Files
sonr/x/dwn/keeper/vault_secure.go
40eadc995e Feat/1285 es ucan formatting (#1302)
* feat: Add Enclave Usage Examples

* feat(es/ucan): Add comprehensive integration tests

- Create integration.test.ts with full UCAN token lifecycle testing
- Cover end-to-end token creation, parsing, and validation
- Test capability attenuation and delegation chains
- Validate multi-algorithm support and timestamp scenarios
- Implement error recovery and performance test scenarios

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Co-Authored-By: Claude <noreply@anthropic.com>

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* chore: Remove migrated components and add migration documentation

Removed all code and references for components that have been moved to separate repositories:

**Moved to sonr-io/hway:**
- bridge/ - HTTP service with OAuth2/OIDC/WebAuthn handlers
- cmd/hway/ - Highway service binary
- internal/migrations/ - PostgreSQL schema migrations

**Moved to sonr-io/motr:**
- cmd/motr/ - Motor worker service (WASM vault operations)
- cmd/vault/ - Vault CLI tool
- crypto/ - Comprehensive cryptographic library
- packages/ - TypeScript SDK packages (es, sdk, ui, com, pkl)
- web/auth/ - Authentication web application
- web/dash/ - Dashboard web application

**Updated Configuration:**
- Makefile: Removed build/test/release targets for moved components
- CLAUDE.md: Simplified to focus on core blockchain components
- devbox.json: Removed scripts for moved services
- docker-compose.yml: Removed hway, postgres, redis, auth, dash services
- .github/scopes.yml: Removed CI scopes for migrated components
- .goreleaser.yml: Updated release configuration

**Added Migration Documentation:**
- MIGRATE_HWAY.md: Comprehensive Highway service architecture and migration guide
- MIGRATE_MOTR.md: Comprehensive Motor/Worker/Vault architecture and migration guide

These migration documents provide complete context for setting up the new repositories including architecture diagrams, component breakdowns, API documentation, and migration checklists.

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Co-Authored-By: Claude <noreply@anthropic.com>

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* chore: Remove contracts references and documentation

Removed all references to the contracts directory that was migrated to a separate repository.

**Changes:**
- .gitignore: Removed contract-specific ignore patterns for DAO and wSNR contracts
- .gitignore: Removed hway and motr binary references (already migrated)
- .rgignore: Removed contracts, chains, and crypto directory references
- docs/reference/contracts/: Removed DAO.mdx and wSNR.mdx documentation files

This completes the cleanup of migrated components from the repository.

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Co-Authored-By: Claude <noreply@anthropic.com>

* docs: add crypto library migration documentation

Added comprehensive migration documentation for the crypto library that was
moved to sonr-io/crypto repository. This documentation provides complete context
for understanding the cryptographic primitives and protocols used throughout
the Sonr ecosystem.

## Key Documentation Added

### MIGRATE_CRYPTO.md
Complete documentation of the crypto library covering:

**Core Cryptographic Primitives**
- Elliptic curve implementations (Ed25519, Secp256k1, P-256, BLS12-381, Pallas/Vesta)
- Native curve arithmetic with optimized field operations
- Pairing-friendly curves for BLS signatures

**Multi-Party Computation (MPC)**
- MPC enclave for vault key generation and management
- Threshold cryptography (TECDSA, TED25519 with FROST protocol)
- Distributed Key Generation (DKG) via Gennaro and FROST protocols
- Secret sharing schemes (Shamir, Feldman VSS, Pedersen VSS)

**Digital Signature Schemes**
- BLS signatures with aggregation support
- BBS+ signatures for selective disclosure
- Schnorr signatures (standard and Mina/NEM variants)
- ECDSA with deterministic nonce generation

**Zero-Knowledge Proofs**
- Bulletproofs for range proofs
- Inner Product Arguments (IPA)
- Batch verification support

**Advanced Cryptographic Protocols**
- Cryptographic accumulators for set membership proofs
- Paillier homomorphic encryption
- Oblivious Transfer (OT) protocols
- Verifiable Random Functions (VRF)

**Key Management & Identity**
- DID key management with multi-chain support
- Multi-algorithm public key handling
- Wallet address derivation (Bitcoin, Ethereum, Cosmos, Solana, etc.)

**UCAN Integration**
- User-Controlled Authorization Networks
- Capability delegation and attenuation
- JWT-based capability tokens
- MPC-enabled UCAN signing

**Security Utilities**
- AEAD encryption (AES-GCM, AES-SIV)
- Argon2 key derivation
- ECIES encryption
- Secure memory handling

### MIGRATE_MOTR.md Updates
Updated Motor migration documentation to clarify that the crypto library
is now a separate external dependency at github.com/sonr-io/crypto v1.0.1

## Repository Context

The crypto library has been successfully migrated to its own repository
and is published as a Go module. It serves as the foundational cryptographic
layer for:
- Sonr blockchain (snrd) - DID signatures, vault operations
- Highway service (hway) - UCAN token signing, WebAuthn
- Motor/Worker (motr) - MPC vault operations, threshold signatures

## Integration Impact

All Sonr ecosystem components now depend on the external crypto library:
```go
require github.com/sonr-io/crypto v1.0.1
```

The migration enables independent versioning and maintenance of cryptographic
primitives while maintaining security and compatibility across the ecosystem.

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Co-Authored-By: Claude <noreply@anthropic.com>

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---------

Co-authored-by: Claude <noreply@anthropic.com>
2025-10-10 11:47:18 -04:00

168 lines
4.6 KiB
Go

package keeper
import (
"context"
"fmt"
"github.com/sonr-io/crypto/argon2"
"github.com/sonr-io/crypto/mpc"
"github.com/sonr-io/crypto/password"
didtypes "github.com/sonr-io/sonr/x/did/types"
)
// CreateVaultForDIDSecure creates a vault with user-provided password
func (k Keeper) CreateVaultForDIDSecure(
ctx context.Context,
did string,
owner string,
vaultID string,
keyID string,
userPassword []byte,
enclaveData *mpc.EnclaveData,
) (*didtypes.CreateVaultResponse, error) {
// Validate password strength
validator := password.NewValidator(password.DefaultPasswordConfig())
if err := validator.Validate(userPassword); err != nil {
return nil, fmt.Errorf("password validation failed: %w", err)
}
// Create Argon2id KDF with default secure parameters
kdf := argon2.New(argon2.DefaultConfig())
// Generate secure salt
salt, err := kdf.GenerateSalt()
if err != nil {
return nil, fmt.Errorf("failed to generate salt: %w", err)
}
// Derive encryption key using Argon2id
derivedKey := kdf.DeriveKey(userPassword, salt)
// Clear password from memory
defer password.ZeroBytes(userPassword)
// Encrypt enclave data with derived key
encryptedData, err := k.encryptEnclaveData(enclaveData, derivedKey)
if err != nil {
return nil, fmt.Errorf("failed to encrypt vault data: %w", err)
}
// Store vault with encrypted data and salt
vaultState, err := k.storeSecureVault(ctx, vaultID, owner, encryptedData, salt)
if err != nil {
return nil, fmt.Errorf("failed to store secure vault: %w", err)
}
return &didtypes.CreateVaultResponse{
VaultID: vaultState.VaultId,
}, nil
}
// UnlockVault unlocks a vault using the user's password
func (k Keeper) UnlockVault(
ctx context.Context,
vaultID string,
userPassword []byte,
) (*mpc.EnclaveData, error) {
// Retrieve vault state with salt
vaultState, err := k.getVaultState(ctx, vaultID)
if err != nil {
return nil, fmt.Errorf("failed to retrieve vault: %w", err)
}
if len(vaultState.Salt) == 0 {
return nil, fmt.Errorf("vault salt not found")
}
// Create KDF with same config as creation
kdf := argon2.New(argon2.DefaultConfig())
// Derive key using stored salt
derivedKey := kdf.DeriveKey(userPassword, vaultState.Salt)
// Clear password from memory
defer password.ZeroBytes(userPassword)
// Decrypt enclave data
enclaveData, err := k.decryptEnclaveData(vaultState.EncryptedData, derivedKey)
if err != nil {
return nil, fmt.Errorf("failed to decrypt vault: invalid password")
}
return enclaveData, nil
}
// encryptEnclaveData encrypts enclave data with AES-GCM
func (k Keeper) encryptEnclaveData(data *mpc.EnclaveData, key []byte) ([]byte, error) {
// Implementation would use AES-GCM for authenticated encryption
// This is a placeholder - actual implementation needs crypto/cipher
// For now, return a placeholder
// In production, this would:
// 1. Serialize enclave data to JSON
// 2. Create AES-GCM cipher with key
// 3. Generate nonce
// 4. Encrypt and authenticate data
// 5. Return nonce + ciphertext
return []byte("encrypted_placeholder"), nil
}
// decryptEnclaveData decrypts enclave data
func (k Keeper) decryptEnclaveData(encryptedData []byte, key []byte) (*mpc.EnclaveData, error) {
// Implementation would use AES-GCM for authenticated decryption
// This is a placeholder - actual implementation needs crypto/cipher
// For now, return a placeholder
// In production, this would:
// 1. Extract nonce from encrypted data
// 2. Create AES-GCM cipher with key
// 3. Decrypt and verify authentication
// 4. Deserialize JSON to enclave data
// 5. Return decrypted enclave data
return &mpc.EnclaveData{}, nil
}
// storeSecureVault stores encrypted vault data with salt
func (k Keeper) storeSecureVault(
ctx context.Context,
vaultID string,
owner string,
encryptedData []byte,
salt []byte,
) (*VaultStateWithSalt, error) {
// This would store the vault state with salt in the database
// For now, return a placeholder
vaultState := &VaultStateWithSalt{
VaultId: vaultID,
Owner: owner,
EncryptedData: encryptedData,
Salt: salt,
}
// In production: k.OrmDB.VaultStateTable().Insert(ctx, vaultState)
return vaultState, nil
}
// getVaultState retrieves vault state with salt
func (k Keeper) getVaultState(ctx context.Context, vaultID string) (*VaultStateWithSalt, error) {
// This would retrieve the vault state from the database
// For now, return a placeholder
return &VaultStateWithSalt{
VaultId: vaultID,
Salt: []byte("placeholder_salt"),
}, nil
}
// VaultStateWithSalt extends vault state with salt storage
type VaultStateWithSalt struct {
VaultId string
Owner string
EncryptedData []byte
Salt []byte
}