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111 lines
6.6 KiB
Python
111 lines
6.6 KiB
Python
from common import *
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from trezor.crypto.curve import secp256k1
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from trezor.crypto.hashlib import sha256
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if not utils.BITCOIN_ONLY:
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from apps.binance.helpers import produce_json_for_signing
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from apps.binance.sign_tx import generate_content_signature, sign_tx
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from trezor.messages import BinanceCancelMsg
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from trezor.messages import BinanceCoin
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from trezor.messages import BinanceInputOutput
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from trezor.messages import BinanceOrderMsg
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from trezor.messages import BinanceSignTx
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from trezor.messages import BinanceTransferMsg
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@unittest.skipUnless(not utils.BITCOIN_ONLY, "altcoin")
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class TestBinanceSign(unittest.TestCase):
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def test_order_signature(self):
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# source of testing data
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# https://github.com/binance-chain/javascript-sdk/blob/master/__tests__/fixtures/placeOrder.json
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json_msg = '{"account_number":"34","chain_id":"Binance-Chain-Nile","data":null,"memo":"","msgs":[{"id":"BA36F0FAD74D8F41045463E4774F328F4AF779E5-33","ordertype":2,"price":100000000,"quantity":100000000,"sender":"tbnb1hgm0p7khfk85zpz5v0j8wnej3a90w709zzlffd","side":1,"symbol":"ADA.B-B63_BNB","timeinforce":1}],"sequence":"32","source":"1"}'
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expected_signature = "851fc9542342321af63ecbba7d3ece545f2a42bad01ba32cff5535b18e54b6d3106e10b6a4525993d185a1443d9a125186960e028eabfdd8d76cf70a3a7e3100"
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public_key = "029729a52e4e3c2b4a4e52aa74033eedaf8ba1df5ab6d1f518fd69e67bbd309b0e"
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private_key = "90335b9d2153ad1a9799a3ccc070bd64b4164e9642ee1dd48053c33f9a3a05e9"
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# Testing data for object creation is decoded from json_msg
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envelope = BinanceSignTx(msg_count=1, account_number=34, chain_id="Binance-Chain-Nile", memo="", sequence=32, source=1)
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msg = BinanceOrderMsg(id="BA36F0FAD74D8F41045463E4774F328F4AF779E5-33",
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ordertype=2,
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price=100000000,
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quantity=100000000,
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sender="tbnb1hgm0p7khfk85zpz5v0j8wnej3a90w709zzlffd",
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side=1,
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symbol="ADA.B-B63_BNB",
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timeinforce=1)
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msg_json = produce_json_for_signing(envelope, msg)
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# check if our json string produced for signing is the same as test vector
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self.assertEqual(msg_json, json_msg)
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# verify signature against public key
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signature = generate_content_signature(msg_json.encode(), unhexlify(private_key))
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self.assertTrue(verify_content_signature(unhexlify(public_key), signature, json_msg))
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# check if the signed data is the same as test vector
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self.assertEqual(signature, unhexlify(expected_signature))
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def test_cancel_signature(self):
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# source of testing data
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# https://github.com/binance-chain/javascript-sdk/blob/master/__tests__/fixtures/cancelOrder.json
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json_msg = '{"account_number":"34","chain_id":"Binance-Chain-Nile","data":null,"memo":"","msgs":[{"refid":"BA36F0FAD74D8F41045463E4774F328F4AF779E5-29","sender":"tbnb1hgm0p7khfk85zpz5v0j8wnej3a90w709zzlffd","symbol":"BCHSV.B-10F_BNB"}],"sequence":"33","source":"1"}'
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expected_signature = "d93fb0402b2b30e7ea08e123bb139ad68bf0a1577f38592eb22d11e127f09bbd3380f29b4bf15bdfa973454c5c8ed444f2e256e956fe98cfd21e886a946e21e5"
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public_key = "029729a52e4e3c2b4a4e52aa74033eedaf8ba1df5ab6d1f518fd69e67bbd309b0e"
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private_key = "90335b9d2153ad1a9799a3ccc070bd64b4164e9642ee1dd48053c33f9a3a05e9"
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# Testing data for object creation is decoded from json_msg
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envelope = BinanceSignTx(msg_count=1, account_number=34, chain_id="Binance-Chain-Nile", memo="", sequence=33, source=1)
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msg = BinanceCancelMsg(refid="BA36F0FAD74D8F41045463E4774F328F4AF779E5-29",
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sender="tbnb1hgm0p7khfk85zpz5v0j8wnej3a90w709zzlffd",
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symbol="BCHSV.B-10F_BNB")
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msg_json = produce_json_for_signing(envelope, msg)
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# check if our json string produced for signing is the same as test vector
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self.assertEqual(msg_json, json_msg)
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# verify signature against public key
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signature = generate_content_signature(msg_json.encode(), unhexlify(private_key))
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self.assertTrue(verify_content_signature(unhexlify(public_key), signature, json_msg))
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#check if the signed data is the same as test vector
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self.assertEqual(signature, unhexlify(expected_signature))
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def test_transfer_signature(self):
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# source of testing data
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# https://github.com/binance-chain/javascript-sdk/blob/master/__tests__/fixtures/transfer.json
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json_msg = '{"account_number":"34","chain_id":"Binance-Chain-Nile","data":null,"memo":"test","msgs":[{"inputs":[{"address":"tbnb1hgm0p7khfk85zpz5v0j8wnej3a90w709zzlffd","coins":[{"amount":1000000000,"denom":"BNB"}]}],"outputs":[{"address":"tbnb1ss57e8sa7xnwq030k2ctr775uac9gjzglqhvpy","coins":[{"amount":1000000000,"denom":"BNB"}]}]}],"sequence":"31","source":"1"}'
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expected_signature = "faf5b908d6c4ec0c7e2e7d8f7e1b9ca56ac8b1a22b01655813c62ce89bf84a4c7b14f58ce51e85d64c13f47e67d6a9187b8f79f09e0a9b82019f47ae190a4db3"
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public_key = "029729a52e4e3c2b4a4e52aa74033eedaf8ba1df5ab6d1f518fd69e67bbd309b0e"
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private_key = "90335b9d2153ad1a9799a3ccc070bd64b4164e9642ee1dd48053c33f9a3a05e9"
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# Testing data for object creation is decoded from json_msg
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envelope = BinanceSignTx(msg_count=1, account_number=34, chain_id="Binance-Chain-Nile", memo="test", sequence=31, source=1)
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coin = BinanceCoin(denom="BNB", amount=1000000000)
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first_input = BinanceInputOutput(address="tbnb1hgm0p7khfk85zpz5v0j8wnej3a90w709zzlffd", coins=[coin])
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first_output = BinanceInputOutput(address="tbnb1ss57e8sa7xnwq030k2ctr775uac9gjzglqhvpy", coins=[coin])
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msg = BinanceTransferMsg(inputs=[first_input], outputs=[first_output])
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msg_json = produce_json_for_signing(envelope, msg)
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# check if our json string produced for signing is the same as test vector
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self.assertEqual(msg_json, json_msg)
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# verify signature against public key
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signature = generate_content_signature(msg_json.encode(), unhexlify(private_key))
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self.assertTrue(verify_content_signature(unhexlify(public_key), signature, json_msg))
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# check if the signed data is the same as test vector
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self.assertEqual(signature, unhexlify(expected_signature))
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def verify_content_signature(
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public_key: bytes, signature: bytes, unsigned_data: bytes
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) -> bool:
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msghash = sha256(unsigned_data).digest()
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return secp256k1.verify(public_key, signature, msghash)
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if __name__ == '__main__':
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unittest.main()
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