2015-03-05 21:27:35 +00:00
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package vault
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2015-03-15 20:52:43 +00:00
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import (
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"errors"
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2015-05-28 00:25:36 +00:00
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"time"
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2015-03-15 20:52:43 +00:00
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"github.com/hashicorp/vault/logical"
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)
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2015-03-05 21:27:35 +00:00
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var (
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// ErrBarrierSealed is returned if an operation is performed on
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// a sealed barrier. No operation is expected to succeed before unsealing
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ErrBarrierSealed = errors.New("Vault is sealed")
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// ErrBarrierAlreadyInit is returned if the barrier is already
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// initialized. This prevents a re-initialization.
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ErrBarrierAlreadyInit = errors.New("Vault is already initialized")
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// ErrBarrierNotInit is returned if a non-initialized barrier
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// is attempted to be unsealed.
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ErrBarrierNotInit = errors.New("Vault is not initialized")
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2015-03-12 18:27:32 +00:00
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// ErrBarrierInvalidKey is returned if the Unseal key is invalid
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ErrBarrierInvalidKey = errors.New("Unseal failed, invalid key")
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2015-03-05 21:27:35 +00:00
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)
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const (
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// barrierInitPath is the path used to store our init sentinel file
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barrierInitPath = "barrier/init"
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2015-05-27 22:23:43 +00:00
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// keyringPath is the location of the keyring data. This is encrypted
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// by the master key.
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keyringPath = "core/keyring"
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2015-05-28 22:52:26 +00:00
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// keyringUpgradePrefix is the path used to store keyring update entries.
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// When running in HA mode, the active instance will install the new key
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// and re-write the keyring. For standby instances, they need an upgrade
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// path from key N to N+1. They cannot just use the master key because
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// in the event of a rekey, that master key can no longer decrypt the keyring.
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// When key N+1 is installed, we create an entry at "prefix/N" which uses
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// encryption key N to provide the N+1 key. The standby instances scan
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// for this periodically and refresh their keyring. The upgrade keys
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// are deleted after a few minutes, but this provides enough time for the
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// standby instances to upgrade without causing any disruption.
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keyringUpgradePrefix = "core/upgrade/"
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2015-03-05 21:27:35 +00:00
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)
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// SecurityBarrier is a critical component of Vault. It is used to wrap
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// an untrusted physical backend and provide a single point of encryption,
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// decryption and checksum verification. The goal is to ensure that any
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// data written to the barrier is confidential and that integrity is preserved.
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// As a real-world analogy, this is the steel and concrete wrapper around
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// a Vault. The barrier should only be Unlockable given its key.
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type SecurityBarrier interface {
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// Initialized checks if the barrier has been initialized
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// and has a master key set.
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Initialized() (bool, error)
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// Initialize works only if the barrier has not been initialized
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// and makes use of the given master key.
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Initialize([]byte) error
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// GenerateKey is used to generate a new key
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GenerateKey() ([]byte, error)
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2015-03-12 18:20:27 +00:00
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// KeyLength is used to sanity check a key
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KeyLength() (int, int)
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2015-03-05 21:27:35 +00:00
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// Sealed checks if the barrier has been unlocked yet. The Barrier
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// is not expected to be able to perform any CRUD until it is unsealed.
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Sealed() (bool, error)
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// Unseal is used to provide the master key which permits the barrier
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// to be unsealed. If the key is not correct, the barrier remains sealed.
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Unseal(key []byte) error
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2015-05-28 18:28:33 +00:00
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// VerifyMaster is used to check if the given key matches the master key
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VerifyMaster(key []byte) error
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2015-03-05 21:27:35 +00:00
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// Seal is used to re-seal the barrier. This requires the barrier to
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// be unsealed again to perform any further operations.
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Seal() error
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2015-05-28 00:05:02 +00:00
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// Rotate is used to create a new encryption key. All future writes
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// should use the new key, while old values should still be decryptable.
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Rotate() error
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2015-05-28 22:52:26 +00:00
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// AddKey is used to add a new key to the keyring
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AddKey(k *Key) error
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2015-05-28 00:25:36 +00:00
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// ActiveKeyInfo is used to inform details about the active key
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ActiveKeyInfo() (*KeyInfo, error)
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2015-05-28 00:13:40 +00:00
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// Rekey is used to change the master key used to protect the keyring
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Rekey([]byte) error
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2015-04-10 23:43:35 +00:00
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// SecurityBarrier must provide the storage APIs
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BarrierStorage
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}
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// BarrierStorage is the storage only interface required for a Barrier.
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type BarrierStorage interface {
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2015-03-05 21:27:35 +00:00
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// Put is used to insert or update an entry
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Put(entry *Entry) error
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// Get is used to fetch an entry
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Get(key string) (*Entry, error)
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// Delete is used to permanently delete an entry
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Delete(key string) error
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// List is used ot list all the keys under a given
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// prefix, up to the next prefix.
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List(prefix string) ([]string, error)
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}
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// Entry is used to represent data stored by the security barrier
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type Entry struct {
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Key string
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Value []byte
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}
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2015-03-15 20:52:43 +00:00
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// Logical turns the Entry into a logical storage entry.
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func (e *Entry) Logical() *logical.StorageEntry {
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return &logical.StorageEntry{
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Key: e.Key,
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Value: e.Value,
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}
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}
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2015-05-28 00:25:36 +00:00
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// KeyInfo is used to convey information about the encryption key
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type KeyInfo struct {
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Term int
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InstallTime time.Time
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}
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