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blockcoin_tests.py
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blockcoin_tests.py
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import pytest, time, uuid, ecdsa
import identities
from myblockcoin import *
def test_blocks():
bank = Bank(id=0, private_key=identities.bank_private_key(0))
# Good block
block = Block(txns=[])
block.sign(bank.private_key)
bank.handle_block(block)
assert len(bank.blocks) == 1
# Wrong bank signs
block = Block(txns=[])
wrong_private_key = identities.bank_private_key(1000)
block.sign(wrong_private_key)
with pytest.raises(ecdsa.keys.BadSignatureError):
bank.handle_block(block)
def test_bad_tx():
bank = Bank(id=0, private_key=identities.bank_private_key(0))
tx = identities.airdrop_tx()
bank.airdrop(tx)
tx = prepare_simple_tx(
utxos=bank.fetch_utxos(identities.alice_public_key),
sender_private_key=identities.alice_private_key,
recipient_public_key=identities.bob_public_key,
amount=10,
)
# Put in a phony signature
tx.tx_ins[0].signature = identities.alice_private_key.sign(b"bad")
with pytest.raises(ecdsa.keys.BadSignatureError):
bank.handle_tx(tx)
def test_airdrop():
bank = Bank(id=0, private_key=identities.bank_private_key(0))
tx = identities.airdrop_tx()
bank.airdrop(tx)
assert 500_000 == bank.fetch_balance(identities.alice_public_key)
assert 500_000 == bank.fetch_balance(identities.bob_public_key)
def test_utxo():
bank = Bank(id=0, private_key=identities.bank_private_key(0))
tx = identities.airdrop_tx()
bank.airdrop(tx)
assert len(bank.blocks) == 1
# Alice sends 10 to Bob
tx = prepare_simple_tx(
utxos=bank.fetch_utxos(identities.alice_public_key),
sender_private_key=identities.alice_private_key,
recipient_public_key=identities.bob_public_key,
amount=10
)
block = Block(txns=[tx])
block.sign(identities.bank_private_key(1))
bank.handle_block(block)
assert 500_000 - 10 == bank.fetch_balance(identities.alice_public_key)
assert 500_000 + 10 == bank.fetch_balance(identities.bob_public_key)