source: trunk/source/materials/src/G4MaterialPropertyVector.cc @ 1315

Last change on this file since 1315 was 1315, checked in by garnier, 14 years ago

update geant4-09-04-beta-cand-01 interfaces-V09-03-09 vis-V09-03-08

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27// $Id: G4MaterialPropertyVector.cc,v 1.18 2010/04/22 21:15:19 gum Exp $
28// GEANT4 tag $Name: geant4-09-04-beta-cand-01 $
29//
30//
31////////////////////////////////////////////////////////////////////////
32// G4MaterialPropertyVector Class Implementation
33////////////////////////////////////////////////////////////////////////
34//
35// File:        G4MaterialPropertyVector.cc
36// Version:     1.0
37// Created:     1996-02-08
38// Author:      Juliet Armstrong
39// Updated:     1997-03-25 by Peter Gumplinger
40//              > cosmetics (only)
41// mail:        gum@triumf.ca
42//
43////////////////////////////////////////////////////////////////////////
44
45#include "G4MaterialPropertyVector.hh"
46
47// = operator
48// ----------
49//
50G4MaterialPropertyVector&
51G4MaterialPropertyVector::operator =(const G4MaterialPropertyVector& right)
52{
53  if (this == &right)  { return *this; }
54
55  // clear the vector of current contents
56
57  MPV.clear();
58
59  // create an actual copy (instead of the shallow copy that the
60  // assignment operator defaults to for G4RWTPtrSortedVector)
61
62  NumEntries = 0;
63  CurrentEntry = -1;
64
65  for (G4int i = 0 ; i < right.NumEntries; i++)
66  {
67    G4MPVEntry *newElement = new G4MPVEntry(right.GetEntry(i));
68    MPV.push_back(newElement);
69    NumEntries++;
70  }
71
72  return *this;
73}
74
75/////////////////
76// Constructors
77/////////////////
78
79G4MaterialPropertyVector::
80G4MaterialPropertyVector(G4double *PhotonEnergies,
81                         G4double *PropertyValues,
82                         G4int     NumElements)
83{
84  NumEntries = 0;
85  CurrentEntry = -1;
86
87  // create a vector filling it with the values
88  // from PhotonEnergies[] and PropertyValues[]
89
90  for(G4int i = 0; i < NumElements; i++)
91  {
92    AddElement(PhotonEnergies[i], PropertyValues[i]);
93  }
94}
95
96G4MaterialPropertyVector::
97G4MaterialPropertyVector(const G4MaterialPropertyVector &right)
98{
99  // create an actual copy (instead of the shallow copy that the
100  // assignment operator defaults to for G4RWTPtrSortedVector)
101
102  NumEntries = 0;
103  CurrentEntry = -1;
104
105  for (G4int i = 0 ; i < right.NumEntries; i++)
106  {
107    G4MPVEntry *newElement = new G4MPVEntry(right.GetEntry(i));
108    MPV.push_back(newElement);
109    NumEntries++;
110  }
111}
112
113////////////////
114// Destructor
115////////////////
116
117G4MaterialPropertyVector::~G4MaterialPropertyVector()
118{
119  MPV.clear();
120}
121
122////////////
123// Methods
124////////////
125
126void G4MaterialPropertyVector::RemoveElement(G4double aPhotonEnergy)
127{
128  G4MPVEntry *newElement;
129  G4MPVEntry *success=0;
130
131  newElement = new G4MPVEntry(aPhotonEnergy, DBL_MAX);
132
133  std::vector<G4MPVEntry*>::iterator i;
134  for (i = MPV.begin(); i != MPV.end(); i++)
135  {
136    if (**i == *newElement) { success = *i; break; }
137  }
138  //  success = MPV.remove(newElement);
139
140  if(success == 0)
141  {
142    G4Exception("G4MaterialPropertyVector::RemoveElement()", "NotFound",
143                FatalException, "Element not found !");
144    return;
145  }
146  else
147  {
148    MPV.erase(i); // remove done here.
149  }
150
151  NumEntries--;
152}
153
154G4double G4MaterialPropertyVector::GetProperty(G4double aPhotonEnergy) const
155{
156  G4int left, right;
157  G4double ratio1, ratio2, pmright, pmleft, InterpolatedValue;
158 
159  /////////////////////////
160  // Establish table range
161  /////////////////////////
162
163  G4double PMmin   = MPV.front()->GetPhotonEnergy(); 
164  G4double minProp = MPV.front()->GetProperty(); 
165  G4double PMmax   = MPV.back() ->GetPhotonEnergy();
166  G4double maxProp = MPV.back() ->GetProperty();
167
168  ///////////////////////////////////////////
169  // Does value fall outside range of table?
170  ///////////////////////////////////////////
171
172  if (aPhotonEnergy < PMmin) 
173  {
174    G4Exception("G4MaterialPropertyVector::GetProperty()", "OutOfRange",
175                JustWarning, "Attempt to retrieve property below range !");
176    G4cout << "   aPhotonEnergy = " <<  aPhotonEnergy/MeV
177           << " [MeV]  PMmin = " << PMmin << " [MeV]" << G4endl;         
178    return minProp; 
179  } 
180
181        if (aPhotonEnergy > PMmax)
182  {
183    G4Exception("G4MaterialPropertyVector::GetProperty()", "OutOfRange",
184                JustWarning, "Attempt to retrieve property above range !");
185    G4cout << "   aPhotonEnergy = " <<  aPhotonEnergy/MeV
186           << " [MeV]  PMmax = " << PMmax << " [MeV]" << G4endl;         
187    return maxProp;
188  } 
189
190  //////////////////////////////
191  // Return interpolated value
192  //////////////////////////////
193
194  GetAdjacentBins(aPhotonEnergy, &left, &right);
195  pmleft = MPV[left]->GetPhotonEnergy();
196  pmright = MPV[right]->GetPhotonEnergy();
197  ratio1 = (aPhotonEnergy-pmleft)/(pmright-pmleft);
198  ratio2 = 1 - ratio1;
199  InterpolatedValue = MPV[left]->GetProperty()*ratio2 + 
200                      MPV[right]->GetProperty()*ratio1;
201  return InterpolatedValue;
202}
203
204G4double G4MaterialPropertyVector::GetPhotonEnergy(G4double aProperty) const
205{
206  //         ***NB***
207  // Assumes that the property is an increasing function of photon energy
208  // (e.g. refraction index)
209  //         ***NB***
210  //
211  // Returns the photon energy corresponding to the property value passed in.
212  // If several photon energy values correspond to the value passed in, the
213  // function returns the first photon energy in the vector that corresponds
214  // to that value.
215
216  G4int left, right, mid;
217  G4double ratio1, ratio2, pright, pleft;
218
219  //////////////////////////
220  // Establish Table range
221  //////////////////////////
222
223  G4double PropMin = MPV.front()->GetProperty();
224  G4double PMmin   = MPV.front()->GetPhotonEnergy();
225  G4double PropMax = MPV.back() ->GetProperty();
226  G4double PMmax   = MPV.back() ->GetPhotonEnergy();
227
228  ///////////////////////////////////////////
229  // Does value fall outside range of table?
230  ///////////////////////////////////////////
231
232  if (aProperty < PropMin) 
233  {
234    G4Exception("G4MaterialPropertyVector::GetPhotonEnergy()",
235                "OutOfRange", JustWarning,
236                "Attempt to retrieve photon energy out of range");
237    return PMmin;
238  }
239
240  if (aProperty > PropMax)
241  {
242    G4Exception("G4MaterialPropertyVector::GetPhotonEnergy()",
243                "OutOfRange", JustWarning,
244                "Attempt to retrieve photon energy out of range");
245    return PMmax;
246  }
247
248  //////////////////////////////
249  // Return interpolated value
250  //////////////////////////////
251
252  left = 0;
253  right = MPV.size(); // was .entries()
254
255  // find values in bins on either side of aProperty
256 
257  do
258  {
259    mid = (left + right)/2;
260    if (MPV[mid]->GetProperty() == aProperty)
261    {
262      // Get first photon energy value in vector that
263      // corresponds to property value 
264
265      while ((mid-1 >= 0) && (MPV[mid-1]->GetProperty() == aProperty))
266      {
267          mid--;
268      }
269      return MPV[mid]->GetPhotonEnergy();
270    }
271    if (MPV[mid]->GetProperty() < aProperty)
272    {
273      left = mid;
274    }
275    else
276    {
277      right = mid;
278    }
279  } while ((right - left) > 1);
280
281  pleft = MPV[left]->GetProperty();
282  pright = MPV[right]->GetProperty();
283  ratio1 = (aProperty - pleft) / (pright - pleft);
284  ratio2 = 1 - ratio1;
285
286  return  (MPV[left]->GetPhotonEnergy()*ratio2 +
287           MPV[right]->GetPhotonEnergy()*ratio1);
288}
289
290void G4MaterialPropertyVector::DumpVector()
291{
292  if (MPV.empty())
293  {
294    G4Exception("G4MaterialPropertyVector::DumpVector()", "EmptyVector",
295                JustWarning, "Nothing to dump. Vector is empty !");
296  }
297  else
298  {
299    for (G4int i = 0; i < NumEntries; i++)
300    {
301      G4cout << "MPV["<< i << "]: ";
302      MPV[i]->DumpEntry();
303    }
304    G4cout << " Done DumpVector of " << NumEntries << " entries." << G4endl;
305  }
306} 
307
308void G4MaterialPropertyVector::GetAdjacentBins(G4double aPhotonEnergy,
309                                               G4int *left, G4int *right) const
310{
311  G4int mid;
312
313  *left = 0;
314  *right = (MPV.size() - 1); // was .entries()
315
316  // find values in bins on either side of aPhotonEnergy
317
318  do
319  {
320    mid = (*left + *right)/2;
321    if (MPV[mid]->GetPhotonEnergy() <= aPhotonEnergy) 
322    {
323      *left = mid;
324    }
325    else
326    {
327      *right = mid;
328    }
329  } while ((*right - *left) > 1);
330}
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