blob: 28facace04d8ffadb2713f82239c0938660a64a7 [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
Logan Chiend557d762018-05-02 11:36:45 +080023#define LOG_TAG "Cryptfs"
24
25#include "cryptfs.h"
26
Daniel Rosenberg65f99c92018-08-28 01:58:49 -070027#include "Checkpoint.h"
Logan Chiend557d762018-05-02 11:36:45 +080028#include "EncryptInplace.h"
Eric Biggersa701c452018-10-23 13:06:55 -070029#include "FsCrypt.h"
Logan Chiend557d762018-05-02 11:36:45 +080030#include "Keymaster.h"
31#include "Process.h"
32#include "ScryptParameters.h"
Paul Crowleycfe39722018-10-30 15:59:24 -070033#include "Utils.h"
Logan Chiend557d762018-05-02 11:36:45 +080034#include "VoldUtil.h"
35#include "VolumeManager.h"
36#include "secontext.h"
37
Logan Chien3f2b1222018-05-02 11:39:03 +080038#include <android-base/properties.h>
Greg Kaiserab1e84a2018-12-11 12:40:51 -080039#include <android-base/stringprintf.h>
Logan Chiend557d762018-05-02 11:36:45 +080040#include <bootloader_message/bootloader_message.h>
Logan Chien3f2b1222018-05-02 11:39:03 +080041#include <cutils/android_reboot.h>
Logan Chien3f2b1222018-05-02 11:39:03 +080042#include <cutils/properties.h>
Tao Bao5a95ddb2016-10-05 18:01:19 -070043#include <ext4_utils/ext4_utils.h>
Logan Chien3f2b1222018-05-02 11:39:03 +080044#include <f2fs_sparseblock.h>
Ken Sumralle5032c42012-04-01 23:58:44 -070045#include <fs_mgr.h>
Eric Biggersa701c452018-10-23 13:06:55 -070046#include <fscrypt/fscrypt.h>
Logan Chien3f2b1222018-05-02 11:39:03 +080047#include <hardware_legacy/power.h>
Logan Chien188b0ab2018-04-23 13:37:39 +080048#include <log/log.h>
Logan Chiend557d762018-05-02 11:36:45 +080049#include <logwrap/logwrap.h>
50#include <openssl/evp.h>
51#include <openssl/sha.h>
Jeff Vander Stoepdf725752016-01-29 15:34:43 -080052#include <selinux/selinux.h>
Logan Chiend557d762018-05-02 11:36:45 +080053
54#include <ctype.h>
55#include <errno.h>
56#include <fcntl.h>
57#include <inttypes.h>
58#include <libgen.h>
59#include <linux/dm-ioctl.h>
60#include <linux/kdev_t.h>
61#include <math.h>
62#include <stdio.h>
63#include <stdlib.h>
64#include <string.h>
65#include <sys/ioctl.h>
66#include <sys/mount.h>
67#include <sys/param.h>
68#include <sys/stat.h>
69#include <sys/types.h>
70#include <sys/wait.h>
71#include <time.h>
72#include <unistd.h>
73
Wei Wang4375f1b2017-02-24 17:43:01 -080074extern "C" {
75#include <crypto_scrypt.h>
76}
Mark Salyzyn3e971272014-01-21 13:27:04 -080077
Greg Kaiserab1e84a2018-12-11 12:40:51 -080078using android::base::StringPrintf;
Paul Crowleycfe39722018-10-30 15:59:24 -070079using namespace std::chrono_literals;
80
Mark Salyzyn5eecc442014-02-12 14:16:14 -080081#define UNUSED __attribute__((unused))
82
Ken Sumrall8f869aa2010-12-03 03:47:09 -080083#define DM_CRYPT_BUF_SIZE 4096
84
Jason parks70a4b3f2011-01-28 10:10:47 -060085#define HASH_COUNT 2000
Greg Kaiserc0de9c72018-02-14 20:05:54 -080086
87constexpr size_t INTERMEDIATE_KEY_LEN_BYTES = 16;
88constexpr size_t INTERMEDIATE_IV_LEN_BYTES = 16;
Paul Crowley14c8c072018-09-18 13:30:21 -070089constexpr size_t INTERMEDIATE_BUF_SIZE = (INTERMEDIATE_KEY_LEN_BYTES + INTERMEDIATE_IV_LEN_BYTES);
Greg Kaiserc0de9c72018-02-14 20:05:54 -080090
91// SCRYPT_LEN is used by struct crypt_mnt_ftr for its intermediate key.
Paul Crowley14c8c072018-09-18 13:30:21 -070092static_assert(INTERMEDIATE_BUF_SIZE == SCRYPT_LEN, "Mismatch of intermediate key sizes");
Jason parks70a4b3f2011-01-28 10:10:47 -060093
Paul Crowley14c8c072018-09-18 13:30:21 -070094#define KEY_IN_FOOTER "footer"
Ken Sumrall29d8da82011-05-18 17:20:07 -070095
Paul Lawrence3bd36d52015-06-09 13:37:44 -070096#define DEFAULT_PASSWORD "default_password"
Paul Lawrencef4faa572014-01-29 13:31:03 -080097
Paul Lawrence3d99eba2015-11-20 07:07:19 -080098#define CRYPTO_BLOCK_DEVICE "userdata"
99
100#define BREADCRUMB_FILE "/data/misc/vold/convert_fde"
101
Ken Sumrall29d8da82011-05-18 17:20:07 -0700102#define EXT4_FS 1
JP Abgrall62c7af32014-06-16 13:01:23 -0700103#define F2FS_FS 2
Ken Sumrall29d8da82011-05-18 17:20:07 -0700104
Ken Sumralle919efe2012-09-29 17:07:41 -0700105#define TABLE_LOAD_RETRIES 10
106
Shawn Willden47ba10d2014-09-03 17:07:06 -0600107#define RSA_KEY_SIZE 2048
108#define RSA_KEY_SIZE_BYTES (RSA_KEY_SIZE / 8)
109#define RSA_EXPONENT 0x10001
Shawn Willdenda6e8992015-06-03 09:40:45 -0600110#define KEYMASTER_CRYPTFS_RATE_LIMIT 1 // Maximum one try per second
Paul Lawrence69f4ebd2014-04-14 12:17:14 -0700111
Paul Lawrence8e3f4512014-09-08 10:11:17 -0700112#define RETRY_MOUNT_ATTEMPTS 10
113#define RETRY_MOUNT_DELAY_SECONDS 1
114
Paul Crowley5afbc622017-11-27 09:42:17 -0800115#define CREATE_CRYPTO_BLK_DEV_FLAGS_ALLOW_ENCRYPT_OVERRIDE (1)
116
Paul Crowley73473332017-11-21 15:43:51 -0800117static int put_crypt_ftr_and_key(struct crypt_mnt_ftr* crypt_ftr);
118
Greg Kaiser59ad0182018-02-16 13:01:36 -0800119static unsigned char saved_master_key[MAX_KEY_LEN];
Paul Crowley14c8c072018-09-18 13:30:21 -0700120static char* saved_mount_point;
121static int master_key_saved = 0;
122static struct crypt_persist_data* persist_data = NULL;
Ken Sumrall56ad03c2013-02-13 13:00:19 -0800123
Paul Lawrence69f4ebd2014-04-14 12:17:14 -0700124/* Should we use keymaster? */
Paul Crowley14c8c072018-09-18 13:30:21 -0700125static int keymaster_check_compatibility() {
Janis Danisevskis015ec302017-01-31 11:31:08 +0000126 return keymaster_compatibility_cryptfs_scrypt();
Paul Lawrence69f4ebd2014-04-14 12:17:14 -0700127}
128
129/* Create a new keymaster key and store it in this footer */
Paul Crowley14c8c072018-09-18 13:30:21 -0700130static int keymaster_create_key(struct crypt_mnt_ftr* ftr) {
Paul Lawrence3d99eba2015-11-20 07:07:19 -0800131 if (ftr->keymaster_blob_size) {
132 SLOGI("Already have key");
133 return 0;
134 }
135
Paul Crowley14c8c072018-09-18 13:30:21 -0700136 int rc = keymaster_create_key_for_cryptfs_scrypt(
137 RSA_KEY_SIZE, RSA_EXPONENT, KEYMASTER_CRYPTFS_RATE_LIMIT, ftr->keymaster_blob,
138 KEYMASTER_BLOB_SIZE, &ftr->keymaster_blob_size);
Janis Danisevskis015ec302017-01-31 11:31:08 +0000139 if (rc) {
140 if (ftr->keymaster_blob_size > KEYMASTER_BLOB_SIZE) {
Paul Crowley73473332017-11-21 15:43:51 -0800141 SLOGE("Keymaster key blob too large");
Janis Danisevskis015ec302017-01-31 11:31:08 +0000142 ftr->keymaster_blob_size = 0;
143 }
144 SLOGE("Failed to generate keypair");
Paul Lawrence69f4ebd2014-04-14 12:17:14 -0700145 return -1;
146 }
Janis Danisevskis015ec302017-01-31 11:31:08 +0000147 return 0;
Paul Lawrence69f4ebd2014-04-14 12:17:14 -0700148}
149
Shawn Willdene17a9c42014-09-08 13:04:08 -0600150/* This signs the given object using the keymaster key. */
Paul Crowley14c8c072018-09-18 13:30:21 -0700151static int keymaster_sign_object(struct crypt_mnt_ftr* ftr, const unsigned char* object,
152 const size_t object_size, unsigned char** signature,
153 size_t* signature_size) {
Shawn Willden47ba10d2014-09-03 17:07:06 -0600154 unsigned char to_sign[RSA_KEY_SIZE_BYTES];
Shawn Willdene17a9c42014-09-08 13:04:08 -0600155 size_t to_sign_size = sizeof(to_sign);
Shawn Willden47ba10d2014-09-03 17:07:06 -0600156 memset(to_sign, 0, RSA_KEY_SIZE_BYTES);
Shawn Willden47ba10d2014-09-03 17:07:06 -0600157
Shawn Willdene17a9c42014-09-08 13:04:08 -0600158 // To sign a message with RSA, the message must satisfy two
159 // constraints:
160 //
161 // 1. The message, when interpreted as a big-endian numeric value, must
162 // be strictly less than the public modulus of the RSA key. Note
163 // that because the most significant bit of the public modulus is
164 // guaranteed to be 1 (else it's an (n-1)-bit key, not an n-bit
165 // key), an n-bit message with most significant bit 0 always
166 // satisfies this requirement.
167 //
168 // 2. The message must have the same length in bits as the public
169 // modulus of the RSA key. This requirement isn't mathematically
170 // necessary, but is necessary to ensure consistency in
171 // implementations.
172 switch (ftr->kdf_type) {
Shawn Willdene17a9c42014-09-08 13:04:08 -0600173 case KDF_SCRYPT_KEYMASTER:
174 // This ensures the most significant byte of the signed message
175 // is zero. We could have zero-padded to the left instead, but
176 // this approach is slightly more robust against changes in
177 // object size. However, it's still broken (but not unusably
Shawn Willdenda6e8992015-06-03 09:40:45 -0600178 // so) because we really should be using a proper deterministic
179 // RSA padding function, such as PKCS1.
Wei Wang4375f1b2017-02-24 17:43:01 -0800180 memcpy(to_sign + 1, object, std::min((size_t)RSA_KEY_SIZE_BYTES - 1, object_size));
Shawn Willdene17a9c42014-09-08 13:04:08 -0600181 SLOGI("Signing safely-padded object");
182 break;
183 default:
184 SLOGE("Unknown KDF type %d", ftr->kdf_type);
Janis Danisevskis015ec302017-01-31 11:31:08 +0000185 return -1;
Shawn Willdene17a9c42014-09-08 13:04:08 -0600186 }
Paul Crowley73473332017-11-21 15:43:51 -0800187 for (;;) {
188 auto result = keymaster_sign_object_for_cryptfs_scrypt(
189 ftr->keymaster_blob, ftr->keymaster_blob_size, KEYMASTER_CRYPTFS_RATE_LIMIT, to_sign,
190 to_sign_size, signature, signature_size);
191 switch (result) {
192 case KeymasterSignResult::ok:
193 return 0;
194 case KeymasterSignResult::upgrade:
195 break;
196 default:
197 return -1;
198 }
199 SLOGD("Upgrading key");
200 if (keymaster_upgrade_key_for_cryptfs_scrypt(
201 RSA_KEY_SIZE, RSA_EXPONENT, KEYMASTER_CRYPTFS_RATE_LIMIT, ftr->keymaster_blob,
202 ftr->keymaster_blob_size, ftr->keymaster_blob, KEYMASTER_BLOB_SIZE,
203 &ftr->keymaster_blob_size) != 0) {
204 SLOGE("Failed to upgrade key");
205 return -1;
206 }
207 if (put_crypt_ftr_and_key(ftr) != 0) {
208 SLOGE("Failed to write upgraded key to disk");
209 }
210 SLOGD("Key upgraded successfully");
211 }
Shawn Willden47ba10d2014-09-03 17:07:06 -0600212}
213
Paul Lawrence399317e2014-03-10 13:20:50 -0700214/* Store password when userdata is successfully decrypted and mounted.
215 * Cleared by cryptfs_clear_password
216 *
217 * To avoid a double prompt at boot, we need to store the CryptKeeper
218 * password and pass it to KeyGuard, which uses it to unlock KeyStore.
219 * Since the entire framework is torn down and rebuilt after encryption,
220 * we have to use a daemon or similar to store the password. Since vold
221 * is secured against IPC except from system processes, it seems a reasonable
222 * place to store this.
223 *
224 * password should be cleared once it has been used.
225 *
226 * password is aged out after password_max_age_seconds seconds.
Paul Lawrence684dbdf2014-02-07 12:07:22 -0800227 */
Paul Lawrence399317e2014-03-10 13:20:50 -0700228static char* password = 0;
229static int password_expiry_time = 0;
230static const int password_max_age_seconds = 60;
Paul Lawrence684dbdf2014-02-07 12:07:22 -0800231
Paul Crowley14c8c072018-09-18 13:30:21 -0700232enum class RebootType { reboot, recovery, shutdown };
233static void cryptfs_reboot(RebootType rt) {
234 switch (rt) {
235 case RebootType::reboot:
236 property_set(ANDROID_RB_PROPERTY, "reboot");
237 break;
Paul Lawrence87999172014-02-20 12:21:31 -0800238
Paul Crowley14c8c072018-09-18 13:30:21 -0700239 case RebootType::recovery:
240 property_set(ANDROID_RB_PROPERTY, "reboot,recovery");
241 break;
Paul Lawrence87999172014-02-20 12:21:31 -0800242
Paul Crowley14c8c072018-09-18 13:30:21 -0700243 case RebootType::shutdown:
244 property_set(ANDROID_RB_PROPERTY, "shutdown");
245 break;
Ken Sumralladfba362013-06-04 16:37:52 -0700246 }
Paul Lawrence87999172014-02-20 12:21:31 -0800247
Ken Sumralladfba362013-06-04 16:37:52 -0700248 sleep(20);
249
250 /* Shouldn't get here, reboot should happen before sleep times out */
251 return;
252}
253
Paul Crowley14c8c072018-09-18 13:30:21 -0700254static void ioctl_init(struct dm_ioctl* io, size_t dataSize, const char* name, unsigned flags) {
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800255 memset(io, 0, dataSize);
256 io->data_size = dataSize;
257 io->data_start = sizeof(struct dm_ioctl);
258 io->version[0] = 4;
259 io->version[1] = 0;
260 io->version[2] = 0;
261 io->flags = flags;
262 if (name) {
Marek Pola5e6b9142015-02-05 14:22:34 +0100263 strlcpy(io->name, name, sizeof(io->name));
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800264 }
265}
266
Greg Kaiser38723f22018-02-16 13:35:35 -0800267namespace {
268
269struct CryptoType;
270
271// Use to get the CryptoType in use on this device.
Paul Crowley14c8c072018-09-18 13:30:21 -0700272const CryptoType& get_crypto_type();
Greg Kaiser38723f22018-02-16 13:35:35 -0800273
274struct CryptoType {
275 // We should only be constructing CryptoTypes as part of
276 // supported_crypto_types[]. We do it via this pseudo-builder pattern,
277 // which isn't pure or fully protected as a concession to being able to
278 // do it all at compile time. Add new CryptoTypes in
279 // supported_crypto_types[] below.
280 constexpr CryptoType() : CryptoType(nullptr, nullptr, 0xFFFFFFFF) {}
281 constexpr CryptoType set_keysize(uint32_t size) const {
282 return CryptoType(this->property_name, this->crypto_name, size);
283 }
Paul Crowley14c8c072018-09-18 13:30:21 -0700284 constexpr CryptoType set_property_name(const char* property) const {
Greg Kaiser38723f22018-02-16 13:35:35 -0800285 return CryptoType(property, this->crypto_name, this->keysize);
286 }
Paul Crowley14c8c072018-09-18 13:30:21 -0700287 constexpr CryptoType set_crypto_name(const char* crypto) const {
Greg Kaiser38723f22018-02-16 13:35:35 -0800288 return CryptoType(this->property_name, crypto, this->keysize);
289 }
290
Paul Crowley14c8c072018-09-18 13:30:21 -0700291 constexpr const char* get_property_name() const { return property_name; }
292 constexpr const char* get_crypto_name() const { return crypto_name; }
Greg Kaiser38723f22018-02-16 13:35:35 -0800293 constexpr uint32_t get_keysize() const { return keysize; }
294
Paul Crowley14c8c072018-09-18 13:30:21 -0700295 private:
296 const char* property_name;
297 const char* crypto_name;
Greg Kaiser38723f22018-02-16 13:35:35 -0800298 uint32_t keysize;
299
Paul Crowley14c8c072018-09-18 13:30:21 -0700300 constexpr CryptoType(const char* property, const char* crypto, uint32_t ksize)
Greg Kaiser38723f22018-02-16 13:35:35 -0800301 : property_name(property), crypto_name(crypto), keysize(ksize) {}
Paul Crowley14c8c072018-09-18 13:30:21 -0700302 friend const CryptoType& get_crypto_type();
303 static const CryptoType& get_device_crypto_algorithm();
Greg Kaiser38723f22018-02-16 13:35:35 -0800304};
305
306// We only want to parse this read-only property once. But we need to wait
307// until the system is initialized before we can read it. So we use a static
308// scoped within this function to get it only once.
Paul Crowley14c8c072018-09-18 13:30:21 -0700309const CryptoType& get_crypto_type() {
Greg Kaiser38723f22018-02-16 13:35:35 -0800310 static CryptoType crypto_type = CryptoType::get_device_crypto_algorithm();
311 return crypto_type;
312}
313
314constexpr CryptoType default_crypto_type = CryptoType()
Paul Crowley14c8c072018-09-18 13:30:21 -0700315 .set_property_name("AES-128-CBC")
316 .set_crypto_name("aes-cbc-essiv:sha256")
317 .set_keysize(16);
Greg Kaiser38723f22018-02-16 13:35:35 -0800318
319constexpr CryptoType supported_crypto_types[] = {
320 default_crypto_type,
Greg Kaiser8cb4c9f2018-12-03 11:23:19 -0800321 CryptoType()
322 .set_property_name("adiantum")
323 .set_crypto_name("xchacha12,aes-adiantum-plain64")
324 .set_keysize(32),
Greg Kaiser38723f22018-02-16 13:35:35 -0800325 // Add new CryptoTypes here. Order is not important.
326};
327
Greg Kaiser38723f22018-02-16 13:35:35 -0800328// ---------- START COMPILE-TIME SANITY CHECK BLOCK -------------------------
329// We confirm all supported_crypto_types have a small enough keysize and
330// had both set_property_name() and set_crypto_name() called.
331
332template <typename T, size_t N>
Paul Crowley14c8c072018-09-18 13:30:21 -0700333constexpr size_t array_length(T (&)[N]) {
334 return N;
335}
Greg Kaiser38723f22018-02-16 13:35:35 -0800336
337constexpr bool indexOutOfBoundsForCryptoTypes(size_t index) {
338 return (index >= array_length(supported_crypto_types));
339}
340
Paul Crowley14c8c072018-09-18 13:30:21 -0700341constexpr bool isValidCryptoType(const CryptoType& crypto_type) {
Greg Kaiser38723f22018-02-16 13:35:35 -0800342 return ((crypto_type.get_property_name() != nullptr) &&
343 (crypto_type.get_crypto_name() != nullptr) &&
344 (crypto_type.get_keysize() <= MAX_KEY_LEN));
345}
346
347// Note in C++11 that constexpr functions can only have a single line.
348// So our code is a bit convoluted (using recursion instead of a loop),
349// but it's asserting at compile time that all of our key lengths are valid.
350constexpr bool validateSupportedCryptoTypes(size_t index) {
351 return indexOutOfBoundsForCryptoTypes(index) ||
Paul Crowley14c8c072018-09-18 13:30:21 -0700352 (isValidCryptoType(supported_crypto_types[index]) &&
353 validateSupportedCryptoTypes(index + 1));
Greg Kaiser38723f22018-02-16 13:35:35 -0800354}
355
356static_assert(validateSupportedCryptoTypes(0),
357 "We have a CryptoType with keysize > MAX_KEY_LEN or which was "
358 "incompletely constructed.");
359// ---------- END COMPILE-TIME SANITY CHECK BLOCK -------------------------
360
Greg Kaiser38723f22018-02-16 13:35:35 -0800361// Don't call this directly, use get_crypto_type(), which caches this result.
Paul Crowley14c8c072018-09-18 13:30:21 -0700362const CryptoType& CryptoType::get_device_crypto_algorithm() {
Greg Kaiser38723f22018-02-16 13:35:35 -0800363 constexpr char CRYPT_ALGO_PROP[] = "ro.crypto.fde_algorithm";
364 char paramstr[PROPERTY_VALUE_MAX];
365
Paul Crowley14c8c072018-09-18 13:30:21 -0700366 property_get(CRYPT_ALGO_PROP, paramstr, default_crypto_type.get_property_name());
367 for (auto const& ctype : supported_crypto_types) {
Greg Kaiser38723f22018-02-16 13:35:35 -0800368 if (strcmp(paramstr, ctype.get_property_name()) == 0) {
369 return ctype;
370 }
371 }
Paul Crowley14c8c072018-09-18 13:30:21 -0700372 ALOGE("Invalid name (%s) for %s. Defaulting to %s\n", paramstr, CRYPT_ALGO_PROP,
373 default_crypto_type.get_property_name());
Greg Kaiser38723f22018-02-16 13:35:35 -0800374 return default_crypto_type;
375}
376
377} // namespace
378
Kenny Rootc4c70f12013-06-14 12:11:38 -0700379/**
380 * Gets the default device scrypt parameters for key derivation time tuning.
381 * The parameters should lead to about one second derivation time for the
382 * given device.
383 */
Paul Crowley14c8c072018-09-18 13:30:21 -0700384static void get_device_scrypt_params(struct crypt_mnt_ftr* ftr) {
Kenny Rootc4c70f12013-06-14 12:11:38 -0700385 char paramstr[PROPERTY_VALUE_MAX];
Paul Crowley63c18d32016-02-10 14:02:47 +0000386 int Nf, rf, pf;
Kenny Rootc4c70f12013-06-14 12:11:38 -0700387
Paul Crowley63c18d32016-02-10 14:02:47 +0000388 property_get(SCRYPT_PROP, paramstr, SCRYPT_DEFAULTS);
389 if (!parse_scrypt_parameters(paramstr, &Nf, &rf, &pf)) {
390 SLOGW("bad scrypt parameters '%s' should be like '12:8:1'; using defaults", paramstr);
391 parse_scrypt_parameters(SCRYPT_DEFAULTS, &Nf, &rf, &pf);
Kenny Rootc4c70f12013-06-14 12:11:38 -0700392 }
Paul Crowley63c18d32016-02-10 14:02:47 +0000393 ftr->N_factor = Nf;
394 ftr->r_factor = rf;
395 ftr->p_factor = pf;
Kenny Rootc4c70f12013-06-14 12:11:38 -0700396}
397
Greg Kaiser57f9af62018-02-16 13:13:58 -0800398uint32_t cryptfs_get_keysize() {
Greg Kaiser38723f22018-02-16 13:35:35 -0800399 return get_crypto_type().get_keysize();
Greg Kaiser57f9af62018-02-16 13:13:58 -0800400}
401
Paul Crowley14c8c072018-09-18 13:30:21 -0700402const char* cryptfs_get_crypto_name() {
Greg Kaiser38723f22018-02-16 13:35:35 -0800403 return get_crypto_type().get_crypto_name();
Greg Kaiser57f9af62018-02-16 13:13:58 -0800404}
405
Oleksiy Avramchenko625dc782018-05-23 10:50:46 +0200406static uint64_t get_fs_size(char* dev) {
Ken Sumrall3ed82362011-01-28 23:31:16 -0800407 int fd, block_size;
408 struct ext4_super_block sb;
Oleksiy Avramchenko625dc782018-05-23 10:50:46 +0200409 uint64_t len;
Ken Sumrall3ed82362011-01-28 23:31:16 -0800410
Paul Crowley14c8c072018-09-18 13:30:21 -0700411 if ((fd = open(dev, O_RDONLY | O_CLOEXEC)) < 0) {
Ken Sumrall3ed82362011-01-28 23:31:16 -0800412 SLOGE("Cannot open device to get filesystem size ");
413 return 0;
414 }
415
416 if (lseek64(fd, 1024, SEEK_SET) < 0) {
417 SLOGE("Cannot seek to superblock");
418 return 0;
419 }
420
421 if (read(fd, &sb, sizeof(sb)) != sizeof(sb)) {
422 SLOGE("Cannot read superblock");
423 return 0;
424 }
425
426 close(fd);
427
Daniel Rosenberge82df162014-08-15 22:19:23 +0000428 if (le32_to_cpu(sb.s_magic) != EXT4_SUPER_MAGIC) {
429 SLOGE("Not a valid ext4 superblock");
430 return 0;
431 }
Ken Sumrall3ed82362011-01-28 23:31:16 -0800432 block_size = 1024 << sb.s_log_block_size;
433 /* compute length in bytes */
Oleksiy Avramchenko625dc782018-05-23 10:50:46 +0200434 len = (((uint64_t)sb.s_blocks_count_hi << 32) + sb.s_blocks_count_lo) * block_size;
Ken Sumrall3ed82362011-01-28 23:31:16 -0800435
436 /* return length in sectors */
Oleksiy Avramchenko625dc782018-05-23 10:50:46 +0200437 return len / 512;
Ken Sumrall3ed82362011-01-28 23:31:16 -0800438}
439
Paul Crowley14c8c072018-09-18 13:30:21 -0700440static int get_crypt_ftr_info(char** metadata_fname, off64_t* off) {
441 static int cached_data = 0;
Oleksiy Avramchenko625dc782018-05-23 10:50:46 +0200442 static uint64_t cached_off = 0;
Paul Crowley14c8c072018-09-18 13:30:21 -0700443 static char cached_metadata_fname[PROPERTY_VALUE_MAX] = "";
Paul Crowley14c8c072018-09-18 13:30:21 -0700444 char key_loc[PROPERTY_VALUE_MAX];
445 char real_blkdev[PROPERTY_VALUE_MAX];
446 int rc = -1;
Ken Sumrall160b4d62013-04-22 12:15:39 -0700447
Paul Crowley14c8c072018-09-18 13:30:21 -0700448 if (!cached_data) {
449 fs_mgr_get_crypt_info(fstab_default, key_loc, real_blkdev, sizeof(key_loc));
Ken Sumrall160b4d62013-04-22 12:15:39 -0700450
Paul Crowley14c8c072018-09-18 13:30:21 -0700451 if (!strcmp(key_loc, KEY_IN_FOOTER)) {
Oleksiy Avramchenko625dc782018-05-23 10:50:46 +0200452 if (android::vold::GetBlockDevSize(real_blkdev, &cached_off) == android::OK) {
Paul Crowley14c8c072018-09-18 13:30:21 -0700453 /* If it's an encrypted Android partition, the last 16 Kbytes contain the
454 * encryption info footer and key, and plenty of bytes to spare for future
455 * growth.
456 */
457 strlcpy(cached_metadata_fname, real_blkdev, sizeof(cached_metadata_fname));
Oleksiy Avramchenko625dc782018-05-23 10:50:46 +0200458 cached_off -= CRYPT_FOOTER_OFFSET;
Paul Crowley14c8c072018-09-18 13:30:21 -0700459 cached_data = 1;
460 } else {
461 SLOGE("Cannot get size of block device %s\n", real_blkdev);
462 }
Paul Crowley14c8c072018-09-18 13:30:21 -0700463 } else {
464 strlcpy(cached_metadata_fname, key_loc, sizeof(cached_metadata_fname));
465 cached_off = 0;
466 cached_data = 1;
467 }
Ken Sumrall160b4d62013-04-22 12:15:39 -0700468 }
Ken Sumrall160b4d62013-04-22 12:15:39 -0700469
Paul Crowley14c8c072018-09-18 13:30:21 -0700470 if (cached_data) {
471 if (metadata_fname) {
472 *metadata_fname = cached_metadata_fname;
473 }
474 if (off) {
475 *off = cached_off;
476 }
477 rc = 0;
Ken Sumrall160b4d62013-04-22 12:15:39 -0700478 }
Ken Sumrall160b4d62013-04-22 12:15:39 -0700479
Paul Crowley14c8c072018-09-18 13:30:21 -0700480 return rc;
Ken Sumrall160b4d62013-04-22 12:15:39 -0700481}
482
Paul Lawrence3d99eba2015-11-20 07:07:19 -0800483/* Set sha256 checksum in structure */
Paul Crowley14c8c072018-09-18 13:30:21 -0700484static void set_ftr_sha(struct crypt_mnt_ftr* crypt_ftr) {
Paul Lawrence3d99eba2015-11-20 07:07:19 -0800485 SHA256_CTX c;
486 SHA256_Init(&c);
487 memset(crypt_ftr->sha256, 0, sizeof(crypt_ftr->sha256));
488 SHA256_Update(&c, crypt_ftr, sizeof(*crypt_ftr));
489 SHA256_Final(crypt_ftr->sha256, &c);
490}
491
Ken Sumralle8744072011-01-18 22:01:55 -0800492/* key or salt can be NULL, in which case just skip writing that value. Useful to
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800493 * update the failed mount count but not change the key.
494 */
Paul Crowley14c8c072018-09-18 13:30:21 -0700495static int put_crypt_ftr_and_key(struct crypt_mnt_ftr* crypt_ftr) {
496 int fd;
497 unsigned int cnt;
498 /* starting_off is set to the SEEK_SET offset
499 * where the crypto structure starts
500 */
501 off64_t starting_off;
502 int rc = -1;
503 char* fname = NULL;
504 struct stat statbuf;
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800505
Paul Crowley14c8c072018-09-18 13:30:21 -0700506 set_ftr_sha(crypt_ftr);
Paul Lawrence3d99eba2015-11-20 07:07:19 -0800507
Paul Crowley14c8c072018-09-18 13:30:21 -0700508 if (get_crypt_ftr_info(&fname, &starting_off)) {
509 SLOGE("Unable to get crypt_ftr_info\n");
510 return -1;
Ken Sumralle8744072011-01-18 22:01:55 -0800511 }
Paul Crowley14c8c072018-09-18 13:30:21 -0700512 if (fname[0] != '/') {
513 SLOGE("Unexpected value for crypto key location\n");
514 return -1;
515 }
516 if ((fd = open(fname, O_RDWR | O_CREAT | O_CLOEXEC, 0600)) < 0) {
517 SLOGE("Cannot open footer file %s for put\n", fname);
518 return -1;
519 }
Ken Sumralle8744072011-01-18 22:01:55 -0800520
Paul Crowley14c8c072018-09-18 13:30:21 -0700521 /* Seek to the start of the crypt footer */
522 if (lseek64(fd, starting_off, SEEK_SET) == -1) {
523 SLOGE("Cannot seek to real block device footer\n");
524 goto errout;
525 }
526
527 if ((cnt = write(fd, crypt_ftr, sizeof(struct crypt_mnt_ftr))) != sizeof(struct crypt_mnt_ftr)) {
528 SLOGE("Cannot write real block device footer\n");
529 goto errout;
530 }
531
532 fstat(fd, &statbuf);
533 /* If the keys are kept on a raw block device, do not try to truncate it. */
534 if (S_ISREG(statbuf.st_mode)) {
535 if (ftruncate(fd, 0x4000)) {
536 SLOGE("Cannot set footer file size\n");
537 goto errout;
538 }
539 }
540
541 /* Success! */
542 rc = 0;
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800543
544errout:
Paul Crowley14c8c072018-09-18 13:30:21 -0700545 close(fd);
546 return rc;
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800547}
548
Paul Crowley14c8c072018-09-18 13:30:21 -0700549static bool check_ftr_sha(const struct crypt_mnt_ftr* crypt_ftr) {
Paul Lawrence3d99eba2015-11-20 07:07:19 -0800550 struct crypt_mnt_ftr copy;
551 memcpy(&copy, crypt_ftr, sizeof(copy));
552 set_ftr_sha(&copy);
553 return memcmp(copy.sha256, crypt_ftr->sha256, sizeof(copy.sha256)) == 0;
554}
555
Paul Crowley14c8c072018-09-18 13:30:21 -0700556static inline int unix_read(int fd, void* buff, int len) {
Ken Sumrall160b4d62013-04-22 12:15:39 -0700557 return TEMP_FAILURE_RETRY(read(fd, buff, len));
558}
559
Paul Crowley14c8c072018-09-18 13:30:21 -0700560static inline int unix_write(int fd, const void* buff, int len) {
Ken Sumrall160b4d62013-04-22 12:15:39 -0700561 return TEMP_FAILURE_RETRY(write(fd, buff, len));
562}
563
Paul Crowley14c8c072018-09-18 13:30:21 -0700564static void init_empty_persist_data(struct crypt_persist_data* pdata, int len) {
Ken Sumrall160b4d62013-04-22 12:15:39 -0700565 memset(pdata, 0, len);
566 pdata->persist_magic = PERSIST_DATA_MAGIC;
567 pdata->persist_valid_entries = 0;
568}
569
570/* A routine to update the passed in crypt_ftr to the lastest version.
571 * fd is open read/write on the device that holds the crypto footer and persistent
572 * data, crypt_ftr is a pointer to the struct to be updated, and offset is the
573 * absolute offset to the start of the crypt_mnt_ftr on the passed in fd.
574 */
Paul Crowley14c8c072018-09-18 13:30:21 -0700575static void upgrade_crypt_ftr(int fd, struct crypt_mnt_ftr* crypt_ftr, off64_t offset) {
Kenny Root7434b312013-06-14 11:29:53 -0700576 int orig_major = crypt_ftr->major_version;
577 int orig_minor = crypt_ftr->minor_version;
Ken Sumrall160b4d62013-04-22 12:15:39 -0700578
Kenny Root7434b312013-06-14 11:29:53 -0700579 if ((crypt_ftr->major_version == 1) && (crypt_ftr->minor_version == 0)) {
Paul Crowley14c8c072018-09-18 13:30:21 -0700580 struct crypt_persist_data* pdata;
Kenny Root7434b312013-06-14 11:29:53 -0700581 off64_t pdata_offset = offset + CRYPT_FOOTER_TO_PERSIST_OFFSET;
Ken Sumrall160b4d62013-04-22 12:15:39 -0700582
Kenny Rootc4c70f12013-06-14 12:11:38 -0700583 SLOGW("upgrading crypto footer to 1.1");
584
Paul Crowley14c8c072018-09-18 13:30:21 -0700585 pdata = (crypt_persist_data*)malloc(CRYPT_PERSIST_DATA_SIZE);
Kenny Root7434b312013-06-14 11:29:53 -0700586 if (pdata == NULL) {
587 SLOGE("Cannot allocate persisent data\n");
588 return;
589 }
590 memset(pdata, 0, CRYPT_PERSIST_DATA_SIZE);
591
592 /* Need to initialize the persistent data area */
593 if (lseek64(fd, pdata_offset, SEEK_SET) == -1) {
594 SLOGE("Cannot seek to persisent data offset\n");
Henrik Baard91064632015-02-05 15:09:17 +0100595 free(pdata);
Kenny Root7434b312013-06-14 11:29:53 -0700596 return;
597 }
598 /* Write all zeros to the first copy, making it invalid */
599 unix_write(fd, pdata, CRYPT_PERSIST_DATA_SIZE);
600
601 /* Write a valid but empty structure to the second copy */
602 init_empty_persist_data(pdata, CRYPT_PERSIST_DATA_SIZE);
603 unix_write(fd, pdata, CRYPT_PERSIST_DATA_SIZE);
604
605 /* Update the footer */
606 crypt_ftr->persist_data_size = CRYPT_PERSIST_DATA_SIZE;
607 crypt_ftr->persist_data_offset[0] = pdata_offset;
608 crypt_ftr->persist_data_offset[1] = pdata_offset + CRYPT_PERSIST_DATA_SIZE;
609 crypt_ftr->minor_version = 1;
Henrik Baard91064632015-02-05 15:09:17 +0100610 free(pdata);
Ken Sumrall160b4d62013-04-22 12:15:39 -0700611 }
612
Paul Lawrencef4faa572014-01-29 13:31:03 -0800613 if ((crypt_ftr->major_version == 1) && (crypt_ftr->minor_version == 1)) {
Kenny Rootc4c70f12013-06-14 12:11:38 -0700614 SLOGW("upgrading crypto footer to 1.2");
JP Abgrall7bdfa522013-11-15 13:42:56 -0800615 /* But keep the old kdf_type.
616 * It will get updated later to KDF_SCRYPT after the password has been verified.
617 */
Kenny Rootc4c70f12013-06-14 12:11:38 -0700618 crypt_ftr->kdf_type = KDF_PBKDF2;
619 get_device_scrypt_params(crypt_ftr);
620 crypt_ftr->minor_version = 2;
621 }
622
Paul Lawrencef4faa572014-01-29 13:31:03 -0800623 if ((crypt_ftr->major_version == 1) && (crypt_ftr->minor_version == 2)) {
624 SLOGW("upgrading crypto footer to 1.3");
625 crypt_ftr->crypt_type = CRYPT_TYPE_PASSWORD;
626 crypt_ftr->minor_version = 3;
627 }
628
Kenny Root7434b312013-06-14 11:29:53 -0700629 if ((orig_major != crypt_ftr->major_version) || (orig_minor != crypt_ftr->minor_version)) {
630 if (lseek64(fd, offset, SEEK_SET) == -1) {
631 SLOGE("Cannot seek to crypt footer\n");
632 return;
633 }
634 unix_write(fd, crypt_ftr, sizeof(struct crypt_mnt_ftr));
Ken Sumrall160b4d62013-04-22 12:15:39 -0700635 }
Ken Sumrall160b4d62013-04-22 12:15:39 -0700636}
637
Paul Crowley14c8c072018-09-18 13:30:21 -0700638static int get_crypt_ftr_and_key(struct crypt_mnt_ftr* crypt_ftr) {
639 int fd;
640 unsigned int cnt;
641 off64_t starting_off;
642 int rc = -1;
643 char* fname = NULL;
644 struct stat statbuf;
Ken Sumrall160b4d62013-04-22 12:15:39 -0700645
Paul Crowley14c8c072018-09-18 13:30:21 -0700646 if (get_crypt_ftr_info(&fname, &starting_off)) {
647 SLOGE("Unable to get crypt_ftr_info\n");
648 return -1;
649 }
650 if (fname[0] != '/') {
651 SLOGE("Unexpected value for crypto key location\n");
652 return -1;
653 }
654 if ((fd = open(fname, O_RDWR | O_CLOEXEC)) < 0) {
655 SLOGE("Cannot open footer file %s for get\n", fname);
656 return -1;
657 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800658
Paul Crowley14c8c072018-09-18 13:30:21 -0700659 /* Make sure it's 16 Kbytes in length */
660 fstat(fd, &statbuf);
661 if (S_ISREG(statbuf.st_mode) && (statbuf.st_size != 0x4000)) {
662 SLOGE("footer file %s is not the expected size!\n", fname);
663 goto errout;
664 }
Ken Sumrall160b4d62013-04-22 12:15:39 -0700665
Paul Crowley14c8c072018-09-18 13:30:21 -0700666 /* Seek to the start of the crypt footer */
667 if (lseek64(fd, starting_off, SEEK_SET) == -1) {
668 SLOGE("Cannot seek to real block device footer\n");
669 goto errout;
670 }
Ken Sumrall160b4d62013-04-22 12:15:39 -0700671
Paul Crowley14c8c072018-09-18 13:30:21 -0700672 if ((cnt = read(fd, crypt_ftr, sizeof(struct crypt_mnt_ftr))) != sizeof(struct crypt_mnt_ftr)) {
673 SLOGE("Cannot read real block device footer\n");
674 goto errout;
675 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800676
Paul Crowley14c8c072018-09-18 13:30:21 -0700677 if (crypt_ftr->magic != CRYPT_MNT_MAGIC) {
678 SLOGE("Bad magic for real block device %s\n", fname);
679 goto errout;
680 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800681
Paul Crowley14c8c072018-09-18 13:30:21 -0700682 if (crypt_ftr->major_version != CURRENT_MAJOR_VERSION) {
683 SLOGE("Cannot understand major version %d real block device footer; expected %d\n",
684 crypt_ftr->major_version, CURRENT_MAJOR_VERSION);
685 goto errout;
686 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800687
Paul Crowley14c8c072018-09-18 13:30:21 -0700688 // We risk buffer overflows with oversized keys, so we just reject them.
689 // 0-sized keys are problematic (essentially by-passing encryption), and
690 // AES-CBC key wrapping only works for multiples of 16 bytes.
691 if ((crypt_ftr->keysize == 0) || ((crypt_ftr->keysize % 16) != 0) ||
692 (crypt_ftr->keysize > MAX_KEY_LEN)) {
693 SLOGE(
694 "Invalid keysize (%u) for block device %s; Must be non-zero, "
695 "divisible by 16, and <= %d\n",
696 crypt_ftr->keysize, fname, MAX_KEY_LEN);
697 goto errout;
698 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800699
Paul Crowley14c8c072018-09-18 13:30:21 -0700700 if (crypt_ftr->minor_version > CURRENT_MINOR_VERSION) {
701 SLOGW("Warning: crypto footer minor version %d, expected <= %d, continuing...\n",
702 crypt_ftr->minor_version, CURRENT_MINOR_VERSION);
703 }
Greg Kaiser59ad0182018-02-16 13:01:36 -0800704
Paul Crowley14c8c072018-09-18 13:30:21 -0700705 /* If this is a verion 1.0 crypt_ftr, make it a 1.1 crypt footer, and update the
706 * copy on disk before returning.
707 */
708 if (crypt_ftr->minor_version < CURRENT_MINOR_VERSION) {
709 upgrade_crypt_ftr(fd, crypt_ftr, starting_off);
710 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800711
Paul Crowley14c8c072018-09-18 13:30:21 -0700712 /* Success! */
713 rc = 0;
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800714
715errout:
Paul Crowley14c8c072018-09-18 13:30:21 -0700716 close(fd);
717 return rc;
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800718}
719
Paul Crowley14c8c072018-09-18 13:30:21 -0700720static int validate_persistent_data_storage(struct crypt_mnt_ftr* crypt_ftr) {
Ken Sumrall160b4d62013-04-22 12:15:39 -0700721 if (crypt_ftr->persist_data_offset[0] + crypt_ftr->persist_data_size >
722 crypt_ftr->persist_data_offset[1]) {
723 SLOGE("Crypt_ftr persist data regions overlap");
724 return -1;
725 }
726
727 if (crypt_ftr->persist_data_offset[0] >= crypt_ftr->persist_data_offset[1]) {
728 SLOGE("Crypt_ftr persist data region 0 starts after region 1");
729 return -1;
730 }
731
732 if (((crypt_ftr->persist_data_offset[1] + crypt_ftr->persist_data_size) -
Paul Crowley14c8c072018-09-18 13:30:21 -0700733 (crypt_ftr->persist_data_offset[0] - CRYPT_FOOTER_TO_PERSIST_OFFSET)) >
Ken Sumrall160b4d62013-04-22 12:15:39 -0700734 CRYPT_FOOTER_OFFSET) {
735 SLOGE("Persistent data extends past crypto footer");
736 return -1;
737 }
738
739 return 0;
740}
741
Paul Crowley14c8c072018-09-18 13:30:21 -0700742static int load_persistent_data(void) {
Ken Sumrall160b4d62013-04-22 12:15:39 -0700743 struct crypt_mnt_ftr crypt_ftr;
Paul Crowley14c8c072018-09-18 13:30:21 -0700744 struct crypt_persist_data* pdata = NULL;
Ken Sumrall160b4d62013-04-22 12:15:39 -0700745 char encrypted_state[PROPERTY_VALUE_MAX];
Paul Crowley14c8c072018-09-18 13:30:21 -0700746 char* fname;
Ken Sumrall160b4d62013-04-22 12:15:39 -0700747 int found = 0;
748 int fd;
749 int ret;
750 int i;
751
752 if (persist_data) {
753 /* Nothing to do, we've already loaded or initialized it */
754 return 0;
755 }
756
Ken Sumrall160b4d62013-04-22 12:15:39 -0700757 /* If not encrypted, just allocate an empty table and initialize it */
758 property_get("ro.crypto.state", encrypted_state, "");
Paul Crowley14c8c072018-09-18 13:30:21 -0700759 if (strcmp(encrypted_state, "encrypted")) {
Wei Wang4375f1b2017-02-24 17:43:01 -0800760 pdata = (crypt_persist_data*)malloc(CRYPT_PERSIST_DATA_SIZE);
Ken Sumrall160b4d62013-04-22 12:15:39 -0700761 if (pdata) {
762 init_empty_persist_data(pdata, CRYPT_PERSIST_DATA_SIZE);
763 persist_data = pdata;
764 return 0;
765 }
766 return -1;
767 }
768
Paul Crowley14c8c072018-09-18 13:30:21 -0700769 if (get_crypt_ftr_and_key(&crypt_ftr)) {
Ken Sumrall160b4d62013-04-22 12:15:39 -0700770 return -1;
771 }
772
Paul Crowley14c8c072018-09-18 13:30:21 -0700773 if ((crypt_ftr.major_version < 1) ||
774 (crypt_ftr.major_version == 1 && crypt_ftr.minor_version < 1)) {
Ken Sumrall160b4d62013-04-22 12:15:39 -0700775 SLOGE("Crypt_ftr version doesn't support persistent data");
776 return -1;
777 }
778
779 if (get_crypt_ftr_info(&fname, NULL)) {
780 return -1;
781 }
782
783 ret = validate_persistent_data_storage(&crypt_ftr);
784 if (ret) {
785 return -1;
786 }
787
Paul Crowley14c8c072018-09-18 13:30:21 -0700788 fd = open(fname, O_RDONLY | O_CLOEXEC);
Ken Sumrall160b4d62013-04-22 12:15:39 -0700789 if (fd < 0) {
790 SLOGE("Cannot open %s metadata file", fname);
791 return -1;
792 }
793
Wei Wang4375f1b2017-02-24 17:43:01 -0800794 pdata = (crypt_persist_data*)malloc(crypt_ftr.persist_data_size);
Paul Lawrence300dae72016-03-11 11:02:52 -0800795 if (pdata == NULL) {
796 SLOGE("Cannot allocate memory for persistent data");
797 goto err;
Ken Sumrall160b4d62013-04-22 12:15:39 -0700798 }
799
800 for (i = 0; i < 2; i++) {
801 if (lseek64(fd, crypt_ftr.persist_data_offset[i], SEEK_SET) < 0) {
802 SLOGE("Cannot seek to read persistent data on %s", fname);
803 goto err2;
804 }
Paul Crowley14c8c072018-09-18 13:30:21 -0700805 if (unix_read(fd, pdata, crypt_ftr.persist_data_size) < 0) {
Ken Sumrall160b4d62013-04-22 12:15:39 -0700806 SLOGE("Error reading persistent data on iteration %d", i);
807 goto err2;
808 }
809 if (pdata->persist_magic == PERSIST_DATA_MAGIC) {
810 found = 1;
811 break;
812 }
813 }
814
815 if (!found) {
816 SLOGI("Could not find valid persistent data, creating");
817 init_empty_persist_data(pdata, crypt_ftr.persist_data_size);
818 }
819
820 /* Success */
821 persist_data = pdata;
822 close(fd);
823 return 0;
824
825err2:
826 free(pdata);
827
828err:
829 close(fd);
830 return -1;
831}
832
Paul Crowley14c8c072018-09-18 13:30:21 -0700833static int save_persistent_data(void) {
Ken Sumrall160b4d62013-04-22 12:15:39 -0700834 struct crypt_mnt_ftr crypt_ftr;
Paul Crowley14c8c072018-09-18 13:30:21 -0700835 struct crypt_persist_data* pdata;
836 char* fname;
Ken Sumrall160b4d62013-04-22 12:15:39 -0700837 off64_t write_offset;
838 off64_t erase_offset;
Ken Sumrall160b4d62013-04-22 12:15:39 -0700839 int fd;
840 int ret;
841
842 if (persist_data == NULL) {
843 SLOGE("No persistent data to save");
844 return -1;
845 }
846
Paul Crowley14c8c072018-09-18 13:30:21 -0700847 if (get_crypt_ftr_and_key(&crypt_ftr)) {
Ken Sumrall160b4d62013-04-22 12:15:39 -0700848 return -1;
849 }
850
Paul Crowley14c8c072018-09-18 13:30:21 -0700851 if ((crypt_ftr.major_version < 1) ||
852 (crypt_ftr.major_version == 1 && crypt_ftr.minor_version < 1)) {
Ken Sumrall160b4d62013-04-22 12:15:39 -0700853 SLOGE("Crypt_ftr version doesn't support persistent data");
854 return -1;
855 }
856
857 ret = validate_persistent_data_storage(&crypt_ftr);
858 if (ret) {
859 return -1;
860 }
861
862 if (get_crypt_ftr_info(&fname, NULL)) {
863 return -1;
864 }
865
Paul Crowley14c8c072018-09-18 13:30:21 -0700866 fd = open(fname, O_RDWR | O_CLOEXEC);
Ken Sumrall160b4d62013-04-22 12:15:39 -0700867 if (fd < 0) {
868 SLOGE("Cannot open %s metadata file", fname);
869 return -1;
870 }
871
Wei Wang4375f1b2017-02-24 17:43:01 -0800872 pdata = (crypt_persist_data*)malloc(crypt_ftr.persist_data_size);
Ken Sumrall160b4d62013-04-22 12:15:39 -0700873 if (pdata == NULL) {
874 SLOGE("Cannot allocate persistant data");
875 goto err;
876 }
877
878 if (lseek64(fd, crypt_ftr.persist_data_offset[0], SEEK_SET) < 0) {
879 SLOGE("Cannot seek to read persistent data on %s", fname);
880 goto err2;
881 }
882
883 if (unix_read(fd, pdata, crypt_ftr.persist_data_size) < 0) {
Paul Crowley14c8c072018-09-18 13:30:21 -0700884 SLOGE("Error reading persistent data before save");
885 goto err2;
Ken Sumrall160b4d62013-04-22 12:15:39 -0700886 }
887
888 if (pdata->persist_magic == PERSIST_DATA_MAGIC) {
889 /* The first copy is the curent valid copy, so write to
890 * the second copy and erase this one */
Paul Crowley14c8c072018-09-18 13:30:21 -0700891 write_offset = crypt_ftr.persist_data_offset[1];
892 erase_offset = crypt_ftr.persist_data_offset[0];
Ken Sumrall160b4d62013-04-22 12:15:39 -0700893 } else {
894 /* The second copy must be the valid copy, so write to
895 * the first copy, and erase the second */
Paul Crowley14c8c072018-09-18 13:30:21 -0700896 write_offset = crypt_ftr.persist_data_offset[0];
897 erase_offset = crypt_ftr.persist_data_offset[1];
Ken Sumrall160b4d62013-04-22 12:15:39 -0700898 }
899
900 /* Write the new copy first, if successful, then erase the old copy */
Björn Landström96dbee72015-01-20 12:43:56 +0100901 if (lseek64(fd, write_offset, SEEK_SET) < 0) {
Ken Sumrall160b4d62013-04-22 12:15:39 -0700902 SLOGE("Cannot seek to write persistent data");
903 goto err2;
904 }
905 if (unix_write(fd, persist_data, crypt_ftr.persist_data_size) ==
Paul Crowley14c8c072018-09-18 13:30:21 -0700906 (int)crypt_ftr.persist_data_size) {
Björn Landström96dbee72015-01-20 12:43:56 +0100907 if (lseek64(fd, erase_offset, SEEK_SET) < 0) {
Ken Sumrall160b4d62013-04-22 12:15:39 -0700908 SLOGE("Cannot seek to erase previous persistent data");
909 goto err2;
910 }
911 fsync(fd);
912 memset(pdata, 0, crypt_ftr.persist_data_size);
Paul Crowley14c8c072018-09-18 13:30:21 -0700913 if (unix_write(fd, pdata, crypt_ftr.persist_data_size) != (int)crypt_ftr.persist_data_size) {
Ken Sumrall160b4d62013-04-22 12:15:39 -0700914 SLOGE("Cannot write to erase previous persistent data");
915 goto err2;
916 }
917 fsync(fd);
918 } else {
919 SLOGE("Cannot write to save persistent data");
920 goto err2;
921 }
922
923 /* Success */
924 free(pdata);
925 close(fd);
926 return 0;
927
928err2:
929 free(pdata);
930err:
931 close(fd);
932 return -1;
933}
934
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800935/* Convert a binary key of specified length into an ascii hex string equivalent,
936 * without the leading 0x and with null termination
937 */
Paul Crowley14c8c072018-09-18 13:30:21 -0700938static void convert_key_to_hex_ascii(const unsigned char* master_key, unsigned int keysize,
939 char* master_key_ascii) {
Paul Lawrence3bd36d52015-06-09 13:37:44 -0700940 unsigned int i, a;
941 unsigned char nibble;
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800942
Paul Crowley14c8c072018-09-18 13:30:21 -0700943 for (i = 0, a = 0; i < keysize; i++, a += 2) {
Paul Lawrence3bd36d52015-06-09 13:37:44 -0700944 /* For each byte, write out two ascii hex digits */
945 nibble = (master_key[i] >> 4) & 0xf;
946 master_key_ascii[a] = nibble + (nibble > 9 ? 0x37 : 0x30);
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800947
Paul Lawrence3bd36d52015-06-09 13:37:44 -0700948 nibble = master_key[i] & 0xf;
Paul Crowley14c8c072018-09-18 13:30:21 -0700949 master_key_ascii[a + 1] = nibble + (nibble > 9 ? 0x37 : 0x30);
Paul Lawrence3bd36d52015-06-09 13:37:44 -0700950 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800951
Paul Lawrence3bd36d52015-06-09 13:37:44 -0700952 /* Add the null termination */
953 master_key_ascii[a] = '\0';
Ken Sumrall8f869aa2010-12-03 03:47:09 -0800954}
955
Paul Crowley14c8c072018-09-18 13:30:21 -0700956static int load_crypto_mapping_table(struct crypt_mnt_ftr* crypt_ftr,
957 const unsigned char* master_key, const char* real_blk_name,
958 const char* name, int fd, const char* extra_params) {
959 alignas(struct dm_ioctl) char buffer[DM_CRYPT_BUF_SIZE];
960 struct dm_ioctl* io;
961 struct dm_target_spec* tgt;
962 char* crypt_params;
963 // We need two ASCII characters to represent each byte, and need space for
964 // the '\0' terminator.
965 char master_key_ascii[MAX_KEY_LEN * 2 + 1];
966 size_t buff_offset;
967 int i;
Ken Sumralldb5e0262013-02-05 17:39:48 -0800968
Paul Crowley14c8c072018-09-18 13:30:21 -0700969 io = (struct dm_ioctl*)buffer;
Ken Sumralldb5e0262013-02-05 17:39:48 -0800970
Paul Crowley14c8c072018-09-18 13:30:21 -0700971 /* Load the mapping table for this device */
972 tgt = (struct dm_target_spec*)&buffer[sizeof(struct dm_ioctl)];
Ken Sumralldb5e0262013-02-05 17:39:48 -0800973
Paul Crowley14c8c072018-09-18 13:30:21 -0700974 ioctl_init(io, DM_CRYPT_BUF_SIZE, name, 0);
975 io->target_count = 1;
976 tgt->status = 0;
977 tgt->sector_start = 0;
978 tgt->length = crypt_ftr->fs_size;
979 strlcpy(tgt->target_type, "crypt", DM_MAX_TYPE_NAME);
Ken Sumralldb5e0262013-02-05 17:39:48 -0800980
Paul Crowley14c8c072018-09-18 13:30:21 -0700981 crypt_params = buffer + sizeof(struct dm_ioctl) + sizeof(struct dm_target_spec);
982 convert_key_to_hex_ascii(master_key, crypt_ftr->keysize, master_key_ascii);
George Burgess IV605d7ae2016-02-29 13:39:17 -0800983
Paul Crowley14c8c072018-09-18 13:30:21 -0700984 buff_offset = crypt_params - buffer;
985 SLOGI("Extra parameters for dm_crypt: %s\n", extra_params);
986 snprintf(crypt_params, sizeof(buffer) - buff_offset, "%s %s 0 %s 0 %s",
987 crypt_ftr->crypto_type_name, master_key_ascii, real_blk_name, extra_params);
988 crypt_params += strlen(crypt_params) + 1;
989 crypt_params =
990 (char*)(((unsigned long)crypt_params + 7) & ~8); /* Align to an 8 byte boundary */
991 tgt->next = crypt_params - buffer;
Ken Sumralldb5e0262013-02-05 17:39:48 -0800992
Paul Crowley14c8c072018-09-18 13:30:21 -0700993 for (i = 0; i < TABLE_LOAD_RETRIES; i++) {
994 if (!ioctl(fd, DM_TABLE_LOAD, io)) {
995 break;
996 }
997 usleep(500000);
Ken Sumralldb5e0262013-02-05 17:39:48 -0800998 }
Ken Sumralldb5e0262013-02-05 17:39:48 -0800999
Paul Crowley14c8c072018-09-18 13:30:21 -07001000 if (i == TABLE_LOAD_RETRIES) {
1001 /* We failed to load the table, return an error */
1002 return -1;
1003 } else {
1004 return i + 1;
1005 }
Ken Sumralldb5e0262013-02-05 17:39:48 -08001006}
1007
Paul Crowley14c8c072018-09-18 13:30:21 -07001008static int get_dm_crypt_version(int fd, const char* name, int* version) {
Ken Sumralldb5e0262013-02-05 17:39:48 -08001009 char buffer[DM_CRYPT_BUF_SIZE];
Paul Crowley14c8c072018-09-18 13:30:21 -07001010 struct dm_ioctl* io;
1011 struct dm_target_versions* v;
Ken Sumralldb5e0262013-02-05 17:39:48 -08001012
Paul Crowley14c8c072018-09-18 13:30:21 -07001013 io = (struct dm_ioctl*)buffer;
Ken Sumralldb5e0262013-02-05 17:39:48 -08001014
1015 ioctl_init(io, DM_CRYPT_BUF_SIZE, name, 0);
1016
1017 if (ioctl(fd, DM_LIST_VERSIONS, io)) {
1018 return -1;
1019 }
1020
1021 /* Iterate over the returned versions, looking for name of "crypt".
1022 * When found, get and return the version.
1023 */
Paul Crowley14c8c072018-09-18 13:30:21 -07001024 v = (struct dm_target_versions*)&buffer[sizeof(struct dm_ioctl)];
Ken Sumralldb5e0262013-02-05 17:39:48 -08001025 while (v->next) {
Paul Crowley14c8c072018-09-18 13:30:21 -07001026 if (!strcmp(v->name, "crypt")) {
Ken Sumralldb5e0262013-02-05 17:39:48 -08001027 /* We found the crypt driver, return the version, and get out */
1028 version[0] = v->version[0];
1029 version[1] = v->version[1];
1030 version[2] = v->version[2];
1031 return 0;
1032 }
Paul Crowley14c8c072018-09-18 13:30:21 -07001033 v = (struct dm_target_versions*)(((char*)v) + v->next);
Ken Sumralldb5e0262013-02-05 17:39:48 -08001034 }
1035
1036 return -1;
1037}
1038
Paul Crowley5afbc622017-11-27 09:42:17 -08001039static std::string extra_params_as_string(const std::vector<std::string>& extra_params_vec) {
1040 if (extra_params_vec.empty()) return "";
1041 std::string extra_params = std::to_string(extra_params_vec.size());
1042 for (const auto& p : extra_params_vec) {
1043 extra_params.append(" ");
1044 extra_params.append(p);
1045 }
1046 return extra_params;
1047}
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001048
Greg Kaiserab1e84a2018-12-11 12:40:51 -08001049// Only adds parameters if the property is set.
1050static void add_sector_size_param(std::vector<std::string>* extra_params_vec) {
1051 constexpr char DM_CRYPT_SECTOR_SIZE[] = "ro.crypto.fde_sector_size";
1052 char sector_size[PROPERTY_VALUE_MAX];
1053
1054 if (property_get(DM_CRYPT_SECTOR_SIZE, sector_size, "") > 0) {
1055 std::string param = StringPrintf("sector_size:%s", sector_size);
1056 extra_params_vec->push_back(std::move(param));
1057
1058 // With this option, IVs will match the sector numbering, instead
1059 // of being hard-coded to being based on 512-byte sectors.
1060 extra_params_vec->emplace_back("iv_large_sectors");
1061 }
1062}
1063
Paul Crowley5afbc622017-11-27 09:42:17 -08001064static int create_crypto_blk_dev(struct crypt_mnt_ftr* crypt_ftr, const unsigned char* master_key,
1065 const char* real_blk_name, char* crypto_blk_name, const char* name,
1066 uint32_t flags) {
1067 char buffer[DM_CRYPT_BUF_SIZE];
1068 struct dm_ioctl* io;
1069 unsigned int minor;
1070 int fd = 0;
1071 int err;
1072 int retval = -1;
1073 int version[3];
1074 int load_count;
1075 std::vector<std::string> extra_params_vec;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001076
Paul Crowley5afbc622017-11-27 09:42:17 -08001077 if ((fd = open("/dev/device-mapper", O_RDWR | O_CLOEXEC)) < 0) {
1078 SLOGE("Cannot open device-mapper\n");
1079 goto errout;
1080 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001081
Paul Crowley5afbc622017-11-27 09:42:17 -08001082 io = (struct dm_ioctl*)buffer;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001083
Paul Crowley5afbc622017-11-27 09:42:17 -08001084 ioctl_init(io, DM_CRYPT_BUF_SIZE, name, 0);
1085 err = ioctl(fd, DM_DEV_CREATE, io);
1086 if (err) {
1087 SLOGE("Cannot create dm-crypt device %s: %s\n", name, strerror(errno));
1088 goto errout;
1089 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001090
Paul Crowley5afbc622017-11-27 09:42:17 -08001091 /* Get the device status, in particular, the name of it's device file */
1092 ioctl_init(io, DM_CRYPT_BUF_SIZE, name, 0);
1093 if (ioctl(fd, DM_DEV_STATUS, io)) {
1094 SLOGE("Cannot retrieve dm-crypt device status\n");
1095 goto errout;
1096 }
1097 minor = (io->dev & 0xff) | ((io->dev >> 12) & 0xfff00);
1098 snprintf(crypto_blk_name, MAXPATHLEN, "/dev/block/dm-%u", minor);
Ken Sumralle919efe2012-09-29 17:07:41 -07001099
Paul Crowley5afbc622017-11-27 09:42:17 -08001100 if (!get_dm_crypt_version(fd, name, version)) {
1101 /* Support for allow_discards was added in version 1.11.0 */
1102 if ((version[0] >= 2) || ((version[0] == 1) && (version[1] >= 11))) {
1103 extra_params_vec.emplace_back("allow_discards");
1104 }
1105 }
1106 if (flags & CREATE_CRYPTO_BLK_DEV_FLAGS_ALLOW_ENCRYPT_OVERRIDE) {
1107 extra_params_vec.emplace_back("allow_encrypt_override");
1108 }
Greg Kaiserab1e84a2018-12-11 12:40:51 -08001109 add_sector_size_param(&extra_params_vec);
Paul Crowley5afbc622017-11-27 09:42:17 -08001110 load_count = load_crypto_mapping_table(crypt_ftr, master_key, real_blk_name, name, fd,
1111 extra_params_as_string(extra_params_vec).c_str());
1112 if (load_count < 0) {
1113 SLOGE("Cannot load dm-crypt mapping table.\n");
1114 goto errout;
1115 } else if (load_count > 1) {
1116 SLOGI("Took %d tries to load dmcrypt table.\n", load_count);
1117 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001118
Paul Crowley5afbc622017-11-27 09:42:17 -08001119 /* Resume this device to activate it */
1120 ioctl_init(io, DM_CRYPT_BUF_SIZE, name, 0);
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001121
Paul Crowley5afbc622017-11-27 09:42:17 -08001122 if (ioctl(fd, DM_DEV_SUSPEND, io)) {
1123 SLOGE("Cannot resume the dm-crypt device\n");
1124 goto errout;
1125 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001126
Paul Crowleycfe39722018-10-30 15:59:24 -07001127 /* Ensure the dm device has been created before returning. */
1128 if (android::vold::WaitForFile(crypto_blk_name, 1s) < 0) {
1129 // WaitForFile generates a suitable log message
1130 goto errout;
1131 }
1132
Paul Crowley5afbc622017-11-27 09:42:17 -08001133 /* We made it here with no errors. Woot! */
1134 retval = 0;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001135
1136errout:
Paul Crowley14c8c072018-09-18 13:30:21 -07001137 close(fd); /* If fd is <0 from a failed open call, it's safe to just ignore the close error */
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001138
Paul Crowley14c8c072018-09-18 13:30:21 -07001139 return retval;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001140}
1141
Paul Crowley14c8c072018-09-18 13:30:21 -07001142static int delete_crypto_blk_dev(const char* name) {
1143 int fd;
1144 char buffer[DM_CRYPT_BUF_SIZE];
1145 struct dm_ioctl* io;
1146 int retval = -1;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001147
Paul Crowley14c8c072018-09-18 13:30:21 -07001148 if ((fd = open("/dev/device-mapper", O_RDWR | O_CLOEXEC)) < 0) {
1149 SLOGE("Cannot open device-mapper\n");
1150 goto errout;
1151 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001152
Paul Crowley14c8c072018-09-18 13:30:21 -07001153 io = (struct dm_ioctl*)buffer;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001154
Paul Crowley14c8c072018-09-18 13:30:21 -07001155 ioctl_init(io, DM_CRYPT_BUF_SIZE, name, 0);
1156 if (ioctl(fd, DM_DEV_REMOVE, io)) {
1157 SLOGE("Cannot remove dm-crypt device\n");
1158 goto errout;
1159 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001160
Paul Crowley14c8c072018-09-18 13:30:21 -07001161 /* We made it here with no errors. Woot! */
1162 retval = 0;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001163
1164errout:
Paul Crowley14c8c072018-09-18 13:30:21 -07001165 close(fd); /* If fd is <0 from a failed open call, it's safe to just ignore the close error */
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001166
Paul Crowley14c8c072018-09-18 13:30:21 -07001167 return retval;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001168}
1169
Paul Crowley14c8c072018-09-18 13:30:21 -07001170static int pbkdf2(const char* passwd, const unsigned char* salt, unsigned char* ikey,
1171 void* params UNUSED) {
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001172 SLOGI("Using pbkdf2 for cryptfs KDF");
1173
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001174 /* Turn the password into a key and IV that can decrypt the master key */
Paul Crowley14c8c072018-09-18 13:30:21 -07001175 return PKCS5_PBKDF2_HMAC_SHA1(passwd, strlen(passwd), salt, SALT_LEN, HASH_COUNT,
1176 INTERMEDIATE_BUF_SIZE, ikey) != 1;
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001177}
1178
Paul Crowley14c8c072018-09-18 13:30:21 -07001179static int scrypt(const char* passwd, const unsigned char* salt, unsigned char* ikey, void* params) {
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001180 SLOGI("Using scrypt for cryptfs KDF");
1181
Paul Crowley14c8c072018-09-18 13:30:21 -07001182 struct crypt_mnt_ftr* ftr = (struct crypt_mnt_ftr*)params;
Kenny Rootc4c70f12013-06-14 12:11:38 -07001183
1184 int N = 1 << ftr->N_factor;
1185 int r = 1 << ftr->r_factor;
1186 int p = 1 << ftr->p_factor;
1187
1188 /* Turn the password into a key and IV that can decrypt the master key */
Paul Crowley14c8c072018-09-18 13:30:21 -07001189 crypto_scrypt((const uint8_t*)passwd, strlen(passwd), salt, SALT_LEN, N, r, p, ikey,
Greg Kaiserc0de9c72018-02-14 20:05:54 -08001190 INTERMEDIATE_BUF_SIZE);
Paul Lawrencef4faa572014-01-29 13:31:03 -08001191
Paul Crowley14c8c072018-09-18 13:30:21 -07001192 return 0;
Kenny Rootc4c70f12013-06-14 12:11:38 -07001193}
1194
Paul Crowley14c8c072018-09-18 13:30:21 -07001195static int scrypt_keymaster(const char* passwd, const unsigned char* salt, unsigned char* ikey,
1196 void* params) {
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001197 SLOGI("Using scrypt with keymaster for cryptfs KDF");
1198
1199 int rc;
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001200 size_t signature_size;
1201 unsigned char* signature;
Paul Crowley14c8c072018-09-18 13:30:21 -07001202 struct crypt_mnt_ftr* ftr = (struct crypt_mnt_ftr*)params;
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001203
1204 int N = 1 << ftr->N_factor;
1205 int r = 1 << ftr->r_factor;
1206 int p = 1 << ftr->p_factor;
1207
Paul Crowley14c8c072018-09-18 13:30:21 -07001208 rc = crypto_scrypt((const uint8_t*)passwd, strlen(passwd), salt, SALT_LEN, N, r, p, ikey,
Greg Kaiserc0de9c72018-02-14 20:05:54 -08001209 INTERMEDIATE_BUF_SIZE);
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001210
1211 if (rc) {
1212 SLOGE("scrypt failed");
1213 return -1;
1214 }
1215
Paul Crowley14c8c072018-09-18 13:30:21 -07001216 if (keymaster_sign_object(ftr, ikey, INTERMEDIATE_BUF_SIZE, &signature, &signature_size)) {
Shawn Willdene17a9c42014-09-08 13:04:08 -06001217 SLOGE("Signing failed");
1218 return -1;
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001219 }
1220
Paul Crowley14c8c072018-09-18 13:30:21 -07001221 rc = crypto_scrypt(signature, signature_size, salt, SALT_LEN, N, r, p, ikey,
1222 INTERMEDIATE_BUF_SIZE);
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001223 free(signature);
1224
1225 if (rc) {
1226 SLOGE("scrypt failed");
1227 return -1;
1228 }
1229
1230 return 0;
1231}
1232
Paul Crowley14c8c072018-09-18 13:30:21 -07001233static int encrypt_master_key(const char* passwd, const unsigned char* salt,
1234 const unsigned char* decrypted_master_key,
1235 unsigned char* encrypted_master_key, struct crypt_mnt_ftr* crypt_ftr) {
1236 unsigned char ikey[INTERMEDIATE_BUF_SIZE] = {0};
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001237 EVP_CIPHER_CTX e_ctx;
1238 int encrypted_len, final_len;
Paul Lawrenced0c7b172014-08-08 14:28:10 -07001239 int rc = 0;
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001240
Paul Lawrenced0c7b172014-08-08 14:28:10 -07001241 /* Turn the password into an intermediate key and IV that can decrypt the master key */
Kenny Rootc4c70f12013-06-14 12:11:38 -07001242 get_device_scrypt_params(crypt_ftr);
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001243
1244 switch (crypt_ftr->kdf_type) {
Paul Crowley14c8c072018-09-18 13:30:21 -07001245 case KDF_SCRYPT_KEYMASTER:
1246 if (keymaster_create_key(crypt_ftr)) {
1247 SLOGE("keymaster_create_key failed");
1248 return -1;
1249 }
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001250
Paul Crowley14c8c072018-09-18 13:30:21 -07001251 if (scrypt_keymaster(passwd, salt, ikey, crypt_ftr)) {
1252 SLOGE("scrypt failed");
1253 return -1;
1254 }
1255 break;
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001256
Paul Crowley14c8c072018-09-18 13:30:21 -07001257 case KDF_SCRYPT:
1258 if (scrypt(passwd, salt, ikey, crypt_ftr)) {
1259 SLOGE("scrypt failed");
1260 return -1;
1261 }
1262 break;
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001263
Paul Crowley14c8c072018-09-18 13:30:21 -07001264 default:
1265 SLOGE("Invalid kdf_type");
1266 return -1;
Paul Lawrencef4faa572014-01-29 13:31:03 -08001267 }
Kenny Rootc4c70f12013-06-14 12:11:38 -07001268
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001269 /* Initialize the decryption engine */
Adam Langley889c4f12014-09-03 14:23:13 -07001270 EVP_CIPHER_CTX_init(&e_ctx);
Paul Crowley14c8c072018-09-18 13:30:21 -07001271 if (!EVP_EncryptInit_ex(&e_ctx, EVP_aes_128_cbc(), NULL, ikey,
1272 ikey + INTERMEDIATE_KEY_LEN_BYTES)) {
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001273 SLOGE("EVP_EncryptInit failed\n");
1274 return -1;
1275 }
1276 EVP_CIPHER_CTX_set_padding(&e_ctx, 0); /* Turn off padding as our data is block aligned */
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001277
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001278 /* Encrypt the master key */
Paul Crowley14c8c072018-09-18 13:30:21 -07001279 if (!EVP_EncryptUpdate(&e_ctx, encrypted_master_key, &encrypted_len, decrypted_master_key,
1280 crypt_ftr->keysize)) {
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001281 SLOGE("EVP_EncryptUpdate failed\n");
1282 return -1;
1283 }
Paul Crowley14c8c072018-09-18 13:30:21 -07001284 if (!EVP_EncryptFinal_ex(&e_ctx, encrypted_master_key + encrypted_len, &final_len)) {
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001285 SLOGE("EVP_EncryptFinal failed\n");
1286 return -1;
1287 }
1288
Greg Kaiser59ad0182018-02-16 13:01:36 -08001289 if (encrypted_len + final_len != static_cast<int>(crypt_ftr->keysize)) {
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001290 SLOGE("EVP_Encryption length check failed with %d, %d bytes\n", encrypted_len, final_len);
1291 return -1;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001292 }
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001293
Paul Lawrenced0c7b172014-08-08 14:28:10 -07001294 /* Store the scrypt of the intermediate key, so we can validate if it's a
1295 password error or mount error when things go wrong.
1296 Note there's no need to check for errors, since if this is incorrect, we
1297 simply won't wipe userdata, which is the correct default behavior
1298 */
1299 int N = 1 << crypt_ftr->N_factor;
1300 int r = 1 << crypt_ftr->r_factor;
1301 int p = 1 << crypt_ftr->p_factor;
1302
Paul Crowley14c8c072018-09-18 13:30:21 -07001303 rc = crypto_scrypt(ikey, INTERMEDIATE_KEY_LEN_BYTES, crypt_ftr->salt, sizeof(crypt_ftr->salt),
1304 N, r, p, crypt_ftr->scrypted_intermediate_key,
Paul Lawrenced0c7b172014-08-08 14:28:10 -07001305 sizeof(crypt_ftr->scrypted_intermediate_key));
1306
1307 if (rc) {
Paul Crowley14c8c072018-09-18 13:30:21 -07001308 SLOGE("encrypt_master_key: crypto_scrypt failed");
Paul Lawrenced0c7b172014-08-08 14:28:10 -07001309 }
1310
Thurston Hou Yeen Dang06dc3112016-07-18 14:16:37 -07001311 EVP_CIPHER_CTX_cleanup(&e_ctx);
1312
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001313 return 0;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001314}
1315
Paul Crowley14c8c072018-09-18 13:30:21 -07001316static int decrypt_master_key_aux(const char* passwd, unsigned char* salt,
1317 const unsigned char* encrypted_master_key, size_t keysize,
1318 unsigned char* decrypted_master_key, kdf_func kdf,
1319 void* kdf_params, unsigned char** intermediate_key,
1320 size_t* intermediate_key_size) {
1321 unsigned char ikey[INTERMEDIATE_BUF_SIZE] = {0};
1322 EVP_CIPHER_CTX d_ctx;
1323 int decrypted_len, final_len;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001324
Paul Crowley14c8c072018-09-18 13:30:21 -07001325 /* Turn the password into an intermediate key and IV that can decrypt the
1326 master key */
1327 if (kdf(passwd, salt, ikey, kdf_params)) {
1328 SLOGE("kdf failed");
1329 return -1;
Paul Lawrenced0c7b172014-08-08 14:28:10 -07001330 }
Paul Lawrenced0c7b172014-08-08 14:28:10 -07001331
Paul Crowley14c8c072018-09-18 13:30:21 -07001332 /* Initialize the decryption engine */
1333 EVP_CIPHER_CTX_init(&d_ctx);
1334 if (!EVP_DecryptInit_ex(&d_ctx, EVP_aes_128_cbc(), NULL, ikey,
1335 ikey + INTERMEDIATE_KEY_LEN_BYTES)) {
1336 return -1;
1337 }
1338 EVP_CIPHER_CTX_set_padding(&d_ctx, 0); /* Turn off padding as our data is block aligned */
1339 /* Decrypt the master key */
1340 if (!EVP_DecryptUpdate(&d_ctx, decrypted_master_key, &decrypted_len, encrypted_master_key,
1341 keysize)) {
1342 return -1;
1343 }
1344 if (!EVP_DecryptFinal_ex(&d_ctx, decrypted_master_key + decrypted_len, &final_len)) {
1345 return -1;
1346 }
Thurston Hou Yeen Dang06dc3112016-07-18 14:16:37 -07001347
Paul Crowley14c8c072018-09-18 13:30:21 -07001348 if (decrypted_len + final_len != static_cast<int>(keysize)) {
1349 return -1;
1350 }
1351
1352 /* Copy intermediate key if needed by params */
1353 if (intermediate_key && intermediate_key_size) {
1354 *intermediate_key = (unsigned char*)malloc(INTERMEDIATE_KEY_LEN_BYTES);
1355 if (*intermediate_key) {
1356 memcpy(*intermediate_key, ikey, INTERMEDIATE_KEY_LEN_BYTES);
1357 *intermediate_key_size = INTERMEDIATE_KEY_LEN_BYTES;
1358 }
1359 }
1360
1361 EVP_CIPHER_CTX_cleanup(&d_ctx);
1362
1363 return 0;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001364}
1365
Paul Crowley14c8c072018-09-18 13:30:21 -07001366static void get_kdf_func(struct crypt_mnt_ftr* ftr, kdf_func* kdf, void** kdf_params) {
Paul Lawrencedb3730c2015-02-03 13:08:10 -08001367 if (ftr->kdf_type == KDF_SCRYPT_KEYMASTER) {
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07001368 *kdf = scrypt_keymaster;
1369 *kdf_params = ftr;
1370 } else if (ftr->kdf_type == KDF_SCRYPT) {
Kenny Rootc4c70f12013-06-14 12:11:38 -07001371 *kdf = scrypt;
1372 *kdf_params = ftr;
1373 } else {
1374 *kdf = pbkdf2;
1375 *kdf_params = NULL;
1376 }
1377}
1378
Paul Crowley14c8c072018-09-18 13:30:21 -07001379static int decrypt_master_key(const char* passwd, unsigned char* decrypted_master_key,
1380 struct crypt_mnt_ftr* crypt_ftr, unsigned char** intermediate_key,
1381 size_t* intermediate_key_size) {
Kenny Rootc4c70f12013-06-14 12:11:38 -07001382 kdf_func kdf;
Paul Crowley14c8c072018-09-18 13:30:21 -07001383 void* kdf_params;
Kenny Rootc4c70f12013-06-14 12:11:38 -07001384 int ret;
1385
1386 get_kdf_func(crypt_ftr, &kdf, &kdf_params);
Paul Crowley14c8c072018-09-18 13:30:21 -07001387 ret = decrypt_master_key_aux(passwd, crypt_ftr->salt, crypt_ftr->master_key, crypt_ftr->keysize,
1388 decrypted_master_key, kdf, kdf_params, intermediate_key,
1389 intermediate_key_size);
Kenny Rootc4c70f12013-06-14 12:11:38 -07001390 if (ret != 0) {
1391 SLOGW("failure decrypting master key");
Kenny Rootc4c70f12013-06-14 12:11:38 -07001392 }
1393
1394 return ret;
1395}
1396
Paul Crowley14c8c072018-09-18 13:30:21 -07001397static int create_encrypted_random_key(const char* passwd, unsigned char* master_key,
1398 unsigned char* salt, struct crypt_mnt_ftr* crypt_ftr) {
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001399 int fd;
Greg Kaiser59ad0182018-02-16 13:01:36 -08001400 unsigned char key_buf[MAX_KEY_LEN];
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001401
1402 /* Get some random bits for a key */
Paul Crowley14c8c072018-09-18 13:30:21 -07001403 fd = open("/dev/urandom", O_RDONLY | O_CLOEXEC);
Ken Sumralle8744072011-01-18 22:01:55 -08001404 read(fd, key_buf, sizeof(key_buf));
1405 read(fd, salt, SALT_LEN);
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001406 close(fd);
1407
1408 /* Now encrypt it with the password */
Kenny Rootc4c70f12013-06-14 12:11:38 -07001409 return encrypt_master_key(passwd, salt, key_buf, master_key, crypt_ftr);
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001410}
1411
Paul Crowley14c8c072018-09-18 13:30:21 -07001412int wait_and_unmount(const char* mountpoint, bool kill) {
Greg Hackmann955653e2014-09-24 14:55:20 -07001413 int i, err, rc;
Ken Sumrall2eaf7132011-01-14 12:45:48 -08001414#define WAIT_UNMOUNT_COUNT 20
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001415
1416 /* Now umount the tmpfs filesystem */
Paul Crowley14c8c072018-09-18 13:30:21 -07001417 for (i = 0; i < WAIT_UNMOUNT_COUNT; i++) {
Greg Hackmann6e8440f2014-10-02 17:18:20 -07001418 if (umount(mountpoint) == 0) {
1419 break;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001420 }
Greg Hackmann6e8440f2014-10-02 17:18:20 -07001421
1422 if (errno == EINVAL) {
1423 /* EINVAL is returned if the directory is not a mountpoint,
1424 * i.e. there is no filesystem mounted there. So just get out.
1425 */
1426 break;
1427 }
1428
1429 err = errno;
1430
1431 /* If allowed, be increasingly aggressive before the last two retries */
1432 if (kill) {
1433 if (i == (WAIT_UNMOUNT_COUNT - 3)) {
1434 SLOGW("sending SIGHUP to processes with open files\n");
Jeff Sharkey3472e522017-10-06 18:02:53 -06001435 android::vold::KillProcessesWithOpenFiles(mountpoint, SIGTERM);
Greg Hackmann6e8440f2014-10-02 17:18:20 -07001436 } else if (i == (WAIT_UNMOUNT_COUNT - 2)) {
1437 SLOGW("sending SIGKILL to processes with open files\n");
Jeff Sharkey3472e522017-10-06 18:02:53 -06001438 android::vold::KillProcessesWithOpenFiles(mountpoint, SIGKILL);
Greg Hackmann6e8440f2014-10-02 17:18:20 -07001439 }
1440 }
1441
1442 sleep(1);
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001443 }
1444
1445 if (i < WAIT_UNMOUNT_COUNT) {
Paul Crowley14c8c072018-09-18 13:30:21 -07001446 SLOGD("unmounting %s succeeded\n", mountpoint);
1447 rc = 0;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001448 } else {
Paul Crowley14c8c072018-09-18 13:30:21 -07001449 android::vold::KillProcessesWithOpenFiles(mountpoint, 0);
1450 SLOGE("unmounting %s failed: %s\n", mountpoint, strerror(err));
1451 rc = -1;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001452 }
1453
1454 return rc;
1455}
1456
Paul Crowley14c8c072018-09-18 13:30:21 -07001457static void prep_data_fs(void) {
Jeff Sharkey47695b22016-02-01 17:02:29 -07001458 // NOTE: post_fs_data results in init calling back around to vold, so all
1459 // callers to this method must be async
1460
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001461 /* Do the prep of the /data filesystem */
1462 property_set("vold.post_fs_data_done", "0");
1463 property_set("vold.decrypt", "trigger_post_fs_data");
Wei Wang42e38102017-06-07 10:46:12 -07001464 SLOGD("Just triggered post_fs_data");
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001465
Ken Sumrallc5872692013-05-14 15:26:31 -07001466 /* Wait a max of 50 seconds, hopefully it takes much less */
Paul Crowley14c8c072018-09-18 13:30:21 -07001467 while (!android::base::WaitForProperty("vold.post_fs_data_done", "1", std::chrono::seconds(15))) {
Wei Wang42e38102017-06-07 10:46:12 -07001468 /* We timed out to prep /data in time. Continue wait. */
1469 SLOGE("waited 15s for vold.post_fs_data_done, still waiting...");
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001470 }
Wei Wang42e38102017-06-07 10:46:12 -07001471 SLOGD("post_fs_data done");
Ken Sumrall8ddbe402011-01-17 15:26:29 -08001472}
1473
Paul Crowley14c8c072018-09-18 13:30:21 -07001474static void cryptfs_set_corrupt() {
Paul Lawrence74f29f12014-08-28 15:54:10 -07001475 // Mark the footer as bad
1476 struct crypt_mnt_ftr crypt_ftr;
1477 if (get_crypt_ftr_and_key(&crypt_ftr)) {
1478 SLOGE("Failed to get crypto footer - panic");
1479 return;
1480 }
1481
1482 crypt_ftr.flags |= CRYPT_DATA_CORRUPT;
1483 if (put_crypt_ftr_and_key(&crypt_ftr)) {
1484 SLOGE("Failed to set crypto footer - panic");
1485 return;
1486 }
1487}
1488
Paul Crowley14c8c072018-09-18 13:30:21 -07001489static void cryptfs_trigger_restart_min_framework() {
Paul Lawrence74f29f12014-08-28 15:54:10 -07001490 if (fs_mgr_do_tmpfs_mount(DATA_MNT_POINT)) {
Paul Crowley14c8c072018-09-18 13:30:21 -07001491 SLOGE("Failed to mount tmpfs on data - panic");
1492 return;
Paul Lawrence74f29f12014-08-28 15:54:10 -07001493 }
1494
1495 if (property_set("vold.decrypt", "trigger_post_fs_data")) {
1496 SLOGE("Failed to trigger post fs data - panic");
1497 return;
1498 }
1499
1500 if (property_set("vold.decrypt", "trigger_restart_min_framework")) {
1501 SLOGE("Failed to trigger restart min framework - panic");
1502 return;
1503 }
1504}
1505
Paul Lawrence8e3f4512014-09-08 10:11:17 -07001506/* returns < 0 on failure */
Paul Crowley14c8c072018-09-18 13:30:21 -07001507static int cryptfs_restart_internal(int restart_main) {
Ken Sumrall6864b7e2011-01-14 15:20:02 -08001508 char crypto_blkdev[MAXPATHLEN];
Tim Murray8439dc92014-12-15 11:56:11 -08001509 int rc = -1;
Ken Sumrall0cc16632011-01-18 20:32:26 -08001510 static int restart_successful = 0;
1511
1512 /* Validate that it's OK to call this routine */
Paul Crowley14c8c072018-09-18 13:30:21 -07001513 if (!master_key_saved) {
Ken Sumrall0cc16632011-01-18 20:32:26 -08001514 SLOGE("Encrypted filesystem not validated, aborting");
1515 return -1;
1516 }
1517
1518 if (restart_successful) {
1519 SLOGE("System already restarted with encrypted disk, aborting");
1520 return -1;
1521 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001522
Paul Lawrencef4faa572014-01-29 13:31:03 -08001523 if (restart_main) {
1524 /* Here is where we shut down the framework. The init scripts
1525 * start all services in one of three classes: core, main or late_start.
1526 * On boot, we start core and main. Now, we stop main, but not core,
1527 * as core includes vold and a few other really important things that
1528 * we need to keep running. Once main has stopped, we should be able
1529 * to umount the tmpfs /data, then mount the encrypted /data.
1530 * We then restart the class main, and also the class late_start.
1531 * At the moment, I've only put a few things in late_start that I know
1532 * are not needed to bring up the framework, and that also cause problems
1533 * with unmounting the tmpfs /data, but I hope to add add more services
1534 * to the late_start class as we optimize this to decrease the delay
1535 * till the user is asked for the password to the filesystem.
1536 */
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001537
Paul Lawrencef4faa572014-01-29 13:31:03 -08001538 /* The init files are setup to stop the class main when vold.decrypt is
1539 * set to trigger_reset_main.
1540 */
1541 property_set("vold.decrypt", "trigger_reset_main");
1542 SLOGD("Just asked init to shut down class main\n");
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001543
Paul Lawrencef4faa572014-01-29 13:31:03 -08001544 /* Ugh, shutting down the framework is not synchronous, so until it
1545 * can be fixed, this horrible hack will wait a moment for it all to
1546 * shut down before proceeding. Without it, some devices cannot
1547 * restart the graphics services.
1548 */
1549 sleep(2);
1550 }
Ken Sumrall9dedfd42012-10-09 14:16:59 -07001551
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001552 /* Now that the framework is shutdown, we should be able to umount()
1553 * the tmpfs filesystem, and mount the real one.
1554 */
1555
Ken Sumrall6864b7e2011-01-14 15:20:02 -08001556 property_get("ro.crypto.fs_crypto_blkdev", crypto_blkdev, "");
1557 if (strlen(crypto_blkdev) == 0) {
1558 SLOGE("fs_crypto_blkdev not set\n");
1559 return -1;
1560 }
1561
Paul Crowley14c8c072018-09-18 13:30:21 -07001562 if (!(rc = wait_and_unmount(DATA_MNT_POINT, true))) {
Doug Zongker6fd57712013-12-17 09:43:23 -08001563 /* If ro.crypto.readonly is set to 1, mount the decrypted
1564 * filesystem readonly. This is used when /data is mounted by
1565 * recovery mode.
1566 */
1567 char ro_prop[PROPERTY_VALUE_MAX];
1568 property_get("ro.crypto.readonly", ro_prop, "");
Jeff Sharkey95440eb2017-09-18 18:19:28 -06001569 if (strlen(ro_prop) > 0 && std::stoi(ro_prop)) {
Paul Crowleye2ee1522017-09-26 14:05:26 -07001570 struct fstab_rec* rec = fs_mgr_get_entry_for_mount_point(fstab_default, DATA_MNT_POINT);
Luis Hector Chavezbbb512d2018-05-30 15:47:50 -07001571 if (rec) {
1572 rec->flags |= MS_RDONLY;
1573 }
Doug Zongker6fd57712013-12-17 09:43:23 -08001574 }
JP Abgrall62c7af32014-06-16 13:01:23 -07001575
Ken Sumralle5032c42012-04-01 23:58:44 -07001576 /* If that succeeded, then mount the decrypted filesystem */
Paul Lawrence8e3f4512014-09-08 10:11:17 -07001577 int retries = RETRY_MOUNT_ATTEMPTS;
1578 int mount_rc;
Jeff Vander Stoepdf725752016-01-29 15:34:43 -08001579
1580 /*
1581 * fs_mgr_do_mount runs fsck. Use setexeccon to run trusted
1582 * partitions in the fsck domain.
1583 */
Paul Crowley14c8c072018-09-18 13:30:21 -07001584 if (setexeccon(secontextFsck())) {
Jeff Vander Stoepdf725752016-01-29 15:34:43 -08001585 SLOGE("Failed to setexeccon");
1586 return -1;
1587 }
Daniel Rosenberg65f99c92018-08-28 01:58:49 -07001588 bool needs_cp = android::vold::cp_needsCheckpoint();
1589 while ((mount_rc = fs_mgr_do_mount(fstab_default, DATA_MNT_POINT, crypto_blkdev, 0,
1590 needs_cp)) != 0) {
Paul Lawrence8e3f4512014-09-08 10:11:17 -07001591 if (mount_rc == FS_MGR_DOMNT_BUSY) {
1592 /* TODO: invoke something similar to
1593 Process::killProcessWithOpenFiles(DATA_MNT_POINT,
1594 retries > RETRY_MOUNT_ATTEMPT/2 ? 1 : 2 ) */
Paul Crowley14c8c072018-09-18 13:30:21 -07001595 SLOGI("Failed to mount %s because it is busy - waiting", crypto_blkdev);
Paul Lawrence8e3f4512014-09-08 10:11:17 -07001596 if (--retries) {
1597 sleep(RETRY_MOUNT_DELAY_SECONDS);
1598 } else {
1599 /* Let's hope that a reboot clears away whatever is keeping
1600 the mount busy */
Josh Gaofec44372017-08-28 13:22:55 -07001601 cryptfs_reboot(RebootType::reboot);
Paul Lawrence8e3f4512014-09-08 10:11:17 -07001602 }
1603 } else {
1604 SLOGE("Failed to mount decrypted data");
1605 cryptfs_set_corrupt();
1606 cryptfs_trigger_restart_min_framework();
1607 SLOGI("Started framework to offer wipe");
Jeff Vander Stoepdf725752016-01-29 15:34:43 -08001608 if (setexeccon(NULL)) {
1609 SLOGE("Failed to setexeccon");
1610 }
Paul Lawrence8e3f4512014-09-08 10:11:17 -07001611 return -1;
1612 }
Paul Lawrence74f29f12014-08-28 15:54:10 -07001613 }
Jeff Vander Stoepdf725752016-01-29 15:34:43 -08001614 if (setexeccon(NULL)) {
1615 SLOGE("Failed to setexeccon");
1616 return -1;
1617 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001618
Ken Sumralle5032c42012-04-01 23:58:44 -07001619 /* Create necessary paths on /data */
Wei Wang42e38102017-06-07 10:46:12 -07001620 prep_data_fs();
Seigo Nonakae2ef0c02016-06-20 17:05:40 +09001621 property_set("vold.decrypt", "trigger_load_persist_props");
Ken Sumralle5032c42012-04-01 23:58:44 -07001622
1623 /* startup service classes main and late_start */
1624 property_set("vold.decrypt", "trigger_restart_framework");
1625 SLOGD("Just triggered restart_framework\n");
1626
1627 /* Give it a few moments to get started */
1628 sleep(1);
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001629 }
1630
Ken Sumrall0cc16632011-01-18 20:32:26 -08001631 if (rc == 0) {
1632 restart_successful = 1;
1633 }
1634
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001635 return rc;
1636}
1637
Paul Crowley14c8c072018-09-18 13:30:21 -07001638int cryptfs_restart(void) {
Paul Lawrence05335c32015-03-05 09:46:23 -08001639 SLOGI("cryptfs_restart");
Eric Biggersa701c452018-10-23 13:06:55 -07001640 if (fscrypt_is_native()) {
Paul Lawrence7b6b5652016-02-02 11:14:59 -08001641 SLOGE("cryptfs_restart not valid for file encryption:");
1642 return -1;
Paul Lawrence05335c32015-03-05 09:46:23 -08001643 }
1644
Paul Lawrencef4faa572014-01-29 13:31:03 -08001645 /* Call internal implementation forcing a restart of main service group */
1646 return cryptfs_restart_internal(1);
1647}
1648
Paul Crowley14c8c072018-09-18 13:30:21 -07001649static int do_crypto_complete(const char* mount_point) {
1650 struct crypt_mnt_ftr crypt_ftr;
1651 char encrypted_state[PROPERTY_VALUE_MAX];
1652 char key_loc[PROPERTY_VALUE_MAX];
Ken Sumrall7f7dbaa2011-02-01 15:46:41 -08001653
Paul Crowley14c8c072018-09-18 13:30:21 -07001654 property_get("ro.crypto.state", encrypted_state, "");
1655 if (strcmp(encrypted_state, "encrypted")) {
1656 SLOGE("not running with encryption, aborting");
1657 return CRYPTO_COMPLETE_NOT_ENCRYPTED;
Ken Sumralle1a45852011-12-14 21:24:27 -08001658 }
Ken Sumrall7f7dbaa2011-02-01 15:46:41 -08001659
Paul Crowley14c8c072018-09-18 13:30:21 -07001660 // crypto_complete is full disk encrypted status
Eric Biggersa701c452018-10-23 13:06:55 -07001661 if (fscrypt_is_native()) {
Paul Crowley14c8c072018-09-18 13:30:21 -07001662 return CRYPTO_COMPLETE_NOT_ENCRYPTED;
1663 }
Paul Lawrence74f29f12014-08-28 15:54:10 -07001664
Paul Crowley14c8c072018-09-18 13:30:21 -07001665 if (get_crypt_ftr_and_key(&crypt_ftr)) {
1666 fs_mgr_get_crypt_info(fstab_default, key_loc, 0, sizeof(key_loc));
Paul Lawrence74f29f12014-08-28 15:54:10 -07001667
Paul Crowley14c8c072018-09-18 13:30:21 -07001668 /*
1669 * Only report this error if key_loc is a file and it exists.
1670 * If the device was never encrypted, and /data is not mountable for
1671 * some reason, returning 1 should prevent the UI from presenting the
1672 * a "enter password" screen, or worse, a "press button to wipe the
1673 * device" screen.
1674 */
1675 if ((key_loc[0] == '/') && (access("key_loc", F_OK) == -1)) {
1676 SLOGE("master key file does not exist, aborting");
1677 return CRYPTO_COMPLETE_NOT_ENCRYPTED;
1678 } else {
1679 SLOGE("Error getting crypt footer and key\n");
1680 return CRYPTO_COMPLETE_BAD_METADATA;
1681 }
1682 }
Ken Sumrall7f7dbaa2011-02-01 15:46:41 -08001683
Paul Crowley14c8c072018-09-18 13:30:21 -07001684 // Test for possible error flags
1685 if (crypt_ftr.flags & CRYPT_ENCRYPTION_IN_PROGRESS) {
1686 SLOGE("Encryption process is partway completed\n");
1687 return CRYPTO_COMPLETE_PARTIAL;
1688 }
1689
1690 if (crypt_ftr.flags & CRYPT_INCONSISTENT_STATE) {
1691 SLOGE("Encryption process was interrupted but cannot continue\n");
1692 return CRYPTO_COMPLETE_INCONSISTENT;
1693 }
1694
1695 if (crypt_ftr.flags & CRYPT_DATA_CORRUPT) {
1696 SLOGE("Encryption is successful but data is corrupt\n");
1697 return CRYPTO_COMPLETE_CORRUPT;
1698 }
1699
1700 /* We passed the test! We shall diminish, and return to the west */
1701 return CRYPTO_COMPLETE_ENCRYPTED;
Ken Sumrall7f7dbaa2011-02-01 15:46:41 -08001702}
1703
Paul Crowley14c8c072018-09-18 13:30:21 -07001704static int test_mount_encrypted_fs(struct crypt_mnt_ftr* crypt_ftr, const char* passwd,
1705 const char* mount_point, const char* label) {
1706 unsigned char decrypted_master_key[MAX_KEY_LEN];
1707 char crypto_blkdev[MAXPATHLEN];
1708 char real_blkdev[MAXPATHLEN];
1709 char tmp_mount_point[64];
1710 unsigned int orig_failed_decrypt_count;
1711 int rc;
1712 int use_keymaster = 0;
1713 int upgrade = 0;
1714 unsigned char* intermediate_key = 0;
1715 size_t intermediate_key_size = 0;
1716 int N = 1 << crypt_ftr->N_factor;
1717 int r = 1 << crypt_ftr->r_factor;
1718 int p = 1 << crypt_ftr->p_factor;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001719
Paul Crowley14c8c072018-09-18 13:30:21 -07001720 SLOGD("crypt_ftr->fs_size = %lld\n", crypt_ftr->fs_size);
1721 orig_failed_decrypt_count = crypt_ftr->failed_decrypt_count;
Ken Sumrall0cc16632011-01-18 20:32:26 -08001722
Paul Crowley14c8c072018-09-18 13:30:21 -07001723 if (!(crypt_ftr->flags & CRYPT_MNT_KEY_UNENCRYPTED)) {
1724 if (decrypt_master_key(passwd, decrypted_master_key, crypt_ftr, &intermediate_key,
1725 &intermediate_key_size)) {
1726 SLOGE("Failed to decrypt master key\n");
1727 rc = -1;
1728 goto errout;
1729 }
JP Abgrall7bdfa522013-11-15 13:42:56 -08001730 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001731
Paul Crowley14c8c072018-09-18 13:30:21 -07001732 fs_mgr_get_crypt_info(fstab_default, 0, real_blkdev, sizeof(real_blkdev));
Paul Lawrencef4faa572014-01-29 13:31:03 -08001733
Paul Crowley14c8c072018-09-18 13:30:21 -07001734 // Create crypto block device - all (non fatal) code paths
1735 // need it
1736 if (create_crypto_blk_dev(crypt_ftr, decrypted_master_key, real_blkdev, crypto_blkdev, label,
1737 0)) {
1738 SLOGE("Error creating decrypted block device\n");
1739 rc = -1;
1740 goto errout;
1741 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001742
Paul Crowley14c8c072018-09-18 13:30:21 -07001743 /* Work out if the problem is the password or the data */
1744 unsigned char scrypted_intermediate_key[sizeof(crypt_ftr->scrypted_intermediate_key)];
Paul Lawrenced0c7b172014-08-08 14:28:10 -07001745
Paul Crowley14c8c072018-09-18 13:30:21 -07001746 rc = crypto_scrypt(intermediate_key, intermediate_key_size, crypt_ftr->salt,
1747 sizeof(crypt_ftr->salt), N, r, p, scrypted_intermediate_key,
1748 sizeof(scrypted_intermediate_key));
Paul Lawrenced0c7b172014-08-08 14:28:10 -07001749
Paul Crowley14c8c072018-09-18 13:30:21 -07001750 // Does the key match the crypto footer?
1751 if (rc == 0 && memcmp(scrypted_intermediate_key, crypt_ftr->scrypted_intermediate_key,
1752 sizeof(scrypted_intermediate_key)) == 0) {
1753 SLOGI("Password matches");
1754 rc = 0;
Paul Lawrence74f29f12014-08-28 15:54:10 -07001755 } else {
Paul Crowley14c8c072018-09-18 13:30:21 -07001756 /* Try mounting the file system anyway, just in case the problem's with
1757 * the footer, not the key. */
1758 snprintf(tmp_mount_point, sizeof(tmp_mount_point), "%s/tmp_mnt", mount_point);
1759 mkdir(tmp_mount_point, 0755);
1760 if (fs_mgr_do_mount(fstab_default, DATA_MNT_POINT, crypto_blkdev, tmp_mount_point)) {
1761 SLOGE("Error temp mounting decrypted block device\n");
1762 delete_crypto_blk_dev(label);
Paul Lawrence74f29f12014-08-28 15:54:10 -07001763
Paul Crowley14c8c072018-09-18 13:30:21 -07001764 rc = ++crypt_ftr->failed_decrypt_count;
1765 put_crypt_ftr_and_key(crypt_ftr);
1766 } else {
1767 /* Success! */
1768 SLOGI("Password did not match but decrypted drive mounted - continue");
1769 umount(tmp_mount_point);
1770 rc = 0;
Paul Lawrenceb2f682b2014-09-08 11:28:19 -07001771 }
JP Abgrall7bdfa522013-11-15 13:42:56 -08001772 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001773
Paul Crowley14c8c072018-09-18 13:30:21 -07001774 if (rc == 0) {
1775 crypt_ftr->failed_decrypt_count = 0;
1776 if (orig_failed_decrypt_count != 0) {
1777 put_crypt_ftr_and_key(crypt_ftr);
1778 }
1779
1780 /* Save the name of the crypto block device
1781 * so we can mount it when restarting the framework. */
1782 property_set("ro.crypto.fs_crypto_blkdev", crypto_blkdev);
1783
1784 /* Also save a the master key so we can reencrypted the key
1785 * the key when we want to change the password on it. */
1786 memcpy(saved_master_key, decrypted_master_key, crypt_ftr->keysize);
1787 saved_mount_point = strdup(mount_point);
1788 master_key_saved = 1;
1789 SLOGD("%s(): Master key saved\n", __FUNCTION__);
1790 rc = 0;
1791
1792 // Upgrade if we're not using the latest KDF.
1793 use_keymaster = keymaster_check_compatibility();
1794 if (crypt_ftr->kdf_type == KDF_SCRYPT_KEYMASTER) {
1795 // Don't allow downgrade
1796 } else if (use_keymaster == 1 && crypt_ftr->kdf_type != KDF_SCRYPT_KEYMASTER) {
1797 crypt_ftr->kdf_type = KDF_SCRYPT_KEYMASTER;
1798 upgrade = 1;
1799 } else if (use_keymaster == 0 && crypt_ftr->kdf_type != KDF_SCRYPT) {
1800 crypt_ftr->kdf_type = KDF_SCRYPT;
1801 upgrade = 1;
1802 }
1803
1804 if (upgrade) {
1805 rc = encrypt_master_key(passwd, crypt_ftr->salt, saved_master_key,
1806 crypt_ftr->master_key, crypt_ftr);
1807 if (!rc) {
1808 rc = put_crypt_ftr_and_key(crypt_ftr);
1809 }
1810 SLOGD("Key Derivation Function upgrade: rc=%d\n", rc);
1811
1812 // Do not fail even if upgrade failed - machine is bootable
1813 // Note that if this code is ever hit, there is a *serious* problem
1814 // since KDFs should never fail. You *must* fix the kdf before
1815 // proceeding!
1816 if (rc) {
1817 SLOGW(
1818 "Upgrade failed with error %d,"
1819 " but continuing with previous state",
1820 rc);
1821 rc = 0;
1822 }
1823 }
1824 }
1825
1826errout:
1827 if (intermediate_key) {
1828 memset(intermediate_key, 0, intermediate_key_size);
1829 free(intermediate_key);
1830 }
1831 return rc;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001832}
1833
Ken Sumrall29d8da82011-05-18 17:20:07 -07001834/*
Jeff Sharkey9c484982015-03-31 10:35:33 -07001835 * Called by vold when it's asked to mount an encrypted external
1836 * storage volume. The incoming partition has no crypto header/footer,
Greg Kaiser57f9af62018-02-16 13:13:58 -08001837 * as any metadata is been stored in a separate, small partition. We
1838 * assume it must be using our same crypt type and keysize.
Jeff Sharkey9c484982015-03-31 10:35:33 -07001839 *
1840 * out_crypto_blkdev must be MAXPATHLEN.
Ken Sumrall29d8da82011-05-18 17:20:07 -07001841 */
Paul Crowley14c8c072018-09-18 13:30:21 -07001842int cryptfs_setup_ext_volume(const char* label, const char* real_blkdev, const unsigned char* key,
1843 char* out_crypto_blkdev) {
Oleksiy Avramchenko625dc782018-05-23 10:50:46 +02001844 uint64_t nr_sec = 0;
1845 if (android::vold::GetBlockDev512Sectors(real_blkdev, &nr_sec) != android::OK) {
Jeff Sharkey9c484982015-03-31 10:35:33 -07001846 SLOGE("Failed to get size of %s: %s", real_blkdev, strerror(errno));
Ken Sumrall29d8da82011-05-18 17:20:07 -07001847 return -1;
1848 }
1849
Jeff Sharkey9c484982015-03-31 10:35:33 -07001850 struct crypt_mnt_ftr ext_crypt_ftr;
1851 memset(&ext_crypt_ftr, 0, sizeof(ext_crypt_ftr));
1852 ext_crypt_ftr.fs_size = nr_sec;
Greg Kaiser57f9af62018-02-16 13:13:58 -08001853 ext_crypt_ftr.keysize = cryptfs_get_keysize();
Paul Crowley14c8c072018-09-18 13:30:21 -07001854 strlcpy((char*)ext_crypt_ftr.crypto_type_name, cryptfs_get_crypto_name(),
Jeff Sharkey32ebb732017-03-27 16:18:50 -06001855 MAX_CRYPTO_TYPE_NAME_LEN);
Paul Crowley385cb8c2018-03-29 13:27:23 -07001856 uint32_t flags = 0;
Eric Biggersa701c452018-10-23 13:06:55 -07001857 if (fscrypt_is_native() &&
Paul Crowley385cb8c2018-03-29 13:27:23 -07001858 android::base::GetBoolProperty("ro.crypto.allow_encrypt_override", false))
1859 flags |= CREATE_CRYPTO_BLK_DEV_FLAGS_ALLOW_ENCRYPT_OVERRIDE;
Ken Sumrall29d8da82011-05-18 17:20:07 -07001860
Paul Crowley385cb8c2018-03-29 13:27:23 -07001861 return create_crypto_blk_dev(&ext_crypt_ftr, key, real_blkdev, out_crypto_blkdev, label, flags);
Jeff Sharkey9c484982015-03-31 10:35:33 -07001862}
Ken Sumrall29d8da82011-05-18 17:20:07 -07001863
Jeff Sharkey9c484982015-03-31 10:35:33 -07001864/*
1865 * Called by vold when it's asked to unmount an encrypted external
1866 * storage volume.
1867 */
1868int cryptfs_revert_ext_volume(const char* label) {
Paul Crowley14c8c072018-09-18 13:30:21 -07001869 return delete_crypto_blk_dev((char*)label);
Ken Sumrall29d8da82011-05-18 17:20:07 -07001870}
1871
Paul Crowley14c8c072018-09-18 13:30:21 -07001872int cryptfs_crypto_complete(void) {
1873 return do_crypto_complete("/data");
Ken Sumrall7f7dbaa2011-02-01 15:46:41 -08001874}
1875
Paul Crowley14c8c072018-09-18 13:30:21 -07001876int check_unmounted_and_get_ftr(struct crypt_mnt_ftr* crypt_ftr) {
Paul Lawrencef4faa572014-01-29 13:31:03 -08001877 char encrypted_state[PROPERTY_VALUE_MAX];
1878 property_get("ro.crypto.state", encrypted_state, "");
Paul Crowley14c8c072018-09-18 13:30:21 -07001879 if (master_key_saved || strcmp(encrypted_state, "encrypted")) {
1880 SLOGE(
1881 "encrypted fs already validated or not running with encryption,"
1882 " aborting");
Paul Lawrencef4faa572014-01-29 13:31:03 -08001883 return -1;
1884 }
1885
1886 if (get_crypt_ftr_and_key(crypt_ftr)) {
1887 SLOGE("Error getting crypt footer and key");
1888 return -1;
1889 }
1890
1891 return 0;
1892}
1893
Paul Crowley14c8c072018-09-18 13:30:21 -07001894int cryptfs_check_passwd(const char* passwd) {
Paul Lawrence05335c32015-03-05 09:46:23 -08001895 SLOGI("cryptfs_check_passwd");
Eric Biggersa701c452018-10-23 13:06:55 -07001896 if (fscrypt_is_native()) {
Paul Lawrence7b6b5652016-02-02 11:14:59 -08001897 SLOGE("cryptfs_check_passwd not valid for file encryption");
1898 return -1;
Paul Lawrence05335c32015-03-05 09:46:23 -08001899 }
1900
Paul Lawrencef4faa572014-01-29 13:31:03 -08001901 struct crypt_mnt_ftr crypt_ftr;
1902 int rc;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001903
Paul Lawrencef4faa572014-01-29 13:31:03 -08001904 rc = check_unmounted_and_get_ftr(&crypt_ftr);
Paul Lawrence3d99eba2015-11-20 07:07:19 -08001905 if (rc) {
1906 SLOGE("Could not get footer");
Paul Lawrencef4faa572014-01-29 13:31:03 -08001907 return rc;
Paul Lawrence3d99eba2015-11-20 07:07:19 -08001908 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001909
Paul Crowley14c8c072018-09-18 13:30:21 -07001910 rc = test_mount_encrypted_fs(&crypt_ftr, passwd, DATA_MNT_POINT, CRYPTO_BLOCK_DEVICE);
Paul Lawrence3d99eba2015-11-20 07:07:19 -08001911 if (rc) {
1912 SLOGE("Password did not match");
1913 return rc;
1914 }
Paul Lawrence684dbdf2014-02-07 12:07:22 -08001915
Paul Lawrence3d99eba2015-11-20 07:07:19 -08001916 if (crypt_ftr.flags & CRYPT_FORCE_COMPLETE) {
1917 // Here we have a default actual password but a real password
1918 // we must test against the scrypted value
1919 // First, we must delete the crypto block device that
1920 // test_mount_encrypted_fs leaves behind as a side effect
1921 delete_crypto_blk_dev(CRYPTO_BLOCK_DEVICE);
Paul Crowley14c8c072018-09-18 13:30:21 -07001922 rc = test_mount_encrypted_fs(&crypt_ftr, DEFAULT_PASSWORD, DATA_MNT_POINT,
1923 CRYPTO_BLOCK_DEVICE);
Paul Lawrence3d99eba2015-11-20 07:07:19 -08001924 if (rc) {
1925 SLOGE("Default password did not match on reboot encryption");
1926 return rc;
1927 }
1928
1929 crypt_ftr.flags &= ~CRYPT_FORCE_COMPLETE;
1930 put_crypt_ftr_and_key(&crypt_ftr);
1931 rc = cryptfs_changepw(crypt_ftr.crypt_type, passwd);
1932 if (rc) {
1933 SLOGE("Could not change password on reboot encryption");
1934 return rc;
1935 }
1936 }
1937
1938 if (crypt_ftr.crypt_type != CRYPT_TYPE_DEFAULT) {
Paul Lawrence399317e2014-03-10 13:20:50 -07001939 cryptfs_clear_password();
1940 password = strdup(passwd);
1941 struct timespec now;
1942 clock_gettime(CLOCK_BOOTTIME, &now);
1943 password_expiry_time = now.tv_sec + password_max_age_seconds;
Paul Lawrence684dbdf2014-02-07 12:07:22 -08001944 }
1945
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001946 return rc;
1947}
1948
Paul Crowley14c8c072018-09-18 13:30:21 -07001949int cryptfs_verify_passwd(const char* passwd) {
Ken Sumrall3ad90722011-10-04 20:38:29 -07001950 struct crypt_mnt_ftr crypt_ftr;
Greg Kaiser59ad0182018-02-16 13:01:36 -08001951 unsigned char decrypted_master_key[MAX_KEY_LEN];
Ken Sumrall3ad90722011-10-04 20:38:29 -07001952 char encrypted_state[PROPERTY_VALUE_MAX];
1953 int rc;
1954
1955 property_get("ro.crypto.state", encrypted_state, "");
Paul Crowley14c8c072018-09-18 13:30:21 -07001956 if (strcmp(encrypted_state, "encrypted")) {
Ken Sumrall3ad90722011-10-04 20:38:29 -07001957 SLOGE("device not encrypted, aborting");
1958 return -2;
1959 }
1960
1961 if (!master_key_saved) {
1962 SLOGE("encrypted fs not yet mounted, aborting");
1963 return -1;
1964 }
1965
1966 if (!saved_mount_point) {
1967 SLOGE("encrypted fs failed to save mount point, aborting");
1968 return -1;
1969 }
1970
Ken Sumrall160b4d62013-04-22 12:15:39 -07001971 if (get_crypt_ftr_and_key(&crypt_ftr)) {
Ken Sumrall3ad90722011-10-04 20:38:29 -07001972 SLOGE("Error getting crypt footer and key\n");
1973 return -1;
1974 }
1975
1976 if (crypt_ftr.flags & CRYPT_MNT_KEY_UNENCRYPTED) {
1977 /* If the device has no password, then just say the password is valid */
1978 rc = 0;
1979 } else {
Paul Lawrenced0c7b172014-08-08 14:28:10 -07001980 decrypt_master_key(passwd, decrypted_master_key, &crypt_ftr, 0, 0);
Ken Sumrall3ad90722011-10-04 20:38:29 -07001981 if (!memcmp(decrypted_master_key, saved_master_key, crypt_ftr.keysize)) {
1982 /* They match, the password is correct */
1983 rc = 0;
1984 } else {
1985 /* If incorrect, sleep for a bit to prevent dictionary attacks */
1986 sleep(1);
1987 rc = 1;
1988 }
1989 }
1990
1991 return rc;
1992}
1993
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001994/* Initialize a crypt_mnt_ftr structure. The keysize is
Greg Kaiser57f9af62018-02-16 13:13:58 -08001995 * defaulted to cryptfs_get_keysize() bytes, and the filesystem size to 0.
Ken Sumrall8f869aa2010-12-03 03:47:09 -08001996 * Presumably, at a minimum, the caller will update the
1997 * filesystem size and crypto_type_name after calling this function.
1998 */
Paul Crowley14c8c072018-09-18 13:30:21 -07001999static int cryptfs_init_crypt_mnt_ftr(struct crypt_mnt_ftr* ftr) {
Ken Sumrall160b4d62013-04-22 12:15:39 -07002000 off64_t off;
2001
2002 memset(ftr, 0, sizeof(struct crypt_mnt_ftr));
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002003 ftr->magic = CRYPT_MNT_MAGIC;
Kenny Rootc96a5f82013-06-14 12:08:28 -07002004 ftr->major_version = CURRENT_MAJOR_VERSION;
2005 ftr->minor_version = CURRENT_MINOR_VERSION;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002006 ftr->ftr_size = sizeof(struct crypt_mnt_ftr);
Greg Kaiser57f9af62018-02-16 13:13:58 -08002007 ftr->keysize = cryptfs_get_keysize();
Ken Sumrall160b4d62013-04-22 12:15:39 -07002008
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07002009 switch (keymaster_check_compatibility()) {
Paul Crowley14c8c072018-09-18 13:30:21 -07002010 case 1:
2011 ftr->kdf_type = KDF_SCRYPT_KEYMASTER;
2012 break;
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07002013
Paul Crowley14c8c072018-09-18 13:30:21 -07002014 case 0:
2015 ftr->kdf_type = KDF_SCRYPT;
2016 break;
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07002017
Paul Crowley14c8c072018-09-18 13:30:21 -07002018 default:
2019 SLOGE("keymaster_check_compatibility failed");
2020 return -1;
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07002021 }
2022
Kenny Rootc4c70f12013-06-14 12:11:38 -07002023 get_device_scrypt_params(ftr);
2024
Ken Sumrall160b4d62013-04-22 12:15:39 -07002025 ftr->persist_data_size = CRYPT_PERSIST_DATA_SIZE;
2026 if (get_crypt_ftr_info(NULL, &off) == 0) {
2027 ftr->persist_data_offset[0] = off + CRYPT_FOOTER_TO_PERSIST_OFFSET;
Paul Crowley14c8c072018-09-18 13:30:21 -07002028 ftr->persist_data_offset[1] = off + CRYPT_FOOTER_TO_PERSIST_OFFSET + ftr->persist_data_size;
Ken Sumrall160b4d62013-04-22 12:15:39 -07002029 }
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07002030
2031 return 0;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002032}
2033
Ken Sumrall8ddbe402011-01-17 15:26:29 -08002034#define FRAMEWORK_BOOT_WAIT 60
2035
Paul Crowley14c8c072018-09-18 13:30:21 -07002036static int cryptfs_SHA256_fileblock(const char* filename, __le8* buf) {
2037 int fd = open(filename, O_RDONLY | O_CLOEXEC);
Paul Lawrence87999172014-02-20 12:21:31 -08002038 if (fd == -1) {
2039 SLOGE("Error opening file %s", filename);
2040 return -1;
2041 }
2042
2043 char block[CRYPT_INPLACE_BUFSIZE];
2044 memset(block, 0, sizeof(block));
2045 if (unix_read(fd, block, sizeof(block)) < 0) {
2046 SLOGE("Error reading file %s", filename);
2047 close(fd);
2048 return -1;
2049 }
2050
2051 close(fd);
2052
2053 SHA256_CTX c;
2054 SHA256_Init(&c);
2055 SHA256_Update(&c, block, sizeof(block));
2056 SHA256_Final(buf, &c);
2057
2058 return 0;
2059}
2060
Paul Lawrence7ee87cf2017-12-22 10:12:06 -08002061static int cryptfs_enable_all_volumes(struct crypt_mnt_ftr* crypt_ftr, char* crypto_blkdev,
2062 char* real_blkdev, int previously_encrypted_upto) {
Paul Crowley14c8c072018-09-18 13:30:21 -07002063 off64_t cur_encryption_done = 0, tot_encryption_size = 0;
Tim Murray8439dc92014-12-15 11:56:11 -08002064 int rc = -1;
Paul Lawrence87999172014-02-20 12:21:31 -08002065
Paul Lawrence87999172014-02-20 12:21:31 -08002066 /* The size of the userdata partition, and add in the vold volumes below */
2067 tot_encryption_size = crypt_ftr->fs_size;
2068
Paul Lawrence7ee87cf2017-12-22 10:12:06 -08002069 rc = cryptfs_enable_inplace(crypto_blkdev, real_blkdev, crypt_ftr->fs_size, &cur_encryption_done,
Paul Crowley0fd26262018-01-30 09:48:19 -08002070 tot_encryption_size, previously_encrypted_upto, true);
Paul Lawrence87999172014-02-20 12:21:31 -08002071
Paul Lawrence7ee87cf2017-12-22 10:12:06 -08002072 if (rc == ENABLE_INPLACE_ERR_DEV) {
2073 /* Hack for b/17898962 */
2074 SLOGE("cryptfs_enable: crypto block dev failure. Must reboot...\n");
2075 cryptfs_reboot(RebootType::reboot);
2076 }
JP Abgrall7fc1de82014-10-10 18:43:41 -07002077
Paul Lawrence7ee87cf2017-12-22 10:12:06 -08002078 if (!rc) {
2079 crypt_ftr->encrypted_upto = cur_encryption_done;
2080 }
Paul Lawrence87999172014-02-20 12:21:31 -08002081
Paul Lawrence7ee87cf2017-12-22 10:12:06 -08002082 if (!rc && crypt_ftr->encrypted_upto == crypt_ftr->fs_size) {
2083 /* The inplace routine never actually sets the progress to 100% due
2084 * to the round down nature of integer division, so set it here */
2085 property_set("vold.encrypt_progress", "100");
Paul Lawrence87999172014-02-20 12:21:31 -08002086 }
2087
2088 return rc;
2089}
2090
Paul Crowleyb64933a2017-10-31 08:25:55 -07002091static int vold_unmountAll(void) {
2092 VolumeManager* vm = VolumeManager::Instance();
2093 return vm->unmountAll();
2094}
2095
Paul Lawrence7ee87cf2017-12-22 10:12:06 -08002096int cryptfs_enable_internal(int crypt_type, const char* passwd, int no_ui) {
Paul Lawrence87999172014-02-20 12:21:31 -08002097 char crypto_blkdev[MAXPATHLEN], real_blkdev[MAXPATHLEN];
Greg Kaiser59ad0182018-02-16 13:01:36 -08002098 unsigned char decrypted_master_key[MAX_KEY_LEN];
Paul Crowley14c8c072018-09-18 13:30:21 -07002099 int rc = -1, i;
Paul Lawrence87999172014-02-20 12:21:31 -08002100 struct crypt_mnt_ftr crypt_ftr;
Paul Crowley14c8c072018-09-18 13:30:21 -07002101 struct crypt_persist_data* pdata;
Ken Sumrall29d8da82011-05-18 17:20:07 -07002102 char encrypted_state[PROPERTY_VALUE_MAX];
Paul Crowley14c8c072018-09-18 13:30:21 -07002103 char lockid[32] = {0};
Ken Sumrall29d8da82011-05-18 17:20:07 -07002104 char key_loc[PROPERTY_VALUE_MAX];
Ken Sumrall29d8da82011-05-18 17:20:07 -07002105 int num_vols;
Paul Lawrence87999172014-02-20 12:21:31 -08002106 off64_t previously_encrypted_upto = 0;
Paul Lawrence3d99eba2015-11-20 07:07:19 -08002107 bool rebootEncryption = false;
Wei Wang4375f1b2017-02-24 17:43:01 -08002108 bool onlyCreateHeader = false;
Ken Sumrall29d8da82011-05-18 17:20:07 -07002109
Paul Lawrence7ee87cf2017-12-22 10:12:06 -08002110 if (get_crypt_ftr_and_key(&crypt_ftr) == 0) {
Paul Lawrence3d99eba2015-11-20 07:07:19 -08002111 if (crypt_ftr.flags & CRYPT_ENCRYPTION_IN_PROGRESS) {
2112 /* An encryption was underway and was interrupted */
2113 previously_encrypted_upto = crypt_ftr.encrypted_upto;
2114 crypt_ftr.encrypted_upto = 0;
2115 crypt_ftr.flags &= ~CRYPT_ENCRYPTION_IN_PROGRESS;
Paul Lawrence6bfed202014-07-28 12:47:22 -07002116
Paul Lawrence3d99eba2015-11-20 07:07:19 -08002117 /* At this point, we are in an inconsistent state. Until we successfully
2118 complete encryption, a reboot will leave us broken. So mark the
2119 encryption failed in case that happens.
2120 On successfully completing encryption, remove this flag */
2121 crypt_ftr.flags |= CRYPT_INCONSISTENT_STATE;
Paul Lawrence6bfed202014-07-28 12:47:22 -07002122
Paul Lawrence3d99eba2015-11-20 07:07:19 -08002123 put_crypt_ftr_and_key(&crypt_ftr);
2124 } else if (crypt_ftr.flags & CRYPT_FORCE_ENCRYPTION) {
2125 if (!check_ftr_sha(&crypt_ftr)) {
2126 memset(&crypt_ftr, 0, sizeof(crypt_ftr));
2127 put_crypt_ftr_and_key(&crypt_ftr);
2128 goto error_unencrypted;
2129 }
2130
2131 /* Doing a reboot-encryption*/
2132 crypt_ftr.flags &= ~CRYPT_FORCE_ENCRYPTION;
2133 crypt_ftr.flags |= CRYPT_FORCE_COMPLETE;
2134 rebootEncryption = true;
2135 }
Greg Kaiser59ad0182018-02-16 13:01:36 -08002136 } else {
2137 // We don't want to accidentally reference invalid data.
2138 memset(&crypt_ftr, 0, sizeof(crypt_ftr));
Paul Lawrence87999172014-02-20 12:21:31 -08002139 }
2140
2141 property_get("ro.crypto.state", encrypted_state, "");
2142 if (!strcmp(encrypted_state, "encrypted") && !previously_encrypted_upto) {
2143 SLOGE("Device is already running encrypted, aborting");
2144 goto error_unencrypted;
2145 }
2146
2147 // TODO refactor fs_mgr_get_crypt_info to get both in one call
Paul Crowleye2ee1522017-09-26 14:05:26 -07002148 fs_mgr_get_crypt_info(fstab_default, key_loc, 0, sizeof(key_loc));
2149 fs_mgr_get_crypt_info(fstab_default, 0, real_blkdev, sizeof(real_blkdev));
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002150
Ken Sumrall3ed82362011-01-28 23:31:16 -08002151 /* Get the size of the real block device */
Oleksiy Avramchenko625dc782018-05-23 10:50:46 +02002152 uint64_t nr_sec;
2153 if (android::vold::GetBlockDev512Sectors(real_blkdev, &nr_sec) != android::OK) {
Ken Sumrall3ed82362011-01-28 23:31:16 -08002154 SLOGE("Cannot get size of block device %s\n", real_blkdev);
2155 goto error_unencrypted;
2156 }
Ken Sumrall3ed82362011-01-28 23:31:16 -08002157
2158 /* If doing inplace encryption, make sure the orig fs doesn't include the crypto footer */
Paul Lawrence7ee87cf2017-12-22 10:12:06 -08002159 if (!strcmp(key_loc, KEY_IN_FOOTER)) {
Oleksiy Avramchenko625dc782018-05-23 10:50:46 +02002160 uint64_t fs_size_sec, max_fs_size_sec;
Jim Millera70abc62014-08-15 02:00:45 +00002161 fs_size_sec = get_fs_size(real_blkdev);
Paul Crowley14c8c072018-09-18 13:30:21 -07002162 if (fs_size_sec == 0) fs_size_sec = get_f2fs_filesystem_size_sec(real_blkdev);
Daniel Rosenberge82df162014-08-15 22:19:23 +00002163
Paul Lawrence87999172014-02-20 12:21:31 -08002164 max_fs_size_sec = nr_sec - (CRYPT_FOOTER_OFFSET / CRYPT_SECTOR_SIZE);
Ken Sumrall3ed82362011-01-28 23:31:16 -08002165
2166 if (fs_size_sec > max_fs_size_sec) {
2167 SLOGE("Orig filesystem overlaps crypto footer region. Cannot encrypt in place.");
2168 goto error_unencrypted;
2169 }
2170 }
2171
Ken Sumrall5d4c68e2011-01-30 19:06:03 -08002172 /* Get a wakelock as this may take a while, and we don't want the
2173 * device to sleep on us. We'll grab a partial wakelock, and if the UI
2174 * wants to keep the screen on, it can grab a full wakelock.
2175 */
Paul Crowley14c8c072018-09-18 13:30:21 -07002176 snprintf(lockid, sizeof(lockid), "enablecrypto%d", (int)getpid());
Ken Sumrall5d4c68e2011-01-30 19:06:03 -08002177 acquire_wake_lock(PARTIAL_WAKE_LOCK, lockid);
2178
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002179 /* The init files are setup to stop the class main and late start when
Ken Sumrall8ddbe402011-01-17 15:26:29 -08002180 * vold sets trigger_shutdown_framework.
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002181 */
2182 property_set("vold.decrypt", "trigger_shutdown_framework");
2183 SLOGD("Just asked init to shut down class main\n");
2184
Jeff Sharkey9c484982015-03-31 10:35:33 -07002185 /* Ask vold to unmount all devices that it manages */
2186 if (vold_unmountAll()) {
2187 SLOGE("Failed to unmount all vold managed devices");
Ken Sumrall2eaf7132011-01-14 12:45:48 -08002188 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002189
Paul Lawrence3d99eba2015-11-20 07:07:19 -08002190 /* no_ui means we are being called from init, not settings.
2191 Now we always reboot from settings, so !no_ui means reboot
2192 */
Paul Lawrence3d99eba2015-11-20 07:07:19 -08002193 if (!no_ui) {
2194 /* Try fallback, which is to reboot and try there */
2195 onlyCreateHeader = true;
2196 FILE* breadcrumb = fopen(BREADCRUMB_FILE, "we");
2197 if (breadcrumb == 0) {
2198 SLOGE("Failed to create breadcrumb file");
2199 goto error_shutting_down;
2200 }
2201 fclose(breadcrumb);
Ken Sumrall8ddbe402011-01-17 15:26:29 -08002202 }
2203
2204 /* Do extra work for a better UX when doing the long inplace encryption */
Paul Lawrence7ee87cf2017-12-22 10:12:06 -08002205 if (!onlyCreateHeader) {
Ken Sumrall8ddbe402011-01-17 15:26:29 -08002206 /* Now that /data is unmounted, we need to mount a tmpfs
2207 * /data, set a property saying we're doing inplace encryption,
2208 * and restart the framework.
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002209 */
Ken Sumralle5032c42012-04-01 23:58:44 -07002210 if (fs_mgr_do_tmpfs_mount(DATA_MNT_POINT)) {
Ken Sumrall3ed82362011-01-28 23:31:16 -08002211 goto error_shutting_down;
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002212 }
Ken Sumrall8ddbe402011-01-17 15:26:29 -08002213 /* Tells the framework that inplace encryption is starting */
Ken Sumrall7df84122011-01-18 14:04:08 -08002214 property_set("vold.encrypt_progress", "0");
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002215
Ken Sumrall8ddbe402011-01-17 15:26:29 -08002216 /* restart the framework. */
2217 /* Create necessary paths on /data */
Wei Wang42e38102017-06-07 10:46:12 -07002218 prep_data_fs();
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002219
Ken Sumrall92736ef2012-10-17 20:57:14 -07002220 /* Ugh, shutting down the framework is not synchronous, so until it
2221 * can be fixed, this horrible hack will wait a moment for it all to
2222 * shut down before proceeding. Without it, some devices cannot
2223 * restart the graphics services.
2224 */
2225 sleep(2);
Ken Sumrall8ddbe402011-01-17 15:26:29 -08002226 }
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002227
Ken Sumrall8ddbe402011-01-17 15:26:29 -08002228 /* Start the actual work of making an encrypted filesystem */
Ken Sumrall8ddbe402011-01-17 15:26:29 -08002229 /* Initialize a crypt_mnt_ftr for the partition */
Paul Lawrence3d99eba2015-11-20 07:07:19 -08002230 if (previously_encrypted_upto == 0 && !rebootEncryption) {
Paul Lawrence69f4ebd2014-04-14 12:17:14 -07002231 if (cryptfs_init_crypt_mnt_ftr(&crypt_ftr)) {
2232 goto error_shutting_down;
2233 }
Ken Sumrall160b4d62013-04-22 12:15:39 -07002234
Paul Lawrence87999172014-02-20 12:21:31 -08002235 if (!strcmp(key_loc, KEY_IN_FOOTER)) {
Paul Crowley14c8c072018-09-18 13:30:21 -07002236 crypt_ftr.fs_size = nr_sec - (CRYPT_FOOTER_OFFSET / CRYPT_SECTOR_SIZE);
Paul Lawrence87999172014-02-20 12:21:31 -08002237 } else {
2238 crypt_ftr.fs_size = nr_sec;
2239 }
Paul Lawrence6bfed202014-07-28 12:47:22 -07002240 /* At this point, we are in an inconsistent state. Until we successfully
2241 complete encryption, a reboot will leave us broken. So mark the
2242 encryption failed in case that happens.
2243 On successfully completing encryption, remove this flag */
Paul Lawrence3d99eba2015-11-20 07:07:19 -08002244 if (onlyCreateHeader) {
2245 crypt_ftr.flags |= CRYPT_FORCE_ENCRYPTION;
2246 } else {
2247 crypt_ftr.flags |= CRYPT_INCONSISTENT_STATE;
2248 }
Paul Lawrence87999172014-02-20 12:21:31 -08002249 crypt_ftr.crypt_type = crypt_type;
Paul Crowley14c8c072018-09-18 13:30:21 -07002250 strlcpy((char*)crypt_ftr.crypto_type_name, cryptfs_get_crypto_name(),
2251 MAX_CRYPTO_TYPE_NAME_LEN);
Ken Sumrall8ddbe402011-01-17 15:26:29 -08002252
Paul Lawrence87999172014-02-20 12:21:31 -08002253 /* Make an encrypted master key */
Paul Lawrence3d99eba2015-11-20 07:07:19 -08002254 if (create_encrypted_random_key(onlyCreateHeader ? DEFAULT_PASSWORD : passwd,
2255 crypt_ftr.master_key, crypt_ftr.salt, &crypt_ftr)) {
Paul Lawrence87999172014-02-20 12:21:31 -08002256 SLOGE("Cannot create encrypted master key\n");
2257 goto error_shutting_down;
2258 }
Ken Sumrall8ddbe402011-01-17 15:26:29 -08002259
Paul Lawrence3d99eba2015-11-20 07:07:19 -08002260 /* Replace scrypted intermediate key if we are preparing for a reboot */
2261 if (onlyCreateHeader) {
Greg Kaiser59ad0182018-02-16 13:01:36 -08002262 unsigned char fake_master_key[MAX_KEY_LEN];
2263 unsigned char encrypted_fake_master_key[MAX_KEY_LEN];
Paul Lawrence3d99eba2015-11-20 07:07:19 -08002264 memset(fake_master_key, 0, sizeof(fake_master_key));
Paul Crowley14c8c072018-09-18 13:30:21 -07002265 encrypt_master_key(passwd, crypt_ftr.salt, fake_master_key, encrypted_fake_master_key,
2266 &crypt_ftr);
Paul Lawrence3d99eba2015-11-20 07:07:19 -08002267 }
2268
Paul Lawrence87999172014-02-20 12:21:31 -08002269 /* Write the key to the end of the partition */
2270 put_crypt_ftr_and_key(&crypt_ftr);
Ken Sumrall8ddbe402011-01-17 15:26:29 -08002271
Paul Lawrence87999172014-02-20 12:21:31 -08002272 /* If any persistent data has been remembered, save it.
2273 * If none, create a valid empty table and save that.
2274 */
2275 if (!persist_data) {
Paul Crowley14c8c072018-09-18 13:30:21 -07002276 pdata = (crypt_persist_data*)malloc(CRYPT_PERSIST_DATA_SIZE);
2277 if (pdata) {
2278 init_empty_persist_data(pdata, CRYPT_PERSIST_DATA_SIZE);
2279 persist_data = pdata;
2280 }
Paul Lawrence87999172014-02-20 12:21:31 -08002281 }
2282 if (persist_data) {
2283 save_persistent_data();
2284 }
Ken Sumrall160b4d62013-04-22 12:15:39 -07002285 }
2286
Paul Lawrence3d99eba2015-11-20 07:07:19 -08002287 if (onlyCreateHeader) {
2288 sleep(2);
Josh Gaofec44372017-08-28 13:22:55 -07002289 cryptfs_reboot(RebootType::reboot);
Paul Lawrence3d99eba2015-11-20 07:07:19 -08002290 }
2291
Paul Lawrence7ee87cf2017-12-22 10:12:06 -08002292 if (!no_ui || rebootEncryption) {
Ajay Dudani87701e22014-09-17 21:02:52 -07002293 /* startup service classes main and late_start */
2294 property_set("vold.decrypt", "trigger_restart_min_framework");
2295 SLOGD("Just triggered restart_min_framework\n");
2296
2297 /* OK, the framework is restarted and will soon be showing a
2298 * progress bar. Time to setup an encrypted mapping, and
2299 * either write a new filesystem, or encrypt in place updating
2300 * the progress bar as we work.
2301 */
2302 }
2303
Paul Lawrenced0c7b172014-08-08 14:28:10 -07002304 decrypt_master_key(passwd, decrypted_master_key, &crypt_ftr, 0, 0);
Ken Sumrall29d8da82011-05-18 17:20:07 -07002305 create_crypto_blk_dev(&crypt_ftr, decrypted_master_key, real_blkdev, crypto_blkdev,
Paul Crowley5afbc622017-11-27 09:42:17 -08002306 CRYPTO_BLOCK_DEVICE, 0);
Ken Sumrall29d8da82011-05-18 17:20:07 -07002307
Paul Lawrence87999172014-02-20 12:21:31 -08002308 /* If we are continuing, check checksums match */
2309 rc = 0;
2310 if (previously_encrypted_upto) {
2311 __le8 hash_first_block[SHA256_DIGEST_LENGTH];
2312 rc = cryptfs_SHA256_fileblock(crypto_blkdev, hash_first_block);
Ken Sumrall128626f2011-06-28 18:45:14 -07002313
Paul Crowley14c8c072018-09-18 13:30:21 -07002314 if (!rc &&
2315 memcmp(hash_first_block, crypt_ftr.hash_first_block, sizeof(hash_first_block)) != 0) {
Paul Lawrence87999172014-02-20 12:21:31 -08002316 SLOGE("Checksums do not match - trigger wipe");
2317 rc = -1;
Ken Sumrall29d8da82011-05-18 17:20:07 -07002318 }
2319 }
Ken Sumrall8ddbe402011-01-17 15:26:29 -08002320
Paul Lawrence87999172014-02-20 12:21:31 -08002321 if (!rc) {
Paul Lawrence7ee87cf2017-12-22 10:12:06 -08002322 rc = cryptfs_enable_all_volumes(&crypt_ftr, crypto_blkdev, real_blkdev,
Paul Lawrence87999172014-02-20 12:21:31 -08002323 previously_encrypted_upto);
2324 }
2325
2326 /* Calculate checksum if we are not finished */
Paul Lawrence7ee87cf2017-12-22 10:12:06 -08002327 if (!rc && crypt_ftr.encrypted_upto != crypt_ftr.fs_size) {
Paul Crowley14c8c072018-09-18 13:30:21 -07002328 rc = cryptfs_SHA256_fileblock(crypto_blkdev, crypt_ftr.hash_first_block);
Paul Lawrence73d7a022014-06-09 14:10:09 -07002329 if (rc) {
Paul Lawrence87999172014-02-20 12:21:31 -08002330 SLOGE("Error calculating checksum for continuing encryption");
2331 rc = -1;
Ken Sumrall29d8da82011-05-18 17:20:07 -07002332 }
Ken Sumrall8ddbe402011-01-17 15:26:29 -08002333 }
2334
2335 /* Undo the dm-crypt mapping whether we succeed or not */
Paul Lawrence3d99eba2015-11-20 07:07:19 -08002336 delete_crypto_blk_dev(CRYPTO_BLOCK_DEVICE);
Ken Sumrall29d8da82011-05-18 17:20:07 -07002337
Paul Crowley14c8c072018-09-18 13:30:21 -07002338 if (!rc) {
Ken Sumrall8ddbe402011-01-17 15:26:29 -08002339 /* Success */
Paul Lawrence6bfed202014-07-28 12:47:22 -07002340 crypt_ftr.flags &= ~CRYPT_INCONSISTENT_STATE;
Ken Sumrall7f7dbaa2011-02-01 15:46:41 -08002341
Paul Lawrence7ee87cf2017-12-22 10:12:06 -08002342 if (crypt_ftr.encrypted_upto != crypt_ftr.fs_size) {
Paul Lawrence87999172014-02-20 12:21:31 -08002343 SLOGD("Encrypted up to sector %lld - will continue after reboot",
2344 crypt_ftr.encrypted_upto);
Paul Lawrence6bfed202014-07-28 12:47:22 -07002345 crypt_ftr.flags |= CRYPT_ENCRYPTION_IN_PROGRESS;
Paul Lawrence87999172014-02-20 12:21:31 -08002346 }
Paul Lawrence73d7a022014-06-09 14:10:09 -07002347
Paul Lawrence6bfed202014-07-28 12:47:22 -07002348 put_crypt_ftr_and_key(&crypt_ftr);
Ken Sumralld33d4172011-02-01 00:49:13 -08002349
Paul Lawrence7ee87cf2017-12-22 10:12:06 -08002350 if (crypt_ftr.encrypted_upto == crypt_ftr.fs_size) {
2351 char value[PROPERTY_VALUE_MAX];
2352 property_get("ro.crypto.state", value, "");
2353 if (!strcmp(value, "")) {
2354 /* default encryption - continue first boot sequence */
2355 property_set("ro.crypto.state", "encrypted");
2356 property_set("ro.crypto.type", "block");
2357 release_wake_lock(lockid);
2358 if (rebootEncryption && crypt_ftr.crypt_type != CRYPT_TYPE_DEFAULT) {
2359 // Bring up cryptkeeper that will check the password and set it
2360 property_set("vold.decrypt", "trigger_shutdown_framework");
2361 sleep(2);
2362 property_set("vold.encrypt_progress", "");
2363 cryptfs_trigger_restart_min_framework();
2364 } else {
2365 cryptfs_check_passwd(DEFAULT_PASSWORD);
2366 cryptfs_restart_internal(1);
2367 }
2368 return 0;
Paul Lawrence3d99eba2015-11-20 07:07:19 -08002369 } else {
Paul Lawrence7ee87cf2017-12-22 10:12:06 -08002370 sleep(2); /* Give the UI a chance to show 100% progress */
2371 cryptfs_reboot(RebootType::reboot);
Paul Lawrence3d99eba2015-11-20 07:07:19 -08002372 }
Paul Lawrence87999172014-02-20 12:21:31 -08002373 } else {
Paul Lawrenceb6672e12014-08-15 07:37:28 -07002374 sleep(2); /* Partially encrypted, ensure writes flushed to ssd */
Josh Gaofec44372017-08-28 13:22:55 -07002375 cryptfs_reboot(RebootType::shutdown);
Paul Lawrence87999172014-02-20 12:21:31 -08002376 }
Ken Sumrall3ed82362011-01-28 23:31:16 -08002377 } else {
Mike Lockwoodee6d8c42012-02-15 13:43:28 -08002378 char value[PROPERTY_VALUE_MAX];
2379
Ken Sumrall319369a2012-06-27 16:30:18 -07002380 property_get("ro.vold.wipe_on_crypt_fail", value, "0");
Mike Lockwoodee6d8c42012-02-15 13:43:28 -08002381 if (!strcmp(value, "1")) {
2382 /* wipe data if encryption failed */
2383 SLOGE("encryption failed - rebooting into recovery to wipe data\n");
Wei Wang4375f1b2017-02-24 17:43:01 -08002384 std::string err;
2385 const std::vector<std::string> options = {
Paul Crowley14c8c072018-09-18 13:30:21 -07002386 "--wipe_data\n--reason=cryptfs_enable_internal\n"};
Wei Wang4375f1b2017-02-24 17:43:01 -08002387 if (!write_bootloader_message(options, &err)) {
2388 SLOGE("could not write bootloader message: %s", err.c_str());
Mike Lockwoodee6d8c42012-02-15 13:43:28 -08002389 }
Josh Gaofec44372017-08-28 13:22:55 -07002390 cryptfs_reboot(RebootType::recovery);
Mike Lockwoodee6d8c42012-02-15 13:43:28 -08002391 } else {
2392 /* set property to trigger dialog */
2393 property_set("vold.encrypt_progress", "error_partially_encrypted");
2394 release_wake_lock(lockid);
2395 }
Ken Sumrall3ed82362011-01-28 23:31:16 -08002396 return -1;
Ken Sumrall8ddbe402011-01-17 15:26:29 -08002397 }
2398
Ken Sumrall3ed82362011-01-28 23:31:16 -08002399 /* hrm, the encrypt step claims success, but the reboot failed.
2400 * This should not happen.
2401 * Set the property and return. Hope the framework can deal with it.
2402 */
2403 property_set("vold.encrypt_progress", "error_reboot_failed");
Ken Sumrall5d4c68e2011-01-30 19:06:03 -08002404 release_wake_lock(lockid);
Ken Sumrall8ddbe402011-01-17 15:26:29 -08002405 return rc;
Ken Sumrall3ed82362011-01-28 23:31:16 -08002406
2407error_unencrypted:
2408 property_set("vold.encrypt_progress", "error_not_encrypted");
Ken Sumrall5d4c68e2011-01-30 19:06:03 -08002409 if (lockid[0]) {
2410 release_wake_lock(lockid);
2411 }
Ken Sumrall3ed82362011-01-28 23:31:16 -08002412 return -1;
2413
2414error_shutting_down:
2415 /* we failed, and have not encrypted anthing, so the users's data is still intact,
2416 * but the framework is stopped and not restarted to show the error, so it's up to
2417 * vold to restart the system.
2418 */
Paul Crowley14c8c072018-09-18 13:30:21 -07002419 SLOGE(
2420 "Error enabling encryption after framework is shutdown, no data changed, restarting "
2421 "system");
Josh Gaofec44372017-08-28 13:22:55 -07002422 cryptfs_reboot(RebootType::reboot);
Ken Sumrall3ed82362011-01-28 23:31:16 -08002423
2424 /* shouldn't get here */
2425 property_set("vold.encrypt_progress", "error_shutting_down");
Ken Sumrall5d4c68e2011-01-30 19:06:03 -08002426 if (lockid[0]) {
2427 release_wake_lock(lockid);
2428 }
Ken Sumrall3ed82362011-01-28 23:31:16 -08002429 return -1;
Ken Sumrall8ddbe402011-01-17 15:26:29 -08002430}
2431
Paul Lawrence7ee87cf2017-12-22 10:12:06 -08002432int cryptfs_enable(int type, const char* passwd, int no_ui) {
2433 return cryptfs_enable_internal(type, passwd, no_ui);
Paul Lawrence13486032014-02-03 13:28:11 -08002434}
2435
Paul Lawrence7ee87cf2017-12-22 10:12:06 -08002436int cryptfs_enable_default(int no_ui) {
2437 return cryptfs_enable_internal(CRYPT_TYPE_DEFAULT, DEFAULT_PASSWORD, no_ui);
Paul Lawrence13486032014-02-03 13:28:11 -08002438}
2439
Paul Crowley14c8c072018-09-18 13:30:21 -07002440int cryptfs_changepw(int crypt_type, const char* newpw) {
Eric Biggersa701c452018-10-23 13:06:55 -07002441 if (fscrypt_is_native()) {
Paul Lawrence7b6b5652016-02-02 11:14:59 -08002442 SLOGE("cryptfs_changepw not valid for file encryption");
2443 return -1;
Paul Lawrence05335c32015-03-05 09:46:23 -08002444 }
2445
Ken Sumrall8ddbe402011-01-17 15:26:29 -08002446 struct crypt_mnt_ftr crypt_ftr;
JP Abgrall933216c2015-02-11 13:44:32 -08002447 int rc;
Ken Sumrall8ddbe402011-01-17 15:26:29 -08002448
2449 /* This is only allowed after we've successfully decrypted the master key */
Paul Lawrencef4faa572014-01-29 13:31:03 -08002450 if (!master_key_saved) {
Ken Sumrall0cc16632011-01-18 20:32:26 -08002451 SLOGE("Key not saved, aborting");
Ken Sumrall8ddbe402011-01-17 15:26:29 -08002452 return -1;
2453 }
2454
Paul Lawrencef4faa572014-01-29 13:31:03 -08002455 if (crypt_type < 0 || crypt_type > CRYPT_TYPE_MAX_TYPE) {
2456 SLOGE("Invalid crypt_type %d", crypt_type);
2457 return -1;
2458 }
2459
Ken Sumrall8ddbe402011-01-17 15:26:29 -08002460 /* get key */
Ken Sumrall160b4d62013-04-22 12:15:39 -07002461 if (get_crypt_ftr_and_key(&crypt_ftr)) {
Paul Lawrencef4faa572014-01-29 13:31:03 -08002462 SLOGE("Error getting crypt footer and key");
2463 return -1;
Ken Sumrall8ddbe402011-01-17 15:26:29 -08002464 }
2465
Paul Lawrencef4faa572014-01-29 13:31:03 -08002466 crypt_ftr.crypt_type = crypt_type;
2467
Paul Crowley14c8c072018-09-18 13:30:21 -07002468 rc = encrypt_master_key(crypt_type == CRYPT_TYPE_DEFAULT ? DEFAULT_PASSWORD : newpw,
2469 crypt_ftr.salt, saved_master_key, crypt_ftr.master_key, &crypt_ftr);
JP Abgrall933216c2015-02-11 13:44:32 -08002470 if (rc) {
2471 SLOGE("Encrypt master key failed: %d", rc);
2472 return -1;
2473 }
Jason parks70a4b3f2011-01-28 10:10:47 -06002474 /* save the key */
Ken Sumrall160b4d62013-04-22 12:15:39 -07002475 put_crypt_ftr_and_key(&crypt_ftr);
Ken Sumrall8f869aa2010-12-03 03:47:09 -08002476
2477 return 0;
2478}
Ken Sumrall160b4d62013-04-22 12:15:39 -07002479
Rubin Xu85c01f92014-10-13 12:49:54 +01002480static unsigned int persist_get_max_entries(int encrypted) {
2481 struct crypt_mnt_ftr crypt_ftr;
2482 unsigned int dsize;
Rubin Xu85c01f92014-10-13 12:49:54 +01002483
2484 /* If encrypted, use the values from the crypt_ftr, otherwise
2485 * use the values for the current spec.
2486 */
2487 if (encrypted) {
2488 if (get_crypt_ftr_and_key(&crypt_ftr)) {
Rubin Xuf83cc612018-10-09 16:13:38 +01002489 /* Something is wrong, assume no space for entries */
2490 return 0;
Rubin Xu85c01f92014-10-13 12:49:54 +01002491 }
2492 dsize = crypt_ftr.persist_data_size;
2493 } else {
2494 dsize = CRYPT_PERSIST_DATA_SIZE;
2495 }
2496
Rubin Xuf83cc612018-10-09 16:13:38 +01002497 if (dsize > sizeof(struct crypt_persist_data)) {
2498 return (dsize - sizeof(struct crypt_persist_data)) / sizeof(struct crypt_persist_entry);
2499 } else {
2500 return 0;
2501 }
Rubin Xu85c01f92014-10-13 12:49:54 +01002502}
2503
Paul Crowley14c8c072018-09-18 13:30:21 -07002504static int persist_get_key(const char* fieldname, char* value) {
Ken Sumrall160b4d62013-04-22 12:15:39 -07002505 unsigned int i;
2506
2507 if (persist_data == NULL) {
2508 return -1;
2509 }
2510 for (i = 0; i < persist_data->persist_valid_entries; i++) {
2511 if (!strncmp(persist_data->persist_entry[i].key, fieldname, PROPERTY_KEY_MAX)) {
2512 /* We found it! */
2513 strlcpy(value, persist_data->persist_entry[i].val, PROPERTY_VALUE_MAX);
2514 return 0;
2515 }
2516 }
2517
2518 return -1;
2519}
2520
Paul Crowley14c8c072018-09-18 13:30:21 -07002521static int persist_set_key(const char* fieldname, const char* value, int encrypted) {
Ken Sumrall160b4d62013-04-22 12:15:39 -07002522 unsigned int i;
2523 unsigned int num;
Ken Sumrall160b4d62013-04-22 12:15:39 -07002524 unsigned int max_persistent_entries;
Ken Sumrall160b4d62013-04-22 12:15:39 -07002525
2526 if (persist_data == NULL) {
2527 return -1;
2528 }
2529
Rubin Xu85c01f92014-10-13 12:49:54 +01002530 max_persistent_entries = persist_get_max_entries(encrypted);
Ken Sumrall160b4d62013-04-22 12:15:39 -07002531
2532 num = persist_data->persist_valid_entries;
2533
2534 for (i = 0; i < num; i++) {
2535 if (!strncmp(persist_data->persist_entry[i].key, fieldname, PROPERTY_KEY_MAX)) {
2536 /* We found an existing entry, update it! */
2537 memset(persist_data->persist_entry[i].val, 0, PROPERTY_VALUE_MAX);
2538 strlcpy(persist_data->persist_entry[i].val, value, PROPERTY_VALUE_MAX);
2539 return 0;
2540 }
2541 }
2542
2543 /* We didn't find it, add it to the end, if there is room */
2544 if (persist_data->persist_valid_entries < max_persistent_entries) {
2545 memset(&persist_data->persist_entry[num], 0, sizeof(struct crypt_persist_entry));
2546 strlcpy(persist_data->persist_entry[num].key, fieldname, PROPERTY_KEY_MAX);
2547 strlcpy(persist_data->persist_entry[num].val, value, PROPERTY_VALUE_MAX);
2548 persist_data->persist_valid_entries++;
2549 return 0;
2550 }
2551
2552 return -1;
2553}
2554
Rubin Xu85c01f92014-10-13 12:49:54 +01002555/**
2556 * Test if key is part of the multi-entry (field, index) sequence. Return non-zero if key is in the
2557 * sequence and its index is greater than or equal to index. Return 0 otherwise.
2558 */
Paul Crowley14c8c072018-09-18 13:30:21 -07002559int match_multi_entry(const char* key, const char* field, unsigned index) {
Jeff Sharkey95440eb2017-09-18 18:19:28 -06002560 std::string key_ = key;
2561 std::string field_ = field;
Rubin Xu85c01f92014-10-13 12:49:54 +01002562
Jeff Sharkey95440eb2017-09-18 18:19:28 -06002563 std::string parsed_field;
2564 unsigned parsed_index;
2565
2566 std::string::size_type split = key_.find_last_of('_');
2567 if (split == std::string::npos) {
2568 parsed_field = key_;
2569 parsed_index = 0;
2570 } else {
2571 parsed_field = key_.substr(0, split);
2572 parsed_index = std::stoi(key_.substr(split + 1));
Rubin Xu85c01f92014-10-13 12:49:54 +01002573 }
Jeff Sharkey95440eb2017-09-18 18:19:28 -06002574
2575 return parsed_field == field_ && parsed_index >= index;
Rubin Xu85c01f92014-10-13 12:49:54 +01002576}
2577
2578/*
2579 * Delete entry/entries from persist_data. If the entries are part of a multi-segment field, all
2580 * remaining entries starting from index will be deleted.
2581 * returns PERSIST_DEL_KEY_OK if deletion succeeds,
2582 * PERSIST_DEL_KEY_ERROR_NO_FIELD if the field does not exist,
2583 * and PERSIST_DEL_KEY_ERROR_OTHER if error occurs.
2584 *
2585 */
Paul Crowley14c8c072018-09-18 13:30:21 -07002586static int persist_del_keys(const char* fieldname, unsigned index) {
Rubin Xu85c01f92014-10-13 12:49:54 +01002587 unsigned int i;
2588 unsigned int j;
2589 unsigned int num;
2590
2591 if (persist_data == NULL) {
2592 return PERSIST_DEL_KEY_ERROR_OTHER;
2593 }
2594
2595 num = persist_data->persist_valid_entries;
2596
Paul Crowley14c8c072018-09-18 13:30:21 -07002597 j = 0; // points to the end of non-deleted entries.
Rubin Xu85c01f92014-10-13 12:49:54 +01002598 // Filter out to-be-deleted entries in place.
2599 for (i = 0; i < num; i++) {
2600 if (!match_multi_entry(persist_data->persist_entry[i].key, fieldname, index)) {
2601 persist_data->persist_entry[j] = persist_data->persist_entry[i];
2602 j++;
2603 }
2604 }
2605
2606 if (j < num) {
2607 persist_data->persist_valid_entries = j;
2608 // Zeroise the remaining entries
2609 memset(&persist_data->persist_entry[j], 0, (num - j) * sizeof(struct crypt_persist_entry));
2610 return PERSIST_DEL_KEY_OK;
2611 } else {
2612 // Did not find an entry matching the given fieldname
2613 return PERSIST_DEL_KEY_ERROR_NO_FIELD;
2614 }
2615}
2616
Paul Crowley14c8c072018-09-18 13:30:21 -07002617static int persist_count_keys(const char* fieldname) {
Rubin Xu85c01f92014-10-13 12:49:54 +01002618 unsigned int i;
2619 unsigned int count;
2620
2621 if (persist_data == NULL) {
2622 return -1;
2623 }
2624
2625 count = 0;
2626 for (i = 0; i < persist_data->persist_valid_entries; i++) {
2627 if (match_multi_entry(persist_data->persist_entry[i].key, fieldname, 0)) {
2628 count++;
2629 }
2630 }
2631
2632 return count;
2633}
2634
Ken Sumrall160b4d62013-04-22 12:15:39 -07002635/* Return the value of the specified field. */
Paul Crowley14c8c072018-09-18 13:30:21 -07002636int cryptfs_getfield(const char* fieldname, char* value, int len) {
Eric Biggersa701c452018-10-23 13:06:55 -07002637 if (fscrypt_is_native()) {
Paul Lawrence5a06a642016-02-03 13:39:13 -08002638 SLOGE("Cannot get field when file encrypted");
2639 return -1;
Paul Lawrence368d7942015-04-15 14:12:00 -07002640 }
2641
Ken Sumrall160b4d62013-04-22 12:15:39 -07002642 char temp_value[PROPERTY_VALUE_MAX];
Rubin Xu85c01f92014-10-13 12:49:54 +01002643 /* CRYPTO_GETFIELD_OK is success,
2644 * CRYPTO_GETFIELD_ERROR_NO_FIELD is value not set,
2645 * CRYPTO_GETFIELD_ERROR_BUF_TOO_SMALL is buffer (as given by len) too small,
2646 * CRYPTO_GETFIELD_ERROR_OTHER is any other error
Ken Sumrall160b4d62013-04-22 12:15:39 -07002647 */
Rubin Xu85c01f92014-10-13 12:49:54 +01002648 int rc = CRYPTO_GETFIELD_ERROR_OTHER;
2649 int i;
2650 char temp_field[PROPERTY_KEY_MAX];
Ken Sumrall160b4d62013-04-22 12:15:39 -07002651
2652 if (persist_data == NULL) {
2653 load_persistent_data();
2654 if (persist_data == NULL) {
2655 SLOGE("Getfield error, cannot load persistent data");
2656 goto out;
2657 }
2658 }
2659
Rubin Xu85c01f92014-10-13 12:49:54 +01002660 // Read value from persistent entries. If the original value is split into multiple entries,
2661 // stitch them back together.
Ken Sumrall160b4d62013-04-22 12:15:39 -07002662 if (!persist_get_key(fieldname, temp_value)) {
Rubin Xu85c01f92014-10-13 12:49:54 +01002663 // We found it, copy it to the caller's buffer and keep going until all entries are read.
Paul Crowley14c8c072018-09-18 13:30:21 -07002664 if (strlcpy(value, temp_value, len) >= (unsigned)len) {
Rubin Xu85c01f92014-10-13 12:49:54 +01002665 // value too small
2666 rc = CRYPTO_GETFIELD_ERROR_BUF_TOO_SMALL;
2667 goto out;
2668 }
2669 rc = CRYPTO_GETFIELD_OK;
2670
2671 for (i = 1; /* break explicitly */; i++) {
2672 if (snprintf(temp_field, sizeof(temp_field), "%s_%d", fieldname, i) >=
Paul Crowley14c8c072018-09-18 13:30:21 -07002673 (int)sizeof(temp_field)) {
Rubin Xu85c01f92014-10-13 12:49:54 +01002674 // If the fieldname is very long, we stop as soon as it begins to overflow the
2675 // maximum field length. At this point we have in fact fully read out the original
2676 // value because cryptfs_setfield would not allow fields with longer names to be
2677 // written in the first place.
2678 break;
2679 }
2680 if (!persist_get_key(temp_field, temp_value)) {
Paul Crowley14c8c072018-09-18 13:30:21 -07002681 if (strlcat(value, temp_value, len) >= (unsigned)len) {
2682 // value too small.
2683 rc = CRYPTO_GETFIELD_ERROR_BUF_TOO_SMALL;
2684 goto out;
2685 }
Rubin Xu85c01f92014-10-13 12:49:54 +01002686 } else {
2687 // Exhaust all entries.
2688 break;
2689 }
2690 }
Ken Sumrall160b4d62013-04-22 12:15:39 -07002691 } else {
2692 /* Sadness, it's not there. Return the error */
Rubin Xu85c01f92014-10-13 12:49:54 +01002693 rc = CRYPTO_GETFIELD_ERROR_NO_FIELD;
Ken Sumrall160b4d62013-04-22 12:15:39 -07002694 }
2695
2696out:
2697 return rc;
2698}
2699
2700/* Set the value of the specified field. */
Paul Crowley14c8c072018-09-18 13:30:21 -07002701int cryptfs_setfield(const char* fieldname, const char* value) {
Eric Biggersa701c452018-10-23 13:06:55 -07002702 if (fscrypt_is_native()) {
Paul Lawrence5a06a642016-02-03 13:39:13 -08002703 SLOGE("Cannot set field when file encrypted");
2704 return -1;
Paul Lawrence368d7942015-04-15 14:12:00 -07002705 }
2706
Ken Sumrall160b4d62013-04-22 12:15:39 -07002707 char encrypted_state[PROPERTY_VALUE_MAX];
Rubin Xu85c01f92014-10-13 12:49:54 +01002708 /* 0 is success, negative values are error */
2709 int rc = CRYPTO_SETFIELD_ERROR_OTHER;
Ken Sumrall160b4d62013-04-22 12:15:39 -07002710 int encrypted = 0;
Rubin Xu85c01f92014-10-13 12:49:54 +01002711 unsigned int field_id;
2712 char temp_field[PROPERTY_KEY_MAX];
2713 unsigned int num_entries;
2714 unsigned int max_keylen;
Ken Sumrall160b4d62013-04-22 12:15:39 -07002715
2716 if (persist_data == NULL) {
2717 load_persistent_data();
2718 if (persist_data == NULL) {
2719 SLOGE("Setfield error, cannot load persistent data");
2720 goto out;
2721 }
2722 }
2723
2724 property_get("ro.crypto.state", encrypted_state, "");
Paul Crowley14c8c072018-09-18 13:30:21 -07002725 if (!strcmp(encrypted_state, "encrypted")) {
Ken Sumrall160b4d62013-04-22 12:15:39 -07002726 encrypted = 1;
2727 }
2728
Rubin Xu85c01f92014-10-13 12:49:54 +01002729 // Compute the number of entries required to store value, each entry can store up to
2730 // (PROPERTY_VALUE_MAX - 1) chars
2731 if (strlen(value) == 0) {
2732 // Empty value also needs one entry to store.
2733 num_entries = 1;
2734 } else {
2735 num_entries = (strlen(value) + (PROPERTY_VALUE_MAX - 1) - 1) / (PROPERTY_VALUE_MAX - 1);
2736 }
2737
2738 max_keylen = strlen(fieldname);
2739 if (num_entries > 1) {
2740 // Need an extra "_%d" suffix.
2741 max_keylen += 1 + log10(num_entries);
2742 }
2743 if (max_keylen > PROPERTY_KEY_MAX - 1) {
2744 rc = CRYPTO_SETFIELD_ERROR_FIELD_TOO_LONG;
Ken Sumrall160b4d62013-04-22 12:15:39 -07002745 goto out;
2746 }
2747
Rubin Xu85c01f92014-10-13 12:49:54 +01002748 // Make sure we have enough space to write the new value
2749 if (persist_data->persist_valid_entries + num_entries - persist_count_keys(fieldname) >
2750 persist_get_max_entries(encrypted)) {
2751 rc = CRYPTO_SETFIELD_ERROR_VALUE_TOO_LONG;
2752 goto out;
2753 }
2754
2755 // Now that we know persist_data has enough space for value, let's delete the old field first
2756 // to make up space.
2757 persist_del_keys(fieldname, 0);
2758
2759 if (persist_set_key(fieldname, value, encrypted)) {
2760 // fail to set key, should not happen as we have already checked the available space
2761 SLOGE("persist_set_key() error during setfield()");
2762 goto out;
2763 }
2764
2765 for (field_id = 1; field_id < num_entries; field_id++) {
Greg Kaiserb610e772018-02-09 09:19:54 -08002766 snprintf(temp_field, sizeof(temp_field), "%s_%u", fieldname, field_id);
Rubin Xu85c01f92014-10-13 12:49:54 +01002767
2768 if (persist_set_key(temp_field, value + field_id * (PROPERTY_VALUE_MAX - 1), encrypted)) {
2769 // fail to set key, should not happen as we have already checked the available space.
2770 SLOGE("persist_set_key() error during setfield()");
2771 goto out;
2772 }
2773 }
2774
Ken Sumrall160b4d62013-04-22 12:15:39 -07002775 /* If we are running encrypted, save the persistent data now */
2776 if (encrypted) {
2777 if (save_persistent_data()) {
2778 SLOGE("Setfield error, cannot save persistent data");
2779 goto out;
2780 }
2781 }
2782
Rubin Xu85c01f92014-10-13 12:49:54 +01002783 rc = CRYPTO_SETFIELD_OK;
Ken Sumrall160b4d62013-04-22 12:15:39 -07002784
2785out:
2786 return rc;
2787}
Paul Lawrencef4faa572014-01-29 13:31:03 -08002788
2789/* Checks userdata. Attempt to mount the volume if default-
2790 * encrypted.
2791 * On success trigger next init phase and return 0.
2792 * Currently do not handle failure - see TODO below.
2793 */
Paul Crowley14c8c072018-09-18 13:30:21 -07002794int cryptfs_mount_default_encrypted(void) {
Paul Lawrence84274cc2016-04-15 15:41:33 -07002795 int crypt_type = cryptfs_get_password_type();
2796 if (crypt_type < 0 || crypt_type > CRYPT_TYPE_MAX_TYPE) {
2797 SLOGE("Bad crypt type - error");
2798 } else if (crypt_type != CRYPT_TYPE_DEFAULT) {
Paul Crowley14c8c072018-09-18 13:30:21 -07002799 SLOGD(
2800 "Password is not default - "
2801 "starting min framework to prompt");
Paul Lawrence84274cc2016-04-15 15:41:33 -07002802 property_set("vold.decrypt", "trigger_restart_min_framework");
2803 return 0;
2804 } else if (cryptfs_check_passwd(DEFAULT_PASSWORD) == 0) {
2805 SLOGD("Password is default - restarting filesystem");
2806 cryptfs_restart_internal(0);
2807 return 0;
Paul Lawrencef4faa572014-01-29 13:31:03 -08002808 } else {
Paul Lawrence84274cc2016-04-15 15:41:33 -07002809 SLOGE("Encrypted, default crypt type but can't decrypt");
Paul Lawrencef4faa572014-01-29 13:31:03 -08002810 }
2811
Paul Lawrence6bfed202014-07-28 12:47:22 -07002812 /** Corrupt. Allow us to boot into framework, which will detect bad
2813 crypto when it calls do_crypto_complete, then do a factory reset
Paul Lawrencef4faa572014-01-29 13:31:03 -08002814 */
Paul Lawrence6bfed202014-07-28 12:47:22 -07002815 property_set("vold.decrypt", "trigger_restart_min_framework");
Paul Lawrencef4faa572014-01-29 13:31:03 -08002816 return 0;
2817}
2818
2819/* Returns type of the password, default, pattern, pin or password.
2820 */
Paul Crowley14c8c072018-09-18 13:30:21 -07002821int cryptfs_get_password_type(void) {
Eric Biggersa701c452018-10-23 13:06:55 -07002822 if (fscrypt_is_native()) {
Paul Lawrence7b6b5652016-02-02 11:14:59 -08002823 SLOGE("cryptfs_get_password_type not valid for file encryption");
2824 return -1;
Paul Lawrence05335c32015-03-05 09:46:23 -08002825 }
2826
Paul Lawrencef4faa572014-01-29 13:31:03 -08002827 struct crypt_mnt_ftr crypt_ftr;
2828
2829 if (get_crypt_ftr_and_key(&crypt_ftr)) {
2830 SLOGE("Error getting crypt footer and key\n");
2831 return -1;
2832 }
2833
Paul Lawrence6bfed202014-07-28 12:47:22 -07002834 if (crypt_ftr.flags & CRYPT_INCONSISTENT_STATE) {
2835 return -1;
2836 }
2837
Paul Lawrencef4faa572014-01-29 13:31:03 -08002838 return crypt_ftr.crypt_type;
2839}
Paul Lawrence684dbdf2014-02-07 12:07:22 -08002840
Paul Crowley14c8c072018-09-18 13:30:21 -07002841const char* cryptfs_get_password() {
Eric Biggersa701c452018-10-23 13:06:55 -07002842 if (fscrypt_is_native()) {
Paul Lawrence7b6b5652016-02-02 11:14:59 -08002843 SLOGE("cryptfs_get_password not valid for file encryption");
2844 return 0;
Paul Lawrence05335c32015-03-05 09:46:23 -08002845 }
2846
Paul Lawrence399317e2014-03-10 13:20:50 -07002847 struct timespec now;
Paul Lawrenceef2b5be2014-11-11 12:47:03 -08002848 clock_gettime(CLOCK_BOOTTIME, &now);
Paul Lawrence399317e2014-03-10 13:20:50 -07002849 if (now.tv_sec < password_expiry_time) {
2850 return password;
2851 } else {
2852 cryptfs_clear_password();
2853 return 0;
2854 }
2855}
2856
Paul Crowley14c8c072018-09-18 13:30:21 -07002857void cryptfs_clear_password() {
Paul Lawrence399317e2014-03-10 13:20:50 -07002858 if (password) {
2859 size_t len = strlen(password);
2860 memset(password, 0, len);
2861 free(password);
2862 password = 0;
2863 password_expiry_time = 0;
2864 }
Paul Lawrence684dbdf2014-02-07 12:07:22 -08002865}
Paul Lawrence731a7a22015-04-28 22:14:15 +00002866
Paul Crowley14c8c072018-09-18 13:30:21 -07002867int cryptfs_isConvertibleToFBE() {
Paul Crowleye2ee1522017-09-26 14:05:26 -07002868 struct fstab_rec* rec = fs_mgr_get_entry_for_mount_point(fstab_default, DATA_MNT_POINT);
Luis Hector Chavezbbb512d2018-05-30 15:47:50 -07002869 return (rec && fs_mgr_is_convertible_to_fbe(rec)) ? 1 : 0;
Paul Lawrence0c247462015-10-29 10:30:57 -07002870}