blob: e695fab96f34caf69083f6a97fdcc07b0f802802 [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>
26#include <fcntl.h>
27#include <unistd.h>
28#include <stdio.h>
29#include <sys/ioctl.h>
30#include <linux/dm-ioctl.h>
31#include <libgen.h>
32#include <stdlib.h>
33#include <sys/param.h>
34#include <string.h>
35#include <sys/mount.h>
36#include <openssl/evp.h>
Ken Sumrall8ddbe402011-01-17 15:26:29 -080037#include <openssl/sha.h>
Ken Sumrall8f869aa2010-12-03 03:47:09 -080038#include <errno.h>
Ken Sumrall3ed82362011-01-28 23:31:16 -080039#include <ext4.h>
Ken Sumrall29d8da82011-05-18 17:20:07 -070040#include <linux/kdev_t.h>
Ken Sumralle5032c42012-04-01 23:58:44 -070041#include <fs_mgr.h>
Ken Sumrall8f869aa2010-12-03 03:47:09 -080042#include "cryptfs.h"
43#define LOG_TAG "Cryptfs"
44#include "cutils/log.h"
45#include "cutils/properties.h"
Ken Sumralladfba362013-06-04 16:37:52 -070046#include "cutils/android_reboot.h"
Ken Sumrall5d4c68e2011-01-30 19:06:03 -080047#include "hardware_legacy/power.h"
Ken Sumralle550f782013-08-20 13:48:23 -070048#include <logwrap/logwrap.h>
Ken Sumrall29d8da82011-05-18 17:20:07 -070049#include "VolumeManager.h"
Ken Sumrall9caab762013-06-11 19:10:20 -070050#include "VoldUtil.h"
Kenny Rootc4c70f12013-06-14 12:11:38 -070051#include "crypto_scrypt.h"
Ken Sumrall8f869aa2010-12-03 03:47:09 -080052
53#define DM_CRYPT_BUF_SIZE 4096
54
Jason parks70a4b3f2011-01-28 10:10:47 -060055#define HASH_COUNT 2000
56#define KEY_LEN_BYTES 16
57#define IV_LEN_BYTES 16
58
Ken Sumrall29d8da82011-05-18 17:20:07 -070059#define KEY_IN_FOOTER "footer"
60
61#define EXT4_FS 1
62#define FAT_FS 2
63
Ken Sumralle919efe2012-09-29 17:07:41 -070064#define TABLE_LOAD_RETRIES 10
65
Ken Sumrall8f869aa2010-12-03 03:47:09 -080066char *me = "cryptfs";
67
Jason parks70a4b3f2011-01-28 10:10:47 -060068static unsigned char saved_master_key[KEY_LEN_BYTES];
Ken Sumrall3ad90722011-10-04 20:38:29 -070069static char *saved_mount_point;
Jason parks70a4b3f2011-01-28 10:10:47 -060070static int master_key_saved = 0;
Ken Sumrall160b4d62013-04-22 12:15:39 -070071static struct crypt_persist_data *persist_data = NULL;
Ken Sumrall56ad03c2013-02-13 13:00:19 -080072
73extern struct fstab *fstab;
Ken Sumrall8ddbe402011-01-17 15:26:29 -080074
Ken Sumralladfba362013-06-04 16:37:52 -070075static void cryptfs_reboot(int recovery)
76{
77 if (recovery) {
78 property_set(ANDROID_RB_PROPERTY, "reboot,recovery");
79 } else {
80 property_set(ANDROID_RB_PROPERTY, "reboot");
81 }
82 sleep(20);
83
84 /* Shouldn't get here, reboot should happen before sleep times out */
85 return;
86}
87
Ken Sumrall8f869aa2010-12-03 03:47:09 -080088static void ioctl_init(struct dm_ioctl *io, size_t dataSize, const char *name, unsigned flags)
89{
90 memset(io, 0, dataSize);
91 io->data_size = dataSize;
92 io->data_start = sizeof(struct dm_ioctl);
93 io->version[0] = 4;
94 io->version[1] = 0;
95 io->version[2] = 0;
96 io->flags = flags;
97 if (name) {
98 strncpy(io->name, name, sizeof(io->name));
99 }
100}
101
Kenny Rootc4c70f12013-06-14 12:11:38 -0700102/**
103 * Gets the default device scrypt parameters for key derivation time tuning.
104 * The parameters should lead to about one second derivation time for the
105 * given device.
106 */
107static void get_device_scrypt_params(struct crypt_mnt_ftr *ftr) {
108 const int default_params[] = SCRYPT_DEFAULTS;
109 int params[] = SCRYPT_DEFAULTS;
110 char paramstr[PROPERTY_VALUE_MAX];
111 char *token;
112 char *saveptr;
113 int i;
114
115 property_get(SCRYPT_PROP, paramstr, "");
116 if (paramstr[0] != '\0') {
117 /*
118 * The token we're looking for should be three integers separated by
119 * colons (e.g., "12:8:1"). Scan the property to make sure it matches.
120 */
Kenny Root2947e342013-08-14 15:54:49 -0700121 for (i = 0, token = strtok_r(paramstr, ":", &saveptr);
122 token != NULL && i < 3;
Kenny Rootc4c70f12013-06-14 12:11:38 -0700123 i++, token = strtok_r(NULL, ":", &saveptr)) {
124 char *endptr;
125 params[i] = strtol(token, &endptr, 10);
126
127 /*
128 * Check that there was a valid number and it's 8-bit. If not,
129 * break out and the end check will take the default values.
130 */
131 if ((*token == '\0') || (*endptr != '\0') || params[i] < 0 || params[i] > 255) {
132 break;
133 }
134 }
135
136 /*
137 * If there were not enough tokens or a token was malformed (not an
138 * integer), it will end up here and the default parameters can be
139 * taken.
140 */
141 if ((i != 3) || (token != NULL)) {
142 SLOGW("bad scrypt parameters '%s' should be like '12:8:1'; using defaults", paramstr);
143 memcpy(params, default_params, sizeof(params));
144 }
145 }
146
147 ftr->N_factor = params[0];
148 ftr->r_factor = params[1];
149 ftr->p_factor = params[2];
150}
151
Ken Sumrall3ed82362011-01-28 23:31:16 -0800152static unsigned int get_fs_size(char *dev)
153{
154 int fd, block_size;
155 struct ext4_super_block sb;
156 off64_t len;
157
158 if ((fd = open(dev, O_RDONLY)) < 0) {
159 SLOGE("Cannot open device to get filesystem size ");
160 return 0;
161 }
162
163 if (lseek64(fd, 1024, SEEK_SET) < 0) {
164 SLOGE("Cannot seek to superblock");
165 return 0;
166 }
167
168 if (read(fd, &sb, sizeof(sb)) != sizeof(sb)) {
169 SLOGE("Cannot read superblock");
170 return 0;
171 }
172
173 close(fd);
174
175 block_size = 1024 << sb.s_log_block_size;
176 /* compute length in bytes */
177 len = ( ((off64_t)sb.s_blocks_count_hi << 32) + sb.s_blocks_count_lo) * block_size;
178
179 /* return length in sectors */
180 return (unsigned int) (len / 512);
181}
182
Ken Sumrall160b4d62013-04-22 12:15:39 -0700183static int get_crypt_ftr_info(char **metadata_fname, off64_t *off)
184{
185 static int cached_data = 0;
186 static off64_t cached_off = 0;
187 static char cached_metadata_fname[PROPERTY_VALUE_MAX] = "";
188 int fd;
189 char key_loc[PROPERTY_VALUE_MAX];
190 char real_blkdev[PROPERTY_VALUE_MAX];
191 unsigned int nr_sec;
192 int rc = -1;
193
194 if (!cached_data) {
195 fs_mgr_get_crypt_info(fstab, key_loc, real_blkdev, sizeof(key_loc));
196
197 if (!strcmp(key_loc, KEY_IN_FOOTER)) {
198 if ( (fd = open(real_blkdev, O_RDWR)) < 0) {
199 SLOGE("Cannot open real block device %s\n", real_blkdev);
200 return -1;
201 }
202
203 if ((nr_sec = get_blkdev_size(fd))) {
204 /* If it's an encrypted Android partition, the last 16 Kbytes contain the
205 * encryption info footer and key, and plenty of bytes to spare for future
206 * growth.
207 */
208 strlcpy(cached_metadata_fname, real_blkdev, sizeof(cached_metadata_fname));
209 cached_off = ((off64_t)nr_sec * 512) - CRYPT_FOOTER_OFFSET;
210 cached_data = 1;
211 } else {
212 SLOGE("Cannot get size of block device %s\n", real_blkdev);
213 }
214 close(fd);
215 } else {
216 strlcpy(cached_metadata_fname, key_loc, sizeof(cached_metadata_fname));
217 cached_off = 0;
218 cached_data = 1;
219 }
220 }
221
222 if (cached_data) {
223 if (metadata_fname) {
224 *metadata_fname = cached_metadata_fname;
225 }
226 if (off) {
227 *off = cached_off;
228 }
229 rc = 0;
230 }
231
232 return rc;
233}
234
Ken Sumralle8744072011-01-18 22:01:55 -0800235/* key or salt can be NULL, in which case just skip writing that value. Useful to
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800236 * update the failed mount count but not change the key.
237 */
Ken Sumrall160b4d62013-04-22 12:15:39 -0700238static int put_crypt_ftr_and_key(struct crypt_mnt_ftr *crypt_ftr)
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800239{
240 int fd;
241 unsigned int nr_sec, cnt;
Ken Sumrall160b4d62013-04-22 12:15:39 -0700242 /* starting_off is set to the SEEK_SET offset
243 * where the crypto structure starts
244 */
245 off64_t starting_off;
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800246 int rc = -1;
Ken Sumrall160b4d62013-04-22 12:15:39 -0700247 char *fname = NULL;
Ken Sumrall3be890f2011-09-14 16:53:46 -0700248 struct stat statbuf;
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800249
Ken Sumrall160b4d62013-04-22 12:15:39 -0700250 if (get_crypt_ftr_info(&fname, &starting_off)) {
251 SLOGE("Unable to get crypt_ftr_info\n");
252 return -1;
253 }
254 if (fname[0] != '/') {
Ken Sumralle5032c42012-04-01 23:58:44 -0700255 SLOGE("Unexpected value for crypto key location\n");
Ken Sumrall160b4d62013-04-22 12:15:39 -0700256 return -1;
257 }
Ken Sumralle550f782013-08-20 13:48:23 -0700258 if ( (fd = open(fname, O_RDWR | O_CREAT, 0600)) < 0) {
259 SLOGE("Cannot open footer file %s for put\n", fname);
Ken Sumrall160b4d62013-04-22 12:15:39 -0700260 return -1;
261 }
262
263 /* Seek to the start of the crypt footer */
264 if (lseek64(fd, starting_off, SEEK_SET) == -1) {
265 SLOGE("Cannot seek to real block device footer\n");
266 goto errout;
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800267 }
268
269 if ((cnt = write(fd, crypt_ftr, sizeof(struct crypt_mnt_ftr))) != sizeof(struct crypt_mnt_ftr)) {
270 SLOGE("Cannot write real block device footer\n");
271 goto errout;
272 }
273
Ken Sumrall3be890f2011-09-14 16:53:46 -0700274 fstat(fd, &statbuf);
275 /* If the keys are kept on a raw block device, do not try to truncate it. */
Ken Sumralle550f782013-08-20 13:48:23 -0700276 if (S_ISREG(statbuf.st_mode)) {
Ken Sumrall29d8da82011-05-18 17:20:07 -0700277 if (ftruncate(fd, 0x4000)) {
Ken Sumrall3be890f2011-09-14 16:53:46 -0700278 SLOGE("Cannot set footer file size\n", fname);
Ken Sumralle8744072011-01-18 22:01:55 -0800279 goto errout;
280 }
281 }
282
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800283 /* Success! */
284 rc = 0;
285
286errout:
287 close(fd);
288 return rc;
289
290}
291
Ken Sumrall160b4d62013-04-22 12:15:39 -0700292static inline int unix_read(int fd, void* buff, int len)
293{
294 return TEMP_FAILURE_RETRY(read(fd, buff, len));
295}
296
297static inline int unix_write(int fd, const void* buff, int len)
298{
299 return TEMP_FAILURE_RETRY(write(fd, buff, len));
300}
301
302static void init_empty_persist_data(struct crypt_persist_data *pdata, int len)
303{
304 memset(pdata, 0, len);
305 pdata->persist_magic = PERSIST_DATA_MAGIC;
306 pdata->persist_valid_entries = 0;
307}
308
309/* A routine to update the passed in crypt_ftr to the lastest version.
310 * fd is open read/write on the device that holds the crypto footer and persistent
311 * data, crypt_ftr is a pointer to the struct to be updated, and offset is the
312 * absolute offset to the start of the crypt_mnt_ftr on the passed in fd.
313 */
314static void upgrade_crypt_ftr(int fd, struct crypt_mnt_ftr *crypt_ftr, off64_t offset)
315{
Kenny Root7434b312013-06-14 11:29:53 -0700316 int orig_major = crypt_ftr->major_version;
317 int orig_minor = crypt_ftr->minor_version;
Ken Sumrall160b4d62013-04-22 12:15:39 -0700318
Kenny Root7434b312013-06-14 11:29:53 -0700319 if ((crypt_ftr->major_version == 1) && (crypt_ftr->minor_version == 0)) {
320 struct crypt_persist_data *pdata;
321 off64_t pdata_offset = offset + CRYPT_FOOTER_TO_PERSIST_OFFSET;
Ken Sumrall160b4d62013-04-22 12:15:39 -0700322
Kenny Rootc4c70f12013-06-14 12:11:38 -0700323 SLOGW("upgrading crypto footer to 1.1");
324
Kenny Root7434b312013-06-14 11:29:53 -0700325 pdata = malloc(CRYPT_PERSIST_DATA_SIZE);
326 if (pdata == NULL) {
327 SLOGE("Cannot allocate persisent data\n");
328 return;
329 }
330 memset(pdata, 0, CRYPT_PERSIST_DATA_SIZE);
331
332 /* Need to initialize the persistent data area */
333 if (lseek64(fd, pdata_offset, SEEK_SET) == -1) {
334 SLOGE("Cannot seek to persisent data offset\n");
335 return;
336 }
337 /* Write all zeros to the first copy, making it invalid */
338 unix_write(fd, pdata, CRYPT_PERSIST_DATA_SIZE);
339
340 /* Write a valid but empty structure to the second copy */
341 init_empty_persist_data(pdata, CRYPT_PERSIST_DATA_SIZE);
342 unix_write(fd, pdata, CRYPT_PERSIST_DATA_SIZE);
343
344 /* Update the footer */
345 crypt_ftr->persist_data_size = CRYPT_PERSIST_DATA_SIZE;
346 crypt_ftr->persist_data_offset[0] = pdata_offset;
347 crypt_ftr->persist_data_offset[1] = pdata_offset + CRYPT_PERSIST_DATA_SIZE;
348 crypt_ftr->minor_version = 1;
Ken Sumrall160b4d62013-04-22 12:15:39 -0700349 }
350
Kenny Rootc4c70f12013-06-14 12:11:38 -0700351 if ((crypt_ftr->major_version == 1) && (crypt_ftr->minor_version)) {
352 SLOGW("upgrading crypto footer to 1.2");
JP Abgrall7bdfa522013-11-15 13:42:56 -0800353 /* But keep the old kdf_type.
354 * It will get updated later to KDF_SCRYPT after the password has been verified.
355 */
Kenny Rootc4c70f12013-06-14 12:11:38 -0700356 crypt_ftr->kdf_type = KDF_PBKDF2;
357 get_device_scrypt_params(crypt_ftr);
358 crypt_ftr->minor_version = 2;
359 }
360
Kenny Root7434b312013-06-14 11:29:53 -0700361 if ((orig_major != crypt_ftr->major_version) || (orig_minor != crypt_ftr->minor_version)) {
362 if (lseek64(fd, offset, SEEK_SET) == -1) {
363 SLOGE("Cannot seek to crypt footer\n");
364 return;
365 }
366 unix_write(fd, crypt_ftr, sizeof(struct crypt_mnt_ftr));
Ken Sumrall160b4d62013-04-22 12:15:39 -0700367 }
Ken Sumrall160b4d62013-04-22 12:15:39 -0700368}
369
370
371static int get_crypt_ftr_and_key(struct crypt_mnt_ftr *crypt_ftr)
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800372{
373 int fd;
374 unsigned int nr_sec, cnt;
Ken Sumrall160b4d62013-04-22 12:15:39 -0700375 off64_t starting_off;
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800376 int rc = -1;
Ken Sumrall160b4d62013-04-22 12:15:39 -0700377 char *fname = NULL;
Ken Sumrall29d8da82011-05-18 17:20:07 -0700378 struct stat statbuf;
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800379
Ken Sumrall160b4d62013-04-22 12:15:39 -0700380 if (get_crypt_ftr_info(&fname, &starting_off)) {
381 SLOGE("Unable to get crypt_ftr_info\n");
382 return -1;
383 }
384 if (fname[0] != '/') {
Ken Sumralle5032c42012-04-01 23:58:44 -0700385 SLOGE("Unexpected value for crypto key location\n");
Ken Sumrall160b4d62013-04-22 12:15:39 -0700386 return -1;
387 }
388 if ( (fd = open(fname, O_RDWR)) < 0) {
Ken Sumralle550f782013-08-20 13:48:23 -0700389 SLOGE("Cannot open footer file %s for get\n", fname);
Ken Sumrall160b4d62013-04-22 12:15:39 -0700390 return -1;
391 }
392
393 /* Make sure it's 16 Kbytes in length */
394 fstat(fd, &statbuf);
395 if (S_ISREG(statbuf.st_mode) && (statbuf.st_size != 0x4000)) {
396 SLOGE("footer file %s is not the expected size!\n", fname);
397 goto errout;
398 }
399
400 /* Seek to the start of the crypt footer */
401 if (lseek64(fd, starting_off, SEEK_SET) == -1) {
402 SLOGE("Cannot seek to real block device footer\n");
403 goto errout;
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800404 }
405
406 if ( (cnt = read(fd, crypt_ftr, sizeof(struct crypt_mnt_ftr))) != sizeof(struct crypt_mnt_ftr)) {
407 SLOGE("Cannot read real block device footer\n");
408 goto errout;
409 }
410
411 if (crypt_ftr->magic != CRYPT_MNT_MAGIC) {
Ken Sumrall29d8da82011-05-18 17:20:07 -0700412 SLOGE("Bad magic for real block device %s\n", fname);
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800413 goto errout;
414 }
415
Kenny Rootc96a5f82013-06-14 12:08:28 -0700416 if (crypt_ftr->major_version != CURRENT_MAJOR_VERSION) {
417 SLOGE("Cannot understand major version %d real block device footer; expected %d\n",
418 crypt_ftr->major_version, CURRENT_MAJOR_VERSION);
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800419 goto errout;
420 }
421
Kenny Rootc96a5f82013-06-14 12:08:28 -0700422 if (crypt_ftr->minor_version > CURRENT_MINOR_VERSION) {
423 SLOGW("Warning: crypto footer minor version %d, expected <= %d, continuing...\n",
424 crypt_ftr->minor_version, CURRENT_MINOR_VERSION);
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800425 }
426
Ken Sumrall160b4d62013-04-22 12:15:39 -0700427 /* If this is a verion 1.0 crypt_ftr, make it a 1.1 crypt footer, and update the
428 * copy on disk before returning.
429 */
Kenny Rootc96a5f82013-06-14 12:08:28 -0700430 if (crypt_ftr->minor_version < CURRENT_MINOR_VERSION) {
Ken Sumrall160b4d62013-04-22 12:15:39 -0700431 upgrade_crypt_ftr(fd, crypt_ftr, starting_off);
Ken Sumralle8744072011-01-18 22:01:55 -0800432 }
433
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800434 /* Success! */
435 rc = 0;
436
437errout:
438 close(fd);
439 return rc;
440}
441
Ken Sumrall160b4d62013-04-22 12:15:39 -0700442static int validate_persistent_data_storage(struct crypt_mnt_ftr *crypt_ftr)
443{
444 if (crypt_ftr->persist_data_offset[0] + crypt_ftr->persist_data_size >
445 crypt_ftr->persist_data_offset[1]) {
446 SLOGE("Crypt_ftr persist data regions overlap");
447 return -1;
448 }
449
450 if (crypt_ftr->persist_data_offset[0] >= crypt_ftr->persist_data_offset[1]) {
451 SLOGE("Crypt_ftr persist data region 0 starts after region 1");
452 return -1;
453 }
454
455 if (((crypt_ftr->persist_data_offset[1] + crypt_ftr->persist_data_size) -
456 (crypt_ftr->persist_data_offset[0] - CRYPT_FOOTER_TO_PERSIST_OFFSET)) >
457 CRYPT_FOOTER_OFFSET) {
458 SLOGE("Persistent data extends past crypto footer");
459 return -1;
460 }
461
462 return 0;
463}
464
465static int load_persistent_data(void)
466{
467 struct crypt_mnt_ftr crypt_ftr;
468 struct crypt_persist_data *pdata = NULL;
469 char encrypted_state[PROPERTY_VALUE_MAX];
470 char *fname;
471 int found = 0;
472 int fd;
473 int ret;
474 int i;
475
476 if (persist_data) {
477 /* Nothing to do, we've already loaded or initialized it */
478 return 0;
479 }
480
481
482 /* If not encrypted, just allocate an empty table and initialize it */
483 property_get("ro.crypto.state", encrypted_state, "");
484 if (strcmp(encrypted_state, "encrypted") ) {
485 pdata = malloc(CRYPT_PERSIST_DATA_SIZE);
486 if (pdata) {
487 init_empty_persist_data(pdata, CRYPT_PERSIST_DATA_SIZE);
488 persist_data = pdata;
489 return 0;
490 }
491 return -1;
492 }
493
494 if(get_crypt_ftr_and_key(&crypt_ftr)) {
495 return -1;
496 }
497
498 if ((crypt_ftr.major_version != 1) || (crypt_ftr.minor_version != 1)) {
499 SLOGE("Crypt_ftr version doesn't support persistent data");
500 return -1;
501 }
502
503 if (get_crypt_ftr_info(&fname, NULL)) {
504 return -1;
505 }
506
507 ret = validate_persistent_data_storage(&crypt_ftr);
508 if (ret) {
509 return -1;
510 }
511
512 fd = open(fname, O_RDONLY);
513 if (fd < 0) {
514 SLOGE("Cannot open %s metadata file", fname);
515 return -1;
516 }
517
518 if (persist_data == NULL) {
519 pdata = malloc(crypt_ftr.persist_data_size);
520 if (pdata == NULL) {
521 SLOGE("Cannot allocate memory for persistent data");
522 goto err;
523 }
524 }
525
526 for (i = 0; i < 2; i++) {
527 if (lseek64(fd, crypt_ftr.persist_data_offset[i], SEEK_SET) < 0) {
528 SLOGE("Cannot seek to read persistent data on %s", fname);
529 goto err2;
530 }
531 if (unix_read(fd, pdata, crypt_ftr.persist_data_size) < 0){
532 SLOGE("Error reading persistent data on iteration %d", i);
533 goto err2;
534 }
535 if (pdata->persist_magic == PERSIST_DATA_MAGIC) {
536 found = 1;
537 break;
538 }
539 }
540
541 if (!found) {
542 SLOGI("Could not find valid persistent data, creating");
543 init_empty_persist_data(pdata, crypt_ftr.persist_data_size);
544 }
545
546 /* Success */
547 persist_data = pdata;
548 close(fd);
549 return 0;
550
551err2:
552 free(pdata);
553
554err:
555 close(fd);
556 return -1;
557}
558
559static int save_persistent_data(void)
560{
561 struct crypt_mnt_ftr crypt_ftr;
562 struct crypt_persist_data *pdata;
563 char *fname;
564 off64_t write_offset;
565 off64_t erase_offset;
566 int found = 0;
567 int fd;
568 int ret;
569
570 if (persist_data == NULL) {
571 SLOGE("No persistent data to save");
572 return -1;
573 }
574
575 if(get_crypt_ftr_and_key(&crypt_ftr)) {
576 return -1;
577 }
578
579 if ((crypt_ftr.major_version != 1) || (crypt_ftr.minor_version != 1)) {
580 SLOGE("Crypt_ftr version doesn't support persistent data");
581 return -1;
582 }
583
584 ret = validate_persistent_data_storage(&crypt_ftr);
585 if (ret) {
586 return -1;
587 }
588
589 if (get_crypt_ftr_info(&fname, NULL)) {
590 return -1;
591 }
592
593 fd = open(fname, O_RDWR);
594 if (fd < 0) {
595 SLOGE("Cannot open %s metadata file", fname);
596 return -1;
597 }
598
599 pdata = malloc(crypt_ftr.persist_data_size);
600 if (pdata == NULL) {
601 SLOGE("Cannot allocate persistant data");
602 goto err;
603 }
604
605 if (lseek64(fd, crypt_ftr.persist_data_offset[0], SEEK_SET) < 0) {
606 SLOGE("Cannot seek to read persistent data on %s", fname);
607 goto err2;
608 }
609
610 if (unix_read(fd, pdata, crypt_ftr.persist_data_size) < 0) {
611 SLOGE("Error reading persistent data before save");
612 goto err2;
613 }
614
615 if (pdata->persist_magic == PERSIST_DATA_MAGIC) {
616 /* The first copy is the curent valid copy, so write to
617 * the second copy and erase this one */
618 write_offset = crypt_ftr.persist_data_offset[1];
619 erase_offset = crypt_ftr.persist_data_offset[0];
620 } else {
621 /* The second copy must be the valid copy, so write to
622 * the first copy, and erase the second */
623 write_offset = crypt_ftr.persist_data_offset[0];
624 erase_offset = crypt_ftr.persist_data_offset[1];
625 }
626
627 /* Write the new copy first, if successful, then erase the old copy */
628 if (lseek(fd, write_offset, SEEK_SET) < 0) {
629 SLOGE("Cannot seek to write persistent data");
630 goto err2;
631 }
632 if (unix_write(fd, persist_data, crypt_ftr.persist_data_size) ==
633 (int) crypt_ftr.persist_data_size) {
634 if (lseek(fd, erase_offset, SEEK_SET) < 0) {
635 SLOGE("Cannot seek to erase previous persistent data");
636 goto err2;
637 }
638 fsync(fd);
639 memset(pdata, 0, crypt_ftr.persist_data_size);
640 if (unix_write(fd, pdata, crypt_ftr.persist_data_size) !=
641 (int) crypt_ftr.persist_data_size) {
642 SLOGE("Cannot write to erase previous persistent data");
643 goto err2;
644 }
645 fsync(fd);
646 } else {
647 SLOGE("Cannot write to save persistent data");
648 goto err2;
649 }
650
651 /* Success */
652 free(pdata);
653 close(fd);
654 return 0;
655
656err2:
657 free(pdata);
658err:
659 close(fd);
660 return -1;
661}
662
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800663/* Convert a binary key of specified length into an ascii hex string equivalent,
664 * without the leading 0x and with null termination
665 */
666void convert_key_to_hex_ascii(unsigned char *master_key, unsigned int keysize,
667 char *master_key_ascii)
668{
669 unsigned int i, a;
670 unsigned char nibble;
671
672 for (i=0, a=0; i<keysize; i++, a+=2) {
673 /* For each byte, write out two ascii hex digits */
674 nibble = (master_key[i] >> 4) & 0xf;
675 master_key_ascii[a] = nibble + (nibble > 9 ? 0x37 : 0x30);
676
677 nibble = master_key[i] & 0xf;
678 master_key_ascii[a+1] = nibble + (nibble > 9 ? 0x37 : 0x30);
679 }
680
681 /* Add the null termination */
682 master_key_ascii[a] = '\0';
683
684}
685
Ken Sumralldb5e0262013-02-05 17:39:48 -0800686static int load_crypto_mapping_table(struct crypt_mnt_ftr *crypt_ftr, unsigned char *master_key,
687 char *real_blk_name, const char *name, int fd,
688 char *extra_params)
689{
690 char buffer[DM_CRYPT_BUF_SIZE];
691 struct dm_ioctl *io;
692 struct dm_target_spec *tgt;
693 char *crypt_params;
694 char master_key_ascii[129]; /* Large enough to hold 512 bit key and null */
695 int i;
696
697 io = (struct dm_ioctl *) buffer;
698
699 /* Load the mapping table for this device */
700 tgt = (struct dm_target_spec *) &buffer[sizeof(struct dm_ioctl)];
701
702 ioctl_init(io, DM_CRYPT_BUF_SIZE, name, 0);
703 io->target_count = 1;
704 tgt->status = 0;
705 tgt->sector_start = 0;
706 tgt->length = crypt_ftr->fs_size;
707 strcpy(tgt->target_type, "crypt");
708
709 crypt_params = buffer + sizeof(struct dm_ioctl) + sizeof(struct dm_target_spec);
710 convert_key_to_hex_ascii(master_key, crypt_ftr->keysize, master_key_ascii);
711 sprintf(crypt_params, "%s %s 0 %s 0 %s", crypt_ftr->crypto_type_name,
712 master_key_ascii, real_blk_name, extra_params);
713 crypt_params += strlen(crypt_params) + 1;
714 crypt_params = (char *) (((unsigned long)crypt_params + 7) & ~8); /* Align to an 8 byte boundary */
715 tgt->next = crypt_params - buffer;
716
717 for (i = 0; i < TABLE_LOAD_RETRIES; i++) {
718 if (! ioctl(fd, DM_TABLE_LOAD, io)) {
719 break;
720 }
721 usleep(500000);
722 }
723
724 if (i == TABLE_LOAD_RETRIES) {
725 /* We failed to load the table, return an error */
726 return -1;
727 } else {
728 return i + 1;
729 }
730}
731
732
733static int get_dm_crypt_version(int fd, const char *name, int *version)
734{
735 char buffer[DM_CRYPT_BUF_SIZE];
736 struct dm_ioctl *io;
737 struct dm_target_versions *v;
738 int i;
739
740 io = (struct dm_ioctl *) buffer;
741
742 ioctl_init(io, DM_CRYPT_BUF_SIZE, name, 0);
743
744 if (ioctl(fd, DM_LIST_VERSIONS, io)) {
745 return -1;
746 }
747
748 /* Iterate over the returned versions, looking for name of "crypt".
749 * When found, get and return the version.
750 */
751 v = (struct dm_target_versions *) &buffer[sizeof(struct dm_ioctl)];
752 while (v->next) {
753 if (! strcmp(v->name, "crypt")) {
754 /* We found the crypt driver, return the version, and get out */
755 version[0] = v->version[0];
756 version[1] = v->version[1];
757 version[2] = v->version[2];
758 return 0;
759 }
760 v = (struct dm_target_versions *)(((char *)v) + v->next);
761 }
762
763 return -1;
764}
765
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800766static int create_crypto_blk_dev(struct crypt_mnt_ftr *crypt_ftr, unsigned char *master_key,
Ken Sumrall29d8da82011-05-18 17:20:07 -0700767 char *real_blk_name, char *crypto_blk_name, const char *name)
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800768{
769 char buffer[DM_CRYPT_BUF_SIZE];
770 char master_key_ascii[129]; /* Large enough to hold 512 bit key and null */
771 char *crypt_params;
772 struct dm_ioctl *io;
773 struct dm_target_spec *tgt;
774 unsigned int minor;
775 int fd;
Ken Sumralle919efe2012-09-29 17:07:41 -0700776 int i;
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800777 int retval = -1;
Ken Sumralldb5e0262013-02-05 17:39:48 -0800778 int version[3];
779 char *extra_params;
780 int load_count;
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800781
782 if ((fd = open("/dev/device-mapper", O_RDWR)) < 0 ) {
783 SLOGE("Cannot open device-mapper\n");
784 goto errout;
785 }
786
787 io = (struct dm_ioctl *) buffer;
788
789 ioctl_init(io, DM_CRYPT_BUF_SIZE, name, 0);
790 if (ioctl(fd, DM_DEV_CREATE, io)) {
791 SLOGE("Cannot create dm-crypt device\n");
792 goto errout;
793 }
794
795 /* Get the device status, in particular, the name of it's device file */
796 ioctl_init(io, DM_CRYPT_BUF_SIZE, name, 0);
797 if (ioctl(fd, DM_DEV_STATUS, io)) {
798 SLOGE("Cannot retrieve dm-crypt device status\n");
799 goto errout;
800 }
801 minor = (io->dev & 0xff) | ((io->dev >> 12) & 0xfff00);
802 snprintf(crypto_blk_name, MAXPATHLEN, "/dev/block/dm-%u", minor);
803
Ken Sumralldb5e0262013-02-05 17:39:48 -0800804 extra_params = "";
805 if (! get_dm_crypt_version(fd, name, version)) {
806 /* Support for allow_discards was added in version 1.11.0 */
807 if ((version[0] >= 2) ||
808 ((version[0] == 1) && (version[1] >= 11))) {
809 extra_params = "1 allow_discards";
810 SLOGI("Enabling support for allow_discards in dmcrypt.\n");
811 }
Ken Sumralle919efe2012-09-29 17:07:41 -0700812 }
813
Ken Sumralldb5e0262013-02-05 17:39:48 -0800814 load_count = load_crypto_mapping_table(crypt_ftr, master_key, real_blk_name, name,
815 fd, extra_params);
816 if (load_count < 0) {
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800817 SLOGE("Cannot load dm-crypt mapping table.\n");
818 goto errout;
Ken Sumralldb5e0262013-02-05 17:39:48 -0800819 } else if (load_count > 1) {
820 SLOGI("Took %d tries to load dmcrypt table.\n", load_count);
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800821 }
822
823 /* Resume this device to activate it */
Ken Sumralldb5e0262013-02-05 17:39:48 -0800824 ioctl_init(io, DM_CRYPT_BUF_SIZE, name, 0);
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800825
826 if (ioctl(fd, DM_DEV_SUSPEND, io)) {
827 SLOGE("Cannot resume the dm-crypt device\n");
828 goto errout;
829 }
830
831 /* We made it here with no errors. Woot! */
832 retval = 0;
833
834errout:
835 close(fd); /* If fd is <0 from a failed open call, it's safe to just ignore the close error */
836
837 return retval;
838}
839
Ken Sumrall29d8da82011-05-18 17:20:07 -0700840static int delete_crypto_blk_dev(char *name)
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800841{
842 int fd;
843 char buffer[DM_CRYPT_BUF_SIZE];
844 struct dm_ioctl *io;
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800845 int retval = -1;
846
847 if ((fd = open("/dev/device-mapper", O_RDWR)) < 0 ) {
848 SLOGE("Cannot open device-mapper\n");
849 goto errout;
850 }
851
852 io = (struct dm_ioctl *) buffer;
853
854 ioctl_init(io, DM_CRYPT_BUF_SIZE, name, 0);
855 if (ioctl(fd, DM_DEV_REMOVE, io)) {
856 SLOGE("Cannot remove dm-crypt device\n");
857 goto errout;
858 }
859
860 /* We made it here with no errors. Woot! */
861 retval = 0;
862
863errout:
864 close(fd); /* If fd is <0 from a failed open call, it's safe to just ignore the close error */
865
866 return retval;
867
868}
869
Kenny Rootc4c70f12013-06-14 12:11:38 -0700870static void pbkdf2(char *passwd, unsigned char *salt, unsigned char *ikey, void *params) {
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800871 /* Turn the password into a key and IV that can decrypt the master key */
Ken Sumralle8744072011-01-18 22:01:55 -0800872 PKCS5_PBKDF2_HMAC_SHA1(passwd, strlen(passwd), salt, SALT_LEN,
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800873 HASH_COUNT, KEY_LEN_BYTES+IV_LEN_BYTES, ikey);
Ken Sumrall8ddbe402011-01-17 15:26:29 -0800874}
875
Kenny Rootc4c70f12013-06-14 12:11:38 -0700876static void scrypt(char *passwd, unsigned char *salt, unsigned char *ikey, void *params) {
877 struct crypt_mnt_ftr *ftr = (struct crypt_mnt_ftr *) params;
878
879 int N = 1 << ftr->N_factor;
880 int r = 1 << ftr->r_factor;
881 int p = 1 << ftr->p_factor;
882
883 /* Turn the password into a key and IV that can decrypt the master key */
884 crypto_scrypt((unsigned char *) passwd, strlen(passwd), salt, SALT_LEN, N, r, p, ikey,
885 KEY_LEN_BYTES + IV_LEN_BYTES);
886}
887
Ken Sumralle8744072011-01-18 22:01:55 -0800888static int encrypt_master_key(char *passwd, unsigned char *salt,
889 unsigned char *decrypted_master_key,
Kenny Rootc4c70f12013-06-14 12:11:38 -0700890 unsigned char *encrypted_master_key,
891 struct crypt_mnt_ftr *crypt_ftr)
Ken Sumrall8ddbe402011-01-17 15:26:29 -0800892{
893 unsigned char ikey[32+32] = { 0 }; /* Big enough to hold a 256 bit key and 256 bit IV */
894 EVP_CIPHER_CTX e_ctx;
895 int encrypted_len, final_len;
896
897 /* Turn the password into a key and IV that can decrypt the master key */
Kenny Rootc4c70f12013-06-14 12:11:38 -0700898 get_device_scrypt_params(crypt_ftr);
899 scrypt(passwd, salt, ikey, crypt_ftr);
900
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800901 /* Initialize the decryption engine */
902 if (! EVP_EncryptInit(&e_ctx, EVP_aes_128_cbc(), ikey, ikey+KEY_LEN_BYTES)) {
903 SLOGE("EVP_EncryptInit failed\n");
904 return -1;
905 }
906 EVP_CIPHER_CTX_set_padding(&e_ctx, 0); /* Turn off padding as our data is block aligned */
Ken Sumrall8ddbe402011-01-17 15:26:29 -0800907
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800908 /* Encrypt the master key */
Ken Sumrall8ddbe402011-01-17 15:26:29 -0800909 if (! EVP_EncryptUpdate(&e_ctx, encrypted_master_key, &encrypted_len,
910 decrypted_master_key, KEY_LEN_BYTES)) {
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800911 SLOGE("EVP_EncryptUpdate failed\n");
912 return -1;
913 }
Ken Sumrall8ddbe402011-01-17 15:26:29 -0800914 if (! EVP_EncryptFinal(&e_ctx, encrypted_master_key + encrypted_len, &final_len)) {
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800915 SLOGE("EVP_EncryptFinal failed\n");
916 return -1;
917 }
918
919 if (encrypted_len + final_len != KEY_LEN_BYTES) {
920 SLOGE("EVP_Encryption length check failed with %d, %d bytes\n", encrypted_len, final_len);
921 return -1;
922 } else {
923 return 0;
924 }
925}
926
JP Abgrall7bdfa522013-11-15 13:42:56 -0800927static int decrypt_master_key_aux(char *passwd, unsigned char *salt,
Ken Sumralle8744072011-01-18 22:01:55 -0800928 unsigned char *encrypted_master_key,
Kenny Rootc4c70f12013-06-14 12:11:38 -0700929 unsigned char *decrypted_master_key,
930 kdf_func kdf, void *kdf_params)
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800931{
932 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 -0800933 EVP_CIPHER_CTX d_ctx;
934 int decrypted_len, final_len;
935
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800936 /* Turn the password into a key and IV that can decrypt the master key */
Kenny Rootc4c70f12013-06-14 12:11:38 -0700937 kdf(passwd, salt, ikey, kdf_params);
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800938
939 /* Initialize the decryption engine */
940 if (! EVP_DecryptInit(&d_ctx, EVP_aes_128_cbc(), ikey, ikey+KEY_LEN_BYTES)) {
941 return -1;
942 }
943 EVP_CIPHER_CTX_set_padding(&d_ctx, 0); /* Turn off padding as our data is block aligned */
944 /* Decrypt the master key */
945 if (! EVP_DecryptUpdate(&d_ctx, decrypted_master_key, &decrypted_len,
946 encrypted_master_key, KEY_LEN_BYTES)) {
947 return -1;
948 }
949 if (! EVP_DecryptFinal(&d_ctx, decrypted_master_key + decrypted_len, &final_len)) {
950 return -1;
951 }
952
953 if (decrypted_len + final_len != KEY_LEN_BYTES) {
954 return -1;
955 } else {
956 return 0;
957 }
958}
959
Kenny Rootc4c70f12013-06-14 12:11:38 -0700960static void get_kdf_func(struct crypt_mnt_ftr *ftr, kdf_func *kdf, void** kdf_params)
Ken Sumrall8ddbe402011-01-17 15:26:29 -0800961{
Kenny Rootc4c70f12013-06-14 12:11:38 -0700962 if (ftr->kdf_type == KDF_SCRYPT) {
963 *kdf = scrypt;
964 *kdf_params = ftr;
965 } else {
966 *kdf = pbkdf2;
967 *kdf_params = NULL;
968 }
969}
970
JP Abgrall7bdfa522013-11-15 13:42:56 -0800971static int decrypt_master_key(char *passwd, unsigned char *decrypted_master_key,
Kenny Rootc4c70f12013-06-14 12:11:38 -0700972 struct crypt_mnt_ftr *crypt_ftr)
973{
974 kdf_func kdf;
975 void *kdf_params;
976 int ret;
977
978 get_kdf_func(crypt_ftr, &kdf, &kdf_params);
JP Abgrall7bdfa522013-11-15 13:42:56 -0800979 ret = decrypt_master_key_aux(passwd, crypt_ftr->salt, crypt_ftr->master_key, decrypted_master_key, kdf,
Kenny Rootc4c70f12013-06-14 12:11:38 -0700980 kdf_params);
981 if (ret != 0) {
982 SLOGW("failure decrypting master key");
Kenny Rootc4c70f12013-06-14 12:11:38 -0700983 }
984
985 return ret;
986}
987
988static int create_encrypted_random_key(char *passwd, unsigned char *master_key, unsigned char *salt,
989 struct crypt_mnt_ftr *crypt_ftr) {
Ken Sumrall8ddbe402011-01-17 15:26:29 -0800990 int fd;
Ken Sumralle8744072011-01-18 22:01:55 -0800991 unsigned char key_buf[KEY_LEN_BYTES];
Ken Sumrall8ddbe402011-01-17 15:26:29 -0800992 EVP_CIPHER_CTX e_ctx;
993 int encrypted_len, final_len;
994
995 /* Get some random bits for a key */
996 fd = open("/dev/urandom", O_RDONLY);
Ken Sumralle8744072011-01-18 22:01:55 -0800997 read(fd, key_buf, sizeof(key_buf));
998 read(fd, salt, SALT_LEN);
Ken Sumrall8ddbe402011-01-17 15:26:29 -0800999 close(fd);
1000
1001 /* Now encrypt it with the password */
Kenny Rootc4c70f12013-06-14 12:11:38 -07001002 return encrypt_master_key(passwd, salt, key_buf, master_key, crypt_ftr);
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001003}
1004
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001005static int wait_and_unmount(char *mountpoint)
1006{
1007 int i, rc;
Ken Sumrall2eaf7132011-01-14 12:45:48 -08001008#define WAIT_UNMOUNT_COUNT 20
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001009
1010 /* Now umount the tmpfs filesystem */
1011 for (i=0; i<WAIT_UNMOUNT_COUNT; i++) {
1012 if (umount(mountpoint)) {
Ken Sumrall29d8da82011-05-18 17:20:07 -07001013 if (errno == EINVAL) {
1014 /* EINVAL is returned if the directory is not a mountpoint,
1015 * i.e. there is no filesystem mounted there. So just get out.
1016 */
1017 break;
1018 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001019 sleep(1);
1020 i++;
1021 } else {
1022 break;
1023 }
1024 }
1025
1026 if (i < WAIT_UNMOUNT_COUNT) {
1027 SLOGD("unmounting %s succeeded\n", mountpoint);
1028 rc = 0;
1029 } else {
1030 SLOGE("unmounting %s failed\n", mountpoint);
1031 rc = -1;
1032 }
1033
1034 return rc;
1035}
1036
Ken Sumrallc5872692013-05-14 15:26:31 -07001037#define DATA_PREP_TIMEOUT 200
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001038static int prep_data_fs(void)
1039{
1040 int i;
1041
1042 /* Do the prep of the /data filesystem */
1043 property_set("vold.post_fs_data_done", "0");
1044 property_set("vold.decrypt", "trigger_post_fs_data");
1045 SLOGD("Just triggered post_fs_data\n");
1046
Ken Sumrallc5872692013-05-14 15:26:31 -07001047 /* Wait a max of 50 seconds, hopefully it takes much less */
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001048 for (i=0; i<DATA_PREP_TIMEOUT; i++) {
Ken Sumrall29d8da82011-05-18 17:20:07 -07001049 char p[PROPERTY_VALUE_MAX];
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001050
1051 property_get("vold.post_fs_data_done", p, "0");
1052 if (*p == '1') {
1053 break;
1054 } else {
1055 usleep(250000);
1056 }
1057 }
1058 if (i == DATA_PREP_TIMEOUT) {
1059 /* Ugh, we failed to prep /data in time. Bail. */
Ken Sumrallc5872692013-05-14 15:26:31 -07001060 SLOGE("post_fs_data timed out!\n");
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001061 return -1;
1062 } else {
1063 SLOGD("post_fs_data done\n");
1064 return 0;
1065 }
1066}
1067
Ken Sumrall6864b7e2011-01-14 15:20:02 -08001068int cryptfs_restart(void)
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001069{
1070 char fs_type[32];
1071 char real_blkdev[MAXPATHLEN];
Ken Sumrall6864b7e2011-01-14 15:20:02 -08001072 char crypto_blkdev[MAXPATHLEN];
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001073 char fs_options[256];
1074 unsigned long mnt_flags;
1075 struct stat statbuf;
1076 int rc = -1, i;
Ken Sumrall0cc16632011-01-18 20:32:26 -08001077 static int restart_successful = 0;
1078
1079 /* Validate that it's OK to call this routine */
Jason parks70a4b3f2011-01-28 10:10:47 -06001080 if (! master_key_saved) {
Ken Sumrall0cc16632011-01-18 20:32:26 -08001081 SLOGE("Encrypted filesystem not validated, aborting");
1082 return -1;
1083 }
1084
1085 if (restart_successful) {
1086 SLOGE("System already restarted with encrypted disk, aborting");
1087 return -1;
1088 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001089
1090 /* Here is where we shut down the framework. The init scripts
1091 * start all services in one of three classes: core, main or late_start.
1092 * On boot, we start core and main. Now, we stop main, but not core,
1093 * as core includes vold and a few other really important things that
1094 * we need to keep running. Once main has stopped, we should be able
1095 * to umount the tmpfs /data, then mount the encrypted /data.
1096 * We then restart the class main, and also the class late_start.
1097 * At the moment, I've only put a few things in late_start that I know
1098 * are not needed to bring up the framework, and that also cause problems
1099 * with unmounting the tmpfs /data, but I hope to add add more services
1100 * to the late_start class as we optimize this to decrease the delay
1101 * till the user is asked for the password to the filesystem.
1102 */
1103
1104 /* The init files are setup to stop the class main when vold.decrypt is
1105 * set to trigger_reset_main.
1106 */
1107 property_set("vold.decrypt", "trigger_reset_main");
1108 SLOGD("Just asked init to shut down class main\n");
1109
Ken Sumrall92736ef2012-10-17 20:57:14 -07001110 /* Ugh, shutting down the framework is not synchronous, so until it
1111 * can be fixed, this horrible hack will wait a moment for it all to
1112 * shut down before proceeding. Without it, some devices cannot
1113 * restart the graphics services.
1114 */
1115 sleep(2);
Ken Sumrall9dedfd42012-10-09 14:16:59 -07001116
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001117 /* Now that the framework is shutdown, we should be able to umount()
1118 * the tmpfs filesystem, and mount the real one.
1119 */
1120
Ken Sumrall6864b7e2011-01-14 15:20:02 -08001121 property_get("ro.crypto.fs_crypto_blkdev", crypto_blkdev, "");
1122 if (strlen(crypto_blkdev) == 0) {
1123 SLOGE("fs_crypto_blkdev not set\n");
1124 return -1;
1125 }
1126
Ken Sumralle5032c42012-04-01 23:58:44 -07001127 if (! (rc = wait_and_unmount(DATA_MNT_POINT)) ) {
1128 /* If that succeeded, then mount the decrypted filesystem */
Ken Sumrall56ad03c2013-02-13 13:00:19 -08001129 fs_mgr_do_mount(fstab, DATA_MNT_POINT, crypto_blkdev, 0);
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001130
Ken Sumralle5032c42012-04-01 23:58:44 -07001131 property_set("vold.decrypt", "trigger_load_persist_props");
1132 /* Create necessary paths on /data */
1133 if (prep_data_fs()) {
1134 return -1;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001135 }
Ken Sumralle5032c42012-04-01 23:58:44 -07001136
1137 /* startup service classes main and late_start */
1138 property_set("vold.decrypt", "trigger_restart_framework");
1139 SLOGD("Just triggered restart_framework\n");
1140
1141 /* Give it a few moments to get started */
1142 sleep(1);
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001143 }
1144
Ken Sumrall0cc16632011-01-18 20:32:26 -08001145 if (rc == 0) {
1146 restart_successful = 1;
1147 }
1148
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001149 return rc;
1150}
1151
Ken Sumrall7f7dbaa2011-02-01 15:46:41 -08001152static int do_crypto_complete(char *mount_point)
1153{
1154 struct crypt_mnt_ftr crypt_ftr;
Ken Sumrall29d8da82011-05-18 17:20:07 -07001155 char encrypted_state[PROPERTY_VALUE_MAX];
Ken Sumralle1a45852011-12-14 21:24:27 -08001156 char key_loc[PROPERTY_VALUE_MAX];
Ken Sumrall7f7dbaa2011-02-01 15:46:41 -08001157
1158 property_get("ro.crypto.state", encrypted_state, "");
1159 if (strcmp(encrypted_state, "encrypted") ) {
1160 SLOGE("not running with encryption, aborting");
1161 return 1;
1162 }
1163
Ken Sumrall160b4d62013-04-22 12:15:39 -07001164 if (get_crypt_ftr_and_key(&crypt_ftr)) {
Ken Sumrall56ad03c2013-02-13 13:00:19 -08001165 fs_mgr_get_crypt_info(fstab, key_loc, 0, sizeof(key_loc));
Ken Sumralle5032c42012-04-01 23:58:44 -07001166
Ken Sumralle1a45852011-12-14 21:24:27 -08001167 /*
1168 * Only report this error if key_loc is a file and it exists.
1169 * If the device was never encrypted, and /data is not mountable for
1170 * some reason, returning 1 should prevent the UI from presenting the
1171 * a "enter password" screen, or worse, a "press button to wipe the
1172 * device" screen.
1173 */
1174 if ((key_loc[0] == '/') && (access("key_loc", F_OK) == -1)) {
1175 SLOGE("master key file does not exist, aborting");
1176 return 1;
1177 } else {
1178 SLOGE("Error getting crypt footer and key\n");
1179 return -1;
1180 }
Ken Sumrall7f7dbaa2011-02-01 15:46:41 -08001181 }
1182
1183 if (crypt_ftr.flags & CRYPT_ENCRYPTION_IN_PROGRESS) {
1184 SLOGE("Encryption process didn't finish successfully\n");
1185 return -2; /* -2 is the clue to the UI that there is no usable data on the disk,
1186 * and give the user an option to wipe the disk */
1187 }
1188
1189 /* We passed the test! We shall diminish, and return to the west */
1190 return 0;
1191}
1192
Ken Sumrall29d8da82011-05-18 17:20:07 -07001193static int test_mount_encrypted_fs(char *passwd, char *mount_point, char *label)
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001194{
1195 struct crypt_mnt_ftr crypt_ftr;
1196 /* Allocate enough space for a 256 bit key, but we may use less */
Ken Sumrall160b4d62013-04-22 12:15:39 -07001197 unsigned char decrypted_master_key[32];
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001198 char crypto_blkdev[MAXPATHLEN];
1199 char real_blkdev[MAXPATHLEN];
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001200 char tmp_mount_point[64];
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001201 unsigned int orig_failed_decrypt_count;
Ken Sumrall29d8da82011-05-18 17:20:07 -07001202 char encrypted_state[PROPERTY_VALUE_MAX];
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001203 int rc;
Kenny Rootc4c70f12013-06-14 12:11:38 -07001204 kdf_func kdf;
1205 void *kdf_params;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001206
Ken Sumrall0cc16632011-01-18 20:32:26 -08001207 property_get("ro.crypto.state", encrypted_state, "");
Jason parks70a4b3f2011-01-28 10:10:47 -06001208 if ( master_key_saved || strcmp(encrypted_state, "encrypted") ) {
Ken Sumrall0cc16632011-01-18 20:32:26 -08001209 SLOGE("encrypted fs already validated or not running with encryption, aborting");
1210 return -1;
1211 }
1212
Ken Sumrall56ad03c2013-02-13 13:00:19 -08001213 fs_mgr_get_crypt_info(fstab, 0, real_blkdev, sizeof(real_blkdev));
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001214
Ken Sumrall160b4d62013-04-22 12:15:39 -07001215 if (get_crypt_ftr_and_key(&crypt_ftr)) {
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001216 SLOGE("Error getting crypt footer and key\n");
1217 return -1;
1218 }
Ken Sumralld33d4172011-02-01 00:49:13 -08001219
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001220 SLOGD("crypt_ftr->fs_size = %lld\n", crypt_ftr.fs_size);
1221 orig_failed_decrypt_count = crypt_ftr.failed_decrypt_count;
1222
1223 if (! (crypt_ftr.flags & CRYPT_MNT_KEY_UNENCRYPTED) ) {
JP Abgrall7bdfa522013-11-15 13:42:56 -08001224 if (decrypt_master_key(passwd, decrypted_master_key, &crypt_ftr)) {
1225 SLOGE("Failed to decrypt master key\n");
1226 return -1;
1227 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001228 }
1229
1230 if (create_crypto_blk_dev(&crypt_ftr, decrypted_master_key,
Ken Sumrall29d8da82011-05-18 17:20:07 -07001231 real_blkdev, crypto_blkdev, label)) {
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001232 SLOGE("Error creating decrypted block device\n");
1233 return -1;
1234 }
1235
Alex Klyubin707795a2013-05-10 15:17:07 -07001236 /* If init detects an encrypted filesystem, it writes a file for each such
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001237 * encrypted fs into the tmpfs /data filesystem, and then the framework finds those
1238 * files and passes that data to me */
1239 /* Create a tmp mount point to try mounting the decryptd fs
1240 * Since we're here, the mount_point should be a tmpfs filesystem, so make
1241 * a directory in it to test mount the decrypted filesystem.
1242 */
1243 sprintf(tmp_mount_point, "%s/tmp_mnt", mount_point);
1244 mkdir(tmp_mount_point, 0755);
Ken Sumrall56ad03c2013-02-13 13:00:19 -08001245 if (fs_mgr_do_mount(fstab, DATA_MNT_POINT, crypto_blkdev, tmp_mount_point)) {
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001246 SLOGE("Error temp mounting decrypted block device\n");
Ken Sumrall29d8da82011-05-18 17:20:07 -07001247 delete_crypto_blk_dev(label);
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001248 crypt_ftr.failed_decrypt_count++;
1249 } else {
1250 /* Success, so just umount and we'll mount it properly when we restart
1251 * the framework.
1252 */
1253 umount(tmp_mount_point);
1254 crypt_ftr.failed_decrypt_count = 0;
1255 }
1256
1257 if (orig_failed_decrypt_count != crypt_ftr.failed_decrypt_count) {
Ken Sumrall160b4d62013-04-22 12:15:39 -07001258 put_crypt_ftr_and_key(&crypt_ftr);
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001259 }
1260
1261 if (crypt_ftr.failed_decrypt_count) {
1262 /* We failed to mount the device, so return an error */
1263 rc = crypt_ftr.failed_decrypt_count;
1264
1265 } else {
Ken Sumrall6864b7e2011-01-14 15:20:02 -08001266 /* Woot! Success! Save the name of the crypto block device
1267 * so we can mount it when restarting the framework.
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001268 */
Ken Sumrall6864b7e2011-01-14 15:20:02 -08001269 property_set("ro.crypto.fs_crypto_blkdev", crypto_blkdev);
Jason parks70a4b3f2011-01-28 10:10:47 -06001270
1271 /* Also save a the master key so we can reencrypted the key
1272 * the key when we want to change the password on it.
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001273 */
Jason parks70a4b3f2011-01-28 10:10:47 -06001274 memcpy(saved_master_key, decrypted_master_key, KEY_LEN_BYTES);
Ken Sumrall3ad90722011-10-04 20:38:29 -07001275 saved_mount_point = strdup(mount_point);
Jason parks70a4b3f2011-01-28 10:10:47 -06001276 master_key_saved = 1;
JP Abgrall7bdfa522013-11-15 13:42:56 -08001277 SLOGD("%s(): Master key saved\n", __FUNCTION__);
Ken Sumrall6864b7e2011-01-14 15:20:02 -08001278 rc = 0;
JP Abgrall7bdfa522013-11-15 13:42:56 -08001279 /*
1280 * Upgrade if we're not using the latest KDF.
1281 */
1282 if (crypt_ftr.kdf_type != KDF_SCRYPT) {
1283 crypt_ftr.kdf_type = KDF_SCRYPT;
1284 rc = encrypt_master_key(passwd, crypt_ftr.salt, saved_master_key, crypt_ftr.master_key,
1285 &crypt_ftr);
1286 if (!rc) {
1287 rc = put_crypt_ftr_and_key(&crypt_ftr);
1288 }
1289 SLOGD("Key Derivation Function upgrade: rc=%d\n", rc);
1290 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001291 }
1292
1293 return rc;
1294}
1295
Ken Sumrall0b8b5972011-08-31 16:14:23 -07001296/* Called by vold when it wants to undo the crypto mapping of a volume it
1297 * manages. This is usually in response to a factory reset, when we want
1298 * to undo the crypto mapping so the volume is formatted in the clear.
1299 */
1300int cryptfs_revert_volume(const char *label)
1301{
1302 return delete_crypto_blk_dev((char *)label);
1303}
1304
Ken Sumrall29d8da82011-05-18 17:20:07 -07001305/*
1306 * Called by vold when it's asked to mount an encrypted, nonremovable volume.
1307 * Setup a dm-crypt mapping, use the saved master key from
1308 * setting up the /data mapping, and return the new device path.
1309 */
1310int cryptfs_setup_volume(const char *label, int major, int minor,
1311 char *crypto_sys_path, unsigned int max_path,
1312 int *new_major, int *new_minor)
1313{
1314 char real_blkdev[MAXPATHLEN], crypto_blkdev[MAXPATHLEN];
1315 struct crypt_mnt_ftr sd_crypt_ftr;
Ken Sumrall29d8da82011-05-18 17:20:07 -07001316 struct stat statbuf;
1317 int nr_sec, fd;
1318
1319 sprintf(real_blkdev, "/dev/block/vold/%d:%d", major, minor);
1320
Ken Sumrall160b4d62013-04-22 12:15:39 -07001321 get_crypt_ftr_and_key(&sd_crypt_ftr);
Ken Sumrall29d8da82011-05-18 17:20:07 -07001322
1323 /* Update the fs_size field to be the size of the volume */
1324 fd = open(real_blkdev, O_RDONLY);
1325 nr_sec = get_blkdev_size(fd);
1326 close(fd);
1327 if (nr_sec == 0) {
1328 SLOGE("Cannot get size of volume %s\n", real_blkdev);
1329 return -1;
1330 }
1331
1332 sd_crypt_ftr.fs_size = nr_sec;
1333 create_crypto_blk_dev(&sd_crypt_ftr, saved_master_key, real_blkdev,
1334 crypto_blkdev, label);
1335
1336 stat(crypto_blkdev, &statbuf);
1337 *new_major = MAJOR(statbuf.st_rdev);
1338 *new_minor = MINOR(statbuf.st_rdev);
1339
1340 /* Create path to sys entry for this block device */
1341 snprintf(crypto_sys_path, max_path, "/devices/virtual/block/%s", strrchr(crypto_blkdev, '/')+1);
1342
1343 return 0;
1344}
1345
Ken Sumrall7f7dbaa2011-02-01 15:46:41 -08001346int cryptfs_crypto_complete(void)
1347{
1348 return do_crypto_complete("/data");
1349}
1350
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001351int cryptfs_check_passwd(char *passwd)
1352{
1353 int rc = -1;
1354
Ken Sumrall29d8da82011-05-18 17:20:07 -07001355 rc = test_mount_encrypted_fs(passwd, DATA_MNT_POINT, "userdata");
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001356
1357 return rc;
1358}
1359
Ken Sumrall3ad90722011-10-04 20:38:29 -07001360int cryptfs_verify_passwd(char *passwd)
1361{
1362 struct crypt_mnt_ftr crypt_ftr;
1363 /* Allocate enough space for a 256 bit key, but we may use less */
Ken Sumrall160b4d62013-04-22 12:15:39 -07001364 unsigned char decrypted_master_key[32];
Ken Sumrall3ad90722011-10-04 20:38:29 -07001365 char encrypted_state[PROPERTY_VALUE_MAX];
1366 int rc;
1367
1368 property_get("ro.crypto.state", encrypted_state, "");
1369 if (strcmp(encrypted_state, "encrypted") ) {
1370 SLOGE("device not encrypted, aborting");
1371 return -2;
1372 }
1373
1374 if (!master_key_saved) {
1375 SLOGE("encrypted fs not yet mounted, aborting");
1376 return -1;
1377 }
1378
1379 if (!saved_mount_point) {
1380 SLOGE("encrypted fs failed to save mount point, aborting");
1381 return -1;
1382 }
1383
Ken Sumrall160b4d62013-04-22 12:15:39 -07001384 if (get_crypt_ftr_and_key(&crypt_ftr)) {
Ken Sumrall3ad90722011-10-04 20:38:29 -07001385 SLOGE("Error getting crypt footer and key\n");
1386 return -1;
1387 }
1388
1389 if (crypt_ftr.flags & CRYPT_MNT_KEY_UNENCRYPTED) {
1390 /* If the device has no password, then just say the password is valid */
1391 rc = 0;
1392 } else {
JP Abgrall7bdfa522013-11-15 13:42:56 -08001393 decrypt_master_key(passwd, decrypted_master_key, &crypt_ftr);
Ken Sumrall3ad90722011-10-04 20:38:29 -07001394 if (!memcmp(decrypted_master_key, saved_master_key, crypt_ftr.keysize)) {
1395 /* They match, the password is correct */
1396 rc = 0;
1397 } else {
1398 /* If incorrect, sleep for a bit to prevent dictionary attacks */
1399 sleep(1);
1400 rc = 1;
1401 }
1402 }
1403
1404 return rc;
1405}
1406
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001407/* Initialize a crypt_mnt_ftr structure. The keysize is
1408 * defaulted to 16 bytes, and the filesystem size to 0.
1409 * Presumably, at a minimum, the caller will update the
1410 * filesystem size and crypto_type_name after calling this function.
1411 */
1412static void cryptfs_init_crypt_mnt_ftr(struct crypt_mnt_ftr *ftr)
1413{
Ken Sumrall160b4d62013-04-22 12:15:39 -07001414 off64_t off;
1415
1416 memset(ftr, 0, sizeof(struct crypt_mnt_ftr));
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001417 ftr->magic = CRYPT_MNT_MAGIC;
Kenny Rootc96a5f82013-06-14 12:08:28 -07001418 ftr->major_version = CURRENT_MAJOR_VERSION;
1419 ftr->minor_version = CURRENT_MINOR_VERSION;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001420 ftr->ftr_size = sizeof(struct crypt_mnt_ftr);
Jason parks70a4b3f2011-01-28 10:10:47 -06001421 ftr->keysize = KEY_LEN_BYTES;
Ken Sumrall160b4d62013-04-22 12:15:39 -07001422
Kenny Rootc4c70f12013-06-14 12:11:38 -07001423 ftr->kdf_type = KDF_SCRYPT;
1424 get_device_scrypt_params(ftr);
1425
Ken Sumrall160b4d62013-04-22 12:15:39 -07001426 ftr->persist_data_size = CRYPT_PERSIST_DATA_SIZE;
1427 if (get_crypt_ftr_info(NULL, &off) == 0) {
1428 ftr->persist_data_offset[0] = off + CRYPT_FOOTER_TO_PERSIST_OFFSET;
1429 ftr->persist_data_offset[1] = off + CRYPT_FOOTER_TO_PERSIST_OFFSET +
1430 ftr->persist_data_size;
1431 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001432}
1433
Ken Sumrall29d8da82011-05-18 17:20:07 -07001434static int cryptfs_enable_wipe(char *crypto_blkdev, off64_t size, int type)
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001435{
Ken Sumralle550f782013-08-20 13:48:23 -07001436 const char *args[10];
1437 char size_str[32]; /* Must be large enough to hold a %lld and null byte */
1438 int num_args;
1439 int status;
1440 int tmp;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001441 int rc = -1;
1442
Ken Sumrall29d8da82011-05-18 17:20:07 -07001443 if (type == EXT4_FS) {
Ken Sumralle550f782013-08-20 13:48:23 -07001444 args[0] = "/system/bin/make_ext4fs";
1445 args[1] = "-a";
1446 args[2] = "/data";
1447 args[3] = "-l";
1448 snprintf(size_str, sizeof(size_str), "%lld", size * 512);
1449 args[4] = size_str;
1450 args[5] = crypto_blkdev;
1451 num_args = 6;
1452 SLOGI("Making empty filesystem with command %s %s %s %s %s %s\n",
1453 args[0], args[1], args[2], args[3], args[4], args[5]);
Ken Sumrall29d8da82011-05-18 17:20:07 -07001454 } else if (type== FAT_FS) {
Ken Sumralle550f782013-08-20 13:48:23 -07001455 args[0] = "/system/bin/newfs_msdos";
1456 args[1] = "-F";
1457 args[2] = "32";
1458 args[3] = "-O";
1459 args[4] = "android";
1460 args[5] = "-c";
1461 args[6] = "8";
1462 args[7] = "-s";
1463 snprintf(size_str, sizeof(size_str), "%lld", size);
1464 args[8] = size_str;
1465 args[9] = crypto_blkdev;
1466 num_args = 10;
1467 SLOGI("Making empty filesystem with command %s %s %s %s %s %s %s %s %s %s\n",
1468 args[0], args[1], args[2], args[3], args[4], args[5],
1469 args[6], args[7], args[8], args[9]);
Ken Sumrall29d8da82011-05-18 17:20:07 -07001470 } else {
1471 SLOGE("cryptfs_enable_wipe(): unknown filesystem type %d\n", type);
1472 return -1;
1473 }
1474
Ken Sumralle550f782013-08-20 13:48:23 -07001475 tmp = android_fork_execvp(num_args, (char **)args, &status, false, true);
1476
1477 if (tmp != 0) {
1478 SLOGE("Error creating empty filesystem on %s due to logwrap error\n", crypto_blkdev);
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001479 } else {
Ken Sumralle550f782013-08-20 13:48:23 -07001480 if (WIFEXITED(status)) {
1481 if (WEXITSTATUS(status)) {
1482 SLOGE("Error creating filesystem on %s, exit status %d ",
1483 crypto_blkdev, WEXITSTATUS(status));
1484 } else {
1485 SLOGD("Successfully created filesystem on %s\n", crypto_blkdev);
1486 rc = 0;
1487 }
1488 } else {
1489 SLOGE("Error creating filesystem on %s, did not exit normally\n", crypto_blkdev);
1490 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001491 }
1492
1493 return rc;
1494}
1495
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001496#define CRYPT_INPLACE_BUFSIZE 4096
1497#define CRYPT_SECTORS_PER_BUFSIZE (CRYPT_INPLACE_BUFSIZE / 512)
Ken Sumrall29d8da82011-05-18 17:20:07 -07001498static int cryptfs_enable_inplace(char *crypto_blkdev, char *real_blkdev, off64_t size,
1499 off64_t *size_already_done, off64_t tot_size)
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001500{
1501 int realfd, cryptofd;
1502 char *buf[CRYPT_INPLACE_BUFSIZE];
1503 int rc = -1;
1504 off64_t numblocks, i, remainder;
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001505 off64_t one_pct, cur_pct, new_pct;
Ken Sumrall29d8da82011-05-18 17:20:07 -07001506 off64_t blocks_already_done, tot_numblocks;
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001507
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001508 if ( (realfd = open(real_blkdev, O_RDONLY)) < 0) {
1509 SLOGE("Error opening real_blkdev %s for inplace encrypt\n", real_blkdev);
1510 return -1;
1511 }
1512
1513 if ( (cryptofd = open(crypto_blkdev, O_WRONLY)) < 0) {
1514 SLOGE("Error opening crypto_blkdev %s for inplace encrypt\n", crypto_blkdev);
1515 close(realfd);
1516 return -1;
1517 }
1518
1519 /* This is pretty much a simple loop of reading 4K, and writing 4K.
1520 * The size passed in is the number of 512 byte sectors in the filesystem.
1521 * So compute the number of whole 4K blocks we should read/write,
1522 * and the remainder.
1523 */
1524 numblocks = size / CRYPT_SECTORS_PER_BUFSIZE;
1525 remainder = size % CRYPT_SECTORS_PER_BUFSIZE;
Ken Sumrall29d8da82011-05-18 17:20:07 -07001526 tot_numblocks = tot_size / CRYPT_SECTORS_PER_BUFSIZE;
1527 blocks_already_done = *size_already_done / CRYPT_SECTORS_PER_BUFSIZE;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001528
1529 SLOGE("Encrypting filesystem in place...");
1530
Ken Sumrall29d8da82011-05-18 17:20:07 -07001531 one_pct = tot_numblocks / 100;
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001532 cur_pct = 0;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001533 /* process the majority of the filesystem in blocks */
1534 for (i=0; i<numblocks; i++) {
Ken Sumrall29d8da82011-05-18 17:20:07 -07001535 new_pct = (i + blocks_already_done) / one_pct;
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001536 if (new_pct > cur_pct) {
1537 char buf[8];
1538
1539 cur_pct = new_pct;
1540 snprintf(buf, sizeof(buf), "%lld", cur_pct);
1541 property_set("vold.encrypt_progress", buf);
1542 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001543 if (unix_read(realfd, buf, CRYPT_INPLACE_BUFSIZE) <= 0) {
1544 SLOGE("Error reading real_blkdev %s for inplace encrypt\n", crypto_blkdev);
1545 goto errout;
1546 }
1547 if (unix_write(cryptofd, buf, CRYPT_INPLACE_BUFSIZE) <= 0) {
1548 SLOGE("Error writing crypto_blkdev %s for inplace encrypt\n", crypto_blkdev);
1549 goto errout;
1550 }
1551 }
1552
1553 /* Do any remaining sectors */
1554 for (i=0; i<remainder; i++) {
1555 if (unix_read(realfd, buf, 512) <= 0) {
1556 SLOGE("Error reading rival sectors from real_blkdev %s for inplace encrypt\n", crypto_blkdev);
1557 goto errout;
1558 }
1559 if (unix_write(cryptofd, buf, 512) <= 0) {
1560 SLOGE("Error writing final sectors to crypto_blkdev %s for inplace encrypt\n", crypto_blkdev);
1561 goto errout;
1562 }
1563 }
1564
Ken Sumrall29d8da82011-05-18 17:20:07 -07001565 *size_already_done += size;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001566 rc = 0;
1567
1568errout:
1569 close(realfd);
1570 close(cryptofd);
1571
1572 return rc;
1573}
1574
1575#define CRYPTO_ENABLE_WIPE 1
1576#define CRYPTO_ENABLE_INPLACE 2
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001577
1578#define FRAMEWORK_BOOT_WAIT 60
1579
Ken Sumrall29d8da82011-05-18 17:20:07 -07001580static inline int should_encrypt(struct volume_info *volume)
1581{
1582 return (volume->flags & (VOL_ENCRYPTABLE | VOL_NONREMOVABLE)) ==
1583 (VOL_ENCRYPTABLE | VOL_NONREMOVABLE);
1584}
1585
JP Abgrall502dc742013-11-01 13:06:20 -07001586int cryptfs_enable(char *howarg, char *passwd, int allow_reboot)
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001587{
1588 int how = 0;
Ken Sumrall29d8da82011-05-18 17:20:07 -07001589 char crypto_blkdev[MAXPATHLEN], real_blkdev[MAXPATHLEN], sd_crypto_blkdev[MAXPATHLEN];
Ken Sumralle5032c42012-04-01 23:58:44 -07001590 unsigned long nr_sec;
Ken Sumrall160b4d62013-04-22 12:15:39 -07001591 unsigned char decrypted_master_key[KEY_LEN_BYTES];
Ken Sumrall319b1042011-06-14 14:01:55 -07001592 int rc=-1, fd, i, ret;
Ken Sumrall29d8da82011-05-18 17:20:07 -07001593 struct crypt_mnt_ftr crypt_ftr, sd_crypt_ftr;;
Ken Sumrall160b4d62013-04-22 12:15:39 -07001594 struct crypt_persist_data *pdata;
Ken Sumrall29d8da82011-05-18 17:20:07 -07001595 char tmpfs_options[PROPERTY_VALUE_MAX];
1596 char encrypted_state[PROPERTY_VALUE_MAX];
Ken Sumrall5d4c68e2011-01-30 19:06:03 -08001597 char lockid[32] = { 0 };
Ken Sumrall29d8da82011-05-18 17:20:07 -07001598 char key_loc[PROPERTY_VALUE_MAX];
1599 char fuse_sdcard[PROPERTY_VALUE_MAX];
1600 char *sd_mnt_point;
1601 char sd_blk_dev[256] = { 0 };
1602 int num_vols;
1603 struct volume_info *vol_list = 0;
1604 off64_t cur_encryption_done=0, tot_encryption_size=0;
Ken Sumrall0cc16632011-01-18 20:32:26 -08001605
1606 property_get("ro.crypto.state", encrypted_state, "");
JP Abgrall502dc742013-11-01 13:06:20 -07001607 if (!strcmp(encrypted_state, "encrypted")) {
Ken Sumrall0cc16632011-01-18 20:32:26 -08001608 SLOGE("Device is already running encrypted, aborting");
Ken Sumrall3ed82362011-01-28 23:31:16 -08001609 goto error_unencrypted;
Ken Sumrall0cc16632011-01-18 20:32:26 -08001610 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001611
Ken Sumrall56ad03c2013-02-13 13:00:19 -08001612 fs_mgr_get_crypt_info(fstab, key_loc, 0, sizeof(key_loc));
Ken Sumrall29d8da82011-05-18 17:20:07 -07001613
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001614 if (!strcmp(howarg, "wipe")) {
1615 how = CRYPTO_ENABLE_WIPE;
1616 } else if (! strcmp(howarg, "inplace")) {
1617 how = CRYPTO_ENABLE_INPLACE;
1618 } else {
1619 /* Shouldn't happen, as CommandListener vets the args */
Ken Sumrall3ed82362011-01-28 23:31:16 -08001620 goto error_unencrypted;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001621 }
1622
Ken Sumrall56ad03c2013-02-13 13:00:19 -08001623 fs_mgr_get_crypt_info(fstab, 0, real_blkdev, sizeof(real_blkdev));
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001624
Ken Sumrall3ed82362011-01-28 23:31:16 -08001625 /* Get the size of the real block device */
1626 fd = open(real_blkdev, O_RDONLY);
1627 if ( (nr_sec = get_blkdev_size(fd)) == 0) {
1628 SLOGE("Cannot get size of block device %s\n", real_blkdev);
1629 goto error_unencrypted;
1630 }
1631 close(fd);
1632
1633 /* If doing inplace encryption, make sure the orig fs doesn't include the crypto footer */
Ken Sumrall29d8da82011-05-18 17:20:07 -07001634 if ((how == CRYPTO_ENABLE_INPLACE) && (!strcmp(key_loc, KEY_IN_FOOTER))) {
Ken Sumrall3ed82362011-01-28 23:31:16 -08001635 unsigned int fs_size_sec, max_fs_size_sec;
1636
1637 fs_size_sec = get_fs_size(real_blkdev);
1638 max_fs_size_sec = nr_sec - (CRYPT_FOOTER_OFFSET / 512);
1639
1640 if (fs_size_sec > max_fs_size_sec) {
1641 SLOGE("Orig filesystem overlaps crypto footer region. Cannot encrypt in place.");
1642 goto error_unencrypted;
1643 }
1644 }
1645
Ken Sumrall5d4c68e2011-01-30 19:06:03 -08001646 /* Get a wakelock as this may take a while, and we don't want the
1647 * device to sleep on us. We'll grab a partial wakelock, and if the UI
1648 * wants to keep the screen on, it can grab a full wakelock.
1649 */
Ken Sumrall29d8da82011-05-18 17:20:07 -07001650 snprintf(lockid, sizeof(lockid), "enablecrypto%d", (int) getpid());
Ken Sumrall5d4c68e2011-01-30 19:06:03 -08001651 acquire_wake_lock(PARTIAL_WAKE_LOCK, lockid);
1652
Jeff Sharkey7382f812012-08-23 14:08:59 -07001653 /* Get the sdcard mount point */
Jeff Sharkeyb77bc462012-10-01 14:36:26 -07001654 sd_mnt_point = getenv("EMULATED_STORAGE_SOURCE");
Jeff Sharkey7382f812012-08-23 14:08:59 -07001655 if (!sd_mnt_point) {
1656 sd_mnt_point = getenv("EXTERNAL_STORAGE");
1657 }
1658 if (!sd_mnt_point) {
1659 sd_mnt_point = "/mnt/sdcard";
1660 }
Ken Sumrall29d8da82011-05-18 17:20:07 -07001661
1662 num_vols=vold_getNumDirectVolumes();
1663 vol_list = malloc(sizeof(struct volume_info) * num_vols);
1664 vold_getDirectVolumeList(vol_list);
1665
1666 for (i=0; i<num_vols; i++) {
1667 if (should_encrypt(&vol_list[i])) {
1668 fd = open(vol_list[i].blk_dev, O_RDONLY);
1669 if ( (vol_list[i].size = get_blkdev_size(fd)) == 0) {
1670 SLOGE("Cannot get size of block device %s\n", vol_list[i].blk_dev);
1671 goto error_unencrypted;
1672 }
1673 close(fd);
1674
Ken Sumrall3b170052011-07-11 15:38:57 -07001675 ret=vold_disableVol(vol_list[i].label);
Ken Sumrall319b1042011-06-14 14:01:55 -07001676 if ((ret < 0) && (ret != UNMOUNT_NOT_MOUNTED_ERR)) {
1677 /* -2 is returned when the device exists but is not currently mounted.
1678 * ignore the error and continue. */
Ken Sumrall29d8da82011-05-18 17:20:07 -07001679 SLOGE("Failed to unmount volume %s\n", vol_list[i].label);
1680 goto error_unencrypted;
1681 }
1682 }
1683 }
1684
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001685 /* The init files are setup to stop the class main and late start when
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001686 * vold sets trigger_shutdown_framework.
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001687 */
1688 property_set("vold.decrypt", "trigger_shutdown_framework");
1689 SLOGD("Just asked init to shut down class main\n");
1690
Ken Sumrall425524d2012-06-14 20:55:28 -07001691 if (vold_unmountAllAsecs()) {
1692 /* Just report the error. If any are left mounted,
1693 * umounting /data below will fail and handle the error.
1694 */
1695 SLOGE("Error unmounting internal asecs");
1696 }
1697
Ken Sumrall29d8da82011-05-18 17:20:07 -07001698 property_get("ro.crypto.fuse_sdcard", fuse_sdcard, "");
1699 if (!strcmp(fuse_sdcard, "true")) {
1700 /* This is a device using the fuse layer to emulate the sdcard semantics
1701 * on top of the userdata partition. vold does not manage it, it is managed
1702 * by the sdcard service. The sdcard service was killed by the property trigger
1703 * above, so just unmount it now. We must do this _AFTER_ killing the framework,
1704 * unlike the case for vold managed devices above.
1705 */
1706 if (wait_and_unmount(sd_mnt_point)) {
1707 goto error_shutting_down;
1708 }
Ken Sumrall2eaf7132011-01-14 12:45:48 -08001709 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001710
1711 /* Now unmount the /data partition. */
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001712 if (wait_and_unmount(DATA_MNT_POINT)) {
JP Abgrall502dc742013-11-01 13:06:20 -07001713 if (allow_reboot) {
1714 goto error_shutting_down;
1715 } else {
1716 goto error_unencrypted;
1717 }
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001718 }
1719
1720 /* Do extra work for a better UX when doing the long inplace encryption */
1721 if (how == CRYPTO_ENABLE_INPLACE) {
1722 /* Now that /data is unmounted, we need to mount a tmpfs
1723 * /data, set a property saying we're doing inplace encryption,
1724 * and restart the framework.
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001725 */
Ken Sumralle5032c42012-04-01 23:58:44 -07001726 if (fs_mgr_do_tmpfs_mount(DATA_MNT_POINT)) {
Ken Sumrall3ed82362011-01-28 23:31:16 -08001727 goto error_shutting_down;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001728 }
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001729 /* Tells the framework that inplace encryption is starting */
Ken Sumrall7df84122011-01-18 14:04:08 -08001730 property_set("vold.encrypt_progress", "0");
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001731
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001732 /* restart the framework. */
1733 /* Create necessary paths on /data */
1734 if (prep_data_fs()) {
Ken Sumrall3ed82362011-01-28 23:31:16 -08001735 goto error_shutting_down;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001736 }
1737
Ken Sumrall92736ef2012-10-17 20:57:14 -07001738 /* Ugh, shutting down the framework is not synchronous, so until it
1739 * can be fixed, this horrible hack will wait a moment for it all to
1740 * shut down before proceeding. Without it, some devices cannot
1741 * restart the graphics services.
1742 */
1743 sleep(2);
1744
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001745 /* startup service classes main and late_start */
1746 property_set("vold.decrypt", "trigger_restart_min_framework");
1747 SLOGD("Just triggered restart_min_framework\n");
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001748
Ken Sumrall7df84122011-01-18 14:04:08 -08001749 /* OK, the framework is restarted and will soon be showing a
1750 * progress bar. Time to setup an encrypted mapping, and
1751 * either write a new filesystem, or encrypt in place updating
1752 * the progress bar as we work.
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001753 */
1754 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001755
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001756 /* Start the actual work of making an encrypted filesystem */
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001757 /* Initialize a crypt_mnt_ftr for the partition */
1758 cryptfs_init_crypt_mnt_ftr(&crypt_ftr);
Ken Sumrall160b4d62013-04-22 12:15:39 -07001759
Ken Sumrall29d8da82011-05-18 17:20:07 -07001760 if (!strcmp(key_loc, KEY_IN_FOOTER)) {
1761 crypt_ftr.fs_size = nr_sec - (CRYPT_FOOTER_OFFSET / 512);
1762 } else {
1763 crypt_ftr.fs_size = nr_sec;
1764 }
Ken Sumralld33d4172011-02-01 00:49:13 -08001765 crypt_ftr.flags |= CRYPT_ENCRYPTION_IN_PROGRESS;
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001766 strcpy((char *)crypt_ftr.crypto_type_name, "aes-cbc-essiv:sha256");
1767
1768 /* Make an encrypted master key */
Kenny Rootc4c70f12013-06-14 12:11:38 -07001769 if (create_encrypted_random_key(passwd, crypt_ftr.master_key, crypt_ftr.salt, &crypt_ftr)) {
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001770 SLOGE("Cannot create encrypted master key\n");
JP Abgrall502dc742013-11-01 13:06:20 -07001771 goto error_shutting_down;
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001772 }
1773
1774 /* Write the key to the end of the partition */
Ken Sumrall160b4d62013-04-22 12:15:39 -07001775 put_crypt_ftr_and_key(&crypt_ftr);
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001776
Ken Sumrall160b4d62013-04-22 12:15:39 -07001777 /* If any persistent data has been remembered, save it.
1778 * If none, create a valid empty table and save that.
1779 */
1780 if (!persist_data) {
1781 pdata = malloc(CRYPT_PERSIST_DATA_SIZE);
1782 if (pdata) {
1783 init_empty_persist_data(pdata, CRYPT_PERSIST_DATA_SIZE);
1784 persist_data = pdata;
1785 }
1786 }
1787 if (persist_data) {
1788 save_persistent_data();
1789 }
1790
JP Abgrall7bdfa522013-11-15 13:42:56 -08001791 decrypt_master_key(passwd, decrypted_master_key, &crypt_ftr);
Ken Sumrall29d8da82011-05-18 17:20:07 -07001792 create_crypto_blk_dev(&crypt_ftr, decrypted_master_key, real_blkdev, crypto_blkdev,
1793 "userdata");
1794
Ken Sumrall128626f2011-06-28 18:45:14 -07001795 /* The size of the userdata partition, and add in the vold volumes below */
1796 tot_encryption_size = crypt_ftr.fs_size;
1797
Ken Sumrall29d8da82011-05-18 17:20:07 -07001798 /* setup crypto mapping for all encryptable volumes handled by vold */
1799 for (i=0; i<num_vols; i++) {
1800 if (should_encrypt(&vol_list[i])) {
1801 vol_list[i].crypt_ftr = crypt_ftr; /* gotta love struct assign */
1802 vol_list[i].crypt_ftr.fs_size = vol_list[i].size;
1803 create_crypto_blk_dev(&vol_list[i].crypt_ftr, decrypted_master_key,
1804 vol_list[i].blk_dev, vol_list[i].crypto_blkdev,
1805 vol_list[i].label);
Ken Sumrall128626f2011-06-28 18:45:14 -07001806 tot_encryption_size += vol_list[i].size;
Ken Sumrall29d8da82011-05-18 17:20:07 -07001807 }
1808 }
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001809
1810 if (how == CRYPTO_ENABLE_WIPE) {
Ken Sumrall29d8da82011-05-18 17:20:07 -07001811 rc = cryptfs_enable_wipe(crypto_blkdev, crypt_ftr.fs_size, EXT4_FS);
1812 /* Encrypt all encryptable volumes handled by vold */
1813 if (!rc) {
1814 for (i=0; i<num_vols; i++) {
1815 if (should_encrypt(&vol_list[i])) {
1816 rc = cryptfs_enable_wipe(vol_list[i].crypto_blkdev,
1817 vol_list[i].crypt_ftr.fs_size, FAT_FS);
1818 }
1819 }
1820 }
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001821 } else if (how == CRYPTO_ENABLE_INPLACE) {
Ken Sumrall29d8da82011-05-18 17:20:07 -07001822 rc = cryptfs_enable_inplace(crypto_blkdev, real_blkdev, crypt_ftr.fs_size,
1823 &cur_encryption_done, tot_encryption_size);
1824 /* Encrypt all encryptable volumes handled by vold */
1825 if (!rc) {
1826 for (i=0; i<num_vols; i++) {
1827 if (should_encrypt(&vol_list[i])) {
1828 rc = cryptfs_enable_inplace(vol_list[i].crypto_blkdev,
1829 vol_list[i].blk_dev,
1830 vol_list[i].crypt_ftr.fs_size,
1831 &cur_encryption_done, tot_encryption_size);
1832 }
1833 }
1834 }
1835 if (!rc) {
1836 /* The inplace routine never actually sets the progress to 100%
1837 * due to the round down nature of integer division, so set it here */
1838 property_set("vold.encrypt_progress", "100");
1839 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001840 } else {
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001841 /* Shouldn't happen */
1842 SLOGE("cryptfs_enable: internal error, unknown option\n");
JP Abgrall502dc742013-11-01 13:06:20 -07001843 goto error_shutting_down;
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001844 }
1845
1846 /* Undo the dm-crypt mapping whether we succeed or not */
Ken Sumrall29d8da82011-05-18 17:20:07 -07001847 delete_crypto_blk_dev("userdata");
1848 for (i=0; i<num_vols; i++) {
1849 if (should_encrypt(&vol_list[i])) {
1850 delete_crypto_blk_dev(vol_list[i].label);
1851 }
1852 }
1853
1854 free(vol_list);
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001855
1856 if (! rc) {
1857 /* Success */
Ken Sumrall7f7dbaa2011-02-01 15:46:41 -08001858
Ken Sumralld33d4172011-02-01 00:49:13 -08001859 /* Clear the encryption in progres flag in the footer */
1860 crypt_ftr.flags &= ~CRYPT_ENCRYPTION_IN_PROGRESS;
Ken Sumrall160b4d62013-04-22 12:15:39 -07001861 put_crypt_ftr_and_key(&crypt_ftr);
Ken Sumralld33d4172011-02-01 00:49:13 -08001862
Ken Sumrall29d8da82011-05-18 17:20:07 -07001863 sleep(2); /* Give the UI a chance to show 100% progress */
Ken Sumralladfba362013-06-04 16:37:52 -07001864 cryptfs_reboot(0);
Ken Sumrall3ed82362011-01-28 23:31:16 -08001865 } else {
Mike Lockwoodee6d8c42012-02-15 13:43:28 -08001866 char value[PROPERTY_VALUE_MAX];
1867
Ken Sumrall319369a2012-06-27 16:30:18 -07001868 property_get("ro.vold.wipe_on_crypt_fail", value, "0");
Mike Lockwoodee6d8c42012-02-15 13:43:28 -08001869 if (!strcmp(value, "1")) {
1870 /* wipe data if encryption failed */
1871 SLOGE("encryption failed - rebooting into recovery to wipe data\n");
1872 mkdir("/cache/recovery", 0700);
Nick Kralevich4684e582012-06-26 15:07:03 -07001873 int fd = open("/cache/recovery/command", O_RDWR|O_CREAT|O_TRUNC, 0600);
Mike Lockwoodee6d8c42012-02-15 13:43:28 -08001874 if (fd >= 0) {
1875 write(fd, "--wipe_data", strlen("--wipe_data") + 1);
1876 close(fd);
1877 } else {
1878 SLOGE("could not open /cache/recovery/command\n");
1879 }
Ken Sumralladfba362013-06-04 16:37:52 -07001880 cryptfs_reboot(1);
Mike Lockwoodee6d8c42012-02-15 13:43:28 -08001881 } else {
1882 /* set property to trigger dialog */
1883 property_set("vold.encrypt_progress", "error_partially_encrypted");
1884 release_wake_lock(lockid);
1885 }
Ken Sumrall3ed82362011-01-28 23:31:16 -08001886 return -1;
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001887 }
1888
Ken Sumrall3ed82362011-01-28 23:31:16 -08001889 /* hrm, the encrypt step claims success, but the reboot failed.
1890 * This should not happen.
1891 * Set the property and return. Hope the framework can deal with it.
1892 */
1893 property_set("vold.encrypt_progress", "error_reboot_failed");
Ken Sumrall5d4c68e2011-01-30 19:06:03 -08001894 release_wake_lock(lockid);
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001895 return rc;
Ken Sumrall3ed82362011-01-28 23:31:16 -08001896
1897error_unencrypted:
Ken Sumrall29d8da82011-05-18 17:20:07 -07001898 free(vol_list);
Ken Sumrall3ed82362011-01-28 23:31:16 -08001899 property_set("vold.encrypt_progress", "error_not_encrypted");
Ken Sumrall5d4c68e2011-01-30 19:06:03 -08001900 if (lockid[0]) {
1901 release_wake_lock(lockid);
1902 }
Ken Sumrall3ed82362011-01-28 23:31:16 -08001903 return -1;
1904
1905error_shutting_down:
1906 /* we failed, and have not encrypted anthing, so the users's data is still intact,
1907 * but the framework is stopped and not restarted to show the error, so it's up to
1908 * vold to restart the system.
1909 */
1910 SLOGE("Error enabling encryption after framework is shutdown, no data changed, restarting system");
Ken Sumralladfba362013-06-04 16:37:52 -07001911 cryptfs_reboot(0);
Ken Sumrall3ed82362011-01-28 23:31:16 -08001912
1913 /* shouldn't get here */
1914 property_set("vold.encrypt_progress", "error_shutting_down");
Ken Sumrall29d8da82011-05-18 17:20:07 -07001915 free(vol_list);
Ken Sumrall5d4c68e2011-01-30 19:06:03 -08001916 if (lockid[0]) {
1917 release_wake_lock(lockid);
1918 }
Ken Sumrall3ed82362011-01-28 23:31:16 -08001919 return -1;
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001920}
1921
Jason parks70a4b3f2011-01-28 10:10:47 -06001922int cryptfs_changepw(char *newpw)
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001923{
1924 struct crypt_mnt_ftr crypt_ftr;
Ken Sumrall160b4d62013-04-22 12:15:39 -07001925 unsigned char decrypted_master_key[KEY_LEN_BYTES];
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001926
1927 /* This is only allowed after we've successfully decrypted the master key */
Jason parks70a4b3f2011-01-28 10:10:47 -06001928 if (! master_key_saved) {
Ken Sumrall0cc16632011-01-18 20:32:26 -08001929 SLOGE("Key not saved, aborting");
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001930 return -1;
1931 }
1932
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001933 /* get key */
Ken Sumrall160b4d62013-04-22 12:15:39 -07001934 if (get_crypt_ftr_and_key(&crypt_ftr)) {
Ken Sumrall57b63e62011-01-17 18:29:19 -08001935 SLOGE("Error getting crypt footer and key");
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001936 return -1;
1937 }
1938
Kenny Rootc4c70f12013-06-14 12:11:38 -07001939 encrypt_master_key(newpw, crypt_ftr.salt, saved_master_key, crypt_ftr.master_key, &crypt_ftr);
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001940
Jason parks70a4b3f2011-01-28 10:10:47 -06001941 /* save the key */
Ken Sumrall160b4d62013-04-22 12:15:39 -07001942 put_crypt_ftr_and_key(&crypt_ftr);
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001943
1944 return 0;
1945}
Ken Sumrall160b4d62013-04-22 12:15:39 -07001946
1947static int persist_get_key(char *fieldname, char *value)
1948{
1949 unsigned int i;
1950
1951 if (persist_data == NULL) {
1952 return -1;
1953 }
1954 for (i = 0; i < persist_data->persist_valid_entries; i++) {
1955 if (!strncmp(persist_data->persist_entry[i].key, fieldname, PROPERTY_KEY_MAX)) {
1956 /* We found it! */
1957 strlcpy(value, persist_data->persist_entry[i].val, PROPERTY_VALUE_MAX);
1958 return 0;
1959 }
1960 }
1961
1962 return -1;
1963}
1964
1965static int persist_set_key(char *fieldname, char *value, int encrypted)
1966{
1967 unsigned int i;
1968 unsigned int num;
1969 struct crypt_mnt_ftr crypt_ftr;
1970 unsigned int max_persistent_entries;
1971 unsigned int dsize;
1972
1973 if (persist_data == NULL) {
1974 return -1;
1975 }
1976
1977 /* If encrypted, use the values from the crypt_ftr, otherwise
1978 * use the values for the current spec.
1979 */
1980 if (encrypted) {
1981 if(get_crypt_ftr_and_key(&crypt_ftr)) {
1982 return -1;
1983 }
1984 dsize = crypt_ftr.persist_data_size;
1985 } else {
1986 dsize = CRYPT_PERSIST_DATA_SIZE;
1987 }
1988 max_persistent_entries = (dsize - sizeof(struct crypt_persist_data)) /
1989 sizeof(struct crypt_persist_entry);
1990
1991 num = persist_data->persist_valid_entries;
1992
1993 for (i = 0; i < num; i++) {
1994 if (!strncmp(persist_data->persist_entry[i].key, fieldname, PROPERTY_KEY_MAX)) {
1995 /* We found an existing entry, update it! */
1996 memset(persist_data->persist_entry[i].val, 0, PROPERTY_VALUE_MAX);
1997 strlcpy(persist_data->persist_entry[i].val, value, PROPERTY_VALUE_MAX);
1998 return 0;
1999 }
2000 }
2001
2002 /* We didn't find it, add it to the end, if there is room */
2003 if (persist_data->persist_valid_entries < max_persistent_entries) {
2004 memset(&persist_data->persist_entry[num], 0, sizeof(struct crypt_persist_entry));
2005 strlcpy(persist_data->persist_entry[num].key, fieldname, PROPERTY_KEY_MAX);
2006 strlcpy(persist_data->persist_entry[num].val, value, PROPERTY_VALUE_MAX);
2007 persist_data->persist_valid_entries++;
2008 return 0;
2009 }
2010
2011 return -1;
2012}
2013
2014/* Return the value of the specified field. */
2015int cryptfs_getfield(char *fieldname, char *value, int len)
2016{
2017 char temp_value[PROPERTY_VALUE_MAX];
2018 char real_blkdev[MAXPATHLEN];
2019 /* 0 is success, 1 is not encrypted,
2020 * -1 is value not set, -2 is any other error
2021 */
2022 int rc = -2;
2023
2024 if (persist_data == NULL) {
2025 load_persistent_data();
2026 if (persist_data == NULL) {
2027 SLOGE("Getfield error, cannot load persistent data");
2028 goto out;
2029 }
2030 }
2031
2032 if (!persist_get_key(fieldname, temp_value)) {
2033 /* We found it, copy it to the caller's buffer and return */
2034 strlcpy(value, temp_value, len);
2035 rc = 0;
2036 } else {
2037 /* Sadness, it's not there. Return the error */
2038 rc = -1;
2039 }
2040
2041out:
2042 return rc;
2043}
2044
2045/* Set the value of the specified field. */
2046int cryptfs_setfield(char *fieldname, char *value)
2047{
2048 struct crypt_persist_data stored_pdata;
2049 struct crypt_persist_data *pdata_p;
2050 struct crypt_mnt_ftr crypt_ftr;
2051 char encrypted_state[PROPERTY_VALUE_MAX];
2052 /* 0 is success, -1 is an error */
2053 int rc = -1;
2054 int encrypted = 0;
2055
2056 if (persist_data == NULL) {
2057 load_persistent_data();
2058 if (persist_data == NULL) {
2059 SLOGE("Setfield error, cannot load persistent data");
2060 goto out;
2061 }
2062 }
2063
2064 property_get("ro.crypto.state", encrypted_state, "");
2065 if (!strcmp(encrypted_state, "encrypted") ) {
2066 encrypted = 1;
2067 }
2068
2069 if (persist_set_key(fieldname, value, encrypted)) {
2070 goto out;
2071 }
2072
2073 /* If we are running encrypted, save the persistent data now */
2074 if (encrypted) {
2075 if (save_persistent_data()) {
2076 SLOGE("Setfield error, cannot save persistent data");
2077 goto out;
2078 }
2079 }
2080
2081 rc = 0;
2082
2083out:
2084 return rc;
2085}