1 /*
2 * Copyright (C) 2015 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 "FsCrypt.h"
18
19 #include "KeyStorage.h"
20 #include "KeyUtil.h"
21 #include "Utils.h"
22 #include "VoldUtil.h"
23
24 #include <algorithm>
25 #include <map>
26 #include <optional>
27 #include <set>
28 #include <sstream>
29 #include <string>
30 #include <vector>
31
32 #include <dirent.h>
33 #include <errno.h>
34 #include <fcntl.h>
35 #include <limits.h>
36 #include <selinux/android.h>
37 #include <sys/mount.h>
38 #include <sys/stat.h>
39 #include <sys/types.h>
40 #include <unistd.h>
41
42 #include <private/android_filesystem_config.h>
43 #include <private/android_projectid_config.h>
44
45 #include "android/os/IVold.h"
46
47 #define EMULATED_USES_SELINUX 0
48 #define MANAGE_MISC_DIRS 0
49
50 #include <cutils/fs.h>
51 #include <cutils/properties.h>
52
53 #include <fscrypt/fscrypt.h>
54 #include <keyutils.h>
55 #include <libdm/dm.h>
56
57 #include <android-base/file.h>
58 #include <android-base/logging.h>
59 #include <android-base/properties.h>
60 #include <android-base/stringprintf.h>
61 #include <android-base/strings.h>
62 #include <android-base/unique_fd.h>
63
64 using android::base::Basename;
65 using android::base::Realpath;
66 using android::base::StartsWith;
67 using android::base::StringPrintf;
68 using android::fs_mgr::GetEntryForMountPoint;
69 using android::vold::BuildDataPath;
70 using android::vold::IsDotOrDotDot;
71 using android::vold::IsFilesystemSupported;
72 using android::vold::kEmptyAuthentication;
73 using android::vold::KeyBuffer;
74 using android::vold::KeyGeneration;
75 using android::vold::retrieveKey;
76 using android::vold::retrieveOrGenerateKey;
77 using android::vold::SetDefaultAcl;
78 using android::vold::SetQuotaInherit;
79 using android::vold::SetQuotaProjectId;
80 using android::vold::writeStringToFile;
81 using namespace android::fscrypt;
82 using namespace android::dm;
83
84 namespace {
85
86 const std::string device_key_dir = std::string() + DATA_MNT_POINT + fscrypt_unencrypted_folder;
87 const std::string device_key_path = device_key_dir + "/key";
88 const std::string device_key_temp = device_key_dir + "/temp";
89
90 const std::string user_key_dir = std::string() + DATA_MNT_POINT + "/misc/vold/user_keys";
91 const std::string user_key_temp = user_key_dir + "/temp";
92 const std::string prepare_subdirs_path = "/system/bin/vold_prepare_subdirs";
93
94 const std::string systemwide_volume_key_dir =
95 std::string() + DATA_MNT_POINT + "/misc/vold/volume_keys";
96
97 // Some users are ephemeral, don't try to wipe their keys from disk
98 std::set<userid_t> s_ephemeral_users;
99
100 // Map user ids to encryption policies
101 std::map<userid_t, EncryptionPolicy> s_de_policies;
102 std::map<userid_t, EncryptionPolicy> s_ce_policies;
103
104 } // namespace
105
106 // Returns KeyGeneration suitable for key as described in EncryptionOptions
makeGen(const EncryptionOptions & options)107 static KeyGeneration makeGen(const EncryptionOptions& options) {
108 return KeyGeneration{FSCRYPT_MAX_KEY_SIZE, true, options.use_hw_wrapped_key};
109 }
110
fscrypt_is_emulated()111 static bool fscrypt_is_emulated() {
112 return property_get_bool("persist.sys.emulate_fbe", false);
113 }
114
escape_empty(const std::string & value)115 static const char* escape_empty(const std::string& value) {
116 return value.empty() ? "null" : value.c_str();
117 }
118
get_de_key_path(userid_t user_id)119 static std::string get_de_key_path(userid_t user_id) {
120 return StringPrintf("%s/de/%d", user_key_dir.c_str(), user_id);
121 }
122
get_ce_key_directory_path(userid_t user_id)123 static std::string get_ce_key_directory_path(userid_t user_id) {
124 return StringPrintf("%s/ce/%d", user_key_dir.c_str(), user_id);
125 }
126
127 // Returns the keys newest first
get_ce_key_paths(const std::string & directory_path)128 static std::vector<std::string> get_ce_key_paths(const std::string& directory_path) {
129 auto dirp = std::unique_ptr<DIR, int (*)(DIR*)>(opendir(directory_path.c_str()), closedir);
130 if (!dirp) {
131 PLOG(ERROR) << "Unable to open ce key directory: " + directory_path;
132 return std::vector<std::string>();
133 }
134 std::vector<std::string> result;
135 for (;;) {
136 errno = 0;
137 auto const entry = readdir(dirp.get());
138 if (!entry) {
139 if (errno) {
140 PLOG(ERROR) << "Unable to read ce key directory: " + directory_path;
141 return std::vector<std::string>();
142 }
143 break;
144 }
145 if (IsDotOrDotDot(*entry)) continue;
146 if (entry->d_type != DT_DIR || entry->d_name[0] != 'c') {
147 LOG(DEBUG) << "Skipping non-key " << entry->d_name;
148 continue;
149 }
150 result.emplace_back(directory_path + "/" + entry->d_name);
151 }
152 std::sort(result.begin(), result.end());
153 std::reverse(result.begin(), result.end());
154 return result;
155 }
156
get_ce_key_current_path(const std::string & directory_path)157 static std::string get_ce_key_current_path(const std::string& directory_path) {
158 return directory_path + "/current";
159 }
160
get_ce_key_new_path(const std::string & directory_path,const std::vector<std::string> & paths,std::string * ce_key_path)161 static bool get_ce_key_new_path(const std::string& directory_path,
162 const std::vector<std::string>& paths, std::string* ce_key_path) {
163 if (paths.empty()) {
164 *ce_key_path = get_ce_key_current_path(directory_path);
165 return true;
166 }
167 for (unsigned int i = 0; i < UINT_MAX; i++) {
168 auto const candidate = StringPrintf("%s/cx%010u", directory_path.c_str(), i);
169 if (paths[0] < candidate) {
170 *ce_key_path = candidate;
171 return true;
172 }
173 }
174 return false;
175 }
176
177 // Discard all keys but the named one; rename it to canonical name.
178 // No point in acting on errors in this; ignore them.
fixate_user_ce_key(const std::string & directory_path,const std::string & to_fix,const std::vector<std::string> & paths)179 static void fixate_user_ce_key(const std::string& directory_path, const std::string& to_fix,
180 const std::vector<std::string>& paths) {
181 for (auto const other_path : paths) {
182 if (other_path != to_fix) {
183 android::vold::destroyKey(other_path);
184 }
185 }
186 auto const current_path = get_ce_key_current_path(directory_path);
187 if (to_fix != current_path) {
188 LOG(DEBUG) << "Renaming " << to_fix << " to " << current_path;
189 if (rename(to_fix.c_str(), current_path.c_str()) != 0) {
190 PLOG(WARNING) << "Unable to rename " << to_fix << " to " << current_path;
191 return;
192 }
193 }
194 android::vold::FsyncDirectory(directory_path);
195 }
196
read_and_fixate_user_ce_key(userid_t user_id,const android::vold::KeyAuthentication & auth,KeyBuffer * ce_key)197 static bool read_and_fixate_user_ce_key(userid_t user_id,
198 const android::vold::KeyAuthentication& auth,
199 KeyBuffer* ce_key) {
200 auto const directory_path = get_ce_key_directory_path(user_id);
201 auto const paths = get_ce_key_paths(directory_path);
202 for (auto const ce_key_path : paths) {
203 LOG(DEBUG) << "Trying user CE key " << ce_key_path;
204 if (retrieveKey(ce_key_path, auth, ce_key)) {
205 LOG(DEBUG) << "Successfully retrieved key";
206 fixate_user_ce_key(directory_path, ce_key_path, paths);
207 return true;
208 }
209 }
210 LOG(ERROR) << "Failed to find working ce key for user " << user_id;
211 return false;
212 }
213
IsEmmcStorage(const std::string & blk_device)214 static bool IsEmmcStorage(const std::string& blk_device) {
215 // Handle symlinks.
216 std::string real_path;
217 if (!Realpath(blk_device, &real_path)) {
218 real_path = blk_device;
219 }
220
221 // Handle logical volumes.
222 auto& dm = DeviceMapper::Instance();
223 for (;;) {
224 auto parent = dm.GetParentBlockDeviceByPath(real_path);
225 if (!parent.has_value()) break;
226 real_path = *parent;
227 }
228
229 // Now we should have the "real" block device.
230 LOG(DEBUG) << "IsEmmcStorage(): blk_device = " << blk_device << ", real_path=" << real_path;
231 return StartsWith(Basename(real_path), "mmcblk");
232 }
233
234 // Retrieve the options to use for encryption policies on the /data filesystem.
get_data_file_encryption_options(EncryptionOptions * options)235 static bool get_data_file_encryption_options(EncryptionOptions* options) {
236 auto entry = GetEntryForMountPoint(&fstab_default, DATA_MNT_POINT);
237 if (entry == nullptr) {
238 LOG(ERROR) << "No mount point entry for " << DATA_MNT_POINT;
239 return false;
240 }
241 if (!ParseOptions(entry->encryption_options, options)) {
242 LOG(ERROR) << "Unable to parse encryption options for " << DATA_MNT_POINT ": "
243 << entry->encryption_options;
244 return false;
245 }
246 if ((options->flags & FSCRYPT_POLICY_FLAG_IV_INO_LBLK_32) &&
247 !IsEmmcStorage(entry->blk_device)) {
248 LOG(ERROR) << "The emmc_optimized encryption flag is only allowed on eMMC storage. Remove "
249 "this flag from the device's fstab";
250 return false;
251 }
252 return true;
253 }
254
install_storage_key(const std::string & mountpoint,const EncryptionOptions & options,const KeyBuffer & key,EncryptionPolicy * policy)255 static bool install_storage_key(const std::string& mountpoint, const EncryptionOptions& options,
256 const KeyBuffer& key, EncryptionPolicy* policy) {
257 KeyBuffer ephemeral_wrapped_key;
258 if (options.use_hw_wrapped_key) {
259 if (!exportWrappedStorageKey(key, &ephemeral_wrapped_key)) {
260 LOG(ERROR) << "Failed to get ephemeral wrapped key";
261 return false;
262 }
263 }
264 return installKey(mountpoint, options, options.use_hw_wrapped_key ? ephemeral_wrapped_key : key,
265 policy);
266 }
267
268 // Retrieve the options to use for encryption policies on adoptable storage.
get_volume_file_encryption_options(EncryptionOptions * options)269 static bool get_volume_file_encryption_options(EncryptionOptions* options) {
270 // If we give the empty string, libfscrypt will use the default (currently XTS)
271 auto contents_mode = android::base::GetProperty("ro.crypto.volume.contents_mode", "");
272 // HEH as default was always a mistake. Use the libfscrypt default (CTS)
273 // for devices launching on versions above Android 10.
274 auto first_api_level = GetFirstApiLevel();
275 auto filenames_mode =
276 android::base::GetProperty("ro.crypto.volume.filenames_mode",
277 first_api_level > __ANDROID_API_Q__ ? "" : "aes-256-heh");
278 auto options_string = android::base::GetProperty("ro.crypto.volume.options",
279 contents_mode + ":" + filenames_mode);
280 if (!ParseOptionsForApiLevel(first_api_level, options_string, options)) {
281 LOG(ERROR) << "Unable to parse volume encryption options: " << options_string;
282 return false;
283 }
284 if (options->flags & FSCRYPT_POLICY_FLAG_IV_INO_LBLK_32) {
285 LOG(ERROR) << "The emmc_optimized encryption flag is only allowed on eMMC storage. Remove "
286 "this flag from ro.crypto.volume.options";
287 return false;
288 }
289 return true;
290 }
291
read_and_install_user_ce_key(userid_t user_id,const android::vold::KeyAuthentication & auth)292 static bool read_and_install_user_ce_key(userid_t user_id,
293 const android::vold::KeyAuthentication& auth) {
294 if (s_ce_policies.count(user_id) != 0) return true;
295 EncryptionOptions options;
296 if (!get_data_file_encryption_options(&options)) return false;
297 KeyBuffer ce_key;
298 if (!read_and_fixate_user_ce_key(user_id, auth, &ce_key)) return false;
299 EncryptionPolicy ce_policy;
300 if (!install_storage_key(DATA_MNT_POINT, options, ce_key, &ce_policy)) return false;
301 s_ce_policies[user_id] = ce_policy;
302 LOG(DEBUG) << "Installed ce key for user " << user_id;
303 return true;
304 }
305
prepare_dir(const std::string & dir,mode_t mode,uid_t uid,gid_t gid)306 static bool prepare_dir(const std::string& dir, mode_t mode, uid_t uid, gid_t gid) {
307 LOG(DEBUG) << "Preparing: " << dir;
308 if (fs_prepare_dir(dir.c_str(), mode, uid, gid) != 0) {
309 PLOG(ERROR) << "Failed to prepare " << dir;
310 return false;
311 }
312 return true;
313 }
314
destroy_dir(const std::string & dir)315 static bool destroy_dir(const std::string& dir) {
316 LOG(DEBUG) << "Destroying: " << dir;
317 if (rmdir(dir.c_str()) != 0 && errno != ENOENT) {
318 PLOG(ERROR) << "Failed to destroy " << dir;
319 return false;
320 }
321 return true;
322 }
323
324 // NB this assumes that there is only one thread listening for crypt commands, because
325 // it creates keys in a fixed location.
create_and_install_user_keys(userid_t user_id,bool create_ephemeral)326 static bool create_and_install_user_keys(userid_t user_id, bool create_ephemeral) {
327 EncryptionOptions options;
328 if (!get_data_file_encryption_options(&options)) return false;
329 KeyBuffer de_key, ce_key;
330 if (!generateStorageKey(makeGen(options), &de_key)) return false;
331 if (!generateStorageKey(makeGen(options), &ce_key)) return false;
332 if (create_ephemeral) {
333 // If the key should be created as ephemeral, don't store it.
334 s_ephemeral_users.insert(user_id);
335 } else {
336 auto const directory_path = get_ce_key_directory_path(user_id);
337 if (!prepare_dir(directory_path, 0700, AID_ROOT, AID_ROOT)) return false;
338 auto const paths = get_ce_key_paths(directory_path);
339 std::string ce_key_path;
340 if (!get_ce_key_new_path(directory_path, paths, &ce_key_path)) return false;
341 if (!android::vold::storeKeyAtomically(ce_key_path, user_key_temp, kEmptyAuthentication,
342 ce_key))
343 return false;
344 fixate_user_ce_key(directory_path, ce_key_path, paths);
345 // Write DE key second; once this is written, all is good.
346 if (!android::vold::storeKeyAtomically(get_de_key_path(user_id), user_key_temp,
347 kEmptyAuthentication, de_key))
348 return false;
349 }
350 EncryptionPolicy de_policy;
351 if (!install_storage_key(DATA_MNT_POINT, options, de_key, &de_policy)) return false;
352 s_de_policies[user_id] = de_policy;
353 EncryptionPolicy ce_policy;
354 if (!install_storage_key(DATA_MNT_POINT, options, ce_key, &ce_policy)) return false;
355 s_ce_policies[user_id] = ce_policy;
356 LOG(DEBUG) << "Created keys for user " << user_id;
357 return true;
358 }
359
lookup_policy(const std::map<userid_t,EncryptionPolicy> & key_map,userid_t user_id,EncryptionPolicy * policy)360 static bool lookup_policy(const std::map<userid_t, EncryptionPolicy>& key_map, userid_t user_id,
361 EncryptionPolicy* policy) {
362 auto refi = key_map.find(user_id);
363 if (refi == key_map.end()) {
364 LOG(DEBUG) << "Cannot find key for " << user_id;
365 return false;
366 }
367 *policy = refi->second;
368 return true;
369 }
370
is_numeric(const char * name)371 static bool is_numeric(const char* name) {
372 for (const char* p = name; *p != '\0'; p++) {
373 if (!isdigit(*p)) return false;
374 }
375 return true;
376 }
377
load_all_de_keys()378 static bool load_all_de_keys() {
379 EncryptionOptions options;
380 if (!get_data_file_encryption_options(&options)) return false;
381 auto de_dir = user_key_dir + "/de";
382 auto dirp = std::unique_ptr<DIR, int (*)(DIR*)>(opendir(de_dir.c_str()), closedir);
383 if (!dirp) {
384 PLOG(ERROR) << "Unable to read de key directory";
385 return false;
386 }
387 for (;;) {
388 errno = 0;
389 auto entry = readdir(dirp.get());
390 if (!entry) {
391 if (errno) {
392 PLOG(ERROR) << "Unable to read de key directory";
393 return false;
394 }
395 break;
396 }
397 if (IsDotOrDotDot(*entry)) continue;
398 if (entry->d_type != DT_DIR || !is_numeric(entry->d_name)) {
399 LOG(DEBUG) << "Skipping non-de-key " << entry->d_name;
400 continue;
401 }
402 userid_t user_id = std::stoi(entry->d_name);
403 auto key_path = de_dir + "/" + entry->d_name;
404 KeyBuffer de_key;
405 if (!retrieveKey(key_path, kEmptyAuthentication, &de_key)) return false;
406 EncryptionPolicy de_policy;
407 if (!install_storage_key(DATA_MNT_POINT, options, de_key, &de_policy)) return false;
408 auto ret = s_de_policies.insert({user_id, de_policy});
409 if (!ret.second && ret.first->second != de_policy) {
410 LOG(ERROR) << "DE policy for user" << user_id << " changed";
411 return false;
412 }
413 LOG(DEBUG) << "Installed de key for user " << user_id;
414 }
415 // fscrypt:TODO: go through all DE directories, ensure that all user dirs have the
416 // correct policy set on them, and that no rogue ones exist.
417 return true;
418 }
419
420 // Attempt to reinstall CE keys for users that we think are unlocked.
try_reload_ce_keys()421 static bool try_reload_ce_keys() {
422 for (const auto& it : s_ce_policies) {
423 if (!android::vold::reloadKeyFromSessionKeyring(DATA_MNT_POINT, it.second)) {
424 LOG(ERROR) << "Failed to load CE key from session keyring for user " << it.first;
425 return false;
426 }
427 }
428 return true;
429 }
430
fscrypt_initialize_systemwide_keys()431 bool fscrypt_initialize_systemwide_keys() {
432 LOG(INFO) << "fscrypt_initialize_systemwide_keys";
433
434 EncryptionOptions options;
435 if (!get_data_file_encryption_options(&options)) return false;
436
437 KeyBuffer device_key;
438 if (!retrieveOrGenerateKey(device_key_path, device_key_temp, kEmptyAuthentication,
439 makeGen(options), &device_key))
440 return false;
441
442 EncryptionPolicy device_policy;
443 if (!install_storage_key(DATA_MNT_POINT, options, device_key, &device_policy)) return false;
444
445 std::string options_string;
446 if (!OptionsToString(device_policy.options, &options_string)) {
447 LOG(ERROR) << "Unable to serialize options";
448 return false;
449 }
450 std::string options_filename = std::string(DATA_MNT_POINT) + fscrypt_key_mode;
451 if (!android::vold::writeStringToFile(options_string, options_filename)) return false;
452
453 std::string ref_filename = std::string(DATA_MNT_POINT) + fscrypt_key_ref;
454 if (!android::vold::writeStringToFile(device_policy.key_raw_ref, ref_filename)) return false;
455 LOG(INFO) << "Wrote system DE key reference to:" << ref_filename;
456
457 KeyBuffer per_boot_key;
458 if (!generateStorageKey(makeGen(options), &per_boot_key)) return false;
459 EncryptionPolicy per_boot_policy;
460 if (!install_storage_key(DATA_MNT_POINT, options, per_boot_key, &per_boot_policy)) return false;
461 std::string per_boot_ref_filename = std::string("/data") + fscrypt_key_per_boot_ref;
462 if (!android::vold::writeStringToFile(per_boot_policy.key_raw_ref, per_boot_ref_filename))
463 return false;
464 LOG(INFO) << "Wrote per boot key reference to:" << per_boot_ref_filename;
465
466 return true;
467 }
468
fscrypt_init_user0()469 bool fscrypt_init_user0() {
470 LOG(DEBUG) << "fscrypt_init_user0";
471 if (fscrypt_is_native()) {
472 if (!prepare_dir(user_key_dir, 0700, AID_ROOT, AID_ROOT)) return false;
473 if (!prepare_dir(user_key_dir + "/ce", 0700, AID_ROOT, AID_ROOT)) return false;
474 if (!prepare_dir(user_key_dir + "/de", 0700, AID_ROOT, AID_ROOT)) return false;
475 if (!android::vold::pathExists(get_de_key_path(0))) {
476 if (!create_and_install_user_keys(0, false)) return false;
477 }
478 // TODO: switch to loading only DE_0 here once framework makes
479 // explicit calls to install DE keys for secondary users
480 if (!load_all_de_keys()) return false;
481 }
482 // We can only safely prepare DE storage here, since CE keys are probably
483 // entangled with user credentials. The framework will always prepare CE
484 // storage once CE keys are installed.
485 if (!fscrypt_prepare_user_storage("", 0, 0, android::os::IVold::STORAGE_FLAG_DE)) {
486 LOG(ERROR) << "Failed to prepare user 0 storage";
487 return false;
488 }
489
490 // If this is a non-FBE device that recently left an emulated mode,
491 // restore user data directories to known-good state.
492 if (!fscrypt_is_native() && !fscrypt_is_emulated()) {
493 fscrypt_unlock_user_key(0, 0, "!");
494 }
495
496 // In some scenarios (e.g. userspace reboot) we might unmount userdata
497 // without doing a hard reboot. If CE keys were stored in fs keyring then
498 // they will be lost after unmount. Attempt to re-install them.
499 if (fscrypt_is_native() && android::vold::isFsKeyringSupported()) {
500 if (!try_reload_ce_keys()) return false;
501 }
502
503 return true;
504 }
505
fscrypt_vold_create_user_key(userid_t user_id,int serial,bool ephemeral)506 bool fscrypt_vold_create_user_key(userid_t user_id, int serial, bool ephemeral) {
507 LOG(DEBUG) << "fscrypt_vold_create_user_key for " << user_id << " serial " << serial;
508 if (!fscrypt_is_native()) {
509 return true;
510 }
511 // FIXME test for existence of key that is not loaded yet
512 if (s_ce_policies.count(user_id) != 0) {
513 LOG(ERROR) << "Already exists, can't fscrypt_vold_create_user_key for " << user_id
514 << " serial " << serial;
515 // FIXME should we fail the command?
516 return true;
517 }
518 if (!create_and_install_user_keys(user_id, ephemeral)) {
519 return false;
520 }
521 return true;
522 }
523
524 // "Lock" all encrypted directories whose key has been removed. This is needed
525 // in the case where the keys are being put in the session keyring (rather in
526 // the newer filesystem-level keyrings), because removing a key from the session
527 // keyring doesn't affect inodes in the kernel's inode cache whose per-file key
528 // was already set up. So to remove the per-file keys and make the files
529 // "appear encrypted", these inodes must be evicted.
530 //
531 // To do this, sync() to clean all dirty inodes, then drop all reclaimable slab
532 // objects systemwide. This is overkill, but it's the best available method
533 // currently. Don't use drop_caches mode "3" because that also evicts pagecache
534 // for in-use files; all files relevant here are already closed and sync'ed.
drop_caches_if_needed()535 static void drop_caches_if_needed() {
536 if (android::vold::isFsKeyringSupported()) {
537 return;
538 }
539 sync();
540 if (!writeStringToFile("2", "/proc/sys/vm/drop_caches")) {
541 PLOG(ERROR) << "Failed to drop caches during key eviction";
542 }
543 }
544
evict_ce_key(userid_t user_id)545 static bool evict_ce_key(userid_t user_id) {
546 bool success = true;
547 EncryptionPolicy policy;
548 // If we haven't loaded the CE key, no need to evict it.
549 if (lookup_policy(s_ce_policies, user_id, &policy)) {
550 success &= android::vold::evictKey(DATA_MNT_POINT, policy);
551 drop_caches_if_needed();
552 }
553 s_ce_policies.erase(user_id);
554 return success;
555 }
556
fscrypt_destroy_user_key(userid_t user_id)557 bool fscrypt_destroy_user_key(userid_t user_id) {
558 LOG(DEBUG) << "fscrypt_destroy_user_key(" << user_id << ")";
559 if (!fscrypt_is_native()) {
560 return true;
561 }
562 bool success = true;
563 success &= evict_ce_key(user_id);
564 EncryptionPolicy de_policy;
565 success &= lookup_policy(s_de_policies, user_id, &de_policy) &&
566 android::vold::evictKey(DATA_MNT_POINT, de_policy);
567 s_de_policies.erase(user_id);
568 auto it = s_ephemeral_users.find(user_id);
569 if (it != s_ephemeral_users.end()) {
570 s_ephemeral_users.erase(it);
571 } else {
572 for (auto const path : get_ce_key_paths(get_ce_key_directory_path(user_id))) {
573 success &= android::vold::destroyKey(path);
574 }
575 auto de_key_path = get_de_key_path(user_id);
576 if (android::vold::pathExists(de_key_path)) {
577 success &= android::vold::destroyKey(de_key_path);
578 } else {
579 LOG(INFO) << "Not present so not erasing: " << de_key_path;
580 }
581 }
582 return success;
583 }
584
emulated_lock(const std::string & path)585 static bool emulated_lock(const std::string& path) {
586 if (chmod(path.c_str(), 0000) != 0) {
587 PLOG(ERROR) << "Failed to chmod " << path;
588 return false;
589 }
590 #if EMULATED_USES_SELINUX
591 if (setfilecon(path.c_str(), "u:object_r:storage_stub_file:s0") != 0) {
592 PLOG(WARNING) << "Failed to setfilecon " << path;
593 return false;
594 }
595 #endif
596 return true;
597 }
598
emulated_unlock(const std::string & path,mode_t mode)599 static bool emulated_unlock(const std::string& path, mode_t mode) {
600 if (chmod(path.c_str(), mode) != 0) {
601 PLOG(ERROR) << "Failed to chmod " << path;
602 // FIXME temporary workaround for b/26713622
603 if (fscrypt_is_emulated()) return false;
604 }
605 #if EMULATED_USES_SELINUX
606 if (selinux_android_restorecon(path.c_str(), SELINUX_ANDROID_RESTORECON_FORCE) != 0) {
607 PLOG(WARNING) << "Failed to restorecon " << path;
608 // FIXME temporary workaround for b/26713622
609 if (fscrypt_is_emulated()) return false;
610 }
611 #endif
612 return true;
613 }
614
parse_hex(const std::string & hex,std::string * result)615 static bool parse_hex(const std::string& hex, std::string* result) {
616 if (hex == "!") {
617 *result = "";
618 return true;
619 }
620 if (android::vold::HexToStr(hex, *result) != 0) {
621 LOG(ERROR) << "Invalid FBE hex string"; // Don't log the string for security reasons
622 return false;
623 }
624 return true;
625 }
626
authentication_from_hex(const std::string & secret_hex)627 static std::optional<android::vold::KeyAuthentication> authentication_from_hex(
628 const std::string& secret_hex) {
629 std::string secret;
630 if (!parse_hex(secret_hex, &secret)) return std::optional<android::vold::KeyAuthentication>();
631 if (secret.empty()) {
632 return kEmptyAuthentication;
633 } else {
634 return android::vold::KeyAuthentication(secret);
635 }
636 }
637
volkey_path(const std::string & misc_path,const std::string & volume_uuid)638 static std::string volkey_path(const std::string& misc_path, const std::string& volume_uuid) {
639 return misc_path + "/vold/volume_keys/" + volume_uuid + "/default";
640 }
641
volume_secdiscardable_path(const std::string & volume_uuid)642 static std::string volume_secdiscardable_path(const std::string& volume_uuid) {
643 return systemwide_volume_key_dir + "/" + volume_uuid + "/secdiscardable";
644 }
645
read_or_create_volkey(const std::string & misc_path,const std::string & volume_uuid,EncryptionPolicy * policy)646 static bool read_or_create_volkey(const std::string& misc_path, const std::string& volume_uuid,
647 EncryptionPolicy* policy) {
648 auto secdiscardable_path = volume_secdiscardable_path(volume_uuid);
649 std::string secdiscardable_hash;
650 if (android::vold::pathExists(secdiscardable_path)) {
651 if (!android::vold::readSecdiscardable(secdiscardable_path, &secdiscardable_hash))
652 return false;
653 } else {
654 if (!android::vold::MkdirsSync(secdiscardable_path, 0700)) return false;
655 if (!android::vold::createSecdiscardable(secdiscardable_path, &secdiscardable_hash))
656 return false;
657 }
658 auto key_path = volkey_path(misc_path, volume_uuid);
659 if (!android::vold::MkdirsSync(key_path, 0700)) return false;
660 android::vold::KeyAuthentication auth(secdiscardable_hash);
661
662 EncryptionOptions options;
663 if (!get_volume_file_encryption_options(&options)) return false;
664 KeyBuffer key;
665 if (!retrieveOrGenerateKey(key_path, key_path + "_tmp", auth, makeGen(options), &key))
666 return false;
667 if (!install_storage_key(BuildDataPath(volume_uuid), options, key, policy)) return false;
668 return true;
669 }
670
destroy_volkey(const std::string & misc_path,const std::string & volume_uuid)671 static bool destroy_volkey(const std::string& misc_path, const std::string& volume_uuid) {
672 auto path = volkey_path(misc_path, volume_uuid);
673 if (!android::vold::pathExists(path)) return true;
674 return android::vold::destroyKey(path);
675 }
676
fscrypt_rewrap_user_key(userid_t user_id,int serial,const android::vold::KeyAuthentication & retrieve_auth,const android::vold::KeyAuthentication & store_auth)677 static bool fscrypt_rewrap_user_key(userid_t user_id, int serial,
678 const android::vold::KeyAuthentication& retrieve_auth,
679 const android::vold::KeyAuthentication& store_auth) {
680 if (s_ephemeral_users.count(user_id) != 0) return true;
681 auto const directory_path = get_ce_key_directory_path(user_id);
682 KeyBuffer ce_key;
683 std::string ce_key_current_path = get_ce_key_current_path(directory_path);
684 if (retrieveKey(ce_key_current_path, retrieve_auth, &ce_key)) {
685 LOG(DEBUG) << "Successfully retrieved key";
686 // TODO(147732812): Remove this once Locksettingservice is fixed.
687 // Currently it calls fscrypt_clear_user_key_auth with a secret when lockscreen is
688 // changed from swipe to none or vice-versa
689 } else if (retrieveKey(ce_key_current_path, kEmptyAuthentication, &ce_key)) {
690 LOG(DEBUG) << "Successfully retrieved key with empty auth";
691 } else {
692 LOG(ERROR) << "Failed to retrieve key for user " << user_id;
693 return false;
694 }
695 auto const paths = get_ce_key_paths(directory_path);
696 std::string ce_key_path;
697 if (!get_ce_key_new_path(directory_path, paths, &ce_key_path)) return false;
698 if (!android::vold::storeKeyAtomically(ce_key_path, user_key_temp, store_auth, ce_key))
699 return false;
700 return true;
701 }
702
fscrypt_add_user_key_auth(userid_t user_id,int serial,const std::string & secret_hex)703 bool fscrypt_add_user_key_auth(userid_t user_id, int serial, const std::string& secret_hex) {
704 LOG(DEBUG) << "fscrypt_add_user_key_auth " << user_id << " serial=" << serial;
705 if (!fscrypt_is_native()) return true;
706 auto auth = authentication_from_hex(secret_hex);
707 if (!auth) return false;
708 return fscrypt_rewrap_user_key(user_id, serial, kEmptyAuthentication, *auth);
709 }
710
fscrypt_clear_user_key_auth(userid_t user_id,int serial,const std::string & secret_hex)711 bool fscrypt_clear_user_key_auth(userid_t user_id, int serial, const std::string& secret_hex) {
712 LOG(DEBUG) << "fscrypt_clear_user_key_auth " << user_id << " serial=" << serial;
713 if (!fscrypt_is_native()) return true;
714 auto auth = authentication_from_hex(secret_hex);
715 if (!auth) return false;
716 return fscrypt_rewrap_user_key(user_id, serial, *auth, kEmptyAuthentication);
717 }
718
fscrypt_fixate_newest_user_key_auth(userid_t user_id)719 bool fscrypt_fixate_newest_user_key_auth(userid_t user_id) {
720 LOG(DEBUG) << "fscrypt_fixate_newest_user_key_auth " << user_id;
721 if (!fscrypt_is_native()) return true;
722 if (s_ephemeral_users.count(user_id) != 0) return true;
723 auto const directory_path = get_ce_key_directory_path(user_id);
724 auto const paths = get_ce_key_paths(directory_path);
725 if (paths.empty()) {
726 LOG(ERROR) << "No ce keys present, cannot fixate for user " << user_id;
727 return false;
728 }
729 fixate_user_ce_key(directory_path, paths[0], paths);
730 return true;
731 }
732
fscrypt_get_unlocked_users()733 std::vector<int> fscrypt_get_unlocked_users() {
734 std::vector<int> user_ids;
735 for (const auto& it : s_ce_policies) {
736 user_ids.push_back(it.first);
737 }
738 return user_ids;
739 }
740
741 // TODO: rename to 'install' for consistency, and take flags to know which keys to install
fscrypt_unlock_user_key(userid_t user_id,int serial,const std::string & secret_hex)742 bool fscrypt_unlock_user_key(userid_t user_id, int serial, const std::string& secret_hex) {
743 LOG(DEBUG) << "fscrypt_unlock_user_key " << user_id << " serial=" << serial;
744 if (fscrypt_is_native()) {
745 if (s_ce_policies.count(user_id) != 0) {
746 LOG(WARNING) << "Tried to unlock already-unlocked key for user " << user_id;
747 return true;
748 }
749 auto auth = authentication_from_hex(secret_hex);
750 if (!auth) return false;
751 if (!read_and_install_user_ce_key(user_id, *auth)) {
752 LOG(ERROR) << "Couldn't read key for " << user_id;
753 return false;
754 }
755 } else {
756 // When in emulation mode, we just use chmod. However, we also
757 // unlock directories when not in emulation mode, to bring devices
758 // back into a known-good state.
759 if (!emulated_unlock(android::vold::BuildDataSystemCePath(user_id), 0771) ||
760 !emulated_unlock(android::vold::BuildDataMiscCePath(user_id), 01771) ||
761 !emulated_unlock(android::vold::BuildDataMediaCePath("", user_id), 0770) ||
762 !emulated_unlock(android::vold::BuildDataUserCePath("", user_id), 0771)) {
763 LOG(ERROR) << "Failed to unlock user " << user_id;
764 return false;
765 }
766 }
767 return true;
768 }
769
770 // TODO: rename to 'evict' for consistency
fscrypt_lock_user_key(userid_t user_id)771 bool fscrypt_lock_user_key(userid_t user_id) {
772 LOG(DEBUG) << "fscrypt_lock_user_key " << user_id;
773 if (fscrypt_is_native()) {
774 return evict_ce_key(user_id);
775 } else if (fscrypt_is_emulated()) {
776 // When in emulation mode, we just use chmod
777 if (!emulated_lock(android::vold::BuildDataSystemCePath(user_id)) ||
778 !emulated_lock(android::vold::BuildDataMiscCePath(user_id)) ||
779 !emulated_lock(android::vold::BuildDataMediaCePath("", user_id)) ||
780 !emulated_lock(android::vold::BuildDataUserCePath("", user_id))) {
781 LOG(ERROR) << "Failed to lock user " << user_id;
782 return false;
783 }
784 }
785
786 return true;
787 }
788
prepare_subdirs(const std::string & action,const std::string & volume_uuid,userid_t user_id,int flags)789 static bool prepare_subdirs(const std::string& action, const std::string& volume_uuid,
790 userid_t user_id, int flags) {
791 if (0 != android::vold::ForkExecvp(
792 std::vector<std::string>{prepare_subdirs_path, action, volume_uuid,
793 std::to_string(user_id), std::to_string(flags)})) {
794 LOG(ERROR) << "vold_prepare_subdirs failed";
795 return false;
796 }
797 return true;
798 }
799
fscrypt_prepare_user_storage(const std::string & volume_uuid,userid_t user_id,int serial,int flags)800 bool fscrypt_prepare_user_storage(const std::string& volume_uuid, userid_t user_id, int serial,
801 int flags) {
802 LOG(DEBUG) << "fscrypt_prepare_user_storage for volume " << escape_empty(volume_uuid)
803 << ", user " << user_id << ", serial " << serial << ", flags " << flags;
804
805 if (flags & android::os::IVold::STORAGE_FLAG_DE) {
806 // DE_sys key
807 auto system_legacy_path = android::vold::BuildDataSystemLegacyPath(user_id);
808 auto misc_legacy_path = android::vold::BuildDataMiscLegacyPath(user_id);
809 auto profiles_de_path = android::vold::BuildDataProfilesDePath(user_id);
810
811 // DE_n key
812 auto system_de_path = android::vold::BuildDataSystemDePath(user_id);
813 auto misc_de_path = android::vold::BuildDataMiscDePath(user_id);
814 auto vendor_de_path = android::vold::BuildDataVendorDePath(user_id);
815 auto user_de_path = android::vold::BuildDataUserDePath(volume_uuid, user_id);
816
817 if (volume_uuid.empty()) {
818 if (!prepare_dir(system_legacy_path, 0700, AID_SYSTEM, AID_SYSTEM)) return false;
819 #if MANAGE_MISC_DIRS
820 if (!prepare_dir(misc_legacy_path, 0750, multiuser_get_uid(user_id, AID_SYSTEM),
821 multiuser_get_uid(user_id, AID_EVERYBODY)))
822 return false;
823 #endif
824 if (!prepare_dir(profiles_de_path, 0771, AID_SYSTEM, AID_SYSTEM)) return false;
825
826 if (!prepare_dir(system_de_path, 0770, AID_SYSTEM, AID_SYSTEM)) return false;
827 if (!prepare_dir(misc_de_path, 01771, AID_SYSTEM, AID_MISC)) return false;
828 if (!prepare_dir(vendor_de_path, 0771, AID_ROOT, AID_ROOT)) return false;
829 }
830 if (!prepare_dir(user_de_path, 0771, AID_SYSTEM, AID_SYSTEM)) return false;
831
832 if (fscrypt_is_native()) {
833 EncryptionPolicy de_policy;
834 if (volume_uuid.empty()) {
835 if (!lookup_policy(s_de_policies, user_id, &de_policy)) return false;
836 if (!EnsurePolicy(de_policy, system_de_path)) return false;
837 if (!EnsurePolicy(de_policy, misc_de_path)) return false;
838 if (!EnsurePolicy(de_policy, vendor_de_path)) return false;
839 } else {
840 if (!read_or_create_volkey(misc_de_path, volume_uuid, &de_policy)) return false;
841 }
842 if (!EnsurePolicy(de_policy, user_de_path)) return false;
843 }
844 }
845
846 if (flags & android::os::IVold::STORAGE_FLAG_CE) {
847 // CE_n key
848 auto system_ce_path = android::vold::BuildDataSystemCePath(user_id);
849 auto misc_ce_path = android::vold::BuildDataMiscCePath(user_id);
850 auto vendor_ce_path = android::vold::BuildDataVendorCePath(user_id);
851 auto media_ce_path = android::vold::BuildDataMediaCePath(volume_uuid, user_id);
852 auto user_ce_path = android::vold::BuildDataUserCePath(volume_uuid, user_id);
853
854 if (volume_uuid.empty()) {
855 if (!prepare_dir(system_ce_path, 0770, AID_SYSTEM, AID_SYSTEM)) return false;
856 if (!prepare_dir(misc_ce_path, 01771, AID_SYSTEM, AID_MISC)) return false;
857 if (!prepare_dir(vendor_ce_path, 0771, AID_ROOT, AID_ROOT)) return false;
858 }
859 if (!prepare_dir(media_ce_path, 02770, AID_MEDIA_RW, AID_MEDIA_RW)) return false;
860 // On devices without sdcardfs (kernel 5.4+), the path permissions aren't fixed
861 // up automatically; therefore, use a default ACL, to ensure apps with MEDIA_RW
862 // can keep reading external storage; in particular, this allows app cloning
863 // scenarios to work correctly on such devices.
864 int ret = SetDefaultAcl(media_ce_path, 02770, AID_MEDIA_RW, AID_MEDIA_RW, {AID_MEDIA_RW});
865 if (ret != android::OK) {
866 return false;
867 }
868
869 if (!prepare_dir(user_ce_path, 0771, AID_SYSTEM, AID_SYSTEM)) return false;
870
871 if (fscrypt_is_native()) {
872 EncryptionPolicy ce_policy;
873 if (volume_uuid.empty()) {
874 if (!lookup_policy(s_ce_policies, user_id, &ce_policy)) return false;
875 if (!EnsurePolicy(ce_policy, system_ce_path)) return false;
876 if (!EnsurePolicy(ce_policy, misc_ce_path)) return false;
877 if (!EnsurePolicy(ce_policy, vendor_ce_path)) return false;
878 } else {
879 if (!read_or_create_volkey(misc_ce_path, volume_uuid, &ce_policy)) return false;
880 }
881 if (!EnsurePolicy(ce_policy, media_ce_path)) return false;
882 if (!EnsurePolicy(ce_policy, user_ce_path)) return false;
883 }
884
885 if (volume_uuid.empty()) {
886 // Now that credentials have been installed, we can run restorecon
887 // over these paths
888 // NOTE: these paths need to be kept in sync with libselinux
889 android::vold::RestoreconRecursive(system_ce_path);
890 android::vold::RestoreconRecursive(vendor_ce_path);
891 android::vold::RestoreconRecursive(misc_ce_path);
892 }
893 }
894 if (!prepare_subdirs("prepare", volume_uuid, user_id, flags)) return false;
895
896 return true;
897 }
898
fscrypt_destroy_user_storage(const std::string & volume_uuid,userid_t user_id,int flags)899 bool fscrypt_destroy_user_storage(const std::string& volume_uuid, userid_t user_id, int flags) {
900 LOG(DEBUG) << "fscrypt_destroy_user_storage for volume " << escape_empty(volume_uuid)
901 << ", user " << user_id << ", flags " << flags;
902 bool res = true;
903
904 res &= prepare_subdirs("destroy", volume_uuid, user_id, flags);
905
906 if (flags & android::os::IVold::STORAGE_FLAG_CE) {
907 // CE_n key
908 auto system_ce_path = android::vold::BuildDataSystemCePath(user_id);
909 auto misc_ce_path = android::vold::BuildDataMiscCePath(user_id);
910 auto vendor_ce_path = android::vold::BuildDataVendorCePath(user_id);
911 auto media_ce_path = android::vold::BuildDataMediaCePath(volume_uuid, user_id);
912 auto user_ce_path = android::vold::BuildDataUserCePath(volume_uuid, user_id);
913
914 res &= destroy_dir(media_ce_path);
915 res &= destroy_dir(user_ce_path);
916 if (volume_uuid.empty()) {
917 res &= destroy_dir(system_ce_path);
918 res &= destroy_dir(misc_ce_path);
919 res &= destroy_dir(vendor_ce_path);
920 } else {
921 if (fscrypt_is_native()) {
922 res &= destroy_volkey(misc_ce_path, volume_uuid);
923 }
924 }
925 }
926
927 if (flags & android::os::IVold::STORAGE_FLAG_DE) {
928 // DE_sys key
929 auto system_legacy_path = android::vold::BuildDataSystemLegacyPath(user_id);
930 auto misc_legacy_path = android::vold::BuildDataMiscLegacyPath(user_id);
931 auto profiles_de_path = android::vold::BuildDataProfilesDePath(user_id);
932
933 // DE_n key
934 auto system_de_path = android::vold::BuildDataSystemDePath(user_id);
935 auto misc_de_path = android::vold::BuildDataMiscDePath(user_id);
936 auto vendor_de_path = android::vold::BuildDataVendorDePath(user_id);
937 auto user_de_path = android::vold::BuildDataUserDePath(volume_uuid, user_id);
938
939 res &= destroy_dir(user_de_path);
940 if (volume_uuid.empty()) {
941 res &= destroy_dir(system_legacy_path);
942 #if MANAGE_MISC_DIRS
943 res &= destroy_dir(misc_legacy_path);
944 #endif
945 res &= destroy_dir(profiles_de_path);
946 res &= destroy_dir(system_de_path);
947 res &= destroy_dir(misc_de_path);
948 res &= destroy_dir(vendor_de_path);
949 } else {
950 if (fscrypt_is_native()) {
951 res &= destroy_volkey(misc_de_path, volume_uuid);
952 }
953 }
954 }
955
956 return res;
957 }
958
destroy_volume_keys(const std::string & directory_path,const std::string & volume_uuid)959 static bool destroy_volume_keys(const std::string& directory_path, const std::string& volume_uuid) {
960 auto dirp = std::unique_ptr<DIR, int (*)(DIR*)>(opendir(directory_path.c_str()), closedir);
961 if (!dirp) {
962 PLOG(ERROR) << "Unable to open directory: " + directory_path;
963 return false;
964 }
965 bool res = true;
966 for (;;) {
967 errno = 0;
968 auto const entry = readdir(dirp.get());
969 if (!entry) {
970 if (errno) {
971 PLOG(ERROR) << "Unable to read directory: " + directory_path;
972 return false;
973 }
974 break;
975 }
976 if (IsDotOrDotDot(*entry)) continue;
977 if (entry->d_type != DT_DIR || entry->d_name[0] == '.') {
978 LOG(DEBUG) << "Skipping non-user " << entry->d_name;
979 continue;
980 }
981 res &= destroy_volkey(directory_path + "/" + entry->d_name, volume_uuid);
982 }
983 return res;
984 }
985
fscrypt_destroy_volume_keys(const std::string & volume_uuid)986 bool fscrypt_destroy_volume_keys(const std::string& volume_uuid) {
987 bool res = true;
988 LOG(DEBUG) << "fscrypt_destroy_volume_keys for volume " << escape_empty(volume_uuid);
989 auto secdiscardable_path = volume_secdiscardable_path(volume_uuid);
990 res &= android::vold::runSecdiscardSingle(secdiscardable_path);
991 res &= destroy_volume_keys("/data/misc_ce", volume_uuid);
992 res &= destroy_volume_keys("/data/misc_de", volume_uuid);
993 return res;
994 }
995