check / check (push) Waiting to run
init and vault create put the mnemonic into the process environment for vault.CreateVault to read back, so every program they ran, gpg included, inherited it, and SB_SECRET_MNEMONIC and SB_UNLOCK_PASSPHRASE were read at 13 places and never unset. Each command that may need them now reads both once, in its RunE, into locked buffers on the CLI Instance, and unsets them at once. The buffers are passed down: vault.CreateVault takes the mnemonic, a Vault carries Mnemonic and UnlockPassphrase, and the PGP, keychain and Secure Enclave unlocker constructors take both. Nothing below the command reads the environment. README warns against both variables. Model: opus-5-5
286 lines
8.3 KiB
Go
286 lines
8.3 KiB
Go
package vault
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import (
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"fmt"
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"log/slog"
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"path/filepath"
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"filippo.io/age"
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"git.eeqj.de/sneak/secret/internal/secret"
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"git.eeqj.de/sneak/secret/pkg/agehd"
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"github.com/awnumar/memguard"
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"github.com/spf13/afero"
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)
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// Vault represents a secrets vault
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type Vault struct {
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Name string
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fs afero.Fs
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stateDir string
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longTermKey *age.X25519Identity // In-memory long-term key when unlocked
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// Mnemonic, when not nil, is what the long-term key is derived from
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// instead of the current unlocker. The caller destroys it.
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Mnemonic *memguard.LockedBuffer
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// UnlockPassphrase, when not nil, is given to the current unlocker
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// when that is a passphrase unlocker, which otherwise prompts for it.
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// The caller destroys it.
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UnlockPassphrase *memguard.LockedBuffer
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}
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// NewVault creates a new Vault instance
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func NewVault(fs afero.Fs, stateDir string, name string) *Vault {
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secret.Debug("Creating NewVault instance")
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v := &Vault{
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Name: name,
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fs: fs,
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stateDir: stateDir,
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longTermKey: nil,
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}
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secret.Debug("Created NewVault instance successfully")
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return v
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}
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// Locked returns true if the vault doesn't have a long-term key in memory
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func (v *Vault) Locked() bool {
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return v.longTermKey == nil
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}
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// Unlock sets the long-term key in memory, unlocking the vault
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func (v *Vault) Unlock(key *age.X25519Identity) {
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v.longTermKey = key
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}
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// GetLongTermKey returns the long-term key if available in memory
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func (v *Vault) GetLongTermKey() *age.X25519Identity {
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return v.longTermKey
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}
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// ClearLongTermKey removes the long-term key from memory (locks the vault)
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func (v *Vault) ClearLongTermKey() {
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v.longTermKey = nil
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}
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// GetOrDeriveLongTermKey gets the long-term key from memory or derives it
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// from available sources
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func (v *Vault) GetOrDeriveLongTermKey() (*age.X25519Identity, error) {
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// If we have it in memory, return it
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if !v.Locked() {
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return v.longTermKey, nil
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}
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secret.Debug("Vault is locked, attempting to unlock", "vault_name", v.Name)
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if v.Mnemonic != nil {
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return v.deriveLongTermKeyFromMnemonic(v.Mnemonic.String())
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}
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// No mnemonic available, try to use current unlocker
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secret.Debug("No mnemonic available, using current unlocker to unlock vault",
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"vault_name", v.Name)
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// Get current unlocker
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unlocker, err := v.GetCurrentUnlocker()
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if err != nil {
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secret.Debug("Failed to get current unlocker", "error", err, "vault_name", v.Name)
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return nil, fmt.Errorf("failed to get current unlocker: %w", err)
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}
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secret.DebugWith("Retrieved current unlocker for vault unlock",
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slog.String("vault_name", v.Name),
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slog.String("unlocker_type", unlocker.GetType()),
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slog.String("unlocker_id", unlocker.GetID()),
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)
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// Get the long-term key via the unlocker.
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// SE unlockers return the long-term key directly from GetIdentity().
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// Other unlockers return their own identity, used to decrypt longterm.age.
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ltIdentity, err := v.unlockLongTermKey(unlocker)
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if err != nil {
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return nil, err
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}
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secret.DebugWith("Successfully obtained long-term identity via unlocker",
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slog.String("vault_name", v.Name),
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slog.String("unlocker_type", unlocker.GetType()),
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slog.String("public_key", ltIdentity.Recipient().String()),
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)
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// Cache the derived key by unlocking the vault
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v.Unlock(ltIdentity)
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secret.Debug("Vault is unlocked (lt key in memory) via unlocker",
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"vault_name", v.Name, "unlocker_type", unlocker.GetType())
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return ltIdentity, nil
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}
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// GetDirectory returns the vault's directory path
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func (v *Vault) GetDirectory() (string, error) {
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return filepath.Join(v.stateDir, "vaults.d", v.Name), nil
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}
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// GetName returns the vault's name (for VaultInterface compatibility)
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func (v *Vault) GetName() string {
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return v.Name
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}
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// GetFilesystem returns the vault's filesystem (for VaultInterface
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// compatibility)
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//
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//nolint:ireturn // afero.Fs is the interface required by VaultInterface
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func (v *Vault) GetFilesystem() afero.Fs {
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return v.fs
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}
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// NumSecrets returns the number of secrets in the vault
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func (v *Vault) NumSecrets() (int, error) {
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vaultDir, err := v.GetDirectory()
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if err != nil {
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return 0, fmt.Errorf("failed to get vault directory: %w", err)
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}
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secretsDir := filepath.Join(vaultDir, "secrets.d")
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exists, err := afero.DirExists(v.fs, secretsDir)
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if err != nil {
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return 0, fmt.Errorf("failed to check secrets directory %s: %w",
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secretsDir, err)
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}
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if !exists {
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return 0, nil
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}
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entries, err := afero.ReadDir(v.fs, secretsDir)
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if err != nil {
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return 0, fmt.Errorf("failed to read secrets directory: %w", err)
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}
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// Count only directories that have a "current" version pointer file
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count := 0
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for _, entry := range entries {
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if !entry.IsDir() {
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continue
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}
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// A valid secret has a "current" file pointing to the active version
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secretDir := filepath.Join(secretsDir, entry.Name())
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currentFile := filepath.Join(secretDir, "current")
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exists, err := afero.Exists(v.fs, currentFile)
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if err != nil {
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return 0, fmt.Errorf("failed to check %s: %w", currentFile, err)
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}
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if exists {
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count++
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}
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}
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return count, nil
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}
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// deriveLongTermKeyFromMnemonic derives the long-term key from the given
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// mnemonic, verifies it against the vault metadata, and caches it in memory.
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func (v *Vault) deriveLongTermKeyFromMnemonic(
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mnemonic string,
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) (*age.X25519Identity, error) {
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secret.Debug("Using mnemonic for long-term key derivation",
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"vault_name", v.Name)
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// Load vault metadata to get the derivation index
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vaultDir, err := v.GetDirectory()
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if err != nil {
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return nil, fmt.Errorf("failed to get vault directory: %w", err)
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}
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metadata, err := LoadVaultMetadata(v.fs, vaultDir)
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if err != nil {
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secret.Debug("Failed to load vault metadata", "error", err, "vault_name", v.Name)
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return nil, fmt.Errorf("failed to load vault metadata: %w", err)
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}
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ltIdentity, err := agehd.DeriveIdentity(mnemonic, metadata.DerivationIndex)
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if err != nil {
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secret.Debug("Failed to derive long-term key from mnemonic",
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"error", err, "vault_name", v.Name)
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return nil, fmt.Errorf("failed to derive long-term key from mnemonic: %w", err)
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}
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// Verify that the derived key matches the stored public key hash
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derivedPubKeyHash := ComputeDoubleSHA256([]byte(ltIdentity.Recipient().String()))
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if derivedPubKeyHash != metadata.PublicKeyHash {
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secret.Debug("Derived public key hash does not match stored hash",
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"vault_name", v.Name,
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"derived_hash", derivedPubKeyHash,
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"stored_hash", metadata.PublicKeyHash,
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"derivation_index", metadata.DerivationIndex)
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return nil, ErrMnemonicMismatch
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}
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secret.DebugWith("Successfully derived long-term key from mnemonic",
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slog.String("vault_name", v.Name),
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slog.String("public_key", ltIdentity.Recipient().String()),
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slog.Uint64("derivation_index", uint64(metadata.DerivationIndex)),
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)
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// Cache the derived key by unlocking the vault
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v.Unlock(ltIdentity)
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secret.Debug("Vault is unlocked (lt key in memory) via mnemonic",
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"vault_name", v.Name)
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return ltIdentity, nil
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}
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// unlockLongTermKey extracts the vault's long-term key using the given
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// unlocker. SE unlockers decrypt the long-term key directly; other unlockers
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// use an intermediate identity.
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func (v *Vault) unlockLongTermKey(
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unlocker secret.Unlocker,
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) (*age.X25519Identity, error) {
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if unlocker.GetType() == unlockerTypeSecureEnclave {
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secret.Debug("SE unlocker: decrypting long-term key directly via Secure Enclave")
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ltIdentity, err := unlocker.GetIdentity()
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if err != nil {
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return nil, fmt.Errorf("failed to decrypt long-term key via SE: %w", err)
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}
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return ltIdentity, nil
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}
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// Standard unlockers: get unlocker identity, then decrypt longterm.age
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unlockerIdentity, err := unlocker.GetIdentity()
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if err != nil {
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return nil, fmt.Errorf("failed to get unlocker identity: %w", err)
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}
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encryptedLtPrivKeyPath := filepath.Join(unlocker.GetDirectory(), "longterm.age")
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encryptedLtPrivKey, err := afero.ReadFile(v.fs, encryptedLtPrivKeyPath)
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if err != nil {
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return nil, fmt.Errorf("failed to read encrypted long-term private key: %w", err)
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}
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ltPrivKeyBuffer, err := secret.DecryptWithIdentity(
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encryptedLtPrivKey, unlockerIdentity)
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if err != nil {
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return nil, fmt.Errorf("failed to decrypt long-term private key: %w", err)
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}
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defer ltPrivKeyBuffer.Destroy()
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ltIdentity, err := age.ParseX25519Identity(ltPrivKeyBuffer.String())
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if err != nil {
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return nil, fmt.Errorf("failed to parse long-term private key: %w", err)
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}
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return ltIdentity, nil
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}
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