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/**
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* Copyright 2019-2020 Huawei Technologies Co., Ltd
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#ifndef GE_CONTROL_FLOW_OPS_H_
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#define GE_CONTROL_FLOW_OPS_H_
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#include "graph/operator_reg.h"
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#include "graph/operator.h"
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namespace ge {
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/**
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*@brief Forwards the value of an available tensor from input "x" to output "y". \n
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* Merge waits for at least one of the input tensors to become available. \n
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* It is usually combined with Switch to implement branching. \n
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* Merge forwards the first tensor to become available to output "y", \n
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* and sets "value_index" the index of the tensor in inputs.
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*@par Inputs:
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*x: The input tensors, one of which will become available. \n
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* Must be one of the following types: float16, float32, float64, int8, \n
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* int16, int32, int64, uint8, uint16, uint32, uint64, bool.
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*@par Outputs:
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*@li y: The available tensor. Has the same type as "x".
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*@li value_index: A scalar of type int32, for the index of the chosen input \n
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* tensor.
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*@see Switch()
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*@par Third-party framework compatibility
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*@Compatible with the TensorFlow operator Merge.
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*/
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REG_OP(Merge)
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.DYNAMIC_INPUT(x, TensorType({DT_FLOAT16, DT_FLOAT, DT_DOUBLE,
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DT_INT8, DT_INT16, DT_INT32, DT_INT64, DT_UINT8, DT_UINT16, DT_UINT32,
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DT_UINT64, DT_BOOL}))
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.OUTPUT(y, TensorType({DT_FLOAT16, DT_FLOAT, DT_DOUBLE,
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DT_INT8, DT_INT16, DT_INT32, DT_INT64, DT_UINT8, DT_UINT16, DT_UINT32,
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DT_UINT64, DT_BOOL}))
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.OUTPUT(value_index, TensorType({DT_INT32}))
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.OP_END_FACTORY_REG(Merge)
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/**
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*@brief Forwards the value of an available tensor from input "x" to output "y". \n
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* Merge waits for at least one of the input tensors to become available. \n
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* It is usually combined with Switch to implement branching. \n
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* Merge forwards the first tensor to become available to output "y", \n
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* and sets "value_index" the index of the tensor in inputs.
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*@par Inputs:
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*x: The input tensors, one of which will become available. \n
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* Must be one of the following types: float16, float32, float64, int8, \n
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* int16, int32, int64, uint8, uint16, uint32, uint64, bool.
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*@par Outputs:
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*@li y: The available tensor. Has the same type as "x".
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*@li value_index: A scalar of type int32, for the index of the chosen input \n
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* tensor.
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*@see Switch() | Merge()
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*@par Third-party framework compatibility
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*@Compatible with the TensorFlow operator RefMerge.
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*/
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REG_OP(RefMerge)
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.DYNAMIC_INPUT(x, TensorType({DT_FLOAT16, DT_FLOAT, DT_DOUBLE,
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DT_INT8, DT_INT16, DT_INT32, DT_INT64, DT_UINT8, DT_UINT16, DT_UINT32,
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DT_UINT64, DT_BOOL}))
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.OUTPUT(y, TensorType({DT_FLOAT16, DT_FLOAT, DT_DOUBLE,
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DT_INT8, DT_INT16, DT_INT32, DT_INT64, DT_UINT8, DT_UINT16, DT_UINT32,
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DT_UINT64, DT_BOOL}))
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.OUTPUT(value_index, TensorType({DT_INT32}))
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.OP_END_FACTORY_REG(RefMerge)
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/**
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*@brief Forwards "data" to the output port determined by "pred". \n
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* If "pred" is "true", the data input is forwarded to "output_true". \n
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* Otherwise, the data is forwarded to "output_false".
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*@par Inputs:
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*@li data: The tensor to be forwarded. \ n
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* Must be one of the following types: float16, float32, float64, \n
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* int8, int16, int32, int64, uint8, uint16, uint32, uint64, bool.
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*@li pred: A boolean scalar. The output port that will receive data.
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*@par Outputs:
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*@li output_false: If "pred" is "false", data will be forwarded to this output. \n
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* Has the same type as "data".
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*@li output_true: If "pred" is "true", data will be forwarded to this output. \n
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* Has the same type as "data".
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*@see Merge()
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*@par Third-party framework compatibility
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*@Compatible with the TensorFlow operator Switch.
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*/
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REG_OP(Switch)
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.INPUT(data, TensorType({DT_FLOAT16, DT_FLOAT, DT_DOUBLE,
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DT_INT8, DT_INT16, DT_INT32, DT_INT64, DT_UINT8, DT_UINT16, DT_UINT32,
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DT_UINT64, DT_BOOL}))
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.INPUT(pred, TensorType({DT_BOOL}))
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.OUTPUT(output_false, TensorType({DT_FLOAT16, DT_FLOAT, DT_DOUBLE,
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DT_INT8, DT_INT16, DT_INT32, DT_INT64, DT_UINT8, DT_UINT16, DT_UINT32,
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DT_UINT64, DT_BOOL}))
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.OUTPUT(output_true, TensorType({DT_FLOAT16, DT_FLOAT, DT_DOUBLE,
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DT_INT8, DT_INT16, DT_INT32, DT_INT64, DT_UINT8, DT_UINT16, DT_UINT32,
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DT_UINT64, DT_BOOL}))
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.OP_END_FACTORY_REG(Switch)
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/**
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*@brief Forwards "data" to the output port determined by "pred". \n
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* If "pred" is "true", the data input is forwarded to "output_true". \n
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* Otherwise, the data is forwarded to "output_false".
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*@par Inputs:
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*@li data: The ref tensor to be forwarded. \n
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* Must be one of the following types: float16, float32, float64, \n
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* int8, int16, int32, int64, uint8, uint16, uint32, uint64, bool.
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*@li pred: A boolean scalar. The output port that will receive data.
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*@par Outputs:
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*@li output_false: If "pred" is "false", data will be forwarded to this output. \n
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* Has the same type as "data".
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*@li output_true: If "pred" is "true", data will be forwarded to this output. \n
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* Has the same type as "data".
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*@see Merge() | Switch()
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*@par Third-party framework compatibility
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*@Compatible with the TensorFlow operator RefSwitch.
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*/
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REG_OP(RefSwitch)
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.INPUT(data, TensorType({DT_FLOAT16, DT_FLOAT, DT_DOUBLE,
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DT_INT8, DT_INT16, DT_INT32, DT_INT64, DT_UINT8, DT_UINT16, DT_UINT32,
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DT_UINT64, DT_BOOL}))
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.INPUT(pred, TensorType({DT_BOOL}))
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.OUTPUT(output_false, TensorType({DT_FLOAT16, DT_FLOAT, DT_DOUBLE,
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DT_INT8, DT_INT16, DT_INT32, DT_INT64, DT_UINT8, DT_UINT16, DT_UINT32,
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DT_UINT64, DT_BOOL}))
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.OUTPUT(output_true, TensorType({DT_FLOAT16, DT_FLOAT, DT_DOUBLE,
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DT_INT8, DT_INT16, DT_INT32, DT_INT64, DT_UINT8, DT_UINT16, DT_UINT32,
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DT_UINT64, DT_BOOL}))
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.OP_END_FACTORY_REG(RefSwitch)
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/**
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*@brief Forwards "data" to the output port determined by "pred_value".
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*@par Inputs:
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*@li data: The tensor to be forwarded. \ n
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* Must be one of the following types: float16, float32, float64, \n
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* int8, int16, int32, int64, uint8, uint16, uint32, uint64, bool.
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*@li pred_value: A int64 tensor which determines the output port that will receive data.
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*@par Outputs:
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*output: The output tensors, one of which will become available. \n
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* Has the same type as "data".
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*/
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REG_OP(SwitchN)
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.INPUT(data, TensorType({DT_FLOAT16, DT_FLOAT, DT_DOUBLE,
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DT_INT8, DT_INT16, DT_INT32, DT_INT64, DT_UINT8, DT_UINT16, DT_UINT32,
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DT_UINT64, DT_BOOL}))
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.INPUT(pred_value, TensorType({DT_INT64}))
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.DYNAMIC_OUTPUT(output, TensorType({DT_FLOAT16, DT_FLOAT, DT_DOUBLE,
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DT_INT8, DT_INT16, DT_INT32, DT_INT64, DT_UINT8, DT_UINT16, DT_UINT32,
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DT_UINT64, DT_BOOL}))
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.OP_END_FACTORY_REG(SwitchN)
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/**
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*@brief Creates or finds a child frame, and makes "x" available to the child \n
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* frame. This op is used together with Exit to create loops in the graph. \n
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* The Executor uses the unique "frame_name" to identify frames. \n
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* If "is_constant" is "true", output "y" is a constant in the child \n
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* frame; otherwise it may be changed in the child frame.
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*@par Inputs:
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*x: The tensor to be made available to the child frame. \n
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* Must be one of the following types: float16, float32, float64, int8, \n
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* int16, int32, int64, uint8, uint16, uint32, uint64, bool.
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*@par Attributes:
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*@li frame_name: A required string. The name of the child frame.
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*@li is_constant: A required bool. If true, the output is constant in \n
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* the child frame.
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*@par Outputs:
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*y: A Tensor. Has the same type as "x".
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*@see Exit()
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*@par Third-party framework compatibility
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*@Compatible with the TensorFlow operator Enter.
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*/
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REG_OP(Enter)
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.INPUT(x, TensorType({DT_FLOAT16, DT_FLOAT, DT_DOUBLE,
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DT_INT8, DT_INT16, DT_INT32, DT_INT64, DT_UINT8, DT_UINT16, DT_UINT32,
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DT_UINT64, DT_BOOL}))
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.OUTPUT(y, TensorType({DT_FLOAT16, DT_FLOAT, DT_DOUBLE,
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DT_INT8, DT_INT16, DT_INT32, DT_INT64, DT_UINT8, DT_UINT16, DT_UINT32,
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DT_UINT64, DT_BOOL}))
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.REQUIRED_ATTR(frame_name, String)
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.REQUIRED_ATTR(is_constant, Bool)
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.OP_END_FACTORY_REG(Enter)
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/**
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*@brief Creates or finds a child frame, and makes "x" available to the child \n
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* frame. This op is used together with Exit to create loops in the graph. \n
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* The Executor uses the unique "frame_name" to identify frames. \n
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* If "is_constant" is "true", output "y" is a constant in the child \n
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* frame; otherwise it may be changed in the child frame.
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*@par Inputs:
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*x: The tensor to be made available to the child frame. \n
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* Must be one of the following types: float16, float32, float64, int8, \n
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* int16, int32, int64, uint8, uint16, uint32, uint64, bool.
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*@par Attributes:
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*@li frame_name: A required string. The name of the child frame.
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*@li is_constant: A required bool. If true, the output is constant in \n
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* the child frame.
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*@par Outputs:
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*y: A tensor. Has the same type as "x".
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*@see Exit() | Enter()
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*@par Third-party framework compatibility
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*@Compatible with the TensorFlow operator RefEnter.
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*/
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REG_OP(RefEnter)
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.INPUT(x, TensorType({DT_FLOAT16, DT_FLOAT, DT_DOUBLE,
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DT_INT8, DT_INT16, DT_INT32, DT_INT64, DT_UINT8, DT_UINT16, DT_UINT32,
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DT_UINT64, DT_BOOL}))
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.OUTPUT(y, TensorType({DT_FLOAT16, DT_FLOAT, DT_DOUBLE,
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DT_INT8, DT_INT16, DT_INT32, DT_INT64, DT_UINT8, DT_UINT16, DT_UINT32,
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DT_UINT64, DT_BOOL}))
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.REQUIRED_ATTR(frame_name, String)
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.REQUIRED_ATTR(is_constant, Bool)
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.OP_END_FACTORY_REG(RefEnter)
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/**
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*@brief Forwards the input to the output. This op represents the loop \n
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* termination condition.
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*@par Inputs:
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*x: A boolean scalar. The condition of the Switch op.
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*@par Outputs:
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*y: The tensor "x".
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*@see Switch()
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*@par Third-party framework compatibility
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*@Compatible with the TensorFlow operator LoopCond.
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*/
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REG_OP(LoopCond)
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.INPUT(x, TensorType({DT_BOOL}))
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.OUTPUT(y, TensorType({DT_BOOL}))
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.OP_END_FACTORY_REG(LoopCond)
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/**
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*@brief Makes the input available to the next iteration.
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*@par Inputs:
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*x: The tensor to be made available to the next iteration. \n
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* Must be one of the following types: float16, float32, float64, int8, \n
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* int16, int32, int64, uint8, uint16, uint32, uint64, bool.
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*@par Outputs:
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*y: A Tensor. Has the same type as "x".
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*@par Third-party framework compatibility
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*@Compatible with the TensorFlow operator NextIteration.
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*/
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REG_OP(NextIteration)
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.INPUT(x, TensorType({DT_FLOAT16, DT_FLOAT, DT_DOUBLE,
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DT_INT8, DT_INT16, DT_INT32, DT_INT64, DT_UINT8, DT_UINT16, DT_UINT32,
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DT_UINT64, DT_BOOL}))
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.OUTPUT(y, TensorType({DT_FLOAT16, DT_FLOAT, DT_DOUBLE,
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DT_INT8, DT_INT16, DT_INT32, DT_INT64, DT_UINT8, DT_UINT16, DT_UINT32,
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DT_UINT64, DT_BOOL}))
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.OP_END_FACTORY_REG(NextIteration)
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/**
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*@brief Makes the input available to the next iteration.
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*@par Inputs:
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*x: The tensor to be made available to the next iteration. \n
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* Must be one of the following types: float16, float32, float64, int8, \n
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* int16, int32, int64, uint8, uint16, uint32, uint64, bool.
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*@par Outputs:
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*y: A tensor. Has the same type as "x".
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*@par Third-party framework compatibility
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*@Compatible with the TensorFlow operator RefNextIteration.
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*/
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REG_OP(RefNextIteration)
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.INPUT(x, TensorType({DT_FLOAT16, DT_FLOAT, DT_DOUBLE,
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DT_INT8, DT_INT16, DT_INT32, DT_INT64, DT_UINT8, DT_UINT16, DT_UINT32,
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DT_UINT64, DT_BOOL}))
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.OUTPUT(y, TensorType({DT_FLOAT16, DT_FLOAT, DT_DOUBLE,
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DT_INT8, DT_INT16, DT_INT32, DT_INT64, DT_UINT8, DT_UINT16, DT_UINT32,
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DT_UINT64, DT_BOOL}))
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.OP_END_FACTORY_REG(RefNextIteration)
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/**
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*@brief Exits the current frame to its parent frame.
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*@par Inputs:
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*x: The tensor to be made available to the parent frame. \n
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* Must be one of the following types: float16, float32, float64, int8, \n
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* int16, int32, int64, uint8, uint16, uint32, uint64, bool.
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*@par Outputs:
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*y: A Tensor. Has the same type as "x".
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*@see Enter()
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*@par Third-party framework compatibility
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*@Compatible with the TensorFlow operator Exit.
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*/
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REG_OP(Exit)
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.INPUT(x, TensorType({DT_FLOAT16, DT_FLOAT, DT_DOUBLE,
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DT_INT8, DT_INT16, DT_INT32, DT_INT64, DT_UINT8, DT_UINT16, DT_UINT32,
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DT_UINT64, DT_BOOL}))
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.OUTPUT(y, TensorType({DT_FLOAT16, DT_FLOAT, DT_DOUBLE,
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DT_INT8, DT_INT16, DT_INT32, DT_INT64, DT_UINT8, DT_UINT16, DT_UINT32,
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DT_UINT64, DT_BOOL}))
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.OP_END_FACTORY_REG(Exit)
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/**
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*@brief Exits the current frame to its parent frame.
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*@par Inputs:
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*x: The tensor to be made available to the parent frame. \n
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* Must be one of the following types: float16, float32, float64, int8, \n
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* int16, int32, int64, uint8, uint16, uint32, uint64, bool.
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*@par Outputs:
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*y: A tensor. Has the same type as "x".
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*@see Enter() | Exit()
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*@par Third-party framework compatibility
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*@Compatible with the TensorFlow operator RefExit.
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*/
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REG_OP(RefExit)
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.INPUT(x, TensorType({DT_FLOAT16, DT_FLOAT, DT_DOUBLE,
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DT_INT8, DT_INT16, DT_INT32, DT_INT64, DT_UINT8, DT_UINT16, DT_UINT32,
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DT_UINT64, DT_BOOL}))
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.OUTPUT(y, TensorType({DT_FLOAT16, DT_FLOAT, DT_DOUBLE,
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DT_INT8, DT_INT16, DT_INT32, DT_INT64, DT_UINT8, DT_UINT16, DT_UINT32,
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DT_UINT64, DT_BOOL}))
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.OP_END_FACTORY_REG(RefExit)
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/**
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*@brief Only useful as a placeholder for control edges. \n
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* It is similar to a no-op that always produces a live control output \n
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* even when some control inputs are dead.
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*@par Third-party framework compatibility
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*@Compatible with the TensorFlow operator ControlTrigger.
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*/
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REG_OP(ControlTrigger)
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.OP_END_FACTORY_REG(ControlTrigger)
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} // namespace ge
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#endif // GE_CONTROL_FLOW_OPS_H_
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