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ops.td 8.4 kB

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  1. /**
  2. * \file src/core/include/megbrain/ir/ops.td
  3. * MegEngine is Licensed under the Apache License, Version 2.0 (the "License")
  4. *
  5. * Copyright (c) 2014-2021 Megvii Inc. All rights reserved.
  6. *
  7. * Unless required by applicable law or agreed to in writing,
  8. * software distributed under the License is distributed on an
  9. * "AS IS" BASIS, WITHOUT ARRANTIES OR CONDITIONS OF ANY KIND, either express or
  10. * implied.
  11. */
  12. #ifndef MGB_OPS
  13. #define MGB_OPS
  14. include "base.td"
  15. include "param_defs.td"
  16. include "mlir/Interfaces/SideEffectInterfaces.td"
  17. def Elemwise : MgbHashableOp<"Elemwise", [ElemwiseParam], [NoSideEffect]> {
  18. let inputs = (ins Variadic<AnyType>:$input);
  19. let results = (outs AnyType);
  20. let nameFunction = [{
  21. return to_string($_self.mode);
  22. }];
  23. }
  24. def Reduce: MgbHashableOp<"Reduce", [ReduceParam]>;
  25. def TypeCvt: MgbHashableOp<"TypeCvt", [], [NoSideEffect]> {
  26. let inputs = (ins AnyType:$inputs);
  27. let extraArguments = (ins
  28. TypeAttr:$idtype,
  29. MgbDTypeAttr:$dtype
  30. );
  31. let results = (outs AnyType);
  32. }
  33. def MatrixInverse: MgbHashableOp<"MatrixInverse", [EmptyParam]>;
  34. def MatrixMul: MgbHashableOp<"MatrixMul", [MatrixMulParam, ExecutionPolicyParamBase<"policy">]>;
  35. def BatchedMatrixMul: MgbHashableOp<"BatchedMatmul", [MatrixMulParam, ExecutionPolicyParamBase<"policy">]>;
  36. def Dot: MgbHashableOp<"Dot", [EmptyParam]>;
  37. def SVD: MgbHashableOp<"SVD", [SVDParam]>;
  38. def Convolution : MgbHashableOp<"Convolution", [ConvolutionParam, ExecutionPolicyParamBase<"policy">]>;
  39. def ConvolutionBackwardData: MgbHashableOp<"ConvolutionBackwardData", [ConvolutionParam, ExecutionPolicyParamBase<"policy">]>;
  40. def Convolution3D: MgbHashableOp<"Convolution3D", [Convolution3DParam, ExecutionPolicyParamBase<"policy">]>;
  41. def Convolution3DBackwardData: MgbHashableOp<"Convolution3DBackwardData", [Convolution3DParam, ExecutionPolicyParamBase<"policy">]>;
  42. def DeformableConv : MgbHashableOp<"DeformableConv", [ConvolutionParam, ExecutionPolicyParamBase<"policy">]>;
  43. def GroupLocal: MgbHashableOp<"GroupLocal", [ConvolutionParam]>;
  44. def Pooling: MgbHashableOp<"Pooling", [PoolingParam]>;
  45. def AdaptivePooling : MgbHashableOp<"AdaptivePooling", [AdaptivePoolingParam]>;
  46. def ROIPooling: MgbHashableOp<"ROIPooling", [ROIPoolingParam]>;
  47. def DeformablePSROIPooling : MgbHashableOp<"DeformablePSROIPooling", [DeformablePSROIPoolingParam]>;
  48. def ConvBias : MgbHashableOp<"ConvBias", [ConvBiasParam, ExecutionPolicyParamBase<"policy">]> {
  49. let extraArguments = (ins
  50. MgbDTypeAttr:$dtype
  51. );
  52. }
  53. def BatchConvBias : MgbHashableOp<"BatchConvBias", [BatchConvBiasParam, ExecutionPolicyParamBase<"policy">]> {
  54. let extraArguments = (ins
  55. MgbDTypeAttr:$dtype
  56. );
  57. }
  58. def BatchNorm : MgbHashableOp<"BatchNorm", [BNParam]>;
  59. def ROIAlign: MgbHashableOp<"ROIAlign", [ROIAlignParam]>;
  60. def WarpPerspective: MgbHashableOp<"WarpPerspective", [WarpPerspectiveParam]>;
  61. def WarpAffine: MgbHashableOp<"WarpAffine", [WarpAffineParam]>;
  62. def Remap: MgbHashableOp<"Remap", [RemapParam]>;
  63. def Resize: MgbHashableOp<"Resize", [ResizeParam]>;
  64. def IndexingOneHot: MgbHashableOp<"IndexingOneHot", [AxisParam]>;
  65. def IndexingSetOneHot: MgbHashableOp<"IndexingSetOneHot", [AxisParam]>;
  66. def Copy: MgbHashableOp<"Copy"> {
  67. let extraArguments = (ins
  68. MgbCompNodeAttr:$comp_node
  69. );
  70. }
  71. def Argsort: MgbHashableOp<"Argsort", [ArgsortParam]>;
  72. def Argmax : MgbHashableOp<"Argmax", [AxisParam]>;
  73. def Argmin : MgbHashableOp<"Argmin", [AxisParam]>;
  74. def CondTake : MgbHashableOp<"CondTake">;
  75. def TopK: MgbHashableOp<"TopK", [TopKParam]>;
  76. def NvOf: MgbHashableOp<"NvOf", [NvOfParam]>;
  77. def UniformRNG: MgbHashableOp<"UniformRNG", [UniformRNGParam]> {
  78. let hashFunction = [{return mgb::hash($_self.dyn_typeinfo());}];
  79. let cmpFunction = [{return true;}];
  80. }
  81. def GaussianRNG: MgbHashableOp<"GaussianRNG", [GaussianRNGParam]> {
  82. let hashFunction = [{
  83. return mgb::hash_pair_combine(
  84. mgb::hash($_self.dyn_typeinfo()),
  85. mgb::hash_pair_combine(mgb::hash($_self.mean), mgb::hash($_self.std)));
  86. }];
  87. let cmpFunction = [{return $0.mean == $1.mean && $0.std == $1.std;}];
  88. }
  89. def Linspace: MgbHashableOp<"Linspace", [LinspaceParam]> {
  90. let extraArguments = (ins
  91. MgbCompNodeAttr:$comp_node
  92. );
  93. }
  94. def Eye: MgbHashableOp<"Eye", [EyeParam]> {
  95. let extraArguments = (ins
  96. MgbCompNodeAttr:$comp_node
  97. );
  98. }
  99. def GetVarShape : MgbHashableOp<"GetVarShape", [OptionalAxisV1Param]>;
  100. def Concat: MgbHashableOp<"Concat", [AxisParam]> {
  101. let extraArguments = (ins
  102. MgbCompNodeAttr:$comp_node
  103. );
  104. }
  105. def Broadcast : MgbHashableOp<"Broadcast", [EmptyParam]>;
  106. def Identity: MgbHashableOp<"Identity">;
  107. def CollectiveComm : MgbHashableOp<"CollectiveComm", [CollectiveCommParam]> {
  108. let extraArguments = (ins
  109. MgbStringAttr:$key,
  110. MgbUI32Attr:$nr_devices,
  111. MgbUI32Attr:$rank,
  112. MgbBoolAttr:$is_root,
  113. MgbBoolAttr:$local_grad,
  114. MgbStringAttr:$addr,
  115. MgbUI32Attr:$port,
  116. MgbDTypeAttr:$dtype,
  117. MgbStringAttr:$backend,
  118. MgbStringAttr:$comp_node
  119. );
  120. }
  121. def RemoteSend : MgbHashableOp<"RemoteSend"> {
  122. let extraArguments = (ins
  123. MgbStringAttr:$key,
  124. MgbStringAttr:$addr,
  125. MgbUI32Attr:$port,
  126. MgbUI32Attr:$rank_to,
  127. MgbStringAttr:$backend
  128. );
  129. }
  130. def RemoteRecv : MgbHashableOp<"RemoteRecv"> {
  131. let extraArguments = (ins
  132. MgbStringAttr:$key,
  133. MgbStringAttr:$addr,
  134. MgbUI32Attr:$port,
  135. MgbUI32Attr:$rank_from,
  136. MgbCompNodeAttr:$cn,
  137. MgbTensorShapeAttr:$shape,
  138. MgbDTypeAttr:$dtype,
  139. MgbStringAttr:$backend
  140. );
  141. }
  142. def NMSKeep : MgbHashableOp<"NMSKeep"> {
  143. let extraArguments = (ins
  144. MgbF32Attr:$iou_thresh,
  145. MgbUI32Attr:$max_output
  146. );
  147. }
  148. def ParamPackSplit : MgbHashableOp<"ParamPackSplit"> {
  149. let extraArguments = (ins
  150. MgbArrayAttr<MgbI32Attr>:$offsets,
  151. MgbArrayAttr<MgbArrayAttr<MgbSizeTAddr>>:$shapes
  152. );
  153. }
  154. def ParamPackConcat : MgbHashableOp<"ParamPackConcat"> {
  155. let extraArguments = (ins
  156. MgbArrayAttr<MgbI32Attr>:$offsets
  157. );
  158. }
  159. def Dimshuffle: MgbHashableOp<"Dimshuffle"> {
  160. let inputs = (ins AnyMemRef:$input);
  161. let extraArguments = (ins MgbArrayAttr<MgbI32Attr>:$pattern);
  162. let results = (outs AnyMemRef);
  163. }
  164. def Reshape: MgbHashableOp<"Reshape", [OptionalAxisV1Param]>;
  165. // TODO: merge Add/Remove Axis into AxisAddRemove as megbrain?
  166. def AddAxis: MgbHashableOp<"AddAxis"> {
  167. let extraArguments = (ins
  168. MgbArrayAttr<MgbI32Attr>:$axis
  169. );
  170. }
  171. def RemoveAxis: MgbHashableOp<"RemoveAxis"> {
  172. let extraArguments = (ins
  173. MgbArrayAttr<MgbI32Attr>:$axis
  174. );
  175. }
  176. class FancyIndexingBase<string name>: MgbHashableOp<name> {
  177. let extraArguments = (ins
  178. MgbArrayAttr<MgbTupleAttr<
  179. [MgbI8Attr, MgbBoolAttr, MgbBoolAttr, MgbBoolAttr, MgbBoolAttr]>>:$items
  180. );
  181. }
  182. def Subtensor: FancyIndexingBase<"Subtensor">;
  183. def SetSubtensor: FancyIndexingBase<"SetSubtensor">;
  184. def IncrSubtensor: FancyIndexingBase<"IncrSubtensor">;
  185. def IndexingMultiAxisVec: FancyIndexingBase<"IndexingMultiAxisVec">;
  186. def IndexingSetMultiAxisVec: FancyIndexingBase<"IndexingSetMultiAxisVec">;
  187. def IndexingIncrMultiAxisVec: FancyIndexingBase<"IndexingIncrMultiAxisVec">;
  188. def MeshIndexing: FancyIndexingBase<"MeshIndexing">;
  189. def IncrMeshIndexing: FancyIndexingBase<"IncrMeshIndexing">;
  190. def SetMeshIndexing: FancyIndexingBase<"SetMeshIndexing">;
  191. def BatchedMeshIndexing: FancyIndexingBase<"BatchedMeshIndexing">;
  192. def BatchedIncrMeshIndexing: FancyIndexingBase<"BatchedIncrMeshIndexing">;
  193. def BatchedSetMeshIndexing: FancyIndexingBase<"BatchedSetMeshIndexing">;
  194. def FakeQuant: MgbHashableOp<"FakeQuant", [FakeQuantParam]>;
  195. def AssertEqual: MgbHashableOp<"AssertEqual",[AssertEqualParam]>;
  196. def TQT: MgbHashableOp<"TQT", [TQTParam]>;
  197. def ElemwiseMultiType: MgbHashableOp<"ElemwiseMultiType", [ElemwiseMultiTypeParam]> {
  198. let extraArguments = (ins
  199. MgbDTypeAttr:$dtype
  200. );
  201. let nameFunction = [{
  202. return to_string($_self.mode);
  203. }];
  204. }
  205. def InplaceAdd: MgbHashableOp<"InplaceAdd", [EmptyParam]>;
  206. def TensorRTRuntime: MgbHashableOp<"TensorRTRuntime"> {
  207. let extraArguments = (ins
  208. MgbStringAttr:$buf,
  209. MgbSizeTAddr:$buf_size
  210. );
  211. }
  212. def AtlasRuntime: MgbHashableOp<"AtlasRuntime"> {
  213. let extraArguments = (ins
  214. MgbStringAttr:$buf,
  215. MgbSizeTAddr:$buf_size
  216. );
  217. }
  218. def CambriconRuntime: MgbHashableOp<"CambriconRuntime"> {
  219. let extraArguments = (ins
  220. MgbStringAttr:$buf,
  221. MgbSizeTAddr:$buf_size,
  222. MgbStringAttr:$symbol,
  223. MgbBoolAttr:$tensor_dim_mutable
  224. );
  225. }
  226. def CvtColor: MgbHashableOp<"CvtColor", [CvtColorParam]>;
  227. #endif // MGB_OPS

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