Files
quantconnect--lean/Engine/DataFeeds/SubscriptionUtils.cs
T
Gerardo Salazar cd9e451ead
Build & Test Lean / build (push) Has been cancelled
Regression Tests / build (push) Has been cancelled
Adds Support for ETF Constituent Universes (#5862)
* Adds support for ETF constituent universes

  * Adds filtering for universe data if it doesn't match the
    universe subscription type

  * Update mapping for ALL underlying Symbols if
    `Symbol.UpdateMappedSymbol(...)` is called. Required to support
    constituent ETF universes that might have mapping events

  * Delistings of composite constituent universe Symbol will result in
    removal of universe securities.

  * Added regression algorithms for ETF constituent mappings (C#/Python),
    along with data required to run locally

  * Refactor universe delistings in SubscriptionSynchronizer -
    big thank you to @Martin-Molinero :)

* Address review: update regression algorithms and add explanatory comments

* Address review: add additional checks to delisting regression algorithms

  * Adds new regression algorithm testing the addition of a universe
    without calling AddEquity() and asserts same behavior
2021-08-17 19:54:29 -03:00

223 lines
9.6 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.Collections.Generic;
using QuantConnect.Data;
using QuantConnect.Data.Auxiliary;
using QuantConnect.Data.UniverseSelection;
using QuantConnect.Interfaces;
using QuantConnect.Lean.Engine.DataFeeds.Enumerators;
using QuantConnect.Lean.Engine.DataFeeds.WorkScheduling;
using QuantConnect.Logging;
using QuantConnect.Util;
namespace QuantConnect.Lean.Engine.DataFeeds
{
/// <summary>
/// Utilities related to data <see cref="Subscription"/>
/// </summary>
public static class SubscriptionUtils
{
/// <summary>
/// Creates a new <see cref="Subscription"/> which will directly consume the provided enumerator
/// </summary>
/// <param name="request">The subscription data request</param>
/// <param name="enumerator">The data enumerator stack</param>
/// <returns>A new subscription instance ready to consume</returns>
public static Subscription Create(
SubscriptionRequest request,
IEnumerator<BaseData> enumerator)
{
var exchangeHours = request.Security.Exchange.Hours;
var timeZoneOffsetProvider = new TimeZoneOffsetProvider(request.Security.Exchange.TimeZone, request.StartTimeUtc, request.EndTimeUtc);
var dataEnumerator = new SubscriptionDataEnumerator(
request.Configuration,
exchangeHours,
timeZoneOffsetProvider,
enumerator,
request.IsUniverseSubscription
);
return new Subscription(request, dataEnumerator, timeZoneOffsetProvider);
}
/// <summary>
/// Setups a new <see cref="Subscription"/> which will consume a blocking <see cref="EnqueueableEnumerator{T}"/>
/// that will be feed by a worker task
/// </summary>
/// <param name="request">The subscription data request</param>
/// <param name="enumerator">The data enumerator stack</param>
/// <param name="factorFileProvider">The factor file provider</param>
/// <param name="enablePriceScale">Enables price factoring</param>
/// <returns>A new subscription instance ready to consume</returns>
public static Subscription CreateAndScheduleWorker(
SubscriptionRequest request,
IEnumerator<BaseData> enumerator,
IFactorFileProvider factorFileProvider,
bool enablePriceScale)
{
var factorFile = GetFactorFileToUse(request.Configuration, factorFileProvider);
var exchangeHours = request.Security.Exchange.Hours;
var enqueueable = new EnqueueableEnumerator<SubscriptionData>(true);
var timeZoneOffsetProvider = new TimeZoneOffsetProvider(request.Security.Exchange.TimeZone, request.StartTimeUtc, request.EndTimeUtc);
var subscription = new Subscription(request, enqueueable, timeZoneOffsetProvider);
var config = subscription.Configuration;
var lastTradableDate = DateTime.MinValue;
decimal? currentScale = null;
Func<int, bool> produce = (workBatchSize) =>
{
try
{
var count = 0;
while (enumerator.MoveNext())
{
// subscription has been removed, no need to continue enumerating
if (enqueueable.HasFinished)
{
enumerator.DisposeSafely();
return false;
}
var data = enumerator.Current;
// Use our config filter to see if we should emit this
// This currently catches Auxiliary data that we don't want to emit
if (data != null && !config.ShouldEmitData(data, request.IsUniverseSubscription))
{
continue;
}
// In the event we have "Raw" configuration, we will force our subscription data
// to precalculate adjusted data. The data will still be emitted as raw, but
// if the config is changed at any point it can emit adjusted data as well
// See SubscriptionData.Create() and PrecalculatedSubscriptionData for more
var requestMode = config.DataNormalizationMode;
var mode = requestMode != DataNormalizationMode.Raw
? requestMode
: DataNormalizationMode.Adjusted;
// We update our price scale factor when the date changes for non fill forward bars or if we haven't initialized yet.
// We don't take into account auxiliary data because we don't scale it and because the underlying price data could be fill forwarded
if (enablePriceScale && data?.Time.Date > lastTradableDate && data.DataType != MarketDataType.Auxiliary && (!data.IsFillForward || lastTradableDate == DateTime.MinValue))
{
lastTradableDate = data.Time.Date;
currentScale = GetScaleFactor(factorFile, mode, data.Time.Date);
}
SubscriptionData subscriptionData = SubscriptionData.Create(
config,
exchangeHours,
subscription.OffsetProvider,
data,
mode,
enablePriceScale ? currentScale : null);
// drop the data into the back of the enqueueable
enqueueable.Enqueue(subscriptionData);
count++;
// stop executing if added more data than the work batch size, we don't want to fill the ram
if (count > workBatchSize)
{
return true;
}
}
}
catch (Exception exception)
{
Log.Error(exception, $"Subscription worker task exception {request.Configuration}.");
}
// we made it here because MoveNext returned false or we exploded, stop the enqueueable
enqueueable.Stop();
// we have to dispose of the enumerator
enumerator.DisposeSafely();
return false;
};
WeightedWorkScheduler.Instance.QueueWork(config.Symbol, produce,
// if the subscription finished we return 0, so the work is prioritized and gets removed
() =>
{
if (enqueueable.HasFinished)
{
return 0;
}
var count = enqueueable.Count;
return count > WeightedWorkScheduler.MaxWorkWeight ? WeightedWorkScheduler.MaxWorkWeight : count;
}
);
return subscription;
}
/// <summary>
/// Gets <see cref="FactorFile"/> for configuration
/// </summary>
/// <param name="config">Subscription configuration</param>
/// <param name="factorFileProvider">The factor file provider</param>
/// <returns></returns>
public static FactorFile GetFactorFileToUse(
SubscriptionDataConfig config,
IFactorFileProvider factorFileProvider)
{
var factorFileToUse = new FactorFile(config.Symbol.Value, new List<FactorFileRow>());
if (!config.IsCustomData
&& config.SecurityType == SecurityType.Equity)
{
try
{
var factorFile = factorFileProvider.Get(config.Symbol);
if (factorFile != null)
{
factorFileToUse = factorFile;
}
}
catch (Exception err)
{
Log.Error(err, "SubscriptionUtils.GetFactorFileToUse(): Factors File: "
+ config.Symbol.ID + ": ");
}
}
return factorFileToUse;
}
private static decimal GetScaleFactor(FactorFile factorFile, DataNormalizationMode mode, DateTime date)
{
switch (mode)
{
case DataNormalizationMode.Raw:
return 1;
case DataNormalizationMode.TotalReturn:
case DataNormalizationMode.SplitAdjusted:
return factorFile.GetSplitFactor(date);
case DataNormalizationMode.Adjusted:
return factorFile.GetPriceScaleFactor(date);
default:
throw new ArgumentOutOfRangeException();
}
}
}
}