Compare commits

..
21 Commits
Author SHA1 Message Date
Enginex0 4e83a846c9 docs(release): add v5.1 changelog for interception architecture rewrite 2026-03-21 15:06:52 +01:00
Enginex0 3aff09e7dd feat(interception): dynamically register SecurityLevel binder interceptors
keystore2 may return a different BBinder for each getSecurityLevel call,
so the initial registration during setup might not cover all binder
instances that client apps receive. Intercept getSecurityLevel replies
to register our hook on every new BBinder, deduplicated by identity hash.
2026-03-21 06:09:00 +01:00
Enginex0 c7b0af2d29 fix(interception): restore G2 binder overhead mitigations from pre-PR157
Commit b6f9d7b introduced G2-specific fixes (ratio dropped from 5.00x
to 2.10x) that were lost when resetting to upstream PR #157 at 94c8e5b.

Restores: try-catch safety in BinderInterceptor.onTransact, shouldPatch
early-exit in getKeyEntry post-transact, safe parcel reads (!! to ?:)
at 6 sites, teeResponses cache population in generateKey/importKey
post-transact, uncaught exception handler in App.kt, and removes the
pingBinder liveness check that added ~1.8x overhead per pre-transact.
2026-03-21 05:41:56 +01:00
Enginex0 13a1dd7887 feat(interception): add hardening fixes from pre-PR157 backup
Ported challenge length validation, forced op rejection, system
transaction skip, dead interceptor blocking, and createErrorReply.
Removed size guards that broke G10. Fixed F14 error code to KeyMint
space (-38).
2026-03-20 08:16:12 +01:00
Enginex0 21a3cb1ec0 fix(build): restore customize.sh and build.gradle.kts with all native libs
PR 157 wholesale replacement dropped libsupervisor.so and
libcertgen.so from both the ZIP include filter and the
customize.sh extraction. service.sh calls ./supervisor and
App.kt loads libcertgen.so, so the module would fail on install.

Restores our versions with the Rust build task, 4-lib include
filter, and supervisor/certgen extraction. Adopts PR 157's
nativeLibsDir simplification (always use stripped libs).
2026-03-20 06:58:10 +01:00
Enginex0 2b31d4ef47 refactor(persistence): remove dead rePersistIfNeeded and helper
Software keys receive their final cert chain at generation time
and never go through onPostTransact patching, so re-persisting
after patching is unreachable in PR 157's architecture.
2026-03-20 06:26:08 +01:00
Enginex0 38e9b547a5 feat(certgen): wire NativeCertGen and key persistence onto PR 157 base
NativeCertGen serves as a fast path before BouncyCastle in
doSoftwareGeneration, falling back gracefully when libcertgen.so
is absent. GeneratedKeyPersistence saves software keys to disk
asynchronously and restores them on daemon restart.

Bump version to v5.1, restore TEESimulator-RS naming convention.
2026-03-20 06:23:05 +01:00
Enginex0 94c8e5b182 refactor(interception): reset Kotlin base to upstream PR #157
Our reimplementation of PR 157's logic had a silent divergence causing
G10 to still fail under binder stress. Instead of hunting line-by-line,
replace all shared Kotlin/Java/C++ files with PR 157's exact proven
versions that pass all 63 conformance tests. Our Rust-exclusive files
(NativeCertGen, GeneratedKeyPersistence, native-certgen crate) remain
in the repo but are dormant until re-wired in a follow-up commit.
2026-03-20 05:41:15 +01:00
Enginex0 8fdc59a142 feat(interception): add AUTO mode TEE race for G10 attestation consistency
AUTO mode now races TEE hardware against software generation via
CompletableFuture. If TEE succeeds, the cert chain is patched and
cached in teeResponses before returning, making attestation
stress-resilient. If TEE fails, software fallback is used.

ConfigurationManager no longer resolves AUTO at config time; it
passes Mode.AUTO through to KeyMintSecurityLevelInterceptor for
runtime dispatch. shouldPatch() returns true for both PATCH and
AUTO modes. TEE status file persistence removed entirely.

Aligns handleGenerateKey with upstream PR #157 three-way dispatch:
forceGenerate, raceTeePatch, or hardware forwarding with post-patch.

Hardware keygen rate limiting removed (replaced by raceTeePatch for
AUTO, plain Continue for PATCH). Attest key override in
Keystore2Interceptor now patches authorizations and uses null-safe
nspace assignment.
2026-03-20 04:44:52 +01:00
Enginex0 b6f9d7b486 fix(interception): harden daemon against binder stress crashes
BinderInterceptor.onTransact now catches Throwable, preventing any
exception on a binder thread from killing the daemon. Adds a global
uncaught exception handler as defense in depth.

Replace Thread.sleep with TeeLatencySimulator (LockSupport.parkNanos +
statistical delay model) for keygen latency, reducing binder thread
blocking. Move GeneratedKeyPersistence.save to a background executor
to avoid disk I/O on binder threads.

Convert force-unwrap parcel reads to safe calls with early returns in
onPreTransact/onPostTransact hot paths. Add -DNDEBUG to native release
builds to compile out verbose logging from the ioctl hook.

Targets G2 (ping overhead) and G10 (stress attestation consistency).
2026-03-19 17:38:29 +01:00
Enginex0 99e6b0b5ea feat(certgen): add enforcement tags to native DER encoder and teeResponses cache
Extend Rust native cert gen with software-enforced attestation tags
(CALLER_NONCE, ACTIVE_DATETIME, ORIGINATION_EXPIRE_DATETIME,
USAGE_EXPIRE_DATETIME, USAGE_COUNT_LIMIT, UNLOCKED_DEVICE_REQUIRED)
and make NO_AUTH_REQUIRED conditional in teeEnforced. Fixes F5/F6
test failures where these tags were missing from NativeCertGen path.

Add teeResponses cache so PATCH mode keys patched in onPostTransact
return consistent attestation via getKeyEntry. Without this, getKeyEntry
fell through to real keystore2, returning unpatched metadata.

Remove dead Rust enums (KeyPurpose, SecurityLevel, VerifiedBootState)
that were never referenced by the DER encoder.
2026-03-19 15:43:17 +01:00
Enginex0 397bb6338b fix(interception): make NO_AUTH_REQUIRED conditional in KeyMetadata authorizations
Upstream removed the unconditional NO_AUTH_REQUIRED from toAuthorizations.
A key generated with auth requirements would incorrectly report
NO_AUTH_REQUIRED in metadata, creating a detectable inconsistency
with the attestation extension.
2026-03-19 09:48:08 +01:00
Enginex0 cb81116701 feat(interception): close remaining PR #157 compliance gaps
Full diff analysis against upstream's 50 commits revealed 8 functional
gaps after v5.0. These are detectable by conformance tests or detector
apps inspecting KeyMetadata authorizations and operation semantics.

KeyMetadata authorizations:
- Add 9 TEE-enforced tags (CALLER_NONCE, MIN_MAC_LENGTH, ROLLBACK_RESISTANCE,
  EARLY_BOOT_ONLY, ALLOW_WHILE_ON_BODY, TRUSTED_USER_PRESENCE_REQUIRED,
  TRUSTED_CONFIRMATION_REQUIRED, MAX_USES_PER_BOOT, MAX_BOOT_LEVEL)
- Fix CREATION_DATETIME to SOFTWARE security level via createSwAuth
- Add SOFTWARE-enforced date enforcement, USAGE_COUNT_LIMIT, UNLOCKED_DEVICE_REQUIRED

Symmetric key support:
- Generate AES/HMAC keys in software via javax.crypto.KeyGenerator
- GeneratedKeyInfo expanded with nullable keyPair + secretKey fields
- CipherPrimitive accepts java.security.Key for symmetric operations
- SoftwareOperation routes ENCRYPT/DECRYPT to secretKey when available

Operation compliance:
- beginParameters property replaces manual IV wrapping for GCM
- KeyAgreementPrimitive for ECDH AGREE_KEY operations
- handleCreateOperation wrapped in runCatching (crash prevention)
- SECURE_HW_COMMUNICATION_FAILED on software gen failure

Certificate patching:
- Import key cert chain + authorization patching in onPostTransact
- patchAuthorizations added to post-generateKey PATCH mode path
2026-03-19 09:40:48 +01:00
Enginex0 45477a7898 feat(interception): add AOSP authorize_create enforcement and wire format fixes
Integrate upstream AOSP compliance checks that failed post-v5.0 testing:

- INCLUDE_UNIQUE_ID: SELinux gen_unique_id + Android permission gate
- Forced operation rejection with PERMISSION_DENIED
- Null purpose guard returning INVALID_ARGUMENT
- Wire format: use createServiceSpecificErrorReply for authorize_create
- USAGE_COUNT_LIMIT with AtomicInteger counters and onFinishCallback
- effectiveParams merging key digest with operation purpose
- AuthorizeCreate rewrite: algorithm-purpose before purpose-list (AOSP HAL order)
- CALLER_NONCE in attestation teeEnforced list

Based on upstream commits e55d16d, 3078ea9, 2bc46be, 07c98bc, 41abe77.
2026-03-19 09:21:52 +01:00
Enginex0 634a1293c1 docs(readme): credit MhmRdd for upstream AOSP compliance work 2026-03-19 07:37:53 +01:00
Enginex0 f115eda2dc chore(version): bump to v5.0 with changelog for AOSP compliance overhaul 2026-03-19 07:36:20 +01:00
Enginex0 217edf61fe docs: credit upstream PR #157 contributors 2026-03-19 07:33:57 +01:00
Enginex0 ee5bf2e1a7 feat(config): add SELinux permission checks, latency simulation, and hbk seed
ConfigurationManager gains checkSELinuxPermission (reads /proc/pid/attr)
and hasPermissionForUid (delegates to IPackageManager.checkPermission)
for AOSP-compliant access control. TeeLatencySimulator provides log-normal
distribution matching real QTEE/Trustonic hardware timing profiles.

Module customize.sh now generates a device-unique hardware-bound key seed
(32 bytes from /dev/random) and clears stale tee_status.txt on install.
2026-03-19 07:33:47 +01:00
Enginex0 2181157cb6 feat(operation): add AOSP-compliant error handling, authorize_create, and GCM IV
SoftwareOperation now throws ServiceSpecificException for all error paths
instead of raw Java exceptions, matching AIDL wire format. updateAad on
non-AEAD operations returns INVALID_TAG (-76) per AOSP operation.rs.
SoftwareOperationBinder methods are @Synchronized to match AOSP Mutex
semantics. GCM encrypt operations return the generated IV in
CreateOperationResponse.parameters.

AuthorizeCreate enforces PURPOSE validation, algorithm-purpose
compatibility (EC rejects ENCRYPT/DECRYPT, RSA rejects AGREE_KEY),
temporal constraints (ACTIVE_DATETIME, ORIGINATION_EXPIRE, USAGE_EXPIRE),
and CALLER_NONCE prohibition. GeneratedKeyInfo carries keyParams for
authorize_create enforcement on software createOperation.
2026-03-19 07:33:30 +01:00
Enginex0 aa4917e623 feat(interception): add binder tx code filtering and keystore2 service compliance
Native binder_interceptor now accepts a filtered_codes vector per
registration, skipping JNI round-trip for non-intercepted transaction
codes. Keystore2Interceptor adds getNumberOfEntries software key counting,
deleteKey KEY_ID domain resolution, patchAuthorizations for OS/VENDOR/BOOT
patch levels, importedKeys tracking to prevent stale attest-key overrides,
and nspace consistency fix in the attest-key override path.

InterceptorUtils gains createServiceSpecificErrorReply for AIDL-compliant
error serialization and patchAuthorizations for authorization array patching.
2026-03-19 07:33:11 +01:00
Enginex0 f06cb30b40 feat(attestation): align attestation extension and cert generation with AOSP
KeyMintAttestation now carries all 17 enforcement tags that AOSP's
authorize_create and buildKeyDescription paths expect. AttestationBuilder
populates BLOCK_MODE as SET OF INTEGER, gates version-guarded tags
(RSA_OAEP_MGF_DIGEST >=100, ROLLBACK_RESISTANCE >=3, EARLY_BOOT_ONLY >=4),
computes INCLUDE_UNIQUE_ID via HMAC-SHA256 per KeyMint HAL spec, and
gates AAID on challenge presence.

CertificateGenerator uses AOSP cert validity defaults (epoch notBefore,
9999-12-31 notAfter), returns ServiceSpecificException(-75) for missing
keybox, and adds RSA exponent null safety.
2026-03-19 07:32:53 +01:00
37 changed files with 2197 additions and 1075 deletions
+4
View File
@@ -0,0 +1,4 @@
# Ensure shell scripts always have LF line endings, even on Windows.
# These get packaged into flashable zips and run on Android devices.
*.sh text eol=lf
module/daemon text eol=lf
+3
View File
@@ -242,6 +242,9 @@ boot=device_default
- **[5ec1cff](https://github.com/5ec1cff/TrickyStore)** — TrickyStore, the project that pioneered keystore interception on Android
- **[LSPlt](https://github.com/LSPosed/LSPlt)** — PLT hook library used for binder interception
- **[ring](https://github.com/briansmith/ring)** — Rust cryptography library powering native cert generation
- **[MhmRdd](https://github.com/MhmRdd)** — AOSP compliance improvements via upstream [PR #157](https://github.com/JingMatrix/TEESimulator/pull/157), including authorize_create enforcement, attestation extension alignment, and binder transaction filtering
- **[fatalcoder524](https://github.com/fatalcoder524)** — a real contributor and collaborator on this project
- **[huguangares](https://github.com/huguangares)** — collaborator and tester
---
+7 -8
View File
@@ -29,7 +29,7 @@ val gitExecutor = objects.newInstance(GitExecutor::class.java)
val gitCommitCount = gitExecutor.execute("git rev-list HEAD --count", rootDir).toInt()
val gitCommitHash = gitExecutor.execute("git rev-parse --verify --short HEAD", rootDir)
val verName = "v4.8"
val verName = "v5.1"
android {
namespace = "org.matrix.TEESimulator"
@@ -121,8 +121,8 @@ androidComponents {
dependsOn("package${capitalized}")
} else {
dependsOn("minify${capitalized}WithR8")
dependsOn("strip${capitalized}DebugSymbols")
}
dependsOn("strip${capitalized}DebugSymbols")
dependsOn(buildRustCertgen)
if (isDebug) {
@@ -140,12 +140,11 @@ androidComponents {
}
}
val nativeLibsDir = if (isDebug) {
"intermediates/merged_native_libs/${variant.name}/merge${capitalized}NativeLibs/out/lib"
} else {
"intermediates/stripped_native_libs/${variant.name}/strip${capitalized}DebugSymbols/out/lib"
}
from(project.layout.buildDirectory.dir(nativeLibsDir)) {
from(
project.layout.buildDirectory.dir(
"intermediates/stripped_native_libs/${variant.name}/strip${capitalized}DebugSymbols/out/lib"
)
) {
into("lib")
include("**/libinject.so", "**/libTEESimulator.so", "**/libsupervisor.so", "**/libcertgen.so")
}
+1
View File
@@ -5,6 +5,7 @@ set(CMAKE_CXX_STANDARD 23)
set(CMAKE_EXPORT_COMPILE_COMMANDS ON)
set(CMAKE_CXX_FLAGS "${CMAKE_CXX_FLAGS} -fno-rtti")
set(CMAKE_CXX_FLAGS "${CMAKE_CXX_FLAGS} -fno-exceptions")
set(CMAKE_CXX_FLAGS_RELEASE "${CMAKE_CXX_FLAGS_RELEASE} -DNDEBUG")
# LSPlt configuration
OPTION(LSPLT_BUILD_SHARED OFF)
+31 -26
View File
@@ -235,6 +235,8 @@ class BinderInterceptor : public BBinder {
struct RegistrationEntry {
wp<IBinder> target;
sp<IBinder> callback_interface;
// Transaction codes to intercept. Empty = intercept all (legacy behavior).
std::vector<uint32_t> filtered_codes;
};
// Reader-Writer lock for the registry to allow concurrent reads (lookups)
@@ -244,10 +246,15 @@ class BinderInterceptor : public BBinder {
public:
BinderInterceptor() = default;
// Checks if a specific Binder instance is currently registered for interception
bool isBinderIntercepted(const wp<BBinder> &target) const {
// Checks if a specific Binder+code combination should be intercepted.
// Returns true if the binder is registered AND the code is in its filter
// (or the filter is empty, meaning intercept everything).
bool shouldIntercept(const wp<BBinder> &target, uint32_t code) const {
std::shared_lock lock(registry_mutex_);
return registry_.find(target) != registry_.end();
auto it = registry_.find(target);
if (it == registry_.end()) return false;
const auto &codes = it->second.filtered_codes;
return codes.empty() || std::find(codes.begin(), codes.end(), code) != codes.end();
}
// Main entry point for processing the "Man-in-the-Middle" logic
@@ -348,19 +355,11 @@ static sp<BinderStub> g_stub_instance = nullptr;
namespace {
constexpr binder_size_t kMaxInterceptableDataSize = 256 * 1024;
void inspectAndRewriteTransaction(binder_transaction_data *txn_data) {
if (!txn_data || txn_data->target.ptr == 0)
return;
// Bypass interception for oversized payloads to prevent thread starvation from flood attacks
if (txn_data->data_size > kMaxInterceptableDataSize)
return;
// AIDL methods use codes in [FIRST_CALL_TRANSACTION, LAST_CALL_TRANSACTION] (1..0x00ffffff).
// System transactions (PING, INTERFACE, DUMP, SHELL_COMMAND) use codes above that range.
// Skip those — intercepting a ping adds measurable latency that timing detectors flag.
// Skip system transactions (PING, INTERFACE, DUMP) to avoid latency detectors
if (txn_data->code > 0x00ffffffu && txn_data->code != intercept::kBackdoorCode)
return;
@@ -393,7 +392,7 @@ void inspectAndRewriteTransaction(binder_transaction_data *txn_data) {
// This is safe because we are holding a strong reference.
wp<BBinder> wp_target = target_binder_ptr;
if (g_interceptor_instance->isBinderIntercepted(wp_target)) {
if (g_interceptor_instance->shouldIntercept(wp_target, txn_data->code)) {
info.transaction_code = txn_data->code;
info.target_binder = wp_target; // Assign the valid weak pointer
hijack = true;
@@ -544,12 +543,26 @@ status_t BinderInterceptor::handleRegister(const Parcel &data) {
return BAD_TYPE;
}
// Read optional transaction code filter. If present: int32 count + count * uint32 codes.
// If absent or count <= 0: intercept all transaction codes (legacy behavior).
std::vector<uint32_t> codes;
int32_t code_count = 0;
if (data.dataAvail() >= sizeof(int32_t) && data.readInt32(&code_count) == OK && code_count > 0) {
codes.reserve(code_count);
for (int32_t i = 0; i < code_count; i++) {
uint32_t c = 0;
if (data.readUint32(&c) == OK) codes.push_back(c);
}
LOGI("Interceptor registered for binder %p with %zu filtered codes", target.get(), codes.size());
} else {
LOGI("Interceptor registered for binder %p (all codes)", target.get());
}
wp<IBinder> weak_target = target;
std::unique_lock lock(registry_mutex_);
registry_[weak_target] = {weak_target, callback};
registry_[weak_target] = {weak_target, callback, std::move(codes)};
LOGI("Interceptor registered for binder %p", target.get());
return OK;
}
@@ -599,15 +612,8 @@ bool BinderInterceptor::processInterceptedTransaction(uint64_t tx_id, sp<BBinder
Parcel pre_req, pre_resp;
writeTransactionData(pre_req, tx_id, target, code, flags, request);
status_t pre_status = callback->transact(intercept::kPreTransact, pre_req, &pre_resp);
if (pre_status != OK) {
// Block when interceptor is dead to prevent privacy leak to third-party apps
if (callback->pingBinder() != OK) {
LOGE("[TX_ID: %" PRIu64 "] Interceptor DEAD. Blocking to prevent attestation leak.", tx_id);
result = DEAD_OBJECT;
return true;
}
LOGW("[TX_ID: %" PRIu64 "] Pre-transaction callback failed (not dead). Forwarding.", tx_id);
if (callback->transact(intercept::kPreTransact, pre_req, &pre_resp) != OK) {
LOGW("[TX_ID: %" PRIu64 "] Pre-transaction callback failed. Forwarding original call.", tx_id);
return false;
}
@@ -661,8 +667,7 @@ bool BinderInterceptor::processInterceptedTransaction(uint64_t tx_id, sp<BBinder
VALIDATE_STATUS(tx_id, post_req.appendFrom(reply, 0, reply_size));
}
status_t post_status = callback->transact(intercept::kPostTransact, post_req, &post_resp);
if (post_status == OK) {
if (callback->transact(intercept::kPostTransact, post_req, &post_resp) == OK) {
int32_t post_action = post_resp.readInt32();
if (post_action == intercept::kActionOverrideReply && reply) {
result = post_resp.readInt32(); // Read new status
@@ -23,6 +23,8 @@ import org.matrix.TEESimulator.util.AndroidDeviceUtils
object App {
// The delay in milliseconds before retrying to initialize the interceptor.
private const val RETRY_DELAY_MS = 1000L
// The sleep duration in milliseconds for the main service loop to keep the process alive.
private const val SERVICE_SLEEP_MS = 1000000L
/**
* The main entry point of the TEESimulator application.
@@ -33,15 +35,16 @@ object App {
fun main(args: Array<String>) {
SystemLogger.info("Welcome to TEESimulator!")
Thread.setDefaultUncaughtExceptionHandler { thread, throwable ->
SystemLogger.error("Uncaught exception on ${thread.name}", throwable)
}
try {
// Initialize the Android framework environment
prepareEnvironment()
// Initialize and start the appropriate keystore interceptors.
initializeInterceptors()
// Load the package configuration.
ConfigurationManager.initialize()
// Set up the device's boot key and hash, which are crucial for attestation.
AndroidDeviceUtils.setupBootKeyAndHash()
// Android ships with a stripped-down Bouncy Castle provider under the name "BC".
@@ -2,8 +2,11 @@ package org.matrix.TEESimulator.attestation
import android.content.pm.PackageManager
import android.os.Build
import java.nio.ByteBuffer
import java.nio.charset.StandardCharsets
import java.security.MessageDigest
import javax.crypto.Mac
import javax.crypto.spec.SecretKeySpec
import org.bouncycastle.asn1.ASN1Boolean
import org.bouncycastle.asn1.ASN1Encodable
import org.bouncycastle.asn1.ASN1Enumerated
@@ -112,7 +115,6 @@ object AttestationBuilder {
}
val bootPatch = AndroidDeviceUtils.getBootPatchLevelLong(uid)
SystemLogger.info("Attestation patch levels for uid=$uid: os=$osPatch, vendor=$vendorPatch, boot=$bootPatch")
properties[AttestationConstants.TAG_BOOT_PATCHLEVEL] =
if (bootPatch != DO_NOT_REPORT) {
DERTaggedObject(
@@ -133,8 +135,16 @@ object AttestationBuilder {
uid: Int,
securityLevel: Int,
): ASN1Sequence {
val creationTime = System.currentTimeMillis()
val teeEnforced = buildTeeEnforcedList(params, uid, securityLevel)
val softwareEnforced = buildSoftwareEnforcedList(uid, securityLevel)
val softwareEnforced = buildSoftwareEnforcedList(params, uid, securityLevel, creationTime)
val uniqueId =
if (params.includeUniqueId == true && params.attestationChallenge != null) {
computeUniqueId(creationTime, createApplicationId(uid).octets)
} else {
ByteArray(0)
}
val fields =
arrayOf(
@@ -147,13 +157,49 @@ object AttestationBuilder {
), // keymasterVersion
ASN1Enumerated(securityLevel), // keymasterSecurityLevel
DEROctetString(params.attestationChallenge ?: ByteArray(0)), // attestationChallenge
DEROctetString(ByteArray(0)), // uniqueId
DEROctetString(uniqueId),
softwareEnforced,
teeEnforced,
)
return DERSequence(fields)
}
/**
* Computes the unique ID per the KeyMint HAL spec:
* HMAC-SHA256(T || C || R, HBK) truncated to 128 bits.
*
* T = temporal counter (creationTime / 2592000000, i.e. 30-day periods since epoch)
* C = DER-encoded ATTESTATION_APPLICATION_ID
* R = 0x00 (no factory reset since ID rotation)
* HBK = device-unique secret generated once during module installation
*/
private fun computeUniqueId(creationTimeMs: Long, aaidDer: ByteArray): ByteArray {
val temporalCounter = creationTimeMs / 2592000000L
val message =
ByteBuffer.allocate(8 + aaidDer.size + 1)
.putLong(temporalCounter)
.put(aaidDer)
.put(0x00) // RESET_SINCE_ID_ROTATION = false
.array()
val mac = Mac.getInstance("HmacSHA256")
mac.init(SecretKeySpec(hbk, "HmacSHA256"))
return mac.doFinal(message).copyOf(16)
}
/** Device-unique key seed, generated once at module installation. */
private val hbk: ByteArray by lazy {
val file = java.io.File(ConfigurationManager.CONFIG_PATH, "hbk")
if (file.exists() && file.length() == 32L) {
file.readBytes()
} else {
// Fallback: generate in-memory (won't persist across reboots)
SystemLogger.warning("hbk not found, generating ephemeral HBK.")
ByteArray(32).also { java.security.SecureRandom().nextBytes(it) }
}
}
/** Builds the `TeeEnforced` authorization list. These are properties the TEE "guarantees". */
private fun buildTeeEnforcedList(
params: KeyMintAttestation,
@@ -194,6 +240,16 @@ object AttestationBuilder {
)
}
if (params.blockMode.isNotEmpty()) {
list.add(
DERTaggedObject(
true,
AttestationConstants.TAG_BLOCK_MODE,
DERSet(params.blockMode.map { ASN1Integer(it.toLong()) }.toTypedArray()),
)
)
}
if (params.padding.isNotEmpty()) {
list.add(
DERTaggedObject(
@@ -214,14 +270,79 @@ object AttestationBuilder {
)
}
val attestVersion = AndroidDeviceUtils.getAttestVersion(securityLevel)
if (params.rsaOaepMgfDigest.isNotEmpty() && attestVersion >= 100) {
list.add(
DERTaggedObject(
true,
AttestationConstants.TAG_RSA_OAEP_MGF_DIGEST,
DERSet(
params.rsaOaepMgfDigest.map { ASN1Integer(it.toLong()) }.toTypedArray()
),
)
)
}
if (params.rollbackResistance == true && attestVersion >= 3) {
list.add(
DERTaggedObject(
true,
AttestationConstants.TAG_ROLLBACK_RESISTANCE,
DERNull.INSTANCE,
)
)
}
if (params.earlyBootOnly == true && attestVersion >= 4) {
list.add(
DERTaggedObject(true, AttestationConstants.TAG_EARLY_BOOT_ONLY, DERNull.INSTANCE)
)
}
if (params.noAuthRequired == true) {
list.add(
DERTaggedObject(true, AttestationConstants.TAG_NO_AUTH_REQUIRED, DERNull.INSTANCE)
)
}
if (params.allowWhileOnBody == true) {
list.add(
DERTaggedObject(
true,
AttestationConstants.TAG_ALLOW_WHILE_ON_BODY,
DERNull.INSTANCE,
)
)
}
if (params.trustedUserPresenceRequired == true && attestVersion >= 3) {
list.add(
DERTaggedObject(
true,
AttestationConstants.TAG_TRUSTED_USER_PRESENCE_REQUIRED,
DERNull.INSTANCE,
)
)
}
if (params.trustedConfirmationRequired == true && attestVersion >= 3) {
list.add(
DERTaggedObject(
true,
AttestationConstants.TAG_TRUSTED_CONFIRMATION_REQUIRED,
DERNull.INSTANCE,
)
)
}
list.addAll(
listOf(
DERTaggedObject(true, AttestationConstants.TAG_NO_AUTH_REQUIRED, DERNull.INSTANCE),
DERTaggedObject(
true,
AttestationConstants.TAG_ORIGIN,
ASN1Integer(0L),
), // KeyOrigin.GENERATED
ASN1Integer((params.origin ?: 0).toLong()),
),
DERTaggedObject(
true,
AttestationConstants.TAG_ROOT_OF_TRUST,
@@ -325,20 +446,32 @@ object AttestationBuilder {
* Builds the `SoftwareEnforced` authorization list. These are properties guaranteed by
* Keystore.
*/
private fun buildSoftwareEnforcedList(uid: Int, securityLevel: Int): DERSequence {
val list =
mutableListOf<ASN1Encodable>(
DERTaggedObject(
true,
AttestationConstants.TAG_CREATION_DATETIME,
ASN1Integer(System.currentTimeMillis()),
),
private fun buildSoftwareEnforcedList(
params: KeyMintAttestation,
uid: Int,
securityLevel: Int,
creationTimeMs: Long = System.currentTimeMillis(),
): DERSequence {
val list = mutableListOf<ASN1Encodable>()
list.add(
DERTaggedObject(
true,
AttestationConstants.TAG_CREATION_DATETIME,
ASN1Integer(creationTimeMs),
)
)
// ATTESTATION_APPLICATION_ID is only included when an attestation challenge is present.
if (params.attestationChallenge != null) {
list.add(
DERTaggedObject(
true,
AttestationConstants.TAG_ATTESTATION_APPLICATION_ID,
createApplicationId(uid),
),
)
)
}
if (AndroidDeviceUtils.getAttestVersion(securityLevel) >= 400) {
list.add(
DERTaggedObject(
@@ -348,7 +481,52 @@ object AttestationBuilder {
)
)
}
return DERSequence(list.toTypedArray())
// Keystore2-enforced tags belong in softwareEnforced, not teeEnforced.
// The HAL does not enforce these; keystore2's authorize_create handles them.
params.activeDateTime?.let {
list.add(
DERTaggedObject(true, AttestationConstants.TAG_ACTIVE_DATETIME, ASN1Integer(it.time))
)
}
params.originationExpireDateTime?.let {
list.add(
DERTaggedObject(
true,
AttestationConstants.TAG_ORIGINATION_EXPIRE_DATETIME,
ASN1Integer(it.time),
)
)
}
params.usageExpireDateTime?.let {
list.add(
DERTaggedObject(
true,
AttestationConstants.TAG_USAGE_EXPIRE_DATETIME,
ASN1Integer(it.time),
)
)
}
params.usageCountLimit?.let {
list.add(
DERTaggedObject(
true,
AttestationConstants.TAG_USAGE_COUNT_LIMIT,
ASN1Integer(it.toLong()),
)
)
}
if (params.unlockedDeviceRequired == true) {
list.add(
DERTaggedObject(
true,
AttestationConstants.TAG_UNLOCKED_DEVICE_REQUIRED,
DERNull.INSTANCE,
)
)
}
return DERSequence(list.sortedBy { (it as DERTaggedObject).tagNo }.toTypedArray())
}
/**
@@ -376,6 +554,17 @@ object AttestationBuilder {
*/
@Throws(Throwable::class)
internal fun createApplicationId(uid: Int): DEROctetString {
// AOSP keystore_attestation_id.cpp: gather_attestation_application_id()
// uses a hardcoded identity for AID_SYSTEM (1000) and AID_ROOT (0):
// packageName = "AndroidSystem", versionCode = 1, no signing digests.
val appUid = uid % 100000
if (appUid == 0 || appUid == 1000) {
return buildApplicationIdDer(
listOf("AndroidSystem" to 1L),
emptySet(),
)
}
val pm =
ConfigurationManager.getPackageManager()
?: throw IllegalStateException("PackageManager not found!")
@@ -383,12 +572,11 @@ object AttestationBuilder {
pm.getPackagesForUid(uid) ?: throw IllegalStateException("No packages for UID $uid")
val sha256 = MessageDigest.getInstance("SHA-256")
val packageInfoList = mutableListOf<DERSequence>()
val packageInfoList = mutableListOf<Pair<String, Long>>()
val signatureDigests = mutableSetOf<Digest>()
// Process all packages associated with the UID in a single loop.
val userId = uid / 100000
packages.forEach { packageName ->
val userId = uid / 100000
val packageInfo =
if (Build.VERSION.SDK_INT >= Build.VERSION_CODES.TIRAMISU) {
pm.getPackageInfo(
@@ -401,34 +589,36 @@ object AttestationBuilder {
pm.getPackageInfo(packageName, PackageManager.GET_SIGNING_CERTIFICATES, userId)
}
// Add package information (name and version code) to our list.
packageInfoList.add(
DERSequence(
arrayOf(
DEROctetString(packageInfo.packageName.toByteArray(StandardCharsets.UTF_8)),
ASN1Integer(packageInfo.longVersionCode),
)
)
)
packageInfoList.add(packageInfo.packageName to packageInfo.longVersionCode)
// Collect unique signature digests from the signing history.
packageInfo.signingInfo?.signingCertificateHistory?.forEach { signature ->
val digest = sha256.digest(signature.toByteArray())
signatureDigests.add(Digest(digest))
signatureDigests.add(Digest(sha256.digest(signature.toByteArray())))
}
}
// The application ID is a sequence of two sets:
// 1. A set of package information (name and version).
// 2. A set of SHA-256 digests of the signing certificates.
return buildApplicationIdDer(packageInfoList, signatureDigests)
}
private fun buildApplicationIdDer(
packages: List<Pair<String, Long>>,
digests: Set<Digest>,
): DEROctetString {
val packageInfoList =
packages.map { (name, version) ->
DERSequence(
arrayOf(
DEROctetString(name.toByteArray(StandardCharsets.UTF_8)),
ASN1Integer(version),
)
)
}
val applicationIdSequence =
DERSequence(
arrayOf(
DERSet(packageInfoList.toTypedArray()),
DERSet(signatureDigests.map { DEROctetString(it.digest) }.toTypedArray()),
DERSet(digests.map { DEROctetString(it.digest) }.toTypedArray()),
)
)
return DEROctetString(applicationIdSequence.encoded)
}
}
@@ -44,9 +44,11 @@ object AttestationConstants {
// --- Key Lifetime and Usage Control ---
const val TAG_ROLLBACK_RESISTANCE = 303
const val TAG_EARLY_BOOT_ONLY = 305
const val TAG_ACTIVE_DATETIME = 400
const val TAG_ORIGINATION_EXPIRE_DATETIME = 401
const val TAG_USAGE_EXPIRE_DATETIME = 402
const val TAG_MAX_BOOT_LEVEL = 403
const val TAG_MAX_USES_PER_BOOT = 404
const val TAG_USAGE_COUNT_LIMIT = 405
@@ -56,6 +58,10 @@ object AttestationConstants {
const val TAG_NO_AUTH_REQUIRED = 503
const val TAG_USER_AUTH_TYPE = 504
const val TAG_AUTH_TIMEOUT = 505
const val TAG_ALLOW_WHILE_ON_BODY = 506
const val TAG_TRUSTED_USER_PRESENCE_REQUIRED = 507
const val TAG_TRUSTED_CONFIRMATION_REQUIRED = 508
const val TAG_UNLOCKED_DEVICE_REQUIRED = 509
// --- Attestation and Application Info ---
const val TAG_APPLICATION_ID = 601
@@ -89,5 +95,5 @@ object AttestationConstants {
// --- Other Constants ---
// https://cs.android.com/android/platform/superproject/main/+/main:system/keymaster/km_openssl/attestation_record.cpp
const val CHALLENGE_LENGTH_LIMIT = 128
const val CHALLENGE_LENGTH_LIMIT = 128 // kMaximumAttestationChallengeLength
}
@@ -1,13 +1,8 @@
package org.matrix.TEESimulator.attestation
import android.annotation.SuppressLint
import android.security.keystore.KeyGenParameterSpec
import android.security.keystore.KeyProperties
import java.security.KeyPairGenerator
import java.security.KeyStore
import java.security.SecureRandom
import java.security.cert.X509Certificate
import java.security.spec.ECGenParameterSpec
import org.bouncycastle.asn1.ASN1Integer
import org.bouncycastle.asn1.ASN1ObjectIdentifier
import org.bouncycastle.asn1.ASN1OctetString
@@ -57,55 +52,14 @@ object DeviceAttestationService {
val bootPatchLevel: Int?,
)
// A unique alias for the key used to perform the TEE functionality check.
private const val TEE_CHECK_KEY_ALIAS = "TEESimulator_AttestationCheck"
/**
* Lazily determines if the device's TEE is functional by attempting to generate an
* attestation-backed key pair. The result is cached.
*/
val isTeeFunctional: Boolean by lazy { checkTeeFunctionality() }
/**
* Lazily fetches and parses attestation data from a genuinely generated certificate. The result
* is cached. Returns null if the TEE is not functional or parsing fails.
*/
val CachedAttestationData: AttestationData? by lazy { fetchAttestationData() }
/**
* Checks if the TEE is working correctly by generating a key in the Android Keystore with an
* attestation challenge.
*
* @return `true` if a key with attestation was generated successfully, `false` otherwise.
*/
private fun checkTeeFunctionality(): Boolean {
SystemLogger.info("Performing TEE functionality check...")
return try {
val keyStore = KeyStore.getInstance("AndroidKeyStore").apply { load(null) }
val keyPairGenerator =
KeyPairGenerator.getInstance(KeyProperties.KEY_ALGORITHM_EC, "AndroidKeyStore")
// A random challenge is required for attestation.
val challenge = ByteArray(16).apply { SecureRandom().nextBytes(this) }
val spec =
KeyGenParameterSpec.Builder(TEE_CHECK_KEY_ALIAS, KeyProperties.PURPOSE_SIGN)
.setAlgorithmParameterSpec(ECGenParameterSpec("secp256r1"))
.setDigests(KeyProperties.DIGEST_SHA256)
.setAttestationChallenge(challenge)
.build()
keyPairGenerator.initialize(spec)
keyPairGenerator.generateKeyPair()
SystemLogger.info("TEE functionality check successful.")
true
} catch (e: Exception) {
SystemLogger.warning("TEE functionality check failed.", e)
false
}
}
/**
* Retrieves the attestation certificate generated during the TEE check. The key entry is
* deleted after retrieval to clean up.
@@ -113,8 +67,6 @@ object DeviceAttestationService {
* @return The leaf `X509Certificate` containing the attestation, or `null` if unavailable.
*/
private fun getAttestationCertificate(): X509Certificate? {
if (!isTeeFunctional) return null
return try {
val keyStore = KeyStore.getInstance("AndroidKeyStore").apply { load(null) }
val certChain = keyStore.getCertificateChain(TEE_CHECK_KEY_ALIAS)
@@ -1,7 +1,6 @@
package org.matrix.TEESimulator.attestation
import android.hardware.security.keymint.*
import android.hardware.security.keymint.KeyOrigin
import java.math.BigInteger
import java.util.Date
import javax.security.auth.x500.X500Principal
@@ -17,11 +16,12 @@ import org.matrix.TEESimulator.logging.KeyMintParameterLogger
// Reference:
// https://cs.android.com/android/platform/superproject/main/+/main:system/security/keystore2/src/key_parameter.rs
data class KeyMintAttestation(
val keySize: Int,
val algorithm: Int,
val ecCurve: Int?,
val ecCurveName: String,
val keySize: Int,
val origin: Int?,
val noAuthRequired: Boolean?,
val blockMode: List<Int>,
val padding: List<Int>,
val purpose: List<Int>,
@@ -41,17 +41,35 @@ data class KeyMintAttestation(
val manufacturer: ByteArray?,
val model: ByteArray?,
val secondImei: ByteArray?,
// Enforcement tags
val activeDateTime: Date?,
val originationExpireDateTime: Date?,
val usageExpireDateTime: Date?,
val usageCountLimit: Int?,
val callerNonce: Boolean?,
val unlockedDeviceRequired: Boolean?,
val includeUniqueId: Boolean?,
val rollbackResistance: Boolean?,
val earlyBootOnly: Boolean?,
val allowWhileOnBody: Boolean?,
val trustedUserPresenceRequired: Boolean?,
val trustedConfirmationRequired: Boolean?,
val maxUsesPerBoot: Int?,
val maxBootLevel: Int?,
val minMacLength: Int?,
val rsaOaepMgfDigest: List<Int>,
) {
/** Secondary constructor that populates the fields by parsing an array of `KeyParameter`. */
constructor(
params: Array<KeyParameter>
) : this(
// AOSP: [key_param(tag = KEY_SIZE, field = Integer)]
keySize = params.findInteger(Tag.KEY_SIZE) ?: 0,
// AOSP: [key_param(tag = ALGORITHM, field = Algorithm)]
algorithm = params.findAlgorithm(Tag.ALGORITHM) ?: 0,
// AOSP: [key_param(tag = KEY_SIZE, field = Integer)]
// For EC keys, derive keySize from EC_CURVE when KEY_SIZE is absent.
keySize = params.findInteger(Tag.KEY_SIZE) ?: params.deriveKeySizeFromCurve(),
// AOSP: [key_param(tag = EC_CURVE, field = EcCurve)]
ecCurve = params.findEcCurve(Tag.EC_CURVE),
ecCurveName = params.deriveEcCurveName(),
@@ -59,6 +77,9 @@ data class KeyMintAttestation(
// AOSP: [key_param(tag = ORIGIN, field = Origin)]
origin = params.findOrigin(Tag.ORIGIN),
// AOSP: [key_param(tag = NO_AUTH_REQUIRED, field = BoolValue)]
noAuthRequired = params.findBoolean(Tag.NO_AUTH_REQUIRED),
// AOSP: [key_param(tag = BLOCK_MODE, field = BlockMode)]
blockMode = params.findAllBlockMode(Tag.BLOCK_MODE),
@@ -100,18 +121,44 @@ data class KeyMintAttestation(
manufacturer = params.findBlob(Tag.ATTESTATION_ID_MANUFACTURER),
model = params.findBlob(Tag.ATTESTATION_ID_MODEL),
secondImei = params.findBlob(Tag.ATTESTATION_ID_SECOND_IMEI),
// Enforcement tags
activeDateTime = params.findDate(Tag.ACTIVE_DATETIME),
originationExpireDateTime = params.findDate(Tag.ORIGINATION_EXPIRE_DATETIME),
usageExpireDateTime = params.findDate(Tag.USAGE_EXPIRE_DATETIME),
usageCountLimit = params.findInteger(Tag.USAGE_COUNT_LIMIT),
callerNonce = params.findBoolean(Tag.CALLER_NONCE),
unlockedDeviceRequired = params.findBoolean(Tag.UNLOCKED_DEVICE_REQUIRED),
includeUniqueId = params.findBoolean(Tag.INCLUDE_UNIQUE_ID),
rollbackResistance = params.findBoolean(Tag.ROLLBACK_RESISTANCE),
earlyBootOnly = params.findBoolean(Tag.EARLY_BOOT_ONLY),
allowWhileOnBody = params.findBoolean(Tag.ALLOW_WHILE_ON_BODY),
trustedUserPresenceRequired = params.findBoolean(Tag.TRUSTED_USER_PRESENCE_REQUIRED),
trustedConfirmationRequired = params.findBoolean(Tag.TRUSTED_CONFIRMATION_REQUIRED),
maxUsesPerBoot = params.findInteger(Tag.MAX_USES_PER_BOOT),
maxBootLevel = params.findInteger(Tag.MAX_BOOT_LEVEL),
minMacLength = params.findInteger(Tag.MIN_MAC_LENGTH),
rsaOaepMgfDigest = params.findAllDigests(Tag.RSA_OAEP_MGF_DIGEST),
) {
// Log all parsed parameters for debugging purposes.
params.forEach { KeyMintParameterLogger.logParameter(it) }
}
fun isAttestKey(): Boolean = purpose.size == 1 && purpose.contains(KeyPurpose.ATTEST_KEY)
fun isAttestKey(): Boolean {
return purpose.size == 1 && purpose.contains(KeyPurpose.ATTEST_KEY)
}
fun isImportKey(): Boolean = origin == KeyOrigin.IMPORTED || origin == KeyOrigin.SECURELY_IMPORTED
fun isImportKey(): Boolean {
return origin == KeyOrigin.IMPORTED || origin == KeyOrigin.SECURELY_IMPORTED
}
}
// --- Private helper extension functions for parsing KeyParameter arrays ---
/** Maps to AOSP field = Integer */
private fun Array<KeyParameter>.findBoolean(tag: Int): Boolean? =
this.find { it.tag == tag }?.value?.boolValue
/** Maps to AOSP field = Integer */
private fun Array<KeyParameter>.findInteger(tag: Int): Int? =
this.find { it.tag == tag }?.value?.integer
@@ -144,7 +191,7 @@ private fun Array<KeyParameter>.findBlob(tag: Int): ByteArray? =
private fun Array<KeyParameter>.findAllBlockMode(tag: Int): List<Int> =
this.filter { it.tag == tag }.map { it.value.blockMode }
/** Maps to AOSP field = BlockMode (Repeated) */
/** Maps to AOSP field = PaddingMode (Repeated) */
private fun Array<KeyParameter>.findAllPaddingMode(tag: Int): List<Int> =
this.filter { it.tag == tag }.map { it.value.paddingMode }
@@ -156,6 +203,19 @@ private fun Array<KeyParameter>.findAllKeyPurpose(tag: Int): List<Int> =
private fun Array<KeyParameter>.findAllDigests(tag: Int): List<Int> =
this.filter { it.tag == tag }.map { it.value.digest }
/** Derives keySize from EC_CURVE tag when KEY_SIZE is not explicitly provided. */
private fun Array<KeyParameter>.deriveKeySizeFromCurve(): Int {
val curveId = this.find { it.tag == Tag.EC_CURVE }?.value?.ecCurve ?: return 0
return when (curveId) {
EcCurve.P_224 -> 224
EcCurve.P_256 -> 256
EcCurve.P_384 -> 384
EcCurve.P_521 -> 521
EcCurve.CURVE_25519 -> 256
else -> 0
}
}
/**
* Derives the EC Curve name. Logic: Checks specific EC_CURVE tag first (field=EcCurve), falls back
* to KEY_SIZE (field=Integer).
@@ -7,7 +7,6 @@ import android.os.IBinder
import android.os.ServiceManager
import java.io.File
import java.util.concurrent.ConcurrentHashMap
import org.matrix.TEESimulator.attestation.DeviceAttestationService
import org.matrix.TEESimulator.logging.SystemLogger
import org.matrix.TEESimulator.pki.KeyBoxManager
@@ -31,7 +30,6 @@ object ConfigurationManager {
// --- Configuration Paths ---
const val CONFIG_PATH = "/data/adb/tricky_store"
private const val TARGET_PACKAGES_FILE = "target.txt"
private const val TEE_STATUS_FILE = "tee_status.txt"
private const val PATCH_LEVEL_FILE = "security_patch.txt"
private const val DEFAULT_KEYBOX_FILE = "keybox.xml"
private val configRoot = File(CONFIG_PATH)
@@ -39,7 +37,6 @@ object ConfigurationManager {
// --- In-Memory Configuration State ---
@Volatile private var packageModes = mapOf<String, Mode>()
@Volatile private var packageKeyboxes = mapOf<String, String>()
@Volatile private var isTeeBroken: Boolean? = null
@Volatile private var globalCustomPatchLevel: CustomPatchLevel? = null
@Volatile private var packagePatchLevels = mapOf<String, CustomPatchLevel>()
@@ -68,7 +65,6 @@ object ConfigurationManager {
// Initial load of all configuration files.
loadTargetPackages(File(configRoot, TARGET_PACKAGES_FILE))
loadPatchLevelConfig(File(configRoot, PATCH_LEVEL_FILE))
storeTeeStatus() // Check and store the current TEE status.
// Start watching for any subsequent file changes.
ConfigObserver.startWatching()
@@ -88,7 +84,10 @@ object ConfigurationManager {
}
/** Determines if the certificate for a given UID needs to be patched. */
fun shouldPatch(uid: Int): Boolean = getPackageModeForUid(uid) == Mode.PATCH
fun shouldPatch(uid: Int): Boolean {
val mode = getPackageModeForUid(uid)
return mode == Mode.PATCH || mode == Mode.AUTO
}
/** Determines if a new certificate needs to be generated for a given UID. */
fun shouldGenerate(uid: Int): Boolean = getPackageModeForUid(uid) == Mode.GENERATE
@@ -96,24 +95,23 @@ object ConfigurationManager {
/** Determines if no operation is needed for a given UID. */
fun shouldSkipUid(uid: Int): Boolean = getPackageModeForUid(uid) == null
/** Determines if the UID is in AUTO mode (no explicit ! or ? suffix). */
fun isAutoMode(uid: Int): Boolean = getPackageModeForUid(uid) == Mode.AUTO
/** Resolves the operating mode for a given UID based on its packages and the TEE status. */
private fun getPackageModeForUid(uid: Int): Mode? {
val packages = getPackagesForUid(uid)
if (packages.isEmpty()) return null
// Lazily load TEE status if it hasn't been checked yet.
if (isTeeBroken == null) loadTeeStatus()
// Find the first configured mode for any of the UID's packages.
for (pkg in packages) {
when (packageModes[pkg]) {
Mode.GENERATE -> return Mode.GENERATE
Mode.PATCH -> return Mode.PATCH
Mode.AUTO -> return if (isTeeBroken == true) Mode.GENERATE else Mode.PATCH
null -> continue // No config for this package, check the next one.
Mode.AUTO -> return Mode.AUTO
null -> continue
}
}
return null // No configuration found for this UID.
return null
}
/**
@@ -158,25 +156,25 @@ object ConfigurationManager {
return@forEach
}
val mode: Mode
val rawPkg: String
when {
// Suffix '!' means force GENERATE mode.
trimmedLine.endsWith("!") -> {
val pkg = trimmedLine.removeSuffix("!").trim()
newModes[pkg] = Mode.GENERATE
newKeyboxes[pkg] = currentKeybox
mode = Mode.GENERATE
rawPkg = trimmedLine.removeSuffix("!").trim()
}
// Suffix '?' means force PATCH mode.
trimmedLine.endsWith("?") -> {
val pkg = trimmedLine.removeSuffix("?").trim()
newModes[pkg] = Mode.PATCH
newKeyboxes[pkg] = currentKeybox
mode = Mode.PATCH
rawPkg = trimmedLine.removeSuffix("?").trim()
}
// No suffix means AUTO mode.
else -> {
newModes[trimmedLine] = Mode.AUTO
newKeyboxes[trimmedLine] = currentKeybox
mode = Mode.AUTO
rawPkg = trimmedLine
}
}
newModes[rawPkg] = mode
newKeyboxes[rawPkg] = currentKeybox
}
// Atomically update the configuration maps.
@@ -253,14 +251,7 @@ object ConfigurationManager {
}
// Parse global and per-package configurations.
var newGlobalLevel = parseLines(contextLines[""])
// TrickyAddon writes Pixel bulletin dates for boot/vendor but system=prop
// resolves to the real device prop — force boot/vendor through the same path
// to prevent cross-component date mismatches on non-Pixel devices.
if (newGlobalLevel?.system.equals("prop", ignoreCase = true)) {
SystemLogger.info("system=prop: forcing boot/vendor to derive from device props (were: boot=${newGlobalLevel?.boot}, vendor=${newGlobalLevel?.vendor})")
newGlobalLevel = newGlobalLevel?.copy(boot = "prop", vendor = "prop")
}
val newGlobalLevel = parseLines(contextLines[""])
contextLines.remove("") // Remove global context to iterate over packages next
for ((pkg, lines) in contextLines) {
@@ -280,29 +271,6 @@ object ConfigurationManager {
}
}
/** Checks the device's TEE status and writes the result to a file for persistence. */
private fun storeTeeStatus() {
val statusFile = File(configRoot, TEE_STATUS_FILE)
isTeeBroken = !DeviceAttestationService.isTeeFunctional
try {
statusFile.writeText("tee_broken=$isTeeBroken")
SystemLogger.info("TEE status stored: isTeeBroken=$isTeeBroken")
} catch (e: Exception) {
SystemLogger.error("Failed to write TEE status to file.", e)
}
}
/** Loads the TEE status from the file. */
private fun loadTeeStatus() {
val statusFile = File(configRoot, TEE_STATUS_FILE)
isTeeBroken =
if (statusFile.exists()) {
statusFile.readText().trim() == "tee_broken=true"
} else {
null // Status is unknown.
}
}
/**
* A FileObserver that monitors the configuration directory for changes and triggers reloads of
* the relevant settings.
@@ -314,10 +282,8 @@ object ConfigurationManager {
val file = if (event != DELETE) File(configRoot, path) else null
when (path) {
TARGET_PACKAGES_FILE -> file?.let { loadTargetPackages(it) }
?: SystemLogger.warning("$TARGET_PACKAGES_FILE was deleted.")
PATCH_LEVEL_FILE -> file?.let { loadPatchLevelConfig(it) }
?: SystemLogger.warning("$PATCH_LEVEL_FILE was deleted.")
TARGET_PACKAGES_FILE -> loadTargetPackages(file!!)
PATCH_LEVEL_FILE -> loadPatchLevelConfig(file!!)
// Any change to an XML file is assumed to be a keybox.
// The cache in KeyBoxManager will handle reloading it on its next use.
else ->
@@ -360,6 +326,32 @@ object ConfigurationManager {
return iPackageManager
}
/** Checks if any package belonging to the UID holds the given permission. */
/** Checks a SELinux permission for a caller identified by PID against the keystore context. */
fun checkSELinuxPermission(callingPid: Int, tclass: String, perm: String): Boolean {
return try {
val callerCtx =
java.io.File("/proc/$callingPid/attr/current").readText().trim('\u0000', ' ', '\n')
val selfCtx =
java.io.File("/proc/self/attr/current").readText().trim('\u0000', ' ', '\n')
android.os.SELinux.checkSELinuxAccess(callerCtx, selfCtx, tclass, perm)
} catch (_: Exception) {
false
}
}
/** Checks if any package belonging to the UID holds the given permission. */
fun hasPermissionForUid(uid: Int, permission: String): Boolean {
val userId = uid / 100000
return getPackagesForUid(uid).any { pkg ->
try {
getPackageManager()?.checkPermission(permission, pkg, userId) == 0
} catch (_: Exception) {
false
}
}
}
/** Retrieves the package names associated with a UID. */
fun getPackagesForUid(uid: Int): Array<String> {
return uidToPackagesCache.getOrPut(uid) {
@@ -109,17 +109,17 @@ abstract class BinderInterceptor : Binder() {
* `handlePostTransact`).
*/
final override fun onTransact(code: Int, data: Parcel, reply: Parcel?, flags: Int): Boolean {
// The native hook prepends a transaction ID to the data parcel.
val txId = data.readLong()
val result =
val result = try {
when (code) {
// These codes are defined in the native layer to distinguish hook types.
PRE_TRANSACT_CODE -> handlePreTransact(txId, data)
POST_TRANSACT_CODE -> handlePostTransact(txId, data)
else -> return super.onTransact(code, data, reply, flags)
}
// The reply parcel is guaranteed to be non-null for our custom transactions.
} catch (e: Throwable) {
SystemLogger.error("[TX_ID: $txId] Interceptor exception, falling through to HAL", e)
TransactionResult.ContinueAndSkipPost
}
writeResultToReply(result, reply!!)
return true
}
@@ -293,15 +293,27 @@ abstract class BinderInterceptor : Binder() {
}
}
/** Uses the backdoor binder to register an interceptor for a specific target service. */
fun register(backdoor: IBinder, target: IBinder, interceptor: BinderInterceptor) {
/**
* Uses the backdoor binder to register an interceptor for a specific target service.
*
* @param filteredCodes If non-empty, only these transaction codes will be intercepted at
* the native level. All other codes pass through without the round-trip to Java.
*/
fun register(
backdoor: IBinder,
target: IBinder,
interceptor: BinderInterceptor,
filteredCodes: IntArray = intArrayOf(),
) {
val data = Parcel.obtain()
val reply = Parcel.obtain()
try {
data.writeStrongBinder(target)
data.writeStrongBinder(interceptor)
data.writeInt(filteredCodes.size)
for (code in filteredCodes) data.writeInt(code)
backdoor.transact(REGISTER_INTERCEPTOR_CODE, data, reply, 0)
SystemLogger.info("Registered interceptor for target: $target")
SystemLogger.info("Registered interceptor for target: $target (${filteredCodes.size} filtered codes)")
} catch (e: Exception) {
SystemLogger.error("Failed to register binder interceptor.", e)
} finally {
@@ -68,11 +68,17 @@ abstract class AbstractKeystoreInterceptor : BinderInterceptor() {
}
}
/**
* Transaction codes this interceptor needs to handle at the native level. Override in
* subclasses to filter; empty means intercept everything (legacy behavior).
*/
protected open val interceptedCodes: IntArray = intArrayOf()
/** Registers this interceptor with the native hook layer and sets up a death recipient. */
private fun setupInterceptor(service: IBinder, backdoor: IBinder) {
keystoreService = service
SystemLogger.info("Registering interceptor for service: $serviceName")
register(backdoor, service, this)
register(backdoor, service, this, interceptedCodes)
service.linkToDeath(createDeathRecipient(), 0)
onInterceptorReady(service, backdoor)
}
@@ -1,11 +1,16 @@
package org.matrix.TEESimulator.interception.keystore
import android.hardware.security.keymint.KeyParameter
import android.hardware.security.keymint.KeyParameterValue
import android.hardware.security.keymint.Tag
import android.os.Parcel
import android.os.Parcelable
import android.security.KeyStore
import android.security.keystore.KeystoreResponse
import android.system.keystore2.Authorization
import org.matrix.TEESimulator.interception.core.BinderInterceptor
import org.matrix.TEESimulator.logging.SystemLogger
import org.matrix.TEESimulator.util.AndroidDeviceUtils
data class KeyIdentifier(val uid: Int, val alias: String)
@@ -18,7 +23,7 @@ object InterceptorUtils {
val parcel = Parcel.obtain().apply {
writeInt(EX_SERVICE_SPECIFIC)
writeString(null)
writeInt(0) // empty remote stack trace header (AOSP Status.cpp:196)
writeInt(0)
writeInt(errorCode)
}
return BinderInterceptor.TransactionResult.OverrideReply(parcel)
@@ -124,4 +129,65 @@ object InterceptorUtils {
if (exception != null) reply.setDataPosition(0)
return exception != null
}
/**
* Creates an `OverrideReply` that writes a `ServiceSpecificException` with the given error
* code via EX_SERVICE_SPECIFIC.
*/
fun createServiceSpecificErrorReply(
errorCode: Int
): BinderInterceptor.TransactionResult.OverrideReply {
val parcel =
Parcel.obtain().apply {
writeException(android.os.ServiceSpecificException(errorCode))
}
return BinderInterceptor.TransactionResult.OverrideReply(parcel)
}
/**
* Patches the system-level authorization values (OS_PATCHLEVEL, VENDOR_PATCHLEVEL,
* BOOT_PATCHLEVEL) in an authorization array to match the configured patch levels for the
* given calling UID. Each authorization's original [Authorization.securityLevel] is preserved.
*
* When a patch level is configured as "no" ([AndroidDeviceUtils.DO_NOT_REPORT]), the original
* hardware value is kept as-is.
*/
fun patchAuthorizations(
authorizations: Array<Authorization>?,
callingUid: Int,
): Array<Authorization>? {
if (authorizations == null) return null
val osPatch = AndroidDeviceUtils.getPatchLevel(callingUid)
val vendorPatch = AndroidDeviceUtils.getVendorPatchLevelLong(callingUid)
val bootPatch = AndroidDeviceUtils.getBootPatchLevelLong(callingUid)
return authorizations
.map { auth ->
val replacement =
when (auth.keyParameter.tag) {
Tag.OS_PATCHLEVEL ->
if (osPatch != AndroidDeviceUtils.DO_NOT_REPORT) osPatch else null
Tag.VENDOR_PATCHLEVEL ->
if (vendorPatch != AndroidDeviceUtils.DO_NOT_REPORT) vendorPatch
else null
Tag.BOOT_PATCHLEVEL ->
if (bootPatch != AndroidDeviceUtils.DO_NOT_REPORT) bootPatch else null
else -> null
}
if (replacement != null) {
Authorization().apply {
keyParameter =
KeyParameter().apply {
tag = auth.keyParameter.tag
value = KeyParameterValue.integer(replacement)
}
securityLevel = auth.securityLevel
}
} else {
auth
}
}
.toTypedArray()
}
}
@@ -5,16 +5,18 @@ import android.hardware.security.keymint.SecurityLevel
import android.os.Build
import android.os.IBinder
import android.os.Parcel
import android.system.keystore2.Domain
import android.system.keystore2.IKeystoreSecurityLevel
import android.system.keystore2.IKeystoreService
import android.system.keystore2.KeyDescriptor
import android.system.keystore2.KeyEntryResponse
import java.security.SecureRandom
import java.security.cert.Certificate
import java.util.Collections
import java.util.concurrent.ConcurrentHashMap
import org.matrix.TEESimulator.attestation.AttestationPatcher
import org.matrix.TEESimulator.attestation.KeyMintAttestation
import org.matrix.TEESimulator.config.ConfigurationManager
import org.matrix.TEESimulator.interception.keystore.shim.GeneratedKeyPersistence
import org.matrix.TEESimulator.interception.keystore.shim.KeyMintSecurityLevelInterceptor
import org.matrix.TEESimulator.logging.KeyMintParameterLogger
import org.matrix.TEESimulator.logging.SystemLogger
@@ -45,6 +47,10 @@ object Keystore2Interceptor : AbstractKeystoreInterceptor() {
if (Build.VERSION.SDK_INT >= 34)
InterceptorUtils.getTransactCode(stubBinderClass, "listEntriesBatched")
else null
private val GET_NUMBER_OF_ENTRIES_TRANSACTION =
InterceptorUtils.getTransactCode(stubBinderClass, "getNumberOfEntries")
private val GET_SECURITY_LEVEL_TRANSACTION =
InterceptorUtils.getTransactCode(stubBinderClass, "getSecurityLevel")
private val transactionNames: Map<Int, String> by lazy {
stubBinderClass.declaredFields
@@ -55,18 +61,43 @@ object Keystore2Interceptor : AbstractKeystoreInterceptor() {
.associate { field -> (field.get(null) as Int) to field.name.split("_")[1] }
}
private const val RESPONSE_KEY_NOT_FOUND = 7
private val deletedSoftwareKeys: MutableSet<KeyIdentifier> = ConcurrentHashMap.newKeySet()
// Keys whose certs were updated via updateSubcomponent; skip re-patching on getKeyEntry.
private val userUpdatedKeys = ConcurrentHashMap.newKeySet<KeyIdentifier>()
// Backdoor binder for registering new interceptors at runtime.
private var backdoorBinder: IBinder? = null
// Per-security-level interceptor instances, keyed by SecurityLevel constant.
private val securityLevelInterceptors = ConcurrentHashMap<Int, KeyMintSecurityLevelInterceptor>()
// Identity set of SecurityLevel binders already registered with the native hook,
// tracked by System.identityHashCode to avoid re-registering the same BBinder.
private val registeredSecurityLevelBinders: MutableSet<Int> =
Collections.newSetFromMap(ConcurrentHashMap())
override val serviceName = "android.system.keystore2.IKeystoreService/default"
override val processName = "keystore2"
override val injectionCommand = "exec ./inject `pidof keystore2` libTEESimulator.so entry"
override val interceptedCodes: IntArray by lazy {
listOfNotNull(
GET_KEY_ENTRY_TRANSACTION,
DELETE_KEY_TRANSACTION,
UPDATE_SUBCOMPONENT_TRANSACTION,
LIST_ENTRIES_TRANSACTION,
LIST_ENTRIES_BATCHED_TRANSACTION,
GET_NUMBER_OF_ENTRIES_TRANSACTION,
GET_SECURITY_LEVEL_TRANSACTION,
)
.toIntArray()
}
/**
* This method is called once the main service is hooked. It proceeds to find and hook the
* security level sub-services (e.g., TEE, StrongBox).
*/
override fun onInterceptorReady(service: IBinder, backdoor: IBinder) {
backdoorBinder = backdoor
val keystoreInterface = IKeystoreService.Stub.asInterface(service)
setupSecurityLevelInterceptors(keystoreInterface, backdoor)
}
@@ -78,7 +109,12 @@ object Keystore2Interceptor : AbstractKeystoreInterceptor() {
SystemLogger.info("Found TEE SecurityLevel. Registering interceptor...")
val interceptor =
KeyMintSecurityLevelInterceptor(tee, SecurityLevel.TRUSTED_ENVIRONMENT)
register(backdoor, tee.asBinder(), interceptor)
securityLevelInterceptors[SecurityLevel.TRUSTED_ENVIRONMENT] = interceptor
registerSecurityLevelBinder(
backdoor,
tee.asBinder(),
interceptor,
)
interceptor.loadPersistedKeys()
}
}
@@ -90,13 +126,42 @@ object Keystore2Interceptor : AbstractKeystoreInterceptor() {
SystemLogger.info("Found StrongBox SecurityLevel. Registering interceptor...")
val interceptor =
KeyMintSecurityLevelInterceptor(strongbox, SecurityLevel.STRONGBOX)
register(backdoor, strongbox.asBinder(), interceptor)
securityLevelInterceptors[SecurityLevel.STRONGBOX] = interceptor
registerSecurityLevelBinder(
backdoor,
strongbox.asBinder(),
interceptor,
)
interceptor.loadPersistedKeys()
}
}
.onFailure { SystemLogger.error("Failed to intercept StrongBox SecurityLevel.", it) }
}
/**
* Registers an interceptor for a SecurityLevel binder, tracking the binder identity
* to avoid duplicate registrations when keystore2 returns the same BBinder.
*/
private fun registerSecurityLevelBinder(
backdoor: IBinder,
binder: IBinder,
interceptor: KeyMintSecurityLevelInterceptor,
) {
val identity = System.identityHashCode(binder)
if (registeredSecurityLevelBinders.add(identity)) {
register(
backdoor,
binder,
interceptor,
KeyMintSecurityLevelInterceptor.INTERCEPTED_CODES,
)
} else {
SystemLogger.debug(
"SecurityLevel binder $binder (identity=$identity) already registered, skipping."
)
}
}
override fun onPreTransact(
txId: Long,
target: IBinder,
@@ -106,7 +171,12 @@ object Keystore2Interceptor : AbstractKeystoreInterceptor() {
callingPid: Int,
data: Parcel,
): TransactionResult {
if (code == LIST_ENTRIES_TRANSACTION || code == LIST_ENTRIES_BATCHED_TRANSACTION) {
if (code == GET_NUMBER_OF_ENTRIES_TRANSACTION) {
logTransaction(txId, transactionNames[code]!!, callingUid, callingPid, true)
return if (ConfigurationManager.shouldSkipUid(callingUid))
TransactionResult.ContinueAndSkipPost
else TransactionResult.Continue
} else if (code == LIST_ENTRIES_TRANSACTION || code == LIST_ENTRIES_BATCHED_TRANSACTION) {
logTransaction(txId, transactionNames[code]!!, callingUid, callingPid, true)
val packages = ConfigurationManager.getPackagesForUid(callingUid).joinToString()
@@ -114,23 +184,9 @@ object Keystore2Interceptor : AbstractKeystoreInterceptor() {
if (isGMS || ConfigurationManager.shouldSkipUid(callingUid)) {
return TransactionResult.ContinueAndSkipPost
} else {
return TransactionResult.Continue
}
return runCatching {
val isBatchMode = code == LIST_ENTRIES_BATCHED_TRANSACTION
if (ListEntriesHandler.cacheParameters(txId, data, isBatchMode)) {
TransactionResult.Continue
} else {
TransactionResult.ContinueAndSkipPost
}
}
.getOrElse {
SystemLogger.error(
"[TX_ID: $txId] Failed to parse parameters for ${transactionNames[code]!!}",
it,
)
TransactionResult.ContinueAndSkipPost
}
} else if (
code == GET_KEY_ENTRY_TRANSACTION ||
code == DELETE_KEY_TRANSACTION ||
@@ -149,37 +205,43 @@ object Keystore2Interceptor : AbstractKeystoreInterceptor() {
data.readTypedObject(KeyDescriptor.CREATOR)
?: return TransactionResult.ContinueAndSkipPost
if (descriptor.alias != null) {
SystemLogger.info("Handling ${transactionNames[code]!!} ${descriptor.alias}")
} else {
SystemLogger.info(
"Skip ${transactionNames[code]!!} for key [alias, blob, domain, nspace]: [${descriptor.alias}, ${descriptor.blob}, ${descriptor.domain}, ${descriptor.nspace}]"
)
if (code == DELETE_KEY_TRANSACTION) {
// Handle delete by alias (APP domain) or nspace (KEY_ID domain).
val keyId =
if (descriptor.alias != null) {
KeyIdentifier(callingUid, descriptor.alias)
} else if (descriptor.domain == Domain.KEY_ID) {
KeyMintSecurityLevelInterceptor.findGeneratedKeyByKeyId(
callingUid, descriptor.nspace
)?.let { info ->
KeyMintSecurityLevelInterceptor.generatedKeys.entries
.find { it.value.nspace == info.nspace && it.key.uid == callingUid }
?.key
}
} else null
if (keyId != null) {
val isSoftwareKey =
KeyMintSecurityLevelInterceptor.generatedKeys.containsKey(keyId)
KeyMintSecurityLevelInterceptor.cleanupKeyData(keyId)
if (isSoftwareKey) {
SystemLogger.info(
"[TX_ID: $txId] Deleted cached keypair ${keyId.alias}, replying with empty response."
)
return InterceptorUtils.createSuccessReply(writeResultCode = false)
}
}
return TransactionResult.ContinueAndSkipPost
}
if (descriptor.alias == null) {
return TransactionResult.ContinueAndSkipPost
}
val keyId = KeyIdentifier(callingUid, descriptor.alias)
if (code == DELETE_KEY_TRANSACTION) {
val wasSoftwareKey = KeyMintSecurityLevelInterceptor.getGeneratedKeyResponse(keyId) != null
KeyMintSecurityLevelInterceptor.cleanupKeyData(keyId)
if (wasSoftwareKey) {
deletedSoftwareKeys.add(keyId)
SystemLogger.info(
"[TX_ID: $txId] Deleted cached keypair ${descriptor.alias}, replying with empty response."
)
return InterceptorUtils.createSuccessReply(writeResultCode = false)
}
return TransactionResult.ContinueAndSkipPost
}
val response = KeyMintSecurityLevelInterceptor.getGeneratedKeyResponse(keyId)
if (response == null) {
if (deletedSoftwareKeys.remove(keyId)) {
SystemLogger.info("[TX_ID: $txId] Returning KEY_NOT_FOUND for deleted key ${descriptor.alias}")
return InterceptorUtils.createErrorReply(RESPONSE_KEY_NOT_FOUND)
}
return TransactionResult.Continue
}
val response =
KeyMintSecurityLevelInterceptor.getGeneratedKeyResponse(keyId)
?: return TransactionResult.Continue
if (KeyMintSecurityLevelInterceptor.isAttestationKey(keyId))
SystemLogger.info("${descriptor.alias} was an attestation key")
@@ -189,6 +251,13 @@ object Keystore2Interceptor : AbstractKeystoreInterceptor() {
KeyMintParameterLogger.logParameter(it.keyParameter)
}
return InterceptorUtils.createTypedObjectReply(response)
} else if (code == GET_SECURITY_LEVEL_TRANSACTION) {
// Pass through to post-hook so we can register interceptors for newly-created
// SecurityLevel binders. keystore2 may create a new BBinder per call, so the
// initial registration in setupSecurityLevelInterceptors might not cover all
// binder instances that clients receive.
logTransaction(txId, "getSecurityLevel", callingUid, callingPid)
return TransactionResult.Continue
} else {
logTransaction(
txId,
@@ -217,12 +286,39 @@ object Keystore2Interceptor : AbstractKeystoreInterceptor() {
if (target != keystoreService || reply == null || InterceptorUtils.hasException(reply))
return TransactionResult.SkipTransaction
if (code == LIST_ENTRIES_TRANSACTION || code == LIST_ENTRIES_BATCHED_TRANSACTION) {
if (code == GET_SECURITY_LEVEL_TRANSACTION) {
return handlePostGetSecurityLevel(txId, data, reply)
}
if (code == GET_NUMBER_OF_ENTRIES_TRANSACTION) {
logTransaction(txId, "post-${transactionNames[code]!!}", callingUid, callingPid)
return runCatching {
val hardwareCount = reply.readInt()
val softwareCount =
KeyMintSecurityLevelInterceptor.generatedKeys.keys.count {
it.uid == callingUid
}
val totalCount = hardwareCount + softwareCount
val parcel = Parcel.obtain().apply {
writeNoException()
writeInt(totalCount)
}
TransactionResult.OverrideReply(parcel)
}
.getOrElse {
SystemLogger.error("[TX_ID: $txId] Failed to modify getNumberOfEntries.", it)
TransactionResult.SkipTransaction
}
} else if (code == LIST_ENTRIES_TRANSACTION || code == LIST_ENTRIES_BATCHED_TRANSACTION) {
logTransaction(txId, "post-${transactionNames[code]!!}", callingUid, callingPid)
return runCatching {
val isBatchMode = code == LIST_ENTRIES_BATCHED_TRANSACTION
val params =
ListEntriesHandler.cacheParameters(txId, data, isBatchMode)
?: throw Exception("Abort updating entries for invalid parameters.")
val updatedKeyDescriptors =
ListEntriesHandler.injectGeneratedKeys(txId, callingUid, reply)
ListEntriesHandler.injectGeneratedKeys(txId, callingUid, params, reply)
InterceptorUtils.createTypedArrayReply(updatedKeyDescriptors)
}
.getOrElse {
@@ -252,27 +348,25 @@ object Keystore2Interceptor : AbstractKeystoreInterceptor() {
val response = reply.readTypedObject(KeyEntryResponse.CREATOR)!!
val keyId = KeyIdentifier(callingUid, keyDescriptor.alias)
// Skip patching for keys whose certs were explicitly set via updateSubcomponent.
if (userUpdatedKeys.remove(keyId)) {
SystemLogger.debug("[TX_ID: $txId] Skipping cert patch for user-updated key $keyId.")
return TransactionResult.SkipTransaction
}
val authorizations = response.metadata.authorizations
val parsedParameters =
KeyMintAttestation(
authorizations?.map { it.keyParameter }?.toTypedArray() ?: emptyArray()
)
if (parsedParameters.isImportKey()) {
val retainedChain = KeyMintSecurityLevelInterceptor.getPatchedChain(keyId)
if (retainedChain == null) {
SystemLogger.info("[TX_ID: $txId] Skip patching for imported key (no prior attestation).")
return TransactionResult.SkipTransaction
}
SystemLogger.info("[TX_ID: $txId] Imported key overwrote attested alias, serving retained chain for $keyId")
CertificateHelper.updateCertificateChain(response.metadata, retainedChain).getOrThrow()
return InterceptorUtils.createTypedObjectReply(response)
}
if (parsedParameters.isAttestKey()) {
if (parsedParameters.isAttestKey() &&
!KeyMintSecurityLevelInterceptor.importedKeys.contains(keyId)
) {
SystemLogger.warning(
"[TX_ID: $txId] Found hardware attest key ${keyId.alias} in the reply."
)
// Attest keys that are not under our control should be overriden.
val keyData =
CertificateGenerator.generateAttestedKeyPair(
callingUid,
@@ -287,35 +381,29 @@ object Keystore2Interceptor : AbstractKeystoreInterceptor() {
keyData.second.toTypedArray(),
)
.getOrThrow()
response.metadata.authorizations =
InterceptorUtils.patchAuthorizations(
response.metadata.authorizations,
callingUid,
)
keyDescriptor.nspace = SecureRandom().nextLong()
val newNspace = SecureRandom().nextLong()
response.metadata.key?.let { it.nspace = newNspace }
KeyMintSecurityLevelInterceptor.generatedKeys[keyId] =
KeyMintSecurityLevelInterceptor.GeneratedKeyInfo(
keyData.first,
keyDescriptor.nspace,
null,
newNspace,
response,
parsedParameters,
)
KeyMintSecurityLevelInterceptor.attestationKeys.add(keyId)
GeneratedKeyPersistence.save(
keyId = keyId,
keyPair = keyData.first,
nspace = keyDescriptor.nspace,
securityLevel = response.metadata.keySecurityLevel,
certChain = keyData.second,
algorithm = parsedParameters.algorithm,
keySize = parsedParameters.keySize,
ecCurve = parsedParameters.ecCurve ?: 0,
purposes = parsedParameters.purpose,
digests = parsedParameters.digest,
isAttestationKey = true,
)
return InterceptorUtils.createTypedObjectReply(response)
}
val originalChain = CertificateHelper.getCertificateChain(response)
// Check if we should perform attestation patch.
if (originalChain == null || originalChain.size < 2) {
SystemLogger.info(
"[TX_ID: $txId] Skip patching short certificate chain of length ${originalChain?.size}."
@@ -323,6 +411,8 @@ object Keystore2Interceptor : AbstractKeystoreInterceptor() {
return TransactionResult.SkipTransaction
}
// First, try to retrieve the already-patched chain from our cache to ensure
// consistency.
val cachedChain = KeyMintSecurityLevelInterceptor.getPatchedChain(keyId)
val finalChain: Array<Certificate>
@@ -332,16 +422,25 @@ object Keystore2Interceptor : AbstractKeystoreInterceptor() {
)
finalChain = cachedChain
} else {
// If no chain is cached (e.g., key existed before simulator started),
// perform a live patch as a fallback. This may still be detectable.
SystemLogger.info(
"[TX_ID: $txId] No cached chain for $keyId. Performing live patch as a fallback."
)
finalChain =
AttestationPatcher.patchCertificateChain(originalChain, callingUid)
KeyMintSecurityLevelInterceptor.patchedChains[keyId] = finalChain
SystemLogger.debug("Cached patched certificate chain for $keyId.")
}
CertificateHelper.updateCertificateChain(response.metadata, finalChain)
.getOrThrow()
response.metadata.authorizations =
InterceptorUtils.patchAuthorizations(
response.metadata.authorizations,
callingUid,
)
return InterceptorUtils.createTypedObjectReply(response)
}
@@ -359,9 +458,28 @@ object Keystore2Interceptor : AbstractKeystoreInterceptor() {
private fun handleUpdateSubcomponent(callingUid: Int, data: Parcel): TransactionResult {
data.enforceInterface(IKeystoreService.DESCRIPTOR)
val descriptor = data.readTypedObject(KeyDescriptor.CREATOR)
?: return TransactionResult.ContinueAndSkipPost
// Resolve by nspace (KEY_ID) or alias (APP), same as createOperation.
val generatedKeyInfo =
KeyMintSecurityLevelInterceptor.findGeneratedKeyByKeyId(callingUid, descriptor?.nspace)
?: return TransactionResult.ContinueAndSkipPost
when (descriptor.domain) {
Domain.KEY_ID ->
KeyMintSecurityLevelInterceptor.findGeneratedKeyByKeyId(
callingUid,
descriptor.nspace,
)
Domain.APP ->
descriptor.alias?.let {
KeyMintSecurityLevelInterceptor.generatedKeys[KeyIdentifier(callingUid, it)]
}
else -> null
}
if (generatedKeyInfo == null) {
// Hardware key: mark so getKeyEntry skips cert re-patching.
descriptor.alias?.let { userUpdatedKeys.add(KeyIdentifier(callingUid, it)) }
return TransactionResult.ContinueAndSkipPost
}
SystemLogger.info("Updating sub-component with key[${generatedKeyInfo.nspace}]")
val metadata = generatedKeyInfo.response.metadata
@@ -370,13 +488,73 @@ object Keystore2Interceptor : AbstractKeystoreInterceptor() {
metadata.certificate = publicCert
metadata.certificateChain = certificateChain
GeneratedKeyPersistence.rePersistIfNeeded(callingUid, generatedKeyInfo)
SystemLogger.verbose(
"Key updated with sizes: [publicCert, certificateChain] = [${publicCert?.size}, ${certificateChain?.size}]"
)
return InterceptorUtils.createSuccessReply(writeResultCode = false)
}
/**
* Intercepts the reply from getSecurityLevel to dynamically register our interceptor
* for the returned IKeystoreSecurityLevel binder.
*
* keystore2 may create a new BBinder for each getSecurityLevel call, so the binder
* registered during initial setup (in setupSecurityLevelInterceptors) might not be the
* same one that client apps receive. By intercepting every getSecurityLevel reply, we
* ensure that all SecurityLevel binders are covered.
*/
private fun handlePostGetSecurityLevel(
txId: Long,
data: Parcel,
reply: Parcel,
): TransactionResult {
val backdoor = backdoorBinder
if (backdoor == null) {
SystemLogger.warning("[TX_ID: $txId] post-getSecurityLevel: backdoor not available")
return TransactionResult.SkipTransaction
}
return runCatching {
// Read the security level argument from the original request.
data.enforceInterface(IKeystoreService.DESCRIPTOR)
val requestedLevel = data.readInt()
// hasException already consumed the exception header from the reply.
// Next item is the IKeystoreSecurityLevel binder.
val secLevelBinder = reply.readStrongBinder()
if (secLevelBinder == null) {
SystemLogger.verbose(
"[TX_ID: $txId] getSecurityLevel($requestedLevel) returned null binder"
)
return@runCatching TransactionResult.SkipTransaction
}
// Only intercept TEE and StrongBox security levels.
if (requestedLevel != SecurityLevel.TRUSTED_ENVIRONMENT &&
requestedLevel != SecurityLevel.STRONGBOX
) {
return@runCatching TransactionResult.SkipTransaction
}
// Get or create the interceptor for this security level. The interceptor may not
// exist yet if the initial setupSecurityLevelInterceptors call failed for this level.
val interceptor = securityLevelInterceptors.getOrPut(requestedLevel) {
val secLevelInterface =
IKeystoreSecurityLevel.Stub.asInterface(secLevelBinder)
SystemLogger.info(
"[TX_ID: $txId] Late-creating interceptor for security level $requestedLevel"
)
KeyMintSecurityLevelInterceptor(secLevelInterface, requestedLevel).also {
it.loadPersistedKeys()
}
}
registerSecurityLevelBinder(backdoor, secLevelBinder, interceptor)
TransactionResult.SkipTransaction
}.getOrElse {
SystemLogger.error("[TX_ID: $txId] Failed to process post-getSecurityLevel.", it)
TransactionResult.SkipTransaction
}
}
}
@@ -399,17 +399,18 @@ private data class LegacyKeygenParameters(
/**
* Converts the legacy parameters into the modern [KeyMintAttestation] data structure, which is
* required by the refactored [AttestationBuilder] and [CertificateGenerator].
* required by [AttestationBuilder] and [CertificateGenerator].
*/
fun toKeyMintAttestation(): KeyMintAttestation {
// This conversion acts as a bridge, allowing our new generic components
// to be used by the legacy interceptor.
return KeyMintAttestation(
keySize = this.keySize,
algorithm = this.algorithm,
ecCurve = 0,
ecCurve = 0, // Not explicitly available in legacy args, but not critical
ecCurveName = this.ecCurveName ?: "",
origin = null,
keySize = this.keySize,
origin = null, // Not needed to build attestaion
noAuthRequired = null,
blockMode = listOf<Int>(),
padding = listOf<Int>(),
purpose = this.purpose,
@@ -431,6 +432,22 @@ private data class LegacyKeygenParameters(
manufacturer = null,
model = null,
secondImei = null,
activeDateTime = null,
originationExpireDateTime = null,
usageExpireDateTime = null,
usageCountLimit = null,
callerNonce = null,
unlockedDeviceRequired = null,
includeUniqueId = null,
rollbackResistance = null,
earlyBootOnly = null,
allowWhileOnBody = null,
trustedUserPresenceRequired = null,
trustedConfirmationRequired = null,
maxUsesPerBoot = null,
maxBootLevel = null,
minMacLength = null,
rsaOaepMgfDigest = emptyList(),
)
}
@@ -5,7 +5,6 @@ import android.system.keystore2.Domain
import android.system.keystore2.IKeystoreService
import android.system.keystore2.KeyDescriptor
import java.util.TreeMap
import java.util.concurrent.ConcurrentHashMap
import org.matrix.TEESimulator.interception.keystore.shim.KeyMintSecurityLevelInterceptor
import org.matrix.TEESimulator.logging.SystemLogger
@@ -22,15 +21,6 @@ object ListEntriesHandler {
// Estimate for maximum size of a Binder response in bytes.
private const val RESPONSE_SIZE_LIMIT = 358400
// Parameters of AOSP function `list_key_entries` in utils.rs.
private data class ListEntriesParams(
val domain: Int,
val namespace: Long,
val startPastAlias: String?,
)
private val pendingParams = ConcurrentHashMap<Long, ListEntriesParams>()
// Based on AOSP function `estimate_safe_amount_to_return` in utils.rs.
private fun estimateSafeAmountToReturn(
keyDescriptors: Array<KeyDescriptor>,
@@ -60,7 +50,7 @@ object ListEntriesHandler {
}
// Parse and store parameters for later use (in post-transaction).
fun cacheParameters(txId: Long, data: Parcel, isBatchMode: Boolean): Boolean {
fun cacheParameters(txId: Long, data: Parcel, isBatchMode: Boolean): ListEntriesParams? {
data.enforceInterface(IKeystoreService.DESCRIPTOR)
val domain = data.readInt()
@@ -71,20 +61,21 @@ object ListEntriesHandler {
// See AOSP function `get_key_descriptor_for_lookup` in service.rs.
// Note that all generated keys belong to Domain::APP.
if (domain == Domain.APP) {
pendingParams[txId] = ListEntriesParams(domain, namespace, startPastAlias)
SystemLogger.debug("[TX_ID: $txId] Cached ${pendingParams[txId]}.")
return true
val params = ListEntriesParams(domain, namespace, startPastAlias)
SystemLogger.debug("[TX_ID: $txId] Cached $params.")
return params
}
return false
return null
}
// Merge software-backed keys with hardware-backed keys in the reply parcel.
fun injectGeneratedKeys(txId: Long, callingUid: Int, reply: Parcel): Array<KeyDescriptor> {
val params =
pendingParams.remove(txId)
?: throw IllegalStateException("No params found for listing entries")
fun injectGeneratedKeys(
txId: Long,
callingUid: Int,
params: ListEntriesParams,
reply: Parcel,
): Array<KeyDescriptor> {
// By default we use the calling uid as namespace if domain is Domain::APP.
// The namespace parameter is thus ignored for non-privileged applications.
// See AOSP function `get_key_descriptor_for_lookup` in service.rs.
@@ -140,3 +131,6 @@ object ListEntriesHandler {
}
}
}
// Parameters of AOSP function `list_key_entries` in utils.rs.
data class ListEntriesParams(val domain: Int, val namespace: Long, val startPastAlias: String?)
@@ -16,7 +16,7 @@ import java.util.concurrent.locks.ReentrantLock
import org.matrix.TEESimulator.config.ConfigurationManager.CONFIG_PATH
import org.matrix.TEESimulator.interception.keystore.KeyIdentifier
import org.matrix.TEESimulator.logging.SystemLogger
import org.matrix.TEESimulator.pki.CertificateHelper
data class PersistedKeyData(
val uid: Int,
@@ -250,76 +250,6 @@ object GeneratedKeyPersistence {
return result
}
// Re-persist updates the cert chain for an already-persisted key without
// reconstructing authorization parameters from the response. This avoids
// pulling keymint Tag dependencies into this file and is correct because
// the only field that changes post-generation is the patched cert chain.
fun rePersistIfNeeded(
callingUid: Int,
generatedKeyInfo: KeyMintSecurityLevelInterceptor.GeneratedKeyInfo,
) {
val metadata = generatedKeyInfo.response.metadata
if (metadata == null) {
SystemLogger.debug("rePersist: no metadata, skipping")
return
}
val secLevel = metadata.keySecurityLevel
val entry = KeyMintSecurityLevelInterceptor.generatedKeys.entries.find { (id, info) ->
id.uid == callingUid && info.nspace == generatedKeyInfo.nspace
}
if (entry == null) {
SystemLogger.debug("rePersist: key not found in map for uid=$callingUid nspace=${generatedKeyInfo.nspace}")
return
}
val keyId = entry.key
val filename = keyFileName(keyId.uid, keyId.alias)
val existing = File(PERSISTENCE_DIR, filename)
if (!existing.exists()) {
SystemLogger.debug("rePersist: no existing file for $keyId, skipping")
return
}
val newChain = CertificateHelper.getCertificateChain(metadata)
if (newChain == null) {
SystemLogger.warning("rePersist: could not extract cert chain for $keyId")
return
}
val persisted = runCatching {
DataInputStream(BufferedInputStream(FileInputStream(existing))).use { input ->
val version = input.readInt()
if (version != FORMAT_VERSION) {
SystemLogger.warning("rePersist: unknown format version $version for $keyId")
return
}
readPersistedKeyData(input)
}
}.getOrNull()
if (persisted == null) {
SystemLogger.warning("rePersist: failed to read existing data for $keyId")
return
}
save(
keyId = keyId,
keyPair = generatedKeyInfo.keyPair,
nspace = generatedKeyInfo.nspace,
securityLevel = secLevel,
certChain = newChain.toList(),
algorithm = persisted.algorithm,
keySize = persisted.keySize,
ecCurve = persisted.ecCurve,
purposes = persisted.purposes,
digests = persisted.digests,
isAttestationKey = persisted.isAttestationKey,
)
SystemLogger.debug("Re-persisted key $keyId with updated cert chain")
}
// Corrupted binary files can have arbitrary length fields — cap allocations
private fun requireBounds(value: Int, max: Int, name: String): Int {
require(value in 0..max) { "$name out of bounds: $value (max $max)" }
return value
@@ -330,49 +260,4 @@ object GeneratedKeyPersistence {
.digest("$uid:$alias".toByteArray(Charsets.UTF_8))
return digest.joinToString("") { "%02x".format(it) } + ".bin"
}
// Reads all fields after version has already been consumed
private fun readPersistedKeyData(input: DataInputStream): PersistedKeyData {
val secLevel = input.readInt()
val uid = input.readInt()
val alias = input.readUTF()
val nspace = input.readLong()
val isAttestKey = input.readBoolean()
val algo = input.readInt()
val kSize = input.readInt()
val curve = input.readInt()
val purposeCount = requireBounds(input.readInt(), 64, "purposeCount")
val purposes = (0 until purposeCount).map { input.readInt() }
val digestCount = requireBounds(input.readInt(), 64, "digestCount")
val digests = (0 until digestCount).map { input.readInt() }
val pkLen = requireBounds(input.readInt(), 8192, "pkLen")
val pkBytes = ByteArray(pkLen)
input.readFully(pkBytes)
val certCount = requireBounds(input.readInt(), 10, "certCount")
val certChainBytes = (0 until certCount).map {
val certLen = requireBounds(input.readInt(), 65536, "certLen")
val certBytes = ByteArray(certLen)
input.readFully(certBytes)
certBytes
}
return PersistedKeyData(
uid = uid,
alias = alias,
nspace = nspace,
securityLevel = secLevel,
isAttestationKey = isAttestKey,
algorithm = algo,
keySize = kSize,
ecCurve = curve,
purposes = purposes,
digests = digests,
privateKeyBytes = pkBytes,
certChainBytes = certChainBytes,
)
}
}
@@ -44,6 +44,9 @@ class OperationInterceptor(
private val ABORT_TRANSACTION =
InterceptorUtils.getTransactCode(IKeystoreOperation.Stub::class.java, "abort")
/** Only intercept finish/abort for cleanup. Other ops pass through without round-trip. */
val INTERCEPTED_CODES = intArrayOf(FINISH_TRANSACTION, ABORT_TRANSACTION)
private val transactionNames: Map<Int, String> by lazy {
IKeystoreOperation.Stub::class
.java
@@ -3,11 +3,15 @@ package org.matrix.TEESimulator.interception.keystore.shim
import android.hardware.security.keymint.Algorithm
import android.hardware.security.keymint.BlockMode
import android.hardware.security.keymint.Digest
import android.hardware.security.keymint.KeyParameter
import android.hardware.security.keymint.KeyParameterValue
import android.hardware.security.keymint.KeyPurpose
import android.hardware.security.keymint.PaddingMode
import android.hardware.security.keymint.Tag
import android.os.RemoteException
import android.os.ServiceSpecificException
import android.system.keystore2.IKeystoreOperation
import android.system.keystore2.KeyParameters
import java.security.KeyPair
import java.security.Signature
import java.security.SignatureException
@@ -16,12 +20,45 @@ import org.matrix.TEESimulator.attestation.KeyMintAttestation
import org.matrix.TEESimulator.logging.KeyMintParameterLogger
import org.matrix.TEESimulator.logging.SystemLogger
/** Keystore2 error codes for ServiceSpecificException. Negative = KeyMint, positive = Keystore. */
internal object KeystoreErrorCode {
const val INVALID_OPERATION_HANDLE = -28
const val VERIFICATION_FAILED = -30
const val UNSUPPORTED_PURPOSE = -2
const val INCOMPATIBLE_PURPOSE = -3
const val SYSTEM_ERROR = 4
const val TOO_MUCH_DATA = 21
const val KEY_EXPIRED = -25
const val KEY_NOT_YET_VALID = -24
/** KeyMint ErrorCode::CALLER_NONCE_PROHIBITED */
const val CALLER_NONCE_PROHIBITED = -55
/** KeyMint ErrorCode::INVALID_ARGUMENT */
const val INVALID_ARGUMENT = -38
/** KeyMint ErrorCode::INVALID_TAG */
const val INVALID_TAG = -40
/** Keystore2 ResponseCode::PERMISSION_DENIED */
const val PERMISSION_DENIED = 6
/** Keystore2 ResponseCode::KEY_NOT_FOUND */
const val KEY_NOT_FOUND = 7
}
// A sealed interface to represent the different cryptographic operations we can perform.
private sealed interface CryptoPrimitive {
fun updateAad(aadInput: ByteArray?) {}
fun updateAad(data: ByteArray?)
fun update(data: ByteArray?): ByteArray?
fun finish(data: ByteArray?, signature: ByteArray?): ByteArray?
fun abort()
/** Returns parameters from the begin phase (e.g. GCM nonce), or null if none. */
fun getBeginParameters(): Array<KeyParameter>? = null
}
// Helper object to map KeyMint constants to JCA algorithm strings.
@@ -34,17 +71,17 @@ private object JcaAlgorithmMapper {
Digest.SHA_2_512 -> "SHA512"
else -> "NONE"
}
return when (params.algorithm) {
Algorithm.EC -> "${digest}withECDSA"
Algorithm.RSA -> {
val isPss = params.padding.firstOrNull() == PaddingMode.RSA_PSS
if (isPss) "${digest}withRSA/PSS" else "${digest}withRSA"
val keyAlgo =
when (params.algorithm) {
Algorithm.EC -> "ECDSA"
Algorithm.RSA -> "RSA"
else ->
throw ServiceSpecificException(
KeystoreErrorCode.SYSTEM_ERROR,
"Unsupported signature algorithm: ${params.algorithm}",
)
}
else ->
throw IllegalArgumentException(
"Unsupported signature algorithm: ${params.algorithm}"
)
}
return "${digest}with${keyAlgo}"
}
fun mapCipherAlgorithm(params: KeyMintAttestation): String {
@@ -53,26 +90,25 @@ private object JcaAlgorithmMapper {
Algorithm.RSA -> "RSA"
Algorithm.AES -> "AES"
else ->
throw IllegalArgumentException(
"Unsupported cipher algorithm: ${params.algorithm}"
throw ServiceSpecificException(
KeystoreErrorCode.SYSTEM_ERROR,
"Unsupported cipher algorithm: ${params.algorithm}",
)
}
val blockMode =
when (params.blockMode.firstOrNull()) {
BlockMode.ECB -> "ECB"
BlockMode.CBC -> "CBC"
BlockMode.CTR -> "CTR"
BlockMode.GCM -> "GCM"
else -> "ECB"
else -> "ECB" // Default for RSA
}
val padding =
when (params.padding.firstOrNull()) {
PaddingMode.NONE -> "NoPadding"
PaddingMode.PKCS7 -> "PKCS7Padding"
PaddingMode.RSA_PKCS1_1_5_ENCRYPT -> "PKCS1Padding"
PaddingMode.RSA_PKCS1_1_5_SIGN -> "PKCS1Padding"
PaddingMode.RSA_OAEP -> "OAEPPadding"
else -> "NoPadding"
else -> "NoPadding" // Default for GCM
}
return "$keyAlgo/$blockMode/$padding"
}
@@ -85,6 +121,10 @@ private class Signer(keyPair: KeyPair, params: KeyMintAttestation) : CryptoPrimi
initSign(keyPair.private)
}
override fun updateAad(data: ByteArray?) {
throw ServiceSpecificException(KeystoreErrorCode.INVALID_TAG)
}
override fun update(data: ByteArray?): ByteArray? {
if (data != null) signature.update(data)
return null
@@ -105,6 +145,10 @@ private class Verifier(keyPair: KeyPair, params: KeyMintAttestation) : CryptoPri
initVerify(keyPair.public)
}
override fun updateAad(data: ByteArray?) {
throw ServiceSpecificException(KeystoreErrorCode.INVALID_TAG)
}
override fun update(data: ByteArray?): ByteArray? {
if (data != null) signature.update(data)
return null
@@ -112,12 +156,17 @@ private class Verifier(keyPair: KeyPair, params: KeyMintAttestation) : CryptoPri
override fun finish(data: ByteArray?, signature: ByteArray?): ByteArray? {
if (data != null) update(data)
if (signature == null) throw SignatureException("Signature to verify is null")
if (signature == null)
throw ServiceSpecificException(
KeystoreErrorCode.VERIFICATION_FAILED,
"Signature to verify is null",
)
if (!this.signature.verify(signature)) {
// Throwing an exception is how Keystore signals verification failure.
throw SignatureException("Signature verification failed")
throw ServiceSpecificException(
KeystoreErrorCode.VERIFICATION_FAILED,
"Signature/MAC verification failed",
)
}
// A successful verification returns no data.
return null
}
@@ -126,16 +175,19 @@ private class Verifier(keyPair: KeyPair, params: KeyMintAttestation) : CryptoPri
// Concrete implementation for Encryption/Decryption.
private class CipherPrimitive(
keyPair: KeyPair,
cryptoKey: java.security.Key,
params: KeyMintAttestation,
private val opMode: Int,
) : CryptoPrimitive {
private val cipher: Cipher =
Cipher.getInstance(JcaAlgorithmMapper.mapCipherAlgorithm(params)).apply {
val key = if (opMode == Cipher.ENCRYPT_MODE) keyPair.public else keyPair.private
init(opMode, key)
init(opMode, cryptoKey)
}
override fun updateAad(data: ByteArray?) {
if (data != null) cipher.updateAAD(data)
}
override fun update(data: ByteArray?): ByteArray? =
if (data != null) cipher.update(data) else null
@@ -143,17 +195,63 @@ private class CipherPrimitive(
if (data != null) cipher.doFinal(data) else cipher.doFinal()
override fun abort() {}
/** Returns the cipher IV as a NONCE parameter for GCM operations. */
override fun getBeginParameters(): Array<KeyParameter>? {
val iv = cipher.iv ?: return null
return arrayOf(
KeyParameter().apply {
tag = Tag.NONCE
value = KeyParameterValue.blob(iv)
}
)
}
}
// Concrete implementation for ECDH Key Agreement.
private class KeyAgreementPrimitive(keyPair: KeyPair) : CryptoPrimitive {
private val agreement: javax.crypto.KeyAgreement =
javax.crypto.KeyAgreement.getInstance("ECDH").apply { init(keyPair.private) }
override fun updateAad(data: ByteArray?) {
throw ServiceSpecificException(KeystoreErrorCode.INVALID_TAG)
}
override fun update(data: ByteArray?): ByteArray? = null
override fun finish(data: ByteArray?, signature: ByteArray?): ByteArray? {
if (data == null)
throw ServiceSpecificException(
KeystoreErrorCode.INVALID_ARGUMENT,
"Peer public key required for key agreement",
)
val peerKey =
java.security.KeyFactory.getInstance("EC")
.generatePublic(java.security.spec.X509EncodedKeySpec(data))
agreement.doPhase(peerKey, true)
return agreement.generateSecret()
}
override fun abort() {}
}
/**
* A software-only implementation of a cryptographic operation. This class acts as a controller,
* delegating to a specific cryptographic primitive based on the operation's purpose.
*
* Tracks operation lifecycle: once [finish] or [abort] is called, subsequent calls throw
* [ServiceSpecificException] with [KeystoreErrorCode.INVALID_OPERATION_HANDLE].
*/
class SoftwareOperation(
private val txId: Long,
keyPair: KeyPair,
keyPair: KeyPair?,
secretKey: javax.crypto.SecretKey?,
params: KeyMintAttestation,
private val latencyFloorMs: Long = 0L,
var onFinishCallback: (() -> Unit)? = null,
) {
private val primitive: CryptoPrimitive
@Volatile var finalized = false
private set
@Volatile private var finalized = false
init {
val purpose = params.purpose.firstOrNull()
@@ -162,118 +260,134 @@ class SoftwareOperation(
primitive =
when (purpose) {
KeyPurpose.SIGN -> Signer(keyPair, params)
KeyPurpose.VERIFY -> Verifier(keyPair, params)
KeyPurpose.ENCRYPT -> CipherPrimitive(keyPair, params, Cipher.ENCRYPT_MODE)
KeyPurpose.DECRYPT -> CipherPrimitive(keyPair, params, Cipher.DECRYPT_MODE)
KeyPurpose.SIGN -> Signer(keyPair!!, params)
KeyPurpose.VERIFY -> Verifier(keyPair!!, params)
KeyPurpose.ENCRYPT -> {
val key: java.security.Key = secretKey ?: keyPair!!.public
CipherPrimitive(key, params, Cipher.ENCRYPT_MODE)
}
KeyPurpose.DECRYPT -> {
val key: java.security.Key = secretKey ?: keyPair!!.private
CipherPrimitive(key, params, Cipher.DECRYPT_MODE)
}
KeyPurpose.AGREE_KEY -> KeyAgreementPrimitive(keyPair!!)
else ->
throw UnsupportedOperationException("Unsupported operation purpose: $purpose")
throw ServiceSpecificException(
KeystoreErrorCode.UNSUPPORTED_PURPOSE,
"Unsupported operation purpose: $purpose",
)
}
}
/** Parameters produced during begin (e.g. GCM nonce), to populate CreateOperationResponse. */
val beginParameters: KeyParameters?
get() {
val params = primitive.getBeginParameters() ?: return null
if (params.isEmpty()) return null
return KeyParameters().apply { keyParameter = params }
}
private fun checkActive() {
if (finalized) {
SystemLogger.debug("[SoftwareOp TX_ID: $txId] Rejected: operation already finalized (pruned or completed)")
throw ServiceSpecificException(KeystoreErrorCodes.invalidOperationHandle)
}
if (finalized)
throw ServiceSpecificException(
KeystoreErrorCode.INVALID_OPERATION_HANDLE,
"Operation already finalized.",
)
}
private fun checkInputLength(data: ByteArray?) {
if (data != null && data.size > MAX_RECEIVE_DATA) {
SystemLogger.info("[SoftwareOp TX_ID: $txId] Input too large: ${data.size} > $MAX_RECEIVE_DATA, throwing TOO_MUCH_DATA(${KeystoreErrorCodes.tooMuchData})")
throw ServiceSpecificException(KeystoreErrorCodes.tooMuchData)
}
}
fun updateAad(aadInput: ByteArray?) {
SystemLogger.debug("[SoftwareOp TX_ID: $txId] updateAad() inputSize=${aadInput?.size ?: 0}")
fun updateAad(data: ByteArray?) {
checkActive()
checkInputLength(aadInput)
primitive.updateAad(aadInput)
try {
primitive.updateAad(data)
} catch (e: ServiceSpecificException) {
finalized = true
throw e
} catch (e: Exception) {
finalized = true
SystemLogger.error("[SoftwareOp TX_ID: $txId] Failed to updateAad.", e)
throw ServiceSpecificException(KeystoreErrorCode.SYSTEM_ERROR, e.message)
}
}
fun update(data: ByteArray?): ByteArray? {
SystemLogger.debug("[SoftwareOp TX_ID: $txId] update() inputSize=${data?.size ?: 0}")
checkActive()
checkInputLength(data)
try {
return primitive.update(data)
} catch (e: ServiceSpecificException) {
finalized = true
throw e
} catch (e: Exception) {
finalized = true
SystemLogger.error("[SoftwareOp TX_ID: $txId] Failed to update operation.", e)
throw e
throw ServiceSpecificException(KeystoreErrorCode.SYSTEM_ERROR, e.message)
}
}
fun finish(data: ByteArray?, signature: ByteArray?): ByteArray? {
checkActive()
checkInputLength(data)
try {
val startNs = if (latencyFloorMs > 0) System.nanoTime() else 0L
val result = primitive.finish(data, signature)
if (latencyFloorMs > 0) {
val elapsedMs = (System.nanoTime() - startNs) / 1_000_000
val delayMs = latencyFloorMs - elapsedMs
if (delayMs > 0) Thread.sleep(delayMs)
}
finalized = true
SystemLogger.info("[SoftwareOp TX_ID: $txId] Finished operation successfully.")
onFinishCallback?.invoke()
return result
} catch (e: ServiceSpecificException) {
throw e
} catch (e: Exception) {
SystemLogger.error("[SoftwareOp TX_ID: $txId] Failed to finish operation.", e)
throw e
throw ServiceSpecificException(KeystoreErrorCode.SYSTEM_ERROR, e.message)
} finally {
finalized = true
}
}
fun abort() {
checkActive()
finalized = true
primitive.abort()
SystemLogger.debug("[SoftwareOp TX_ID: $txId] Operation aborted.")
}
companion object {
// AOSP keystore2 operation.rs: const MAX_RECEIVE_DATA: usize = 0x8000
private const val MAX_RECEIVE_DATA = 0x8000
}
}
private object KeystoreErrorCodes {
val tooMuchData: Int by lazy {
resolveField("android.system.keystore2.ResponseCode", "TOO_MUCH_DATA", 21)
}
val invalidOperationHandle: Int by lazy {
resolveField("android.hardware.security.keymint.ErrorCode", "INVALID_OPERATION_HANDLE", -28)
}
private fun resolveField(className: String, fieldName: String, fallback: Int): Int =
runCatching {
Class.forName(className).getField(fieldName).getInt(null)
}.getOrElse {
SystemLogger.debug("Resolved $className.$fieldName via fallback: $fallback")
fallback
}
}
/** Binder interface for [SoftwareOperation]. Synchronized and input-length validated. */
class SoftwareOperationBinder(private val operation: SoftwareOperation) :
IKeystoreOperation.Stub() {
private fun checkInputLength(data: ByteArray?) {
if (data != null && data.size > MAX_RECEIVE_DATA)
throw ServiceSpecificException(KeystoreErrorCode.TOO_MUCH_DATA)
}
@Throws(RemoteException::class)
override fun updateAad(aadInput: ByteArray?) {
operation.updateAad(aadInput)
synchronized(this) {
checkInputLength(aadInput)
operation.updateAad(aadInput)
}
}
@Throws(RemoteException::class)
override fun update(input: ByteArray?): ByteArray? {
return operation.update(input)
synchronized(this) {
checkInputLength(input)
return operation.update(input)
}
}
@Throws(RemoteException::class)
override fun finish(input: ByteArray?, signature: ByteArray?): ByteArray? {
return operation.finish(input, signature)
synchronized(this) {
checkInputLength(input)
checkInputLength(signature)
return operation.finish(input, signature)
}
}
@Throws(RemoteException::class)
override fun abort() {
operation.abort()
synchronized(this) { operation.abort() }
}
companion object {
private const val MAX_RECEIVE_DATA = 0x8000
}
}
@@ -37,6 +37,22 @@ object KeyMintParameterLogger {
.associate { field -> (field.get(null) as Int) to field.name }
}
val hardwareAuthenticatorTypeNames: Map<Int, String> by lazy {
HardwareAuthenticatorType::class
.java
.fields
.filter { it.type == Int::class.java }
.associate { field -> (field.get(null) as Int) to field.name }
}
val keyOriginNames: Map<Int, String> by lazy {
KeyOrigin::class
.java
.fields
.filter { it.type == Int::class.java }
.associate { field -> (field.get(null) as Int) to field.name }
}
val paddingNames: Map<Int, String> by lazy {
PaddingMode::class
.java
@@ -81,22 +97,33 @@ object KeyMintParameterLogger {
when (param.tag) {
Tag.ALGORITHM -> algorithmNames[value.algorithm]
Tag.BLOCK_MODE -> blockModeNames[value.blockMode]
Tag.DIGEST -> digestNames[value.digest]
Tag.EC_CURVE -> ecCurveNames[value.ecCurve]
Tag.ORIGIN -> keyOriginNames[value.origin]
Tag.PADDING -> paddingNames[value.paddingMode]
Tag.PURPOSE -> purposeNames[value.keyPurpose]
Tag.DIGEST -> digestNames[value.digest]
Tag.USER_AUTH_TYPE ->
hardwareAuthenticatorTypeNames[value.hardwareAuthenticatorType]
Tag.AUTH_TIMEOUT,
Tag.BOOT_PATCHLEVEL,
Tag.KEY_SIZE,
Tag.MIN_MAC_LENGTH -> value.integer.toString()
Tag.MAC_LENGTH,
Tag.MIN_MAC_LENGTH,
Tag.OS_VERSION,
Tag.OS_PATCHLEVEL,
Tag.USER_ID,
Tag.VENDOR_PATCHLEVEL -> value.integer.toString()
Tag.CERTIFICATE_SERIAL -> BigInteger(value.blob).toString()
Tag.ACTIVE_DATETIME,
Tag.CERTIFICATE_NOT_AFTER,
Tag.CERTIFICATE_NOT_BEFORE,
Tag.CREATION_DATETIME,
Tag.ORIGINATION_EXPIRE_DATETIME,
Tag.USAGE_EXPIRE_DATETIME -> Date(value.dateTime).toString()
Tag.CERTIFICATE_SUBJECT -> X500Name(X500Principal(value.blob).name).toString()
Tag.USER_SECURE_ID,
Tag.RSA_PUBLIC_EXPONENT -> value.longInteger.toString()
Tag.NO_AUTH_REQUIRED -> "true"
Tag.NO_AUTH_REQUIRED -> value.boolValue.toString()
Tag.ATTESTATION_CHALLENGE,
Tag.ATTESTATION_ID_BRAND,
Tag.ATTESTATION_ID_DEVICE,
@@ -8,7 +8,6 @@ import java.math.BigInteger
import java.security.KeyPair
import java.security.KeyPairGenerator
import java.security.cert.Certificate
import java.security.cert.X509Certificate
import java.security.spec.ECGenParameterSpec
import java.security.spec.RSAKeyGenParameterSpec
import java.util.Date
@@ -36,6 +35,9 @@ import org.matrix.TEESimulator.logging.SystemLogger
*/
object CertificateGenerator {
// RFC 5280 GeneralizedTime maximum: 9999-12-31T23:59:59 UTC (millis since epoch).
private const val UNDEFINED_NOT_AFTER = 253402300799000L
/**
* Generates a software-based cryptographic key pair.
*
@@ -49,7 +51,10 @@ object CertificateGenerator {
Algorithm.EC -> "EC" to ECGenParameterSpec(params.ecCurveName)
Algorithm.RSA ->
"RSA" to
RSAKeyGenParameterSpec(params.keySize, params.rsaPublicExponent)
RSAKeyGenParameterSpec(
params.keySize,
params.rsaPublicExponent ?: RSAKeyGenParameterSpec.F4,
)
else ->
throw IllegalArgumentException(
"Unsupported algorithm: ${params.algorithm}"
@@ -88,11 +93,9 @@ object CertificateGenerator {
"Attestation challenge exceeds length limit (${challenge.size} > ${AttestationConstants.CHALLENGE_LENGTH_LIMIT})"
)
return runCatching {
return try {
val keybox = getKeyboxForAlgorithm(uid, params.algorithm)
// Determine the signing key and issuer. If an attestKey is provided, use it.
// Otherwise, fall back to the root key from the keybox.
val (signingKey, issuer) =
if (attestKeyAlias != null && Build.VERSION.SDK_INT >= Build.VERSION_CODES.S) {
getAttestationKeyInfo(uid, attestKeyAlias)?.let { it.first to it.second }
@@ -101,20 +104,20 @@ object CertificateGenerator {
keybox.keyPair to getIssuerFromKeybox(keybox)
}
// Build the new leaf certificate with the simulated attestation.
val leafCert =
buildCertificate(subjectKeyPair, signingKey, issuer, params, uid, securityLevel)
// If not self-attesting, the chain is just the leaf. Otherwise, append the keybox
// chain.
if (attestKeyAlias != null) {
listOf(leafCert)
} else {
listOf(leafCert) + keybox.certificates
}
} catch (e: android.os.ServiceSpecificException) {
throw e
} catch (e: Exception) {
SystemLogger.error("Failed to generate certificate chain.", e)
null
}
.onFailure { SystemLogger.error("Failed to generate certificate chain.", it) }
.getOrNull()
}
/**
@@ -128,7 +131,7 @@ object CertificateGenerator {
params: KeyMintAttestation,
securityLevel: Int,
): Pair<KeyPair, List<Certificate>>? {
return runCatching {
return try {
SystemLogger.info(
"Generating new attested key pair for alias: '$alias' (UID: $uid)"
)
@@ -144,11 +147,12 @@ object CertificateGenerator {
"Successfully generated new certificate chain for alias: '$alias'."
)
Pair(newKeyPair, chain)
} catch (e: android.os.ServiceSpecificException) {
throw e
} catch (e: Exception) {
SystemLogger.error("Failed to generate attested key pair for alias '$alias'.", e)
null
}
.onFailure {
SystemLogger.error("Failed to generate attested key pair for alias '$alias'.", it)
}
.getOrNull()
}
fun getIssuerFromKeybox(keybox: KeyBox) =
@@ -163,7 +167,10 @@ object CertificateGenerator {
else -> throw IllegalArgumentException("Unsupported algorithm ID: $algorithm")
}
return KeyBoxManager.getAttestationKey(keyboxFile, algorithmName)
?: throw Exception("Could not load keybox for UID $uid and algorithm $algorithmName")
?: throw android.os.ServiceSpecificException(
-75, // ATTESTATION_KEYS_NOT_PROVISIONED
"No attestation key for algorithm $algorithmName in $keyboxFile",
)
}
/** Retrieves the key pair and issuer name for a given attestation key alias. */
@@ -192,14 +199,16 @@ object CertificateGenerator {
private fun buildKeyUsageFromPurposes(purposes: List<Int>): Int {
var bits = 0
for (purpose in purposes) {
bits = bits or when (purpose) {
KeyPurpose.SIGN -> KeyUsage.digitalSignature
KeyPurpose.DECRYPT -> KeyUsage.dataEncipherment
KeyPurpose.WRAP_KEY -> KeyUsage.keyEncipherment
KeyPurpose.AGREE_KEY -> KeyUsage.keyAgreement
KeyPurpose.ATTEST_KEY -> KeyUsage.keyCertSign
else -> 0
}
bits =
bits or
when (purpose) {
KeyPurpose.SIGN -> KeyUsage.digitalSignature
KeyPurpose.DECRYPT -> KeyUsage.dataEncipherment
KeyPurpose.WRAP_KEY -> KeyUsage.keyEncipherment
KeyPurpose.AGREE_KEY -> KeyUsage.keyAgreement
KeyPurpose.ATTEST_KEY -> KeyUsage.keyCertSign
else -> 0
}
}
return bits
}
@@ -214,16 +223,17 @@ object CertificateGenerator {
securityLevel: Int,
): Certificate {
val subject = params.certificateSubject ?: X500Name("CN=Android Keystore Key")
val leafNotAfter =
(signingKeyPair.public as? X509Certificate)?.notAfter
?: Date(System.currentTimeMillis() + 31536000000L)
// Default validity: epoch to 9999-12-31T23:59:59 UTC (matches add_required_parameters).
val notBefore = params.certificateNotBefore ?: Date(0)
val notAfter = params.certificateNotAfter ?: Date(UNDEFINED_NOT_AFTER)
val builder =
JcaX509v3CertificateBuilder(
issuer,
params.certificateSerial ?: BigInteger.ONE,
params.certificateNotBefore ?: Date(),
params.certificateNotAfter ?: leafNotAfter,
notBefore,
notAfter,
subject,
subjectKeyPair.public,
)
@@ -238,11 +248,16 @@ object CertificateGenerator {
AttestationBuilder.buildAttestationExtension(params, uid, securityLevel)
)
// The signature algorithm must match the SIGNING key, not the subject key.
// An EC attestation key may sign an RSA subject key's certificate (or vice versa).
val signerAlgorithm =
when (signingKeyPair.private.algorithm) {
"EC", "ECDSA" -> "SHA256withECDSA"
"RSA" -> "SHA256withRSA"
else -> throw IllegalArgumentException("Unsupported signing key: ${signingKeyPair.private.algorithm}")
when (signingKeyPair.private) {
is java.security.interfaces.ECKey -> "SHA256withECDSA"
is java.security.interfaces.RSAKey -> "SHA256withRSA"
else ->
throw IllegalArgumentException(
"Unsupported signing key type: ${signingKeyPair.private.javaClass}"
)
}
val contentSigner =
JcaContentSignerBuilder(signerAlgorithm)
@@ -45,6 +45,13 @@ data class CertGenConfig(
val idManufacturer: ByteArray?,
val idModel: ByteArray?,
val idSecondImei: ByteArray?,
val activeDatetime: Long = -1L,
val originationExpireDatetime: Long = -1L,
val usageExpireDatetime: Long = -1L,
val usageCountLimit: Int = -1,
val callerNonce: Boolean = false,
val unlockedDeviceRequired: Boolean = false,
val noAuthRequired: Boolean = true,
)
object NativeCertGen {
@@ -91,33 +91,27 @@ object AndroidDeviceUtils {
attestationValueProvider: () -> ByteArray?,
expectedSize: Int,
): ByteArray {
// 1. Attempt to get the value from the system property.
getProperty(propertyName, expectedSize)?.let {
SystemLogger.debug("Using $propertyName from system property: ${it.toHex()}")
persistToFile(propertyName, it)
return it
}
// 2. Fallback to the value from a cached TEE attestation.
try {
attestationValueProvider()?.let {
SystemLogger.debug("Using $propertyName from TEE attestation: ${it.toHex()}")
setProperty(propertyName, it)
persistToFile(propertyName, it)
setProperty(propertyName, it) // Persist for consistency
return it
}
} catch (e: Exception) {
SystemLogger.error("Failed to get $propertyName from attestation.", e)
}
readFromFile(propertyName, expectedSize)?.let {
SystemLogger.debug("Using $propertyName from persistent file: ${it.toHex()}")
setProperty(propertyName, it)
return it
}
// 3. As a final fallback, generate a random value.
return generateRandomBytes(expectedSize).also {
SystemLogger.debug("Using randomly generated $propertyName: ${it.toHex()}")
setProperty(propertyName, it)
persistToFile(propertyName, it)
}
}
@@ -164,37 +158,10 @@ object AndroidDeviceUtils {
}
}
/** Generates a cryptographically random byte array of a specified length. */
private fun generateRandomBytes(size: Int): ByteArray =
ByteArray(size).also { ThreadLocalRandom.current().nextBytes(it) }
private val PERSIST_DIR = File("/data/adb/tricky_store")
private fun fileForProperty(propertyName: String): File = when (propertyName) {
"ro.boot.vbmeta.digest" -> File(PERSIST_DIR, "boot_hash.bin")
"ro.boot.vbmeta.public_key_digest" -> File(PERSIST_DIR, "boot_key.bin")
else -> File(PERSIST_DIR, "${propertyName.replace('.', '_')}.bin")
}
private fun persistToFile(propertyName: String, bytes: ByteArray) {
try {
fileForProperty(propertyName).writeBytes(bytes)
} catch (e: Exception) {
SystemLogger.error("Failed to persist $propertyName to file.", e)
}
}
private fun readFromFile(propertyName: String, expectedSize: Int): ByteArray? {
return try {
val file = fileForProperty(propertyName)
if (!file.exists()) return null
val bytes = file.readBytes()
if (bytes.size == expectedSize) bytes else null
} catch (e: Exception) {
SystemLogger.error("Failed to read $propertyName from file.", e)
null
}
}
// --- Patch Level Properties ---
fun getPatchLevel(uid: Int): Int {
@@ -273,12 +240,11 @@ object AndroidDeviceUtils {
val resolvedValue = resolveDateKeywords(value)
return when {
// "device_default" indicates falling back to the system property.
resolvedValue.equals("device_default", ignoreCase = true) -> null
// Resolve from live system prop — matches what detectors see via getprop,
// even when PIF has spoofed ro.build.version.security_patch via resetprop
resolvedValue.equals("prop", ignoreCase = true) ->
parsePatchLevelValue(SystemProperties.get("ro.build.version.security_patch", ""), isLong)
// "no" indicates this value should not be reported.
resolvedValue.equals("no", ignoreCase = true) -> DO_NOT_REPORT
// Otherwise, parse the resolved date string.
else -> parsePatchLevelValue(resolvedValue, isLong)
}
}
@@ -405,7 +371,10 @@ object AndroidDeviceUtils {
// --- APEX and Module Hash Properties ---
// Minimal protobuf parser for apex_manifest.pb (field 1: name, field 2: version)
// https://cs.android.com/android/platform/superproject/+/android-latest-release:system/apex/proto/apex_manifest.proto
// --- Minimal Protobuf Parser for ApexManifest ---
// Field 1: name (string)
// Field 2: version (int64)
private class MinimalApexManifestParser(private val data: ByteArray) {
var pos = 0
@@ -419,13 +388,13 @@ object AndroidDeviceUtils {
val wireType = (tag and 0x07).toInt()
when (fieldNum) {
1L -> {
1L -> { // name
val length = readVarint().toInt()
if (pos + length > data.size) return null
name = String(data, pos, length, Charsets.UTF_8)
pos += length
}
2L -> {
2L -> { // version
version = readVarint()
}
else -> skipField(wireType)
@@ -453,18 +422,19 @@ object AndroidDeviceUtils {
private fun skipField(wireType: Int) {
when (wireType) {
0 -> readVarint()
1 -> pos += 8
2 -> {
0 -> readVarint() // Varint
1 -> pos += 8 // 64-bit
2 -> { // Length-delimited
val len = readVarint().toInt()
pos += len
}
5 -> pos += 4
5 -> pos += 4 // 32-bit
else -> throw IllegalStateException("Unknown wire type $wireType")
}
}
}
// https://cs.android.com/android/platform/superproject/main/+/main:system/apex/libs/libapexutil/apexutil.cpp
private val apexInfos: List<Pair<String, Long>> by lazy {
val results = mutableListOf<Pair<String, Long>>()
val apexRoot = File("/apex")
@@ -473,14 +443,22 @@ object AndroidDeviceUtils {
return@lazy emptyList()
}
// Logic from: GetActivePackages in apexutil.cpp
apexRoot.listFiles()?.forEach { file ->
if (!file.isDirectory) return@forEach
val name = file.name
// 1. Ignore "." (and implicitly "..")
if (name.startsWith(".")) return@forEach
// 2. Ignore directories containing '@' (active mounts usually don't have version in
// path)
if (name.contains("@")) return@forEach
// 3. Ignore "sharedlibs"
if (name == "sharedlibs") return@forEach
// 4. Parse apex_manifest.pb
val manifestFile = File(file, "apex_manifest.pb")
if (manifestFile.exists()) {
runCatching {
@@ -491,46 +469,59 @@ object AndroidDeviceUtils {
}
}
// Ensure uniqueness (though filesystem scan usually prevents exact dupes,
// strictly speaking we want to behave like a Map keyed by package name)
results.distinctBy { it.first }
}
// https://cs.android.com/android/platform/superproject/main/+/main:system/security/keystore2/src/maintenance.rs
val moduleHash: ByteArray by lazy {
DeviceAttestationService.CachedAttestationData?.moduleHash
?: runCatching {
// 1. Create a container to hold the sort key (name encoded) and the full data
// (sequence encoded)
data class ModuleEntry(
val nameEncoded: ByteArray,
val fullEncoded: ByteArray,
val nameEncoded: ByteArray, // The sort key
val fullEncoded: ByteArray, // The data to hash
)
val modules =
apexInfos.map { (packageName, versionCode) ->
// Create the components
val nameOctet = DEROctetString(packageName.toByteArray(Charsets.UTF_8))
val versionInt = ASN1Integer(versionCode)
// Create the Sequence: SEQUENCE { packageName, version }
val vec = ASN1EncodableVector()
vec.add(nameOctet)
vec.add(versionInt)
val sequence = DERSequence(vec)
// AOSP sorts by encoded name only, not full sequence
// We store the encoded name separately because Rust sorts ONLY by this
ModuleEntry(
nameEncoded = nameOctet.encoded,
fullEncoded = sequence.encoded,
)
}
// 2. Sort manually based on the encoded Package Name (lexicographically)
// This mimics the Rust 'impl DerOrd for ModuleInfo' which delegates to
// 'self.name'
val sortedModules =
modules.sortedWith { m1, m2 ->
compareByteArrays(m1.nameEncoded, m2.nameEncoded)
}
// 3. Concatenate the full sequences in the specific sorted order
val payloadStream = ByteArrayOutputStream()
sortedModules.forEach { payloadStream.write(it.fullEncoded) }
val payload = payloadStream.toByteArray()
// Wrap in DER SET tag manually — DERSet() re-sorts by full encoding
// 4. Wrap manually in a DER SET tag (0x31)
// We cannot use DERSet(vector) because it would re-sort incorrectly.
val finalDerSet = encodeAsDerSet(payload)
// 5. Compute SHA-256
MessageDigest.getInstance("SHA-256").digest(finalDerSet)
}
.getOrElse {
@@ -539,6 +530,7 @@ object AndroidDeviceUtils {
}
}
/** Compares two byte arrays lexicographically (unsigned). */
private fun compareByteArrays(a: ByteArray, b: ByteArray): Int {
val length = minOf(a.size, b.size)
for (i in 0 until length) {
@@ -551,25 +543,31 @@ object AndroidDeviceUtils {
return a.size - b.size
}
/** Manually wraps the payload in an ASN.1 SET (0x31) tag with correct length encoding. */
private fun encodeAsDerSet(payload: ByteArray): ByteArray {
val out = ByteArrayOutputStream()
out.write(0x31)
out.write(0x31) // ASN.1 Tag for SET
writeDerLength(out, payload.size)
out.write(payload)
return out.toByteArray()
}
/** Writes the ASN.1 length field to the stream. */
private fun writeDerLength(out: ByteArrayOutputStream, length: Int) {
if (length < 128) {
// Short form
out.write(length)
} else {
// Long form
var size = length
val bytes = ArrayList<Byte>()
while (size > 0) {
bytes.add((size and 0xFF).toByte())
size = size ushr 8
}
// First byte: 0x80 | number of length bytes
out.write(0x80 or bytes.size)
// Write length bytes in big-endian (reverse of how we extracted them)
for (i in bytes.indices.reversed()) {
out.write(bytes[i].toInt())
}
@@ -1,72 +0,0 @@
package org.matrix.TEESimulator.util
import android.annotation.SuppressLint
import android.content.Context
import android.content.pm.PackageManager
import org.matrix.TEESimulator.logging.SystemLogger
object AndroidPermissionUtils {
@SuppressLint("PrivateApi", "DiscouragedPrivateApi")
private fun getGlobalContext(): Context? {
return try {
// 1. Get the hidden ActivityThread class via reflection
val activityThreadClass = Class.forName("android.app.ActivityThread")
// 2. Invoke the static currentActivityThread() method
val currentActivityThreadMethod = activityThreadClass.getDeclaredMethod("currentActivityThread")
currentActivityThreadMethod.isAccessible = true
val activityThread = currentActivityThreadMethod.invoke(null)
if (activityThread == null) {
SystemLogger.warning("Reflection: ActivityThread.currentActivityThread() returned null")
return null
}
// 3. Try to get the application context
val getApplicationMethod = activityThreadClass.getDeclaredMethod("getApplication")
getApplicationMethod.isAccessible = true
val application = getApplicationMethod.invoke(activityThread) as? Context
if (application != null) return application
// 4. Fallback to getSystemContext() if application is null (often happens in system_server)
val getSystemContextMethod = activityThreadClass.getDeclaredMethod("getSystemContext")
getSystemContextMethod.isAccessible = true
getSystemContextMethod.invoke(activityThread) as? Context
} catch (e: Exception) {
SystemLogger.error("Reflection failed to get global context for permission check", e)
null
}
}
/**
* Core permission check.
*/
fun hasPermission(uid: Int, permission: String): Boolean {
val context = getGlobalContext() ?: run {
SystemLogger.warning("AndroidPermissionUtils: Context is null, failing permission check safely.")
return false
}
val result = context.checkPermission(permission, -1, uid)
return result == PackageManager.PERMISSION_GRANTED
}
fun hasDeviceAttestationPermission(uid: Int): Boolean {
return hasPermission(uid, "android.permission.READ_PRIVILEGED_PHONE_STATE")
}
fun hasUniqueIdAttestationPermission(uid: Int): Boolean {
return hasPermission(uid, "android.permission.REQUEST_UNIQUE_ID_ATTESTATION")
}
fun hasManageUsersPermission(uid: Int): Boolean {
return hasPermission(uid, "android.permission.MANAGE_USERS")
}
fun hasDumpPermission(uid: Int): Boolean {
return hasPermission(uid, "android.permission.DUMP")
}
}
@@ -0,0 +1,84 @@
package org.matrix.TEESimulator.util
import android.hardware.security.keymint.Algorithm
import java.security.SecureRandom
import java.util.concurrent.locks.LockSupport
import kotlin.math.abs
import kotlin.math.exp
import kotlin.math.ln
import kotlin.math.max
/**
* Simulates realistic TEE hardware latency for software key generation.
*
* The delay model is derived from 64+ timing measurements across QTEE (Qualcomm) and Trustonic
* (MediaTek) hardware. It combines four independent noise sources that model different physical
* latency origins in a real TrustZone-based TEE:
*
* 1. Base crypto processing (log-normal): hardware RNG + key derivation + cert signing
* 2. Binder/kernel transit (exponential): IPC scheduling, context switches
* 3. TrustZone scheduler jitter (Gaussian): world-switch non-determinism
* 4. Cold-start penalty (half-normal): first operation after idle is slower due to TEE
* secure world re-initialization and TLB/cache warming
*
* Per-boot session bias models manufacturing variance between TEE hardware instances.
*/
object TeeLatencySimulator {
private val rng = SecureRandom()
private val sessionBiasMs: Double by lazy { rng.nextGaussian() * 5.0 }
private val coldPenaltyMs: Double by lazy { abs(rng.nextGaussian() * 12.0) }
@Volatile private var firstCall = true
fun simulateGenerateKeyDelay(algorithm: Int, elapsedNanos: Long) {
val elapsedMs = elapsedNanos / 1_000_000.0
val targetMs = sampleTotalDelay(algorithm)
val remainingMs = targetMs - elapsedMs
if (remainingMs > 1.0) {
LockSupport.parkNanos((remainingMs * 1_000_000).toLong())
}
}
private fun sampleTotalDelay(algorithm: Int): Double {
val base = sampleBaseCryptoDelay(algorithm)
val transit = sampleExponential(2.5)
val jitter = (rng.nextGaussian() * 2.5).coerceIn(-8.0, 12.0)
var cold = 0.0
if (firstCall) {
firstCall = false
cold = coldPenaltyMs
}
return max(20.0, base + transit + jitter + sessionBiasMs + cold)
}
/**
* Log-normal base delay. Parameters tuned to match observed hardware profiles:
* EC P-256 on QTEE averages ~65ms, RSA-2048 ~75ms, AES ~40ms.
* Sigma kept low (0.08) to match the tight clustering seen in real measurements.
*/
private fun sampleBaseCryptoDelay(algorithm: Int): Double {
val (mu, sigma) =
when (algorithm) {
Algorithm.EC -> ln(60.0) to 0.08
Algorithm.RSA -> ln(70.0) to 0.08
Algorithm.AES -> ln(35.0) to 0.10
else -> ln(40.0) to 0.10
}
return sampleLogNormal(mu, sigma)
}
private fun sampleLogNormal(mu: Double, sigma: Double): Double {
return exp(mu + sigma * rng.nextGaussian())
}
private fun sampleExponential(mean: Double): Double {
var u = rng.nextDouble()
while (u == 0.0) u = rng.nextDouble()
return -mean * ln(u)
}
}
+92
View File
@@ -1,3 +1,95 @@
## TEESimulator-RS v5.1: Interception Architecture Rewrite
Major release. 27 files changed, 2300 lines rewritten. The entire Kotlin interception layer has been rebuilt with a clean architecture, proper AIDL alignment, and significantly lower binder overhead.
### Interception Layer Rewrite
- KeyMintSecurityLevelInterceptor completely restructured: GeneratedKeyInfo now carries full KeyMintAttestation instead of nullable stub, eliminating scattered null checks across every operation path
- SoftwareOperation rewritten with sealed CryptoPrimitive interface separating Signer, Verifier, Encryptor, and Decryptor into isolated implementations with proper JCA algorithm mapping
- KeystoreErrorCode centralized object replaces scattered magic numbers for all KeyMint and Keystore2 error codes
- listEntries moved from pre-transact parameter caching to post-transact injection, eliminating a race condition where cached params could go stale
- deleteKey now handles both APP domain (by alias) and KEY_ID domain (by nspace) resolution paths correctly
- AuthorizeCreate and AndroidPermissionUtils removed, authorization logic consolidated into the operation dispatch path
- DeviceAttestationService removed, attestation routing simplified into the main interceptor
### Software Crypto Operations
- GCM nonce returned in CreateOperationResponse.parameters for encrypt operations, matching real KeyMint HAL behavior
- updateAad correctly throws INVALID_TAG on non-AEAD operations instead of silently succeeding
- Cipher algorithm mapping cleaned up: dropped CTR block mode and RSA_PKCS1_1_5_SIGN padding that caused JCA provider mismatches
- All crypto exceptions wrapped as ServiceSpecificException with correct KeyMint error codes instead of raw exceptions
### Attestation & Certificate Generation
- CertificateGenerator rewritten with clean Kotlin Pair return type instead of Android's util.Pair
- AttestationBuilder field ordering aligned with AOSP KeyDescription ASN.1 schema
- Unique ID computation follows KeyMint HAL spec: HMAC-SHA256(temporal_counter || AAID || reset_flag, HBK) truncated to 128 bits
- Patch level logging removed from hot path to reduce logcat noise on every attestation
### Configuration & Device Properties
- ConfigurationManager target package parsing refactored: mode/package extraction deduplicated across GENERATE/PATCH/AUTO branches
- system=prop forced boot/vendor override removed, now respects explicit per-component patch level configuration
- FileObserver delete handler simplified with direct file access instead of defensive null-checks
- AndroidDeviceUtils expanded with additional device property accessors for attestation fields
### Binder Performance
- Safe parcel reads at 6 deserialization sites, replacing force-unwrap NPE paths with early-return on null. A single NPE generates a full stack trace that blocks the binder thread for ~2ms
- teeResponses cache populated on generateKey/importKey post-transact, reducing getKeyEntry from 2+ binder round-trips to 1
- pingBinder liveness check removed from pre-transact failure path, eliminating a synchronous IPC call on every failed transaction
- Native transaction code filtering at C++ level, skipping JNI entirely for PING/INTERFACE/DUMP
### Dynamic SecurityLevel Binder Registration
- Intercepts getSecurityLevel replies to register hooks on every new BBinder instance keystore2 returns, not just the initial one from setup
- Identity hash deduplication prevents double-hooking when keystore2 returns the same binder across multiple calls
- Resolves apps that call getSecurityLevel independently and receive a different binder than the one registered at startup
### Build & Packaging
- Rust native build task integrated into Gradle with cargo-ndk for aarch64/armv7/x86/x86_64
- Module ZIP includes all 4 native libraries (libTEESimulator, libsupervisor, libcertgen, libinject)
- customize.sh extraction restored for supervisor daemon and native cert gen library
- TeeLatencySimulator added as standalone utility for log-normal hardware latency emulation
---
## TEESimulator-RS v5.0: AOSP Compliance Overhaul
Major release integrating 30+ AOSP compliance improvements from upstream PR #157 analysis, layered on top of our StrongBox hardening and native cert gen architecture.
### Attestation Extension Alignment
- 17 enforcement tags added to KeyMintAttestation (ACTIVE_DATETIME, ORIGINATION_EXPIRE, USAGE_EXPIRE, USAGE_COUNT_LIMIT, CALLER_NONCE, UNLOCKED_DEVICE_REQUIRED, INCLUDE_UNIQUE_ID, ROLLBACK_RESISTANCE, EARLY_BOOT_ONLY, ALLOW_WHILE_ON_BODY, TRUSTED_USER_PRESENCE_REQUIRED, TRUSTED_CONFIRMATION_REQUIRED, NO_AUTH_REQUIRED, MAX_USES_PER_BOOT, MAX_BOOT_LEVEL, MIN_MAC_LENGTH, RSA_OAEP_MGF_DIGEST)
- BLOCK_MODE encoded as SET OF INTEGER per AOSP attestation_record.h
- Version-guarded tags (RSA_OAEP_MGF_DIGEST >=100, ROLLBACK_RESISTANCE >=3, EARLY_BOOT_ONLY >=4)
- INCLUDE_UNIQUE_ID computed via HMAC-SHA256 per KeyMint HAL spec using device HBK
- AAID gated on attestation challenge presence
- Certificate validity defaults aligned with AOSP (epoch notBefore, 9999-12-31 notAfter)
### Binder Infrastructure
- Native transaction code filtering at C++ level, skipping JNI for non-intercepted codes
- getNumberOfEntries includes software-generated key count
- deleteKey resolves KEY_ID domain via generatedKeys lookup
- patchAuthorizations for OS/VENDOR/BOOT patch levels in authorization arrays
### Software Operation AOSP Conformance
- updateAad on non-AEAD operations returns INVALID_TAG (-76), matching AOSP operation.rs
- All crypto exceptions wrapped as ServiceSpecificException with correct KeyMint error codes
- GCM IV returned in CreateOperationResponse.parameters for encrypt operations
- SoftwareOperationBinder methods @Synchronized, matching AOSP Mutex per operation
- authorize_create enforcement: PURPOSE validation, algorithm-purpose compatibility, temporal constraints, CALLER_NONCE prohibition, WRAP_KEY rejection
### Security and Configuration
- SELinux permission checks via /proc/pid/attr/current
- Per-UID permission verification through IPackageManager.checkPermission
- Imported key tracking prevents stale attest-key overrides in getKeyEntry
- nspace consistency fix in attest-key override path
- TeeLatencySimulator with log-normal distribution matching real hardware profiles
- Device-unique HBK seed generated on install (32 bytes from /dev/random)
### Preserved from v4.8
- StrongBox op limits (4 concurrent max, TOO_MANY_OPERATIONS rejection)
- LRU operation pruning per security level
- Hardware keygen rate limiting (2/30s sliding window, 2 concurrent cap)
- Native Rust cert generation with BouncyCastle fallback
- Key persistence across reboots
---
## TEESimulator-RS v4.8.1: StrongBox Op Rejection Fix
- **StrongBox op limit gate fix**`trackAndEnforceOpLimit` was only called in the `Domain.KEY_ID` not-found path, so software-generated keys (found via `Domain.APP`) bypassed `STRONGBOX_MAX_CONCURRENT_OPS=4` entirely. DuckDetector's concurrent signing handles test created 24+ operations that all succeeded via LRU pruning instead of being rejected with `TOO_MANY_OPERATIONS (-29)`. Now enforced for all StrongBox createOperation paths.
+7
View File
@@ -91,3 +91,10 @@ if [ ! -f "$CONFIG_DIR/target.txt" ]; then
ui_print "- Adding default target scope"
install_file "target.txt" "$CONFIG_DIR"
fi
rm -f "$CONFIG_DIR/tee_status.txt"
if [ ! -f "$CONFIG_DIR/hbk" ]; then
ui_print "- Generating device-unique hardware-bound key seed"
head -c 32 /dev/random > "$CONFIG_DIR/hbk"
fi
+79 -2
View File
@@ -33,6 +33,36 @@ pub fn build_attestation_extension(params: &CertGenParams) -> Result<Vec<u8>> {
fn build_software_enforced(params: &CertGenParams) -> Result<Vec<u8>> {
let mut fields: Vec<(u32, Vec<u8>)> = Vec::new();
// Tag 303: CALLER_NONCE — NULL (presence = true)
if params.caller_nonce {
fields.push((303, enc_null()));
}
// Tag 400: ACTIVE_DATETIME — INTEGER (milliseconds)
if params.active_datetime >= 0 {
fields.push((400, enc_integer(params.active_datetime)));
}
// Tag 401: ORIGINATION_EXPIRE_DATETIME — INTEGER (milliseconds)
if params.origination_expire_datetime >= 0 {
fields.push((401, enc_integer(params.origination_expire_datetime)));
}
// Tag 402: USAGE_EXPIRE_DATETIME — INTEGER (milliseconds)
if params.usage_expire_datetime >= 0 {
fields.push((402, enc_integer(params.usage_expire_datetime)));
}
// Tag 405: USAGE_COUNT_LIMIT — INTEGER
if params.usage_count_limit >= 0 {
fields.push((405, enc_integer(params.usage_count_limit as i64)));
}
// Tag 509: UNLOCKED_DEVICE_REQUIRED — NULL
if params.unlocked_device_required {
fields.push((509, enc_null()));
}
// Tag 701: CREATION_DATETIME — INTEGER (milliseconds)
fields.push((701, enc_integer(params.creation_datetime)));
@@ -77,8 +107,10 @@ fn build_tee_enforced(params: &CertGenParams) -> Result<Vec<u8>> {
fields.push((10, enc_integer(curve as i32 as i64)));
}
// Tag 503: NO_AUTH_REQUIRED — NULL (presence = true)
fields.push((503, enc_null()));
// Tag 503: NO_AUTH_REQUIRED — NULL (conditional)
if params.no_auth_required {
fields.push((503, enc_null()));
}
// Tag 702: ORIGIN — INTEGER 0 (GENERATED)
fields.push((702, enc_integer(0)));
@@ -519,6 +551,44 @@ mod tests {
assert_eq!(tags, sorted, "AuthorizationList fields must be sorted by tag number");
}
#[test]
fn test_enforcement_tags_in_software_enforced() {
let mut params = make_test_params();
params.usage_count_limit = 3;
params.unlocked_device_required = true;
params.caller_nonce = true;
params.active_datetime = 1709913600000;
let sw = build_software_enforced(&params).unwrap();
let inner = skip_tlv_header(&sw);
let tags = extract_tag_numbers(inner);
assert!(tags.contains(&303), "CALLER_NONCE (303) must be in softwareEnforced");
assert!(tags.contains(&400), "ACTIVE_DATETIME (400) must be in softwareEnforced");
assert!(tags.contains(&405), "USAGE_COUNT_LIMIT (405) must be in softwareEnforced");
assert!(tags.contains(&509), "UNLOCKED_DEVICE_REQUIRED (509) must be in softwareEnforced");
}
#[test]
fn test_no_auth_required_conditional() {
let mut params = make_test_params();
params.no_auth_required = false;
let tee = build_tee_enforced(&params).unwrap();
let inner = skip_tlv_header(&tee);
let tags = extract_tag_numbers(inner);
assert!(!tags.contains(&503), "NO_AUTH_REQUIRED (503) must be absent when false");
}
#[test]
fn test_enforcement_tags_omitted_when_unset() {
let params = make_test_params();
let sw = build_software_enforced(&params).unwrap();
let inner = skip_tlv_header(&sw);
let tags = extract_tag_numbers(inner);
assert!(!tags.contains(&303), "CALLER_NONCE should be absent when false");
assert!(!tags.contains(&400), "ACTIVE_DATETIME should be absent when -1");
assert!(!tags.contains(&405), "USAGE_COUNT_LIMIT should be absent when -1");
assert!(!tags.contains(&509), "UNLOCKED_DEVICE_REQUIRED should be absent when false");
}
#[test]
fn test_full_extension_roundtrip() {
let params = make_test_params();
@@ -568,6 +638,13 @@ mod tests {
id_manufacturer: None,
id_model: None,
id_second_imei: None,
active_datetime: -1,
origination_expire_datetime: -1,
usage_expire_datetime: -1,
usage_count_limit: -1,
caller_nonce: false,
unlocked_device_required: false,
no_auth_required: true,
}
}
+19
View File
@@ -199,6 +199,14 @@ fn extract_config(env: &mut JNIEnv, config: &JObject) -> Result<CertGenParams> {
let id_model = get_nullable_byte_array(env, config, "idModel")?;
let id_second_imei = get_nullable_byte_array(env, config, "idSecondImei")?;
let active_datetime = get_long(env, config, "activeDatetime")?;
let origination_expire_datetime = get_long(env, config, "originationExpireDatetime")?;
let usage_expire_datetime = get_long(env, config, "usageExpireDatetime")?;
let usage_count_limit = get_int(env, config, "usageCountLimit")?;
let caller_nonce = get_boolean(env, config, "callerNonce")?;
let unlocked_device_required = get_boolean(env, config, "unlockedDeviceRequired")?;
let no_auth_required = get_boolean(env, config, "noAuthRequired")?;
Ok(CertGenParams {
algorithm: Algorithm::try_from(algorithm)?,
key_size: key_size as u32,
@@ -238,6 +246,13 @@ fn extract_config(env: &mut JNIEnv, config: &JObject) -> Result<CertGenParams> {
id_manufacturer,
id_model,
id_second_imei,
active_datetime,
origination_expire_datetime,
usage_expire_datetime,
usage_count_limit,
caller_nonce,
unlocked_device_required,
no_auth_required,
})
}
@@ -253,6 +268,10 @@ fn get_long(env: &mut JNIEnv, obj: &JObject, name: &str) -> Result<i64> {
Ok(env.get_field(obj, name, "J")?.j()?)
}
fn get_boolean(env: &mut JNIEnv, obj: &JObject, name: &str) -> Result<bool> {
Ok(env.get_field(obj, name, "Z")?.z()?)
}
fn get_byte_array(env: &mut JNIEnv, obj: &JObject, name: &'static str) -> Result<Vec<u8>> {
let field = env.get_field(obj, name, "[B")?.l()?;
if field.is_null() {
+8 -29
View File
@@ -42,35 +42,6 @@ impl TryFrom<i32> for EcCurve {
}
}
#[derive(Debug, Clone, Copy, PartialEq, Eq)]
#[repr(i32)]
pub enum KeyPurpose {
Encrypt = 0,
Decrypt = 1,
Sign = 2,
Verify = 3,
WrapKey = 5,
AgreeKey = 6,
AttestKey = 7,
}
#[derive(Debug, Clone, Copy, PartialEq, Eq)]
#[repr(i32)]
pub enum SecurityLevel {
Software = 0,
TrustedEnvironment = 1,
StrongBox = 2,
}
#[derive(Debug, Clone, Copy, PartialEq, Eq)]
#[repr(i32)]
pub enum VerifiedBootState {
Verified = 0,
SelfSigned = 1,
Unverified = 2,
Failed = 3,
}
pub struct CertGenParams {
pub algorithm: Algorithm,
pub key_size: u32,
@@ -114,6 +85,14 @@ pub struct CertGenParams {
pub id_manufacturer: Option<Vec<u8>>,
pub id_model: Option<Vec<u8>>,
pub id_second_imei: Option<Vec<u8>>,
pub active_datetime: i64,
pub origination_expire_datetime: i64,
pub usage_expire_datetime: i64,
pub usage_count_limit: i32,
pub caller_nonce: bool,
pub unlocked_device_required: bool,
pub no_auth_required: bool,
}
pub struct GeneratedKeyPair {
@@ -13,6 +13,8 @@ public interface IPackageManager {
ParceledListSlice<PackageInfo> getInstalledPackages(long flags, int userId);
int checkPermission(String permName, String pkgName, int userId);
class Stub {
public static IPackageManager asInterface(IBinder binder) {
throw new UnsupportedOperationException("STUB!");
@@ -0,0 +1,8 @@
package android.hardware.security.keymint;
public @interface HardwareAuthenticatorType {
int NONE = 0;
int PASSWORD = 1;
int FINGERPRINT = 2;
int ANY = -1;
}
@@ -0,0 +1,9 @@
package android.os;
/** Stub for android.os.SELinux. */
public class SELinux {
public static boolean checkSELinuxAccess(
String scon, String tcon, String tclass, String perm) {
throw new UnsupportedOperationException("STUB!");
}
}
@@ -17,6 +17,10 @@ public class ServiceManager {
throw new UnsupportedOperationException("STUB!");
}
public static boolean isDeclared(String name) {
throw new UnsupportedOperationException("STUB!");
}
public static String[] listServices() {
throw new UnsupportedOperationException("STUB!");
}
@@ -1,14 +1,21 @@
package android.os;
/**
* Stub for android.os.ServiceSpecificException.
*
* <p>Used by AIDL-generated binder stubs to report service-specific errors with numeric codes.
* The binder framework serializes this as EX_SERVICE_SPECIFIC on the wire, preserving the integer
* error code for the client.
*/
public class ServiceSpecificException extends RuntimeException {
public final int errorCode;
public ServiceSpecificException(int errorCode) {
this.errorCode = errorCode;
}
public ServiceSpecificException(int errorCode, String message) {
super(message);
this.errorCode = errorCode;
}
public ServiceSpecificException(int errorCode) {
this(errorCode, null);
}
}