ArmNN
 20.02
RefWorkloadFactory.cpp
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1 //
2 // Copyright © 2017 Arm Ltd. All rights reserved.
3 // SPDX-License-Identifier: MIT
4 //
5 #include <Layer.hpp>
10 #include "RefWorkloadFactory.hpp"
11 #include "RefBackendId.hpp"
13 #include "RefTensorHandle.hpp"
14 
15 
16 namespace armnn
17 {
18 
19 namespace
20 {
21 static const BackendId s_Id{RefBackendId()};
22 }
23 template <typename F32Workload, typename U8Workload, typename QueueDescriptorType>
24 std::unique_ptr<IWorkload> RefWorkloadFactory::MakeWorkload(const QueueDescriptorType& descriptor,
25  const WorkloadInfo& info) const
26 {
27  return MakeWorkloadHelper<NullWorkload, F32Workload, U8Workload, NullWorkload, NullWorkload, NullWorkload>
28  (descriptor, info);
29 }
30 
31 template <DataType ArmnnType>
33 {
34  auto checkType = [](const TensorInfo& tensorInfo) {return tensorInfo.GetDataType() == ArmnnType;};
35  auto it = std::find_if(std::begin(info.m_InputTensorInfos), std::end(info.m_InputTensorInfos), checkType);
36  if (it != std::end(info.m_InputTensorInfos))
37  {
38  return true;
39  }
40  it = std::find_if(std::begin(info.m_OutputTensorInfos), std::end(info.m_OutputTensorInfos), checkType);
41  if (it != std::end(info.m_OutputTensorInfos))
42  {
43  return true;
44  }
45  return false;
46 }
47 
49 {
50  return IsDataType<DataType::Signed32>(info);
51 }
52 
54 {
55  return IsDataType<DataType::BFloat16>(info);
56 }
57 
59 {
60  return IsDataType<DataType::Float16>(info);
61 }
62 
64 {
65  return IsDataType<DataType::QSymmS16>(info);
66 }
67 
69 {
70  return IsDataType<DataType::QSymmS8>(info);
71 }
72 
74 {
75  return IsDataType<DataType::QAsymmS8>(info);
76 }
77 
79 {
80  return IsDataType<DataType::QAsymmU8>(info);
81 }
82 
83 RefWorkloadFactory::RefWorkloadFactory(const std::shared_ptr<RefMemoryManager>& memoryManager)
84  : m_MemoryManager(memoryManager)
85 {
86 }
87 
89  : m_MemoryManager(new RefMemoryManager())
90 {
91 }
92 
94 {
95  return s_Id;
96 }
97 
99  Optional<DataType> dataType,
100  std::string& outReasonIfUnsupported)
101 {
102  return IWorkloadFactory::IsLayerSupported(s_Id, layer, dataType, outReasonIfUnsupported);
103 }
104 
105 std::unique_ptr<ITensorHandle> RefWorkloadFactory::CreateTensorHandle(const TensorInfo& tensorInfo,
106  const bool isMemoryManaged) const
107 {
108  // For Ref it is okay to make the TensorHandle memory managed as it can also store a pointer
109  // to unmanaged memory. This also ensures memory alignment.
110  IgnoreUnused(isMemoryManaged);
111  return std::make_unique<RefTensorHandle>(tensorInfo, m_MemoryManager);
112 }
113 
114 std::unique_ptr<ITensorHandle> RefWorkloadFactory::CreateTensorHandle(const TensorInfo& tensorInfo,
115  DataLayout dataLayout,
116  const bool isMemoryManaged) const
117 {
118  // For Ref it is okay to make the TensorHandle memory managed as it can also store a pointer
119  // to unmanaged memory. This also ensures memory alignment.
120  IgnoreUnused(isMemoryManaged, dataLayout);
121  return std::make_unique<RefTensorHandle>(tensorInfo, m_MemoryManager);
122 }
123 
124 std::unique_ptr<IWorkload> RefWorkloadFactory::CreateAbs(const AbsQueueDescriptor& descriptor,
125  const WorkloadInfo& info) const
126 {
127  IgnoreUnused(descriptor);
128  ElementwiseUnaryQueueDescriptor elementwiseUnaryDescriptor;
129  elementwiseUnaryDescriptor.m_Parameters.m_Operation = UnaryOperation::Abs;
130 
131  return CreateElementwiseUnary(elementwiseUnaryDescriptor, info);
132 }
133 
134 std::unique_ptr<IWorkload> RefWorkloadFactory::CreateActivation(const ActivationQueueDescriptor& descriptor,
135  const WorkloadInfo& info) const
136 {
137  return std::make_unique<RefActivationWorkload>(descriptor, info);
138 }
139 
140 std::unique_ptr<IWorkload> RefWorkloadFactory::CreateAddition(const AdditionQueueDescriptor& descriptor,
141  const WorkloadInfo& info) const
142 {
143  return std::make_unique<RefAdditionWorkload>(descriptor, info);
144 }
145 
146 std::unique_ptr<IWorkload> RefWorkloadFactory::CreateArgMinMax(const ArgMinMaxQueueDescriptor& descriptor,
147  const WorkloadInfo& info) const
148 {
149  return std::make_unique<RefArgMinMaxWorkload>(descriptor, info);
150 }
151 
153  const BatchNormalizationQueueDescriptor& descriptor,
154  const WorkloadInfo& info) const
155 {
156  return std::make_unique<RefBatchNormalizationWorkload>(descriptor, info);
157 }
158 
159 std::unique_ptr<IWorkload> RefWorkloadFactory::CreateBatchToSpaceNd(const BatchToSpaceNdQueueDescriptor& descriptor,
160  const WorkloadInfo& info) const
161 {
162  return std::make_unique<RefBatchToSpaceNdWorkload>(descriptor, info);
163 }
164 
165 std::unique_ptr<IWorkload> RefWorkloadFactory::CreateComparison(const ComparisonQueueDescriptor& descriptor,
166  const WorkloadInfo& info) const
167 {
168  return std::make_unique<RefComparisonWorkload>(descriptor, info);
169 }
170 
171 std::unique_ptr<IWorkload> RefWorkloadFactory::CreateConcat(const ConcatQueueDescriptor& descriptor,
172  const WorkloadInfo& info) const
173 {
174  return std::make_unique<RefConcatWorkload>(descriptor, info);
175 }
176 
177 std::unique_ptr<IWorkload> RefWorkloadFactory::CreateConstant(const ConstantQueueDescriptor& descriptor,
178  const WorkloadInfo& info) const
179 {
180  return std::make_unique<RefConstantWorkload>(descriptor, info);
181 }
182 
184  const ConvertFp16ToFp32QueueDescriptor& descriptor,
185  const WorkloadInfo& info) const
186 {
187  return std::make_unique<RefConvertFp16ToFp32Workload>(descriptor, info);
188 }
189 
191  const ConvertFp32ToFp16QueueDescriptor& descriptor,
192  const WorkloadInfo& info) const
193 {
194  return std::make_unique<RefConvertFp32ToFp16Workload>(descriptor, info);
195 }
196 
197 std::unique_ptr<IWorkload> RefWorkloadFactory::CreateConvolution2d(const Convolution2dQueueDescriptor& descriptor,
198  const WorkloadInfo& info) const
199 {
200  return std::make_unique<RefConvolution2dWorkload>(descriptor, info);
201 }
202 
203 std::unique_ptr<IWorkload> RefWorkloadFactory::CreateDebug(const DebugQueueDescriptor& descriptor,
204  const WorkloadInfo& info) const
205 {
206  if (IsBFloat16(info))
207  {
208  return std::make_unique<RefDebugBFloat16Workload>(descriptor, info);
209  }
210  if (IsFloat16(info))
211  {
212  return std::make_unique<RefDebugFloat16Workload>(descriptor, info);
213  }
214  if (IsQSymmS16(info))
215  {
216  return std::make_unique<RefDebugQSymmS16Workload>(descriptor, info);
217  }
218  if (IsQSymmS8(info))
219  {
220  return std::make_unique<RefDebugQSymmS8Workload>(descriptor, info);
221  }
222  if (IsQAsymmU8(info))
223  {
224  return std::make_unique<RefDebugQAsymmU8Workload>(descriptor, info);
225  }
226  if (IsQAsymmS8(info))
227  {
228  return std::make_unique<RefDebugQAsymmS8Workload>(descriptor, info);
229  }
230  if (IsSigned32(info))
231  {
232  return std::make_unique<RefDebugSigned32Workload>(descriptor, info);
233  }
234 
235  return MakeWorkload<RefDebugFloat32Workload, RefDebugQAsymmU8Workload>(descriptor, info);
236 }
237 
238 std::unique_ptr<IWorkload> RefWorkloadFactory::CreateDepthToSpace(const DepthToSpaceQueueDescriptor& descriptor,
239  const WorkloadInfo& info) const
240 {
241  return std::make_unique<RefDepthToSpaceWorkload>(descriptor, info);
242 }
243 
245  const DepthwiseConvolution2dQueueDescriptor& descriptor,
246  const WorkloadInfo& info) const
247 {
248  return std::make_unique<RefDepthwiseConvolution2dWorkload>(descriptor, info);
249 }
250 
251 std::unique_ptr<IWorkload> RefWorkloadFactory::CreateDequantize(const DequantizeQueueDescriptor& descriptor,
252  const WorkloadInfo& info) const
253 {
254  return std::make_unique<RefDequantizeWorkload>(descriptor, info);
255 }
256 
258  const DetectionPostProcessQueueDescriptor& descriptor,
259  const WorkloadInfo& info) const
260 {
261  return std::make_unique<RefDetectionPostProcessWorkload>(descriptor, info);
262 }
263 
264 std::unique_ptr<IWorkload> RefWorkloadFactory::CreateDivision(const DivisionQueueDescriptor& descriptor,
265  const WorkloadInfo& info) const
266 {
267  return std::make_unique<RefDivisionWorkload>(descriptor, info);
268 }
269 
271  const WorkloadInfo& info) const
272 {
273  return std::make_unique<RefElementwiseUnaryWorkload>(descriptor, info);
274 }
275 
276 std::unique_ptr<IWorkload> RefWorkloadFactory::CreateEqual(const EqualQueueDescriptor& descriptor,
277  const WorkloadInfo& info) const
278 {
279  IgnoreUnused(descriptor);
280  ComparisonQueueDescriptor comparisonDescriptor;
281  comparisonDescriptor.m_Parameters.m_Operation = ComparisonOperation::Equal;
282 
283  return CreateComparison(comparisonDescriptor, info);
284 }
285 
287  const FakeQuantizationQueueDescriptor& descriptor,
288  const WorkloadInfo& info) const
289 {
290  return MakeWorkload<RefFakeQuantizationFloat32Workload, NullWorkload>(descriptor, info);
291 }
292 
293 std::unique_ptr<IWorkload> RefWorkloadFactory::CreateFloor(const FloorQueueDescriptor& descriptor,
294  const WorkloadInfo& info) const
295 {
296  return std::make_unique<RefFloorWorkload>(descriptor, info);
297 }
298 
299 std::unique_ptr<IWorkload> RefWorkloadFactory::CreateFullyConnected(
300  const FullyConnectedQueueDescriptor& descriptor,
301  const WorkloadInfo& info) const
302 {
303  return std::make_unique<RefFullyConnectedWorkload>(descriptor, info);
304 }
305 
306 std::unique_ptr<IWorkload> RefWorkloadFactory::CreateGather(const GatherQueueDescriptor& descriptor,
307  const WorkloadInfo& info) const
308 {
309  return std::make_unique<RefGatherWorkload>(descriptor, info);
310 }
311 
312 std::unique_ptr<IWorkload> RefWorkloadFactory::CreateGreater(const GreaterQueueDescriptor& descriptor,
313  const WorkloadInfo& info) const
314 {
315  IgnoreUnused(descriptor);
316  ComparisonQueueDescriptor comparisonDescriptor;
318 
319  return CreateComparison(comparisonDescriptor, info);
320 }
321 
322 std::unique_ptr<IWorkload> RefWorkloadFactory::CreateInput(const InputQueueDescriptor& descriptor,
323  const WorkloadInfo& info) const
324 {
325  if (info.m_InputTensorInfos.empty() )
326  {
327  throw InvalidArgumentException("RefWorkloadFactory::CreateInput: Input cannot be zero length");
328  }
329  if (info.m_OutputTensorInfos.empty())
330  {
331  throw InvalidArgumentException("RefWorkloadFactory::CreateInput: Output cannot be zero length");
332  }
333 
334  if (info.m_InputTensorInfos[0].GetNumBytes() != info.m_OutputTensorInfos[0].GetNumBytes())
335  {
336  throw InvalidArgumentException("RefWorkloadFactory::CreateInput: data input and output differ in byte count.");
337  }
338 
339  return std::make_unique<CopyMemGenericWorkload>(descriptor, info);
340 }
341 
343  const InstanceNormalizationQueueDescriptor& descriptor,
344  const WorkloadInfo& info) const
345 {
346  return std::make_unique<RefInstanceNormalizationWorkload>(descriptor, info);
347 }
348 
350  const WorkloadInfo& info) const
351 {
352  return std::make_unique<RefL2NormalizationWorkload>(descriptor, info);
353 }
354 
355 std::unique_ptr<IWorkload> RefWorkloadFactory::CreateLogSoftmax(const LogSoftmaxQueueDescriptor& descriptor,
356  const WorkloadInfo& info) const
357 {
358  return std::make_unique<RefLogSoftmaxWorkload>(descriptor, info);
359 }
360 
361 std::unique_ptr<IWorkload> RefWorkloadFactory::CreateLstm(const LstmQueueDescriptor& descriptor,
362  const WorkloadInfo& info) const
363 {
364  return std::make_unique<RefLstmWorkload>(descriptor, info);
365 }
366 
367 std::unique_ptr<IWorkload> RefWorkloadFactory::CreateMaximum(const MaximumQueueDescriptor& descriptor,
368  const WorkloadInfo& info) const
369 {
370  return std::make_unique<RefMaximumWorkload>(descriptor, info);
371 }
372 
373 std::unique_ptr<IWorkload> RefWorkloadFactory::CreateMean(const MeanQueueDescriptor& descriptor,
374  const WorkloadInfo& info) const
375 {
376  return std::make_unique<RefMeanWorkload>(descriptor, info);
377 }
378 
379 std::unique_ptr<IWorkload> RefWorkloadFactory::CreateMemCopy(const MemCopyQueueDescriptor& descriptor,
380  const WorkloadInfo& info) const
381 {
382  if (descriptor.m_Inputs.empty())
383  {
384  throw InvalidArgumentException("RefWorkloadFactory: CreateMemCopy() expected an input tensor.");
385  }
386  return std::make_unique<CopyMemGenericWorkload>(descriptor, info);
387 }
388 
389 std::unique_ptr<IWorkload> RefWorkloadFactory::CreateMemImport(const MemImportQueueDescriptor& descriptor,
390  const WorkloadInfo& info) const
391 {
392  if (descriptor.m_Inputs.empty())
393  {
394  throw InvalidArgumentException("RefWorkloadFactory: CreateMemImport() expected an input tensor.");
395  }
396  return std::make_unique<ImportMemGenericWorkload>(descriptor, info);
397 }
398 
399 std::unique_ptr<IWorkload> RefWorkloadFactory::CreateMerger(const MergerQueueDescriptor& descriptor,
400  const WorkloadInfo& info) const
401 {
402  return CreateConcat(descriptor, info);
403 }
404 
405 std::unique_ptr<IWorkload> RefWorkloadFactory::CreateMinimum(const MinimumQueueDescriptor& descriptor,
406  const WorkloadInfo& info) const
407 {
408  return std::make_unique<RefMinimumWorkload>(descriptor, info);
409 }
410 
411 std::unique_ptr<IWorkload> RefWorkloadFactory::CreateMultiplication(const MultiplicationQueueDescriptor& descriptor,
412  const WorkloadInfo& info) const
413 {
414  return std::make_unique<RefMultiplicationWorkload>(descriptor, info);
415 }
416 
417 std::unique_ptr<IWorkload> RefWorkloadFactory::CreateNormalization(const NormalizationQueueDescriptor& descriptor,
418  const WorkloadInfo& info) const
419 {
420  return std::make_unique<RefNormalizationWorkload>(descriptor, info);
421 }
422 
423 std::unique_ptr<IWorkload> RefWorkloadFactory::CreateOutput(const OutputQueueDescriptor& descriptor,
424  const WorkloadInfo& info) const
425 {
426  if (info.m_InputTensorInfos.empty() )
427  {
428  throw InvalidArgumentException("RefWorkloadFactory::CreateOutput: Input cannot be zero length");
429  }
430  if (info.m_OutputTensorInfos.empty())
431  {
432  throw InvalidArgumentException("RefWorkloadFactory::CreateOutput: Output cannot be zero length");
433  }
434  if (info.m_InputTensorInfos[0].GetNumBytes() != info.m_OutputTensorInfos[0].GetNumBytes())
435  {
436  throw InvalidArgumentException("RefWorkloadFactory::CreateOutput: data input and output differ in byte count.");
437  }
438 
439  return std::make_unique<CopyMemGenericWorkload>(descriptor, info);
440 }
441 
442 std::unique_ptr<IWorkload> RefWorkloadFactory::CreatePad(const PadQueueDescriptor& descriptor,
443  const WorkloadInfo& info) const
444 {
445  if (IsQSymmS16(info))
446  {
447  return std::make_unique<RefPadQSymm16Workload>(descriptor, info);
448  }
449  else if (IsFloat16(info))
450  {
451  return std::make_unique<RefPadFloat16Workload>(descriptor, info);
452  }
453  else if (IsBFloat16(info))
454  {
455  return std::make_unique<RefPadBFloat16Workload>(descriptor, info);
456  }
457  return MakeWorkload<RefPadFloat32Workload, RefPadQAsymm8Workload>(descriptor, info);
458 }
459 
460 std::unique_ptr<IWorkload> RefWorkloadFactory::CreatePermute(const PermuteQueueDescriptor& descriptor,
461  const WorkloadInfo& info) const
462 {
463  if (IsQSymmS16(info))
464  {
465  return std::make_unique<RefPermuteQSymm16Workload>(descriptor, info);
466  }
467  else if (IsBFloat16(info))
468  {
469  return std::make_unique<RefPermuteBFloat16Workload>(descriptor, info);
470  }
472  NullWorkload, NullWorkload, NullWorkload>(descriptor, info);
473 }
474 
475 std::unique_ptr<IWorkload> RefWorkloadFactory::CreatePooling2d(const Pooling2dQueueDescriptor& descriptor,
476  const WorkloadInfo& info) const
477 {
478  return std::make_unique<RefPooling2dWorkload>(descriptor, info);
479 }
480 
481 std::unique_ptr<IWorkload> RefWorkloadFactory::CreatePreCompiled(const PreCompiledQueueDescriptor& /*descriptor*/,
482  const WorkloadInfo& /*info*/) const
483 {
484  return nullptr;
485 }
486 
487 std::unique_ptr<IWorkload> RefWorkloadFactory::CreatePrelu(const PreluQueueDescriptor& descriptor,
488  const WorkloadInfo& info) const
489 {
490  return std::make_unique<RefPreluWorkload>(descriptor, info);
491 }
492 
493 std::unique_ptr<IWorkload> RefWorkloadFactory::CreateQuantize(const QuantizeQueueDescriptor& descriptor,
494  const WorkloadInfo& info) const
495 {
496  return std::make_unique<RefQuantizeWorkload>(descriptor, info);
497 }
498 
499 std::unique_ptr<IWorkload> RefWorkloadFactory::CreateReshape(const ReshapeQueueDescriptor& descriptor,
500  const WorkloadInfo& info) const
501 {
502  return std::make_unique<RefReshapeWorkload>(descriptor, info);
503 }
504 
505 std::unique_ptr<IWorkload> RefWorkloadFactory::CreateResize(const ResizeQueueDescriptor& descriptor,
506  const WorkloadInfo& info) const
507 {
508  return std::make_unique<RefResizeWorkload>(descriptor, info);
509 }
510 
511 std::unique_ptr<IWorkload> RefWorkloadFactory::CreateResizeBilinear(const ResizeBilinearQueueDescriptor& descriptor,
512  const WorkloadInfo& info) const
513 {
514  ResizeQueueDescriptor resizeDescriptor;
515  resizeDescriptor.m_Parameters.m_Method = ResizeMethod::Bilinear;
516  resizeDescriptor.m_Parameters.m_DataLayout = descriptor.m_Parameters.m_DataLayout;
517  resizeDescriptor.m_Parameters.m_TargetWidth = descriptor.m_Parameters.m_TargetWidth;
518  resizeDescriptor.m_Parameters.m_TargetHeight = descriptor.m_Parameters.m_TargetHeight;
519 
520  return CreateResize(resizeDescriptor, info);
521 }
522 
523 std::unique_ptr<IWorkload> RefWorkloadFactory::CreateRsqrt(const RsqrtQueueDescriptor& descriptor,
524  const WorkloadInfo& info) const
525 {
526  IgnoreUnused(descriptor);
527  ElementwiseUnaryQueueDescriptor elementwiseUnaryDescriptor;
528  elementwiseUnaryDescriptor.m_Parameters.m_Operation = UnaryOperation::Rsqrt;
529 
530  return CreateElementwiseUnary(elementwiseUnaryDescriptor, info);
531 }
532 
533 std::unique_ptr<IWorkload> RefWorkloadFactory::CreateSlice(const SliceQueueDescriptor& descriptor,
534  const WorkloadInfo& info) const
535 {
536  return std::make_unique<RefSliceWorkload>(descriptor, info);
537 }
538 
539 std::unique_ptr<IWorkload> RefWorkloadFactory::CreateSoftmax(const SoftmaxQueueDescriptor& descriptor,
540  const WorkloadInfo& info) const
541 {
542  return std::make_unique<RefSoftmaxWorkload>(descriptor, info);
543 }
544 
545 std::unique_ptr<IWorkload> RefWorkloadFactory::CreateSpaceToBatchNd(const SpaceToBatchNdQueueDescriptor& descriptor,
546  const WorkloadInfo& info) const
547 {
548  return std::make_unique<RefSpaceToBatchNdWorkload>(descriptor, info);
549 }
550 
551 std::unique_ptr<IWorkload> RefWorkloadFactory::CreateSpaceToDepth(const SpaceToDepthQueueDescriptor& descriptor,
552  const WorkloadInfo& info) const
553 {
554  return std::make_unique<RefSpaceToDepthWorkload>(descriptor, info);
555 }
556 
557 std::unique_ptr<IWorkload> RefWorkloadFactory::CreateSplitter(const SplitterQueueDescriptor& descriptor,
558  const WorkloadInfo& info) const
559 {
560  return std::make_unique<RefSplitterWorkload>(descriptor, info);
561 }
562 
563 std::unique_ptr<IWorkload> RefWorkloadFactory::CreateStack(const StackQueueDescriptor& descriptor,
564  const WorkloadInfo& info) const
565 {
566  return std::make_unique<RefStackWorkload>(descriptor, info);
567 }
568 
569 std::unique_ptr<IWorkload> RefWorkloadFactory::CreateStridedSlice(const StridedSliceQueueDescriptor& descriptor,
570  const WorkloadInfo& info) const
571 {
572  return std::make_unique<RefStridedSliceWorkload>(descriptor, info);
573 }
574 
575 std::unique_ptr<IWorkload> RefWorkloadFactory::CreateSubtraction(const SubtractionQueueDescriptor& descriptor,
576  const WorkloadInfo& info) const
577 {
578  return std::make_unique<RefSubtractionWorkload>(descriptor, info);
579 }
580 
581 std::unique_ptr<IWorkload> RefWorkloadFactory::CreateTranspose(const TransposeQueueDescriptor& descriptor,
582  const WorkloadInfo& info) const
583 {
584  if (IsQSymmS16(info))
585  {
586  return std::make_unique<RefTransposeQSymm16Workload>(descriptor, info);
587  }
588  else if (IsBFloat16(info))
589  {
590  return std::make_unique<RefTransposeBFloat16Workload>(descriptor, info);
591  }
593  NullWorkload, NullWorkload, NullWorkload>(descriptor, info);
594 }
595 
597  const TransposeConvolution2dQueueDescriptor& descriptor,
598  const WorkloadInfo& info) const
599 {
600  return std::make_unique<RefTransposeConvolution2dWorkload>(descriptor, info);
601 }
602 
603 } // namespace armnn
std::unique_ptr< IWorkload > CreateMemCopy(const MemCopyQueueDescriptor &descriptor, const WorkloadInfo &info) const override
std::unique_ptr< IWorkload > CreateRsqrt(const RsqrtQueueDescriptor &descriptor, const WorkloadInfo &info) const override
std::unique_ptr< IWorkload > CreateNormalization(const NormalizationQueueDescriptor &descriptor, const WorkloadInfo &info) const override
std::unique_ptr< IWorkload > CreateArgMinMax(const ArgMinMaxQueueDescriptor &descriptor, const WorkloadInfo &info) const override
std::unique_ptr< IWorkload > CreateReshape(const ReshapeQueueDescriptor &descriptor, const WorkloadInfo &info) const override
std::unique_ptr< IWorkload > CreateResize(const ResizeQueueDescriptor &descriptor, const WorkloadInfo &info) const override
std::unique_ptr< IWorkload > CreateFakeQuantization(const FakeQuantizationQueueDescriptor &descriptor, const WorkloadInfo &info) const override
std::unique_ptr< IWorkload > CreateConvolution2d(const Convolution2dQueueDescriptor &descriptor, const WorkloadInfo &info) const override
UnaryOperation m_Operation
Specifies the elementwiseUnary operation to execute.
Definition: Descriptors.hpp:98
std::unique_ptr< IWorkload > CreateConstant(const ConstantQueueDescriptor &descriptor, const WorkloadInfo &info) const override
std::unique_ptr< IWorkload > CreateEqual(const EqualQueueDescriptor &descriptor, const WorkloadInfo &info) const override
std::unique_ptr< IWorkload > CreateInput(const InputQueueDescriptor &descriptor, const WorkloadInfo &info) const override
std::unique_ptr< IWorkload > CreateMaximum(const MaximumQueueDescriptor &descriptor, const WorkloadInfo &info) const override
DataLayout
Definition: Types.hpp:49
std::unique_ptr< IWorkload > CreateGather(const GatherQueueDescriptor &descriptor, const WorkloadInfo &info) const override
std::unique_ptr< IWorkload > CreateQuantize(const QuantizeQueueDescriptor &descriptor, const WorkloadInfo &info) const override
std::unique_ptr< IWorkload > CreateTransposeConvolution2d(const TransposeConvolution2dQueueDescriptor &descriptor, const WorkloadInfo &info) const override
std::unique_ptr< IWorkload > CreateStridedSlice(const StridedSliceQueueDescriptor &descriptor, const WorkloadInfo &info) const override
std::unique_ptr< IWorkload > CreateSoftmax(const SoftmaxQueueDescriptor &descriptor, const WorkloadInfo &info) const override
uint32_t m_TargetWidth
Target width value.
DataLayout m_DataLayout
The data layout to be used (NCHW, NHWC).
constexpr const char * RefBackendId()
std::unique_ptr< IWorkload > CreateMultiplication(const MultiplicationQueueDescriptor &descriptor, const WorkloadInfo &info) const override
std::unique_ptr< IWorkload > CreateSpaceToDepth(const SpaceToDepthQueueDescriptor &descriptor, const WorkloadInfo &info) const override
ResizeMethod m_Method
The Interpolation method to use (Bilinear, NearestNeighbor).
std::unique_ptr< IWorkload > CreatePad(const PadQueueDescriptor &descriptor, const WorkloadInfo &info) const override
RefPermuteWorkload< DataType::Float16 > RefPermuteFloat16Workload
RefTransposeWorkload< DataType::Float16 > RefTransposeFloat16Workload
std::unique_ptr< IWorkload > CreateMerger(const MergerQueueDescriptor &descriptor, const WorkloadInfo &info) const override
std::unique_ptr< IWorkload > CreateComparison(const ComparisonQueueDescriptor &descriptor, const WorkloadInfo &info) const override
std::unique_ptr< IWorkload > CreateSpaceToBatchNd(const SpaceToBatchNdQueueDescriptor &descriptor, const WorkloadInfo &info) const override
bool IsQAsymmS8(const WorkloadInfo &info)
std::unique_ptr< IWorkload > CreateLogSoftmax(const LogSoftmaxQueueDescriptor &descriptor, const WorkloadInfo &info) const override
RefPermuteWorkload< DataType::Float32 > RefPermuteFloat32Workload
std::unique_ptr< IWorkload > CreateElementwiseUnary(const ElementwiseUnaryQueueDescriptor &descriptor, const WorkloadInfo &info) const override
std::unique_ptr< IWorkload > CreateConvertFp16ToFp32(const ConvertFp16ToFp32QueueDescriptor &descriptor, const WorkloadInfo &info) const override
Copyright (c) 2020 ARM Limited.
void IgnoreUnused(Ts &&...)
bool IsQAsymmU8(const WorkloadInfo &info)
bool IsQSymmS8(const WorkloadInfo &info)
bool IsDataType(const WorkloadInfo &info)
bool IsBFloat16(const WorkloadInfo &info)
std::unique_ptr< IWorkload > CreateConvertFp32ToFp16(const ConvertFp32ToFp16QueueDescriptor &descriptor, const WorkloadInfo &info) const override
const BackendId & GetBackendId() const override
std::unique_ptr< IWorkload > CreateBatchNormalization(const BatchNormalizationQueueDescriptor &descriptor, const WorkloadInfo &info) const override
std::unique_ptr< IWorkload > CreateL2Normalization(const L2NormalizationQueueDescriptor &descriptor, const WorkloadInfo &info) const override
std::unique_ptr< IWorkload > CreateLstm(const LstmQueueDescriptor &descriptor, const WorkloadInfo &info) const override
std::unique_ptr< IWorkload > CreateConcat(const ConcatQueueDescriptor &descriptor, const WorkloadInfo &info) const override
std::vector< TensorInfo > m_InputTensorInfos
bool IsFloat16(const WorkloadInfo &info)
std::unique_ptr< IWorkload > CreateSubtraction(const SubtractionQueueDescriptor &descriptor, const WorkloadInfo &info) const override
RefTransposeWorkload< DataType::Float32 > RefTransposeFloat32Workload
RefTransposeWorkload< DataType::QAsymmU8 > RefTransposeQAsymm8Workload
static bool IsLayerSupported(const Layer &layer, Optional< DataType > dataType, std::string &outReasonIfUnsupported)
std::unique_ptr< IWorkload > CreateDebug(const DebugQueueDescriptor &descriptor, const WorkloadInfo &info) const override
std::unique_ptr< IWorkload > CreateAddition(const AdditionQueueDescriptor &descriptor, const WorkloadInfo &info) const override
uint32_t m_TargetWidth
Target width value.
bool IsSigned32(const WorkloadInfo &info)
std::vector< TensorInfo > m_OutputTensorInfos
static bool IsLayerSupported(const BackendId &backendId, const IConnectableLayer &layer, Optional< DataType > dataType, std::string &outReasonIfUnsupported)
std::unique_ptr< IWorkload > CreatePooling2d(const Pooling2dQueueDescriptor &descriptor, const WorkloadInfo &info) const override
uint32_t m_TargetHeight
Target height value.
uint32_t m_TargetHeight
Target height value.
std::unique_ptr< IWorkload > CreatePrelu(const PreluQueueDescriptor &descriptor, const WorkloadInfo &info) const override
std::unique_ptr< IWorkload > CreateSplitter(const SplitterQueueDescriptor &descriptor, const WorkloadInfo &info) const override
std::unique_ptr< IWorkload > CreateDequantize(const DequantizeQueueDescriptor &descriptor, const WorkloadInfo &info) const override
std::unique_ptr< IWorkload > CreateFloor(const FloorQueueDescriptor &descriptor, const WorkloadInfo &info) const override
ComparisonOperation m_Operation
Specifies the comparison operation to execute.
Definition: Descriptors.hpp:78
std::unique_ptr< IWorkload > CreateSlice(const SliceQueueDescriptor &descriptor, const WorkloadInfo &info) const override
std::unique_ptr< IWorkload > CreateFullyConnected(const FullyConnectedQueueDescriptor &descriptor, const WorkloadInfo &info) const override
std::unique_ptr< IWorkload > CreateBatchToSpaceNd(const BatchToSpaceNdQueueDescriptor &descriptor, const WorkloadInfo &info) const override
std::unique_ptr< IWorkload > CreateInstanceNormalization(const InstanceNormalizationQueueDescriptor &descriptor, const WorkloadInfo &info) const override
std::unique_ptr< IWorkload > CreateMean(const MeanQueueDescriptor &descriptor, const WorkloadInfo &Info) const override
std::unique_ptr< IWorkload > CreateStack(const StackQueueDescriptor &descriptor, const WorkloadInfo &info) const override
std::unique_ptr< IWorkload > CreateDivision(const DivisionQueueDescriptor &descriptor, const WorkloadInfo &info) const override
std::unique_ptr< IWorkload > CreateGreater(const GreaterQueueDescriptor &descriptor, const WorkloadInfo &info) const override
std::unique_ptr< ITensorHandle > CreateTensorHandle(const TensorInfo &tensorInfo, const bool IsMemoryManaged=true) const override
std::unique_ptr< IWorkload > CreateAbs(const AbsQueueDescriptor &descriptor, const WorkloadInfo &info) const override
std::unique_ptr< IWorkload > CreateResizeBilinear(const ResizeBilinearQueueDescriptor &descriptor, const WorkloadInfo &info) const override
Contains information about inputs and outputs to a layer.
std::unique_ptr< IWorkload > CreatePermute(const PermuteQueueDescriptor &descriptor, const WorkloadInfo &info) const override
std::unique_ptr< IWorkload > CreateActivation(const ActivationQueueDescriptor &descriptor, const WorkloadInfo &info) const override
std::vector< ITensorHandle * > m_Inputs
RefPermuteWorkload< DataType::QAsymmU8 > RefPermuteQAsymm8Workload
DataLayout m_DataLayout
The data layout to be used (NCHW, NHWC).
std::unique_ptr< IWorkload > CreateMinimum(const MinimumQueueDescriptor &descriptor, const WorkloadInfo &info) const override
std::unique_ptr< IWorkload > CreateOutput(const OutputQueueDescriptor &descriptor, const WorkloadInfo &info) const override
std::unique_ptr< IWorkload > CreatePreCompiled(const PreCompiledQueueDescriptor &descriptor, const WorkloadInfo &info) const override
std::unique_ptr< IWorkload > CreateTranspose(const TransposeQueueDescriptor &descriptor, const WorkloadInfo &info) const override
std::unique_ptr< IWorkload > CreateDetectionPostProcess(const DetectionPostProcessQueueDescriptor &descriptor, const WorkloadInfo &info) const override
bool IsQSymmS16(const WorkloadInfo &info)
std::unique_ptr< IWorkload > CreateDepthwiseConvolution2d(const DepthwiseConvolution2dQueueDescriptor &descriptor, const WorkloadInfo &info) const override
std::unique_ptr< IWorkload > CreateMemImport(const MemImportQueueDescriptor &descriptor, const WorkloadInfo &info) const override
std::unique_ptr< IWorkload > CreateDepthToSpace(const DepthToSpaceQueueDescriptor &descriptor, const WorkloadInfo &info) const override