Files
secret/internal/cli/init.go
sneak 9ee216f629
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Update golangci-lint to v2.12.2 with canonical config
- Replace .golangci.yml with the canonical strict config (all linters
  enabled except the standard disable list; lll 88, funlen 80/50,
  cyclop 15, dupl 100; test files now linted)
- Pin the Dockerfile lint stage to golangci/golangci-lint:v2.12.2 by
  tag and digest (Debian-based)
- Fix all ~1550 findings surfaced by the new config: line wrapping,
  wsl_v5/nlreturn blank lines, noinlineerr splits, err113 sentinel
  errors, perfsprint/modernize rewrites, goconst constants, thelper,
  testifylint, noctx CommandContext, testpackage conversions,
  t.Parallel() where safe, and complexity/dupl helper extraction
- Record the change and follow-up items in TODO.md
2026-08-07 17:27:23 +00:00

229 lines
6.5 KiB
Go

package cli
import (
"errors"
"fmt"
"log"
"log/slog"
"os"
"path/filepath"
"strings"
"filippo.io/age"
"git.eeqj.de/sneak/secret/internal/secret"
"git.eeqj.de/sneak/secret/internal/vault"
"git.eeqj.de/sneak/secret/pkg/agehd"
"github.com/awnumar/memguard"
"github.com/spf13/cobra"
"github.com/tyler-smith/go-bip39"
)
// errPassphraseMismatch is returned when passphrase confirmation fails
var errPassphraseMismatch = errors.New("passphrases do not match")
// NewInitCmd creates the init command
func NewInitCmd() *cobra.Command {
return &cobra.Command{
Use: "init",
Short: "Initialize the secrets manager",
Long: `Create the necessary directory structure for storing ` +
`secrets and generate encryption keys.`,
RunE: RunInit,
}
}
// RunInit is the exported function that handles the init command
func RunInit(cmd *cobra.Command, _ []string) error {
cli, err := NewCLIInstance()
if err != nil {
log.Fatalf("failed to initialize CLI: %v", err)
}
return cli.Init(cmd)
}
// promptMnemonic reads the mnemonic from the environment or interactively.
// The returned cleanup function must be deferred by the caller.
func promptMnemonic() (string, func(), error) {
if envMnemonic := os.Getenv(secret.EnvMnemonic); envMnemonic != "" {
secret.Debug("Using mnemonic from environment variable")
return envMnemonic, func() {}, nil
}
secret.Debug("Prompting user for mnemonic phrase")
// Read mnemonic securely without echo
mnemonicBuffer, err := secret.ReadPassphrase("Enter your BIP39 mnemonic phrase: ")
if err != nil {
secret.Debug("Failed to read mnemonic from stdin", "error", err)
return "", nil, fmt.Errorf("failed to read mnemonic: %w", err)
}
fmt.Fprintln(os.Stderr) // Add newline after hidden input
return mnemonicBuffer.String(), mnemonicBuffer.Destroy, nil
}
// setupDefaultVault creates the default vault and derives its long-term
// identity from the mnemonic
func (cli *Instance) setupDefaultVault(
stateDir, mnemonicStr string,
) (*vault.Vault, *age.X25519Identity, error) {
// Create the default vault - it will handle key derivation internally
secret.Debug("Creating default vault")
vlt, err := vault.CreateVault(cli.fs, cli.stateDir, "default")
if err != nil {
secret.Debug("Failed to create default vault", "error", err)
return nil, nil, fmt.Errorf("failed to create default vault: %w", err)
}
// Get the vault metadata to retrieve the derivation index
vaultDir := filepath.Join(stateDir, "vaults.d", "default")
metadata, err := vault.LoadVaultMetadata(cli.fs, vaultDir)
if err != nil {
secret.Debug("Failed to load vault metadata", "error", err)
return nil, nil, fmt.Errorf("failed to load vault metadata: %w", err)
}
// Derive the long-term key using the same index that CreateVault used
ltIdentity, err := agehd.DeriveIdentity(mnemonicStr, metadata.DerivationIndex)
if err != nil {
secret.Debug("Failed to derive long-term key", "error", err)
return nil, nil, fmt.Errorf(
"failed to derive long-term key from mnemonic: %w", err)
}
return vlt, ltIdentity, nil
}
// Init initializes the secret manager
func (cli *Instance) Init(cmd *cobra.Command) error {
secret.Debug("Starting secret manager initialization")
// Create state directory
stateDir := cli.GetStateDir()
secret.DebugWith("Creating state directory", slog.String("path", stateDir))
err := cli.fs.MkdirAll(stateDir, secret.DirPerms)
if err != nil {
secret.Debug("Failed to create state directory", "error", err)
return fmt.Errorf("failed to create state directory: %w", err)
}
if cmd != nil {
cmd.Printf("Initialized secrets manager at: %s\n", stateDir)
}
// Prompt for mnemonic
mnemonicStr, cleanupMnemonic, err := promptMnemonic()
if err != nil {
return err
}
defer cleanupMnemonic()
if mnemonicStr == "" {
secret.Debug("Empty mnemonic provided")
return errMnemonicEmpty
}
// Validate the mnemonic using BIP39
secret.DebugWith("Validating BIP39 mnemonic",
slog.Int("word_count", len(strings.Fields(mnemonicStr))))
if !bip39.IsMnemonicValid(mnemonicStr) {
secret.Debug("Invalid BIP39 mnemonic provided")
return fmt.Errorf(
"%w\nRun 'secret generate mnemonic' to create a valid mnemonic",
errInvalidMnemonicPhrase)
}
// Set mnemonic in environment for CreateVault to use
restoreMnemonicEnv := setMnemonicEnv(mnemonicStr)
defer restoreMnemonicEnv()
// Create the default vault and derive its long-term key
vlt, ltIdentity, err := cli.setupDefaultVault(stateDir, mnemonicStr)
if err != nil {
return err
}
ltPubKey := ltIdentity.Recipient().String()
// Unlock the vault with the derived long-term key
vlt.Unlock(ltIdentity)
// Prompt for passphrase for unlocker
passphraseBuffer, err := resolvePassphrase()
if err != nil {
return err
}
defer passphraseBuffer.Destroy()
// Create passphrase-protected unlocker
secret.Debug("Creating passphrase-protected unlocker")
passphraseUnlocker, err := vlt.CreatePassphraseUnlocker(passphraseBuffer)
if err != nil {
secret.Debug("Failed to create unlocker", "error", err)
return fmt.Errorf("failed to create unlocker: %w", err)
}
// Note: CreatePassphraseUnlocker already encrypts and writes the long-term
// private key to longterm.age, so no need to do it again here.
if cmd != nil {
cmd.Printf("\nDefault vault created and configured\n")
cmd.Printf("Long-term public key: %s\n", ltPubKey)
cmd.Printf("Unlocker ID: %s\n", passphraseUnlocker.GetID())
cmd.Println("\nYour secret manager is ready to use!")
cmd.Println("Note: When using SB_SECRET_MNEMONIC environment variable,")
cmd.Println("unlockers are not required for secret operations.")
}
return nil
}
// readSecurePassphrase reads a passphrase securely from the terminal without echoing
// This version adds confirmation (read twice) for creating new unlockers
// Returns a LockedBuffer containing the passphrase
func readSecurePassphrase(prompt string) (*memguard.LockedBuffer, error) {
// Get the first passphrase
passphraseBuffer1, err := secret.ReadPassphrase(prompt)
if err != nil {
return nil, err
}
// Read confirmation passphrase
passphraseBuffer2, err := secret.ReadPassphrase("Confirm passphrase: ")
if err != nil {
passphraseBuffer1.Destroy()
return nil, fmt.Errorf("failed to read passphrase confirmation: %w", err)
}
// Compare passphrases
if passphraseBuffer1.String() != passphraseBuffer2.String() {
passphraseBuffer1.Destroy()
passphraseBuffer2.Destroy()
return nil, errPassphraseMismatch
}
// Clean up the second buffer, we'll return the first
passphraseBuffer2.Destroy()
// Return the first buffer (caller is responsible for destroying it)
return passphraseBuffer1, nil
}