ArmNN
 20.11
StridedSliceQueueDescriptor Struct Reference

#include <WorkloadData.hpp>

Inheritance diagram for StridedSliceQueueDescriptor:
QueueDescriptorWithParameters< StridedSliceDescriptor > QueueDescriptor

Public Member Functions

void Validate (const WorkloadInfo &workloadInfo) const
 
- Public Member Functions inherited from QueueDescriptor
void ValidateInputsOutputs (const std::string &descName, unsigned int numExpectedIn, unsigned int numExpectedOut) const
 
template<typename T >
const T * GetAdditionalInformation () const
 

Additional Inherited Members

- Public Attributes inherited from QueueDescriptorWithParameters< StridedSliceDescriptor >
StridedSliceDescriptor m_Parameters
 
- Public Attributes inherited from QueueDescriptor
std::vector< ITensorHandle * > m_Inputs
 
std::vector< ITensorHandle * > m_Outputs
 
void * m_AdditionalInfoObject
 
- Protected Member Functions inherited from QueueDescriptorWithParameters< StridedSliceDescriptor >
 ~QueueDescriptorWithParameters ()=default
 
 QueueDescriptorWithParameters ()=default
 
 QueueDescriptorWithParameters (QueueDescriptorWithParameters const &)=default
 
QueueDescriptorWithParametersoperator= (QueueDescriptorWithParameters const &)=default
 
- Protected Member Functions inherited from QueueDescriptor
 ~QueueDescriptor ()=default
 
 QueueDescriptor ()
 
 QueueDescriptor (QueueDescriptor const &)=default
 
QueueDescriptoroperator= (QueueDescriptor const &)=default
 

Detailed Description

Definition at line 464 of file WorkloadData.hpp.

Member Function Documentation

◆ Validate()

void Validate ( const WorkloadInfo workloadInfo) const

Definition at line 2417 of file WorkloadData.cpp.

References armnn::BFloat16, armnn::Float16, armnn::Float32, TensorInfo::GetNumDimensions(), WorkloadInfo::m_InputTensorInfos, WorkloadInfo::m_OutputTensorInfos, armnn::QAsymmS8, armnn::QAsymmU8, and armnn::QSymmS16.

2418 {
2419  const std::string descriptorName{"StridedSliceQueueDescriptor"};
2420 
2421  ValidateNumInputs(workloadInfo, descriptorName, 1);
2422  ValidateNumOutputs(workloadInfo, descriptorName, 1);
2423 
2424  const TensorInfo& inputTensorInfo = workloadInfo.m_InputTensorInfos[0];
2425  const TensorInfo& outputTensorInfo = workloadInfo.m_OutputTensorInfos[0];
2426 
2427  std::vector<DataType> supportedTypes =
2428  {
2435  };
2436 
2437  ValidateDataTypes(inputTensorInfo, supportedTypes, descriptorName);
2438  ValidateTensorDataTypesMatch(inputTensorInfo, outputTensorInfo, descriptorName, "input", "output");
2439 
2440  ValidateTensorQuantizationSpace(inputTensorInfo, outputTensorInfo, descriptorName, "input", "output");
2441 
2442  const uint32_t rank = inputTensorInfo.GetNumDimensions();
2443  if (rank > 4)
2444  {
2445  throw InvalidArgumentException(descriptorName + ": Input tensors with rank greater than 4 are not supported.");
2446  }
2447 
2448  // Begin, End & Stride length must be of rank(input0)
2449  if (m_Parameters.m_Begin.size() != rank)
2450  {
2451  throw InvalidArgumentException(descriptorName + ": Begin length must be of rank " + std::to_string(rank));
2452  }
2453 
2454  if (m_Parameters.m_End.size() != rank)
2455  {
2456  throw InvalidArgumentException(descriptorName + ": End length must be of rank " + std::to_string(rank));
2457  }
2458 
2459  if (m_Parameters.m_Stride.size() != rank)
2460  {
2461  throw InvalidArgumentException(descriptorName + ": Stride length must be of rank " + std::to_string(rank));
2462  }
2463 
2464  // Stride entries must be non-zero
2465  for (auto& stride : m_Parameters.m_Stride)
2466  {
2467  if (stride == 0)
2468  {
2469  throw InvalidArgumentException(descriptorName + ": Stride entries must be non-zero.");
2470  }
2471  }
2472 }
std::vector< int > m_Begin
Begin values for the input that will be sliced.
std::vector< TensorInfo > m_InputTensorInfos
std::vector< TensorInfo > m_OutputTensorInfos
std::vector< int > m_Stride
Stride values for the input that will be sliced.
std::vector< int > m_End
End values for the input that will be sliced.
unsigned int GetNumDimensions() const
Definition: Tensor.hpp:191

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