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Janis Danisevskisb42fc182020-12-15 08:41:27 -08001// Copyright 2020, The Android Open Source Project
2//
3// Licensed under the Apache License, Version 2.0 (the "License");
4// you may not use this file except in compliance with the License.
5// You may obtain a copy of the License at
6//
7// http://www.apache.org/licenses/LICENSE-2.0
8//
9// Unless required by applicable law or agreed to in writing, software
10// distributed under the License is distributed on an "AS IS" BASIS,
11// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
12// See the License for the specific language governing permissions and
13// limitations under the License.
14
Janis Danisevskisb42fc182020-12-15 08:41:27 -080015use crate::{
Paul Crowley44c02da2021-04-08 17:04:43 +000016 boot_level_keys::{get_level_zero_key, BootLevelKeyCache},
Paul Crowley8d5b2532021-03-19 10:53:07 -070017 database::BlobMetaData,
18 database::BlobMetaEntry,
19 database::EncryptedBy,
20 database::KeyEntry,
21 database::KeyType,
Janis Danisevskisacebfa22021-05-25 10:56:10 -070022 database::{KeyEntryLoadBits, KeyIdGuard, KeyMetaData, KeyMetaEntry, KeystoreDB},
Paul Crowley8d5b2532021-03-19 10:53:07 -070023 ec_crypto::ECDHPrivateKey,
24 enforcements::Enforcements,
25 error::Error,
26 error::ResponseCode,
Paul Crowley618869e2021-04-08 20:30:54 -070027 key_parameter::{KeyParameter, KeyParameterValue},
Shaquille Johnsonaec2eca2022-11-30 17:08:05 +000028 ks_err,
Janis Danisevskis0ffb8a82022-02-06 22:37:21 -080029 legacy_importer::LegacyImporter,
Paul Crowley618869e2021-04-08 20:30:54 -070030 raw_device::KeyMintDevice,
Janis Danisevskisf84d0b02022-01-26 14:11:14 -080031 utils::{watchdog as wd, AesGcm, AID_KEYSTORE},
Janis Danisevskisb42fc182020-12-15 08:41:27 -080032};
Paul Crowley618869e2021-04-08 20:30:54 -070033use android_hardware_security_keymint::aidl::android::hardware::security::keymint::{
34 Algorithm::Algorithm, BlockMode::BlockMode, HardwareAuthToken::HardwareAuthToken,
35 HardwareAuthenticatorType::HardwareAuthenticatorType, KeyFormat::KeyFormat,
36 KeyParameter::KeyParameter as KmKeyParameter, KeyPurpose::KeyPurpose, PaddingMode::PaddingMode,
37 SecurityLevel::SecurityLevel,
38};
39use android_system_keystore2::aidl::android::system::keystore2::{
40 Domain::Domain, KeyDescriptor::KeyDescriptor,
41};
Janis Danisevskisb42fc182020-12-15 08:41:27 -080042use anyhow::{Context, Result};
43use keystore2_crypto::{
Paul Crowleyf61fee72021-03-17 14:38:44 -070044 aes_gcm_decrypt, aes_gcm_encrypt, generate_aes256_key, generate_salt, Password, ZVec,
45 AES_256_KEY_LENGTH,
Janis Danisevskisb42fc182020-12-15 08:41:27 -080046};
Joel Galenson7ead3a22021-07-29 15:27:34 -070047use rustutils::system_properties::PropertyWatcher;
Janis Danisevskisb42fc182020-12-15 08:41:27 -080048use std::{
49 collections::HashMap,
50 sync::Arc,
Janis Danisevskis0fd25a62022-01-04 19:53:37 -080051 sync::{Mutex, RwLock, Weak},
Janis Danisevskisb42fc182020-12-15 08:41:27 -080052};
Paul Crowley618869e2021-04-08 20:30:54 -070053use std::{convert::TryFrom, ops::Deref};
Janis Danisevskisb42fc182020-12-15 08:41:27 -080054
Paul Crowley44c02da2021-04-08 17:04:43 +000055const MAX_MAX_BOOT_LEVEL: usize = 1_000_000_000;
Paul Crowley618869e2021-04-08 20:30:54 -070056/// Allow up to 15 seconds between the user unlocking using a biometric, and the auth
57/// token being used to unlock in [`SuperKeyManager::try_unlock_user_with_biometric`].
58/// This seems short enough for security purposes, while long enough that even the
59/// very slowest device will present the auth token in time.
60const BIOMETRIC_AUTH_TIMEOUT_S: i32 = 15; // seconds
Paul Crowley44c02da2021-04-08 17:04:43 +000061
Janis Danisevskisb42fc182020-12-15 08:41:27 -080062type UserId = u32;
63
Paul Crowley8d5b2532021-03-19 10:53:07 -070064/// Encryption algorithm used by a particular type of superencryption key
65#[derive(Debug, Clone, Copy, PartialEq, Eq)]
66pub enum SuperEncryptionAlgorithm {
67 /// Symmetric encryption with AES-256-GCM
68 Aes256Gcm,
Paul Crowley52f017f2021-06-22 08:16:01 -070069 /// Public-key encryption with ECDH P-521
70 EcdhP521,
Paul Crowley8d5b2532021-03-19 10:53:07 -070071}
72
Paul Crowley7a658392021-03-18 17:08:20 -070073/// A particular user may have several superencryption keys in the database, each for a
74/// different purpose, distinguished by alias. Each is associated with a static
75/// constant of this type.
Janis Danisevskis11bd2592022-01-04 19:59:26 -080076pub struct SuperKeyType<'a> {
Janis Danisevskis0fd25a62022-01-04 19:53:37 -080077 /// Alias used to look up the key in the `persistent.keyentry` table.
Janis Danisevskis11bd2592022-01-04 19:59:26 -080078 pub alias: &'a str,
Paul Crowley8d5b2532021-03-19 10:53:07 -070079 /// Encryption algorithm
80 pub algorithm: SuperEncryptionAlgorithm,
Eric Biggers6745f532023-10-27 03:55:28 +000081 /// What to call this key in log messages. Not used for anything else.
82 pub name: &'a str,
Paul Crowley7a658392021-03-18 17:08:20 -070083}
84
Eric Biggers673d34a2023-10-18 01:54:18 +000085/// The user's AfterFirstUnlock super key. This super key is loaded into memory when the user first
86/// unlocks the device, and it remains in memory until the device reboots. This is used to encrypt
87/// keys that require user authentication but not an unlocked device.
Eric Biggers6745f532023-10-27 03:55:28 +000088pub const USER_AFTER_FIRST_UNLOCK_SUPER_KEY: SuperKeyType = SuperKeyType {
89 alias: "USER_SUPER_KEY",
90 algorithm: SuperEncryptionAlgorithm::Aes256Gcm,
91 name: "AfterFirstUnlock super key",
92};
93
Eric Biggersb1f641d2023-10-18 01:54:18 +000094/// The user's UnlockedDeviceRequired symmetric super key. This super key is loaded into memory each
95/// time the user unlocks the device, and it is cleared from memory each time the user locks the
96/// device. This is used to encrypt keys that use the UnlockedDeviceRequired key parameter.
97pub const USER_UNLOCKED_DEVICE_REQUIRED_SYMMETRIC_SUPER_KEY: SuperKeyType = SuperKeyType {
Paul Crowley8d5b2532021-03-19 10:53:07 -070098 alias: "USER_SCREEN_LOCK_BOUND_KEY",
99 algorithm: SuperEncryptionAlgorithm::Aes256Gcm,
Eric Biggers6745f532023-10-27 03:55:28 +0000100 name: "UnlockedDeviceRequired symmetric super key",
Paul Crowley8d5b2532021-03-19 10:53:07 -0700101};
Eric Biggers6745f532023-10-27 03:55:28 +0000102
Eric Biggersb1f641d2023-10-18 01:54:18 +0000103/// The user's UnlockedDeviceRequired asymmetric super key. This is used to allow, while the device
104/// is locked, the creation of keys that use the UnlockedDeviceRequired key parameter. The private
105/// part of this key is loaded and cleared when the symmetric key is loaded and cleared.
106pub const USER_UNLOCKED_DEVICE_REQUIRED_P521_SUPER_KEY: SuperKeyType = SuperKeyType {
Paul Crowley52f017f2021-06-22 08:16:01 -0700107 alias: "USER_SCREEN_LOCK_BOUND_P521_KEY",
108 algorithm: SuperEncryptionAlgorithm::EcdhP521,
Eric Biggers6745f532023-10-27 03:55:28 +0000109 name: "UnlockedDeviceRequired asymmetric super key",
Paul Crowley8d5b2532021-03-19 10:53:07 -0700110};
Paul Crowley7a658392021-03-18 17:08:20 -0700111
112/// Superencryption to apply to a new key.
113#[derive(Debug, Clone, Copy)]
114pub enum SuperEncryptionType {
115 /// Do not superencrypt this key.
116 None,
Eric Biggers673d34a2023-10-18 01:54:18 +0000117 /// Superencrypt with the AfterFirstUnlock super key.
118 AfterFirstUnlock,
Eric Biggersb1f641d2023-10-18 01:54:18 +0000119 /// Superencrypt with an UnlockedDeviceRequired super key.
120 UnlockedDeviceRequired,
Paul Crowley44c02da2021-04-08 17:04:43 +0000121 /// Superencrypt with a key based on the desired boot level
122 BootLevel(i32),
123}
124
125#[derive(Debug, Clone, Copy)]
126pub enum SuperKeyIdentifier {
127 /// id of the super key in the database.
128 DatabaseId(i64),
129 /// Boot level of the encrypting boot level key
130 BootLevel(i32),
131}
132
133impl SuperKeyIdentifier {
134 fn from_metadata(metadata: &BlobMetaData) -> Option<Self> {
135 if let Some(EncryptedBy::KeyId(key_id)) = metadata.encrypted_by() {
136 Some(SuperKeyIdentifier::DatabaseId(*key_id))
Paul Crowley44c02da2021-04-08 17:04:43 +0000137 } else {
Chris Wailesfe0abfe2021-07-21 11:39:57 -0700138 metadata.max_boot_level().map(|boot_level| SuperKeyIdentifier::BootLevel(*boot_level))
Paul Crowley44c02da2021-04-08 17:04:43 +0000139 }
140 }
141
142 fn add_to_metadata(&self, metadata: &mut BlobMetaData) {
143 match self {
144 SuperKeyIdentifier::DatabaseId(id) => {
145 metadata.add(BlobMetaEntry::EncryptedBy(EncryptedBy::KeyId(*id)));
146 }
147 SuperKeyIdentifier::BootLevel(level) => {
148 metadata.add(BlobMetaEntry::MaxBootLevel(*level));
149 }
150 }
151 }
Paul Crowley7a658392021-03-18 17:08:20 -0700152}
153
Hasini Gunasinghe0e161452021-01-27 19:34:37 +0000154pub struct SuperKey {
Paul Crowley8d5b2532021-03-19 10:53:07 -0700155 algorithm: SuperEncryptionAlgorithm,
Paul Crowley7a658392021-03-18 17:08:20 -0700156 key: ZVec,
Paul Crowley44c02da2021-04-08 17:04:43 +0000157 /// Identifier of the encrypting key, used to write an encrypted blob
158 /// back to the database after re-encryption eg on a key update.
159 id: SuperKeyIdentifier,
Paul Crowley8d5b2532021-03-19 10:53:07 -0700160 /// ECDH is more expensive than AES. So on ECDH private keys we set the
161 /// reencrypt_with field to point at the corresponding AES key, and the
162 /// keys will be re-encrypted with AES on first use.
163 reencrypt_with: Option<Arc<SuperKey>>,
Hasini Gunasinghe0e161452021-01-27 19:34:37 +0000164}
165
Janis Danisevskisf84d0b02022-01-26 14:11:14 -0800166impl AesGcm for SuperKey {
167 fn decrypt(&self, data: &[u8], iv: &[u8], tag: &[u8]) -> Result<ZVec> {
Paul Crowley8d5b2532021-03-19 10:53:07 -0700168 if self.algorithm == SuperEncryptionAlgorithm::Aes256Gcm {
Shaquille Johnsonaec2eca2022-11-30 17:08:05 +0000169 aes_gcm_decrypt(data, iv, tag, &self.key).context(ks_err!("Decryption failed."))
Paul Crowley8d5b2532021-03-19 10:53:07 -0700170 } else {
Shaquille Johnsonaec2eca2022-11-30 17:08:05 +0000171 Err(Error::sys()).context(ks_err!("Key is not an AES key."))
Janis Danisevskisf84d0b02022-01-26 14:11:14 -0800172 }
173 }
174
175 fn encrypt(&self, plaintext: &[u8]) -> Result<(Vec<u8>, Vec<u8>, Vec<u8>)> {
176 if self.algorithm == SuperEncryptionAlgorithm::Aes256Gcm {
Shaquille Johnsonaec2eca2022-11-30 17:08:05 +0000177 aes_gcm_encrypt(plaintext, &self.key).context(ks_err!("Encryption failed."))
Janis Danisevskisf84d0b02022-01-26 14:11:14 -0800178 } else {
Shaquille Johnsonaec2eca2022-11-30 17:08:05 +0000179 Err(Error::sys()).context(ks_err!("Key is not an AES key."))
Paul Crowley8d5b2532021-03-19 10:53:07 -0700180 }
Hasini Gunasinghe0e161452021-01-27 19:34:37 +0000181 }
Paul Crowleye8826e52021-03-31 08:33:53 -0700182}
Hasini Gunasinghe0e161452021-01-27 19:34:37 +0000183
Paul Crowley618869e2021-04-08 20:30:54 -0700184/// A SuperKey that has been encrypted with an AES-GCM key. For
185/// encryption the key is in memory, and for decryption it is in KM.
186struct LockedKey {
187 algorithm: SuperEncryptionAlgorithm,
188 id: SuperKeyIdentifier,
189 nonce: Vec<u8>,
190 ciphertext: Vec<u8>, // with tag appended
191}
192
193impl LockedKey {
194 fn new(key: &[u8], to_encrypt: &Arc<SuperKey>) -> Result<Self> {
195 let (mut ciphertext, nonce, mut tag) = aes_gcm_encrypt(&to_encrypt.key, key)?;
196 ciphertext.append(&mut tag);
197 Ok(LockedKey { algorithm: to_encrypt.algorithm, id: to_encrypt.id, nonce, ciphertext })
198 }
199
200 fn decrypt(
201 &self,
202 db: &mut KeystoreDB,
203 km_dev: &KeyMintDevice,
204 key_id_guard: &KeyIdGuard,
205 key_entry: &KeyEntry,
206 auth_token: &HardwareAuthToken,
207 reencrypt_with: Option<Arc<SuperKey>>,
208 ) -> Result<Arc<SuperKey>> {
Janis Danisevskisacebfa22021-05-25 10:56:10 -0700209 let key_blob = key_entry
210 .key_blob_info()
211 .as_ref()
212 .map(|(key_blob, _)| KeyBlob::Ref(key_blob))
213 .ok_or(Error::Rc(ResponseCode::KEY_NOT_FOUND))
Shaquille Johnsonaec2eca2022-11-30 17:08:05 +0000214 .context(ks_err!("Missing key blob info."))?;
Paul Crowley618869e2021-04-08 20:30:54 -0700215 let key_params = vec![
216 KeyParameterValue::Algorithm(Algorithm::AES),
217 KeyParameterValue::KeySize(256),
218 KeyParameterValue::BlockMode(BlockMode::GCM),
219 KeyParameterValue::PaddingMode(PaddingMode::NONE),
220 KeyParameterValue::Nonce(self.nonce.clone()),
221 KeyParameterValue::MacLength(128),
222 ];
223 let key_params: Vec<KmKeyParameter> = key_params.into_iter().map(|x| x.into()).collect();
224 let key = ZVec::try_from(km_dev.use_key_in_one_step(
225 db,
226 key_id_guard,
Janis Danisevskisacebfa22021-05-25 10:56:10 -0700227 &key_blob,
Paul Crowley618869e2021-04-08 20:30:54 -0700228 KeyPurpose::DECRYPT,
229 &key_params,
230 Some(auth_token),
231 &self.ciphertext,
232 )?)?;
233 Ok(Arc::new(SuperKey { algorithm: self.algorithm, key, id: self.id, reencrypt_with }))
234 }
235}
236
Eric Biggersb1f641d2023-10-18 01:54:18 +0000237/// A user's UnlockedDeviceRequired super keys, encrypted with a biometric-bound key, and
238/// information about that biometric-bound key.
Paul Crowley618869e2021-04-08 20:30:54 -0700239struct BiometricUnlock {
Eric Biggersb1f641d2023-10-18 01:54:18 +0000240 /// List of auth token SIDs that are accepted by the encrypting biometric-bound key.
Paul Crowley618869e2021-04-08 20:30:54 -0700241 sids: Vec<i64>,
Eric Biggersb1f641d2023-10-18 01:54:18 +0000242 /// Key descriptor of the encrypting biometric-bound key.
Paul Crowley618869e2021-04-08 20:30:54 -0700243 key_desc: KeyDescriptor,
Eric Biggersb1f641d2023-10-18 01:54:18 +0000244 /// The UnlockedDeviceRequired super keys, encrypted with a biometric-bound key.
245 symmetric: LockedKey,
246 private: LockedKey,
Paul Crowley618869e2021-04-08 20:30:54 -0700247}
248
Paul Crowleye8826e52021-03-31 08:33:53 -0700249#[derive(Default)]
250struct UserSuperKeys {
Eric Biggersb0478cf2023-10-27 03:55:29 +0000251 /// The AfterFirstUnlock super key is used for synthetic password binding of authentication
252 /// bound keys. There is one key per android user. The key is stored on flash encrypted with a
253 /// key derived from a secret, that is itself derived from the user's synthetic password. (In
254 /// most cases, the user's synthetic password can, in turn, only be decrypted using the user's
255 /// Lock Screen Knowledge Factor or LSKF.) When the user unlocks the device for the first time,
256 /// this key is unlocked, i.e., decrypted, and stays memory resident until the device reboots.
Eric Biggers673d34a2023-10-18 01:54:18 +0000257 after_first_unlock: Option<Arc<SuperKey>>,
Eric Biggersb1f641d2023-10-18 01:54:18 +0000258 /// The UnlockedDeviceRequired symmetric super key works like the AfterFirstUnlock super key
259 /// with the distinction that it is cleared from memory when the device is locked.
260 unlocked_device_required_symmetric: Option<Arc<SuperKey>>,
261 /// When the device is locked, keys that use the UnlockedDeviceRequired key parameter can still
262 /// be created, using ECDH public-key encryption. This field holds the decryption private key.
263 unlocked_device_required_private: Option<Arc<SuperKey>>,
Paul Crowley618869e2021-04-08 20:30:54 -0700264 /// Versions of the above two keys, locked behind a biometric.
265 biometric_unlock: Option<BiometricUnlock>,
Hasini Gunasinghe0e161452021-01-27 19:34:37 +0000266}
267
Janis Danisevskisb42fc182020-12-15 08:41:27 -0800268#[derive(Default)]
269struct SkmState {
270 user_keys: HashMap<UserId, UserSuperKeys>,
Paul Crowley7a658392021-03-18 17:08:20 -0700271 key_index: HashMap<i64, Weak<SuperKey>>,
Janis Danisevskis0fd25a62022-01-04 19:53:37 -0800272 boot_level_key_cache: Option<Mutex<BootLevelKeyCache>>,
Paul Crowley7a658392021-03-18 17:08:20 -0700273}
274
275impl SkmState {
Paul Crowley44c02da2021-04-08 17:04:43 +0000276 fn add_key_to_key_index(&mut self, super_key: &Arc<SuperKey>) -> Result<()> {
277 if let SuperKeyIdentifier::DatabaseId(id) = super_key.id {
278 self.key_index.insert(id, Arc::downgrade(super_key));
279 Ok(())
280 } else {
Shaquille Johnsonaec2eca2022-11-30 17:08:05 +0000281 Err(Error::sys()).context(ks_err!("Cannot add key with ID {:?}", super_key.id))
Paul Crowley44c02da2021-04-08 17:04:43 +0000282 }
Paul Crowley7a658392021-03-18 17:08:20 -0700283 }
Janis Danisevskisb42fc182020-12-15 08:41:27 -0800284}
285
286#[derive(Default)]
287pub struct SuperKeyManager {
Janis Danisevskis0fd25a62022-01-04 19:53:37 -0800288 data: SkmState,
Janis Danisevskisb42fc182020-12-15 08:41:27 -0800289}
290
291impl SuperKeyManager {
Janis Danisevskis0fd25a62022-01-04 19:53:37 -0800292 pub fn set_up_boot_level_cache(skm: &Arc<RwLock<Self>>, db: &mut KeystoreDB) -> Result<()> {
293 let mut skm_guard = skm.write().unwrap();
294 if skm_guard.data.boot_level_key_cache.is_some() {
Paul Crowley44c02da2021-04-08 17:04:43 +0000295 log::info!("In set_up_boot_level_cache: called for a second time");
296 return Ok(());
297 }
Shaquille Johnsonaec2eca2022-11-30 17:08:05 +0000298 let level_zero_key =
299 get_level_zero_key(db).context(ks_err!("get_level_zero_key failed"))?;
Janis Danisevskis0fd25a62022-01-04 19:53:37 -0800300 skm_guard.data.boot_level_key_cache =
301 Some(Mutex::new(BootLevelKeyCache::new(level_zero_key)));
Paul Crowley44c02da2021-04-08 17:04:43 +0000302 log::info!("Starting boot level watcher.");
Janis Danisevskis0fd25a62022-01-04 19:53:37 -0800303 let clone = skm.clone();
Paul Crowley44c02da2021-04-08 17:04:43 +0000304 std::thread::spawn(move || {
Janis Danisevskis0fd25a62022-01-04 19:53:37 -0800305 Self::watch_boot_level(clone)
Paul Crowley44c02da2021-04-08 17:04:43 +0000306 .unwrap_or_else(|e| log::error!("watch_boot_level failed:\n{:?}", e));
307 });
308 Ok(())
309 }
310
311 /// Watch the `keystore.boot_level` system property, and keep boot level up to date.
312 /// Blocks waiting for system property changes, so must be run in its own thread.
Janis Danisevskis0fd25a62022-01-04 19:53:37 -0800313 fn watch_boot_level(skm: Arc<RwLock<Self>>) -> Result<()> {
Paul Crowley44c02da2021-04-08 17:04:43 +0000314 let mut w = PropertyWatcher::new("keystore.boot_level")
Shaquille Johnsonaec2eca2022-11-30 17:08:05 +0000315 .context(ks_err!("PropertyWatcher::new failed"))?;
Paul Crowley44c02da2021-04-08 17:04:43 +0000316 loop {
317 let level = w
318 .read(|_n, v| v.parse::<usize>().map_err(std::convert::Into::into))
Shaquille Johnsonaec2eca2022-11-30 17:08:05 +0000319 .context(ks_err!("read of property failed"))?;
Janis Danisevskis0fd25a62022-01-04 19:53:37 -0800320
321 // This scope limits the skm_guard life, so we don't hold the skm_guard while
322 // waiting.
323 {
324 let mut skm_guard = skm.write().unwrap();
325 let boot_level_key_cache = skm_guard
326 .data
327 .boot_level_key_cache
Paul Crowley44c02da2021-04-08 17:04:43 +0000328 .as_mut()
Janis Danisevskis0fd25a62022-01-04 19:53:37 -0800329 .ok_or_else(Error::sys)
Shaquille Johnsonaec2eca2022-11-30 17:08:05 +0000330 .context(ks_err!("Boot level cache not initialized"))?
Janis Danisevskis0fd25a62022-01-04 19:53:37 -0800331 .get_mut()
332 .unwrap();
333 if level < MAX_MAX_BOOT_LEVEL {
334 log::info!("Read keystore.boot_level value {}", level);
335 boot_level_key_cache
336 .advance_boot_level(level)
Shaquille Johnsonaec2eca2022-11-30 17:08:05 +0000337 .context(ks_err!("advance_boot_level failed"))?;
Janis Danisevskis0fd25a62022-01-04 19:53:37 -0800338 } else {
339 log::info!(
340 "keystore.boot_level {} hits maximum {}, finishing.",
341 level,
342 MAX_MAX_BOOT_LEVEL
343 );
344 boot_level_key_cache.finish();
345 break;
346 }
Paul Crowley44c02da2021-04-08 17:04:43 +0000347 }
Andrew Walbran48fa9702023-05-10 15:19:30 +0000348 w.wait(None).context(ks_err!("property wait failed"))?;
Paul Crowley44c02da2021-04-08 17:04:43 +0000349 }
350 Ok(())
351 }
352
353 pub fn level_accessible(&self, boot_level: i32) -> bool {
354 self.data
Paul Crowley44c02da2021-04-08 17:04:43 +0000355 .boot_level_key_cache
356 .as_ref()
Janis Danisevskis0fd25a62022-01-04 19:53:37 -0800357 .map_or(false, |c| c.lock().unwrap().level_accessible(boot_level as usize))
Paul Crowley44c02da2021-04-08 17:04:43 +0000358 }
359
Janis Danisevskis0fd25a62022-01-04 19:53:37 -0800360 pub fn forget_all_keys_for_user(&mut self, user: UserId) {
361 self.data.user_keys.remove(&user);
Janis Danisevskisb42fc182020-12-15 08:41:27 -0800362 }
363
Eric Biggers673d34a2023-10-18 01:54:18 +0000364 fn install_after_first_unlock_key_for_user(
Janis Danisevskis0fd25a62022-01-04 19:53:37 -0800365 &mut self,
366 user: UserId,
367 super_key: Arc<SuperKey>,
368 ) -> Result<()> {
369 self.data
370 .add_key_to_key_index(&super_key)
Shaquille Johnsonaec2eca2022-11-30 17:08:05 +0000371 .context(ks_err!("add_key_to_key_index failed"))?;
Eric Biggers673d34a2023-10-18 01:54:18 +0000372 self.data.user_keys.entry(user).or_default().after_first_unlock = Some(super_key);
Paul Crowley44c02da2021-04-08 17:04:43 +0000373 Ok(())
Janis Danisevskisb42fc182020-12-15 08:41:27 -0800374 }
375
Paul Crowley44c02da2021-04-08 17:04:43 +0000376 fn lookup_key(&self, key_id: &SuperKeyIdentifier) -> Result<Option<Arc<SuperKey>>> {
Paul Crowley44c02da2021-04-08 17:04:43 +0000377 Ok(match key_id {
Janis Danisevskis0fd25a62022-01-04 19:53:37 -0800378 SuperKeyIdentifier::DatabaseId(id) => {
379 self.data.key_index.get(id).and_then(|k| k.upgrade())
380 }
381 SuperKeyIdentifier::BootLevel(level) => self
382 .data
Paul Crowley44c02da2021-04-08 17:04:43 +0000383 .boot_level_key_cache
Janis Danisevskis0fd25a62022-01-04 19:53:37 -0800384 .as_ref()
385 .map(|b| b.lock().unwrap().aes_key(*level as usize))
Paul Crowley44c02da2021-04-08 17:04:43 +0000386 .transpose()
Shaquille Johnsonaec2eca2022-11-30 17:08:05 +0000387 .context(ks_err!("aes_key failed"))?
Paul Crowley44c02da2021-04-08 17:04:43 +0000388 .flatten()
389 .map(|key| {
390 Arc::new(SuperKey {
391 algorithm: SuperEncryptionAlgorithm::Aes256Gcm,
392 key,
393 id: *key_id,
394 reencrypt_with: None,
395 })
396 }),
397 })
Janis Danisevskisb42fc182020-12-15 08:41:27 -0800398 }
399
Eric Biggers673d34a2023-10-18 01:54:18 +0000400 /// Returns the AfterFirstUnlock superencryption key for the given user ID, or None if the user
401 /// has not yet unlocked the device since boot.
402 pub fn get_after_first_unlock_key_by_user_id(
Janis Danisevskisf84d0b02022-01-26 14:11:14 -0800403 &self,
404 user_id: UserId,
405 ) -> Option<Arc<dyn AesGcm + Send + Sync>> {
Eric Biggers673d34a2023-10-18 01:54:18 +0000406 self.get_after_first_unlock_key_by_user_id_internal(user_id)
Janis Danisevskisf84d0b02022-01-26 14:11:14 -0800407 .map(|sk| -> Arc<dyn AesGcm + Send + Sync> { sk })
408 }
409
Eric Biggers673d34a2023-10-18 01:54:18 +0000410 fn get_after_first_unlock_key_by_user_id_internal(
411 &self,
412 user_id: UserId,
413 ) -> Option<Arc<SuperKey>> {
414 self.data.user_keys.get(&user_id).and_then(|e| e.after_first_unlock.as_ref().cloned())
Janis Danisevskisb42fc182020-12-15 08:41:27 -0800415 }
416
Paul Crowley44c02da2021-04-08 17:04:43 +0000417 /// Check if a given key is super-encrypted, from its metadata. If so, unwrap the key using
418 /// the relevant super key.
419 pub fn unwrap_key_if_required<'a>(
420 &self,
421 metadata: &BlobMetaData,
422 blob: &'a [u8],
423 ) -> Result<KeyBlob<'a>> {
424 Ok(if let Some(key_id) = SuperKeyIdentifier::from_metadata(metadata) {
425 let super_key = self
426 .lookup_key(&key_id)
Shaquille Johnsonaec2eca2022-11-30 17:08:05 +0000427 .context(ks_err!("lookup_key failed"))?
Paul Crowley44c02da2021-04-08 17:04:43 +0000428 .ok_or(Error::Rc(ResponseCode::LOCKED))
Shaquille Johnsonaec2eca2022-11-30 17:08:05 +0000429 .context(ks_err!("Required super decryption key is not in memory."))?;
Paul Crowley44c02da2021-04-08 17:04:43 +0000430 KeyBlob::Sensitive {
431 key: Self::unwrap_key_with_key(blob, metadata, &super_key)
Shaquille Johnsonaec2eca2022-11-30 17:08:05 +0000432 .context(ks_err!("unwrap_key_with_key failed"))?,
Paul Crowley44c02da2021-04-08 17:04:43 +0000433 reencrypt_with: super_key.reencrypt_with.as_ref().unwrap_or(&super_key).clone(),
434 force_reencrypt: super_key.reencrypt_with.is_some(),
435 }
Paul Crowleye8826e52021-03-31 08:33:53 -0700436 } else {
Paul Crowley44c02da2021-04-08 17:04:43 +0000437 KeyBlob::Ref(blob)
Paul Crowleye8826e52021-03-31 08:33:53 -0700438 })
Janis Danisevskisb42fc182020-12-15 08:41:27 -0800439 }
440
441 /// Unwraps an encrypted key blob given an encryption key.
Paul Crowley7a658392021-03-18 17:08:20 -0700442 fn unwrap_key_with_key(blob: &[u8], metadata: &BlobMetaData, key: &SuperKey) -> Result<ZVec> {
Paul Crowley8d5b2532021-03-19 10:53:07 -0700443 match key.algorithm {
444 SuperEncryptionAlgorithm::Aes256Gcm => match (metadata.iv(), metadata.aead_tag()) {
Shaquille Johnsonaec2eca2022-11-30 17:08:05 +0000445 (Some(iv), Some(tag)) => {
446 key.decrypt(blob, iv, tag).context(ks_err!("Failed to decrypt the key blob."))
447 }
448 (iv, tag) => Err(Error::Rc(ResponseCode::VALUE_CORRUPTED)).context(ks_err!(
449 "Key has incomplete metadata. Present: iv: {}, aead_tag: {}.",
Paul Crowley8d5b2532021-03-19 10:53:07 -0700450 iv.is_some(),
451 tag.is_some(),
452 )),
453 },
Paul Crowley52f017f2021-06-22 08:16:01 -0700454 SuperEncryptionAlgorithm::EcdhP521 => {
Paul Crowley8d5b2532021-03-19 10:53:07 -0700455 match (metadata.public_key(), metadata.salt(), metadata.iv(), metadata.aead_tag()) {
456 (Some(public_key), Some(salt), Some(iv), Some(aead_tag)) => {
457 ECDHPrivateKey::from_private_key(&key.key)
458 .and_then(|k| k.decrypt_message(public_key, salt, iv, blob, aead_tag))
Shaquille Johnsonaec2eca2022-11-30 17:08:05 +0000459 .context(ks_err!("Failed to decrypt the key blob with ECDH."))
Paul Crowley8d5b2532021-03-19 10:53:07 -0700460 }
461 (public_key, salt, iv, aead_tag) => {
Shaquille Johnsonaec2eca2022-11-30 17:08:05 +0000462 Err(Error::Rc(ResponseCode::VALUE_CORRUPTED)).context(ks_err!(
Paul Crowley8d5b2532021-03-19 10:53:07 -0700463 concat!(
Shaquille Johnsonaec2eca2022-11-30 17:08:05 +0000464 "Key has incomplete metadata. ",
Paul Crowley8d5b2532021-03-19 10:53:07 -0700465 "Present: public_key: {}, salt: {}, iv: {}, aead_tag: {}."
466 ),
467 public_key.is_some(),
468 salt.is_some(),
469 iv.is_some(),
470 aead_tag.is_some(),
471 ))
472 }
473 }
474 }
Janis Danisevskisb42fc182020-12-15 08:41:27 -0800475 }
476 }
Hasini Gunasinghe0e161452021-01-27 19:34:37 +0000477
Eric Biggersb0478cf2023-10-27 03:55:29 +0000478 /// Checks if the user's AfterFirstUnlock super key exists in the database (or legacy database).
Janis Danisevskis0fd25a62022-01-04 19:53:37 -0800479 /// The reference to self is unused but it is required to prevent calling this function
480 /// concurrently with skm state database changes.
481 fn super_key_exists_in_db_for_user(
482 &self,
Hasini Gunasinghe3ed5da72021-02-04 15:18:54 +0000483 db: &mut KeystoreDB,
Janis Danisevskis0ffb8a82022-02-06 22:37:21 -0800484 legacy_importer: &LegacyImporter,
Paul Crowley7a658392021-03-18 17:08:20 -0700485 user_id: UserId,
Hasini Gunasinghe3ed5da72021-02-04 15:18:54 +0000486 ) -> Result<bool> {
Hasini Gunasinghe0e161452021-01-27 19:34:37 +0000487 let key_in_db = db
Eric Biggers673d34a2023-10-18 01:54:18 +0000488 .key_exists(
489 Domain::APP,
490 user_id as u64 as i64,
491 USER_AFTER_FIRST_UNLOCK_SUPER_KEY.alias,
492 KeyType::Super,
493 )
Shaquille Johnsonaec2eca2022-11-30 17:08:05 +0000494 .context(ks_err!())?;
Hasini Gunasinghe0e161452021-01-27 19:34:37 +0000495
496 if key_in_db {
497 Ok(key_in_db)
498 } else {
Shaquille Johnsonaec2eca2022-11-30 17:08:05 +0000499 legacy_importer.has_super_key(user_id).context(ks_err!("Trying to query legacy db."))
Hasini Gunasinghe0e161452021-01-27 19:34:37 +0000500 }
501 }
Hasini Gunasingheda895552021-01-27 19:34:37 +0000502
Janis Danisevskis0fd25a62022-01-04 19:53:37 -0800503 // Helper function to populate super key cache from the super key blob loaded from the database.
Hasini Gunasingheda895552021-01-27 19:34:37 +0000504 fn populate_cache_from_super_key_blob(
Janis Danisevskis0fd25a62022-01-04 19:53:37 -0800505 &mut self,
Paul Crowley7a658392021-03-18 17:08:20 -0700506 user_id: UserId,
Paul Crowley8d5b2532021-03-19 10:53:07 -0700507 algorithm: SuperEncryptionAlgorithm,
Hasini Gunasingheda895552021-01-27 19:34:37 +0000508 entry: KeyEntry,
Paul Crowleyf61fee72021-03-17 14:38:44 -0700509 pw: &Password,
Paul Crowley7a658392021-03-18 17:08:20 -0700510 ) -> Result<Arc<SuperKey>> {
Paul Crowley8d5b2532021-03-19 10:53:07 -0700511 let super_key = Self::extract_super_key_from_key_entry(algorithm, entry, pw, None)
Shaquille Johnsonaec2eca2022-11-30 17:08:05 +0000512 .context(ks_err!("Failed to extract super key from key entry"))?;
Eric Biggers673d34a2023-10-18 01:54:18 +0000513 self.install_after_first_unlock_key_for_user(user_id, super_key.clone())
514 .context(ks_err!("Failed to install AfterFirstUnlock super key for user!"))?;
Hasini Gunasingheda895552021-01-27 19:34:37 +0000515 Ok(super_key)
516 }
517
Janis Danisevskis0fd25a62022-01-04 19:53:37 -0800518 /// Extracts super key from the entry loaded from the database.
Paul Crowley7a658392021-03-18 17:08:20 -0700519 pub fn extract_super_key_from_key_entry(
Paul Crowley8d5b2532021-03-19 10:53:07 -0700520 algorithm: SuperEncryptionAlgorithm,
Paul Crowley7a658392021-03-18 17:08:20 -0700521 entry: KeyEntry,
522 pw: &Password,
Paul Crowley8d5b2532021-03-19 10:53:07 -0700523 reencrypt_with: Option<Arc<SuperKey>>,
Paul Crowley7a658392021-03-18 17:08:20 -0700524 ) -> Result<Arc<SuperKey>> {
Hasini Gunasingheda895552021-01-27 19:34:37 +0000525 if let Some((blob, metadata)) = entry.key_blob_info() {
526 let key = match (
527 metadata.encrypted_by(),
528 metadata.salt(),
529 metadata.iv(),
530 metadata.aead_tag(),
531 ) {
532 (Some(&EncryptedBy::Password), Some(salt), Some(iv), Some(tag)) => {
Janis Danisevskis0fd25a62022-01-04 19:53:37 -0800533 // Note that password encryption is AES no matter the value of algorithm.
Shaquille Johnsonaec2eca2022-11-30 17:08:05 +0000534 let key = pw
535 .derive_key(salt, AES_256_KEY_LENGTH)
536 .context(ks_err!("Failed to generate key from password."))?;
Hasini Gunasingheda895552021-01-27 19:34:37 +0000537
Shaquille Johnsonaec2eca2022-11-30 17:08:05 +0000538 aes_gcm_decrypt(blob, iv, tag, &key)
539 .context(ks_err!("Failed to decrypt key blob."))?
Hasini Gunasingheda895552021-01-27 19:34:37 +0000540 }
541 (enc_by, salt, iv, tag) => {
Shaquille Johnsonaec2eca2022-11-30 17:08:05 +0000542 return Err(Error::Rc(ResponseCode::VALUE_CORRUPTED)).context(ks_err!(
Hasini Gunasingheda895552021-01-27 19:34:37 +0000543 concat!(
Shaquille Johnsonaec2eca2022-11-30 17:08:05 +0000544 "Super key has incomplete metadata.",
545 "encrypted_by: {:?}; Present: salt: {}, iv: {}, aead_tag: {}."
546 ),
Paul Crowleye8826e52021-03-31 08:33:53 -0700547 enc_by,
Hasini Gunasingheda895552021-01-27 19:34:37 +0000548 salt.is_some(),
549 iv.is_some(),
550 tag.is_some()
551 ));
552 }
553 };
Paul Crowley44c02da2021-04-08 17:04:43 +0000554 Ok(Arc::new(SuperKey {
555 algorithm,
556 key,
557 id: SuperKeyIdentifier::DatabaseId(entry.id()),
558 reencrypt_with,
559 }))
Hasini Gunasingheda895552021-01-27 19:34:37 +0000560 } else {
Shaquille Johnsonaec2eca2022-11-30 17:08:05 +0000561 Err(Error::Rc(ResponseCode::VALUE_CORRUPTED)).context(ks_err!("No key blob info."))
Hasini Gunasingheda895552021-01-27 19:34:37 +0000562 }
563 }
564
565 /// Encrypts the super key from a key derived from the password, before storing in the database.
Paul Crowleyf61fee72021-03-17 14:38:44 -0700566 pub fn encrypt_with_password(
567 super_key: &[u8],
568 pw: &Password,
569 ) -> Result<(Vec<u8>, BlobMetaData)> {
Hasini Gunasingheda895552021-01-27 19:34:37 +0000570 let salt = generate_salt().context("In encrypt_with_password: Failed to generate salt.")?;
Paul Crowleyf61fee72021-03-17 14:38:44 -0700571 let derived_key = pw
David Drysdale6a0ec2c2022-04-19 08:11:18 +0100572 .derive_key(&salt, AES_256_KEY_LENGTH)
Shaquille Johnsonaec2eca2022-11-30 17:08:05 +0000573 .context(ks_err!("Failed to derive password."))?;
Hasini Gunasingheda895552021-01-27 19:34:37 +0000574 let mut metadata = BlobMetaData::new();
575 metadata.add(BlobMetaEntry::EncryptedBy(EncryptedBy::Password));
576 metadata.add(BlobMetaEntry::Salt(salt));
577 let (encrypted_key, iv, tag) = aes_gcm_encrypt(super_key, &derived_key)
Shaquille Johnsonaec2eca2022-11-30 17:08:05 +0000578 .context(ks_err!("Failed to encrypt new super key."))?;
Hasini Gunasingheda895552021-01-27 19:34:37 +0000579 metadata.add(BlobMetaEntry::Iv(iv));
580 metadata.add(BlobMetaEntry::AeadTag(tag));
581 Ok((encrypted_key, metadata))
582 }
Hasini Gunasinghedeab85d2021-02-01 21:10:02 +0000583
Janis Danisevskis0fd25a62022-01-04 19:53:37 -0800584 // Helper function to encrypt a key with the given super key. Callers should select which super
585 // key to be used. This is called when a key is super encrypted at its creation as well as at
586 // its upgrade.
Paul Crowley8d5b2532021-03-19 10:53:07 -0700587 fn encrypt_with_aes_super_key(
Hasini Gunasinghedeab85d2021-02-01 21:10:02 +0000588 key_blob: &[u8],
589 super_key: &SuperKey,
590 ) -> Result<(Vec<u8>, BlobMetaData)> {
Paul Crowley8d5b2532021-03-19 10:53:07 -0700591 if super_key.algorithm != SuperEncryptionAlgorithm::Aes256Gcm {
Shaquille Johnsonaec2eca2022-11-30 17:08:05 +0000592 return Err(Error::sys()).context(ks_err!("unexpected algorithm"));
Paul Crowley8d5b2532021-03-19 10:53:07 -0700593 }
Hasini Gunasinghedeab85d2021-02-01 21:10:02 +0000594 let mut metadata = BlobMetaData::new();
595 let (encrypted_key, iv, tag) = aes_gcm_encrypt(key_blob, &(super_key.key))
Shaquille Johnsonaec2eca2022-11-30 17:08:05 +0000596 .context(ks_err!("Failed to encrypt new super key."))?;
Hasini Gunasinghedeab85d2021-02-01 21:10:02 +0000597 metadata.add(BlobMetaEntry::Iv(iv));
598 metadata.add(BlobMetaEntry::AeadTag(tag));
Paul Crowley44c02da2021-04-08 17:04:43 +0000599 super_key.id.add_to_metadata(&mut metadata);
Hasini Gunasinghedeab85d2021-02-01 21:10:02 +0000600 Ok((encrypted_key, metadata))
601 }
602
Nathan Huckleberryf9494d12023-03-30 01:22:18 +0000603 // Encrypts a given key_blob using a hybrid approach, which can either use the symmetric super
604 // key or the public super key depending on which is available.
605 //
606 // If the symmetric_key is available, the key_blob is encrypted using symmetric encryption with
607 // the provided symmetric super key. Otherwise, the function loads the public super key from
608 // the KeystoreDB and encrypts the key_blob using ECDH encryption and marks the keyblob to be
609 // re-encrypted with the symmetric super key on the first use.
610 //
Eric Biggersb1f641d2023-10-18 01:54:18 +0000611 // This hybrid scheme allows keys that use the UnlockedDeviceRequired key parameter to be
612 // created while the device is locked.
Nathan Huckleberryf9494d12023-03-30 01:22:18 +0000613 fn encrypt_with_hybrid_super_key(
614 key_blob: &[u8],
615 symmetric_key: Option<&SuperKey>,
616 public_key_type: &SuperKeyType,
617 db: &mut KeystoreDB,
618 user_id: UserId,
619 ) -> Result<(Vec<u8>, BlobMetaData)> {
620 if let Some(super_key) = symmetric_key {
Eric Biggersb1f641d2023-10-18 01:54:18 +0000621 Self::encrypt_with_aes_super_key(key_blob, super_key).context(ks_err!(
622 "Failed to encrypt with UnlockedDeviceRequired symmetric super key."
623 ))
Nathan Huckleberryf9494d12023-03-30 01:22:18 +0000624 } else {
625 // Symmetric key is not available, use public key encryption
626 let loaded = db
627 .load_super_key(public_key_type, user_id)
628 .context(ks_err!("load_super_key failed."))?;
629 let (key_id_guard, key_entry) =
630 loaded.ok_or_else(Error::sys).context(ks_err!("User ECDH super key missing."))?;
631 let public_key = key_entry
632 .metadata()
633 .sec1_public_key()
634 .ok_or_else(Error::sys)
635 .context(ks_err!("sec1_public_key missing."))?;
636 let mut metadata = BlobMetaData::new();
637 let (ephem_key, salt, iv, encrypted_key, aead_tag) =
638 ECDHPrivateKey::encrypt_message(public_key, key_blob)
639 .context(ks_err!("ECDHPrivateKey::encrypt_message failed."))?;
640 metadata.add(BlobMetaEntry::PublicKey(ephem_key));
641 metadata.add(BlobMetaEntry::Salt(salt));
642 metadata.add(BlobMetaEntry::Iv(iv));
643 metadata.add(BlobMetaEntry::AeadTag(aead_tag));
644 SuperKeyIdentifier::DatabaseId(key_id_guard.id()).add_to_metadata(&mut metadata);
645 Ok((encrypted_key, metadata))
646 }
647 }
648
Hasini Gunasinghedeab85d2021-02-01 21:10:02 +0000649 /// Check if super encryption is required and if so, super-encrypt the key to be stored in
650 /// the database.
Paul Crowley618869e2021-04-08 20:30:54 -0700651 #[allow(clippy::too_many_arguments)]
Hasini Gunasinghedeab85d2021-02-01 21:10:02 +0000652 pub fn handle_super_encryption_on_key_init(
Hasini Gunasinghe3ed5da72021-02-04 15:18:54 +0000653 &self,
Hasini Gunasinghedeab85d2021-02-01 21:10:02 +0000654 db: &mut KeystoreDB,
Janis Danisevskis0ffb8a82022-02-06 22:37:21 -0800655 legacy_importer: &LegacyImporter,
Hasini Gunasinghedeab85d2021-02-01 21:10:02 +0000656 domain: &Domain,
657 key_parameters: &[KeyParameter],
658 flags: Option<i32>,
Paul Crowley7a658392021-03-18 17:08:20 -0700659 user_id: UserId,
Hasini Gunasinghedeab85d2021-02-01 21:10:02 +0000660 key_blob: &[u8],
661 ) -> Result<(Vec<u8>, BlobMetaData)> {
Paul Crowley7a658392021-03-18 17:08:20 -0700662 match Enforcements::super_encryption_required(domain, key_parameters, flags) {
663 SuperEncryptionType::None => Ok((key_blob.to_vec(), BlobMetaData::new())),
Eric Biggers673d34a2023-10-18 01:54:18 +0000664 SuperEncryptionType::AfterFirstUnlock => {
665 // Encrypt the given key blob with the user's AfterFirstUnlock super key. If the
Eric Biggersb0478cf2023-10-27 03:55:29 +0000666 // user has not unlocked the device since boot or the super keys were never
667 // initialized for the user for some reason, an error is returned.
Nathan Huckleberrya405d0e2023-03-28 18:01:43 +0000668 match self
669 .get_user_state(db, legacy_importer, user_id)
David Drysdalee85523f2023-06-19 12:28:53 +0100670 .context(ks_err!("Failed to get user state for user {user_id}"))?
Nathan Huckleberrya405d0e2023-03-28 18:01:43 +0000671 {
Eric Biggers673d34a2023-10-18 01:54:18 +0000672 UserState::AfterFirstUnlock(super_key) => {
673 Self::encrypt_with_aes_super_key(key_blob, &super_key).context(ks_err!(
674 "Failed to encrypt with AfterFirstUnlock super key for user {user_id}"
675 ))
676 }
Eric Biggers13869372023-10-18 01:54:18 +0000677 UserState::BeforeFirstUnlock => {
Nathan Huckleberrya405d0e2023-03-28 18:01:43 +0000678 Err(Error::Rc(ResponseCode::LOCKED)).context(ks_err!("Device is locked."))
679 }
680 UserState::Uninitialized => Err(Error::Rc(ResponseCode::UNINITIALIZED))
Eric Biggersb0478cf2023-10-27 03:55:29 +0000681 .context(ks_err!("User {user_id} does not have super keys")),
Nathan Huckleberrya405d0e2023-03-28 18:01:43 +0000682 }
683 }
Eric Biggersb1f641d2023-10-18 01:54:18 +0000684 SuperEncryptionType::UnlockedDeviceRequired => {
685 let symmetric_key = self
Nathan Huckleberryf9494d12023-03-30 01:22:18 +0000686 .data
687 .user_keys
688 .get(&user_id)
Eric Biggersb1f641d2023-10-18 01:54:18 +0000689 .and_then(|e| e.unlocked_device_required_symmetric.as_ref())
Nathan Huckleberryf9494d12023-03-30 01:22:18 +0000690 .map(|arc| arc.as_ref());
691 Self::encrypt_with_hybrid_super_key(
692 key_blob,
Eric Biggersb1f641d2023-10-18 01:54:18 +0000693 symmetric_key,
694 &USER_UNLOCKED_DEVICE_REQUIRED_P521_SUPER_KEY,
Nathan Huckleberryf9494d12023-03-30 01:22:18 +0000695 db,
696 user_id,
697 )
Eric Biggersb1f641d2023-10-18 01:54:18 +0000698 .context(ks_err!("Failed to encrypt with UnlockedDeviceRequired hybrid scheme."))
Paul Crowley7a658392021-03-18 17:08:20 -0700699 }
Paul Crowley44c02da2021-04-08 17:04:43 +0000700 SuperEncryptionType::BootLevel(level) => {
701 let key_id = SuperKeyIdentifier::BootLevel(level);
702 let super_key = self
703 .lookup_key(&key_id)
Shaquille Johnsonaec2eca2022-11-30 17:08:05 +0000704 .context(ks_err!("lookup_key failed"))?
Paul Crowley44c02da2021-04-08 17:04:43 +0000705 .ok_or(Error::Rc(ResponseCode::LOCKED))
Shaquille Johnsonaec2eca2022-11-30 17:08:05 +0000706 .context(ks_err!("Boot stage key absent"))?;
707 Self::encrypt_with_aes_super_key(key_blob, &super_key)
708 .context(ks_err!("Failed to encrypt with BootLevel key."))
Paul Crowley44c02da2021-04-08 17:04:43 +0000709 }
Hasini Gunasinghedeab85d2021-02-01 21:10:02 +0000710 }
711 }
712
713 /// Check if a given key needs re-super-encryption, from its KeyBlob type.
714 /// If so, re-super-encrypt the key and return a new set of metadata,
715 /// containing the new super encryption information.
Paul Crowley7a658392021-03-18 17:08:20 -0700716 pub fn reencrypt_if_required<'a>(
Hasini Gunasinghedeab85d2021-02-01 21:10:02 +0000717 key_blob_before_upgrade: &KeyBlob,
718 key_after_upgrade: &'a [u8],
719 ) -> Result<(KeyBlob<'a>, Option<BlobMetaData>)> {
720 match key_blob_before_upgrade {
Paul Crowley7a658392021-03-18 17:08:20 -0700721 KeyBlob::Sensitive { reencrypt_with: super_key, .. } => {
Paul Crowley8d5b2532021-03-19 10:53:07 -0700722 let (key, metadata) =
723 Self::encrypt_with_aes_super_key(key_after_upgrade, super_key)
Shaquille Johnsonaec2eca2022-11-30 17:08:05 +0000724 .context(ks_err!("Failed to re-super-encrypt key."))?;
Hasini Gunasinghedeab85d2021-02-01 21:10:02 +0000725 Ok((KeyBlob::NonSensitive(key), Some(metadata)))
726 }
727 _ => Ok((KeyBlob::Ref(key_after_upgrade), None)),
728 }
729 }
730
Eric Biggers456a3a62023-10-27 03:55:28 +0000731 fn create_super_key(
732 &mut self,
733 db: &mut KeystoreDB,
734 user_id: UserId,
735 key_type: &SuperKeyType,
736 password: &Password,
737 reencrypt_with: Option<Arc<SuperKey>>,
738 ) -> Result<Arc<SuperKey>> {
Eric Biggers6745f532023-10-27 03:55:28 +0000739 log::info!("Creating {} for user {}", key_type.name, user_id);
Eric Biggers456a3a62023-10-27 03:55:28 +0000740 let (super_key, public_key) = match key_type.algorithm {
741 SuperEncryptionAlgorithm::Aes256Gcm => {
742 (generate_aes256_key().context(ks_err!("Failed to generate AES-256 key."))?, None)
743 }
744 SuperEncryptionAlgorithm::EcdhP521 => {
745 let key =
746 ECDHPrivateKey::generate().context(ks_err!("Failed to generate ECDH key"))?;
747 (
748 key.private_key().context(ks_err!("private_key failed"))?,
749 Some(key.public_key().context(ks_err!("public_key failed"))?),
750 )
751 }
752 };
753 // Derive an AES-256 key from the password and re-encrypt the super key before we insert it
754 // in the database.
755 let (encrypted_super_key, blob_metadata) =
756 Self::encrypt_with_password(&super_key, password).context(ks_err!())?;
757 let mut key_metadata = KeyMetaData::new();
758 if let Some(pk) = public_key {
759 key_metadata.add(KeyMetaEntry::Sec1PublicKey(pk));
760 }
761 let key_entry = db
762 .store_super_key(user_id, key_type, &encrypted_super_key, &blob_metadata, &key_metadata)
763 .context(ks_err!("Failed to store super key."))?;
764 Ok(Arc::new(SuperKey {
765 algorithm: key_type.algorithm,
766 key: super_key,
767 id: SuperKeyIdentifier::DatabaseId(key_entry.id()),
768 reencrypt_with,
769 }))
770 }
771
Paul Crowley7a658392021-03-18 17:08:20 -0700772 /// Fetch a superencryption key from the database, or create it if it doesn't already exist.
773 /// When this is called, the caller must hold the lock on the SuperKeyManager.
774 /// So it's OK that the check and creation are different DB transactions.
775 fn get_or_create_super_key(
Janis Danisevskis0fd25a62022-01-04 19:53:37 -0800776 &mut self,
Paul Crowley7a658392021-03-18 17:08:20 -0700777 db: &mut KeystoreDB,
778 user_id: UserId,
779 key_type: &SuperKeyType,
780 password: &Password,
Paul Crowley8d5b2532021-03-19 10:53:07 -0700781 reencrypt_with: Option<Arc<SuperKey>>,
Paul Crowley7a658392021-03-18 17:08:20 -0700782 ) -> Result<Arc<SuperKey>> {
783 let loaded_key = db.load_super_key(key_type, user_id)?;
784 if let Some((_, key_entry)) = loaded_key {
Paul Crowley8d5b2532021-03-19 10:53:07 -0700785 Ok(Self::extract_super_key_from_key_entry(
786 key_type.algorithm,
787 key_entry,
788 password,
789 reencrypt_with,
790 )?)
Paul Crowley7a658392021-03-18 17:08:20 -0700791 } else {
Eric Biggers456a3a62023-10-27 03:55:28 +0000792 self.create_super_key(db, user_id, key_type, password, reencrypt_with)
Paul Crowley7a658392021-03-18 17:08:20 -0700793 }
794 }
795
Eric Biggersb1f641d2023-10-18 01:54:18 +0000796 /// Decrypt the UnlockedDeviceRequired super keys for this user using the password and store
797 /// them in memory. If these keys don't exist yet, create them.
798 pub fn unlock_unlocked_device_required_keys(
Janis Danisevskis0fd25a62022-01-04 19:53:37 -0800799 &mut self,
Paul Crowley7a658392021-03-18 17:08:20 -0700800 db: &mut KeystoreDB,
801 user_id: UserId,
802 password: &Password,
803 ) -> Result<()> {
Eric Biggersb1f641d2023-10-18 01:54:18 +0000804 let (symmetric, private) = self
Janis Danisevskis0fd25a62022-01-04 19:53:37 -0800805 .data
806 .user_keys
807 .get(&user_id)
Eric Biggersb1f641d2023-10-18 01:54:18 +0000808 .map(|e| {
809 (
810 e.unlocked_device_required_symmetric.clone(),
811 e.unlocked_device_required_private.clone(),
812 )
813 })
Janis Danisevskis0fd25a62022-01-04 19:53:37 -0800814 .unwrap_or((None, None));
815
Eric Biggersb1f641d2023-10-18 01:54:18 +0000816 if symmetric.is_some() && private.is_some() {
Janis Danisevskis0fd25a62022-01-04 19:53:37 -0800817 // Already unlocked.
818 return Ok(());
819 }
820
Eric Biggersb1f641d2023-10-18 01:54:18 +0000821 let aes = if let Some(symmetric) = symmetric {
822 // This is weird. If this point is reached only one of the UnlockedDeviceRequired super
823 // keys was initialized. This should never happen.
824 symmetric
Janis Danisevskis0fd25a62022-01-04 19:53:37 -0800825 } else {
826 self.get_or_create_super_key(
827 db,
828 user_id,
Eric Biggersb1f641d2023-10-18 01:54:18 +0000829 &USER_UNLOCKED_DEVICE_REQUIRED_SYMMETRIC_SUPER_KEY,
830 password,
831 None,
832 )
833 .context(ks_err!("Trying to get or create symmetric key."))?
834 };
835
836 let ecdh = if let Some(private) = private {
837 // This is weird. If this point is reached only one of the UnlockedDeviceRequired super
838 // keys was initialized. This should never happen.
839 private
840 } else {
841 self.get_or_create_super_key(
842 db,
843 user_id,
844 &USER_UNLOCKED_DEVICE_REQUIRED_P521_SUPER_KEY,
Janis Danisevskis0fd25a62022-01-04 19:53:37 -0800845 password,
846 Some(aes.clone()),
847 )
Shaquille Johnsonaec2eca2022-11-30 17:08:05 +0000848 .context(ks_err!("Trying to get or create asymmetric key."))?
Janis Danisevskis0fd25a62022-01-04 19:53:37 -0800849 };
850
851 self.data.add_key_to_key_index(&aes)?;
852 self.data.add_key_to_key_index(&ecdh)?;
853 let entry = self.data.user_keys.entry(user_id).or_default();
Eric Biggersb1f641d2023-10-18 01:54:18 +0000854 entry.unlocked_device_required_symmetric = Some(aes);
855 entry.unlocked_device_required_private = Some(ecdh);
Paul Crowley7a658392021-03-18 17:08:20 -0700856 Ok(())
857 }
858
Eric Biggersb1f641d2023-10-18 01:54:18 +0000859 /// Wipe the user's UnlockedDeviceRequired super keys from memory.
860 pub fn lock_unlocked_device_required_keys(
Janis Danisevskis0fd25a62022-01-04 19:53:37 -0800861 &mut self,
Paul Crowley618869e2021-04-08 20:30:54 -0700862 db: &mut KeystoreDB,
863 user_id: UserId,
864 unlocking_sids: &[i64],
865 ) {
Eric Biggersb1f641d2023-10-18 01:54:18 +0000866 log::info!(
867 "Locking UnlockedDeviceRequired super keys for user {}; unlocking_sids={:?}",
868 user_id,
869 unlocking_sids
870 );
Chris Wailes53a22af2023-07-12 17:02:47 -0700871 let entry = self.data.user_keys.entry(user_id).or_default();
Paul Crowley618869e2021-04-08 20:30:54 -0700872 if !unlocking_sids.is_empty() {
873 if let (Some(aes), Some(ecdh)) = (
Eric Biggersb1f641d2023-10-18 01:54:18 +0000874 entry.unlocked_device_required_symmetric.as_ref().cloned(),
875 entry.unlocked_device_required_private.as_ref().cloned(),
Paul Crowley618869e2021-04-08 20:30:54 -0700876 ) {
877 let res = (|| -> Result<()> {
878 let key_desc = KeyMintDevice::internal_descriptor(format!(
879 "biometric_unlock_key_{}",
880 user_id
881 ));
882 let encrypting_key = generate_aes256_key()?;
883 let km_dev: KeyMintDevice =
884 KeyMintDevice::get(SecurityLevel::TRUSTED_ENVIRONMENT)
Shaquille Johnsonaec2eca2022-11-30 17:08:05 +0000885 .context(ks_err!("KeyMintDevice::get failed"))?;
Paul Crowley618869e2021-04-08 20:30:54 -0700886 let mut key_params = vec![
887 KeyParameterValue::Algorithm(Algorithm::AES),
888 KeyParameterValue::KeySize(256),
889 KeyParameterValue::BlockMode(BlockMode::GCM),
890 KeyParameterValue::PaddingMode(PaddingMode::NONE),
891 KeyParameterValue::CallerNonce,
892 KeyParameterValue::KeyPurpose(KeyPurpose::DECRYPT),
893 KeyParameterValue::MinMacLength(128),
894 KeyParameterValue::AuthTimeout(BIOMETRIC_AUTH_TIMEOUT_S),
895 KeyParameterValue::HardwareAuthenticatorType(
896 HardwareAuthenticatorType::FINGERPRINT,
897 ),
898 ];
899 for sid in unlocking_sids {
900 key_params.push(KeyParameterValue::UserSecureID(*sid));
901 }
902 let key_params: Vec<KmKeyParameter> =
903 key_params.into_iter().map(|x| x.into()).collect();
Janis Danisevskis0cabd712021-05-25 11:07:10 -0700904 km_dev.create_and_store_key(
905 db,
906 &key_desc,
907 KeyType::Client, /* TODO Should be Super b/189470584 */
908 |dev| {
909 let _wp = wd::watch_millis(
Eric Biggersb1f641d2023-10-18 01:54:18 +0000910 "In lock_unlocked_device_required_keys: calling importKey.",
Janis Danisevskis0cabd712021-05-25 11:07:10 -0700911 500,
912 );
913 dev.importKey(
914 key_params.as_slice(),
915 KeyFormat::RAW,
916 &encrypting_key,
917 None,
918 )
919 },
920 )?;
Paul Crowley618869e2021-04-08 20:30:54 -0700921 entry.biometric_unlock = Some(BiometricUnlock {
922 sids: unlocking_sids.into(),
923 key_desc,
Eric Biggersb1f641d2023-10-18 01:54:18 +0000924 symmetric: LockedKey::new(&encrypting_key, &aes)?,
925 private: LockedKey::new(&encrypting_key, &ecdh)?,
Paul Crowley618869e2021-04-08 20:30:54 -0700926 });
927 Ok(())
928 })();
Eric Biggersb1f641d2023-10-18 01:54:18 +0000929 // There is no reason to propagate an error here upwards. We must clear the keys
930 // from memory in any case.
Paul Crowley618869e2021-04-08 20:30:54 -0700931 if let Err(e) = res {
932 log::error!("Error setting up biometric unlock: {:#?}", e);
933 }
934 }
935 }
Eric Biggersb1f641d2023-10-18 01:54:18 +0000936 entry.unlocked_device_required_symmetric = None;
937 entry.unlocked_device_required_private = None;
Paul Crowley7a658392021-03-18 17:08:20 -0700938 }
Paul Crowley618869e2021-04-08 20:30:54 -0700939
940 /// User has unlocked, not using a password. See if any of our stored auth tokens can be used
941 /// to unlock the keys protecting UNLOCKED_DEVICE_REQUIRED keys.
942 pub fn try_unlock_user_with_biometric(
Janis Danisevskis0fd25a62022-01-04 19:53:37 -0800943 &mut self,
Paul Crowley618869e2021-04-08 20:30:54 -0700944 db: &mut KeystoreDB,
945 user_id: UserId,
946 ) -> Result<()> {
Chris Wailes53a22af2023-07-12 17:02:47 -0700947 let entry = self.data.user_keys.entry(user_id).or_default();
Paul Crowley618869e2021-04-08 20:30:54 -0700948 if let Some(biometric) = entry.biometric_unlock.as_ref() {
Janis Danisevskisacebfa22021-05-25 10:56:10 -0700949 let (key_id_guard, key_entry) = db
950 .load_key_entry(
951 &biometric.key_desc,
952 KeyType::Client, // This should not be a Client key.
953 KeyEntryLoadBits::KM,
954 AID_KEYSTORE,
955 |_, _| Ok(()),
956 )
Shaquille Johnsonaec2eca2022-11-30 17:08:05 +0000957 .context(ks_err!("load_key_entry failed"))?;
Paul Crowley618869e2021-04-08 20:30:54 -0700958 let km_dev: KeyMintDevice = KeyMintDevice::get(SecurityLevel::TRUSTED_ENVIRONMENT)
Shaquille Johnsonaec2eca2022-11-30 17:08:05 +0000959 .context(ks_err!("KeyMintDevice::get failed"))?;
David Drysdalee85523f2023-06-19 12:28:53 +0100960 let mut errs = vec![];
Paul Crowley618869e2021-04-08 20:30:54 -0700961 for sid in &biometric.sids {
David Drysdalee85523f2023-06-19 12:28:53 +0100962 let sid = *sid;
Paul Crowley618869e2021-04-08 20:30:54 -0700963 if let Some((auth_token_entry, _)) = db.find_auth_token_entry(|entry| {
David Drysdalee85523f2023-06-19 12:28:53 +0100964 entry.auth_token().userId == sid || entry.auth_token().authenticatorId == sid
Matthew Maurerd7815ca2021-05-06 21:58:45 -0700965 }) {
Paul Crowley618869e2021-04-08 20:30:54 -0700966 let res: Result<(Arc<SuperKey>, Arc<SuperKey>)> = (|| {
Eric Biggersb1f641d2023-10-18 01:54:18 +0000967 let symmetric = biometric.symmetric.decrypt(
Paul Crowley618869e2021-04-08 20:30:54 -0700968 db,
969 &km_dev,
970 &key_id_guard,
971 &key_entry,
972 auth_token_entry.auth_token(),
973 None,
974 )?;
Eric Biggersb1f641d2023-10-18 01:54:18 +0000975 let private = biometric.private.decrypt(
Paul Crowley618869e2021-04-08 20:30:54 -0700976 db,
977 &km_dev,
978 &key_id_guard,
979 &key_entry,
980 auth_token_entry.auth_token(),
Eric Biggersb1f641d2023-10-18 01:54:18 +0000981 Some(symmetric.clone()),
Paul Crowley618869e2021-04-08 20:30:54 -0700982 )?;
Eric Biggersb1f641d2023-10-18 01:54:18 +0000983 Ok((symmetric, private))
Paul Crowley618869e2021-04-08 20:30:54 -0700984 })();
985 match res {
Eric Biggersb1f641d2023-10-18 01:54:18 +0000986 Ok((symmetric, private)) => {
987 entry.unlocked_device_required_symmetric = Some(symmetric.clone());
988 entry.unlocked_device_required_private = Some(private.clone());
989 self.data.add_key_to_key_index(&symmetric)?;
990 self.data.add_key_to_key_index(&private)?;
David Drysdalee85523f2023-06-19 12:28:53 +0100991 log::info!("Successfully unlocked user {user_id} with biometric {sid}",);
Paul Crowley618869e2021-04-08 20:30:54 -0700992 return Ok(());
993 }
994 Err(e) => {
David Drysdalee85523f2023-06-19 12:28:53 +0100995 // Don't log an error yet, as some other biometric SID might work.
996 errs.push((sid, e));
Paul Crowley618869e2021-04-08 20:30:54 -0700997 }
998 }
999 }
1000 }
David Drysdalee85523f2023-06-19 12:28:53 +01001001 if !errs.is_empty() {
1002 log::warn!("biometric unlock failed for all SIDs, with errors:");
1003 for (sid, err) in errs {
1004 log::warn!(" biometric {sid}: {err}");
1005 }
1006 }
Paul Crowley618869e2021-04-08 20:30:54 -07001007 }
1008 Ok(())
1009 }
Janis Danisevskis0fd25a62022-01-04 19:53:37 -08001010
1011 /// Returns the keystore locked state of the given user. It requires the thread local
1012 /// keystore database and a reference to the legacy migrator because it may need to
Janis Danisevskis0ffb8a82022-02-06 22:37:21 -08001013 /// import the super key from the legacy blob database to the keystore database.
Janis Danisevskis0fd25a62022-01-04 19:53:37 -08001014 pub fn get_user_state(
1015 &self,
1016 db: &mut KeystoreDB,
Janis Danisevskis0ffb8a82022-02-06 22:37:21 -08001017 legacy_importer: &LegacyImporter,
Janis Danisevskis0fd25a62022-01-04 19:53:37 -08001018 user_id: UserId,
1019 ) -> Result<UserState> {
Eric Biggers673d34a2023-10-18 01:54:18 +00001020 match self.get_after_first_unlock_key_by_user_id_internal(user_id) {
Eric Biggers13869372023-10-18 01:54:18 +00001021 Some(super_key) => Ok(UserState::AfterFirstUnlock(super_key)),
Janis Danisevskis0fd25a62022-01-04 19:53:37 -08001022 None => {
1023 // Check if a super key exists in the database or legacy database.
1024 // If so, return locked user state.
1025 if self
Janis Danisevskis0ffb8a82022-02-06 22:37:21 -08001026 .super_key_exists_in_db_for_user(db, legacy_importer, user_id)
Shaquille Johnsonaec2eca2022-11-30 17:08:05 +00001027 .context(ks_err!())?
Janis Danisevskis0fd25a62022-01-04 19:53:37 -08001028 {
Eric Biggers13869372023-10-18 01:54:18 +00001029 Ok(UserState::BeforeFirstUnlock)
Janis Danisevskis0fd25a62022-01-04 19:53:37 -08001030 } else {
1031 Ok(UserState::Uninitialized)
1032 }
1033 }
1034 }
1035 }
1036
Nathan Huckleberry204a0442023-03-30 17:27:47 +00001037 /// Deletes all keys and super keys for the given user.
1038 /// This is called when a user is deleted.
1039 pub fn remove_user(
Janis Danisevskis0fd25a62022-01-04 19:53:37 -08001040 &mut self,
1041 db: &mut KeystoreDB,
Janis Danisevskis0ffb8a82022-02-06 22:37:21 -08001042 legacy_importer: &LegacyImporter,
Janis Danisevskis0fd25a62022-01-04 19:53:37 -08001043 user_id: UserId,
Nathan Huckleberry204a0442023-03-30 17:27:47 +00001044 ) -> Result<()> {
David Drysdalee85523f2023-06-19 12:28:53 +01001045 log::info!("remove_user(user={user_id})");
Nathan Huckleberry204a0442023-03-30 17:27:47 +00001046 // Mark keys created on behalf of the user as unreferenced.
1047 legacy_importer
1048 .bulk_delete_user(user_id, false)
1049 .context(ks_err!("Trying to delete legacy keys."))?;
1050 db.unbind_keys_for_user(user_id, false).context(ks_err!("Error in unbinding keys."))?;
1051
1052 // Delete super key in cache, if exists.
1053 self.forget_all_keys_for_user(user_id);
1054 Ok(())
1055 }
1056
1057 /// Deletes all authentication bound keys and super keys for the given user. The user must be
1058 /// unlocked before this function is called. This function is used to transition a user to
1059 /// swipe.
1060 pub fn reset_user(
1061 &mut self,
1062 db: &mut KeystoreDB,
1063 legacy_importer: &LegacyImporter,
1064 user_id: UserId,
1065 ) -> Result<()> {
David Drysdalee85523f2023-06-19 12:28:53 +01001066 log::info!("reset_user(user={user_id})");
Nathan Huckleberry204a0442023-03-30 17:27:47 +00001067 match self.get_user_state(db, legacy_importer, user_id)? {
1068 UserState::Uninitialized => {
1069 Err(Error::sys()).context(ks_err!("Tried to reset an uninitialized user!"))
Janis Danisevskis0fd25a62022-01-04 19:53:37 -08001070 }
Eric Biggers13869372023-10-18 01:54:18 +00001071 UserState::BeforeFirstUnlock => {
Nathan Huckleberry204a0442023-03-30 17:27:47 +00001072 Err(Error::sys()).context(ks_err!("Tried to reset a locked user's password!"))
Janis Danisevskis0fd25a62022-01-04 19:53:37 -08001073 }
Eric Biggers13869372023-10-18 01:54:18 +00001074 UserState::AfterFirstUnlock(_) => {
Nathan Huckleberry204a0442023-03-30 17:27:47 +00001075 // Mark keys created on behalf of the user as unreferenced.
1076 legacy_importer
1077 .bulk_delete_user(user_id, true)
1078 .context(ks_err!("Trying to delete legacy keys."))?;
1079 db.unbind_keys_for_user(user_id, true)
1080 .context(ks_err!("Error in unbinding keys."))?;
1081
1082 // Delete super key in cache, if exists.
1083 self.forget_all_keys_for_user(user_id);
1084 Ok(())
1085 }
1086 }
1087 }
1088
Eric Biggers673d34a2023-10-18 01:54:18 +00001089 /// If the user hasn't been initialized yet, then this function generates the user's
1090 /// AfterFirstUnlock super key and sets the user's state to AfterFirstUnlock. Otherwise this
1091 /// function returns an error.
Nathan Huckleberry204a0442023-03-30 17:27:47 +00001092 pub fn init_user(
1093 &mut self,
1094 db: &mut KeystoreDB,
1095 legacy_importer: &LegacyImporter,
1096 user_id: UserId,
1097 password: &Password,
1098 ) -> Result<()> {
David Drysdalee85523f2023-06-19 12:28:53 +01001099 log::info!("init_user(user={user_id})");
Nathan Huckleberry204a0442023-03-30 17:27:47 +00001100 match self.get_user_state(db, legacy_importer, user_id)? {
Eric Biggers13869372023-10-18 01:54:18 +00001101 UserState::AfterFirstUnlock(_) | UserState::BeforeFirstUnlock => {
Nathan Huckleberry204a0442023-03-30 17:27:47 +00001102 Err(Error::sys()).context(ks_err!("Tried to re-init an initialized user!"))
1103 }
1104 UserState::Uninitialized => {
1105 // Generate a new super key.
1106 let super_key =
1107 generate_aes256_key().context(ks_err!("Failed to generate AES 256 key."))?;
1108 // Derive an AES256 key from the password and re-encrypt the super key
1109 // before we insert it in the database.
1110 let (encrypted_super_key, blob_metadata) =
1111 Self::encrypt_with_password(&super_key, password)
1112 .context(ks_err!("Failed to encrypt super key with password!"))?;
1113
1114 let key_entry = db
1115 .store_super_key(
1116 user_id,
Eric Biggers673d34a2023-10-18 01:54:18 +00001117 &USER_AFTER_FIRST_UNLOCK_SUPER_KEY,
Nathan Huckleberry204a0442023-03-30 17:27:47 +00001118 &encrypted_super_key,
1119 &blob_metadata,
1120 &KeyMetaData::new(),
1121 )
1122 .context(ks_err!("Failed to store super key."))?;
1123
1124 self.populate_cache_from_super_key_blob(
1125 user_id,
Eric Biggers673d34a2023-10-18 01:54:18 +00001126 USER_AFTER_FIRST_UNLOCK_SUPER_KEY.algorithm,
Nathan Huckleberry204a0442023-03-30 17:27:47 +00001127 key_entry,
1128 password,
1129 )
1130 .context(ks_err!("Failed to initialize user!"))?;
1131 Ok(())
Janis Danisevskis0fd25a62022-01-04 19:53:37 -08001132 }
1133 }
1134 }
1135
Eric Biggersb0478cf2023-10-27 03:55:29 +00001136 /// Initializes the given user by creating their super keys, both AfterFirstUnlock and
1137 /// UnlockedDeviceRequired. If allow_existing is true, then the user already being initialized
1138 /// is not considered an error.
1139 pub fn initialize_user(
1140 &mut self,
1141 db: &mut KeystoreDB,
1142 legacy_importer: &LegacyImporter,
1143 user_id: UserId,
1144 password: &Password,
1145 allow_existing: bool,
1146 ) -> Result<()> {
1147 // Create the AfterFirstUnlock super key.
1148 if self.super_key_exists_in_db_for_user(db, legacy_importer, user_id)? {
1149 log::info!("AfterFirstUnlock super key already exists");
1150 if !allow_existing {
1151 return Err(Error::sys()).context(ks_err!("Tried to re-init an initialized user!"));
1152 }
1153 } else {
1154 let super_key = self
1155 .create_super_key(db, user_id, &USER_AFTER_FIRST_UNLOCK_SUPER_KEY, password, None)
1156 .context(ks_err!("Failed to create AfterFirstUnlock super key"))?;
1157
1158 self.install_after_first_unlock_key_for_user(user_id, super_key)
1159 .context(ks_err!("Failed to install AfterFirstUnlock super key for user"))?;
1160 }
1161
1162 // Create the UnlockedDeviceRequired super keys.
1163 self.unlock_unlocked_device_required_keys(db, user_id, password)
1164 .context(ks_err!("Failed to create UnlockedDeviceRequired super keys"))
1165 }
1166
Nathan Huckleberry7dfe8182023-04-04 20:41:01 +00001167 /// Unlocks the given user with the given password.
1168 ///
Eric Biggers13869372023-10-18 01:54:18 +00001169 /// If the user state is BeforeFirstUnlock:
Eric Biggers673d34a2023-10-18 01:54:18 +00001170 /// - Unlock the user's AfterFirstUnlock super key
Eric Biggersb1f641d2023-10-18 01:54:18 +00001171 /// - Unlock the user's UnlockedDeviceRequired super keys
Nathan Huckleberry7dfe8182023-04-04 20:41:01 +00001172 ///
Eric Biggers13869372023-10-18 01:54:18 +00001173 /// If the user state is AfterFirstUnlock:
Eric Biggersb1f641d2023-10-18 01:54:18 +00001174 /// - Unlock the user's UnlockedDeviceRequired super keys only
Nathan Huckleberry7dfe8182023-04-04 20:41:01 +00001175 ///
1176 pub fn unlock_user(
Janis Danisevskis0fd25a62022-01-04 19:53:37 -08001177 &mut self,
1178 db: &mut KeystoreDB,
Janis Danisevskis0ffb8a82022-02-06 22:37:21 -08001179 legacy_importer: &LegacyImporter,
Janis Danisevskis0fd25a62022-01-04 19:53:37 -08001180 user_id: UserId,
1181 password: &Password,
Nathan Huckleberry7dfe8182023-04-04 20:41:01 +00001182 ) -> Result<()> {
David Drysdalee85523f2023-06-19 12:28:53 +01001183 log::info!("unlock_user(user={user_id})");
Nathan Huckleberry7dfe8182023-04-04 20:41:01 +00001184 match self.get_user_state(db, legacy_importer, user_id)? {
Eric Biggers13869372023-10-18 01:54:18 +00001185 UserState::AfterFirstUnlock(_) => {
Eric Biggersb1f641d2023-10-18 01:54:18 +00001186 self.unlock_unlocked_device_required_keys(db, user_id, password)
Eric Biggers13869372023-10-18 01:54:18 +00001187 }
Nathan Huckleberry7dfe8182023-04-04 20:41:01 +00001188 UserState::Uninitialized => {
1189 Err(Error::sys()).context(ks_err!("Tried to unlock an uninitialized user!"))
Janis Danisevskis0fd25a62022-01-04 19:53:37 -08001190 }
Eric Biggers13869372023-10-18 01:54:18 +00001191 UserState::BeforeFirstUnlock => {
Eric Biggers673d34a2023-10-18 01:54:18 +00001192 let alias = &USER_AFTER_FIRST_UNLOCK_SUPER_KEY;
Nathan Huckleberry7dfe8182023-04-04 20:41:01 +00001193 let result = legacy_importer
1194 .with_try_import_super_key(user_id, password, || {
1195 db.load_super_key(alias, user_id)
1196 })
1197 .context(ks_err!("Failed to load super key"))?;
1198
1199 match result {
1200 Some((_, entry)) => {
1201 self.populate_cache_from_super_key_blob(
1202 user_id,
1203 alias.algorithm,
1204 entry,
1205 password,
1206 )
1207 .context(ks_err!("Failed when unlocking user."))?;
Eric Biggersb1f641d2023-10-18 01:54:18 +00001208 self.unlock_unlocked_device_required_keys(db, user_id, password)
Nathan Huckleberry7dfe8182023-04-04 20:41:01 +00001209 }
1210 None => {
1211 Err(Error::sys()).context(ks_err!("Locked user does not have a super key!"))
1212 }
1213 }
Janis Danisevskis0fd25a62022-01-04 19:53:37 -08001214 }
1215 }
1216 }
Hasini Gunasinghe0e161452021-01-27 19:34:37 +00001217}
1218
1219/// This enum represents different states of the user's life cycle in the device.
1220/// For now, only three states are defined. More states may be added later.
1221pub enum UserState {
Eric Biggersb0478cf2023-10-27 03:55:29 +00001222 // The user's super keys exist, and the user has unlocked the device at least once since boot.
1223 // Hence, the AfterFirstUnlock super key is available in the cache.
Eric Biggers13869372023-10-18 01:54:18 +00001224 AfterFirstUnlock(Arc<SuperKey>),
Eric Biggersb0478cf2023-10-27 03:55:29 +00001225 // The user's super keys exist, but the user hasn't unlocked the device at least once since
1226 // boot. Hence, the AfterFirstUnlock and UnlockedDeviceRequired super keys are not available in
1227 // the cache. However, they exist in the database in encrypted form.
Eric Biggers13869372023-10-18 01:54:18 +00001228 BeforeFirstUnlock,
Eric Biggersb0478cf2023-10-27 03:55:29 +00001229 // The user's super keys don't exist. I.e., there's no user with the given user ID, or the user
1230 // is in the process of being created or destroyed.
Hasini Gunasinghe0e161452021-01-27 19:34:37 +00001231 Uninitialized,
1232}
1233
Janis Danisevskiseed69842021-02-18 20:04:10 -08001234/// This enum represents three states a KeyMint Blob can be in, w.r.t super encryption.
1235/// `Sensitive` holds the non encrypted key and a reference to its super key.
1236/// `NonSensitive` holds a non encrypted key that is never supposed to be encrypted.
1237/// `Ref` holds a reference to a key blob when it does not need to be modified if its
1238/// life time allows it.
Hasini Gunasinghedeab85d2021-02-01 21:10:02 +00001239pub enum KeyBlob<'a> {
Paul Crowley8d5b2532021-03-19 10:53:07 -07001240 Sensitive {
1241 key: ZVec,
1242 /// If KeyMint reports that the key must be upgraded, we must
1243 /// re-encrypt the key before writing to the database; we use
1244 /// this key.
1245 reencrypt_with: Arc<SuperKey>,
1246 /// If this key was decrypted with an ECDH key, we want to
1247 /// re-encrypt it on first use whether it was upgraded or not;
1248 /// this field indicates that that's necessary.
1249 force_reencrypt: bool,
1250 },
Hasini Gunasinghedeab85d2021-02-01 21:10:02 +00001251 NonSensitive(Vec<u8>),
1252 Ref(&'a [u8]),
1253}
1254
Paul Crowley8d5b2532021-03-19 10:53:07 -07001255impl<'a> KeyBlob<'a> {
1256 pub fn force_reencrypt(&self) -> bool {
1257 if let KeyBlob::Sensitive { force_reencrypt, .. } = self {
1258 *force_reencrypt
1259 } else {
1260 false
1261 }
1262 }
1263}
1264
Janis Danisevskiseed69842021-02-18 20:04:10 -08001265/// Deref returns a reference to the key material in any variant.
Hasini Gunasinghedeab85d2021-02-01 21:10:02 +00001266impl<'a> Deref for KeyBlob<'a> {
1267 type Target = [u8];
1268
1269 fn deref(&self) -> &Self::Target {
1270 match self {
Chris Wailesd5aaaef2021-07-27 16:04:33 -07001271 Self::Sensitive { key, .. } => key,
1272 Self::NonSensitive(key) => key,
Hasini Gunasinghedeab85d2021-02-01 21:10:02 +00001273 Self::Ref(key) => key,
1274 }
1275 }
1276}
Nathan Huckleberry95dca012023-05-10 18:02:11 +00001277
1278#[cfg(test)]
1279mod tests {
1280 use super::*;
1281 use crate::database::tests::make_bootlevel_key_entry;
1282 use crate::database::tests::make_test_key_entry;
1283 use crate::database::tests::new_test_db;
1284 use rand::prelude::*;
1285 const USER_ID: u32 = 0;
1286 const TEST_KEY_ALIAS: &str = "TEST_KEY";
1287 const TEST_BOOT_KEY_ALIAS: &str = "TEST_BOOT_KEY";
1288
1289 pub fn generate_password_blob() -> Password<'static> {
1290 let mut rng = rand::thread_rng();
1291 let mut password = vec![0u8; 64];
1292 rng.fill_bytes(&mut password);
1293
1294 let mut zvec = ZVec::new(64).expect("Failed to create ZVec");
1295 zvec[..].copy_from_slice(&password[..]);
1296
1297 Password::Owned(zvec)
1298 }
1299
1300 fn setup_test(pw: &Password) -> (Arc<RwLock<SuperKeyManager>>, KeystoreDB, LegacyImporter) {
1301 let mut keystore_db = new_test_db().unwrap();
1302 let mut legacy_importer = LegacyImporter::new(Arc::new(Default::default()));
1303 legacy_importer.set_empty();
1304 let skm: Arc<RwLock<SuperKeyManager>> = Default::default();
1305 assert!(skm
1306 .write()
1307 .unwrap()
1308 .init_user(&mut keystore_db, &legacy_importer, USER_ID, pw)
1309 .is_ok());
1310 (skm, keystore_db, legacy_importer)
1311 }
1312
1313 fn assert_unlocked(
1314 skm: &Arc<RwLock<SuperKeyManager>>,
1315 keystore_db: &mut KeystoreDB,
1316 legacy_importer: &LegacyImporter,
1317 user_id: u32,
1318 err_msg: &str,
1319 ) {
1320 let user_state =
1321 skm.write().unwrap().get_user_state(keystore_db, legacy_importer, user_id).unwrap();
1322 match user_state {
Eric Biggers13869372023-10-18 01:54:18 +00001323 UserState::AfterFirstUnlock(_) => {}
Nathan Huckleberry95dca012023-05-10 18:02:11 +00001324 _ => panic!("{}", err_msg),
1325 }
1326 }
1327
1328 fn assert_locked(
1329 skm: &Arc<RwLock<SuperKeyManager>>,
1330 keystore_db: &mut KeystoreDB,
1331 legacy_importer: &LegacyImporter,
1332 user_id: u32,
1333 err_msg: &str,
1334 ) {
1335 let user_state =
1336 skm.write().unwrap().get_user_state(keystore_db, legacy_importer, user_id).unwrap();
1337 match user_state {
Eric Biggers13869372023-10-18 01:54:18 +00001338 UserState::BeforeFirstUnlock => {}
Nathan Huckleberry95dca012023-05-10 18:02:11 +00001339 _ => panic!("{}", err_msg),
1340 }
1341 }
1342
1343 fn assert_uninitialized(
1344 skm: &Arc<RwLock<SuperKeyManager>>,
1345 keystore_db: &mut KeystoreDB,
1346 legacy_importer: &LegacyImporter,
1347 user_id: u32,
1348 err_msg: &str,
1349 ) {
1350 let user_state =
1351 skm.write().unwrap().get_user_state(keystore_db, legacy_importer, user_id).unwrap();
1352 match user_state {
1353 UserState::Uninitialized => {}
1354 _ => panic!("{}", err_msg),
1355 }
1356 }
1357
1358 #[test]
1359 fn test_init_user() {
1360 let pw: Password = generate_password_blob();
1361 let (skm, mut keystore_db, legacy_importer) = setup_test(&pw);
1362 assert_unlocked(
1363 &skm,
1364 &mut keystore_db,
1365 &legacy_importer,
1366 USER_ID,
1367 "The user was not unlocked after initialization!",
1368 );
1369 }
1370
1371 #[test]
1372 fn test_unlock_user() {
1373 let pw: Password = generate_password_blob();
1374 let (skm, mut keystore_db, legacy_importer) = setup_test(&pw);
1375 assert_unlocked(
1376 &skm,
1377 &mut keystore_db,
1378 &legacy_importer,
1379 USER_ID,
1380 "The user was not unlocked after initialization!",
1381 );
1382
1383 skm.write().unwrap().data.user_keys.clear();
1384 assert_locked(
1385 &skm,
1386 &mut keystore_db,
1387 &legacy_importer,
1388 USER_ID,
1389 "Clearing the cache did not lock the user!",
1390 );
1391
1392 assert!(skm
1393 .write()
1394 .unwrap()
1395 .unlock_user(&mut keystore_db, &legacy_importer, USER_ID, &pw)
1396 .is_ok());
1397 assert_unlocked(
1398 &skm,
1399 &mut keystore_db,
1400 &legacy_importer,
1401 USER_ID,
1402 "The user did not unlock!",
1403 );
1404 }
1405
1406 #[test]
1407 fn test_unlock_wrong_password() {
1408 let pw: Password = generate_password_blob();
1409 let wrong_pw: Password = generate_password_blob();
1410 let (skm, mut keystore_db, legacy_importer) = setup_test(&pw);
1411 assert_unlocked(
1412 &skm,
1413 &mut keystore_db,
1414 &legacy_importer,
1415 USER_ID,
1416 "The user was not unlocked after initialization!",
1417 );
1418
1419 skm.write().unwrap().data.user_keys.clear();
1420 assert_locked(
1421 &skm,
1422 &mut keystore_db,
1423 &legacy_importer,
1424 USER_ID,
1425 "Clearing the cache did not lock the user!",
1426 );
1427
1428 assert!(skm
1429 .write()
1430 .unwrap()
1431 .unlock_user(&mut keystore_db, &legacy_importer, USER_ID, &wrong_pw)
1432 .is_err());
1433 assert_locked(
1434 &skm,
1435 &mut keystore_db,
1436 &legacy_importer,
1437 USER_ID,
1438 "The user was unlocked with an incorrect password!",
1439 );
1440 }
1441
1442 #[test]
1443 fn test_unlock_user_idempotent() {
1444 let pw: Password = generate_password_blob();
1445 let (skm, mut keystore_db, legacy_importer) = setup_test(&pw);
1446 assert_unlocked(
1447 &skm,
1448 &mut keystore_db,
1449 &legacy_importer,
1450 USER_ID,
1451 "The user was not unlocked after initialization!",
1452 );
1453
1454 skm.write().unwrap().data.user_keys.clear();
1455 assert_locked(
1456 &skm,
1457 &mut keystore_db,
1458 &legacy_importer,
1459 USER_ID,
1460 "Clearing the cache did not lock the user!",
1461 );
1462
1463 for _ in 0..5 {
1464 assert!(skm
1465 .write()
1466 .unwrap()
1467 .unlock_user(&mut keystore_db, &legacy_importer, USER_ID, &pw)
1468 .is_ok());
1469 assert_unlocked(
1470 &skm,
1471 &mut keystore_db,
1472 &legacy_importer,
1473 USER_ID,
1474 "The user did not unlock!",
1475 );
1476 }
1477 }
1478
1479 fn test_user_removal(locked: bool) {
1480 let pw: Password = generate_password_blob();
1481 let (skm, mut keystore_db, legacy_importer) = setup_test(&pw);
1482 assert_unlocked(
1483 &skm,
1484 &mut keystore_db,
1485 &legacy_importer,
1486 USER_ID,
1487 "The user was not unlocked after initialization!",
1488 );
1489
1490 assert!(make_test_key_entry(
1491 &mut keystore_db,
1492 Domain::APP,
1493 USER_ID.into(),
1494 TEST_KEY_ALIAS,
1495 None
1496 )
1497 .is_ok());
1498 assert!(make_bootlevel_key_entry(
1499 &mut keystore_db,
1500 Domain::APP,
1501 USER_ID.into(),
1502 TEST_BOOT_KEY_ALIAS,
1503 false
1504 )
1505 .is_ok());
1506
1507 assert!(keystore_db
1508 .key_exists(Domain::APP, USER_ID.into(), TEST_KEY_ALIAS, KeyType::Client)
1509 .unwrap());
1510 assert!(keystore_db
1511 .key_exists(Domain::APP, USER_ID.into(), TEST_BOOT_KEY_ALIAS, KeyType::Client)
1512 .unwrap());
1513
1514 if locked {
1515 skm.write().unwrap().data.user_keys.clear();
1516 assert_locked(
1517 &skm,
1518 &mut keystore_db,
1519 &legacy_importer,
1520 USER_ID,
1521 "Clearing the cache did not lock the user!",
1522 );
1523 }
1524
1525 assert!(skm
1526 .write()
1527 .unwrap()
1528 .remove_user(&mut keystore_db, &legacy_importer, USER_ID)
1529 .is_ok());
1530 assert_uninitialized(
1531 &skm,
1532 &mut keystore_db,
1533 &legacy_importer,
1534 USER_ID,
1535 "The user was not removed!",
1536 );
1537
1538 assert!(!skm
1539 .write()
1540 .unwrap()
1541 .super_key_exists_in_db_for_user(&mut keystore_db, &legacy_importer, USER_ID)
1542 .unwrap());
1543
1544 assert!(!keystore_db
1545 .key_exists(Domain::APP, USER_ID.into(), TEST_KEY_ALIAS, KeyType::Client)
1546 .unwrap());
1547 assert!(!keystore_db
1548 .key_exists(Domain::APP, USER_ID.into(), TEST_BOOT_KEY_ALIAS, KeyType::Client)
1549 .unwrap());
1550 }
1551
1552 fn test_user_reset(locked: bool) {
1553 let pw: Password = generate_password_blob();
1554 let (skm, mut keystore_db, legacy_importer) = setup_test(&pw);
1555 assert_unlocked(
1556 &skm,
1557 &mut keystore_db,
1558 &legacy_importer,
1559 USER_ID,
1560 "The user was not unlocked after initialization!",
1561 );
1562
1563 assert!(make_test_key_entry(
1564 &mut keystore_db,
1565 Domain::APP,
1566 USER_ID.into(),
1567 TEST_KEY_ALIAS,
1568 None
1569 )
1570 .is_ok());
1571 assert!(make_bootlevel_key_entry(
1572 &mut keystore_db,
1573 Domain::APP,
1574 USER_ID.into(),
1575 TEST_BOOT_KEY_ALIAS,
1576 false
1577 )
1578 .is_ok());
1579 assert!(keystore_db
1580 .key_exists(Domain::APP, USER_ID.into(), TEST_KEY_ALIAS, KeyType::Client)
1581 .unwrap());
1582 assert!(keystore_db
1583 .key_exists(Domain::APP, USER_ID.into(), TEST_BOOT_KEY_ALIAS, KeyType::Client)
1584 .unwrap());
1585
1586 if locked {
1587 skm.write().unwrap().data.user_keys.clear();
1588 assert_locked(
1589 &skm,
1590 &mut keystore_db,
1591 &legacy_importer,
1592 USER_ID,
1593 "Clearing the cache did not lock the user!",
1594 );
1595 assert!(skm
1596 .write()
1597 .unwrap()
1598 .reset_user(&mut keystore_db, &legacy_importer, USER_ID)
1599 .is_err());
1600 assert_locked(
1601 &skm,
1602 &mut keystore_db,
1603 &legacy_importer,
1604 USER_ID,
1605 "User state should not have changed!",
1606 );
1607
1608 // Keys should still exist.
1609 assert!(keystore_db
1610 .key_exists(Domain::APP, USER_ID.into(), TEST_KEY_ALIAS, KeyType::Client)
1611 .unwrap());
1612 assert!(keystore_db
1613 .key_exists(Domain::APP, USER_ID.into(), TEST_BOOT_KEY_ALIAS, KeyType::Client)
1614 .unwrap());
1615 } else {
1616 assert!(skm
1617 .write()
1618 .unwrap()
1619 .reset_user(&mut keystore_db, &legacy_importer, USER_ID)
1620 .is_ok());
1621 assert_uninitialized(
1622 &skm,
1623 &mut keystore_db,
1624 &legacy_importer,
1625 USER_ID,
1626 "The user was not reset!",
1627 );
1628 assert!(!skm
1629 .write()
1630 .unwrap()
1631 .super_key_exists_in_db_for_user(&mut keystore_db, &legacy_importer, USER_ID)
1632 .unwrap());
1633
1634 // Auth bound key should no longer exist.
1635 assert!(!keystore_db
1636 .key_exists(Domain::APP, USER_ID.into(), TEST_KEY_ALIAS, KeyType::Client)
1637 .unwrap());
1638 assert!(keystore_db
1639 .key_exists(Domain::APP, USER_ID.into(), TEST_BOOT_KEY_ALIAS, KeyType::Client)
1640 .unwrap());
1641 }
1642 }
1643
1644 #[test]
1645 fn test_remove_unlocked_user() {
1646 test_user_removal(false);
1647 }
1648
1649 #[test]
1650 fn test_remove_locked_user() {
1651 test_user_removal(true);
1652 }
1653
1654 #[test]
1655 fn test_reset_unlocked_user() {
1656 test_user_reset(false);
1657 }
1658
1659 #[test]
1660 fn test_reset_locked_user() {
1661 test_user_reset(true);
1662 }
1663}