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https://github.com/ceph/ceph-csi.git
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91774fc936
Uses github.com/libopenstorage/secrets to communicate with Vault. This removes the need for maintaining our own limited Vault APIs. By adding the new dependency, several other packages got updated in the process. Unused indirect dependencies have been removed from go.mod. Signed-off-by: Niels de Vos <ndevos@redhat.com>
164 lines
5.5 KiB
Go
164 lines
5.5 KiB
Go
//go:generate mockgen -package=mock -destination=mock/secrets.mock.go github.com/libopenstorage/secrets Secrets
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package secrets
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import (
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"errors"
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"fmt"
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)
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var (
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// ErrNotSupported returned when implementation of specific function is not supported
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ErrNotSupported = errors.New("implementation not supported")
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// ErrNotAuthenticated returned when not authenticated with secrets endpoint
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ErrNotAuthenticated = errors.New("Not authenticated with the secrets endpoint")
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// ErrInvalidSecretId returned when no secret data is found associated with the id
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ErrInvalidSecretId = errors.New("No Secret Data found for Secret ID")
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// ErrEmptySecretData returned when no secret data is provided to store the secret
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ErrEmptySecretData = errors.New("Secret data cannot be empty")
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// ErrEmptySecretId returned when no secret Name/ID is provided to retrive secret data
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ErrEmptySecretId = errors.New("Secret Name/ID cannot be empty")
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// ErrSecretExists returned when a secret for the given secret id already exists
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ErrSecretExists = errors.New("Secret Id already exists")
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// ErrInvalidSecretData is returned when no secret data is found
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ErrInvalidSecretData = errors.New("Secret Data cannot be empty when CustomSecretData|PublicSecretData flag is set")
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)
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const (
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SecretPath = "/var/lib/osd/secrets/"
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// CustomSecretData is a constant used in the key context of the secrets APIs
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// It indicates that the secret provider should not generate secret but use the provided secret
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// in the API
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CustomSecretData = "custom_secret_data"
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// PublicSecretData is a constant used in the key context of Secret APIs
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// It indicates that the API is dealing with the public part of a secret instead
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// of the actual secret
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PublicSecretData = "public_secret_data"
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// OverwriteSecretDataInStore is a constant used in the key context of Secret APIs
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// It indicates whether the secret data stored in the persistent store can
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// be overwritten
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OverwriteSecretDataInStore = "overwrite_secret_data_in_store"
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)
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const (
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TypeAWS = "aws-kms"
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TypeAzure = "azure-kv"
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TypeDCOS = "dcos"
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TypeDocker = "docker"
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TypeGCloud = "gcloud-kms"
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TypeIBM = "ibm-kp"
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TypeK8s = "k8s"
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TypeKVDB = "kvdb"
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TypeVault = "vault"
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)
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const (
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// KeyVaultNamespace is a keyContext parameter for vault secrets.
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KeyVaultNamespace = "vault-namespace"
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)
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// Secrets interface implemented by backend Key Management Systems (KMS)
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type Secrets interface {
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// String representation of the backend KMS
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String() string
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// GetSecret returns the secret data associated with the
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// supplied secretId. The secret data / plain text can be used
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// by callers to encrypt their data. It is assumed that the plain text
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// data will be destroyed by the caller once used.
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GetSecret(
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secretId string,
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keyContext map[string]string,
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) (map[string]interface{}, error)
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// PutSecret will associate an secretId to its secret data
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// provided in the arguments and store it into the secret backend
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PutSecret(
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secretId string,
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plainText map[string]interface{},
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keyContext map[string]string,
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) error
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// DeleteSecret deletes the secret data associated with the
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// supplied secretId.
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DeleteSecret(
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secretId string,
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keyContext map[string]string,
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) error
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// Encrypt encrypts the supplied plain text data using the given key.
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// The API would fetch the plain text key, encrypt the data with it.
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// The plain text key will not be stored anywhere else and would be
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// deleted from memory.
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Encrypt(
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secretId string,
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plaintTextData string,
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keyContext map[string]string,
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) (string, error)
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// Decrypt decrypts the supplied encrypted data using the given key.
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// The API would fetch the plain text key, decrypt the data with it.
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// The plain text key will not be stored anywhere else and would be
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// deleted from memory.
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Decrypt(
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secretId string,
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encryptedData string,
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keyContext map[string]string,
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) (string, error)
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// Reencrypt decrypts the data with the previous key and re-encrypts it
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// with the new key..
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Rencrypt(
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originalSecretId string,
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newSecretId string,
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originalKeyContext map[string]string,
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newKeyContext map[string]string,
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encryptedData string,
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) (string, error)
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// ListSecrets returns a list of known secretIDs
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ListSecrets() ([]string, error)
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}
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type BackendInit func(
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secretConfig map[string]interface{},
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) (Secrets, error)
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// ErrInvalidKeyContext is returned when secret data is provided to the secret APIs with an invalid
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// key context.
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type ErrInvalidKeyContext struct {
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Reason string
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}
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func (e *ErrInvalidKeyContext) Error() string {
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return fmt.Sprintf("invalid key context: %v", e.Reason)
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}
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// KeyContextChecks performs a series of checks on the keys and values
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// passed through the key context map
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func KeyContextChecks(
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keyContext map[string]string,
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secretData map[string]interface{},
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) error {
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_, customData := keyContext[CustomSecretData]
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_, publicData := keyContext[PublicSecretData]
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if customData && publicData {
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return &ErrInvalidKeyContext{
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Reason: "both CustomSecretData and PublicSecretData flags cannot be set",
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}
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} else if !customData && !publicData && len(secretData) > 0 {
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return &ErrInvalidKeyContext{
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Reason: "secret data cannot be provided when none of CustomSecretData|PublicSecretData flag is not set",
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}
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} else if customData && len(secretData) == 0 {
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return &ErrInvalidKeyContext{
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Reason: "secret data needs to be provided when CustomSecretData flag is set",
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}
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} else if publicData && len(secretData) == 0 {
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return &ErrInvalidKeyContext{
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Reason: "secret data needs to be provided when PublicSecretData flag is set",
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}
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}
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return nil
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}
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