divide.hpp
1 // Copyright (C) 2018-2021 Intel Corporation
2 // SPDX-License-Identifier: Apache-2.0
3 //
4 
5 #pragma once
6 
7 #include "ngraph/op/util/binary_elementwise_arithmetic.hpp"
8 
9 namespace ngraph
10 {
11  namespace op
12  {
13  namespace v1
14  {
15  /// \brief Elementwise division operation.
16  class NGRAPH_API Divide : public util::BinaryElementwiseArithmetic
17  {
18  public:
19  NGRAPH_RTTI_DECLARATION;
20  /// \brief Constructs a division operation.
22  : util::BinaryElementwiseArithmetic(AutoBroadcastSpec::NUMPY)
23  {
24  }
25 
26  /// \brief Constructs a division operation.
27  ///
28  /// \param arg0 Node that produces the first input tensor.
29  /// \param arg1 Node that produces the second input tensor.
30  /// \param pythondiv Use Python style rounding for integral type
31  /// \param auto_broadcast Auto broadcast specification
32  Divide(const Output<Node>& arg0,
33  const Output<Node>& arg1,
34  bool pythondiv,
35  const AutoBroadcastSpec& auto_broadcast =
36  AutoBroadcastSpec(AutoBroadcastType::NUMPY));
37 
38  /// \brief Constructs a division operation.
39  ///
40  /// \param arg0 Node that produces the first input tensor.
41  /// \param arg1 Node that produces the second input tensor.
42  /// \param auto_broadcast Auto broadcast specification
43  Divide(const Output<Node>& arg0,
44  const Output<Node>& arg1,
45  const AutoBroadcastSpec& auto_broadcast =
46  AutoBroadcastSpec(AutoBroadcastType::NUMPY));
47  bool visit_attributes(AttributeVisitor& visitor) override;
48  bool is_pythondiv() const { return m_pythondiv; }
49  void set_is_pythondiv(bool pythondiv) { m_pythondiv = pythondiv; }
50  virtual std::shared_ptr<Node>
51  clone_with_new_inputs(const OutputVector& new_args) const override;
52 
53  size_t get_version() const override { return 1; }
54  bool evaluate(const HostTensorVector& outputs,
55  const HostTensorVector& inputs) const override;
56  bool has_evaluate() const override;
57 
58  protected:
59  bool m_pythondiv{true};
60  };
61  } // namespace v1
62  } // namespace op
63 } // namespace ngraph
Visits the attributes of a node, primarily for serialization-like tasks.
Definition: attribute_visitor.hpp:59
A handle for one of a node's outputs.
Definition: node_output.hpp:33
Abstract base class for elementwise binary arithmetic operations, i.e., operations where the same sca...
Definition: binary_elementwise_arithmetic.hpp:43
Elementwise division operation.
Definition: divide.hpp:17
Divide(const Output< Node > &arg0, const Output< Node > &arg1, const AutoBroadcastSpec &auto_broadcast=AutoBroadcastSpec(AutoBroadcastType::NUMPY))
Constructs a division operation.
Divide(const Output< Node > &arg0, const Output< Node > &arg1, bool pythondiv, const AutoBroadcastSpec &auto_broadcast=AutoBroadcastSpec(AutoBroadcastType::NUMPY))
Constructs a division operation.
Divide()
Constructs a division operation.
Definition: divide.hpp:21
bool has_evaluate() const override
Allows to get information about availability of evaluate method for the current operation.
size_t get_version() const override
Definition: divide.hpp:53
bool evaluate(const HostTensorVector &outputs, const HostTensorVector &inputs) const override
Evaluates the op on input_values putting results in output_values.
The Intel nGraph C++ API.
Definition: attribute_adapter.hpp:16
Implicit broadcast specification.
Definition: attr_types.hpp:311