ArmNN
 20.11
ClSplitterWorkload Class Reference

#include <ClSplitterWorkload.hpp>

Inheritance diagram for ClSplitterWorkload:
BaseWorkload< SplitterQueueDescriptor > IWorkload

Public Member Functions

 ClSplitterWorkload (const SplitterQueueDescriptor &descriptor, const WorkloadInfo &info)
 
void Execute () const override
 
- Public Member Functions inherited from BaseWorkload< SplitterQueueDescriptor >
 BaseWorkload (const SplitterQueueDescriptor &descriptor, const WorkloadInfo &info)
 
void PostAllocationConfigure () override
 
const SplitterQueueDescriptorGetData () const
 
profiling::ProfilingGuid GetGuid () const final
 
- Public Member Functions inherited from IWorkload
virtual ~IWorkload ()
 
virtual void RegisterDebugCallback (const DebugCallbackFunction &)
 

Additional Inherited Members

- Protected Attributes inherited from BaseWorkload< SplitterQueueDescriptor >
const SplitterQueueDescriptor m_Data
 
const profiling::ProfilingGuid m_Guid
 

Detailed Description

Definition at line 22 of file ClSplitterWorkload.hpp.

Constructor & Destructor Documentation

◆ ClSplitterWorkload()

ClSplitterWorkload ( const SplitterQueueDescriptor descriptor,
const WorkloadInfo info 
)

Definition at line 56 of file ClSplitterWorkload.cpp.

References armnn::ComputeSplitAxis(), ViewsDescriptor::GetNumDimensions(), BaseWorkload< SplitterQueueDescriptor >::m_Data, QueueDescriptor::m_Inputs, QueueDescriptor::m_Outputs, and QueueDescriptorWithParameters< LayerDescriptor >::m_Parameters.

57  : BaseWorkload<SplitterQueueDescriptor>(descriptor, info)
58 {
59  bool allOutputsAreSubtensors = true;
60 
61  // Check that all outputs are sub-tensors
62  for (auto output : m_Data.m_Outputs)
63  {
64  if (output && !output->GetParent())
65  {
66  // Non sub-tensor input found so we need to execute the split function
67  allOutputsAreSubtensors = false;
68  break;
69  }
70  }
71 
72  if (allOutputsAreSubtensors)
73  {
74  // Can skip configuring the split function since it's not executed
75  return;
76  }
77 
78  arm_compute::ICLTensor& input = armnn::PolymorphicPointerDowncast<IClTensorHandle>(
79  m_Data.m_Inputs[0])->GetTensor();
80 
81  std::vector<arm_compute::ICLTensor *> aclOutputs;
82  for (auto output : m_Data.m_Outputs)
83  {
84  arm_compute::ICLTensor& aclOutput = armnn::PolymorphicPointerDowncast<IClTensorHandle>(output)->GetTensor();
85  aclOutputs.emplace_back(&aclOutput);
86  }
87 
88  // Create the layer function
89 
90  // Configure input and output tensors
91  std::set<unsigned int> splitAxis = ComputeSplitAxis(descriptor.m_Parameters, m_Data.m_Inputs[0]->GetShape());
92  if (splitAxis.size() != 1)
93  {
94  throw InvalidArgumentException("Cannot derive split axis from SplitterDescriptor");
95  }
96 
97  unsigned int aclAxis = CalcAclAxis(descriptor.m_Parameters.GetNumDimensions(), *splitAxis.begin());
98  auto layer = std::make_unique<arm_compute::CLSplit>();
99  layer->configure(&input, aclOutputs, aclAxis);
100 
101  // Prepare
102  layer->prepare();
103 
104  m_Layer = std::move(layer);
105 }
const SplitterQueueDescriptor m_Data
Definition: Workload.hpp:46
std::set< unsigned int > ComputeSplitAxis(const armnn::SplitterDescriptor &desc, const TensorShape &input)
std::vector< ITensorHandle * > m_Outputs
std::vector< ITensorHandle * > m_Inputs

Member Function Documentation

◆ Execute()

void Execute ( ) const
overridevirtual

Implements IWorkload.

Definition at line 107 of file ClSplitterWorkload.cpp.

References ARMNN_SCOPED_PROFILING_EVENT_CL.

108 {
109  if (m_Layer)
110  {
111  ARMNN_SCOPED_PROFILING_EVENT_CL("ClSplitterWorkload_Execute");
112  m_Layer->run();
113  }
114 }
#define ARMNN_SCOPED_PROFILING_EVENT_CL(name)

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