mirror of
https://github.com/worldforge/cyphesis
synced 2026-08-13 12:26:04 -04:00
108 lines
3.8 KiB
C++
108 lines
3.8 KiB
C++
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/*
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Copyright (C) 2018 Erik Ogenvik
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 2 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, write to the Free Software
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Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
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*/
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#include "CyPy_Physics.h"
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#include "CyPy_Location.h"
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#include "CyPy_Vector3D.h"
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#include "CyPy_Point3D.h"
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#include "CyPy_Quaternion.h"
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#include "CyPy_Axisbox.h"
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CyPy_Physics::CyPy_Physics() : ExtensionModule("physics")
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{
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CyPy_Vector3D::init_type();
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CyPy_Point3D::init_type();
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CyPy_Quaternion::init_type();
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CyPy_Axisbox::init_type();
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add_varargs_method("distance_to", &CyPy_Physics::distance_to, "");
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add_varargs_method("square_distance", &CyPy_Physics::square_distance, "");
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add_varargs_method("square_horizontal_distance", &CyPy_Physics::square_horizontal_distance, "");
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add_varargs_method("square_horizontal_edge_distance", &CyPy_Physics::square_horizontal_edge_distance, "");
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initialize("Physics");
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Py::Dict d(moduleDictionary());
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d["Vector3D"] = CyPy_Vector3D::type();
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d["Point3D"] = CyPy_Point3D::type();
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d["Quaternion"] = CyPy_Quaternion::type();
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d["BBox"] = CyPy_Axisbox::type();
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}
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Py::Object CyPy_Physics::distance_to(const Py::Tuple& args)
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{
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args.verify_length(2, 2);
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if (!CyPy_Location::check(args[0]) || !CyPy_Location::check(args[1])) {
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throw Py::TypeError("Arg Location required");
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}
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Location& firstLoc = Py::PythonClassObject<CyPy_Location>(args[0]).getCxxObject()->m_value;
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Location& secondLoc = Py::PythonClassObject<CyPy_Location>(args[1]).getCxxObject()->m_value;
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return CyPy_Vector3D::wrap(distanceTo(firstLoc, secondLoc));
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}
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Py::Object CyPy_Physics::square_distance(const Py::Tuple& args)
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{
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args.verify_length(2, 2);
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if (!CyPy_Location::check(args[0]) || !CyPy_Location::check(args[1])) {
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throw Py::TypeError("Arg Location required");
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}
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Location& firstLoc = Py::PythonClassObject<CyPy_Location>(args[0]).getCxxObject()->m_value;
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Location& secondLoc = Py::PythonClassObject<CyPy_Location>(args[1]).getCxxObject()->m_value;
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return Py::Float(squareDistance(firstLoc, secondLoc));
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}
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Py::Object CyPy_Physics::square_horizontal_distance(const Py::Tuple& args)
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{
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args.verify_length(2, 2);
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if (!CyPy_Location::check(args[0]) || !CyPy_Location::check(args[1])) {
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throw Py::TypeError("Arg Location required");
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}
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Location& firstLoc = Py::PythonClassObject<CyPy_Location>(args[0]).getCxxObject()->m_value;
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Location& secondLoc = Py::PythonClassObject<CyPy_Location>(args[1]).getCxxObject()->m_value;
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return Py::Float(squareHorizontalDistance(firstLoc, secondLoc));
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}
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/**
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* Measures the horizontal distance between the edges of two entities.
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*/
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Py::Object CyPy_Physics::square_horizontal_edge_distance(const Py::Tuple& args)
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{
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args.verify_length(2, 2);
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if (!CyPy_Location::check(args[0]) || !CyPy_Location::check(args[1])) {
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throw Py::TypeError("Arg Location required");
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}
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Location& firstLoc = Py::PythonClassObject<CyPy_Location>(args[0]).getCxxObject()->m_value;
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Location& secondLoc = Py::PythonClassObject<CyPy_Location>(args[1]).getCxxObject()->m_value;
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return Py::Float(squareHorizontalDistance(firstLoc, secondLoc) -
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boxSquareHorizontalBoundingRadius(firstLoc.m_bBox) -
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boxSquareHorizontalBoundingRadius(secondLoc.m_bBox));
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}
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