- java.lang.Object
-
- com.pervasive.datarush.operators.AbstractLogicalOperator
-
- com.pervasive.datarush.operators.StreamingOperator
-
- com.pervasive.datarush.operators.ExecutableOperator
-
- com.pervasive.datarush.operators.source.EmitRecords
-
- All Implemented Interfaces:
LogicalOperator
,RecordSourceOperator
,SourceOperator<RecordPort>
public final class EmitRecords extends ExecutableOperator implements RecordSourceOperator
Emits an in-memory token list as output. This can be useful for generating small flows of fixed, known data.NOTE: this operator is non-parallel
-
-
Constructor Summary
Constructors Constructor Description EmitRecords()
Emits an undefined record.EmitRecords(RecordTokenList list)
Emits the specified records as output.
-
Method Summary
All Methods Instance Methods Concrete Methods Modifier and Type Method Description protected ExecutableOperator
cloneForExecution()
Performs a deep copy of the operator for execution.protected void
computeMetadata(StreamingMetadataContext ctx)
Implementations must adhere to the following contractsprotected void
execute(ExecutionContext ctx)
Executes the operator.RecordTokenList
getInput()
Gets the list of records which will be produced.RecordPort
getOutput()
Gets the record port providing the output data from the source.void
setInput(RecordTokenList data)
Sets the list of records which will be produced.-
Methods inherited from class com.pervasive.datarush.operators.ExecutableOperator
getNumInputCopies, getPortSettings, handleInactiveOutput
-
Methods inherited from class com.pervasive.datarush.operators.AbstractLogicalOperator
disableParallelism, getInputPorts, getOutputPorts, newInput, newInput, newOutput, newRecordInput, newRecordInput, newRecordOutput, notifyError
-
Methods inherited from class java.lang.Object
clone, equals, finalize, getClass, hashCode, notify, notifyAll, toString, wait, wait, wait
-
Methods inherited from interface com.pervasive.datarush.operators.LogicalOperator
disableParallelism, getInputPorts, getOutputPorts
-
-
-
-
Constructor Detail
-
EmitRecords
public EmitRecords()
Emits an undefined record. IfsetInput(RecordTokenList)
is not called before executing the containing graph, an error will be raised.
-
EmitRecords
public EmitRecords(RecordTokenList list)
Emits the specified records as output.- Parameters:
list
- the records to emit
-
-
Method Detail
-
getInput
public RecordTokenList getInput()
Gets the list of records which will be produced.- Returns:
- the records to produce
-
setInput
public void setInput(RecordTokenList data)
Sets the list of records which will be produced.- Parameters:
data
- the records to produce
-
getOutput
public RecordPort getOutput()
Description copied from interface:RecordSourceOperator
Gets the record port providing the output data from the source.- Specified by:
getOutput
in interfaceRecordSourceOperator
- Specified by:
getOutput
in interfaceSourceOperator<RecordPort>
- Returns:
- the output port for the source
-
cloneForExecution
protected ExecutableOperator cloneForExecution()
Description copied from class:ExecutableOperator
Performs a deep copy of the operator for execution. The default implementation is implemented in terms of JSON serialization: we perform a JSON serialization followed by a JSON deserialization. As a best-practice, operator implementations should not override this method. If they must override, though, then they must guarantee that cloneForExecution copies any instance variables that are modified by execute.- Overrides:
cloneForExecution
in classExecutableOperator
- Returns:
- a deep copy of this operator
-
computeMetadata
protected void computeMetadata(StreamingMetadataContext ctx)
Description copied from class:StreamingOperator
Implementations must adhere to the following contractsGeneral
Regardless of input ports/output port types, all implementations must do the following:- Validation. Validation of configuration should always be performed first.
- Declare parallelizability.. Implementations must declare parallelizability by calling
StreamingMetadataContext.parallelize(ParallelismStrategy)
.
Input record ports
Implementations with input record ports must declare the following:- Required data ordering: Implementations that have data ordering requirements must declare them by calling
- Required data distribution (only applies to parallelizable operators): Implementations that have data distribution requirements must declare them by calling
RecordPort#setRequiredDataOrdering
, otherwise data may arrive in any order.RecordPort#setRequiredDataDistribution
, otherwise data will arrive in anunspecified partial distribution
.RecordPort#getSourceDataDistribution
andRecordPort#getSourceDataOrdering
. These should be viewed as a hints to help chose a more efficient algorithm. In such cases, though, operators must still declare data ordering and data distribution requirements; otherwise there is no guarantee that data will arrive sorted/distributed as required.Output record ports
Implementations with output record ports must declare the following:- Type: Implementations must declare their output type by calling
RecordPort#setType
.
- Output data ordering: Implementations that can make guarantees as to their output
ordering may do so by calling
RecordPort#setOutputDataOrdering
- Output data distribution (only applies to parallelizable operators): Implementations that can make guarantees as to their output
distribution may do so by calling
RecordPort#setOutputDataDistribution
Input model ports
In general, there is nothing special to declare for input model ports. Models are implicitly duplicated to all partitions when going from non-parallel to parallel operators. The case of a model going from a parallel to a non-parallel node is a special case of a "model reducer" operator. In the case of a model reducer, the downstream operator, must declare the following:- Merge handler: Model reducers must declare a merge handler by
calling
AbstractModelPort#setMergeHandler
.
MergeModel
is a convenient, re-usable model reducer, parameterized with a merge-handler.Output model ports
SimpleModelPort
's have no associated metadata and therefore there is never any output metadata to declare.PMMLPort
's, on the other hand, do have associated metadata. For all PMMLPorts, implementations must declare the following:- pmmlModelSpec: Implementations must declare the PMML model spec
by calling
PMMLPort.setPMMLModelSpec
.
- Specified by:
computeMetadata
in classStreamingOperator
- Parameters:
ctx
- the context
-
execute
protected void execute(ExecutionContext ctx)
Description copied from class:ExecutableOperator
Executes the operator. Implementations should adhere to the following contracts:- Following execution, all input ports must be at end-of-data.
- Following execution, all output ports must be at end-of-data.
- Specified by:
execute
in classExecutableOperator
- Parameters:
ctx
- context in which to lookup physical ports bound to logical ports
-
-