- Adding `WorkerThread` class, wrapper for a worker thread that will
execute given `Actions`.
- Algorithm related code (`Construction`, `Initialization`,
`Execution` will be executed by the same `WorkerThread` instance,
this is required for `Python` debugging.
- Moving `UniverseSelection.EnsureCurrencyDataFeeds` call into the
`IResultHandler` implementation through usage of the new `SetupHandlerHelper`
class, that will also set an initial conversion rate if none present.
- Adding regression test, that reproduces original issue
- ISetupHandler implementations will now use 50ms as sleep interval
while initializing the algorithm
- If the sleep interval is >= to 1s (default value) it will divide the
sleep operations into 5
Improves the message when the Loader cannot resolve the algorithm to load. It happens when the assemblies don't have a QCAlgorithm class that match the algorithm name or you have 2-of them so Lean doesn't know which one to backtest.
The possible Loader exceptions are thrown as `AlgorithmSetupException` to mach the pattern for exceptions during initialization.
This is performed w/in a try/catch which esures that we won't call PostInitialize
if Initialize throws an error, thereby preventing potential confusing in the reported
error message
Fixes#1778
The engine defines securities for each universe to properly track them within
the data feed. These securities are not tradable and have no price data associated
with them, and as such, we should not be sending history requests for these symbols.
This change removes all universe symbols from history requests.
NOTE: Requests made directly to the history provider are not filtered out, as the
filtering happens within the QCAlgorithm implementation.
This PR is an attempt to reduce contention in concurrent dictionaries, replacing method calls using full locks with lock-free equivalents:
- dictionary.Count -> dictionary.Skip(0).Count()
- dictionary.Keys -> dictionary.Select(x => x.Key)
- dictionary.Values -> dictionary.Select(x => x.Value)
The most frequent usages of these methods are: CashBook, SecurityManager, UniverseManager and indirectly, SecurityPortfolioManager.
The reasons for this update are explained very clearly in this article:
https://arbel.net/2013/02/03/best-practices-for-using-concurrentdictionary/
- Move BacktestingFutureChainProvider provider to Lean.Engine.DataFeeds along with its options equivalent.
- EmptyFutureChainProvider: provider that returns an empty list of symbols
- CachingFutureChainProvider: implements caching by date
- BacktestingFutureChainProvider: provider that gets chain from local files
- LiveFutureChainProvider: provider that gets chain from external source (empty list of symbols for now)
- Moved provider implementations out of brokerages into their own classes
- Removed DefaultOptionChainProvider
- Added BacktestingOptionChainProvider and LiveOptionChainProvider
- Moved SetOptionChainProvider call from Engine to setup handlers
Lean will not set the start and end date in the BacktestingSetupHandler.
The start and end dates are specified in the user code in
IAlgorithm.Initialize.
When using BrokerageHistoryProvider with InteractiveBrokers, GetOrderByBrokerageId calls on open orders were logging NullReferenceExceptions because SetOrderProcessor is called later, in BrokerageSetupHandler.Setup.
- Updated IB fee model to support option exercise
- Added support for splits for options. Not tested on real data yet.
- Added option exercise functionality for long positions. Unit Tests. Not tested on real data yet.
- Added option assignment functionality for short positions. Assignment event. Unit Tests.
- Added basic option assignment simulator for backtesting brokerage. Simulates assignments for deep ITM short positions close to expiration. Unit Tests.
This removes the SetupHandler.UpdateModels(...) method which used the brokerage
model to set fill/fee/slippage/settlement models. This will also allow the
removal of flags indicating that the user has set certain Security properties
Since we now support universe selection and by convention never remove a security
object, we can't rely on the counts of the security manager to perform limits on
data subscriptions, this logic was moved deeper into the engine, where we perform
UniverseSelection, which is the path taken to add new data subscriptions
Removed ISetupHandler.SetErrorHandler, this is replaced by
brokerage.Message += (sender, message) => algorithm.BrokerageMessageHandler.Handle(message)
allowing algorithm direct access to managing the brokerage messages