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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 "KeyUtil.h"
18 
19 #include <iomanip>
20 #include <sstream>
21 #include <string>
22 #include <thread>
23 
24 #include <fcntl.h>
25 #include <linux/fscrypt.h>
26 #include <openssl/sha.h>
27 #include <sys/ioctl.h>
28 
29 #include <android-base/file.h>
30 #include <android-base/logging.h>
31 #include <android-base/properties.h>
32 #include <keyutils.h>
33 
34 #include "KeyStorage.h"
35 #include "Utils.h"
36 
37 namespace android {
38 namespace vold {
39 
40 using android::fscrypt::EncryptionOptions;
41 using android::fscrypt::EncryptionPolicy;
42 
43 // This must be acquired before calling fscrypt ioctls that operate on keys.
44 // This prevents race conditions between evicting and reinstalling keys.
45 static std::mutex fscrypt_keyring_mutex;
46 
neverGen()47 const KeyGeneration neverGen() {
48     return KeyGeneration{0, false, false};
49 }
50 
randomKey(size_t size,KeyBuffer * key)51 static bool randomKey(size_t size, KeyBuffer* key) {
52     *key = KeyBuffer(size);
53     if (ReadRandomBytes(key->size(), key->data()) != 0) {
54         // TODO status_t plays badly with PLOG, fix it.
55         LOG(ERROR) << "Random read failed";
56         return false;
57     }
58     return true;
59 }
60 
generateStorageKey(const KeyGeneration & gen,KeyBuffer * key)61 bool generateStorageKey(const KeyGeneration& gen, KeyBuffer* key) {
62     if (!gen.allow_gen) {
63         LOG(ERROR) << "Generating storage key not allowed";
64         return false;
65     }
66     if (gen.use_hw_wrapped_key) {
67         if (gen.keysize != FSCRYPT_MAX_KEY_SIZE) {
68             LOG(ERROR) << "Cannot generate a wrapped key " << gen.keysize << " bytes long";
69             return false;
70         }
71         LOG(DEBUG) << "Generating wrapped storage key";
72         return generateWrappedStorageKey(key);
73     } else {
74         LOG(DEBUG) << "Generating standard storage key";
75         return randomKey(gen.keysize, key);
76     }
77 }
78 
isFsKeyringSupportedImpl()79 static bool isFsKeyringSupportedImpl() {
80     android::base::unique_fd fd(open("/data", O_RDONLY | O_DIRECTORY | O_CLOEXEC));
81 
82     // FS_IOC_ADD_ENCRYPTION_KEY with a NULL argument will fail with ENOTTY if
83     // the ioctl isn't supported.  Otherwise it will fail with another error
84     // code such as EFAULT.
85     //
86     // Note that there's no need to check for FS_IOC_REMOVE_ENCRYPTION_KEY,
87     // since it's guaranteed to be available if FS_IOC_ADD_ENCRYPTION_KEY is.
88     // There's also no need to check for support on external volumes separately
89     // from /data, since either the kernel supports the ioctls on all
90     // fscrypt-capable filesystems or it doesn't.
91     errno = 0;
92     (void)ioctl(fd, FS_IOC_ADD_ENCRYPTION_KEY, NULL);
93     if (errno == ENOTTY) {
94         LOG(INFO) << "Kernel doesn't support FS_IOC_ADD_ENCRYPTION_KEY.  Falling back to "
95                      "session keyring";
96         return false;
97     }
98     if (errno != EFAULT) {
99         PLOG(WARNING) << "Unexpected error from FS_IOC_ADD_ENCRYPTION_KEY";
100     }
101     LOG(DEBUG) << "Detected support for FS_IOC_ADD_ENCRYPTION_KEY";
102     android::base::SetProperty("ro.crypto.uses_fs_ioc_add_encryption_key", "true");
103     return true;
104 }
105 
106 // Return true if the kernel supports the ioctls to add/remove fscrypt keys
107 // directly to/from the filesystem.
isFsKeyringSupported(void)108 bool isFsKeyringSupported(void) {
109     static bool supported = isFsKeyringSupportedImpl();
110     return supported;
111 }
112 
113 // Get raw keyref - used to make keyname and to pass to ioctl
generateKeyRef(const uint8_t * key,int length)114 static std::string generateKeyRef(const uint8_t* key, int length) {
115     SHA512_CTX c;
116 
117     SHA512_Init(&c);
118     SHA512_Update(&c, key, length);
119     unsigned char key_ref1[SHA512_DIGEST_LENGTH];
120     SHA512_Final(key_ref1, &c);
121 
122     SHA512_Init(&c);
123     SHA512_Update(&c, key_ref1, SHA512_DIGEST_LENGTH);
124     unsigned char key_ref2[SHA512_DIGEST_LENGTH];
125     SHA512_Final(key_ref2, &c);
126 
127     static_assert(FSCRYPT_KEY_DESCRIPTOR_SIZE <= SHA512_DIGEST_LENGTH,
128                   "Hash too short for descriptor");
129     return std::string((char*)key_ref2, FSCRYPT_KEY_DESCRIPTOR_SIZE);
130 }
131 
fillKey(const KeyBuffer & key,fscrypt_key * fs_key)132 static bool fillKey(const KeyBuffer& key, fscrypt_key* fs_key) {
133     if (key.size() != FSCRYPT_MAX_KEY_SIZE) {
134         LOG(ERROR) << "Wrong size key " << key.size();
135         return false;
136     }
137     static_assert(FSCRYPT_MAX_KEY_SIZE == sizeof(fs_key->raw), "Mismatch of max key sizes");
138     fs_key->mode = 0;  // unused by kernel
139     memcpy(fs_key->raw, key.data(), key.size());
140     fs_key->size = key.size();
141     return true;
142 }
143 
144 static char const* const NAME_PREFIXES[] = {"ext4", "f2fs", "fscrypt", nullptr};
145 
keyrefstring(const std::string & raw_ref)146 static std::string keyrefstring(const std::string& raw_ref) {
147     std::ostringstream o;
148     for (unsigned char i : raw_ref) {
149         o << std::hex << std::setw(2) << std::setfill('0') << (int)i;
150     }
151     return o.str();
152 }
153 
buildLegacyKeyName(const std::string & prefix,const std::string & raw_ref)154 static std::string buildLegacyKeyName(const std::string& prefix, const std::string& raw_ref) {
155     return prefix + ":" + keyrefstring(raw_ref);
156 }
157 
158 // Get the ID of the keyring we store all fscrypt keys in when the kernel is too
159 // old to support FS_IOC_ADD_ENCRYPTION_KEY and FS_IOC_REMOVE_ENCRYPTION_KEY.
fscryptKeyring(key_serial_t * device_keyring)160 static bool fscryptKeyring(key_serial_t* device_keyring) {
161     *device_keyring = keyctl_search(KEY_SPEC_SESSION_KEYRING, "keyring", "fscrypt", 0);
162     if (*device_keyring == -1) {
163         PLOG(ERROR) << "Unable to find device keyring";
164         return false;
165     }
166     return true;
167 }
168 
169 // Add an encryption key of type "logon" to the global session keyring.
installKeyLegacy(const KeyBuffer & key,const std::string & raw_ref)170 static bool installKeyLegacy(const KeyBuffer& key, const std::string& raw_ref) {
171     // Place fscrypt_key into automatically zeroing buffer.
172     KeyBuffer fsKeyBuffer(sizeof(fscrypt_key));
173     fscrypt_key& fs_key = *reinterpret_cast<fscrypt_key*>(fsKeyBuffer.data());
174 
175     if (!fillKey(key, &fs_key)) return false;
176     key_serial_t device_keyring;
177     if (!fscryptKeyring(&device_keyring)) return false;
178     for (char const* const* name_prefix = NAME_PREFIXES; *name_prefix != nullptr; name_prefix++) {
179         auto ref = buildLegacyKeyName(*name_prefix, raw_ref);
180         key_serial_t key_id =
181             add_key("logon", ref.c_str(), (void*)&fs_key, sizeof(fs_key), device_keyring);
182         if (key_id == -1) {
183             PLOG(ERROR) << "Failed to insert key into keyring " << device_keyring;
184             return false;
185         }
186         LOG(DEBUG) << "Added key " << key_id << " (" << ref << ") to keyring " << device_keyring
187                    << " in process " << getpid();
188     }
189     return true;
190 }
191 
192 // Installs fscrypt-provisioning key into session level kernel keyring.
193 // This allows for the given key to be installed back into filesystem keyring.
194 // For more context see reloadKeyFromSessionKeyring.
installProvisioningKey(const KeyBuffer & key,const std::string & ref,const fscrypt_key_specifier & key_spec)195 static bool installProvisioningKey(const KeyBuffer& key, const std::string& ref,
196                                    const fscrypt_key_specifier& key_spec) {
197     key_serial_t device_keyring;
198     if (!fscryptKeyring(&device_keyring)) return false;
199 
200     // Place fscrypt_provisioning_key_payload into automatically zeroing buffer.
201     KeyBuffer buf(sizeof(fscrypt_provisioning_key_payload) + key.size(), 0);
202     fscrypt_provisioning_key_payload& provisioning_key =
203             *reinterpret_cast<fscrypt_provisioning_key_payload*>(buf.data());
204     memcpy(provisioning_key.raw, key.data(), key.size());
205     provisioning_key.type = key_spec.type;
206 
207     key_serial_t key_id = add_key("fscrypt-provisioning", ref.c_str(), (void*)&provisioning_key,
208                                   buf.size(), device_keyring);
209     if (key_id == -1) {
210         PLOG(ERROR) << "Failed to insert fscrypt-provisioning key for " << ref
211                     << " into session keyring";
212         return false;
213     }
214     LOG(DEBUG) << "Added fscrypt-provisioning key for " << ref << " to session keyring";
215     return true;
216 }
217 
218 // Build a struct fscrypt_key_specifier for use in the key management ioctls.
buildKeySpecifier(fscrypt_key_specifier * spec,const EncryptionPolicy & policy)219 static bool buildKeySpecifier(fscrypt_key_specifier* spec, const EncryptionPolicy& policy) {
220     switch (policy.options.version) {
221         case 1:
222             if (policy.key_raw_ref.size() != FSCRYPT_KEY_DESCRIPTOR_SIZE) {
223                 LOG(ERROR) << "Invalid key specifier size for v1 encryption policy: "
224                            << policy.key_raw_ref.size();
225                 return false;
226             }
227             spec->type = FSCRYPT_KEY_SPEC_TYPE_DESCRIPTOR;
228             memcpy(spec->u.descriptor, policy.key_raw_ref.c_str(), FSCRYPT_KEY_DESCRIPTOR_SIZE);
229             return true;
230         case 2:
231             if (policy.key_raw_ref.size() != FSCRYPT_KEY_IDENTIFIER_SIZE) {
232                 LOG(ERROR) << "Invalid key specifier size for v2 encryption policy: "
233                            << policy.key_raw_ref.size();
234                 return false;
235             }
236             spec->type = FSCRYPT_KEY_SPEC_TYPE_IDENTIFIER;
237             memcpy(spec->u.identifier, policy.key_raw_ref.c_str(), FSCRYPT_KEY_IDENTIFIER_SIZE);
238             return true;
239         default:
240             LOG(ERROR) << "Invalid encryption policy version: " << policy.options.version;
241             return false;
242     }
243 }
244 
245 // Installs key into keyring of a filesystem mounted on |mountpoint|.
246 //
247 // It's callers responsibility to fill key specifier, and either arg->raw or arg->key_id.
248 //
249 // In case arg->key_spec.type equals to FSCRYPT_KEY_SPEC_TYPE_IDENTIFIER
250 // arg->key_spec.u.identifier will be populated with raw key reference generated
251 // by kernel.
252 //
253 // For documentation on difference between arg->raw and arg->key_id see
254 // https://www.kernel.org/doc/html/latest/filesystems/fscrypt.html#fs-ioc-add-encryption-key
installFsKeyringKey(const std::string & mountpoint,const EncryptionOptions & options,fscrypt_add_key_arg * arg)255 static bool installFsKeyringKey(const std::string& mountpoint, const EncryptionOptions& options,
256                                 fscrypt_add_key_arg* arg) {
257     if (options.use_hw_wrapped_key) arg->__flags |= __FSCRYPT_ADD_KEY_FLAG_HW_WRAPPED;
258 
259     android::base::unique_fd fd(open(mountpoint.c_str(), O_RDONLY | O_DIRECTORY | O_CLOEXEC));
260     if (fd == -1) {
261         PLOG(ERROR) << "Failed to open " << mountpoint << " to install key";
262         return false;
263     }
264 
265     if (ioctl(fd, FS_IOC_ADD_ENCRYPTION_KEY, arg) != 0) {
266         PLOG(ERROR) << "Failed to install fscrypt key to " << mountpoint;
267         return false;
268     }
269 
270     return true;
271 }
272 
installKey(const std::string & mountpoint,const EncryptionOptions & options,const KeyBuffer & key,EncryptionPolicy * policy)273 bool installKey(const std::string& mountpoint, const EncryptionOptions& options,
274                 const KeyBuffer& key, EncryptionPolicy* policy) {
275     const std::lock_guard<std::mutex> lock(fscrypt_keyring_mutex);
276     policy->options = options;
277     // Put the fscrypt_add_key_arg in an automatically-zeroing buffer, since we
278     // have to copy the raw key into it.
279     KeyBuffer arg_buf(sizeof(struct fscrypt_add_key_arg) + key.size(), 0);
280     struct fscrypt_add_key_arg* arg = (struct fscrypt_add_key_arg*)arg_buf.data();
281 
282     // Initialize the "key specifier", which is like a name for the key.
283     switch (options.version) {
284         case 1:
285             // A key for a v1 policy is specified by an arbitrary 8-byte
286             // "descriptor", which must be provided by userspace.  We use the
287             // first 8 bytes from the double SHA-512 of the key itself.
288             policy->key_raw_ref = generateKeyRef((const uint8_t*)key.data(), key.size());
289             if (!isFsKeyringSupported()) {
290                 return installKeyLegacy(key, policy->key_raw_ref);
291             }
292             if (!buildKeySpecifier(&arg->key_spec, *policy)) {
293                 return false;
294             }
295             break;
296         case 2:
297             // A key for a v2 policy is specified by an 16-byte "identifier",
298             // which is a cryptographic hash of the key itself which the kernel
299             // computes and returns.  Any user-provided value is ignored; we
300             // just need to set the specifier type to indicate that we're adding
301             // this type of key.
302             arg->key_spec.type = FSCRYPT_KEY_SPEC_TYPE_IDENTIFIER;
303             break;
304         default:
305             LOG(ERROR) << "Invalid encryption policy version: " << options.version;
306             return false;
307     }
308 
309     arg->raw_size = key.size();
310     memcpy(arg->raw, key.data(), key.size());
311 
312     if (!installFsKeyringKey(mountpoint, options, arg)) return false;
313 
314     if (arg->key_spec.type == FSCRYPT_KEY_SPEC_TYPE_IDENTIFIER) {
315         // Retrieve the key identifier that the kernel computed.
316         policy->key_raw_ref =
317                 std::string((char*)arg->key_spec.u.identifier, FSCRYPT_KEY_IDENTIFIER_SIZE);
318     }
319     std::string ref = keyrefstring(policy->key_raw_ref);
320     LOG(DEBUG) << "Installed fscrypt key with ref " << ref << " to " << mountpoint;
321 
322     if (!installProvisioningKey(key, ref, arg->key_spec)) return false;
323     return true;
324 }
325 
326 // Remove an encryption key of type "logon" from the global session keyring.
evictKeyLegacy(const std::string & raw_ref)327 static bool evictKeyLegacy(const std::string& raw_ref) {
328     key_serial_t device_keyring;
329     if (!fscryptKeyring(&device_keyring)) return false;
330     bool success = true;
331     for (char const* const* name_prefix = NAME_PREFIXES; *name_prefix != nullptr; name_prefix++) {
332         auto ref = buildLegacyKeyName(*name_prefix, raw_ref);
333         auto key_serial = keyctl_search(device_keyring, "logon", ref.c_str(), 0);
334 
335         // Unlink the key from the keyring.  Prefer unlinking to revoking or
336         // invalidating, since unlinking is actually no less secure currently, and
337         // it avoids bugs in certain kernel versions where the keyring key is
338         // referenced from places it shouldn't be.
339         if (keyctl_unlink(key_serial, device_keyring) != 0) {
340             PLOG(ERROR) << "Failed to unlink key with serial " << key_serial << " ref " << ref;
341             success = false;
342         } else {
343             LOG(DEBUG) << "Unlinked key with serial " << key_serial << " ref " << ref;
344         }
345     }
346     return success;
347 }
348 
evictProvisioningKey(const std::string & ref)349 static bool evictProvisioningKey(const std::string& ref) {
350     key_serial_t device_keyring;
351     if (!fscryptKeyring(&device_keyring)) {
352         return false;
353     }
354 
355     auto key_serial = keyctl_search(device_keyring, "fscrypt-provisioning", ref.c_str(), 0);
356     if (key_serial == -1 && errno != ENOKEY) {
357         PLOG(ERROR) << "Error searching session keyring for fscrypt-provisioning key for " << ref;
358         return false;
359     }
360 
361     if (key_serial != -1 && keyctl_unlink(key_serial, device_keyring) != 0) {
362         PLOG(ERROR) << "Failed to unlink fscrypt-provisioning key for " << ref
363                     << " from session keyring";
364         return false;
365     }
366     return true;
367 }
368 
waitForBusyFiles(const struct fscrypt_key_specifier key_spec,const std::string ref,const std::string mountpoint)369 static void waitForBusyFiles(const struct fscrypt_key_specifier key_spec, const std::string ref,
370                              const std::string mountpoint) {
371     android::base::unique_fd fd(open(mountpoint.c_str(), O_RDONLY | O_DIRECTORY | O_CLOEXEC));
372     if (fd == -1) {
373         PLOG(ERROR) << "Failed to open " << mountpoint << " to evict key";
374         return;
375     }
376 
377     std::chrono::milliseconds wait_time(3200);
378     std::chrono::milliseconds total_wait_time(0);
379     while (wait_time <= std::chrono::milliseconds(51200)) {
380         total_wait_time += wait_time;
381         std::this_thread::sleep_for(wait_time);
382 
383         const std::lock_guard<std::mutex> lock(fscrypt_keyring_mutex);
384 
385         struct fscrypt_get_key_status_arg get_arg;
386         memset(&get_arg, 0, sizeof(get_arg));
387         get_arg.key_spec = key_spec;
388 
389         if (ioctl(fd, FS_IOC_GET_ENCRYPTION_KEY_STATUS, &get_arg) != 0) {
390             PLOG(ERROR) << "Failed to get status for fscrypt key with ref " << ref << " from "
391                         << mountpoint;
392             return;
393         }
394         if (get_arg.status != FSCRYPT_KEY_STATUS_INCOMPLETELY_REMOVED) {
395             LOG(DEBUG) << "Key status changed, cancelling busy file cleanup for key with ref "
396                        << ref << ".";
397             return;
398         }
399 
400         struct fscrypt_remove_key_arg remove_arg;
401         memset(&remove_arg, 0, sizeof(remove_arg));
402         remove_arg.key_spec = key_spec;
403 
404         if (ioctl(fd, FS_IOC_REMOVE_ENCRYPTION_KEY, &remove_arg) != 0) {
405             PLOG(ERROR) << "Failed to clean up busy files for fscrypt key with ref " << ref
406                         << " from " << mountpoint;
407             return;
408         }
409         if (remove_arg.removal_status_flags & FSCRYPT_KEY_REMOVAL_STATUS_FLAG_OTHER_USERS) {
410             // Should never happen because keys are only added/removed as root.
411             LOG(ERROR) << "Unexpected case: key with ref " << ref
412                        << " is still added by other users!";
413         } else if (!(remove_arg.removal_status_flags &
414                      FSCRYPT_KEY_REMOVAL_STATUS_FLAG_FILES_BUSY)) {
415             LOG(INFO) << "Successfully cleaned up busy files for key with ref " << ref
416                       << ".  After waiting " << total_wait_time.count() << "ms.";
417             return;
418         }
419         LOG(WARNING) << "Files still open after waiting " << total_wait_time.count()
420                      << "ms.  Key with ref " << ref << " still has unlocked files!";
421         wait_time *= 2;
422     }
423     LOG(ERROR) << "Waiting for files to close never completed.  Files using key with ref " << ref
424                << " were not locked!";
425 }
426 
evictKey(const std::string & mountpoint,const EncryptionPolicy & policy)427 bool evictKey(const std::string& mountpoint, const EncryptionPolicy& policy) {
428     const std::lock_guard<std::mutex> lock(fscrypt_keyring_mutex);
429     if (policy.options.version == 1 && !isFsKeyringSupported()) {
430         return evictKeyLegacy(policy.key_raw_ref);
431     }
432 
433     android::base::unique_fd fd(open(mountpoint.c_str(), O_RDONLY | O_DIRECTORY | O_CLOEXEC));
434     if (fd == -1) {
435         PLOG(ERROR) << "Failed to open " << mountpoint << " to evict key";
436         return false;
437     }
438 
439     struct fscrypt_remove_key_arg arg;
440     memset(&arg, 0, sizeof(arg));
441 
442     if (!buildKeySpecifier(&arg.key_spec, policy)) {
443         return false;
444     }
445 
446     std::string ref = keyrefstring(policy.key_raw_ref);
447 
448     if (ioctl(fd, FS_IOC_REMOVE_ENCRYPTION_KEY, &arg) != 0) {
449         PLOG(ERROR) << "Failed to evict fscrypt key with ref " << ref << " from " << mountpoint;
450         return false;
451     }
452 
453     LOG(DEBUG) << "Evicted fscrypt key with ref " << ref << " from " << mountpoint;
454     if (arg.removal_status_flags & FSCRYPT_KEY_REMOVAL_STATUS_FLAG_OTHER_USERS) {
455         // Should never happen because keys are only added/removed as root.
456         LOG(ERROR) << "Unexpected case: key with ref " << ref << " is still added by other users!";
457     } else if (arg.removal_status_flags & FSCRYPT_KEY_REMOVAL_STATUS_FLAG_FILES_BUSY) {
458         LOG(WARNING)
459                 << "Files still open after removing key with ref " << ref
460                 << ".  These files were not locked!  Punting busy file clean up to worker thread.";
461         // Processes are killed asynchronously in ActivityManagerService due to performance issues
462         // with synchronous kills.  If there were busy files they will probably be killed soon. Wait
463         // for them asynchronously.
464         std::thread busyFilesThread(waitForBusyFiles, arg.key_spec, ref, mountpoint);
465         busyFilesThread.detach();
466     }
467 
468     if (!evictProvisioningKey(ref)) return false;
469     return true;
470 }
471 
retrieveOrGenerateKey(const std::string & key_path,const std::string & tmp_path,const KeyAuthentication & key_authentication,const KeyGeneration & gen,KeyBuffer * key)472 bool retrieveOrGenerateKey(const std::string& key_path, const std::string& tmp_path,
473                            const KeyAuthentication& key_authentication, const KeyGeneration& gen,
474                            KeyBuffer* key) {
475     if (pathExists(key_path)) {
476         LOG(DEBUG) << "Key exists, using: " << key_path;
477         if (!retrieveKey(key_path, key_authentication, key)) return false;
478     } else {
479         if (!gen.allow_gen) {
480             LOG(ERROR) << "No key found in " << key_path;
481             return false;
482         }
483         LOG(INFO) << "Creating new key in " << key_path;
484         if (!generateStorageKey(gen, key)) return false;
485         if (!storeKeyAtomically(key_path, tmp_path, key_authentication, *key)) return false;
486     }
487     return true;
488 }
489 
reloadKeyFromSessionKeyring(const std::string & mountpoint,const EncryptionPolicy & policy)490 bool reloadKeyFromSessionKeyring(const std::string& mountpoint, const EncryptionPolicy& policy) {
491     key_serial_t device_keyring;
492     if (!fscryptKeyring(&device_keyring)) {
493         return false;
494     }
495 
496     std::string ref = keyrefstring(policy.key_raw_ref);
497     auto key_serial = keyctl_search(device_keyring, "fscrypt-provisioning", ref.c_str(), 0);
498     if (key_serial == -1) {
499         PLOG(ERROR) << "Failed to find fscrypt-provisioning key for " << ref
500                     << " in session keyring";
501         return false;
502     }
503 
504     LOG(DEBUG) << "Installing fscrypt-provisioning key for " << ref << " back into " << mountpoint
505                << " fs-keyring";
506 
507     struct fscrypt_add_key_arg arg;
508     memset(&arg, 0, sizeof(arg));
509     if (!buildKeySpecifier(&arg.key_spec, policy)) return false;
510     arg.key_id = key_serial;
511     if (!installFsKeyringKey(mountpoint, policy.options, &arg)) return false;
512 
513     return true;
514 }
515 
516 }  // namespace vold
517 }  // namespace android
518