forked from DecentralizedClimateFoundation/DCIPs
120 lines
3.6 KiB
Markdown
120 lines
3.6 KiB
Markdown
---
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eip: 55
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title: Mixed-case checksum address encoding
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author: Vitalik Buterin <vitalik.buterin@ethereum.org>, Alex Van de Sande <avsa@ethereum.org>
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discussions-to: https://github.com/ethereum/eips/issues/55
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type: Standards Track
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category: ERC
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status: Final
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created: 2016-01-14
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---
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# Specification
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Code:
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``` python
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import eth_utils
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def checksum_encode(addr): # Takes a 20-byte binary address as input
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hex_addr = addr.hex()
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checksummed_buffer = ""
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# Treat the hex address as ascii/utf-8 for keccak256 hashing
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hashed_address = eth_utils.keccak(text=hex_addr).hex()
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# Iterate over each character in the hex address
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for nibble_index, character in enumerate(hex_addr):
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if character in "0123456789":
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# We can't upper-case the decimal digits
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checksummed_buffer += character
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elif character in "abcdef":
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# Check if the corresponding hex digit (nibble) in the hash is 8 or higher
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hashed_address_nibble = int(hashed_address[nibble_index], 16)
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if hashed_address_nibble > 7:
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checksummed_buffer += character.upper()
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else:
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checksummed_buffer += character
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else:
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raise eth_utils.ValidationError(
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f"Unrecognized hex character {character!r} at position {nibble_index}"
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)
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return "0x" + checksummed_buffer
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def test(addr_str):
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addr_bytes = eth_utils.to_bytes(hexstr=addr_str)
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checksum_encoded = checksum_encode(addr_bytes)
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assert checksum_encoded == addr_str, f"{checksum_encoded} != expected {addr_str}"
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test("0x5aAeb6053F3E94C9b9A09f33669435E7Ef1BeAed")
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test("0xfB6916095ca1df60bB79Ce92cE3Ea74c37c5d359")
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test("0xdbF03B407c01E7cD3CBea99509d93f8DDDC8C6FB")
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test("0xD1220A0cf47c7B9Be7A2E6BA89F429762e7b9aDb")
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```
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In English, convert the address to hex, but if the `i`th digit is a letter (ie. it's one of `abcdef`) print it in uppercase if the `4*i`th bit of the hash of the lowercase hexadecimal address is 1 otherwise print it in lowercase.
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# Rationale
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Benefits:
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- Backwards compatible with many hex parsers that accept mixed case, allowing it to be easily introduced over time
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- Keeps the length at 40 characters
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- On average there will be 15 check bits per address, and the net probability that a randomly generated address if mistyped will accidentally pass a check is 0.0247%. This is a ~50x improvement over ICAP, but not as good as a 4-byte check code.
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# Implementation
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In javascript:
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```js
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const createKeccakHash = require('keccak')
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function toChecksumAddress (address) {
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address = address.toLowerCase().replace('0x', '')
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var hash = createKeccakHash('keccak256').update(address).digest('hex')
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var ret = '0x'
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for (var i = 0; i < address.length; i++) {
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if (parseInt(hash[i], 16) >= 8) {
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ret += address[i].toUpperCase()
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} else {
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ret += address[i]
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}
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}
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return ret
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}
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```
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```
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> toChecksumAddress('0xfb6916095ca1df60bb79ce92ce3ea74c37c5d359')
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'0xfB6916095ca1df60bB79Ce92cE3Ea74c37c5d359'
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```
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Note that the input to the Keccak256 hash is the lowercase hexadecimal string (i.e. the hex address encoded as ASCII):
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```
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var hash = createKeccakHash('keccak256').update(Buffer.from(address.toLowerCase(), 'ascii')).digest()
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```
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# Test Cases
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```
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# All caps
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0x52908400098527886E0F7030069857D2E4169EE7
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0x8617E340B3D01FA5F11F306F4090FD50E238070D
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# All Lower
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0xde709f2102306220921060314715629080e2fb77
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0x27b1fdb04752bbc536007a920d24acb045561c26
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# Normal
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0x5aAeb6053F3E94C9b9A09f33669435E7Ef1BeAed
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0xfB6916095ca1df60bB79Ce92cE3Ea74c37c5d359
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0xdbF03B407c01E7cD3CBea99509d93f8DDDC8C6FB
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0xD1220A0cf47c7B9Be7A2E6BA89F429762e7b9aDb
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```
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