blob: c1020cd47e5773341683d788d6211103ad5b8a54 [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>
Adam Langley41405bb2015-01-22 16:45:28 -080039#include <openssl/sha.h>
Ken Sumrall8f869aa2010-12-03 03:47:09 -080040#include <errno.h>
Ken Sumrall3ed82362011-01-28 23:31:16 -080041#include <ext4.h>
Ken Sumrall29d8da82011-05-18 17:20:07 -070042#include <linux/kdev_t.h>
Ken Sumralle5032c42012-04-01 23:58:44 -070043#include <fs_mgr.h>
Paul Lawrence9c58a872014-09-30 09:12:51 -070044#include <time.h>
Rubin Xu85c01f92014-10-13 12:49:54 +010045#include <math.h>
Jeff Vander Stoepdf725752016-01-29 15:34:43 -080046#include <selinux/selinux.h>
Ken Sumrall8f869aa2010-12-03 03:47:09 -080047#include "cryptfs.h"
Jeff Vander Stoepdf725752016-01-29 15:34:43 -080048#include "secontext.h"
Ken Sumrall8f869aa2010-12-03 03:47:09 -080049#define LOG_TAG "Cryptfs"
50#include "cutils/log.h"
51#include "cutils/properties.h"
Ken Sumralladfba362013-06-04 16:37:52 -070052#include "cutils/android_reboot.h"
Ken Sumrall5d4c68e2011-01-30 19:06:03 -080053#include "hardware_legacy/power.h"
Ken Sumralle550f782013-08-20 13:48:23 -070054#include <logwrap/logwrap.h>
Ken Sumrall29d8da82011-05-18 17:20:07 -070055#include "VolumeManager.h"
Ken Sumrall9caab762013-06-11 19:10:20 -070056#include "VoldUtil.h"
Kenny Rootc4c70f12013-06-14 12:11:38 -070057#include "crypto_scrypt.h"
Paul Lawrence731a7a22015-04-28 22:14:15 +000058#include "Ext4Crypt.h"
59#include "ext4_crypt_init_extensions.h"
Paul Lawrenceae59fe62014-01-21 08:23:27 -080060#include "ext4_utils.h"
Daniel Rosenberge82df162014-08-15 22:19:23 +000061#include "f2fs_sparseblock.h"
Paul Lawrence87999172014-02-20 12:21:31 -080062#include "CheckBattery.h"
jessica_yu3f14fe42014-09-22 15:57:40 +080063#include "Process.h"
Ken Sumrall8f869aa2010-12-03 03:47:09 -080064
Shawn Willden8af33352015-02-24 09:51:34 -070065#include <hardware/keymaster0.h>
Shawn Willdenda6e8992015-06-03 09:40:45 -060066#include <hardware/keymaster1.h>
Paul Lawrence69f4ebd2014-04-14 12:17:14 -070067
Mark Salyzyn3e971272014-01-21 13:27:04 -080068#define UNUSED __attribute__((unused))
69
Mark Salyzyn5eecc442014-02-12 14:16:14 -080070#define UNUSED __attribute__((unused))
71
Ajay Dudani87701e22014-09-17 21:02:52 -070072#ifdef CONFIG_HW_DISK_ENCRYPTION
73#include "cryptfs_hw.h"
74#endif
75
Ken Sumrall8f869aa2010-12-03 03:47:09 -080076#define DM_CRYPT_BUF_SIZE 4096
77
Jason parks70a4b3f2011-01-28 10:10:47 -060078#define HASH_COUNT 2000
79#define KEY_LEN_BYTES 16
80#define IV_LEN_BYTES 16
81
Ken Sumrall29d8da82011-05-18 17:20:07 -070082#define KEY_IN_FOOTER "footer"
83
Paul Lawrence3bd36d52015-06-09 13:37:44 -070084#define DEFAULT_PASSWORD "default_password"
Paul Lawrencef4faa572014-01-29 13:31:03 -080085
Paul Lawrence3d99eba2015-11-20 07:07:19 -080086#define CRYPTO_BLOCK_DEVICE "userdata"
87
88#define BREADCRUMB_FILE "/data/misc/vold/convert_fde"
89
Ken Sumrall29d8da82011-05-18 17:20:07 -070090#define EXT4_FS 1
JP Abgrall62c7af32014-06-16 13:01:23 -070091#define F2FS_FS 2
Ken Sumrall29d8da82011-05-18 17:20:07 -070092
Ken Sumralle919efe2012-09-29 17:07:41 -070093#define TABLE_LOAD_RETRIES 10
94
Shawn Willden47ba10d2014-09-03 17:07:06 -060095#define RSA_KEY_SIZE 2048
96#define RSA_KEY_SIZE_BYTES (RSA_KEY_SIZE / 8)
97#define RSA_EXPONENT 0x10001
Shawn Willdenda6e8992015-06-03 09:40:45 -060098#define KEYMASTER_CRYPTFS_RATE_LIMIT 1 // Maximum one try per second
Paul Lawrence69f4ebd2014-04-14 12:17:14 -070099
Paul Lawrence8e3f4512014-09-08 10:11:17 -0700100#define RETRY_MOUNT_ATTEMPTS 10
101#define RETRY_MOUNT_DELAY_SECONDS 1
102
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800103char *me = "cryptfs";
104
Jason parks70a4b3f2011-01-28 10:10:47 -0600105static unsigned char saved_master_key[KEY_LEN_BYTES];
Ken Sumrall3ad90722011-10-04 20:38:29 -0700106static char *saved_mount_point;
Jason parks70a4b3f2011-01-28 10:10:47 -0600107static int master_key_saved = 0;
Ken Sumrall160b4d62013-04-22 12:15:39 -0700108static struct crypt_persist_data *persist_data = NULL;
Ken Sumrall56ad03c2013-02-13 13:00:19 -0800109
Shawn Willdenda6e8992015-06-03 09:40:45 -0600110static int keymaster_init(keymaster0_device_t **keymaster0_dev,
111 keymaster1_device_t **keymaster1_dev)
Paul Lawrence69f4ebd2014-04-14 12:17:14 -0700112{
113 int rc;
114
115 const hw_module_t* mod;
116 rc = hw_get_module_by_class(KEYSTORE_HARDWARE_MODULE_ID, NULL, &mod);
117 if (rc) {
118 ALOGE("could not find any keystore module");
Shawn Willdenda6e8992015-06-03 09:40:45 -0600119 goto err;
Paul Lawrence69f4ebd2014-04-14 12:17:14 -0700120 }
121
Shawn Willdenda6e8992015-06-03 09:40:45 -0600122 SLOGI("keymaster module name is %s", mod->name);
123 SLOGI("keymaster version is %d", mod->module_api_version);
124
125 *keymaster0_dev = NULL;
126 *keymaster1_dev = NULL;
127 if (mod->module_api_version == KEYMASTER_MODULE_API_VERSION_1_0) {
128 SLOGI("Found keymaster1 module, using keymaster1 API.");
129 rc = keymaster1_open(mod, keymaster1_dev);
130 } else {
131 SLOGI("Found keymaster0 module, using keymaster0 API.");
132 rc = keymaster0_open(mod, keymaster0_dev);
133 }
134
Paul Lawrence69f4ebd2014-04-14 12:17:14 -0700135 if (rc) {
136 ALOGE("could not open keymaster device in %s (%s)",
Shawn Willdenda6e8992015-06-03 09:40:45 -0600137 KEYSTORE_HARDWARE_MODULE_ID, strerror(-rc));
138 goto err;
Paul Lawrence69f4ebd2014-04-14 12:17:14 -0700139 }
140
141 return 0;
142
Shawn Willdenda6e8992015-06-03 09:40:45 -0600143err:
144 *keymaster0_dev = NULL;
145 *keymaster1_dev = NULL;
Paul Lawrence69f4ebd2014-04-14 12:17:14 -0700146 return rc;
147}
148
149/* Should we use keymaster? */
150static int keymaster_check_compatibility()
151{
Shawn Willdenda6e8992015-06-03 09:40:45 -0600152 keymaster0_device_t *keymaster0_dev = 0;
153 keymaster1_device_t *keymaster1_dev = 0;
Paul Lawrence69f4ebd2014-04-14 12:17:14 -0700154 int rc = 0;
155
Shawn Willdenda6e8992015-06-03 09:40:45 -0600156 if (keymaster_init(&keymaster0_dev, &keymaster1_dev)) {
Paul Lawrence69f4ebd2014-04-14 12:17:14 -0700157 SLOGE("Failed to init keymaster");
158 rc = -1;
159 goto out;
160 }
161
Shawn Willdenda6e8992015-06-03 09:40:45 -0600162 if (keymaster1_dev) {
163 rc = 1;
164 goto out;
165 }
Paul Lawrence8c008392014-05-06 14:02:48 -0700166
Shawn Willdenda6e8992015-06-03 09:40:45 -0600167 // TODO(swillden): Check to see if there's any reason to require v0.3. I think v0.1 and v0.2
168 // should work.
169 if (keymaster0_dev->common.module->module_api_version
Paul Lawrence8c008392014-05-06 14:02:48 -0700170 < KEYMASTER_MODULE_API_VERSION_0_3) {
171 rc = 0;
172 goto out;
173 }
174
Shawn Willdenda6e8992015-06-03 09:40:45 -0600175 if (!(keymaster0_dev->flags & KEYMASTER_SOFTWARE_ONLY) &&
176 (keymaster0_dev->flags & KEYMASTER_BLOBS_ARE_STANDALONE)) {
Paul Lawrence69f4ebd2014-04-14 12:17:14 -0700177 rc = 1;
178 }
179
180out:
Shawn Willdenda6e8992015-06-03 09:40:45 -0600181 if (keymaster1_dev) {
182 keymaster1_close(keymaster1_dev);
183 }
184 if (keymaster0_dev) {
185 keymaster0_close(keymaster0_dev);
186 }
Paul Lawrence69f4ebd2014-04-14 12:17:14 -0700187 return rc;
188}
189
190/* Create a new keymaster key and store it in this footer */
191static int keymaster_create_key(struct crypt_mnt_ftr *ftr)
192{
193 uint8_t* key = 0;
Shawn Willdenda6e8992015-06-03 09:40:45 -0600194 keymaster0_device_t *keymaster0_dev = 0;
195 keymaster1_device_t *keymaster1_dev = 0;
Paul Lawrence69f4ebd2014-04-14 12:17:14 -0700196
Paul Lawrence3d99eba2015-11-20 07:07:19 -0800197 if (ftr->keymaster_blob_size) {
198 SLOGI("Already have key");
199 return 0;
200 }
201
Shawn Willdenda6e8992015-06-03 09:40:45 -0600202 if (keymaster_init(&keymaster0_dev, &keymaster1_dev)) {
Paul Lawrence69f4ebd2014-04-14 12:17:14 -0700203 SLOGE("Failed to init keymaster");
204 return -1;
205 }
206
207 int rc = 0;
Shawn Willdenda6e8992015-06-03 09:40:45 -0600208 size_t key_size = 0;
209 if (keymaster1_dev) {
210 keymaster_key_param_t params[] = {
211 /* Algorithm & size specifications. Stick with RSA for now. Switch to AES later. */
212 keymaster_param_enum(KM_TAG_ALGORITHM, KM_ALGORITHM_RSA),
213 keymaster_param_int(KM_TAG_KEY_SIZE, RSA_KEY_SIZE),
214 keymaster_param_long(KM_TAG_RSA_PUBLIC_EXPONENT, RSA_EXPONENT),
Paul Lawrence69f4ebd2014-04-14 12:17:14 -0700215
Shawn Willden86af3552015-06-24 07:21:54 -0700216 /* The only allowed purpose for this key is signing. */
217 keymaster_param_enum(KM_TAG_PURPOSE, KM_PURPOSE_SIGN),
218
219 /* Padding & digest specifications. */
Shawn Willdenda6e8992015-06-03 09:40:45 -0600220 keymaster_param_enum(KM_TAG_PADDING, KM_PAD_NONE),
Shawn Willdenda6e8992015-06-03 09:40:45 -0600221 keymaster_param_enum(KM_TAG_DIGEST, KM_DIGEST_NONE),
Paul Lawrence69f4ebd2014-04-14 12:17:14 -0700222
Shawn Willdenda6e8992015-06-03 09:40:45 -0600223 /* Require that the key be usable in standalone mode. File system isn't available. */
224 keymaster_param_enum(KM_TAG_BLOB_USAGE_REQUIREMENTS, KM_BLOB_STANDALONE),
225
226 /* No auth requirements, because cryptfs is not yet integrated with gatekeeper. */
227 keymaster_param_bool(KM_TAG_NO_AUTH_REQUIRED),
228
Shawn Willdenda6e8992015-06-03 09:40:45 -0600229 /* Rate-limit key usage attempts, to rate-limit brute force */
230 keymaster_param_int(KM_TAG_MIN_SECONDS_BETWEEN_OPS, KEYMASTER_CRYPTFS_RATE_LIMIT),
231 };
232 keymaster_key_param_set_t param_set = { params, sizeof(params)/sizeof(*params) };
233 keymaster_key_blob_t key_blob;
234 keymaster_error_t error = keymaster1_dev->generate_key(keymaster1_dev, &param_set,
235 &key_blob,
236 NULL /* characteristics */);
237 if (error != KM_ERROR_OK) {
238 SLOGE("Failed to generate keymaster1 key, error %d", error);
239 rc = -1;
240 goto out;
241 }
242
243 key = (uint8_t*)key_blob.key_material;
244 key_size = key_blob.key_material_size;
245 }
246 else if (keymaster0_dev) {
247 keymaster_rsa_keygen_params_t params;
248 memset(&params, '\0', sizeof(params));
249 params.public_exponent = RSA_EXPONENT;
250 params.modulus_size = RSA_KEY_SIZE;
251
252 if (keymaster0_dev->generate_keypair(keymaster0_dev, TYPE_RSA, &params,
253 &key, &key_size)) {
254 SLOGE("Failed to generate keypair");
255 rc = -1;
256 goto out;
257 }
258 } else {
259 SLOGE("Cryptfs bug: keymaster_init succeeded but didn't initialize a device");
Paul Lawrence69f4ebd2014-04-14 12:17:14 -0700260 rc = -1;
261 goto out;
262 }
263
264 if (key_size > KEYMASTER_BLOB_SIZE) {
265 SLOGE("Keymaster key too large for crypto footer");
266 rc = -1;
267 goto out;
268 }
269
270 memcpy(ftr->keymaster_blob, key, key_size);
271 ftr->keymaster_blob_size = key_size;
272
273out:
Shawn Willdenda6e8992015-06-03 09:40:45 -0600274 if (keymaster0_dev)
275 keymaster0_close(keymaster0_dev);
276 if (keymaster1_dev)
277 keymaster1_close(keymaster1_dev);
Paul Lawrence69f4ebd2014-04-14 12:17:14 -0700278 free(key);
279 return rc;
280}
281
Shawn Willdene17a9c42014-09-08 13:04:08 -0600282/* This signs the given object using the keymaster key. */
283static int keymaster_sign_object(struct crypt_mnt_ftr *ftr,
Shawn Willden47ba10d2014-09-03 17:07:06 -0600284 const unsigned char *object,
285 const size_t object_size,
286 unsigned char **signature,
287 size_t *signature_size)
288{
289 int rc = 0;
Shawn Willdenda6e8992015-06-03 09:40:45 -0600290 keymaster0_device_t *keymaster0_dev = 0;
291 keymaster1_device_t *keymaster1_dev = 0;
292 if (keymaster_init(&keymaster0_dev, &keymaster1_dev)) {
Shawn Willden47ba10d2014-09-03 17:07:06 -0600293 SLOGE("Failed to init keymaster");
Shawn Willdenda6e8992015-06-03 09:40:45 -0600294 rc = -1;
295 goto out;
Shawn Willden47ba10d2014-09-03 17:07:06 -0600296 }
297
Shawn Willden47ba10d2014-09-03 17:07:06 -0600298 unsigned char to_sign[RSA_KEY_SIZE_BYTES];
Shawn Willdene17a9c42014-09-08 13:04:08 -0600299 size_t to_sign_size = sizeof(to_sign);
Shawn Willden47ba10d2014-09-03 17:07:06 -0600300 memset(to_sign, 0, RSA_KEY_SIZE_BYTES);
Shawn Willden47ba10d2014-09-03 17:07:06 -0600301
Shawn Willdene17a9c42014-09-08 13:04:08 -0600302 // To sign a message with RSA, the message must satisfy two
303 // constraints:
304 //
305 // 1. The message, when interpreted as a big-endian numeric value, must
306 // be strictly less than the public modulus of the RSA key. Note
307 // that because the most significant bit of the public modulus is
308 // guaranteed to be 1 (else it's an (n-1)-bit key, not an n-bit
309 // key), an n-bit message with most significant bit 0 always
310 // satisfies this requirement.
311 //
312 // 2. The message must have the same length in bits as the public
313 // modulus of the RSA key. This requirement isn't mathematically
314 // necessary, but is necessary to ensure consistency in
315 // implementations.
316 switch (ftr->kdf_type) {
Shawn Willdene17a9c42014-09-08 13:04:08 -0600317 case KDF_SCRYPT_KEYMASTER:
318 // This ensures the most significant byte of the signed message
319 // is zero. We could have zero-padded to the left instead, but
320 // this approach is slightly more robust against changes in
321 // object size. However, it's still broken (but not unusably
Shawn Willdenda6e8992015-06-03 09:40:45 -0600322 // so) because we really should be using a proper deterministic
323 // RSA padding function, such as PKCS1.
Shawn Willdene17a9c42014-09-08 13:04:08 -0600324 memcpy(to_sign + 1, object, min(RSA_KEY_SIZE_BYTES - 1, object_size));
325 SLOGI("Signing safely-padded object");
326 break;
327 default:
328 SLOGE("Unknown KDF type %d", ftr->kdf_type);
Shawn Willdenda6e8992015-06-03 09:40:45 -0600329 rc = -1;
330 goto out;
Shawn Willdene17a9c42014-09-08 13:04:08 -0600331 }
332
Shawn Willdenda6e8992015-06-03 09:40:45 -0600333 if (keymaster0_dev) {
334 keymaster_rsa_sign_params_t params;
335 params.digest_type = DIGEST_NONE;
336 params.padding_type = PADDING_NONE;
Shawn Willden47ba10d2014-09-03 17:07:06 -0600337
Shawn Willdenda6e8992015-06-03 09:40:45 -0600338 rc = keymaster0_dev->sign_data(keymaster0_dev,
339 &params,
340 ftr->keymaster_blob,
341 ftr->keymaster_blob_size,
342 to_sign,
343 to_sign_size,
344 signature,
345 signature_size);
346 goto out;
347 } else if (keymaster1_dev) {
348 keymaster_key_blob_t key = { ftr->keymaster_blob, ftr->keymaster_blob_size };
349 keymaster_key_param_t params[] = {
350 keymaster_param_enum(KM_TAG_PADDING, KM_PAD_NONE),
351 keymaster_param_enum(KM_TAG_DIGEST, KM_DIGEST_NONE),
352 };
353 keymaster_key_param_set_t param_set = { params, sizeof(params)/sizeof(*params) };
354 keymaster_operation_handle_t op_handle;
355 keymaster_error_t error = keymaster1_dev->begin(keymaster1_dev, KM_PURPOSE_SIGN, &key,
356 &param_set, NULL /* out_params */,
357 &op_handle);
Shawn Willden04170602015-06-18 12:26:59 -0600358 if (error == KM_ERROR_KEY_RATE_LIMIT_EXCEEDED) {
Shawn Willdenda6e8992015-06-03 09:40:45 -0600359 // Key usage has been rate-limited. Wait a bit and try again.
360 sleep(KEYMASTER_CRYPTFS_RATE_LIMIT);
361 error = keymaster1_dev->begin(keymaster1_dev, KM_PURPOSE_SIGN, &key,
362 &param_set, NULL /* out_params */,
363 &op_handle);
364 }
365 if (error != KM_ERROR_OK) {
366 SLOGE("Error starting keymaster signature transaction: %d", error);
367 rc = -1;
368 goto out;
369 }
370
371 keymaster_blob_t input = { to_sign, to_sign_size };
372 size_t input_consumed;
373 error = keymaster1_dev->update(keymaster1_dev, op_handle, NULL /* in_params */,
374 &input, &input_consumed, NULL /* out_params */,
375 NULL /* output */);
376 if (error != KM_ERROR_OK) {
377 SLOGE("Error sending data to keymaster signature transaction: %d", error);
378 rc = -1;
379 goto out;
380 }
381 if (input_consumed != to_sign_size) {
382 // This should never happen. If it does, it's a bug in the keymaster implementation.
383 SLOGE("Keymaster update() did not consume all data.");
384 keymaster1_dev->abort(keymaster1_dev, op_handle);
385 rc = -1;
386 goto out;
387 }
388
389 keymaster_blob_t tmp_sig;
390 error = keymaster1_dev->finish(keymaster1_dev, op_handle, NULL /* in_params */,
391 NULL /* verify signature */, NULL /* out_params */,
392 &tmp_sig);
393 if (error != KM_ERROR_OK) {
394 SLOGE("Error finishing keymaster signature transaction: %d", error);
395 rc = -1;
396 goto out;
397 }
398
399 *signature = (uint8_t*)tmp_sig.data;
400 *signature_size = tmp_sig.data_length;
401 } else {
402 SLOGE("Cryptfs bug: keymaster_init succeded but didn't initialize a device.");
403 rc = -1;
404 goto out;
405 }
406
407 out:
408 if (keymaster1_dev)
409 keymaster1_close(keymaster1_dev);
410 if (keymaster0_dev)
411 keymaster0_close(keymaster0_dev);
412
413 return rc;
Shawn Willden47ba10d2014-09-03 17:07:06 -0600414}
415
Paul Lawrence399317e2014-03-10 13:20:50 -0700416/* Store password when userdata is successfully decrypted and mounted.
417 * Cleared by cryptfs_clear_password
418 *
419 * To avoid a double prompt at boot, we need to store the CryptKeeper
420 * password and pass it to KeyGuard, which uses it to unlock KeyStore.
421 * Since the entire framework is torn down and rebuilt after encryption,
422 * we have to use a daemon or similar to store the password. Since vold
423 * is secured against IPC except from system processes, it seems a reasonable
424 * place to store this.
425 *
426 * password should be cleared once it has been used.
427 *
428 * password is aged out after password_max_age_seconds seconds.
Paul Lawrence684dbdf2014-02-07 12:07:22 -0800429 */
Paul Lawrence399317e2014-03-10 13:20:50 -0700430static char* password = 0;
431static int password_expiry_time = 0;
432static const int password_max_age_seconds = 60;
Paul Lawrence684dbdf2014-02-07 12:07:22 -0800433
Ken Sumrall56ad03c2013-02-13 13:00:19 -0800434extern struct fstab *fstab;
Ken Sumrall8ddbe402011-01-17 15:26:29 -0800435
Paul Lawrence87999172014-02-20 12:21:31 -0800436enum RebootType {reboot, recovery, shutdown};
437static void cryptfs_reboot(enum RebootType rt)
Ken Sumralladfba362013-06-04 16:37:52 -0700438{
Paul Lawrence87999172014-02-20 12:21:31 -0800439 switch(rt) {
440 case reboot:
441 property_set(ANDROID_RB_PROPERTY, "reboot");
442 break;
443
444 case recovery:
445 property_set(ANDROID_RB_PROPERTY, "reboot,recovery");
446 break;
447
448 case shutdown:
449 property_set(ANDROID_RB_PROPERTY, "shutdown");
450 break;
Ken Sumralladfba362013-06-04 16:37:52 -0700451 }
Paul Lawrence87999172014-02-20 12:21:31 -0800452
Ken Sumralladfba362013-06-04 16:37:52 -0700453 sleep(20);
454
455 /* Shouldn't get here, reboot should happen before sleep times out */
456 return;
457}
458
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800459static void ioctl_init(struct dm_ioctl *io, size_t dataSize, const char *name, unsigned flags)
460{
461 memset(io, 0, dataSize);
462 io->data_size = dataSize;
463 io->data_start = sizeof(struct dm_ioctl);
464 io->version[0] = 4;
465 io->version[1] = 0;
466 io->version[2] = 0;
467 io->flags = flags;
468 if (name) {
Marek Pola5e6b9142015-02-05 14:22:34 +0100469 strlcpy(io->name, name, sizeof(io->name));
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800470 }
471}
472
Kenny Rootc4c70f12013-06-14 12:11:38 -0700473/**
474 * Gets the default device scrypt parameters for key derivation time tuning.
475 * The parameters should lead to about one second derivation time for the
476 * given device.
477 */
478static void get_device_scrypt_params(struct crypt_mnt_ftr *ftr) {
479 const int default_params[] = SCRYPT_DEFAULTS;
480 int params[] = SCRYPT_DEFAULTS;
481 char paramstr[PROPERTY_VALUE_MAX];
482 char *token;
483 char *saveptr;
484 int i;
485
486 property_get(SCRYPT_PROP, paramstr, "");
487 if (paramstr[0] != '\0') {
488 /*
489 * The token we're looking for should be three integers separated by
490 * colons (e.g., "12:8:1"). Scan the property to make sure it matches.
491 */
Kenny Root2947e342013-08-14 15:54:49 -0700492 for (i = 0, token = strtok_r(paramstr, ":", &saveptr);
493 token != NULL && i < 3;
Kenny Rootc4c70f12013-06-14 12:11:38 -0700494 i++, token = strtok_r(NULL, ":", &saveptr)) {
495 char *endptr;
496 params[i] = strtol(token, &endptr, 10);
497
498 /*
499 * Check that there was a valid number and it's 8-bit. If not,
500 * break out and the end check will take the default values.
501 */
502 if ((*token == '\0') || (*endptr != '\0') || params[i] < 0 || params[i] > 255) {
503 break;
504 }
505 }
506
507 /*
508 * If there were not enough tokens or a token was malformed (not an
509 * integer), it will end up here and the default parameters can be
510 * taken.
511 */
512 if ((i != 3) || (token != NULL)) {
513 SLOGW("bad scrypt parameters '%s' should be like '12:8:1'; using defaults", paramstr);
514 memcpy(params, default_params, sizeof(params));
515 }
516 }
517
518 ftr->N_factor = params[0];
519 ftr->r_factor = params[1];
520 ftr->p_factor = params[2];
521}
522
Ken Sumrall3ed82362011-01-28 23:31:16 -0800523static unsigned int get_fs_size(char *dev)
524{
525 int fd, block_size;
526 struct ext4_super_block sb;
527 off64_t len;
528
Jeff Sharkeyce6a9132015-04-08 21:07:21 -0700529 if ((fd = open(dev, O_RDONLY|O_CLOEXEC)) < 0) {
Ken Sumrall3ed82362011-01-28 23:31:16 -0800530 SLOGE("Cannot open device to get filesystem size ");
531 return 0;
532 }
533
534 if (lseek64(fd, 1024, SEEK_SET) < 0) {
535 SLOGE("Cannot seek to superblock");
536 return 0;
537 }
538
539 if (read(fd, &sb, sizeof(sb)) != sizeof(sb)) {
540 SLOGE("Cannot read superblock");
541 return 0;
542 }
543
544 close(fd);
545
Daniel Rosenberge82df162014-08-15 22:19:23 +0000546 if (le32_to_cpu(sb.s_magic) != EXT4_SUPER_MAGIC) {
547 SLOGE("Not a valid ext4 superblock");
548 return 0;
549 }
Ken Sumrall3ed82362011-01-28 23:31:16 -0800550 block_size = 1024 << sb.s_log_block_size;
551 /* compute length in bytes */
552 len = ( ((off64_t)sb.s_blocks_count_hi << 32) + sb.s_blocks_count_lo) * block_size;
553
554 /* return length in sectors */
555 return (unsigned int) (len / 512);
556}
557
Ken Sumrall160b4d62013-04-22 12:15:39 -0700558static int get_crypt_ftr_info(char **metadata_fname, off64_t *off)
559{
560 static int cached_data = 0;
561 static off64_t cached_off = 0;
562 static char cached_metadata_fname[PROPERTY_VALUE_MAX] = "";
563 int fd;
564 char key_loc[PROPERTY_VALUE_MAX];
565 char real_blkdev[PROPERTY_VALUE_MAX];
Ken Sumrall160b4d62013-04-22 12:15:39 -0700566 int rc = -1;
567
568 if (!cached_data) {
569 fs_mgr_get_crypt_info(fstab, key_loc, real_blkdev, sizeof(key_loc));
570
571 if (!strcmp(key_loc, KEY_IN_FOOTER)) {
Jeff Sharkeyce6a9132015-04-08 21:07:21 -0700572 if ( (fd = open(real_blkdev, O_RDWR|O_CLOEXEC)) < 0) {
Ken Sumrall160b4d62013-04-22 12:15:39 -0700573 SLOGE("Cannot open real block device %s\n", real_blkdev);
574 return -1;
575 }
576
Hiroaki Miyazawa14eab552015-02-04 13:29:15 +0900577 unsigned long nr_sec = 0;
578 get_blkdev_size(fd, &nr_sec);
579 if (nr_sec != 0) {
Ken Sumrall160b4d62013-04-22 12:15:39 -0700580 /* If it's an encrypted Android partition, the last 16 Kbytes contain the
581 * encryption info footer and key, and plenty of bytes to spare for future
582 * growth.
583 */
584 strlcpy(cached_metadata_fname, real_blkdev, sizeof(cached_metadata_fname));
585 cached_off = ((off64_t)nr_sec * 512) - CRYPT_FOOTER_OFFSET;
586 cached_data = 1;
587 } else {
588 SLOGE("Cannot get size of block device %s\n", real_blkdev);
589 }
590 close(fd);
591 } else {
592 strlcpy(cached_metadata_fname, key_loc, sizeof(cached_metadata_fname));
593 cached_off = 0;
594 cached_data = 1;
595 }
596 }
597
598 if (cached_data) {
599 if (metadata_fname) {
600 *metadata_fname = cached_metadata_fname;
601 }
602 if (off) {
603 *off = cached_off;
604 }
605 rc = 0;
606 }
607
608 return rc;
609}
610
Paul Lawrence3d99eba2015-11-20 07:07:19 -0800611/* Set sha256 checksum in structure */
612static void set_ftr_sha(struct crypt_mnt_ftr *crypt_ftr)
613{
614 SHA256_CTX c;
615 SHA256_Init(&c);
616 memset(crypt_ftr->sha256, 0, sizeof(crypt_ftr->sha256));
617 SHA256_Update(&c, crypt_ftr, sizeof(*crypt_ftr));
618 SHA256_Final(crypt_ftr->sha256, &c);
619}
620
Ken Sumralle8744072011-01-18 22:01:55 -0800621/* key or salt can be NULL, in which case just skip writing that value. Useful to
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800622 * update the failed mount count but not change the key.
623 */
Ken Sumrall160b4d62013-04-22 12:15:39 -0700624static int put_crypt_ftr_and_key(struct crypt_mnt_ftr *crypt_ftr)
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800625{
626 int fd;
Tim Murray8439dc92014-12-15 11:56:11 -0800627 unsigned int cnt;
Ken Sumrall160b4d62013-04-22 12:15:39 -0700628 /* starting_off is set to the SEEK_SET offset
629 * where the crypto structure starts
630 */
631 off64_t starting_off;
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800632 int rc = -1;
Ken Sumrall160b4d62013-04-22 12:15:39 -0700633 char *fname = NULL;
Ken Sumrall3be890f2011-09-14 16:53:46 -0700634 struct stat statbuf;
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800635
Paul Lawrence3d99eba2015-11-20 07:07:19 -0800636 set_ftr_sha(crypt_ftr);
637
Ken Sumrall160b4d62013-04-22 12:15:39 -0700638 if (get_crypt_ftr_info(&fname, &starting_off)) {
639 SLOGE("Unable to get crypt_ftr_info\n");
640 return -1;
641 }
642 if (fname[0] != '/') {
Ken Sumralle5032c42012-04-01 23:58:44 -0700643 SLOGE("Unexpected value for crypto key location\n");
Ken Sumrall160b4d62013-04-22 12:15:39 -0700644 return -1;
645 }
Jeff Sharkeyce6a9132015-04-08 21:07:21 -0700646 if ( (fd = open(fname, O_RDWR | O_CREAT|O_CLOEXEC, 0600)) < 0) {
Ken Sumralle550f782013-08-20 13:48:23 -0700647 SLOGE("Cannot open footer file %s for put\n", fname);
Ken Sumrall160b4d62013-04-22 12:15:39 -0700648 return -1;
649 }
650
651 /* Seek to the start of the crypt footer */
652 if (lseek64(fd, starting_off, SEEK_SET) == -1) {
653 SLOGE("Cannot seek to real block device footer\n");
654 goto errout;
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800655 }
656
657 if ((cnt = write(fd, crypt_ftr, sizeof(struct crypt_mnt_ftr))) != sizeof(struct crypt_mnt_ftr)) {
658 SLOGE("Cannot write real block device footer\n");
659 goto errout;
660 }
661
Ken Sumrall3be890f2011-09-14 16:53:46 -0700662 fstat(fd, &statbuf);
663 /* If the keys are kept on a raw block device, do not try to truncate it. */
Ken Sumralle550f782013-08-20 13:48:23 -0700664 if (S_ISREG(statbuf.st_mode)) {
Ken Sumrall29d8da82011-05-18 17:20:07 -0700665 if (ftruncate(fd, 0x4000)) {
Colin Cross59846b62014-02-06 20:34:29 -0800666 SLOGE("Cannot set footer file size\n");
Ken Sumralle8744072011-01-18 22:01:55 -0800667 goto errout;
668 }
669 }
670
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800671 /* Success! */
672 rc = 0;
673
674errout:
675 close(fd);
676 return rc;
677
678}
679
Paul Lawrence3d99eba2015-11-20 07:07:19 -0800680static bool check_ftr_sha(const struct crypt_mnt_ftr *crypt_ftr)
681{
682 struct crypt_mnt_ftr copy;
683 memcpy(&copy, crypt_ftr, sizeof(copy));
684 set_ftr_sha(&copy);
685 return memcmp(copy.sha256, crypt_ftr->sha256, sizeof(copy.sha256)) == 0;
686}
687
Ken Sumrall160b4d62013-04-22 12:15:39 -0700688static inline int unix_read(int fd, void* buff, int len)
689{
690 return TEMP_FAILURE_RETRY(read(fd, buff, len));
691}
692
693static inline int unix_write(int fd, const void* buff, int len)
694{
695 return TEMP_FAILURE_RETRY(write(fd, buff, len));
696}
697
698static void init_empty_persist_data(struct crypt_persist_data *pdata, int len)
699{
700 memset(pdata, 0, len);
701 pdata->persist_magic = PERSIST_DATA_MAGIC;
702 pdata->persist_valid_entries = 0;
703}
704
705/* A routine to update the passed in crypt_ftr to the lastest version.
706 * fd is open read/write on the device that holds the crypto footer and persistent
707 * data, crypt_ftr is a pointer to the struct to be updated, and offset is the
708 * absolute offset to the start of the crypt_mnt_ftr on the passed in fd.
709 */
710static void upgrade_crypt_ftr(int fd, struct crypt_mnt_ftr *crypt_ftr, off64_t offset)
711{
Kenny Root7434b312013-06-14 11:29:53 -0700712 int orig_major = crypt_ftr->major_version;
713 int orig_minor = crypt_ftr->minor_version;
Ken Sumrall160b4d62013-04-22 12:15:39 -0700714
Kenny Root7434b312013-06-14 11:29:53 -0700715 if ((crypt_ftr->major_version == 1) && (crypt_ftr->minor_version == 0)) {
716 struct crypt_persist_data *pdata;
717 off64_t pdata_offset = offset + CRYPT_FOOTER_TO_PERSIST_OFFSET;
Ken Sumrall160b4d62013-04-22 12:15:39 -0700718
Kenny Rootc4c70f12013-06-14 12:11:38 -0700719 SLOGW("upgrading crypto footer to 1.1");
720
Kenny Root7434b312013-06-14 11:29:53 -0700721 pdata = malloc(CRYPT_PERSIST_DATA_SIZE);
722 if (pdata == NULL) {
723 SLOGE("Cannot allocate persisent data\n");
724 return;
725 }
726 memset(pdata, 0, CRYPT_PERSIST_DATA_SIZE);
727
728 /* Need to initialize the persistent data area */
729 if (lseek64(fd, pdata_offset, SEEK_SET) == -1) {
730 SLOGE("Cannot seek to persisent data offset\n");
Henrik Baard91064632015-02-05 15:09:17 +0100731 free(pdata);
Kenny Root7434b312013-06-14 11:29:53 -0700732 return;
733 }
734 /* Write all zeros to the first copy, making it invalid */
735 unix_write(fd, pdata, CRYPT_PERSIST_DATA_SIZE);
736
737 /* Write a valid but empty structure to the second copy */
738 init_empty_persist_data(pdata, CRYPT_PERSIST_DATA_SIZE);
739 unix_write(fd, pdata, CRYPT_PERSIST_DATA_SIZE);
740
741 /* Update the footer */
742 crypt_ftr->persist_data_size = CRYPT_PERSIST_DATA_SIZE;
743 crypt_ftr->persist_data_offset[0] = pdata_offset;
744 crypt_ftr->persist_data_offset[1] = pdata_offset + CRYPT_PERSIST_DATA_SIZE;
745 crypt_ftr->minor_version = 1;
Henrik Baard91064632015-02-05 15:09:17 +0100746 free(pdata);
Ken Sumrall160b4d62013-04-22 12:15:39 -0700747 }
748
Paul Lawrencef4faa572014-01-29 13:31:03 -0800749 if ((crypt_ftr->major_version == 1) && (crypt_ftr->minor_version == 1)) {
Kenny Rootc4c70f12013-06-14 12:11:38 -0700750 SLOGW("upgrading crypto footer to 1.2");
JP Abgrall7bdfa522013-11-15 13:42:56 -0800751 /* But keep the old kdf_type.
752 * It will get updated later to KDF_SCRYPT after the password has been verified.
753 */
Kenny Rootc4c70f12013-06-14 12:11:38 -0700754 crypt_ftr->kdf_type = KDF_PBKDF2;
755 get_device_scrypt_params(crypt_ftr);
756 crypt_ftr->minor_version = 2;
757 }
758
Paul Lawrencef4faa572014-01-29 13:31:03 -0800759 if ((crypt_ftr->major_version == 1) && (crypt_ftr->minor_version == 2)) {
760 SLOGW("upgrading crypto footer to 1.3");
761 crypt_ftr->crypt_type = CRYPT_TYPE_PASSWORD;
762 crypt_ftr->minor_version = 3;
763 }
764
Kenny Root7434b312013-06-14 11:29:53 -0700765 if ((orig_major != crypt_ftr->major_version) || (orig_minor != crypt_ftr->minor_version)) {
766 if (lseek64(fd, offset, SEEK_SET) == -1) {
767 SLOGE("Cannot seek to crypt footer\n");
768 return;
769 }
770 unix_write(fd, crypt_ftr, sizeof(struct crypt_mnt_ftr));
Ken Sumrall160b4d62013-04-22 12:15:39 -0700771 }
Ken Sumrall160b4d62013-04-22 12:15:39 -0700772}
773
774
775static int get_crypt_ftr_and_key(struct crypt_mnt_ftr *crypt_ftr)
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800776{
777 int fd;
Tim Murray8439dc92014-12-15 11:56:11 -0800778 unsigned int cnt;
Ken Sumrall160b4d62013-04-22 12:15:39 -0700779 off64_t starting_off;
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800780 int rc = -1;
Ken Sumrall160b4d62013-04-22 12:15:39 -0700781 char *fname = NULL;
Ken Sumrall29d8da82011-05-18 17:20:07 -0700782 struct stat statbuf;
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800783
Ken Sumrall160b4d62013-04-22 12:15:39 -0700784 if (get_crypt_ftr_info(&fname, &starting_off)) {
785 SLOGE("Unable to get crypt_ftr_info\n");
786 return -1;
787 }
788 if (fname[0] != '/') {
Ken Sumralle5032c42012-04-01 23:58:44 -0700789 SLOGE("Unexpected value for crypto key location\n");
Ken Sumrall160b4d62013-04-22 12:15:39 -0700790 return -1;
791 }
Jeff Sharkeyce6a9132015-04-08 21:07:21 -0700792 if ( (fd = open(fname, O_RDWR|O_CLOEXEC)) < 0) {
Ken Sumralle550f782013-08-20 13:48:23 -0700793 SLOGE("Cannot open footer file %s for get\n", fname);
Ken Sumrall160b4d62013-04-22 12:15:39 -0700794 return -1;
795 }
796
797 /* Make sure it's 16 Kbytes in length */
798 fstat(fd, &statbuf);
799 if (S_ISREG(statbuf.st_mode) && (statbuf.st_size != 0x4000)) {
800 SLOGE("footer file %s is not the expected size!\n", fname);
801 goto errout;
802 }
803
804 /* Seek to the start of the crypt footer */
805 if (lseek64(fd, starting_off, SEEK_SET) == -1) {
806 SLOGE("Cannot seek to real block device footer\n");
807 goto errout;
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800808 }
809
810 if ( (cnt = read(fd, crypt_ftr, sizeof(struct crypt_mnt_ftr))) != sizeof(struct crypt_mnt_ftr)) {
811 SLOGE("Cannot read real block device footer\n");
812 goto errout;
813 }
814
815 if (crypt_ftr->magic != CRYPT_MNT_MAGIC) {
Ken Sumrall29d8da82011-05-18 17:20:07 -0700816 SLOGE("Bad magic for real block device %s\n", fname);
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800817 goto errout;
818 }
819
Kenny Rootc96a5f82013-06-14 12:08:28 -0700820 if (crypt_ftr->major_version != CURRENT_MAJOR_VERSION) {
821 SLOGE("Cannot understand major version %d real block device footer; expected %d\n",
822 crypt_ftr->major_version, CURRENT_MAJOR_VERSION);
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800823 goto errout;
824 }
825
Kenny Rootc96a5f82013-06-14 12:08:28 -0700826 if (crypt_ftr->minor_version > CURRENT_MINOR_VERSION) {
827 SLOGW("Warning: crypto footer minor version %d, expected <= %d, continuing...\n",
828 crypt_ftr->minor_version, CURRENT_MINOR_VERSION);
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800829 }
830
Ken Sumrall160b4d62013-04-22 12:15:39 -0700831 /* If this is a verion 1.0 crypt_ftr, make it a 1.1 crypt footer, and update the
832 * copy on disk before returning.
833 */
Kenny Rootc96a5f82013-06-14 12:08:28 -0700834 if (crypt_ftr->minor_version < CURRENT_MINOR_VERSION) {
Ken Sumrall160b4d62013-04-22 12:15:39 -0700835 upgrade_crypt_ftr(fd, crypt_ftr, starting_off);
Ken Sumralle8744072011-01-18 22:01:55 -0800836 }
837
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800838 /* Success! */
839 rc = 0;
840
841errout:
842 close(fd);
843 return rc;
844}
845
Ken Sumrall160b4d62013-04-22 12:15:39 -0700846static int validate_persistent_data_storage(struct crypt_mnt_ftr *crypt_ftr)
847{
848 if (crypt_ftr->persist_data_offset[0] + crypt_ftr->persist_data_size >
849 crypt_ftr->persist_data_offset[1]) {
850 SLOGE("Crypt_ftr persist data regions overlap");
851 return -1;
852 }
853
854 if (crypt_ftr->persist_data_offset[0] >= crypt_ftr->persist_data_offset[1]) {
855 SLOGE("Crypt_ftr persist data region 0 starts after region 1");
856 return -1;
857 }
858
859 if (((crypt_ftr->persist_data_offset[1] + crypt_ftr->persist_data_size) -
860 (crypt_ftr->persist_data_offset[0] - CRYPT_FOOTER_TO_PERSIST_OFFSET)) >
861 CRYPT_FOOTER_OFFSET) {
862 SLOGE("Persistent data extends past crypto footer");
863 return -1;
864 }
865
866 return 0;
867}
868
869static int load_persistent_data(void)
870{
871 struct crypt_mnt_ftr crypt_ftr;
872 struct crypt_persist_data *pdata = NULL;
873 char encrypted_state[PROPERTY_VALUE_MAX];
874 char *fname;
875 int found = 0;
876 int fd;
877 int ret;
878 int i;
879
880 if (persist_data) {
881 /* Nothing to do, we've already loaded or initialized it */
882 return 0;
883 }
884
885
886 /* If not encrypted, just allocate an empty table and initialize it */
887 property_get("ro.crypto.state", encrypted_state, "");
888 if (strcmp(encrypted_state, "encrypted") ) {
889 pdata = malloc(CRYPT_PERSIST_DATA_SIZE);
890 if (pdata) {
891 init_empty_persist_data(pdata, CRYPT_PERSIST_DATA_SIZE);
892 persist_data = pdata;
893 return 0;
894 }
895 return -1;
896 }
897
898 if(get_crypt_ftr_and_key(&crypt_ftr)) {
899 return -1;
900 }
901
Paul Lawrence8561b5c2014-03-17 14:10:51 -0700902 if ((crypt_ftr.major_version < 1)
903 || (crypt_ftr.major_version == 1 && crypt_ftr.minor_version < 1)) {
Ken Sumrall160b4d62013-04-22 12:15:39 -0700904 SLOGE("Crypt_ftr version doesn't support persistent data");
905 return -1;
906 }
907
908 if (get_crypt_ftr_info(&fname, NULL)) {
909 return -1;
910 }
911
912 ret = validate_persistent_data_storage(&crypt_ftr);
913 if (ret) {
914 return -1;
915 }
916
Jeff Sharkeyce6a9132015-04-08 21:07:21 -0700917 fd = open(fname, O_RDONLY|O_CLOEXEC);
Ken Sumrall160b4d62013-04-22 12:15:39 -0700918 if (fd < 0) {
919 SLOGE("Cannot open %s metadata file", fname);
920 return -1;
921 }
922
923 if (persist_data == NULL) {
924 pdata = malloc(crypt_ftr.persist_data_size);
925 if (pdata == NULL) {
926 SLOGE("Cannot allocate memory for persistent data");
927 goto err;
928 }
929 }
930
931 for (i = 0; i < 2; i++) {
932 if (lseek64(fd, crypt_ftr.persist_data_offset[i], SEEK_SET) < 0) {
933 SLOGE("Cannot seek to read persistent data on %s", fname);
934 goto err2;
935 }
936 if (unix_read(fd, pdata, crypt_ftr.persist_data_size) < 0){
937 SLOGE("Error reading persistent data on iteration %d", i);
938 goto err2;
939 }
940 if (pdata->persist_magic == PERSIST_DATA_MAGIC) {
941 found = 1;
942 break;
943 }
944 }
945
946 if (!found) {
947 SLOGI("Could not find valid persistent data, creating");
948 init_empty_persist_data(pdata, crypt_ftr.persist_data_size);
949 }
950
951 /* Success */
952 persist_data = pdata;
953 close(fd);
954 return 0;
955
956err2:
957 free(pdata);
958
959err:
960 close(fd);
961 return -1;
962}
963
964static int save_persistent_data(void)
965{
966 struct crypt_mnt_ftr crypt_ftr;
967 struct crypt_persist_data *pdata;
968 char *fname;
969 off64_t write_offset;
970 off64_t erase_offset;
Ken Sumrall160b4d62013-04-22 12:15:39 -0700971 int fd;
972 int ret;
973
974 if (persist_data == NULL) {
975 SLOGE("No persistent data to save");
976 return -1;
977 }
978
979 if(get_crypt_ftr_and_key(&crypt_ftr)) {
980 return -1;
981 }
982
Paul Lawrence8561b5c2014-03-17 14:10:51 -0700983 if ((crypt_ftr.major_version < 1)
984 || (crypt_ftr.major_version == 1 && crypt_ftr.minor_version < 1)) {
Ken Sumrall160b4d62013-04-22 12:15:39 -0700985 SLOGE("Crypt_ftr version doesn't support persistent data");
986 return -1;
987 }
988
989 ret = validate_persistent_data_storage(&crypt_ftr);
990 if (ret) {
991 return -1;
992 }
993
994 if (get_crypt_ftr_info(&fname, NULL)) {
995 return -1;
996 }
997
Jeff Sharkeyce6a9132015-04-08 21:07:21 -0700998 fd = open(fname, O_RDWR|O_CLOEXEC);
Ken Sumrall160b4d62013-04-22 12:15:39 -0700999 if (fd < 0) {
1000 SLOGE("Cannot open %s metadata file", fname);
1001 return -1;
1002 }
1003
1004 pdata = malloc(crypt_ftr.persist_data_size);
1005 if (pdata == NULL) {
1006 SLOGE("Cannot allocate persistant data");
1007 goto err;
1008 }
1009
1010 if (lseek64(fd, crypt_ftr.persist_data_offset[0], SEEK_SET) < 0) {
1011 SLOGE("Cannot seek to read persistent data on %s", fname);
1012 goto err2;
1013 }
1014
1015 if (unix_read(fd, pdata, crypt_ftr.persist_data_size) < 0) {
1016 SLOGE("Error reading persistent data before save");
1017 goto err2;
1018 }
1019
1020 if (pdata->persist_magic == PERSIST_DATA_MAGIC) {
1021 /* The first copy is the curent valid copy, so write to
1022 * the second copy and erase this one */
1023 write_offset = crypt_ftr.persist_data_offset[1];
1024 erase_offset = crypt_ftr.persist_data_offset[0];
1025 } else {
1026 /* The second copy must be the valid copy, so write to
1027 * the first copy, and erase the second */
1028 write_offset = crypt_ftr.persist_data_offset[0];
1029 erase_offset = crypt_ftr.persist_data_offset[1];
1030 }
1031
1032 /* Write the new copy first, if successful, then erase the old copy */
Björn Landström96dbee72015-01-20 12:43:56 +01001033 if (lseek64(fd, write_offset, SEEK_SET) < 0) {
Ken Sumrall160b4d62013-04-22 12:15:39 -07001034 SLOGE("Cannot seek to write persistent data");
1035 goto err2;
1036 }
1037 if (unix_write(fd, persist_data, crypt_ftr.persist_data_size) ==
1038 (int) crypt_ftr.persist_data_size) {
Björn Landström96dbee72015-01-20 12:43:56 +01001039 if (lseek64(fd, erase_offset, SEEK_SET) < 0) {
Ken Sumrall160b4d62013-04-22 12:15:39 -07001040 SLOGE("Cannot seek to erase previous persistent data");
1041 goto err2;
1042 }
1043 fsync(fd);
1044 memset(pdata, 0, crypt_ftr.persist_data_size);
1045 if (unix_write(fd, pdata, crypt_ftr.persist_data_size) !=
1046 (int) crypt_ftr.persist_data_size) {
1047 SLOGE("Cannot write to erase previous persistent data");
1048 goto err2;
1049 }
1050 fsync(fd);
1051 } else {
1052 SLOGE("Cannot write to save persistent data");
1053 goto err2;
1054 }
1055
1056 /* Success */
1057 free(pdata);
1058 close(fd);
1059 return 0;
1060
1061err2:
1062 free(pdata);
1063err:
1064 close(fd);
1065 return -1;
1066}
1067
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001068/* Convert a binary key of specified length into an ascii hex string equivalent,
1069 * without the leading 0x and with null termination
1070 */
Jeff Sharkey9c484982015-03-31 10:35:33 -07001071static void convert_key_to_hex_ascii(const unsigned char *master_key,
Paul Lawrence3bd36d52015-06-09 13:37:44 -07001072 unsigned int keysize, char *master_key_ascii) {
1073 unsigned int i, a;
1074 unsigned char nibble;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001075
Paul Lawrence3bd36d52015-06-09 13:37:44 -07001076 for (i=0, a=0; i<keysize; i++, a+=2) {
1077 /* For each byte, write out two ascii hex digits */
1078 nibble = (master_key[i] >> 4) & 0xf;
1079 master_key_ascii[a] = nibble + (nibble > 9 ? 0x37 : 0x30);
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001080
Paul Lawrence3bd36d52015-06-09 13:37:44 -07001081 nibble = master_key[i] & 0xf;
1082 master_key_ascii[a+1] = nibble + (nibble > 9 ? 0x37 : 0x30);
1083 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001084
Paul Lawrence3bd36d52015-06-09 13:37:44 -07001085 /* Add the null termination */
1086 master_key_ascii[a] = '\0';
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001087
1088}
1089
Jeff Sharkey9c484982015-03-31 10:35:33 -07001090static int load_crypto_mapping_table(struct crypt_mnt_ftr *crypt_ftr,
1091 const unsigned char *master_key, const char *real_blk_name,
1092 const char *name, int fd, const char *extra_params) {
Dan Albertc07fa3f2014-12-18 10:00:55 -08001093 _Alignas(struct dm_ioctl) char buffer[DM_CRYPT_BUF_SIZE];
Ken Sumralldb5e0262013-02-05 17:39:48 -08001094 struct dm_ioctl *io;
1095 struct dm_target_spec *tgt;
1096 char *crypt_params;
1097 char master_key_ascii[129]; /* Large enough to hold 512 bit key and null */
1098 int i;
1099
1100 io = (struct dm_ioctl *) buffer;
1101
1102 /* Load the mapping table for this device */
1103 tgt = (struct dm_target_spec *) &buffer[sizeof(struct dm_ioctl)];
1104
1105 ioctl_init(io, DM_CRYPT_BUF_SIZE, name, 0);
1106 io->target_count = 1;
1107 tgt->status = 0;
1108 tgt->sector_start = 0;
1109 tgt->length = crypt_ftr->fs_size;
Ajay Dudani87701e22014-09-17 21:02:52 -07001110#ifdef CONFIG_HW_DISK_ENCRYPTION
Iliyan Malchevbb7d9af2014-11-20 18:42:23 -08001111 if (!strcmp((char *)crypt_ftr->crypto_type_name, "aes-xts")) {
1112 strlcpy(tgt->target_type, "req-crypt", DM_MAX_TYPE_NAME);
1113 }
1114 else {
1115 strlcpy(tgt->target_type, "crypt", DM_MAX_TYPE_NAME);
1116 }
Ajay Dudani87701e22014-09-17 21:02:52 -07001117#else
1118 strlcpy(tgt->target_type, "crypt", DM_MAX_TYPE_NAME);
1119#endif
Ken Sumralldb5e0262013-02-05 17:39:48 -08001120
1121 crypt_params = buffer + sizeof(struct dm_ioctl) + sizeof(struct dm_target_spec);
1122 convert_key_to_hex_ascii(master_key, crypt_ftr->keysize, master_key_ascii);
1123 sprintf(crypt_params, "%s %s 0 %s 0 %s", crypt_ftr->crypto_type_name,
1124 master_key_ascii, real_blk_name, extra_params);
1125 crypt_params += strlen(crypt_params) + 1;
1126 crypt_params = (char *) (((unsigned long)crypt_params + 7) & ~8); /* Align to an 8 byte boundary */
1127 tgt->next = crypt_params - buffer;
1128
1129 for (i = 0; i < TABLE_LOAD_RETRIES; i++) {
1130 if (! ioctl(fd, DM_TABLE_LOAD, io)) {
1131 break;
1132 }
1133 usleep(500000);
1134 }
1135
1136 if (i == TABLE_LOAD_RETRIES) {
1137 /* We failed to load the table, return an error */
1138 return -1;
1139 } else {
1140 return i + 1;
1141 }
1142}
1143
1144
1145static int get_dm_crypt_version(int fd, const char *name, int *version)
1146{
1147 char buffer[DM_CRYPT_BUF_SIZE];
1148 struct dm_ioctl *io;
1149 struct dm_target_versions *v;
Ken Sumralldb5e0262013-02-05 17:39:48 -08001150
1151 io = (struct dm_ioctl *) buffer;
1152
1153 ioctl_init(io, DM_CRYPT_BUF_SIZE, name, 0);
1154
1155 if (ioctl(fd, DM_LIST_VERSIONS, io)) {
1156 return -1;
1157 }
1158
1159 /* Iterate over the returned versions, looking for name of "crypt".
1160 * When found, get and return the version.
1161 */
1162 v = (struct dm_target_versions *) &buffer[sizeof(struct dm_ioctl)];
1163 while (v->next) {
Ajay Dudani87701e22014-09-17 21:02:52 -07001164#ifdef CONFIG_HW_DISK_ENCRYPTION
Iliyan Malchevbb7d9af2014-11-20 18:42:23 -08001165 if (! strcmp(v->name, "crypt") || ! strcmp(v->name, "req-crypt")) {
Ajay Dudani87701e22014-09-17 21:02:52 -07001166#else
Ken Sumralldb5e0262013-02-05 17:39:48 -08001167 if (! strcmp(v->name, "crypt")) {
Ajay Dudani87701e22014-09-17 21:02:52 -07001168#endif
Ken Sumralldb5e0262013-02-05 17:39:48 -08001169 /* We found the crypt driver, return the version, and get out */
1170 version[0] = v->version[0];
1171 version[1] = v->version[1];
1172 version[2] = v->version[2];
1173 return 0;
1174 }
1175 v = (struct dm_target_versions *)(((char *)v) + v->next);
1176 }
1177
1178 return -1;
1179}
1180
Jeff Sharkey9c484982015-03-31 10:35:33 -07001181static int create_crypto_blk_dev(struct crypt_mnt_ftr *crypt_ftr,
1182 const unsigned char *master_key, const char *real_blk_name,
1183 char *crypto_blk_name, const char *name) {
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001184 char buffer[DM_CRYPT_BUF_SIZE];
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001185 struct dm_ioctl *io;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001186 unsigned int minor;
Ajay Dudani87701e22014-09-17 21:02:52 -07001187 int fd=0;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001188 int retval = -1;
Ken Sumralldb5e0262013-02-05 17:39:48 -08001189 int version[3];
1190 char *extra_params;
1191 int load_count;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001192
Jeff Sharkeyce6a9132015-04-08 21:07:21 -07001193 if ((fd = open("/dev/device-mapper", O_RDWR|O_CLOEXEC)) < 0 ) {
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001194 SLOGE("Cannot open device-mapper\n");
1195 goto errout;
1196 }
1197
1198 io = (struct dm_ioctl *) buffer;
1199
1200 ioctl_init(io, DM_CRYPT_BUF_SIZE, name, 0);
1201 if (ioctl(fd, DM_DEV_CREATE, io)) {
1202 SLOGE("Cannot create dm-crypt device\n");
1203 goto errout;
1204 }
1205
1206 /* Get the device status, in particular, the name of it's device file */
1207 ioctl_init(io, DM_CRYPT_BUF_SIZE, name, 0);
1208 if (ioctl(fd, DM_DEV_STATUS, io)) {
1209 SLOGE("Cannot retrieve dm-crypt device status\n");
1210 goto errout;
1211 }
1212 minor = (io->dev & 0xff) | ((io->dev >> 12) & 0xfff00);
1213 snprintf(crypto_blk_name, MAXPATHLEN, "/dev/block/dm-%u", minor);
1214
Ken Sumralldb5e0262013-02-05 17:39:48 -08001215 extra_params = "";
1216 if (! get_dm_crypt_version(fd, name, version)) {
1217 /* Support for allow_discards was added in version 1.11.0 */
1218 if ((version[0] >= 2) ||
1219 ((version[0] == 1) && (version[1] >= 11))) {
1220 extra_params = "1 allow_discards";
1221 SLOGI("Enabling support for allow_discards in dmcrypt.\n");
1222 }
Ken Sumralle919efe2012-09-29 17:07:41 -07001223 }
1224
Ken Sumralldb5e0262013-02-05 17:39:48 -08001225 load_count = load_crypto_mapping_table(crypt_ftr, master_key, real_blk_name, name,
1226 fd, extra_params);
1227 if (load_count < 0) {
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001228 SLOGE("Cannot load dm-crypt mapping table.\n");
1229 goto errout;
Ken Sumralldb5e0262013-02-05 17:39:48 -08001230 } else if (load_count > 1) {
1231 SLOGI("Took %d tries to load dmcrypt table.\n", load_count);
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001232 }
1233
1234 /* Resume this device to activate it */
Ken Sumralldb5e0262013-02-05 17:39:48 -08001235 ioctl_init(io, DM_CRYPT_BUF_SIZE, name, 0);
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001236
1237 if (ioctl(fd, DM_DEV_SUSPEND, io)) {
1238 SLOGE("Cannot resume the dm-crypt device\n");
1239 goto errout;
1240 }
1241
1242 /* We made it here with no errors. Woot! */
1243 retval = 0;
1244
1245errout:
1246 close(fd); /* If fd is <0 from a failed open call, it's safe to just ignore the close error */
1247
1248 return retval;
1249}
1250
Ken Sumrall29d8da82011-05-18 17:20:07 -07001251static int delete_crypto_blk_dev(char *name)
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001252{
1253 int fd;
1254 char buffer[DM_CRYPT_BUF_SIZE];
1255 struct dm_ioctl *io;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001256 int retval = -1;
1257
Jeff Sharkeyce6a9132015-04-08 21:07:21 -07001258 if ((fd = open("/dev/device-mapper", O_RDWR|O_CLOEXEC)) < 0 ) {
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001259 SLOGE("Cannot open device-mapper\n");
1260 goto errout;
1261 }
1262
1263 io = (struct dm_ioctl *) buffer;
1264
1265 ioctl_init(io, DM_CRYPT_BUF_SIZE, name, 0);
1266 if (ioctl(fd, DM_DEV_REMOVE, io)) {
1267 SLOGE("Cannot remove dm-crypt device\n");
1268 goto errout;
1269 }
1270
1271 /* We made it here with no errors. Woot! */
1272 retval = 0;
1273
1274errout:
1275 close(fd); /* If fd is <0 from a failed open call, it's safe to just ignore the close error */
1276
1277 return retval;
1278
1279}
1280
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001281static int pbkdf2(const char *passwd, const unsigned char *salt,
Paul Lawrencef4faa572014-01-29 13:31:03 -08001282 unsigned char *ikey, void *params UNUSED)
1283{
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001284 SLOGI("Using pbkdf2 for cryptfs KDF");
1285
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001286 /* Turn the password into a key and IV that can decrypt the master key */
Adam Langleybf0d9722015-11-04 14:51:39 -08001287 return PKCS5_PBKDF2_HMAC_SHA1(passwd, strlen(passwd), salt, SALT_LEN,
1288 HASH_COUNT, KEY_LEN_BYTES + IV_LEN_BYTES,
1289 ikey) != 1;
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001290}
1291
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001292static int scrypt(const char *passwd, const unsigned char *salt,
Paul Lawrencef4faa572014-01-29 13:31:03 -08001293 unsigned char *ikey, void *params)
1294{
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001295 SLOGI("Using scrypt for cryptfs KDF");
1296
Kenny Rootc4c70f12013-06-14 12:11:38 -07001297 struct crypt_mnt_ftr *ftr = (struct crypt_mnt_ftr *) params;
1298
1299 int N = 1 << ftr->N_factor;
1300 int r = 1 << ftr->r_factor;
1301 int p = 1 << ftr->p_factor;
1302
1303 /* Turn the password into a key and IV that can decrypt the master key */
Paul Lawrencef4faa572014-01-29 13:31:03 -08001304 unsigned int keysize;
Paul Lawrence3bd36d52015-06-09 13:37:44 -07001305 crypto_scrypt((const uint8_t*)passwd, strlen(passwd),
1306 salt, SALT_LEN, N, r, p, ikey,
1307 KEY_LEN_BYTES + IV_LEN_BYTES);
Paul Lawrencef4faa572014-01-29 13:31:03 -08001308
Paul Lawrence3bd36d52015-06-09 13:37:44 -07001309 return 0;
Kenny Rootc4c70f12013-06-14 12:11:38 -07001310}
1311
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001312static int scrypt_keymaster(const char *passwd, const unsigned char *salt,
1313 unsigned char *ikey, void *params)
1314{
1315 SLOGI("Using scrypt with keymaster for cryptfs KDF");
1316
1317 int rc;
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001318 size_t signature_size;
1319 unsigned char* signature;
1320 struct crypt_mnt_ftr *ftr = (struct crypt_mnt_ftr *) params;
1321
1322 int N = 1 << ftr->N_factor;
1323 int r = 1 << ftr->r_factor;
1324 int p = 1 << ftr->p_factor;
1325
Paul Lawrence3bd36d52015-06-09 13:37:44 -07001326 rc = crypto_scrypt((const uint8_t*)passwd, strlen(passwd),
1327 salt, SALT_LEN, N, r, p, ikey,
1328 KEY_LEN_BYTES + IV_LEN_BYTES);
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001329
1330 if (rc) {
1331 SLOGE("scrypt failed");
1332 return -1;
1333 }
1334
Shawn Willdene17a9c42014-09-08 13:04:08 -06001335 if (keymaster_sign_object(ftr, ikey, KEY_LEN_BYTES + IV_LEN_BYTES,
1336 &signature, &signature_size)) {
1337 SLOGE("Signing failed");
1338 return -1;
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001339 }
1340
1341 rc = crypto_scrypt(signature, signature_size, salt, SALT_LEN,
1342 N, r, p, ikey, KEY_LEN_BYTES + IV_LEN_BYTES);
1343 free(signature);
1344
1345 if (rc) {
1346 SLOGE("scrypt failed");
1347 return -1;
1348 }
1349
1350 return 0;
1351}
1352
1353static int encrypt_master_key(const char *passwd, const unsigned char *salt,
1354 const unsigned char *decrypted_master_key,
Kenny Rootc4c70f12013-06-14 12:11:38 -07001355 unsigned char *encrypted_master_key,
1356 struct crypt_mnt_ftr *crypt_ftr)
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001357{
1358 unsigned char ikey[32+32] = { 0 }; /* Big enough to hold a 256 bit key and 256 bit IV */
1359 EVP_CIPHER_CTX e_ctx;
1360 int encrypted_len, final_len;
Paul Lawrenced0c7b172014-08-08 14:28:10 -07001361 int rc = 0;
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001362
Paul Lawrenced0c7b172014-08-08 14:28:10 -07001363 /* Turn the password into an intermediate key and IV that can decrypt the master key */
Kenny Rootc4c70f12013-06-14 12:11:38 -07001364 get_device_scrypt_params(crypt_ftr);
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001365
1366 switch (crypt_ftr->kdf_type) {
1367 case KDF_SCRYPT_KEYMASTER:
1368 if (keymaster_create_key(crypt_ftr)) {
1369 SLOGE("keymaster_create_key failed");
1370 return -1;
1371 }
1372
1373 if (scrypt_keymaster(passwd, salt, ikey, crypt_ftr)) {
1374 SLOGE("scrypt failed");
1375 return -1;
1376 }
1377 break;
1378
1379 case KDF_SCRYPT:
1380 if (scrypt(passwd, salt, ikey, crypt_ftr)) {
1381 SLOGE("scrypt failed");
1382 return -1;
1383 }
1384 break;
1385
1386 default:
1387 SLOGE("Invalid kdf_type");
Paul Lawrencef4faa572014-01-29 13:31:03 -08001388 return -1;
1389 }
Kenny Rootc4c70f12013-06-14 12:11:38 -07001390
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001391 /* Initialize the decryption engine */
Adam Langley889c4f12014-09-03 14:23:13 -07001392 EVP_CIPHER_CTX_init(&e_ctx);
1393 if (! EVP_EncryptInit_ex(&e_ctx, EVP_aes_128_cbc(), NULL, ikey, ikey+KEY_LEN_BYTES)) {
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001394 SLOGE("EVP_EncryptInit failed\n");
1395 return -1;
1396 }
1397 EVP_CIPHER_CTX_set_padding(&e_ctx, 0); /* Turn off padding as our data is block aligned */
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001398
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001399 /* Encrypt the master key */
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001400 if (! EVP_EncryptUpdate(&e_ctx, encrypted_master_key, &encrypted_len,
Paul Lawrence731a7a22015-04-28 22:14:15 +00001401 decrypted_master_key, KEY_LEN_BYTES)) {
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001402 SLOGE("EVP_EncryptUpdate failed\n");
1403 return -1;
1404 }
Adam Langley889c4f12014-09-03 14:23:13 -07001405 if (! EVP_EncryptFinal_ex(&e_ctx, encrypted_master_key + encrypted_len, &final_len)) {
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001406 SLOGE("EVP_EncryptFinal failed\n");
1407 return -1;
1408 }
1409
1410 if (encrypted_len + final_len != KEY_LEN_BYTES) {
1411 SLOGE("EVP_Encryption length check failed with %d, %d bytes\n", encrypted_len, final_len);
1412 return -1;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001413 }
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001414
Paul Lawrenced0c7b172014-08-08 14:28:10 -07001415 /* Store the scrypt of the intermediate key, so we can validate if it's a
1416 password error or mount error when things go wrong.
1417 Note there's no need to check for errors, since if this is incorrect, we
1418 simply won't wipe userdata, which is the correct default behavior
1419 */
1420 int N = 1 << crypt_ftr->N_factor;
1421 int r = 1 << crypt_ftr->r_factor;
1422 int p = 1 << crypt_ftr->p_factor;
1423
1424 rc = crypto_scrypt(ikey, KEY_LEN_BYTES,
1425 crypt_ftr->salt, sizeof(crypt_ftr->salt), N, r, p,
1426 crypt_ftr->scrypted_intermediate_key,
1427 sizeof(crypt_ftr->scrypted_intermediate_key));
1428
1429 if (rc) {
1430 SLOGE("encrypt_master_key: crypto_scrypt failed");
1431 }
1432
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001433 return 0;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001434}
1435
Paul Lawrence731a7a22015-04-28 22:14:15 +00001436static int decrypt_master_key_aux(const char *passwd, unsigned char *salt,
Paul Lawrenced0c7b172014-08-08 14:28:10 -07001437 unsigned char *encrypted_master_key,
1438 unsigned char *decrypted_master_key,
1439 kdf_func kdf, void *kdf_params,
1440 unsigned char** intermediate_key,
1441 size_t* intermediate_key_size)
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001442{
1443 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 -08001444 EVP_CIPHER_CTX d_ctx;
1445 int decrypted_len, final_len;
1446
Paul Lawrenced0c7b172014-08-08 14:28:10 -07001447 /* Turn the password into an intermediate key and IV that can decrypt the
1448 master key */
Paul Lawrencef4faa572014-01-29 13:31:03 -08001449 if (kdf(passwd, salt, ikey, kdf_params)) {
1450 SLOGE("kdf failed");
1451 return -1;
1452 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001453
1454 /* Initialize the decryption engine */
Adam Langley889c4f12014-09-03 14:23:13 -07001455 EVP_CIPHER_CTX_init(&d_ctx);
1456 if (! EVP_DecryptInit_ex(&d_ctx, EVP_aes_128_cbc(), NULL, ikey, ikey+KEY_LEN_BYTES)) {
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001457 return -1;
1458 }
1459 EVP_CIPHER_CTX_set_padding(&d_ctx, 0); /* Turn off padding as our data is block aligned */
1460 /* Decrypt the master key */
1461 if (! EVP_DecryptUpdate(&d_ctx, decrypted_master_key, &decrypted_len,
1462 encrypted_master_key, KEY_LEN_BYTES)) {
1463 return -1;
1464 }
Adam Langley889c4f12014-09-03 14:23:13 -07001465 if (! EVP_DecryptFinal_ex(&d_ctx, decrypted_master_key + decrypted_len, &final_len)) {
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001466 return -1;
1467 }
1468
1469 if (decrypted_len + final_len != KEY_LEN_BYTES) {
1470 return -1;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001471 }
Paul Lawrenced0c7b172014-08-08 14:28:10 -07001472
1473 /* Copy intermediate key if needed by params */
1474 if (intermediate_key && intermediate_key_size) {
1475 *intermediate_key = (unsigned char*) malloc(KEY_LEN_BYTES);
1476 if (intermediate_key) {
1477 memcpy(*intermediate_key, ikey, KEY_LEN_BYTES);
1478 *intermediate_key_size = KEY_LEN_BYTES;
1479 }
1480 }
1481
1482 return 0;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001483}
1484
Kenny Rootc4c70f12013-06-14 12:11:38 -07001485static void get_kdf_func(struct crypt_mnt_ftr *ftr, kdf_func *kdf, void** kdf_params)
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001486{
Paul Lawrencedb3730c2015-02-03 13:08:10 -08001487 if (ftr->kdf_type == KDF_SCRYPT_KEYMASTER) {
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001488 *kdf = scrypt_keymaster;
1489 *kdf_params = ftr;
1490 } else if (ftr->kdf_type == KDF_SCRYPT) {
Kenny Rootc4c70f12013-06-14 12:11:38 -07001491 *kdf = scrypt;
1492 *kdf_params = ftr;
1493 } else {
1494 *kdf = pbkdf2;
1495 *kdf_params = NULL;
1496 }
1497}
1498
Paul Lawrence731a7a22015-04-28 22:14:15 +00001499static int decrypt_master_key(const char *passwd, unsigned char *decrypted_master_key,
Paul Lawrenced0c7b172014-08-08 14:28:10 -07001500 struct crypt_mnt_ftr *crypt_ftr,
1501 unsigned char** intermediate_key,
1502 size_t* intermediate_key_size)
Kenny Rootc4c70f12013-06-14 12:11:38 -07001503{
1504 kdf_func kdf;
1505 void *kdf_params;
1506 int ret;
1507
1508 get_kdf_func(crypt_ftr, &kdf, &kdf_params);
Paul Lawrenced0c7b172014-08-08 14:28:10 -07001509 ret = decrypt_master_key_aux(passwd, crypt_ftr->salt, crypt_ftr->master_key,
1510 decrypted_master_key, kdf, kdf_params,
1511 intermediate_key, intermediate_key_size);
Kenny Rootc4c70f12013-06-14 12:11:38 -07001512 if (ret != 0) {
1513 SLOGW("failure decrypting master key");
Kenny Rootc4c70f12013-06-14 12:11:38 -07001514 }
1515
1516 return ret;
1517}
1518
1519static int create_encrypted_random_key(char *passwd, unsigned char *master_key, unsigned char *salt,
1520 struct crypt_mnt_ftr *crypt_ftr) {
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001521 int fd;
Ken Sumralle8744072011-01-18 22:01:55 -08001522 unsigned char key_buf[KEY_LEN_BYTES];
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001523
1524 /* Get some random bits for a key */
Jeff Sharkeyce6a9132015-04-08 21:07:21 -07001525 fd = open("/dev/urandom", O_RDONLY|O_CLOEXEC);
Ken Sumralle8744072011-01-18 22:01:55 -08001526 read(fd, key_buf, sizeof(key_buf));
1527 read(fd, salt, SALT_LEN);
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001528 close(fd);
1529
1530 /* Now encrypt it with the password */
Kenny Rootc4c70f12013-06-14 12:11:38 -07001531 return encrypt_master_key(passwd, salt, key_buf, master_key, crypt_ftr);
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001532}
1533
Paul Lawrence2f32cda2015-05-05 14:28:25 -07001534int wait_and_unmount(const char *mountpoint, bool kill)
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001535{
Greg Hackmann955653e2014-09-24 14:55:20 -07001536 int i, err, rc;
Ken Sumrall2eaf7132011-01-14 12:45:48 -08001537#define WAIT_UNMOUNT_COUNT 20
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001538
1539 /* Now umount the tmpfs filesystem */
1540 for (i=0; i<WAIT_UNMOUNT_COUNT; i++) {
Greg Hackmann6e8440f2014-10-02 17:18:20 -07001541 if (umount(mountpoint) == 0) {
1542 break;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001543 }
Greg Hackmann6e8440f2014-10-02 17:18:20 -07001544
1545 if (errno == EINVAL) {
1546 /* EINVAL is returned if the directory is not a mountpoint,
1547 * i.e. there is no filesystem mounted there. So just get out.
1548 */
1549 break;
1550 }
1551
1552 err = errno;
1553
1554 /* If allowed, be increasingly aggressive before the last two retries */
1555 if (kill) {
1556 if (i == (WAIT_UNMOUNT_COUNT - 3)) {
1557 SLOGW("sending SIGHUP to processes with open files\n");
Jeff Sharkey36801cc2015-03-13 16:09:20 -07001558 vold_killProcessesWithOpenFiles(mountpoint, SIGTERM);
Greg Hackmann6e8440f2014-10-02 17:18:20 -07001559 } else if (i == (WAIT_UNMOUNT_COUNT - 2)) {
1560 SLOGW("sending SIGKILL to processes with open files\n");
Jeff Sharkey36801cc2015-03-13 16:09:20 -07001561 vold_killProcessesWithOpenFiles(mountpoint, SIGKILL);
Greg Hackmann6e8440f2014-10-02 17:18:20 -07001562 }
1563 }
1564
1565 sleep(1);
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001566 }
1567
1568 if (i < WAIT_UNMOUNT_COUNT) {
1569 SLOGD("unmounting %s succeeded\n", mountpoint);
1570 rc = 0;
1571 } else {
jessica_yu3f14fe42014-09-22 15:57:40 +08001572 vold_killProcessesWithOpenFiles(mountpoint, 0);
Greg Hackmann955653e2014-09-24 14:55:20 -07001573 SLOGE("unmounting %s failed: %s\n", mountpoint, strerror(err));
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001574 rc = -1;
1575 }
1576
1577 return rc;
1578}
1579
Paul Lawrenceb1ef4662015-06-11 11:15:29 -07001580#define DATA_PREP_TIMEOUT 1000
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001581static int prep_data_fs(void)
1582{
1583 int i;
1584
1585 /* Do the prep of the /data filesystem */
1586 property_set("vold.post_fs_data_done", "0");
1587 property_set("vold.decrypt", "trigger_post_fs_data");
1588 SLOGD("Just triggered post_fs_data\n");
1589
Ken Sumrallc5872692013-05-14 15:26:31 -07001590 /* Wait a max of 50 seconds, hopefully it takes much less */
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001591 for (i=0; i<DATA_PREP_TIMEOUT; i++) {
Ken Sumrall29d8da82011-05-18 17:20:07 -07001592 char p[PROPERTY_VALUE_MAX];
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001593
1594 property_get("vold.post_fs_data_done", p, "0");
1595 if (*p == '1') {
1596 break;
1597 } else {
Paul Lawrenceb1ef4662015-06-11 11:15:29 -07001598 usleep(50000);
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001599 }
1600 }
1601 if (i == DATA_PREP_TIMEOUT) {
1602 /* Ugh, we failed to prep /data in time. Bail. */
Ken Sumrallc5872692013-05-14 15:26:31 -07001603 SLOGE("post_fs_data timed out!\n");
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001604 return -1;
1605 } else {
1606 SLOGD("post_fs_data done\n");
1607 return 0;
1608 }
1609}
1610
Paul Lawrence74f29f12014-08-28 15:54:10 -07001611static void cryptfs_set_corrupt()
1612{
1613 // Mark the footer as bad
1614 struct crypt_mnt_ftr crypt_ftr;
1615 if (get_crypt_ftr_and_key(&crypt_ftr)) {
1616 SLOGE("Failed to get crypto footer - panic");
1617 return;
1618 }
1619
1620 crypt_ftr.flags |= CRYPT_DATA_CORRUPT;
1621 if (put_crypt_ftr_and_key(&crypt_ftr)) {
1622 SLOGE("Failed to set crypto footer - panic");
1623 return;
1624 }
1625}
1626
1627static void cryptfs_trigger_restart_min_framework()
1628{
1629 if (fs_mgr_do_tmpfs_mount(DATA_MNT_POINT)) {
1630 SLOGE("Failed to mount tmpfs on data - panic");
1631 return;
1632 }
1633
1634 if (property_set("vold.decrypt", "trigger_post_fs_data")) {
1635 SLOGE("Failed to trigger post fs data - panic");
1636 return;
1637 }
1638
1639 if (property_set("vold.decrypt", "trigger_restart_min_framework")) {
1640 SLOGE("Failed to trigger restart min framework - panic");
1641 return;
1642 }
1643}
1644
Paul Lawrence8e3f4512014-09-08 10:11:17 -07001645/* returns < 0 on failure */
Paul Lawrencef4faa572014-01-29 13:31:03 -08001646static int cryptfs_restart_internal(int restart_main)
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001647{
Ken Sumrall6864b7e2011-01-14 15:20:02 -08001648 char crypto_blkdev[MAXPATHLEN];
Tim Murray8439dc92014-12-15 11:56:11 -08001649 int rc = -1;
Ken Sumrall0cc16632011-01-18 20:32:26 -08001650 static int restart_successful = 0;
1651
1652 /* Validate that it's OK to call this routine */
Jason parks70a4b3f2011-01-28 10:10:47 -06001653 if (! master_key_saved) {
Ken Sumrall0cc16632011-01-18 20:32:26 -08001654 SLOGE("Encrypted filesystem not validated, aborting");
1655 return -1;
1656 }
1657
1658 if (restart_successful) {
1659 SLOGE("System already restarted with encrypted disk, aborting");
1660 return -1;
1661 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001662
Paul Lawrencef4faa572014-01-29 13:31:03 -08001663 if (restart_main) {
1664 /* Here is where we shut down the framework. The init scripts
1665 * start all services in one of three classes: core, main or late_start.
1666 * On boot, we start core and main. Now, we stop main, but not core,
1667 * as core includes vold and a few other really important things that
1668 * we need to keep running. Once main has stopped, we should be able
1669 * to umount the tmpfs /data, then mount the encrypted /data.
1670 * We then restart the class main, and also the class late_start.
1671 * At the moment, I've only put a few things in late_start that I know
1672 * are not needed to bring up the framework, and that also cause problems
1673 * with unmounting the tmpfs /data, but I hope to add add more services
1674 * to the late_start class as we optimize this to decrease the delay
1675 * till the user is asked for the password to the filesystem.
1676 */
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001677
Paul Lawrencef4faa572014-01-29 13:31:03 -08001678 /* The init files are setup to stop the class main when vold.decrypt is
1679 * set to trigger_reset_main.
1680 */
1681 property_set("vold.decrypt", "trigger_reset_main");
1682 SLOGD("Just asked init to shut down class main\n");
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001683
Paul Lawrencef4faa572014-01-29 13:31:03 -08001684 /* Ugh, shutting down the framework is not synchronous, so until it
1685 * can be fixed, this horrible hack will wait a moment for it all to
1686 * shut down before proceeding. Without it, some devices cannot
1687 * restart the graphics services.
1688 */
1689 sleep(2);
1690 }
Ken Sumrall9dedfd42012-10-09 14:16:59 -07001691
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001692 /* Now that the framework is shutdown, we should be able to umount()
1693 * the tmpfs filesystem, and mount the real one.
1694 */
1695
Ken Sumrall6864b7e2011-01-14 15:20:02 -08001696 property_get("ro.crypto.fs_crypto_blkdev", crypto_blkdev, "");
1697 if (strlen(crypto_blkdev) == 0) {
1698 SLOGE("fs_crypto_blkdev not set\n");
1699 return -1;
1700 }
1701
Greg Hackmann6e8440f2014-10-02 17:18:20 -07001702 if (! (rc = wait_and_unmount(DATA_MNT_POINT, true)) ) {
Doug Zongker6fd57712013-12-17 09:43:23 -08001703 /* If ro.crypto.readonly is set to 1, mount the decrypted
1704 * filesystem readonly. This is used when /data is mounted by
1705 * recovery mode.
1706 */
1707 char ro_prop[PROPERTY_VALUE_MAX];
1708 property_get("ro.crypto.readonly", ro_prop, "");
1709 if (strlen(ro_prop) > 0 && atoi(ro_prop)) {
1710 struct fstab_rec* rec = fs_mgr_get_entry_for_mount_point(fstab, DATA_MNT_POINT);
1711 rec->flags |= MS_RDONLY;
1712 }
JP Abgrall62c7af32014-06-16 13:01:23 -07001713
Ken Sumralle5032c42012-04-01 23:58:44 -07001714 /* If that succeeded, then mount the decrypted filesystem */
Paul Lawrence8e3f4512014-09-08 10:11:17 -07001715 int retries = RETRY_MOUNT_ATTEMPTS;
1716 int mount_rc;
Jeff Vander Stoepdf725752016-01-29 15:34:43 -08001717
1718 /*
1719 * fs_mgr_do_mount runs fsck. Use setexeccon to run trusted
1720 * partitions in the fsck domain.
1721 */
1722 if (setexeccon(secontextFsck())){
1723 SLOGE("Failed to setexeccon");
1724 return -1;
1725 }
Paul Lawrence8e3f4512014-09-08 10:11:17 -07001726 while ((mount_rc = fs_mgr_do_mount(fstab, DATA_MNT_POINT,
1727 crypto_blkdev, 0))
1728 != 0) {
1729 if (mount_rc == FS_MGR_DOMNT_BUSY) {
1730 /* TODO: invoke something similar to
1731 Process::killProcessWithOpenFiles(DATA_MNT_POINT,
1732 retries > RETRY_MOUNT_ATTEMPT/2 ? 1 : 2 ) */
1733 SLOGI("Failed to mount %s because it is busy - waiting",
1734 crypto_blkdev);
1735 if (--retries) {
1736 sleep(RETRY_MOUNT_DELAY_SECONDS);
1737 } else {
1738 /* Let's hope that a reboot clears away whatever is keeping
1739 the mount busy */
1740 cryptfs_reboot(reboot);
1741 }
1742 } else {
1743 SLOGE("Failed to mount decrypted data");
1744 cryptfs_set_corrupt();
1745 cryptfs_trigger_restart_min_framework();
1746 SLOGI("Started framework to offer wipe");
Jeff Vander Stoepdf725752016-01-29 15:34:43 -08001747 if (setexeccon(NULL)) {
1748 SLOGE("Failed to setexeccon");
1749 }
Paul Lawrence8e3f4512014-09-08 10:11:17 -07001750 return -1;
1751 }
Paul Lawrence74f29f12014-08-28 15:54:10 -07001752 }
Jeff Vander Stoepdf725752016-01-29 15:34:43 -08001753 if (setexeccon(NULL)) {
1754 SLOGE("Failed to setexeccon");
1755 return -1;
1756 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001757
Ken Sumralle5032c42012-04-01 23:58:44 -07001758 property_set("vold.decrypt", "trigger_load_persist_props");
1759 /* Create necessary paths on /data */
1760 if (prep_data_fs()) {
1761 return -1;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001762 }
Ken Sumralle5032c42012-04-01 23:58:44 -07001763
1764 /* startup service classes main and late_start */
1765 property_set("vold.decrypt", "trigger_restart_framework");
1766 SLOGD("Just triggered restart_framework\n");
1767
1768 /* Give it a few moments to get started */
1769 sleep(1);
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001770 }
1771
Ken Sumrall0cc16632011-01-18 20:32:26 -08001772 if (rc == 0) {
1773 restart_successful = 1;
1774 }
1775
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001776 return rc;
1777}
1778
Paul Lawrencef4faa572014-01-29 13:31:03 -08001779int cryptfs_restart(void)
1780{
Paul Lawrence05335c32015-03-05 09:46:23 -08001781 SLOGI("cryptfs_restart");
1782 if (e4crypt_crypto_complete(DATA_MNT_POINT) == 0) {
1783 struct fstab_rec* rec;
1784 int rc;
1785
1786 if (e4crypt_restart(DATA_MNT_POINT)) {
1787 SLOGE("Can't unmount e4crypt temp volume\n");
1788 return -1;
1789 }
1790
1791 rec = fs_mgr_get_entry_for_mount_point(fstab, DATA_MNT_POINT);
1792 if (!rec) {
1793 SLOGE("Can't get fstab record for %s\n", DATA_MNT_POINT);
1794 return -1;
1795 }
1796
1797 rc = fs_mgr_do_mount(fstab, DATA_MNT_POINT, rec->blk_device, 0);
1798 if (rc) {
1799 SLOGE("Can't mount %s\n", DATA_MNT_POINT);
1800 return rc;
1801 }
1802
1803 property_set("vold.decrypt", "trigger_restart_framework");
1804 return 0;
1805 }
1806
Paul Lawrencef4faa572014-01-29 13:31:03 -08001807 /* Call internal implementation forcing a restart of main service group */
1808 return cryptfs_restart_internal(1);
1809}
1810
Paul Lawrence05335c32015-03-05 09:46:23 -08001811static int do_crypto_complete(char *mount_point)
Ken Sumrall7f7dbaa2011-02-01 15:46:41 -08001812{
1813 struct crypt_mnt_ftr crypt_ftr;
Ken Sumrall29d8da82011-05-18 17:20:07 -07001814 char encrypted_state[PROPERTY_VALUE_MAX];
Ken Sumralle1a45852011-12-14 21:24:27 -08001815 char key_loc[PROPERTY_VALUE_MAX];
Ken Sumrall7f7dbaa2011-02-01 15:46:41 -08001816
1817 property_get("ro.crypto.state", encrypted_state, "");
1818 if (strcmp(encrypted_state, "encrypted") ) {
1819 SLOGE("not running with encryption, aborting");
Paul Lawrence74f29f12014-08-28 15:54:10 -07001820 return CRYPTO_COMPLETE_NOT_ENCRYPTED;
Ken Sumrall7f7dbaa2011-02-01 15:46:41 -08001821 }
1822
Paul Lawrence05335c32015-03-05 09:46:23 -08001823 if (e4crypt_crypto_complete(mount_point) == 0) {
1824 return CRYPTO_COMPLETE_ENCRYPTED;
1825 }
1826
Ken Sumrall160b4d62013-04-22 12:15:39 -07001827 if (get_crypt_ftr_and_key(&crypt_ftr)) {
Ken Sumrall56ad03c2013-02-13 13:00:19 -08001828 fs_mgr_get_crypt_info(fstab, key_loc, 0, sizeof(key_loc));
Ken Sumralle5032c42012-04-01 23:58:44 -07001829
Ken Sumralle1a45852011-12-14 21:24:27 -08001830 /*
1831 * Only report this error if key_loc is a file and it exists.
1832 * If the device was never encrypted, and /data is not mountable for
1833 * some reason, returning 1 should prevent the UI from presenting the
1834 * a "enter password" screen, or worse, a "press button to wipe the
1835 * device" screen.
1836 */
1837 if ((key_loc[0] == '/') && (access("key_loc", F_OK) == -1)) {
1838 SLOGE("master key file does not exist, aborting");
Paul Lawrence74f29f12014-08-28 15:54:10 -07001839 return CRYPTO_COMPLETE_NOT_ENCRYPTED;
Ken Sumralle1a45852011-12-14 21:24:27 -08001840 } else {
1841 SLOGE("Error getting crypt footer and key\n");
Paul Lawrence74f29f12014-08-28 15:54:10 -07001842 return CRYPTO_COMPLETE_BAD_METADATA;
Ken Sumralle1a45852011-12-14 21:24:27 -08001843 }
Ken Sumrall7f7dbaa2011-02-01 15:46:41 -08001844 }
1845
Paul Lawrence74f29f12014-08-28 15:54:10 -07001846 // Test for possible error flags
1847 if (crypt_ftr.flags & CRYPT_ENCRYPTION_IN_PROGRESS){
1848 SLOGE("Encryption process is partway completed\n");
1849 return CRYPTO_COMPLETE_PARTIAL;
1850 }
1851
1852 if (crypt_ftr.flags & CRYPT_INCONSISTENT_STATE){
1853 SLOGE("Encryption process was interrupted but cannot continue\n");
1854 return CRYPTO_COMPLETE_INCONSISTENT;
1855 }
1856
1857 if (crypt_ftr.flags & CRYPT_DATA_CORRUPT){
1858 SLOGE("Encryption is successful but data is corrupt\n");
1859 return CRYPTO_COMPLETE_CORRUPT;
Ken Sumrall7f7dbaa2011-02-01 15:46:41 -08001860 }
1861
1862 /* We passed the test! We shall diminish, and return to the west */
Paul Lawrence74f29f12014-08-28 15:54:10 -07001863 return CRYPTO_COMPLETE_ENCRYPTED;
Ken Sumrall7f7dbaa2011-02-01 15:46:41 -08001864}
1865
Paul Lawrencef4faa572014-01-29 13:31:03 -08001866static int test_mount_encrypted_fs(struct crypt_mnt_ftr* crypt_ftr,
1867 char *passwd, char *mount_point, char *label)
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001868{
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001869 /* Allocate enough space for a 256 bit key, but we may use less */
Ken Sumrall160b4d62013-04-22 12:15:39 -07001870 unsigned char decrypted_master_key[32];
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001871 char crypto_blkdev[MAXPATHLEN];
1872 char real_blkdev[MAXPATHLEN];
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001873 char tmp_mount_point[64];
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001874 unsigned int orig_failed_decrypt_count;
1875 int rc;
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001876 int use_keymaster = 0;
1877 int upgrade = 0;
Paul Lawrenced0c7b172014-08-08 14:28:10 -07001878 unsigned char* intermediate_key = 0;
1879 size_t intermediate_key_size = 0;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001880
Paul Lawrencef4faa572014-01-29 13:31:03 -08001881 SLOGD("crypt_ftr->fs_size = %lld\n", crypt_ftr->fs_size);
1882 orig_failed_decrypt_count = crypt_ftr->failed_decrypt_count;
Ken Sumrall0cc16632011-01-18 20:32:26 -08001883
Paul Lawrencef4faa572014-01-29 13:31:03 -08001884 if (! (crypt_ftr->flags & CRYPT_MNT_KEY_UNENCRYPTED) ) {
Paul Lawrenced0c7b172014-08-08 14:28:10 -07001885 if (decrypt_master_key(passwd, decrypted_master_key, crypt_ftr,
1886 &intermediate_key, &intermediate_key_size)) {
JP Abgrall7bdfa522013-11-15 13:42:56 -08001887 SLOGE("Failed to decrypt master key\n");
Paul Lawrenced0c7b172014-08-08 14:28:10 -07001888 rc = -1;
1889 goto errout;
JP Abgrall7bdfa522013-11-15 13:42:56 -08001890 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001891 }
1892
Paul Lawrencef4faa572014-01-29 13:31:03 -08001893 fs_mgr_get_crypt_info(fstab, 0, real_blkdev, sizeof(real_blkdev));
1894
Ajay Dudani87701e22014-09-17 21:02:52 -07001895#ifdef CONFIG_HW_DISK_ENCRYPTION
Iliyan Malchevbb7d9af2014-11-20 18:42:23 -08001896 if (!strcmp((char *)crypt_ftr->crypto_type_name, "aes-xts")) {
1897 if(!set_hw_device_encryption_key(passwd, (char*) crypt_ftr->crypto_type_name)) {
1898 SLOGE("Hardware encryption key does not match");
1899 }
Ajay Dudani87701e22014-09-17 21:02:52 -07001900 }
1901#endif
1902
Paul Lawrence74f29f12014-08-28 15:54:10 -07001903 // Create crypto block device - all (non fatal) code paths
1904 // need it
Paul Lawrencef4faa572014-01-29 13:31:03 -08001905 if (create_crypto_blk_dev(crypt_ftr, decrypted_master_key,
1906 real_blkdev, crypto_blkdev, label)) {
Paul Lawrence74f29f12014-08-28 15:54:10 -07001907 SLOGE("Error creating decrypted block device\n");
1908 rc = -1;
1909 goto errout;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001910 }
1911
Paul Lawrence74f29f12014-08-28 15:54:10 -07001912 /* Work out if the problem is the password or the data */
1913 unsigned char scrypted_intermediate_key[sizeof(crypt_ftr->
1914 scrypted_intermediate_key)];
1915 int N = 1 << crypt_ftr->N_factor;
1916 int r = 1 << crypt_ftr->r_factor;
1917 int p = 1 << crypt_ftr->p_factor;
Paul Lawrenced0c7b172014-08-08 14:28:10 -07001918
Paul Lawrence74f29f12014-08-28 15:54:10 -07001919 rc = crypto_scrypt(intermediate_key, intermediate_key_size,
1920 crypt_ftr->salt, sizeof(crypt_ftr->salt),
1921 N, r, p, scrypted_intermediate_key,
1922 sizeof(scrypted_intermediate_key));
Paul Lawrenced0c7b172014-08-08 14:28:10 -07001923
Paul Lawrence74f29f12014-08-28 15:54:10 -07001924 // Does the key match the crypto footer?
1925 if (rc == 0 && memcmp(scrypted_intermediate_key,
1926 crypt_ftr->scrypted_intermediate_key,
1927 sizeof(scrypted_intermediate_key)) == 0) {
1928 SLOGI("Password matches");
1929 rc = 0;
1930 } else {
1931 /* Try mounting the file system anyway, just in case the problem's with
1932 * the footer, not the key. */
1933 sprintf(tmp_mount_point, "%s/tmp_mnt", mount_point);
1934 mkdir(tmp_mount_point, 0755);
1935 if (fs_mgr_do_mount(fstab, DATA_MNT_POINT, crypto_blkdev, tmp_mount_point)) {
1936 SLOGE("Error temp mounting decrypted block device\n");
1937 delete_crypto_blk_dev(label);
1938
Paul Lawrenced0c7b172014-08-08 14:28:10 -07001939 rc = ++crypt_ftr->failed_decrypt_count;
1940 put_crypt_ftr_and_key(crypt_ftr);
Paul Lawrence74f29f12014-08-28 15:54:10 -07001941 } else {
1942 /* Success! */
1943 SLOGI("Password did not match but decrypted drive mounted - continue");
1944 umount(tmp_mount_point);
1945 rc = 0;
Paul Lawrenced0c7b172014-08-08 14:28:10 -07001946 }
Paul Lawrence74f29f12014-08-28 15:54:10 -07001947 }
1948
1949 if (rc == 0) {
1950 crypt_ftr->failed_decrypt_count = 0;
Paul Lawrence72b8b822014-10-05 12:57:37 -07001951 if (orig_failed_decrypt_count != 0) {
1952 put_crypt_ftr_and_key(crypt_ftr);
1953 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001954
Paul Lawrenced0c7b172014-08-08 14:28:10 -07001955 /* Save the name of the crypto block device
Paul Lawrence74f29f12014-08-28 15:54:10 -07001956 * so we can mount it when restarting the framework. */
Ken Sumrall6864b7e2011-01-14 15:20:02 -08001957 property_set("ro.crypto.fs_crypto_blkdev", crypto_blkdev);
Jason parks70a4b3f2011-01-28 10:10:47 -06001958
1959 /* Also save a the master key so we can reencrypted the key
Paul Lawrence74f29f12014-08-28 15:54:10 -07001960 * the key when we want to change the password on it. */
Jason parks70a4b3f2011-01-28 10:10:47 -06001961 memcpy(saved_master_key, decrypted_master_key, KEY_LEN_BYTES);
Ken Sumrall3ad90722011-10-04 20:38:29 -07001962 saved_mount_point = strdup(mount_point);
Jason parks70a4b3f2011-01-28 10:10:47 -06001963 master_key_saved = 1;
JP Abgrall7bdfa522013-11-15 13:42:56 -08001964 SLOGD("%s(): Master key saved\n", __FUNCTION__);
Ken Sumrall6864b7e2011-01-14 15:20:02 -08001965 rc = 0;
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001966
Paul Lawrence74f29f12014-08-28 15:54:10 -07001967 // Upgrade if we're not using the latest KDF.
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001968 use_keymaster = keymaster_check_compatibility();
1969 if (crypt_ftr->kdf_type == KDF_SCRYPT_KEYMASTER) {
Shawn Willden47ba10d2014-09-03 17:07:06 -06001970 // Don't allow downgrade
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001971 } else if (use_keymaster == 1 && crypt_ftr->kdf_type != KDF_SCRYPT_KEYMASTER) {
1972 crypt_ftr->kdf_type = KDF_SCRYPT_KEYMASTER;
1973 upgrade = 1;
1974 } else if (use_keymaster == 0 && crypt_ftr->kdf_type != KDF_SCRYPT) {
Paul Lawrencef4faa572014-01-29 13:31:03 -08001975 crypt_ftr->kdf_type = KDF_SCRYPT;
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001976 upgrade = 1;
1977 }
1978
1979 if (upgrade) {
Paul Lawrencef4faa572014-01-29 13:31:03 -08001980 rc = encrypt_master_key(passwd, crypt_ftr->salt, saved_master_key,
1981 crypt_ftr->master_key, crypt_ftr);
JP Abgrall7bdfa522013-11-15 13:42:56 -08001982 if (!rc) {
Paul Lawrencef4faa572014-01-29 13:31:03 -08001983 rc = put_crypt_ftr_and_key(crypt_ftr);
JP Abgrall7bdfa522013-11-15 13:42:56 -08001984 }
1985 SLOGD("Key Derivation Function upgrade: rc=%d\n", rc);
Paul Lawrenceb2f682b2014-09-08 11:28:19 -07001986
1987 // Do not fail even if upgrade failed - machine is bootable
1988 // Note that if this code is ever hit, there is a *serious* problem
1989 // since KDFs should never fail. You *must* fix the kdf before
1990 // proceeding!
1991 if (rc) {
1992 SLOGW("Upgrade failed with error %d,"
1993 " but continuing with previous state",
1994 rc);
1995 rc = 0;
1996 }
JP Abgrall7bdfa522013-11-15 13:42:56 -08001997 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001998 }
1999
Paul Lawrenced0c7b172014-08-08 14:28:10 -07002000 errout:
2001 if (intermediate_key) {
2002 memset(intermediate_key, 0, intermediate_key_size);
2003 free(intermediate_key);
2004 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002005 return rc;
2006}
2007
Ken Sumrall29d8da82011-05-18 17:20:07 -07002008/*
Jeff Sharkey9c484982015-03-31 10:35:33 -07002009 * Called by vold when it's asked to mount an encrypted external
2010 * storage volume. The incoming partition has no crypto header/footer,
2011 * as any metadata is been stored in a separate, small partition.
2012 *
2013 * out_crypto_blkdev must be MAXPATHLEN.
Ken Sumrall29d8da82011-05-18 17:20:07 -07002014 */
Jeff Sharkey9c484982015-03-31 10:35:33 -07002015int cryptfs_setup_ext_volume(const char* label, const char* real_blkdev,
2016 const unsigned char* key, int keysize, char* out_crypto_blkdev) {
Jeff Sharkeyce6a9132015-04-08 21:07:21 -07002017 int fd = open(real_blkdev, O_RDONLY|O_CLOEXEC);
Hiroaki Miyazawa14eab552015-02-04 13:29:15 +09002018 if (fd == -1) {
Jeff Sharkey9c484982015-03-31 10:35:33 -07002019 SLOGE("Failed to open %s: %s", real_blkdev, strerror(errno));
Hiroaki Miyazawa14eab552015-02-04 13:29:15 +09002020 return -1;
2021 }
2022
2023 unsigned long nr_sec = 0;
2024 get_blkdev_size(fd, &nr_sec);
Ken Sumrall29d8da82011-05-18 17:20:07 -07002025 close(fd);
Hiroaki Miyazawa14eab552015-02-04 13:29:15 +09002026
Ken Sumrall29d8da82011-05-18 17:20:07 -07002027 if (nr_sec == 0) {
Jeff Sharkey9c484982015-03-31 10:35:33 -07002028 SLOGE("Failed to get size of %s: %s", real_blkdev, strerror(errno));
Ken Sumrall29d8da82011-05-18 17:20:07 -07002029 return -1;
2030 }
2031
Jeff Sharkey9c484982015-03-31 10:35:33 -07002032 struct crypt_mnt_ftr ext_crypt_ftr;
2033 memset(&ext_crypt_ftr, 0, sizeof(ext_crypt_ftr));
2034 ext_crypt_ftr.fs_size = nr_sec;
2035 ext_crypt_ftr.keysize = keysize;
2036 strcpy((char*) ext_crypt_ftr.crypto_type_name, "aes-cbc-essiv:sha256");
Ken Sumrall29d8da82011-05-18 17:20:07 -07002037
Jeff Sharkey9c484982015-03-31 10:35:33 -07002038 return create_crypto_blk_dev(&ext_crypt_ftr, key, real_blkdev,
2039 out_crypto_blkdev, label);
2040}
Ken Sumrall29d8da82011-05-18 17:20:07 -07002041
Jeff Sharkey9c484982015-03-31 10:35:33 -07002042/*
2043 * Called by vold when it's asked to unmount an encrypted external
2044 * storage volume.
2045 */
2046int cryptfs_revert_ext_volume(const char* label) {
2047 return delete_crypto_blk_dev((char*) label);
Ken Sumrall29d8da82011-05-18 17:20:07 -07002048}
2049
Ken Sumrall7f7dbaa2011-02-01 15:46:41 -08002050int cryptfs_crypto_complete(void)
2051{
2052 return do_crypto_complete("/data");
2053}
2054
Paul Lawrencef4faa572014-01-29 13:31:03 -08002055int check_unmounted_and_get_ftr(struct crypt_mnt_ftr* crypt_ftr)
2056{
2057 char encrypted_state[PROPERTY_VALUE_MAX];
2058 property_get("ro.crypto.state", encrypted_state, "");
2059 if ( master_key_saved || strcmp(encrypted_state, "encrypted") ) {
2060 SLOGE("encrypted fs already validated or not running with encryption,"
2061 " aborting");
2062 return -1;
2063 }
2064
2065 if (get_crypt_ftr_and_key(crypt_ftr)) {
2066 SLOGE("Error getting crypt footer and key");
2067 return -1;
2068 }
2069
2070 return 0;
2071}
2072
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002073int cryptfs_check_passwd(char *passwd)
2074{
Paul Lawrence05335c32015-03-05 09:46:23 -08002075 SLOGI("cryptfs_check_passwd");
2076 if (e4crypt_crypto_complete(DATA_MNT_POINT) == 0) {
2077 return e4crypt_check_passwd(DATA_MNT_POINT, passwd);
2078 }
2079
Paul Lawrencef4faa572014-01-29 13:31:03 -08002080 struct crypt_mnt_ftr crypt_ftr;
2081 int rc;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002082
Paul Lawrencef4faa572014-01-29 13:31:03 -08002083 rc = check_unmounted_and_get_ftr(&crypt_ftr);
Paul Lawrence3d99eba2015-11-20 07:07:19 -08002084 if (rc) {
2085 SLOGE("Could not get footer");
Paul Lawrencef4faa572014-01-29 13:31:03 -08002086 return rc;
Paul Lawrence3d99eba2015-11-20 07:07:19 -08002087 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002088
Paul Lawrence3bd36d52015-06-09 13:37:44 -07002089 rc = test_mount_encrypted_fs(&crypt_ftr, passwd,
Paul Lawrence3d99eba2015-11-20 07:07:19 -08002090 DATA_MNT_POINT, CRYPTO_BLOCK_DEVICE);
2091 if (rc) {
2092 SLOGE("Password did not match");
2093 return rc;
2094 }
Paul Lawrence684dbdf2014-02-07 12:07:22 -08002095
Paul Lawrence3d99eba2015-11-20 07:07:19 -08002096 if (crypt_ftr.flags & CRYPT_FORCE_COMPLETE) {
2097 // Here we have a default actual password but a real password
2098 // we must test against the scrypted value
2099 // First, we must delete the crypto block device that
2100 // test_mount_encrypted_fs leaves behind as a side effect
2101 delete_crypto_blk_dev(CRYPTO_BLOCK_DEVICE);
2102 rc = test_mount_encrypted_fs(&crypt_ftr, DEFAULT_PASSWORD,
2103 DATA_MNT_POINT, CRYPTO_BLOCK_DEVICE);
2104 if (rc) {
2105 SLOGE("Default password did not match on reboot encryption");
2106 return rc;
2107 }
2108
2109 crypt_ftr.flags &= ~CRYPT_FORCE_COMPLETE;
2110 put_crypt_ftr_and_key(&crypt_ftr);
2111 rc = cryptfs_changepw(crypt_ftr.crypt_type, passwd);
2112 if (rc) {
2113 SLOGE("Could not change password on reboot encryption");
2114 return rc;
2115 }
2116 }
2117
2118 if (crypt_ftr.crypt_type != CRYPT_TYPE_DEFAULT) {
Paul Lawrence399317e2014-03-10 13:20:50 -07002119 cryptfs_clear_password();
2120 password = strdup(passwd);
2121 struct timespec now;
2122 clock_gettime(CLOCK_BOOTTIME, &now);
2123 password_expiry_time = now.tv_sec + password_max_age_seconds;
Paul Lawrence684dbdf2014-02-07 12:07:22 -08002124 }
2125
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002126 return rc;
2127}
2128
Ken Sumrall3ad90722011-10-04 20:38:29 -07002129int cryptfs_verify_passwd(char *passwd)
2130{
2131 struct crypt_mnt_ftr crypt_ftr;
2132 /* Allocate enough space for a 256 bit key, but we may use less */
Ken Sumrall160b4d62013-04-22 12:15:39 -07002133 unsigned char decrypted_master_key[32];
Ken Sumrall3ad90722011-10-04 20:38:29 -07002134 char encrypted_state[PROPERTY_VALUE_MAX];
2135 int rc;
2136
2137 property_get("ro.crypto.state", encrypted_state, "");
2138 if (strcmp(encrypted_state, "encrypted") ) {
2139 SLOGE("device not encrypted, aborting");
2140 return -2;
2141 }
2142
2143 if (!master_key_saved) {
2144 SLOGE("encrypted fs not yet mounted, aborting");
2145 return -1;
2146 }
2147
2148 if (!saved_mount_point) {
2149 SLOGE("encrypted fs failed to save mount point, aborting");
2150 return -1;
2151 }
2152
Ken Sumrall160b4d62013-04-22 12:15:39 -07002153 if (get_crypt_ftr_and_key(&crypt_ftr)) {
Ken Sumrall3ad90722011-10-04 20:38:29 -07002154 SLOGE("Error getting crypt footer and key\n");
2155 return -1;
2156 }
2157
2158 if (crypt_ftr.flags & CRYPT_MNT_KEY_UNENCRYPTED) {
2159 /* If the device has no password, then just say the password is valid */
2160 rc = 0;
2161 } else {
Paul Lawrenced0c7b172014-08-08 14:28:10 -07002162 decrypt_master_key(passwd, decrypted_master_key, &crypt_ftr, 0, 0);
Ken Sumrall3ad90722011-10-04 20:38:29 -07002163 if (!memcmp(decrypted_master_key, saved_master_key, crypt_ftr.keysize)) {
2164 /* They match, the password is correct */
2165 rc = 0;
2166 } else {
2167 /* If incorrect, sleep for a bit to prevent dictionary attacks */
2168 sleep(1);
2169 rc = 1;
2170 }
2171 }
2172
2173 return rc;
2174}
2175
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002176/* Initialize a crypt_mnt_ftr structure. The keysize is
2177 * defaulted to 16 bytes, and the filesystem size to 0.
2178 * Presumably, at a minimum, the caller will update the
2179 * filesystem size and crypto_type_name after calling this function.
2180 */
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07002181static int cryptfs_init_crypt_mnt_ftr(struct crypt_mnt_ftr *ftr)
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002182{
Ken Sumrall160b4d62013-04-22 12:15:39 -07002183 off64_t off;
2184
2185 memset(ftr, 0, sizeof(struct crypt_mnt_ftr));
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002186 ftr->magic = CRYPT_MNT_MAGIC;
Kenny Rootc96a5f82013-06-14 12:08:28 -07002187 ftr->major_version = CURRENT_MAJOR_VERSION;
2188 ftr->minor_version = CURRENT_MINOR_VERSION;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002189 ftr->ftr_size = sizeof(struct crypt_mnt_ftr);
Jason parks70a4b3f2011-01-28 10:10:47 -06002190 ftr->keysize = KEY_LEN_BYTES;
Ken Sumrall160b4d62013-04-22 12:15:39 -07002191
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07002192 switch (keymaster_check_compatibility()) {
2193 case 1:
2194 ftr->kdf_type = KDF_SCRYPT_KEYMASTER;
2195 break;
2196
2197 case 0:
2198 ftr->kdf_type = KDF_SCRYPT;
2199 break;
2200
2201 default:
2202 SLOGE("keymaster_check_compatibility failed");
2203 return -1;
2204 }
2205
Kenny Rootc4c70f12013-06-14 12:11:38 -07002206 get_device_scrypt_params(ftr);
2207
Ken Sumrall160b4d62013-04-22 12:15:39 -07002208 ftr->persist_data_size = CRYPT_PERSIST_DATA_SIZE;
2209 if (get_crypt_ftr_info(NULL, &off) == 0) {
2210 ftr->persist_data_offset[0] = off + CRYPT_FOOTER_TO_PERSIST_OFFSET;
2211 ftr->persist_data_offset[1] = off + CRYPT_FOOTER_TO_PERSIST_OFFSET +
2212 ftr->persist_data_size;
2213 }
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07002214
2215 return 0;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002216}
2217
Ken Sumrall29d8da82011-05-18 17:20:07 -07002218static int cryptfs_enable_wipe(char *crypto_blkdev, off64_t size, int type)
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002219{
Ken Sumralle550f782013-08-20 13:48:23 -07002220 const char *args[10];
2221 char size_str[32]; /* Must be large enough to hold a %lld and null byte */
2222 int num_args;
2223 int status;
2224 int tmp;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002225 int rc = -1;
2226
Ken Sumrall29d8da82011-05-18 17:20:07 -07002227 if (type == EXT4_FS) {
Ken Sumralle550f782013-08-20 13:48:23 -07002228 args[0] = "/system/bin/make_ext4fs";
2229 args[1] = "-a";
2230 args[2] = "/data";
2231 args[3] = "-l";
Elliott Hughes73737162014-06-25 17:27:42 -07002232 snprintf(size_str, sizeof(size_str), "%" PRId64, size * 512);
Ken Sumralle550f782013-08-20 13:48:23 -07002233 args[4] = size_str;
2234 args[5] = crypto_blkdev;
2235 num_args = 6;
2236 SLOGI("Making empty filesystem with command %s %s %s %s %s %s\n",
2237 args[0], args[1], args[2], args[3], args[4], args[5]);
JP Abgrall62c7af32014-06-16 13:01:23 -07002238 } else if (type == F2FS_FS) {
2239 args[0] = "/system/bin/mkfs.f2fs";
2240 args[1] = "-t";
2241 args[2] = "-d1";
2242 args[3] = crypto_blkdev;
Elliott Hughes73737162014-06-25 17:27:42 -07002243 snprintf(size_str, sizeof(size_str), "%" PRId64, size);
JP Abgrall62c7af32014-06-16 13:01:23 -07002244 args[4] = size_str;
2245 num_args = 5;
2246 SLOGI("Making empty filesystem with command %s %s %s %s %s\n",
2247 args[0], args[1], args[2], args[3], args[4]);
Ken Sumrall29d8da82011-05-18 17:20:07 -07002248 } else {
2249 SLOGE("cryptfs_enable_wipe(): unknown filesystem type %d\n", type);
2250 return -1;
2251 }
2252
Ken Sumralle550f782013-08-20 13:48:23 -07002253 tmp = android_fork_execvp(num_args, (char **)args, &status, false, true);
2254
2255 if (tmp != 0) {
2256 SLOGE("Error creating empty filesystem on %s due to logwrap error\n", crypto_blkdev);
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002257 } else {
Ken Sumralle550f782013-08-20 13:48:23 -07002258 if (WIFEXITED(status)) {
2259 if (WEXITSTATUS(status)) {
2260 SLOGE("Error creating filesystem on %s, exit status %d ",
2261 crypto_blkdev, WEXITSTATUS(status));
2262 } else {
2263 SLOGD("Successfully created filesystem on %s\n", crypto_blkdev);
2264 rc = 0;
2265 }
2266 } else {
2267 SLOGE("Error creating filesystem on %s, did not exit normally\n", crypto_blkdev);
2268 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002269 }
2270
2271 return rc;
2272}
2273
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002274#define CRYPT_INPLACE_BUFSIZE 4096
Paul Lawrence87999172014-02-20 12:21:31 -08002275#define CRYPT_SECTORS_PER_BUFSIZE (CRYPT_INPLACE_BUFSIZE / CRYPT_SECTOR_SIZE)
2276#define CRYPT_SECTOR_SIZE 512
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002277
2278/* aligned 32K writes tends to make flash happy.
2279 * SD card association recommends it.
2280 */
Ajay Dudani87701e22014-09-17 21:02:52 -07002281#ifndef CONFIG_HW_DISK_ENCRYPTION
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002282#define BLOCKS_AT_A_TIME 8
Ajay Dudani87701e22014-09-17 21:02:52 -07002283#else
2284#define BLOCKS_AT_A_TIME 1024
2285#endif
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002286
2287struct encryptGroupsData
2288{
2289 int realfd;
2290 int cryptofd;
2291 off64_t numblocks;
2292 off64_t one_pct, cur_pct, new_pct;
2293 off64_t blocks_already_done, tot_numblocks;
Paul Lawrence58c58cf2014-06-04 13:12:21 -07002294 off64_t used_blocks_already_done, tot_used_blocks;
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002295 char* real_blkdev, * crypto_blkdev;
2296 int count;
2297 off64_t offset;
2298 char* buffer;
Paul Lawrence87999172014-02-20 12:21:31 -08002299 off64_t last_written_sector;
2300 int completed;
Paul Lawrencea96d9c92014-06-04 14:05:01 -07002301 time_t time_started;
2302 int remaining_time;
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002303};
2304
Paul Lawrence58c58cf2014-06-04 13:12:21 -07002305static void update_progress(struct encryptGroupsData* data, int is_used)
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002306{
2307 data->blocks_already_done++;
Paul Lawrence58c58cf2014-06-04 13:12:21 -07002308
2309 if (is_used) {
2310 data->used_blocks_already_done++;
2311 }
Paul Lawrence58c58cf2014-06-04 13:12:21 -07002312 if (data->tot_used_blocks) {
2313 data->new_pct = data->used_blocks_already_done / data->one_pct;
2314 } else {
2315 data->new_pct = data->blocks_already_done / data->one_pct;
2316 }
2317
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002318 if (data->new_pct > data->cur_pct) {
2319 char buf[8];
2320 data->cur_pct = data->new_pct;
Elliott Hughescb33f572014-06-25 18:25:11 -07002321 snprintf(buf, sizeof(buf), "%" PRId64, data->cur_pct);
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002322 property_set("vold.encrypt_progress", buf);
2323 }
Paul Lawrencea96d9c92014-06-04 14:05:01 -07002324
2325 if (data->cur_pct >= 5) {
Paul Lawrence9c58a872014-09-30 09:12:51 -07002326 struct timespec time_now;
2327 if (clock_gettime(CLOCK_MONOTONIC, &time_now)) {
2328 SLOGW("Error getting time");
2329 } else {
2330 double elapsed_time = difftime(time_now.tv_sec, data->time_started);
2331 off64_t remaining_blocks = data->tot_used_blocks
2332 - data->used_blocks_already_done;
2333 int remaining_time = (int)(elapsed_time * remaining_blocks
2334 / data->used_blocks_already_done);
Paul Lawrence71577502014-08-13 14:55:55 -07002335
Paul Lawrence9c58a872014-09-30 09:12:51 -07002336 // Change time only if not yet set, lower, or a lot higher for
2337 // best user experience
2338 if (data->remaining_time == -1
2339 || remaining_time < data->remaining_time
2340 || remaining_time > data->remaining_time + 60) {
2341 char buf[8];
2342 snprintf(buf, sizeof(buf), "%d", remaining_time);
2343 property_set("vold.encrypt_time_remaining", buf);
2344 data->remaining_time = remaining_time;
2345 }
Paul Lawrencea96d9c92014-06-04 14:05:01 -07002346 }
2347 }
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002348}
2349
Paul Lawrence3846be12014-09-22 11:33:54 -07002350static void log_progress(struct encryptGroupsData const* data, bool completed)
2351{
2352 // Precondition - if completed data = 0 else data != 0
2353
2354 // Track progress so we can skip logging blocks
2355 static off64_t offset = -1;
2356
2357 // Need to close existing 'Encrypting from' log?
2358 if (completed || (offset != -1 && data->offset != offset)) {
2359 SLOGI("Encrypted to sector %" PRId64,
2360 offset / info.block_size * CRYPT_SECTOR_SIZE);
2361 offset = -1;
2362 }
2363
2364 // Need to start new 'Encrypting from' log?
2365 if (!completed && offset != data->offset) {
2366 SLOGI("Encrypting from sector %" PRId64,
2367 data->offset / info.block_size * CRYPT_SECTOR_SIZE);
2368 }
2369
2370 // Update offset
2371 if (!completed) {
2372 offset = data->offset + (off64_t)data->count * info.block_size;
2373 }
2374}
2375
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002376static int flush_outstanding_data(struct encryptGroupsData* data)
2377{
2378 if (data->count == 0) {
2379 return 0;
2380 }
2381
Elliott Hughes231bdba2014-06-25 18:36:19 -07002382 SLOGV("Copying %d blocks at offset %" PRIx64, data->count, data->offset);
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002383
2384 if (pread64(data->realfd, data->buffer,
2385 info.block_size * data->count, data->offset)
2386 <= 0) {
2387 SLOGE("Error reading real_blkdev %s for inplace encrypt",
2388 data->real_blkdev);
2389 return -1;
2390 }
2391
2392 if (pwrite64(data->cryptofd, data->buffer,
2393 info.block_size * data->count, data->offset)
2394 <= 0) {
2395 SLOGE("Error writing crypto_blkdev %s for inplace encrypt",
2396 data->crypto_blkdev);
2397 return -1;
Paul Lawrence87999172014-02-20 12:21:31 -08002398 } else {
Paul Lawrence3846be12014-09-22 11:33:54 -07002399 log_progress(data, false);
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002400 }
2401
2402 data->count = 0;
Paul Lawrence87999172014-02-20 12:21:31 -08002403 data->last_written_sector = (data->offset + data->count)
2404 / info.block_size * CRYPT_SECTOR_SIZE - 1;
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002405 return 0;
2406}
2407
2408static int encrypt_groups(struct encryptGroupsData* data)
2409{
2410 unsigned int i;
2411 u8 *block_bitmap = 0;
2412 unsigned int block;
2413 off64_t ret;
2414 int rc = -1;
2415
2416 data->buffer = malloc(info.block_size * BLOCKS_AT_A_TIME);
2417 if (!data->buffer) {
2418 SLOGE("Failed to allocate crypto buffer");
2419 goto errout;
2420 }
2421
2422 block_bitmap = malloc(info.block_size);
2423 if (!block_bitmap) {
2424 SLOGE("failed to allocate block bitmap");
2425 goto errout;
2426 }
2427
2428 for (i = 0; i < aux_info.groups; ++i) {
2429 SLOGI("Encrypting group %d", i);
2430
2431 u32 first_block = aux_info.first_data_block + i * info.blocks_per_group;
2432 u32 block_count = min(info.blocks_per_group,
2433 aux_info.len_blocks - first_block);
2434
2435 off64_t offset = (u64)info.block_size
2436 * aux_info.bg_desc[i].bg_block_bitmap;
2437
2438 ret = pread64(data->realfd, block_bitmap, info.block_size, offset);
2439 if (ret != (int)info.block_size) {
2440 SLOGE("failed to read all of block group bitmap %d", i);
2441 goto errout;
2442 }
2443
2444 offset = (u64)info.block_size * first_block;
2445
2446 data->count = 0;
2447
2448 for (block = 0; block < block_count; block++) {
liminghaoaa08e582016-01-06 10:30:49 +08002449 int used = (aux_info.bg_desc[i].bg_flags & EXT4_BG_BLOCK_UNINIT) ?
2450 0 : bitmap_get_bit(block_bitmap, block);
Paul Lawrence58c58cf2014-06-04 13:12:21 -07002451 update_progress(data, used);
2452 if (used) {
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002453 if (data->count == 0) {
2454 data->offset = offset;
2455 }
2456 data->count++;
2457 } else {
2458 if (flush_outstanding_data(data)) {
2459 goto errout;
2460 }
2461 }
2462
2463 offset += info.block_size;
2464
2465 /* Write data if we are aligned or buffer size reached */
2466 if (offset % (info.block_size * BLOCKS_AT_A_TIME) == 0
2467 || data->count == BLOCKS_AT_A_TIME) {
2468 if (flush_outstanding_data(data)) {
2469 goto errout;
2470 }
2471 }
Paul Lawrence87999172014-02-20 12:21:31 -08002472
Paul Lawrence73d7a022014-06-09 14:10:09 -07002473 if (!is_battery_ok_to_continue()) {
Paul Lawrence87999172014-02-20 12:21:31 -08002474 SLOGE("Stopping encryption due to low battery");
2475 rc = 0;
2476 goto errout;
2477 }
2478
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002479 }
2480 if (flush_outstanding_data(data)) {
2481 goto errout;
2482 }
2483 }
2484
Paul Lawrence87999172014-02-20 12:21:31 -08002485 data->completed = 1;
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002486 rc = 0;
2487
2488errout:
Paul Lawrence3846be12014-09-22 11:33:54 -07002489 log_progress(0, true);
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002490 free(data->buffer);
2491 free(block_bitmap);
2492 return rc;
2493}
2494
2495static int cryptfs_enable_inplace_ext4(char *crypto_blkdev,
2496 char *real_blkdev,
2497 off64_t size,
2498 off64_t *size_already_done,
Paul Lawrence87999172014-02-20 12:21:31 -08002499 off64_t tot_size,
2500 off64_t previously_encrypted_upto)
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002501{
Paul Lawrence58c58cf2014-06-04 13:12:21 -07002502 u32 i;
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002503 struct encryptGroupsData data;
Paul Lawrence74f29f12014-08-28 15:54:10 -07002504 int rc; // Can't initialize without causing warning -Wclobbered
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002505
Paul Lawrence87999172014-02-20 12:21:31 -08002506 if (previously_encrypted_upto > *size_already_done) {
2507 SLOGD("Not fast encrypting since resuming part way through");
2508 return -1;
2509 }
2510
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002511 memset(&data, 0, sizeof(data));
2512 data.real_blkdev = real_blkdev;
2513 data.crypto_blkdev = crypto_blkdev;
2514
Jeff Sharkeyce6a9132015-04-08 21:07:21 -07002515 if ( (data.realfd = open(real_blkdev, O_RDWR|O_CLOEXEC)) < 0) {
JP Abgrall3334c6a2014-10-10 15:52:11 -07002516 SLOGE("Error opening real_blkdev %s for inplace encrypt. err=%d(%s)\n",
2517 real_blkdev, errno, strerror(errno));
Paul Lawrence74f29f12014-08-28 15:54:10 -07002518 rc = -1;
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002519 goto errout;
2520 }
2521
David Ng82fd8042015-01-21 13:55:21 -08002522 // Wait until the block device appears. Re-use the mount retry values since it is reasonable.
2523 int retries = RETRY_MOUNT_ATTEMPTS;
2524 while ((data.cryptofd = open(crypto_blkdev, O_WRONLY|O_CLOEXEC)) < 0) {
2525 if (--retries) {
2526 SLOGE("Error opening crypto_blkdev %s for ext4 inplace encrypt. err=%d(%s), retrying\n",
2527 crypto_blkdev, errno, strerror(errno));
2528 sleep(RETRY_MOUNT_DELAY_SECONDS);
2529 } else {
2530 SLOGE("Error opening crypto_blkdev %s for ext4 inplace encrypt. err=%d(%s)\n",
2531 crypto_blkdev, errno, strerror(errno));
2532 rc = ENABLE_INPLACE_ERR_DEV;
2533 goto errout;
2534 }
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002535 }
2536
2537 if (setjmp(setjmp_env)) {
JP Abgrall7fc1de82014-10-10 18:43:41 -07002538 SLOGE("Reading ext4 extent caused an exception\n");
Paul Lawrence74f29f12014-08-28 15:54:10 -07002539 rc = -1;
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002540 goto errout;
2541 }
2542
2543 if (read_ext(data.realfd, 0) != 0) {
JP Abgrall7fc1de82014-10-10 18:43:41 -07002544 SLOGE("Failed to read ext4 extent\n");
Paul Lawrence74f29f12014-08-28 15:54:10 -07002545 rc = -1;
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002546 goto errout;
2547 }
2548
2549 data.numblocks = size / CRYPT_SECTORS_PER_BUFSIZE;
2550 data.tot_numblocks = tot_size / CRYPT_SECTORS_PER_BUFSIZE;
2551 data.blocks_already_done = *size_already_done / CRYPT_SECTORS_PER_BUFSIZE;
2552
JP Abgrall7fc1de82014-10-10 18:43:41 -07002553 SLOGI("Encrypting ext4 filesystem in place...");
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002554
Paul Lawrence58c58cf2014-06-04 13:12:21 -07002555 data.tot_used_blocks = data.numblocks;
2556 for (i = 0; i < aux_info.groups; ++i) {
2557 data.tot_used_blocks -= aux_info.bg_desc[i].bg_free_blocks_count;
2558 }
2559
2560 data.one_pct = data.tot_used_blocks / 100;
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002561 data.cur_pct = 0;
Paul Lawrence9c58a872014-09-30 09:12:51 -07002562
2563 struct timespec time_started = {0};
2564 if (clock_gettime(CLOCK_MONOTONIC, &time_started)) {
2565 SLOGW("Error getting time at start");
2566 // Note - continue anyway - we'll run with 0
2567 }
2568 data.time_started = time_started.tv_sec;
Paul Lawrencea96d9c92014-06-04 14:05:01 -07002569 data.remaining_time = -1;
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002570
2571 rc = encrypt_groups(&data);
2572 if (rc) {
2573 SLOGE("Error encrypting groups");
2574 goto errout;
2575 }
2576
Paul Lawrence87999172014-02-20 12:21:31 -08002577 *size_already_done += data.completed ? size : data.last_written_sector;
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002578 rc = 0;
2579
2580errout:
2581 close(data.realfd);
2582 close(data.cryptofd);
2583
2584 return rc;
2585}
2586
Paul Lawrence3846be12014-09-22 11:33:54 -07002587static void log_progress_f2fs(u64 block, bool completed)
2588{
2589 // Precondition - if completed data = 0 else data != 0
2590
2591 // Track progress so we can skip logging blocks
2592 static u64 last_block = (u64)-1;
2593
2594 // Need to close existing 'Encrypting from' log?
2595 if (completed || (last_block != (u64)-1 && block != last_block + 1)) {
2596 SLOGI("Encrypted to block %" PRId64, last_block);
2597 last_block = -1;
2598 }
2599
2600 // Need to start new 'Encrypting from' log?
2601 if (!completed && (last_block == (u64)-1 || block != last_block + 1)) {
2602 SLOGI("Encrypting from block %" PRId64, block);
2603 }
2604
2605 // Update offset
2606 if (!completed) {
2607 last_block = block;
2608 }
2609}
2610
Daniel Rosenberge82df162014-08-15 22:19:23 +00002611static int encrypt_one_block_f2fs(u64 pos, void *data)
2612{
2613 struct encryptGroupsData *priv_dat = (struct encryptGroupsData *)data;
2614
2615 priv_dat->blocks_already_done = pos - 1;
2616 update_progress(priv_dat, 1);
2617
2618 off64_t offset = pos * CRYPT_INPLACE_BUFSIZE;
2619
2620 if (pread64(priv_dat->realfd, priv_dat->buffer, CRYPT_INPLACE_BUFSIZE, offset) <= 0) {
JP Abgrall7fc1de82014-10-10 18:43:41 -07002621 SLOGE("Error reading real_blkdev %s for f2fs inplace encrypt", priv_dat->crypto_blkdev);
Daniel Rosenberge82df162014-08-15 22:19:23 +00002622 return -1;
2623 }
2624
2625 if (pwrite64(priv_dat->cryptofd, priv_dat->buffer, CRYPT_INPLACE_BUFSIZE, offset) <= 0) {
JP Abgrall7fc1de82014-10-10 18:43:41 -07002626 SLOGE("Error writing crypto_blkdev %s for f2fs inplace encrypt", priv_dat->crypto_blkdev);
Daniel Rosenberge82df162014-08-15 22:19:23 +00002627 return -1;
2628 } else {
Paul Lawrence3846be12014-09-22 11:33:54 -07002629 log_progress_f2fs(pos, false);
Daniel Rosenberge82df162014-08-15 22:19:23 +00002630 }
2631
2632 return 0;
2633}
2634
2635static int cryptfs_enable_inplace_f2fs(char *crypto_blkdev,
2636 char *real_blkdev,
2637 off64_t size,
2638 off64_t *size_already_done,
2639 off64_t tot_size,
2640 off64_t previously_encrypted_upto)
2641{
Daniel Rosenberge82df162014-08-15 22:19:23 +00002642 struct encryptGroupsData data;
2643 struct f2fs_info *f2fs_info = NULL;
JP Abgrall7fc1de82014-10-10 18:43:41 -07002644 int rc = ENABLE_INPLACE_ERR_OTHER;
Daniel Rosenberge82df162014-08-15 22:19:23 +00002645 if (previously_encrypted_upto > *size_already_done) {
2646 SLOGD("Not fast encrypting since resuming part way through");
JP Abgrall7fc1de82014-10-10 18:43:41 -07002647 return ENABLE_INPLACE_ERR_OTHER;
Daniel Rosenberge82df162014-08-15 22:19:23 +00002648 }
2649 memset(&data, 0, sizeof(data));
2650 data.real_blkdev = real_blkdev;
2651 data.crypto_blkdev = crypto_blkdev;
2652 data.realfd = -1;
2653 data.cryptofd = -1;
Jeff Sharkeyce6a9132015-04-08 21:07:21 -07002654 if ( (data.realfd = open64(real_blkdev, O_RDWR|O_CLOEXEC)) < 0) {
JP Abgrall7fc1de82014-10-10 18:43:41 -07002655 SLOGE("Error opening real_blkdev %s for f2fs inplace encrypt\n",
Daniel Rosenberge82df162014-08-15 22:19:23 +00002656 real_blkdev);
2657 goto errout;
2658 }
Jeff Sharkeyce6a9132015-04-08 21:07:21 -07002659 if ( (data.cryptofd = open64(crypto_blkdev, O_WRONLY|O_CLOEXEC)) < 0) {
JP Abgrall7fc1de82014-10-10 18:43:41 -07002660 SLOGE("Error opening crypto_blkdev %s for f2fs inplace encrypt. err=%d(%s)\n",
JP Abgrall3334c6a2014-10-10 15:52:11 -07002661 crypto_blkdev, errno, strerror(errno));
JP Abgrall7fc1de82014-10-10 18:43:41 -07002662 rc = ENABLE_INPLACE_ERR_DEV;
Daniel Rosenberge82df162014-08-15 22:19:23 +00002663 goto errout;
2664 }
2665
2666 f2fs_info = generate_f2fs_info(data.realfd);
2667 if (!f2fs_info)
2668 goto errout;
2669
2670 data.numblocks = size / CRYPT_SECTORS_PER_BUFSIZE;
2671 data.tot_numblocks = tot_size / CRYPT_SECTORS_PER_BUFSIZE;
2672 data.blocks_already_done = *size_already_done / CRYPT_SECTORS_PER_BUFSIZE;
2673
2674 data.tot_used_blocks = get_num_blocks_used(f2fs_info);
2675
2676 data.one_pct = data.tot_used_blocks / 100;
2677 data.cur_pct = 0;
2678 data.time_started = time(NULL);
2679 data.remaining_time = -1;
2680
2681 data.buffer = malloc(f2fs_info->block_size);
2682 if (!data.buffer) {
2683 SLOGE("Failed to allocate crypto buffer");
2684 goto errout;
2685 }
2686
2687 data.count = 0;
2688
2689 /* Currently, this either runs to completion, or hits a nonrecoverable error */
2690 rc = run_on_used_blocks(data.blocks_already_done, f2fs_info, &encrypt_one_block_f2fs, &data);
2691
2692 if (rc) {
JP Abgrall7fc1de82014-10-10 18:43:41 -07002693 SLOGE("Error in running over f2fs blocks");
2694 rc = ENABLE_INPLACE_ERR_OTHER;
Daniel Rosenberge82df162014-08-15 22:19:23 +00002695 goto errout;
2696 }
2697
2698 *size_already_done += size;
2699 rc = 0;
2700
2701errout:
2702 if (rc)
2703 SLOGE("Failed to encrypt f2fs filesystem on %s", real_blkdev);
2704
Paul Lawrence3846be12014-09-22 11:33:54 -07002705 log_progress_f2fs(0, true);
Daniel Rosenberge82df162014-08-15 22:19:23 +00002706 free(f2fs_info);
2707 free(data.buffer);
2708 close(data.realfd);
2709 close(data.cryptofd);
2710
2711 return rc;
2712}
2713
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002714static int cryptfs_enable_inplace_full(char *crypto_blkdev, char *real_blkdev,
2715 off64_t size, off64_t *size_already_done,
Paul Lawrence87999172014-02-20 12:21:31 -08002716 off64_t tot_size,
2717 off64_t previously_encrypted_upto)
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002718{
2719 int realfd, cryptofd;
2720 char *buf[CRYPT_INPLACE_BUFSIZE];
JP Abgrall7fc1de82014-10-10 18:43:41 -07002721 int rc = ENABLE_INPLACE_ERR_OTHER;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002722 off64_t numblocks, i, remainder;
Ken Sumrall8ddbe402011-01-17 15:26:29 -08002723 off64_t one_pct, cur_pct, new_pct;
Ken Sumrall29d8da82011-05-18 17:20:07 -07002724 off64_t blocks_already_done, tot_numblocks;
Ken Sumrall8ddbe402011-01-17 15:26:29 -08002725
Jeff Sharkeyce6a9132015-04-08 21:07:21 -07002726 if ( (realfd = open(real_blkdev, O_RDONLY|O_CLOEXEC)) < 0) {
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002727 SLOGE("Error opening real_blkdev %s for inplace encrypt\n", real_blkdev);
JP Abgrall7fc1de82014-10-10 18:43:41 -07002728 return ENABLE_INPLACE_ERR_OTHER;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002729 }
2730
Jeff Sharkeyce6a9132015-04-08 21:07:21 -07002731 if ( (cryptofd = open(crypto_blkdev, O_WRONLY|O_CLOEXEC)) < 0) {
JP Abgrall3334c6a2014-10-10 15:52:11 -07002732 SLOGE("Error opening crypto_blkdev %s for inplace encrypt. err=%d(%s)\n",
2733 crypto_blkdev, errno, strerror(errno));
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002734 close(realfd);
JP Abgrall7fc1de82014-10-10 18:43:41 -07002735 return ENABLE_INPLACE_ERR_DEV;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002736 }
2737
2738 /* This is pretty much a simple loop of reading 4K, and writing 4K.
2739 * The size passed in is the number of 512 byte sectors in the filesystem.
2740 * So compute the number of whole 4K blocks we should read/write,
2741 * and the remainder.
2742 */
2743 numblocks = size / CRYPT_SECTORS_PER_BUFSIZE;
2744 remainder = size % CRYPT_SECTORS_PER_BUFSIZE;
Ken Sumrall29d8da82011-05-18 17:20:07 -07002745 tot_numblocks = tot_size / CRYPT_SECTORS_PER_BUFSIZE;
2746 blocks_already_done = *size_already_done / CRYPT_SECTORS_PER_BUFSIZE;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002747
2748 SLOGE("Encrypting filesystem in place...");
2749
Paul Lawrence87999172014-02-20 12:21:31 -08002750 i = previously_encrypted_upto + 1 - *size_already_done;
2751
2752 if (lseek64(realfd, i * CRYPT_SECTOR_SIZE, SEEK_SET) < 0) {
2753 SLOGE("Cannot seek to previously encrypted point on %s", real_blkdev);
2754 goto errout;
2755 }
2756
2757 if (lseek64(cryptofd, i * CRYPT_SECTOR_SIZE, SEEK_SET) < 0) {
2758 SLOGE("Cannot seek to previously encrypted point on %s", crypto_blkdev);
2759 goto errout;
2760 }
2761
2762 for (;i < size && i % CRYPT_SECTORS_PER_BUFSIZE != 0; ++i) {
2763 if (unix_read(realfd, buf, CRYPT_SECTOR_SIZE) <= 0) {
2764 SLOGE("Error reading initial sectors from real_blkdev %s for "
2765 "inplace encrypt\n", crypto_blkdev);
2766 goto errout;
2767 }
2768 if (unix_write(cryptofd, buf, CRYPT_SECTOR_SIZE) <= 0) {
2769 SLOGE("Error writing initial sectors to crypto_blkdev %s for "
2770 "inplace encrypt\n", crypto_blkdev);
2771 goto errout;
2772 } else {
Elliott Hughescb33f572014-06-25 18:25:11 -07002773 SLOGI("Encrypted 1 block at %" PRId64, i);
Paul Lawrence87999172014-02-20 12:21:31 -08002774 }
2775 }
2776
Ken Sumrall29d8da82011-05-18 17:20:07 -07002777 one_pct = tot_numblocks / 100;
Ken Sumrall8ddbe402011-01-17 15:26:29 -08002778 cur_pct = 0;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002779 /* process the majority of the filesystem in blocks */
Paul Lawrence87999172014-02-20 12:21:31 -08002780 for (i/=CRYPT_SECTORS_PER_BUFSIZE; i<numblocks; i++) {
Ken Sumrall29d8da82011-05-18 17:20:07 -07002781 new_pct = (i + blocks_already_done) / one_pct;
Ken Sumrall8ddbe402011-01-17 15:26:29 -08002782 if (new_pct > cur_pct) {
2783 char buf[8];
2784
2785 cur_pct = new_pct;
Elliott Hughes73737162014-06-25 17:27:42 -07002786 snprintf(buf, sizeof(buf), "%" PRId64, cur_pct);
Ken Sumrall8ddbe402011-01-17 15:26:29 -08002787 property_set("vold.encrypt_progress", buf);
2788 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002789 if (unix_read(realfd, buf, CRYPT_INPLACE_BUFSIZE) <= 0) {
Paul Lawrence87999172014-02-20 12:21:31 -08002790 SLOGE("Error reading real_blkdev %s for inplace encrypt", crypto_blkdev);
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002791 goto errout;
2792 }
2793 if (unix_write(cryptofd, buf, CRYPT_INPLACE_BUFSIZE) <= 0) {
Paul Lawrence87999172014-02-20 12:21:31 -08002794 SLOGE("Error writing crypto_blkdev %s for inplace encrypt", crypto_blkdev);
2795 goto errout;
2796 } else {
Elliott Hughescb33f572014-06-25 18:25:11 -07002797 SLOGD("Encrypted %d block at %" PRId64,
Paul Lawrence87999172014-02-20 12:21:31 -08002798 CRYPT_SECTORS_PER_BUFSIZE,
2799 i * CRYPT_SECTORS_PER_BUFSIZE);
2800 }
2801
Paul Lawrence73d7a022014-06-09 14:10:09 -07002802 if (!is_battery_ok_to_continue()) {
Paul Lawrence87999172014-02-20 12:21:31 -08002803 SLOGE("Stopping encryption due to low battery");
2804 *size_already_done += (i + 1) * CRYPT_SECTORS_PER_BUFSIZE - 1;
2805 rc = 0;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002806 goto errout;
2807 }
2808 }
2809
2810 /* Do any remaining sectors */
2811 for (i=0; i<remainder; i++) {
Paul Lawrence87999172014-02-20 12:21:31 -08002812 if (unix_read(realfd, buf, CRYPT_SECTOR_SIZE) <= 0) {
2813 SLOGE("Error reading final sectors from real_blkdev %s for inplace encrypt", crypto_blkdev);
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002814 goto errout;
2815 }
Paul Lawrence87999172014-02-20 12:21:31 -08002816 if (unix_write(cryptofd, buf, CRYPT_SECTOR_SIZE) <= 0) {
2817 SLOGE("Error writing final sectors to crypto_blkdev %s for inplace encrypt", crypto_blkdev);
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002818 goto errout;
Paul Lawrence87999172014-02-20 12:21:31 -08002819 } else {
2820 SLOGI("Encrypted 1 block at next location");
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002821 }
2822 }
2823
Ken Sumrall29d8da82011-05-18 17:20:07 -07002824 *size_already_done += size;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002825 rc = 0;
2826
2827errout:
2828 close(realfd);
2829 close(cryptofd);
2830
2831 return rc;
2832}
2833
JP Abgrall7fc1de82014-10-10 18:43:41 -07002834/* returns on of the ENABLE_INPLACE_* return codes */
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002835static int cryptfs_enable_inplace(char *crypto_blkdev, char *real_blkdev,
2836 off64_t size, off64_t *size_already_done,
Paul Lawrence87999172014-02-20 12:21:31 -08002837 off64_t tot_size,
2838 off64_t previously_encrypted_upto)
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002839{
JP Abgrall7fc1de82014-10-10 18:43:41 -07002840 int rc_ext4, rc_f2fs, rc_full;
Paul Lawrence87999172014-02-20 12:21:31 -08002841 if (previously_encrypted_upto) {
Elliott Hughescb33f572014-06-25 18:25:11 -07002842 SLOGD("Continuing encryption from %" PRId64, previously_encrypted_upto);
Paul Lawrence87999172014-02-20 12:21:31 -08002843 }
2844
2845 if (*size_already_done + size < previously_encrypted_upto) {
2846 *size_already_done += size;
2847 return 0;
2848 }
2849
Daniel Rosenberge82df162014-08-15 22:19:23 +00002850 /* TODO: identify filesystem type.
2851 * As is, cryptfs_enable_inplace_ext4 will fail on an f2fs partition, and
2852 * then we will drop down to cryptfs_enable_inplace_f2fs.
2853 * */
JP Abgrall7fc1de82014-10-10 18:43:41 -07002854 if ((rc_ext4 = cryptfs_enable_inplace_ext4(crypto_blkdev, real_blkdev,
Daniel Rosenberge82df162014-08-15 22:19:23 +00002855 size, size_already_done,
JP Abgrall7fc1de82014-10-10 18:43:41 -07002856 tot_size, previously_encrypted_upto)) == 0) {
Daniel Rosenberge82df162014-08-15 22:19:23 +00002857 return 0;
2858 }
JP Abgrall7fc1de82014-10-10 18:43:41 -07002859 SLOGD("cryptfs_enable_inplace_ext4()=%d\n", rc_ext4);
Daniel Rosenberge82df162014-08-15 22:19:23 +00002860
JP Abgrall7fc1de82014-10-10 18:43:41 -07002861 if ((rc_f2fs = cryptfs_enable_inplace_f2fs(crypto_blkdev, real_blkdev,
Daniel Rosenberge82df162014-08-15 22:19:23 +00002862 size, size_already_done,
JP Abgrall7fc1de82014-10-10 18:43:41 -07002863 tot_size, previously_encrypted_upto)) == 0) {
Daniel Rosenberge82df162014-08-15 22:19:23 +00002864 return 0;
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002865 }
JP Abgrall7fc1de82014-10-10 18:43:41 -07002866 SLOGD("cryptfs_enable_inplace_f2fs()=%d\n", rc_f2fs);
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002867
JP Abgrall7fc1de82014-10-10 18:43:41 -07002868 rc_full = cryptfs_enable_inplace_full(crypto_blkdev, real_blkdev,
Paul Lawrence87999172014-02-20 12:21:31 -08002869 size, size_already_done, tot_size,
2870 previously_encrypted_upto);
JP Abgrall7fc1de82014-10-10 18:43:41 -07002871 SLOGD("cryptfs_enable_inplace_full()=%d\n", rc_full);
2872
2873 /* Hack for b/17898962, the following is the symptom... */
2874 if (rc_ext4 == ENABLE_INPLACE_ERR_DEV
2875 && rc_f2fs == ENABLE_INPLACE_ERR_DEV
2876 && rc_full == ENABLE_INPLACE_ERR_DEV) {
2877 return ENABLE_INPLACE_ERR_DEV;
2878 }
2879 return rc_full;
Paul Lawrenceae59fe62014-01-21 08:23:27 -08002880}
2881
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002882#define CRYPTO_ENABLE_WIPE 1
2883#define CRYPTO_ENABLE_INPLACE 2
Ken Sumrall8ddbe402011-01-17 15:26:29 -08002884
2885#define FRAMEWORK_BOOT_WAIT 60
2886
Paul Lawrence87999172014-02-20 12:21:31 -08002887static int cryptfs_SHA256_fileblock(const char* filename, __le8* buf)
2888{
Jeff Sharkeyce6a9132015-04-08 21:07:21 -07002889 int fd = open(filename, O_RDONLY|O_CLOEXEC);
Paul Lawrence87999172014-02-20 12:21:31 -08002890 if (fd == -1) {
2891 SLOGE("Error opening file %s", filename);
2892 return -1;
2893 }
2894
2895 char block[CRYPT_INPLACE_BUFSIZE];
2896 memset(block, 0, sizeof(block));
2897 if (unix_read(fd, block, sizeof(block)) < 0) {
2898 SLOGE("Error reading file %s", filename);
2899 close(fd);
2900 return -1;
2901 }
2902
2903 close(fd);
2904
2905 SHA256_CTX c;
2906 SHA256_Init(&c);
2907 SHA256_Update(&c, block, sizeof(block));
2908 SHA256_Final(buf, &c);
2909
2910 return 0;
2911}
2912
JP Abgrall62c7af32014-06-16 13:01:23 -07002913static int get_fs_type(struct fstab_rec *rec)
2914{
2915 if (!strcmp(rec->fs_type, "ext4")) {
2916 return EXT4_FS;
2917 } else if (!strcmp(rec->fs_type, "f2fs")) {
2918 return F2FS_FS;
2919 } else {
2920 return -1;
2921 }
2922}
2923
Paul Lawrence87999172014-02-20 12:21:31 -08002924static int cryptfs_enable_all_volumes(struct crypt_mnt_ftr *crypt_ftr, int how,
2925 char *crypto_blkdev, char *real_blkdev,
2926 int previously_encrypted_upto)
2927{
2928 off64_t cur_encryption_done=0, tot_encryption_size=0;
Tim Murray8439dc92014-12-15 11:56:11 -08002929 int rc = -1;
Paul Lawrence87999172014-02-20 12:21:31 -08002930
Paul Lawrence73d7a022014-06-09 14:10:09 -07002931 if (!is_battery_ok_to_start()) {
2932 SLOGW("Not starting encryption due to low battery");
Paul Lawrence87999172014-02-20 12:21:31 -08002933 return 0;
2934 }
2935
2936 /* The size of the userdata partition, and add in the vold volumes below */
2937 tot_encryption_size = crypt_ftr->fs_size;
2938
2939 if (how == CRYPTO_ENABLE_WIPE) {
JP Abgrall62c7af32014-06-16 13:01:23 -07002940 struct fstab_rec* rec = fs_mgr_get_entry_for_mount_point(fstab, DATA_MNT_POINT);
2941 int fs_type = get_fs_type(rec);
2942 if (fs_type < 0) {
2943 SLOGE("cryptfs_enable: unsupported fs type %s\n", rec->fs_type);
2944 return -1;
2945 }
2946 rc = cryptfs_enable_wipe(crypto_blkdev, crypt_ftr->fs_size, fs_type);
Paul Lawrence87999172014-02-20 12:21:31 -08002947 } else if (how == CRYPTO_ENABLE_INPLACE) {
2948 rc = cryptfs_enable_inplace(crypto_blkdev, real_blkdev,
2949 crypt_ftr->fs_size, &cur_encryption_done,
2950 tot_encryption_size,
2951 previously_encrypted_upto);
2952
JP Abgrall7fc1de82014-10-10 18:43:41 -07002953 if (rc == ENABLE_INPLACE_ERR_DEV) {
2954 /* Hack for b/17898962 */
2955 SLOGE("cryptfs_enable: crypto block dev failure. Must reboot...\n");
2956 cryptfs_reboot(reboot);
2957 }
2958
Paul Lawrence73d7a022014-06-09 14:10:09 -07002959 if (!rc) {
Paul Lawrence87999172014-02-20 12:21:31 -08002960 crypt_ftr->encrypted_upto = cur_encryption_done;
2961 }
2962
Paul Lawrence73d7a022014-06-09 14:10:09 -07002963 if (!rc && crypt_ftr->encrypted_upto == crypt_ftr->fs_size) {
Paul Lawrence87999172014-02-20 12:21:31 -08002964 /* The inplace routine never actually sets the progress to 100% due
2965 * to the round down nature of integer division, so set it here */
2966 property_set("vold.encrypt_progress", "100");
2967 }
2968 } else {
2969 /* Shouldn't happen */
2970 SLOGE("cryptfs_enable: internal error, unknown option\n");
2971 rc = -1;
2972 }
2973
2974 return rc;
2975}
2976
Paul Lawrence13486032014-02-03 13:28:11 -08002977int cryptfs_enable_internal(char *howarg, int crypt_type, char *passwd,
Paul Lawrence569649f2015-09-09 12:13:00 -07002978 int no_ui)
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002979{
2980 int how = 0;
Paul Lawrence87999172014-02-20 12:21:31 -08002981 char crypto_blkdev[MAXPATHLEN], real_blkdev[MAXPATHLEN];
Ken Sumrall160b4d62013-04-22 12:15:39 -07002982 unsigned char decrypted_master_key[KEY_LEN_BYTES];
Hiroaki Miyazawa14eab552015-02-04 13:29:15 +09002983 int rc=-1, i;
Paul Lawrence87999172014-02-20 12:21:31 -08002984 struct crypt_mnt_ftr crypt_ftr;
Ken Sumrall160b4d62013-04-22 12:15:39 -07002985 struct crypt_persist_data *pdata;
Ken Sumrall29d8da82011-05-18 17:20:07 -07002986 char encrypted_state[PROPERTY_VALUE_MAX];
Ken Sumrall5d4c68e2011-01-30 19:06:03 -08002987 char lockid[32] = { 0 };
Ken Sumrall29d8da82011-05-18 17:20:07 -07002988 char key_loc[PROPERTY_VALUE_MAX];
Ken Sumrall29d8da82011-05-18 17:20:07 -07002989 int num_vols;
Paul Lawrence87999172014-02-20 12:21:31 -08002990 off64_t previously_encrypted_upto = 0;
Paul Lawrence3d99eba2015-11-20 07:07:19 -08002991 bool rebootEncryption = false;
Ken Sumrall29d8da82011-05-18 17:20:07 -07002992
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002993 if (!strcmp(howarg, "wipe")) {
2994 how = CRYPTO_ENABLE_WIPE;
2995 } else if (! strcmp(howarg, "inplace")) {
2996 how = CRYPTO_ENABLE_INPLACE;
2997 } else {
2998 /* Shouldn't happen, as CommandListener vets the args */
Ken Sumrall3ed82362011-01-28 23:31:16 -08002999 goto error_unencrypted;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08003000 }
3001
Paul Lawrence87999172014-02-20 12:21:31 -08003002 if (how == CRYPTO_ENABLE_INPLACE
Paul Lawrence3d99eba2015-11-20 07:07:19 -08003003 && get_crypt_ftr_and_key(&crypt_ftr) == 0) {
3004 if (crypt_ftr.flags & CRYPT_ENCRYPTION_IN_PROGRESS) {
3005 /* An encryption was underway and was interrupted */
3006 previously_encrypted_upto = crypt_ftr.encrypted_upto;
3007 crypt_ftr.encrypted_upto = 0;
3008 crypt_ftr.flags &= ~CRYPT_ENCRYPTION_IN_PROGRESS;
Paul Lawrence6bfed202014-07-28 12:47:22 -07003009
Paul Lawrence3d99eba2015-11-20 07:07:19 -08003010 /* At this point, we are in an inconsistent state. Until we successfully
3011 complete encryption, a reboot will leave us broken. So mark the
3012 encryption failed in case that happens.
3013 On successfully completing encryption, remove this flag */
3014 crypt_ftr.flags |= CRYPT_INCONSISTENT_STATE;
Paul Lawrence6bfed202014-07-28 12:47:22 -07003015
Paul Lawrence3d99eba2015-11-20 07:07:19 -08003016 put_crypt_ftr_and_key(&crypt_ftr);
3017 } else if (crypt_ftr.flags & CRYPT_FORCE_ENCRYPTION) {
3018 if (!check_ftr_sha(&crypt_ftr)) {
3019 memset(&crypt_ftr, 0, sizeof(crypt_ftr));
3020 put_crypt_ftr_and_key(&crypt_ftr);
3021 goto error_unencrypted;
3022 }
3023
3024 /* Doing a reboot-encryption*/
3025 crypt_ftr.flags &= ~CRYPT_FORCE_ENCRYPTION;
3026 crypt_ftr.flags |= CRYPT_FORCE_COMPLETE;
3027 rebootEncryption = true;
3028 }
Paul Lawrence87999172014-02-20 12:21:31 -08003029 }
3030
3031 property_get("ro.crypto.state", encrypted_state, "");
3032 if (!strcmp(encrypted_state, "encrypted") && !previously_encrypted_upto) {
3033 SLOGE("Device is already running encrypted, aborting");
3034 goto error_unencrypted;
3035 }
3036
3037 // TODO refactor fs_mgr_get_crypt_info to get both in one call
3038 fs_mgr_get_crypt_info(fstab, key_loc, 0, sizeof(key_loc));
Ken Sumrall56ad03c2013-02-13 13:00:19 -08003039 fs_mgr_get_crypt_info(fstab, 0, real_blkdev, sizeof(real_blkdev));
Ken Sumrall8f869aa2010-12-03 03:47:09 -08003040
Ken Sumrall3ed82362011-01-28 23:31:16 -08003041 /* Get the size of the real block device */
Jeff Sharkeyce6a9132015-04-08 21:07:21 -07003042 int fd = open(real_blkdev, O_RDONLY|O_CLOEXEC);
Hiroaki Miyazawa14eab552015-02-04 13:29:15 +09003043 if (fd == -1) {
3044 SLOGE("Cannot open block device %s\n", real_blkdev);
3045 goto error_unencrypted;
3046 }
3047 unsigned long nr_sec;
3048 get_blkdev_size(fd, &nr_sec);
3049 if (nr_sec == 0) {
Ken Sumrall3ed82362011-01-28 23:31:16 -08003050 SLOGE("Cannot get size of block device %s\n", real_blkdev);
3051 goto error_unencrypted;
3052 }
3053 close(fd);
3054
3055 /* If doing inplace encryption, make sure the orig fs doesn't include the crypto footer */
Ken Sumrall29d8da82011-05-18 17:20:07 -07003056 if ((how == CRYPTO_ENABLE_INPLACE) && (!strcmp(key_loc, KEY_IN_FOOTER))) {
Ken Sumrall3ed82362011-01-28 23:31:16 -08003057 unsigned int fs_size_sec, max_fs_size_sec;
Jim Millera70abc62014-08-15 02:00:45 +00003058 fs_size_sec = get_fs_size(real_blkdev);
Daniel Rosenberge82df162014-08-15 22:19:23 +00003059 if (fs_size_sec == 0)
3060 fs_size_sec = get_f2fs_filesystem_size_sec(real_blkdev);
3061
Paul Lawrence87999172014-02-20 12:21:31 -08003062 max_fs_size_sec = nr_sec - (CRYPT_FOOTER_OFFSET / CRYPT_SECTOR_SIZE);
Ken Sumrall3ed82362011-01-28 23:31:16 -08003063
3064 if (fs_size_sec > max_fs_size_sec) {
3065 SLOGE("Orig filesystem overlaps crypto footer region. Cannot encrypt in place.");
3066 goto error_unencrypted;
3067 }
3068 }
3069
Ken Sumrall5d4c68e2011-01-30 19:06:03 -08003070 /* Get a wakelock as this may take a while, and we don't want the
3071 * device to sleep on us. We'll grab a partial wakelock, and if the UI
3072 * wants to keep the screen on, it can grab a full wakelock.
3073 */
Ken Sumrall29d8da82011-05-18 17:20:07 -07003074 snprintf(lockid, sizeof(lockid), "enablecrypto%d", (int) getpid());
Ken Sumrall5d4c68e2011-01-30 19:06:03 -08003075 acquire_wake_lock(PARTIAL_WAKE_LOCK, lockid);
3076
Ken Sumrall8f869aa2010-12-03 03:47:09 -08003077 /* The init files are setup to stop the class main and late start when
Ken Sumrall8ddbe402011-01-17 15:26:29 -08003078 * vold sets trigger_shutdown_framework.
Ken Sumrall8f869aa2010-12-03 03:47:09 -08003079 */
3080 property_set("vold.decrypt", "trigger_shutdown_framework");
3081 SLOGD("Just asked init to shut down class main\n");
3082
Jeff Sharkey9c484982015-03-31 10:35:33 -07003083 /* Ask vold to unmount all devices that it manages */
3084 if (vold_unmountAll()) {
3085 SLOGE("Failed to unmount all vold managed devices");
Ken Sumrall2eaf7132011-01-14 12:45:48 -08003086 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -08003087
Paul Lawrence3d99eba2015-11-20 07:07:19 -08003088 /* no_ui means we are being called from init, not settings.
3089 Now we always reboot from settings, so !no_ui means reboot
3090 */
3091 bool onlyCreateHeader = false;
3092 if (!no_ui) {
3093 /* Try fallback, which is to reboot and try there */
3094 onlyCreateHeader = true;
3095 FILE* breadcrumb = fopen(BREADCRUMB_FILE, "we");
3096 if (breadcrumb == 0) {
3097 SLOGE("Failed to create breadcrumb file");
3098 goto error_shutting_down;
3099 }
3100 fclose(breadcrumb);
Ken Sumrall8ddbe402011-01-17 15:26:29 -08003101 }
3102
3103 /* Do extra work for a better UX when doing the long inplace encryption */
Paul Lawrence3d99eba2015-11-20 07:07:19 -08003104 if (how == CRYPTO_ENABLE_INPLACE && !onlyCreateHeader) {
Ken Sumrall8ddbe402011-01-17 15:26:29 -08003105 /* Now that /data is unmounted, we need to mount a tmpfs
3106 * /data, set a property saying we're doing inplace encryption,
3107 * and restart the framework.
Ken Sumrall8f869aa2010-12-03 03:47:09 -08003108 */
Ken Sumralle5032c42012-04-01 23:58:44 -07003109 if (fs_mgr_do_tmpfs_mount(DATA_MNT_POINT)) {
Ken Sumrall3ed82362011-01-28 23:31:16 -08003110 goto error_shutting_down;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08003111 }
Ken Sumrall8ddbe402011-01-17 15:26:29 -08003112 /* Tells the framework that inplace encryption is starting */
Ken Sumrall7df84122011-01-18 14:04:08 -08003113 property_set("vold.encrypt_progress", "0");
Ken Sumrall8f869aa2010-12-03 03:47:09 -08003114
Ken Sumrall8ddbe402011-01-17 15:26:29 -08003115 /* restart the framework. */
3116 /* Create necessary paths on /data */
3117 if (prep_data_fs()) {
Ken Sumrall3ed82362011-01-28 23:31:16 -08003118 goto error_shutting_down;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08003119 }
3120
Ken Sumrall92736ef2012-10-17 20:57:14 -07003121 /* Ugh, shutting down the framework is not synchronous, so until it
3122 * can be fixed, this horrible hack will wait a moment for it all to
3123 * shut down before proceeding. Without it, some devices cannot
3124 * restart the graphics services.
3125 */
3126 sleep(2);
Ken Sumrall8ddbe402011-01-17 15:26:29 -08003127 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -08003128
Ken Sumrall8ddbe402011-01-17 15:26:29 -08003129 /* Start the actual work of making an encrypted filesystem */
Ken Sumrall8ddbe402011-01-17 15:26:29 -08003130 /* Initialize a crypt_mnt_ftr for the partition */
Paul Lawrence3d99eba2015-11-20 07:07:19 -08003131 if (previously_encrypted_upto == 0 && !rebootEncryption) {
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07003132 if (cryptfs_init_crypt_mnt_ftr(&crypt_ftr)) {
3133 goto error_shutting_down;
3134 }
Ken Sumrall160b4d62013-04-22 12:15:39 -07003135
Paul Lawrence87999172014-02-20 12:21:31 -08003136 if (!strcmp(key_loc, KEY_IN_FOOTER)) {
3137 crypt_ftr.fs_size = nr_sec
3138 - (CRYPT_FOOTER_OFFSET / CRYPT_SECTOR_SIZE);
3139 } else {
3140 crypt_ftr.fs_size = nr_sec;
3141 }
Paul Lawrence6bfed202014-07-28 12:47:22 -07003142 /* At this point, we are in an inconsistent state. Until we successfully
3143 complete encryption, a reboot will leave us broken. So mark the
3144 encryption failed in case that happens.
3145 On successfully completing encryption, remove this flag */
Paul Lawrence3d99eba2015-11-20 07:07:19 -08003146 if (onlyCreateHeader) {
3147 crypt_ftr.flags |= CRYPT_FORCE_ENCRYPTION;
3148 } else {
3149 crypt_ftr.flags |= CRYPT_INCONSISTENT_STATE;
3150 }
Paul Lawrence87999172014-02-20 12:21:31 -08003151 crypt_ftr.crypt_type = crypt_type;
Ajay Dudani87701e22014-09-17 21:02:52 -07003152#ifndef CONFIG_HW_DISK_ENCRYPTION
3153 strlcpy((char *)crypt_ftr.crypto_type_name, "aes-cbc-essiv:sha256", MAX_CRYPTO_TYPE_NAME_LEN);
3154#else
3155 strlcpy((char *)crypt_ftr.crypto_type_name, "aes-xts", MAX_CRYPTO_TYPE_NAME_LEN);
3156
Iliyan Malchevbb7d9af2014-11-20 18:42:23 -08003157 rc = clear_hw_device_encryption_key();
Ajay Dudani87701e22014-09-17 21:02:52 -07003158 if (!rc) {
3159 SLOGE("Error clearing device encryption hardware key. rc = %d", rc);
3160 }
3161
3162 rc = set_hw_device_encryption_key(passwd,
3163 (char*) crypt_ftr.crypto_type_name);
3164 if (!rc) {
3165 SLOGE("Error initializing device encryption hardware key. rc = %d", rc);
3166 goto error_shutting_down;
3167 }
3168#endif
Ken Sumrall8ddbe402011-01-17 15:26:29 -08003169
Paul Lawrence87999172014-02-20 12:21:31 -08003170 /* Make an encrypted master key */
Paul Lawrence3d99eba2015-11-20 07:07:19 -08003171 if (create_encrypted_random_key(onlyCreateHeader ? DEFAULT_PASSWORD : passwd,
3172 crypt_ftr.master_key, crypt_ftr.salt, &crypt_ftr)) {
Paul Lawrence87999172014-02-20 12:21:31 -08003173 SLOGE("Cannot create encrypted master key\n");
3174 goto error_shutting_down;
3175 }
Ken Sumrall8ddbe402011-01-17 15:26:29 -08003176
Paul Lawrence3d99eba2015-11-20 07:07:19 -08003177 /* Replace scrypted intermediate key if we are preparing for a reboot */
3178 if (onlyCreateHeader) {
3179 unsigned char fake_master_key[KEY_LEN_BYTES];
3180 unsigned char encrypted_fake_master_key[KEY_LEN_BYTES];
3181 memset(fake_master_key, 0, sizeof(fake_master_key));
3182 encrypt_master_key(passwd, crypt_ftr.salt, fake_master_key,
3183 encrypted_fake_master_key, &crypt_ftr);
3184 }
3185
Paul Lawrence87999172014-02-20 12:21:31 -08003186 /* Write the key to the end of the partition */
3187 put_crypt_ftr_and_key(&crypt_ftr);
Ken Sumrall8ddbe402011-01-17 15:26:29 -08003188
Paul Lawrence87999172014-02-20 12:21:31 -08003189 /* If any persistent data has been remembered, save it.
3190 * If none, create a valid empty table and save that.
3191 */
3192 if (!persist_data) {
3193 pdata = malloc(CRYPT_PERSIST_DATA_SIZE);
3194 if (pdata) {
3195 init_empty_persist_data(pdata, CRYPT_PERSIST_DATA_SIZE);
3196 persist_data = pdata;
3197 }
3198 }
3199 if (persist_data) {
3200 save_persistent_data();
3201 }
Ken Sumrall160b4d62013-04-22 12:15:39 -07003202 }
3203
Paul Lawrence3d99eba2015-11-20 07:07:19 -08003204 if (onlyCreateHeader) {
3205 sleep(2);
3206 cryptfs_reboot(reboot);
3207 }
3208
3209 if (how == CRYPTO_ENABLE_INPLACE && (!no_ui || rebootEncryption)) {
Ajay Dudani87701e22014-09-17 21:02:52 -07003210 /* startup service classes main and late_start */
3211 property_set("vold.decrypt", "trigger_restart_min_framework");
3212 SLOGD("Just triggered restart_min_framework\n");
3213
3214 /* OK, the framework is restarted and will soon be showing a
3215 * progress bar. Time to setup an encrypted mapping, and
3216 * either write a new filesystem, or encrypt in place updating
3217 * the progress bar as we work.
3218 */
3219 }
3220
Paul Lawrenced0c7b172014-08-08 14:28:10 -07003221 decrypt_master_key(passwd, decrypted_master_key, &crypt_ftr, 0, 0);
Ken Sumrall29d8da82011-05-18 17:20:07 -07003222 create_crypto_blk_dev(&crypt_ftr, decrypted_master_key, real_blkdev, crypto_blkdev,
Paul Lawrence3d99eba2015-11-20 07:07:19 -08003223 CRYPTO_BLOCK_DEVICE);
Ken Sumrall29d8da82011-05-18 17:20:07 -07003224
Paul Lawrence87999172014-02-20 12:21:31 -08003225 /* If we are continuing, check checksums match */
3226 rc = 0;
3227 if (previously_encrypted_upto) {
3228 __le8 hash_first_block[SHA256_DIGEST_LENGTH];
3229 rc = cryptfs_SHA256_fileblock(crypto_blkdev, hash_first_block);
Ken Sumrall128626f2011-06-28 18:45:14 -07003230
Paul Lawrence87999172014-02-20 12:21:31 -08003231 if (!rc && memcmp(hash_first_block, crypt_ftr.hash_first_block,
3232 sizeof(hash_first_block)) != 0) {
3233 SLOGE("Checksums do not match - trigger wipe");
3234 rc = -1;
Ken Sumrall29d8da82011-05-18 17:20:07 -07003235 }
3236 }
Ken Sumrall8ddbe402011-01-17 15:26:29 -08003237
Paul Lawrence87999172014-02-20 12:21:31 -08003238 if (!rc) {
3239 rc = cryptfs_enable_all_volumes(&crypt_ftr, how,
3240 crypto_blkdev, real_blkdev,
3241 previously_encrypted_upto);
3242 }
3243
3244 /* Calculate checksum if we are not finished */
Paul Lawrenceb1eb7a02014-11-25 14:57:32 -08003245 if (!rc && how == CRYPTO_ENABLE_INPLACE
3246 && crypt_ftr.encrypted_upto != crypt_ftr.fs_size) {
Paul Lawrence87999172014-02-20 12:21:31 -08003247 rc = cryptfs_SHA256_fileblock(crypto_blkdev,
3248 crypt_ftr.hash_first_block);
Paul Lawrence73d7a022014-06-09 14:10:09 -07003249 if (rc) {
Paul Lawrence87999172014-02-20 12:21:31 -08003250 SLOGE("Error calculating checksum for continuing encryption");
3251 rc = -1;
Ken Sumrall29d8da82011-05-18 17:20:07 -07003252 }
Ken Sumrall8ddbe402011-01-17 15:26:29 -08003253 }
3254
3255 /* Undo the dm-crypt mapping whether we succeed or not */
Paul Lawrence3d99eba2015-11-20 07:07:19 -08003256 delete_crypto_blk_dev(CRYPTO_BLOCK_DEVICE);
Ken Sumrall29d8da82011-05-18 17:20:07 -07003257
Ken Sumrall8ddbe402011-01-17 15:26:29 -08003258 if (! rc) {
3259 /* Success */
Paul Lawrence6bfed202014-07-28 12:47:22 -07003260 crypt_ftr.flags &= ~CRYPT_INCONSISTENT_STATE;
Ken Sumrall7f7dbaa2011-02-01 15:46:41 -08003261
Paul Lawrenceb1eb7a02014-11-25 14:57:32 -08003262 if (how == CRYPTO_ENABLE_INPLACE
3263 && crypt_ftr.encrypted_upto != crypt_ftr.fs_size) {
Paul Lawrence87999172014-02-20 12:21:31 -08003264 SLOGD("Encrypted up to sector %lld - will continue after reboot",
3265 crypt_ftr.encrypted_upto);
Paul Lawrence6bfed202014-07-28 12:47:22 -07003266 crypt_ftr.flags |= CRYPT_ENCRYPTION_IN_PROGRESS;
Paul Lawrence87999172014-02-20 12:21:31 -08003267 }
Paul Lawrence73d7a022014-06-09 14:10:09 -07003268
Paul Lawrence6bfed202014-07-28 12:47:22 -07003269 put_crypt_ftr_and_key(&crypt_ftr);
Ken Sumralld33d4172011-02-01 00:49:13 -08003270
Paul Lawrenceb1eb7a02014-11-25 14:57:32 -08003271 if (how == CRYPTO_ENABLE_WIPE
3272 || crypt_ftr.encrypted_upto == crypt_ftr.fs_size) {
Paul Lawrenceb6672e12014-08-15 07:37:28 -07003273 char value[PROPERTY_VALUE_MAX];
3274 property_get("ro.crypto.state", value, "");
3275 if (!strcmp(value, "")) {
3276 /* default encryption - continue first boot sequence */
3277 property_set("ro.crypto.state", "encrypted");
3278 release_wake_lock(lockid);
Paul Lawrence3d99eba2015-11-20 07:07:19 -08003279 if (rebootEncryption && crypt_ftr.crypt_type != CRYPT_TYPE_DEFAULT) {
3280 // Bring up cryptkeeper that will check the password and set it
3281 property_set("vold.decrypt", "trigger_shutdown_framework");
3282 sleep(2);
3283 property_set("vold.encrypt_progress", "");
3284 cryptfs_trigger_restart_min_framework();
3285 } else {
3286 cryptfs_check_passwd(DEFAULT_PASSWORD);
3287 cryptfs_restart_internal(1);
3288 }
Paul Lawrenceb6672e12014-08-15 07:37:28 -07003289 return 0;
3290 } else {
3291 sleep(2); /* Give the UI a chance to show 100% progress */
Paul Lawrence87999172014-02-20 12:21:31 -08003292 cryptfs_reboot(reboot);
Paul Lawrenceb6672e12014-08-15 07:37:28 -07003293 }
Paul Lawrence87999172014-02-20 12:21:31 -08003294 } else {
Paul Lawrenceb6672e12014-08-15 07:37:28 -07003295 sleep(2); /* Partially encrypted, ensure writes flushed to ssd */
Paul Lawrence87999172014-02-20 12:21:31 -08003296 cryptfs_reboot(shutdown);
3297 }
Ken Sumrall3ed82362011-01-28 23:31:16 -08003298 } else {
Mike Lockwoodee6d8c42012-02-15 13:43:28 -08003299 char value[PROPERTY_VALUE_MAX];
3300
Ken Sumrall319369a2012-06-27 16:30:18 -07003301 property_get("ro.vold.wipe_on_crypt_fail", value, "0");
Mike Lockwoodee6d8c42012-02-15 13:43:28 -08003302 if (!strcmp(value, "1")) {
3303 /* wipe data if encryption failed */
3304 SLOGE("encryption failed - rebooting into recovery to wipe data\n");
3305 mkdir("/cache/recovery", 0700);
Jeff Sharkeyce6a9132015-04-08 21:07:21 -07003306 int fd = open("/cache/recovery/command", O_RDWR|O_CREAT|O_TRUNC|O_CLOEXEC, 0600);
Mike Lockwoodee6d8c42012-02-15 13:43:28 -08003307 if (fd >= 0) {
Jeff Sharkeydd1a8042014-09-24 11:46:51 -07003308 write(fd, "--wipe_data\n", strlen("--wipe_data\n") + 1);
3309 write(fd, "--reason=cryptfs_enable_internal\n", strlen("--reason=cryptfs_enable_internal\n") + 1);
Mike Lockwoodee6d8c42012-02-15 13:43:28 -08003310 close(fd);
3311 } else {
3312 SLOGE("could not open /cache/recovery/command\n");
3313 }
Paul Lawrence87999172014-02-20 12:21:31 -08003314 cryptfs_reboot(recovery);
Mike Lockwoodee6d8c42012-02-15 13:43:28 -08003315 } else {
3316 /* set property to trigger dialog */
3317 property_set("vold.encrypt_progress", "error_partially_encrypted");
3318 release_wake_lock(lockid);
3319 }
Ken Sumrall3ed82362011-01-28 23:31:16 -08003320 return -1;
Ken Sumrall8ddbe402011-01-17 15:26:29 -08003321 }
3322
Ken Sumrall3ed82362011-01-28 23:31:16 -08003323 /* hrm, the encrypt step claims success, but the reboot failed.
3324 * This should not happen.
3325 * Set the property and return. Hope the framework can deal with it.
3326 */
3327 property_set("vold.encrypt_progress", "error_reboot_failed");
Ken Sumrall5d4c68e2011-01-30 19:06:03 -08003328 release_wake_lock(lockid);
Ken Sumrall8ddbe402011-01-17 15:26:29 -08003329 return rc;
Ken Sumrall3ed82362011-01-28 23:31:16 -08003330
3331error_unencrypted:
3332 property_set("vold.encrypt_progress", "error_not_encrypted");
Ken Sumrall5d4c68e2011-01-30 19:06:03 -08003333 if (lockid[0]) {
3334 release_wake_lock(lockid);
3335 }
Ken Sumrall3ed82362011-01-28 23:31:16 -08003336 return -1;
3337
3338error_shutting_down:
3339 /* we failed, and have not encrypted anthing, so the users's data is still intact,
3340 * but the framework is stopped and not restarted to show the error, so it's up to
3341 * vold to restart the system.
3342 */
3343 SLOGE("Error enabling encryption after framework is shutdown, no data changed, restarting system");
Paul Lawrence87999172014-02-20 12:21:31 -08003344 cryptfs_reboot(reboot);
Ken Sumrall3ed82362011-01-28 23:31:16 -08003345
3346 /* shouldn't get here */
3347 property_set("vold.encrypt_progress", "error_shutting_down");
Ken Sumrall5d4c68e2011-01-30 19:06:03 -08003348 if (lockid[0]) {
3349 release_wake_lock(lockid);
3350 }
Ken Sumrall3ed82362011-01-28 23:31:16 -08003351 return -1;
Ken Sumrall8ddbe402011-01-17 15:26:29 -08003352}
3353
Paul Lawrence569649f2015-09-09 12:13:00 -07003354int cryptfs_enable(char *howarg, int type, char *passwd, int no_ui)
Paul Lawrence13486032014-02-03 13:28:11 -08003355{
Paul Lawrence569649f2015-09-09 12:13:00 -07003356 return cryptfs_enable_internal(howarg, type, passwd, no_ui);
Paul Lawrence13486032014-02-03 13:28:11 -08003357}
3358
Paul Lawrence569649f2015-09-09 12:13:00 -07003359int cryptfs_enable_default(char *howarg, int no_ui)
Paul Lawrence13486032014-02-03 13:28:11 -08003360{
3361 return cryptfs_enable_internal(howarg, CRYPT_TYPE_DEFAULT,
Paul Lawrence569649f2015-09-09 12:13:00 -07003362 DEFAULT_PASSWORD, no_ui);
Paul Lawrence13486032014-02-03 13:28:11 -08003363}
3364
3365int cryptfs_changepw(int crypt_type, const char *newpw)
Ken Sumrall8ddbe402011-01-17 15:26:29 -08003366{
Paul Lawrence05335c32015-03-05 09:46:23 -08003367 if (e4crypt_crypto_complete(DATA_MNT_POINT) == 0) {
Paul Lawrencef733ae62015-07-07 15:43:14 -07003368 return e4crypt_change_password(DATA_MNT_POINT, crypt_type,
3369 crypt_type == CRYPT_TYPE_DEFAULT ? DEFAULT_PASSWORD
3370 : newpw);
Paul Lawrence05335c32015-03-05 09:46:23 -08003371 }
3372
Ken Sumrall8ddbe402011-01-17 15:26:29 -08003373 struct crypt_mnt_ftr crypt_ftr;
JP Abgrall933216c2015-02-11 13:44:32 -08003374 int rc;
Ken Sumrall8ddbe402011-01-17 15:26:29 -08003375
3376 /* This is only allowed after we've successfully decrypted the master key */
Paul Lawrencef4faa572014-01-29 13:31:03 -08003377 if (!master_key_saved) {
Ken Sumrall0cc16632011-01-18 20:32:26 -08003378 SLOGE("Key not saved, aborting");
Ken Sumrall8ddbe402011-01-17 15:26:29 -08003379 return -1;
3380 }
3381
Paul Lawrencef4faa572014-01-29 13:31:03 -08003382 if (crypt_type < 0 || crypt_type > CRYPT_TYPE_MAX_TYPE) {
3383 SLOGE("Invalid crypt_type %d", crypt_type);
3384 return -1;
3385 }
3386
Ken Sumrall8ddbe402011-01-17 15:26:29 -08003387 /* get key */
Ken Sumrall160b4d62013-04-22 12:15:39 -07003388 if (get_crypt_ftr_and_key(&crypt_ftr)) {
Paul Lawrencef4faa572014-01-29 13:31:03 -08003389 SLOGE("Error getting crypt footer and key");
3390 return -1;
Ken Sumrall8ddbe402011-01-17 15:26:29 -08003391 }
3392
Paul Lawrencef4faa572014-01-29 13:31:03 -08003393 crypt_ftr.crypt_type = crypt_type;
3394
JP Abgrall933216c2015-02-11 13:44:32 -08003395 rc = encrypt_master_key(crypt_type == CRYPT_TYPE_DEFAULT ? DEFAULT_PASSWORD
Paul Lawrencef4faa572014-01-29 13:31:03 -08003396 : newpw,
3397 crypt_ftr.salt,
3398 saved_master_key,
3399 crypt_ftr.master_key,
3400 &crypt_ftr);
JP Abgrall933216c2015-02-11 13:44:32 -08003401 if (rc) {
3402 SLOGE("Encrypt master key failed: %d", rc);
3403 return -1;
3404 }
Jason parks70a4b3f2011-01-28 10:10:47 -06003405 /* save the key */
Ken Sumrall160b4d62013-04-22 12:15:39 -07003406 put_crypt_ftr_and_key(&crypt_ftr);
Ken Sumrall8f869aa2010-12-03 03:47:09 -08003407
Ajay Dudani87701e22014-09-17 21:02:52 -07003408#ifdef CONFIG_HW_DISK_ENCRYPTION
Iliyan Malchevbb7d9af2014-11-20 18:42:23 -08003409 if (!strcmp((char *)crypt_ftr.crypto_type_name, "aes-xts")) {
3410 if (crypt_type == CRYPT_TYPE_DEFAULT) {
3411 int rc = update_hw_device_encryption_key(DEFAULT_PASSWORD, (char*) crypt_ftr.crypto_type_name);
3412 SLOGD("Update hardware encryption key to default for crypt_type: %d. rc = %d", crypt_type, rc);
3413 if (!rc)
3414 return -1;
3415 } else {
3416 int rc = update_hw_device_encryption_key(newpw, (char*) crypt_ftr.crypto_type_name);
3417 SLOGD("Update hardware encryption key for crypt_type: %d. rc = %d", crypt_type, rc);
3418 if (!rc)
3419 return -1;
3420 }
Ajay Dudani87701e22014-09-17 21:02:52 -07003421 }
3422#endif
Ken Sumrall8f869aa2010-12-03 03:47:09 -08003423 return 0;
3424}
Ken Sumrall160b4d62013-04-22 12:15:39 -07003425
Rubin Xu85c01f92014-10-13 12:49:54 +01003426static unsigned int persist_get_max_entries(int encrypted) {
3427 struct crypt_mnt_ftr crypt_ftr;
3428 unsigned int dsize;
3429 unsigned int max_persistent_entries;
3430
3431 /* If encrypted, use the values from the crypt_ftr, otherwise
3432 * use the values for the current spec.
3433 */
3434 if (encrypted) {
3435 if (get_crypt_ftr_and_key(&crypt_ftr)) {
3436 return -1;
3437 }
3438 dsize = crypt_ftr.persist_data_size;
3439 } else {
3440 dsize = CRYPT_PERSIST_DATA_SIZE;
3441 }
3442
3443 max_persistent_entries = (dsize - sizeof(struct crypt_persist_data)) /
3444 sizeof(struct crypt_persist_entry);
3445
3446 return max_persistent_entries;
3447}
3448
3449static int persist_get_key(const char *fieldname, char *value)
Ken Sumrall160b4d62013-04-22 12:15:39 -07003450{
3451 unsigned int i;
3452
3453 if (persist_data == NULL) {
3454 return -1;
3455 }
3456 for (i = 0; i < persist_data->persist_valid_entries; i++) {
3457 if (!strncmp(persist_data->persist_entry[i].key, fieldname, PROPERTY_KEY_MAX)) {
3458 /* We found it! */
3459 strlcpy(value, persist_data->persist_entry[i].val, PROPERTY_VALUE_MAX);
3460 return 0;
3461 }
3462 }
3463
3464 return -1;
3465}
3466
Rubin Xu85c01f92014-10-13 12:49:54 +01003467static int persist_set_key(const char *fieldname, const char *value, int encrypted)
Ken Sumrall160b4d62013-04-22 12:15:39 -07003468{
3469 unsigned int i;
3470 unsigned int num;
Ken Sumrall160b4d62013-04-22 12:15:39 -07003471 unsigned int max_persistent_entries;
Ken Sumrall160b4d62013-04-22 12:15:39 -07003472
3473 if (persist_data == NULL) {
3474 return -1;
3475 }
3476
Rubin Xu85c01f92014-10-13 12:49:54 +01003477 max_persistent_entries = persist_get_max_entries(encrypted);
Ken Sumrall160b4d62013-04-22 12:15:39 -07003478
3479 num = persist_data->persist_valid_entries;
3480
3481 for (i = 0; i < num; i++) {
3482 if (!strncmp(persist_data->persist_entry[i].key, fieldname, PROPERTY_KEY_MAX)) {
3483 /* We found an existing entry, update it! */
3484 memset(persist_data->persist_entry[i].val, 0, PROPERTY_VALUE_MAX);
3485 strlcpy(persist_data->persist_entry[i].val, value, PROPERTY_VALUE_MAX);
3486 return 0;
3487 }
3488 }
3489
3490 /* We didn't find it, add it to the end, if there is room */
3491 if (persist_data->persist_valid_entries < max_persistent_entries) {
3492 memset(&persist_data->persist_entry[num], 0, sizeof(struct crypt_persist_entry));
3493 strlcpy(persist_data->persist_entry[num].key, fieldname, PROPERTY_KEY_MAX);
3494 strlcpy(persist_data->persist_entry[num].val, value, PROPERTY_VALUE_MAX);
3495 persist_data->persist_valid_entries++;
3496 return 0;
3497 }
3498
3499 return -1;
3500}
3501
Rubin Xu85c01f92014-10-13 12:49:54 +01003502/**
3503 * Test if key is part of the multi-entry (field, index) sequence. Return non-zero if key is in the
3504 * sequence and its index is greater than or equal to index. Return 0 otherwise.
3505 */
3506static int match_multi_entry(const char *key, const char *field, unsigned index) {
Rubin Xu85c01f92014-10-13 12:49:54 +01003507 unsigned int field_len;
3508 unsigned int key_index;
3509 field_len = strlen(field);
3510
3511 if (index == 0) {
3512 // The first key in a multi-entry field is just the filedname itself.
3513 if (!strcmp(key, field)) {
3514 return 1;
3515 }
3516 }
3517 // Match key against "%s_%d" % (field, index)
3518 if (strlen(key) < field_len + 1 + 1) {
3519 // Need at least a '_' and a digit.
3520 return 0;
3521 }
3522 if (strncmp(key, field, field_len)) {
3523 // If the key does not begin with field, it's not a match.
3524 return 0;
3525 }
3526 if (1 != sscanf(&key[field_len],"_%d", &key_index)) {
3527 return 0;
3528 }
3529 return key_index >= index;
3530}
3531
3532/*
3533 * Delete entry/entries from persist_data. If the entries are part of a multi-segment field, all
3534 * remaining entries starting from index will be deleted.
3535 * returns PERSIST_DEL_KEY_OK if deletion succeeds,
3536 * PERSIST_DEL_KEY_ERROR_NO_FIELD if the field does not exist,
3537 * and PERSIST_DEL_KEY_ERROR_OTHER if error occurs.
3538 *
3539 */
3540static int persist_del_keys(const char *fieldname, unsigned index)
3541{
3542 unsigned int i;
3543 unsigned int j;
3544 unsigned int num;
3545
3546 if (persist_data == NULL) {
3547 return PERSIST_DEL_KEY_ERROR_OTHER;
3548 }
3549
3550 num = persist_data->persist_valid_entries;
3551
3552 j = 0; // points to the end of non-deleted entries.
3553 // Filter out to-be-deleted entries in place.
3554 for (i = 0; i < num; i++) {
3555 if (!match_multi_entry(persist_data->persist_entry[i].key, fieldname, index)) {
3556 persist_data->persist_entry[j] = persist_data->persist_entry[i];
3557 j++;
3558 }
3559 }
3560
3561 if (j < num) {
3562 persist_data->persist_valid_entries = j;
3563 // Zeroise the remaining entries
3564 memset(&persist_data->persist_entry[j], 0, (num - j) * sizeof(struct crypt_persist_entry));
3565 return PERSIST_DEL_KEY_OK;
3566 } else {
3567 // Did not find an entry matching the given fieldname
3568 return PERSIST_DEL_KEY_ERROR_NO_FIELD;
3569 }
3570}
3571
3572static int persist_count_keys(const char *fieldname)
3573{
3574 unsigned int i;
3575 unsigned int count;
3576
3577 if (persist_data == NULL) {
3578 return -1;
3579 }
3580
3581 count = 0;
3582 for (i = 0; i < persist_data->persist_valid_entries; i++) {
3583 if (match_multi_entry(persist_data->persist_entry[i].key, fieldname, 0)) {
3584 count++;
3585 }
3586 }
3587
3588 return count;
3589}
3590
Ken Sumrall160b4d62013-04-22 12:15:39 -07003591/* Return the value of the specified field. */
Rubin Xu85c01f92014-10-13 12:49:54 +01003592int cryptfs_getfield(const char *fieldname, char *value, int len)
Ken Sumrall160b4d62013-04-22 12:15:39 -07003593{
Paul Lawrence368d7942015-04-15 14:12:00 -07003594 if (e4crypt_crypto_complete(DATA_MNT_POINT) == 0) {
3595 return e4crypt_get_field(DATA_MNT_POINT, fieldname, value, len);
3596 }
3597
Ken Sumrall160b4d62013-04-22 12:15:39 -07003598 char temp_value[PROPERTY_VALUE_MAX];
Rubin Xu85c01f92014-10-13 12:49:54 +01003599 /* CRYPTO_GETFIELD_OK is success,
3600 * CRYPTO_GETFIELD_ERROR_NO_FIELD is value not set,
3601 * CRYPTO_GETFIELD_ERROR_BUF_TOO_SMALL is buffer (as given by len) too small,
3602 * CRYPTO_GETFIELD_ERROR_OTHER is any other error
Ken Sumrall160b4d62013-04-22 12:15:39 -07003603 */
Rubin Xu85c01f92014-10-13 12:49:54 +01003604 int rc = CRYPTO_GETFIELD_ERROR_OTHER;
3605 int i;
3606 char temp_field[PROPERTY_KEY_MAX];
Ken Sumrall160b4d62013-04-22 12:15:39 -07003607
3608 if (persist_data == NULL) {
3609 load_persistent_data();
3610 if (persist_data == NULL) {
3611 SLOGE("Getfield error, cannot load persistent data");
3612 goto out;
3613 }
3614 }
3615
Rubin Xu85c01f92014-10-13 12:49:54 +01003616 // Read value from persistent entries. If the original value is split into multiple entries,
3617 // stitch them back together.
Ken Sumrall160b4d62013-04-22 12:15:39 -07003618 if (!persist_get_key(fieldname, temp_value)) {
Rubin Xu85c01f92014-10-13 12:49:54 +01003619 // We found it, copy it to the caller's buffer and keep going until all entries are read.
3620 if (strlcpy(value, temp_value, len) >= (unsigned) len) {
3621 // value too small
3622 rc = CRYPTO_GETFIELD_ERROR_BUF_TOO_SMALL;
3623 goto out;
3624 }
3625 rc = CRYPTO_GETFIELD_OK;
3626
3627 for (i = 1; /* break explicitly */; i++) {
3628 if (snprintf(temp_field, sizeof(temp_field), "%s_%d", fieldname, i) >=
3629 (int) sizeof(temp_field)) {
3630 // If the fieldname is very long, we stop as soon as it begins to overflow the
3631 // maximum field length. At this point we have in fact fully read out the original
3632 // value because cryptfs_setfield would not allow fields with longer names to be
3633 // written in the first place.
3634 break;
3635 }
3636 if (!persist_get_key(temp_field, temp_value)) {
3637 if (strlcat(value, temp_value, len) >= (unsigned)len) {
3638 // value too small.
3639 rc = CRYPTO_GETFIELD_ERROR_BUF_TOO_SMALL;
3640 goto out;
3641 }
3642 } else {
3643 // Exhaust all entries.
3644 break;
3645 }
3646 }
Ken Sumrall160b4d62013-04-22 12:15:39 -07003647 } else {
3648 /* Sadness, it's not there. Return the error */
Rubin Xu85c01f92014-10-13 12:49:54 +01003649 rc = CRYPTO_GETFIELD_ERROR_NO_FIELD;
Ken Sumrall160b4d62013-04-22 12:15:39 -07003650 }
3651
3652out:
3653 return rc;
3654}
3655
3656/* Set the value of the specified field. */
Rubin Xu85c01f92014-10-13 12:49:54 +01003657int cryptfs_setfield(const char *fieldname, const char *value)
Ken Sumrall160b4d62013-04-22 12:15:39 -07003658{
Paul Lawrence368d7942015-04-15 14:12:00 -07003659 if (e4crypt_crypto_complete(DATA_MNT_POINT) == 0) {
3660 return e4crypt_set_field(DATA_MNT_POINT, fieldname, value);
3661 }
3662
Ken Sumrall160b4d62013-04-22 12:15:39 -07003663 char encrypted_state[PROPERTY_VALUE_MAX];
Rubin Xu85c01f92014-10-13 12:49:54 +01003664 /* 0 is success, negative values are error */
3665 int rc = CRYPTO_SETFIELD_ERROR_OTHER;
Ken Sumrall160b4d62013-04-22 12:15:39 -07003666 int encrypted = 0;
Rubin Xu85c01f92014-10-13 12:49:54 +01003667 unsigned int field_id;
3668 char temp_field[PROPERTY_KEY_MAX];
3669 unsigned int num_entries;
3670 unsigned int max_keylen;
Ken Sumrall160b4d62013-04-22 12:15:39 -07003671
3672 if (persist_data == NULL) {
3673 load_persistent_data();
3674 if (persist_data == NULL) {
3675 SLOGE("Setfield error, cannot load persistent data");
3676 goto out;
3677 }
3678 }
3679
3680 property_get("ro.crypto.state", encrypted_state, "");
3681 if (!strcmp(encrypted_state, "encrypted") ) {
3682 encrypted = 1;
3683 }
3684
Rubin Xu85c01f92014-10-13 12:49:54 +01003685 // Compute the number of entries required to store value, each entry can store up to
3686 // (PROPERTY_VALUE_MAX - 1) chars
3687 if (strlen(value) == 0) {
3688 // Empty value also needs one entry to store.
3689 num_entries = 1;
3690 } else {
3691 num_entries = (strlen(value) + (PROPERTY_VALUE_MAX - 1) - 1) / (PROPERTY_VALUE_MAX - 1);
3692 }
3693
3694 max_keylen = strlen(fieldname);
3695 if (num_entries > 1) {
3696 // Need an extra "_%d" suffix.
3697 max_keylen += 1 + log10(num_entries);
3698 }
3699 if (max_keylen > PROPERTY_KEY_MAX - 1) {
3700 rc = CRYPTO_SETFIELD_ERROR_FIELD_TOO_LONG;
Ken Sumrall160b4d62013-04-22 12:15:39 -07003701 goto out;
3702 }
3703
Rubin Xu85c01f92014-10-13 12:49:54 +01003704 // Make sure we have enough space to write the new value
3705 if (persist_data->persist_valid_entries + num_entries - persist_count_keys(fieldname) >
3706 persist_get_max_entries(encrypted)) {
3707 rc = CRYPTO_SETFIELD_ERROR_VALUE_TOO_LONG;
3708 goto out;
3709 }
3710
3711 // Now that we know persist_data has enough space for value, let's delete the old field first
3712 // to make up space.
3713 persist_del_keys(fieldname, 0);
3714
3715 if (persist_set_key(fieldname, value, encrypted)) {
3716 // fail to set key, should not happen as we have already checked the available space
3717 SLOGE("persist_set_key() error during setfield()");
3718 goto out;
3719 }
3720
3721 for (field_id = 1; field_id < num_entries; field_id++) {
3722 snprintf(temp_field, sizeof(temp_field), "%s_%d", fieldname, field_id);
3723
3724 if (persist_set_key(temp_field, value + field_id * (PROPERTY_VALUE_MAX - 1), encrypted)) {
3725 // fail to set key, should not happen as we have already checked the available space.
3726 SLOGE("persist_set_key() error during setfield()");
3727 goto out;
3728 }
3729 }
3730
Ken Sumrall160b4d62013-04-22 12:15:39 -07003731 /* If we are running encrypted, save the persistent data now */
3732 if (encrypted) {
3733 if (save_persistent_data()) {
3734 SLOGE("Setfield error, cannot save persistent data");
3735 goto out;
3736 }
3737 }
3738
Rubin Xu85c01f92014-10-13 12:49:54 +01003739 rc = CRYPTO_SETFIELD_OK;
Ken Sumrall160b4d62013-04-22 12:15:39 -07003740
3741out:
3742 return rc;
3743}
Paul Lawrencef4faa572014-01-29 13:31:03 -08003744
3745/* Checks userdata. Attempt to mount the volume if default-
3746 * encrypted.
3747 * On success trigger next init phase and return 0.
3748 * Currently do not handle failure - see TODO below.
3749 */
3750int cryptfs_mount_default_encrypted(void)
3751{
3752 char decrypt_state[PROPERTY_VALUE_MAX];
3753 property_get("vold.decrypt", decrypt_state, "0");
3754 if (!strcmp(decrypt_state, "0")) {
3755 SLOGE("Not encrypted - should not call here");
3756 } else {
3757 int crypt_type = cryptfs_get_password_type();
3758 if (crypt_type < 0 || crypt_type > CRYPT_TYPE_MAX_TYPE) {
3759 SLOGE("Bad crypt type - error");
3760 } else if (crypt_type != CRYPT_TYPE_DEFAULT) {
3761 SLOGD("Password is not default - "
3762 "starting min framework to prompt");
3763 property_set("vold.decrypt", "trigger_restart_min_framework");
3764 return 0;
3765 } else if (cryptfs_check_passwd(DEFAULT_PASSWORD) == 0) {
3766 SLOGD("Password is default - restarting filesystem");
3767 cryptfs_restart_internal(0);
3768 return 0;
3769 } else {
3770 SLOGE("Encrypted, default crypt type but can't decrypt");
3771 }
3772 }
3773
Paul Lawrence6bfed202014-07-28 12:47:22 -07003774 /** Corrupt. Allow us to boot into framework, which will detect bad
3775 crypto when it calls do_crypto_complete, then do a factory reset
Paul Lawrencef4faa572014-01-29 13:31:03 -08003776 */
Paul Lawrence6bfed202014-07-28 12:47:22 -07003777 property_set("vold.decrypt", "trigger_restart_min_framework");
Paul Lawrencef4faa572014-01-29 13:31:03 -08003778 return 0;
3779}
3780
3781/* Returns type of the password, default, pattern, pin or password.
3782 */
3783int cryptfs_get_password_type(void)
3784{
Paul Lawrence05335c32015-03-05 09:46:23 -08003785 if (e4crypt_crypto_complete(DATA_MNT_POINT) == 0) {
3786 return e4crypt_get_password_type(DATA_MNT_POINT);
3787 }
3788
Paul Lawrencef4faa572014-01-29 13:31:03 -08003789 struct crypt_mnt_ftr crypt_ftr;
3790
3791 if (get_crypt_ftr_and_key(&crypt_ftr)) {
3792 SLOGE("Error getting crypt footer and key\n");
3793 return -1;
3794 }
3795
Paul Lawrence6bfed202014-07-28 12:47:22 -07003796 if (crypt_ftr.flags & CRYPT_INCONSISTENT_STATE) {
3797 return -1;
3798 }
3799
Paul Lawrencef4faa572014-01-29 13:31:03 -08003800 return crypt_ftr.crypt_type;
3801}
Paul Lawrence684dbdf2014-02-07 12:07:22 -08003802
Paul Lawrence05335c32015-03-05 09:46:23 -08003803const char* cryptfs_get_password()
Paul Lawrence684dbdf2014-02-07 12:07:22 -08003804{
Paul Lawrence05335c32015-03-05 09:46:23 -08003805 if (e4crypt_crypto_complete(DATA_MNT_POINT) == 0) {
3806 return e4crypt_get_password(DATA_MNT_POINT);
3807 }
3808
Paul Lawrence399317e2014-03-10 13:20:50 -07003809 struct timespec now;
Paul Lawrenceef2b5be2014-11-11 12:47:03 -08003810 clock_gettime(CLOCK_BOOTTIME, &now);
Paul Lawrence399317e2014-03-10 13:20:50 -07003811 if (now.tv_sec < password_expiry_time) {
3812 return password;
3813 } else {
3814 cryptfs_clear_password();
3815 return 0;
3816 }
3817}
3818
3819void cryptfs_clear_password()
3820{
Paul Lawrence86c942a2015-05-06 13:53:43 -07003821 if (e4crypt_crypto_complete(DATA_MNT_POINT) == 0) {
3822 e4crypt_clear_password(DATA_MNT_POINT);
3823 }
3824
Paul Lawrence399317e2014-03-10 13:20:50 -07003825 if (password) {
3826 size_t len = strlen(password);
3827 memset(password, 0, len);
3828 free(password);
3829 password = 0;
3830 password_expiry_time = 0;
3831 }
Paul Lawrence684dbdf2014-02-07 12:07:22 -08003832}
Paul Lawrence731a7a22015-04-28 22:14:15 +00003833
3834int cryptfs_enable_file()
3835{
3836 return e4crypt_enable(DATA_MNT_POINT);
3837}
3838
Paul Lawrence0c247462015-10-29 10:30:57 -07003839int cryptfs_isConvertibleToFBE()
3840{
3841 struct fstab_rec* rec = fs_mgr_get_entry_for_mount_point(fstab, DATA_MNT_POINT);
3842 return fs_mgr_is_convertible_to_fbe(rec) ? 1 : 0;
3843}
3844
Paul Lawrence731a7a22015-04-28 22:14:15 +00003845int cryptfs_create_default_ftr(struct crypt_mnt_ftr* crypt_ftr, __attribute__((unused))int key_length)
3846{
3847 if (cryptfs_init_crypt_mnt_ftr(crypt_ftr)) {
3848 SLOGE("Failed to initialize crypt_ftr");
3849 return -1;
3850 }
3851
3852 if (create_encrypted_random_key(DEFAULT_PASSWORD, crypt_ftr->master_key,
3853 crypt_ftr->salt, crypt_ftr)) {
3854 SLOGE("Cannot create encrypted master key\n");
3855 return -1;
3856 }
3857
3858 //crypt_ftr->keysize = key_length / 8;
3859 return 0;
3860}
3861
3862int cryptfs_get_master_key(struct crypt_mnt_ftr* ftr, const char* password,
3863 unsigned char* master_key)
3864{
3865 int rc;
3866
Paul Lawrence731a7a22015-04-28 22:14:15 +00003867 unsigned char* intermediate_key = 0;
3868 size_t intermediate_key_size = 0;
Paul Lawrencec78c71b2015-04-14 15:26:29 -07003869
3870 if (password == 0 || *password == 0) {
3871 password = DEFAULT_PASSWORD;
3872 }
3873
Paul Lawrence731a7a22015-04-28 22:14:15 +00003874 rc = decrypt_master_key(password, master_key, ftr, &intermediate_key,
3875 &intermediate_key_size);
3876
Paul Lawrencec78c71b2015-04-14 15:26:29 -07003877 int N = 1 << ftr->N_factor;
3878 int r = 1 << ftr->r_factor;
3879 int p = 1 << ftr->p_factor;
3880
3881 unsigned char scrypted_intermediate_key[sizeof(ftr->scrypted_intermediate_key)];
3882
3883 rc = crypto_scrypt(intermediate_key, intermediate_key_size,
3884 ftr->salt, sizeof(ftr->salt), N, r, p,
3885 scrypted_intermediate_key,
3886 sizeof(scrypted_intermediate_key));
3887
3888 free(intermediate_key);
3889
3890 if (rc) {
3891 SLOGE("Can't calculate intermediate key");
3892 return rc;
3893 }
3894
3895 return memcmp(scrypted_intermediate_key, ftr->scrypted_intermediate_key,
3896 intermediate_key_size);
Paul Lawrence731a7a22015-04-28 22:14:15 +00003897}
3898
3899int cryptfs_set_password(struct crypt_mnt_ftr* ftr, const char* password,
3900 const unsigned char* master_key)
3901{
3902 return encrypt_master_key(password, ftr->salt, master_key, ftr->master_key,
3903 ftr);
3904}