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Max Bires148c08e2020-10-13 13:41:41 -07001// 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
15//! This is the implementation for the remote provisioning AIDL interface between
16//! the network providers for remote provisioning and the system. This interface
17//! allows the caller to prompt the Remote Provisioning HAL to generate keys and
18//! CBOR blobs that can be ferried to a provisioning server that will return
19//! certificate chains signed by some root authority and stored in a keystore SQLite
20//! DB.
21
Max Biresb2e1d032021-02-08 21:35:05 -080022use std::collections::HashMap;
Max Bires148c08e2020-10-13 13:41:41 -070023
Max Biresb2e1d032021-02-08 21:35:05 -080024use android_hardware_security_keymint::aidl::android::hardware::security::keymint::{
Max Bires97f96812021-02-23 23:44:57 -080025 Algorithm::Algorithm, AttestationKey::AttestationKey, Certificate::Certificate,
Max Bires834dd362021-03-23 13:01:57 -070026 DeviceInfo::DeviceInfo, IRemotelyProvisionedComponent::IRemotelyProvisionedComponent,
27 KeyParameter::KeyParameter, KeyParameterValue::KeyParameterValue,
28 MacedPublicKey::MacedPublicKey, ProtectedData::ProtectedData, SecurityLevel::SecurityLevel,
29 Tag::Tag,
Max Biresb2e1d032021-02-08 21:35:05 -080030};
Max Bires148c08e2020-10-13 13:41:41 -070031use android_security_remoteprovisioning::aidl::android::security::remoteprovisioning::{
32 AttestationPoolStatus::AttestationPoolStatus, IRemoteProvisioning::BnRemoteProvisioning,
33 IRemoteProvisioning::IRemoteProvisioning,
34};
Andrew Walbrande45c8b2021-04-13 14:42:38 +000035use android_security_remoteprovisioning::binder::{BinderFeatures, Strong};
Max Bires97f96812021-02-23 23:44:57 -080036use android_system_keystore2::aidl::android::system::keystore2::{
37 Domain::Domain, KeyDescriptor::KeyDescriptor,
38};
Max Biresb2e1d032021-02-08 21:35:05 -080039use anyhow::{Context, Result};
Max Bires97f96812021-02-23 23:44:57 -080040use keystore2_crypto::parse_subject_from_certificate;
41use std::sync::atomic::{AtomicBool, Ordering};
Max Bires148c08e2020-10-13 13:41:41 -070042
Max Bires97f96812021-02-23 23:44:57 -080043use crate::database::{CertificateChain, KeystoreDB, Uuid};
44use crate::error::{self, map_or_log_err, map_rem_prov_error, Error};
Max Biresb2e1d032021-02-08 21:35:05 -080045use crate::globals::{get_keymint_device, get_remotely_provisioned_component, DB};
Hasini Gunasinghe5a893e82021-05-05 14:32:32 +000046use crate::utils::{watchdog as wd, Asp};
Max Bires148c08e2020-10-13 13:41:41 -070047
Max Bires97f96812021-02-23 23:44:57 -080048/// Contains helper functions to check if remote provisioning is enabled on the system and, if so,
49/// to assign and retrieve attestation keys and certificate chains.
50#[derive(Default)]
51pub struct RemProvState {
52 security_level: SecurityLevel,
53 km_uuid: Uuid,
54 is_hal_present: AtomicBool,
55}
56
57impl RemProvState {
58 /// Creates a RemProvState struct.
59 pub fn new(security_level: SecurityLevel, km_uuid: Uuid) -> Self {
60 Self { security_level, km_uuid, is_hal_present: AtomicBool::new(true) }
61 }
62
63 /// Checks if remote provisioning is enabled and partially caches the result. On a hybrid system
64 /// remote provisioning can flip from being disabled to enabled depending on responses from the
65 /// server, so unfortunately caching the presence or absence of the HAL is not enough to fully
66 /// make decisions about the state of remote provisioning during runtime.
67 fn check_rem_prov_enabled(&self, db: &mut KeystoreDB) -> Result<bool> {
68 if !self.is_hal_present.load(Ordering::Relaxed)
69 || get_remotely_provisioned_component(&self.security_level).is_err()
70 {
71 self.is_hal_present.store(false, Ordering::Relaxed);
72 return Ok(false);
73 }
74 // To check if remote provisioning is enabled on a system that supports both remote
75 // provisioning and factory provisioned keys, we only need to check if there are any
76 // keys at all generated to indicate if the app has gotten the signal to begin filling
77 // the key pool from the server.
78 let pool_status = db
79 .get_attestation_pool_status(0 /* date */, &self.km_uuid)
80 .context("In check_rem_prov_enabled: failed to get attestation pool status.")?;
81 Ok(pool_status.total != 0)
82 }
83
84 /// Fetches a remote provisioning attestation key and certificate chain inside of the
85 /// returned `CertificateChain` struct if one exists for the given caller_uid. If one has not
86 /// been assigned, this function will assign it. If there are no signed attestation keys
87 /// available to be assigned, it will return the ResponseCode `OUT_OF_KEYS`
88 fn get_rem_prov_attest_key(
89 &self,
90 key: &KeyDescriptor,
91 caller_uid: u32,
92 db: &mut KeystoreDB,
93 ) -> Result<Option<CertificateChain>> {
94 match key.domain {
95 Domain::APP => {
96 // Attempt to get an Attestation Key once. If it fails, then the app doesn't
97 // have a valid chain assigned to it. The helper function will return None after
98 // attempting to assign a key. An error will be thrown if the pool is simply out
99 // of usable keys. Then another attempt to fetch the just-assigned key will be
100 // made. If this fails too, something is very wrong.
101 self.get_rem_prov_attest_key_helper(key, caller_uid, db)
102 .context("In get_rem_prov_attest_key: Failed to get a key")?
103 .map_or_else(
104 || self.get_rem_prov_attest_key_helper(key, caller_uid, db),
105 |v| Ok(Some(v)),
106 )
107 .context(concat!(
108 "In get_rem_prov_attest_key: Failed to get a key after",
109 "attempting to assign one."
110 ))?
111 .map_or_else(
112 || {
113 Err(Error::sys()).context(concat!(
114 "In get_rem_prov_attest_key: Attempted to assign a ",
115 "key and failed silently. Something is very wrong."
116 ))
117 },
118 |cert_chain| Ok(Some(cert_chain)),
119 )
120 }
121 _ => Ok(None),
122 }
123 }
124
125 /// Returns None if an AttestationKey fails to be assigned. Errors if no keys are available.
126 fn get_rem_prov_attest_key_helper(
127 &self,
128 key: &KeyDescriptor,
129 caller_uid: u32,
130 db: &mut KeystoreDB,
131 ) -> Result<Option<CertificateChain>> {
132 let cert_chain = db
133 .retrieve_attestation_key_and_cert_chain(key.domain, caller_uid as i64, &self.km_uuid)
134 .context("In get_rem_prov_attest_key_helper: Failed to retrieve a key + cert chain")?;
135 match cert_chain {
136 Some(cert_chain) => Ok(Some(cert_chain)),
137 // Either this app needs to be assigned a key, or the pool is empty. An error will
138 // be thrown if there is no key available to assign. This will indicate that the app
139 // should be nudged to provision more keys so keystore can retry.
140 None => {
141 db.assign_attestation_key(key.domain, caller_uid as i64, &self.km_uuid)
142 .context("In get_rem_prov_attest_key_helper: Failed to assign a key")?;
143 Ok(None)
144 }
145 }
146 }
147
148 fn is_asymmetric_key(&self, params: &[KeyParameter]) -> bool {
149 params.iter().any(|kp| {
150 matches!(
151 kp,
152 KeyParameter {
153 tag: Tag::ALGORITHM,
154 value: KeyParameterValue::Algorithm(Algorithm::RSA)
155 } | KeyParameter {
156 tag: Tag::ALGORITHM,
157 value: KeyParameterValue::Algorithm(Algorithm::EC)
158 }
159 )
160 })
161 }
162
163 /// Checks to see (1) if the key in question should be attested to based on the algorithm and
164 /// (2) if remote provisioning is present and enabled on the system. If these conditions are
165 /// met, it makes an attempt to fetch the attestation key assigned to the `caller_uid`.
166 ///
167 /// It returns the ResponseCode `OUT_OF_KEYS` if there is not one key currently assigned to the
168 /// `caller_uid` and there are none available to assign.
Janis Danisevskis3541f3e2021-03-20 14:18:52 -0700169 pub fn get_remotely_provisioned_attestation_key_and_certs(
Max Bires97f96812021-02-23 23:44:57 -0800170 &self,
171 key: &KeyDescriptor,
172 caller_uid: u32,
173 params: &[KeyParameter],
174 db: &mut KeystoreDB,
Janis Danisevskis3541f3e2021-03-20 14:18:52 -0700175 ) -> Result<Option<(AttestationKey, Certificate)>> {
Max Bires97f96812021-02-23 23:44:57 -0800176 if !self.is_asymmetric_key(params) || !self.check_rem_prov_enabled(db)? {
177 // There is no remote provisioning component for this security level on the
178 // device. Return None so the underlying KM instance knows to use its
179 // factory provisioned key instead. Alternatively, it's not an asymmetric key
180 // and therefore will not be attested.
Janis Danisevskis3541f3e2021-03-20 14:18:52 -0700181 Ok(None)
Max Bires97f96812021-02-23 23:44:57 -0800182 } else {
183 match self.get_rem_prov_attest_key(&key, caller_uid, db).context(concat!(
184 "In get_remote_provisioning_key_and_certs: Failed to get ",
185 "attestation key"
186 ))? {
Janis Danisevskis3541f3e2021-03-20 14:18:52 -0700187 Some(cert_chain) => Ok(Some((
188 AttestationKey {
Max Bires97f96812021-02-23 23:44:57 -0800189 keyBlob: cert_chain.private_key.to_vec(),
190 attestKeyParams: vec![],
191 issuerSubjectName: parse_subject_from_certificate(&cert_chain.batch_cert)
192 .context(concat!(
193 "In get_remote_provisioning_key_and_certs: Failed to ",
194 "parse subject."
195 ))?,
Janis Danisevskis3541f3e2021-03-20 14:18:52 -0700196 },
197 Certificate { encodedCertificate: cert_chain.cert_chain },
198 ))),
199 None => Ok(None),
Max Bires97f96812021-02-23 23:44:57 -0800200 }
201 }
202 }
203}
Max Bires148c08e2020-10-13 13:41:41 -0700204/// Implementation of the IRemoteProvisioning service.
Max Biresb2e1d032021-02-08 21:35:05 -0800205#[derive(Default)]
Max Bires148c08e2020-10-13 13:41:41 -0700206pub struct RemoteProvisioningService {
Max Biresb2e1d032021-02-08 21:35:05 -0800207 device_by_sec_level: HashMap<SecurityLevel, Asp>,
Max Bires148c08e2020-10-13 13:41:41 -0700208}
209
210impl RemoteProvisioningService {
Max Biresb2e1d032021-02-08 21:35:05 -0800211 fn get_dev_by_sec_level(
212 &self,
213 sec_level: &SecurityLevel,
214 ) -> Result<Strong<dyn IRemotelyProvisionedComponent>> {
215 if let Some(dev) = self.device_by_sec_level.get(sec_level) {
216 dev.get_interface().context("In get_dev_by_sec_level.")
217 } else {
218 Err(error::Error::sys()).context(concat!(
219 "In get_dev_by_sec_level: Remote instance for requested security level",
220 " not found."
221 ))
222 }
223 }
224
Max Bires148c08e2020-10-13 13:41:41 -0700225 /// Creates a new instance of the remote provisioning service
Stephen Crane221bbb52020-12-16 15:52:10 -0800226 pub fn new_native_binder() -> Result<Strong<dyn IRemoteProvisioning>> {
Max Biresb2e1d032021-02-08 21:35:05 -0800227 let mut result: Self = Default::default();
228 let dev = get_remotely_provisioned_component(&SecurityLevel::TRUSTED_ENVIRONMENT)
229 .context("In new_native_binder: Failed to get TEE Remote Provisioner instance.")?;
230 result.device_by_sec_level.insert(SecurityLevel::TRUSTED_ENVIRONMENT, dev);
231 if let Ok(dev) = get_remotely_provisioned_component(&SecurityLevel::STRONGBOX) {
232 result.device_by_sec_level.insert(SecurityLevel::STRONGBOX, dev);
233 }
Andrew Walbrande45c8b2021-04-13 14:42:38 +0000234 Ok(BnRemoteProvisioning::new_binder(result, BinderFeatures::default()))
Max Bires148c08e2020-10-13 13:41:41 -0700235 }
236
237 /// Populates the AttestationPoolStatus parcelable with information about how many
238 /// certs will be expiring by the date provided in `expired_by` along with how many
239 /// keys have not yet been assigned.
240 pub fn get_pool_status(
241 &self,
242 expired_by: i64,
243 sec_level: SecurityLevel,
244 ) -> Result<AttestationPoolStatus> {
245 let (_, _, uuid) = get_keymint_device(&sec_level)?;
246 DB.with::<_, Result<AttestationPoolStatus>>(|db| {
247 let mut db = db.borrow_mut();
Max Biresb2e1d032021-02-08 21:35:05 -0800248 // delete_expired_attestation_keys is always safe to call, and will remove anything
249 // older than the date at the time of calling. No work should be done on the
250 // attestation keys unless the pool status is checked first, so this call should be
251 // enough to routinely clean out expired keys.
252 db.delete_expired_attestation_keys()?;
Matthew Maurerb77a28d2021-05-07 16:08:20 -0700253 db.get_attestation_pool_status(expired_by, &uuid)
Max Bires148c08e2020-10-13 13:41:41 -0700254 })
255 }
256
257 /// Generates a CBOR blob which will be assembled by the calling code into a larger
258 /// CBOR blob intended for delivery to a provisioning serever. This blob will contain
259 /// `num_csr` certificate signing requests for attestation keys generated in the TEE,
260 /// along with a server provided `eek` and `challenge`. The endpoint encryption key will
261 /// be used to encrypt the sensitive contents being transmitted to the server, and the
262 /// challenge will ensure freshness. A `test_mode` flag will instruct the remote provisioning
263 /// HAL if it is okay to accept EEKs that aren't signed by something that chains back to the
264 /// baked in root of trust in the underlying IRemotelyProvisionedComponent instance.
Max Bires834dd362021-03-23 13:01:57 -0700265 #[allow(clippy::too_many_arguments)]
Max Bires148c08e2020-10-13 13:41:41 -0700266 pub fn generate_csr(
267 &self,
Max Biresb2e1d032021-02-08 21:35:05 -0800268 test_mode: bool,
269 num_csr: i32,
270 eek: &[u8],
271 challenge: &[u8],
272 sec_level: SecurityLevel,
273 protected_data: &mut ProtectedData,
Max Bires834dd362021-03-23 13:01:57 -0700274 device_info: &mut DeviceInfo,
Max Bires148c08e2020-10-13 13:41:41 -0700275 ) -> Result<Vec<u8>> {
Max Biresb2e1d032021-02-08 21:35:05 -0800276 let dev = self.get_dev_by_sec_level(&sec_level)?;
277 let (_, _, uuid) = get_keymint_device(&sec_level)?;
278 let keys_to_sign = DB.with::<_, Result<Vec<MacedPublicKey>>>(|db| {
279 let mut db = db.borrow_mut();
280 Ok(db
281 .fetch_unsigned_attestation_keys(num_csr, &uuid)?
282 .iter()
283 .map(|key| MacedPublicKey { macedKey: key.to_vec() })
284 .collect())
285 })?;
Max Bires834dd362021-03-23 13:01:57 -0700286 let mut mac = map_rem_prov_error(dev.generateCertificateRequest(
Max Biresb2e1d032021-02-08 21:35:05 -0800287 test_mode,
288 &keys_to_sign,
289 eek,
290 challenge,
Max Bires834dd362021-03-23 13:01:57 -0700291 device_info,
Max Biresb2e1d032021-02-08 21:35:05 -0800292 protected_data,
293 ))
294 .context("In generate_csr: Failed to generate csr")?;
Max Bires97f96812021-02-23 23:44:57 -0800295 // TODO(b/180392379): Replace this manual CBOR generation with the cbor-serde crate as well.
296 // This generates an array consisting of the mac and the public key Maps.
297 // Just generate the actual MacedPublicKeys structure when the crate is
298 // available.
Matthew Maurerb77a28d2021-05-07 16:08:20 -0700299 let mut cose_mac_0: Vec<u8> = vec![
300 (0b100_00000 | (keys_to_sign.len() + 1)) as u8,
301 0b010_11000, // mac
302 (mac.len() as u8),
303 ];
Max Bires97f96812021-02-23 23:44:57 -0800304 cose_mac_0.append(&mut mac);
305 for maced_public_key in keys_to_sign {
306 if maced_public_key.macedKey.len() > 83 + 8 {
307 cose_mac_0.extend_from_slice(&maced_public_key.macedKey[8..83 + 8]);
308 }
309 }
310 Ok(cose_mac_0)
Max Bires148c08e2020-10-13 13:41:41 -0700311 }
312
313 /// Provisions a certificate chain for a key whose CSR was included in generate_csr. The
314 /// `public_key` is used to index into the SQL database in order to insert the `certs` blob
315 /// which represents a PEM encoded X.509 certificate chain. The `expiration_date` is provided
316 /// as a convenience from the caller to avoid having to parse the certificates semantically
317 /// here.
318 pub fn provision_cert_chain(
319 &self,
320 public_key: &[u8],
Max Biresb2e1d032021-02-08 21:35:05 -0800321 batch_cert: &[u8],
Max Bires148c08e2020-10-13 13:41:41 -0700322 certs: &[u8],
323 expiration_date: i64,
324 sec_level: SecurityLevel,
325 ) -> Result<()> {
326 DB.with::<_, Result<()>>(|db| {
327 let mut db = db.borrow_mut();
328 let (_, _, uuid) = get_keymint_device(&sec_level)?;
Matthew Maurerb77a28d2021-05-07 16:08:20 -0700329 db.store_signed_attestation_certificate_chain(
Max Bires148c08e2020-10-13 13:41:41 -0700330 public_key,
Max Biresb2e1d032021-02-08 21:35:05 -0800331 batch_cert,
Max Bires148c08e2020-10-13 13:41:41 -0700332 certs, /* DER encoded certificate chain */
333 expiration_date,
334 &uuid,
Matthew Maurerb77a28d2021-05-07 16:08:20 -0700335 )
Max Bires148c08e2020-10-13 13:41:41 -0700336 })
337 }
338
339 /// Submits a request to the Remote Provisioner HAL to generate a signing key pair.
340 /// `is_test_mode` indicates whether or not the returned public key should be marked as being
341 /// for testing in order to differentiate them from private keys. If the call is successful,
342 /// the key pair is then added to the database.
Max Biresb2e1d032021-02-08 21:35:05 -0800343 pub fn generate_key_pair(&self, is_test_mode: bool, sec_level: SecurityLevel) -> Result<()> {
344 let (_, _, uuid) = get_keymint_device(&sec_level)?;
345 let dev = self.get_dev_by_sec_level(&sec_level)?;
346 let mut maced_key = MacedPublicKey { macedKey: Vec::new() };
347 let priv_key =
348 map_rem_prov_error(dev.generateEcdsaP256KeyPair(is_test_mode, &mut maced_key))
349 .context("In generate_key_pair: Failed to generated ECDSA keypair.")?;
350 // TODO(b/180392379): This is a brittle hack that relies on the consistent formatting of
351 // the returned CBOR blob in order to extract the public key.
352 let data = &maced_key.macedKey;
353 if data.len() < 85 {
354 return Err(error::Error::sys()).context(concat!(
355 "In generate_key_pair: CBOR blob returned from",
356 "RemotelyProvisionedComponent is definitely malformatted or empty."
357 ));
358 }
359 let mut raw_key: Vec<u8> = vec![0; 64];
360 raw_key[0..32].clone_from_slice(&data[18..18 + 32]);
361 raw_key[32..64].clone_from_slice(&data[53..53 + 32]);
362 DB.with::<_, Result<()>>(|db| {
363 let mut db = db.borrow_mut();
Matthew Maurerb77a28d2021-05-07 16:08:20 -0700364 db.create_attestation_key_entry(&maced_key.macedKey, &raw_key, &priv_key, &uuid)
Max Biresb2e1d032021-02-08 21:35:05 -0800365 })
366 }
367
368 /// Checks the security level of each available IRemotelyProvisionedComponent hal and returns
369 /// all levels in an array to the caller.
370 pub fn get_security_levels(&self) -> Result<Vec<SecurityLevel>> {
371 Ok(self.device_by_sec_level.keys().cloned().collect())
Max Bires148c08e2020-10-13 13:41:41 -0700372 }
Max Bires60d7ed12021-03-05 15:59:22 -0800373
374 /// Deletes all attestation keys generated by the IRemotelyProvisionedComponent from the device,
375 /// regardless of what state of the attestation key lifecycle they were in.
376 pub fn delete_all_keys(&self) -> Result<i64> {
377 DB.with::<_, Result<i64>>(|db| {
378 let mut db = db.borrow_mut();
Matthew Maurerb77a28d2021-05-07 16:08:20 -0700379 db.delete_all_attestation_keys()
Max Bires60d7ed12021-03-05 15:59:22 -0800380 })
381 }
Max Bires148c08e2020-10-13 13:41:41 -0700382}
383
384impl binder::Interface for RemoteProvisioningService {}
385
386// Implementation of IRemoteProvisioning. See AIDL spec at
387// :aidl/android/security/remoteprovisioning/IRemoteProvisioning.aidl
388impl IRemoteProvisioning for RemoteProvisioningService {
389 fn getPoolStatus(
390 &self,
391 expired_by: i64,
392 sec_level: SecurityLevel,
393 ) -> binder::public_api::Result<AttestationPoolStatus> {
Hasini Gunasinghe5a893e82021-05-05 14:32:32 +0000394 let _wp = wd::watch_millis("IRemoteProvisioning::getPoolStatus", 500);
Max Bires148c08e2020-10-13 13:41:41 -0700395 map_or_log_err(self.get_pool_status(expired_by, sec_level), Ok)
396 }
397
398 fn generateCsr(
399 &self,
400 test_mode: bool,
401 num_csr: i32,
402 eek: &[u8],
403 challenge: &[u8],
404 sec_level: SecurityLevel,
Max Biresb2e1d032021-02-08 21:35:05 -0800405 protected_data: &mut ProtectedData,
Max Bires834dd362021-03-23 13:01:57 -0700406 device_info: &mut DeviceInfo,
Max Bires148c08e2020-10-13 13:41:41 -0700407 ) -> binder::public_api::Result<Vec<u8>> {
Hasini Gunasinghe5a893e82021-05-05 14:32:32 +0000408 let _wp = wd::watch_millis("IRemoteProvisioning::generateCsr", 500);
Max Biresb2e1d032021-02-08 21:35:05 -0800409 map_or_log_err(
Max Bires834dd362021-03-23 13:01:57 -0700410 self.generate_csr(
411 test_mode,
412 num_csr,
413 eek,
414 challenge,
415 sec_level,
416 protected_data,
417 device_info,
418 ),
Max Biresb2e1d032021-02-08 21:35:05 -0800419 Ok,
420 )
Max Bires148c08e2020-10-13 13:41:41 -0700421 }
422
423 fn provisionCertChain(
424 &self,
425 public_key: &[u8],
Max Biresb2e1d032021-02-08 21:35:05 -0800426 batch_cert: &[u8],
Max Bires148c08e2020-10-13 13:41:41 -0700427 certs: &[u8],
428 expiration_date: i64,
429 sec_level: SecurityLevel,
430 ) -> binder::public_api::Result<()> {
Hasini Gunasinghe5a893e82021-05-05 14:32:32 +0000431 let _wp = wd::watch_millis("IRemoteProvisioning::provisionCertChain", 500);
Max Biresb2e1d032021-02-08 21:35:05 -0800432 map_or_log_err(
433 self.provision_cert_chain(public_key, batch_cert, certs, expiration_date, sec_level),
434 Ok,
435 )
Max Bires148c08e2020-10-13 13:41:41 -0700436 }
437
438 fn generateKeyPair(
439 &self,
440 is_test_mode: bool,
441 sec_level: SecurityLevel,
442 ) -> binder::public_api::Result<()> {
Hasini Gunasinghe5a893e82021-05-05 14:32:32 +0000443 let _wp = wd::watch_millis("IRemoteProvisioning::generateKeyPair", 500);
Max Bires148c08e2020-10-13 13:41:41 -0700444 map_or_log_err(self.generate_key_pair(is_test_mode, sec_level), Ok)
445 }
Max Biresb2e1d032021-02-08 21:35:05 -0800446
447 fn getSecurityLevels(&self) -> binder::public_api::Result<Vec<SecurityLevel>> {
Hasini Gunasinghe5a893e82021-05-05 14:32:32 +0000448 let _wp = wd::watch_millis("IRemoteProvisioning::getSecurityLevels", 500);
Max Biresb2e1d032021-02-08 21:35:05 -0800449 map_or_log_err(self.get_security_levels(), Ok)
450 }
Max Bires60d7ed12021-03-05 15:59:22 -0800451
452 fn deleteAllKeys(&self) -> binder::public_api::Result<i64> {
Hasini Gunasinghe5a893e82021-05-05 14:32:32 +0000453 let _wp = wd::watch_millis("IRemoteProvisioning::deleteAllKeys", 500);
Max Bires60d7ed12021-03-05 15:59:22 -0800454 map_or_log_err(self.delete_all_keys(), Ok)
455 }
Max Bires148c08e2020-10-13 13:41:41 -0700456}