mirror of
https://git.selfprivacy.org/SelfPrivacy/selfprivacy-rest-api.git
synced 2024-11-24 21:11:28 +00:00
194 lines
6.5 KiB
Python
194 lines
6.5 KiB
Python
from abc import ABC, abstractmethod
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from datetime import datetime
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from typing import Optional
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from mnemonic import Mnemonic
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from secrets import randbelow
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import re
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from selfprivacy_api.models.tokens.token import Token
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from selfprivacy_api.repositories.tokens.exceptions import (
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TokenNotFound,
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InvalidMnemonic,
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RecoveryKeyNotFound,
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NewDeviceKeyNotFound,
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)
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from selfprivacy_api.models.tokens.recovery_key import RecoveryKey
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from selfprivacy_api.models.tokens.new_device_key import NewDeviceKey
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class AbstractTokensRepository(ABC):
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def get_token_by_token_string(self, token_string: str) -> Token:
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"""Get the token by token"""
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tokens = self.get_tokens()
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for token in tokens:
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if token.token == token_string:
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return token
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raise TokenNotFound("Token not found!")
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def get_token_by_name(self, token_name: str) -> Token:
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"""Get the token by name"""
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tokens = self.get_tokens()
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for token in tokens:
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if token.device_name == token_name:
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return token
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raise TokenNotFound("Token not found!")
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@abstractmethod
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def get_tokens(self) -> list[Token]:
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"""Get the tokens"""
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def create_token(self, device_name: str) -> Token:
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"""Create new token"""
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unique_name = self._make_unique_device_name(device_name)
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new_token = Token.generate(unique_name)
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self._store_token(new_token)
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return new_token
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@abstractmethod
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def delete_token(self, input_token: Token) -> None:
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"""Delete the token"""
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def refresh_token(self, input_token: Token) -> Token:
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"""Change the token field of the existing token"""
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new_token = Token.generate(device_name=input_token.device_name)
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new_token.created_at = input_token.created_at
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if input_token in self.get_tokens():
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self.delete_token(input_token)
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self._store_token(new_token)
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return new_token
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raise TokenNotFound("Token not found!")
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def is_token_valid(self, token_string: str) -> bool:
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"""Check if the token is valid"""
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return token_string in [token.token for token in self.get_tokens()]
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def is_token_name_exists(self, token_name: str) -> bool:
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"""Check if the token name exists"""
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return token_name in [token.device_name for token in self.get_tokens()]
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def is_token_name_pair_valid(self, token_name: str, token_string: str) -> bool:
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"""Check if the token name and token are valid"""
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try:
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token = self.get_token_by_name(token_name)
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if token is None:
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return False
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except TokenNotFound:
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return False
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return token.token == token_string
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@abstractmethod
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def get_recovery_key(self) -> Optional[RecoveryKey]:
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"""Get the recovery key"""
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@abstractmethod
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def create_recovery_key(
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self,
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expiration: Optional[datetime],
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uses_left: Optional[int],
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) -> RecoveryKey:
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"""Create the recovery key"""
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def use_mnemonic_recovery_key(
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self, mnemonic_phrase: str, device_name: str
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) -> Token:
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"""Use the mnemonic recovery key and create a new token with the given name"""
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if not self.is_recovery_key_valid():
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raise RecoveryKeyNotFound("Recovery key not found")
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recovery_key = self.get_recovery_key()
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if recovery_key is None:
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raise RecoveryKeyNotFound("Recovery key not found")
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recovery_hex_key = recovery_key.key
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if not self._assert_mnemonic(recovery_hex_key, mnemonic_phrase):
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raise RecoveryKeyNotFound("Recovery key not found")
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new_token = self.create_token(device_name=device_name)
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self._decrement_recovery_token()
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return new_token
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def is_recovery_key_valid(self) -> bool:
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"""Check if the recovery key is valid"""
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recovery_key = self.get_recovery_key()
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if recovery_key is None:
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return False
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return recovery_key.is_valid()
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def get_new_device_key(self) -> NewDeviceKey:
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"""Creates and returns the new device key"""
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new_device_key = NewDeviceKey.generate()
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self._store_new_device_key(new_device_key)
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return new_device_key
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def _store_new_device_key(self, new_device_key: NewDeviceKey) -> None:
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"""Store new device key directly"""
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@abstractmethod
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def delete_new_device_key(self) -> None:
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"""Delete the new device key"""
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def use_mnemonic_new_device_key(
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self, mnemonic_phrase: str, device_name: str
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) -> Token:
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"""Use the mnemonic new device key"""
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new_device_key = self._get_stored_new_device_key()
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if not new_device_key:
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raise NewDeviceKeyNotFound
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if not new_device_key.is_valid():
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raise NewDeviceKeyNotFound
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if not self._assert_mnemonic(new_device_key.key, mnemonic_phrase):
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raise NewDeviceKeyNotFound("Phrase is not token!")
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new_token = self.create_token(device_name=device_name)
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self.delete_new_device_key()
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return new_token
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@abstractmethod
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def _store_token(self, new_token: Token):
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"""Store a token directly"""
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@abstractmethod
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def _decrement_recovery_token(self):
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"""Decrement recovery key use count by one"""
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@abstractmethod
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def _get_stored_new_device_key(self) -> Optional[NewDeviceKey]:
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"""Retrieves new device key that is already stored."""
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def _make_unique_device_name(self, name: str) -> str:
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"""Token name must be an alphanumeric string and not empty.
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Replace invalid characters with '_'
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If name exists, add a random number to the end of the name until it is unique.
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"""
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if not re.match("^[a-zA-Z0-9]*$", name):
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name = re.sub("[^a-zA-Z0-9]", "_", name)
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if name == "":
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name = "Unknown device"
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while self.is_token_name_exists(name):
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name += str(randbelow(10))
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return name
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# TODO: find a proper place for it
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def _assert_mnemonic(self, hex_key: str, mnemonic_phrase: str):
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"""Return true if hex string matches the phrase, false otherwise
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Raise an InvalidMnemonic error if not mnemonic"""
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recovery_token = bytes.fromhex(hex_key)
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if not Mnemonic(language="english").check(mnemonic_phrase):
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raise InvalidMnemonic("Phrase is not mnemonic!")
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phrase_bytes = Mnemonic(language="english").to_entropy(mnemonic_phrase)
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return phrase_bytes == recovery_token
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