ArmNN
 21.08
LstmLayer Class Reference

This layer represents a LSTM operation. More...

#include <LstmLayer.hpp>

Inheritance diagram for LstmLayer:
LayerWithParameters< LstmDescriptor > Layer IConnectableLayer

Public Member Functions

virtual std::unique_ptr< IWorkloadCreateWorkload (const IWorkloadFactory &factory) const override
 Makes a workload for the LSTM type. More...
 
LstmLayerClone (Graph &graph) const override
 Creates a dynamically-allocated copy of this layer. More...
 
void ValidateTensorShapesFromInputs () override
 Check if the input tensor shape(s) will lead to a valid configuration of LstmLayer. More...
 
std::vector< TensorShapeInferOutputShapes (const std::vector< TensorShape > &inputShapes) const override
 By default returns inputShapes if the number of inputs are equal to number of outputs, otherwise infers the output shapes from given input shapes and layer properties. More...
 
void Accept (ILayerVisitor &visitor) const override
 Apply a visitor to this layer. More...
 
void ExecuteStrategy (IStrategy &strategy) const override
 Apply a visitor to this layer. More...
 
- Public Member Functions inherited from LayerWithParameters< LstmDescriptor >
const LstmDescriptorGetParameters () const
 
void SerializeLayerParameters (ParameterStringifyFunction &fn) const override
 Helper to serialize the layer parameters to string (currently used in DotSerializer and company). More...
 
- Public Member Functions inherited from Layer
 Layer (unsigned int numInputSlots, unsigned int numOutputSlots, LayerType type, const char *name)
 
 Layer (unsigned int numInputSlots, unsigned int numOutputSlots, LayerType type, DataLayout layout, const char *name)
 
const std::string & GetNameStr () const
 
const OutputHandlerGetOutputHandler (unsigned int i=0) const
 
OutputHandlerGetOutputHandler (unsigned int i=0)
 
ShapeInferenceMethod GetShapeInferenceMethod () const
 
const std::vector< InputSlot > & GetInputSlots () const
 
const std::vector< OutputSlot > & GetOutputSlots () const
 
std::vector< InputSlot >::iterator BeginInputSlots ()
 
std::vector< InputSlot >::iterator EndInputSlots ()
 
std::vector< OutputSlot >::iterator BeginOutputSlots ()
 
std::vector< OutputSlot >::iterator EndOutputSlots ()
 
bool IsOutputUnconnected ()
 
void ResetPriority () const
 
LayerPriority GetPriority () const
 
LayerType GetType () const override
 Returns the armnn::LayerType of this layer. More...
 
DataType GetDataType () const
 
const BackendIdGetBackendId () const
 
void SetBackendId (const BackendId &id)
 
virtual void CreateTensorHandles (const TensorHandleFactoryRegistry &registry, const IWorkloadFactory &factory, const bool IsMemoryManaged=true)
 
void VerifyLayerConnections (unsigned int expectedConnections, const CheckLocation &location) const
 
virtual void ReleaseConstantData ()
 
template<typename Op >
void OperateOnConstantTensors (Op op)
 
const char * GetName () const override
 Returns the name of the layer. More...
 
unsigned int GetNumInputSlots () const override
 Returns the number of connectable input slots. More...
 
unsigned int GetNumOutputSlots () const override
 Returns the number of connectable output slots. More...
 
const InputSlotGetInputSlot (unsigned int index) const override
 Get a const input slot handle by slot index. More...
 
InputSlotGetInputSlot (unsigned int index) override
 Get the input slot handle by slot index. More...
 
const OutputSlotGetOutputSlot (unsigned int index=0) const override
 Get the const output slot handle by slot index. More...
 
OutputSlotGetOutputSlot (unsigned int index=0) override
 Get the output slot handle by slot index. More...
 
void SetGuid (LayerGuid guid)
 
LayerGuid GetGuid () const final
 Returns the unique id of the layer. More...
 
void AddRelatedLayerName (const std::string layerName)
 
const std::list< std::string > & GetRelatedLayerNames ()
 
virtual void Reparent (Graph &dest, std::list< Layer *>::const_iterator iterator)=0
 
void BackendSelectionHint (Optional< BackendId > backend) final
 Provide a hint for the optimizer as to which backend to prefer for this layer. More...
 
Optional< BackendIdGetBackendHint () const
 
void SetShapeInferenceMethod (ShapeInferenceMethod shapeInferenceMethod)
 
template<typename T >
std::shared_ptr< T > GetAdditionalInformation () const
 
void SetAdditionalInfoForObject (const AdditionalInfoObjectPtr &additionalInfo)
 

Public Attributes

LstmBasicParameters m_BasicParameters
 
LstmOptCifgParameters m_CifgParameters
 
LstmOptProjectionParameters m_ProjectionParameters
 
LstmOptPeepholeParameters m_PeepholeParameters
 
LstmOptLayerNormParameters m_LayerNormParameters
 

Protected Member Functions

 LstmLayer (const LstmDescriptor &param, const char *name)
 Constructor to create a LstmLayer. More...
 
 ~LstmLayer ()=default
 Default destructor. More...
 
Layer::ConstantTensors GetConstantTensorsByRef () override
 Retrieve the handles to the constant values stored by the layer. More...
 
- Protected Member Functions inherited from LayerWithParameters< LstmDescriptor >
 LayerWithParameters (unsigned int numInputSlots, unsigned int numOutputSlots, LayerType type, const LstmDescriptor &param, const char *name)
 
 ~LayerWithParameters ()=default
 
WorkloadInfo PrepInfoAndDesc (QueueDescriptor &descriptor) const
 Helper function to reduce duplication in *LayerCreateWorkload. More...
 
void ExecuteStrategy (IStrategy &strategy) const override
 Apply a visitor to this layer. More...
 
- Protected Member Functions inherited from Layer
virtual ~Layer ()=default
 
template<typename QueueDescriptor >
void CollectQueueDescriptorInputs (QueueDescriptor &descriptor, WorkloadInfo &info) const
 
template<typename QueueDescriptor >
void CollectQueueDescriptorOutputs (QueueDescriptor &descriptor, WorkloadInfo &info) const
 
void ValidateAndCopyShape (const TensorShape &outputShape, const TensorShape &inferredShape, const ShapeInferenceMethod shapeInferenceMethod, const std::string &layerName, const unsigned int outputSlotIndex=0)
 
void VerifyShapeInferenceType (const TensorShape &outputShape, ShapeInferenceMethod shapeInferenceMethod)
 
template<typename QueueDescriptor >
WorkloadInfo PrepInfoAndDesc (QueueDescriptor &descriptor) const
 Helper function to reduce duplication in *LayerCreateWorkload. More...
 
template<typename LayerType , typename ... Params>
LayerTypeCloneBase (Graph &graph, Params &&... params) const
 
void SetAdditionalInfo (QueueDescriptor &descriptor) const
 
- Protected Member Functions inherited from IConnectableLayer
 ~IConnectableLayer ()
 Objects are not deletable via the handle. More...
 

Additional Inherited Members

- Public Types inherited from LayerWithParameters< LstmDescriptor >
using DescriptorType = LstmDescriptor
 
- Protected Types inherited from Layer
using ConstantTensors = std::vector< std::reference_wrapper< std::shared_ptr< ConstTensorHandle > >>
 
- Protected Attributes inherited from LayerWithParameters< LstmDescriptor >
LstmDescriptor m_Param
 The parameters for the layer (not including tensor-valued weights etc.). More...
 
- Protected Attributes inherited from Layer
AdditionalInfoObjectPtr m_AdditionalInfoObject
 
std::vector< OutputHandlerm_OutputHandlers
 
ShapeInferenceMethod m_ShapeInferenceMethod
 

Detailed Description

This layer represents a LSTM operation.

Definition at line 16 of file LstmLayer.hpp.

Constructor & Destructor Documentation

◆ LstmLayer()

LstmLayer ( const LstmDescriptor param,
const char *  name 
)
protected

Constructor to create a LstmLayer.

Parameters
[in]paramLstmDescriptor to configure the lstm operation.
[in]nameOptional name for the layer.

Definition at line 17 of file LstmLayer.cpp.

References armnn::Lstm.

18  : LayerWithParameters(3, 4, LayerType::Lstm, param, name)
19 {
20 }
LayerWithParameters(unsigned int numInputSlots, unsigned int numOutputSlots, LayerType type, const LstmDescriptor &param, const char *name)

◆ ~LstmLayer()

~LstmLayer ( )
protecteddefault

Default destructor.

Member Function Documentation

◆ Accept()

void Accept ( ILayerVisitor visitor) const
overridevirtual

Apply a visitor to this layer.

Implements IConnectableLayer.

Definition at line 303 of file LstmLayer.cpp.

References Layer::GetName(), LayerWithParameters< LstmDescriptor >::GetParameters(), ManagedConstTensorHandle::GetTensorInfo(), LstmLayer::m_BasicParameters, LstmInputParams::m_CellBias, LstmBasicParameters::m_CellBias, LstmOptLayerNormParameters::m_CellLayerNormWeights, LstmInputParams::m_CellLayerNormWeights, LstmInputParams::m_CellToForgetWeights, LstmOptPeepholeParameters::m_CellToForgetWeights, LstmOptPeepholeParameters::m_CellToInputWeights, LstmInputParams::m_CellToInputWeights, LstmInputParams::m_CellToOutputWeights, LstmOptPeepholeParameters::m_CellToOutputWeights, LstmLayer::m_CifgParameters, LstmInputParams::m_ForgetGateBias, LstmBasicParameters::m_ForgetGateBias, LstmOptLayerNormParameters::m_ForgetLayerNormWeights, LstmInputParams::m_ForgetLayerNormWeights, LstmOptCifgParameters::m_InputGateBias, LstmInputParams::m_InputGateBias, LstmOptLayerNormParameters::m_InputLayerNormWeights, LstmInputParams::m_InputLayerNormWeights, LstmInputParams::m_InputToCellWeights, LstmBasicParameters::m_InputToCellWeights, LstmInputParams::m_InputToForgetWeights, LstmBasicParameters::m_InputToForgetWeights, LstmOptCifgParameters::m_InputToInputWeights, LstmInputParams::m_InputToInputWeights, LstmInputParams::m_InputToOutputWeights, LstmBasicParameters::m_InputToOutputWeights, LstmLayer::m_LayerNormParameters, LstmInputParams::m_OutputGateBias, LstmBasicParameters::m_OutputGateBias, LstmOptLayerNormParameters::m_OutputLayerNormWeights, LstmInputParams::m_OutputLayerNormWeights, LstmLayer::m_PeepholeParameters, LstmOptProjectionParameters::m_ProjectionBias, LstmInputParams::m_ProjectionBias, LstmLayer::m_ProjectionParameters, LstmOptProjectionParameters::m_ProjectionWeights, LstmInputParams::m_ProjectionWeights, LstmInputParams::m_RecurrentToCellWeights, LstmBasicParameters::m_RecurrentToCellWeights, LstmInputParams::m_RecurrentToForgetWeights, LstmBasicParameters::m_RecurrentToForgetWeights, LstmOptCifgParameters::m_RecurrentToInputWeights, LstmInputParams::m_RecurrentToInputWeights, LstmInputParams::m_RecurrentToOutputWeights, LstmBasicParameters::m_RecurrentToOutputWeights, ManagedConstTensorHandle::Map(), and ILayerVisitor::VisitLstmLayer().

304 {
305  LstmInputParams inputParams;
306  ManagedConstTensorHandle managedInputToForgetWeights(m_BasicParameters.m_InputToForgetWeights);
307  ManagedConstTensorHandle managedInputToCellWeights(m_BasicParameters.m_InputToCellWeights);
308  ManagedConstTensorHandle managedInputToOutputWeights(m_BasicParameters.m_InputToOutputWeights);
309  ManagedConstTensorHandle managedRecurrentToForgetWeights(m_BasicParameters.m_RecurrentToForgetWeights);
310  ManagedConstTensorHandle managedRecurrentToCellWeights(m_BasicParameters.m_RecurrentToCellWeights);
311  ManagedConstTensorHandle managedRecurrentToOutputWeights(m_BasicParameters.m_RecurrentToOutputWeights);
312  ManagedConstTensorHandle managedForgetGateBias(m_BasicParameters.m_ForgetGateBias);
313  ManagedConstTensorHandle managedCellBias(m_BasicParameters.m_CellBias);
314  ManagedConstTensorHandle managedOutputGateBias(m_BasicParameters.m_OutputGateBias);
315 
316  // Cifg parameters
317  ManagedConstTensorHandle managedInputToInputWeights(m_CifgParameters.m_InputToInputWeights);
318  ManagedConstTensorHandle managedRecurrentToInputWeights(m_CifgParameters.m_RecurrentToInputWeights);
319  ManagedConstTensorHandle managedInputGateBias(m_CifgParameters.m_InputGateBias);
320 
321  // Projection parameters
322  ManagedConstTensorHandle managedProjectionWeights(m_ProjectionParameters.m_ProjectionWeights);
323  ManagedConstTensorHandle managedProjectionBias(m_ProjectionParameters.m_ProjectionBias);
324 
325  // Peephole parameters
326  ManagedConstTensorHandle managedCellToInputWeights(m_PeepholeParameters.m_CellToInputWeights);
327  ManagedConstTensorHandle managedCellToForgetWeights(m_PeepholeParameters.m_CellToForgetWeights);
328  ManagedConstTensorHandle managedCellToOutputWeights(m_PeepholeParameters.m_CellToOutputWeights);
329 
330  // Layer normalisation parameters
331  ManagedConstTensorHandle managedInputLayerNormWeights(m_LayerNormParameters.m_InputLayerNormWeights);
332  ManagedConstTensorHandle managedForgetLayerNormWeights(m_LayerNormParameters.m_ForgetLayerNormWeights);
333  ManagedConstTensorHandle managedCellLayerNormWeights(m_LayerNormParameters.m_CellLayerNormWeights);
334  ManagedConstTensorHandle managedOutputLayerNormWeights(m_LayerNormParameters.m_OutputLayerNormWeights);
335 
336  ConstTensor inputToInputWeightsTensor;
338  {
339  ConstTensor inputToInputWeightsTensorCopy(managedInputToInputWeights.GetTensorInfo(),
340  managedInputToInputWeights.Map());
341  inputToInputWeightsTensor = inputToInputWeightsTensorCopy;
342  inputParams.m_InputToInputWeights = &inputToInputWeightsTensor;
343  }
344  ConstTensor inputToForgetWeightsTensor;
346  {
347  ConstTensor inputToForgetWeightsTensorCopy(managedInputToForgetWeights.GetTensorInfo(),
348  managedInputToForgetWeights.Map());
349  inputToForgetWeightsTensor = inputToForgetWeightsTensorCopy;
350  inputParams.m_InputToForgetWeights = &inputToForgetWeightsTensor;
351  }
352  ConstTensor inputToCellWeightsTensor;
354  {
355  ConstTensor inputToCellWeightsTensorCopy(managedInputToCellWeights.GetTensorInfo(),
356  managedInputToCellWeights.Map());
357  inputToCellWeightsTensor = inputToCellWeightsTensorCopy;
358  inputParams.m_InputToCellWeights = &inputToCellWeightsTensor;
359  }
360  ConstTensor inputToOutputWeightsTensor;
362  {
363  ConstTensor inputToOutputWeightsTensorCopy(managedInputToOutputWeights.GetTensorInfo(),
364  managedInputToOutputWeights.Map());
365  inputToOutputWeightsTensor = inputToOutputWeightsTensorCopy;
366  inputParams.m_InputToOutputWeights = &inputToOutputWeightsTensor;
367  }
368  ConstTensor recurrentToInputWeightsTensor;
370  {
371  ConstTensor recurrentToInputWeightsTensorCopy(
372  managedRecurrentToInputWeights.GetTensorInfo(),
373  managedRecurrentToInputWeights.Map());
374  recurrentToInputWeightsTensor = recurrentToInputWeightsTensorCopy;
375  inputParams.m_RecurrentToInputWeights = &recurrentToInputWeightsTensor;
376  }
377  ConstTensor recurrentToForgetWeightsTensor;
379  {
380  ConstTensor recurrentToForgetWeightsTensorCopy(
381  managedRecurrentToForgetWeights.GetTensorInfo(),
382  managedRecurrentToForgetWeights.Map());
383  recurrentToForgetWeightsTensor = recurrentToForgetWeightsTensorCopy;
384  inputParams.m_RecurrentToForgetWeights = &recurrentToForgetWeightsTensor;
385  }
386  ConstTensor recurrentToCellWeightsTensor;
388  {
389  ConstTensor recurrentToCellWeightsTensorCopy(
390  managedRecurrentToCellWeights.GetTensorInfo(),
391  managedRecurrentToCellWeights.Map());
392  recurrentToCellWeightsTensor = recurrentToCellWeightsTensorCopy;
393  inputParams.m_RecurrentToCellWeights = &recurrentToCellWeightsTensor;
394  }
395  ConstTensor recurrentToOutputWeightsTensor;
397  {
398  ConstTensor recurrentToOutputWeightsTensorCopy(
399  managedRecurrentToOutputWeights.GetTensorInfo(),
400  managedRecurrentToOutputWeights.Map());
401  recurrentToOutputWeightsTensor = recurrentToOutputWeightsTensorCopy;
402  inputParams.m_RecurrentToOutputWeights = &recurrentToOutputWeightsTensor;
403  }
404  ConstTensor cellToInputWeightsTensor;
406  {
407  ConstTensor cellToInputWeightsTensorCopy(managedCellToInputWeights.GetTensorInfo(),
408  managedCellToInputWeights.Map());
409  cellToInputWeightsTensor = cellToInputWeightsTensorCopy;
410  inputParams.m_CellToInputWeights = &cellToInputWeightsTensor;
411  }
412  ConstTensor cellToForgetWeightsTensor;
414  {
415  ConstTensor cellToForgetWeightsTensorCopy(managedCellToForgetWeights.GetTensorInfo(),
416  managedCellToForgetWeights.Map());
417  cellToForgetWeightsTensor = cellToForgetWeightsTensorCopy;
418  inputParams.m_CellToForgetWeights = &cellToForgetWeightsTensor;
419  }
420  ConstTensor cellToOutputWeightsTensor;
422  {
423  ConstTensor cellToOutputWeightsTensorCopy(managedCellToOutputWeights.GetTensorInfo(),
424  managedCellToOutputWeights.Map());
425  cellToOutputWeightsTensor = cellToOutputWeightsTensorCopy;
426  inputParams.m_CellToOutputWeights = &cellToOutputWeightsTensor;
427  }
428  ConstTensor inputGateBiasTensor;
429  if (m_CifgParameters.m_InputGateBias != nullptr)
430  {
431  ConstTensor inputGateBiasTensorCopy(managedInputGateBias.GetTensorInfo(),
432  managedInputGateBias.Map());
433  inputGateBiasTensor = inputGateBiasTensorCopy;
434  inputParams.m_InputGateBias = &inputGateBiasTensor;
435  }
436  ConstTensor forgetGateBiasTensor;
437  if (m_BasicParameters.m_ForgetGateBias != nullptr)
438  {
439  ConstTensor forgetGateBiasTensorCopy(managedForgetGateBias.GetTensorInfo(),
440  managedForgetGateBias.Map());
441  forgetGateBiasTensor = forgetGateBiasTensorCopy;
442  inputParams.m_ForgetGateBias = &forgetGateBiasTensor;
443  }
444  ConstTensor cellBiasTensor;
445  if (m_BasicParameters.m_CellBias != nullptr)
446  {
447  ConstTensor cellBiasTensorCopy(managedCellBias.GetTensorInfo(),
448  managedCellBias.Map());
449  cellBiasTensor = cellBiasTensorCopy;
450  inputParams.m_CellBias = &cellBiasTensor;
451  }
452  ConstTensor outputGateBias;
453  if (m_BasicParameters.m_OutputGateBias != nullptr)
454  {
455  ConstTensor outputGateBiasCopy(managedOutputGateBias.GetTensorInfo(),
456  managedOutputGateBias.Map());
457  outputGateBias = outputGateBiasCopy;
458  inputParams.m_OutputGateBias = &outputGateBias;
459  }
460  ConstTensor projectionWeightsTensor;
462  {
463  ConstTensor projectionWeightsTensorCopy(managedProjectionWeights.GetTensorInfo(),
464  managedProjectionWeights.Map());
465  projectionWeightsTensor = projectionWeightsTensorCopy;
466  inputParams.m_ProjectionWeights = &projectionWeightsTensor;
467  }
468  ConstTensor projectionBiasTensor;
470  {
471  ConstTensor projectionBiasTensorCopy(managedProjectionBias.GetTensorInfo(),
472  managedProjectionBias.Map());
473  projectionBiasTensor = projectionBiasTensorCopy;
474  inputParams.m_ProjectionBias = &projectionBiasTensor;
475  }
476  ConstTensor inputLayerNormTensor;
478  {
479  ConstTensor inputLayerNormTensorCopy(managedInputLayerNormWeights.GetTensorInfo(),
480  managedInputLayerNormWeights.Map());
481  inputLayerNormTensor = inputLayerNormTensorCopy;
482  inputParams.m_InputLayerNormWeights = &inputLayerNormTensor;
483  }
484  ConstTensor forgetLayerNormTensor;
486  {
487  ConstTensor forgetLayerNormTensorCopy(managedForgetLayerNormWeights.GetTensorInfo(),
488  managedForgetLayerNormWeights.Map());
489  forgetLayerNormTensor = forgetLayerNormTensorCopy;
490  inputParams.m_ForgetLayerNormWeights = &forgetLayerNormTensor;
491  }
492  ConstTensor cellLayerNormTensor;
494  {
495  ConstTensor cellLayerNormTensorCopy(managedCellLayerNormWeights.GetTensorInfo(),
496  managedCellLayerNormWeights.Map());
497  cellLayerNormTensor = cellLayerNormTensorCopy;
498  inputParams.m_CellLayerNormWeights = &cellLayerNormTensor;
499  }
500  ConstTensor outputLayerNormTensor;
502  {
503  ConstTensor outputLayerNormTensorCopy(managedOutputLayerNormWeights.GetTensorInfo(),
504  managedOutputLayerNormWeights.Map());
505  outputLayerNormTensor = outputLayerNormTensorCopy;
506  inputParams.m_OutputLayerNormWeights = &outputLayerNormTensor;
507  }
508 
509 
510  visitor.VisitLstmLayer(this, GetParameters(), inputParams, GetName());
511 }
std::shared_ptr< ConstTensorHandle > m_ForgetGateBias
A unique pointer to represent 1D weights tensor with dimensions [num_units].
std::shared_ptr< ConstTensorHandle > m_OutputGateBias
A unique pointer to represent 1D weights tensor with dimensions [num_units].
LstmBasicParameters m_BasicParameters
Definition: LstmLayer.hpp:20
std::shared_ptr< ConstTensorHandle > m_OutputLayerNormWeights
A unique pointer to represent 1D weights tensor with dimensions [num_units].
std::shared_ptr< ConstTensorHandle > m_CellToForgetWeights
A unique pointer to represent 1D weights tensor with dimensions [num_units].
std::shared_ptr< ConstTensorHandle > m_InputLayerNormWeights
A unique pointer to represent 1D weights tensor with dimensions [num_units].
std::shared_ptr< ConstTensorHandle > m_ProjectionWeights
A unique pointer to represent 2D weights tensor with dimensions [output_size, num_units].
std::shared_ptr< ConstTensorHandle > m_InputToCellWeights
A unique pointer to represent 2D weights tensor with dimensions [input_size, num_units].
std::shared_ptr< ConstTensorHandle > m_InputGateBias
A unique pointer to represent 1D weights tensor with dimensions [num_units].
std::shared_ptr< ConstTensorHandle > m_CellToOutputWeights
A unique pointer to represent 1D weights tensor with dimensions [num_units].
std::shared_ptr< ConstTensorHandle > m_RecurrentToCellWeights
A unique pointer to represent 2D weights tensor with dimensions [output_size, num_units].
std::shared_ptr< ConstTensorHandle > m_CellBias
A unique pointer to represent 1D weights tensor with dimensions [num_units].
std::shared_ptr< ConstTensorHandle > m_RecurrentToInputWeights
A unique pointer to represent 2D weights tensor with dimensions [input_size, num_units].
std::shared_ptr< ConstTensorHandle > m_CellLayerNormWeights
A unique pointer to represent 1D weights tensor with dimensions [num_units].
LstmOptLayerNormParameters m_LayerNormParameters
Definition: LstmLayer.hpp:24
std::shared_ptr< ConstTensorHandle > m_RecurrentToOutputWeights
A unique pointer to represent 2D weights tensor with dimensions [output_size, num_units].
std::shared_ptr< ConstTensorHandle > m_InputToInputWeights
A unique pointer to represent 2D weights tensor with dimensions [input_size, num_units].
std::shared_ptr< ConstTensorHandle > m_ProjectionBias
A unique pointer to represent 1D weights tensor with dimensions [output_size].
LstmOptPeepholeParameters m_PeepholeParameters
Definition: LstmLayer.hpp:23
LstmOptProjectionParameters m_ProjectionParameters
Definition: LstmLayer.hpp:22
std::shared_ptr< ConstTensorHandle > m_InputToForgetWeights
A unique pointer to represent 2D weights tensor with dimensions [input_size, num_units].
std::shared_ptr< ConstTensorHandle > m_RecurrentToForgetWeights
A unique pointer to represent 2D weights tensor with dimensions [output_size, num_units].
LstmOptCifgParameters m_CifgParameters
Definition: LstmLayer.hpp:21
const char * GetName() const override
Returns the name of the layer.
Definition: Layer.hpp:311
std::shared_ptr< ConstTensorHandle > m_ForgetLayerNormWeights
A unique pointer to represent 1D weights tensor with dimensions [num_units].
std::shared_ptr< ConstTensorHandle > m_CellToInputWeights
A unique pointer to represent 1D weights tensor with dimensions [num_units].
std::shared_ptr< ConstTensorHandle > m_InputToOutputWeights
A unique pointer to represent 2D weights tensor with dimensions [input_size, num_units].

◆ Clone()

LstmLayer * Clone ( Graph graph) const
overridevirtual

Creates a dynamically-allocated copy of this layer.

Parameters
[in]graphThe graph into which this layer is being cloned.

Implements Layer.

Definition at line 80 of file LstmLayer.cpp.

References Layer::GetName(), LstmLayer::m_BasicParameters, LstmBasicParameters::m_CellBias, LstmOptLayerNormParameters::m_CellLayerNormWeights, LstmOptPeepholeParameters::m_CellToForgetWeights, LstmOptPeepholeParameters::m_CellToInputWeights, LstmOptPeepholeParameters::m_CellToOutputWeights, LstmLayer::m_CifgParameters, LstmBasicParameters::m_ForgetGateBias, LstmOptLayerNormParameters::m_ForgetLayerNormWeights, LstmOptCifgParameters::m_InputGateBias, LstmOptLayerNormParameters::m_InputLayerNormWeights, LstmBasicParameters::m_InputToCellWeights, LstmBasicParameters::m_InputToForgetWeights, LstmOptCifgParameters::m_InputToInputWeights, LstmBasicParameters::m_InputToOutputWeights, LstmLayer::m_LayerNormParameters, LstmBasicParameters::m_OutputGateBias, LstmOptLayerNormParameters::m_OutputLayerNormWeights, LayerWithParameters< LstmDescriptor >::m_Param, LstmLayer::m_PeepholeParameters, LstmOptProjectionParameters::m_ProjectionBias, LstmLayer::m_ProjectionParameters, LstmOptProjectionParameters::m_ProjectionWeights, LstmBasicParameters::m_RecurrentToCellWeights, LstmBasicParameters::m_RecurrentToForgetWeights, LstmOptCifgParameters::m_RecurrentToInputWeights, and LstmBasicParameters::m_RecurrentToOutputWeights.

81 {
82  auto layer = CloneBase<LstmLayer>(graph, m_Param, GetName());
83 
84  layer->m_BasicParameters.m_InputToForgetWeights = m_BasicParameters.m_InputToForgetWeights ?
86  : nullptr;
87  layer->m_BasicParameters.m_InputToCellWeights = m_BasicParameters.m_InputToCellWeights ?
89  layer->m_BasicParameters.m_InputToOutputWeights = m_BasicParameters.m_InputToOutputWeights ?
91  layer->m_BasicParameters.m_RecurrentToForgetWeights = m_BasicParameters.m_RecurrentToForgetWeights ?
93  layer->m_BasicParameters.m_RecurrentToCellWeights = m_BasicParameters.m_RecurrentToCellWeights ?
95  layer->m_BasicParameters.m_RecurrentToOutputWeights = m_BasicParameters.m_RecurrentToOutputWeights ?
97  layer->m_BasicParameters.m_ForgetGateBias = m_BasicParameters.m_ForgetGateBias ?
99  layer->m_BasicParameters.m_CellBias = m_BasicParameters.m_CellBias ?
100  m_BasicParameters.m_CellBias : nullptr;
101  layer->m_BasicParameters.m_OutputGateBias = m_BasicParameters.m_OutputGateBias ?
103 
104  if (!m_Param.m_CifgEnabled)
105  {
106  layer->m_CifgParameters.m_InputToInputWeights = m_CifgParameters.m_InputToInputWeights ?
108  layer->m_CifgParameters.m_RecurrentToInputWeights = m_CifgParameters.m_RecurrentToInputWeights ?
110  layer->m_CifgParameters.m_InputGateBias = m_CifgParameters.m_InputGateBias ?
112  }
113 
114  if (m_Param.m_ProjectionEnabled)
115  {
116  layer->m_ProjectionParameters.m_ProjectionWeights = m_ProjectionParameters.m_ProjectionWeights ?
118  layer->m_ProjectionParameters.m_ProjectionBias = m_ProjectionParameters.m_ProjectionBias ?
120  }
121 
122  if (m_Param.m_PeepholeEnabled)
123  {
124  if (!m_Param.m_CifgEnabled)
125  {
126  layer->m_PeepholeParameters.m_CellToInputWeights = m_PeepholeParameters.m_CellToInputWeights ?
128  }
129  layer->m_PeepholeParameters.m_CellToForgetWeights = m_PeepholeParameters.m_CellToForgetWeights ?
131  layer->m_PeepholeParameters.m_CellToOutputWeights = m_PeepholeParameters.m_CellToOutputWeights ?
133  }
134 
135  if (m_Param.m_LayerNormEnabled)
136  {
137  layer->m_LayerNormParameters.m_InputLayerNormWeights = m_LayerNormParameters.m_InputLayerNormWeights ?
139  layer->m_LayerNormParameters.m_ForgetLayerNormWeights = m_LayerNormParameters.m_ForgetLayerNormWeights ?
141  layer->m_LayerNormParameters.m_CellLayerNormWeights = m_LayerNormParameters.m_CellLayerNormWeights ?
143  layer->m_LayerNormParameters.m_OutputLayerNormWeights = m_LayerNormParameters.m_OutputLayerNormWeights ?
145  }
146 
147  return std::move(layer);
148 }
std::shared_ptr< ConstTensorHandle > m_ForgetGateBias
A unique pointer to represent 1D weights tensor with dimensions [num_units].
std::shared_ptr< ConstTensorHandle > m_OutputGateBias
A unique pointer to represent 1D weights tensor with dimensions [num_units].
LstmBasicParameters m_BasicParameters
Definition: LstmLayer.hpp:20
std::shared_ptr< ConstTensorHandle > m_OutputLayerNormWeights
A unique pointer to represent 1D weights tensor with dimensions [num_units].
std::shared_ptr< ConstTensorHandle > m_CellToForgetWeights
A unique pointer to represent 1D weights tensor with dimensions [num_units].
LstmDescriptor m_Param
The parameters for the layer (not including tensor-valued weights etc.).
std::shared_ptr< ConstTensorHandle > m_InputLayerNormWeights
A unique pointer to represent 1D weights tensor with dimensions [num_units].
std::shared_ptr< ConstTensorHandle > m_ProjectionWeights
A unique pointer to represent 2D weights tensor with dimensions [output_size, num_units].
std::shared_ptr< ConstTensorHandle > m_InputToCellWeights
A unique pointer to represent 2D weights tensor with dimensions [input_size, num_units].
std::shared_ptr< ConstTensorHandle > m_InputGateBias
A unique pointer to represent 1D weights tensor with dimensions [num_units].
std::shared_ptr< ConstTensorHandle > m_CellToOutputWeights
A unique pointer to represent 1D weights tensor with dimensions [num_units].
std::shared_ptr< ConstTensorHandle > m_RecurrentToCellWeights
A unique pointer to represent 2D weights tensor with dimensions [output_size, num_units].
std::shared_ptr< ConstTensorHandle > m_CellBias
A unique pointer to represent 1D weights tensor with dimensions [num_units].
std::shared_ptr< ConstTensorHandle > m_RecurrentToInputWeights
A unique pointer to represent 2D weights tensor with dimensions [input_size, num_units].
std::shared_ptr< ConstTensorHandle > m_CellLayerNormWeights
A unique pointer to represent 1D weights tensor with dimensions [num_units].
LstmOptLayerNormParameters m_LayerNormParameters
Definition: LstmLayer.hpp:24
std::shared_ptr< ConstTensorHandle > m_RecurrentToOutputWeights
A unique pointer to represent 2D weights tensor with dimensions [output_size, num_units].
std::shared_ptr< ConstTensorHandle > m_InputToInputWeights
A unique pointer to represent 2D weights tensor with dimensions [input_size, num_units].
std::shared_ptr< ConstTensorHandle > m_ProjectionBias
A unique pointer to represent 1D weights tensor with dimensions [output_size].
LstmOptPeepholeParameters m_PeepholeParameters
Definition: LstmLayer.hpp:23
LstmOptProjectionParameters m_ProjectionParameters
Definition: LstmLayer.hpp:22
std::shared_ptr< ConstTensorHandle > m_InputToForgetWeights
A unique pointer to represent 2D weights tensor with dimensions [input_size, num_units].
std::shared_ptr< ConstTensorHandle > m_RecurrentToForgetWeights
A unique pointer to represent 2D weights tensor with dimensions [output_size, num_units].
LstmOptCifgParameters m_CifgParameters
Definition: LstmLayer.hpp:21
const char * GetName() const override
Returns the name of the layer.
Definition: Layer.hpp:311
std::shared_ptr< ConstTensorHandle > m_ForgetLayerNormWeights
A unique pointer to represent 1D weights tensor with dimensions [num_units].
std::shared_ptr< ConstTensorHandle > m_CellToInputWeights
A unique pointer to represent 1D weights tensor with dimensions [num_units].
std::shared_ptr< ConstTensorHandle > m_InputToOutputWeights
A unique pointer to represent 2D weights tensor with dimensions [input_size, num_units].

◆ CreateWorkload()

std::unique_ptr< IWorkload > CreateWorkload ( const IWorkloadFactory factory) const
overridevirtual

Makes a workload for the LSTM type.

Parameters
[in]graphThe graph where this layer can be found.
[in]factoryThe workload factory which will create the workload.
Returns
A pointer to the created workload, or nullptr if not created.

Implements Layer.

Definition at line 22 of file LstmLayer.cpp.

References IWorkloadFactory::CreateLstm(), LstmLayer::m_BasicParameters, LstmBasicParameters::m_CellBias, LstmQueueDescriptor::m_CellBias, LstmOptLayerNormParameters::m_CellLayerNormWeights, LstmQueueDescriptor::m_CellLayerNormWeights, LstmOptPeepholeParameters::m_CellToForgetWeights, LstmQueueDescriptor::m_CellToForgetWeights, LstmOptPeepholeParameters::m_CellToInputWeights, LstmQueueDescriptor::m_CellToInputWeights, LstmOptPeepholeParameters::m_CellToOutputWeights, LstmQueueDescriptor::m_CellToOutputWeights, LstmDescriptor::m_CifgEnabled, LstmLayer::m_CifgParameters, LstmBasicParameters::m_ForgetGateBias, LstmQueueDescriptor::m_ForgetGateBias, LstmOptLayerNormParameters::m_ForgetLayerNormWeights, LstmQueueDescriptor::m_ForgetLayerNormWeights, LstmOptCifgParameters::m_InputGateBias, LstmQueueDescriptor::m_InputGateBias, LstmOptLayerNormParameters::m_InputLayerNormWeights, LstmQueueDescriptor::m_InputLayerNormWeights, LstmBasicParameters::m_InputToCellWeights, LstmQueueDescriptor::m_InputToCellWeights, LstmBasicParameters::m_InputToForgetWeights, LstmQueueDescriptor::m_InputToForgetWeights, LstmOptCifgParameters::m_InputToInputWeights, LstmQueueDescriptor::m_InputToInputWeights, LstmBasicParameters::m_InputToOutputWeights, LstmQueueDescriptor::m_InputToOutputWeights, LstmDescriptor::m_LayerNormEnabled, LstmLayer::m_LayerNormParameters, LstmBasicParameters::m_OutputGateBias, LstmQueueDescriptor::m_OutputGateBias, LstmOptLayerNormParameters::m_OutputLayerNormWeights, LstmQueueDescriptor::m_OutputLayerNormWeights, LayerWithParameters< LstmDescriptor >::m_Param, LstmDescriptor::m_PeepholeEnabled, LstmLayer::m_PeepholeParameters, LstmOptProjectionParameters::m_ProjectionBias, LstmQueueDescriptor::m_ProjectionBias, LstmDescriptor::m_ProjectionEnabled, LstmLayer::m_ProjectionParameters, LstmOptProjectionParameters::m_ProjectionWeights, LstmQueueDescriptor::m_ProjectionWeights, LstmBasicParameters::m_RecurrentToCellWeights, LstmQueueDescriptor::m_RecurrentToCellWeights, LstmBasicParameters::m_RecurrentToForgetWeights, LstmQueueDescriptor::m_RecurrentToForgetWeights, LstmOptCifgParameters::m_RecurrentToInputWeights, LstmQueueDescriptor::m_RecurrentToInputWeights, LstmBasicParameters::m_RecurrentToOutputWeights, LstmQueueDescriptor::m_RecurrentToOutputWeights, LayerWithParameters< LstmDescriptor >::PrepInfoAndDesc(), and Layer::SetAdditionalInfo().

23 {
24  LstmQueueDescriptor descriptor;
25 
26  // Basic parameters
27  descriptor.m_InputToForgetWeights = m_BasicParameters.m_InputToForgetWeights.get();
28  descriptor.m_InputToCellWeights = m_BasicParameters.m_InputToCellWeights.get();
29  descriptor.m_InputToOutputWeights = m_BasicParameters.m_InputToOutputWeights.get();
30  descriptor.m_RecurrentToForgetWeights = m_BasicParameters.m_RecurrentToForgetWeights.get();
31  descriptor.m_RecurrentToCellWeights = m_BasicParameters.m_RecurrentToCellWeights.get();
32  descriptor.m_RecurrentToOutputWeights = m_BasicParameters.m_RecurrentToOutputWeights.get();
33  descriptor.m_ForgetGateBias = m_BasicParameters.m_ForgetGateBias.get();
34  descriptor.m_CellBias = m_BasicParameters.m_CellBias.get();
35  descriptor.m_OutputGateBias = m_BasicParameters.m_OutputGateBias.get();
36 
37  // Cifg parameters
39  {
40  descriptor.m_InputToInputWeights = m_CifgParameters.m_InputToInputWeights.get();
41  descriptor.m_RecurrentToInputWeights = m_CifgParameters.m_RecurrentToInputWeights.get();
42  descriptor.m_InputGateBias = m_CifgParameters.m_InputGateBias.get();
43  }
44 
45  // Projection parameters
47  {
48  descriptor.m_ProjectionWeights = m_ProjectionParameters.m_ProjectionWeights.get();
49  descriptor.m_ProjectionBias = m_ProjectionParameters.m_ProjectionBias.get();
50  }
51 
52  // Peephole parameters
54  {
56  {
57  descriptor.m_CellToInputWeights = m_PeepholeParameters.m_CellToInputWeights.get();
58  }
59  descriptor.m_CellToForgetWeights = m_PeepholeParameters.m_CellToForgetWeights.get();
60  descriptor.m_CellToOutputWeights = m_PeepholeParameters.m_CellToOutputWeights.get();
61  }
62 
63  // Layer normalisation parameters
65  {
67  {
68  descriptor.m_InputLayerNormWeights = m_LayerNormParameters.m_InputLayerNormWeights.get();
69  }
70  descriptor.m_ForgetLayerNormWeights = m_LayerNormParameters.m_ForgetLayerNormWeights.get();
71  descriptor.m_CellLayerNormWeights = m_LayerNormParameters.m_CellLayerNormWeights.get();
72  descriptor.m_OutputLayerNormWeights = m_LayerNormParameters.m_OutputLayerNormWeights.get();
73  }
74 
75  SetAdditionalInfo(descriptor);
76 
77  return factory.CreateLstm(descriptor, PrepInfoAndDesc(descriptor));
78 }
std::shared_ptr< ConstTensorHandle > m_ForgetGateBias
A unique pointer to represent 1D weights tensor with dimensions [num_units].
std::shared_ptr< ConstTensorHandle > m_OutputGateBias
A unique pointer to represent 1D weights tensor with dimensions [num_units].
bool m_ProjectionEnabled
Enable/disable the projection layer.
LstmBasicParameters m_BasicParameters
Definition: LstmLayer.hpp:20
std::shared_ptr< ConstTensorHandle > m_OutputLayerNormWeights
A unique pointer to represent 1D weights tensor with dimensions [num_units].
std::shared_ptr< ConstTensorHandle > m_CellToForgetWeights
A unique pointer to represent 1D weights tensor with dimensions [num_units].
LstmDescriptor m_Param
The parameters for the layer (not including tensor-valued weights etc.).
std::shared_ptr< ConstTensorHandle > m_InputLayerNormWeights
A unique pointer to represent 1D weights tensor with dimensions [num_units].
std::shared_ptr< ConstTensorHandle > m_ProjectionWeights
A unique pointer to represent 2D weights tensor with dimensions [output_size, num_units].
std::shared_ptr< ConstTensorHandle > m_InputToCellWeights
A unique pointer to represent 2D weights tensor with dimensions [input_size, num_units].
std::shared_ptr< ConstTensorHandle > m_InputGateBias
A unique pointer to represent 1D weights tensor with dimensions [num_units].
std::shared_ptr< ConstTensorHandle > m_CellToOutputWeights
A unique pointer to represent 1D weights tensor with dimensions [num_units].
std::shared_ptr< ConstTensorHandle > m_RecurrentToCellWeights
A unique pointer to represent 2D weights tensor with dimensions [output_size, num_units].
std::shared_ptr< ConstTensorHandle > m_CellBias
A unique pointer to represent 1D weights tensor with dimensions [num_units].
std::shared_ptr< ConstTensorHandle > m_RecurrentToInputWeights
A unique pointer to represent 2D weights tensor with dimensions [input_size, num_units].
bool m_PeepholeEnabled
Enable/disable peephole.
std::shared_ptr< ConstTensorHandle > m_CellLayerNormWeights
A unique pointer to represent 1D weights tensor with dimensions [num_units].
LstmOptLayerNormParameters m_LayerNormParameters
Definition: LstmLayer.hpp:24
std::shared_ptr< ConstTensorHandle > m_RecurrentToOutputWeights
A unique pointer to represent 2D weights tensor with dimensions [output_size, num_units].
std::shared_ptr< ConstTensorHandle > m_InputToInputWeights
A unique pointer to represent 2D weights tensor with dimensions [input_size, num_units].
std::shared_ptr< ConstTensorHandle > m_ProjectionBias
A unique pointer to represent 1D weights tensor with dimensions [output_size].
LstmOptPeepholeParameters m_PeepholeParameters
Definition: LstmLayer.hpp:23
void SetAdditionalInfo(QueueDescriptor &descriptor) const
Definition: Layer.cpp:245
LstmOptProjectionParameters m_ProjectionParameters
Definition: LstmLayer.hpp:22
bool m_CifgEnabled
Enable/disable cifg (coupled input & forget gate).
std::shared_ptr< ConstTensorHandle > m_InputToForgetWeights
A unique pointer to represent 2D weights tensor with dimensions [input_size, num_units].
std::shared_ptr< ConstTensorHandle > m_RecurrentToForgetWeights
A unique pointer to represent 2D weights tensor with dimensions [output_size, num_units].
WorkloadInfo PrepInfoAndDesc(QueueDescriptor &descriptor) const
Helper function to reduce duplication in *LayerCreateWorkload.
bool m_LayerNormEnabled
Enable/disable layer normalization.
LstmOptCifgParameters m_CifgParameters
Definition: LstmLayer.hpp:21
std::shared_ptr< ConstTensorHandle > m_ForgetLayerNormWeights
A unique pointer to represent 1D weights tensor with dimensions [num_units].
std::shared_ptr< ConstTensorHandle > m_CellToInputWeights
A unique pointer to represent 1D weights tensor with dimensions [num_units].
std::shared_ptr< ConstTensorHandle > m_InputToOutputWeights
A unique pointer to represent 2D weights tensor with dimensions [input_size, num_units].

◆ ExecuteStrategy()

void ExecuteStrategy ( IStrategy strategy) const
overridevirtual

Apply a visitor to this layer.

Reimplemented from Layer.

Definition at line 513 of file LstmLayer.cpp.

References IStrategy::ExecuteStrategy(), Layer::GetName(), LayerWithParameters< LstmDescriptor >::GetParameters(), ManagedConstTensorHandle::GetTensorInfo(), LstmLayer::m_BasicParameters, LstmBasicParameters::m_CellBias, LstmOptLayerNormParameters::m_CellLayerNormWeights, LstmOptPeepholeParameters::m_CellToForgetWeights, LstmOptPeepholeParameters::m_CellToInputWeights, LstmOptPeepholeParameters::m_CellToOutputWeights, LstmDescriptor::m_CifgEnabled, LstmLayer::m_CifgParameters, LstmBasicParameters::m_ForgetGateBias, LstmOptLayerNormParameters::m_ForgetLayerNormWeights, LstmOptCifgParameters::m_InputGateBias, LstmOptLayerNormParameters::m_InputLayerNormWeights, LstmBasicParameters::m_InputToCellWeights, LstmBasicParameters::m_InputToForgetWeights, LstmOptCifgParameters::m_InputToInputWeights, LstmBasicParameters::m_InputToOutputWeights, LstmDescriptor::m_LayerNormEnabled, LstmLayer::m_LayerNormParameters, LstmBasicParameters::m_OutputGateBias, LstmOptLayerNormParameters::m_OutputLayerNormWeights, LstmDescriptor::m_PeepholeEnabled, LstmLayer::m_PeepholeParameters, LstmOptProjectionParameters::m_ProjectionBias, LstmDescriptor::m_ProjectionEnabled, LstmLayer::m_ProjectionParameters, LstmOptProjectionParameters::m_ProjectionWeights, LstmBasicParameters::m_RecurrentToCellWeights, LstmBasicParameters::m_RecurrentToForgetWeights, LstmOptCifgParameters::m_RecurrentToInputWeights, LstmBasicParameters::m_RecurrentToOutputWeights, and ManagedConstTensorHandle::Map().

514 {
515  std::vector<ConstTensor> constTensors;
516 
517  LstmDescriptor descriptor = GetParameters();
518 
519  ManagedConstTensorHandle managedInputToForgetWeights(m_BasicParameters.m_InputToForgetWeights);
520  ManagedConstTensorHandle managedInputToCellWeights(m_BasicParameters.m_InputToCellWeights);
521  ManagedConstTensorHandle managedInputToOutputWeights(m_BasicParameters.m_InputToOutputWeights);
522  ManagedConstTensorHandle managedRecurrentToForgetWeights(m_BasicParameters.m_RecurrentToForgetWeights);
523  ManagedConstTensorHandle managedRecurrentToCellWeights(m_BasicParameters.m_RecurrentToCellWeights);
524  ManagedConstTensorHandle managedRecurrentToOutputWeights(m_BasicParameters.m_RecurrentToOutputWeights);
525  ManagedConstTensorHandle managedForgetGateBias(m_BasicParameters.m_ForgetGateBias);
526  ManagedConstTensorHandle managedCellBias(m_BasicParameters.m_CellBias);
527  ManagedConstTensorHandle managedOutputGateBias(m_BasicParameters.m_OutputGateBias);
528 
529  // Cifg parameters
530  ManagedConstTensorHandle managedInputToInputWeights(m_CifgParameters.m_InputToInputWeights);
531  ManagedConstTensorHandle managedRecurrentToInputWeights(m_CifgParameters.m_RecurrentToInputWeights);
532  ManagedConstTensorHandle managedInputGateBias(m_CifgParameters.m_InputGateBias);
533 
534  // Projection parameters
535  ManagedConstTensorHandle managedProjectionWeights(m_ProjectionParameters.m_ProjectionWeights);
536  ManagedConstTensorHandle managedProjectionBias(m_ProjectionParameters.m_ProjectionBias);
537 
538  // Peephole parameters
539  ManagedConstTensorHandle managedCellToInputWeights(m_PeepholeParameters.m_CellToInputWeights);
540  ManagedConstTensorHandle managedCellToForgetWeights(m_PeepholeParameters.m_CellToForgetWeights);
541  ManagedConstTensorHandle managedCellToOutputWeights(m_PeepholeParameters.m_CellToOutputWeights);
542 
543  // Layer normalisation parameters
544  ManagedConstTensorHandle managedInputLayerNormWeights(m_LayerNormParameters.m_InputLayerNormWeights);
545  ManagedConstTensorHandle managedForgetLayerNormWeights(m_LayerNormParameters.m_ForgetLayerNormWeights);
546  ManagedConstTensorHandle managedCellLayerNormWeights(m_LayerNormParameters.m_CellLayerNormWeights);
547  ManagedConstTensorHandle managedOutputLayerNormWeights(m_LayerNormParameters.m_OutputLayerNormWeights);
548 
549  // First add mandatory/basic parameters
551  {
552  constTensors.emplace_back(ConstTensor(managedInputToForgetWeights.GetTensorInfo(),
553  managedInputToForgetWeights.Map()));
554  }
556  {
557  constTensors.emplace_back(ConstTensor(managedInputToCellWeights.GetTensorInfo(),
558  managedInputToCellWeights.Map()));
559  }
561  {
562  constTensors.emplace_back(ConstTensor(managedInputToOutputWeights.GetTensorInfo(),
563  managedInputToOutputWeights.Map()));
564  }
566  {
567  constTensors.emplace_back(ConstTensor(
568  managedRecurrentToForgetWeights.GetTensorInfo(),
569  managedRecurrentToForgetWeights.Map()));
570  }
572  {
573  constTensors.emplace_back(ConstTensor(
574  managedRecurrentToCellWeights.GetTensorInfo(),
575  managedRecurrentToCellWeights.Map()));
576  }
578  {
579  constTensors.emplace_back(ConstTensor(
580  managedRecurrentToOutputWeights.GetTensorInfo(),
581  managedRecurrentToOutputWeights.Map()));
582  }
583  if (m_BasicParameters.m_ForgetGateBias != nullptr)
584  {
585  constTensors.emplace_back(ConstTensor(managedForgetGateBias.GetTensorInfo(),
586  managedForgetGateBias.Map()));
587  }
588  if (m_BasicParameters.m_CellBias != nullptr)
589  {
590  constTensors.emplace_back(ConstTensor(managedCellBias.GetTensorInfo(),
591  managedCellBias.Map()));
592  }
593  if (m_BasicParameters.m_OutputGateBias != nullptr)
594  {
595  constTensors.emplace_back(ConstTensor(managedOutputGateBias.GetTensorInfo(),
596  managedOutputGateBias.Map()));
597  }
598 
599  // Add cifg parameters
600  if (!descriptor.m_CifgEnabled)
601  {
603  {
604  constTensors.emplace_back(ConstTensor(managedInputToInputWeights.GetTensorInfo(),
605  managedInputToInputWeights.Map()));
606  }
608  {
609  constTensors.emplace_back(ConstTensor(
610  managedRecurrentToInputWeights.GetTensorInfo(),
611  managedRecurrentToInputWeights.Map()));
612  }
613  if (m_CifgParameters.m_InputGateBias != nullptr)
614  {
615  constTensors.emplace_back(ConstTensor(managedInputGateBias.GetTensorInfo(),
616  managedInputGateBias.Map()));
617  }
618  }
619 
620  // Add peephole parameters
621  if (descriptor.m_PeepholeEnabled)
622  {
623  if (!descriptor.m_CifgEnabled)
624  {
626  {
627  constTensors.emplace_back(ConstTensor(managedCellToInputWeights.GetTensorInfo(),
628  managedCellToInputWeights.Map()));
629  }
630  }
632  {
633  constTensors.emplace_back(ConstTensor(managedCellToForgetWeights.GetTensorInfo(),
634  managedCellToForgetWeights.Map()));
635  }
637  {
638  constTensors.emplace_back(ConstTensor(managedCellToOutputWeights.GetTensorInfo(),
639  managedCellToOutputWeights.Map()));
640  }
641  }
642 
643  // Add projection parameters
644  if (descriptor.m_ProjectionEnabled)
645  {
647  {
648  constTensors.emplace_back(ConstTensor(managedProjectionWeights.GetTensorInfo(),
649  managedProjectionWeights.Map()));
650  }
652  {
653  constTensors.emplace_back(ConstTensor(managedProjectionBias.GetTensorInfo(),
654  managedProjectionBias.Map()));
655  }
656  }
657 
658  // Add norm parameters
659  if (descriptor.m_LayerNormEnabled)
660  {
661  if (!descriptor.m_CifgEnabled)
662  {
664  {
665  constTensors.emplace_back(ConstTensor(managedInputLayerNormWeights.GetTensorInfo(),
666  managedInputLayerNormWeights.Map()));
667  }
668  }
670  {
671  constTensors.emplace_back(ConstTensor(managedForgetLayerNormWeights.GetTensorInfo(),
672  managedForgetLayerNormWeights.Map()));
673  }
675  {
676  constTensors.emplace_back(ConstTensor(managedCellLayerNormWeights.GetTensorInfo(),
677  managedCellLayerNormWeights.Map()));
678  }
680  {
681  constTensors.emplace_back(ConstTensor(managedOutputLayerNormWeights.GetTensorInfo(),
682  managedOutputLayerNormWeights.Map()));
683  }
684  }
685 
686  strategy.ExecuteStrategy(this, GetParameters(), constTensors, GetName());
687 }
std::shared_ptr< ConstTensorHandle > m_ForgetGateBias
A unique pointer to represent 1D weights tensor with dimensions [num_units].
std::shared_ptr< ConstTensorHandle > m_OutputGateBias
A unique pointer to represent 1D weights tensor with dimensions [num_units].
LstmBasicParameters m_BasicParameters
Definition: LstmLayer.hpp:20
std::shared_ptr< ConstTensorHandle > m_OutputLayerNormWeights
A unique pointer to represent 1D weights tensor with dimensions [num_units].
std::shared_ptr< ConstTensorHandle > m_CellToForgetWeights
A unique pointer to represent 1D weights tensor with dimensions [num_units].
std::shared_ptr< ConstTensorHandle > m_InputLayerNormWeights
A unique pointer to represent 1D weights tensor with dimensions [num_units].
std::shared_ptr< ConstTensorHandle > m_ProjectionWeights
A unique pointer to represent 2D weights tensor with dimensions [output_size, num_units].
std::shared_ptr< ConstTensorHandle > m_InputToCellWeights
A unique pointer to represent 2D weights tensor with dimensions [input_size, num_units].
std::shared_ptr< ConstTensorHandle > m_InputGateBias
A unique pointer to represent 1D weights tensor with dimensions [num_units].
std::shared_ptr< ConstTensorHandle > m_CellToOutputWeights
A unique pointer to represent 1D weights tensor with dimensions [num_units].
std::shared_ptr< ConstTensorHandle > m_RecurrentToCellWeights
A unique pointer to represent 2D weights tensor with dimensions [output_size, num_units].
std::shared_ptr< ConstTensorHandle > m_CellBias
A unique pointer to represent 1D weights tensor with dimensions [num_units].
std::shared_ptr< ConstTensorHandle > m_RecurrentToInputWeights
A unique pointer to represent 2D weights tensor with dimensions [input_size, num_units].
std::shared_ptr< ConstTensorHandle > m_CellLayerNormWeights
A unique pointer to represent 1D weights tensor with dimensions [num_units].
LstmOptLayerNormParameters m_LayerNormParameters
Definition: LstmLayer.hpp:24
std::shared_ptr< ConstTensorHandle > m_RecurrentToOutputWeights
A unique pointer to represent 2D weights tensor with dimensions [output_size, num_units].
std::shared_ptr< ConstTensorHandle > m_InputToInputWeights
A unique pointer to represent 2D weights tensor with dimensions [input_size, num_units].
std::shared_ptr< ConstTensorHandle > m_ProjectionBias
A unique pointer to represent 1D weights tensor with dimensions [output_size].
LstmOptPeepholeParameters m_PeepholeParameters
Definition: LstmLayer.hpp:23
LstmOptProjectionParameters m_ProjectionParameters
Definition: LstmLayer.hpp:22
std::shared_ptr< ConstTensorHandle > m_InputToForgetWeights
A unique pointer to represent 2D weights tensor with dimensions [input_size, num_units].
std::shared_ptr< ConstTensorHandle > m_RecurrentToForgetWeights
A unique pointer to represent 2D weights tensor with dimensions [output_size, num_units].
LstmOptCifgParameters m_CifgParameters
Definition: LstmLayer.hpp:21
const char * GetName() const override
Returns the name of the layer.
Definition: Layer.hpp:311
std::shared_ptr< ConstTensorHandle > m_ForgetLayerNormWeights
A unique pointer to represent 1D weights tensor with dimensions [num_units].
std::shared_ptr< ConstTensorHandle > m_CellToInputWeights
A unique pointer to represent 1D weights tensor with dimensions [num_units].
std::shared_ptr< ConstTensorHandle > m_InputToOutputWeights
A unique pointer to represent 2D weights tensor with dimensions [input_size, num_units].

◆ GetConstantTensorsByRef()

Layer::ConstantTensors GetConstantTensorsByRef ( )
overrideprotectedvirtual

Retrieve the handles to the constant values stored by the layer.

Returns
A vector of the constant tensors stored by this layer.

Reimplemented from Layer.

Definition at line 270 of file LstmLayer.cpp.

References LstmLayer::m_BasicParameters, LstmBasicParameters::m_CellBias, LstmOptLayerNormParameters::m_CellLayerNormWeights, LstmOptPeepholeParameters::m_CellToForgetWeights, LstmOptPeepholeParameters::m_CellToInputWeights, LstmOptPeepholeParameters::m_CellToOutputWeights, LstmLayer::m_CifgParameters, LstmBasicParameters::m_ForgetGateBias, LstmOptLayerNormParameters::m_ForgetLayerNormWeights, LstmOptCifgParameters::m_InputGateBias, LstmOptLayerNormParameters::m_InputLayerNormWeights, LstmBasicParameters::m_InputToCellWeights, LstmBasicParameters::m_InputToForgetWeights, LstmOptCifgParameters::m_InputToInputWeights, LstmBasicParameters::m_InputToOutputWeights, LstmLayer::m_LayerNormParameters, LstmBasicParameters::m_OutputGateBias, LstmOptLayerNormParameters::m_OutputLayerNormWeights, LstmLayer::m_PeepholeParameters, LstmOptProjectionParameters::m_ProjectionBias, LstmLayer::m_ProjectionParameters, LstmOptProjectionParameters::m_ProjectionWeights, LstmBasicParameters::m_RecurrentToCellWeights, LstmBasicParameters::m_RecurrentToForgetWeights, LstmOptCifgParameters::m_RecurrentToInputWeights, and LstmBasicParameters::m_RecurrentToOutputWeights.

271 {
281 
282  // Cifg parameters
286 
287  // Projection parameters
290 
291  // Peephole parameters
295 
296  // Layer normalisation parameters
301 }
std::shared_ptr< ConstTensorHandle > m_ForgetGateBias
A unique pointer to represent 1D weights tensor with dimensions [num_units].
std::shared_ptr< ConstTensorHandle > m_OutputGateBias
A unique pointer to represent 1D weights tensor with dimensions [num_units].
LstmBasicParameters m_BasicParameters
Definition: LstmLayer.hpp:20
std::shared_ptr< ConstTensorHandle > m_OutputLayerNormWeights
A unique pointer to represent 1D weights tensor with dimensions [num_units].
std::shared_ptr< ConstTensorHandle > m_CellToForgetWeights
A unique pointer to represent 1D weights tensor with dimensions [num_units].
std::shared_ptr< ConstTensorHandle > m_InputLayerNormWeights
A unique pointer to represent 1D weights tensor with dimensions [num_units].
std::shared_ptr< ConstTensorHandle > m_ProjectionWeights
A unique pointer to represent 2D weights tensor with dimensions [output_size, num_units].
std::shared_ptr< ConstTensorHandle > m_InputToCellWeights
A unique pointer to represent 2D weights tensor with dimensions [input_size, num_units].
std::shared_ptr< ConstTensorHandle > m_InputGateBias
A unique pointer to represent 1D weights tensor with dimensions [num_units].
std::shared_ptr< ConstTensorHandle > m_CellToOutputWeights
A unique pointer to represent 1D weights tensor with dimensions [num_units].
std::shared_ptr< ConstTensorHandle > m_RecurrentToCellWeights
A unique pointer to represent 2D weights tensor with dimensions [output_size, num_units].
std::shared_ptr< ConstTensorHandle > m_CellBias
A unique pointer to represent 1D weights tensor with dimensions [num_units].
std::shared_ptr< ConstTensorHandle > m_RecurrentToInputWeights
A unique pointer to represent 2D weights tensor with dimensions [input_size, num_units].
std::shared_ptr< ConstTensorHandle > m_CellLayerNormWeights
A unique pointer to represent 1D weights tensor with dimensions [num_units].
LstmOptLayerNormParameters m_LayerNormParameters
Definition: LstmLayer.hpp:24
std::shared_ptr< ConstTensorHandle > m_RecurrentToOutputWeights
A unique pointer to represent 2D weights tensor with dimensions [output_size, num_units].
std::shared_ptr< ConstTensorHandle > m_InputToInputWeights
A unique pointer to represent 2D weights tensor with dimensions [input_size, num_units].
std::shared_ptr< ConstTensorHandle > m_ProjectionBias
A unique pointer to represent 1D weights tensor with dimensions [output_size].
LstmOptPeepholeParameters m_PeepholeParameters
Definition: LstmLayer.hpp:23
LstmOptProjectionParameters m_ProjectionParameters
Definition: LstmLayer.hpp:22
std::shared_ptr< ConstTensorHandle > m_InputToForgetWeights
A unique pointer to represent 2D weights tensor with dimensions [input_size, num_units].
std::shared_ptr< ConstTensorHandle > m_RecurrentToForgetWeights
A unique pointer to represent 2D weights tensor with dimensions [output_size, num_units].
LstmOptCifgParameters m_CifgParameters
Definition: LstmLayer.hpp:21
std::shared_ptr< ConstTensorHandle > m_ForgetLayerNormWeights
A unique pointer to represent 1D weights tensor with dimensions [num_units].
std::shared_ptr< ConstTensorHandle > m_CellToInputWeights
A unique pointer to represent 1D weights tensor with dimensions [num_units].
std::shared_ptr< ConstTensorHandle > m_InputToOutputWeights
A unique pointer to represent 2D weights tensor with dimensions [input_size, num_units].

◆ InferOutputShapes()

std::vector< TensorShape > InferOutputShapes ( const std::vector< TensorShape > &  inputShapes) const
overridevirtual

By default returns inputShapes if the number of inputs are equal to number of outputs, otherwise infers the output shapes from given input shapes and layer properties.

Parameters
[in]inputShapesThe input shapes layer has.
Returns
A vector to the inferred output shape.

Reimplemented from Layer.

Definition at line 150 of file LstmLayer.cpp.

References ARMNN_ASSERT, LstmDescriptor::m_CifgEnabled, and LayerWithParameters< LstmDescriptor >::m_Param.

Referenced by LstmLayer::ValidateTensorShapesFromInputs().

151 {
152  ARMNN_ASSERT(inputShapes.size() == 3);
153 
154  // Get input values for validation
155  unsigned int batchSize = inputShapes[0][0];
156  unsigned int outputSize = inputShapes[1][1];
157  unsigned int numUnits = inputShapes[2][1];
158 
159  std::vector<TensorShape> outShapes;
160  outShapes.push_back(TensorShape({batchSize, numUnits * (m_Param.m_CifgEnabled ? 3 : 4)}));
161  outShapes.push_back(TensorShape({batchSize, outputSize}));
162  outShapes.push_back(TensorShape({batchSize, numUnits}));
163  outShapes.push_back(TensorShape({batchSize, outputSize}));
164 
165  return outShapes;
166 }
LstmDescriptor m_Param
The parameters for the layer (not including tensor-valued weights etc.).
#define ARMNN_ASSERT(COND)
Definition: Assert.hpp:14
bool m_CifgEnabled
Enable/disable cifg (coupled input & forget gate).

◆ ValidateTensorShapesFromInputs()

void ValidateTensorShapesFromInputs ( )
overridevirtual

Check if the input tensor shape(s) will lead to a valid configuration of LstmLayer.

Parameters
[in]shapeInferenceMethodIndicates if output shape shall be overwritten or just validated.

Implements Layer.

Definition at line 168 of file LstmLayer.cpp.

References ARMNN_ASSERT, ARMNN_ASSERT_MSG, CHECK_LOCATION, InputSlot::GetConnection(), Layer::GetInputSlot(), Layer::GetOutputSlot(), TensorInfo::GetShape(), armnn::GetTensorInfo(), IOutputSlot::GetTensorInfo(), OutputSlot::GetTensorInfo(), LstmLayer::InferOutputShapes(), LstmLayer::m_BasicParameters, LstmBasicParameters::m_CellBias, LstmOptPeepholeParameters::m_CellToForgetWeights, LstmOptPeepholeParameters::m_CellToInputWeights, LstmOptPeepholeParameters::m_CellToOutputWeights, LstmDescriptor::m_CifgEnabled, LstmLayer::m_CifgParameters, LstmBasicParameters::m_ForgetGateBias, LstmOptCifgParameters::m_InputGateBias, LstmBasicParameters::m_InputToCellWeights, LstmBasicParameters::m_InputToForgetWeights, LstmOptCifgParameters::m_InputToInputWeights, LstmBasicParameters::m_InputToOutputWeights, LstmBasicParameters::m_OutputGateBias, LayerWithParameters< LstmDescriptor >::m_Param, LstmDescriptor::m_PeepholeEnabled, LstmLayer::m_PeepholeParameters, LstmDescriptor::m_ProjectionEnabled, LstmLayer::m_ProjectionParameters, LstmOptProjectionParameters::m_ProjectionWeights, LstmBasicParameters::m_RecurrentToCellWeights, LstmBasicParameters::m_RecurrentToForgetWeights, LstmOptCifgParameters::m_RecurrentToInputWeights, LstmBasicParameters::m_RecurrentToOutputWeights, Layer::m_ShapeInferenceMethod, Layer::ValidateAndCopyShape(), Layer::VerifyLayerConnections(), and Layer::VerifyShapeInferenceType().

169 {
171 
172  const TensorShape& outputShape = GetOutputSlot(0).GetTensorInfo().GetShape();
173 
175 
176  auto inferredShapes = InferOutputShapes( {
180  });
181 
182  ARMNN_ASSERT(inferredShapes.size() == 4);
183 
184  // Check if the weights are nullptr
186  "LstmLayer: m_BasicParameters.m_InputToForgetWeights should not be null.");
188  "LstmLayer: m_BasicParameters.m_InputToCellWeights should not be null.");
190  "LstmLayer: m_BasicParameters.m_InputToOutputWeights should not be null.");
192  "LstmLayer: m_BasicParameters.m_RecurrentToForgetWeights should not be null.");
194  "LstmLayer: m_BasicParameters.m_RecurrentToCellWeights should not be null.");
196  "LstmLayer: m_BasicParameters.m_RecurrentToOutputWeights should not be null.");
198  "LstmLayer: m_BasicParameters.m_ForgetGateBias should not be null.");
200  "LstmLayer: m_BasicParameters.m_CellBias should not be null.");
202  "LstmLayer: m_BasicParameters.m_OutputGateBias should not be null.");
203 
204  if (!m_Param.m_CifgEnabled)
205  {
207  "LstmLayer: m_CifgParameters.m_InputToInputWeights should not be null.");
209  "LstmLayer: m_CifgParameters.m_RecurrentToInputWeights should not be null.");
211  "LstmLayer: m_CifgParameters.m_InputGateBias should not be null.");
212 
213  ValidateAndCopyShape(outputShape, inferredShapes[0], m_ShapeInferenceMethod, "LstmLayer");
214  }
215  else
216  {
218  "LstmLayer: m_CifgParameters.m_InputToInputWeights should not have a value when CIFG is enabled.");
220  "LstmLayer: m_CifgParameters.m_RecurrentToInputWeights should not have a value when CIFG is enabled.");
222  "LstmLayer: m_CifgParameters.m_InputGateBias should not have a value when CIFG is enabled.");
223 
224  ValidateAndCopyShape(outputShape, inferredShapes[0], m_ShapeInferenceMethod, "LstmLayer");
225  }
226 
228  {
230  "LstmLayer: m_ProjectionParameters.m_ProjectionWeights should not be null.");
231  }
232 
234  {
235  if (!m_Param.m_CifgEnabled)
236  {
238  "LstmLayer: m_PeepholeParameters.m_CellToInputWeights should not be null "
239  "when Peephole is enabled and CIFG is disabled.");
240  }
242  "LstmLayer: m_PeepholeParameters.m_CellToForgetWeights should not be null.");
244  "LstmLayer: m_PeepholeParameters.m_CellToOutputWeights should not be null.");
245  }
246 
248  GetOutputSlot(1).GetTensorInfo().GetShape(), inferredShapes[1], m_ShapeInferenceMethod, "LstmLayer", 1);
250  GetOutputSlot(2).GetTensorInfo().GetShape(), inferredShapes[2], m_ShapeInferenceMethod, "LstmLayer", 2);
252  GetOutputSlot(3).GetTensorInfo().GetShape(), inferredShapes[3], m_ShapeInferenceMethod, "LstmLayer", 3);
253 
255  {
257  {
259  "LstmLayer: m_LayerNormParameters.m_inputLayerNormWeights should not be null.");
260  }
262  "LstmLayer: m_LayerNormParameters.m_forgetLayerNormWeights should not be null.");
264  "LstmLayer: m_LayerNormParameters.m_cellLayerNormWeights should not be null.");
266  "LstmLayer: m_LayerNormParameters.m_outputLayerNormWeights should not be null.");
267  }
268 }
std::shared_ptr< ConstTensorHandle > m_ForgetGateBias
A unique pointer to represent 1D weights tensor with dimensions [num_units].
std::shared_ptr< ConstTensorHandle > m_OutputGateBias
A unique pointer to represent 1D weights tensor with dimensions [num_units].
bool m_ProjectionEnabled
Enable/disable the projection layer.
LstmBasicParameters m_BasicParameters
Definition: LstmLayer.hpp:20
std::shared_ptr< ConstTensorHandle > m_OutputLayerNormWeights
A unique pointer to represent 1D weights tensor with dimensions [num_units].
std::shared_ptr< ConstTensorHandle > m_CellToForgetWeights
A unique pointer to represent 1D weights tensor with dimensions [num_units].
LstmDescriptor m_Param
The parameters for the layer (not including tensor-valued weights etc.).
const TensorShape & GetShape() const
Definition: Tensor.hpp:191
std::shared_ptr< ConstTensorHandle > m_InputLayerNormWeights
A unique pointer to represent 1D weights tensor with dimensions [num_units].
std::shared_ptr< ConstTensorHandle > m_ProjectionWeights
A unique pointer to represent 2D weights tensor with dimensions [output_size, num_units].
void VerifyShapeInferenceType(const TensorShape &outputShape, ShapeInferenceMethod shapeInferenceMethod)
Definition: Layer.cpp:433
std::shared_ptr< ConstTensorHandle > m_InputToCellWeights
A unique pointer to represent 2D weights tensor with dimensions [input_size, num_units].
const IOutputSlot * GetConnection() const override
Definition: Layer.hpp:199
void ValidateAndCopyShape(const TensorShape &outputShape, const TensorShape &inferredShape, const ShapeInferenceMethod shapeInferenceMethod, const std::string &layerName, const unsigned int outputSlotIndex=0)
Definition: Layer.cpp:393
std::shared_ptr< ConstTensorHandle > m_InputGateBias
A unique pointer to represent 1D weights tensor with dimensions [num_units].
std::shared_ptr< ConstTensorHandle > m_CellToOutputWeights
A unique pointer to represent 1D weights tensor with dimensions [num_units].
void VerifyLayerConnections(unsigned int expectedConnections, const CheckLocation &location) const
Definition: Layer.cpp:349
const InputSlot & GetInputSlot(unsigned int index) const override
Get a const input slot handle by slot index.
Definition: Layer.hpp:316
std::shared_ptr< ConstTensorHandle > m_RecurrentToCellWeights
A unique pointer to represent 2D weights tensor with dimensions [output_size, num_units].
std::shared_ptr< ConstTensorHandle > m_CellBias
A unique pointer to represent 1D weights tensor with dimensions [num_units].
#define ARMNN_ASSERT_MSG(COND, MSG)
Definition: Assert.hpp:15
std::shared_ptr< ConstTensorHandle > m_RecurrentToInputWeights
A unique pointer to represent 2D weights tensor with dimensions [input_size, num_units].
bool m_PeepholeEnabled
Enable/disable peephole.
std::shared_ptr< ConstTensorHandle > m_CellLayerNormWeights
A unique pointer to represent 1D weights tensor with dimensions [num_units].
#define ARMNN_ASSERT(COND)
Definition: Assert.hpp:14
LstmOptLayerNormParameters m_LayerNormParameters
Definition: LstmLayer.hpp:24
std::shared_ptr< ConstTensorHandle > m_RecurrentToOutputWeights
A unique pointer to represent 2D weights tensor with dimensions [output_size, num_units].
std::shared_ptr< ConstTensorHandle > m_InputToInputWeights
A unique pointer to represent 2D weights tensor with dimensions [input_size, num_units].
#define CHECK_LOCATION()
Definition: Exceptions.hpp:197
LstmOptPeepholeParameters m_PeepholeParameters
Definition: LstmLayer.hpp:23
LstmOptProjectionParameters m_ProjectionParameters
Definition: LstmLayer.hpp:22
bool m_CifgEnabled
Enable/disable cifg (coupled input & forget gate).
std::shared_ptr< ConstTensorHandle > m_InputToForgetWeights
A unique pointer to represent 2D weights tensor with dimensions [input_size, num_units].
std::shared_ptr< ConstTensorHandle > m_RecurrentToForgetWeights
A unique pointer to represent 2D weights tensor with dimensions [output_size, num_units].
bool m_LayerNormEnabled
Enable/disable layer normalization.
const OutputSlot & GetOutputSlot(unsigned int index=0) const override
Get the const output slot handle by slot index.
Definition: Layer.hpp:318
virtual const TensorInfo & GetTensorInfo() const =0
LstmOptCifgParameters m_CifgParameters
Definition: LstmLayer.hpp:21
std::shared_ptr< ConstTensorHandle > m_ForgetLayerNormWeights
A unique pointer to represent 1D weights tensor with dimensions [num_units].
std::vector< TensorShape > InferOutputShapes(const std::vector< TensorShape > &inputShapes) const override
By default returns inputShapes if the number of inputs are equal to number of outputs, otherwise infers the output shapes from given input shapes and layer properties.
Definition: LstmLayer.cpp:150
std::shared_ptr< ConstTensorHandle > m_CellToInputWeights
A unique pointer to represent 1D weights tensor with dimensions [num_units].
const TensorInfo & GetTensorInfo(const ITensorHandle *tensorHandle)
float32 helpers
const TensorInfo & GetTensorInfo() const override
Definition: Layer.cpp:63
ShapeInferenceMethod m_ShapeInferenceMethod
Definition: Layer.hpp:408
std::shared_ptr< ConstTensorHandle > m_InputToOutputWeights
A unique pointer to represent 2D weights tensor with dimensions [input_size, num_units].

Member Data Documentation

◆ m_BasicParameters

◆ m_CifgParameters

◆ m_LayerNormParameters

◆ m_PeepholeParameters

◆ m_ProjectionParameters


The documentation for this class was generated from the following files: