Key rotation uses version-indexed derivation paths: each key version maps
to a distinct SLIP-0010 path (m/74'/2'/0'/{version-2}'). v2 is at index 0
(PATHS::ENCRYPTION), v3 at index 1, etc.
Mechanism:
- encryption_path_for_version(version) constructs the path
- decrypt derives the key at the version-indicated path (not always
PATHS::ENCRYPTION)
- rotate(blob, to_version) decrypts with old key, re-encrypts with new
- No new mnemonic needed — same seed, different path
- Partial rotation is safe — old keys remain derivable
- The vault does not self-rotate; the assembly layer iterates blobs
Source drift flagged:
- decrypt currently ignores key_version for path selection (always uses
PATHS::ENCRYPTION) — must use version-indexed paths
- rotate method does not exist in source — must be added
- CURRENT_KEY_VERSION must bump from 1 to 2 (per ADR-020, reinforced here)
OQ-22 resolved. Only OQ-21 (remote vault admin, deferred) remains.
278 lines
10 KiB
Markdown
278 lines
10 KiB
Markdown
---
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status: draft
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last_updated: 2026-06-19
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---
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# Mnemonic and Key Derivation
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BIP39 mnemonic generation, SLIP-0010 Ed25519 HD key derivation, BIP-0032
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secp256k1 derivation (feature-gated), and the derivation path constants that
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alknet uses.
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## What
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The vault derives keys from a single root: a BIP39 mnemonic. From one
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mnemonic, all self-generated secrets are derived on demand via
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hierarchical deterministic (HD) derivation. This is the same model as
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cryptocurrency wallets — one seed phrase, many derived keys.
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Two derivation schemes are supported:
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| Scheme | Curve | Standard | Paths | Feature |
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|--------|-------|----------|-------|---------|
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| SLIP-0010 | Ed25519 | HMAC-SHA512 with `"ed25519 seed"` | Hardened only | default |
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| BIP-0032 | secp256k1 | HMAC-SHA512 with `"Bitcoin seed"` | Hardened + unhardened | `secp256k1` |
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Ed25519 is the default — it's what alknet's TLS identity (ADR-010), SSH
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host keys, and signing keys use. secp256k1 is feature-gated for Ethereum
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signing (the standard Ethereum path `m/44'/60'/0'/0/0` requires
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unhardened indices, which SLIP-0010 cannot handle).
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## Why HD Derivation
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HD derivation lets one seed produce an unlimited number of keys at
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deterministic paths. This means:
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- **No key storage**: keys are derived on demand, not stored. The vault
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caches derived keys for performance, but the cache is rebuildable from
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the seed.
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- **Reproducible across nodes**: the same mnemonic on a different node
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produces the same keys. A backup node derives the same identity key.
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- **Domain separation**: different paths produce different keys. The
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identity key, SSH host key, encryption key, and signing keys are all
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cryptographically independent despite coming from one seed.
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- **Auditable derivation**: the path records what a key is for.
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`m/74'/0'/0'/0'` is the identity key; `m/74'/0'/1'/0'` is the SSH host
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key. The path is the documentation.
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## BIP39 Mnemonic
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The root of trust is a BIP39 mnemonic seed phrase. The vault generates,
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validates, and derives seeds from mnemonics.
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```rust
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pub struct Mnemonic {
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phrase: String, // zeroized on drop
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}
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impl Mnemonic {
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pub fn generate(word_count: usize) -> Result<Self, MnemonicError>;
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pub fn from_phrase(phrase: &str, language: Language) -> Result<Self, MnemonicError>;
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pub fn to_seed(&self, passphrase: Option<&str>) -> Seed;
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pub fn phrase(&self) -> &str;
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}
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```
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- `generate(word_count)`: Generate a new random mnemonic. Supported word
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counts: 12, 15, 18, 21, 24. The mnemonic is the root of trust — store it
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securely.
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- `from_phrase(phrase, language)`: Restore from an existing phrase.
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Validates against the BIP39 word list and checksum.
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- `to_seed(passphrase)`: Derive the 64-byte master seed. The passphrase is
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the optional BIP39 password extension (the "25th word"). Different
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passphrases produce different seeds.
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- `phrase()`: Return the phrase string. Handle with care — this is the
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root of trust.
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`Mnemonic` implements `Zeroize` and `Drop` — the phrase is zeroized
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before deallocation. Only English is supported (matching the BIP39
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reference and the majority of wallet software).
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### Seed
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```rust
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#[derive(Clone, Zeroize)]
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#[zeroize(drop)]
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pub struct Seed {
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bytes: Vec<u8>, // 64 bytes, zeroized on drop
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}
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```
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The 64-byte seed from which all HD keys are derived. Zeroized on drop.
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This is the input to SLIP-0010 / BIP-0032 master key derivation.
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## SLIP-0010 Ed25519 Derivation
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The default derivation scheme. SLIP-0010 specifies Ed25519 HD key
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derivation using HMAC-SHA512 with the key `"ed25519 seed"`.
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```rust
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pub fn derive_path_from_seed(seed: &[u8], path: &str) -> Result<ExtendedPrivKey, DerivationError>;
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```
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### Master key derivation
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The master key is derived from the seed via HMAC-SHA512:
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```
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HMAC-SHA512(key = "ed25519 seed", data = seed)
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→ first 32 bytes: private key (kL)
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→ next 32 bytes: chain code
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```
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The `ed25519-bip32` crate handles the extended key format (kL || kR ||
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chain code). The vault extracts the first 32 bytes as the private key and
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the public key (32 bytes) via `XPrv::public()`.
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### Child derivation
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SLIP-0010 Ed25519 supports **hardened child derivation only**. Every child
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index must have the `'` (or `h`) suffix, meaning `index + 0x80000000`.
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Unhardened indices are rejected by the derivation logic (Ed25519 cannot
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support them because public key derivation is not possible without the
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private key).
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### Path parsing
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```rust
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pub fn parse_derivation_path(path: &str) -> Result<Vec<u32>, DerivationError>;
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```
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Parses paths like `m/74'/0'/0'/0'` into child indices. The `m` prefix is
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required. Hardened indices have `'` or `h` suffix; unhardened indices are
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allowed in the parser (for BIP-0032 paths) but Ed25519 derivation will
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fail on them.
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### ExtendedPrivKey
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```rust
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#[derive(Clone, Zeroize)]
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#[zeroize(drop)]
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pub struct ExtendedPrivKey {
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private_key: Vec<u8>, // 32 bytes
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public_key: Vec<u8>, // 32 bytes
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chain_code: Vec<u8>, // 32 bytes
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path: String, // the path that produced this key
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}
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```
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The result of SLIP-0010 derivation. Zeroized on drop. Accessors return
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slices — the caller copies what it needs.
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## BIP-0032 secp256k1 Derivation (Ethereum)
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Feature-gated behind `secp256k1`. Implements BIP-0032 HD key derivation for
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the secp256k1 curve, used for Ethereum signing keys.
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```rust
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#[cfg(feature = "secp256k1")]
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pub fn derive_secp256k1_path(seed: &[u8], path: &str) -> Result<Secp256k1ExtendedPrivKey, DerivationError>;
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```
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Unlike SLIP-0010 (Ed25519), BIP-0032 supports both hardened and
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unhardened child derivation. The standard Ethereum path
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`m/44'/60'/0'/0/0` uses unhardened indices for the last two levels.
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### Why a separate module
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SLIP-0010 and BIP-0032 differ in:
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| Aspect | SLIP-0010 (Ed25519) | BIP-0032 (secp256k1) |
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|--------|---------------------|----------------------|
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| HMAC key | `"ed25519 seed"` | `"Bitcoin seed"` |
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| Child derivation | Hardened only | Hardened + unhardened |
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| Public key size | 32 bytes | 33 bytes (compressed) |
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| Public derivation | Not possible | Possible (unhardened) |
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The `secp256k1` crate is a heavy dependency (it includes a C library for
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curve operations). Feature-gating it keeps the default vault lightweight —
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nodes that don't need Ethereum signing don't pay the cost.
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When the feature is disabled, `derive_ethereum_key` returns
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`VaultServiceError::UnsupportedKeyType`.
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## Derivation Paths
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alknet reserves the `74'` coin type (unallocated per SLIP-0044) for its
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keys. Well-known paths are constants in the `PATHS` module:
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```rust
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pub mod PATHS {
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pub const IDENTITY: &str = "m/74'/0'/0'/0'"; // Primary identity keypair
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pub const DEVICE_PREFIX: &str = "m/74'/0'/0'"; // Worker/device identity prefix
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pub const SSH_HOST: &str = "m/74'/0'/1'/0'"; // SSH host key
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pub const ENCRYPTION: &str = "m/74'/2'/0'/0'"; // AES-256-GCM encryption key
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pub const ETHEREUM: &str = "m/44'/60'/0'/0/0"; // Ethereum signing key (secp256k1)
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}
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```
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Helper functions construct parameterized paths:
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```rust
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pub fn device_path(index: u32) -> String; // m/74'/0'/0'/{index}'
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pub fn site_password_path(site_hash: &str) -> String; // m/74'/1'/0'/{site_hash}'
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```
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### Path semantics
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| Path | Purpose | Key type | Used by |
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|------|---------|----------|---------|
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| `m/74'/0'/0'/0'` | Primary node identity (Ed25519) | Ed25519 | TLS raw key (ADR-010), node identity |
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| `m/74'/0'/0'/{n}'` | Worker/device identity | Ed25519 | Multi-device nodes, workers |
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| `m/74'/0'/1'/0'` | SSH host key | Ed25519 | SSH handler |
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| `m/74'/1'/0'/{hash}'` | Site-specific deterministic password | Ed25519 bytes | Per-site passwords (not cached) |
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| `m/74'/2'/0'/0'` | Encryption key for external credentials | AES-256-GCM | Credential encryption (v2, see [encryption.md](encryption.md)) |
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| `m/44'/60'/0'/0/0` | Ethereum signing key | secp256k1 | Ethereum signing (feature-gated) |
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Helper functions construct parameterized paths:
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```rust
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pub fn device_path(index: u32) -> String; // m/74'/0'/0'/{index}'
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pub fn site_password_path(site_hash: &str) -> String; // m/74'/1'/0'/{site_hash}'
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pub fn encryption_path_for_version(version: u32) -> String; // m/74'/2'/0'/{version-2}'
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```
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`encryption_path_for_version` maps a key version to its derivation path
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(ADR-021). v2 (current) maps to `m/74'/2'/0'/0'` (which is `PATHS::ENCRYPTION`);
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v3 maps to `m/74'/2'/0'/1'`; etc. This is the rotation mechanism — each
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version gets a cryptographically independent key from the same seed.
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`KeyType` tags `DerivedKey` (see [protocol.md](protocol.md)) and
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`CachedKey` (see [service.md](service.md)) so consumers know what they
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received without inspecting byte lengths.
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## Determinism
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Derivation is deterministic: the same mnemonic + passphrase + path
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always produces the same key. This is verified by regression tests in
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`tests/test_vectors.rs` against the BIP39 "abandon...about" test vector.
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### Passphrase sensitivity
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Different passphrases produce different seeds and therefore different
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keys. The passphrase is a legitimate access-control mechanism: two
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operators with the same mnemonic but different passphrases get different
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keysets. The vault does not enforce a passphrase policy — that's an
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assembly-layer concern.
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## Design Decisions
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| Decision | ADR | Summary |
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|----------|-----|---------|
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| Vault is standalone | [ADR-018](../../decisions/018-vault-standalone-crate.md) | Zero alknet crate dependencies |
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| HD derivation (not stored keys) | — | One seed, many keys, no key storage |
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| `74'` coin type reserved for alknet | — | SLIP-0044 unallocated; alknet namespace |
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| secp256k1 feature-gated | — | Heavy dep; only needed for Ethereum |
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| Hardened-only for Ed25519 | SLIP-0010 | Ed25519 cannot do public derivation |
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## Open Questions
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See [open-questions.md](../../open-questions.md) for full details.
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- **OQ-20** (resolved by ADR-020): Encryption key derivation — HD derivation
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from seed, not PBKDF2. The salt field is unused in v2. See
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[encryption.md](encryption.md).
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## References
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- [BIP39](https://github.com/bitcoin/bips/blob/master/bip-0039.mediawiki) —
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mnemonic seed phrases
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- [SLIP-0010](https://github.com/satoshilabs/slips/blob/master/slip-0010.md) —
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Ed25519 HD derivation
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- [BIP-0032](https://github.com/bitcoin/bips/blob/master/bip-0032.mediawiki) —
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secp256k1 HD derivation
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- [SLIP-0044](https://github.com/satoshilabs/slips/blob/master/slip-0044.md) —
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registered coin types (74' is unallocated)
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- Implementation: `crates/alknet-vault/src/mnemonic.rs`,
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`crates/alknet-vault/src/derivation.rs`, `crates/alknet-vault/src/ethereum.rs`
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- Test vectors: `crates/alknet-vault/tests/test_vectors.rs` |