212 lines
7 KiB
Python
212 lines
7 KiB
Python
import base64
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import json
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import logging
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import re
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import time
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from typing import Optional
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import allure
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from common import (
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GAS_HASH,
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MAINNET_BLOCK_TIME,
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MAINNET_SINGLE_ADDR,
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MAINNET_WALLET_PASS,
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MAINNET_WALLET_PATH,
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MORPH_ENDPOINT,
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NEO_MAINNET_ENDPOINT,
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NEOFS_CONTRACT,
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NEOGO_EXECUTABLE,
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)
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from neo3 import wallet as neo3_wallet
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from neofs_testlib.blockchain import RPCClient
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from neofs_testlib.cli import NeoGo
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from neofs_testlib.shell import Shell
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from neofs_testlib.utils.converters import contract_hash_to_address
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from neofs_testlib.utils.wallet import get_last_address_from_wallet
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from utility import parse_time
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logger = logging.getLogger("NeoLogger")
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EMPTY_PASSWORD = ""
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TX_PERSIST_TIMEOUT = 15 # seconds
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ASSET_POWER_MAINCHAIN = 10**8
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ASSET_POWER_SIDECHAIN = 10**12
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morph_rpc_client = RPCClient(MORPH_ENDPOINT)
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mainnet_rpc_client = RPCClient(NEO_MAINNET_ENDPOINT)
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def get_nns_contract_hash() -> str:
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rpc_client = RPCClient(MORPH_ENDPOINT)
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return rpc_client.get_contract_state(1)["hash"]
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def get_contract_hash(resolve_name: str, shell: Shell) -> str:
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nns_contract_hash = get_nns_contract_hash()
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neogo = NeoGo(shell=shell, neo_go_exec_path=NEOGO_EXECUTABLE)
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out = neogo.contract.testinvokefunction(
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scripthash=nns_contract_hash,
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method="resolve",
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arguments=f"string:{resolve_name} int:16",
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rpc_endpoint=MORPH_ENDPOINT,
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)
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stack_data = json.loads(out.stdout.replace("\n", ""))["stack"][0]["value"]
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return bytes.decode(base64.b64decode(stack_data[0]["value"]))
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@allure.step("Withdraw Mainnet Gas")
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def withdraw_mainnet_gas(shell: Shell, wlt: str, amount: int):
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address = get_last_address_from_wallet(wlt, EMPTY_PASSWORD)
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scripthash = neo3_wallet.Account.address_to_script_hash(address)
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neogo = NeoGo(shell=shell, neo_go_exec_path=NEOGO_EXECUTABLE)
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out = neogo.contract.invokefunction(
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wallet=wlt,
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address=address,
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rpc_endpoint=NEO_MAINNET_ENDPOINT,
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scripthash=NEOFS_CONTRACT,
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method="withdraw",
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arguments=f"{scripthash} int:{amount}",
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multisig_hash=f"{scripthash}:Global",
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wallet_password="",
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)
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m = re.match(r"^Sent invocation transaction (\w{64})$", out.stdout)
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if m is None:
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raise Exception("Can not get Tx.")
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tx = m.group(1)
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if not transaction_accepted(tx):
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raise AssertionError(f"TX {tx} hasn't been processed")
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def transaction_accepted(tx_id: str):
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"""
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This function returns True in case of accepted TX.
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Args:
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tx_id(str): transaction ID
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Returns:
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(bool)
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"""
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try:
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for _ in range(0, TX_PERSIST_TIMEOUT):
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time.sleep(1)
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resp = mainnet_rpc_client.get_transaction_height(tx_id)
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if resp is not None:
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logger.info(f"TX is accepted in block: {resp}")
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return True
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except Exception as out:
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logger.info(f"request failed with error: {out}")
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raise out
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return False
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@allure.step("Get NeoFS Balance")
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def get_balance(shell: Shell, wallet_path: str, wallet_password: str = ""):
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"""
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This function returns NeoFS balance for given wallet.
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"""
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with open(wallet_path) as wallet_file:
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wallet = neo3_wallet.Wallet.from_json(json.load(wallet_file), password=wallet_password)
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acc = wallet.accounts[-1]
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payload = [{"type": "Hash160", "value": str(acc.script_hash)}]
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try:
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resp = morph_rpc_client.invoke_function(
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get_contract_hash("balance.neofs", shell=shell), "balanceOf", payload
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)
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logger.info(f"Got response \n{resp}")
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value = int(resp["stack"][0]["value"])
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return value / ASSET_POWER_SIDECHAIN
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except Exception as out:
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logger.error(f"failed to get wallet balance: {out}")
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raise out
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@allure.title("Transfer Gas")
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def transfer_gas(
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shell: Shell,
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amount: int,
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wallet_from_path: str = MAINNET_WALLET_PATH,
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wallet_from_password: str = MAINNET_WALLET_PASS,
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address_from: str = MAINNET_SINGLE_ADDR,
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address_to: Optional[str] = None,
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wallet_to_path: Optional[str] = None,
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wallet_to_password: Optional[str] = None,
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):
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"""
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This function transfer GAS in main chain from mainnet wallet to
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the provided wallet. If the wallet contains more than one address,
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the assets will be transferred to the last one.
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Args:
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shell: Shell instance.
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wallet_from_password: password of the wallet; it is
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required to decode the wallet and extract its addresses
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wallet_from_path: path to chain node wallet
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address_from: the address of the wallet to transfer assets from
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wallet_to_path: the path to the wallet to transfer assets to
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wallet_to_password: the password to the wallet to transfer assets to
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address_to: the address of the wallet to transfer assets to
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amount: amount of gas to transfer
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Returns:
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(void)
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"""
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address_to = address_to or get_last_address_from_wallet(wallet_to_path, wallet_to_password)
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neogo = NeoGo(shell, neo_go_exec_path=NEOGO_EXECUTABLE)
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out = neogo.nep17.transfer(
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rpc_endpoint=NEO_MAINNET_ENDPOINT,
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wallet=wallet_from_path,
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wallet_password=wallet_from_password,
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amount=amount,
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from_address=address_from,
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to_address=address_to,
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token="GAS",
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force=True,
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)
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txid = out.stdout.strip().split("\n")[-1]
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if len(txid) != 64:
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raise Exception("Got no TXID after run the command")
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if not transaction_accepted(txid):
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raise AssertionError(f"TX {txid} hasn't been processed")
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time.sleep(parse_time(MAINNET_BLOCK_TIME))
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@allure.step("NeoFS Deposit")
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def deposit_gas(shell: Shell, amount: int, wallet_from_path: str, wallet_from_password: str):
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"""
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Transferring GAS from given wallet to NeoFS contract address.
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"""
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# get NeoFS contract address
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deposit_addr = contract_hash_to_address(NEOFS_CONTRACT)
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logger.info(f"NeoFS contract address: {deposit_addr}")
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address_from = get_last_address_from_wallet(
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wallet_path=wallet_from_path, wallet_password=wallet_from_password
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)
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transfer_gas(
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shell=shell,
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amount=amount,
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wallet_from_path=wallet_from_path,
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wallet_from_password=wallet_from_password,
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address_to=deposit_addr,
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address_from=address_from,
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)
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@allure.step("Get Mainnet Balance")
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def get_mainnet_balance(address: str):
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resp = mainnet_rpc_client.get_nep17_balances(address=address)
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logger.info(f"Got getnep17balances response: {resp}")
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for balance in resp["balance"]:
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if balance["assethash"] == GAS_HASH:
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return float(balance["amount"]) / ASSET_POWER_MAINCHAIN
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return float(0)
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@allure.step("Get Sidechain Balance")
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def get_sidechain_balance(address: str):
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resp = morph_rpc_client.get_nep17_balances(address=address)
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logger.info(f"Got getnep17balances response: {resp}")
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for balance in resp["balance"]:
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if balance["assethash"] == GAS_HASH:
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return float(balance["amount"]) / ASSET_POWER_SIDECHAIN
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return float(0)
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