xc
GFunVisualizationAnalysis.h
1 // -*-c++-*-
2 //----------------------------------------------------------------------------
3 // XC program; finite element analysis code
4 // for structural analysis and design.
5 //
6 // Copyright (C) Luis C. Pérez Tato
7 //
8 // This program derives from OpenSees <http://opensees.berkeley.edu>
9 // developed by the «Pacific earthquake engineering research center».
10 //
11 // Except for the restrictions that may arise from the copyright
12 // of the original program (see copyright_opensees.txt)
13 // XC is free software: you can redistribute it and/or modify
14 // it under the terms of the GNU General Public License as published by
15 // the Free Software Foundation, either version 3 of the License, or
16 // (at your option) any later version.
17 //
18 // This software is distributed in the hope that it will be useful, but
19 // WITHOUT ANY WARRANTY; without even the implied warranty of
20 // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
21 // GNU General Public License for more details.
22 //
23 //
24 // You should have received a copy of the GNU General Public License
25 // along with this program.
26 // If not, see <http://www.gnu.org/licenses/>.
27 //----------------------------------------------------------------------------
28 /* ****************************************************************** **
29 ** OpenSees - Open System for Earthquake Engineering Simulation **
30 ** Pacific Earthquake Engineering Research Center **
31 ** **
32 ** **
33 ** (C) Copyright 2001, The Regents of the University of California **
34 ** All Rights Reserved. **
35 ** **
36 ** Commercial use of this program without express permission of the **
37 ** University of California, Berkeley, is strictly prohibited. See **
38 ** file 'COPYRIGHT' in main directory for information on usage and **
39 ** redistribution, and for a DISCLAIMER OF ALL WARRANTIES. **
40 ** **
41 ** Developed by: **
42 ** Frank McKenna (fmckenna@ce.berkeley.edu) **
43 ** Gregory L. Fenves (fenves@ce.berkeley.edu) **
44 ** Filip C. Filippou (filippou@ce.berkeley.edu) **
45 ** **
46 ** Reliability module developed by: **
47 ** Terje Haukaas (haukaas@ce.berkeley.edu) **
48 ** Armen Der Kiureghian (adk@ce.berkeley.edu) **
49 ** **
50 ** ****************************************************************** */
51 
52 // $Revision: 1.3 $
53 // $Date: 2003/10/27 23:45:41 $
54 // $Source: /usr/local/cvs/OpenSees/SRC/reliability/analysis/analysis/GFunVisualizationAnalysis.h,v $
55 
56 
57 //
58 // Written by Terje Haukaas (haukaas@ce.berkeley.edu)
59 //
60 
61 #ifndef GFunVisualizationAnalysis_h
62 #define GFunVisualizationAnalysis_h
63 
64 #include <reliability/analysis/analysis/ReliabilityAnalysis.h>
65 #include <reliability/analysis/designPoint/FindDesignPointAlgorithm.h>
66 #include <reliability/analysis/transformation/ProbabilityTransformation.h>
67 #include <reliability/domain/components/ReliabilityDomain.h>
68 #include <reliability/analysis/meritFunction/MeritFunctionCheck.h>
69 #include <reliability/analysis/convergenceCheck/ReliabilityConvergenceCheck.h>
70 #include <reliability/analysis/rootFinding/RootFinding.h>
71 
72 
73 namespace XC {
74 
75 class GFunEvaluator;
76 class GradGEvaluator;
77 
82 {
83 private:
84 
85  Vector getCurrentAxes12Point(int i, int j);
86  Vector getCurrentAxes3Point(int i, int j);
87  double findGSurface(Vector thePoint);
88  double evaluateGFunction(Vector thePoint, bool printDivision);
89 
90 
91 
92 
93 
94  ReliabilityDomain *theReliabilityDomain;
95  GFunEvaluator *theGFunEvaluator;
96  ProbabilityTransformation *theProbabilityTransformation;
97  MeritFunctionCheck *theMeritFunctionCheck;
98  GradGEvaluator *theGradGEvaluator;
99  ReliabilityConvergenceCheck *theReliabilityConvergenceCheck;
100  Vector *theStartPoint;
101  RootFinding *theRootFindingAlgorithm;
102 
103  std::string outputFileName;
104  std::string convFileName;
105  int convResults;
106  int space;
107  int funSurf;
108  int axes;
109  int dir;
110 
111  int rvDir;
112  Vector theDirectionVector;
113  int rv1, rv2;
114  double from1, interval1;
115  double from2, interval2;
116  int numPts1, numPts2;
117  Matrix theMatrix;
118  int numLinePts;
119 
120  int nrv;
121 
122  double scaleValue;
123 public:
125  ReliabilityDomain *theReliabilityDomain,
126  GFunEvaluator *theGFunEvaluator,
127  ProbabilityTransformation *theProbabilityTransformation,
128  const std::string &outputFileName,
129  const std::string &convFileName,
130  int convResults,
131  int space,
132  int funSurf,
133  int axes,
134  int dir);
135 
136  int analyze(void);
137 
138  int setDirection(int rvDir);
139  int setDirection(Vector theDirectionVector);
140 
141  int setAxes(Vector axesVector);
142  int setAxes(Matrix theMatrix);
143  int setNumLinePts(int numLinePts);
144 
145  int setRootFindingAlgorithm(RootFinding *theRootFinder);
146  int setStartPoint(Vector *theStartPoint);
147  int setGradGEvaluator(GradGEvaluator *theGradGEvaluator);
148  int setMeritFunctionCheck(MeritFunctionCheck *theMeritFunctionCheck);
149  int setReliabilityConvergenceCheck(ReliabilityConvergenceCheck *theReliabilityConvergenceCheck);
150 
151 
152 };
153 } // end of XC namespace
154 
155 #endif
Base class for root finding algorithms.
Definition: RootFinding.h:70
GFunVisualizationAnalysis(ReliabilityDomain *theReliabilityDomain, GFunEvaluator *theGFunEvaluator, ProbabilityTransformation *theProbabilityTransformation, const std::string &outputFileName, const std::string &convFileName, int convResults, int space, int funSurf, int axes, int dir)
Constructor.
Definition: GFunVisualizationAnalysis.cpp:80
Float vector abstraction.
Definition: Vector.h:94
Domain that keeps inside the sensitivity, reliability and optimization components are kept...
Definition: ReliabilityDomain.h:86
??
Definition: GFunVisualizationAnalysis.h:81
int analyze(void)
Lanza the analysis.
Definition: GFunVisualizationAnalysis.cpp:122
Base class for the evaluators of the gradient of the limit surface.
Definition: GradGEvaluator.h:75
A "merit function" can be any continuous and differentiable function of vector u, whose minimum occur...
Definition: MeritFunctionCheck.h:75
??
Definition: ReliabilityConvergenceCheck.h:71
Performance function evaluator.
Definition: GFunEvaluator.h:76
??
Definition: ProbabilityTransformation.h:72
Open source finite element program for structural analysis.
Definition: ContinuaReprComponent.h:35
Base class for reliability analysis.
Definition: ReliabilityAnalysis.h:70
Matrix of floats.
Definition: Matrix.h:111