source: trunk/environments/g4py/source/global/pyG4ThreeVector.cc@ 1344

Last change on this file since 1344 was 1337, checked in by garnier, 15 years ago

tag geant4.9.4 beta 1 + modifs locales

File size: 8.5 KB
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1//
2// ********************************************************************
3// * License and Disclaimer *
4// * *
5// * The Geant4 software is copyright of the Copyright Holders of *
6// * the Geant4 Collaboration. It is provided under the terms and *
7// * conditions of the Geant4 Software License, included in the file *
8// * LICENSE and available at http://cern.ch/geant4/license . These *
9// * include a list of copyright holders. *
10// * *
11// * Neither the authors of this software system, nor their employing *
12// * institutes,nor the agencies providing financial support for this *
13// * work make any representation or warranty, express or implied, *
14// * regarding this software system or assume any liability for its *
15// * use. Please see the license in the file LICENSE and URL above *
16// * for the full disclaimer and the limitation of liability. *
17// * *
18// * This code implementation is the result of the scientific and *
19// * technical work of the GEANT4 collaboration. *
20// * By using, copying, modifying or distributing the software (or *
21// * any work based on the software) you agree to acknowledge its *
22// * use in resulting scientific publications, and indicate your *
23// * acceptance of all terms of the Geant4 Software license. *
24// ********************************************************************
25//
26// $Id: pyG4ThreeVector.cc,v 1.5 2006/06/29 15:33:24 gunter Exp $
27// $Name: geant4-09-04-beta-01 $
28// ====================================================================
29// pyG4ThreeVector.cc
30//
31// 2005 Q
32// ====================================================================
33#include <boost/python.hpp>
34#include "G4ThreeVector.hh"
35#include "G4RotationMatrix.hh"
36
37using namespace boost::python;
38using namespace CLHEP;
39
40typedef G4ThreeVector XXX; // ...
41
42// ====================================================================
43// thin wrappers
44// ====================================================================
45namespace pyG4ThreeVector {
46
47G4double(XXX::*f1_theta)() const= &XXX::theta;
48G4double(XXX::*f2_theta)(const XXX&) const = &XXX::theta;
49
50G4double(XXX::*f1_cosTheta)() const= &XXX::cosTheta;
51G4double(XXX::*f2_cosTheta)(const XXX&) const = &XXX::cosTheta;
52
53G4double(XXX::*f1_cos2Theta)() const= &XXX::cos2Theta;
54G4double(XXX::*f2_cos2Theta)(const XXX&) const = &XXX::cos2Theta;
55
56G4double(XXX::*f1_perp2)() const= &XXX::perp2;
57G4double(XXX::*f2_perp2)(const XXX&) const = &XXX::perp2;
58
59G4double(XXX::*f1_perp)() const= &XXX::perp;
60G4double(XXX::*f2_perp)(const XXX&) const = &XXX::perp;
61
62G4double(XXX::*f1_angle)() const= &XXX::angle;
63G4double(XXX::*f2_angle)(const XXX&) const = &XXX::angle;
64
65G4double(XXX::*f1_eta)() const= &XXX::eta;
66G4double(XXX::*f2_eta)(const XXX&) const = &XXX::eta;
67
68XXX(XXX::*f1_project)() const= &XXX::project;
69XXX(XXX::*f2_project)(const XXX&) const = &XXX::project;
70
71XXX(XXX::*f1_perpPart)() const= &XXX::perpPart;
72XXX(XXX::*f2_perpPart)(const XXX&) const = &XXX::perpPart;
73
74G4double(XXX::*f1_rapidity)() const= &XXX::rapidity;
75G4double(XXX::*f2_rapidity)(const XXX&) const = &XXX::rapidity;
76
77G4double(XXX::*f1_polarAngle)(const XXX&) const= &XXX::polarAngle;
78G4double(XXX::*f2_polarAngle)(const XXX&, const XXX&) const = &XXX::polarAngle;
79
80G4double(XXX::*f1_azimAngle)(const XXX&) const= &XXX::azimAngle;
81G4double(XXX::*f2_azimAngle)(const XXX&, const XXX&) const = &XXX::azimAngle;
82
83XXX&(XXX::*f1_rotate)(G4double, const XXX&)= &XXX::rotate;
84XXX&(XXX::*f2_rotate)(const XXX&, G4double)= &XXX::rotate;
85XXX&(XXX::*f3_rotate)(const HepAxisAngle&)= &XXX::rotate;
86XXX&(XXX::*f4_rotate)(const HepEulerAngles&)= &XXX::rotate;
87XXX&(XXX::*f5_rotate)(G4double, G4double, G4double)= &XXX::rotate;
88
89BOOST_PYTHON_MEMBER_FUNCTION_OVERLOADS(f_isNear, isNear, 1, 2);
90BOOST_PYTHON_MEMBER_FUNCTION_OVERLOADS(f_isParallel, isParallel, 1, 2);
91BOOST_PYTHON_MEMBER_FUNCTION_OVERLOADS(f_isOrthogonal, isOrthogonal, 1, 2);
92
93};
94
95using namespace pyG4ThreeVector;
96
97// ====================================================================
98// module definition
99// ====================================================================
100void export_G4ThreeVector()
101{
102 class_<G4ThreeVector>("G4ThreeVector", "general 3-vector")
103 // constructors
104 .def(init<G4double>())
105 .def(init<G4double, G4double>())
106 .def(init<G4double, G4double, G4double>())
107 .def(init<const XXX&>())
108
109 // property
110 .add_property("x", &XXX::x, &XXX::setX)
111 .add_property("y", &XXX::y, &XXX::setY)
112 .add_property("z", &XXX::z, &XXX::setZ)
113
114 // methods
115 .def("set", &XXX::set)
116 .def("phi", &XXX::phi)
117 .def("mag", &XXX::mag)
118 .def("mag2", &XXX::mag2)
119 .def("setPhi", &XXX::setPhi)
120 .def("setTheta", &XXX::setTheta)
121 .def("setMag", &XXX::setMag)
122 .def("setPerp", &XXX::setPerp)
123 .def("setCylTheta", &XXX::setCylTheta)
124 .def("howNear", &XXX::howNear)
125 .def("deltaR", &XXX::deltaR)
126 .def("unit", &XXX::unit)
127 .def("orthogonal", &XXX::orthogonal)
128 .def("dot", &XXX::dot)
129 .def("cross", &XXX::cross)
130 .def("pseudoRapidity", &XXX::pseudoRapidity)
131 .def("setEta", &XXX::setEta)
132 .def("setCylEta",&XXX::setCylEta)
133 .def("setRThetaPhi", &XXX::setRThetaPhi)
134 .def("setREtaPhi", &XXX::setREtaPhi)
135 .def("setRhoPhiZ", &XXX::setRhoPhiZ)
136 .def("setRhoPhiEta", &XXX::setRhoPhiEta)
137 .def("getX", &XXX::getX)
138 .def("getY", &XXX::getY)
139 .def("getZ", &XXX::getZ)
140 .def("getR", &XXX::getR)
141 .def("getTheta", &XXX::getTheta)
142 .def("getPhi", &XXX::getPhi)
143 .def("r", &XXX::r)
144 .def("rho", &XXX::rho)
145 .def("getRho", &XXX::getRho)
146 .def("getEta", &XXX::getEta)
147 .def("setR", &XXX::setR)
148 .def("setRho", &XXX::setRho)
149 .def("compare", &XXX::compare)
150 .def("diff2", &XXX::diff2)
151 .def("setTolerance", &XXX::setTolerance)
152 .staticmethod("setTolerance")
153 .def("getTolerance", &XXX::getTolerance)
154 .staticmethod("getTolerance")
155 .def("isNear", &XXX::isNear, f_isNear())
156 .def("isParallel", &XXX::isParallel, f_isParallel())
157 .def("isOrthogonal", &XXX::isOrthogonal, f_isOrthogonal())
158 .def("howParallel", &XXX::howParallel)
159 .def("howOrthogonal", &XXX::howOrthogonal)
160 .def("beta", &XXX::beta)
161 .def("gamma", &XXX::gamma)
162 .def("deltaPhi", &XXX::deltaPhi)
163 .def("coLinearRapidity", &XXX::coLinearRapidity)
164 .def("theta", f1_theta)
165 .def("theta", f2_theta)
166 .def("cosTheta", f1_cosTheta)
167 .def("cosTheta", f2_cosTheta)
168 .def("cos2Theta", f1_cos2Theta)
169 .def("cos2Theta", f2_cos2Theta)
170 .def("perp2", f1_perp2)
171 .def("perp2", f2_perp2)
172 .def("angle", f1_angle)
173 .def("angle", f2_angle)
174 .def("eta", f1_eta)
175 .def("eta", f2_eta)
176 .def("project", f1_project)
177 .def("project", f2_project)
178 .def("perpPart", f1_perpPart)
179 .def("perpPart", f2_perpPart)
180 .def("rapidity", f1_rapidity)
181 .def("rapidity", f2_rapidity)
182 .def("polarAngle",f1_polarAngle)
183 .def("polarAngle",f2_polarAngle)
184 .def("azimAngle", f1_azimAngle)
185 .def("azimAngle", f2_azimAngle)
186 .def("rotateX", &XXX::rotateX,
187 return_value_policy<reference_existing_object>())
188 .def("rotateY", &XXX::rotateY,
189 return_value_policy<reference_existing_object>())
190 .def("rotateZ", &XXX::rotateZ,
191 return_value_policy<reference_existing_object>())
192 .def("rotateUz", &XXX::rotateUz,
193 return_value_policy<reference_existing_object>())
194 .def("transform",&XXX::transform,
195 return_value_policy<reference_existing_object>())
196 .def("rotate", f1_rotate,
197 return_value_policy<reference_existing_object>())
198 .def("rotate", f2_rotate,
199 return_value_policy<reference_existing_object>())
200 .def("rotate", f5_rotate,
201 return_value_policy<reference_existing_object>())
202
203 // operators
204 .def(self_ns::str(self))
205 .def(self == self)
206 .def(self != self)
207 .def(self += self)
208 .def(self -= self)
209 .def(self - self)
210 .def(self + self)
211 .def(self * self)
212 .def(self * G4double())
213 .def(self / G4double())
214 .def(G4double() * self)
215 .def(self *= G4double())
216 .def(self /= G4double())
217 .def(self > self)
218 .def(self < self)
219 .def(self >= self)
220 .def(self <= self)
221 ;
222}
223
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