345 lines
13 KiB
Python
345 lines
13 KiB
Python
import unittest
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from binascii import hexlify, unhexlify
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from itertools import cycle
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from torba.testcase import AsyncioTestCase
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from torba.coin.bitcoinsegwit import MainNetLedger as ledger_class
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from torba.client.wallet import Wallet
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from torba.client.constants import CENT, COIN
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NULL_HASH = b'\x00'*32
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FEE_PER_BYTE = 50
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FEE_PER_CHAR = 200000
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def get_output(amount=CENT, pubkey_hash=NULL_HASH, height=-2):
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return ledger_class.transaction_class(height=height) \
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.add_outputs([ledger_class.transaction_class.output_class.pay_pubkey_hash(amount, pubkey_hash)]) \
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.outputs[0]
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def get_input(amount=CENT, pubkey_hash=NULL_HASH):
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return ledger_class.transaction_class.input_class.spend(get_output(amount, pubkey_hash))
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def get_transaction(txo=None):
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return ledger_class.transaction_class() \
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.add_inputs([get_input()]) \
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.add_outputs([txo or ledger_class.transaction_class.output_class.pay_pubkey_hash(CENT, NULL_HASH)])
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class TestSizeAndFeeEstimation(AsyncioTestCase):
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async def asyncSetUp(self):
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self.ledger = ledger_class({
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'db': ledger_class.database_class(':memory:'),
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'headers': ledger_class.headers_class(':memory:'),
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})
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def test_output_size_and_fee(self):
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txo = get_output()
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self.assertEqual(txo.size, 46)
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self.assertEqual(txo.get_fee(self.ledger), 46 * FEE_PER_BYTE)
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def test_input_size_and_fee(self):
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txi = get_input()
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self.assertEqual(txi.size, 148)
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self.assertEqual(txi.get_fee(self.ledger), 148 * FEE_PER_BYTE)
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def test_transaction_size_and_fee(self):
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tx = get_transaction()
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self.assertEqual(tx.size, 204)
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self.assertEqual(tx.base_size, tx.size - tx.inputs[0].size - tx.outputs[0].size)
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self.assertEqual(tx.get_base_fee(self.ledger), FEE_PER_BYTE * tx.base_size)
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class TestAccountBalanceImpactFromTransaction(unittest.TestCase):
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def test_is_my_account_not_set(self):
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tx = get_transaction()
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with self.assertRaisesRegex(ValueError, "Cannot access net_account_balance"):
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_ = tx.net_account_balance
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tx.inputs[0].txo_ref.txo.is_my_account = True
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with self.assertRaisesRegex(ValueError, "Cannot access net_account_balance"):
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_ = tx.net_account_balance
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tx.outputs[0].is_my_account = True
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# all inputs/outputs are set now so it should work
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_ = tx.net_account_balance
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def test_paying_from_my_account_to_other_account(self):
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tx = ledger_class.transaction_class() \
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.add_inputs([get_input(300*CENT)]) \
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.add_outputs([get_output(190*CENT, NULL_HASH),
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get_output(100*CENT, NULL_HASH)])
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tx.inputs[0].txo_ref.txo.is_my_account = True
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tx.outputs[0].is_my_account = False
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tx.outputs[1].is_my_account = True
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self.assertEqual(tx.net_account_balance, -200*CENT)
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def test_paying_from_other_account_to_my_account(self):
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tx = ledger_class.transaction_class() \
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.add_inputs([get_input(300*CENT)]) \
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.add_outputs([get_output(190*CENT, NULL_HASH),
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get_output(100*CENT, NULL_HASH)])
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tx.inputs[0].txo_ref.txo.is_my_account = False
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tx.outputs[0].is_my_account = True
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tx.outputs[1].is_my_account = False
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self.assertEqual(tx.net_account_balance, 190*CENT)
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def test_paying_from_my_account_to_my_account(self):
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tx = ledger_class.transaction_class() \
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.add_inputs([get_input(300*CENT)]) \
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.add_outputs([get_output(190*CENT, NULL_HASH),
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get_output(100*CENT, NULL_HASH)])
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tx.inputs[0].txo_ref.txo.is_my_account = True
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tx.outputs[0].is_my_account = True
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tx.outputs[1].is_my_account = True
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self.assertEqual(tx.net_account_balance, -10*CENT) # lost to fee
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class TestTransactionSerialization(unittest.TestCase):
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def test_genesis_transaction(self):
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raw = unhexlify(
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'01000000010000000000000000000000000000000000000000000000000000000000000000ffffffff4d04'
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'ffff001d0104455468652054696d65732030332f4a616e2f32303039204368616e63656c6c6f72206f6e20'
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'6272696e6b206f66207365636f6e64206261696c6f757420666f722062616e6b73ffffffff0100f2052a01'
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'000000434104678afdb0fe5548271967f1a67130b7105cd6a828e03909a67962e0ea1f61deb649f6bc3f4c'
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'ef38c4f35504e51ec112de5c384df7ba0b8d578a4c702b6bf11d5fac00000000'
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)
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tx = ledger_class.transaction_class(raw)
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self.assertEqual(tx.version, 1)
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self.assertEqual(tx.locktime, 0)
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self.assertEqual(len(tx.inputs), 1)
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self.assertEqual(len(tx.outputs), 1)
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coinbase = tx.inputs[0]
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self.assertTrue(coinbase.txo_ref.is_null, NULL_HASH)
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self.assertEqual(coinbase.txo_ref.position, 0xFFFFFFFF)
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self.assertEqual(coinbase.sequence, 4294967295)
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self.assertIsNotNone(coinbase.coinbase)
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self.assertIsNone(coinbase.script)
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self.assertEqual(
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coinbase.coinbase[8:],
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b'The Times 03/Jan/2009 Chancellor on brink of second bailout for banks'
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)
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out = tx.outputs[0]
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self.assertEqual(out.amount, 5000000000)
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self.assertEqual(out.position, 0)
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self.assertTrue(out.script.is_pay_pubkey)
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self.assertFalse(out.script.is_pay_pubkey_hash)
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self.assertFalse(out.script.is_pay_script_hash)
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tx._reset()
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self.assertEqual(tx.raw, raw)
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def test_coinbase_transaction(self):
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raw = unhexlify(
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'01000000010000000000000000000000000000000000000000000000000000000000000000ffffffff4e03'
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'1f5a070473319e592f4254432e434f4d2f4e59412ffabe6d6dcceb2a9d0444c51cabc4ee97a1a000036ca0'
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'cb48d25b94b78c8367d8b868454b0100000000000000c0309b21000008c5f8f80000ffffffff0291920b5d'
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'0000000017a914e083685a1097ce1ea9e91987ab9e94eae33d8a13870000000000000000266a24aa21a9ed'
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'e6c99265a6b9e1d36c962fda0516b35709c49dc3b8176fa7e5d5f1f6197884b400000000'
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)
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tx = ledger_class.transaction_class(raw)
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self.assertEqual(tx.version, 1)
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self.assertEqual(tx.locktime, 0)
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self.assertEqual(len(tx.inputs), 1)
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self.assertEqual(len(tx.outputs), 2)
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coinbase = tx.inputs[0]
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self.assertTrue(coinbase.txo_ref.is_null)
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self.assertEqual(coinbase.txo_ref.position, 0xFFFFFFFF)
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self.assertEqual(coinbase.sequence, 4294967295)
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self.assertIsNotNone(coinbase.coinbase)
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self.assertIsNone(coinbase.script)
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self.assertEqual(coinbase.coinbase[9:22], b'/BTC.COM/NYA/')
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out = tx.outputs[0]
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self.assertEqual(out.amount, 1561039505)
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self.assertEqual(out.position, 0)
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self.assertFalse(out.script.is_pay_pubkey)
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self.assertFalse(out.script.is_pay_pubkey_hash)
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self.assertTrue(out.script.is_pay_script_hash)
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self.assertFalse(out.script.is_return_data)
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out1 = tx.outputs[1]
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self.assertEqual(out1.amount, 0)
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self.assertEqual(out1.position, 1)
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self.assertEqual(
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hexlify(out1.script.values['data']),
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b'aa21a9ede6c99265a6b9e1d36c962fda0516b35709c49dc3b8176fa7e5d5f1f6197884b4'
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)
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self.assertTrue(out1.script.is_return_data)
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self.assertFalse(out1.script.is_pay_pubkey)
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self.assertFalse(out1.script.is_pay_pubkey_hash)
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self.assertFalse(out1.script.is_pay_script_hash)
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tx._reset()
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self.assertEqual(tx.raw, raw)
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class TestTransactionSigning(AsyncioTestCase):
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async def asyncSetUp(self):
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self.ledger = ledger_class({
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'db': ledger_class.database_class(':memory:'),
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'headers': ledger_class.headers_class(':memory:'),
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})
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await self.ledger.db.open()
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async def asyncTearDown(self):
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await self.ledger.db.close()
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async def test_sign(self):
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account = self.ledger.account_class.from_dict(
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self.ledger, Wallet(), {
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"seed": "carbon smart garage balance margin twelve chest sword "
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"toast envelope bottom stomach absent"
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}
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)
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await account.ensure_address_gap()
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address1, address2 = await account.receiving.get_addresses(limit=2)
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pubkey_hash1 = self.ledger.address_to_hash160(address1)
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pubkey_hash2 = self.ledger.address_to_hash160(address2)
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tx_class = ledger_class.transaction_class
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tx = tx_class() \
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.add_inputs([tx_class.input_class.spend(get_output(2*COIN, pubkey_hash1))]) \
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.add_outputs([tx_class.output_class.pay_pubkey_hash(int(1.9*COIN), pubkey_hash2)]) \
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await tx.sign([account])
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self.assertEqual(
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hexlify(tx.inputs[0].script.values['signature']),
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b'304402205a1df8cd5d2d2fa5934b756883d6c07e4f83e1350c740992d47a12422'
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b'226aaa202200098ac8675827aea2b0d6f0e49566143a95d523e311d342172cd99e2021e47cb01'
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)
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class TransactionIOBalancing(AsyncioTestCase):
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async def asyncSetUp(self):
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self.ledger = ledger_class({
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'db': ledger_class.database_class(':memory:'),
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'headers': ledger_class.headers_class(':memory:'),
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})
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await self.ledger.db.open()
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self.account = self.ledger.account_class.from_dict(
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self.ledger, Wallet(), {
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"seed": "carbon smart garage balance margin twelve chest sword "
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"toast envelope bottom stomach absent"
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}
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)
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addresses = await self.account.ensure_address_gap()
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self.pubkey_hash = [self.ledger.address_to_hash160(a) for a in addresses]
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self.hash_cycler = cycle(self.pubkey_hash)
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async def asyncTearDown(self):
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await self.ledger.db.close()
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def txo(self, amount, address=None):
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return get_output(int(amount*COIN), address or next(self.hash_cycler))
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def txi(self, txo):
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return ledger_class.transaction_class.input_class.spend(txo)
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def tx(self, inputs, outputs):
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return ledger_class.transaction_class.create(inputs, outputs, [self.account], self.account)
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async def create_utxos(self, amounts):
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utxos = [self.txo(amount) for amount in amounts]
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self.funding_tx = ledger_class.transaction_class(is_verified=True) \
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.add_inputs([self.txi(self.txo(sum(amounts)+0.1))]) \
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.add_outputs(utxos)
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await self.ledger.db.insert_transaction(self.funding_tx)
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for utxo in utxos:
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await self.ledger.db.save_transaction_io(
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self.funding_tx,
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self.ledger.hash160_to_address(utxo.script.values['pubkey_hash']),
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utxo.script.values['pubkey_hash'], ''
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)
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return utxos
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@staticmethod
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def inputs(tx):
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return [round(i.amount/COIN, 2) for i in tx.inputs]
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@staticmethod
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def outputs(tx):
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return [round(o.amount/COIN, 2) for o in tx.outputs]
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async def test_basic_use_cases(self):
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self.ledger.fee_per_byte = int(.01*CENT)
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# available UTXOs for filling missing inputs
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utxos = await self.create_utxos([
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1, 1, 3, 5, 10
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])
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# pay 3 coins (3.02 w/ fees)
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tx = await self.tx(
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[], # inputs
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[self.txo(3)] # outputs
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)
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# best UTXO match is 5 (as UTXO 3 will be short 0.02 to cover fees)
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self.assertListEqual(self.inputs(tx), [5])
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# a change of 1.98 is added to reach balance
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self.assertListEqual(self.outputs(tx), [3, 1.98])
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await self.ledger.release_outputs(utxos)
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# pay 2.98 coins (3.00 w/ fees)
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tx = await self.tx(
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[], # inputs
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[self.txo(2.98)] # outputs
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)
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# best UTXO match is 3 and no change is needed
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self.assertListEqual(self.inputs(tx), [3])
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self.assertListEqual(self.outputs(tx), [2.98])
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await self.ledger.release_outputs(utxos)
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# supplied input and output, but input is not enough to cover output
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tx = await self.tx(
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[self.txi(self.txo(10))], # inputs
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[self.txo(11)] # outputs
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)
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# additional input is chosen (UTXO 3)
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self.assertListEqual([10, 3], self.inputs(tx))
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# change is now needed to consume extra input
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self.assertListEqual([11, 1.96], self.outputs(tx))
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await self.ledger.release_outputs(utxos)
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# liquidating a UTXO
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tx = await self.tx(
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[self.txi(self.txo(10))], # inputs
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[] # outputs
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)
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self.assertListEqual([10], self.inputs(tx))
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# missing change added to consume the amount
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self.assertListEqual([9.98], self.outputs(tx))
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await self.ledger.release_outputs(utxos)
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# liquidating at a loss, requires adding extra inputs
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tx = await self.tx(
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[self.txi(self.txo(0.01))], # inputs
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[] # outputs
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)
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# UTXO 1 is added to cover some of the fee
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self.assertListEqual([0.01, 1], self.inputs(tx))
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# change is now needed to consume extra input
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self.assertListEqual([0.97], self.outputs(tx))
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