120 lines
4.4 KiB
Python
120 lines
4.4 KiB
Python
# Copyright (c) 2017 Pieter Wuille
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#
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# Permission is hereby granted, free of charge, to any person obtaining a copy
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# of this software and associated documentation files (the "Software"), to deal
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# in the Software without restriction, including without limitation the rights
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# to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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# copies of the Software, and to permit persons to whom the Software is
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# furnished to do so, subject to the following conditions:
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#
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# The above copyright notice and this permission notice shall be included in
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# all copies or substantial portions of the Software.
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#
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# THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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# IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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# FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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# AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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# LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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# OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
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# THE SOFTWARE.
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# Based on this specification from Pieter Wuille:
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# https://github.com/sipa/bips/blob/bip-bech32m/bip-bech32m.mediawiki
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"""Reference implementation for Bech32m and segwit addresses."""
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from typing import List, Optional, Tuple
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from chia.types.blockchain_format.sized_bytes import bytes32
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CHARSET = "qpzry9x8gf2tvdw0s3jn54khce6mua7l"
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def bech32_polymod(values: List[int]) -> int:
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"""Internal function that computes the Bech32 checksum."""
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generator = [0x3B6A57B2, 0x26508E6D, 0x1EA119FA, 0x3D4233DD, 0x2A1462B3]
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chk = 1
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for value in values:
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top = chk >> 25
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chk = (chk & 0x1FFFFFF) << 5 ^ value
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for i in range(5):
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chk ^= generator[i] if ((top >> i) & 1) else 0
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return chk
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def bech32_hrp_expand(hrp: str) -> List[int]:
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"""Expand the HRP into values for checksum computation."""
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return [ord(x) >> 5 for x in hrp] + [0] + [ord(x) & 31 for x in hrp]
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M = 0x2BC830A3
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def bech32_verify_checksum(hrp: str, data: List[int]) -> bool:
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return bech32_polymod(bech32_hrp_expand(hrp) + data) == M
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def bech32_create_checksum(hrp: str, data: List[int]) -> List[int]:
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values = bech32_hrp_expand(hrp) + data
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polymod = bech32_polymod(values + [0, 0, 0, 0, 0, 0]) ^ M
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return [(polymod >> 5 * (5 - i)) & 31 for i in range(6)]
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def bech32_encode(hrp: str, data: List[int]) -> str:
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"""Compute a Bech32 string given HRP and data values."""
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combined = data + bech32_create_checksum(hrp, data)
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return hrp + "1" + "".join([CHARSET[d] for d in combined])
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def bech32_decode(bech: str) -> Tuple[Optional[str], Optional[List[int]]]:
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"""Validate a Bech32 string, and determine HRP and data."""
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if (any(ord(x) < 33 or ord(x) > 126 for x in bech)) or (bech.lower() != bech and bech.upper() != bech):
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return (None, None)
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bech = bech.lower()
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pos = bech.rfind("1")
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if pos < 1 or pos + 7 > len(bech) or len(bech) > 90:
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return (None, None)
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if not all(x in CHARSET for x in bech[pos + 1 :]):
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return (None, None)
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hrp = bech[:pos]
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data = [CHARSET.find(x) for x in bech[pos + 1 :]]
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if not bech32_verify_checksum(hrp, data):
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return (None, None)
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return hrp, data[:-6]
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def convertbits(data: List[int], frombits: int, tobits: int, pad: bool = True) -> List[int]:
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"""General power-of-2 base conversion."""
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acc = 0
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bits = 0
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ret = []
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maxv = (1 << tobits) - 1
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max_acc = (1 << (frombits + tobits - 1)) - 1
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for value in data:
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if value < 0 or (value >> frombits):
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raise ValueError("Invalid Value")
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acc = ((acc << frombits) | value) & max_acc
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bits += frombits
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while bits >= tobits:
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bits -= tobits
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ret.append((acc >> bits) & maxv)
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if pad:
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if bits:
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ret.append((acc << (tobits - bits)) & maxv)
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elif bits >= frombits or ((acc << (tobits - bits)) & maxv):
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raise ValueError("Invalid bits")
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return ret
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def encode_puzzle_hash(puzzle_hash: bytes32, prefix: str) -> str:
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encoded = bech32_encode(prefix, convertbits(puzzle_hash, 8, 5))
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return encoded
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def decode_puzzle_hash(address: str) -> bytes32:
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hrpgot, data = bech32_decode(address)
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if data is None:
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raise ValueError("Invalid Address")
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decoded = convertbits(data, 5, 8, False)
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decoded_bytes = bytes(decoded)
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return decoded_bytes
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