mirror of https://github.com/ConsenSys/mythril
blockchainethereumsmart-contractssoliditysecurityprogram-analysissecurity-analysissymbolic-execution
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150 lines
4.7 KiB
150 lines
4.7 KiB
from mythril.laser.ethereum.svm import LaserEVM
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from mythril.laser.ethereum.state.account import Account
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from mythril.disassembler.disassembly import Disassembly
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from mythril.laser.ethereum.transaction.concolic import execute_message_call
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from mythril.laser.smt import Expression, BitVec
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from mythril.analysis.solver import get_model
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from datetime import datetime
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import binascii
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import json
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import os
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from pathlib import Path
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import pytest
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from z3 import ExprRef, simplify
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evm_test_dir = Path(__file__).parent / "VMTests"
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test_types = [
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"vmArithmeticTest",
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"vmBitwiseLogicOperation",
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"vmEnvironmentalInfo",
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"vmPushDupSwapTest",
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"vmTests",
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"vmSha3Test",
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]
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def load_test_data(designations):
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"""
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:param designations:
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:return:
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"""
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return_data = []
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for designation in designations:
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for file_reference in (evm_test_dir / designation).iterdir():
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with file_reference.open() as file:
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top_level = json.load(file)
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for test_name, data in top_level.items():
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pre_condition = data["pre"]
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action = data["exec"]
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gas_before = int(action["gas"], 16)
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gas_after = data.get("gas")
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gas_used = (
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gas_before - int(gas_after, 16)
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if gas_after is not None
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else None
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)
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post_condition = data.get("post", {})
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environment = data.get("env")
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return_data.append(
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(
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test_name,
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environment,
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pre_condition,
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action,
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gas_used,
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post_condition,
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)
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)
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return return_data
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@pytest.mark.parametrize(
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"test_name, environment, pre_condition, action, gas_used, post_condition",
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load_test_data(test_types),
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)
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def test_vmtest(
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test_name: str,
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environment: dict,
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pre_condition: dict,
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action: dict,
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gas_used: int,
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post_condition: dict,
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) -> None:
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# Arrange
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if test_name == "gasprice":
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return
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accounts = {}
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for address, details in pre_condition.items():
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account = Account(address)
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account.code = Disassembly(details["code"][2:])
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account.balance = int(details["balance"], 16)
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account.nonce = int(details["nonce"], 16)
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accounts[address] = account
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laser_evm = LaserEVM(accounts)
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# Act
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laser_evm.time = datetime.now()
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final_states = execute_message_call(
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laser_evm,
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callee_address=action["address"],
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caller_address=action["caller"],
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origin_address=binascii.a2b_hex(action["origin"][2:]),
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code=action["code"][2:],
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gas_limit=int(action["gas"], 16),
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data=binascii.a2b_hex(action["data"][2:]),
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gas_price=int(action["gasPrice"], 16),
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value=int(action["value"], 16),
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track_gas=True,
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)
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# Assert
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if gas_used is not None and gas_used < int(environment["currentGasLimit"], 16):
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# avoid gas usage larger than block gas limit
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# this currently exceeds our estimations
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gas_min_max = [
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(s.mstate.min_gas_used, s.mstate.max_gas_used) for s in final_states
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]
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gas_ranges = [g[0] <= gas_used for g in gas_min_max]
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assert all(map(lambda g: g[0] <= g[1], gas_min_max))
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assert any(gas_ranges)
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if any((v in test_name for v in ["error", "oog"])) and post_condition == {}:
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# no more work to do if error happens or out of gas
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assert len(laser_evm.open_states) == 0
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else:
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assert len(laser_evm.open_states) == 1
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world_state = laser_evm.open_states[0]
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model = get_model(
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next(iter(laser_evm.nodes.values())).states[0].mstate.constraints
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)
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for address, details in post_condition.items():
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account = world_state[address]
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assert account.nonce == int(details["nonce"], 16)
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assert account.code.bytecode == details["code"][2:]
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for index, value in details["storage"].items():
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expected = int(value, 16)
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actual = account.storage[int(index, 16)]
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if isinstance(actual, Expression):
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actual = actual.value
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actual = 1 if actual is True else 0 if actual is False else actual
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else:
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if type(actual) == bytes:
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actual = int(binascii.b2a_hex(actual), 16)
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elif type(actual) == str:
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actual = int(actual, 16)
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assert actual == expected
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