Ken Sumrall8ddbe402011-01-17 15:26:29 -08003108{
3109 struct crypt_mnt_ftr crypt_ftr;
Ken Sumrall160b4d62013-04-22 12:15:39 -07003110 unsigned char decrypted_master_key[KEY_LEN_BYTES];
Ken Sumrall8ddbe402011-01-17 15:26:29 -08003111
3112 /* This is only allowed after we've successfully decrypted the master key */
Paul Lawrencef4faa572014-01-29 13:31:03 -08003113 if (!master_key_saved) {
Ken Sumrall0cc16632011-01-18 20:32:26 -08003114 SLOGE("Key not saved, aborting");
Ken Sumrall8ddbe402011-01-17 15:26:29 -08003115 return -1;
3116 }
3117
Paul Lawrencef4faa572014-01-29 13:31:03 -08003118 if (crypt_type < 0 || crypt_type > CRYPT_TYPE_MAX_TYPE) {
3119 SLOGE("Invalid crypt_type %d", crypt_type);
3120 return -1;
3121 }
3122
Ken Sumrall8ddbe402011-01-17 15:26:29 -08003123 /* get key */
Ken Sumrall160b4d62013-04-22 12:15:39 -07003124 if (get_crypt_ftr_and_key(&crypt_ftr)) {
Paul Lawrencef4faa572014-01-29 13:31:03 -08003125 SLOGE("Error getting crypt footer and key");
3126 return -1;
Ken Sumrall8ddbe402011-01-17 15:26:29 -08003127 }
3128
Paul Lawrencef4faa572014-01-29 13:31:03 -08003129 crypt_ftr.crypt_type = crypt_type;
3130
3131 encrypt_master_key(crypt_type == CRYPT_TYPE_DEFAULT ? DEFAULT_PASSWORD
3132 : newpw,
3133 crypt_ftr.salt,
3134 saved_master_key,
3135 crypt_ftr.master_key,
3136 &crypt_ftr);
Ken Sumrall8ddbe402011-01-17 15:26:29 -08003137
Jason parks70a4b3f2011-01-28 10:10:47 -06003138 /* save the key */
Ken Sumrall160b4d62013-04-22 12:15:39 -07003139 put_crypt_ftr_and_key(&crypt_ftr);
Ken Sumrall8f869aa2010-12-03 03:47:09 -08003140
3141 return 0;
3142}
Ken Sumrall160b4d62013-04-22 12:15:39 -07003143
3144static int persist_get_key(char *fieldname, char *value)
3145{
3146 unsigned int i;
3147
3148 if (persist_data == NULL) {
3149 return -1;
3150 }
3151 for (i = 0; i < persist_data->persist_valid_entries; i++) {
3152 if (!strncmp(persist_data->persist_entry[i].key, fieldname, PROPERTY_KEY_MAX)) {
3153 /* We found it! */
3154 strlcpy(value, persist_data->persist_entry[i].val, PROPERTY_VALUE_MAX);
3155 return 0;
3156 }
3157 }
3158
3159 return -1;
3160}
3161
3162static int persist_set_key(char *fieldname, char *value, int encrypted)
3163{
3164 unsigned int i;
3165 unsigned int num;
3166 struct crypt_mnt_ftr crypt_ftr;
3167 unsigned int max_persistent_entries;
3168 unsigned int dsize;
3169
3170 if (persist_data == NULL) {
3171 return -1;
3172 }
3173
3174 /* If encrypted, use the values from the crypt_ftr, otherwise
3175 * use the values for the current spec.
3176 */
3177 if (encrypted) {
3178 if(get_crypt_ftr_and_key(&crypt_ftr)) {
3179 return -1;
3180 }
3181 dsize = crypt_ftr.persist_data_size;
3182 } else {
3183 dsize = CRYPT_PERSIST_DATA_SIZE;
3184 }
3185 max_persistent_entries = (dsize - sizeof(struct crypt_persist_data)) /
3186 sizeof(struct crypt_persist_entry);
3187
3188 num = persist_data->persist_valid_entries;
3189
3190 for (i = 0; i < num; i++) {
3191 if (!strncmp(persist_data->persist_entry[i].key, fieldname, PROPERTY_KEY_MAX)) {
3192 /* We found an existing entry, update it! */
3193 memset(persist_data->persist_entry[i].val, 0, PROPERTY_VALUE_MAX);
3194 strlcpy(persist_data->persist_entry[i].val, value, PROPERTY_VALUE_MAX);
3195 return 0;
3196 }
3197 }
3198
3199 /* We didn't find it, add it to the end, if there is room */
3200 if (persist_data->persist_valid_entries < max_persistent_entries) {
3201 memset(&persist_data->persist_entry[num], 0, sizeof(struct crypt_persist_entry));
3202 strlcpy(persist_data->persist_entry[num].key, fieldname, PROPERTY_KEY_MAX);
3203 strlcpy(persist_data->persist_entry[num].val, value, PROPERTY_VALUE_MAX);
3204 persist_data->persist_valid_entries++;
3205 return 0;
3206 }
3207
3208 return -1;
3209}
3210
3211/* Return the value of the specified field. */
3212int cryptfs_getfield(char *fieldname, char *value, int len)
3213{
3214 char temp_value[PROPERTY_VALUE_MAX];
3215 char real_blkdev[MAXPATHLEN];
3216 /* 0 is success, 1 is not encrypted,
3217 * -1 is value not set, -2 is any other error
3218 */
3219 int rc = -2;
3220
3221 if (persist_data == NULL) {
3222 load_persistent_data();
3223 if (persist_data == NULL) {
3224 SLOGE("Getfield error, cannot load persistent data");
3225 goto out;
3226 }
3227 }
3228
3229 if (!persist_get_key(fieldname, temp_value)) {
3230 /* We found it, copy it to the caller's buffer and return */
3231 strlcpy(value, temp_value, len);
3232 rc = 0;
3233 } else {
3234 /* Sadness, it's not there. Return the error */
3235 rc = -1;
3236 }
3237
3238out:
3239 return rc;
3240}
3241
3242/* Set the value of the specified field. */
3243int cryptfs_setfield(char *fieldname, char *value)
3244{
3245 struct crypt_persist_data stored_pdata;
3246 struct crypt_persist_data *pdata_p;
3247 struct crypt_mnt_ftr crypt_ftr;
3248 char encrypted_state[PROPERTY_VALUE_MAX];
3249 /* 0 is success, -1 is an error */
3250 int rc = -1;
3251 int encrypted = 0;
3252
3253 if (persist_data == NULL) {
3254 load_persistent_data();
3255 if (persist_data == NULL) {
3256 SLOGE("Setfield error, cannot load persistent data");
3257 goto out;
3258 }
3259 }
3260
3261 property_get("ro.crypto.state", encrypted_state, "");
3262 if (!strcmp(encrypted_state, "encrypted") ) {
3263 encrypted = 1;
3264 }
3265
3266 if (persist_set_key(fieldname, value, encrypted)) {
3267 goto out;
3268 }
3269
3270 /* If we are running encrypted, save the persistent data now */
3271 if (encrypted) {
3272 if (save_persistent_data()) {
3273 SLOGE("Setfield error, cannot save persistent data");
3274 goto out;
3275 }
3276 }
3277
3278 rc = 0;
3279
3280out:
3281 return rc;
3282}
Paul Lawrencef4faa572014-01-29 13:31:03 -08003283
3284/* Checks userdata. Attempt to mount the volume if default-
3285 * encrypted.
3286 * On success trigger next init phase and return 0.
3287 * Currently do not handle failure - see TODO below.
3288 */
3289int cryptfs_mount_default_encrypted(void)
3290{
3291 char decrypt_state[PROPERTY_VALUE_MAX];
3292 property_get("vold.decrypt", decrypt_state, "0");
3293 if (!strcmp(decrypt_state, "0")) {
3294 SLOGE("Not encrypted - should not call here");
3295 } else {
3296 int crypt_type = cryptfs_get_password_type();
3297 if (crypt_type < 0 || crypt_type > CRYPT_TYPE_MAX_TYPE) {
3298 SLOGE("Bad crypt type - error");
3299 } else if (crypt_type != CRYPT_TYPE_DEFAULT) {
3300 SLOGD("Password is not default - "
3301 "starting min framework to prompt");
3302 property_set("vold.decrypt", "trigger_restart_min_framework");
3303 return 0;
3304 } else if (cryptfs_check_passwd(DEFAULT_PASSWORD) == 0) {
3305 SLOGD("Password is default - restarting filesystem");
3306 cryptfs_restart_internal(0);
3307 return 0;
3308 } else {
3309 SLOGE("Encrypted, default crypt type but can't decrypt");
3310 }
3311 }
3312
Paul Lawrence6bfed202014-07-28 12:47:22 -07003313 /** Corrupt. Allow us to boot into framework, which will detect bad
3314 crypto when it calls do_crypto_complete, then do a factory reset
Paul Lawrencef4faa572014-01-29 13:31:03 -08003315 */
Paul Lawrence6bfed202014-07-28 12:47:22 -07003316 property_set("vold.decrypt", "trigger_restart_min_framework");
Paul Lawrencef4faa572014-01-29 13:31:03 -08003317 return 0;
3318}
3319
3320/* Returns type of the password, default, pattern, pin or password.
3321 */
3322int cryptfs_get_password_type(void)
3323{
3324 struct crypt_mnt_ftr crypt_ftr;
3325
3326 if (get_crypt_ftr_and_key(&crypt_ftr)) {
3327 SLOGE("Error getting crypt footer and key\n");
3328 return -1;
3329 }
3330
Paul Lawrence6bfed202014-07-28 12:47:22 -07003331 if (crypt_ftr.flags & CRYPT_INCONSISTENT_STATE) {
3332 return -1;
3333 }
3334
Paul Lawrencef4faa572014-01-29 13:31:03 -08003335 return crypt_ftr.crypt_type;
3336}
Paul Lawrence684dbdf2014-02-07 12:07:22 -08003337
Paul Lawrence399317e2014-03-10 13:20:50 -07003338char* cryptfs_get_password()
Paul Lawrence684dbdf2014-02-07 12:07:22 -08003339{
Paul Lawrence399317e2014-03-10 13:20:50 -07003340 struct timespec now;
3341 clock_gettime(CLOCK_MONOTONIC, &now);
3342 if (now.tv_sec < password_expiry_time) {
3343 return password;
3344 } else {
3345 cryptfs_clear_password();
3346 return 0;
3347 }
3348}
3349
3350void cryptfs_clear_password()
3351{
3352 if (password) {
3353 size_t len = strlen(password);
3354 memset(password, 0, len);
3355 free(password);
3356 password = 0;
3357 password_expiry_time = 0;
3358 }
Paul Lawrence684dbdf2014-02-07 12:07:22 -08003359}