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28 Commits

Author SHA1 Message Date
Skipper
6730534187 deps(server): version bump 2026-08-28 18:17:36 +02:00
Skipper
27925a67ad merge: custom db ids for entities 2026-08-26 13:01:44 +02:00
a0ac63f05c Merge pull request 'security: batch of fixes' (#95) from zeroized-bootstrap-token into main
Reviewed-on: #95
2026-08-26 13:01:44 +02:00
CleverWild
8dabec893e fix(user-agent): zombie sessions #74 2026-08-26 13:01:44 +02:00
Clippy Bot
3d4bba3584 test(client-auth): update metadata test to reflect frozen-metadata behavior 2026-08-26 13:01:44 +02:00
3ff0875c48 Merge pull request 'security(server): bind grant revocation state (revoked_at) to integrity hash' (#83) from security-hash-revoke_at into main
Reviewed-on: #83
2026-08-26 13:01:44 +02:00
Clippy Bot
7cc745182f Merge branch 'main' into zeroized-bootstrap-token 2026-08-26 13:01:44 +02:00
CleverWild
7de235f144 fix(smlang::statemachine): macro invocation requires inner types to be public 2026-08-26 13:01:44 +02:00
CleverWild
2b8acad415 fix: lints 2026-08-26 13:01:44 +02:00
Clippy Bot
95799e5da8 fix: lints 2026-08-26 13:01:44 +02:00
CleverWild
49e5f2c7f6 Merge branch 'main' into security-hash-revoke_at 2026-08-26 13:01:44 +02:00
CleverWild
00426e597d fix!: protect evm_wallet integrity and bind key ciphertext to wallet address
Three independent failures allowed an offline attacker with DB write access
to sign transactions using a different wallet's private key:
1. evm_wallet had no HMAC envelope — aead_encrypted_id could be swapped silently.
2. AEAD used a static tag as AAD — any valid ciphertext decrypted as any wallet key.
3. No post-decryption check that the derived address matched the requested wallet.

Fix: sign_entity covers (address, aead_encrypted_id) in a single transaction;
CreateNew/Decrypt take caller-provided AAD (wallet address bytes); after decryption
signer.address() is verified against the requested wallet address.
2026-08-26 13:01:44 +02:00
CleverWild
10486e6a32 fix(client-auth): freeze client metadata after initial operator approval 2026-08-26 13:01:44 +02:00
CleverWild
55b5b9361f fix(operator): bind sign-transaction to operator-approved client set 2026-08-26 13:01:44 +02:00
CleverWild
5824df16b1 fix(integrity): return AttestationStatus::Unavailable for key version mismatch 2026-08-26 13:01:44 +02:00
CleverWild
39d5dfd2e8 fix(wallet): delete access entries by entry ID instead of wallet ID 2026-08-26 13:01:44 +02:00
CleverWild
add058f1d5 security(bootstrap): use SafeCell for token storage instead of zeroize 2026-08-26 13:01:44 +02:00
CleverWild
5ecf3508d6 fix(UA): signing endpoint accepts arbitrary client_id 2026-08-26 13:01:44 +02:00
CleverWild
2b53023234 security: feat unseal and bootstrap handshake brute-force protection 2026-08-26 13:01:44 +02:00
CleverWild
850e2b8669 fix(bootstrap): token persists on disk with weak file permissions #59 2026-08-26 13:01:44 +02:00
CleverWild
4e11c27129 security(server): use SysRng directly for bootstrap token generation
Replace make_rng()/StdRng with UnwrapErr(SysRng) to eliminate the PRNG
intermediate layer and make OS entropy derivation explicit and unambiguous.

Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>
2026-08-26 13:01:44 +02:00
CleverWild
84e1ef7c85 security(memory): zeroization of bootstrap token 2026-08-26 13:01:44 +02:00
CleverWild
7e23b3b2ec security(evm): remove client-controlled wallet_access_id from grant revocation 2026-08-26 13:00:40 +02:00
CleverWild
bb28d311a1 feat(evm): add wallet_access_id to grant deletion requests and revocation logic 2026-08-26 13:00:40 +02:00
CleverWild
3302bb8995 refactor(evm): implement revoke_grant method for grant revocation 2026-08-26 13:00:40 +02:00
CleverWild
772936937b Merge branch 'security-hash-revoke_at' of ssh://git.markettakers.org:22222/MarketTakers/arbiter into security-hash-revoke_at 2026-08-26 13:00:40 +02:00
CleverWild
7a64bcd1bf revert(server): bind grant revocation state (revoked_at) to integrity hash 2026-08-26 13:00:40 +02:00
CleverWild
943d0ee72f security(server): bind grant revocation state (revoked_at) to integrity hash 2026-08-26 13:00:40 +02:00
80 changed files with 2694 additions and 6953 deletions

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@@ -0,0 +1,31 @@
Extension Discovery Cache
=========================
This folder is used by `package:extension_discovery` to cache lists of
packages that contains extensions for other packages.
DO NOT USE THIS FOLDER
----------------------
* Do not read (or rely) the contents of this folder.
* Do write to this folder.
If you're interested in the lists of extensions stored in this folder use the
API offered by package `extension_discovery` to get this information.
If this package doesn't work for your use-case, then don't try to read the
contents of this folder. It may change, and will not remain stable.
Use package `extension_discovery`
---------------------------------
If you want to access information from this folder.
Feel free to delete this folder
-------------------------------
Files in this folder act as a cache, and the cache is discarded if the files
are older than the modification time of `.dart_tool/package_config.json`.
Hence, it should never be necessary to clear this cache manually, if you find a
need to do please file a bug.

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@@ -0,0 +1 @@
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@@ -0,0 +1,230 @@
{
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"flutter_test"
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{
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"dependencies": [
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},
{
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"version": "0.0.0",
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"flutter",
"leak_tracker_flutter_testing",
"matcher",
"meta",
"path",
"stack_trace",
"stream_channel",
"test_api",
"vector_math"
]
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{
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"version": "1.0.8",
"dependencies": []
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{
"name": "flutter",
"version": "0.0.0",
"dependencies": [
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"collection",
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"meta",
"sky_engine",
"vector_math"
]
},
{
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"dependencies": []
},
{
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},
{
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{
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"version": "1.19.1",
"dependencies": []
},
{
"name": "leak_tracker_flutter_testing",
"version": "3.0.10",
"dependencies": [
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"leak_tracker",
"leak_tracker_testing",
"matcher",
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{
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1
app/.dart_tool/version Normal file
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@@ -0,0 +1 @@
3.38.9

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@@ -4,28 +4,25 @@ package arbiter.operator;
import "operator/auth.proto";
import "operator/evm.proto";
import "operator/governance.proto";
import "operator/sdk_client.proto";
import "operator/vault/vault.proto";
message OperatorRequest {
int32 id = 16;
oneof payload {
auth.Request auth = 1;
vault.Request vault = 2;
evm.Request evm = 3;
sdk_client.Request sdk_client = 4;
governance.Request governance = 5;
auth.Request auth = 1;
vault.Request vault = 2;
evm.Request evm = 3;
sdk_client.Request sdk_client = 4;
}
}
message OperatorResponse {
optional int32 id = 16;
oneof payload {
auth.Response auth = 1;
vault.Response vault = 2;
evm.Response evm = 3;
sdk_client.Response sdk_client = 4;
governance.Response governance = 5;
auth.Response auth = 1;
vault.Response vault = 2;
evm.Response evm = 3;
sdk_client.Response sdk_client = 4;
}
}

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@@ -1,131 +0,0 @@
syntax = "proto3";
package arbiter.operator.governance;
import "google/protobuf/empty.proto";
message Request {
oneof payload {
CreateProposalRequest create = 1;
CastVoteRequest vote = 2;
QueryPendingRequest query = 3;
}
}
message CreateProposalRequest {
oneof kind {
ApproveSdkClientPayload approve_sdk_client = 1;
GrantWalletAccessPayload grant_wallet_access = 2;
ReplaceOperatorPayload replace_operator = 3;
google.protobuf.Empty trigger_rekey = 4;
ApprovePersistentGrantPayload approve_persistent_grant = 5;
ApproveOneOffTransactionPayload approve_one_off_transaction = 6;
}
optional uint32 ttl_secs = 7;
}
message ReplaceOperatorPayload {
int32 old_operator_id = 1;
bytes new_pubkey = 2;
}
message ApproveSdkClientPayload {
int32 client_id = 1;
}
message GrantWalletAccessPayload {
int32 wallet_id = 1;
int32 client_id = 2;
}
message CastVoteRequest {
int32 proposal_id = 1;
bool approve = 2;
bytes signature = 3;
}
message QueryPendingRequest {}
message Response {
oneof payload {
CreateProposalResponse created = 1;
VoteResponse voted = 2;
QueryPendingResponse pending = 3;
}
}
message CreateProposalResponse {
int32 proposal_id = 1;
}
message VoteResponse {
VoteOutcome outcome = 1;
}
enum VoteOutcome {
VOTE_OUTCOME_UNSPECIFIED = 0;
VOTE_OUTCOME_PENDING = 1;
VOTE_OUTCOME_APPROVED = 2;
VOTE_OUTCOME_REJECTED = 3;
}
message ProposalSummary {
int32 id = 1;
string kind = 2;
int32 initiator_id = 3;
int64 expires_at = 4;
int64 approve_count = 5;
int64 reject_count = 6;
}
message QueryPendingResponse {
repeated ProposalSummary proposals = 1;
}
message TransactionRateLimitProto {
uint32 count = 1;
int64 window_secs = 2;
}
message VolumeLimitProto {
bytes max_volume = 1;
int64 window_secs = 2;
}
message EtherTransferSpecProto {
repeated bytes targets = 1;
VolumeLimitProto limit = 2;
}
message TokenTransferSpecProto {
bytes token_contract = 1;
optional bytes target = 2;
repeated VolumeLimitProto volume_limits = 3;
}
message ApproveOneOffTransactionPayload {
int32 client_id = 1;
bytes wallet_address = 2;
uint64 chain_id = 3;
uint64 nonce = 4;
uint64 gas_limit = 5;
bytes max_fee_per_gas = 6;
bytes max_priority_fee_per_gas = 7;
bytes to = 8;
bytes value = 9;
bytes input = 10;
}
message ApprovePersistentGrantPayload {
int32 wallet_access_id = 1;
uint64 chain_id = 2;
optional int64 valid_from_secs = 3;
optional int64 valid_until_secs = 4;
optional bytes max_gas_fee_per_gas = 5;
optional bytes max_priority_fee_per_gas = 6;
optional TransactionRateLimitProto rate_limit = 7;
oneof specific {
EtherTransferSpecProto ether_transfer = 8;
TokenTransferSpecProto token_transfer = 9;
}
}

View File

@@ -8,35 +8,15 @@ message BootstrapEncryptedKey {
bytes associated_data = 3;
}
message DeclareCommittee {
uint32 count = 1;
uint32 recovery_count = 2;
}
message ContributePassphrase {
bytes passphrase = 1;
}
message ContributeRecoveryPassphrase {
int32 recovery_operator_id = 1;
bytes passphrase = 2;
}
enum BootstrapResult {
BOOTSTRAP_RESULT_UNSPECIFIED = 0;
BOOTSTRAP_RESULT_SUCCESS = 1;
BOOTSTRAP_RESULT_ALREADY_BOOTSTRAPPED = 2;
BOOTSTRAP_RESULT_INVALID_KEY = 3;
BOOTSTRAP_RESULT_AWAITING_CONTRIBUTIONS = 4;
}
message Request {
oneof payload {
BootstrapEncryptedKey encrypted_key = 2;
DeclareCommittee declare_committee = 3;
ContributePassphrase contribute_passphrase = 4;
ContributeRecoveryPassphrase contribute_recovery_passphrase = 5;
}
BootstrapEncryptedKey encrypted_key = 2;
}
message Response {

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@@ -1,30 +0,0 @@
syntax = "proto3";
package arbiter.operator.vault.rekey;
message ContributePassphrase {
bytes passphrase = 1;
}
message ContributeRecoveryPassphrase {
int32 recovery_operator_id = 1;
bytes passphrase = 2;
}
enum RekeyResult {
REKEY_RESULT_UNSPECIFIED = 0;
REKEY_RESULT_SUCCESS = 1;
REKEY_RESULT_AWAITING_CONTRIBUTIONS = 2;
REKEY_RESULT_NOT_IN_PROGRESS = 3;
}
message Request {
oneof payload {
ContributePassphrase contribute_passphrase = 1;
ContributeRecoveryPassphrase contribute_recovery_passphrase = 2;
}
}
message Response {
RekeyResult result = 1;
}

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@@ -15,29 +15,18 @@ message UnsealEncryptedKey {
bytes associated_data = 3;
}
message ContributePassphrase {
bytes passphrase = 1;
}
message ContributeRecoveryPassphrase {
int32 recovery_operator_id = 1;
bytes passphrase = 2;
}
enum UnsealResult {
UNSEAL_RESULT_UNSPECIFIED = 0;
UNSEAL_RESULT_SUCCESS = 1;
UNSEAL_RESULT_INVALID_KEY = 2;
UNSEAL_RESULT_UNBOOTSTRAPPED = 3;
UNSEAL_RESULT_AWAITING_CONTRIBUTIONS = 4;
UNSEAL_RESULT_LOCKED_OUT = 4;
}
message Request {
oneof payload {
UnsealStart start = 1;
UnsealEncryptedKey encrypted_key = 2;
ContributePassphrase contribute_passphrase = 3;
ContributeRecoveryPassphrase contribute_recovery_passphrase = 4;
UnsealStart start = 1;
UnsealEncryptedKey encrypted_key = 2;
}
}

View File

@@ -5,23 +5,20 @@ package arbiter.operator.vault;
import "google/protobuf/empty.proto";
import "shared/vault.proto";
import "operator/vault/bootstrap.proto";
import "operator/vault/rekey.proto";
import "operator/vault/unseal.proto";
message Request {
oneof payload {
google.protobuf.Empty query_state = 1;
unseal.Request unseal = 2;
bootstrap.Request bootstrap = 3;
rekey.Request rekey = 4;
unseal.Request unseal = 2;
bootstrap.Request bootstrap = 3;
}
}
message Response {
oneof payload {
arbiter.shared.VaultState state = 1;
unseal.Response unseal = 2;
bootstrap.Response bootstrap = 3;
rekey.Response rekey = 4;
arbiter.shared.VaultState state = 1;
unseal.Response unseal = 2;
bootstrap.Response bootstrap = 3;
}
}

View File

@@ -5,8 +5,7 @@ package arbiter.shared;
enum VaultState {
VAULT_STATE_UNSPECIFIED = 0;
VAULT_STATE_UNBOOTSTRAPPED = 1;
VAULT_STATE_BOOSTRAPPING = 2;
VAULT_STATE_SEALED = 3;
VAULT_STATE_UNSEALED = 4;
VAULT_STATE_ERROR = 5;
VAULT_STATE_SEALED = 2;
VAULT_STATE_UNSEALED = 3;
VAULT_STATE_ERROR = 4;
}

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server/Cargo.lock generated

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@@ -6,34 +6,34 @@ resolver = "3"
[workspace.dependencies]
alloy = "2.0.4"
async-trait = "0.1.89"
base64 = "0.22.1"
chrono = { version = "0.4.44", features = ["serde"] }
futures = "0.3.32"
alloy = "2.4.1"
async-trait = "0.1.92"
base64 = "0.23.1"
chrono = { version = "0.4.45", features = ["serde"] }
futures = "0.3.34"
k256 = { version = "0.13.4", features = ["ecdsa", "pkcs8"] }
kameo = {git = "https://github.com/hdbg/kameo.git", rev = "17af90e3"}
kameo_actors = {git = "https://github.com/hdbg/kameo.git", rev = "17af90e3"}
kameo = {git = "https://github.com/hdbg/kameo.git", rev = "805b417"}
kameo_actors = {git = "https://github.com/hdbg/kameo.git", rev = "805b417"}
hmac = "0.13.0"
miette = { version = "7.6.0", features = ["fancy", "serde"] }
ml-dsa = { version = "0.1.0-rc.9", features = ["zeroize"] }
ml-dsa = { version = "0.1.1", features = ["zeroize"] }
mutants = "0.0.4"
prost = "0.14.3"
prost-types = { version = "0.14.3", features = ["chrono"] }
rand = "0.10.1"
rcgen = { version = "0.14.7", features = [ "aws_lc_rs", "pem", "x509-parser", "zeroize" ], default-features = false }
prost = "0.14.4"
prost-types = { version = "0.14.4", features = ["chrono"] }
rand = "0.10.2"
rand_core = "0.10.1"
rcgen = { version = "0.14.9", features = [ "aws_lc_rs", "pem", "x509-parser", "zeroize" ], default-features = false }
rstest = "0.26.1"
rustls = { version = "0.23.40", features = ["aws-lc-rs", "logging", "prefer-post-quantum", "std"], default-features = false }
rustls-pki-types = "1.14.1"
rustls = { version = "0.23.43", features = ["aws-lc-rs", "logging", "prefer-post-quantum", "std"], default-features = false }
rustls-pki-types = "1.15.1"
sha2 = "0.11"
smlang = "0.8.0"
strum = { version = "0.28.0", features = ["derive"] }
thiserror = "2.0.18"
tokio = { version = "1.52.1", features = ["full"] }
tokio-stream = { version = "0.1.18", features = ["full"] }
tonic = { version = "0.14.5", features = [ "deflate", "gzip", "tls-connect-info", "zstd" ] }
thiserror = "2.0.20"
tokio = { version = "1.53.1", features = ["full"] }
tokio-stream = { version = "0.1.19", features = ["full"] }
tonic = { version = "0.14.6", features = [ "deflate", "gzip", "tls-connect-info", "zstd" ] }
tracing = "0.1.44"
x25519-dalek = { version = "2.0.1", features = ["getrandom"] }
x25519-dalek = { version = "3.0.0", features = ["getrandom"] }
[workspace.lints.rust]
missing_unsafe_on_extern = "deny"
@@ -77,6 +77,7 @@ needless_pass_by_ref_mut = "allow"
pub_underscore_fields = "allow"
redundant_pub_crate = "allow"
uninhabited_references = "allow" # safe with unsafe_code = "forbid" and standard uninhabited pattern (match *self {})
too-many-lines = "allow" # this is a very common pattern in server code, and it's not always possible to break it down into smaller modules without hurting readability
# restriction lints
alloc_instead_of_core = "warn"
@@ -107,6 +108,7 @@ indexing_slicing = "warn"
infinite_loop = "warn"
inline_asm_x86_att_syntax = "warn"
inline_asm_x86_intel_syntax = "warn"
integer_division = "warn"
large_include_file = "warn"
lossy_float_literal = "warn"
map_with_unused_argument_over_ranges = "warn"
@@ -168,4 +170,3 @@ nursery = { level = "warn", priority = -1 }
pedantic = { level = "warn", priority = -1 }
type_repetition_in_bounds = "allow" # sometimes, it's better for readability this way
unused_async_trait_impl = "allow"

View File

@@ -26,5 +26,3 @@ trait-assoc-item-kinds-order = [
"type",
"fn",
] # community tested standard
too-many-lines-threshold = 150

View File

@@ -20,8 +20,8 @@ tonic.features = ["tls-aws-lc"]
tokio.workspace = true
tokio-stream.workspace = true
thiserror.workspace = true
http = "1.4.0"
rustls-webpki = { version = "0.103.13", features = ["aws-lc-rs"] }
http = "1.5.0"
rustls-webpki = { version = "0.103.15", features = ["aws-lc-rs"] }
async-trait.workspace = true
chrono.workspace = true

View File

@@ -2,7 +2,7 @@ use crate::{
storage::StorageError,
transport::{ClientTransport, next_request_id},
};
use arbiter_crypto::authn::{self, SigningContext, SigningKey};
use arbiter_crypto::authn::{self, CLIENT_CONTEXT, SigningKey};
use arbiter_proto::{
ClientMetadata,
proto::{
@@ -100,7 +100,7 @@ async fn send_auth_challenge_solution(
key: &SigningKey,
challenge: AuthChallenge,
) -> Result<(), AuthError> {
let timestamp = DateTime::from_timestamp_nanos(challenge.timestamp_nanos as i64);
let timestamp = DateTime::from_timestamp_nanos(challenge.timestamp_nanos.cast_signed());
let challenge = authn::AuthChallenge {
nonce: *challenge
.random
@@ -110,7 +110,7 @@ async fn send_auth_challenge_solution(
};
let challenge_payload: Vec<u8> = challenge.format();
let signature = key
.sign_message(&challenge_payload, SigningContext::Client)
.sign_message(&challenge_payload, CLIENT_CONTEXT)
.map_err(|_| AuthError::UnexpectedAuthResponse)?
.to_bytes();

View File

@@ -6,11 +6,10 @@ edition = "2024"
[dependencies]
ml-dsa = {workspace = true, optional = true }
rand = {workspace = true, optional = true}
memsafe = {version = "0.4.0", optional = true}
strum = { workspace = true, optional = true }
memsafe = {version = "1.0.2", optional = true}
hmac.workspace = true
alloy.workspace = true
x-wing = { version = "0.1.0-rc.0", features = ["zeroize"] }
x-wing = { version = "0.1.0", features = ["zeroize"] }
chrono.workspace = true
thiserror.workspace = true
@@ -19,7 +18,7 @@ workspace = true
[features]
default = ["authn", "safecell"]
authn = ["dep:ml-dsa", "dep:rand", "dep:strum"]
authn = ["dep:ml-dsa", "dep:rand"]
safecell = ["dep:memsafe"]
[lib]

View File

@@ -1,29 +1,13 @@
use chrono::{DateTime, Utc};
use hmac::digest::Digest;
use ml_dsa::{
EncodedVerifyingKey, Error, KeyGen, MlDsa87, Seed, Signature as MlDsaSignature,
SigningKey as MlDsaSigningKey, VerifyingKey as MlDsaVerifyingKey, signature::Keypair as _,
EncodedVerifyingKey, Error, ExpandedSigningKey, Generate, MlDsa87, Seed,
Signature as MlDsaSignature, SigningKey as MlDsaSigningKey, VerifyingKey as MlDsaVerifyingKey,
};
use rand::RngExt;
use strum::IntoStaticStr;
/// Domain separation tag mixed into every ML-DSA signature.
#[derive(Debug, Clone, Copy, PartialEq, Eq, IntoStaticStr)]
pub enum SigningContext {
#[strum(serialize = "arbiter_client")]
Client,
#[strum(serialize = "arbiter_operator")]
Operator,
#[strum(serialize = "arbiter_governance_vote")]
GovernanceVote,
}
impl SigningContext {
#[must_use]
pub fn as_bytes(self) -> &'static [u8] {
<&'static str>::from(self).as_bytes()
}
}
pub static CLIENT_CONTEXT: &[u8] = b"arbiter_client";
pub static OPERATOR_CONTEXT: &[u8] = b"arbiter_operator";
const NONCE_SIZE: usize = 32;
@@ -93,7 +77,10 @@ impl crate::hashing::Hashable for PublicKey {
pub struct Signature(Box<MlDsaSignature<KeyParams>>);
#[derive(Debug)]
pub struct SigningKey(Box<MlDsaSigningKey<KeyParams>>);
pub struct SigningKey {
key: Box<ExpandedSigningKey<KeyParams>>,
seed: Seed,
}
impl PublicKey {
pub fn to_bytes(&self) -> Vec<u8> {
@@ -101,26 +88,10 @@ impl PublicKey {
}
#[must_use]
pub fn verify(
&self,
challenge: &AuthChallenge,
context: SigningContext,
signature: &Signature,
) -> bool {
pub fn verify(&self, challenge: &AuthChallenge, context: &[u8], signature: &Signature) -> bool {
let challenge = challenge.format();
self.0
.verify_with_context(&challenge, context.as_bytes(), &signature.0)
}
#[must_use]
pub fn verify_message(
&self,
message: &[u8],
context: SigningContext,
signature: &Signature,
) -> bool {
self.0
.verify_with_context(message, context.as_bytes(), &signature.0)
.verify_with_context(&challenge, context, &signature.0)
}
}
@@ -132,36 +103,39 @@ impl Signature {
impl SigningKey {
pub fn generate() -> Self {
Self(Box::new(KeyParams::key_gen(&mut rand::rng())))
let seed = MlDsaSigningKey::<KeyParams>::generate_from_rng(&mut rand::rng()).to_seed();
Self {
key: Box::new(ExpandedSigningKey::from_seed(&seed)),
seed,
}
}
pub fn from_seed(seed: [u8; 32]) -> Self {
Self(Box::new(KeyParams::from_seed(&Seed::from(seed))))
let seed = Seed::from(seed);
Self {
key: Box::new(ExpandedSigningKey::from_seed(&seed)),
seed,
}
}
pub fn to_seed(&self) -> [u8; 32] {
self.0.to_seed().into()
self.seed.into()
}
pub fn public_key(&self) -> PublicKey {
self.0.verifying_key().into()
self.key.verifying_key().into()
}
pub fn sign_message(
&self,
message: &[u8],
context: SigningContext,
) -> Result<Signature, Error> {
self.0
.signing_key()
.sign_deterministic(message, context.as_bytes())
pub fn sign_message(&self, message: &[u8], context: &[u8]) -> Result<Signature, Error> {
self.key
.sign_deterministic(message, context)
.map(Into::into)
}
pub fn sign_challenge(
&self,
challenge: &AuthChallenge,
context: SigningContext,
context: &[u8],
) -> Result<Signature, Error> {
let challenge = challenge.format();
@@ -181,12 +155,6 @@ impl From<MlDsaSignature<KeyParams>> for Signature {
}
}
impl From<MlDsaSigningKey<KeyParams>> for SigningKey {
fn from(value: MlDsaSigningKey<KeyParams>) -> Self {
Self(Box::new(value))
}
}
impl TryFrom<Vec<u8>> for PublicKey {
type Error = ();
@@ -224,15 +192,15 @@ impl TryFrom<&'_ [u8]> for Signature {
#[cfg(test)]
mod tests {
use ml_dsa::{KeyGen, MlDsa87, signature::Keypair as _};
use ml_dsa::{Generate as _, MlDsa87, SigningKey as RealSigningKey, signature::Keypair as _};
use crate::authn::AuthChallenge;
use super::{PublicKey, Signature, SigningContext, SigningKey};
use super::{CLIENT_CONTEXT, OPERATOR_CONTEXT, PublicKey, Signature, SigningKey};
#[test]
fn public_key_round_trip_decodes() {
let key = MlDsa87::key_gen(&mut rand::rng());
let key = RealSigningKey::<MlDsa87>::generate();
let encoded = PublicKey::from(key.verifying_key()).to_bytes();
let decoded = PublicKey::try_from(encoded.as_slice()).expect("public key should decode");
@@ -244,7 +212,7 @@ mod tests {
fn signature_round_trip_decodes() {
let key = SigningKey::generate();
let signature = key
.sign_message(b"challenge", SigningContext::Client)
.sign_message(b"challenge", CLIENT_CONTEXT)
.expect("signature should be created");
let decoded =
@@ -259,11 +227,11 @@ mod tests {
let public_key = key.public_key();
let challenge = AuthChallenge::generate(&mut rand::rng());
let signature = key
.sign_challenge(&challenge, SigningContext::Client)
.sign_challenge(&challenge, CLIENT_CONTEXT)
.expect("signature should be created");
assert!(public_key.verify(&challenge, SigningContext::Client, &signature));
assert!(!public_key.verify(&challenge, SigningContext::Operator, &signature));
assert!(public_key.verify(&challenge, CLIENT_CONTEXT, &signature));
assert!(!public_key.verify(&challenge, OPERATOR_CONTEXT, &signature));
}
#[test]
@@ -276,13 +244,13 @@ mod tests {
let challenge = AuthChallenge::generate(&mut rand::rng());
let signature = restored
.sign_challenge(&challenge, SigningContext::Client)
.sign_challenge(&challenge, CLIENT_CONTEXT)
.expect("signature should be created");
assert!(
restored
.public_key()
.verify(&challenge, SigningContext::Client, &signature)
.verify(&challenge, CLIENT_CONTEXT, &signature)
);
}
}

View File

@@ -22,7 +22,7 @@ pub trait SafeCellHandle<T> {
fn read(&mut self) -> Self::CellRead<'_>;
fn write(&mut self) -> Self::CellWrite<'_>;
fn new_inline_default<F>(f: F) -> Self
fn new_inline<F>(f: F) -> Self
where
Self: Sized,
T: Default,
@@ -36,14 +36,6 @@ pub trait SafeCellHandle<T> {
cell
}
fn new_inline<F>(f: Box<F>) -> Self
where
Self: Sized,
F: for<'a> FnOnce() -> T,
{
Self::new(f())
}
#[inline(always)]
fn read_inline<F, R>(&mut self, f: F) -> R
where

View File

@@ -10,7 +10,7 @@ doctest = false
[dependencies]
proc-macro2 = "1.0"
quote = "1.0"
syn = { version = "2.0", features = ["derive", "fold", "full", "visit-mut"] }
syn = { version = "3.0", features = ["derive", "fold", "full", "visit-mut"] }
[dev-dependencies]
arbiter-crypto = { path = "../arbiter-crypto" }

View File

@@ -9,7 +9,7 @@ license = "Apache-2.0"
tonic.workspace = true
tokio.workspace = true
futures.workspace = true
tonic-prost = "0.14.5"
tonic-prost = "0.14.6"
prost.workspace = true
kameo.workspace = true
url = "2.5.8"
@@ -22,7 +22,7 @@ async-trait.workspace = true
tokio-stream.workspace = true
[build-dependencies]
tonic-prost-build = "0.14.5"
tonic-prost-build = "0.14.6"
[dev-dependencies]
rstest.workspace = true

View File

@@ -23,10 +23,6 @@ pub mod proto {
tonic::include_proto!("arbiter.operator.evm");
}
pub mod governance {
tonic::include_proto!("arbiter.operator.governance");
}
pub mod sdk_client {
tonic::include_proto!("arbiter.operator.sdk_client");
}
@@ -38,10 +34,6 @@ pub mod proto {
tonic::include_proto!("arbiter.operator.vault.bootstrap");
}
pub mod rekey {
tonic::include_proto!("arbiter.operator.vault.rekey");
}
pub mod unseal {
tonic::include_proto!("arbiter.operator.vault.unseal");
}

View File

@@ -9,8 +9,14 @@ license = "Apache-2.0"
workspace = true
[dependencies]
diesel = { version = "2.3.9", features = ["chrono", "returning_clauses_for_sqlite_3_35", "serde_json", "time", "uuid"] }
diesel-async = { version = "0.9.0", features = [
diesel = { version = "2.3.12", features = [
"chrono",
"returning_clauses_for_sqlite_3_35",
"serde_json",
"time",
"uuid",
] }
diesel-async = { version = "0.9.2", features = [
"bb8",
"migrations",
"sqlite",
@@ -31,28 +37,26 @@ diesel_migrations = { version = "2.3.2", features = ["sqlite"] }
async-trait.workspace = true
tokio-stream.workspace = true
rand.workspace = true
rand_core.workspace = true
rcgen.workspace = true
chrono.workspace = true
kameo.workspace = true
chacha20poly1305 = { version = "0.10.1", features = ["std"] }
argon2 = { version = "0.5.3", features = ["zeroize"] }
chacha20poly1305 = { version = "0.11.0" }
argon2 = { version = "0.6.0", features = ["zeroize"] }
restructed = "0.2.2"
strum.workspace = true
pem = "3.0.6"
strum = { version = "0.28.0", features = ["derive"] }
pem = "4.0.0"
sha2.workspace = true
hmac.workspace = true
alloy.workspace = true
prost.workspace = true
prost-types.workspace = true
arbiter-tokens-registry.path = "../arbiter-tokens-registry"
anyhow = "1.0.102"
anyhow = "1.0.104"
mutants.workspace = true
subtle = "2.6.1"
x25519-dalek.workspace = true
k256.workspace = true
kameo_actors.workspace = true
vsss-rs = "5.4.0"
rand_core = "0.6"
[dev-dependencies]
proptest = "1.11.0"

View File

@@ -56,7 +56,6 @@ create table if not exists operator (
share blob not null,
share_nonce blob not null,
share_salt blob not null,
created_at integer not null default(unixepoch ('now')),
updated_at integer not null default(unixepoch ('now'))
@@ -216,156 +215,3 @@ create table if not exists integrity_envelope (
) STRICT;
create unique index if not exists uniq_integrity_envelope_entity on integrity_envelope (entity_kind, entity_id);
create table if not exists proposal (
id integer not null primary key,
kind text not null,
initiator_id integer not null references operator_identity(id) on delete restrict,
created_at integer not null default(unixepoch('now')),
expires_at integer not null,
status text not null default 'pending'
check (status in ('pending', 'approved', 'rejected'))
) STRICT;
-- Parameters of an approved-or-pending proposal
create table if not exists proposal_approve_sdk_client (
proposal_id integer not null primary key references proposal(id) on delete cascade,
client_id integer not null references program_client(id) on delete restrict
) STRICT;
create table if not exists proposal_grant_wallet_access (
proposal_id integer not null primary key references proposal(id) on delete cascade,
wallet_id integer not null references evm_wallet(id) on delete restrict,
client_id integer not null references program_client(id) on delete restrict
) STRICT;
create table if not exists proposal_replace_operator (
proposal_id integer not null primary key references proposal(id) on delete cascade,
old_operator_id integer not null references operator_identity(id) on delete restrict,
new_pubkey blob not null
) STRICT;
-- The transaction an operator votes to sign.
create table if not exists proposal_one_off_transaction (
proposal_id integer not null primary key references proposal(id) on delete cascade,
client_id integer not null references program_client(id) on delete restrict,
wallet_address blob not null check (length(wallet_address) = 20),
chain_id integer not null,
nonce integer not null,
gas_limit integer not null,
max_fee_per_gas blob not null check (length(max_fee_per_gas) = 16),
max_priority_fee_per_gas blob not null check (length(max_priority_fee_per_gas) = 16),
to_address blob not null check (length(to_address) = 20),
value blob not null check (length(value) = 32),
input blob not null
) STRICT;
-- The grant an operator votes to creat
create table if not exists proposal_persistent_grant (
proposal_id integer not null primary key references proposal (id) on delete cascade,
wallet_access_id integer not null references evm_wallet_access (id) on delete restrict,
chain_id integer not null, -- EIP-155 chain ID
valid_from integer, -- unix timestamp (seconds), null = no lower bound
valid_until integer, -- unix timestamp (seconds), null = no upper bound
max_gas_fee_per_gas blob check (max_gas_fee_per_gas is null or length(max_gas_fee_per_gas) = 32),
max_priority_fee_per_gas blob check (max_priority_fee_per_gas is null or length(max_priority_fee_per_gas) = 32),
rate_limit_count integer, -- max transactions in window, null = unlimited
rate_limit_window_secs integer, -- window duration in seconds, null = unlimited
check ((rate_limit_count is null) = (rate_limit_window_secs is null))
) STRICT;
-- `specific = ether_transfer`
create table if not exists proposal_persistent_grant_ether (
proposal_id integer not null primary key references proposal_persistent_grant (proposal_id) on delete cascade,
window_secs integer not null,
max_volume blob not null check (length(max_volume) = 32)
) STRICT;
create table if not exists proposal_persistent_grant_ether_target (
id integer not null primary key,
proposal_id integer not null references proposal_persistent_grant_ether (proposal_id) on delete cascade,
address blob not null check (length(address) = 20)
) STRICT;
create unique index if not exists uniq_proposal_ether_target on proposal_persistent_grant_ether_target (proposal_id, address);
-- `specific = token_transfer`
create table if not exists proposal_persistent_grant_token (
proposal_id integer not null primary key references proposal_persistent_grant (proposal_id) on delete cascade,
token_contract blob not null check (length(token_contract) = 20),
receiver blob check (receiver is null or length(receiver) = 20)
) STRICT;
create table if not exists proposal_persistent_grant_token_limit (
id integer not null primary key,
proposal_id integer not null references proposal_persistent_grant_token (proposal_id) on delete cascade,
window_secs integer not null,
max_volume blob not null check (length(max_volume) = 32)
) STRICT;
create table if not exists proposal_vote (
id integer not null primary key,
proposal_id integer not null references proposal(id) on delete cascade,
operator_id integer not null references operator_identity(id) on delete restrict,
approve integer not null check (approve in (0, 1)),
signature blob not null,
voted_at integer not null default(unixepoch('now')),
unique (proposal_id, operator_id)
) STRICT;
-- The signature the vault produced for an approved transaction, by component.
--
-- secp256k1 signatures have three common encodings (Electrum v=27/28, raw parity,
-- ERC-2098 compact); a single blob would not say which one it holds. `y_parity` is
-- the raw bit -- add 27 to rebuild the Electrum form `Signature::as_bytes` emits.
create table if not exists proposal_one_off_transaction_result (
proposal_id integer not null primary key
references proposal_one_off_transaction (proposal_id) on delete cascade,
r blob not null check (length(r) = 32),
s blob not null check (length(s) = 32),
y_parity integer not null check (y_parity in (0, 1)),
created_at integer not null default(unixepoch('now'))
) STRICT;
-- ===============================
-- Recovery Operators (§3.4/§3.5/§3.6)
-- ===============================
-- Encrypted Shamir shares for recovery operators (mirrors the `operator` table).
create table if not exists recovery_operator (
id integer not null primary key references recovery_operator_identity(id) on delete restrict,
share blob not null,
share_nonce blob not null,
share_salt blob not null,
created_at integer not null default(unixepoch('now')),
updated_at integer not null default(unixepoch('now'))
) STRICT;
create table if not exists recovery_operator_identity (
id integer not null primary key,
public_key blob not null unique,
created_at integer not null default(unixepoch('now')),
updated_at integer not null default(unixepoch('now'))
) STRICT;
-- One active wakeup request at a time. A request is pending when cancelled_at IS NULL
-- and requested_at + 14 days > now. It becomes active (recovery live) after 14 days.
create table if not exists recovery_wakeup_request (
id integer not null primary key,
requested_by integer not null references operator_identity(id) on delete restrict,
requested_at integer not null default(unixepoch('now')),
cancelled_by integer references operator_identity(id) on delete restrict,
cancelled_at integer
) STRICT;
-- Votes cast by recovery operators; only allowed on replace_operator proposals.
create table if not exists recovery_proposal_vote (
id integer not null primary key,
proposal_id integer not null references proposal(id) on delete cascade,
recovery_operator_id integer not null references recovery_operator_identity(id) on delete restrict,
approve integer not null check (approve in (0, 1)),
signature blob not null,
voted_at integer not null default(unixepoch('now')),
unique (proposal_id, recovery_operator_id)
) STRICT;

View File

@@ -1,29 +1,48 @@
use crate::db::{self, DatabasePool, schema};
use arbiter_crypto::safecell::{SafeCell, SafeCellHandle as _};
use arbiter_proto::{BOOTSTRAP_PATH, home_path};
use diesel::QueryDsl;
use diesel_async::RunQueryDsl;
use kameo::{Actor, messages};
use rand::{RngExt, distr::Alphanumeric, make_rng, rngs::StdRng};
use rand::{RngExt, distr::Alphanumeric, rngs::SysRng};
use rand_core::UnwrapErr;
use std::path::{Path, PathBuf};
use subtle::ConstantTimeEq as _;
use thiserror::Error;
use tracing::warn;
const TOKEN_LENGTH: usize = 64;
pub async fn generate_token() -> Result<String, std::io::Error> {
let rng: StdRng = make_rng();
async fn write_token_file(path: &Path, content: &str) -> Result<(), std::io::Error> {
tokio::fs::write(path, content.as_bytes()).await?;
let token = rng.sample_iter(Alphanumeric).take(TOKEN_LENGTH).fold(
String::default(),
|mut accum, char| {
accum += char.to_string().as_str();
accum
},
);
#[cfg(unix)]
{
use std::os::unix::fs::PermissionsExt as _;
tokio::fs::set_permissions(path, std::fs::Permissions::from_mode(0o600)).await?;
}
tokio::fs::write(home_path()?.join(BOOTSTRAP_PATH), token.as_str()).await?;
Ok(())
}
Ok(token)
async fn generate_token(path: &Path) -> Result<SafeCell<[u8; TOKEN_LENGTH]>, std::io::Error> {
let mut cell = SafeCell::new([0u8; TOKEN_LENGTH]);
{
let mut buf = cell.write();
for (slot, b) in buf
.iter_mut()
.zip(UnwrapErr(SysRng).sample_iter(Alphanumeric))
{
*slot = b;
}
}
let token_str = cell.read_inline(|buf| String::from_utf8_lossy(buf.as_ref()).into_owned());
write_token_file(path, &token_str).await?;
Ok(cell)
}
#[derive(Error, Debug)]
@@ -40,7 +59,8 @@ pub enum Error {
#[derive(Actor)]
pub struct Bootstrapper {
token: Option<String>,
token: Option<SafeCell<[u8; TOKEN_LENGTH]>>,
token_path: Option<PathBuf>,
}
impl Bootstrapper {
@@ -54,34 +74,37 @@ impl Bootstrapper {
.await?
};
let token = if row_count == 0 {
let token = generate_token().await?;
Some(token)
let (token, token_path) = if row_count == 0 {
let path = home_path()?.join(BOOTSTRAP_PATH);
let token = generate_token(&path).await?;
(Some(token), Some(path))
} else {
None
(None, None)
};
Ok(Self { token })
Ok(Self { token, token_path })
}
}
impl Bootstrapper {
fn is_correct_token(&mut self, token: &[u8]) -> bool {
self.token.as_mut().is_some_and(|expected| {
expected.read_inline(|exp| bool::from(exp.as_ref().ct_eq(token)))
})
}
}
#[messages]
impl Bootstrapper {
#[message]
pub fn is_correct_token(&self, token: String) -> bool {
self.token.as_ref().is_some_and(|expected| {
let expected_bytes = expected.as_bytes();
let token_bytes = token.as_bytes();
let choice = expected_bytes.ct_eq(token_bytes);
bool::from(choice)
})
}
#[message]
pub fn consume_token(&mut self, token: String) -> bool {
if self.is_correct_token(token) {
pub async fn consume_token(&mut self, token: Vec<u8>) -> bool {
if self.is_correct_token(&token) {
self.token = None;
if let Some(path) = self.token_path.take()
&& let Err(e) = tokio::fs::remove_file(&path).await
{
warn!(error = ?e, path = ?path, "Failed to delete bootstrap token file after consumption");
}
true
} else {
false
@@ -92,7 +115,9 @@ impl Bootstrapper {
#[messages]
impl Bootstrapper {
#[message]
pub fn get_token(&self) -> Option<String> {
self.token.clone()
pub fn get_token(&mut self) -> Option<String> {
self.token
.as_mut()
.map(|cell| cell.read_inline(|buf| String::from_utf8_lossy(buf.as_ref()).into_owned()))
}
}

View File

@@ -1,6 +1,6 @@
use crate::{
actors::vault::{CreateNew, Decrypt, Vault},
crypto::integrity,
crypto::integrity::{self, Integrable},
db::{
DatabaseError, DatabasePool,
models::{self, EvmWalletId},
@@ -25,14 +25,35 @@ use diesel::{
use diesel_async::RunQueryDsl;
use kameo::{Actor, actor::ActorRef, messages};
use rand::{SeedableRng, rng, rngs::StdRng};
use tracing::error;
pub use crate::evm::safe_signer;
/// Integrity guard that binds a wallet's encrypted key ID to its Ethereum address.
/// Both fields are included in the HMAC — swapping `aead_encrypted_id` in the DB
/// invalidates the envelope MAC, and the AEAD ciphertext is also bound to `address`
/// as AAD, so decryption fails too.
#[derive(arbiter_macros::Hashable)]
struct EvmWalletIntegrity {
aead_encrypted_id: i32,
address: Address,
}
impl Integrable for EvmWalletIntegrity {
const KIND: &'static str = "evm_wallet";
}
#[derive(Debug, thiserror::Error)]
pub enum SignTransactionError {
#[error("Wallet not found")]
WalletNotFound,
#[error("Decrypted key does not match requested wallet address")]
KeyAddressMismatch,
#[error("Internal signing error")]
Internal,
#[error("Database error: {0}")]
Database(#[from] DatabaseError),
@@ -64,6 +85,12 @@ pub enum Error {
Integrity(#[from] integrity::Error),
}
impl From<diesel::result::Error> for Error {
fn from(e: diesel::result::Error) -> Self {
Self::Database(DatabaseError::from(e))
}
}
#[derive(Actor)]
pub struct EvmActor {
pub vault: ActorRef<Vault>,
@@ -97,20 +124,39 @@ impl EvmActor {
let aead_id: i32 = self
.vault
.ask(CreateNew { plaintext })
.ask(CreateNew {
plaintext,
aad: address.as_slice().to_vec(),
})
.await
.map_err(|_| Error::VaultSend)?;
let mut conn = self.db.get().await.map_err(DatabaseError::from)?;
let wallet_id = insert_into(schema::evm_wallet::table)
.values(&models::NewEvmWallet {
address: address.as_slice().to_vec(),
aead_encrypted_id: aead_id,
let wallet_id = conn
.exclusive_transaction(async |conn| {
let wallet_id: i32 = insert_into(schema::evm_wallet::table)
.values(&models::NewEvmWallet {
address: address.as_slice().to_vec(),
aead_encrypted_id: aead_id,
})
.returning(schema::evm_wallet::id)
.get_result(conn)
.await
.map_err(DatabaseError::from)
.map_err(Error::Database)?;
integrity::sign_entity(
conn,
&self.vault,
&EvmWalletIntegrity { address, aead_encrypted_id: aead_id },
wallet_id,
)
.await
.map_err(Error::Integrity)?;
Ok::<i32, Error>(wallet_id)
})
.returning(schema::evm_wallet::id)
.get_result(&mut conn)
.await
.map_err(DatabaseError::from)?;
.await?;
Ok((wallet_id, address))
}
@@ -160,23 +206,14 @@ impl EvmActor {
}
#[message]
pub async fn operator_delete_grant(&mut self, grant_id: i32) -> Result<(), Error> {
let mut conn = self.db.get().await.map_err(DatabaseError::from)?;
let affected = diesel::update(schema::evm_basic_grant::table)
.filter(schema::evm_basic_grant::id.eq(grant_id))
.set(schema::evm_basic_grant::revoked_at.eq(models::SqliteTimestamp::now()))
.execute(&mut conn)
pub async fn useragent_delete_grant(
&mut self,
grant_id: i32,
) -> Result<(), Error> {
self.engine
.revoke_grant(grant_id)
.await
.map_err(DatabaseError::from)?;
if affected == 0 {
return Err(Error::Database(DatabaseError::from(
diesel::result::Error::NotFound,
)));
}
Ok(())
.map_err(Error::from)
}
#[message]
@@ -250,16 +287,51 @@ impl EvmActor {
.ok_or(SignTransactionError::WalletNotFound)?;
drop(conn);
let mut conn = self.db.get().await.map_err(DatabaseError::from)?;
let attestation = integrity::verify_entity(
&mut conn,
&self.vault,
&EvmWalletIntegrity {
address: wallet_address,
aead_encrypted_id: wallet.aead_encrypted_id,
},
wallet.id.to_raw(),
)
.await
.map_err(|e| {
error!(?e, ?wallet.id, "EVM wallet integrity check failed");
SignTransactionError::Internal
})?;
drop(conn);
if attestation != integrity::AttestationStatus::Attested {
error!(
?wallet.id,
"EVM wallet integrity unavailable; refusing to sign"
);
return Err(SignTransactionError::Internal);
}
let raw_key: SafeCell<Vec<u8>> = self
.vault
.ask(Decrypt {
aead_id: wallet.aead_encrypted_id,
aad: wallet.address.clone(),
})
.await
.map_err(|_| SignTransactionError::VaultSend)?;
let signer = safe_signer::SafeSigner::from_cell(raw_key)?;
if signer.address() != wallet_address {
error!(
expected = %wallet_address,
actual = %signer.address(),
"Decrypted private key address does not match requested wallet"
);
return Err(SignTransactionError::KeyAddressMismatch);
}
self.engine
.evaluate_transaction(wallet_access, transaction.clone(), RunKind::Execution)
.await?;

View File

@@ -11,7 +11,9 @@ use kameo::{
prelude::{ActorId, ActorRef, ActorStopReason, Context, WeakActorRef},
reply::ReplySender,
};
use std::ops::ControlFlow;
use std::{ops::ControlFlow, time::Duration};
const APPROVAL_TIMEOUT: Duration = Duration::from_secs(30);
pub struct Args {
pub client: ClientProfile,
@@ -64,6 +66,14 @@ impl Actor for ClientApprovalController {
.await;
}
let weak = actor_ref.downgrade();
tokio::spawn(async move {
tokio::time::sleep(APPROVAL_TIMEOUT).await;
if let Some(r) = weak.upgrade() {
let _ = r.tell(OnApprovalTimeout {}).await;
}
});
Ok(this)
}
@@ -104,4 +114,14 @@ impl ClientApprovalController {
ctx.stop();
}
}
/// Fired after `APPROVAL_TIMEOUT` elapses. Any operator that hasn't responded
/// by then is treated as a denial to prevent zombie sessions from blocking the flow.
#[message(ctx)]
pub fn on_approval_timeout(&mut self, ctx: &mut Context<Self, ()>) {
if self.pending > 0 {
self.send_reply(Ok(false));
ctx.stop();
}
}
}

View File

@@ -20,6 +20,8 @@ pub mod client_connect_approval;
pub struct FlowCoordinator {
pub clients: HashMap<ActorId, ActorRef<ClientSession>>,
/// Maps DB `client_id` → `ActorId` for fast connected-client lookup.
client_ids: HashMap<i32, ActorId>,
operator_registry: ActorRef<OperatorRegistry>,
}
@@ -27,6 +29,7 @@ impl FlowCoordinator {
pub fn new(operator_registry: ActorRef<OperatorRegistry>) -> Self {
Self {
clients: HashMap::default(),
client_ids: HashMap::default(),
operator_registry,
}
}
@@ -48,6 +51,7 @@ impl Actor for FlowCoordinator {
_: ActorStopReason,
) -> Result<ControlFlow<ActorStopReason>, Self::Error> {
if self.clients.remove(&id).is_some() {
self.client_ids.retain(|_, actor_id| *actor_id != id);
info!(
?id,
actor = "FlowCoordinator",
@@ -75,14 +79,28 @@ impl FlowCoordinator {
#[message(ctx)]
pub async fn register_client(
&mut self,
client_id: i32,
actor: ActorRef<ClientSession>,
ctx: &mut Context<Self, ()>,
) {
info!(id = %actor.id(), actor = "FlowCoordinator", event = "client.connected");
info!(id = %actor.id(), client_id, actor = "FlowCoordinator", event = "client.connected");
ctx.actor_ref().link(&actor).await;
self.client_ids.insert(client_id, actor.id());
self.clients.insert(actor.id(), actor);
}
#[message]
pub fn is_client_connected(&self, client_id: i32) -> bool {
self.client_ids.contains_key(&client_id)
}
/// Returns the DB `client_ids` of all currently connected SDK clients.
/// Used by operator sessions on startup to seed their approved-client set.
#[message]
pub fn get_connected_client_ids(&self) -> Vec<i32> {
self.client_ids.keys().copied().collect()
}
#[message(ctx)]
pub async fn request_client_approval(
&mut self,

View File

@@ -1,8 +1,7 @@
use crate::{
actors::{
bootstrap::Bootstrapper, evm::EvmActor, flow_coordinator::FlowCoordinator,
operator_registry::OperatorRegistry, proposal_manager::ProposalManager, vault::Vault,
vault_coordinator::VaultCoordinator,
operator_registry::OperatorRegistry, vault::Vault,
},
db,
};
@@ -15,9 +14,7 @@ pub mod bootstrap;
pub mod evm;
pub mod flow_coordinator;
pub mod operator_registry;
pub mod proposal_manager;
pub mod vault;
pub mod vault_coordinator;
#[derive(Error, Debug)]
pub enum SpawnError {
@@ -33,11 +30,9 @@ pub enum SpawnError {
pub struct GlobalActors {
pub vault: ActorRef<Vault>,
pub bootstrapper: ActorRef<Bootstrapper>,
pub vault_coordinator: ActorRef<VaultCoordinator>,
pub flow_coordinator: ActorRef<FlowCoordinator>,
pub operator_registry: ActorRef<OperatorRegistry>,
pub evm: ActorRef<EvmActor>,
pub proposal_manager: ActorRef<ProposalManager>,
pub events: ActorRef<MessageBus>,
}
@@ -50,27 +45,15 @@ impl GlobalActors {
let message_bus = Self::spawn_message_bus();
let key_holder = Vault::spawn(Vault::new(db.clone(), message_bus.clone()).await?);
let operator_registry = OperatorRegistry::spawn(OperatorRegistry::default());
let evm = EvmActor::spawn(EvmActor::new(key_holder.clone(), db.clone()));
let vault_coordinator = VaultCoordinator::spawn(VaultCoordinator::new(
db.clone(),
key_holder.clone(),
));
Ok(Self {
bootstrapper: Bootstrapper::spawn(Bootstrapper::new(&db).await?),
proposal_manager: ProposalManager::spawn(ProposalManager::new(
db,
key_holder.clone(),
evm.clone(),
vault_coordinator.clone(),
)),
evm: EvmActor::spawn(EvmActor::new(key_holder.clone(), db)),
vault: key_holder,
vault_coordinator,
flow_coordinator: FlowCoordinator::spawn(FlowCoordinator::new(
operator_registry.clone(),
)),
operator_registry,
events: message_bus,
evm,
})
}
}

View File

@@ -1,789 +0,0 @@
use crate::{
actors::{
evm::EvmActor,
vault::Vault,
vault_coordinator::{StartRekey, VaultCoordinator},
},
crypto::governance,
db::{
self,
functions::unixepoch,
models::{
NewProposal, NewProposalVote, NewRecoveryProposalVote, NewRecoveryWakeupRequest,
OperatorIdentityId, Proposal, ProposalId, ProposalStatus, RecoveryOperatorIdentityId,
SqliteTimestamp,
},
proposal::{ProposalKind, ProposalKindTag, one_off_transaction, persistent_grant},
schema,
},
};
use chrono::Utc;
use diesel::{
ExpressionMethods as _, QueryDsl,
dsl::{exists, select},
};
use diesel_async::{AsyncConnection as _, RunQueryDsl};
use kameo::{Actor, actor::ActorRef, messages};
use std::collections::HashMap;
use strum::IntoDiscriminant as _;
use tracing::{error, warn};
pub const DEFAULT_TTL_SECS: u32 = 7 * 24 * 60 * 60; // 7 days
pub const MAX_TTL_SECS: u32 = DEFAULT_TTL_SECS;
#[derive(Debug, Clone, PartialEq, Eq)]
pub enum VoteOutcome {
Pending,
Approved,
Rejected,
}
#[derive(Debug, thiserror::Error)]
pub enum Error {
#[error("Proposal not found")]
ProposalNotFound,
#[error("Proposal is not pending")]
ProposalNotPending,
#[error("Proposal has expired")]
ProposalExpired,
#[error("Requested TTL exceeds the maximum of {} seconds", MAX_TTL_SECS)]
TtlTooLong,
#[error("Operator already voted on this proposal")]
AlreadyVoted,
#[error("Invalid vote signature")]
InvalidSignature,
#[error("Operator not found")]
OperatorNotFound,
#[error("Database connection error: {0}")]
DatabaseConnection(#[from] db::PoolError),
#[error("Database query error: {0}")]
DatabaseQuery(#[from] diesel::result::Error),
#[error("Execution failed: {0}")]
ExecutionFailed(String),
#[error("Recovery operators are sleeping")]
RecoveryNotActive,
#[error("Recovery operators may only vote on operator replacement")]
NotAllowedForRecoveryOperator,
#[error("A recovery wake-up is already pending or active")]
WakeupAlreadyPending,
#[error("No active recovery wake-up to cancel")]
NoActiveWakeup,
}
#[derive(Debug)]
pub struct ProposalSummary {
pub id: ProposalId,
pub kind: ProposalKindTag,
pub initiator_id: OperatorIdentityId,
pub expires_at: SqliteTimestamp,
pub approve_count: i64,
pub reject_count: i64,
}
#[derive(Actor)]
pub struct ProposalManager {
pub(crate) db: db::DatabasePool,
pub(crate) vault: ActorRef<Vault>,
pub(crate) evm: ActorRef<EvmActor>,
pub(crate) vault_coordinator: ActorRef<VaultCoordinator>,
}
impl ProposalManager {
pub const fn new(
db: db::DatabasePool,
vault: ActorRef<Vault>,
evm: ActorRef<EvmActor>,
vault_coordinator: ActorRef<VaultCoordinator>,
) -> Self {
Self {
db,
vault,
evm,
vault_coordinator,
}
}
}
#[messages]
impl ProposalManager {
#[message]
pub async fn create_proposal(
&mut self,
kind: ProposalKind,
initiator_id: OperatorIdentityId,
ttl_secs: Option<u32>,
) -> Result<ProposalId, Error> {
let ttl = ttl_secs.unwrap_or(DEFAULT_TTL_SECS);
if ttl > MAX_TTL_SECS {
return Err(Error::TtlTooLong);
}
let expires_at =
SqliteTimestamp::from(Utc::now() + chrono::Duration::seconds(i64::from(ttl)));
let id: ProposalId = self
.db
.get()
.await?
.transaction(async |conn| {
let id: ProposalId = diesel::insert_into(schema::proposal::table)
.values(&NewProposal {
kind: kind.discriminant(),
initiator_id,
expires_at,
})
.returning(schema::proposal::id)
.get_result(conn)
.await?;
db::proposal::insert_kind(conn, id, &kind).await?;
Ok::<_, diesel::result::Error>(id)
})
.await?;
Ok(id)
}
#[message]
pub async fn query_pending(&mut self, operator_id: OperatorIdentityId) -> Vec<ProposalSummary> {
#[expect(
clippy::cast_possible_truncation,
clippy::as_conversions,
reason = "fixme! #84; this will break in 2038"
)]
let now_ts = Utc::now().timestamp() as i32;
let Ok(mut conn) = self.db.get().await else {
warn!("query_pending: failed to acquire DB connection");
return vec![];
};
let voted_ids: Vec<ProposalId> = schema::proposal_vote::table
.filter(schema::proposal_vote::operator_id.eq(operator_id))
.select(schema::proposal_vote::proposal_id)
.load(&mut conn)
.await
.unwrap_or_default();
let proposals: Vec<Proposal> = schema::proposal::table
.filter(schema::proposal::status.eq(ProposalStatus::Pending))
.filter(schema::proposal::expires_at.gt(now_ts))
.filter(diesel::dsl::not(schema::proposal::id.eq_any(&voted_ids)))
.load(&mut conn)
.await
.unwrap_or_default();
let ids: Vec<ProposalId> = proposals.iter().map(|p| p.id).collect();
let tallies: Vec<(ProposalId, bool, i64)> = schema::proposal_vote::table
.filter(schema::proposal_vote::proposal_id.eq_any(&ids))
.group_by((
schema::proposal_vote::proposal_id,
schema::proposal_vote::approve,
))
.select((
schema::proposal_vote::proposal_id,
schema::proposal_vote::approve,
diesel::dsl::count_star(),
))
.load(&mut conn)
.await
.unwrap_or_default();
let mut by_proposal: HashMap<ProposalId, (i64, i64)> = HashMap::new();
for (proposal_id, approve, count) in tallies {
let entry = by_proposal.entry(proposal_id).or_insert((0, 0));
if approve {
entry.0 += count;
} else {
entry.1 += count;
}
}
proposals
.into_iter()
.map(|p| {
let (approve_count, reject_count) =
by_proposal.get(&p.id).copied().unwrap_or((0, 0));
ProposalSummary {
id: p.id,
kind: p.kind,
initiator_id: p.initiator_id,
expires_at: p.expires_at,
approve_count,
reject_count,
}
})
.collect()
}
#[message]
pub async fn cast_vote(
&mut self,
proposal_id: ProposalId,
operator_id: OperatorIdentityId,
approve: bool,
signature: Vec<u8>,
) -> Result<VoteOutcome, Error> {
let mut conn = self.db.get().await?;
// Load proposal — must exist
let proposal: Proposal = schema::proposal::table
.find(proposal_id)
.first(&mut conn)
.await
.map_err(|e| match e {
diesel::result::Error::NotFound => Error::ProposalNotFound,
other => Error::DatabaseQuery(other),
})?;
// Check for duplicate vote before status check so AlreadyVoted takes priority
let already_voted: bool = select(exists(
schema::proposal_vote::table
.filter(schema::proposal_vote::proposal_id.eq(proposal_id))
.filter(schema::proposal_vote::operator_id.eq(operator_id)),
))
.get_result(&mut conn)
.await?;
if already_voted {
return Err(Error::AlreadyVoted);
}
if proposal.status != ProposalStatus::Pending {
return Err(Error::ProposalNotPending);
}
if proposal.expires_at.0 <= Utc::now() {
return Err(Error::ProposalExpired);
}
// Load operator public key from operator_identity
let pubkey_bytes: Vec<u8> = schema::operator_identity::table
.find(operator_id)
.select(schema::operator_identity::public_key)
.first(&mut conn)
.await
.map_err(|e| match e {
diesel::result::Error::NotFound => Error::OperatorNotFound,
other => Error::DatabaseQuery(other),
})?;
governance::verify_vote(&pubkey_bytes, proposal_id, approve, &signature)
.map_err(|_| Error::InvalidSignature)?;
// Insert vote
diesel::insert_into(schema::proposal_vote::table)
.values(&NewProposalVote {
proposal_id,
operator_id,
approve,
signature,
})
.execute(&mut conn)
.await?;
// Quorum check
let total_operators: i64 = schema::operator_identity::table
.count()
.get_result(&mut conn)
.await?;
let recovery_active = Self::is_recovery_active_conn(&mut conn).await?;
let total_recovery: i64 = if recovery_active {
schema::recovery_operator_identity::table
.count()
.get_result(&mut conn)
.await?
} else {
0
};
#[expect(
clippy::cast_possible_truncation,
clippy::cast_sign_loss,
clippy::as_conversions,
reason = "operator count is always a small positive integer"
)]
let threshold = if proposal.kind.requires_full_quorum() {
// §3.3: key-rotation proposals require every eligible voter to approve
// §3.5: when recovery is active, recovery operators also vote on replace_operator
(total_operators + total_recovery) as usize
} else {
crate::crypto::shamir::shamir_threshold(total_operators as usize)
};
let ordinary_approve: i64 = schema::proposal_vote::table
.filter(schema::proposal_vote::proposal_id.eq(proposal_id))
.filter(schema::proposal_vote::approve.eq(true))
.count()
.get_result(&mut conn)
.await?;
let recovery_approve: i64 = schema::recovery_proposal_vote::table
.filter(schema::recovery_proposal_vote::proposal_id.eq(proposal_id))
.filter(schema::recovery_proposal_vote::approve.eq(true))
.count()
.get_result(&mut conn)
.await?;
let approve_count = ordinary_approve + recovery_approve;
let ordinary_reject: i64 = schema::proposal_vote::table
.filter(schema::proposal_vote::proposal_id.eq(proposal_id))
.filter(schema::proposal_vote::approve.eq(false))
.count()
.get_result(&mut conn)
.await?;
let recovery_reject: i64 = schema::recovery_proposal_vote::table
.filter(schema::recovery_proposal_vote::proposal_id.eq(proposal_id))
.filter(schema::recovery_proposal_vote::approve.eq(false))
.count()
.get_result(&mut conn)
.await?;
let reject_count = ordinary_reject + recovery_reject;
#[expect(
clippy::cast_possible_wrap,
clippy::as_conversions,
reason = "threshold is derived from operator count, always fits i64"
)]
let threshold_i64 = threshold as i64;
if approve_count >= threshold_i64 {
diesel::update(schema::proposal::table.find(proposal_id))
.set(schema::proposal::status.eq(ProposalStatus::Approved))
.execute(&mut conn)
.await?;
drop(conn); // release connection before async execution
self.execute_proposal(&proposal).await?;
return Ok(VoteOutcome::Approved);
}
let total_eligible = total_operators + total_recovery;
if reject_count > total_eligible - threshold_i64 {
diesel::update(schema::proposal::table.find(proposal_id))
.set(schema::proposal::status.eq(ProposalStatus::Rejected))
.execute(&mut conn)
.await?;
return Ok(VoteOutcome::Rejected);
}
Ok(VoteOutcome::Pending)
}
/// §3.6: Any ordinary operator may request recovery wake-up.
/// Fails if a wake-up is already pending or active.
#[message]
pub async fn request_recovery_wakeup(
&mut self,
operator_id: OperatorIdentityId,
) -> Result<(), Error> {
let mut conn = self.db.get().await?;
if Self::has_uncancelled_wakeup(&mut conn).await? {
return Err(Error::WakeupAlreadyPending);
}
diesel::insert_into(schema::recovery_wakeup_request::table)
.values(&NewRecoveryWakeupRequest {
requested_by: operator_id,
})
.execute(&mut conn)
.await?;
Ok(())
}
/// §3.6: Any ordinary operator may cancel a pending wake-up request.
/// Fails if there is no uncancelled request.
#[message]
pub async fn cancel_recovery_wakeup(
&mut self,
operator_id: OperatorIdentityId,
) -> Result<(), Error> {
let mut conn = self.db.get().await?;
let rows_updated = diesel::update(schema::recovery_wakeup_request::table)
.filter(schema::recovery_wakeup_request::cancelled_at.is_null())
.set((
schema::recovery_wakeup_request::cancelled_by.eq(Some(operator_id)),
schema::recovery_wakeup_request::cancelled_at.eq(Some(SqliteTimestamp::now())),
))
.execute(&mut conn)
.await?;
if rows_updated == 0 {
return Err(Error::NoActiveWakeup);
}
Ok(())
}
/// §3.5: Recovery operators may only vote on operator replacement proposals.
/// §3.6: Voting is gated behind recovery being active (14-day window elapsed).
#[message]
pub async fn cast_recovery_vote(
&mut self,
proposal_id: ProposalId,
recovery_operator_id: RecoveryOperatorIdentityId,
approve: bool,
signature: Vec<u8>,
) -> Result<VoteOutcome, Error> {
let mut conn = self.db.get().await?;
let proposal: Proposal = schema::proposal::table
.find(proposal_id)
.first(&mut conn)
.await
.map_err(|e| match e {
diesel::result::Error::NotFound => Error::ProposalNotFound,
other => Error::DatabaseQuery(other),
})?;
if proposal.kind != ProposalKindTag::ReplaceOperator {
return Err(Error::NotAllowedForRecoveryOperator);
}
if !Self::is_recovery_active_conn(&mut conn).await? {
return Err(Error::RecoveryNotActive);
}
let already_voted: bool = select(exists(
schema::recovery_proposal_vote::table
.filter(schema::recovery_proposal_vote::proposal_id.eq(proposal_id))
.filter(
schema::recovery_proposal_vote::recovery_operator_id.eq(recovery_operator_id),
),
))
.get_result(&mut conn)
.await?;
if already_voted {
return Err(Error::AlreadyVoted);
}
if proposal.status != ProposalStatus::Pending {
return Err(Error::ProposalNotPending);
}
if proposal.expires_at.0 <= Utc::now() {
return Err(Error::ProposalExpired);
}
let pubkey_bytes: Vec<u8> = schema::recovery_operator_identity::table
.find(recovery_operator_id)
.select(schema::recovery_operator_identity::public_key)
.first(&mut conn)
.await
.map_err(|e| match e {
diesel::result::Error::NotFound => Error::OperatorNotFound,
other => Error::DatabaseQuery(other),
})?;
governance::verify_vote(&pubkey_bytes, proposal_id, approve, &signature)
.map_err(|_| Error::InvalidSignature)?;
diesel::insert_into(schema::recovery_proposal_vote::table)
.values(&NewRecoveryProposalVote {
proposal_id,
recovery_operator_id,
approve,
signature,
})
.execute(&mut conn)
.await?;
// Quorum: all ordinary + all recovery operators must approve (§3.3 + §3.5)
let total_ordinary: i64 = schema::operator_identity::table
.count()
.get_result(&mut conn)
.await?;
let total_recovery: i64 = schema::recovery_operator_identity::table
.count()
.get_result(&mut conn)
.await?;
let threshold_i64 = total_ordinary + total_recovery;
let ordinary_approve: i64 = schema::proposal_vote::table
.filter(schema::proposal_vote::proposal_id.eq(proposal_id))
.filter(schema::proposal_vote::approve.eq(true))
.count()
.get_result(&mut conn)
.await?;
let recovery_approve: i64 = schema::recovery_proposal_vote::table
.filter(schema::recovery_proposal_vote::proposal_id.eq(proposal_id))
.filter(schema::recovery_proposal_vote::approve.eq(true))
.count()
.get_result(&mut conn)
.await?;
let approve_count = ordinary_approve + recovery_approve;
if approve_count >= threshold_i64 {
diesel::update(schema::proposal::table.find(proposal_id))
.set(schema::proposal::status.eq(ProposalStatus::Approved))
.execute(&mut conn)
.await?;
drop(conn);
self.execute_proposal(&proposal).await?;
return Ok(VoteOutcome::Approved);
}
let recovery_reject: i64 = schema::recovery_proposal_vote::table
.filter(schema::recovery_proposal_vote::proposal_id.eq(proposal_id))
.filter(schema::recovery_proposal_vote::approve.eq(false))
.count()
.get_result(&mut conn)
.await?;
let ordinary_reject: i64 = schema::proposal_vote::table
.filter(schema::proposal_vote::proposal_id.eq(proposal_id))
.filter(schema::proposal_vote::approve.eq(false))
.count()
.get_result(&mut conn)
.await?;
let reject_count = ordinary_reject + recovery_reject;
if reject_count > threshold_i64 - approve_count - reject_count {
diesel::update(schema::proposal::table.find(proposal_id))
.set(schema::proposal::status.eq(ProposalStatus::Rejected))
.execute(&mut conn)
.await?;
return Ok(VoteOutcome::Rejected);
}
Ok(VoteOutcome::Pending)
}
}
impl ProposalManager {
const WAKEUP_DELAY_SECS: i32 = 14 * 24 * 60 * 60;
/// Returns true when an uncancelled wakeup request has passed the 14-day dispute window.
async fn is_recovery_active_conn(conn: &mut db::DatabaseConnection) -> Result<bool, Error> {
select(exists(
schema::recovery_wakeup_request::table
.filter(schema::recovery_wakeup_request::cancelled_at.is_null())
.filter(
schema::recovery_wakeup_request::requested_at
.le(unixepoch("now") - Self::WAKEUP_DELAY_SECS),
),
))
.get_result(conn)
.await
.map_err(Error::from)
}
/// Returns true when there is any uncancelled wakeup request (pending or active).
async fn has_uncancelled_wakeup(conn: &mut db::DatabaseConnection) -> Result<bool, Error> {
select(exists(schema::recovery_wakeup_request::table.filter(
schema::recovery_wakeup_request::cancelled_at.is_null(),
)))
.get_result(conn)
.await
.map_err(Error::from)
}
async fn execute_proposal(&self, proposal: &Proposal) -> Result<(), Error> {
let mut conn = self.db.get().await?;
let kind = db::proposal::load_kind(&mut conn, proposal.id, proposal.kind).await?;
drop(conn);
match kind {
ProposalKind::ApproveSdkClient(s) => self.execute_approve_sdk_client(s.client_id).await,
ProposalKind::GrantWalletAccess(s) => {
self.execute_grant_wallet_access(s.wallet_id, s.client_id)
.await
}
ProposalKind::ReplaceOperator(s) => {
self.execute_replace_operator(s.old_operator_id, s.new_pubkey)
.await
}
ProposalKind::TriggerRekey => self.execute_trigger_rekey().await,
ProposalKind::ApprovePersistentGrant(grant) => {
self.execute_approve_persistent_grant(*grant).await
}
ProposalKind::ApproveOneOffTransaction(tx) => {
self.execute_approve_one_off_transaction(proposal.id, *tx)
.await
}
}
}
async fn execute_grant_wallet_access(
&self,
wallet_id: i32,
client_id: i32,
) -> Result<(), Error> {
use crate::db::models::EvmWalletId;
let mut conn = self.db.get().await.map_err(Error::DatabaseConnection)?;
diesel::insert_into(schema::evm_wallet_access::table)
.values((
schema::evm_wallet_access::wallet_id.eq(EvmWalletId::from_raw(wallet_id)),
schema::evm_wallet_access::client_id.eq(client_id),
))
.execute(&mut conn)
.await
.map_err(|e| Error::ExecutionFailed(format!("grant wallet access: {e}")))?;
Ok(())
}
/// Updates the old operator's public key in-place (preserving their DB id and history),
/// removes their old Shamir share, then begins a coordinated re-key (§3.3).
async fn execute_replace_operator(
&self,
old_operator_id: OperatorIdentityId,
new_pubkey: Vec<u8>,
) -> Result<(), Error> {
let mut conn = self.db.get().await.map_err(Error::DatabaseConnection)?;
diesel::update(schema::operator_identity::table)
.filter(schema::operator_identity::id.eq(old_operator_id))
.set(schema::operator_identity::public_key.eq(&new_pubkey))
.execute(&mut conn)
.await
.map_err(|e| Error::ExecutionFailed(format!("update operator pubkey: {e}")))?;
// Remove the old Shamir share; finalize_rekey will store a fresh one.
diesel::delete(schema::operator::table)
.filter(schema::operator::id.eq(Some(old_operator_id)))
.execute(&mut conn)
.await
.map_err(|e| Error::ExecutionFailed(format!("remove old operator share: {e}")))?;
drop(conn);
self.vault_coordinator
.ask(StartRekey {})
.await
.map_err(|e| Error::ExecutionFailed(format!("start rekey: {e}")))?;
Ok(())
}
/// Triggers a Shamir re-key with the current operator set (§3.3).
async fn execute_trigger_rekey(&self) -> Result<(), Error> {
self.vault_coordinator
.ask(StartRekey {})
.await
.map_err(|e| Error::ExecutionFailed(format!("start rekey: {e}")))?;
Ok(())
}
async fn execute_approve_one_off_transaction(
&self,
proposal_id: ProposalId,
tx: one_off_transaction::Settings,
) -> Result<(), Error> {
use crate::actors::evm::ClientSignTransaction;
use alloy::{
consensus::TxEip1559,
eips::eip2930::AccessList,
primitives::{Address, Bytes, TxKind, U256},
};
let transaction = TxEip1559 {
chain_id: tx.chain_id,
nonce: tx.nonce,
gas_limit: tx.gas_limit,
max_fee_per_gas: tx.max_fee_per_gas,
max_priority_fee_per_gas: tx.max_priority_fee_per_gas,
to: TxKind::Call(Address::from(tx.to)),
value: U256::from_be_bytes(tx.value),
input: Bytes::from(tx.input),
access_list: AccessList::default(),
};
let sig = self
.evm
.ask(ClientSignTransaction {
client_id: tx.client_id,
wallet_address: Address::from(tx.wallet_address),
transaction,
})
.await
.map_err(|e| Error::ExecutionFailed(format!("sign one-off tx: {e}")))?;
let mut conn = self.db.get().await.map_err(Error::DatabaseConnection)?;
one_off_transaction::store_signature(proposal_id, &sig, &mut conn)
.await
.map_err(|e| Error::ExecutionFailed(format!("store proposal result: {e}")))?;
Ok(())
}
async fn execute_approve_persistent_grant(
&self,
grant: persistent_grant::Settings,
) -> Result<(), Error> {
use crate::{
actors::evm::OperatorCreateGrant,
evm::policies::{
SharedGrantSettings, SpecificGrant, TransactionRateLimit, VolumeRateLimit,
ether_transfer, token_transfers,
},
};
use alloy::primitives::{Address, U256};
use chrono::Duration;
let volume = |limit: persistent_grant::VolumeLimit| VolumeRateLimit {
max_volume: U256::from_be_bytes(limit.max_volume),
window: Duration::seconds(limit.window_secs),
};
let basic = SharedGrantSettings {
wallet_access_id: grant.wallet_access_id,
chain: grant.chain_id,
valid_from: grant
.valid_from_secs
.and_then(|s| chrono::DateTime::from_timestamp(s, 0)),
valid_until: grant
.valid_until_secs
.and_then(|s| chrono::DateTime::from_timestamp(s, 0)),
max_gas_fee_per_gas: grant.max_gas_fee_per_gas.map(U256::from_be_bytes),
max_priority_fee_per_gas: grant.max_priority_fee_per_gas.map(U256::from_be_bytes),
rate_limit: grant.rate_limit.map(|r| TransactionRateLimit {
count: r.count,
window: Duration::seconds(r.window_secs),
}),
};
let grant = match grant.specific {
persistent_grant::Specific::EtherTransfer { targets, limit } => {
SpecificGrant::EtherTransfer(ether_transfer::Settings {
target: targets.into_iter().map(Address::from).collect(),
limit: volume(limit),
})
}
persistent_grant::Specific::TokenTransfer {
token_contract,
receiver,
volume_limits,
} => SpecificGrant::TokenTransfer(token_transfers::Settings {
token_contract: Address::from(token_contract),
target: receiver.map(Address::from),
volume_limits: volume_limits.into_iter().map(volume).collect(),
}),
};
self.evm
.ask(OperatorCreateGrant { basic, grant })
.await
.map_err(|e| Error::ExecutionFailed(format!("create grant: {e}")))?;
Ok(())
}
async fn execute_approve_sdk_client(&self, client_id: i32) -> Result<(), Error> {
use crate::{crypto::integrity, peers::client::ClientCredentials};
use arbiter_crypto::authn;
let mut conn = self.db.get().await.map_err(Error::DatabaseConnection)?;
let pubkey_bytes: Vec<u8> = schema::program_client::table
.find(client_id)
.select(schema::program_client::public_key)
.first(&mut conn)
.await
.map_err(|e| Error::ExecutionFailed(format!("client not found: {e}")))?;
let pubkey = authn::PublicKey::try_from(pubkey_bytes.as_slice())
.map_err(|()| Error::ExecutionFailed("invalid client public key".to_owned()))?;
let creds = ClientCredentials { pubkey };
integrity::sign_entity(&mut conn, &self.vault, &creds, client_id)
.await
.map_err(|e| {
error!(?e, "Failed to sign integrity envelope for client");
Error::ExecutionFailed(e.to_string())
})
}
}

View File

@@ -1,13 +1,13 @@
use crate::{
crypto::{
KeyCell,
KeyCell, derive_key,
encryption::v1::{self, Nonce},
integrity::v1::HmacSha256,
},
db::{
self,
models::{self, RootKeyHistory, RootKeyHistoryId},
schema,
schema::{self},
},
};
use arbiter_crypto::safecell::{SafeCell, SafeCellHandle as _};
@@ -22,7 +22,7 @@ use hmac::{KeyInit as _, Mac as _};
use kameo::{Actor, Reply, actor::ActorRef, messages};
use kameo_actors::message_bus::{MessageBus, Publish};
use strum::{EnumDiscriminants, IntoDiscriminant};
use tracing::{error, info};
use tracing::{error, info, warn};
pub mod events {
#[derive(Clone, Copy)]
@@ -45,6 +45,8 @@ pub enum Error {
Sealed,
#[error("Invalid key provided")]
InvalidKey,
#[error("Vault locked: too many failed unseal attempts")]
LockedOut,
#[error("Requested aead entry not found")]
NotFound,
@@ -60,6 +62,9 @@ pub enum Error {
#[error("Broken database")]
BrokenDatabase,
#[error("Integrity key version mismatch: envelope uses key {envelope:?}, current key is {current:?}")]
KeyVersionMismatch { envelope: RootKeyHistoryId, current: RootKeyHistoryId },
}
struct Unsealed {
@@ -79,6 +84,8 @@ enum State {
Unsealed(Unsealed),
}
const MAX_UNSEAL_ATTEMPTS: u32 = 5;
/// Manages vault root key and tracks current state of the vault (bootstrapped/unbootstrapped, sealed/unsealed).
///
/// Provides API for encrypting and decrypting data using the vault root key.
@@ -88,8 +95,10 @@ pub struct Vault {
db: db::DatabasePool,
state: State,
events: ActorRef<MessageBus>,
unseal_failures: u32,
}
#[messages]
impl Vault {
pub async fn new(db: db::DatabasePool, events: ActorRef<MessageBus>) -> Result<Self, Error> {
let state = {
@@ -109,10 +118,10 @@ impl Vault {
}
};
Ok(Self { db, state, events })
Ok(Self { db, state, events, unseal_failures: 0 })
}
// Exclusive transaction to avoid race conditions if multiple vaults write
// Exclusive transaction to avoid race condtions if multiple vaults write
// additional layer of protection against nonce-reuse
async fn get_new_nonce(
pool: &db::DatabasePool,
@@ -157,37 +166,33 @@ impl Vault {
State::Sealed { .. } => Err(Error::Sealed),
}
}
}
#[messages]
impl Vault {
#[message]
pub async fn bootstrap(&mut self, mut seal_key: KeyCell) -> Result<(), Error> {
if !matches!(&self.state, State::Unbootstrapped) {
pub async fn bootstrap(&mut self, seal_key_raw: SafeCell<Vec<u8>>) -> Result<(), Error> {
if !matches!(self.state, State::Unbootstrapped) {
return Err(Error::AlreadyBootstrapped);
}
let salt = v1::generate_salt();
let mut seal_key = derive_key(seal_key_raw, &salt);
let mut root_key = KeyCell::new_secure_random();
// Zero nonces are fine because they are one-time
let root_key_nonce = Nonce::default();
let data_encryption_nonce = Nonce::default();
// Generate salt (kept for schema compat)
let root_key_salt = v1::generate_salt();
let root_key_ciphertext: Vec<u8> = root_key.0.read_inline(|rk| {
let root_key_ciphertext: Vec<u8> = root_key.0.read_inline(|reader| {
let root_key_reader = reader.as_slice();
seal_key
.encrypt(&root_key_nonce, v1::ROOT_KEY_TAG, rk.as_slice())
.encrypt(&root_key_nonce, v1::ROOT_KEY_TAG, root_key_reader)
.map_err(|err| {
error!(?err, "Fatal bootstrap error");
Error::Encryption(err)
})
})?;
let data_encryption_nonce_bytes = data_encryption_nonce.to_vec();
let mut conn = self.db.get().await?;
let data_encryption_nonce_bytes = data_encryption_nonce.to_vec();
let root_key_history_id = conn
.transaction(async |conn| {
let root_key_history_id = insert_into(schema::root_key_history::table)
@@ -197,7 +202,7 @@ impl Vault {
root_key_encryption_nonce: root_key_nonce.to_vec(),
data_encryption_nonce: data_encryption_nonce_bytes.clone(),
schema_version: 1,
salt: root_key_salt.to_vec(),
salt: salt.to_vec(),
})
.returning(schema::root_key_history::id)
.get_result(&mut *conn)
@@ -226,47 +231,70 @@ impl Vault {
}
#[message]
pub async fn try_unseal(&mut self, mut seal_key: KeyCell) -> Result<(), Error> {
pub async fn try_unseal(&mut self, seal_key_raw: SafeCell<Vec<u8>>) -> Result<(), Error> {
if self.unseal_failures >= MAX_UNSEAL_ATTEMPTS {
return Err(Error::LockedOut);
}
let State::Sealed {
root_key_history_id,
} = &self.state
else {
return Err(Error::NotBootstrapped);
};
let root_key_history_id = *root_key_history_id;
// We don't want to hold connection while doing expensive work
// We don't want to hold connection while doing expensive KDF work
let current_key = {
let mut conn = self.db.get().await?;
schema::root_key_history::table
.filter(schema::root_key_history::id.eq(root_key_history_id))
.filter(schema::root_key_history::id.eq(*root_key_history_id))
.select(RootKeyHistory::as_select())
.first(&mut conn)
.await?
};
let salt = &current_key.salt;
let salt = v1::Salt::try_from(salt.as_slice()).map_err(|_| {
error!("Broken database: invalid salt for root key");
Error::BrokenDatabase
})?;
let mut seal_key = derive_key(seal_key_raw, &salt);
let mut root_key = SafeCell::new(current_key.ciphertext.clone());
let nonce =
Nonce::try_from(current_key.root_key_encryption_nonce.as_slice()).map_err(|()| {
error!("Broken database: invalid nonce for root key");
Error::BrokenDatabase
})?;
let mut root_key_bytes = SafeCell::new(current_key.ciphertext.clone());
seal_key
.decrypt_in_place(&nonce, v1::ROOT_KEY_TAG, &mut root_key_bytes)
.map_err(|err| {
error!(?err, "Failed to unseal root key: invalid seal key");
Error::InvalidKey
})?;
let root_key = KeyCell::try_from(root_key_bytes).map_err(|()| {
error!("Broken database: invalid encryption key size");
Error::BrokenDatabase
})?;
if seal_key
.decrypt_in_place(&nonce, v1::ROOT_KEY_TAG, &mut root_key)
.is_err()
{
self.unseal_failures += 1;
if self.unseal_failures >= MAX_UNSEAL_ATTEMPTS {
error!(
attempts = self.unseal_failures,
"Vault locked: maximum failed unseal attempts reached"
);
} else {
warn!(
attempts = self.unseal_failures,
remaining = MAX_UNSEAL_ATTEMPTS - self.unseal_failures,
"Failed unseal attempt"
);
}
return Err(Error::InvalidKey);
}
self.unseal_failures = 0;
self.state = State::Unsealed(Unsealed {
root_key_history_id: current_key.id,
root_key,
root_key: KeyCell::try_from(root_key).map_err(|err| {
error!(?err, "Broken database: invalid encryption key size");
Error::BrokenDatabase
})?,
});
info!("Vault unsealed successfully");
@@ -275,79 +303,10 @@ impl Vault {
Ok(())
}
/// Re-encrypts the root key with `new_seal_key` and records a new root_key_history row.
/// Called after a Shamir re-key so the old seal key is no longer sufficient to unseal.
/// Decrypts an AEAD entry. The `aad` must match the value used at encryption time;
/// a mismatch causes authentication failure, preventing cross-wallet key swaps.
#[message]
pub async fn rekey_root_key(&mut self, mut new_seal_key: KeyCell) -> Result<(), Error> {
let Unsealed {
root_key,
root_key_history_id,
} = Self::expect_unsealed(&mut self.state)?;
let new_nonce = Nonce::default();
let new_salt = v1::generate_salt();
let new_ciphertext: Vec<u8> = root_key.0.read_inline(|rk| {
new_seal_key
.encrypt(&new_nonce, v1::ROOT_KEY_TAG, rk.as_slice())
.map_err(|err| {
error!(?err, "Fatal rekey error");
Error::Encryption(err)
})
})?;
let data_encryption_nonce = Nonce::default();
let mut conn = self.db.get().await?;
let new_root_key_history_id: i32 = conn
.transaction(async |conn| {
let new_id = insert_into(schema::root_key_history::table)
.values(&models::NewRootKeyHistory {
ciphertext: new_ciphertext,
tag: v1::ROOT_KEY_TAG.to_vec(),
root_key_encryption_nonce: new_nonce.to_vec(),
data_encryption_nonce: data_encryption_nonce.to_vec(),
schema_version: 1,
salt: new_salt.to_vec(),
})
.returning(schema::root_key_history::id)
.get_result::<i32>(&mut *conn)
.await?;
update(schema::arbiter_settings::table)
.set(schema::arbiter_settings::root_key_id.eq(new_id))
.execute(&mut *conn)
.await?;
Result::<_, diesel::result::Error>::Ok(new_id)
})
.await?;
*root_key_history_id = RootKeyHistoryId::from_raw(new_root_key_history_id);
info!("Vault root key rekeyed successfully");
Ok(())
}
#[message]
pub async fn seal(&mut self) -> Result<(), Error> {
let Unsealed {
root_key_history_id,
..
} = Self::expect_unsealed(&mut self.state)?;
self.state = State::Sealed {
root_key_history_id: *root_key_history_id,
};
let _ = self.events.tell(Publish(events::VaultResealed)).await;
Ok(())
}
}
// Server-side cryptographic operations
#[messages]
impl Vault {
#[message]
pub async fn decrypt(&mut self, aead_id: i32) -> Result<SafeCell<Vec<u8>>, Error> {
pub async fn decrypt(&mut self, aead_id: i32, aad: Vec<u8>) -> Result<SafeCell<Vec<u8>>, Error> {
let Unsealed { root_key, .. } = Self::expect_unsealed(&mut self.state)?;
let row: models::AeadEncrypted = {
@@ -369,13 +328,15 @@ impl Vault {
Error::BrokenDatabase
})?;
let mut output = SafeCell::new(row.ciphertext);
root_key.decrypt_in_place(&nonce, v1::TAG, &mut output)?;
root_key.decrypt_in_place(&nonce, &aad, &mut output)?;
Ok(output)
}
/// Creates a new `aead_encrypted` entry and returns its ID.
/// The `aad` is bound into the ciphertext and must be reproduced exactly at decryption time.
// Creates new `aead_encrypted` entry in the database and returns it's ID
#[message]
pub async fn create_new(&mut self, mut plaintext: SafeCell<Vec<u8>>) -> Result<i32, Error> {
pub async fn create_new(&mut self, mut plaintext: SafeCell<Vec<u8>>, aad: Vec<u8>) -> Result<i32, Error> {
let Unsealed {
root_key,
root_key_history_id,
@@ -387,7 +348,7 @@ impl Vault {
let mut ciphertext_buffer = plaintext.write();
let ciphertext_buffer: &mut Vec<u8> = ciphertext_buffer.as_mut();
root_key.encrypt_in_place(&nonce, v1::TAG, &mut *ciphertext_buffer)?;
root_key.encrypt_in_place(&nonce, &aad, &mut *ciphertext_buffer)?;
let ciphertext = std::mem::take(ciphertext_buffer);
@@ -447,7 +408,10 @@ impl Vault {
} = Self::expect_unsealed(&mut self.state)?;
if *root_key_history_id != key_version {
return Ok(false);
return Err(Error::KeyVersionMismatch {
envelope: key_version,
current: *root_key_history_id,
});
}
let mut hmac = root_key.0.read_inline(|k| {
@@ -459,11 +423,26 @@ impl Vault {
Ok(hmac.verify_slice(&expected_mac).is_ok())
}
#[message]
pub async fn seal(&mut self) -> Result<(), Error> {
let Unsealed {
root_key_history_id,
..
} = Self::expect_unsealed(&mut self.state)?;
self.state = State::Sealed {
root_key_history_id: *root_key_history_id,
};
let _ = self.events.tell(Publish(events::VaultResealed)).await;
Ok(())
}
}
#[cfg(test)]
mod tests {
use crate::actors::GlobalActors;
use crate::db::models::RootKeyHistory;
use arbiter_crypto::safecell::SafeCellHandle as _;
use super::*;
@@ -472,7 +451,8 @@ mod tests {
let mut actor = Vault::new(db.clone(), GlobalActors::spawn_message_bus())
.await
.unwrap();
actor.bootstrap(KeyCell::from([0u8; 32])).await.unwrap();
let seal_key = SafeCell::new(b"test-seal-key".to_vec());
actor.bootstrap(seal_key).await.unwrap();
actor
}
@@ -481,12 +461,13 @@ mod tests {
async fn nonce_monotonic_even_when_nonce_allocation_interleaves() {
let db = db::create_test_pool().await;
let mut actor = bootstrapped_actor(&db).await;
let State::Unsealed(Unsealed {
root_key_history_id,
..
}) = actor.state
else {
panic!("expected unsealed state");
panic!("expected unsealed state")
};
let n1 = Vault::get_new_nonce(&db, root_key_history_id)
@@ -506,7 +487,7 @@ mod tests {
assert_eq!(root_row.data_encryption_nonce, n2.to_vec());
let id = actor
.create_new(SafeCell::new(b"post-interleave".to_vec()))
.create_new(SafeCell::new(b"post-interleave".to_vec()), b"test-aad".to_vec())
.await
.unwrap();
let row: models::AeadEncrypted = schema::aead_encrypted::table

View File

@@ -1,721 +0,0 @@
use std::collections::HashMap;
use arbiter_crypto::safecell::{SafeCell, SafeCellHandle as _};
use diesel::{ExpressionMethods as _, QueryDsl};
use diesel_async::RunQueryDsl;
use kameo::{Actor, actor::ActorRef, messages};
use rand_core::{OsRng, RngCore as _};
use tracing::error;
use crate::{
actors::vault::{Bootstrap, RekeyRootKey, TryUnseal, Vault},
crypto::{KeyCell, derive_key, encryption::v1::Nonce, shamir, shamir::shamir_threshold},
db::{self, models, schema},
};
#[derive(Debug, thiserror::Error)]
pub enum Error {
#[error("Already coordinating a bootstrap")]
AlreadyBootstrapping,
#[error("Already coordinating an unseal")]
AlreadyUnsealing,
#[error("Rekey not in progress")]
NotRekeying,
#[error("Bootstrap not in progress")]
NotBootstrapping,
#[error("Unseal not in progress")]
NotUnsealing,
#[error("Operator already contributed")]
DuplicateContribution,
#[error("Operator not found in database")]
OperatorNotFound,
#[error("Invalid passphrase (decryption failed)")]
InvalidPassphrase,
#[error("Shamir error: {0}")]
Shamir(String),
#[error("Database connection error: {0}")]
DatabaseConnection(#[from] db::PoolError),
#[error("Database query error: {0}")]
DatabaseQuery(#[from] diesel::result::Error),
#[error("Encryption error")]
Encryption,
#[error("Vault error")]
VaultError,
#[error("Two-operator vaults require at least one recovery share")]
TwoOperatorsRequireRecovery,
#[error("Broken database")]
BrokenDatabase,
}
// Passphrases stored as plain Vec<u8> (not SafeCell) so CoordinatorState is Sync.
// They are ephemeral and dropped immediately after use.
enum CoordinatorState {
Idle,
Bootstrapping {
declared_count: usize,
recovery_count: usize,
passphrases: HashMap<i32, Vec<u8>>,
recovery_passphrases: HashMap<i32, Vec<u8>>,
},
Unsealing {
threshold: usize,
ordinary_passphrases: HashMap<i32, Vec<u8>>,
recovery_passphrases: HashMap<i32, Vec<u8>>,
},
/// Shamir re-key after `replace_operator` or `trigger_rekey` is approved (§3.3).
/// Collects new passphrases from all current operators, then generates a fresh seal key,
/// re-splits it, and re-encrypts the vault root key.
Rekeying {
ordinary_count: usize,
recovery_count: usize,
passphrases: HashMap<i32, Vec<u8>>,
recovery_passphrases: HashMap<i32, Vec<u8>>,
},
}
#[derive(Actor)]
pub struct VaultCoordinator {
db: db::DatabasePool,
vault: ActorRef<Vault>,
state: CoordinatorState,
}
impl VaultCoordinator {
pub const fn new(db: db::DatabasePool, vault: ActorRef<Vault>) -> Self {
Self {
db,
vault,
state: CoordinatorState::Idle,
}
}
}
const SHARE_AAD: &[u8] = b"arbiter/shamir-share/v1";
fn encrypt_share(
passphrase_bytes: Vec<u8>,
share: &[u8],
) -> Result<(Vec<u8>, Vec<u8>, Vec<u8>), Error> {
let mut share_salt = vec![0u8; 32];
OsRng.fill_bytes(&mut share_salt);
let mut passphrase_cell = SafeCell::new(passphrase_bytes);
let mut share_seal_key = derive_key(&mut passphrase_cell, &share_salt);
let nonce = Nonce::default();
let encrypted_share = share_seal_key
.encrypt(&nonce, SHARE_AAD, share)
.map_err(|_| Error::Encryption)?;
Ok((encrypted_share, nonce.to_vec(), share_salt))
}
fn decrypt_share(
passphrase_bytes: Vec<u8>,
encrypted_share: Vec<u8>,
share_nonce_bytes: &[u8],
share_salt: &[u8],
operator_id: i32,
) -> Result<Vec<u8>, Error> {
let nonce = Nonce::try_from(share_nonce_bytes).map_err(|()| {
error!(operator_id, "Invalid nonce in DB");
Error::BrokenDatabase
})?;
let mut passphrase_cell = SafeCell::new(passphrase_bytes);
let mut share_seal_key = derive_key(&mut passphrase_cell, share_salt);
let mut share_buffer = SafeCell::new(encrypted_share);
share_seal_key
.decrypt_in_place(&nonce, SHARE_AAD, &mut share_buffer)
.map_err(|_| Error::InvalidPassphrase)?;
Ok(share_buffer.read().clone())
}
/// §3.4: Split the seal key across ordinary + recovery operators.
/// Threshold = `shamir_threshold(ordinary_count)`; total shares = ordinary + recovery.
/// When `ordinary_count` == 1 (threshold = 1), vsss-rs does not support a proper split,
/// so each share is the seal key itself — any single participant can reconstruct.
async fn finalize_bootstrap(
db: db::DatabasePool,
vault: ActorRef<Vault>,
ordinary_passphrases: HashMap<i32, Vec<u8>>,
recovery_passphrases: HashMap<i32, Vec<u8>>,
) -> Result<(), Error> {
let ordinary_count = ordinary_passphrases.len();
let recovery_count = recovery_passphrases.len();
let total = ordinary_count + recovery_count;
let threshold = shamir_threshold(ordinary_count);
let mut seal_key_bytes = [0u8; 32];
OsRng.fill_bytes(&mut seal_key_bytes);
// threshold == 1 means any single share reconstructs the key (degenerate split).
// vsss-rs requires threshold >= 2, so we store the key directly in this case.
let shares: Vec<Vec<u8>> = if threshold >= 2 {
shamir::split_key(threshold, total, &seal_key_bytes, OsRng)
.map_err(|e| Error::Shamir(e.to_string()))?
} else {
std::iter::repeat_with(|| seal_key_bytes.to_vec()).take(total).collect()
};
let seal_key = KeyCell::from(seal_key_bytes);
let mut conn = db.get().await?;
let mut shares_iter = shares.into_iter();
for (operator_id_raw, passphrase_bytes) in ordinary_passphrases {
let share = shares_iter
.next()
.expect("split_key returned enough shares");
let (encrypted_share, nonce_bytes, share_salt) = encrypt_share(passphrase_bytes, &share)?;
diesel::replace_into(schema::operator::table)
.values((
schema::operator::id.eq(Some(operator_id_raw)),
schema::operator::share.eq(&encrypted_share),
schema::operator::share_nonce.eq(&nonce_bytes),
schema::operator::share_salt.eq(&share_salt),
schema::operator::created_at.eq(models::SqliteTimestamp::now()),
schema::operator::updated_at.eq(models::SqliteTimestamp::now()),
))
.execute(&mut conn)
.await?;
}
for (recovery_id_raw, passphrase_bytes) in recovery_passphrases {
let share = shares_iter
.next()
.expect("split_key returned enough shares");
let (encrypted_share, nonce_bytes, share_salt) = encrypt_share(passphrase_bytes, &share)?;
diesel::replace_into(schema::recovery_operator::table)
.values((
schema::recovery_operator::id.eq(recovery_id_raw),
schema::recovery_operator::share.eq(&encrypted_share),
schema::recovery_operator::share_nonce.eq(&nonce_bytes),
schema::recovery_operator::share_salt.eq(&share_salt),
schema::recovery_operator::created_at.eq(models::SqliteTimestamp::now()),
schema::recovery_operator::updated_at.eq(models::SqliteTimestamp::now()),
))
.execute(&mut conn)
.await?;
}
vault.ask(Bootstrap { seal_key }).await.map_err(|err| {
error!(?err, "Vault bootstrap failed");
Error::VaultError
})?;
Ok(())
}
/// §3.5: Unseal using any threshold-sized mix of ordinary + recovery shares.
async fn finalize_unseal(
db: db::DatabasePool,
vault: ActorRef<Vault>,
ordinary_passphrases: HashMap<i32, Vec<u8>>,
recovery_passphrases: HashMap<i32, Vec<u8>>,
) -> Result<(), Error> {
let mut conn = db.get().await?;
// Determine whether shares were stored as raw keys (threshold=1) or vsss-rs splits (threshold>=2).
let ordinary_operator_count: i64 = schema::operator::table
.count()
.get_result(&mut conn)
.await?;
let threshold = shamir_threshold(ordinary_operator_count as usize);
let mut shares: Vec<Vec<u8>> = Vec::new();
for (operator_id_raw, passphrase_bytes) in ordinary_passphrases {
let (encrypted_share, share_nonce_bytes, share_salt): (Vec<u8>, Vec<u8>, Vec<u8>) =
schema::operator::table
.filter(schema::operator::id.eq(Some(operator_id_raw)))
.select((
schema::operator::share,
schema::operator::share_nonce,
schema::operator::share_salt,
))
.first(&mut conn)
.await
.map_err(|_| Error::OperatorNotFound)?;
shares.push(decrypt_share(
passphrase_bytes,
encrypted_share,
&share_nonce_bytes,
&share_salt,
operator_id_raw,
)?);
}
for (recovery_id_raw, passphrase_bytes) in recovery_passphrases {
let (encrypted_share, share_nonce_bytes, share_salt): (Vec<u8>, Vec<u8>, Vec<u8>) =
schema::recovery_operator::table
.find(recovery_id_raw)
.select((
schema::recovery_operator::share,
schema::recovery_operator::share_nonce,
schema::recovery_operator::share_salt,
))
.first(&mut conn)
.await
.map_err(|_| Error::OperatorNotFound)?;
shares.push(decrypt_share(
passphrase_bytes,
encrypted_share,
&share_nonce_bytes,
&share_salt,
recovery_id_raw,
)?);
}
// When threshold==1, shares are raw 32-byte seal keys (vsss-rs cannot split 1-of-N).
// Any single decrypted share is the key itself.
let seal_key_bytes: [u8; 32] = if threshold <= 1 {
let raw = shares
.into_iter()
.next()
.ok_or_else(|| Error::Shamir("No shares available".into()))?;
raw.try_into()
.map_err(|_| Error::Shamir("Invalid share length".into()))?
} else {
shamir::combine_shares(&shares).map_err(|e| Error::Shamir(e.to_string()))?
};
let seal_key = KeyCell::from(seal_key_bytes);
vault.ask(TryUnseal { seal_key }).await.map_err(|err| {
error!(?err, "Vault unseal failed");
Error::VaultError
})?;
Ok(())
}
/// §3.3: Generate a fresh seal key, split across current operators, re-encrypt the vault root key.
/// Called after `replace_operator` or `trigger_rekey` is approved and all contributors submit.
async fn finalize_rekey(
db: db::DatabasePool,
vault: ActorRef<Vault>,
ordinary_passphrases: HashMap<i32, Vec<u8>>,
recovery_passphrases: HashMap<i32, Vec<u8>>,
) -> Result<(), Error> {
let ordinary_count = ordinary_passphrases.len();
let recovery_count = recovery_passphrases.len();
let total = ordinary_count + recovery_count;
let threshold = shamir_threshold(ordinary_count);
let mut new_seal_key_bytes = [0u8; 32];
OsRng.fill_bytes(&mut new_seal_key_bytes);
let shares: Vec<Vec<u8>> = if threshold >= 2 {
shamir::split_key(threshold, total, &new_seal_key_bytes, OsRng)
.map_err(|e| Error::Shamir(e.to_string()))?
} else {
std::iter::repeat_with(|| new_seal_key_bytes.to_vec())
.take(total)
.collect()
};
let mut conn = db.get().await?;
let mut shares_iter = shares.into_iter();
for (operator_id_raw, passphrase_bytes) in ordinary_passphrases {
let share = shares_iter
.next()
.expect("split_key returned enough shares");
let (encrypted_share, nonce_bytes, share_salt) = encrypt_share(passphrase_bytes, &share)?;
diesel::replace_into(schema::operator::table)
.values((
schema::operator::id.eq(Some(operator_id_raw)),
schema::operator::share.eq(&encrypted_share),
schema::operator::share_nonce.eq(&nonce_bytes),
schema::operator::share_salt.eq(&share_salt),
schema::operator::created_at.eq(models::SqliteTimestamp::now()),
schema::operator::updated_at.eq(models::SqliteTimestamp::now()),
))
.execute(&mut conn)
.await?;
}
for (recovery_id_raw, passphrase_bytes) in recovery_passphrases {
let share = shares_iter
.next()
.expect("split_key returned enough shares");
let (encrypted_share, nonce_bytes, share_salt) = encrypt_share(passphrase_bytes, &share)?;
diesel::replace_into(schema::recovery_operator::table)
.values((
schema::recovery_operator::id.eq(recovery_id_raw),
schema::recovery_operator::share.eq(&encrypted_share),
schema::recovery_operator::share_nonce.eq(&nonce_bytes),
schema::recovery_operator::share_salt.eq(&share_salt),
schema::recovery_operator::created_at.eq(models::SqliteTimestamp::now()),
schema::recovery_operator::updated_at.eq(models::SqliteTimestamp::now()),
))
.execute(&mut conn)
.await?;
}
drop(conn);
let new_seal_key = KeyCell::from(new_seal_key_bytes);
vault
.ask(RekeyRootKey { new_seal_key })
.await
.map_err(|err| {
error!(?err, "Vault rekey failed");
Error::VaultError
})?;
Ok(())
}
#[messages]
impl VaultCoordinator {
/// Phase 1 of multi-operator bootstrap: declare the committee size.
#[message]
#[expect(clippy::unused_async, reason = "kameo requires messages to be async")]
pub async fn start_bootstrap(
&mut self,
operator_id: i32,
declared_count: usize,
recovery_count: usize,
) -> Result<(), Error> {
let _ = operator_id; // fixme!: any authenticated operator may announce the committee size. the first call wins
if !matches!(self.state, CoordinatorState::Idle) {
return Err(Error::AlreadyBootstrapping);
}
if declared_count == 2 && recovery_count == 0 {
return Err(Error::TwoOperatorsRequireRecovery);
}
self.state = CoordinatorState::Bootstrapping {
declared_count,
recovery_count,
passphrases: HashMap::new(),
recovery_passphrases: HashMap::new(),
};
Ok(())
}
/// Phase 2 of multi-operator bootstrap: ordinary operator contributes a passphrase.
/// Returns Ok(true) when all ordinary + recovery operators contributed and bootstrap finalized.
#[message]
pub async fn contribute_bootstrap(
&mut self,
operator_id: i32,
mut passphrase: SafeCell<Vec<u8>>,
) -> Result<bool, Error> {
let CoordinatorState::Bootstrapping {
declared_count,
recovery_count,
passphrases,
recovery_passphrases,
} = &mut self.state
else {
return Err(Error::NotBootstrapping);
};
if passphrases.contains_key(&operator_id) {
return Err(Error::DuplicateContribution);
}
let passphrase_bytes = passphrase.read().to_vec();
passphrases.insert(operator_id, passphrase_bytes);
if passphrases.len() < *declared_count || recovery_passphrases.len() < *recovery_count {
return Ok(false);
}
let CoordinatorState::Bootstrapping {
passphrases,
recovery_passphrases,
..
} = std::mem::replace(&mut self.state, CoordinatorState::Idle)
else {
unreachable!()
};
finalize_bootstrap(
self.db.clone(),
self.vault.clone(),
passphrases,
recovery_passphrases,
)
.await?;
Ok(true)
}
/// Phase 2 of multi-operator bootstrap: recovery operator contributes a passphrase.
/// Returns Ok(true) when all contributors are in and bootstrap finalized.
#[message]
pub async fn contribute_recovery_bootstrap(
&mut self,
recovery_operator_id: i32,
mut passphrase: SafeCell<Vec<u8>>,
) -> Result<bool, Error> {
let CoordinatorState::Bootstrapping {
declared_count,
recovery_count,
passphrases,
recovery_passphrases,
} = &mut self.state
else {
return Err(Error::NotBootstrapping);
};
if recovery_passphrases.contains_key(&recovery_operator_id) {
return Err(Error::DuplicateContribution);
}
let passphrase_bytes = passphrase.read().to_vec();
recovery_passphrases.insert(recovery_operator_id, passphrase_bytes);
if passphrases.len() < *declared_count || recovery_passphrases.len() < *recovery_count {
return Ok(false);
}
let CoordinatorState::Bootstrapping {
passphrases,
recovery_passphrases,
..
} = std::mem::replace(&mut self.state, CoordinatorState::Idle)
else {
unreachable!()
};
finalize_bootstrap(
self.db.clone(),
self.vault.clone(),
passphrases,
recovery_passphrases,
)
.await?;
Ok(true)
}
/// Contribute a passphrase for vault unseal (ordinary operator).
/// Returns Ok(true) when threshold reached and vault is unsealed.
#[message]
pub async fn contribute_unseal(
&mut self,
operator_id: i32,
mut passphrase: SafeCell<Vec<u8>>,
) -> Result<bool, Error> {
self.ensure_unsealing_state().await?;
let CoordinatorState::Unsealing {
threshold,
ordinary_passphrases,
recovery_passphrases,
} = &mut self.state
else {
return Err(Error::NotUnsealing);
};
if ordinary_passphrases.contains_key(&operator_id) {
return Err(Error::DuplicateContribution);
}
let passphrase_bytes = passphrase.read().to_vec();
ordinary_passphrases.insert(operator_id, passphrase_bytes);
if ordinary_passphrases.len() + recovery_passphrases.len() < *threshold {
return Ok(false);
}
self.do_finalize_unseal().await
}
/// Contribute a passphrase for vault unseal (recovery operator, §3.5).
/// Recovery operators may contribute during unseal when recovery is active.
/// Returns Ok(true) when threshold reached and vault is unsealed.
#[message]
pub async fn contribute_recovery_unseal(
&mut self,
recovery_operator_id: i32,
mut passphrase: SafeCell<Vec<u8>>,
) -> Result<bool, Error> {
self.ensure_unsealing_state().await?;
let CoordinatorState::Unsealing {
threshold,
ordinary_passphrases,
recovery_passphrases,
} = &mut self.state
else {
return Err(Error::NotUnsealing);
};
if recovery_passphrases.contains_key(&recovery_operator_id) {
return Err(Error::DuplicateContribution);
}
let passphrase_bytes = passphrase.read().to_vec();
recovery_passphrases.insert(recovery_operator_id, passphrase_bytes);
if ordinary_passphrases.len() + recovery_passphrases.len() < *threshold {
return Ok(false);
}
self.do_finalize_unseal().await
}
}
impl VaultCoordinator {
/// Initializes `CoordinatorState::Unsealing` on first call if still `Idle`.
/// Threshold is based on ordinary operator count only (§3.4).
async fn ensure_unsealing_state(&mut self) -> Result<(), Error> {
if matches!(self.state, CoordinatorState::Idle) {
let mut conn = self.db.get().await?;
let ordinary_count: i64 = schema::operator::table
.count()
.get_result(&mut conn)
.await?;
let threshold = shamir_threshold(usize::try_from(ordinary_count).unwrap_or_default());
self.state = CoordinatorState::Unsealing {
threshold,
ordinary_passphrases: HashMap::new(),
recovery_passphrases: HashMap::new(),
};
}
Ok(())
}
/// Moves state back to Idle and calls finalize_unseal.
async fn do_finalize_unseal(&mut self) -> Result<bool, Error> {
let CoordinatorState::Unsealing {
ordinary_passphrases,
recovery_passphrases,
..
} = std::mem::replace(&mut self.state, CoordinatorState::Idle)
else {
unreachable!()
};
finalize_unseal(
self.db.clone(),
self.vault.clone(),
ordinary_passphrases,
recovery_passphrases,
)
.await?;
Ok(true)
}
async fn do_finalize_rekey(&mut self) -> Result<bool, Error> {
let CoordinatorState::Rekeying {
passphrases,
recovery_passphrases,
..
} = std::mem::replace(&mut self.state, CoordinatorState::Idle)
else {
unreachable!()
};
finalize_rekey(
self.db.clone(),
self.vault.clone(),
passphrases,
recovery_passphrases,
)
.await?;
Ok(true)
}
}
#[messages]
impl VaultCoordinator {
/// Begin Shamir re-key after a key-rotation proposal is approved (§3.3).
/// Queries the current operator and recovery operator counts from the DB,
/// then transitions to Rekeying state awaiting contributions from all of them.
#[message]
pub async fn start_rekey(&mut self) -> Result<(), Error> {
if !matches!(self.state, CoordinatorState::Idle) {
return Err(Error::AlreadyBootstrapping);
}
let mut conn = self.db.get().await?;
let ordinary_count: i64 = schema::operator_identity::table
.count()
.get_result(&mut conn)
.await?;
let recovery_count: i64 = schema::recovery_operator_identity::table
.count()
.get_result(&mut conn)
.await?;
self.state = CoordinatorState::Rekeying {
ordinary_count: ordinary_count as usize,
recovery_count: recovery_count as usize,
passphrases: HashMap::new(),
recovery_passphrases: HashMap::new(),
};
Ok(())
}
/// Contribute an ordinary operator passphrase for the re-key.
/// Returns Ok(true) when all contributors have submitted and the re-key is complete.
#[message]
pub async fn contribute_rekey(
&mut self,
operator_id: i32,
mut passphrase: SafeCell<Vec<u8>>,
) -> Result<bool, Error> {
let CoordinatorState::Rekeying {
ordinary_count,
recovery_count,
passphrases,
recovery_passphrases,
} = &mut self.state
else {
return Err(Error::NotRekeying);
};
if passphrases.contains_key(&operator_id) {
return Err(Error::DuplicateContribution);
}
passphrases.insert(operator_id, passphrase.read().to_vec());
if passphrases.len() < *ordinary_count || recovery_passphrases.len() < *recovery_count {
return Ok(false);
}
self.do_finalize_rekey().await
}
/// Contribute a recovery operator passphrase for the re-key.
/// Returns Ok(true) when all contributors have submitted and the re-key is complete.
#[message]
pub async fn contribute_recovery_rekey(
&mut self,
recovery_operator_id: i32,
mut passphrase: SafeCell<Vec<u8>>,
) -> Result<bool, Error> {
let CoordinatorState::Rekeying {
ordinary_count,
recovery_count,
passphrases,
recovery_passphrases,
} = &mut self.state
else {
return Err(Error::NotRekeying);
};
if recovery_passphrases.contains_key(&recovery_operator_id) {
return Err(Error::DuplicateContribution);
}
recovery_passphrases.insert(recovery_operator_id, passphrase.read().to_vec());
if passphrases.len() < *ordinary_count || recovery_passphrases.len() < *recovery_count {
return Ok(false);
}
self.do_finalize_rekey().await
}
}

View File

@@ -1,4 +1,3 @@
use argon2::password_hash::Salt as ArgonSalt;
use rand::{
Rng as _, SeedableRng,
rngs::{StdRng, SysRng},
@@ -42,7 +41,7 @@ impl<'a> TryFrom<&'a [u8]> for Nonce {
}
}
pub type Salt = [u8; ArgonSalt::RECOMMENDED_LENGTH];
pub type Salt = [u8; argon2::RECOMMENDED_SALT_LEN];
pub fn generate_salt() -> Salt {
let mut salt = Salt::default();
@@ -61,12 +60,12 @@ mod tests {
#[test]
fn derive_seal_key_deterministic() {
static PASSWORD: &[u8] = b"password";
let mut password = SafeCell::new(PASSWORD.to_vec());
let mut password2 = SafeCell::new(PASSWORD.to_vec());
let password = SafeCell::new(PASSWORD.to_vec());
let password2 = SafeCell::new(PASSWORD.to_vec());
let salt = generate_salt();
let mut key1 = derive_key(&mut password, &salt);
let mut key2 = derive_key(&mut password2, &salt);
let mut key1 = derive_key(password, &salt);
let mut key2 = derive_key(password2, &salt);
let key1_reader = key1.0.read();
let key2_reader = key2.0.read();
@@ -77,10 +76,10 @@ mod tests {
#[test]
fn successful_derive() {
static PASSWORD: &[u8] = b"password";
let mut password = SafeCell::new(PASSWORD.to_vec());
let password = SafeCell::new(PASSWORD.to_vec());
let salt = generate_salt();
let mut key = derive_key(&mut password, &salt);
let mut key = derive_key(password, &salt);
let key_reader = key.0.read();
assert_ne!(key_reader.as_slice(), &[0u8; 32][..]);

View File

@@ -1,99 +0,0 @@
//! Canonical encoding and verification of governance vote signatures (§3.3).
use crate::db::models::ProposalId;
use arbiter_crypto::authn::{self, SigningContext};
#[derive(Debug, Clone, Copy, PartialEq, Eq, thiserror::Error)]
pub enum VerifyError {
#[error("Malformed operator public key")]
PublicKey,
#[error("Malformed vote signature")]
Signature,
#[error("Signature does not match this vote")]
Mismatch,
}
/// Canonical bytes an operator signs when voting: `proposal_id` as i64 big-endian,
/// followed by the approve flag as one byte.
///
/// The flag is part of the message on purpose: without it an approval could be
/// replayed as a rejection of the same proposal.
#[must_use]
pub fn vote_message(proposal_id: ProposalId, approve: bool) -> Vec<u8> {
let mut message = Vec::with_capacity(9);
message.extend_from_slice(&i64::from(proposal_id.to_raw()).to_be_bytes());
message.push(u8::from(approve));
message
}
/// Verifies a vote signature against an operator's stored public key.
pub fn verify_vote(
public_key: &[u8],
proposal_id: ProposalId,
approve: bool,
signature: &[u8],
) -> Result<(), VerifyError> {
let public_key = authn::PublicKey::try_from(public_key).map_err(|()| VerifyError::PublicKey)?;
let signature = authn::Signature::try_from(signature).map_err(|()| VerifyError::Signature)?;
if public_key.verify_message(
&vote_message(proposal_id, approve),
SigningContext::GovernanceVote,
&signature,
) {
Ok(())
} else {
Err(VerifyError::Mismatch)
}
}
#[cfg(test)]
mod tests {
use super::{VerifyError, verify_vote, vote_message};
use crate::db::models::ProposalId;
use arbiter_crypto::authn::{SigningContext, SigningKey};
#[test]
fn vote_message_is_the_id_then_the_approve_flag() {
let message = vote_message(ProposalId::from_raw(0x0102), true);
assert_eq!(message, vec![0, 0, 0, 0, 0, 0, 1, 2, 1]);
}
#[test]
fn verify_vote_accepts_a_matching_signature() {
let key = SigningKey::generate();
let id = ProposalId::from_raw(42);
let signature = key
.sign_message(&vote_message(id, true), SigningContext::GovernanceVote)
.unwrap();
verify_vote(
&key.public_key().to_bytes(),
id,
true,
&signature.to_bytes(),
)
.expect("a signature over this exact vote must verify");
}
/// The decisive one: an approval must not verify as a rejection of the same
/// proposal, or a captured vote could be replayed with its meaning flipped.
#[test]
fn verify_vote_rejects_a_flipped_approve_flag() {
let key = SigningKey::generate();
let id = ProposalId::from_raw(42);
let signature = key
.sign_message(&vote_message(id, true), SigningContext::GovernanceVote)
.unwrap();
assert!(matches!(
verify_vote(
&key.public_key().to_bytes(),
id,
false,
&signature.to_bytes()
),
Err(VerifyError::Mismatch)
));
}
}

View File

@@ -192,7 +192,9 @@ pub async fn verify_entity<E: Integrable>(
Ok(false) => Err(Error::MacMismatch {
entity_kind: E::KIND,
}),
Err(SendError::HandlerError(vault::Error::Sealed)) => Ok(AttestationStatus::Unavailable),
Err(SendError::HandlerError(
vault::Error::Sealed | vault::Error::KeyVersionMismatch { .. },
)) => Ok(AttestationStatus::Unavailable),
Err(_) => Err(Error::VaultSend),
}
}
@@ -215,6 +217,8 @@ mod tests {
},
db::{self, schema},
};
use arbiter_crypto::safecell::{SafeCell, SafeCellHandle as _};
use super::{Error, Integrable, sign_entity, verify_entity};
#[derive(Clone, arbiter_macros::Hashable)]
struct DummyEntity {
@@ -233,7 +237,7 @@ mod tests {
);
actor
.ask(Bootstrap {
seal_key: crate::crypto::KeyCell::from([0u8; 32]),
seal_key_raw: SafeCell::new(b"integrity-test-seal-key".to_vec()),
})
.await
.unwrap();
@@ -329,4 +333,47 @@ mod tests {
.unwrap_err();
assert!(matches!(err, Error::MacMismatch { .. }));
}
#[tokio::test]
async fn key_version_mismatch_returns_unavailable_not_mac_mismatch() {
use crate::db::schema::integrity_envelope;
use super::AttestationStatus;
const ENTITY_ID: &[u8] = b"entity-id-rotation-test";
let db = db::create_test_pool().await;
let vault = bootstrapped_vault(&db).await;
let mut conn = db.get().await.unwrap();
let entity = DummyEntity {
payload_version: 1,
payload: b"payload-v1".to_vec(),
};
sign_entity(&mut conn, &vault, &entity, ENTITY_ID)
.await
.unwrap();
// Simulate key rotation: update the stored key_version to a stale value.
// After real rotation the vault's root_key_history_id would advance, but
// here we achieve the same mismatch by back-dating the envelope's key_version.
diesel::update(integrity_envelope::table)
.filter(integrity_envelope::entity_kind.eq("dummy_entity"))
.filter(integrity_envelope::entity_id.eq(ENTITY_ID))
.set(integrity_envelope::key_version.eq(0))
.execute(&mut conn)
.await
.unwrap();
// Must NOT error — version mismatch is Unavailable, not tampered.
let status = verify_entity(&mut conn, &vault, &entity, ENTITY_ID)
.await
.expect("key version mismatch must not be treated as an error");
assert_eq!(
status,
AttestationStatus::Unavailable,
"stale key_version must yield Unavailable, not MacMismatch"
);
}
}

View File

@@ -1,10 +1,10 @@
use arbiter_crypto::safecell::{SafeCell, SafeCellHandle as _};
use encryption::v1::Nonce;
use encryption::v1::{Nonce, Salt};
use argon2::{Algorithm, Argon2};
use chacha20poly1305::{
AeadInPlace, Key, KeyInit as _, XChaCha20Poly1305, XNonce,
aead::{AeadMut, Error, Payload},
AeadInOut, Key, KeyInit as _, XChaCha20Poly1305, XNonce,
aead::{Aead, Error, Payload},
};
use rand::{
Rng as _, SeedableRng as _,
@@ -12,9 +12,7 @@ use rand::{
};
pub mod encryption;
pub mod governance;
pub mod integrity;
pub mod shamir;
pub struct KeyCell(pub SafeCell<Key>);
impl From<SafeCell<Key>> for KeyCell {
@@ -22,15 +20,6 @@ impl From<SafeCell<Key>> for KeyCell {
Self(value)
}
}
impl From<[u8; 32]> for KeyCell {
fn from(bytes: [u8; 32]) -> Self {
let cell = SafeCell::new_inline_default(|key: &mut Key| {
key.copy_from_slice(&bytes);
});
Self(cell)
}
}
impl TryFrom<SafeCell<Vec<u8>>> for KeyCell {
type Error = ();
@@ -39,7 +28,7 @@ impl TryFrom<SafeCell<Vec<u8>>> for KeyCell {
if value.len() != size_of::<Key>() {
return Err(());
}
let cell = SafeCell::new_inline_default(|cell_write: &mut Key| {
let cell = SafeCell::new_inline(|cell_write: &mut Key| {
cell_write.copy_from_slice(&value);
});
Ok(Self(cell))
@@ -48,7 +37,7 @@ impl TryFrom<SafeCell<Vec<u8>>> for KeyCell {
impl KeyCell {
pub fn new_secure_random() -> Self {
let key = SafeCell::new_inline_default(|key_buffer: &mut Key| {
let key = SafeCell::new_inline(|key_buffer: &mut Key| {
let mut rng = StdRng::try_from_rng(&mut SysRng)
.expect("Rng failure is unrecoverable and should panic");
rng.fill_bytes(key_buffer);
@@ -65,9 +54,9 @@ impl KeyCell {
) -> Result<(), Error> {
let key_reader = self.0.read();
let cipher = XChaCha20Poly1305::new(&key_reader);
let nonce = XNonce::from_slice(nonce.0.as_ref());
let nonce = XNonce::from(nonce.0);
let buffer = buffer.as_mut();
cipher.encrypt_in_place(nonce, associated_data, buffer)
cipher.encrypt_in_place(&nonce, associated_data, buffer)
}
pub fn decrypt_in_place(
&mut self,
@@ -77,10 +66,10 @@ impl KeyCell {
) -> Result<(), Error> {
let key_reader = self.0.read();
let cipher = XChaCha20Poly1305::new(&key_reader);
let nonce = XNonce::from_slice(nonce.0.as_ref());
let nonce = XNonce::from(nonce.0);
let mut buffer = buffer.write();
let buffer: &mut Vec<u8> = buffer.as_mut();
cipher.decrypt_in_place(nonce, associated_data, buffer)
cipher.decrypt_in_place(&nonce, associated_data, buffer)
}
pub fn encrypt(
@@ -90,11 +79,11 @@ impl KeyCell {
plaintext: impl AsRef<[u8]>,
) -> Result<Vec<u8>, Error> {
let key_reader = self.0.read();
let mut cipher = XChaCha20Poly1305::new(&key_reader);
let nonce = XNonce::from_slice(nonce.0.as_ref());
let cipher = XChaCha20Poly1305::new(&key_reader);
let nonce = XNonce::from(nonce.0);
let ciphertext = cipher.encrypt(
nonce,
&nonce,
Payload {
msg: plaintext.as_ref(),
aad: associated_data,
@@ -105,7 +94,7 @@ impl KeyCell {
}
/// Derive a fixed-length key from the password using Argon2id, which is designed for password hashing and key derivation.
pub fn derive_key(password: &mut SafeCell<Vec<u8>>, salt: &[u8]) -> KeyCell {
pub fn derive_key(mut password: SafeCell<Vec<u8>>, salt: &Salt) -> KeyCell {
let params = {
#[cfg(debug_assertions)]
{
@@ -143,10 +132,10 @@ mod tests {
#[test]
fn encrypt_decrypt() {
static PASSWORD: &[u8] = b"password";
let mut password = SafeCell::new(PASSWORD.to_vec());
let password = SafeCell::new(PASSWORD.to_vec());
let salt = generate_salt();
let mut key = derive_key(&mut password, &salt);
let mut key = derive_key(password, &salt);
let nonce = Nonce(*b"unique nonce 123 1231233"); // 24 bytes for XChaCha20Poly1305
let associated_data = b"associated data";
let mut buffer = b"secret data".to_vec();

View File

@@ -1,41 +0,0 @@
use vsss_rs::Gf256;
#[derive(Debug, thiserror::Error)]
pub enum ShamirError {
#[error("Failed to split key: {0}")]
Split(String),
#[error("Failed to combine shares: {0}")]
Combine(String),
}
/// Split `key` into `total` shares where any `threshold` shares can reconstruct it.
/// Each returned Vec<u8> is a share with format [`identifier_byte`, `value_bytes`...].
pub fn split_key(
threshold: usize,
total: usize,
key: &[u8; 32],
rng: impl rand_core::RngCore + rand_core::CryptoRng,
) -> Result<Vec<Vec<u8>>, ShamirError> {
Gf256::split_array(threshold, total, key.as_slice(), rng)
.map_err(|e| ShamirError::Split(format!("{e:?}")))
}
/// Returns the minimum number of shares required to reconstruct the secret
/// for a committee of `n` operators.
#[must_use]
pub const fn shamir_threshold(n: usize) -> usize {
match n {
0 => panic!("No operators"),
1 => 1,
2 => 2,
n => n / 2 + 1,
}
}
/// Reconstruct the secret from `threshold` or more shares.
pub fn combine_shares(shares: &[Vec<u8>]) -> Result<[u8; 32], ShamirError> {
let bytes = Gf256::combine_array(shares)
.map_err(|e| ShamirError::Combine(format!("{e:?}")))?;
<[u8; 32]>::try_from(bytes.as_slice())
.map_err(|_| ShamirError::Combine("unexpected reconstructed key length".to_owned()))
}

View File

@@ -1,12 +0,0 @@
//! Typed bindings for the SQLite scalar functions used in Diesel expressions.
use diesel::sql_types::{Integer, Text};
diesel::define_sql_function! {
/// SQLite `unixepoch(modifier)` -- seconds since the Unix epoch.
///
/// Declared so timestamp comparisons are built by the query DSL instead of by
/// `format!`-ing a SQL fragment: the argument becomes a bind parameter and the
/// result type is checked against the column it is compared with.
fn unixepoch(modifier: Text) -> Integer;
}

View File

@@ -8,9 +8,7 @@ use diesel_migrations::{EmbeddedMigrations, MigrationHarness, embed_migrations};
use thiserror::Error;
use tracing::info;
pub mod functions;
pub mod models;
pub mod proposal;
pub mod schema;
pub type DatabaseConnection = SyncConnectionWrapper<SqliteConnection>;

View File

@@ -9,18 +9,16 @@ use crate::db::schema::{
integrity_envelope, root_key_history, tls_history,
};
use crate::db::proposal::ProposalKindTag;
use diesel::{prelude::*, sqlite::Sqlite};
use restructed::Models;
pub mod types {
use chrono::{DateTime, Utc};
use diesel::{
backend::Backend,
deserialize::{FromSql, FromSqlRow},
expression::AsExpression,
serialize::{IsNull, ToSql},
sql_types::{Integer, Text},
sql_types::Integer,
sqlite::{Sqlite, SqliteType},
};
@@ -63,7 +61,7 @@ pub mod types {
impl FromSql<Integer, Sqlite> for SqliteTimestamp {
fn from_sql(
mut bytes: <Sqlite as Backend>::RawValue<'_>,
mut bytes: <Sqlite as diesel::backend::Backend>::RawValue<'_>,
) -> diesel::deserialize::Result<Self> {
let Some(SqliteType::Long) = bytes.value_type() else {
return Err(format!(
@@ -143,42 +141,6 @@ pub mod types {
declare_id!(TlsHistoryId);
declare_id!(EvmWalletId);
declare_id!(ClientId);
declare_id!(ProposalId);
declare_id!(RecoveryOperatorIdentityId);
#[derive(Debug, Clone, PartialEq, Eq, AsExpression, FromSqlRow)]
#[diesel(sql_type = Text)]
pub enum ProposalStatus {
Pending,
Approved,
Rejected,
}
impl ToSql<Text, Sqlite> for ProposalStatus {
fn to_sql<'b>(
&'b self,
out: &mut diesel::serialize::Output<'b, '_, Sqlite>,
) -> diesel::serialize::Result {
let s: &str = match self {
Self::Pending => "pending",
Self::Approved => "approved",
Self::Rejected => "rejected",
};
<str as ToSql<Text, Sqlite>>::to_sql(s, out)
}
}
impl FromSql<Text, Sqlite> for ProposalStatus {
fn from_sql(bytes: <Sqlite as Backend>::RawValue<'_>) -> diesel::deserialize::Result<Self> {
let s = <String as FromSql<Text, Sqlite>>::from_sql(bytes)?;
match s.as_str() {
"pending" => Ok(Self::Pending),
"approved" => Ok(Self::Approved),
"rejected" => Ok(Self::Rejected),
other => Err(format!("Unknown proposal status: {other}").into()),
}
}
}
}
pub use types::*;
@@ -323,7 +285,6 @@ pub struct Operator {
pub id: OperatorId,
pub share: Vec<u8>,
pub share_nonce: Vec<u8>,
pub share_salt: Vec<u8>,
pub created_at: SqliteTimestamp,
pub updated_at: SqliteTimestamp,
}
@@ -476,58 +437,3 @@ pub struct IntegrityEnvelope {
pub signed_at: SqliteTimestamp,
pub created_at: SqliteTimestamp,
}
#[derive(Debug, Queryable, Selectable, Identifiable)]
#[diesel(table_name = schema::proposal, check_for_backend(Sqlite))]
pub struct Proposal {
pub id: ProposalId,
pub kind: ProposalKindTag,
pub initiator_id: OperatorIdentityId,
pub created_at: SqliteTimestamp,
pub expires_at: SqliteTimestamp,
pub status: ProposalStatus,
}
#[derive(Debug, Insertable)]
#[diesel(table_name = schema::proposal, check_for_backend(Sqlite))]
pub struct NewProposal {
pub kind: ProposalKindTag,
pub initiator_id: OperatorIdentityId,
// status defaults to 'pending' at the DB layer
pub expires_at: SqliteTimestamp,
}
#[derive(Debug, Queryable, Selectable, Identifiable)]
#[diesel(table_name = schema::proposal_vote, check_for_backend(Sqlite))]
pub struct ProposalVote {
pub id: i32,
pub proposal_id: ProposalId,
pub operator_id: OperatorIdentityId,
pub approve: bool,
pub signature: Vec<u8>,
pub voted_at: SqliteTimestamp,
}
#[derive(Debug, Insertable)]
#[diesel(table_name = schema::proposal_vote, check_for_backend(Sqlite))]
pub struct NewProposalVote {
pub proposal_id: ProposalId,
pub operator_id: OperatorIdentityId,
pub approve: bool,
pub signature: Vec<u8>,
}
#[derive(Debug, Insertable)]
#[diesel(table_name = schema::recovery_proposal_vote, check_for_backend(Sqlite))]
pub struct NewRecoveryProposalVote {
pub proposal_id: ProposalId,
pub recovery_operator_id: RecoveryOperatorIdentityId,
pub approve: bool,
pub signature: Vec<u8>,
}
#[derive(Debug, Insertable)]
#[diesel(table_name = schema::recovery_wakeup_request, check_for_backend(Sqlite))]
pub struct NewRecoveryWakeupRequest {
pub requested_by: OperatorIdentityId,
}

View File

@@ -1,48 +0,0 @@
//! Approving an SDK client so it may authenticate against the vault.
use super::{Proposal, ProposalKindTag};
use crate::db::{
DatabaseConnection, models::ProposalId, schema::proposal_approve_sdk_client as table,
};
use diesel::{
ExpressionMethods as _, Insertable, QueryDsl as _, QueryResult, Queryable, Selectable,
SelectableHelper as _, sqlite::Sqlite,
};
use diesel_async::RunQueryDsl as _;
#[derive(Debug, Clone, Copy, PartialEq, Eq, Queryable, Selectable, Insertable)]
#[diesel(table_name = table, check_for_backend(Sqlite))]
pub struct Settings {
pub client_id: i32,
}
pub struct ApproveSdkClient;
impl Proposal for ApproveSdkClient {
const KIND: ProposalKindTag = ProposalKindTag::ApproveSdkClient;
type Settings = Settings;
async fn insert(
proposal_id: ProposalId,
settings: &Self::Settings,
conn: &mut DatabaseConnection,
) -> QueryResult<()> {
diesel::insert_into(table::table)
.values((table::proposal_id.eq(proposal_id), settings))
.execute(conn)
.await
.map(drop)
}
async fn load(
proposal_id: ProposalId,
conn: &mut DatabaseConnection,
) -> QueryResult<Self::Settings> {
table::table
.find(proposal_id)
.select(Settings::as_select())
.first(conn)
.await
}
}

View File

@@ -1,49 +0,0 @@
//! Granting an SDK client visibility of a wallet.
use super::{Proposal, ProposalKindTag};
use crate::db::{
DatabaseConnection, models::ProposalId, schema::proposal_grant_wallet_access as table,
};
use diesel::{
ExpressionMethods as _, Insertable, QueryDsl as _, QueryResult, Queryable, Selectable,
SelectableHelper as _, sqlite::Sqlite,
};
use diesel_async::RunQueryDsl as _;
#[derive(Debug, Clone, Copy, PartialEq, Eq, Queryable, Selectable, Insertable)]
#[diesel(table_name = table, check_for_backend(Sqlite))]
pub struct Settings {
pub wallet_id: i32,
pub client_id: i32,
}
pub struct GrantWalletAccess;
impl Proposal for GrantWalletAccess {
const KIND: ProposalKindTag = ProposalKindTag::GrantWalletAccess;
type Settings = Settings;
async fn insert(
proposal_id: ProposalId,
settings: &Self::Settings,
conn: &mut DatabaseConnection,
) -> QueryResult<()> {
diesel::insert_into(table::table)
.values((table::proposal_id.eq(proposal_id), settings))
.execute(conn)
.await
.map(drop)
}
async fn load(
proposal_id: ProposalId,
conn: &mut DatabaseConnection,
) -> QueryResult<Self::Settings> {
table::table
.find(proposal_id)
.select(Settings::as_select())
.first(conn)
.await
}
}

View File

@@ -1,243 +0,0 @@
//! Governed actions and the parameters they carry.
//!
//! Laid out the way [`crate::evm::policies::Policy`] is: a unit type per kind, its
//! parameters as an associated `Settings`, and the persistence for those parameters
//! implemented next to them. Everything downstream is generic over [`Proposal`], so a
//! new kind is a new module plus one arm in each dispatcher -- nothing else in the
//! codebase has to learn about it.
use crate::db::{DatabaseConnection, models::ProposalId};
use diesel::{
QueryResult,
backend::Backend,
deserialize::{FromSql, FromSqlRow},
expression::AsExpression,
serialize::ToSql,
sql_types::Text,
sqlite::Sqlite,
};
use strum::{Display, EnumDiscriminants, EnumString, IntoStaticStr};
pub mod approve_sdk_client;
pub mod grant_wallet_access;
pub mod one_off_transaction;
pub mod persistent_grant;
pub mod replace_operator;
pub mod trigger_rekey;
pub use approve_sdk_client::ApproveSdkClient;
pub use grant_wallet_access::GrantWalletAccess;
pub use one_off_transaction::OneOffTransaction;
pub use persistent_grant::PersistentGrant;
pub use replace_operator::ReplaceOperator;
pub use trigger_rekey::TriggerRekey;
/// A governed action that owns the child table holding its parameters.
pub trait Proposal: Sized {
/// The value stored in `proposal.kind` for this action.
const KIND: ProposalKindTag;
/// Parameters the action is voted on with.
type Settings: Send + Sync + 'static;
/// Writes the child row carrying `settings`.
fn insert(
proposal_id: ProposalId,
settings: &Self::Settings,
conn: &mut DatabaseConnection,
) -> impl Future<Output = QueryResult<()>> + Send;
/// Reads the child row back. A missing row surfaces as [`diesel::result::Error::NotFound`],
/// which is what a proposal without its parameters is.
fn load(
proposal_id: ProposalId,
conn: &mut DatabaseConnection,
) -> impl Future<Output = QueryResult<Self::Settings>> + Send;
}
/// Parameters of a proposal, in the one shape that can cross the actor boundary.
///
/// Every variant holds the `Settings` of the matching [`Proposal`] implementation, so
/// the two cannot drift.
#[derive(Debug, Clone, EnumDiscriminants)]
#[strum_discriminants(
name(ProposalKindTag),
vis(pub),
derive(Display, EnumString, IntoStaticStr, AsExpression, FromSqlRow),
diesel(sql_type = Text),
strum(serialize_all = "snake_case")
)]
pub enum ProposalKind {
ApproveSdkClient(approve_sdk_client::Settings),
GrantWalletAccess(grant_wallet_access::Settings),
ReplaceOperator(replace_operator::Settings),
TriggerRekey,
ApprovePersistentGrant(Box<persistent_grant::Settings>),
ApproveOneOffTransaction(Box<one_off_transaction::Settings>),
}
impl ProposalKindTag {
/// Key-rotation proposals require every operator to approve (§3.3).
#[must_use]
pub const fn requires_full_quorum(self) -> bool {
matches!(self, Self::ReplaceOperator | Self::TriggerRekey)
}
}
/// Pins every implementation to the variant it is dispatched from. Without this a
/// mistyped `KIND` would compile and only show up as a proposal stored under the
/// wrong `proposal.kind`.
const _: () = {
assert!(
matches!(ApproveSdkClient::KIND, ProposalKindTag::ApproveSdkClient),
"ApproveSdkClient::KIND must be ProposalKindTag::ApproveSdkClient"
);
assert!(
matches!(GrantWalletAccess::KIND, ProposalKindTag::GrantWalletAccess),
"GrantWalletAccess::KIND must be ProposalKindTag::GrantWalletAccess"
);
assert!(
matches!(ReplaceOperator::KIND, ProposalKindTag::ReplaceOperator),
"ReplaceOperator::KIND must be ProposalKindTag::ReplaceOperator"
);
assert!(
matches!(TriggerRekey::KIND, ProposalKindTag::TriggerRekey),
"TriggerRekey::KIND must be ProposalKindTag::TriggerRekey"
);
assert!(
matches!(
PersistentGrant::KIND,
ProposalKindTag::ApprovePersistentGrant
),
"PersistentGrant::KIND must be ProposalKindTag::ApprovePersistentGrant"
);
assert!(
matches!(
OneOffTransaction::KIND,
ProposalKindTag::ApproveOneOffTransaction
),
"OneOffTransaction::KIND must be ProposalKindTag::ApproveOneOffTransaction"
);
};
/// Writes the child row carrying this proposal's parameters.
///
/// The only place the create path has to know every kind; each arm hands straight off
/// to the implementation that owns the table.
pub async fn insert_kind(
conn: &mut DatabaseConnection,
proposal_id: ProposalId,
kind: &ProposalKind,
) -> QueryResult<()> {
match kind {
ProposalKind::ApproveSdkClient(s) => ApproveSdkClient::insert(proposal_id, s, conn).await,
ProposalKind::GrantWalletAccess(s) => GrantWalletAccess::insert(proposal_id, s, conn).await,
ProposalKind::ReplaceOperator(s) => ReplaceOperator::insert(proposal_id, s, conn).await,
ProposalKind::TriggerRekey => TriggerRekey::insert(proposal_id, &(), conn).await,
ProposalKind::ApprovePersistentGrant(s) => {
PersistentGrant::insert(proposal_id, s, conn).await
}
ProposalKind::ApproveOneOffTransaction(s) => {
OneOffTransaction::insert(proposal_id, s, conn).await
}
}
}
/// Reads the parameters back for a `proposal.kind` that is only known at runtime.
pub async fn load_kind(
conn: &mut DatabaseConnection,
proposal_id: ProposalId,
tag: ProposalKindTag,
) -> QueryResult<ProposalKind> {
Ok(match tag {
ProposalKindTag::ApproveSdkClient => {
ProposalKind::ApproveSdkClient(ApproveSdkClient::load(proposal_id, conn).await?)
}
ProposalKindTag::GrantWalletAccess => {
ProposalKind::GrantWalletAccess(GrantWalletAccess::load(proposal_id, conn).await?)
}
ProposalKindTag::ReplaceOperator => {
ProposalKind::ReplaceOperator(ReplaceOperator::load(proposal_id, conn).await?)
}
ProposalKindTag::TriggerRekey => {
TriggerRekey::load(proposal_id, conn).await?;
ProposalKind::TriggerRekey
}
ProposalKindTag::ApprovePersistentGrant => ProposalKind::ApprovePersistentGrant(Box::new(
PersistentGrant::load(proposal_id, conn).await?,
)),
ProposalKindTag::ApproveOneOffTransaction => ProposalKind::ApproveOneOffTransaction(
Box::new(OneOffTransaction::load(proposal_id, conn).await?),
),
})
}
impl ToSql<Text, Sqlite> for ProposalKindTag {
fn to_sql<'b>(
&'b self,
out: &mut diesel::serialize::Output<'b, '_, Sqlite>,
) -> diesel::serialize::Result {
<str as ToSql<Text, Sqlite>>::to_sql(<&'static str>::from(*self), out)
}
}
impl FromSql<Text, Sqlite> for ProposalKindTag {
fn from_sql(bytes: <Sqlite as Backend>::RawValue<'_>) -> diesel::deserialize::Result<Self> {
let s = <String as FromSql<Text, Sqlite>>::from_sql(bytes)?;
s.parse()
.map_err(|_| format!("Unknown proposal kind: {s}").into())
}
}
/// SQLite has no unsigned integers; the column is `BigInt`, so a value that does not
/// round-trip is a corrupt row rather than something to silently wrap.
pub(crate) fn as_i64(value: u64) -> QueryResult<i64> {
i64::try_from(value).map_err(|_| diesel::result::Error::SerializationError(Box::new(Overflow)))
}
pub(crate) fn as_u64(value: i64) -> QueryResult<u64> {
u64::try_from(value)
.map_err(|_| diesel::result::Error::DeserializationError(Box::new(Overflow)))
}
pub(crate) fn fixed_bytes<const N: usize>(
bytes: &[u8],
column: &'static str,
) -> QueryResult<[u8; N]> {
<[u8; N]>::try_from(bytes)
.map_err(|_| diesel::result::Error::DeserializationError(Box::new(WrongLength(column))))
}
/// Reads a fixed-width column into an array, labelling failures with the column it came
/// from.
///
/// The label is taken from the field itself, so renaming a column cannot leave a stale
/// name behind in the error -- which is the whole reason this is a macro and not a
/// second argument.
///
/// - `fixed!(row.column)` for a `Vec<u8>` field
/// - `fixed!(opt row.column)` for a `Option<Vec<u8>>` one
/// - `fixed!(binding)` for a local
macro_rules! fixed {
(opt $src:ident.$field:ident) => {
$src.$field
.as_deref()
.map(|value| $crate::db::proposal::fixed_bytes(value, stringify!($field)))
.transpose()
};
($src:ident.$field:ident) => {
$crate::db::proposal::fixed_bytes(&$src.$field, stringify!($field))
};
($binding:ident) => {
$crate::db::proposal::fixed_bytes(&$binding, stringify!($binding))
};
}
pub(crate) use fixed;
#[derive(Debug, thiserror::Error)]
#[error("value does not fit a SQLite integer")]
struct Overflow;
#[derive(Debug, thiserror::Error)]
#[error("column {0} has the wrong byte length")]
struct WrongLength(&'static str);

View File

@@ -1,138 +0,0 @@
//! Signing a single EIP-1559 transaction.
use super::{Proposal, ProposalKindTag, as_i64, as_u64, fixed};
use crate::db::{
DatabaseConnection,
models::ProposalId,
schema::{proposal_one_off_transaction, proposal_one_off_transaction_result},
};
use diesel::{
Insertable, QueryDsl as _, QueryResult, Queryable, Selectable, SelectableHelper as _,
sqlite::Sqlite,
};
use diesel_async::RunQueryDsl as _;
#[derive(Debug, Clone, PartialEq, Eq)]
pub struct Settings {
pub client_id: i32,
pub wallet_address: [u8; 20],
pub chain_id: u64,
pub nonce: u64,
pub gas_limit: u64,
pub max_fee_per_gas: u128,
pub max_priority_fee_per_gas: u128,
pub to: [u8; 20],
pub value: [u8; 32],
pub input: Vec<u8>,
}
#[derive(Debug, Queryable, Selectable, Insertable)]
#[diesel(table_name = proposal_one_off_transaction, check_for_backend(Sqlite))]
struct Row {
proposal_id: ProposalId,
client_id: i32,
wallet_address: Vec<u8>,
chain_id: i64,
nonce: i64,
gas_limit: i64,
max_fee_per_gas: Vec<u8>,
max_priority_fee_per_gas: Vec<u8>,
to_address: Vec<u8>,
value: Vec<u8>,
input: Vec<u8>,
}
impl Row {
fn new(proposal_id: ProposalId, settings: &Settings) -> QueryResult<Self> {
Ok(Self {
proposal_id,
client_id: settings.client_id,
wallet_address: settings.wallet_address.to_vec(),
chain_id: as_i64(settings.chain_id)?,
nonce: as_i64(settings.nonce)?,
gas_limit: as_i64(settings.gas_limit)?,
max_fee_per_gas: settings.max_fee_per_gas.to_be_bytes().to_vec(),
max_priority_fee_per_gas: settings.max_priority_fee_per_gas.to_be_bytes().to_vec(),
to_address: settings.to.to_vec(),
value: settings.value.to_vec(),
input: settings.input.clone(),
})
}
fn into_settings(self) -> QueryResult<Settings> {
Ok(Settings {
client_id: self.client_id,
wallet_address: fixed!(self.wallet_address)?,
chain_id: as_u64(self.chain_id)?,
nonce: as_u64(self.nonce)?,
gas_limit: as_u64(self.gas_limit)?,
max_fee_per_gas: u128::from_be_bytes(fixed!(self.max_fee_per_gas)?),
max_priority_fee_per_gas: u128::from_be_bytes(fixed!(self.max_priority_fee_per_gas)?),
to: fixed!(self.to_address)?,
value: fixed!(self.value)?,
input: self.input,
})
}
}
pub struct OneOffTransaction;
impl Proposal for OneOffTransaction {
const KIND: ProposalKindTag = ProposalKindTag::ApproveOneOffTransaction;
type Settings = Settings;
async fn insert(
proposal_id: ProposalId,
settings: &Self::Settings,
conn: &mut DatabaseConnection,
) -> QueryResult<()> {
diesel::insert_into(proposal_one_off_transaction::table)
.values(&Row::new(proposal_id, settings)?)
.execute(conn)
.await
.map(drop)
}
async fn load(
proposal_id: ProposalId,
conn: &mut DatabaseConnection,
) -> QueryResult<Self::Settings> {
let row: Row = proposal_one_off_transaction::table
.find(proposal_id)
.select(Row::as_select())
.first(conn)
.await?;
row.into_settings()
}
}
/// The signature the vault produced for an approved transaction.
#[derive(Debug, Insertable)]
#[diesel(table_name = proposal_one_off_transaction_result, check_for_backend(Sqlite))]
struct SignatureRow {
proposal_id: ProposalId,
r: Vec<u8>,
s: Vec<u8>,
y_parity: i32,
}
/// Records the signature produced for an approved transaction, by component, so what
/// came back is as readable as what was signed.
pub async fn store_signature(
proposal_id: ProposalId,
signature: &alloy::signers::Signature,
conn: &mut DatabaseConnection,
) -> QueryResult<()> {
diesel::insert_into(proposal_one_off_transaction_result::table)
.values(&SignatureRow {
proposal_id,
r: signature.r().to_be_bytes::<32>().to_vec(),
s: signature.s().to_be_bytes::<32>().to_vec(),
y_parity: i32::from(signature.v()),
})
.execute(conn)
.await
.map(drop)
}

View File

@@ -1,271 +0,0 @@
//! Creating a standing EVM grant.
use super::{Proposal, ProposalKindTag, as_i64, as_u64, fixed};
use crate::db::{
DatabaseConnection,
models::ProposalId,
schema::{
proposal_persistent_grant, proposal_persistent_grant_ether,
proposal_persistent_grant_ether_target, proposal_persistent_grant_token,
proposal_persistent_grant_token_limit,
},
};
use diesel::{
ExpressionMethods as _, Insertable, OptionalExtension as _, QueryDsl as _, QueryResult,
Queryable, Selectable, SelectableHelper as _, sqlite::Sqlite,
};
use diesel_async::RunQueryDsl as _;
#[derive(Debug, Clone, PartialEq, Eq)]
pub struct Settings {
pub wallet_access_id: i32,
pub chain_id: u64,
pub valid_from_secs: Option<i64>,
pub valid_until_secs: Option<i64>,
pub max_gas_fee_per_gas: Option<[u8; 32]>,
pub max_priority_fee_per_gas: Option<[u8; 32]>,
pub rate_limit: Option<RateLimit>,
pub specific: Specific,
}
#[derive(Debug, Clone, Copy, PartialEq, Eq)]
pub struct RateLimit {
pub count: u32,
pub window_secs: i64,
}
#[derive(Debug, Clone, Copy, PartialEq, Eq)]
pub struct VolumeLimit {
pub max_volume: [u8; 32],
pub window_secs: i64,
}
#[derive(Debug, Clone, PartialEq, Eq)]
pub enum Specific {
EtherTransfer {
targets: Vec<[u8; 20]>,
limit: VolumeLimit,
},
TokenTransfer {
token_contract: [u8; 20],
receiver: Option<[u8; 20]>,
volume_limits: Vec<VolumeLimit>,
},
}
/// Shared settings, mirroring `evm_basic_grant`.
#[derive(Debug, Queryable, Selectable, Insertable)]
#[diesel(table_name = proposal_persistent_grant, check_for_backend(Sqlite))]
struct BaseRow {
proposal_id: ProposalId,
wallet_access_id: i32,
chain_id: i64,
valid_from: Option<i64>,
valid_until: Option<i64>,
max_gas_fee_per_gas: Option<Vec<u8>>,
max_priority_fee_per_gas: Option<Vec<u8>>,
rate_limit_count: Option<i32>,
rate_limit_window_secs: Option<i64>,
}
#[derive(Debug, Queryable, Selectable, Insertable)]
#[diesel(table_name = proposal_persistent_grant_ether, check_for_backend(Sqlite))]
struct EtherRow {
proposal_id: ProposalId,
window_secs: i64,
max_volume: Vec<u8>,
}
#[derive(Debug, Insertable)]
#[diesel(table_name = proposal_persistent_grant_ether_target, check_for_backend(Sqlite))]
struct NewEtherTarget {
proposal_id: ProposalId,
address: Vec<u8>,
}
#[derive(Debug, Queryable, Selectable, Insertable)]
#[diesel(table_name = proposal_persistent_grant_token, check_for_backend(Sqlite))]
struct TokenRow {
proposal_id: ProposalId,
token_contract: Vec<u8>,
receiver: Option<Vec<u8>>,
}
#[derive(Debug, Insertable)]
#[diesel(table_name = proposal_persistent_grant_token_limit, check_for_backend(Sqlite))]
struct NewTokenLimit {
proposal_id: ProposalId,
window_secs: i64,
max_volume: Vec<u8>,
}
impl BaseRow {
fn new(proposal_id: ProposalId, settings: &Settings) -> QueryResult<Self> {
Ok(Self {
proposal_id,
wallet_access_id: settings.wallet_access_id,
chain_id: as_i64(settings.chain_id)?,
valid_from: settings.valid_from_secs,
valid_until: settings.valid_until_secs,
max_gas_fee_per_gas: settings.max_gas_fee_per_gas.map(|v| v.to_vec()),
max_priority_fee_per_gas: settings.max_priority_fee_per_gas.map(|v| v.to_vec()),
// SQLite stores integers signed; a rate-limit count is a `u32`, so it
// round-trips through the bit pattern rather than a fallible range check.
rate_limit_count: settings.rate_limit.map(|r| r.count.cast_signed()),
rate_limit_window_secs: settings.rate_limit.map(|r| r.window_secs),
})
}
fn into_settings(self, specific: Specific) -> QueryResult<Settings> {
Ok(Settings {
wallet_access_id: self.wallet_access_id,
chain_id: as_u64(self.chain_id)?,
valid_from_secs: self.valid_from,
valid_until_secs: self.valid_until,
max_gas_fee_per_gas: fixed!(opt self.max_gas_fee_per_gas)?,
max_priority_fee_per_gas: fixed!(opt self.max_priority_fee_per_gas)?,
rate_limit: self.rate_limit_count.zip(self.rate_limit_window_secs).map(
|(count, window_secs)| RateLimit {
count: count.cast_unsigned(),
window_secs,
},
),
specific,
})
}
}
pub struct PersistentGrant;
impl Proposal for PersistentGrant {
const KIND: ProposalKindTag = ProposalKindTag::ApprovePersistentGrant;
type Settings = Settings;
async fn insert(
proposal_id: ProposalId,
settings: &Self::Settings,
conn: &mut DatabaseConnection,
) -> QueryResult<()> {
diesel::insert_into(proposal_persistent_grant::table)
.values(&BaseRow::new(proposal_id, settings)?)
.execute(conn)
.await?;
match &settings.specific {
Specific::EtherTransfer { targets, limit } => {
diesel::insert_into(proposal_persistent_grant_ether::table)
.values(&EtherRow {
proposal_id,
window_secs: limit.window_secs,
max_volume: limit.max_volume.to_vec(),
})
.execute(conn)
.await?;
// Row at a time: SQLite has no multi-row VALUES clause in diesel-async.
for address in targets {
diesel::insert_into(proposal_persistent_grant_ether_target::table)
.values(&NewEtherTarget {
proposal_id,
address: address.to_vec(),
})
.execute(conn)
.await?;
}
}
Specific::TokenTransfer {
token_contract,
receiver,
volume_limits,
} => {
diesel::insert_into(proposal_persistent_grant_token::table)
.values(&TokenRow {
proposal_id,
token_contract: token_contract.to_vec(),
receiver: receiver.map(|r| r.to_vec()),
})
.execute(conn)
.await?;
for limit in volume_limits {
diesel::insert_into(proposal_persistent_grant_token_limit::table)
.values(&NewTokenLimit {
proposal_id,
window_secs: limit.window_secs,
max_volume: limit.max_volume.to_vec(),
})
.execute(conn)
.await?;
}
}
}
Ok(())
}
async fn load(
proposal_id: ProposalId,
conn: &mut DatabaseConnection,
) -> QueryResult<Self::Settings> {
let base: BaseRow = proposal_persistent_grant::table
.find(proposal_id)
.select(BaseRow::as_select())
.first(conn)
.await?;
let ether: Option<EtherRow> = proposal_persistent_grant_ether::table
.find(proposal_id)
.select(EtherRow::as_select())
.first(conn)
.await
.optional()?;
let specific = if let Some(ether) = ether {
let addresses: Vec<Vec<u8>> = proposal_persistent_grant_ether_target::table
.filter(proposal_persistent_grant_ether_target::proposal_id.eq(proposal_id))
.select(proposal_persistent_grant_ether_target::address)
.load(conn)
.await?;
let targets = addresses
.iter()
.map(|address| fixed!(address))
.collect::<QueryResult<Vec<_>>>()?;
Specific::EtherTransfer {
targets,
limit: VolumeLimit {
max_volume: fixed!(ether.max_volume)?,
window_secs: ether.window_secs,
},
}
} else {
let token: TokenRow = proposal_persistent_grant_token::table
.find(proposal_id)
.select(TokenRow::as_select())
.first(conn)
.await?;
let rows: Vec<(i64, Vec<u8>)> = proposal_persistent_grant_token_limit::table
.filter(proposal_persistent_grant_token_limit::proposal_id.eq(proposal_id))
.select((
proposal_persistent_grant_token_limit::window_secs,
proposal_persistent_grant_token_limit::max_volume,
))
.load(conn)
.await?;
let volume_limits = rows
.into_iter()
.map(|(window_secs, max_volume)| {
Ok(VolumeLimit {
max_volume: fixed!(max_volume)?,
window_secs,
})
})
.collect::<QueryResult<Vec<_>>>()?;
Specific::TokenTransfer {
token_contract: fixed!(token.token_contract)?,
receiver: fixed!(opt token.receiver)?,
volume_limits,
}
};
base.into_settings(specific)
}
}

View File

@@ -1,51 +0,0 @@
//! Replacing an operator's key, which also triggers a Shamir re-key (§3.3).
use super::{Proposal, ProposalKindTag};
use crate::db::{
DatabaseConnection,
models::{OperatorIdentityId, ProposalId},
schema::proposal_replace_operator as table,
};
use diesel::{
ExpressionMethods as _, Insertable, QueryDsl as _, QueryResult, Queryable, Selectable,
SelectableHelper as _, sqlite::Sqlite,
};
use diesel_async::RunQueryDsl as _;
#[derive(Debug, Clone, PartialEq, Eq, Queryable, Selectable, Insertable)]
#[diesel(table_name = table, check_for_backend(Sqlite))]
pub struct Settings {
pub old_operator_id: OperatorIdentityId,
pub new_pubkey: Vec<u8>,
}
pub struct ReplaceOperator;
impl Proposal for ReplaceOperator {
const KIND: ProposalKindTag = ProposalKindTag::ReplaceOperator;
type Settings = Settings;
async fn insert(
proposal_id: ProposalId,
settings: &Self::Settings,
conn: &mut DatabaseConnection,
) -> QueryResult<()> {
diesel::insert_into(table::table)
.values((table::proposal_id.eq(proposal_id), settings))
.execute(conn)
.await
.map(drop)
}
async fn load(
proposal_id: ProposalId,
conn: &mut DatabaseConnection,
) -> QueryResult<Self::Settings> {
table::table
.find(proposal_id)
.select(Settings::as_select())
.first(conn)
.await
}
}

View File

@@ -1,28 +0,0 @@
//! A Shamir re-key over the current operator set (§3.3).
use super::{Proposal, ProposalKindTag};
use crate::db::{DatabaseConnection, models::ProposalId};
use diesel::QueryResult;
pub struct TriggerRekey;
impl Proposal for TriggerRekey {
const KIND: ProposalKindTag = ProposalKindTag::TriggerRekey;
type Settings = ();
async fn insert(
_proposal_id: ProposalId,
_settings: &Self::Settings,
_conn: &mut DatabaseConnection,
) -> QueryResult<()> {
Ok(())
}
async fn load(
_proposal_id: ProposalId,
_conn: &mut DatabaseConnection,
) -> QueryResult<Self::Settings> {
Ok(())
}
}

View File

@@ -157,7 +157,6 @@ diesel::table! {
id -> Nullable<Integer>,
share -> Binary,
share_nonce -> Binary,
share_salt -> Binary,
created_at -> Integer,
updated_at -> Integer,
}
@@ -172,165 +171,6 @@ diesel::table! {
}
}
diesel::table! {
proposal (id) {
id -> Integer,
kind -> Text,
initiator_id -> Integer,
created_at -> Integer,
expires_at -> Integer,
status -> Text,
}
}
diesel::table! {
proposal_approve_sdk_client (proposal_id) {
proposal_id -> Integer,
client_id -> Integer,
}
}
diesel::table! {
proposal_grant_wallet_access (proposal_id) {
proposal_id -> Integer,
wallet_id -> Integer,
client_id -> Integer,
}
}
diesel::table! {
proposal_replace_operator (proposal_id) {
proposal_id -> Integer,
old_operator_id -> Integer,
new_pubkey -> Binary,
}
}
diesel::table! {
proposal_one_off_transaction (proposal_id) {
proposal_id -> Integer,
client_id -> Integer,
wallet_address -> Binary,
chain_id -> BigInt,
nonce -> BigInt,
gas_limit -> BigInt,
max_fee_per_gas -> Binary,
max_priority_fee_per_gas -> Binary,
to_address -> Binary,
value -> Binary,
input -> Binary,
}
}
diesel::table! {
proposal_persistent_grant (proposal_id) {
proposal_id -> Integer,
wallet_access_id -> Integer,
chain_id -> BigInt,
valid_from -> Nullable<BigInt>,
valid_until -> Nullable<BigInt>,
max_gas_fee_per_gas -> Nullable<Binary>,
max_priority_fee_per_gas -> Nullable<Binary>,
rate_limit_count -> Nullable<Integer>,
rate_limit_window_secs -> Nullable<BigInt>,
}
}
diesel::table! {
proposal_persistent_grant_ether (proposal_id) {
proposal_id -> Integer,
window_secs -> BigInt,
max_volume -> Binary,
}
}
diesel::table! {
proposal_persistent_grant_ether_target (id) {
id -> Integer,
proposal_id -> Integer,
address -> Binary,
}
}
diesel::table! {
proposal_persistent_grant_token (proposal_id) {
proposal_id -> Integer,
token_contract -> Binary,
receiver -> Nullable<Binary>,
}
}
diesel::table! {
proposal_persistent_grant_token_limit (id) {
id -> Integer,
proposal_id -> Integer,
window_secs -> BigInt,
max_volume -> Binary,
}
}
diesel::table! {
proposal_one_off_transaction_result (proposal_id) {
proposal_id -> Integer,
r -> Binary,
s -> Binary,
y_parity -> Integer,
created_at -> Integer,
}
}
diesel::table! {
recovery_operator (id) {
id -> Integer,
share -> Binary,
share_nonce -> Binary,
share_salt -> Binary,
created_at -> Integer,
updated_at -> Integer,
}
}
diesel::table! {
recovery_operator_identity (id) {
id -> Integer,
public_key -> Binary,
created_at -> Integer,
updated_at -> Integer,
}
}
diesel::table! {
recovery_wakeup_request (id) {
id -> Integer,
requested_by -> Integer,
requested_at -> Integer,
cancelled_by -> Nullable<Integer>,
cancelled_at -> Nullable<Integer>,
}
}
diesel::table! {
recovery_proposal_vote (id) {
id -> Integer,
proposal_id -> Integer,
recovery_operator_id -> Integer,
approve -> Bool,
signature -> Binary,
voted_at -> Integer,
}
}
diesel::table! {
proposal_vote (id) {
id -> Integer,
proposal_id -> Integer,
operator_id -> Integer,
approve -> Bool,
signature -> Binary,
voted_at -> Integer,
}
}
diesel::table! {
program_client (id) {
id -> Integer,
@@ -384,38 +224,9 @@ diesel::joinable!(evm_wallet_access -> evm_wallet (wallet_id));
diesel::joinable!(evm_wallet_access -> program_client (client_id));
diesel::joinable!(operator -> operator_identity (id));
diesel::joinable!(program_client -> client_metadata (metadata_id));
diesel::joinable!(proposal -> operator_identity (initiator_id));
diesel::joinable!(proposal_one_off_transaction_result -> proposal_one_off_transaction (proposal_id));
diesel::joinable!(proposal_approve_sdk_client -> proposal (proposal_id));
diesel::joinable!(proposal_grant_wallet_access -> proposal (proposal_id));
diesel::joinable!(proposal_replace_operator -> proposal (proposal_id));
diesel::joinable!(proposal_one_off_transaction -> proposal (proposal_id));
diesel::joinable!(proposal_persistent_grant -> proposal (proposal_id));
diesel::joinable!(proposal_persistent_grant_ether -> proposal_persistent_grant (proposal_id));
diesel::joinable!(proposal_persistent_grant_token -> proposal_persistent_grant (proposal_id));
diesel::joinable!(proposal_vote -> proposal (proposal_id));
diesel::joinable!(proposal_vote -> operator_identity (operator_id));
diesel::joinable!(recovery_operator -> recovery_operator_identity (id));
diesel::joinable!(recovery_proposal_vote -> proposal (proposal_id));
diesel::joinable!(recovery_proposal_vote -> recovery_operator_identity (recovery_operator_id));
diesel::joinable!(recovery_wakeup_request -> operator_identity (requested_by));
diesel::allow_tables_to_appear_in_same_query!(
aead_encrypted,
proposal_one_off_transaction_result,
proposal_approve_sdk_client,
proposal_grant_wallet_access,
proposal_replace_operator,
proposal_one_off_transaction,
proposal_persistent_grant,
proposal_persistent_grant_ether,
proposal_persistent_grant_ether_target,
proposal_persistent_grant_token,
proposal_persistent_grant_token_limit,
recovery_operator,
recovery_operator_identity,
recovery_wakeup_request,
recovery_proposal_vote,
arbiter_settings,
client_metadata,
client_metadata_history,
@@ -433,8 +244,6 @@ diesel::allow_tables_to_appear_in_same_query!(
operator,
operator_identity,
program_client,
proposal,
proposal_vote,
root_key_history,
tls_history,
);

View File

@@ -1,28 +1,34 @@
use diesel_async::{AsyncConnection, RunQueryDsl};
use kameo::actor::ActorRef;
use crate::{
actors::vault::Vault,
crypto::integrity,
db::{
self, DatabaseError,
models::{
EvmBasicGrant, EvmWalletAccess, NewEvmBasicGrant, NewEvmTransactionLog, SqliteTimestamp,
EvmBasicGrant, EvmEtherTransferGrant, EvmEtherTransferGrantTarget,
EvmEtherTransferLimit, EvmTokenTransferGrant, EvmTokenTransferVolumeLimit,
EvmWalletAccess, NewEvmBasicGrant, NewEvmTransactionLog, SqliteTimestamp,
},
schema::{self, evm_transaction_log},
},
evm::policies::{
CombinedSettings, DatabaseID, EvalContext, EvalViolation, Grant, Policy,
SharedGrantSettings, SpecificGrant, SpecificMeaning, ether_transfer::EtherTransfer,
token_transfers::TokenTransfer,
SharedGrantSettings, SpecificGrant, SpecificMeaning, VolumeRateLimit,
ether_transfer::EtherTransfer, token_transfers::TokenTransfer,
},
};
use alloy::{
consensus::TxEip1559,
primitives::{TxKind, U256},
primitives::{Address, TxKind, U256},
};
use chrono::Utc;
use diesel::{ExpressionMethods as _, QueryDsl as _, QueryResult, insert_into, sqlite::Sqlite};
use diesel_async::{AsyncConnection, RunQueryDsl};
use kameo::actor::ActorRef;
use diesel::{
ExpressionMethods as _, OptionalExtension, QueryDsl as _, QueryResult, SelectableHelper,
insert_into, sqlite::Sqlite, update,
};
pub mod abi;
pub mod safe_signer;
@@ -272,6 +278,151 @@ impl Engine {
Ok(id)
}
pub async fn revoke_grant(
&self,
basic_grant_id: i32,
) -> Result<(), DatabaseError> {
let mut conn = self.db.get().await.map_err(DatabaseError::from)?;
let vault = self.vault.clone();
conn.transaction(async move |conn| {
use crate::db::schema::{
evm_basic_grant, evm_ether_transfer_grant, evm_ether_transfer_grant_target,
evm_ether_transfer_limit, evm_token_transfer_grant,
evm_token_transfer_volume_limit,
};
update(evm_basic_grant::table)
.filter(evm_basic_grant::id.eq(basic_grant_id))
.set(evm_basic_grant::revoked_at.eq(SqliteTimestamp(Utc::now())))
.execute(&mut *conn)
.await?;
let basic_grant: EvmBasicGrant = evm_basic_grant::table
.filter(evm_basic_grant::id.eq(basic_grant_id))
.select(EvmBasicGrant::as_select())
.first(&mut *conn)
.await?;
let shared = SharedGrantSettings::try_from_model(basic_grant)?;
if let Some(ether_grant) = evm_ether_transfer_grant::table
.filter(evm_ether_transfer_grant::basic_grant_id.eq(basic_grant_id))
.select(EvmEtherTransferGrant::as_select())
.first(&mut *conn)
.await
.optional()?
{
let target_rows: Vec<EvmEtherTransferGrantTarget> =
evm_ether_transfer_grant_target::table
.filter(evm_ether_transfer_grant_target::grant_id.eq(ether_grant.id))
.select(EvmEtherTransferGrantTarget::as_select())
.load(&mut *conn)
.await?;
let targets: Vec<Address> = target_rows
.into_iter()
.filter_map(|target| {
let arr: [u8; 20] = target.address.try_into().ok()?;
Some(Address::from(arr))
})
.collect();
let limit: EvmEtherTransferLimit = evm_ether_transfer_limit::table
.filter(evm_ether_transfer_limit::id.eq(ether_grant.limit_id))
.select(EvmEtherTransferLimit::as_select())
.first(&mut *conn)
.await?;
let settings = CombinedSettings {
shared: shared.clone(),
specific: policies::ether_transfer::Settings {
target: targets,
limit: VolumeRateLimit {
max_volume: utils::try_bytes_to_u256(&limit.max_volume).map_err(
|err| {
diesel::result::Error::DeserializationError(Box::new(err))
},
)?,
window: chrono::Duration::seconds(limit.window_secs.into()),
},
},
};
integrity::sign_entity(&mut *conn, &vault, &settings, basic_grant_id)
.await
.map_err(|_| diesel::result::Error::RollbackTransaction)?;
return QueryResult::Ok(());
}
if let Some(token_grant) = evm_token_transfer_grant::table
.filter(evm_token_transfer_grant::basic_grant_id.eq(basic_grant_id))
.select(EvmTokenTransferGrant::as_select())
.first(&mut *conn)
.await
.optional()?
{
let volume_limit_rows: Vec<EvmTokenTransferVolumeLimit> =
evm_token_transfer_volume_limit::table
.filter(evm_token_transfer_volume_limit::grant_id.eq(token_grant.id))
.select(EvmTokenTransferVolumeLimit::as_select())
.load(&mut *conn)
.await?;
let volume_limits: Vec<VolumeRateLimit> = volume_limit_rows
.into_iter()
.map(|row| {
Ok(VolumeRateLimit {
max_volume: utils::try_bytes_to_u256(&row.max_volume).map_err(
|err| {
diesel::result::Error::DeserializationError(Box::new(err))
},
)?,
window: chrono::Duration::seconds(row.window_secs.into()),
})
})
.collect::<QueryResult<Vec<_>>>()?;
let target: Option<Address> = match token_grant.receiver {
None => None,
Some(bytes) => {
let arr: [u8; 20] = bytes.try_into().map_err(|_| {
diesel::result::Error::DeserializationError(
"Invalid receiver address length".into(),
)
})?;
Some(Address::from(arr))
}
};
let token_contract: [u8; 20] =
token_grant.token_contract.clone().try_into().map_err(|_| {
diesel::result::Error::DeserializationError(
"Invalid token contract address length".into(),
)
})?;
let settings = CombinedSettings {
shared,
specific: policies::token_transfers::Settings {
token_contract: Address::from(token_contract),
target,
volume_limits,
},
};
integrity::sign_entity(&mut *conn, &vault, &settings, basic_grant_id)
.await
.map_err(|_| diesel::result::Error::RollbackTransaction)?;
return QueryResult::Ok(());
}
Err(diesel::result::Error::NotFound)
})
.await
.map_err(DatabaseError::from)
}
async fn list_one_kind<Kind: Policy, Y>(
&self,
conn: &mut impl AsyncConnection<Backend = Sqlite>,
@@ -351,11 +502,15 @@ impl Engine {
#[cfg(test)]
mod tests {
use alloy::primitives::{Address, Bytes, U256, address};
use arbiter_crypto::safecell::{SafeCell, SafeCellHandle as _};
use chrono::{Duration, Utc};
use diesel::{SelectableHelper, insert_into};
use diesel_async::RunQueryDsl;
use kameo::{actor::ActorRef, prelude::Spawn};
use rstest::rstest;
use crate::actors::{GlobalActors, vault::{Bootstrap, Vault}};
use crate::crypto::integrity;
use crate::db::{
self, DatabaseConnection,
models::{
@@ -364,8 +519,10 @@ mod tests {
},
schema::{evm_basic_grant, evm_transaction_log},
};
use crate::evm::policies::ether_transfer::EtherTransfer;
use crate::evm::policies::{
EvalContext, EvalViolation, SharedGrantSettings, TransactionRateLimit,
CombinedSettings, EvalContext, EvalViolation, Policy, SharedGrantSettings,
TransactionRateLimit, VolumeRateLimit,
};
use super::check_shared_constraints;
@@ -397,6 +554,7 @@ mod tests {
chain: CHAIN_ID,
valid_from: None,
valid_until: None,
revoked_at: None,
max_gas_fee_per_gas: None,
max_priority_fee_per_gas: None,
rate_limit: None,
@@ -605,4 +763,115 @@ mod tests {
assert!(violations.is_empty());
}
}
async fn bootstrapped_vault(db: &db::DatabasePool) -> ActorRef<Vault> {
let actor = Vault::spawn(
Vault::new(db.clone(), GlobalActors::spawn_message_bus())
.await
.unwrap(),
);
actor
.ask(Bootstrap {
seal_key_raw: SafeCell::new(b"integrity-test-seal-key".to_vec()),
})
.await
.unwrap();
actor
}
#[tokio::test]
async fn revoke_grant_preserves_revoked_integrity() {
use crate::db::schema::evm_basic_grant;
use diesel::ExpressionMethods as _;
let db = db::create_test_pool().await;
let vault = bootstrapped_vault(&db).await;
let engine = super::Engine::new(db.clone(), vault.clone());
let full_grant = CombinedSettings {
shared: SharedGrantSettings {
wallet_access_id: WALLET_ACCESS_ID,
chain: CHAIN_ID,
valid_from: None,
valid_until: None,
revoked_at: None,
max_gas_fee_per_gas: None,
max_priority_fee_per_gas: None,
rate_limit: None,
},
specific: super::policies::ether_transfer::Settings {
target: vec![RECIPIENT],
limit: VolumeRateLimit {
max_volume: U256::from(100u64),
window: Duration::hours(1),
},
},
};
let grant_id = engine
.create_grant::<EtherTransfer>(full_grant)
.await
.unwrap();
engine.revoke_grant(grant_id).await.unwrap();
let mut conn = db.get().await.unwrap();
diesel::update(evm_basic_grant::table)
.filter(evm_basic_grant::id.eq(grant_id))
.set(evm_basic_grant::revoked_at.eq::<Option<SqliteTimestamp>>(None))
.execute(&mut conn)
.await
.unwrap();
let wallet_access = EvmWalletAccess {
id: WALLET_ACCESS_ID,
wallet_id: EvmWalletId::from_raw(10),
client_id: 20,
created_at: SqliteTimestamp(Utc::now()),
};
let context = EvalContext {
target: wallet_access,
chain: CHAIN_ID,
to: RECIPIENT,
value: U256::ONE,
calldata: Bytes::new(),
max_fee_per_gas: 1,
max_priority_fee_per_gas: 1,
};
let grant = EtherTransfer::try_find_grant(
&context, &mut conn,
)
.await
.unwrap()
.unwrap();
let result =
integrity::verify_entity(&mut conn, &vault, &grant.settings, grant.id).await;
assert!(matches!(
result,
Err(integrity::Error::MacMismatch { .. })
));
}
#[test]
fn shared_settings_hash_changes_when_revoked_at_changes() {
use arbiter_crypto::hashing::Hashable;
use sha2::Digest;
let active = shared_settings();
let revoked = SharedGrantSettings {
revoked_at: Some(Utc::now()),
..shared_settings()
};
let mut active_hash = sha2::Sha256::new();
active.hash(&mut active_hash);
let mut revoked_hash = sha2::Sha256::new();
revoked.hash(&mut revoked_hash);
assert_ne!(active_hash.finalize(), revoked_hash.finalize());
}
}

View File

@@ -144,6 +144,7 @@ pub struct SharedGrantSettings {
pub valid_from: Option<DateTime<Utc>>,
pub valid_until: Option<DateTime<Utc>>,
pub revoked_at: Option<DateTime<Utc>>,
pub max_gas_fee_per_gas: Option<U256>,
pub max_priority_fee_per_gas: Option<U256>,
@@ -158,6 +159,7 @@ impl SharedGrantSettings {
chain: model.chain_id.into(),
valid_from: model.valid_from.map(Into::into),
valid_until: model.valid_until.map(Into::into),
revoked_at: model.revoked_at.map(Into::into),
max_gas_fee_per_gas: model
.max_gas_fee_per_gas
.map(|b| utils::try_bytes_to_u256(&b))

View File

@@ -80,6 +80,7 @@ fn shared() -> SharedGrantSettings {
chain: CHAIN_ID,
valid_from: None,
valid_until: None,
revoked_at: None,
max_gas_fee_per_gas: None,
max_priority_fee_per_gas: None,
rate_limit: None,

View File

@@ -98,6 +98,7 @@ fn shared() -> SharedGrantSettings {
chain: CHAIN_ID,
valid_from: None,
valid_until: None,
revoked_at: None,
max_gas_fee_per_gas: None,
max_priority_fee_per_gas: None,
rate_limit: None,

View File

@@ -44,7 +44,7 @@ impl std::fmt::Debug for SafeSigner {
/// Returns the protected key bytes and the derived Ethereum address.
pub fn generate(rng: &mut impl rand::Rng) -> (SafeCell<[u8; 32]>, Address) {
loop {
let mut cell = SafeCell::new_inline_default(|w: &mut [u8; 32]| {
let mut cell = SafeCell::new_inline(|w: &mut [u8; 32]| {
rng.fill_bytes(w);
});

View File

@@ -200,7 +200,7 @@ impl Convert for auth::Outbound {
.timestamp
.timestamp_nanos_opt()
.expect("timestamp within range")
as u64,
.cast_unsigned(),
random: challenge.nonce.to_vec(),
})
}

View File

@@ -19,7 +19,6 @@ use tracing::{error, info, warn};
mod auth;
mod evm;
mod governance;
mod inbound;
mod outbound;
mod sdk_client;
@@ -116,7 +115,6 @@ async fn dispatch_inner(
warn!("Unsupported post-auth operator auth request");
Err(Status::invalid_argument("Unsupported operator request"))
}
OperatorRequestPayload::Governance(req) => governance::dispatch(actor, req).await,
}
}

View File

@@ -80,7 +80,7 @@ impl Sender<Result<auth::Outbound, auth::Error>> for AuthTransportAdapter<'_> {
.timestamp
.timestamp_nanos_opt()
.expect("timestamp within range")
as u64,
.cast_unsigned(),
random: challenge.nonce.to_vec(),
})
}
@@ -171,7 +171,7 @@ impl Receiver<auth::Inbound> for AuthTransportAdapter<'_> {
Some(auth::Inbound::AuthChallengeRequest {
pubkey,
bootstrap_token,
bootstrap_token: bootstrap_token.map(String::into_bytes),
})
}
AuthRequestPayload::ChallengeSolution(ProtoAuthChallengeSolution { signature }) => {

View File

@@ -217,6 +217,11 @@ async fn handle_sign_transaction(
result: Some(vet_error.convert()),
}
}
Err(kameo::error::SendError::HandlerError(
SessionSignTransactionError::ClientNotConnected,
)) => {
return Err(Status::permission_denied("client not connected"));
}
Err(kameo::error::SendError::HandlerError(SessionSignTransactionError::Internal)) => {
EvmSignTransactionResponse {
result: Some(EvmSignTransactionResult::Error(

View File

@@ -1,253 +0,0 @@
use crate::{
actors::proposal_manager::{Error as ProposalError, VoteOutcome},
db::models::{OperatorIdentityId, ProposalId},
db::proposal::{
ProposalKind, approve_sdk_client, grant_wallet_access, one_off_transaction,
persistent_grant, replace_operator,
},
peers::operator::{
OperatorSession,
session::handlers::{HandleCastVote, HandleCreateProposal, HandleQueryPending},
},
};
use arbiter_proto::proto::operator::{
governance::{
self as proto_gov, CreateProposalRequest, QueryPendingRequest, QueryPendingResponse,
VoteOutcome as ProtoVoteOutcome, create_proposal_request::Kind as ProtoKind,
request::Payload as GovRequestPayload, response::Payload as GovResponsePayload,
},
operator_response::Payload as OperatorResponsePayload,
};
use kameo::actor::ActorRef;
use tonic::Status;
use tracing::warn;
const fn wrap(payload: GovResponsePayload) -> OperatorResponsePayload {
OperatorResponsePayload::Governance(proto_gov::Response {
payload: Some(payload),
})
}
pub(super) async fn dispatch(
actor: &ActorRef<OperatorSession>,
req: proto_gov::Request,
) -> Result<Option<OperatorResponsePayload>, Status> {
let Some(payload) = req.payload else {
return Err(Status::invalid_argument(
"Missing governance request payload",
));
};
match payload {
GovRequestPayload::Create(req) => handle_create(actor, req).await,
GovRequestPayload::Vote(req) => handle_vote(actor, req).await,
GovRequestPayload::Query(QueryPendingRequest {}) => handle_query(actor).await,
}
}
async fn handle_create(
actor: &ActorRef<OperatorSession>,
req: CreateProposalRequest,
) -> Result<Option<OperatorResponsePayload>, Status> {
let kind = match req.kind {
Some(ProtoKind::ApproveSdkClient(p)) => {
ProposalKind::ApproveSdkClient(approve_sdk_client::Settings {
client_id: p.client_id,
})
}
Some(ProtoKind::GrantWalletAccess(p)) => {
ProposalKind::GrantWalletAccess(grant_wallet_access::Settings {
wallet_id: p.wallet_id,
client_id: p.client_id,
})
}
Some(ProtoKind::ReplaceOperator(p)) => {
ProposalKind::ReplaceOperator(replace_operator::Settings {
old_operator_id: OperatorIdentityId::from_raw(p.old_operator_id),
new_pubkey: p.new_pubkey,
})
}
Some(ProtoKind::TriggerRekey(())) => ProposalKind::TriggerRekey,
Some(ProtoKind::ApprovePersistentGrant(p)) => {
ProposalKind::ApprovePersistentGrant(Box::new(parse_persistent_grant(p)?))
}
Some(ProtoKind::ApproveOneOffTransaction(p)) => {
ProposalKind::ApproveOneOffTransaction(Box::new(parse_one_off_transaction(p)?))
}
None => return Err(Status::invalid_argument("Missing proposal kind")),
};
let proposal_id = actor
.ask(HandleCreateProposal {
kind,
ttl_secs: req.ttl_secs,
})
.await
.map_err(|e| {
warn!(?e, "create_proposal failed");
Status::internal("Failed to create proposal")
})?;
Ok(Some(wrap(GovResponsePayload::Created(
proto_gov::CreateProposalResponse {
proposal_id: proposal_id.to_raw(),
},
))))
}
/// Validates the grant where the request enters, so a malformed one is refused before
/// any operator votes on it instead of failing after quorum.
fn parse_persistent_grant(
p: proto_gov::ApprovePersistentGrantPayload,
) -> Result<persistent_grant::Settings, Status> {
use proto_gov::approve_persistent_grant_payload::Specific;
let volume =
|l: proto_gov::VolumeLimitProto| -> Result<persistent_grant::VolumeLimit, Status> {
Ok(persistent_grant::VolumeLimit {
max_volume: fixed(&l.max_volume, "max_volume must be 32 bytes")?,
window_secs: l.window_secs,
})
};
let specific = match p.specific {
Some(Specific::EtherTransfer(spec)) => {
let targets = spec
.targets
.iter()
.map(|target| fixed(target, "ether transfer target must be 20 bytes"))
.collect::<Result<Vec<_>, _>>()?;
let limit = spec
.limit
.ok_or_else(|| Status::invalid_argument("missing ether transfer limit"))?;
persistent_grant::Specific::EtherTransfer {
targets,
limit: volume(limit)?,
}
}
Some(Specific::TokenTransfer(spec)) => {
let volume_limits = spec
.volume_limits
.into_iter()
.map(volume)
.collect::<Result<Vec<_>, _>>()?;
persistent_grant::Specific::TokenTransfer {
token_contract: fixed(&spec.token_contract, "token_contract must be 20 bytes")?,
receiver: spec
.target
.map(|t| fixed(&t, "token transfer target must be 20 bytes"))
.transpose()?,
volume_limits,
}
}
None => return Err(Status::invalid_argument("missing grant specific")),
};
Ok(persistent_grant::Settings {
wallet_access_id: p.wallet_access_id,
chain_id: p.chain_id,
valid_from_secs: p.valid_from_secs,
valid_until_secs: p.valid_until_secs,
max_gas_fee_per_gas: p
.max_gas_fee_per_gas
.map(|v| fixed(&v, "max_gas_fee_per_gas must be 32 bytes"))
.transpose()?,
max_priority_fee_per_gas: p
.max_priority_fee_per_gas
.map(|v| fixed(&v, "max_priority_fee_per_gas must be 32 bytes"))
.transpose()?,
rate_limit: p.rate_limit.map(|r| persistent_grant::RateLimit {
count: r.count,
window_secs: r.window_secs,
}),
specific,
})
}
fn fixed<const N: usize>(bytes: &[u8], message: &'static str) -> Result<[u8; N], Status> {
<[u8; N]>::try_from(bytes).map_err(|_| Status::invalid_argument(message))
}
/// Validates the transaction where the request enters, so a malformed one is refused
/// before any operator votes on it instead of failing after quorum.
fn parse_one_off_transaction(
p: proto_gov::ApproveOneOffTransactionPayload,
) -> Result<one_off_transaction::Settings, Status> {
Ok(one_off_transaction::Settings {
client_id: p.client_id,
wallet_address: fixed(&p.wallet_address, "wallet_address must be 20 bytes")?,
chain_id: p.chain_id,
nonce: p.nonce,
gas_limit: p.gas_limit,
max_fee_per_gas: u128::from_be_bytes(fixed(
&p.max_fee_per_gas,
"max_fee_per_gas must be 16 bytes",
)?),
max_priority_fee_per_gas: u128::from_be_bytes(fixed(
&p.max_priority_fee_per_gas,
"max_priority_fee_per_gas must be 16 bytes",
)?),
to: fixed(&p.to, "to must be 20 bytes")?,
value: fixed(&p.value, "value must be 32 bytes")?,
input: p.input,
})
}
async fn handle_vote(
actor: &ActorRef<OperatorSession>,
req: proto_gov::CastVoteRequest,
) -> Result<Option<OperatorResponsePayload>, Status> {
let result = actor
.ask(HandleCastVote {
proposal_id: ProposalId::from_raw(req.proposal_id),
approve: req.approve,
signature: req.signature,
})
.await;
let outcome = match result {
Ok(VoteOutcome::Pending) => ProtoVoteOutcome::Pending,
Ok(VoteOutcome::Approved) => ProtoVoteOutcome::Approved,
Ok(VoteOutcome::Rejected) => ProtoVoteOutcome::Rejected,
Err(kameo::error::SendError::HandlerError(ProposalError::AlreadyVoted)) => {
return Err(Status::invalid_argument("Already voted on this proposal"));
}
Err(kameo::error::SendError::HandlerError(ProposalError::InvalidSignature)) => {
return Err(Status::invalid_argument("Invalid vote signature"));
}
Err(kameo::error::SendError::HandlerError(ProposalError::ProposalNotFound)) => {
return Err(Status::not_found("Proposal not found"));
}
Err(e) => {
warn!(?e, "cast_vote failed");
return Err(Status::internal("Failed to cast vote"));
}
};
Ok(Some(wrap(GovResponsePayload::Voted(
proto_gov::VoteResponse {
outcome: outcome.into(),
},
))))
}
async fn handle_query(
actor: &ActorRef<OperatorSession>,
) -> Result<Option<OperatorResponsePayload>, Status> {
let summaries = actor.ask(HandleQueryPending {}).await.unwrap_or_default();
let proposals = summaries
.into_iter()
.map(|s| proto_gov::ProposalSummary {
id: s.id.to_raw(),
kind: <&'static str>::from(s.kind).to_owned(),
initiator_id: s.initiator_id.to_raw(),
expires_at: s.expires_at.0.timestamp(),
approve_count: s.approve_count,
reject_count: s.reject_count,
})
.collect();
Ok(Some(wrap(GovResponsePayload::Pending(
QueryPendingResponse { proposals },
))))
}

View File

@@ -86,6 +86,7 @@ impl TryConvert for ProtoSharedSettings {
.valid_until
.map(ProtoTimestamp::try_convert)
.transpose()?,
revoked_at: None,
max_gas_fee_per_gas: self
.max_gas_fee_per_gas
.as_deref()

View File

@@ -1,24 +1,16 @@
use crate::{
actors::vault::VaultState,
peers::operator::{
OperatorSession,
session::handlers::{
HandleContributeRecoveryRekeyPassphrase, HandleContributeRekeyPassphrase,
HandleQueryVaultState,
},
},
peers::operator::{OperatorSession, session::handlers::HandleQueryVaultState},
};
use arbiter_proto::{
proto::shared::VaultState as ProtoVaultState,
proto::operator::{
operator_response::Payload as OperatorResponsePayload,
vault::{
self as proto_vault,
rekey::{self as proto_rekey, RekeyResult as ProtoRekeyResult},
request::Payload as VaultRequestPayload,
self as proto_vault, request::Payload as VaultRequestPayload,
response::Payload as VaultResponsePayload,
},
},
proto::shared::VaultState as ProtoVaultState,
};
use kameo::actor::ActorRef;
@@ -41,7 +33,6 @@ pub(super) async fn dispatch(
match payload {
VaultRequestPayload::QueryState(()) => handle_query_vault_state(actor).await,
VaultRequestPayload::Rekey(req) => handle_rekey(actor, req).await,
VaultRequestPayload::Unseal(_) | VaultRequestPayload::Bootstrap(_) => {
Err(Status::permission_denied(
"Vault is already unsealed; unseal/bootstrap not permitted in session",
@@ -50,51 +41,6 @@ pub(super) async fn dispatch(
}
}
async fn handle_rekey(
actor: &ActorRef<OperatorSession>,
req: proto_rekey::Request,
) -> Result<Option<OperatorResponsePayload>, Status> {
use arbiter_proto::proto::operator::vault::rekey::request::Payload as RekeyPayload;
let payload = req
.payload
.ok_or_else(|| Status::invalid_argument("Missing rekey payload"))?;
let done: bool = match payload {
RekeyPayload::ContributePassphrase(cp) => actor
.ask(HandleContributeRekeyPassphrase {
passphrase: cp.passphrase,
})
.await
.map_err(|e| {
warn!(?e, "rekey passphrase contribution failed");
Status::internal("Rekey contribution failed")
})?,
RekeyPayload::ContributeRecoveryPassphrase(crp) => actor
.ask(HandleContributeRecoveryRekeyPassphrase {
recovery_operator_id: crp.recovery_operator_id,
passphrase: crp.passphrase,
})
.await
.map_err(|e| {
warn!(?e, "rekey recovery passphrase contribution failed");
Status::internal("Rekey recovery contribution failed")
})?,
};
let proto_result = if done {
ProtoRekeyResult::Success
} else {
ProtoRekeyResult::AwaitingContributions
};
Ok(Some(wrap_vault_response(VaultResponsePayload::Rekey(
proto_rekey::Response {
result: proto_result.into(),
},
))))
}
async fn handle_query_vault_state(
actor: &ActorRef<OperatorSession>,
) -> Result<Option<OperatorResponsePayload>, Status> {

View File

@@ -1,17 +1,14 @@
use crate::{
grpc::{Convert, TryConvert},
peers::operator::vault_gate::{
self as vault_gate, HandleBootstrapEncryptedKey, HandleContributeBootstrapPassphrase,
HandleContributeRecoveryBootstrapPassphrase, HandleContributeRecoveryUnsealPassphrase,
HandleContributeUnsealPassphrase, HandleDeclareCommittee, HandleHandshake,
HandleUnsealEncryptedKey,
self as vault_gate, HandleBootstrapEncryptedKey, HandleHandshake, HandleUnsealEncryptedKey,
},
};
use arbiter_proto::proto::operator::{
operator_request::Payload as OperatorRequestPayload,
vault::{
self as proto_vault,
bootstrap::{self as proto_bootstrap, request::Payload as BootstrapRequestPayload},
bootstrap::{self as proto_bootstrap},
request::Payload as VaultRequestPayload,
unseal::{self as proto_unseal, request::Payload as UnsealRequestPayload},
},
@@ -53,9 +50,6 @@ impl TryConvert for VaultRequestPayload {
Self::QueryState(()) => Ok(vault_gate::Inbound::HandleVaultState),
Self::Unseal(req) => req.try_convert(),
Self::Bootstrap(req) => req.try_convert(),
Self::Rekey(_) => Err(Status::permission_denied(
"Rekey requires an authenticated session",
)),
}
}
}
@@ -79,21 +73,6 @@ impl TryConvert for UnsealRequestPayload {
match self {
Self::Start(start) => start.try_convert(),
Self::EncryptedKey(key) => Ok(key.convert()),
Self::ContributePassphrase(cp) => Ok(
vault_gate::Inbound::HandleContributeUnsealPassphrase(
HandleContributeUnsealPassphrase {
passphrase: cp.passphrase,
},
),
),
Self::ContributeRecoveryPassphrase(crp) => Ok(
vault_gate::Inbound::HandleContributeRecoveryUnsealPassphrase(
HandleContributeRecoveryUnsealPassphrase {
recovery_operator_id: crp.recovery_operator_id,
passphrase: crp.passphrase,
},
),
),
}
}
}
@@ -128,44 +107,12 @@ impl TryConvert for proto_bootstrap::Request {
type Error = Status;
fn try_convert(self) -> Result<vault_gate::Inbound, Status> {
self.payload
.ok_or_else(|| Status::invalid_argument("Missing bootstrap payload"))?
self.encrypted_key
.ok_or_else(|| Status::invalid_argument("Missing bootstrap encrypted key"))?
.try_convert()
}
}
impl TryConvert for BootstrapRequestPayload {
type Output = vault_gate::Inbound;
type Error = Status;
fn try_convert(self) -> Result<vault_gate::Inbound, Status> {
match self {
Self::EncryptedKey(key) => key.try_convert(),
Self::DeclareCommittee(dc) => Ok(
vault_gate::Inbound::HandleDeclareCommittee(HandleDeclareCommittee {
count: dc.count as usize,
recovery_count: dc.recovery_count as usize,
}),
),
Self::ContributePassphrase(cp) => Ok(
vault_gate::Inbound::HandleContributeBootstrapPassphrase(
HandleContributeBootstrapPassphrase {
passphrase: cp.passphrase,
},
),
),
Self::ContributeRecoveryPassphrase(crp) => Ok(
vault_gate::Inbound::HandleContributeRecoveryBootstrapPassphrase(
HandleContributeRecoveryBootstrapPassphrase {
recovery_operator_id: crp.recovery_operator_id,
passphrase: crp.passphrase,
},
),
),
}
}
}
impl TryConvert for proto_bootstrap::BootstrapEncryptedKey {
type Output = vault_gate::Inbound;
type Error = Status;

View File

@@ -4,6 +4,7 @@ use crate::{
peers::operator::vault_gate::{self as vault_gate},
};
use arbiter_proto::proto::{
shared::VaultState as ProtoVaultState,
operator::{
operator_response::Payload as OperatorResponsePayload,
vault::{
@@ -16,7 +17,6 @@ use arbiter_proto::proto::{
},
},
},
shared::VaultState as ProtoVaultState,
};
use tonic::Status;
@@ -87,6 +87,7 @@ impl TryConvert for vault_gate::Outbound {
let proto_result = match result {
Ok(()) => ProtoUnsealResult::Success,
Err(vault_gate::Error::InvalidKey) => ProtoUnsealResult::InvalidKey,
Err(vault_gate::Error::LockedOut) => ProtoUnsealResult::LockedOut,
Err(err) => {
warn!(?err, "unseal failed");
return Err(Status::internal("Failed to unseal vault"));
@@ -110,68 +111,6 @@ impl TryConvert for vault_gate::Outbound {
};
Ok(wrap_bootstrap_response(proto_result))
}
Self::HandleDeclareCommittee(result) => {
let proto_result = match result {
Ok(()) => ProtoBootstrapResult::Success,
Err(err) => {
warn!(?err, "declare committee failed");
return Err(Status::internal("Failed to declare committee"));
}
};
Ok(wrap_bootstrap_response(proto_result))
}
Self::HandleContributeBootstrapPassphrase(result) => {
let proto_result = match result {
Ok(true) => ProtoBootstrapResult::Success,
Ok(false) => ProtoBootstrapResult::AwaitingContributions,
Err(err) => {
warn!(?err, "contribute bootstrap passphrase failed");
return Err(Status::internal("Failed to contribute bootstrap passphrase"));
}
};
Ok(wrap_bootstrap_response(proto_result))
}
Self::HandleContributeRecoveryBootstrapPassphrase(result) => {
let proto_result = match result {
Ok(true) => ProtoBootstrapResult::Success,
Ok(false) => ProtoBootstrapResult::AwaitingContributions,
Err(err) => {
warn!(?err, "contribute recovery bootstrap passphrase failed");
return Err(Status::internal(
"Failed to contribute recovery bootstrap passphrase",
));
}
};
Ok(wrap_bootstrap_response(proto_result))
}
Self::HandleContributeUnsealPassphrase(result) => {
let proto_result = match result {
Ok(true) => ProtoUnsealResult::Success,
Ok(false) => ProtoUnsealResult::AwaitingContributions,
Err(err) => {
warn!(?err, "contribute unseal passphrase failed");
return Err(Status::internal("Failed to contribute unseal passphrase"));
}
};
Ok(wrap_unseal_response(UnsealResponsePayload::Result(
proto_result.into(),
)))
}
Self::HandleContributeRecoveryUnsealPassphrase(result) => {
let proto_result = match result {
Ok(true) => ProtoUnsealResult::Success,
Ok(false) => ProtoUnsealResult::AwaitingContributions,
Err(err) => {
warn!(?err, "contribute recovery unseal passphrase failed");
return Err(Status::internal(
"Failed to contribute recovery unseal passphrase",
));
}
};
Ok(wrap_unseal_response(UnsealResponsePayload::Result(
proto_result.into(),
)))
}
}
}
}

View File

@@ -8,24 +8,23 @@ use crate::{
crypto::integrity::{self, AttestationStatus},
db::{
self,
models::{ProgramClientMetadata, SqliteTimestamp},
models::ProgramClientMetadata,
schema::program_client,
},
};
use arbiter_crypto::authn::{self, AuthChallenge, SigningContext};
use arbiter_crypto::authn::{self, AuthChallenge, CLIENT_CONTEXT};
use arbiter_proto::{
ClientMetadata,
transport::{Bi, expect_message},
};
use chrono::Utc;
use diesel::{
ExpressionMethods as _, OptionalExtension as _, QueryDsl as _, SelectableHelper as _,
dsl::insert_into, update,
dsl::insert_into,
};
use diesel_async::RunQueryDsl as _;
use kameo::{actor::ActorRef, error::SendError};
use tracing::error;
use tracing::{error, warn};
#[derive(thiserror::Error, Debug, Clone, PartialEq, Eq)]
pub enum Error {
@@ -211,71 +210,47 @@ async fn insert_client(
.await
}
async fn sync_client_metadata(
/// Compares stored metadata against what a reconnecting client presents.
/// Metadata is frozen after initial operator approval and must not be silently
/// overwritten. Doing so would let an approved client forge its displayed
/// identity in later approval prompts. Drift is logged and ignored.
async fn check_metadata_drift(
db: &db::DatabasePool,
client_id: i32,
metadata: &ClientMetadata,
presented: &ClientMetadata,
) -> Result<(), Error> {
use crate::db::schema::{client_metadata, client_metadata_history};
let now = SqliteTimestamp(Utc::now());
use crate::db::schema::client_metadata;
let mut conn = db.get().await.map_err(|e| {
error!(error = ?e, "Database pool error");
Error::DatabasePoolUnavailable
})?;
conn.exclusive_transaction(async |conn| {
let (current_metadata_id, current): (i32, ProgramClientMetadata) = program_client::table
.find(client_id)
.inner_join(client_metadata::table)
.select((
program_client::metadata_id,
ProgramClientMetadata::as_select(),
))
.first(&mut *conn)
.await?;
let current: ProgramClientMetadata = program_client::table
.find(client_id)
.inner_join(client_metadata::table)
.select(ProgramClientMetadata::as_select())
.first(&mut conn)
.await
.map_err(|e| {
error!(error = ?e, "Database error");
Error::DatabaseOperationFailed
})?;
let unchanged = current.name == metadata.name
&& current.description == metadata.description
&& current.version == metadata.version;
if unchanged {
return Ok(());
}
let changed = current.name != presented.name
|| current.description != presented.description
|| current.version != presented.version;
insert_into(client_metadata_history::table)
.values((
client_metadata_history::metadata_id.eq(current_metadata_id),
client_metadata_history::client_id.eq(client_id),
))
.execute(&mut *conn)
.await?;
if changed {
warn!(
client_id,
stored_name = %current.name,
presented_name = %presented.name,
"reconnecting client presented different metadata; ignoring - metadata is frozen after operator approval"
);
}
let metadata_id = insert_into(client_metadata::table)
.values((
client_metadata::name.eq(&metadata.name),
client_metadata::description.eq(&metadata.description),
client_metadata::version.eq(&metadata.version),
))
.returning(client_metadata::id)
.get_result::<i32>(&mut *conn)
.await?;
update(program_client::table.find(client_id))
.set((
program_client::metadata_id.eq(metadata_id),
program_client::updated_at.eq(now),
))
.execute(&mut *conn)
.await?;
Ok::<(), diesel::result::Error>(())
})
.await
.map_err(|e| {
error!(error = ?e, "Database error");
Error::DatabaseOperationFailed
})
Ok(())
}
async fn challenge_client<T>(
@@ -306,7 +281,7 @@ where
Error::Transport
})?;
if !pubkey.verify(&challenge, SigningContext::Client, &signature) {
if !pubkey.verify(&challenge, CLIENT_CONTEXT, &signature) {
error!("Challenge solution verification failed");
return Err(Error::InvalidChallengeSolution);
}
@@ -324,6 +299,7 @@ where
let client_id = if let Some(id) = get_client_id(&props.db, &pubkey).await? {
verify_integrity(&props.db, &props.actors.vault, &pubkey).await?;
check_metadata_drift(&props.db, id, &metadata).await?;
id
} else {
approve_new_client(
@@ -337,8 +313,6 @@ where
insert_client(&props.db, &props.actors.vault, &pubkey, &metadata).await?
};
sync_client_metadata(&props.db, client_id, &metadata).await?;
let challenge = AuthChallenge::generate(&mut rand::rng());
challenge_client(transport, pubkey, challenge).await?;

View File

@@ -83,7 +83,7 @@ impl Actor for ClientSession {
args.props
.actors
.flow_coordinator
.ask(RegisterClient { actor: this })
.ask(RegisterClient { client_id: args.client_id, actor: this })
.await
.map_err(|_| Error::ConnectionRegistrationFailed)?;
Ok(args)

View File

@@ -14,7 +14,7 @@ mod state;
pub enum Inbound {
AuthChallengeRequest {
pubkey: authn::PublicKey,
bootstrap_token: Option<String>,
bootstrap_token: Option<Vec<u8>>,
},
AuthChallengeSolution {
signature: Vec<u8>,

View File

@@ -7,26 +7,25 @@ use crate::{
db::{DatabasePool, schema::operator_identity},
peers::operator::auth::Outbound,
};
use arbiter_crypto::authn::{self, AuthChallenge, SigningContext};
use arbiter_crypto::authn::{self, AuthChallenge, OPERATOR_CONTEXT};
use arbiter_proto::transport::Bi;
use diesel::{ExpressionMethods as _, OptionalExtension as _, QueryDsl};
use diesel_async::RunQueryDsl;
use tracing::error;
pub(crate) struct ChallengeRequest {
pub(crate) pubkey: authn::PublicKey,
pub(crate) bootstrap_token: Option<String>,
pub(super) struct ChallengeRequest {
pub(super) pubkey: authn::PublicKey,
pub(super) bootstrap_token: Option<Vec<u8>>,
}
pub struct ChallengeContext {
pub challenge: AuthChallenge,
pub pubkey: authn::PublicKey,
pub bootstrap_token: Option<String>,
pub(super) challenge: AuthChallenge,
pub(super) pubkey: authn::PublicKey,
}
pub(crate) struct ChallengeSolution {
pub(crate) solution: Vec<u8>,
pub(super) struct ChallengeSolution {
pub(super) solution: Vec<u8>,
}
smlang::statemachine!(
@@ -79,11 +78,16 @@ async fn register_key(db: &DatabasePool, pubkey: &authn::PublicKey) -> Result<i3
pub(super) struct AuthContext<'a, T: ?Sized> {
pub(super) conn: &'a mut OperatorConnection,
pub(super) transport: &'a mut T,
bootstrap_token: Option<Vec<u8>>,
}
impl<'a, T: ?Sized> AuthContext<'a, T> {
pub(super) const fn new(conn: &'a mut OperatorConnection, transport: &'a mut T) -> Self {
Self { conn, transport }
Self {
conn,
transport,
bootstrap_token: None,
}
}
}
@@ -108,6 +112,8 @@ where
}
}
self.bootstrap_token = bootstrap_token;
let challenge = AuthChallenge::generate(&mut rand::rng());
self.transport
@@ -120,20 +126,12 @@ where
Error::Transport
})?;
Ok(ChallengeContext {
challenge,
pubkey,
bootstrap_token,
})
Ok(ChallengeContext { challenge, pubkey })
}
async fn verify_solution(
&mut self,
ChallengeContext {
challenge,
pubkey,
bootstrap_token,
}: &ChallengeContext,
ChallengeContext { challenge, pubkey }: &ChallengeContext,
ChallengeSolution { solution }: ChallengeSolution,
) -> Result<Credentials, Self::Error> {
let signature = authn::Signature::try_from(solution.as_slice()).map_err(|()| {
@@ -141,7 +139,7 @@ where
Error::InvalidChallengeSolution
})?;
let valid = pubkey.verify(challenge, SigningContext::Operator, &signature);
let valid = pubkey.verify(challenge, OPERATOR_CONTEXT, &signature);
if !valid {
self.transport
@@ -152,15 +150,13 @@ where
}
// Resolve client id: bootstrap (consume token + register) or lookup
let id = match bootstrap_token {
let id = match self.bootstrap_token.take() {
Some(token) => {
let token_ok: bool = self
.conn
.actors
.bootstrapper
.ask(ConsumeToken {
token: token.clone(),
})
.ask(ConsumeToken { token })
.await
.map_err(|e| {
error!(?e, "Failed to consume bootstrap token");

View File

@@ -180,7 +180,6 @@ where
Ok(OperatorSession::spawn(OperatorSession::new(
props.clone(),
creds.clone(),
oob_sender,
)))
}

View File

@@ -1,16 +1,18 @@
use super::{Error, OperatorSession};
use crate::db::models::{OperatorIdentityId, ProposalId};
use crate::{
actors::{
evm::{
ClientSignTransaction, Generate, ListWallets, OperatorCreateGrant, OperatorDeleteGrant,
OperatorListGrants, SignTransactionError as EvmSignError,
ClientSignTransaction, Generate, ListWallets, OperatorCreateGrant, OperatorListGrants,
SignTransactionError as EvmSignError,
},
flow_coordinator::client_connect_approval::ClientApprovalAnswer,
flow_coordinator::{IsClientConnected, client_connect_approval::ClientApprovalAnswer},
vault::VaultState,
},
db::models::{
EvmWalletAccess, EvmWalletId, NewEvmWalletAccess, ProgramClient, ProgramClientMetadata,
db::{
models::{
EvmWalletAccess, EvmWalletId, NewEvmWalletAccess, ProgramClient, ProgramClientMetadata,
},
schema::program_client,
},
evm::policies::{Grant, SpecificGrant},
};
@@ -20,13 +22,16 @@ use alloy::{consensus::TxEip1559, primitives::Address, signers::Signature};
use diesel::{ExpressionMethods as _, QueryDsl as _, SelectableHelper};
use diesel_async::{AsyncConnection, RunQueryDsl};
use kameo::{error::SendError, messages, prelude::Context};
use tracing::error;
use tracing::{error, info, warn};
#[derive(Debug, Error)]
pub enum SignTransactionError {
#[error("Policy evaluation failed")]
Vet(#[from] crate::evm::VetError),
#[error("Client not connected")]
ClientNotConnected,
#[error("Internal signing error")]
Internal,
}
@@ -123,23 +128,22 @@ impl OperatorSession {
}
#[message]
pub(crate) async fn handle_grant_delete(
&mut self,
grant_id: i32,
) -> Result<(), GrantMutationError> {
match self
.props
.actors
.evm
.ask(OperatorDeleteGrant { grant_id })
.await
{
Ok(()) => Ok(()),
Err(err) => {
error!(?err, "EVM grant delete failed");
Err(GrantMutationError::Internal)
}
}
pub(crate) fn handle_grant_delete(&mut self, grant_id: i32) -> Result<(), GrantMutationError> {
// match self
// .props
// .actors
// .evm
// .ask(OperatorDeleteGrant { grant_id })
// .await
// {
// Ok(()) => Ok(()),
// Err(err) => {
// error!(?err, "EVM grant delete failed");
// Err(GrantMutationError::Internal)
// }
// }
let _ = grant_id;
todo!()
}
#[message]
@@ -149,6 +153,30 @@ impl OperatorSession {
wallet_address: Address,
transaction: TxEip1559,
) -> Result<Signature, SignTransactionError> {
if !self.approved_client_ids.contains(&client_id) {
warn!(
client_id,
"operator attempted to sign for client not in its approved set"
);
return Err(SignTransactionError::ClientNotConnected);
}
let connected = self
.props
.actors
.flow_coordinator
.ask(IsClientConnected { client_id })
.await
.unwrap_or(false);
if !connected {
self.approved_client_ids.remove(&client_id);
warn!(client_id, "operator attempted to sign for disconnected client");
return Err(SignTransactionError::ClientNotConnected);
}
info!(client_id, event = "sign_transaction", "operator.sign_transaction");
match self
.props
.actors
@@ -204,7 +232,7 @@ impl OperatorSession {
use crate::db::schema::evm_wallet_access;
for entry in entries {
diesel::delete(evm_wallet_access::table)
.filter(evm_wallet_access::wallet_id.eq(entry))
.filter(evm_wallet_access::id.eq(entry))
.execute(&mut *conn)
.await?;
}
@@ -219,9 +247,8 @@ impl OperatorSession {
pub(crate) async fn handle_list_wallet_access(
&mut self,
) -> Result<Vec<EvmWalletAccess>, Error> {
use crate::db::schema::evm_wallet_access;
let mut conn = self.props.db.get().await?;
let access_entries = evm_wallet_access::table
let access_entries = crate::db::schema::evm_wallet_access::table
.select(EvmWalletAccess::as_select())
.load::<_>(&mut conn)
.await?;
@@ -258,6 +285,30 @@ impl OperatorSession {
ctx.actor_ref().unlink(&pending_approval.controller).await;
if approved {
let pubkey_bytes = pending_approval.pubkey.to_bytes();
match self.props.db.get().await {
Ok(mut conn) => {
match program_client::table
.filter(program_client::public_key.eq(pubkey_bytes.as_slice()))
.select(program_client::id)
.first::<i32>(&mut conn)
.await
{
Ok(client_id) => {
self.approved_client_ids.insert(client_id);
}
Err(err) => {
error!(?err, "Failed to look up client_id for approved pubkey");
}
}
}
Err(err) => {
error!(?err, "DB pool error after client approval");
}
}
}
Ok(())
}
@@ -281,101 +332,141 @@ impl OperatorSession {
}
}
#[messages]
impl OperatorSession {
#[message]
pub(crate) async fn handle_create_proposal(
&mut self,
kind: crate::db::proposal::ProposalKind,
ttl_secs: Option<u32>,
) -> Result<ProposalId, Error> {
use crate::actors::proposal_manager::CreateProposal;
let initiator_id = OperatorIdentityId::from_raw(self.credentials.id);
self.props
.actors
.proposal_manager
.ask(CreateProposal { kind, initiator_id, ttl_secs })
.await
.map_err(|e| {
error!(?e, "create_proposal failed");
Error::internal("Failed to create proposal")
#[cfg(test)]
mod tests {
use crate::db::{self, models::{EvmWalletId, NewEvmWalletAccess}, schema::evm_wallet_access};
use diesel::{ExpressionMethods as _, QueryDsl as _, SelectableHelper};
use diesel_async::{AsyncConnection, RunQueryDsl};
/// Regression test: revocation must delete by access-entry `id`, not by `wallet_id`.
///
/// Before the fix, revoking `entry_id=1` would delete all rows where `wallet_id=1`,
/// wiping out every client's access to wallet #1.
#[tokio::test]
async fn revoke_deletes_by_entry_id_not_wallet_id() {
use crate::db::models::EvmWalletAccess;
let pool = db::create_test_pool().await;
let mut conn = pool.get().await.expect("pool connection");
// Insert two access entries for the same wallet but different clients.
// entry A: id will be 1, wallet_id=1, client_id=10
// entry B: id will be 2, wallet_id=1, client_id=20
let entry_a = diesel::insert_into(evm_wallet_access::table)
.values(NewEvmWalletAccess {
wallet_id: EvmWalletId::from_raw(1),
client_id: 10,
})
.returning(EvmWalletAccess::as_select())
.get_result(&mut *conn)
.await
.expect("insert entry A");
let entry_b = diesel::insert_into(evm_wallet_access::table)
.values(NewEvmWalletAccess {
wallet_id: EvmWalletId::from_raw(1),
client_id: 20,
})
.returning(EvmWalletAccess::as_select())
.get_result(&mut *conn)
.await
.expect("insert entry B");
// Revoke only entry A by its primary key id.
conn.transaction(async |conn| {
diesel::delete(evm_wallet_access::table)
.filter(evm_wallet_access::id.eq(entry_a.id))
.execute(&mut *conn)
.await
})
.await
.expect("revoke entry A");
// Entry A must be gone.
let gone = evm_wallet_access::table
.filter(evm_wallet_access::id.eq(entry_a.id))
.count()
.get_result::<i64>(&mut *conn)
.await
.expect("count entry A");
assert_eq!(gone, 0, "revoked entry must be deleted");
// Entry B (same wallet, different client) must still exist.
let still_there = evm_wallet_access::table
.filter(evm_wallet_access::id.eq(entry_b.id))
.count()
.get_result::<i64>(&mut *conn)
.await
.expect("count entry B");
assert_eq!(still_there, 1, "unrelated entry must not be deleted");
}
#[message]
pub(crate) async fn handle_cast_vote(
&mut self,
proposal_id: ProposalId,
approve: bool,
signature: Vec<u8>,
) -> Result<crate::actors::proposal_manager::VoteOutcome, crate::actors::proposal_manager::Error> {
use crate::actors::proposal_manager::CastVote;
let operator_id = OperatorIdentityId::from_raw(self.credentials.id);
self.props
.actors
.proposal_manager
.ask(CastVote { proposal_id, operator_id, approve, signature })
.await
.map_err(|err| match err {
SendError::HandlerError(e) => e,
_ => crate::actors::proposal_manager::Error::ExecutionFailed("actor unavailable".to_owned()),
})
}
/// Regression test: when `entry_id` and `wallet_id` differ, only the correct row is removed.
///
/// This specifically catches the case where `entry.id=5` and `wallet_id=1` are different values;
/// the old bug would delete by `wallet_id`, potentially matching a completely different entry.
#[tokio::test]
async fn revoke_with_mismatched_wallet_and_entry_ids() {
use crate::db::models::EvmWalletAccess;
#[message]
pub(crate) async fn handle_query_pending(
&mut self,
) -> Vec<crate::actors::proposal_manager::ProposalSummary> {
use crate::actors::proposal_manager::QueryPending;
let operator_id = OperatorIdentityId::from_raw(self.credentials.id);
self.props
.actors
.proposal_manager
.ask(QueryPending { operator_id })
let pool = db::create_test_pool().await;
let mut conn = pool.get().await.expect("pool connection");
// Insert entries to force auto-increment IDs to diverge from wallet_ids.
// We'll insert 5 placeholder entries first so that the real entry gets id=6.
for i in 1_i32..=5 {
diesel::insert_into(evm_wallet_access::table)
.values(NewEvmWalletAccess {
wallet_id: EvmWalletId::from_raw(99),
client_id: i,
})
.execute(&mut *conn)
.await
.expect("insert placeholder");
}
// Real target: wallet_id=1, will get id=6.
let target = diesel::insert_into(evm_wallet_access::table)
.values(NewEvmWalletAccess {
wallet_id: EvmWalletId::from_raw(1),
client_id: 1,
})
.returning(EvmWalletAccess::as_select())
.get_result(&mut *conn)
.await
.unwrap_or_default()
}
}
#[messages]
impl OperatorSession {
#[message]
pub(crate) async fn handle_contribute_rekey_passphrase(
&mut self,
passphrase: Vec<u8>,
) -> Result<bool, Error> {
use crate::actors::vault_coordinator::ContributeRekey;
use arbiter_crypto::safecell::{SafeCell, SafeCellHandle as _};
let operator_id = self.credentials.id;
self.props
.actors
.vault_coordinator
.ask(ContributeRekey {
operator_id,
passphrase: SafeCell::new(passphrase),
})
.await
.map_err(|_| Error::internal("VaultCoordinator unavailable"))
}
#[message]
pub(crate) async fn handle_contribute_recovery_rekey_passphrase(
&mut self,
recovery_operator_id: i32,
passphrase: Vec<u8>,
) -> Result<bool, Error> {
use crate::actors::vault_coordinator::ContributeRecoveryRekey;
use arbiter_crypto::safecell::{SafeCell, SafeCellHandle as _};
self.props
.actors
.vault_coordinator
.ask(ContributeRecoveryRekey {
recovery_operator_id,
passphrase: SafeCell::new(passphrase),
})
.await
.map_err(|_| Error::internal("VaultCoordinator unavailable"))
.expect("insert target");
// Sanity: target.id != target.wallet_id
assert_ne!(
target.id, target.wallet_id.to_raw(),
"test prerequisite: id and wallet_id must differ"
);
// Revoke by entry id.
conn.transaction(async |conn| {
diesel::delete(evm_wallet_access::table)
.filter(evm_wallet_access::id.eq(target.id))
.execute(&mut *conn)
.await
})
.await
.expect("revoke target");
let remaining = evm_wallet_access::table
.filter(evm_wallet_access::id.eq(target.id))
.count()
.get_result::<i64>(&mut *conn)
.await
.expect("count target");
assert_eq!(remaining, 0, "target must be deleted by its entry id");
// Placeholders for wallet_id=99 must be untouched.
let placeholders = evm_wallet_access::table
.filter(evm_wallet_access::wallet_id.eq(99))
.count()
.get_result::<i64>(&mut *conn)
.await
.expect("count placeholders");
assert_eq!(placeholders, 5, "unrelated entries must survive");
}
}

View File

@@ -1,16 +1,14 @@
use super::{Credentials, OutOfBand, OperatorConnection};
use super::{OutOfBand, OperatorConnection};
use crate::{
actors::{
flow_coordinator::client_connect_approval::ClientApprovalController,
operator_registry::ConnectOperator,
},
peers::client::ClientProfile,
flow_coordinator::{GetConnectedClientIds, client_connect_approval::{ClientApprovalAnswer, ClientApprovalController}}, operator_registry::ConnectOperator,
}, peers::client::ClientProfile,
};
use arbiter_crypto::authn;
use arbiter_proto::transport::Sender;
use kameo::{Actor, actor::ActorRef, messages};
use std::{borrow::Cow, collections::HashMap};
use std::{borrow::Cow, collections::{HashMap, HashSet}};
use thiserror::Error;
use tracing::error;
@@ -51,21 +49,24 @@ pub struct PendingClientApproval {
pub struct OperatorSession {
props: OperatorConnection,
credentials: Credentials,
sender: Box<dyn Sender<OutOfBand>>,
pending_client_approvals: HashMap<Vec<u8>, PendingClientApproval>,
/// DB `client_ids` this operator session is allowed to sign for.
/// Seeded from currently-connected clients on start, then updated as
/// approvals are granted or denied during the session lifetime.
approved_client_ids: HashSet<i32>,
}
pub mod handlers;
impl OperatorSession {
pub(crate) fn new(props: OperatorConnection, credentials: Credentials, sender: Box<dyn Sender<OutOfBand>>) -> Self {
pub(crate) fn new(props: OperatorConnection, sender: Box<dyn Sender<OutOfBand>>) -> Self {
Self {
props,
credentials,
sender,
pending_client_approvals: HashMap::default(),
approved_client_ids: HashSet::default(),
}
}
}
@@ -90,6 +91,7 @@ impl OperatorSession {
actor = "operator",
event = "failed to announce new client connection"
);
let _ = controller.tell(ClientApprovalAnswer { approved: false }).await;
return;
}
@@ -108,7 +110,7 @@ impl Actor for OperatorSession {
type Error = Error;
async fn on_start(args: Self::Args, this: ActorRef<Self>) -> Result<Self, Self::Error> {
async fn on_start(mut args: Self::Args, this: ActorRef<Self>) -> Result<Self, Self::Error> {
args.props
.actors
.operator_registry
@@ -123,6 +125,16 @@ impl Actor for OperatorSession {
);
Error::internal("Failed to register operator connection with operator registry")
})?;
// Seed approved set with clients already connected when this session starts.
// New clients will be added via handle_new_client_approve as they are approved.
match args.props.actors.flow_coordinator.ask(GetConnectedClientIds {}).await {
Ok(ids) => args.approved_client_ids.extend(ids),
Err(err) => {
error!(?err, "Failed to fetch connected client IDs on operator session start");
}
}
Ok(args)
}

View File

@@ -3,27 +3,20 @@ use crate::{
actors::{
GlobalActors,
vault::{self, Bootstrap, GetState, TryUnseal, VaultState, events},
vault_coordinator::{
ContributeBootstrap, ContributeRecoveryBootstrap, ContributeRecoveryUnseal,
ContributeUnseal, StartBootstrap,
},
},
crypto::{KeyCell, integrity::{self}},
crypto::integrity::{self},
db::DatabasePool,
};
use arbiter_crypto::safecell::{SafeCell, SafeCellHandle as _};
use state::State;
use chacha20poly1305::{AeadInPlace, KeyInit as _, XChaCha20Poly1305, XNonce};
use chacha20poly1305::{AeadInOut, KeyInit as _, XChaCha20Poly1305, XNonce};
use kameo::{Actor, error::SendError, messages, prelude::Message};
use kameo_actors::message_bus::Register;
use tokio::sync::oneshot;
use tracing::{error, info};
use x25519_dalek::{EphemeralSecret, PublicKey, SharedSecret};
pub use VaultGateMessage as Inbound;
pub use VaultGateMessageReply as Outbound;
pub mod state;
#[derive(Debug, thiserror::Error)]
@@ -32,6 +25,8 @@ pub enum Error {
AlreadyBootstrapped,
#[error("Invalid key provided")]
InvalidKey,
#[error("Vault locked: too many failed unseal attempts")]
LockedOut,
#[error("State transition failed")]
State,
@@ -105,19 +100,22 @@ impl VaultGate {
nonce: &[u8],
ciphertext: &[u8],
associated_data: &[u8],
) -> Result<KeyCell, ()> {
let nonce = XNonce::from_slice(nonce);
) -> Result<SafeCell<Vec<u8>>, ()> {
let Ok(nonce) = XNonce::try_from(nonce) else {
error!("Encrypted key material carries a nonce of the wrong length");
return Err(());
};
let cipher = XChaCha20Poly1305::new(secret.as_bytes().into());
let mut key_buffer = SafeCell::new(ciphertext.to_vec());
let decryption_result = key_buffer.write_inline(|write_handle| {
cipher.decrypt_in_place(nonce, associated_data, write_handle)
cipher.decrypt_in_place(&nonce, associated_data, write_handle)
});
match decryption_result {
Ok(()) => KeyCell::try_from(key_buffer).map_err(|()| {
error!("Decrypted key material has unexpected length");
}),
Ok(()) => Ok(key_buffer),
Err(err) => {
error!(?err, "Failed to decrypt encrypted key material");
Err(())
@@ -126,7 +124,7 @@ impl VaultGate {
}
}
#[messages(enum)]
#[messages(messages = Inbound, replies = Outbound)]
impl VaultGate {
#[message]
pub fn handle_handshake(
@@ -159,14 +157,17 @@ impl VaultGate {
return Err(Error::State);
};
let Ok(seal_key) = Self::decrypt_key(secret, &nonce, &ciphertext, &associated_data) else {
let Ok(seal_key_buffer) = Self::decrypt_key(secret, &nonce, &ciphertext, &associated_data)
else {
return Err(Error::InvalidKey);
};
match self
.actors
.vault
.ask(TryUnseal { seal_key })
.ask(TryUnseal {
seal_key_raw: seal_key_buffer,
})
.await
{
Ok(()) => {
@@ -174,6 +175,7 @@ impl VaultGate {
Ok(())
}
Err(SendError::HandlerError(vault::Error::InvalidKey)) => Err(Error::InvalidKey),
Err(SendError::HandlerError(vault::Error::LockedOut)) => Err(Error::LockedOut),
Err(SendError::HandlerError(err)) => {
error!(?err, "Vault failed to unseal key");
Err(Error::InvalidKey)
@@ -196,14 +198,17 @@ impl VaultGate {
return Err(Error::State);
};
let Ok(seal_key) = Self::decrypt_key(secret, &nonce, &ciphertext, &associated_data) else {
let Ok(seal_key_buffer) = Self::decrypt_key(secret, &nonce, &ciphertext, &associated_data)
else {
return Err(Error::InvalidKey);
};
match self
.actors
.vault
.ask(Bootstrap { seal_key })
.ask(Bootstrap {
seal_key_raw: seal_key_buffer,
})
.await
{
Ok(()) => {
@@ -235,89 +240,6 @@ impl VaultGate {
Ok(answer)
}
#[message]
pub async fn handle_declare_committee(
&mut self,
count: usize,
recovery_count: usize,
) -> Result<(), Error> {
self.actors
.vault_coordinator
.ask(StartBootstrap {
operator_id: self.auth_creds.id,
declared_count: count,
recovery_count,
})
.await
.map_err(|_| Error::internal("VaultCoordinator unavailable"))
}
#[message]
pub async fn handle_contribute_bootstrap_passphrase(
&mut self,
passphrase: Vec<u8>,
) -> Result<bool, Error> {
let passphrase_cell = SafeCell::new(passphrase);
self.actors
.vault_coordinator
.ask(ContributeBootstrap {
operator_id: self.auth_creds.id,
passphrase: passphrase_cell,
})
.await
.map_err(|_| Error::internal("VaultCoordinator unavailable"))
}
#[message]
pub async fn handle_contribute_recovery_bootstrap_passphrase(
&mut self,
recovery_operator_id: i32,
passphrase: Vec<u8>,
) -> Result<bool, Error> {
let passphrase_cell = SafeCell::new(passphrase);
self.actors
.vault_coordinator
.ask(ContributeRecoveryBootstrap {
recovery_operator_id,
passphrase: passphrase_cell,
})
.await
.map_err(|_| Error::internal("VaultCoordinator unavailable"))
}
#[message]
pub async fn handle_contribute_unseal_passphrase(
&mut self,
passphrase: Vec<u8>,
) -> Result<bool, Error> {
let passphrase_cell = SafeCell::new(passphrase);
self.actors
.vault_coordinator
.ask(ContributeUnseal {
operator_id: self.auth_creds.id,
passphrase: passphrase_cell,
})
.await
.map_err(|_| Error::internal("VaultCoordinator unavailable"))
}
#[message]
pub async fn handle_contribute_recovery_unseal_passphrase(
&mut self,
recovery_operator_id: i32,
passphrase: Vec<u8>,
) -> Result<bool, Error> {
let passphrase_cell = SafeCell::new(passphrase);
self.actors
.vault_coordinator
.ask(ContributeRecoveryUnseal {
recovery_operator_id,
passphrase: passphrase_cell,
})
.await
.map_err(|_| Error::internal("VaultCoordinator unavailable"))
}
}
impl Message<events::Bootstrapped> for VaultGate {

View File

@@ -1,5 +1,8 @@
use super::common::ChannelTransport;
use arbiter_crypto::authn::{self, AuthChallenge, SigningContext};
use arbiter_crypto::{
authn::{self, AuthChallenge, CLIENT_CONTEXT},
safecell::{SafeCell, SafeCellHandle as _},
};
use arbiter_proto::{
ClientMetadata,
transport::{Receiver, Sender},
@@ -13,7 +16,7 @@ use arbiter_server::{
use diesel::{ExpressionMethods as _, NullableExpressionMethods as _, QueryDsl as _, insert_into};
use diesel_async::RunQueryDsl;
use ml_dsa::{KeyGen, MlDsa87, SigningKey, VerifyingKey, signature::Keypair};
use ml_dsa::{Generate as _, MlDsa87, SigningKey, VerifyingKey, signature::Keypair};
fn metadata(name: &str, description: Option<&str>, version: Option<&str>) -> ClientMetadata {
ClientMetadata {
@@ -70,15 +73,15 @@ async fn insert_registered_client(
fn sign_client_challenge(key: &SigningKey<MlDsa87>, challenge: &AuthChallenge) -> authn::Signature {
let challenge = challenge.format();
key.signing_key()
.sign_deterministic(&challenge, SigningContext::Client.as_bytes())
key.expanded_key()
.sign_deterministic(&challenge, CLIENT_CONTEXT)
.unwrap()
.into()
}
async fn insert_bootstrap_sentinel_operator(db: &db::DatabasePool) {
let mut conn = db.get().await.unwrap();
let sentinel_key = verifying_key(&MlDsa87::key_gen(&mut rand::rng()))
let sentinel_key = verifying_key(&SigningKey::<MlDsa87>::generate())
.encode()
.0
.to_vec();
@@ -97,7 +100,7 @@ async fn spawn_test_actors(db: &db::DatabasePool) -> GlobalActors {
actors
.vault
.ask(Bootstrap {
seal_key: arbiter_server::crypto::KeyCell::from([0u8; 32]),
seal_key_raw: SafeCell::new(b"test-seal-key".to_vec()),
})
.await
.unwrap();
@@ -117,7 +120,7 @@ pub async fn unregistered_pubkey_rejected() {
connect_client(props, &mut server_transport).await;
});
let new_key = MlDsa87::key_gen(&mut rand::rng());
let new_key = SigningKey::<MlDsa87>::generate();
test_transport
.send(auth::Inbound::AuthChallengeRequest {
@@ -137,7 +140,7 @@ pub async fn challenge_auth() {
let db = db::create_test_pool().await;
let actors = spawn_test_actors(&db).await;
let new_key = MlDsa87::key_gen(&mut rand::rng());
let new_key = SigningKey::<MlDsa87>::generate();
Box::pin(insert_registered_client(
&db,
@@ -203,7 +206,7 @@ pub async fn challenge_auth() {
pub async fn metadata_unchanged_does_not_append_history() {
let db = db::create_test_pool().await;
let actors = spawn_test_actors(&db).await;
let new_key = MlDsa87::key_gen(&mut rand::rng());
let new_key = SigningKey::<MlDsa87>::generate();
let requested = metadata("client", Some("desc"), Some("1.0.0"));
Box::pin(insert_registered_client(
@@ -263,10 +266,10 @@ pub async fn metadata_unchanged_does_not_append_history() {
#[tokio::test]
#[test_log::test]
pub async fn metadata_change_appends_history_and_repoints_binding() {
pub async fn metadata_frozen_after_approval_ignores_reconnect_changes() {
let db = db::create_test_pool().await;
let actors = spawn_test_actors(&db).await;
let new_key = MlDsa87::key_gen(&mut rand::rng());
let new_key = SigningKey::<MlDsa87>::generate();
Box::pin(insert_registered_client(
&db,
@@ -284,6 +287,7 @@ pub async fn metadata_change_appends_history_and_repoints_binding() {
connect_client(props, &mut server_transport).await;
});
// Reconnect presenting different metadata — must be silently ignored.
test_transport
.send(auth::Inbound::AuthChallengeRequest {
pubkey: verifying_key(&new_key).into(),
@@ -310,6 +314,7 @@ pub async fn metadata_change_appends_history_and_repoints_binding() {
client_metadata, client_metadata_history, program_client,
};
let mut conn = db.get().await.unwrap();
// Metadata is frozen: no new row, no history entry.
let metadata_count: i64 = client_metadata::table
.count()
.get_result(&mut conn)
@@ -335,15 +340,16 @@ pub async fn metadata_change_appends_history_and_repoints_binding() {
.first::<(String, Option<String>, Option<String>)>(&mut conn)
.await
.unwrap();
assert_eq!(metadata_count, 2);
assert_eq!(history_count, 1);
assert_eq!(metadata_count, 1, "frozen: no new metadata row on reconnect");
assert_eq!(history_count, 0, "frozen: no history entry on reconnect");
assert_eq!(
current,
(
"client".to_owned(),
Some("new".to_owned()),
Some("2.0.0".to_owned())
)
Some("old".to_owned()),
Some("1.0.0".to_owned())
),
"frozen: original metadata must be preserved"
);
}
}
@@ -354,7 +360,7 @@ pub async fn challenge_auth_rejects_integrity_tag_mismatch() {
let db = db::create_test_pool().await;
let actors = spawn_test_actors(&db).await;
let new_key = MlDsa87::key_gen(&mut rand::rng());
let new_key = SigningKey::<MlDsa87>::generate();
let requested = metadata("client", Some("desc"), Some("1.0.0"));
{

View File

@@ -2,6 +2,7 @@
dead_code,
reason = "Common test utilities that may not be used in every test"
)]
use arbiter_crypto::safecell::{SafeCell, SafeCellHandle as _};
use arbiter_proto::transport::{Bi, Error, Receiver, Sender};
use arbiter_server::{
actors::{GlobalActors, vault::Vault},
@@ -18,7 +19,7 @@ pub(crate) async fn bootstrapped_vault(db: &db::DatabasePool) -> Vault {
.await
.unwrap();
actor
.bootstrap(arbiter_server::crypto::KeyCell::from([0u8; 32]))
.bootstrap(SafeCell::new(b"test-seal-key".to_vec()))
.await
.unwrap();
actor

File diff suppressed because it is too large Load Diff

View File

@@ -1,5 +1,8 @@
use super::common::ChannelTransport;
use arbiter_crypto::authn::{self, AuthChallenge, SigningContext};
use arbiter_crypto::{
authn::{self, AuthChallenge, OPERATOR_CONTEXT},
safecell::{SafeCell, SafeCellHandle as _},
};
use arbiter_proto::transport::{Error as TransportError, Receiver, Sender};
use arbiter_server::{
actors::{GlobalActors, bootstrap::GetToken, vault::Bootstrap},
@@ -11,7 +14,7 @@ use arbiter_server::{
use async_trait::async_trait;
use diesel::{ExpressionMethods as _, QueryDsl, insert_into};
use diesel_async::RunQueryDsl;
use ml_dsa::{KeyGen, MlDsa87, SigningKey, VerifyingKey, signature::Keypair};
use ml_dsa::{Generate as _, MlDsa87, SigningKey, VerifyingKey, signature::Keypair};
use tokio::sync::mpsc;
fn verifying_key(key: &SigningKey<MlDsa87>) -> VerifyingKey<MlDsa87> {
@@ -23,8 +26,8 @@ fn sign_operator_challenge(
challenge: &AuthChallenge,
) -> authn::Signature {
let challenge = challenge.format();
key.signing_key()
.sign_deterministic(&challenge, SigningContext::Operator.as_bytes())
key.expanded_key()
.sign_deterministic(&challenge, OPERATOR_CONTEXT)
.unwrap()
.into()
}
@@ -154,7 +157,7 @@ pub async fn bootstrap_token_auth() {
actors
.vault
.ask(Bootstrap {
seal_key: arbiter_server::crypto::KeyCell::from([0u8; 32]),
seal_key_raw: SafeCell::new(b"test-seal-key".to_vec()),
})
.await
.unwrap();
@@ -167,11 +170,11 @@ pub async fn bootstrap_token_auth() {
auth::authenticate(&mut props, &mut server_transport).await
});
let new_key = MlDsa87::key_gen(&mut rand::rng());
let new_key = SigningKey::<MlDsa87>::generate();
test_transport
.send(auth::Inbound::AuthChallengeRequest {
pubkey: verifying_key(&new_key).into(),
bootstrap_token: Some(token),
bootstrap_token: Some(token.into_bytes()),
})
.await
.unwrap();
@@ -224,11 +227,11 @@ pub async fn bootstrap_invalid_token_auth() {
auth::authenticate(&mut props, &mut server_transport).await
});
let new_key = MlDsa87::key_gen(&mut rand::rng());
let new_key = SigningKey::<MlDsa87>::generate();
test_transport
.send(auth::Inbound::AuthChallengeRequest {
pubkey: verifying_key(&new_key).into(),
bootstrap_token: Some("invalid_token".to_owned()),
bootstrap_token: Some(b"invalid_token".to_vec()),
})
.await
.unwrap();
@@ -272,12 +275,12 @@ pub async fn challenge_auth() {
actors
.vault
.ask(Bootstrap {
seal_key: arbiter_server::crypto::KeyCell::from([0u8; 32]),
seal_key_raw: SafeCell::new(b"test-seal-key".to_vec()),
})
.await
.unwrap();
let new_key = MlDsa87::key_gen(&mut rand::rng());
let new_key = SigningKey::<MlDsa87>::generate();
let pubkey_bytes = authn::PublicKey::from(verifying_key(&new_key)).to_bytes();
{
@@ -358,12 +361,12 @@ pub async fn challenge_auth_rejects_integrity_tag_mismatch_when_unsealed() {
actors
.vault
.ask(Bootstrap {
seal_key: arbiter_server::crypto::KeyCell::from([0u8; 32]),
seal_key_raw: SafeCell::new(b"test-seal-key".to_vec()),
})
.await
.unwrap();
let new_key = MlDsa87::key_gen(&mut rand::rng());
let new_key = SigningKey::<MlDsa87>::generate();
let pubkey_bytes = authn::PublicKey::from(verifying_key(&new_key)).to_bytes();
{
@@ -397,7 +400,7 @@ pub async fn challenge_auth_rejects_integrity_tag_mismatch_when_unsealed() {
let challenge = match response {
Ok(resp) => match resp {
auth::Outbound::AuthChallenge { challenge } => challenge,
other => panic!("Expected AuthChallenge, got {other:?}"),
other @ auth::Outbound::AuthSuccess => panic!("Expected AuthChallenge, got {other:?}"),
},
Err(err) => panic!("Expected Ok response, got Err({err:?})"),
};
@@ -431,12 +434,12 @@ pub async fn challenge_auth_rejects_invalid_signature() {
actors
.vault
.ask(Bootstrap {
seal_key: arbiter_server::crypto::KeyCell::from([0u8; 32]),
seal_key_raw: SafeCell::new(b"test-seal-key".to_vec()),
})
.await
.unwrap();
let new_key = MlDsa87::key_gen(&mut rand::rng());
let new_key = SigningKey::<MlDsa87>::generate();
let pubkey_bytes = authn::PublicKey::from(verifying_key(&new_key)).to_bytes();
{

View File

@@ -1,4 +1,7 @@
use arbiter_crypto::authn;
use arbiter_crypto::{
authn,
safecell::{SafeCell, SafeCellHandle as _},
};
use arbiter_server::{
actors::{
GlobalActors,
@@ -13,13 +16,13 @@ use arbiter_server::{
},
};
use chacha20poly1305::{AeadInPlace, XChaCha20Poly1305, XNonce, aead::KeyInit};
use chacha20poly1305::{AeadInOut, XChaCha20Poly1305, XNonce, aead::KeyInit};
use kameo::actor::Spawn as _;
use tokio::sync::oneshot;
use x25519_dalek::{EphemeralSecret, PublicKey};
async fn setup_sealed_gate(
seal_key: &[u8; 32],
seal_key: &[u8],
) -> (
db::DatabasePool,
kameo::actor::ActorRef<VaultGate>,
@@ -31,7 +34,7 @@ async fn setup_sealed_gate(
actors
.vault
.ask(Bootstrap {
seal_key: arbiter_server::crypto::KeyCell::from(*seal_key),
seal_key_raw: SafeCell::new(seal_key.to_vec()),
})
.await
.unwrap();
@@ -47,7 +50,7 @@ async fn setup_sealed_gate(
async fn client_dh_encrypt(
gate: &kameo::actor::ActorRef<VaultGate>,
key_to_send: &[u8; 32],
key_to_send: &[u8],
) -> HandleUnsealEncryptedKey {
let client_secret = EphemeralSecret::random();
let client_public = PublicKey::from(&client_secret);
@@ -80,7 +83,7 @@ async fn client_dh_encrypt(
#[tokio::test]
#[test_log::test]
pub async fn unseal_success() {
let seal_key = b"test-seal-key-padded-to-32bytes!";
let seal_key = b"test-seal-key";
let (_db, gate, _promotion_rx) = setup_sealed_gate(seal_key).await;
let encrypted_key = client_dh_encrypt(&gate, seal_key).await;
@@ -92,10 +95,10 @@ pub async fn unseal_success() {
#[tokio::test]
#[test_log::test]
pub async fn unseal_wrong_seal_key() {
let seal_key = b"test-seal-key-padded-to-32bytes!";
let seal_key = b"test-seal-key";
let (_db, gate, _promotion_rx) = setup_sealed_gate(seal_key).await;
let encrypted_key = client_dh_encrypt(&gate, b"wrong-key-padded-to-32-bytes!!!!").await;
let encrypted_key = client_dh_encrypt(&gate, b"wrong-key").await;
let response = gate.ask(encrypted_key).await;
assert!(matches!(
@@ -109,7 +112,7 @@ pub async fn unseal_wrong_seal_key() {
#[tokio::test]
#[test_log::test]
pub async fn unseal_corrupted_ciphertext() {
let seal_key = b"test-seal-key-padded-to-32bytes!";
let seal_key = b"test-seal-key";
let (_db, gate, _promotion_rx) = setup_sealed_gate(seal_key).await;
let client_secret = EphemeralSecret::random();
@@ -140,11 +143,11 @@ pub async fn unseal_corrupted_ciphertext() {
#[tokio::test]
#[test_log::test]
pub async fn unseal_retry_after_invalid_key() {
let seal_key = b"real-seal-key-padded-to-32bytes!";
let seal_key = b"real-seal-key";
let (_db, gate, _promotion_rx) = setup_sealed_gate(seal_key).await;
{
let encrypted_key = client_dh_encrypt(&gate, b"wrong-key-padded-to-32-bytes!!!!").await;
let encrypted_key = client_dh_encrypt(&gate, b"wrong-key").await;
let response = gate.ask(encrypted_key).await;
assert!(matches!(

View File

@@ -14,6 +14,8 @@ use kameo::actor::{ActorRef, Spawn as _};
use std::collections::{HashMap, HashSet};
use tokio::task::JoinSet;
const TEST_AAD: &[u8] = b"test-aad";
async fn write_concurrently(
actor: ActorRef<Vault>,
prefix: &'static str,
@@ -27,6 +29,7 @@ async fn write_concurrently(
let id = actor
.ask(CreateNew {
plaintext: SafeCell::new(plaintext.clone()),
aad: TEST_AAD.to_vec(),
})
.await
.unwrap();
@@ -120,7 +123,7 @@ async fn insert_failure_does_not_create_partial_row() {
drop(conn);
let err = actor
.create_new(SafeCell::new(b"should fail".to_vec()))
.create_new(SafeCell::new(b"should fail".to_vec()), TEST_AAD.to_vec())
.await
.unwrap_err();
assert!(matches!(err, Error::DatabaseTransaction(_)));
@@ -166,12 +169,12 @@ async fn decrypt_roundtrip_after_high_concurrency() {
.await
.unwrap();
decryptor
.try_unseal(arbiter_server::crypto::KeyCell::from([0u8; 32]))
.try_unseal(SafeCell::new(b"test-seal-key".to_vec()))
.await
.unwrap();
for (id, plaintext) in expected {
let mut decrypted = decryptor.decrypt(id).await.unwrap();
let mut decrypted = decryptor.decrypt(id, TEST_AAD.to_vec()).await.unwrap();
assert_eq!(*decrypted.read(), plaintext);
}
}

View File

@@ -3,29 +3,26 @@ use arbiter_crypto::safecell::{SafeCell, SafeCellHandle as _};
use arbiter_server::{
actors::{
GlobalActors,
vault::{Error, GetState, Vault, VaultState},
vault_coordinator::{
ContributeBootstrap, ContributeRecoveryBootstrap, ContributeRecoveryUnseal,
Error as CoordinatorError, StartBootstrap, VaultCoordinator,
},
vault::{Error, Vault},
},
crypto::{KeyCell, encryption::v1::{Nonce, ROOT_KEY_TAG}},
crypto::encryption::v1::{Nonce, ROOT_KEY_TAG},
db::{self, models, schema},
};
use diesel::{ExpressionMethods, QueryDsl, SelectableHelper, insert_into};
use diesel::{QueryDsl, SelectableHelper};
use diesel_async::RunQueryDsl;
use kameo::actor::Spawn as _;
const TEST_AAD: &[u8] = b"test-aad";
#[tokio::test]
#[test_log::test]
async fn test_bootstrap() {
async fn bootstrap() {
let db = db::create_test_pool().await;
let mut actor = Vault::new(db.clone(), GlobalActors::spawn_message_bus())
.await
.unwrap();
let seal_key = KeyCell::from([0u8; 32]);
let seal_key = SafeCell::new(b"test-seal-key".to_vec());
actor.bootstrap(seal_key).await.unwrap();
let mut conn = db.get().await.unwrap();
@@ -44,25 +41,25 @@ async fn test_bootstrap() {
#[tokio::test]
#[test_log::test]
async fn test_bootstrap_rejects_double() {
async fn bootstrap_rejects_double() {
let db = db::create_test_pool().await;
let mut actor = common::bootstrapped_vault(&db).await;
let seal_key2 = KeyCell::from([0u8; 32]);
let seal_key2 = SafeCell::new(b"test-seal-key".to_vec());
let err = actor.bootstrap(seal_key2).await.unwrap_err();
assert!(matches!(err, Error::AlreadyBootstrapped));
}
#[tokio::test]
#[test_log::test]
async fn test_create_new_before_bootstrap_fails() {
async fn create_new_before_bootstrap_fails() {
let db = db::create_test_pool().await;
let mut actor = Vault::new(db, GlobalActors::spawn_message_bus())
.await
.unwrap();
let err = actor
.create_new(SafeCell::new(b"data".to_vec()))
.create_new(SafeCell::new(b"data".to_vec()), TEST_AAD.to_vec())
.await
.unwrap_err();
assert!(matches!(err, Error::NotBootstrapped));
@@ -70,19 +67,19 @@ async fn test_create_new_before_bootstrap_fails() {
#[tokio::test]
#[test_log::test]
async fn test_decrypt_before_bootstrap_fails() {
async fn decrypt_before_bootstrap_fails() {
let db = db::create_test_pool().await;
let mut actor = Vault::new(db, GlobalActors::spawn_message_bus())
.await
.unwrap();
let err = actor.decrypt(1).await.unwrap_err();
let err = actor.decrypt(1, TEST_AAD.to_vec()).await.unwrap_err();
assert!(matches!(err, Error::NotBootstrapped));
}
#[tokio::test]
#[test_log::test]
async fn test_new_restores_sealed_state() {
async fn new_restores_sealed_state() {
let db = db::create_test_pool().await;
let actor = common::bootstrapped_vault(&db).await;
drop(actor);
@@ -90,19 +87,19 @@ async fn test_new_restores_sealed_state() {
let mut actor2 = Vault::new(db, GlobalActors::spawn_message_bus())
.await
.unwrap();
let err = actor2.decrypt(1).await.unwrap_err();
let err = actor2.decrypt(1, TEST_AAD.to_vec()).await.unwrap_err();
assert!(matches!(err, Error::Sealed));
}
#[tokio::test]
#[test_log::test]
async fn test_unseal_correct_password() {
async fn unseal_correct_password() {
let db = db::create_test_pool().await;
let mut actor = common::bootstrapped_vault(&db).await;
let plaintext = b"survive a restart";
let aead_id = actor
.create_new(SafeCell::new(plaintext.to_vec()))
.create_new(SafeCell::new(plaintext.to_vec()), TEST_AAD.to_vec())
.await
.unwrap();
drop(actor);
@@ -110,22 +107,22 @@ async fn test_unseal_correct_password() {
let mut actor = Vault::new(db.clone(), GlobalActors::spawn_message_bus())
.await
.unwrap();
let seal_key = KeyCell::from([0u8; 32]);
let seal_key = SafeCell::new(b"test-seal-key".to_vec());
actor.try_unseal(seal_key).await.unwrap();
let mut decrypted = actor.decrypt(aead_id).await.unwrap();
let mut decrypted = actor.decrypt(aead_id, TEST_AAD.to_vec()).await.unwrap();
assert_eq!(*decrypted.read(), plaintext);
}
#[tokio::test]
#[test_log::test]
async fn test_unseal_wrong_then_correct_password() {
async fn unseal_wrong_then_correct_password() {
let db = db::create_test_pool().await;
let mut actor = common::bootstrapped_vault(&db).await;
let plaintext = b"important data";
let aead_id = actor
.create_new(SafeCell::new(plaintext.to_vec()))
.create_new(SafeCell::new(plaintext.to_vec()), TEST_AAD.to_vec())
.await
.unwrap();
drop(actor);
@@ -134,137 +131,13 @@ async fn test_unseal_wrong_then_correct_password() {
.await
.unwrap();
let bad_key = KeyCell::from([1u8; 32]);
let bad_key = SafeCell::new(b"wrong-password".to_vec());
let err = actor.try_unseal(bad_key).await.unwrap_err();
assert!(matches!(err, Error::InvalidKey));
let good_key = KeyCell::from([0u8; 32]);
let good_key = SafeCell::new(b"test-seal-key".to_vec());
actor.try_unseal(good_key).await.unwrap();
let mut decrypted = actor.decrypt(aead_id).await.unwrap();
let mut decrypted = actor.decrypt(aead_id, TEST_AAD.to_vec()).await.unwrap();
assert_eq!(*decrypted.read(), plaintext);
}
#[tokio::test]
#[test_log::test]
async fn two_operator_vault_requires_recovery_share() {
let db = db::create_test_pool().await;
let bus = GlobalActors::spawn_message_bus();
let vault_ref = Vault::spawn(Vault::new(db.clone(), bus).await.unwrap());
let coordinator = VaultCoordinator::spawn(VaultCoordinator::new(db, vault_ref));
let err = coordinator
.ask(StartBootstrap {
operator_id: 1,
declared_count: 2,
recovery_count: 0,
})
.await
.unwrap_err();
assert!(
matches!(
err,
kameo::error::SendError::HandlerError(CoordinatorError::TwoOperatorsRequireRecovery)
),
"expected TwoOperatorsRequireRecovery, got {err:?}"
);
}
/// §3.4: Bootstrap with 1 ordinary + 1 recovery operator produces a valid 1-of-2 Shamir split.
/// Both ordinary and recovery shares are stored; the vault can be unsealed with either one.
#[tokio::test]
#[test_log::test]
async fn recovery_share_stored_and_used_for_unseal() {
let db = db::create_test_pool().await;
let bus = GlobalActors::spawn_message_bus();
let vault_ref = Vault::spawn(Vault::new(db.clone(), bus).await.unwrap());
let coordinator = VaultCoordinator::spawn(VaultCoordinator::new(db.clone(), vault_ref.clone()));
// Register one ordinary operator and one recovery operator in the DB
let ordinary_id: i32 = {
let mut conn = db.get().await.unwrap();
insert_into(schema::operator_identity::table)
.values(schema::operator_identity::public_key.eq(vec![1u8; 32]))
.returning(schema::operator_identity::id)
.get_result(&mut conn)
.await
.unwrap()
};
let recovery_id: i32 = {
let mut conn = db.get().await.unwrap();
insert_into(schema::recovery_operator_identity::table)
.values(schema::recovery_operator_identity::public_key.eq(vec![2u8; 32]))
.returning(schema::recovery_operator_identity::id)
.get_result(&mut conn)
.await
.unwrap()
};
// Declare committee: 1 ordinary + 1 recovery
coordinator
.ask(StartBootstrap {
operator_id: ordinary_id,
declared_count: 1,
recovery_count: 1,
})
.await
.unwrap();
// Recovery operator contributes first — bootstrap should not finalize yet
let done = coordinator
.ask(ContributeRecoveryBootstrap {
recovery_operator_id: recovery_id,
passphrase: SafeCell::new(b"recovery-pass".to_vec()),
})
.await
.unwrap();
assert!(!done, "should not finalize with only recovery passphrase");
// Ordinary operator contributes — now bootstrap finalizes
let done = coordinator
.ask(ContributeBootstrap {
operator_id: ordinary_id,
passphrase: SafeCell::new(b"ordinary-pass".to_vec()),
})
.await
.unwrap();
assert!(done, "should finalize once all contributors are in");
// After bootstrap, vault is Unsealed (seal key still in memory).
let state = vault_ref.ask(GetState {}).await.unwrap();
assert_eq!(state, VaultState::Unsealed);
// Verify recovery_operator row was created
let recovery_share_count: i64 = {
let mut conn = db.get().await.unwrap();
schema::recovery_operator::table
.count()
.get_result(&mut conn)
.await
.unwrap()
};
assert_eq!(recovery_share_count, 1);
// Simulate restart: drop vault and coordinator, create fresh vault (comes up Sealed).
drop(coordinator);
drop(vault_ref);
let bus2 = GlobalActors::spawn_message_bus();
let vault_ref2 = Vault::spawn(Vault::new(db.clone(), bus2).await.unwrap());
let state = vault_ref2.ask(GetState {}).await.unwrap();
assert_eq!(state, VaultState::Sealed);
// §3.5: Unseal using ONLY the recovery operator share (threshold = shamir_threshold(1) = 1).
let coordinator2 = VaultCoordinator::spawn(VaultCoordinator::new(db.clone(), vault_ref2.clone()));
let done = coordinator2
.ask(ContributeRecoveryUnseal {
recovery_operator_id: recovery_id,
passphrase: SafeCell::new(b"recovery-pass".to_vec()),
})
.await
.unwrap();
assert!(done, "recovery share alone should satisfy threshold");
let state = vault_ref2.ask(GetState {}).await.unwrap();
assert_eq!(state, VaultState::Unsealed);
}

View File

@@ -10,45 +10,47 @@ use diesel::{ExpressionMethods as _, QueryDsl, SelectableHelper, dsl::update};
use diesel_async::RunQueryDsl;
use std::collections::HashSet;
const TEST_AAD: &[u8] = b"test-aad";
#[tokio::test]
#[test_log::test]
async fn test_create_decrypt_roundtrip() {
async fn create_decrypt_roundtrip() {
let db = db::create_test_pool().await;
let mut actor = common::bootstrapped_vault(&db).await;
let plaintext = b"hello arbiter";
let aead_id = actor
.create_new(SafeCell::new(plaintext.to_vec()))
.create_new(SafeCell::new(plaintext.to_vec()), TEST_AAD.to_vec())
.await
.unwrap();
let mut decrypted = actor.decrypt(aead_id).await.unwrap();
let mut decrypted = actor.decrypt(aead_id, TEST_AAD.to_vec()).await.unwrap();
assert_eq!(*decrypted.read(), plaintext);
}
#[tokio::test]
#[test_log::test]
async fn test_decrypt_nonexistent_returns_not_found() {
async fn decrypt_nonexistent_returns_not_found() {
let db = db::create_test_pool().await;
let mut actor = common::bootstrapped_vault(&db).await;
let err = actor.decrypt(9999).await.unwrap_err();
let err = actor.decrypt(9999, TEST_AAD.to_vec()).await.unwrap_err();
assert!(matches!(err, Error::NotFound));
}
#[tokio::test]
#[test_log::test]
async fn test_ciphertext_differs_across_entries() {
async fn ciphertext_differs_across_entries() {
let db = db::create_test_pool().await;
let mut actor = common::bootstrapped_vault(&db).await;
let plaintext = b"same content";
let id1 = actor
.create_new(SafeCell::new(plaintext.to_vec()))
.create_new(SafeCell::new(plaintext.to_vec()), TEST_AAD.to_vec())
.await
.unwrap();
let id2 = actor
.create_new(SafeCell::new(plaintext.to_vec()))
.create_new(SafeCell::new(plaintext.to_vec()), TEST_AAD.to_vec())
.await
.unwrap();
@@ -68,22 +70,22 @@ async fn test_ciphertext_differs_across_entries() {
assert_ne!(row1.ciphertext, row2.ciphertext);
let mut d1 = actor.decrypt(id1).await.unwrap();
let mut d2 = actor.decrypt(id2).await.unwrap();
let mut d1 = actor.decrypt(id1, TEST_AAD.to_vec()).await.unwrap();
let mut d2 = actor.decrypt(id2, TEST_AAD.to_vec()).await.unwrap();
assert_eq!(*d1.read(), plaintext);
assert_eq!(*d2.read(), plaintext);
}
#[tokio::test]
#[test_log::test]
async fn test_nonce_never_reused() {
async fn nonce_never_reused() {
let db = db::create_test_pool().await;
let mut actor = common::bootstrapped_vault(&db).await;
let n = 5;
for i in 0..n {
actor
.create_new(SafeCell::new(format!("secret {i}").into_bytes()))
.create_new(SafeCell::new(format!("secret {i}").into_bytes()), TEST_AAD.to_vec())
.await
.unwrap();
}
@@ -137,7 +139,7 @@ async fn broken_db_nonce_format_fails_closed() {
drop(conn);
let err = actor
.create_new(SafeCell::new(b"must fail".to_vec()))
.create_new(SafeCell::new(b"must fail".to_vec()), TEST_AAD.to_vec())
.await
.unwrap_err();
assert!(matches!(err, Error::BrokenDatabase));
@@ -145,7 +147,7 @@ async fn broken_db_nonce_format_fails_closed() {
let db = db::create_test_pool().await;
let mut actor = common::bootstrapped_vault(&db).await;
let id = actor
.create_new(SafeCell::new(b"decrypt target".to_vec()))
.create_new(SafeCell::new(b"decrypt target".to_vec()), TEST_AAD.to_vec())
.await
.unwrap();
let mut conn = db.get().await.unwrap();
@@ -156,6 +158,6 @@ async fn broken_db_nonce_format_fails_closed() {
.unwrap();
drop(conn);
let err = actor.decrypt(id).await.unwrap_err();
let err = actor.decrypt(id, TEST_AAD.to_vec()).await.unwrap_err();
assert!(matches!(err, Error::BrokenDatabase));
}