135 lines
4 KiB
C++
135 lines
4 KiB
C++
/**
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* PANDA 3D SOFTWARE
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* Copyright (c) Carnegie Mellon University. All rights reserved.
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*
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* All use of this software is subject to the terms of the revised BSD
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* license. You should have received a copy of this license along
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* with this source code in a file named "LICENSE."
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*
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* @file dataNode.h
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* @author drose
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* @date 2002-03-11
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*/
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#ifndef DATANODE_H
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#define DATANODE_H
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/*
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* The Data Graph. The data graph is intended to hook up devices and their
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* inputs andor outputs in a clean interface. It uses the same graph
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* relationship that is used to construct the scene graph, with the same sort
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* of nodes and NodePaths. In a data graph, each node may potentially produce
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* andor consume data, and the arcs transmit data downward, from the root of
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* the graph to its leaves. Thus, an input device such as a mouse might be
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* added to the graph near the root, and a tformer-style object that
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* interprets the mouse data as a trackball motion and outputs a matrix might
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* be the immediate child of the mouse, followed by an object that accepts a
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* matrix and sets it on some particular arc in the scene graph. Each
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* different kind of DataNode defines its own set of input values and output
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* values, identified by name. When a DataNode is attached to another
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* DataNode, the inputs of the child are automatically connected up to the
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* corresponding outputs of the parent, and an error message is issued if
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* there are no matching connections.
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*/
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#include "pandabase.h"
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#include "pandaNode.h"
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#include "pointerTo.h"
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class DataGraphTraverser;
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class DataNodeTransmit;
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/**
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* The fundamental type of node for the data graph. The DataNode class is
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* itself primarily intended as an abstract class; it defines no inputs and no
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* outputs. Most kinds of data nodes will derive from this to specify the
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* inputs and outputs in the constructor.
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*
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* DataNode does not attempt to cycle its data with a PipelineCycler. The
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* data graph is intended to be used only within a single thread.
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*/
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class EXPCL_PANDA_DGRAPH DataNode : public PandaNode {
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PUBLISHED:
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INLINE explicit DataNode(const std::string &name);
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protected:
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INLINE DataNode(const DataNode ©);
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public:
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virtual PandaNode *make_copy() const;
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void transmit_data(DataGraphTraverser *trav,
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const DataNodeTransmit inputs[],
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DataNodeTransmit &output);
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INLINE int get_num_inputs() const;
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INLINE int get_num_outputs() const;
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PUBLISHED:
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void write_inputs(std::ostream &out) const;
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void write_outputs(std::ostream &out) const;
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void write_connections(std::ostream &out) const;
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protected:
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int define_input(const std::string &name, TypeHandle data_type);
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int define_output(const std::string &name, TypeHandle data_type);
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protected:
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// Inherited from PandaNode
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virtual void parents_changed();
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// Local to DataNode
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virtual void do_transmit_data(DataGraphTraverser *trav,
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const DataNodeTransmit &input,
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DataNodeTransmit &output);
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private:
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void reconnect();
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class WireDef {
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public:
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TypeHandle _data_type;
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int _index;
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};
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typedef pmap<std::string, WireDef> Wires;
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Wires _input_wires;
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Wires _output_wires;
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class DataConnection {
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public:
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int _parent_index;
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int _output_index;
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int _input_index;
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};
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typedef pvector<DataConnection> DataConnections;
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DataConnections _data_connections;
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public:
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virtual void write_datagram(BamWriter *manager, Datagram &dg);
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protected:
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void fillin(DatagramIterator &scan, BamReader *manager);
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public:
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static TypeHandle get_class_type() {
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return _type_handle;
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}
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static void init_type() {
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PandaNode::init_type();
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register_type(_type_handle, "DataNode",
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PandaNode::get_class_type());
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}
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virtual TypeHandle get_type() const {
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return get_class_type();
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}
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virtual TypeHandle force_init_type() {init_type(); return get_class_type();}
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private:
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static TypeHandle _type_handle;
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};
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#include "dataNode.I"
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#endif
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