1 /*
2 * Copyright (C) 2016 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 #include "MetadataCrypt.h"
18 #include "KeyBuffer.h"
19
20 #include <string>
21
22 #include <fcntl.h>
23 #include <sys/param.h>
24 #include <sys/stat.h>
25 #include <sys/types.h>
26
27 #include <android-base/logging.h>
28 #include <android-base/properties.h>
29 #include <android-base/strings.h>
30 #include <android-base/unique_fd.h>
31 #include <cutils/fs.h>
32 #include <fs_mgr.h>
33 #include <libdm/dm.h>
34 #include <libgsi/libgsi.h>
35
36 #include "Checkpoint.h"
37 #include "CryptoType.h"
38 #include "EncryptInplace.h"
39 #include "KeyStorage.h"
40 #include "KeyUtil.h"
41 #include "Keystore.h"
42 #include "Utils.h"
43 #include "VoldUtil.h"
44 #include "fs/Ext4.h"
45 #include "fs/F2fs.h"
46
47 namespace android {
48 namespace vold {
49
50 using android::fs_mgr::FstabEntry;
51 using android::fs_mgr::GetEntryForMountPoint;
52 using android::fscrypt::GetFirstApiLevel;
53 using android::vold::KeyBuffer;
54 using namespace android::dm;
55 using namespace std::chrono_literals;
56
57 // Parsed from metadata options
58 struct CryptoOptions {
59 struct CryptoType cipher = invalid_crypto_type;
60 bool use_legacy_options_format = false;
61 bool set_dun = true; // Non-legacy driver always sets DUN
62 bool use_hw_wrapped_key = false;
63 };
64
65 static const std::string kDmNameUserdata = "userdata";
66 static const std::string kDmNameUserdataZoned = "userdata_zoned";
67
68 // The first entry in this table is the default crypto type.
69 constexpr CryptoType supported_crypto_types[] = {aes_256_xts, adiantum};
70
71 static_assert(validateSupportedCryptoTypes(64, supported_crypto_types,
72 array_length(supported_crypto_types)),
73 "We have a CryptoType which was incompletely constructed.");
74
75 constexpr CryptoType legacy_aes_256_xts =
76 CryptoType().set_config_name("aes-256-xts").set_kernel_name("AES-256-XTS").set_keysize(64);
77
78 static_assert(isValidCryptoType(64, legacy_aes_256_xts),
79 "We have a CryptoType which was incompletely constructed.");
80
81 // Returns KeyGeneration suitable for key as described in CryptoOptions
makeGen(const CryptoOptions & options)82 const KeyGeneration makeGen(const CryptoOptions& options) {
83 return KeyGeneration{options.cipher.get_keysize(), true, options.use_hw_wrapped_key};
84 }
85
defaultkey_precreate_dm_device()86 void defaultkey_precreate_dm_device() {
87 auto& dm = DeviceMapper::Instance();
88 if (dm.GetState(kDmNameUserdata) != DmDeviceState::INVALID) {
89 LOG(INFO) << "Not pre-creating userdata encryption device; device already exists";
90 return;
91 }
92
93 if (!dm.CreatePlaceholderDevice(kDmNameUserdata)) {
94 LOG(ERROR) << "Failed to pre-create userdata metadata encryption device";
95 }
96 }
97
mount_via_fs_mgr(const char * mount_point,const char * blk_device,bool needs_encrypt)98 static bool mount_via_fs_mgr(const char* mount_point, const char* blk_device, bool needs_encrypt) {
99 // fs_mgr_do_mount runs fsck. Use setexeccon to run trusted
100 // partitions in the fsck domain.
101 if (setexeccon(android::vold::sFsckContext)) {
102 PLOG(ERROR) << "Failed to setexeccon";
103 return false;
104 }
105 auto mount_rc = fs_mgr_do_mount(&fstab_default, const_cast<char*>(mount_point),
106 const_cast<char*>(blk_device), nullptr,
107 needs_encrypt? false: android::vold::cp_needsCheckpoint(),
108 true);
109 if (setexeccon(nullptr)) {
110 PLOG(ERROR) << "Failed to clear setexeccon";
111 return false;
112 }
113 if (mount_rc != 0) {
114 LOG(ERROR) << "fs_mgr_do_mount failed with rc " << mount_rc;
115 return false;
116 }
117 LOG(DEBUG) << "Mounted " << mount_point;
118 return true;
119 }
120
read_key(const std::string & metadata_key_dir,const KeyGeneration & gen,bool first_key,KeyBuffer * key)121 static bool read_key(const std::string& metadata_key_dir, const KeyGeneration& gen, bool first_key,
122 KeyBuffer* key) {
123 if (metadata_key_dir.empty()) {
124 LOG(ERROR) << "Failed to get metadata_key_dir";
125 return false;
126 }
127 std::string sKey;
128 auto dir = metadata_key_dir + "/key";
129 LOG(DEBUG) << "metadata_key_dir/key: " << dir;
130 if (!MkdirsSync(dir, 0700)) return false;
131 auto in_dsu = android::base::GetBoolProperty("ro.gsid.image_running", false);
132 // !pathExists(dir) does not imply there's a factory reset when in DSU mode.
133 if (!pathExists(dir) && !in_dsu && first_key) {
134 auto delete_all = android::base::GetBoolProperty(
135 "ro.crypto.metadata_init_delete_all_keys.enabled", false);
136 if (delete_all) {
137 LOG(INFO) << "Metadata key does not exist, calling deleteAllKeys";
138 Keystore::deleteAllKeys();
139 } else {
140 LOG(DEBUG) << "Metadata key does not exist but "
141 "ro.crypto.metadata_init_delete_all_keys.enabled is false";
142 }
143 }
144 auto temp = metadata_key_dir + "/tmp";
145 return retrieveOrGenerateKey(dir, temp, kEmptyAuthentication, gen, key);
146 }
147
get_number_of_sectors(const std::string & real_blkdev,uint64_t * nr_sec)148 static bool get_number_of_sectors(const std::string& real_blkdev, uint64_t* nr_sec) {
149 if (android::vold::GetBlockDev512Sectors(real_blkdev, nr_sec) != android::OK) {
150 PLOG(ERROR) << "Unable to measure size of " << real_blkdev;
151 return false;
152 }
153 return true;
154 }
155
create_crypto_blk_dev(const std::string & dm_name,const std::string & blk_device,const KeyBuffer & key,const CryptoOptions & options,std::string * crypto_blkdev,uint64_t * nr_sec)156 static bool create_crypto_blk_dev(const std::string& dm_name, const std::string& blk_device,
157 const KeyBuffer& key, const CryptoOptions& options,
158 std::string* crypto_blkdev, uint64_t* nr_sec) {
159 if (!get_number_of_sectors(blk_device, nr_sec)) return false;
160 // TODO(paulcrowley): don't hardcode that DmTargetDefaultKey uses 4096-byte
161 // sectors
162 *nr_sec &= ~7;
163
164 KeyBuffer module_key;
165 if (options.use_hw_wrapped_key) {
166 if (!exportWrappedStorageKey(key, &module_key)) {
167 LOG(ERROR) << "Failed to get ephemeral wrapped key";
168 return false;
169 }
170 } else {
171 module_key = key;
172 }
173
174 KeyBuffer hex_key_buffer;
175 if (android::vold::StrToHex(module_key, hex_key_buffer) != android::OK) {
176 LOG(ERROR) << "Failed to turn key to hex";
177 return false;
178 }
179 std::string hex_key(hex_key_buffer.data(), hex_key_buffer.size());
180
181 auto target = std::make_unique<DmTargetDefaultKey>(0, *nr_sec, options.cipher.get_kernel_name(),
182 hex_key, blk_device, 0);
183 if (options.use_legacy_options_format) target->SetUseLegacyOptionsFormat();
184 if (options.set_dun) target->SetSetDun();
185 if (options.use_hw_wrapped_key) target->SetWrappedKeyV0();
186
187 DmTable table;
188 table.AddTarget(std::move(target));
189
190 auto& dm = DeviceMapper::Instance();
191 if (dm_name == kDmNameUserdata && dm.GetState(dm_name) == DmDeviceState::SUSPENDED) {
192 // The device was created in advance, populate it now.
193 if (!dm.LoadTableAndActivate(dm_name, table)) {
194 LOG(ERROR) << "Failed to populate default-key device " << dm_name;
195 return false;
196 }
197 if (!dm.WaitForDevice(dm_name, 20s, crypto_blkdev)) {
198 LOG(ERROR) << "Failed to wait for default-key device " << dm_name;
199 return false;
200 }
201 } else if (!dm.CreateDevice(dm_name, table, crypto_blkdev, 5s)) {
202 LOG(ERROR) << "Could not create default-key device " << dm_name;
203 return false;
204 }
205 return true;
206 }
207
lookup_cipher(const std::string & cipher_name)208 static const CryptoType& lookup_cipher(const std::string& cipher_name) {
209 if (cipher_name.empty()) return supported_crypto_types[0];
210 for (size_t i = 0; i < array_length(supported_crypto_types); i++) {
211 if (cipher_name == supported_crypto_types[i].get_config_name()) {
212 return supported_crypto_types[i];
213 }
214 }
215 return invalid_crypto_type;
216 }
217
parse_options(const std::string & options_string,CryptoOptions * options)218 static bool parse_options(const std::string& options_string, CryptoOptions* options) {
219 auto parts = android::base::Split(options_string, ":");
220 if (parts.size() < 1 || parts.size() > 2) {
221 LOG(ERROR) << "Invalid metadata encryption option: " << options_string;
222 return false;
223 }
224 std::string cipher_name = parts[0];
225 options->cipher = lookup_cipher(cipher_name);
226 if (options->cipher.get_kernel_name() == nullptr) {
227 LOG(ERROR) << "No metadata cipher named " << cipher_name << " found";
228 return false;
229 }
230
231 if (parts.size() == 2) {
232 if (parts[1] == "wrappedkey_v0") {
233 options->use_hw_wrapped_key = true;
234 } else {
235 LOG(ERROR) << "Invalid metadata encryption flag: " << parts[1];
236 return false;
237 }
238 }
239 return true;
240 }
241
fscrypt_mount_metadata_encrypted(const std::string & blk_device,const std::string & mount_point,bool needs_encrypt,bool should_format,const std::string & fs_type,const std::string & zoned_device)242 bool fscrypt_mount_metadata_encrypted(const std::string& blk_device, const std::string& mount_point,
243 bool needs_encrypt, bool should_format,
244 const std::string& fs_type, const std::string& zoned_device) {
245 LOG(DEBUG) << "fscrypt_mount_metadata_encrypted: " << mount_point
246 << " encrypt: " << needs_encrypt << " format: " << should_format << " with "
247 << fs_type << " block device: " << blk_device
248 << " and zoned device: " << zoned_device;
249 auto encrypted_state = android::base::GetProperty("ro.crypto.state", "");
250 if (encrypted_state != "" && encrypted_state != "encrypted") {
251 LOG(ERROR) << "fscrypt_mount_metadata_encrypted got unexpected starting state: "
252 << encrypted_state;
253 return false;
254 }
255
256 auto data_rec = GetEntryForMountPoint(&fstab_default, mount_point);
257 if (!data_rec) {
258 LOG(ERROR) << "Failed to get data_rec for " << mount_point;
259 return false;
260 }
261
262 unsigned int options_format_version = android::base::GetUintProperty<unsigned int>(
263 "ro.crypto.dm_default_key.options_format.version",
264 (GetFirstApiLevel() <= __ANDROID_API_Q__ ? 1 : 2));
265
266 CryptoOptions options;
267 if (options_format_version == 1) {
268 if (!data_rec->metadata_encryption_options.empty()) {
269 LOG(ERROR) << "metadata_encryption options cannot be set in legacy mode";
270 return false;
271 }
272 options.cipher = legacy_aes_256_xts;
273 options.use_legacy_options_format = true;
274 options.set_dun = android::base::GetBoolProperty("ro.crypto.set_dun", false);
275 if (!options.set_dun && data_rec->fs_mgr_flags.checkpoint_blk) {
276 LOG(ERROR)
277 << "Block checkpoints and metadata encryption require ro.crypto.set_dun option";
278 return false;
279 }
280 } else if (options_format_version == 2) {
281 if (!parse_options(data_rec->metadata_encryption_options, &options)) return false;
282 } else {
283 LOG(ERROR) << "Unknown options_format_version: " << options_format_version;
284 return false;
285 }
286
287 auto default_metadata_key_dir = data_rec->metadata_key_dir;
288 if (!zoned_device.empty()) {
289 default_metadata_key_dir = default_metadata_key_dir + "/default";
290 }
291 auto gen = needs_encrypt ? makeGen(options) : neverGen();
292 KeyBuffer key;
293 if (!read_key(default_metadata_key_dir, gen, true, &key)) {
294 LOG(ERROR) << "read_key failed in mountFstab";
295 return false;
296 }
297
298 std::string crypto_blkdev;
299 uint64_t nr_sec;
300 if (!create_crypto_blk_dev(kDmNameUserdata, blk_device, key, options, &crypto_blkdev,
301 &nr_sec)) {
302 LOG(ERROR) << "create_crypto_blk_dev failed in mountFstab";
303 return false;
304 }
305
306 // create dm-default-key for zoned device
307 std::string crypto_zoned_blkdev;
308 if (!zoned_device.empty()) {
309 auto zoned_metadata_key_dir = data_rec->metadata_key_dir + "/zoned";
310
311 if (!read_key(zoned_metadata_key_dir, gen, false, &key)) {
312 LOG(ERROR) << "read_key failed with zoned device: " << zoned_device;
313 return false;
314 }
315 if (!create_crypto_blk_dev(kDmNameUserdataZoned, zoned_device, key, options,
316 &crypto_zoned_blkdev, &nr_sec)) {
317 LOG(ERROR) << "fscrypt_mount_metadata_encrypted: failed with zoned device: "
318 << zoned_device;
319 return false;
320 }
321 }
322
323 if (needs_encrypt) {
324 if (should_format) {
325 status_t error;
326
327 if (fs_type == "ext4") {
328 error = ext4::Format(crypto_blkdev, 0, mount_point);
329 } else if (fs_type == "f2fs") {
330 error = f2fs::Format(crypto_blkdev, crypto_zoned_blkdev);
331 } else {
332 LOG(ERROR) << "Unknown filesystem type: " << fs_type;
333 return false;
334 }
335 if (error != 0) {
336 LOG(ERROR) << "Format of " << crypto_blkdev << " for " << mount_point
337 << " failed (err=" << error << ").";
338 return false;
339 }
340 LOG(DEBUG) << "Format of " << crypto_blkdev << " for " << mount_point << " succeeded.";
341 } else {
342 if (!zoned_device.empty()) {
343 LOG(ERROR) << "encrypt_inplace cannot support zoned device; should format it.";
344 return false;
345 }
346 if (!encrypt_inplace(crypto_blkdev, blk_device, nr_sec)) {
347 LOG(ERROR) << "encrypt_inplace failed in mountFstab";
348 return false;
349 }
350 }
351 }
352
353 LOG(DEBUG) << "Mounting metadata-encrypted filesystem:" << mount_point;
354 mount_via_fs_mgr(mount_point.c_str(), crypto_blkdev.c_str(), needs_encrypt);
355
356 // Record that there's at least one fstab entry with metadata encryption
357 if (!android::base::SetProperty("ro.crypto.metadata.enabled", "true")) {
358 LOG(WARNING) << "failed to set ro.crypto.metadata.enabled"; // This isn't fatal
359 }
360 return true;
361 }
362
get_volume_options(CryptoOptions * options)363 static bool get_volume_options(CryptoOptions* options) {
364 return parse_options(android::base::GetProperty("ro.crypto.volume.metadata.encryption", ""),
365 options);
366 }
367
defaultkey_volume_keygen(KeyGeneration * gen)368 bool defaultkey_volume_keygen(KeyGeneration* gen) {
369 CryptoOptions options;
370 if (!get_volume_options(&options)) return false;
371 *gen = makeGen(options);
372 return true;
373 }
374
defaultkey_setup_ext_volume(const std::string & label,const std::string & blk_device,const KeyBuffer & key,std::string * out_crypto_blkdev)375 bool defaultkey_setup_ext_volume(const std::string& label, const std::string& blk_device,
376 const KeyBuffer& key, std::string* out_crypto_blkdev) {
377 LOG(DEBUG) << "defaultkey_setup_ext_volume: " << label << " " << blk_device;
378
379 CryptoOptions options;
380 if (!get_volume_options(&options)) return false;
381 uint64_t nr_sec;
382 return create_crypto_blk_dev(label, blk_device, key, options, out_crypto_blkdev, &nr_sec);
383 }
384
destroy_dsu_metadata_key(const std::string & dsu_slot)385 bool destroy_dsu_metadata_key(const std::string& dsu_slot) {
386 LOG(DEBUG) << "destroy_dsu_metadata_key: " << dsu_slot;
387
388 const auto dsu_metadata_key_dir = android::gsi::GetDsuMetadataKeyDir(dsu_slot);
389 if (!pathExists(dsu_metadata_key_dir)) {
390 LOG(DEBUG) << "DSU metadata_key_dir doesn't exist, nothing to remove: "
391 << dsu_metadata_key_dir;
392 return true;
393 }
394
395 // Ensure that the DSU key directory is different from the host OS'.
396 // Under normal circumstances, this should never happen, but handle it just in case.
397 if (auto data_rec = GetEntryForMountPoint(&fstab_default, "/data")) {
398 if (dsu_metadata_key_dir == data_rec->metadata_key_dir) {
399 LOG(ERROR) << "DSU metadata_key_dir is same as host OS: " << dsu_metadata_key_dir;
400 return false;
401 }
402 }
403
404 bool ok = true;
405 for (auto suffix : {"/key", "/tmp"}) {
406 const auto key_path = dsu_metadata_key_dir + suffix;
407 if (pathExists(key_path)) {
408 LOG(DEBUG) << "Destroy key: " << key_path;
409 if (!android::vold::destroyKey(key_path)) {
410 LOG(ERROR) << "Failed to destroyKey(): " << key_path;
411 ok = false;
412 }
413 }
414 }
415 if (!ok) {
416 return false;
417 }
418
419 LOG(DEBUG) << "Remove DSU metadata_key_dir: " << dsu_metadata_key_dir;
420 // DeleteDirContentsAndDir() already logged any error, so don't log repeatedly.
421 return android::vold::DeleteDirContentsAndDir(dsu_metadata_key_dir) == android::OK;
422 }
423
424 } // namespace vold
425 } // namespace android
426