Files
quantconnect--lean/Common/Python/BuyingPowerModelPythonWrapper.cs
T
Martin Molinero 6eb08334cd Revert GetBuyingPower removal
- Fix bug where OptioMarginModel would return 0 initial margin required
2020-02-24 14:06:16 -03:00

149 lines
6.7 KiB
C#

/*
* 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.
*/
using Python.Runtime;
using QuantConnect.Securities;
using System;
namespace QuantConnect.Python
{
/// <summary>
/// Wraps a <see cref="PyObject"/> object that represents a security's model of buying power
/// </summary>
public class BuyingPowerModelPythonWrapper : IBuyingPowerModel
{
private readonly dynamic _model;
/// <summary>
/// Constructor for initialising the <see cref="BuyingPowerModelPythonWrapper"/> class with wrapped <see cref="PyObject"/> object
/// </summary>
/// <param name="model">Represents a security's model of buying power</param>
public BuyingPowerModelPythonWrapper(PyObject model)
{
using (Py.GIL())
{
foreach (var attributeName in new[] { "GetBuyingPower", "GetMaximumOrderQuantityForDeltaBuyingPower", "GetLeverage", "GetMaximumOrderQuantityForTargetBuyingPower", "GetReservedBuyingPowerForPosition", "HasSufficientBuyingPowerForOrder", "SetLeverage" })
{
if (!model.HasAttr(attributeName))
{
throw new NotImplementedException($"IBuyingPowerModel.{attributeName} must be implemented. Please implement this missing method on {model.GetPythonType()}");
}
}
}
_model = model;
}
/// <summary>
/// Gets the buying power available for a trade
/// </summary>
/// <param name="parameters">A parameters object containing the algorithm's potrfolio, security, and order direction</param>
/// <returns>The buying power available for the trade</returns>
public BuyingPower GetBuyingPower(BuyingPowerParameters parameters)
{
using (Py.GIL())
{
return (_model.GetBuyingPower(parameters) as PyObject).GetAndDispose<BuyingPower>();
}
}
/// <summary>
/// Gets the current leverage of the security
/// </summary>
/// <param name="security">The security to get leverage for</param>
/// <returns>The current leverage in the security</returns>
public decimal GetLeverage(Security security)
{
using (Py.GIL())
{
return (_model.GetLeverage(security) as PyObject).GetAndDispose<decimal>();
}
}
/// <summary>
/// Get the maximum market order quantity to obtain a position with a given buying power percentage.
/// Will not take into account free buying power.
/// </summary>
/// <param name="parameters">An object containing the portfolio, the security and the target signed buying power percentage</param>
/// <returns>Returns the maximum allowed market order quantity and if zero, also the reason</returns>
public GetMaximumOrderQuantityResult GetMaximumOrderQuantityForTargetBuyingPower(GetMaximumOrderQuantityForTargetBuyingPowerParameters parameters)
{
using (Py.GIL())
{
return (_model.GetMaximumOrderQuantityForTargetBuyingPower(parameters)
as PyObject).GetAndDispose<GetMaximumOrderQuantityResult>();
}
}
/// <summary>
/// Get the maximum market order quantity to obtain a delta in the buying power used by a security.
/// The deltas sign defines the position side to apply it to, positive long, negative short.
/// </summary>
/// <param name="parameters">An object containing the portfolio, the security and the delta buying power</param>
/// <returns>Returns the maximum allowed market order quantity and if zero, also the reason</returns>
public GetMaximumOrderQuantityResult GetMaximumOrderQuantityForDeltaBuyingPower(
GetMaximumOrderQuantityForDeltaBuyingPowerParameters parameters)
{
using (Py.GIL())
{
return (_model.GetMaximumOrderQuantityForDeltaBuyingPower(parameters)
as PyObject).GetAndDispose<GetMaximumOrderQuantityResult>();
}
}
/// <summary>
/// Gets the amount of buying power reserved to maintain the specified position
/// </summary>
/// <param name="parameters">A parameters object containing the security</param>
/// <returns>The reserved buying power in account currency</returns>
public ReservedBuyingPowerForPosition GetReservedBuyingPowerForPosition(ReservedBuyingPowerForPositionParameters parameters)
{
using (Py.GIL())
{
return (_model.GetReservedBuyingPowerForPosition(parameters)
as PyObject).GetAndDispose<ReservedBuyingPowerForPosition>();
}
}
/// <summary>
/// Check if there is sufficient buying power to execute this order.
/// </summary>
/// <param name="parameters">An object containing the portfolio, the security and the order</param>
/// <returns>Returns buying power information for an order</returns>
public HasSufficientBuyingPowerForOrderResult HasSufficientBuyingPowerForOrder(HasSufficientBuyingPowerForOrderParameters parameters)
{
using (Py.GIL())
{
return (_model.HasSufficientBuyingPowerForOrder(parameters)
as PyObject).GetAndDispose<HasSufficientBuyingPowerForOrderResult>();
}
}
/// <summary>
/// Sets the leverage for the applicable securities, i.e, equities
/// </summary>
/// <remarks>
/// This is added to maintain backwards compatibility with the old margin/leverage system
/// </remarks>
/// <param name="security">The security to set leverage for</param>
/// <param name="leverage">The new leverage</param>
public void SetLeverage(Security security, decimal leverage)
{
using (Py.GIL())
{
_model.SetLeverage(security, leverage);
}
}
}
}