Files
quantconnect--lean/Engine/DataFeeds/Synchronizer.cs
Martin-Molinero 9cdb4a91c5 Refactor live data feed (#4636)
* Live Coarse universe refactor

- Live trading will source Coarse and Fine fundamental data directly
  from disk. Updating unit tests.

* Adds ILiveDataProvider interface

  * Adds wrapper for IDataQueueHandler implementations

  * Replaces IDataQueueHandler with ILiveDataProvider in
    LiveTradingDataFeed

  * Edits IDataQueueHandler documentation

* Maintains aggregation for current IDQH impls and skips for ILDF impls

  * Note: No unit test was created for this method, go back and TODO

* Protobuf Market data

- Adding protobuf support for Ticks, TradeBars and QuoteBars. Adding
  unit tests.

* Adds unit tests for LiveDataAggregator changes

  * Fixes bug where custom data was not handled as it was before
  * Fixes race condition bug because of variable reuse in class

* Add protobuf extension serialization

* Fixes for protobuf serialization

* Refactor

* Fix OptionChainUniverse

* replace BaseDataExchange pumping ticks with consolidators

* AlpacaBrokerage

* BitfinexBrokerage

* GDAXBrokerage

* OandaBrokerage

* InteractiveBrokers

* TradierBrokerage

* FxcmBrokerage

* PaperBrokerage

* etc

* WIP fixes for existing LTDF unit tests

* Fixes more LTDF unit tests

* make IDataAggregator.Update recieving Generic BaseData rather than Tick

* Change IDataQueueHandler.Subscribe method

* Some fixes after adding new commits

* Adds protobuf (de)serialization support for Dividend and Split

* Serialize protobuf with length prefix

* Fix missing LTDF unit tests

* Adds TiingoNews protobuf definitions

* fix comments

* more fixes on IQFeedDataQueueHandler

* disallow putting ticks into enumerator directly

* ScannableEnumerator tests

* fix OandaBrokerage

* AggregationManager unit tests

* fix AlpacaBrokerage tests

* fix InteractiveBrokers

* fix FxcmBrokerage tests

* call AggregationManager.Remove method on unsubscribe

* fix GDAX existing tests

* Fixes, refactor adding more tests for AggregatorManager

* Adds BenzingaNews protobuf definitions and round trip unit test

* Adds missing TiingoNews unit test to Protobuf round trip tests

* Improve sleep sequence of LiveSynchronizer

* need start aggregating first, and then can subscribe

* More test fixes and refactor

- Refactoring AggregationManager and ScannableEnumerator so the last is
  the one that owns the consolidator
- Adding pulse on the main LiveSynchronizer

* Improve performance of LEquityDataSynchronizingEnu

* Add missing Set job packet method

* Minor performance improvements

* Improvements add test timeout

- Improvements adding test timeout to find blocking test in travis

* Improve aggregationManager performance

* Testing improvements for travis

* Remove test timeouts

* More test fixes

- Adding more missing dispose calls and improving determinism

* fix IEXDataQueueHandler and tests

* Final tweaks to LTDF tests

* more AggregationManager tests

* consume and log ticks

* fix test: couldn't subscribe to Forex tickers

* change Resolution for all bar configs

* Improve RealTimeScheduleEventServiceAccuracy

* refactoring: move common code to base class

* fixed bug; unsubscribe SubscriptionDataConfig

* Small performance improvement

* Minor fixes

* Avoid Symbol serialization

* Fixes coarse selection in live mode

* Fix for live coarse

* Adds protobuf (de)serialization support for Robintrack

  * Adds round-trip unit test

* Minor performance improvements

* More minor performance improvements

* pass LiveNodePacket through to OandaBrokerage

* Fixes empty list becoming null value when deserializing with protobuf

* Reverts BZ live trading exception removal and fixes tests

* Refactor WorkQueue making it abstract

* Add try catch for composer

* Adds optional data batching period to LiveFillForwardEnumerator

* Override data-queue-handler with config

* Improve PeriodCountConsolidator.Scan performance

* Move batching delay to main Synchornizer thread

* Reverts addition of Robintrack protobuf definitions

* Give priority to config history provider if set

* Add Estimize protobuffing

- Add Estimize protobuffing support. Adding unit tests

* Always dispose of data queue handler

Co-authored-by: Gerardo Salazar <gsalaz9800@gmail.com>
Co-authored-by: Adalyat Nazirov <aenazirov@gmail.com>
2020-08-18 20:21:10 -03:00

224 lines
8.7 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 System;
using System.Collections.Generic;
using System.Threading;
using NodaTime;
using QuantConnect.Interfaces;
using QuantConnect.Logging;
using QuantConnect.Util;
namespace QuantConnect.Lean.Engine.DataFeeds
{
/// <summary>
/// Implementation of the <see cref="ISynchronizer"/> interface which provides the mechanism to stream data to the algorithm
/// </summary>
public class Synchronizer : ISynchronizer, IDataFeedTimeProvider, IDisposable
{
private DateTimeZone _dateTimeZone;
/// <summary>
/// The algorithm instance
/// </summary>
protected IAlgorithm Algorithm;
/// <summary>
/// The subscription manager
/// </summary>
protected IDataFeedSubscriptionManager SubscriptionManager;
/// <summary>
/// The subscription synchronizer
/// </summary>
protected SubscriptionSynchronizer SubscriptionSynchronizer;
/// <summary>
/// The time slice factory
/// </summary>
protected TimeSliceFactory TimeSliceFactory;
/// <summary>
/// Continuous UTC time provider, only valid for live trading see <see cref="LiveSynchronizer"/>
/// </summary>
public virtual ITimeProvider TimeProvider => null;
/// <summary>
/// Time provider which returns current UTC frontier time
/// </summary>
public ITimeProvider FrontierTimeProvider => SubscriptionSynchronizer;
/// <summary>
/// Initializes the instance of the Synchronizer class
/// </summary>
public virtual void Initialize(
IAlgorithm algorithm,
IDataFeedSubscriptionManager dataFeedSubscriptionManager)
{
SubscriptionManager = dataFeedSubscriptionManager;
Algorithm = algorithm;
SubscriptionSynchronizer = new SubscriptionSynchronizer(
SubscriptionManager.UniverseSelection);
}
/// <summary>
/// Returns an enumerable which provides the data to stream to the algorithm
/// </summary>
public virtual IEnumerable<TimeSlice> StreamData(CancellationToken cancellationToken)
{
PostInitialize();
// GetTimeProvider() will call GetInitialFrontierTime() which
// will consume added subscriptions so we need to do this after initialization
SubscriptionSynchronizer.SetTimeProvider(GetTimeProvider());
var previousEmitTime = DateTime.MaxValue;
var enumerator = SubscriptionSynchronizer
.Sync(SubscriptionManager.DataFeedSubscriptions, cancellationToken)
.GetEnumerator();
var previousWasTimePulse = false;
// this is a just in case flag to stop looping if time does not advance
var retried = false;
while (!cancellationToken.IsCancellationRequested)
{
TimeSlice timeSlice;
try
{
if (!enumerator.MoveNext())
{
// the enumerator ended
break;
}
timeSlice = enumerator.Current;
}
catch (Exception err)
{
Log.Error(err);
// notify the algorithm about the error, so it can be reported to the user
Algorithm.RunTimeError = err;
Algorithm.Status = AlgorithmStatus.RuntimeError;
break;
}
// check for cancellation
if (timeSlice == null || cancellationToken.IsCancellationRequested) break;
if (timeSlice.IsTimePulse && Algorithm.UtcTime == timeSlice.Time)
{
previousWasTimePulse = timeSlice.IsTimePulse;
// skip time pulse when algorithms already at that time
continue;
}
// SubscriptionFrontierTimeProvider will return twice the same time if there are no more subscriptions or if Subscription.Current is null
if (timeSlice.Time != previousEmitTime || previousWasTimePulse || timeSlice.UniverseData.Count != 0)
{
previousEmitTime = timeSlice.Time;
previousWasTimePulse = timeSlice.IsTimePulse;
// if we emitted, clear retry flag
retried = false;
yield return timeSlice;
}
else
{
// if the slice has data lets retry just once more... this could happen
// with subscriptions added after initialize using algorithm.AddSecurity() API,
// where the subscription start time is the current time loop (but should just happen once)
if (!timeSlice.Slice.HasData || retried)
{
// there's no more data to pull off, we're done (frontier is max value and no security changes)
break;
}
retried = true;
}
}
enumerator.DisposeSafely();
Log.Trace("Synchronizer.GetEnumerator(): Exited thread.");
}
/// <summary>
/// Performs additional initialization steps after algorithm initialization
/// </summary>
protected virtual void PostInitialize()
{
SubscriptionSynchronizer.SubscriptionFinished += (sender, subscription) =>
{
SubscriptionManager.RemoveSubscription(subscription.Configuration);
if (Log.DebuggingEnabled)
{
Log.Debug("Synchronizer.SubscriptionFinished(): Finished subscription:" +
$"{subscription.Configuration} at {FrontierTimeProvider.GetUtcNow()} UTC");
}
};
// this is set after the algorithm initializes
_dateTimeZone = Algorithm.TimeZone;
TimeSliceFactory = new TimeSliceFactory(_dateTimeZone);
SubscriptionSynchronizer.SetTimeSliceFactory(TimeSliceFactory);
}
/// <summary>
/// Gets the <see cref="ITimeProvider"/> to use. By default this will load the
/// <see cref="RealTimeProvider"/> for live mode, else <see cref="SubscriptionFrontierTimeProvider"/>
/// </summary>
/// <returns>The <see cref="ITimeProvider"/> to use</returns>
protected virtual ITimeProvider GetTimeProvider()
{
return new SubscriptionFrontierTimeProvider(GetInitialFrontierTime(), SubscriptionManager);
}
private DateTime GetInitialFrontierTime()
{
var frontier = DateTime.MaxValue;
foreach (var subscription in SubscriptionManager.DataFeedSubscriptions)
{
var current = subscription.Current;
if (current == null)
{
continue;
}
// we need to initialize both the frontier time and the offset provider, in order to do
// this we'll first convert the current.EndTime to UTC time, this will allow us to correctly
// determine the offset in ticks using the OffsetProvider, we can then use this to recompute
// the UTC time. This seems odd, but is necessary given Noda time's lenient mapping, the
// OffsetProvider exists to give forward marching mapping
// compute the initial frontier time
if (current.EmitTimeUtc < frontier)
{
frontier = current.EmitTimeUtc;
}
}
if (frontier == DateTime.MaxValue)
{
frontier = Algorithm.StartDate.ConvertToUtc(_dateTimeZone);
}
return frontier;
}
/// <summary>
/// Free resources
/// </summary>
public virtual void Dispose()
{
}
}
}