// Filename: analogNode.h // Created by: drose (12Mar02) // //////////////////////////////////////////////////////////////////// // // PANDA 3D SOFTWARE // Copyright (c) 2001, Disney Enterprises, Inc. All rights reserved // // All use of this software is subject to the terms of the Panda 3d // Software license. You should have received a copy of this license // along with this source code; you will also find a current copy of // the license at http://www.panda3d.org/license.txt . // // To contact the maintainers of this program write to // panda3d@yahoogroups.com . // //////////////////////////////////////////////////////////////////// #ifndef ANALOGNODE_H #define ANALOGNODE_H #include "pandabase.h" #include "clientBase.h" #include "clientAnalogDevice.h" #include "dataNode.h" #include "linmath_events.h" //////////////////////////////////////////////////////////////////// // Class : AnalogNode // Description : This is the primary interface to analog controls like // sliders and joysticks associated with a ClientBase. // This creates a node that connects to the named analog // device, if it exists, and provides hooks to the user // to read the state of any of the sequentially numbered // controls associated with that device. // // Each control can return a value ranging from -1 to 1, // reflecting the current position of the control within // its total range of motion. // // The user may choose up to two analog controls to // place on the data graph as the two channels of an // xy datagram, similarly to the way a mouse places its // position data. In this way, an AnalogNode may be // used in place of a mouse. //////////////////////////////////////////////////////////////////// class EXPCL_PANDA AnalogNode : public DataNode { PUBLISHED: AnalogNode(ClientBase *client, const string &device_name); virtual ~AnalogNode(); INLINE bool is_valid() const; INLINE int get_num_controls() const; INLINE double get_control_state(int index) const; INLINE bool is_control_known(int index) const; INLINE void set_output(int channel, int index, bool flip); INLINE void clear_output(int channel); INLINE int get_output(int channel) const; INLINE bool is_output_flipped(int channel) const; public: virtual void write(ostream &out, int indent_level = 0) const; private: class OutputData { public: INLINE OutputData(); int _index; bool _flip; }; enum { max_outputs = 2 }; OutputData _outputs[max_outputs]; PT(ClientAnalogDevice) _analog; protected: // Inherited from DataNode virtual void do_transmit_data(const DataNodeTransmit &input, DataNodeTransmit &output); private: // outputs int _xy_output; PT(EventStoreVec2) _xy; public: static TypeHandle get_class_type() { return _type_handle; } static void init_type() { DataNode::init_type(); register_type(_type_handle, "AnalogNode", DataNode::get_class_type()); } virtual TypeHandle get_type() const { return get_class_type(); } virtual TypeHandle force_init_type() {init_type(); return get_class_type();} private: static TypeHandle _type_handle; }; #include "analogNode.I" #endif