Files
quantconnect--lean/Algorithm.CSharp/ContinuousFutureRegressionAlgorithm.cs
T
Martin-Molinero de10a1d669
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Remove securities from algorithm collection (#7573)
- Once a security has been delisted or no longer selected by any
  universe it will be remove from the main algorithm securities
  collection but kept in the new Complete collection, this improves
  performance in long running backtests where security collection can
  get enumerated in different cases
- Minor refactor for security exchange local time to avoid having to set
  it explicitly
2023-11-15 17:09:43 -03:00

211 lines
8.5 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 System;
using System.Linq;
using QuantConnect.Data;
using QuantConnect.Orders;
using QuantConnect.Interfaces;
using QuantConnect.Securities;
using QuantConnect.Data.Market;
using System.Collections.Generic;
using QuantConnect.Securities.Future;
using QuantConnect.Data.UniverseSelection;
namespace QuantConnect.Algorithm.CSharp
{
/// <summary>
/// Continuous Futures Regression algorithm. Asserting and showcasing the behavior of adding a continuous future
/// </summary>
public class ContinuousFutureRegressionAlgorithm : QCAlgorithm, IRegressionAlgorithmDefinition
{
private List<SymbolChangedEvent> _mappings = new();
private Symbol _currentMappedSymbol;
private Future _continuousContract;
private DateTime _lastMonth;
/// <summary>
/// Initialise the data and resolution required, as well as the cash and start-end dates for your algorithm. All algorithms must initialized.
/// </summary>
public override void Initialize()
{
SetStartDate(2013, 7, 1);
SetEndDate(2014, 1, 1);
_continuousContract = AddFuture(Futures.Indices.SP500EMini,
dataNormalizationMode: DataNormalizationMode.BackwardsRatio,
dataMappingMode: DataMappingMode.LastTradingDay,
contractDepthOffset: 0
);
}
/// <summary>
/// OnData event is the primary entry point for your algorithm. Each new data point will be pumped in here.
/// </summary>
/// <param name="data">Slice object keyed by symbol containing the stock data</param>
public override void OnData(Slice data)
{
// we subtract a minute cause we can get data on the market close, from the previous minute
if (!_continuousContract.Exchange.DateTimeIsOpen(Time.AddMinutes(-1)))
{
if (data.Bars.Count > 0 || data.QuoteBars.Count > 0)
{
throw new Exception($"We are getting data during closed market!");
}
}
var currentlyMappedSecurity = Securities[_continuousContract.Mapped];
if (data.Keys.Count != 1)
{
throw new Exception($"We are getting data for more than one symbols! {string.Join(",", data.Keys.Select(symbol => symbol))}");
}
foreach (var changedEvent in data.SymbolChangedEvents.Values)
{
if (changedEvent.Symbol == _continuousContract.Symbol)
{
_mappings.Add(changedEvent);
Log($"{Time} - SymbolChanged event: {changedEvent}");
if (_currentMappedSymbol == _continuousContract.Mapped)
{
throw new Exception($"Continuous contract current symbol did not change! {_continuousContract.Mapped}");
}
var currentExpiration = changedEvent.Symbol.Underlying.ID.Date;
var frontMonthExpiration = FuturesExpiryFunctions.FuturesExpiryFunction(_continuousContract.Symbol)(Time.AddMonths(1));
if (currentExpiration != frontMonthExpiration.Date)
{
throw new Exception($"Unexpected current mapped contract expiration {currentExpiration}" +
$" @ {Time} it should be AT front month expiration {frontMonthExpiration}");
}
}
}
if (_lastMonth.Month != Time.Month && currentlyMappedSecurity.HasData)
{
_lastMonth = Time;
Log($"{Time}- {currentlyMappedSecurity.GetLastData()}");
if (Portfolio.Invested)
{
Liquidate();
}
else
{
// This works because we set this contract as tradable, even if it's a canonical security
Buy(currentlyMappedSecurity.Symbol, 1);
}
if(Time.Month == 1 && Time.Year == 2013)
{
var response = History(new[] { _continuousContract.Symbol }, 60 * 24 * 90);
if (!response.Any())
{
throw new Exception("Unexpected empty history response");
}
}
}
_currentMappedSymbol = _continuousContract.Mapped;
}
public override void OnOrderEvent(OrderEvent orderEvent)
{
if (orderEvent.Status == OrderStatus.Filled)
{
Log($"{orderEvent}");
}
}
public override void OnSecuritiesChanged(SecurityChanges changes)
{
Debug($"{Time}-{changes}");
if (changes.AddedSecurities.Any(security => security.Symbol != _continuousContract.Symbol)
|| changes.RemovedSecurities.Any(security => security.Symbol != _continuousContract.Symbol))
{
throw new Exception($"We got an unexpected security changes {changes}");
}
}
public override void OnEndOfAlgorithm()
{
var expectedMappingCounts = 2;
if (_mappings.Count != expectedMappingCounts)
{
throw new Exception($"Unexpected symbol changed events: {_mappings.Count}, was expecting {expectedMappingCounts}");
}
var securities = Securities.Total.Where(sec => !sec.IsTradable && !sec.Symbol.IsCanonical() && sec.Symbol.SecurityType == SecurityType.Future).ToList();
if (securities.Count != 1)
{
throw new Exception($"We should have a single non tradable future contract security! found: {securities.Count}");
}
}
/// <summary>
/// This is used by the regression test system to indicate if the open source Lean repository has the required data to run this algorithm.
/// </summary>
public bool CanRunLocally { get; } = true;
/// <summary>
/// This is used by the regression test system to indicate which languages this algorithm is written in.
/// </summary>
public Language[] Languages { get; } = { Language.CSharp, Language.Python };
/// <summary>
/// Data Points count of all timeslices of algorithm
/// </summary>
public long DataPoints => 703956;
/// <summary>
/// Data Points count of the algorithm history
/// </summary>
public int AlgorithmHistoryDataPoints => 0;
/// <summary>
/// This is used by the regression test system to indicate what the expected statistics are from running the algorithm
/// </summary>
public Dictionary<string, string> ExpectedStatistics => new Dictionary<string, string>
{
{"Total Trades", "3"},
{"Average Win", "1.50%"},
{"Average Loss", "0%"},
{"Compounding Annual Return", "3.337%"},
{"Drawdown", "1.600%"},
{"Expectancy", "0"},
{"Net Profit", "1.666%"},
{"Sharpe Ratio", "0.594"},
{"Probabilistic Sharpe Ratio", "44.801%"},
{"Loss Rate", "0%"},
{"Win Rate", "100%"},
{"Profit-Loss Ratio", "0"},
{"Alpha", "-0.013"},
{"Beta", "0.134"},
{"Annual Standard Deviation", "0.027"},
{"Annual Variance", "0.001"},
{"Information Ratio", "-2.69"},
{"Tracking Error", "0.075"},
{"Treynor Ratio", "0.119"},
{"Total Fees", "$6.45"},
{"Estimated Strategy Capacity", "$8000000000.00"},
{"Lowest Capacity Asset", "ES VMKLFZIH2MTD"},
{"Portfolio Turnover", "1.39%"},
{"OrderListHash", "daf9c9ec97f1590f5a049600599e3b83"}
};
}
}