559 lines
19 KiB
Python
559 lines
19 KiB
Python
# standard imports
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import logging
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# external imports
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import celery
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from chainlib.eth.constant import ZERO_ADDRESS
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from chainlib.chain import ChainSpec
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from chainlib.connection import RPCConnection
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from chainlib.eth.tx import (
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TxFormat,
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unpack,
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)
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from chainlib.eth.contract import (
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ABIContractEncoder,
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)
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from cic_eth_registry import CICRegistry
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from cic_eth_registry.erc20 import ERC20Token
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from hexathon import (
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strip_0x,
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add_0x,
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)
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from chainqueue.error import NotLocalTxError
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from eth_erc20 import ERC20
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from chainqueue.sql.tx import cache_tx_dict
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from okota.token_index import to_identifier
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# local imports
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from cic_eth.db.models.base import SessionBase
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from cic_eth.db.models.role import AccountRole
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from cic_eth.error import (
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TokenCountError,
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PermanentTxError,
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OutOfGasError,
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YouAreBrokeError,
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)
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from cic_eth.queue.tx import register_tx
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from cic_eth.eth.gas import create_check_gas_task
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from cic_eth.eth.util import CacheGasOracle
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from cic_eth.ext.address import translate_address
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from cic_eth.task import (
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CriticalSQLAlchemyTask,
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CriticalWeb3Task,
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CriticalSQLAlchemyAndSignerTask,
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BaseTask,
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)
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from cic_eth.eth.nonce import CustodialTaskNonceOracle
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from cic_eth.encode import tx_normalize
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from cic_eth.eth.trust import verify_proofs
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celery_app = celery.current_app
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logg = logging.getLogger()
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@celery_app.task(base=CriticalWeb3Task)
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def balance(tokens, holder_address, chain_spec_dict):
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"""Return token balances for a list of tokens for given address
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:param tokens: Token addresses
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:type tokens: list of str, 0x-hex
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:param holder_address: Token holder address
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:type holder_address: str, 0x-hex
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:param chain_spec_dict: Chain spec string representation
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:type chain_spec_dict: str
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:return: List of balances
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:rtype: list of int
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"""
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chain_spec = ChainSpec.from_dict(chain_spec_dict)
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rpc = RPCConnection.connect(chain_spec, 'default')
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caller_address = ERC20Token.caller_address
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for t in tokens:
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address = t['address']
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logg.debug('address {} {}'.format(address, holder_address))
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gas_oracle = self.create_gas_oracle(rpc, min_price=self.min_fee_price)
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token = ERC20Token(chain_spec, rpc, add_0x(address))
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c = ERC20(chain_spec, gas_oracle=gas_oracle)
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o = c.balance_of(address, holder_address, sender_address=caller_address)
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r = rpc.do(o)
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t['balance_network'] = c.parse_balance(r)
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rpc.disconnect()
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return tokens
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@celery_app.task(bind=True)
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def check_allowance(self, tokens, holder_address, value, chain_spec_dict, spender_address):
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"""Best-effort verification that the allowance for a transfer from spend is sufficient.
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:raises YouAreBrokeError: If allowance is insufficient
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:param tokens: Token addresses
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:type tokens: list of str, 0x-hex
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:param holder_address: Token holder address
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:type holder_address: str, 0x-hex
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:param value: Amount of token, in 'wei'
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:type value: int
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:param chain_str: Chain spec string representation
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:type chain_str: str
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:param spender_address: Address of account spending on behalf of holder
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:type spender_address: str, 0x-hex
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:return: Token list as passed to task
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:rtype: dict
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"""
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logg.debug('tokens {}'.format(tokens))
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if len(tokens) != 1:
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raise TokenCountError
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t = tokens[0]
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chain_spec = ChainSpec.from_dict(chain_spec_dict)
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rpc = RPCConnection.connect(chain_spec, 'default')
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caller_address = ERC20Token.caller_address
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c = ERC20(chain_spec)
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o = c.allowance(t['address'], holder_address, spender_address, sender_address=caller_address)
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r = rpc.do(o)
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allowance = c.parse_allowance(r)
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if allowance < value:
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errstr = 'allowance {} insufficent to transfer {} {} by {} on behalf of {}'.format(allowance, value, t['symbol'], spender_address, holder_address)
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logg.error(errstr)
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raise YouAreBrokeError(errstr)
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return tokens
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@celery_app.task(bind=True, base=CriticalSQLAlchemyAndSignerTask)
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def transfer_from(self, tokens, holder_address, receiver_address, value, chain_spec_dict, spender_address):
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"""Transfer ERC20 tokens between addresses
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First argument is a list of tokens, to enable the task to be chained to the symbol to token address resolver function. However, it accepts only one token as argument.
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:param tokens: Token addresses
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:type tokens: list of str, 0x-hex
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:param holder_address: Token holder address
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:type holder_address: str, 0x-hex
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:param receiver_address: Token receiver address
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:type receiver_address: str, 0x-hex
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:param value: Amount of token, in 'wei'
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:type value: int
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:param chain_str: Chain spec string representation
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:type chain_str: str
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:param spender_address: Address of account spending on behalf of holder
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:type spender_address: str, 0x-hex
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:raises TokenCountError: Either none or more then one tokens have been passed as tokens argument
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:return: Transaction hash for tranfer operation
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:rtype: str, 0x-hex
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"""
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# we only allow one token, one transfer
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logg.debug('tokens {}'.format(tokens))
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if len(tokens) != 1:
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raise TokenCountError
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t = tokens[0]
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chain_spec = ChainSpec.from_dict(chain_spec_dict)
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queue = self.request.delivery_info.get('routing_key')
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rpc = RPCConnection.connect(chain_spec, 'default')
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rpc_signer = RPCConnection.connect(chain_spec, 'signer')
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session = self.create_session()
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nonce_oracle = CustodialTaskNonceOracle(holder_address, self.request.root_id, session=session)
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enc = ABIContractEncoder()
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enc.method('transferFrom')
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method = enc.get()
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gas_oracle = self.create_gas_oracle(rpc, t['address'], method=method, session=session, min_price=self.min_fee_price)
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c = ERC20(chain_spec, signer=rpc_signer, gas_oracle=gas_oracle, nonce_oracle=nonce_oracle)
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try:
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(tx_hash_hex, tx_signed_raw_hex) = c.transfer_from(t['address'], spender_address, holder_address, receiver_address, value, tx_format=TxFormat.RLP_SIGNED)
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except FileNotFoundError as e:
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raise SignerError(e)
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except ConnectionError as e:
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raise SignerError(e)
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rpc_signer.disconnect()
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rpc.disconnect()
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cache_task = 'cic_eth.eth.erc20.cache_transfer_from_data'
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register_tx(tx_hash_hex, tx_signed_raw_hex, chain_spec, queue, cache_task=cache_task, session=session)
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session.commit()
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session.close()
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gas_pair = gas_oracle.get_gas(tx_signed_raw_hex)
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gas_budget = gas_pair[0] * gas_pair[1]
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logg.debug('transfer tx {} {} {}'.format(tx_hash_hex, queue, gas_budget))
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s = create_check_gas_task(
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[tx_signed_raw_hex],
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chain_spec,
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holder_address,
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gas_budget,
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[tx_hash_hex],
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queue,
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)
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s.apply_async()
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return tx_hash_hex
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@celery_app.task(bind=True, base=CriticalSQLAlchemyAndSignerTask)
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def transfer(self, tokens, holder_address, receiver_address, value, chain_spec_dict):
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"""Transfer ERC20 tokens between addresses
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First argument is a list of tokens, to enable the task to be chained to the symbol to token address resolver function. However, it accepts only one token as argument.
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:raises TokenCountError: Either none or more then one tokens have been passed as tokens argument
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:param tokens: Token addresses
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:type tokens: list of str, 0x-hex
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:param holder_address: Token holder address
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:type holder_address: str, 0x-hex
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:param receiver_address: Token receiver address
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:type receiver_address: str, 0x-hex
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:param value: Amount of token, in 'wei'
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:type value: int
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:param chain_str: Chain spec string representation
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:type chain_str: str
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:raises TokenCountError: More than one token is passed in tokens list
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:return: Transaction hash for tranfer operation
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:rtype: str, 0x-hex
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"""
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# we only allow one token, one transfer
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logg.debug('tokens {}'.format(tokens))
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if len(tokens) != 1:
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raise TokenCountError
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t = tokens[0]
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chain_spec = ChainSpec.from_dict(chain_spec_dict)
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queue = self.request.delivery_info.get('routing_key')
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rpc = RPCConnection.connect(chain_spec, 'default')
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rpc_signer = RPCConnection.connect(chain_spec, 'signer')
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session = self.create_session()
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enc = ABIContractEncoder()
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enc.method('transfer')
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method = enc.get()
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gas_oracle = self.create_gas_oracle(rpc, t['address'], method=method, session=session, min_price=self.min_fee_price)
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nonce_oracle = CustodialTaskNonceOracle(holder_address, self.request.root_id, session=session)
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c = ERC20(chain_spec, signer=rpc_signer, gas_oracle=gas_oracle, nonce_oracle=nonce_oracle)
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try:
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(tx_hash_hex, tx_signed_raw_hex) = c.transfer(t['address'], holder_address, receiver_address, value, tx_format=TxFormat.RLP_SIGNED)
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except FileNotFoundError as e:
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raise SignerError(e)
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except ConnectionError as e:
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raise SignerError(e)
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rpc_signer.disconnect()
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rpc.disconnect()
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cache_task = 'cic_eth.eth.erc20.cache_transfer_data'
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register_tx(tx_hash_hex, tx_signed_raw_hex, chain_spec, queue, cache_task=cache_task, session=session)
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session.commit()
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session.close()
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gas_pair = gas_oracle.get_gas(tx_signed_raw_hex)
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gas_budget = gas_pair[0] * gas_pair[1]
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logg.debug('transfer tx {} {} {}'.format(tx_hash_hex, queue, gas_budget))
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s = create_check_gas_task(
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[tx_signed_raw_hex],
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chain_spec,
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holder_address,
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gas_budget,
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[tx_hash_hex],
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queue,
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)
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s.apply_async()
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return tx_hash_hex
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@celery_app.task(bind=True, base=CriticalSQLAlchemyAndSignerTask)
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def approve(self, tokens, holder_address, spender_address, value, chain_spec_dict):
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"""Approve ERC20 transfer on behalf of holder address
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First argument is a list of tokens, to enable the task to be chained to the symbol to token address resolver function. However, it accepts only one token as argument.
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:raises TokenCountError: Either none or more then one tokens have been passed as tokens argument
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:param tokens: Token addresses
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:type tokens: list of str, 0x-hex
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:param holder_address: Token holder address
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:type holder_address: str, 0x-hex
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:param receiver_address: Token receiver address
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:type receiver_address: str, 0x-hex
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:param value: Amount of token, in 'wei'
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:type value: int
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:param chain_str: Chain spec string representation
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:type chain_str: str
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:raises TokenCountError: More than one token is passed in tokens list
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:return: Transaction hash for tranfer operation
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:rtype: str, 0x-hex
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"""
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# we only allow one token, one transfer
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if len(tokens) != 1:
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raise TokenCountError
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t = tokens[0]
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chain_spec = ChainSpec.from_dict(chain_spec_dict)
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queue = self.request.delivery_info.get('routing_key')
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rpc = RPCConnection.connect(chain_spec, 'default')
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rpc_signer = RPCConnection.connect(chain_spec, 'signer')
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session = self.create_session()
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nonce_oracle = CustodialTaskNonceOracle(holder_address, self.request.root_id, session=session)
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enc = ABIContractEncoder()
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enc.method('approve')
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method = enc.get()
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gas_oracle = self.create_gas_oracle(rpc, t['address'], method=method, session=session)
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c = ERC20(chain_spec, signer=rpc_signer, gas_oracle=gas_oracle, nonce_oracle=nonce_oracle)
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try:
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(tx_hash_hex, tx_signed_raw_hex) = c.approve(t['address'], holder_address, spender_address, value, tx_format=TxFormat.RLP_SIGNED)
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except FileNotFoundError as e:
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raise SignerError(e)
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except ConnectionError as e:
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raise SignerError(e)
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rpc_signer.disconnect()
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rpc.disconnect()
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cache_task = 'cic_eth.eth.erc20.cache_approve_data'
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register_tx(tx_hash_hex, tx_signed_raw_hex, chain_spec, queue, cache_task=cache_task, session=session)
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session.commit()
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session.close()
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gas_pair = gas_oracle.get_gas(tx_signed_raw_hex)
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gas_budget = gas_pair[0] * gas_pair[1]
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s = create_check_gas_task(
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[tx_signed_raw_hex],
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chain_spec,
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holder_address,
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gas_budget,
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[tx_hash_hex],
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queue,
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)
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s.apply_async()
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return tx_hash_hex
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@celery_app.task(bind=True, base=CriticalWeb3Task)
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def resolve_tokens_by_symbol(self, token_symbols, chain_spec_dict):
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"""Returns contract addresses of an array of ERC20 token symbols
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:param token_symbols: Token symbols to resolve
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:type token_symbols: list of str
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:param chain_str: Chain spec string representation
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:type chain_str: str
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:return: Respective token contract addresses
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:rtype: list of str, 0x-hex
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"""
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tokens = []
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chain_spec = ChainSpec.from_dict(chain_spec_dict)
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rpc = RPCConnection.connect(chain_spec, 'default')
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registry = CICRegistry(chain_spec, rpc)
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session = self.create_session()
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sender_address = AccountRole.get_address('DEFAULT', session)
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session.close()
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for token_symbol in token_symbols:
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token_address = registry.by_name(token_symbol, sender_address=sender_address)
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logg.debug('token {}'.format(token_address))
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tokens.append({
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'address': token_address,
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'symbol': token_symbol,
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'converters': [],
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})
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rpc.disconnect()
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return tokens
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@celery_app.task(base=CriticalSQLAlchemyTask)
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def cache_transfer_data(
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tx_hash_hex,
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tx_signed_raw_hex,
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chain_spec_dict,
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):
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"""Helper function for otx_cache_transfer
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:param tx_hash_hex: Transaction hash
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:type tx_hash_hex: str, 0x-hex
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:param tx: Signed raw transaction
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:type tx: str, 0x-hex
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:returns: Transaction hash and id of cache element in storage backend, respectively
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:rtype: tuple
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"""
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chain_spec = ChainSpec.from_dict(chain_spec_dict)
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tx_signed_raw_bytes = bytes.fromhex(strip_0x(tx_signed_raw_hex))
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tx = unpack(tx_signed_raw_bytes, chain_spec)
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tx_data = ERC20.parse_transfer_request(tx['data'])
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sender_address = tx_normalize.wallet_address(tx['from'])
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recipient_address = tx_normalize.wallet_address(tx_data[0])
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token_value = tx_data[1]
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session = SessionBase.create_session()
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tx_dict = {
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'hash': tx_hash_hex,
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'from': sender_address,
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'to': recipient_address,
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'source_token': tx['to'],
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'destination_token': tx['to'],
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'from_value': token_value,
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'to_value': token_value,
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}
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(tx_dict, cache_id) = cache_tx_dict(tx_dict, session=session)
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session.close()
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return (tx_hash_hex, cache_id)
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@celery_app.task(base=CriticalSQLAlchemyTask)
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def cache_transfer_from_data(
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tx_hash_hex,
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tx_signed_raw_hex,
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chain_spec_dict,
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):
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"""Helper function for otx_cache_transfer_from
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:param tx_hash_hex: Transaction hash
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:type tx_hash_hex: str, 0x-hex
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:param tx: Signed raw transaction
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:type tx: str, 0x-hex
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:returns: Transaction hash and id of cache element in storage backend, respectively
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:rtype: tuple
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"""
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chain_spec = ChainSpec.from_dict(chain_spec_dict)
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tx_signed_raw_bytes = bytes.fromhex(strip_0x(tx_signed_raw_hex))
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tx = unpack(tx_signed_raw_bytes, chain_spec)
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tx_data = ERC20.parse_transfer_from_request(tx['data'])
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spender_address = tx_data[0]
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recipient_address = tx_data[1]
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token_value = tx_data[2]
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session = SessionBase.create_session()
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tx_dict = {
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'hash': tx_hash_hex,
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'from': tx['from'],
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'to': recipient_address,
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'source_token': tx['to'],
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'destination_token': tx['to'],
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'from_value': token_value,
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'to_value': token_value,
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}
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(tx_dict, cache_id) = cache_tx_dict(tx_dict, session=session)
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session.close()
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return (tx_hash_hex, cache_id)
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@celery_app.task(base=CriticalSQLAlchemyTask)
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def cache_approve_data(
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tx_hash_hex,
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tx_signed_raw_hex,
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chain_spec_dict,
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):
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"""Helper function for otx_cache_approve
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:param tx_hash_hex: Transaction hash
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:type tx_hash_hex: str, 0x-hex
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:param tx: Signed raw transaction
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:type tx: str, 0x-hex
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:returns: Transaction hash and id of cache element in storage backend, respectively
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:rtype: tuple
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"""
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chain_spec = ChainSpec.from_dict(chain_spec_dict)
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tx_signed_raw_bytes = bytes.fromhex(strip_0x(tx_signed_raw_hex))
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tx = unpack(tx_signed_raw_bytes, chain_spec)
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tx_data = ERC20.parse_approve_request(tx['data'])
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sender_address = tx_normalize.wallet_address(tx['from'])
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recipient_address = tx_normalize.wallet_address(tx_data[0])
|
||
token_value = tx_data[1]
|
||
|
||
session = SessionBase.create_session()
|
||
tx_dict = {
|
||
'hash': tx_hash_hex,
|
||
'from': sender_address,
|
||
'to': recipient_address,
|
||
'source_token': tx['to'],
|
||
'destination_token': tx['to'],
|
||
'from_value': token_value,
|
||
'to_value': token_value,
|
||
}
|
||
(tx_dict, cache_id) = cache_tx_dict(tx_dict, session=session)
|
||
session.close()
|
||
return (tx_hash_hex, cache_id)
|
||
|
||
|
||
@celery_app.task(bind=True, base=BaseTask)
|
||
def token_info(self, tokens, chain_spec_dict, proofs=[]):
|
||
chain_spec = ChainSpec.from_dict(chain_spec_dict)
|
||
rpc = RPCConnection.connect(chain_spec, 'default')
|
||
|
||
i = 0
|
||
|
||
for token in tokens:
|
||
result_data = []
|
||
token_chain_object = ERC20Token(chain_spec, rpc, add_0x(token['address']))
|
||
token_chain_object.load(rpc)
|
||
|
||
token_symbol_proof_hex = to_identifier(token_chain_object.symbol)
|
||
token_proofs = [token_symbol_proof_hex]
|
||
if len(proofs) > 0:
|
||
token_proofs += proofs[i]
|
||
|
||
tokens[i] = {
|
||
'decimals': token_chain_object.decimals,
|
||
'name': token_chain_object.name,
|
||
'symbol': token_chain_object.symbol,
|
||
'address': tx_normalize.executable_address(token_chain_object.address),
|
||
'proofs': token_proofs,
|
||
'converters': tokens[i]['converters'],
|
||
}
|
||
i += 1
|
||
|
||
return tokens
|
||
|
||
|
||
@celery_app.task(bind=True, base=BaseTask)
|
||
def verify_token_info(self, tokens, chain_spec_dict, success_callback, error_callback):
|
||
queue = self.request.delivery_info.get('routing_key')
|
||
|
||
for token in tokens:
|
||
s = celery.signature(
|
||
'cic_eth.eth.trust.verify_proofs',
|
||
[
|
||
token,
|
||
token['address'],
|
||
token['proofs'],
|
||
chain_spec_dict,
|
||
success_callback,
|
||
error_callback,
|
||
],
|
||
queue=queue,
|
||
)
|
||
|
||
if success_callback != None:
|
||
s.link(success_callback)
|
||
if error_callback != None:
|
||
s.on_error(error_callback)
|
||
s.apply_async()
|
||
|
||
return tokens
|
||
|
||
|
||
@celery_app.task(bind=True, base=BaseTask)
|
||
def default_token(self):
|
||
return {
|
||
'symbol': self.default_token_symbol,
|
||
'address': self.default_token_address,
|
||
'name': self.default_token_name,
|
||
'decimals': self.default_token_decimals,
|
||
}
|