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facafd8819
This PR implements the client-side of initializing network-lock with the Coordination server. Signed-off-by: Tom DNetto <tom@tailscale.com>
136 lines
3.4 KiB
Go
136 lines
3.4 KiB
Go
// Copyright (c) 2022 Tailscale Inc & AUTHORS All rights reserved.
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// Use of this source code is governed by a BSD-style
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// license that can be found in the LICENSE file.
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package tka
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import (
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"crypto/ed25519"
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"errors"
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"fmt"
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"github.com/hdevalence/ed25519consensus"
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"tailscale.com/types/tkatype"
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)
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// KeyKind describes the different varieties of a Key.
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type KeyKind uint8
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// Valid KeyKind values.
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const (
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KeyInvalid KeyKind = iota
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Key25519
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)
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func (k KeyKind) String() string {
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switch k {
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case KeyInvalid:
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return "invalid"
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case Key25519:
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return "25519"
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default:
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return fmt.Sprintf("Key?<%d>", int(k))
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}
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}
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// Key describes the public components of a key known to network-lock.
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type Key struct {
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Kind KeyKind `cbor:"1,keyasint"`
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// Votes describes the weight applied to signatures using this key.
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// Weighting is used to deterministically resolve branches in the AUM
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// chain (i.e. forks, where two AUMs exist with the same parent).
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Votes uint `cbor:"2,keyasint"`
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// Public encodes the public key of the key. For 25519 keys,
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// this is simply the point on the curve representing the public
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// key.
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Public []byte `cbor:"3,keyasint"`
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// Meta describes arbitrary metadata about the key. This could be
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// used to store the name of the key, for instance.
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Meta map[string]string `cbor:"12,keyasint,omitempty"`
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}
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// Clone makes an independent copy of Key.
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//
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// NOTE: There is a difference between a nil slice and an empty slice for encoding purposes,
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// so an implementation of Clone() must take care to preserve this.
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func (k Key) Clone() Key {
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out := k
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if k.Public != nil {
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out.Public = make([]byte, len(k.Public))
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copy(out.Public, k.Public)
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}
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if k.Meta != nil {
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out.Meta = make(map[string]string, len(k.Meta))
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for k, v := range k.Meta {
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out.Meta[k] = v
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}
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}
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return out
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}
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func (k Key) ID() tkatype.KeyID {
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switch k.Kind {
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// Because 25519 public keys are so short, we just use the 32-byte
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// public as their 'key ID'.
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case Key25519:
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return tkatype.KeyID(k.Public)
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default:
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panic("unsupported key kind")
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}
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}
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const maxMetaBytes = 512
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func (k Key) StaticValidate() error {
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if k.Votes > 4096 {
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return fmt.Errorf("excessive key weight: %d > 4096", k.Votes)
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}
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if k.Votes == 0 {
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return errors.New("key votes must be non-zero")
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}
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// We have an arbitrary upper limit on the amount
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// of metadata that can be associated with a key, so
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// people don't start using it as a key-value store and
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// causing pathological cases due to the number + size of
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// AUMs.
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var metaBytes uint
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for k, v := range k.Meta {
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metaBytes += uint(len(k) + len(v))
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}
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if metaBytes > maxMetaBytes {
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return fmt.Errorf("key metadata too big (%d > %d)", metaBytes, maxMetaBytes)
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}
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switch k.Kind {
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case Key25519:
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default:
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return fmt.Errorf("unrecognized key kind: %v", k.Kind)
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}
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return nil
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}
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// Verify returns a nil error if the signature is valid over the
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// provided AUM BLAKE2s digest, using the given key.
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func signatureVerify(s *tkatype.Signature, aumDigest tkatype.AUMSigHash, key Key) error {
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// NOTE(tom): Even if we can compute the public from the KeyID,
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// its possible for the KeyID to be attacker-controlled
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// so we should use the public contained in the state machine.
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switch key.Kind {
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case Key25519:
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if ed25519consensus.Verify(ed25519.PublicKey(key.Public), aumDigest[:], s.Signature) {
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return nil
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}
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return errors.New("invalid signature")
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default:
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return fmt.Errorf("unhandled key type: %v", key.Kind)
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}
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}
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