Files
quantconnect--lean/Algorithm/QCAlgorithm.Python.cs
T
Stefano Raggi 492bc70229 Fix Options and Futures subscriptions at Tick resolution
Previously Tick resolution subscriptions only received ticks with TickType.Trade, now TickType.Quote and TickType.OpenInterest are received as well.

This PR replaces PR #1065
2017-08-22 02:20:36 +02:00

450 lines
24 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 QuantConnect.Data;
using QuantConnect.Data.Consolidators;
using QuantConnect.Data.Market;
using QuantConnect.Indicators;
using System;
using QuantConnect.Securities;
using NodaTime;
using System.Collections.Generic;
using System.Reflection.Emit;
using System.Reflection;
using QuantConnect.Python;
using Python.Runtime;
using QuantConnect.Data.UniverseSelection;
using QuantConnect.Data.Fundamental;
using System.Linq;
namespace QuantConnect.Algorithm
{
public partial class QCAlgorithm
{
private PandasConverter _converter;
/// <summary>
/// Sets pandas converter
/// </summary>
public void SetPandas()
{
_converter = new PandasConverter();
}
/// <summary>
/// AddData a new user defined data source, requiring only the minimum config options.
/// The data is added with a default time zone of NewYork (Eastern Daylight Savings Time)
/// </summary>
/// <param name="type">Data source type</param>
/// <param name="symbol">Key/Symbol for data</param>
/// <param name="resolution">Resolution of the data</param>
/// <remarks>Generic type T must implement base data</remarks>
public void AddData(PyObject type, string symbol, Resolution resolution = Resolution.Minute)
{
AddData(type, symbol, Resolution.Minute, TimeZones.NewYork, false, 1m);
}
/// <summary>
/// AddData a new user defined data source, requiring only the minimum config options.
/// </summary>
/// <param name="type">Data source type</param>
/// <param name="symbol">Key/Symbol for data</param>
/// <param name="resolution">Resolution of the Data Required</param>
/// <param name="timeZone">Specifies the time zone of the raw data</param>
/// <param name="fillDataForward">When no data available on a tradebar, return the last data that was generated</param>
/// <param name="leverage">Custom leverage per security</param>
public void AddData(PyObject type, string symbol, Resolution resolution, DateTimeZone timeZone, bool fillDataForward = false, decimal leverage = 1.0m)
{
AddData(CreateType(type), symbol, resolution, timeZone, fillDataForward, leverage);
}
/// <summary>
/// AddData a new user defined data source, requiring only the minimum config options.
/// </summary>
/// <param name="dataType">Data source type</param>
/// <param name="symbol">Key/Symbol for data</param>
/// <param name="resolution">Resolution of the Data Required</param>
/// <param name="timeZone">Specifies the time zone of the raw data</param>
/// <param name="fillDataForward">When no data available on a tradebar, return the last data that was generated</param>
/// <param name="leverage">Custom leverage per security</param>
public void AddData(Type dataType, string symbol, Resolution resolution, DateTimeZone timeZone, bool fillDataForward = false, decimal leverage = 1.0m)
{
var marketHoursDbEntry = _marketHoursDatabase.GetEntry(Market.USA, symbol, SecurityType.Base, timeZone);
//Add this to the data-feed subscriptions
var symbolObject = new Symbol(SecurityIdentifier.GenerateBase(symbol, Market.USA), symbol);
var symbolProperties = _symbolPropertiesDatabase.GetSymbolProperties(Market.USA, symbol, SecurityType.Base, CashBook.AccountCurrency);
//Add this new generic data as a tradeable security:
var security = SecurityManager.CreateSecurity(dataType, Portfolio, SubscriptionManager, marketHoursDbEntry.ExchangeHours, marketHoursDbEntry.DataTimeZone,
symbolProperties, SecurityInitializer, symbolObject, resolution, fillDataForward, leverage, true, false, true, LiveMode);
AddToUserDefinedUniverse(security);
}
/// <summary>
/// Creates a new universe and adds it to the algorithm. This is for coarse fundamental US Equity data and
/// will be executed on day changes in the NewYork time zone (<see cref="TimeZones.NewYork"/>
/// </summary>
/// <param name="pycoarse">Defines an initial coarse selection</param>
public void AddUniverse(PyObject pycoarse)
{
var coarse = ToFunc<CoarseFundamental>(pycoarse);
AddUniverse(coarse);
}
/// <summary>
/// Creates a new universe and adds it to the algorithm. This is for coarse and fine fundamental US Equity data and
/// will be executed on day changes in the NewYork time zone (<see cref="TimeZones.NewYork"/>
/// </summary>
/// <param name="pycoarse">Defines an initial coarse selection</param>
/// <param name="pyfine">Defines a more detailed selection with access to more data</param>
public void AddUniverse(PyObject pycoarse, PyObject pyfine)
{
var coarse = ToFunc<CoarseFundamental>(pycoarse);
var fine = ToFunc<FineFundamental>(pyfine);
AddUniverse(coarse, fine);
}
/// <summary>
/// Registers the consolidator to receive automatic updates as well as configures the indicator to receive updates
/// from the consolidator.
/// </summary>
/// <param name="symbol">The symbol to register against</param>
/// <param name="indicator">The indicator to receive data from the consolidator</param>
/// <param name="resolution">The resolution at which to send data to the indicator, null to use the same resolution as the subscription</param>
public void RegisterIndicator(Symbol symbol, IndicatorBase<IBaseDataBar> indicator, Resolution? resolution = null)
{
RegisterIndicator<IBaseDataBar>(symbol, indicator, resolution);
}
/// <summary>
/// Registers the consolidator to receive automatic updates as well as configures the indicator to receive updates
/// from the consolidator.
/// </summary>
/// <param name="symbol">The symbol to register against</param>
/// <param name="indicator">The indicator to receive data from the consolidator</param>
/// <param name="resolution">The resolution at which to send data to the indicator, null to use the same resolution as the subscription</param>
public void RegisterIndicator(Symbol symbol, IndicatorBase<TradeBar> indicator, Resolution? resolution = null)
{
RegisterIndicator<TradeBar>(symbol, indicator, resolution);
}
/// <summary>
/// Registers the consolidator to receive automatic updates as well as configures the indicator to receive updates
/// from the consolidator.
/// </summary>
/// <param name="symbol">The symbol to register against</param>
/// <param name="indicator">The indicator to receive data from the consolidator</param>
/// <param name="resolution">The resolution at which to send data to the indicator, null to use the same resolution as the subscription</param>
/// <param name="selector">Selects a value from the BaseData send into the indicator, if null defaults to a cast (x => (T)x)</param>
public void RegisterIndicator(Symbol symbol, IndicatorBase<IBaseDataBar> indicator, Resolution? resolution, Func<IBaseData, IBaseDataBar> selector)
{
RegisterIndicator<IBaseDataBar>(symbol, indicator, resolution, selector);
}
/// <summary>
/// Registers the consolidator to receive automatic updates as well as configures the indicator to receive updates
/// from the consolidator.
/// </summary>
/// <param name="symbol">The symbol to register against</param>
/// <param name="indicator">The indicator to receive data from the consolidator</param>
/// <param name="resolution">The resolution at which to send data to the indicator, null to use the same resolution as the subscription</param>
/// <param name="selector">Selects a value from the BaseData send into the indicator, if null defaults to a cast (x => (T)x)</param>
public void RegisterIndicator(Symbol symbol, IndicatorBase<TradeBar> indicator, Resolution? resolution, Func<IBaseData, TradeBar> selector)
{
RegisterIndicator<TradeBar>(symbol, indicator, resolution, selector);
}
/// <summary>
/// Registers the consolidator to receive automatic updates as well as configures the indicator to receive updates
/// from the consolidator.
/// </summary>
/// <param name="symbol">The symbol to register against</param>
/// <param name="indicator">The indicator to receive data from the consolidator</param>
/// <param name="resolution">The resolution at which to send data to the indicator, null to use the same resolution as the subscription</param>
/// <param name="selector">Selects a value from the BaseData send into the indicator, if null defaults to a cast (x => (T)x)</param>
public void RegisterIndicator(Symbol symbol, IndicatorBase<IBaseDataBar> indicator, TimeSpan? resolution, Func<IBaseData, IBaseDataBar> selector)
{
RegisterIndicator<IBaseDataBar>(symbol, indicator, resolution, selector);
}
/// <summary>
/// Registers the consolidator to receive automatic updates as well as configures the indicator to receive updates
/// from the consolidator.
/// </summary>
/// <param name="symbol">The symbol to register against</param>
/// <param name="indicator">The indicator to receive data from the consolidator</param>
/// <param name="resolution">The resolution at which to send data to the indicator, null to use the same resolution as the subscription</param>
/// <param name="selector">Selects a value from the BaseData send into the indicator, if null defaults to a cast (x => (T)x)</param>
public void RegisterIndicator(Symbol symbol, IndicatorBase<TradeBar> indicator, TimeSpan? resolution, Func<IBaseData, TradeBar> selector)
{
RegisterIndicator<TradeBar>(symbol, indicator, resolution, selector);
}
/// <summary>
/// Registers the consolidator to receive automatic updates as well as configures the indicator to receive updates
/// from the consolidator.
/// </summary>
/// <param name="symbol">The symbol to register against</param>
/// <param name="indicator">The indicator to receive data from the consolidator</param>
/// <param name="consolidator">The consolidator to receive raw subscription data</param>
/// <param name="selector">Selects a value from the BaseData send into the indicator, if null defaults to a cast (x => (T)x)</param>
public void RegisterIndicator(Symbol symbol, IndicatorBase<IBaseDataBar> indicator, IDataConsolidator consolidator, Func<IBaseData, IBaseDataBar> selector)
{
RegisterIndicator<IBaseDataBar>(symbol, indicator, consolidator, selector);
}
/// <summary>
/// Registers the consolidator to receive automatic updates as well as configures the indicator to receive updates
/// from the consolidator.
/// </summary>
/// <param name="symbol">The symbol to register against</param>
/// <param name="indicator">The indicator to receive data from the consolidator</param>
/// <param name="consolidator">The consolidator to receive raw subscription data</param>
/// <param name="selector">Selects a value from the BaseData send into the indicator, if null defaults to a cast (x => (T)x)</param>
public void RegisterIndicator(Symbol symbol, IndicatorBase<TradeBar> indicator, IDataConsolidator consolidator, Func<IBaseData, TradeBar> selector)
{
RegisterIndicator<TradeBar>(symbol, indicator, consolidator, selector);
}
/// <summary>
/// Plots the value of each indicator on the chart
/// </summary>
/// <param name="chart">The chart's name</param>
/// <param name="first">The first indicator to plot</param>
/// <param name="second">The second indicator to plot</param>
/// <param name="third">The third indicator to plot</param>
/// <param name="fourth">The fourth indicator to plot</param>
/// <seealso cref="Plot(string,string,decimal)"/>
public void Plot(string chart, Indicator first, Indicator second = null, Indicator third = null, Indicator fourth = null)
{
Plot(chart, new[] { first, second, third, fourth }.Where(x => x != null).ToArray());
}
/// <summary>
/// Plots the value of each indicator on the chart
/// </summary>
/// <param name="chart">The chart's name</param>
/// <param name="first">The first indicator to plot</param>
/// <param name="second">The second indicator to plot</param>
/// <param name="third">The third indicator to plot</param>
/// <param name="fourth">The fourth indicator to plot</param>
/// <seealso cref="Plot(string,string,decimal)"/>
public void Plot(string chart, BarIndicator first, BarIndicator second = null, BarIndicator third = null, BarIndicator fourth = null)
{
Plot(chart, new[] { first, second, third, fourth }.Where(x => x != null).ToArray());
}
/// <summary>
/// Plots the value of each indicator on the chart
/// </summary>
/// <param name="chart">The chart's name</param>
/// <param name="first">The first indicator to plot</param>
/// <param name="second">The second indicator to plot</param>
/// <param name="third">The third indicator to plot</param>
/// <param name="fourth">The fourth indicator to plot</param>
/// <seealso cref="Plot(string,string,decimal)"/>
public void Plot(string chart, TradeBarIndicator first, TradeBarIndicator second = null, TradeBarIndicator third = null, TradeBarIndicator fourth = null)
{
Plot(chart, new[] { first, second, third, fourth }.Where(x => x != null).ToArray());
}
/// <summary>
/// Automatically plots each indicator when a new value is available
/// </summary>
public void PlotIndicator(string chart, Indicator first, Indicator second = null, Indicator third = null, Indicator fourth = null)
{
PlotIndicator(chart, new[] { first, second, third, fourth }.Where(x => x != null).ToArray());
}
/// <summary>
/// Automatically plots each indicator when a new value is available
/// </summary>
public void PlotIndicator(string chart, BarIndicator first, BarIndicator second = null, BarIndicator third = null, BarIndicator fourth = null)
{
PlotIndicator(chart, new[] { first, second, third, fourth }.Where(x => x != null).ToArray());
}
/// <summary>
/// Automatically plots each indicator when a new value is available
/// </summary>
public void PlotIndicator(string chart, TradeBarIndicator first, TradeBarIndicator second = null, TradeBarIndicator third = null, TradeBarIndicator fourth = null)
{
PlotIndicator(chart, new[] { first, second, third, fourth }.Where(x => x != null).ToArray());
}
/// <summary>
/// Automatically plots each indicator when a new value is available, optionally waiting for indicator.IsReady to return true
/// </summary>
public void PlotIndicator(string chart, bool waitForReady, Indicator first, Indicator second = null, Indicator third = null, Indicator fourth = null)
{
PlotIndicator(chart, waitForReady, new[] { first, second, third, fourth }.Where(x => x != null).ToArray());
}
/// <summary>
/// Automatically plots each indicator when a new value is available, optionally waiting for indicator.IsReady to return true
/// </summary>
public void PlotIndicator(string chart, bool waitForReady, BarIndicator first, BarIndicator second = null, BarIndicator third = null, BarIndicator fourth = null)
{
PlotIndicator(chart, waitForReady, new[] { first, second, third, fourth }.Where(x => x != null).ToArray());
}
/// <summary>
/// Automatically plots each indicator when a new value is available, optionally waiting for indicator.IsReady to return true
/// </summary>
public void PlotIndicator(string chart, bool waitForReady, TradeBarIndicator first, TradeBarIndicator second = null, TradeBarIndicator third = null, TradeBarIndicator fourth = null)
{
PlotIndicator(chart, waitForReady, new[] { first, second, third, fourth }.Where(x => x != null).ToArray());
}
/// <summary>
/// Gets the historical data for the specified symbol. The exact number of bars will be returned.
/// The symbol must exist in the Securities collection.
/// </summary>
/// <param name="tickers">The symbols to retrieve historical data for</param>
/// <param name="periods">The number of bars to request</param>
/// <param name="resolution">The resolution to request</param>
/// <returns>A python dictionary with pandas DataFrame containing the requested historical data</returns>
public PyObject History(PyObject tickers, int periods, Resolution? resolution = null)
{
var symbols = GetSymbolsFromPyObject(tickers);
if (symbols == null) return null;
return _converter.GetDataFrame(History(symbols, periods, resolution));
}
/// <summary>
/// Gets the historical data for the specified symbols over the requested span.
/// The symbols must exist in the Securities collection.
/// </summary>
/// <param name="tickers">The symbols to retrieve historical data for</param>
/// <param name="span">The span over which to retrieve recent historical data</param>
/// <param name="resolution">The resolution to request</param>
/// <returns>A python dictionary with pandas DataFrame containing the requested historical data</returns>
public PyObject History(PyObject tickers, TimeSpan span, Resolution? resolution = null)
{
var symbols = GetSymbolsFromPyObject(tickers);
if (symbols == null) return null;
return _converter.GetDataFrame(History(symbols, span, resolution));
}
/// <summary>
/// Gets the historical data for the specified symbol between the specified dates. The symbol must exist in the Securities collection.
/// </summary>
/// <param name="tickers">The symbols to retrieve historical data for</param>
/// <param name="start">The start time in the algorithm's time zone</param>
/// <param name="end">The end time in the algorithm's time zone</param>
/// <param name="resolution">The resolution to request</param>
/// <returns>A python dictionary with pandas DataFrame containing the requested historical data</returns>
public PyObject History(PyObject tickers, DateTime start, DateTime end, Resolution? resolution = null)
{
var symbols = GetSymbolsFromPyObject(tickers);
if (symbols == null) return null;
return _converter.GetDataFrame(History(symbols, start, end, resolution));
}
/// <summary>
/// Gets the symbols/string from a PyObject
/// </summary>
/// <param name="pyObject">PyObject containing symbols</param>
/// <param name="isEquity"></param>
/// <returns>List of symbols</returns>
public List<Symbol> GetSymbolsFromPyObject(PyObject pyObject)
{
using (Py.GIL())
{
// If not a PyList, convert it into one
if (!PyList.IsListType(pyObject))
{
var tmp = new PyList();
tmp.Append(pyObject);
pyObject = tmp;
}
var symbols = new List<Symbol>();
foreach (PyObject item in pyObject)
{
var symbol = (Symbol)item.AsManagedObject(typeof(Symbol));
if (string.IsNullOrWhiteSpace(symbol.Value))
{
continue;
}
symbols.Add(symbol);
}
return symbols.Count == 0 ? null : symbols;
}
}
/// <summary>
/// Creates a type with a given name
/// </summary>
/// <param name="type">Python object</param>
/// <returns>Type object</returns>
private Type CreateType(PyObject type)
{
using (Py.GIL())
{
var an = new AssemblyName(type.Repr().Split('.')[1].Replace("\'>", ""));
var assemblyBuilder = AppDomain.CurrentDomain.DefineDynamicAssembly(an, AssemblyBuilderAccess.Run);
var moduleBuilder = assemblyBuilder.DefineDynamicModule("MainModule");
return moduleBuilder.DefineType(an.Name,
TypeAttributes.Public |
TypeAttributes.Class |
TypeAttributes.AutoClass |
TypeAttributes.AnsiClass |
TypeAttributes.BeforeFieldInit |
TypeAttributes.AutoLayout,
// If the type has IsAuthCodeSet member, it is a PythonQuandl
type.HasAttr("IsAuthCodeSet") ? typeof(PythonQuandl) : typeof(PythonData))
.CreateType();
}
}
/// <summary>
/// Encapsulates a python method with a <see cref="System.Func{T, TResult}"/>
/// </summary>
/// <typeparam name="T">The data type</typeparam>
/// <param name="pyObject">The python method</param>
/// <returns>A <see cref="System.Func{T, TResult}"/> that encapsulates the python method</returns>
private Func<IEnumerable<T>, IEnumerable<Symbol>> ToFunc<T>(PyObject pyObject)
{
var testMod =
"from clr import AddReference\n" +
"AddReference(\"System\")\n" +
"AddReference(\"System.Collections\")\n" +
"AddReference(\"QuantConnect.Common\")\n" +
"from System import Func\n" +
"from System.Collections.Generic import IEnumerable\n" +
"from QuantConnect import Symbol\n" +
"from QuantConnect.Data.Fundamental import FineFundamental\n" +
"from QuantConnect.Data.UniverseSelection import CoarseFundamental\n" +
"def to_func(pyobject, type):\n" +
" return Func[IEnumerable[type], IEnumerable[Symbol]](pyobject)";
using (Py.GIL())
{
dynamic toFunc = PythonEngine.ModuleFromString("x", testMod).GetAttr("to_func");
return toFunc(pyObject, typeof(T))
.AsManagedObject(typeof(Func<IEnumerable<T>, IEnumerable<Symbol>>));
}
}
}
}