forked from cerc-io/laconicd-deprecated
29caa1916d
* wait new blk right before send tx
* larger timeout_commit for priority test
* larger timeout_commit for mempool related test
* mv chain id test to cluster used test
* keep cluster in module scope
* sync gomod2nix
* adjust timeout_commit
* rm prune all in indexer config
* add missing min_gas_multiplier
* wait 1 more blk in upgrade
* only keep 2 validators
* add retry for grpc_eth_call
* wait 1 block before stop
* fix lint
* disable recheck
* bump up upgrade
* sync gomod2nix
* Apply suggestions from code review
* Apply suggestions from code review
* append node log
* fix lint
* expect less gas after ecd76396eb
* allow retry continue on empty rsp
* update gomod2nix
* fix flake
* mod tidy
* keep grpc only test
* tests(integration): enable recheck tx mode
* update gomod2nix
Co-authored-by: Federico Kunze Küllmer <31522760+fedekunze@users.noreply.github.com>
Co-authored-by: Freddy Caceres <facs95@gmail.com>
Co-authored-by: Tom <tomasguerraalda@hotmail.com>
199 lines
6.0 KiB
Python
199 lines
6.0 KiB
Python
import json
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import os
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import socket
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import subprocess
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import sys
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import time
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from pathlib import Path
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import bech32
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from dateutil.parser import isoparse
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from dotenv import load_dotenv
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from eth_account import Account
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from hexbytes import HexBytes
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from web3._utils.transactions import fill_nonce, fill_transaction_defaults
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from web3.exceptions import TimeExhausted
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load_dotenv(Path(__file__).parent.parent.parent / "scripts/.env")
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Account.enable_unaudited_hdwallet_features()
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ACCOUNTS = {
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"validator": Account.from_mnemonic(os.getenv("VALIDATOR1_MNEMONIC")),
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"community": Account.from_mnemonic(os.getenv("COMMUNITY_MNEMONIC")),
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"signer1": Account.from_mnemonic(os.getenv("SIGNER1_MNEMONIC")),
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"signer2": Account.from_mnemonic(os.getenv("SIGNER2_MNEMONIC")),
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}
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KEYS = {name: account.key for name, account in ACCOUNTS.items()}
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ADDRS = {name: account.address for name, account in ACCOUNTS.items()}
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ETHERMINT_ADDRESS_PREFIX = "ethm"
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TEST_CONTRACTS = {
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"TestERC20A": "TestERC20A.sol",
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"Greeter": "Greeter.sol",
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"BurnGas": "BurnGas.sol",
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"TestChainID": "ChainID.sol",
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"Mars": "Mars.sol",
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}
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def contract_path(name, filename):
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return (
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Path(__file__).parent
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/ "hardhat/artifacts/contracts/"
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/ filename
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/ (name + ".json")
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)
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CONTRACTS = {
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**{
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name: contract_path(name, filename) for name, filename in TEST_CONTRACTS.items()
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},
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}
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def wait_for_port(port, host="127.0.0.1", timeout=40.0):
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start_time = time.perf_counter()
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while True:
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try:
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with socket.create_connection((host, port), timeout=timeout):
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break
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except OSError as ex:
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time.sleep(0.1)
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if time.perf_counter() - start_time >= timeout:
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raise TimeoutError(
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"Waited too long for the port {} on host {} to start accepting "
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"connections.".format(port, host)
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) from ex
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def w3_wait_for_new_blocks(w3, n, sleep=0.5):
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begin_height = w3.eth.block_number
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while True:
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time.sleep(sleep)
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cur_height = w3.eth.block_number
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if cur_height - begin_height >= n:
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break
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def wait_for_new_blocks(cli, n, sleep=0.5):
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cur_height = begin_height = int((cli.status())["SyncInfo"]["latest_block_height"])
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while cur_height - begin_height < n:
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time.sleep(sleep)
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cur_height = int((cli.status())["SyncInfo"]["latest_block_height"])
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return cur_height
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def wait_for_block(cli, height, timeout=240):
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for _ in range(timeout * 2):
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try:
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status = cli.status()
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except AssertionError as e:
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print(f"get sync status failed: {e}", file=sys.stderr)
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else:
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current_height = int(status["SyncInfo"]["latest_block_height"])
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if current_height >= height:
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break
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print("current block height", current_height)
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time.sleep(0.5)
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else:
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raise TimeoutError(f"wait for block {height} timeout")
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def w3_wait_for_block(w3, height, timeout=240):
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for _ in range(timeout * 2):
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try:
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current_height = w3.eth.block_number
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except Exception as e:
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print(f"get json-rpc block number failed: {e}", file=sys.stderr)
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else:
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if current_height >= height:
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break
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print("current block height", current_height)
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time.sleep(0.5)
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else:
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raise TimeoutError(f"wait for block {height} timeout")
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def wait_for_block_time(cli, t):
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print("wait for block time", t)
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while True:
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now = isoparse((cli.status())["SyncInfo"]["latest_block_time"])
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print("block time now: ", now)
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if now >= t:
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break
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time.sleep(0.5)
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def deploy_contract(w3, jsonfile, args=(), key=KEYS["validator"]):
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"""
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deploy contract and return the deployed contract instance
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"""
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acct = Account.from_key(key)
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info = json.loads(jsonfile.read_text())
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contract = w3.eth.contract(abi=info["abi"], bytecode=info["bytecode"])
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tx = contract.constructor(*args).build_transaction({"from": acct.address})
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txreceipt = send_transaction(w3, tx, key)
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assert txreceipt.status == 1
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address = txreceipt.contractAddress
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return w3.eth.contract(address=address, abi=info["abi"]), txreceipt
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def fill_defaults(w3, tx):
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return fill_nonce(w3, fill_transaction_defaults(w3, tx))
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def sign_transaction(w3, tx, key=KEYS["validator"]):
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"fill default fields and sign"
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acct = Account.from_key(key)
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tx["from"] = acct.address
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tx = fill_transaction_defaults(w3, tx)
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tx = fill_nonce(w3, tx)
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return acct.sign_transaction(tx)
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def send_transaction(w3, tx, key=KEYS["validator"], i=0):
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if i > 3:
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raise TimeExhausted
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signed = sign_transaction(w3, tx, key)
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txhash = w3.eth.send_raw_transaction(signed.rawTransaction)
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try:
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return w3.eth.wait_for_transaction_receipt(txhash, timeout=20)
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except TimeExhausted:
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return send_transaction(w3, tx, key, i + 1)
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def send_successful_transaction(w3, i=0):
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if i > 3:
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raise TimeExhausted
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signed = sign_transaction(w3, {"to": ADDRS["community"], "value": 1000})
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txhash = w3.eth.send_raw_transaction(signed.rawTransaction)
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try:
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receipt = w3.eth.wait_for_transaction_receipt(txhash, timeout=20)
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assert receipt.status == 1
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except TimeExhausted:
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return send_successful_transaction(w3, i + 1)
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return txhash
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def eth_to_bech32(addr, prefix=ETHERMINT_ADDRESS_PREFIX):
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bz = bech32.convertbits(HexBytes(addr), 8, 5)
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return bech32.bech32_encode(prefix, bz)
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def decode_bech32(addr):
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_, bz = bech32.bech32_decode(addr)
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return HexBytes(bytes(bech32.convertbits(bz, 5, 8)))
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def supervisorctl(inipath, *args):
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subprocess.run(
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(sys.executable, "-msupervisor.supervisorctl", "-c", inipath, *args),
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check=True,
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)
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def parse_events(logs):
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return {
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ev["type"]: {attr["key"]: attr["value"] for attr in ev["attributes"]}
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for ev in logs[0]["events"]
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}
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