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core/seed: Add SLIP-0021 implementation and tests.
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@ -54,7 +54,7 @@ STATIC mp_obj_t mod_trezorcrypto_Sha512_make_new(const mp_obj_type_t *type,
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return MP_OBJ_FROM_PTR(o);
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}
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/// def hash(self, data: bytes) -> None:
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/// def update(self, data: bytes) -> None:
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/// """
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/// Update the hash context with hashed data.
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/// """
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@ -358,7 +358,7 @@ class sha512:
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Creates a hash context object.
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"""
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def hash(self, data: bytes) -> None:
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def update(self, data: bytes) -> None:
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"""
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Update the hash context with hashed data.
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"""
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@ -1,11 +1,36 @@
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from trezor import wire
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from trezor.crypto import bip32
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from trezor.crypto import bip32, hashlib, hmac
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from apps.common import HARDENED, cache, mnemonic, storage
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from apps.common.request_passphrase import protect_by_passphrase
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if False:
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from typing import List, Optional
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from typing import List, Union
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class Slip21Node:
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def __init__(self, seed: bytes = None) -> None:
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if seed is not None:
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self.data = hmac.new(b"Symmetric key seed", seed, hashlib.sha512).digest()
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else:
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self.data = b""
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def __del__(self) -> None:
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del self.data
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def derive_path(self, path: list) -> None:
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for label in path:
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h = hmac.new(self.data[0:32], b"\x00", hashlib.sha512)
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h.update(label)
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self.data = h.digest()
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def key(self) -> bytes:
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return self.data[32:64]
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def clone(self) -> "Slip21Node":
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node = Slip21Node()
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node.data = self.data
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return node
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class Keychain:
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@ -17,7 +42,9 @@ class Keychain:
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def __init__(self, seed: bytes, namespaces: list):
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self.seed = seed
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self.namespaces = namespaces
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self.roots = [None] * len(namespaces) # type: List[Optional[bip32.HDNode]]
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self.roots = [None] * len(
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namespaces
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) # type: List[Union[bip32.HDNode, Slip21Node, None]]
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def __del__(self) -> None:
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for root in self.roots:
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@ -34,7 +61,9 @@ class Keychain:
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return
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raise wire.DataError("Forbidden key path")
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def derive(self, node_path: list, curve_name: str = "secp256k1") -> bip32.HDNode:
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def derive(
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self, node_path: list, curve_name: str = "secp256k1"
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) -> Union[bip32.HDNode, Slip21Node]:
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# find the root node index
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root_index = 0
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for curve, *path in self.namespaces:
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@ -49,7 +78,10 @@ class Keychain:
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# create the root node if not cached
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root = self.roots[root_index]
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if root is None:
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if curve_name != "slip21":
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root = bip32.from_seed(self.seed, curve_name)
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else:
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root = Slip21Node(self.seed)
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root.derive_path(path)
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self.roots[root_index] = root
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@ -86,6 +118,15 @@ def derive_node_without_passphrase(
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return node
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def derive_slip21_node_without_passphrase(path: list) -> Slip21Node:
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if not storage.is_initialized():
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raise Exception("Device is not initialized")
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seed = mnemonic.get_seed(progress_bar=False)
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node = Slip21Node(seed)
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node.derive_path(path)
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return node
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def remove_ed25519_prefix(pubkey: bytes) -> bytes:
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# 0x01 prefix is not part of the actual public key, hence removed
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return pubkey[1:]
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@ -1,7 +1,8 @@
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from common import *
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from apps.common import HARDENED
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from apps.common.seed import Keychain, _path_hardened
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from apps.common.seed import Keychain, Slip21Node, _path_hardened
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from trezor import wire
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from trezor.crypto import bip39
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class TestKeychain(unittest.TestCase):
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@ -75,5 +76,45 @@ class TestKeychain(unittest.TestCase):
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self.assertFalse(_path_hardened([0, ]))
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self.assertFalse(_path_hardened([44 | HARDENED, 1 | HARDENED, 0 | HARDENED, 0 | HARDENED, 0]))
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def test_slip21(self):
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seed = bip39.seed(' '.join(['all'] * 12), '')
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node1 = Slip21Node(seed)
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node2 = node1.clone()
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keychain = Keychain(seed, [["slip21", b"SLIP-0021"]])
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# Key(m)
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KEY_M = unhexlify(b"dbf12b44133eaab506a740f6565cc117228cbf1dd70635cfa8ddfdc9af734756")
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self.assertEqual(node1.key(), KEY_M)
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# Key(m/"SLIP-0021")
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KEY_M_SLIP0021 = unhexlify(b"1d065e3ac1bbe5c7fad32cf2305f7d709dc070d672044a19e610c77cdf33de0d")
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node1.derive_path([b"SLIP-0021"])
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self.assertEqual(node1.key(), KEY_M_SLIP0021)
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self.assertIsNone(keychain.validate_path([b"SLIP-0021"], "slip21"))
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self.assertEqual(keychain.derive([b"SLIP-0021"], "slip21").key(), KEY_M_SLIP0021)
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# Key(m/"SLIP-0021"/"Master encryption key")
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KEY_M_SLIP0021_MEK = unhexlify(b"ea163130e35bbafdf5ddee97a17b39cef2be4b4f390180d65b54cf05c6a82fde")
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node1.derive_path([b"Master encryption key"])
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self.assertEqual(node1.key(), KEY_M_SLIP0021_MEK)
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self.assertIsNone(keychain.validate_path([b"SLIP-0021", b"Master encryption key"], "slip21"))
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self.assertEqual(keychain.derive([b"SLIP-0021", b"Master encryption key"], "slip21").key(), KEY_M_SLIP0021_MEK)
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# Key(m/"SLIP-0021"/"Authentication key")
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KEY_M_SLIP0021_AK = unhexlify(b"47194e938ab24cc82bfa25f6486ed54bebe79c40ae2a5a32ea6db294d81861a6")
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node2.derive_path([b"SLIP-0021", b"Authentication key"])
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self.assertEqual(node2.key(), KEY_M_SLIP0021_AK)
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self.assertIsNone(keychain.validate_path([b"SLIP-0021", b"Authentication key"], "slip21"))
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self.assertEqual(keychain.derive([b"SLIP-0021", b"Authentication key"], "slip21").key(), KEY_M_SLIP0021_AK)
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# Forbidden paths.
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with self.assertRaises(wire.DataError):
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self.assertFalse(keychain.validate_path([], "slip21"))
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with self.assertRaises(wire.DataError):
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self.assertFalse(keychain.validate_path([b"SLIP-9999", b"Authentication key"], "slip21"))
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with self.assertRaises(wire.DataError):
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keychain.derive([b"SLIP-9999", b"Authentication key"], "slip21").key()
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if __name__ == '__main__':
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unittest.main()
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