1 | /* * * * * * * * * * * * * * * * * * * * * * * * * * * *
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2 | * *
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3 | * --<--<-- A fast simulator --<--<-- *
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4 | * / --<--<-- of particle --<--<-- *
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5 | * ----HECTOR----< *
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6 | * \ -->-->-- transport through -->-->-- *
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7 | * -->-->-- generic beamlines -->-->-- *
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8 | * *
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9 | * JINST 2:P09005 (2007) *
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10 | * X Rouby, J de Favereau, K Piotrzkowski (CP3) *
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11 | * http://www.fynu.ucl.ac.be/hector.html *
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12 | * *
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13 | * Center for Cosmology, Particle Physics and Phenomenology *
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14 | * Universite catholique de Louvain *
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15 | * Louvain-la-Neuve, Belgium *
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16 | * *
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17 | * * * * * * * * * * * * * * * * * * * * * * * * * * * */
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18 |
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19 | /// \file H_Aperture.cc
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20 | /// \brief Classes aiming at simulating the aperture of the LHC beamline elements.
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21 |
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22 | // C++ #includes
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23 | #include <iostream>
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24 |
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25 | // local #includes
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26 | #include "H_Aperture.h"
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27 | using namespace std;
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28 |
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29 | H_Aperture::H_Aperture() :
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30 | type_(NONE), x1(0), x2(0), x3(0), x4(0), fx(0), fy(0), aptypestring(getApertureString()) {
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31 | }
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32 |
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33 | H_Aperture::H_Aperture(const int dtype, const float size1, const float size2, const float size3, const float size4, const float posx, const float posy) :
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34 | type_(dtype), x1(size1), x2(size2), x3(size3), x4(size4), fx(posx), fy(posy), aptypestring(getApertureString()) {
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35 | /// @param dtype defines the aperture shape
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36 | /// @param size1, size2, size3, size4 are the geometrical sizes (length/width or great/small radii) in m
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37 | /// @param posx, posy are the (x,y) coordinates of the center of the aperture [m]
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38 | }
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39 |
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40 | H_Aperture::H_Aperture(const H_Aperture& ap) :
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41 | type_(ap.type_), x1(ap.x1), x2(ap.x2), x3(ap.x3), x4(ap.x4), fx(ap.fx), fy(ap.fy), aptypestring(ap.aptypestring) {
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42 | }
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43 |
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44 | H_Aperture& H_Aperture::operator=(const H_Aperture& ap) {
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45 | if(this==&ap) return *this;
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46 | type_ = ap.type_;
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47 | x1 = ap.x1;
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48 | x2 = ap.x2;
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49 | x3 = ap.x3;
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50 | x4 = ap.x4;
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51 | fx = ap.fx;
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52 | fy = ap.fy;
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53 | aptypestring = ap.aptypestring;
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54 | return *this;
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55 | }
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56 |
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57 | std::ostream& operator<< (std::ostream& os, const H_Aperture& ap) {
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58 | os << "Aperture shape:" << ap.aptypestring << ", parameters "<<ap.x1<<", "<<ap.x2<<", "<<ap.x3<<", "<<ap.x4<<endl;
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59 | os << " \t Center : " << ap.fx << "," << ap.fy << endl;
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60 | return os;
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61 | }
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62 |
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63 | void H_Aperture::printProperties() const {
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64 | cout << *this;
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65 | return;
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66 | }
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67 |
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68 | void H_Aperture::setPosition(const float posx, const float posy) {
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69 | /// @param posx, posy are the (x,y) coordinates of the center of the apertures [m]
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70 | // posx, posy, fx, fy = [m]
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71 | fx = posx;
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72 | fy = posy;
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73 | return;
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74 | }
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75 |
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76 | bool H_Aperture::isInside(const float , const float ) const {
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77 | /// @param x, y are the (x,y) coordinates of the proton, in [m]
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78 | //cout << "aperture::isInside" << endl;
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79 | return false;
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80 | }
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81 |
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82 |
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83 | /*void H_Aperture::setApertureString() {
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84 | switch (type_) {
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85 | case NONE: aptypestring = NONENAME; break;
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86 | case RECTANGULAR: aptypestring = RECTANGULARNAME; break;
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87 | case ELLIPTIC: aptypestring = ELLIPTICNAME; break;
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88 | case CIRCULAR: aptypestring = CIRCULARNAME; break;
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89 | case RECTELLIPSE: aptypestring = RECTELLIPSENAME; break;
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90 | default: aptypestring = NONENAME; break;
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91 | }
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92 | }
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93 | */
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94 |
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95 | const string H_Aperture::getApertureString() const {
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96 | string str;
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97 | switch (type_) {
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98 | case NONE: str = NONENAME; break;
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99 | case RECTANGULAR: str = RECTANGULARNAME; break;
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100 | case ELLIPTIC: str = ELLIPTICNAME; break;
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101 | case CIRCULAR: str = CIRCULARNAME; break;
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102 | case RECTELLIPSE: str = RECTELLIPSENAME; break;
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103 | default: str = NONENAME; break;
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104 | }
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105 | return str;
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106 | }
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107 |
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