eth-address-index/python/tests/test_addressdeclarator.py
2023-03-26 08:18:46 +01:00

238 lines
9.6 KiB
Python

# standard imports
import os
import unittest
import json
import logging
import hashlib
# external imports
from chainlib.eth.unittest.ethtester import EthTesterCase
from chainlib.eth.contract import (
ABIContractEncoder,
ABIContractType,
)
from chainlib.eth.nonce import RPCNonceOracle
from chainlib.eth.tx import receipt
from giftable_erc20_token import GiftableToken
from hexathon import (
add_0x,
strip_0x,
)
# local imports
from eth_address_declarator.declarator import AddressDeclarator
from eth_address_declarator import Declarator
from eth_address_declarator.unittest import TestAddressDeclaratorBase
logging.basicConfig(level=logging.DEBUG)
logg = logging.getLogger()
testdir = os.path.dirname(__file__)
description = '0x{:<064s}'.format(b'foo'.hex())
class TestAddressDeclarator(TestAddressDeclaratorBase):
def setUp(self):
super(TestAddressDeclarator, self).setUp()
nonce_oracle = RPCNonceOracle(self.accounts[0], self.rpc)
#c = GiftableToken(signer=self.signer, nonce_oracle=nonce_oracle, chain_id=self.chain_spec.chain_id())
c = GiftableToken(self.chain_spec, signer=self.signer, nonce_oracle=nonce_oracle)
(tx_hash_hex, o) = c.constructor(self.accounts[0], 'BarToken', 'BAR', 6)
self.rpc.do(o)
o = receipt(tx_hash_hex)
r = self.rpc.do(o)
self.assertEqual(r['status'], 1)
self.bar_token_address = r['contract_address']
def test_basic(self):
d = add_0x(os.urandom(32).hex())
nonce_oracle = RPCNonceOracle(self.accounts[0], self.rpc)
c = Declarator(self.chain_spec, signer=self.signer, nonce_oracle=nonce_oracle)
(tx_hash_hex, o) = c.add_declaration(self.address, self.accounts[0], self.foo_token_address, d)
self.rpc.do(o)
nonce_oracle = RPCNonceOracle(self.accounts[1], self.rpc)
c = Declarator(self.chain_spec, signer=self.signer, nonce_oracle=nonce_oracle)
(tx_hash_hex, o) = c.add_declaration(self.address, self.accounts[1], self.foo_token_address, d)
self.rpc.do(o)
nonce_oracle = RPCNonceOracle(self.accounts[0], self.rpc)
c = Declarator(self.chain_spec, signer=self.signer, nonce_oracle=nonce_oracle)
(tx_hash_hex, o) = c.add_declaration(self.address, self.accounts[0], self.bar_token_address, d)
self.rpc.do(o)
o = c.declarator_count(self.address, self.foo_token_address, sender_address=self.accounts[0])
r = self.rpc.do(o)
self.assertEqual(c.parse_declarator_count(r), 2)
o = c.declarator_count(self.address, self.bar_token_address, sender_address=self.accounts[0])
r = self.rpc.do(o)
self.assertEqual(c.parse_declarator_count(r), 1)
def test_get_single_declaration(self):
d = add_0x(os.urandom(32).hex())
nonce_oracle = RPCNonceOracle(self.accounts[1], self.rpc)
c = Declarator(self.chain_spec, signer=self.signer, nonce_oracle=nonce_oracle)
(tx_hash_hex, o) = c.add_declaration(self.address, self.accounts[1], self.foo_token_address, d)
self.rpc.do(o)
o = receipt(tx_hash_hex)
r = self.rpc.do(o)
self.assertEqual(r['status'], 1)
o = c.declaration(self.address, self.accounts[1], self.foo_token_address, sender_address=self.accounts[0])
r = self.rpc.do(o)
proofs = c.parse_declaration(r)
self.assertEqual(proofs[0], strip_0x(d))
def test_declaration(self):
d = add_0x(os.urandom(32).hex())
d_two = add_0x(os.urandom(32).hex())
nonce_oracle = RPCNonceOracle(self.accounts[1], self.rpc)
c = Declarator(self.chain_spec, signer=self.signer, nonce_oracle=nonce_oracle)
(tx_hash_hex, o) = c.add_declaration(self.address, self.accounts[1], self.foo_token_address, d)
self.rpc.do(o)
c = Declarator(self.chain_spec, signer=self.signer, nonce_oracle=nonce_oracle)
(tx_hash_hex, o) = c.add_declaration(self.address, self.accounts[1], self.foo_token_address, d_two)
self.rpc.do(o)
nonce_oracle = RPCNonceOracle(self.accounts[2], self.rpc)
c = Declarator(self.chain_spec, signer=self.signer, nonce_oracle=nonce_oracle)
(tx_hash_hex, o) = c.add_declaration(self.address, self.accounts[2], self.foo_token_address, d)
self.rpc.do(o)
c = Declarator(self.chain_spec, signer=self.signer, nonce_oracle=nonce_oracle)
(tx_hash_hex, o) = c.add_declaration(self.address, self.accounts[2], self.bar_token_address, d)
self.rpc.do(o)
o = c.declaration(self.address, self.accounts[1], self.foo_token_address, sender_address=self.accounts[0])
r = self.rpc.do(o)
proofs = c.parse_declaration(r)
self.assertEqual(proofs[0], strip_0x(d))
self.assertEqual(proofs[1], strip_0x(d_two))
def test_declarator_to_subject(self):
d = add_0x(os.urandom(32).hex())
nonce_oracle = RPCNonceOracle(self.accounts[1], self.rpc)
c = Declarator(self.chain_spec, signer=self.signer, nonce_oracle=nonce_oracle)
(tx_hash_hex, o) = c.add_declaration(self.address, self.accounts[1], self.foo_token_address, d)
self.rpc.do(o)
nonce_oracle = RPCNonceOracle(self.accounts[2], self.rpc)
c = Declarator(self.chain_spec, signer=self.signer, nonce_oracle=nonce_oracle)
(tx_hash_hex, o) = c.add_declaration(self.address, self.accounts[2], self.foo_token_address, d)
self.rpc.do(o)
nonce_oracle = RPCNonceOracle(self.accounts[1], self.rpc)
c = Declarator(self.chain_spec, signer=self.signer, nonce_oracle=nonce_oracle)
(tx_hash_hex, o) = c.add_declaration(self.address, self.accounts[1], self.bar_token_address, d)
self.rpc.do(o)
o = c.declaration_address_at(self.address, self.accounts[1], 0, sender_address=self.accounts[0])
r = self.rpc.do(o)
self.assertEqual(c.parse_declaration_address_at(r), strip_0x(self.foo_token_address))
o = c.declaration_address_at(self.address, self.accounts[2], 0, sender_address=self.accounts[0])
r = self.rpc.do(o)
self.assertEqual(c.parse_declaration_address_at(r), strip_0x(self.foo_token_address))
o = c.declaration_address_at(self.address, self.accounts[1], 1, sender_address=self.accounts[0])
r = self.rpc.do(o)
self.assertEqual(c.parse_declaration_address_at(r), strip_0x(self.bar_token_address))
def test_subject_to_declarator(self):
d = '0x' + os.urandom(32).hex()
nonce_oracle = RPCNonceOracle(self.accounts[1], self.rpc)
c = Declarator(self.chain_spec, signer=self.signer, nonce_oracle=nonce_oracle)
(tx_hash_hex, o) = c.add_declaration(self.address, self.accounts[1], self.foo_token_address, d)
self.rpc.do(o)
nonce_oracle = RPCNonceOracle(self.accounts[2], self.rpc)
c = Declarator(self.chain_spec, signer=self.signer, nonce_oracle=nonce_oracle)
(tx_hash_hex, o) = c.add_declaration(self.address, self.accounts[2], self.foo_token_address, d)
self.rpc.do(o)
nonce_oracle = RPCNonceOracle(self.accounts[1], self.rpc)
c = Declarator(self.chain_spec, signer=self.signer, nonce_oracle=nonce_oracle)
(tx_hash_hex, o) = c.add_declaration(self.address, self.accounts[1], self.bar_token_address, d)
self.rpc.do(o)
o = c.declarator_address_at(self.address, self.foo_token_address, 0, sender_address=self.accounts[0])
r = self.rpc.do(o)
self.assertEqual(c.parse_declaration_address_at(r), strip_0x(self.accounts[1]))
o = c.declarator_address_at(self.address, self.foo_token_address, 1, sender_address=self.accounts[0])
r = self.rpc.do(o)
self.assertEqual(c.parse_declaration_address_at(r), strip_0x(self.accounts[2]))
def test_three_first(self):
d = []
for i in range(3):
d.append(add_0x(os.urandom(32).hex()))
nonce_oracle = RPCNonceOracle(self.accounts[0], self.rpc)
c = Declarator(self.chain_spec, signer=self.signer, nonce_oracle=nonce_oracle)
for proof in d:
(tx_hash_hex, o) = c.add_declaration(self.address, self.accounts[0], self.foo_token_address, proof)
self.rpc.do(o)
o = c.declarator_count(self.address, self.foo_token_address, sender_address=self.accounts[0])
r = self.rpc.do(o)
self.assertEqual(c.parse_declarator_count(r), 1)
o = c.declaration(self.address, self.accounts[0], self.foo_token_address, sender_address=self.accounts[0])
r = self.rpc.do(o)
proofs = c.parse_declaration(r)
self.assertEqual(len(proofs), 3)
for i in range(3):
self.assertEqual(proofs[i], strip_0x(d[i]))
def test_three_first_different(self):
d = []
a = []
for i in range(3):
d.append(add_0x(os.urandom(32).hex()))
a.append(add_0x(os.urandom(20).hex()))
nonce_oracle = RPCNonceOracle(self.accounts[0], self.rpc)
c = Declarator(self.chain_spec, signer=self.signer, nonce_oracle=nonce_oracle)
for i in range(3):
(tx_hash_hex, o) = c.add_declaration(self.address, self.accounts[0], a[i], d[i])
self.rpc.do(o)
for i in range(3):
o = c.declarator_count(self.address, a[i], sender_address=self.accounts[0])
r = self.rpc.do(o)
self.assertEqual(c.parse_declarator_count(r), 1)
o = c.declaration(self.address, self.accounts[0], a[i], sender_address=self.accounts[0])
r = self.rpc.do(o)
proofs = c.parse_declaration(r)
self.assertEqual(len(proofs), 1)
self.assertEqual(proofs[0], strip_0x(d[i]))
if __name__ == '__main__':
unittest.main()