# QUANTCONNECT.COM - Democratizing Finance, Empowering Individuals. # Lean Algorithmic Trading Engine v2.0. Copyright 2014 QuantConnect Corporation. # # Licensed under the Apache License, Version 2.0 (the "License"); # you may not use this file except in compliance with the License. # You may obtain a copy of the License at http://www.apache.org/licenses/LICENSE-2.0 # # Unless required by applicable law or agreed to in writing, software # distributed under the License is distributed on an "AS IS" BASIS, # WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. # See the License for the specific language governing permissions and # limitations under the License. from AlgorithmImports import * ### ### This algorithm demonstrate how to use OptionStrategies helper class to batch send orders for common strategies. ### In this case, the algorithm tests the Covered and Protective Call strategies. ### class CoveredAndProtectiveCallStrategiesAlgorithm(QCAlgorithm): def Initialize(self): self.SetStartDate(2015, 12, 24) self.SetEndDate(2015, 12, 24) self.SetCash(1000000) option = self.AddOption("GOOG") self._option_symbol = option.Symbol option.SetFilter(-2, +2, 0, 180) self.SetBenchmark("GOOG") def OnData(self,slice): if not self.Portfolio.Invested: for kvp in slice.OptionChains: chain = kvp.Value contracts = sorted(sorted(chain, key = lambda x: abs(chain.Underlying.Price - x.Strike)), key = lambda x: x.Expiry, reverse=True) if len(contracts) == 0: continue contract = contracts[0] if contract != None: self._covered_call = OptionStrategies.CoveredCall(self._option_symbol, contract.Strike, contract.Expiry) self._protective_call = OptionStrategies.ProtectiveCall(self._option_symbol, contract.Strike, contract.Expiry) self.Buy(self._covered_call, 2) else: # Verify that the strategy was traded positionGroup = list(self.Portfolio.Positions.Groups)[0] buyingPowerModel = positionGroup.BuyingPowerModel if not isinstance(buyingPowerModel, OptionStrategyPositionGroupBuyingPowerModel): raise Exception("Expected position group buying power model type: OptionStrategyPositionGroupBuyingPowerModel. " f"Actual: {type(positionGroup.BuyingPowerModel).__name__}") positions = list(positionGroup.Positions) if len(positions) != 2: raise Exception(f"Expected position group to have 2 positions. Actual: {len(positions)}") optionPosition = [position for position in positions if position.Symbol.SecurityType == SecurityType.Option][0] if optionPosition.Symbol.ID.OptionRight != OptionRight.Call: raise Exception(f"Expected option position to be a call. Actual: {optionPosition.Symbol.ID.OptionRight}") underlyingPosition = [position for position in positions if position.Symbol.SecurityType == SecurityType.Equity][0] expectedOptionPositionQuantity = -2 expectedUnderlyingPositionQuantity = 2 * self.Securities[self._option_symbol].SymbolProperties.ContractMultiplier if optionPosition.Quantity != expectedOptionPositionQuantity: raise Exception(f"Expected option position quantity to be {expectedOptionPositionQuantity}. Actual: {optionPosition.Quantity}") if underlyingPosition.Quantity != expectedUnderlyingPositionQuantity: raise Exception(f"Expected underlying position quantity to be {expectedUnderlyingPositionQuantity}. Actual: {underlyingPosition.Quantity}") # Now we should be able to close the position using the inverse strategy (a protective call) self.Buy(self._protective_call, 2); # We can quit now, no more testing required self.Quit(); def OnEndOfAlgorithm(self): if self.Portfolio.Invested: raise Exception("Expected no holdings at end of algorithm") orders_count = len(list(self.Transactions.GetOrders(lambda order: order.Status == OrderStatus.Filled))) if orders_count != 4: raise Exception("Expected 4 orders to have been submitted and filled, 2 for buying the covered call and 2 for the liquidation. " f"Actual {orders_count}") def OnOrderEvent(self, orderEvent): self.Debug(str(orderEvent))