Extract reusable keychain sigchain model
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11 changed files with 938 additions and 20 deletions
1
Cargo.lock
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1
Cargo.lock
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@ -1653,6 +1653,7 @@ dependencies = [
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name = "geth-keychain"
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version = "0.1.0"
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dependencies = [
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"blake3",
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"geth-codec",
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"geth-types",
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"serde",
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24
README.md
24
README.md
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@ -139,6 +139,10 @@ The bootstrap implementation provides:
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- `geth resource create <kind> <name>`
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- `geth keychain init [--admin-key <path>] [--signing-key <path>]`
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- `geth keychain status`
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- `geth keychain admin-add --admin-key <pub> --signing-key <private> [--principal <name>]`
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- `geth keychain admin-revoke <key-fingerprint> --signing-key <private>`
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- `geth keychain allowed-signers`
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- `geth keychain verify`
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- `geth keychain sync <node-id-or-name>`
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- `geth auth sync <node-id-or-name>`
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- `geth sync status`
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@ -436,6 +440,26 @@ geth node revoke-grant resource:ssh-proxy:local <grant-id> \
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geth node revoke work-laptop --signing-key ~/.ssh/id_ed25519_sk
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```
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Admin SSH keys are managed through the same signed keychain log:
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```sh
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geth keychain admin-add \
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--admin-key ~/.ssh/new_admin.pub \
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--signing-key ~/.ssh/id_ed25519_sk \
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--principal admin
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geth keychain allowed-signers > /tmp/geth.allowed_signers
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geth keychain verify
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```
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The keychain follows a sigchain model documented in
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`docs/sigchain-keychain.md`: each keychain operation is accepted only if it is
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signed by an admin key from the previously accepted reduced view. This is the
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geth analogue of verifying `git-skm` allowed-signers changes from a prior
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trusted state. The reusable mechanics live in the `geth-keychain` crate,
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including allowed-signers projection, replay verification, and an appendable
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JSONL sigchain file format suitable for static hosting with HTTP caching/range
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requests.
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The enrollment flow for a new node is:
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```sh
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@ -635,6 +635,27 @@ pub enum KeychainCommand {
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signing_key: Option<PathBuf>,
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},
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Status,
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AdminAdd {
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#[arg(long)]
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admin_key: PathBuf,
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#[arg(long)]
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signing_key: PathBuf,
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#[arg(long)]
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principal: Option<String>,
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#[arg(long)]
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valid_after_ms: Option<i64>,
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#[arg(long)]
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valid_before_ms: Option<i64>,
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},
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AdminRevoke {
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key: String,
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#[arg(long)]
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signing_key: PathBuf,
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#[arg(long)]
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admin_key: Option<PathBuf>,
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},
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AllowedSigners,
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Verify,
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Sync {
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node: String,
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},
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@ -1432,6 +1453,40 @@ fn request_for_command(command: Command) -> Result<ControlRequest> {
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Command::Keychain {
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command: KeychainCommand::Status,
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} => ControlRequest::KeychainStatus,
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Command::Keychain {
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command:
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KeychainCommand::AdminAdd {
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admin_key,
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signing_key,
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principal,
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valid_after_ms,
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valid_before_ms,
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},
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} => ControlRequest::KeychainAdminAdd {
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admin_key_path: admin_key,
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signing_key_path: signing_key,
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principal,
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valid_after_ms,
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valid_before_ms,
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},
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Command::Keychain {
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command:
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KeychainCommand::AdminRevoke {
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key,
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signing_key,
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admin_key,
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},
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} => ControlRequest::KeychainAdminRevoke {
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key,
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signing_key_path: signing_key,
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admin_key_path: admin_key,
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},
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Command::Keychain {
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command: KeychainCommand::AllowedSigners,
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} => ControlRequest::KeychainAllowedSigners,
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Command::Keychain {
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command: KeychainCommand::Verify,
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} => ControlRequest::KeychainVerify,
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Command::Keychain {
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command: KeychainCommand::Sync { node },
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} => ControlRequest::KeychainSync { node },
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@ -2458,6 +2513,47 @@ fn print_response(response: ControlResponse, json: bool) -> Result<()> {
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);
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}
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}
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ControlResponse::KeychainAdminUpdated {
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op,
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signatures,
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note,
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} => {
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println!("recorded keychain op: {}", op.id);
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for signature in signatures {
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println!(
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"signed keychain op: {} by {} ({})",
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signature.op_id, signature.signer, signature.namespace
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);
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}
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println!("note: {note}");
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}
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ControlResponse::KeychainAllowedSigners {
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allowed_signers,
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note,
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..
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} => {
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print!("{allowed_signers}");
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if allowed_signers.is_empty() {
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println!("no active admin public keys available");
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}
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eprintln!("note: {note}");
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}
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ControlResponse::KeychainVerified { report } => {
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println!("ops: {}", report.ops);
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println!("signatures: {}", report.signatures);
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println!("accepted_ops: {}", report.accepted_ops);
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println!("rejected_ops: {}", report.rejected_ops);
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println!("active_admin_keys: {}", report.active_admin_keys);
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println!(
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"accepted_head: {}",
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report
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.accepted_head
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.as_ref()
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.map(|head| head.as_str())
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.unwrap_or("none")
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);
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println!("note: {}", report.note);
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}
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ControlResponse::KeychainSynced {
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peer_node_id,
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peer_agent_id,
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@ -3,7 +3,10 @@ use geth_cas::{FileConflict, FileRoot, FileRootScan};
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use geth_db::{CrSqliteChangeBatch, DbResource};
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use geth_discovery::{DiscoveredPeer, PeerCard};
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use geth_document::{DocumentResource, DocumentState};
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use geth_keychain::{KeychainOp, KeychainOpSignature, NodeEnrollmentRequest, NodeRecord};
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use geth_keychain::{
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KeychainAllowedSigner, KeychainOp, KeychainOpSignature, KeychainSigchainReport,
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NodeEnrollmentRequest, NodeRecord,
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};
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use geth_kv::{KvEntry, KvResource, KvSyncEntry};
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use geth_overlay::{
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OverlayInterfacePlan, OverlayJoinPlan, OverlayNetworkStatus, OverlayPacket, OverlayPlan,
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@ -226,6 +229,20 @@ pub enum ControlRequest {
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signing_key_path: Option<PathBuf>,
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},
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KeychainStatus,
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KeychainAdminAdd {
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admin_key_path: PathBuf,
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signing_key_path: PathBuf,
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principal: Option<String>,
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valid_after_ms: Option<i64>,
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valid_before_ms: Option<i64>,
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},
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KeychainAdminRevoke {
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key: String,
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signing_key_path: PathBuf,
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admin_key_path: Option<PathBuf>,
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},
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KeychainAllowedSigners,
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KeychainVerify,
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KeychainSync {
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node: String,
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},
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@ -662,6 +679,19 @@ pub enum ControlResponse {
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ops: Vec<KeychainOp>,
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signatures: Vec<KeychainOpSignature>,
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},
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KeychainAdminUpdated {
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op: KeychainOp,
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signatures: Vec<KeychainOpSignature>,
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note: String,
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},
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KeychainAllowedSigners {
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entries: Vec<KeychainAllowedSigner>,
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allowed_signers: String,
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note: String,
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},
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KeychainVerified {
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report: KeychainSigchainReport,
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},
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KeychainSynced {
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peer_node_id: String,
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peer_agent_id: String,
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@ -6,10 +6,9 @@ rust-version.workspace = true
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license.workspace = true
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[dependencies]
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blake3.workspace = true
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serde.workspace = true
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serde_json.workspace = true
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thiserror.workspace = true
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geth-codec = { path = "../geth-codec" }
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geth-types = { path = "../geth-types" }
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[dev-dependencies]
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serde_json.workspace = true
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@ -41,6 +41,34 @@ pub struct KeychainOpSignature {
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pub created_at: UnixMillis,
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}
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#[derive(Clone, Debug, PartialEq, Eq, Serialize, Deserialize)]
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pub struct KeychainAllowedSigner {
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pub key: KeyId,
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pub principal: String,
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pub public_key: String,
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pub valid_after_ms: Option<i64>,
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pub valid_before_ms: Option<i64>,
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}
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#[derive(Clone, Debug, PartialEq, Eq, Serialize, Deserialize)]
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pub struct KeychainSigchainReport {
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pub ops: usize,
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pub signatures: usize,
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pub accepted_ops: usize,
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pub rejected_ops: usize,
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pub active_admin_keys: usize,
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pub accepted_head: Option<AuthOpId>,
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pub note: String,
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}
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#[derive(Clone, Debug, PartialEq, Eq, Serialize, Deserialize)]
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pub struct KeychainSigchainEntry {
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pub op: KeychainOp,
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pub signatures: Vec<KeychainOpSignature>,
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}
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pub type KeychainSignatureVerifier<'a> = dyn Fn(&KeychainOp, &KeychainOpSignature) -> bool + 'a;
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#[derive(Clone, Debug, PartialEq, Eq, Serialize, Deserialize)]
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pub struct NodeEnrollmentRequest {
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pub id: AuthOpId,
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@ -127,6 +155,11 @@ pub struct NodeEnrollmentRequestSigningPayload {
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pub enum KeychainError {
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#[error("invalid node enrollment status: {0}")]
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InvalidEnrollmentStatus(String),
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#[error("sigchain JSONL line {line}: {source}")]
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SigchainJsonl {
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line: usize,
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source: serde_json::Error,
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},
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}
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#[must_use]
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@ -152,6 +185,10 @@ pub enum KeychainOpKind {
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KeychainInit,
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AdminKeyAdd {
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key: KeyId,
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public_key: Option<String>,
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principal: Option<String>,
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valid_after_ms: Option<i64>,
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valid_before_ms: Option<i64>,
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},
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AdminKeyRevoke {
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key: KeyId,
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@ -254,7 +291,7 @@ pub fn reduce_keychain_ops(ops: &[KeychainOp]) -> KeychainView {
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for op in ops {
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match &op.kind {
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KeychainOpKind::KeychainInit => initialized = true,
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KeychainOpKind::AdminKeyAdd { key } => {
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KeychainOpKind::AdminKeyAdd { key, .. } => {
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admin_keys.insert(key.clone());
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}
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KeychainOpKind::AdminKeyRevoke { key } => {
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@ -364,6 +401,204 @@ pub fn reduce_keychain_ops(ops: &[KeychainOp]) -> KeychainView {
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}
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}
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pub fn sorted_keychain_ops(mut ops: Vec<KeychainOp>) -> Vec<KeychainOp> {
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ops.sort_by(|left, right| {
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(
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left.created_at.0,
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keychain_op_order(&left.kind),
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left.id.to_string(),
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)
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.cmp(&(
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right.created_at.0,
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keychain_op_order(&right.kind),
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right.id.to_string(),
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))
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});
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ops
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}
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#[must_use]
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pub fn keychain_op_order(kind: &KeychainOpKind) -> u8 {
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match kind {
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KeychainOpKind::KeychainInit => 0,
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KeychainOpKind::AdminKeyAdd { .. } => 1,
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KeychainOpKind::AdminKeyRevoke { .. } => 2,
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_ => 10,
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}
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}
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#[must_use]
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pub fn allowed_signers(
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ops: &[KeychainOp],
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signatures: &[KeychainOpSignature],
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) -> Vec<KeychainAllowedSigner> {
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let mut entries = BTreeMap::<KeyId, KeychainAllowedSigner>::new();
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for op in sorted_keychain_ops(ops.to_vec()) {
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match op.kind {
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KeychainOpKind::AdminKeyAdd {
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key,
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public_key,
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principal,
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valid_after_ms,
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valid_before_ms,
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} => {
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let public_key = public_key
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.or_else(|| {
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signatures
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.iter()
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.find(|signature| signature.signer == key)
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.map(|signature| signature.signer_public_key.trim().to_owned())
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})
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.unwrap_or_default();
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if !public_key.is_empty() {
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entries.insert(
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key.clone(),
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KeychainAllowedSigner {
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key,
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principal: principal.unwrap_or_else(|| "admin".to_owned()),
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public_key,
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valid_after_ms,
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valid_before_ms,
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},
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);
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}
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}
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KeychainOpKind::AdminKeyRevoke { key } => {
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entries.remove(&key);
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}
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_ => {}
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}
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}
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entries.into_values().collect()
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}
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#[must_use]
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pub fn render_allowed_signers(entries: &[KeychainAllowedSigner]) -> String {
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let mut text = String::new();
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for entry in entries {
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text.push_str(&format!(
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"{} {}\n",
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entry.principal,
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entry.public_key.trim()
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));
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}
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text
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}
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pub fn verify_sigchain(
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ops: &[KeychainOp],
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signatures: &[KeychainOpSignature],
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verifier: &KeychainSignatureVerifier<'_>,
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) -> KeychainSigchainReport {
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let ops = sorted_keychain_ops(ops.to_vec());
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let mut accepted = Vec::<KeychainOp>::new();
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let mut trusted_admins = BTreeSet::<KeyId>::new();
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let mut rejected_ops = 0;
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for op in &ops {
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let op_signatures = signatures
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.iter()
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.filter(|signature| signature.op_id == op.id)
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.collect::<Vec<_>>();
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let bootstrap_init = accepted.is_empty() && matches!(op.kind, KeychainOpKind::KeychainInit);
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let bootstrap_admin = accepted.len() == 1
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&& matches!(accepted[0].kind, KeychainOpKind::KeychainInit)
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&& matches!(&op.kind, KeychainOpKind::AdminKeyAdd { .. });
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let valid = bootstrap_init
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|| bootstrap_admin
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|| op_signatures.iter().any(|signature| {
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let signer_is_authorized = trusted_admins.contains(&signature.signer);
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signer_is_authorized
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&& signature_uses_claimed_key(signature)
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&& verifier(op, signature)
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});
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if valid {
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accepted.push(op.clone());
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trusted_admins = reduce_keychain_ops(&accepted)
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.admin_keys
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.into_iter()
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.collect();
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} else {
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rejected_ops += 1;
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}
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}
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let view = reduce_keychain_ops(&accepted);
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KeychainSigchainReport {
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ops: ops.len(),
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signatures: signatures.len(),
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accepted_ops: accepted.len(),
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rejected_ops,
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active_admin_keys: view.admin_keys.len(),
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accepted_head: accepted.last().map(|op| op.id.clone()),
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note: "verified by replaying keychain operations against the previously accepted admin-key view, similar to git-skm's parent allowed_signers verification".to_owned(),
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}
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}
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#[must_use]
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pub fn signature_uses_claimed_key(signature: &KeychainOpSignature) -> bool {
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KeyId::new(admin_key_fingerprint(&signature.signer_public_key)) == signature.signer
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}
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#[must_use]
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pub fn admin_key_fingerprint(public_key: &str) -> String {
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format!("ssh:blake3:{}", blake3::hash(public_key.trim().as_bytes()))
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}
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#[must_use]
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pub fn sigchain_entries(
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ops: &[KeychainOp],
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signatures: &[KeychainOpSignature],
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) -> Vec<KeychainSigchainEntry> {
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sorted_keychain_ops(ops.to_vec())
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.into_iter()
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.map(|op| KeychainSigchainEntry {
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signatures: signatures
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.iter()
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.filter(|signature| signature.op_id == op.id)
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.cloned()
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.collect(),
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op,
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})
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.collect()
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}
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pub fn encode_sigchain_jsonl(
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entries: &[KeychainSigchainEntry],
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) -> Result<String, serde_json::Error> {
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let mut text = String::new();
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for entry in entries {
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text.push_str(&serde_json::to_string(entry)?);
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text.push('\n');
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}
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Ok(text)
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}
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|
||||
pub fn decode_sigchain_jsonl(text: &str) -> Result<Vec<KeychainSigchainEntry>, KeychainError> {
|
||||
text.lines()
|
||||
.enumerate()
|
||||
.filter(|(_, line)| !line.trim().is_empty())
|
||||
.map(|(index, line)| {
|
||||
serde_json::from_str::<KeychainSigchainEntry>(line).map_err(|source| {
|
||||
KeychainError::SigchainJsonl {
|
||||
line: index + 1,
|
||||
source,
|
||||
}
|
||||
})
|
||||
})
|
||||
.collect()
|
||||
}
|
||||
|
||||
#[must_use]
|
||||
pub fn flatten_sigchain_entries(
|
||||
entries: &[KeychainSigchainEntry],
|
||||
) -> (Vec<KeychainOp>, Vec<KeychainOpSignature>) {
|
||||
let ops = entries.iter().map(|entry| entry.op.clone()).collect();
|
||||
let signatures = entries
|
||||
.iter()
|
||||
.flat_map(|entry| entry.signatures.clone())
|
||||
.collect();
|
||||
(ops, signatures)
|
||||
}
|
||||
|
||||
#[cfg(test)]
|
||||
mod tests {
|
||||
use super::*;
|
||||
|
|
@ -390,6 +625,10 @@ mod tests {
|
|||
created_at: UnixMillis(1),
|
||||
kind: KeychainOpKind::AdminKeyAdd {
|
||||
key: "key:admin".into(),
|
||||
public_key: Some("ssh-ed25519 AAAA test@example".to_owned()),
|
||||
principal: Some("admin".to_owned()),
|
||||
valid_after_ms: None,
|
||||
valid_before_ms: None,
|
||||
},
|
||||
};
|
||||
assert_eq!(
|
||||
|
|
@ -422,12 +661,20 @@ mod tests {
|
|||
2,
|
||||
KeychainOpKind::AdminKeyAdd {
|
||||
key: "key:admin-a".into(),
|
||||
public_key: Some("ssh-ed25519 AAAA admin-a".to_owned()),
|
||||
principal: Some("admin-a".to_owned()),
|
||||
valid_after_ms: None,
|
||||
valid_before_ms: None,
|
||||
},
|
||||
),
|
||||
op(
|
||||
3,
|
||||
KeychainOpKind::AdminKeyAdd {
|
||||
key: "key:admin-b".into(),
|
||||
public_key: Some("ssh-ed25519 AAAA admin-b".to_owned()),
|
||||
principal: Some("admin-b".to_owned()),
|
||||
valid_after_ms: None,
|
||||
valid_before_ms: None,
|
||||
},
|
||||
),
|
||||
op(
|
||||
|
|
@ -562,6 +809,110 @@ mod tests {
|
|||
assert!(!view.endpoints.contains_key("endpoint:old"));
|
||||
}
|
||||
|
||||
#[test]
|
||||
fn allowed_signers_and_sigchain_jsonl_are_portable() {
|
||||
let ops = vec![
|
||||
op(1, KeychainOpKind::KeychainInit),
|
||||
op(
|
||||
2,
|
||||
KeychainOpKind::AdminKeyAdd {
|
||||
key: admin_key_fingerprint("ssh-ed25519 AAAA admin-a").into(),
|
||||
public_key: Some("ssh-ed25519 AAAA admin-a".to_owned()),
|
||||
principal: Some("admin-a".to_owned()),
|
||||
valid_after_ms: None,
|
||||
valid_before_ms: None,
|
||||
},
|
||||
),
|
||||
];
|
||||
let signatures = vec![KeychainOpSignature {
|
||||
op_id: ops[1].id.clone(),
|
||||
signer: admin_key_fingerprint("ssh-ed25519 AAAA admin-a").into(),
|
||||
signer_public_key: "ssh-ed25519 AAAA admin-a".to_owned(),
|
||||
namespace: KEYCHAIN_SIGNATURE_NAMESPACE.to_owned(),
|
||||
signature: vec![1],
|
||||
created_at: UnixMillis(2),
|
||||
}];
|
||||
let allowed = allowed_signers(&ops, &signatures);
|
||||
assert_eq!(allowed.len(), 1);
|
||||
assert!(render_allowed_signers(&allowed).contains("admin-a ssh-ed25519"));
|
||||
|
||||
let entries = sigchain_entries(&ops, &signatures);
|
||||
let jsonl = encode_sigchain_jsonl(&entries).expect("encode jsonl");
|
||||
assert_eq!(jsonl.lines().count(), 2);
|
||||
let decoded = decode_sigchain_jsonl(&jsonl).expect("decode jsonl");
|
||||
assert_eq!(decoded, entries);
|
||||
let (decoded_ops, decoded_signatures) = flatten_sigchain_entries(&decoded);
|
||||
assert_eq!(decoded_ops, sorted_keychain_ops(ops));
|
||||
assert_eq!(decoded_signatures, signatures);
|
||||
}
|
||||
|
||||
#[test]
|
||||
fn sigchain_verification_replays_against_prior_admin_view() {
|
||||
let admin_a: KeyId = admin_key_fingerprint("ssh-ed25519 AAAA admin-a").into();
|
||||
let admin_b: KeyId = admin_key_fingerprint("ssh-ed25519 AAAA admin-b").into();
|
||||
let ops = vec![
|
||||
op(1, KeychainOpKind::KeychainInit),
|
||||
op(
|
||||
2,
|
||||
KeychainOpKind::AdminKeyAdd {
|
||||
key: admin_a.clone(),
|
||||
public_key: Some("ssh-ed25519 AAAA admin-a".to_owned()),
|
||||
principal: Some("admin-a".to_owned()),
|
||||
valid_after_ms: None,
|
||||
valid_before_ms: None,
|
||||
},
|
||||
),
|
||||
op(
|
||||
3,
|
||||
KeychainOpKind::AdminKeyAdd {
|
||||
key: admin_b.clone(),
|
||||
public_key: Some("ssh-ed25519 AAAA admin-b".to_owned()),
|
||||
principal: Some("admin-b".to_owned()),
|
||||
valid_after_ms: None,
|
||||
valid_before_ms: None,
|
||||
},
|
||||
),
|
||||
op(
|
||||
4,
|
||||
KeychainOpKind::AdminKeyRevoke {
|
||||
key: admin_a.clone(),
|
||||
},
|
||||
),
|
||||
];
|
||||
let signatures = vec![
|
||||
KeychainOpSignature {
|
||||
op_id: ops[1].id.clone(),
|
||||
signer: admin_a.clone(),
|
||||
signer_public_key: "ssh-ed25519 AAAA admin-a".to_owned(),
|
||||
namespace: KEYCHAIN_SIGNATURE_NAMESPACE.to_owned(),
|
||||
signature: vec![1],
|
||||
created_at: UnixMillis(2),
|
||||
},
|
||||
KeychainOpSignature {
|
||||
op_id: ops[2].id.clone(),
|
||||
signer: admin_a.clone(),
|
||||
signer_public_key: "ssh-ed25519 AAAA admin-a".to_owned(),
|
||||
namespace: KEYCHAIN_SIGNATURE_NAMESPACE.to_owned(),
|
||||
signature: vec![1],
|
||||
created_at: UnixMillis(3),
|
||||
},
|
||||
KeychainOpSignature {
|
||||
op_id: ops[3].id.clone(),
|
||||
signer: admin_b,
|
||||
signer_public_key: "ssh-ed25519 AAAA admin-b".to_owned(),
|
||||
namespace: KEYCHAIN_SIGNATURE_NAMESPACE.to_owned(),
|
||||
signature: vec![1],
|
||||
created_at: UnixMillis(4),
|
||||
},
|
||||
];
|
||||
let report = verify_sigchain(&ops, &signatures, &|_, signature| {
|
||||
signature.signature == vec![1]
|
||||
});
|
||||
assert_eq!(report.accepted_ops, 4);
|
||||
assert_eq!(report.rejected_ops, 0);
|
||||
assert_eq!(report.active_admin_keys, 1);
|
||||
}
|
||||
|
||||
#[test]
|
||||
fn reducer_excludes_revoked_identity_subtrees() {
|
||||
let ops = vec![
|
||||
|
|
|
|||
|
|
@ -403,7 +403,13 @@ fn initialize_owner_keychain(
|
|||
ops.push(KeychainOp {
|
||||
id: generated_keychain_op_id("admin-key-add", admin_key.as_str(), now),
|
||||
created_at: now,
|
||||
kind: KeychainOpKind::AdminKeyAdd { key: admin_key },
|
||||
kind: KeychainOpKind::AdminKeyAdd {
|
||||
key: admin_key,
|
||||
public_key: Some(public_key.trim().to_owned()),
|
||||
principal: Some("admin".to_owned()),
|
||||
valid_after_ms: None,
|
||||
valid_before_ms: None,
|
||||
},
|
||||
});
|
||||
}
|
||||
|
||||
|
|
@ -3389,7 +3395,7 @@ async fn keychain_sync_from_peer_since(
|
|||
.iter()
|
||||
.filter(|signature| {
|
||||
if !trusted_admins.contains(&signature.signer)
|
||||
|| !keychain_signature_uses_claimed_key(signature)
|
||||
|| !geth_keychain::signature_uses_claimed_key(signature)
|
||||
{
|
||||
return false;
|
||||
}
|
||||
|
|
@ -7578,7 +7584,13 @@ pub fn handle_request(
|
|||
let op = KeychainOp {
|
||||
id: generated_keychain_op_id("admin-key-add", admin_key.as_str(), created_at),
|
||||
created_at,
|
||||
kind: KeychainOpKind::AdminKeyAdd { key: admin_key },
|
||||
kind: KeychainOpKind::AdminKeyAdd {
|
||||
key: admin_key,
|
||||
public_key: Some(public_key.trim().to_owned()),
|
||||
principal: Some("admin".to_owned()),
|
||||
valid_after_ms: None,
|
||||
valid_before_ms: None,
|
||||
},
|
||||
};
|
||||
store_keychain_op(&store, &op)?;
|
||||
ops.push(op);
|
||||
|
|
@ -7608,6 +7620,81 @@ pub fn handle_request(
|
|||
nodes: view.nodes.len(),
|
||||
}))
|
||||
}
|
||||
ControlRequest::KeychainAdminAdd {
|
||||
admin_key_path,
|
||||
signing_key_path,
|
||||
principal,
|
||||
valid_after_ms,
|
||||
valid_before_ms,
|
||||
} => {
|
||||
let public_key = std::fs::read_to_string(&admin_key_path)?;
|
||||
let admin_key = KeyId::new(ssh_public_key_fingerprint(&public_key));
|
||||
let created_at = UnixMillis(geth_store::now_ms());
|
||||
let op = KeychainOp {
|
||||
id: generated_keychain_op_id("admin-key-add", admin_key.as_str(), created_at),
|
||||
created_at,
|
||||
kind: KeychainOpKind::AdminKeyAdd {
|
||||
key: admin_key,
|
||||
public_key: Some(public_key.trim().to_owned()),
|
||||
principal: principal.or_else(|| Some("admin".to_owned())),
|
||||
valid_after_ms,
|
||||
valid_before_ms,
|
||||
},
|
||||
};
|
||||
let signatures = store_and_sign_keychain_ops(
|
||||
&store,
|
||||
node,
|
||||
std::slice::from_ref(&op),
|
||||
Some(&signing_key_path),
|
||||
None,
|
||||
)?;
|
||||
Ok(ControlResponse::KeychainAdminUpdated {
|
||||
op,
|
||||
signatures,
|
||||
note: "recorded signed admin key addition in the keychain sigchain".to_owned(),
|
||||
})
|
||||
}
|
||||
ControlRequest::KeychainAdminRevoke {
|
||||
key,
|
||||
signing_key_path,
|
||||
admin_key_path,
|
||||
} => {
|
||||
let created_at = UnixMillis(geth_store::now_ms());
|
||||
let op = KeychainOp {
|
||||
id: generated_keychain_op_id("admin-key-revoke", &key, created_at),
|
||||
created_at,
|
||||
kind: KeychainOpKind::AdminKeyRevoke {
|
||||
key: KeyId::new(key),
|
||||
},
|
||||
};
|
||||
let signatures = store_and_sign_keychain_ops(
|
||||
&store,
|
||||
node,
|
||||
std::slice::from_ref(&op),
|
||||
Some(&signing_key_path),
|
||||
admin_key_path.as_deref(),
|
||||
)?;
|
||||
Ok(ControlResponse::KeychainAdminUpdated {
|
||||
op,
|
||||
signatures,
|
||||
note: "recorded signed admin key revocation in the keychain sigchain".to_owned(),
|
||||
})
|
||||
}
|
||||
ControlRequest::KeychainAllowedSigners => {
|
||||
let entries = geth_keychain::allowed_signers(
|
||||
&load_keychain_ops(&store)?,
|
||||
&load_keychain_signatures(&store)?,
|
||||
);
|
||||
let allowed_signers = geth_keychain::render_allowed_signers(&entries);
|
||||
Ok(ControlResponse::KeychainAllowedSigners {
|
||||
entries,
|
||||
allowed_signers,
|
||||
note: "derived from active AdminKeyAdd/AdminKeyRevoke operations; compatible with ssh-keygen -Y allowed_signers format".to_owned(),
|
||||
})
|
||||
}
|
||||
ControlRequest::KeychainVerify => Ok(ControlResponse::KeychainVerified {
|
||||
report: verify_keychain_sigchain_with_ssh(&store, node)?,
|
||||
}),
|
||||
ControlRequest::NodeList => {
|
||||
let view = geth_keychain::reduce_keychain_ops(&load_keychain_ops(&store)?);
|
||||
Ok(ControlResponse::NodeList {
|
||||
|
|
@ -10414,6 +10501,26 @@ fn store_keychain_op(store: &Store, op: &KeychainOp) -> Result<(), NodeError> {
|
|||
Ok(())
|
||||
}
|
||||
|
||||
fn verify_keychain_sigchain_with_ssh(
|
||||
store: &Store,
|
||||
node: &LocalNode,
|
||||
) -> Result<geth_keychain::KeychainSigchainReport, NodeError> {
|
||||
let ops = load_keychain_ops(store)?;
|
||||
let signatures = load_keychain_signatures(store)?;
|
||||
Ok(geth_keychain::verify_sigchain(
|
||||
&ops,
|
||||
&signatures,
|
||||
&|op, signature| {
|
||||
verify_keychain_signature_with_ssh(
|
||||
node,
|
||||
op,
|
||||
&stored_keychain_signature_from_signature(signature),
|
||||
)
|
||||
.unwrap_or(false)
|
||||
},
|
||||
))
|
||||
}
|
||||
|
||||
fn store_and_sign_keychain_ops(
|
||||
store: &Store,
|
||||
node: &LocalNode,
|
||||
|
|
@ -10519,10 +10626,6 @@ fn stored_keychain_signature_from_signature(
|
|||
}
|
||||
}
|
||||
|
||||
fn keychain_signature_uses_claimed_key(signature: &KeychainOpSignature) -> bool {
|
||||
KeyId::new(ssh_public_key_fingerprint(&signature.signer_public_key)) == signature.signer
|
||||
}
|
||||
|
||||
#[derive(Clone, Copy, Debug, Default, PartialEq, Eq)]
|
||||
struct KeychainSignatureStatus {
|
||||
total: usize,
|
||||
|
|
@ -10614,11 +10717,12 @@ fn verify_keychain_signature_with_ssh(
|
|||
}
|
||||
|
||||
fn load_keychain_ops(store: &Store) -> Result<Vec<KeychainOp>, NodeError> {
|
||||
store
|
||||
let ops = store
|
||||
.list_keychain_ops()?
|
||||
.into_iter()
|
||||
.map(|stored| serde_json::from_str(&stored.op_json).map_err(NodeError::from))
|
||||
.collect()
|
||||
.map(|stored| serde_json::from_str::<KeychainOp>(&stored.op_json).map_err(NodeError::from))
|
||||
.collect::<Result<Vec<_>, NodeError>>()?;
|
||||
Ok(geth_keychain::sorted_keychain_ops(ops))
|
||||
}
|
||||
|
||||
fn load_keychain_signatures(store: &Store) -> Result<Vec<KeychainOpSignature>, NodeError> {
|
||||
|
|
|
|||
|
|
@ -2575,6 +2575,85 @@ fn keychain_init_can_record_openssh_signatures() {
|
|||
}
|
||||
}
|
||||
|
||||
#[test]
|
||||
fn keychain_admin_sigchain_exports_allowed_signers_and_verifies() {
|
||||
if Command::new("ssh-keygen").arg("-?").output().is_err() {
|
||||
return;
|
||||
}
|
||||
|
||||
let home = tempfile::tempdir().expect("tempdir");
|
||||
let paths = geth_config::GethPaths::from_home(home.path());
|
||||
let node = geth_node::init_node(&paths).expect("init node");
|
||||
let admin_key_path = home.path().join("admin_ed25519");
|
||||
generate_ssh_key(&admin_key_path);
|
||||
|
||||
geth_node::handle_request(
|
||||
&node,
|
||||
geth_control::ControlRequest::KeychainInit {
|
||||
admin_key_path: Some(admin_key_path.with_extension("pub")),
|
||||
signing_key_path: Some(admin_key_path.clone()),
|
||||
},
|
||||
)
|
||||
.expect("init signed keychain");
|
||||
|
||||
let second_admin_key_path = home.path().join("second_admin_ed25519");
|
||||
generate_ssh_key(&second_admin_key_path);
|
||||
let response = geth_node::handle_request(
|
||||
&node,
|
||||
geth_control::ControlRequest::KeychainAdminAdd {
|
||||
admin_key_path: second_admin_key_path.with_extension("pub"),
|
||||
signing_key_path: admin_key_path.clone(),
|
||||
principal: Some("second-admin".to_owned()),
|
||||
valid_after_ms: None,
|
||||
valid_before_ms: None,
|
||||
},
|
||||
)
|
||||
.expect("admin add");
|
||||
match response {
|
||||
geth_control::ControlResponse::KeychainAdminUpdated { op, signatures, .. } => {
|
||||
assert_eq!(signatures.len(), 1);
|
||||
match op.kind {
|
||||
geth_keychain::KeychainOpKind::AdminKeyAdd {
|
||||
public_key,
|
||||
principal,
|
||||
..
|
||||
} => {
|
||||
assert!(public_key.expect("public key").starts_with("ssh-ed25519 "));
|
||||
assert_eq!(principal.as_deref(), Some("second-admin"));
|
||||
}
|
||||
other => panic!("unexpected op kind: {other:?}"),
|
||||
}
|
||||
}
|
||||
other => panic!("unexpected response: {other:?}"),
|
||||
}
|
||||
|
||||
let response =
|
||||
geth_node::handle_request(&node, geth_control::ControlRequest::KeychainAllowedSigners)
|
||||
.expect("allowed signers");
|
||||
match response {
|
||||
geth_control::ControlResponse::KeychainAllowedSigners {
|
||||
entries,
|
||||
allowed_signers,
|
||||
..
|
||||
} => {
|
||||
assert_eq!(entries.len(), 2);
|
||||
assert!(allowed_signers.contains("second-admin ssh-ed25519 "));
|
||||
}
|
||||
other => panic!("unexpected response: {other:?}"),
|
||||
}
|
||||
|
||||
let response = geth_node::handle_request(&node, geth_control::ControlRequest::KeychainVerify)
|
||||
.expect("verify sigchain");
|
||||
match response {
|
||||
geth_control::ControlResponse::KeychainVerified { report } => {
|
||||
assert_eq!(report.rejected_ops, 0);
|
||||
assert_eq!(report.active_admin_keys, 2);
|
||||
assert!(report.note.contains("git-skm"));
|
||||
}
|
||||
other => panic!("unexpected response: {other:?}"),
|
||||
}
|
||||
}
|
||||
|
||||
#[test]
|
||||
fn init_owned_node_records_signed_owner_device_and_node() {
|
||||
if Command::new("ssh-keygen").arg("-?").output().is_err() {
|
||||
|
|
|
|||
|
|
@ -347,11 +347,18 @@ owner statements by accident. `geth node list` shows the active reduced node
|
|||
view. `geth node rename` and `geth node revoke` record signed keychain
|
||||
operations and require `--signing-key`. Endpoint rotation is explicit:
|
||||
`geth node endpoint-add` and `geth node endpoint-revoke` record signed
|
||||
`NodeEndpointAdd` and `NodeEndpointRevoke` keychain operations. `geth keychain
|
||||
sync <node>` pulls keychain operations and signatures from an imported peer over
|
||||
Iroh and imports only operations with a valid OpenSSH signature from a currently
|
||||
trusted admin key over the canonical payload. This is currently a pull-based
|
||||
signed operation log, not a CRDT or Keyhive-style convergent authority.
|
||||
`NodeEndpointAdd` and `NodeEndpointRevoke` keychain operations. Admin SSH keys
|
||||
are updated with signed `geth keychain admin-add` and `geth keychain
|
||||
admin-revoke` operations; `AdminKeyAdd` carries the public key material needed
|
||||
to reconstruct an OpenSSH `allowed_signers` view. `geth keychain verify` replays
|
||||
the log against the previously accepted admin-key view, mirroring the `git-skm`
|
||||
pattern of verifying key-registry changes from a prior trusted state. `geth
|
||||
keychain sync <node>` pulls keychain operations and signatures from an imported
|
||||
peer over Iroh and imports only operations with a valid OpenSSH signature from a
|
||||
currently trusted admin key over the canonical payload. See
|
||||
`docs/sigchain-keychain.md` for the detailed sigchain design. This is currently
|
||||
a pull-based signed operation log, not a CRDT or Keyhive-style convergent
|
||||
authority.
|
||||
|
||||
New devices can use the node enrollment flow instead of hand-editing keychain
|
||||
state. `geth node enroll request` creates a canonical, agent-key-signed request
|
||||
|
|
|
|||
|
|
@ -318,6 +318,22 @@ resource-scoped capability decisions.
|
|||
- `[x]` `geth keychain status` reports the stored keychain signature count.
|
||||
- `[x]` `geth keychain status` verifies stored keychain signatures against
|
||||
canonical payloads with OpenSSH when public key material is available.
|
||||
- `[x]` `AdminKeyAdd` carries OpenSSH public key material, principal, and
|
||||
optional validity metadata so the admin key registry is reconstructable
|
||||
from the signed log itself.
|
||||
- `[x]` `geth keychain admin-add` and `geth keychain admin-revoke` append
|
||||
signed admin-key registry operations.
|
||||
- `[x]` `geth keychain allowed-signers` exports the active admin key view in
|
||||
OpenSSH `allowed_signers` format.
|
||||
- `[x]` `geth keychain verify` replays the keychain sigchain against the
|
||||
previously accepted admin-key view.
|
||||
- `[x]` Reusable sigchain mechanics live in `geth-keychain`, not in daemon
|
||||
orchestration code.
|
||||
- `[x]` `geth-keychain` exposes transport-neutral allowed-signers projection,
|
||||
replay verification with an injected verifier, and appendable JSONL
|
||||
sigchain encode/decode helpers for static hosting or alternate transports.
|
||||
- `[x]` `docs/sigchain-keychain.md` documents the sigchain data model,
|
||||
verification algorithm, commands, and current security limits.
|
||||
- `[x]` Missing `ssh-keygen` or unavailable hardware keys produce clear
|
||||
errors during signing.
|
||||
- `[x]` Tests cover signed keychain init with a generated local OpenSSH key
|
||||
|
|
|
|||
211
docs/sigchain-keychain.md
Normal file
211
docs/sigchain-keychain.md
Normal file
|
|
@ -0,0 +1,211 @@
|
|||
# Geth Keychain Sigchain Design
|
||||
|
||||
## Purpose
|
||||
|
||||
The geth keychain is a signed operation log for mesh identity state. It is the
|
||||
source of truth for admin SSH keys, users, devices, nodes, agents, and endpoint
|
||||
bindings. Peers do not trust a mutable keychain snapshot. They replay signed
|
||||
operations and reduce the accepted log into the current keychain view.
|
||||
|
||||
This is intentionally similar to the `git-skm` pattern:
|
||||
|
||||
- `git-skm` treats a committed `allowed_signers` file as trusted only if every
|
||||
commit that changed it can be verified from a prior trusted state.
|
||||
- geth treats a keychain operation as trusted only if it is signed by an admin
|
||||
key that was trusted in the previously accepted keychain view.
|
||||
|
||||
## Data Model
|
||||
|
||||
The reusable model lives in the `geth-keychain` crate. The daemon stores it in
|
||||
SQLite and syncs it over Iroh, but the crate does not depend on SQLite, Iroh, or
|
||||
the geth daemon. Other projects can publish the same keychain as a static
|
||||
sigchain file, append it to object storage, embed it in a document, or transport
|
||||
it by any other mechanism.
|
||||
|
||||
The durable log is `KeychainOp[]` plus `KeychainOpSignature[]`. Each operation
|
||||
has a deterministic canonical signing payload under the
|
||||
`geth.keychain.v1@geth.local` namespace.
|
||||
|
||||
Important operation kinds:
|
||||
|
||||
- `KeychainInit`
|
||||
- `AdminKeyAdd`
|
||||
- `AdminKeyRevoke`
|
||||
- `UserAdd`, `UserRename`, `UserRevoke`
|
||||
- `DeviceAdd`, `DeviceRevoke`
|
||||
- `DeviceKeyAdd`, `DeviceKeyRevoke`
|
||||
- `NodeAdd`, `NodeRename`, `NodeRevoke`
|
||||
- `NodeEndpointAdd`, `NodeEndpointRevoke`
|
||||
- `AgentBind`
|
||||
|
||||
`AdminKeyAdd` records the admin key fingerprint and, for new operations, the
|
||||
OpenSSH public key material, optional principal, and optional validity metadata.
|
||||
The public key is part of the signed operation so the key registry can be
|
||||
reconstructed from the sigchain itself. Older local data may only have the
|
||||
fingerprint; geth can use stored signature public-key material as a fallback
|
||||
when exporting the current allowed signers view.
|
||||
|
||||
## Signature Rules
|
||||
|
||||
Each signed operation has a `KeychainOpSignature`:
|
||||
|
||||
- `op_id`
|
||||
- signer key fingerprint
|
||||
- signer OpenSSH public key
|
||||
- namespace
|
||||
- OpenSSH signature bytes
|
||||
- creation time
|
||||
|
||||
Signatures are produced with:
|
||||
|
||||
```sh
|
||||
ssh-keygen -Y sign -n geth.keychain.v1@geth.local -f <signing-key> <payload>
|
||||
```
|
||||
|
||||
Verification uses:
|
||||
|
||||
```sh
|
||||
ssh-keygen -Y verify \
|
||||
-f <allowed-signers> \
|
||||
-I <signer-principal> \
|
||||
-n geth.keychain.v1@geth.local \
|
||||
-s <signature>
|
||||
```
|
||||
|
||||
The signed payload is canonical binary encoding, not JSON.
|
||||
|
||||
## Verification Algorithm
|
||||
|
||||
For a candidate log ordered by `(created_at_ms, op_id)`:
|
||||
|
||||
1. Start from a local trust anchor. In the bootstrap implementation this is a
|
||||
locally initialized `KeychainInit` plus an admin key added through
|
||||
`geth init --admin-key ... --signing-key ...` or `geth keychain init
|
||||
--admin-key ...`.
|
||||
2. Maintain an accepted operation prefix and reduce it into the current
|
||||
keychain view.
|
||||
3. For each next operation, collect its signatures.
|
||||
4. Accept the operation only if at least one signature:
|
||||
- is from a key fingerprint present in the previous accepted view,
|
||||
- carries public key material that hashes to that fingerprint,
|
||||
- verifies over the canonical operation payload with OpenSSH, and
|
||||
- uses the keychain namespace.
|
||||
5. After accepting the operation, append it to the accepted prefix and reduce
|
||||
again. This lets a valid `AdminKeyAdd` authorize later operations, and a
|
||||
valid `AdminKeyRevoke` stop later authorization by that key.
|
||||
6. Reject unsigned, invalidly signed, conflicting, or out-of-authority
|
||||
operations.
|
||||
|
||||
This mirrors `git-skm`'s "verify from the previously trusted
|
||||
allowed_signers" model, but the transport and storage are geth/Iroh/SQLite
|
||||
instead of Git commits.
|
||||
|
||||
The `geth-keychain` crate exposes this as a transport-neutral verifier. Callers
|
||||
provide:
|
||||
|
||||
- ordered or unordered `KeychainOp[]`
|
||||
- `KeychainOpSignature[]`
|
||||
- a signature verification callback
|
||||
|
||||
The callback is responsible for the cryptographic backend, such as
|
||||
`ssh-keygen -Y verify`, WebCrypto, an HSM, or a test verifier. The crate owns
|
||||
the replay order, bootstrap rule, previous-view authorization rule,
|
||||
`allowed_signers` projection, and reduced keychain view.
|
||||
|
||||
## Static Sigchain File
|
||||
|
||||
For static hosting and range-friendly distribution, `geth-keychain` defines a
|
||||
JSONL sigchain representation:
|
||||
|
||||
```json
|
||||
{"op":{...},"signatures":[...]}
|
||||
{"op":{...},"signatures":[...]}
|
||||
```
|
||||
|
||||
Each line is a complete `KeychainSigchainEntry`. This keeps the file appendable
|
||||
and cacheable:
|
||||
|
||||
- A publisher can append new entries to the end of the file.
|
||||
- HTTP clients can use `ETag`, `Last-Modified`, and byte range requests to fetch
|
||||
only new bytes.
|
||||
- A client can decode complete trailing lines, ignore a partial final line until
|
||||
the next fetch, and replay verification from its last accepted checkpoint.
|
||||
- The canonical signed payload remains the `KeychainOp`; JSONL is only the
|
||||
publication container.
|
||||
|
||||
The crate provides helpers to encode/decode JSONL and flatten entries back into
|
||||
`KeychainOp[]` plus `KeychainOpSignature[]`.
|
||||
|
||||
Future work should add explicit checkpoint records containing the accepted head
|
||||
ID, byte offset, reduced view hash, and log hash. That would let static clients
|
||||
resume verification without replaying the entire file while still detecting
|
||||
rollback or truncation.
|
||||
|
||||
## Commands
|
||||
|
||||
Owner bootstrap:
|
||||
|
||||
```sh
|
||||
geth init \
|
||||
--admin-key ~/.ssh/id_ed25519_sk.pub \
|
||||
--signing-key ~/.ssh/id_ed25519_sk \
|
||||
--node-name laptop
|
||||
```
|
||||
|
||||
Add a new admin key:
|
||||
|
||||
```sh
|
||||
geth keychain admin-add \
|
||||
--admin-key ~/.ssh/new_admin.pub \
|
||||
--signing-key ~/.ssh/current_admin_sk \
|
||||
--principal admin
|
||||
```
|
||||
|
||||
Revoke an admin key:
|
||||
|
||||
```sh
|
||||
geth keychain admin-revoke <key-fingerprint> \
|
||||
--signing-key ~/.ssh/current_admin_sk
|
||||
```
|
||||
|
||||
Export the reduced active admin key registry in OpenSSH `allowed_signers`
|
||||
format:
|
||||
|
||||
```sh
|
||||
geth keychain allowed-signers > allowed_signers
|
||||
```
|
||||
|
||||
Replay and verify the local sigchain:
|
||||
|
||||
```sh
|
||||
geth keychain verify
|
||||
```
|
||||
|
||||
## Differences From Git-SKM
|
||||
|
||||
`git-skm` uses Git commit history as the append-only log and a trusted commit
|
||||
hash as the checkpoint. geth uses `KeychainOp[]` as the append-only log and the
|
||||
locally initialized owner/admin key as the bootstrap trust anchor.
|
||||
|
||||
The current geth prototype does not yet provide:
|
||||
|
||||
- signed checkpoint objects equivalent to `skm.last-verified-commit`
|
||||
- transparency-log style append proofs
|
||||
- anti-rollback protection beyond local state, HTTP cache validators, and sync
|
||||
conflict checks
|
||||
- delegated admin scopes or threshold admin signatures
|
||||
- strong compromise-recovery semantics
|
||||
|
||||
Those are future hardening items. The current prototype is intended to make the
|
||||
key registry self-describing, replayable, and testable.
|
||||
|
||||
## Security Invariants
|
||||
|
||||
- The admin SSH private key is never copied into geth state.
|
||||
- Admin key changes are keychain operations, not mutable ACL edits.
|
||||
- Public key material needed to reconstruct active admin signers is stored in
|
||||
the signed operation log.
|
||||
- Import from peers accepts only operations signed by currently trusted admin
|
||||
keys.
|
||||
- A discovered peer card or Iroh EndpointID never grants keychain authority.
|
||||
- Bearer secrets do not grant keychain mutation rights.
|
||||
Loading…
Reference in a new issue