OPAL (Object Oriented Parallel Accelerator Library) 2024.2
OPAL
FM2DDynamic.cpp
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2#include "Fields/Fieldmap.hpp"
3#include "Physics/Physics.h"
4#include "Physics/Units.h"
6#include "Utilities/Util.h"
7
8#include <fstream>
9#include <ios>
10#include <cmath>
11
12
13_FM2DDynamic::_FM2DDynamic(const std::string& filename)
14 : _Fieldmap(filename),
15 FieldstrengthEz_m(nullptr),
16 FieldstrengthEr_m(nullptr),
17 FieldstrengthBt_m(nullptr) {
18 std::ifstream file;
19 std::string tmpString;
20 double tmpDouble;
21
23
24 // open field map, parse it and disable element on error
25 file.open(Filename_m.c_str());
26 if(file.good()) {
27 bool parsing_passed = true;
28 try {
29 parsing_passed = interpretLine<std::string, std::string>(file, tmpString, tmpString);
30 } catch (GeneralClassicException &e) {
31 parsing_passed = interpretLine<std::string, std::string, std::string>(file, tmpString, tmpString, tmpString);
32
33 tmpString = Util::toUpper(tmpString);
34 if (tmpString != "TRUE" &&
35 tmpString != "FALSE")
36 throw GeneralClassicException("_FM2DDynamic::_FM2DDynamic",
37 "The third string on the first line of 2D field "
38 "maps has to be either TRUE or FALSE");
39
40 normalize_m = (tmpString == "TRUE");
41 }
42
43 if(tmpString == "ZX") {
44 swap_m = true;
45 parsing_passed = parsing_passed &&
47 parsing_passed = parsing_passed &&
49 parsing_passed = parsing_passed &&
51 } else if(tmpString == "XZ") {
52 swap_m = false;
53 parsing_passed = parsing_passed &&
55 parsing_passed = parsing_passed &&
57 parsing_passed = parsing_passed &&
59 } else {
60 std::cerr << "unknown orientation of 2D dynamic fieldmap" << std::endl;
61 parsing_passed = false;
62 zbegin_m = 0.0;
63 zend_m = -1e-3;
64 }
65
66 for(long i = 0; (i < (num_gridpz_m + 1) * (num_gridpr_m + 1)) && parsing_passed; ++ i) {
67 parsing_passed = parsing_passed && interpretLine<double, double, double, double>(file, tmpDouble, tmpDouble, tmpDouble, tmpDouble);
68 }
69
70 parsing_passed = parsing_passed &&
71 interpreteEOF(file);
72
73 file.close();
74 lines_read_m = 0;
75
76 if(!parsing_passed) {
78 zend_m = zbegin_m - 1e-3;
79 throw GeneralClassicException("_FM2DDynamic::_FM2DDynamic",
80 "An error occured when reading the fieldmap '" + Filename_m + "'");
81 } else {
82 // convert MHz to Hz and frequency to angular frequency
84
85 // convert cm to m
90
93
94 // num spacings -> num grid points
97 }
98 } else {
99 noFieldmapWarning();
100 zbegin_m = 0.0;
101 zend_m = -1e-3;
102 }
103}
104
105
109
110FM2DDynamic _FM2DDynamic::create(const std::string& filename)
111{
112 return FM2DDynamic(new _FM2DDynamic(filename));
113}
114
116 if(FieldstrengthEz_m == nullptr) {
117 // declare variables and allocate memory
118 std::ifstream in;
119 std::string tmpString;
120 double tmpDouble, Ezmax = 0.0;
121
125
126 // read in field map and parse it
127 in.open(Filename_m.c_str());
128 getLine(in, tmpString);
129 getLine(in, tmpString);
130 getLine(in, tmpString);
131 getLine(in, tmpString);
132
133 if(swap_m) {
134 for(int i = 0; i < num_gridpz_m; i++) {
135 for(int j = 0; j < num_gridpr_m; j++) {
140 tmpDouble);
141 }
142 }
143 } else {
144 for(int j = 0; j < num_gridpr_m; j++) {
145 for(int i = 0; i < num_gridpz_m; i++) {
149 tmpDouble,
151 }
152 }
153 }
154
155 in.close();
156
157
158 if (normalize_m) {
159 // find maximum field
160 for(int i = 0; i < num_gridpz_m; ++ i) {
161 if(std::abs(FieldstrengthEz_m[i]) > Ezmax) {
162 Ezmax = std::abs(FieldstrengthEz_m[i]);
163 }
164 }
165 } else {
166 Ezmax = 1.0;
167 }
168
169 for(int i = 0; i < num_gridpr_m * num_gridpz_m; i++) {
170 FieldstrengthEz_m[i] *= 1.e6 / Ezmax; // conversion MV/m to V/m and normalization
171 FieldstrengthEr_m[i] *= 1.e6 / Ezmax;
172 FieldstrengthBt_m[i] *= Physics::mu_0 / Ezmax; // H -> B
173 }
174
175 INFOMSG(level3 << typeset_msg("read in fieldmap '" + Filename_m + "'", "info") << "\n"
176 << endl);
177 }
178}
179
181 if(FieldstrengthEz_m != nullptr) {
182 delete[] FieldstrengthEz_m;
183 FieldstrengthEz_m = nullptr;
184 delete[] FieldstrengthEr_m;
185 FieldstrengthEr_m = nullptr;
186 delete[] FieldstrengthBt_m;
187 FieldstrengthBt_m = nullptr;
188 }
189}
190
192 // do bi-linear interpolation
193 const double RR = std::sqrt(R(0) * R(0) + R(1) * R(1));
194
195 const int indexr = (int)std::floor(RR / hr_m);
196 const double leverr = RR / hr_m - indexr;
197
198 const int indexz = (int)std::floor((R(2) - zbegin_m) / hz_m);
199 const double leverz = (R(2) - zbegin_m) / hz_m - indexz;
200
201 if((indexz < 0) || (indexz + 2 > num_gridpz_m))
202 return false;
203 if(indexr + 2 > num_gridpr_m)
204 return true;
205
206 const int index1 = indexz + indexr * num_gridpz_m;
207 const int index2 = index1 + num_gridpz_m;
208
209 double EfieldR = (1.0 - leverz) * (1.0 - leverr) * FieldstrengthEr_m[index1]
210 + leverz * (1.0 - leverr) * FieldstrengthEr_m[index1 + 1]
211 + (1.0 - leverz) * leverr * FieldstrengthEr_m[index2]
212 + leverz * leverr * FieldstrengthEr_m[index2 + 1];
213
214 double EfieldZ = (1.0 - leverz) * (1.0 - leverr) * FieldstrengthEz_m[index1]
215 + leverz * (1.0 - leverr) * FieldstrengthEz_m[index1 + 1]
216 + (1.0 - leverz) * leverr * FieldstrengthEz_m[index2]
217 + leverz * leverr * FieldstrengthEz_m[index2 + 1];
218
219 double BfieldT = (1.0 - leverz) * (1.0 - leverr) * FieldstrengthBt_m[index1]
220 + leverz * (1.0 - leverr) * FieldstrengthBt_m[index1 + 1]
221 + (1.0 - leverz) * leverr * FieldstrengthBt_m[index2]
222 + leverz * leverr * FieldstrengthBt_m[index2 + 1];
223
224 if(RR > 1e-10) {
225 E(0) += EfieldR * R(0) / RR;
226 E(1) += EfieldR * R(1) / RR;
227 B(0) -= BfieldT * R(1) / RR;
228 B(1) += BfieldT * R(0) / RR;
229 }
230 E(2) += EfieldZ;
231
232 return false;
233}
234
235bool _FM2DDynamic::getFieldDerivative(const Vector_t &/*R*/, Vector_t &/*E*/, Vector_t &/*B*/, const DiffDirection &/*dir*/) const {
236 return false;
237}
238
239void _FM2DDynamic::getFieldDimensions(double &zBegin, double &zEnd) const {
240 zBegin = zbegin_m;
241 zEnd = zend_m;
242}
243void _FM2DDynamic::getFieldDimensions(double &/*xIni*/, double &/*xFinal*/, double &/*yIni*/, double &/*yFinal*/, double &/*zIni*/, double &/*zFinal*/) const {}
244
246 if(swap_m) swap_m = false;
247 else swap_m = true;
248}
249
251 (*msg) << Filename_m << " (2D dynamic); zini= " << zbegin_m << " m; zfinal= " << zend_m << " m;" << endl;
252}
253
255 return frequency_m;
256}
257
258void _FM2DDynamic::setFrequency(double freq) {
259 frequency_m = freq;
260}
261
262void _FM2DDynamic::getOnaxisEz(std::vector<std::pair<double, double> > & F) {
263 double dz = (zend_m - zbegin_m) / (num_gridpz_m - 1);
264 F.resize(num_gridpz_m);
265
266 for(int i = 0; i < num_gridpz_m; ++ i) {
267 F[i].first = dz * i;
268 F[i].second = FieldstrengthEz_m[i] / 1e6;
269
270 }
271}
std::shared_ptr< _FM2DDynamic > FM2DDynamic
Definition FM2DDynamic.h:56
@ T2DDynamic
Definition Fieldmap.h:25
DiffDirection
Definition Fieldmap.h:55
Inform & endl(Inform &inf)
Definition Inform.cpp:42
Inform & level3(Inform &inf)
Definition Inform.cpp:47
#define INFOMSG(msg)
Definition IpplInfo.h:348
constexpr double two_pi
The value of.
Definition Physics.h:33
constexpr double mu_0
The permeability of vacuum in Vs/Am.
Definition Physics.h:48
constexpr double MHz2Hz
Definition Units.h:113
constexpr double cm2m
Definition Units.h:35
std::string toUpper(const std::string &str)
Definition Util.cpp:147
bool interpreteEOF(std::ifstream &in)
Definition Fieldmap.cpp:555
bool normalize_m
Definition Fieldmap.h:121
static std::string typeset_msg(const std::string &msg, const std::string &title)
Definition Fieldmap.cpp:649
void disableFieldmapWarning()
Definition Fieldmap.cpp:610
void getLine(std::ifstream &in, std::string &buffer)
Definition Fieldmap.h:122
bool interpretLine(std::ifstream &in, S &value, const bool &file_length_known=true)
int lines_read_m
Definition Fieldmap.h:119
std::string Filename_m
Definition Fieldmap.h:118
MapType Type
Definition Fieldmap.h:116
double zbegin_m
Definition FM2DDynamic.h:40
virtual void getOnaxisEz(std::vector< std::pair< double, double > > &F)
friend class _Fieldmap
Definition FM2DDynamic.h:48
virtual bool getFieldDerivative(const Vector_t &R, Vector_t &E, Vector_t &B, const DiffDirection &dir) const
virtual ~_FM2DDynamic()
virtual void setFrequency(double freq)
double rend_m
Definition FM2DDynamic.h:39
double * FieldstrengthBt_m
Definition FM2DDynamic.h:34
_FM2DDynamic(const std::string &filename)
double * FieldstrengthEz_m
Definition FM2DDynamic.h:32
virtual void freeMap()
virtual void getInfo(Inform *msg)
virtual void getFieldDimensions(double &zBegin, double &zEnd) const
static FM2DDynamic create(const std::string &filename)
virtual void swap()
double rbegin_m
Definition FM2DDynamic.h:38
double * FieldstrengthEr_m
Definition FM2DDynamic.h:33
virtual bool getFieldstrength(const Vector_t &R, Vector_t &E, Vector_t &B) const
double frequency_m
Definition FM2DDynamic.h:36
virtual void readMap()
double zend_m
Definition FM2DDynamic.h:41
virtual double getFrequency() const
Vektor< double, 3 > Vector_t