| [0a4f7f] | 1 | /*
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 | 2 |  * vector_ops.cpp
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 | 3 |  *
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 | 4 |  *  Created on: Apr 1, 2010
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 | 5 |  *      Author: crueger
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 | 6 |  */
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 | 7 | 
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| [112b09] | 8 | #include "Helpers/MemDebug.hpp"
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 | 9 | 
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| [0a4f7f] | 10 | #include "vector.hpp"
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 | 11 | #include "Plane.hpp"
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 | 12 | #include "log.hpp"
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 | 13 | #include "verbose.hpp"
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 | 14 | #include "gslmatrix.hpp"
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 | 15 | #include "leastsquaremin.hpp"
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 | 16 | #include "info.hpp"
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 | 17 | #include "Helpers/fast_functions.hpp"
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 | 18 | #include "Exceptions/LinearDependenceException.hpp"
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| [215df0] | 19 | #include "Exceptions/SkewException.hpp"
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| [0a4f7f] | 20 | 
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 | 21 | #include <gsl/gsl_linalg.h>
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 | 22 | #include <gsl/gsl_matrix.h>
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 | 23 | #include <gsl/gsl_permutation.h>
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 | 24 | #include <gsl/gsl_vector.h>
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 | 25 | 
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 | 26 | /**
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 | 27 |  * !@file
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 | 28 |  * These files defines several common operation on vectors that should not
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 | 29 |  * become part of the main vector class, because they are either to complex
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 | 30 |  * or need methods from other subsystems that should not be moved to
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 | 31 |  * the LinAlg-Subsystem
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 | 32 |  */
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 | 33 | 
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 | 34 | /** Creates a new vector as the one with least square distance to a given set of \a vectors.
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 | 35 |  * \param *vectors set of vectors
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 | 36 |  * \param num number of vectors
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 | 37 |  * \return true if success, false if failed due to linear dependency
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 | 38 |  */
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 | 39 | bool LSQdistance(Vector &res,const Vector **vectors, int num)
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 | 40 | {
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 | 41 |   int j;
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 | 42 | 
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 | 43 |   for (j=0;j<num;j++) {
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 | 44 |     Log() << Verbose(1) << j << "th atom's vector: " << vectors[j] << endl;
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 | 45 |   }
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 | 46 | 
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 | 47 |   int np = 3;
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 | 48 |   struct LSQ_params par;
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 | 49 | 
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 | 50 |    const gsl_multimin_fminimizer_type *T =
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 | 51 |      gsl_multimin_fminimizer_nmsimplex;
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 | 52 |    gsl_multimin_fminimizer *s = NULL;
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 | 53 |    gsl_vector *ss, *y;
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 | 54 |    gsl_multimin_function minex_func;
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 | 55 | 
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 | 56 |    size_t iter = 0, i;
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 | 57 |    int status;
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 | 58 |    double size;
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 | 59 | 
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 | 60 |    /* Initial vertex size vector */
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 | 61 |    ss = gsl_vector_alloc (np);
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 | 62 |    y = gsl_vector_alloc (np);
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 | 63 | 
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 | 64 |    /* Set all step sizes to 1 */
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 | 65 |    gsl_vector_set_all (ss, 1.0);
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 | 66 | 
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 | 67 |    /* Starting point */
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 | 68 |    par.vectors = vectors;
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 | 69 |    par.num = num;
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 | 70 | 
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 | 71 |    for (i=NDIM;i--;)
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 | 72 |     gsl_vector_set(y, i, (vectors[0]->at(i) - vectors[1]->at(i))/2.);
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 | 73 | 
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 | 74 |    /* Initialize method and iterate */
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 | 75 |    minex_func.f = &LSQ;
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 | 76 |    minex_func.n = np;
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 | 77 |    minex_func.params = (void *)∥
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 | 78 | 
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 | 79 |    s = gsl_multimin_fminimizer_alloc (T, np);
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 | 80 |    gsl_multimin_fminimizer_set (s, &minex_func, y, ss);
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 | 81 | 
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 | 82 |    do
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 | 83 |      {
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 | 84 |        iter++;
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 | 85 |        status = gsl_multimin_fminimizer_iterate(s);
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 | 86 | 
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 | 87 |        if (status)
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 | 88 |          break;
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 | 89 | 
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 | 90 |        size = gsl_multimin_fminimizer_size (s);
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 | 91 |        status = gsl_multimin_test_size (size, 1e-2);
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 | 92 | 
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 | 93 |        if (status == GSL_SUCCESS)
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 | 94 |          {
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 | 95 |            printf ("converged to minimum at\n");
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 | 96 |          }
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 | 97 | 
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 | 98 |        printf ("%5d ", (int)iter);
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 | 99 |        for (i = 0; i < (size_t)np; i++)
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 | 100 |          {
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 | 101 |            printf ("%10.3e ", gsl_vector_get (s->x, i));
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 | 102 |          }
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 | 103 |        printf ("f() = %7.3f size = %.3f\n", s->fval, size);
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 | 104 |      }
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 | 105 |    while (status == GSL_CONTINUE && iter < 100);
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 | 106 | 
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 | 107 |   for (i=(size_t)np;i--;)
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 | 108 |     res[i] = gsl_vector_get(s->x, i);
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 | 109 |    gsl_vector_free(y);
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 | 110 |    gsl_vector_free(ss);
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 | 111 |    gsl_multimin_fminimizer_free (s);
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 | 112 | 
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 | 113 |   return true;
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 | 114 | };
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