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secret/internal/vault/integration_test.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,
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2026-08-07 17:27:23 +00:00

458 lines
12 KiB
Go

package vault_test
import (
"os"
"path/filepath"
"slices"
"testing"
"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/afero"
)
// deriveVaultIdentity derives the long-term identity for the given vault
// from testMnemonic using the derivation index stored in its metadata.
func deriveVaultIdentity(
t *testing.T, fs afero.Fs, vlt *vault.Vault,
) *age.X25519Identity {
t.Helper()
vaultDir, err := vlt.GetDirectory()
if err != nil {
t.Fatalf("Failed to get vault directory: %v", err)
}
vaultMetadata, err := vault.LoadVaultMetadata(fs, vaultDir)
if err != nil {
t.Fatalf("Failed to load vault metadata: %v", err)
}
ltIdentity, err := agehd.DeriveIdentity(testMnemonic,
vaultMetadata.DerivationIndex)
if err != nil {
t.Fatalf("Failed to derive long-term key: %v", err)
}
return ltIdentity
}
//nolint:paralleltest // t.Setenv forbids parallel subtests
func TestVaultWithRealFilesystem(t *testing.T) {
// Create a temporary directory for our tests
tempDir := t.TempDir()
// Use the real filesystem
fs := afero.NewOsFs()
// Set test environment variables
t.Setenv(secret.EnvMnemonic, testMnemonic)
t.Setenv(secret.EnvUnlockPassphrase, testPassphrase)
// Test currentvault file handling (plain file with relative path)
t.Run("CurrentVaultFileHandling", func(t *testing.T) {
testCurrentVaultFileHandling(t, fs, tempDir)
})
// Test secret operations with deeply nested paths
t.Run("DeepPathSecrets", func(t *testing.T) {
testDeepPathSecrets(t, fs, tempDir)
})
// Test key caching in GetOrDeriveLongTermKey
t.Run("KeyCaching", func(t *testing.T) {
testKeyCaching(t, fs, tempDir)
})
// Test vault name validation
t.Run("VaultNameValidation", func(t *testing.T) {
testVaultNameValidation(t, fs, tempDir)
})
// Test multiple vaults and switching between them
t.Run("MultipleVaults", func(t *testing.T) {
testMultipleVaults(t, fs, tempDir)
})
// Test adding a secret in one vault and verifying it's not visible in
// another
t.Run("VaultIsolation", func(t *testing.T) {
testVaultIsolation(t, fs, tempDir)
})
}
func testCurrentVaultFileHandling(t *testing.T, fs afero.Fs, tempDir string) {
t.Helper()
stateDir := filepath.Join(tempDir, "currentvault-test")
err := os.MkdirAll(stateDir, 0o700)
if err != nil {
t.Fatalf("Failed to create state dir: %v", err)
}
// Create a test vault
vlt, err := vault.CreateVault(fs, stateDir, testVaultName)
if err != nil {
t.Fatalf("Failed to create vault: %v", err)
}
// Get the vault directory
vaultDir, err := vlt.GetDirectory()
if err != nil {
t.Fatalf("Failed to get vault directory: %v", err)
}
// Verify the currentvault file exists and contains just the vault name
currentVaultPath := filepath.Join(stateDir, "currentvault")
currentVaultContents, err := os.ReadFile(filepath.Clean(currentVaultPath))
if err != nil {
t.Fatalf("Failed to read currentvault file: %v", err)
}
if string(currentVaultContents) != testVaultName {
t.Errorf("Expected currentvault to contain %q, got %q",
testVaultName, string(currentVaultContents))
}
// Test that ResolveVaultSymlink correctly resolves the path
resolvedPath, err := vault.ResolveVaultSymlink(fs, currentVaultPath)
if err != nil {
t.Fatalf("Failed to resolve currentvault path: %v", err)
}
if resolvedPath != vaultDir {
t.Errorf("Expected resolved path to be %s, got %s", vaultDir, resolvedPath)
}
}
func testDeepPathSecrets(t *testing.T, fs afero.Fs, tempDir string) {
t.Helper()
stateDir := filepath.Join(tempDir, "deep-path-test")
err := os.MkdirAll(stateDir, 0o700)
if err != nil {
t.Fatalf("Failed to create state dir: %v", err)
}
// Create a test vault - CreateVault now handles public key when
// mnemonic is in env
vlt, err := vault.CreateVault(fs, stateDir, testVaultName)
if err != nil {
t.Fatalf("Failed to create vault: %v", err)
}
// Load vault metadata to get its derivation index
vaultDir, err := vlt.GetDirectory()
if err != nil {
t.Fatalf("Failed to get vault directory: %v", err)
}
vaultMetadata, err := vault.LoadVaultMetadata(fs, vaultDir)
if err != nil {
t.Fatalf("Failed to load vault metadata: %v", err)
}
// Derive long-term key from mnemonic using the vault's derivation index
ltIdentity, err := agehd.DeriveIdentity(testMnemonic,
vaultMetadata.DerivationIndex)
if err != nil {
t.Fatalf("Failed to derive long-term key: %v", err)
}
// Unlock the vault
vlt.Unlock(ltIdentity)
// Create a secret with a deeply nested path
deepPath := "api/credentials/production/database/primary"
secretValue := []byte("supersecretdbpassword")
expectedValue := make([]byte, len(secretValue))
copy(expectedValue, secretValue)
secretBuffer := memguard.NewBufferFromBytes(secretValue)
defer secretBuffer.Destroy()
err = vlt.AddSecret(deepPath, secretBuffer, false)
if err != nil {
t.Fatalf("Failed to add secret with deep path: %v", err)
}
// List secrets and verify our deep path secret is there
secrets, err := vlt.ListSecrets()
if err != nil {
t.Fatalf("Failed to list secrets: %v", err)
}
if !slices.Contains(secrets, deepPath) {
t.Errorf("Deep path secret not found in listed secrets")
}
// Retrieve the secret and verify its value
retrievedValue, err := vlt.GetSecret(deepPath)
if err != nil {
t.Fatalf("Failed to retrieve deep path secret: %v", err)
}
if string(retrievedValue) != string(expectedValue) {
t.Errorf("Retrieved value doesn't match. Expected %q, got %q",
string(expectedValue), string(retrievedValue))
}
}
func testKeyCaching(t *testing.T, fs afero.Fs, tempDir string) {
t.Helper()
stateDir := filepath.Join(tempDir, "key-cache-test")
err := os.MkdirAll(stateDir, 0o700)
if err != nil {
t.Fatalf("Failed to create state dir: %v", err)
}
// Create a test vault - CreateVault now handles public key when
// mnemonic is in env
vlt, err := vault.CreateVault(fs, stateDir, testVaultName)
if err != nil {
t.Fatalf("Failed to create vault: %v", err)
}
// Load vault metadata to get its derivation index
vaultDir, err := vlt.GetDirectory()
if err != nil {
t.Fatalf("Failed to get vault directory: %v", err)
}
vaultMetadata, err := vault.LoadVaultMetadata(fs, vaultDir)
if err != nil {
t.Fatalf("Failed to load vault metadata: %v", err)
}
// Derive long-term key from mnemonic for verification using the
// vault's derivation index
ltIdentity, err := agehd.DeriveIdentity(testMnemonic,
vaultMetadata.DerivationIndex)
if err != nil {
t.Fatalf("Failed to derive long-term key: %v", err)
}
// Verify the vault is locked initially
if !vlt.Locked() {
t.Errorf("Vault should be locked initially")
}
// First call to GetOrDeriveLongTermKey should derive and cache the key
firstKey, err := vlt.GetOrDeriveLongTermKey()
if err != nil {
t.Fatalf("Failed to get long-term key: %v", err)
}
// Verify the vault is now unlocked
if vlt.Locked() {
t.Errorf("Vault should be unlocked after GetOrDeriveLongTermKey")
}
// Second call should return the cached key without re-deriving
secondKey, err := vlt.GetOrDeriveLongTermKey()
if err != nil {
t.Fatalf("Failed to get cached long-term key: %v", err)
}
// Verify both keys are the same instance
if firstKey != secondKey {
t.Errorf("Second key call should return same instance as first call")
}
// Verify the public key matches what we expect
expectedPubKey := ltIdentity.Recipient().String()
actualPubKey := firstKey.Recipient().String()
if actualPubKey != expectedPubKey {
t.Errorf("Public key mismatch. Expected %s, got %s",
expectedPubKey, actualPubKey)
}
// Now clear the key and verify it's locked again
vlt.ClearLongTermKey()
if !vlt.Locked() {
t.Errorf("Vault should be locked after clearing key")
}
// Get the key again and verify it works
thirdKey, err := vlt.GetOrDeriveLongTermKey()
if err != nil {
t.Fatalf("Failed to re-derive long-term key: %v", err)
}
// Verify the public key still matches
actualPubKey = thirdKey.Recipient().String()
if actualPubKey != expectedPubKey {
t.Errorf("Re-derived public key mismatch. Expected %s, got %s",
expectedPubKey, actualPubKey)
}
}
func testVaultNameValidation(t *testing.T, fs afero.Fs, tempDir string) {
t.Helper()
stateDir := filepath.Join(tempDir, "name-validation-test")
err := os.MkdirAll(stateDir, 0o700)
if err != nil {
t.Fatalf("Failed to create state dir: %v", err)
}
// Test valid vault names
validNames := []string{
"default",
"test-vault",
"production.vault",
"vault_123",
"a-very-long-vault-name-with-dashes",
}
for _, name := range validNames {
_, err := vault.CreateVault(fs, stateDir, name)
if err != nil {
t.Errorf("Failed to create vault with valid name %q: %v", name, err)
}
}
// Test invalid vault names
invalidNames := []string{
"", // Empty
"UPPERCASE", // Uppercase not allowed
"invalid/name", // Slashes not allowed in vault names
"invalid name", // Spaces not allowed
"invalid@name", // Special chars not allowed
}
for _, name := range invalidNames {
_, err := vault.CreateVault(fs, stateDir, name)
if err == nil {
t.Errorf("Expected error creating vault with invalid name %q, "+
"but got none", name)
}
}
}
func testMultipleVaults(t *testing.T, fs afero.Fs, tempDir string) {
t.Helper()
stateDir := filepath.Join(tempDir, "multi-vault-test")
err := os.MkdirAll(stateDir, 0o700)
if err != nil {
t.Fatalf("Failed to create state dir: %v", err)
}
// Create three vaults
vaultNames := []string{"vault1", "vault2", "vault3"}
for _, name := range vaultNames {
_, err := vault.CreateVault(fs, stateDir, name)
if err != nil {
t.Fatalf("Failed to create vault %s: %v", name, err)
}
}
// List vaults and verify all three are there
vaults, err := vault.ListVaults(fs, stateDir)
if err != nil {
t.Fatalf("Failed to list vaults: %v", err)
}
if len(vaults) != 3 {
t.Errorf("Expected 3 vaults, got %d", len(vaults))
}
// Test switching between vaults
for _, name := range vaultNames {
// Select the vault
err := vault.SelectVault(fs, stateDir, name)
if err != nil {
t.Fatalf("Failed to select vault %s: %v", name, err)
}
// Get current vault and verify it's the one we selected
currentVault, err := vault.GetCurrentVault(fs, stateDir)
if err != nil {
t.Fatalf("Failed to get current vault after selecting %s: %v",
name, err)
}
if currentVault.GetName() != name {
t.Errorf("Expected current vault to be %s, got %s",
name, currentVault.GetName())
}
}
}
func testVaultIsolation(t *testing.T, fs afero.Fs, tempDir string) {
t.Helper()
stateDir := filepath.Join(tempDir, "isolation-test")
err := os.MkdirAll(stateDir, 0o700)
if err != nil {
t.Fatalf("Failed to create state dir: %v", err)
}
// Create two vaults - CreateVault now handles public key when mnemonic
// is in env
vault1, err := vault.CreateVault(fs, stateDir, "vault1")
if err != nil {
t.Fatalf("Failed to create vault1: %v", err)
}
vault2, err := vault.CreateVault(fs, stateDir, "vault2")
if err != nil {
t.Fatalf("Failed to create vault2: %v", err)
}
// Derive long-term keys from mnemonic
// Note: Both vaults will have different derivation indexes due to
// GetNextDerivationIndex
ltIdentity1 := deriveVaultIdentity(t, fs, vault1)
ltIdentity2 := deriveVaultIdentity(t, fs, vault2)
// Unlock the vaults with their respective keys
vault1.Unlock(ltIdentity1)
vault2.Unlock(ltIdentity2)
// Add a secret to vault1
secretValue := []byte("secret in vault1")
secretBuffer := memguard.NewBufferFromBytes(secretValue)
defer secretBuffer.Destroy()
err = vault1.AddSecret(testSecretName, secretBuffer, false)
if err != nil {
t.Fatalf("Failed to add secret to vault1: %v", err)
}
// Verify the secret exists in vault1
vault1Secrets, err := vault1.ListSecrets()
if err != nil {
t.Fatalf("Failed to list secrets in vault1: %v", err)
}
if !slices.Contains(vault1Secrets, testSecretName) {
t.Errorf("Secret not found in vault1")
}
// Verify the secret does NOT exist in vault2
vault2Secrets, err := vault2.ListSecrets()
if err != nil {
t.Fatalf("Failed to list secrets in vault2: %v", err)
}
if slices.Contains(vault2Secrets, testSecretName) {
t.Errorf("Secret from vault1 should not be visible in vault2")
}
}