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alpar@484
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/* -*- mode: C++; indent-tabs-mode: nil; -*-
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alpar@484
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     2  | 
 *
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alpar@484
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     3  | 
 * This file is a part of LEMON, a generic C++ optimization library.
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alpar@484
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     4  | 
 *
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alpar@956
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     5  | 
 * Copyright (C) 2003-2010
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alpar@484
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     6  | 
 * Egervary Jeno Kombinatorikus Optimalizalasi Kutatocsoport
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alpar@484
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     7  | 
 * (Egervary Research Group on Combinatorial Optimization, EGRES).
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alpar@484
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     8  | 
 *
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alpar@484
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     9  | 
 * Permission to use, modify and distribute this software is granted
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alpar@484
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    10  | 
 * provided that this copyright notice appears in all copies. For
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alpar@484
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    11  | 
 * precise terms see the accompanying LICENSE file.
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alpar@484
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    12  | 
 *
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alpar@484
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    13  | 
 * This software is provided "AS IS" with no warranty of any kind,
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alpar@484
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    14  | 
 * express or implied, and with no claim as to its suitability for any
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alpar@484
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 * purpose.
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alpar@484
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 *
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alpar@484
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 */
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alpar@484
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///\file
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alpar@484
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    20  | 
///\brief Implementation of the LEMON GLPK LP and MIP solver interface.
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alpar@484
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    21  | 
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alpar@484
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    22  | 
#include <lemon/glpk.h>
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alpar@484
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    23  | 
#include <glpk.h>
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alpar@484
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    24  | 
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alpar@484
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    25  | 
#include <lemon/assert.h>
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alpar@484
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    26  | 
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alpar@484
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    27  | 
namespace lemon {
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alpar@484
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    28  | 
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alpar@484
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    29  | 
  // GlpkBase members
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alpar@484
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    30  | 
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alpar@484
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    31  | 
  GlpkBase::GlpkBase() : LpBase() {
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alpar@484
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    32  | 
    lp = glp_create_prob();
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alpar@484
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    33  | 
    glp_create_index(lp);
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deba@623
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    34  | 
    messageLevel(MESSAGE_NOTHING);
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alpar@484
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    35  | 
  }
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alpar@484
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    36  | 
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alpar@484
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    37  | 
  GlpkBase::GlpkBase(const GlpkBase &other) : LpBase() {
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alpar@484
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    38  | 
    lp = glp_create_prob();
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alpar@484
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    39  | 
    glp_copy_prob(lp, other.lp, GLP_ON);
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alpar@484
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    40  | 
    glp_create_index(lp);
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alpar@484
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    41  | 
    rows = other.rows;
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alpar@484
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    42  | 
    cols = other.cols;
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deba@623
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    43  | 
    messageLevel(MESSAGE_NOTHING);
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alpar@484
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    44  | 
  }
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alpar@484
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    45  | 
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alpar@484
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    46  | 
  GlpkBase::~GlpkBase() {
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alpar@484
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    47  | 
    glp_delete_prob(lp);
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alpar@484
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    48  | 
  }
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alpar@484
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    49  | 
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alpar@484
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    50  | 
  int GlpkBase::_addCol() {
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alpar@484
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    51  | 
    int i = glp_add_cols(lp, 1);
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alpar@484
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    52  | 
    glp_set_col_bnds(lp, i, GLP_FR, 0.0, 0.0);
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alpar@484
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    53  | 
    return i;
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alpar@484
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    54  | 
  }
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alpar@484
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    55  | 
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alpar@484
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    56  | 
  int GlpkBase::_addRow() {
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alpar@484
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    57  | 
    int i = glp_add_rows(lp, 1);
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alpar@484
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    58  | 
    glp_set_row_bnds(lp, i, GLP_FR, 0.0, 0.0);
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alpar@484
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    59  | 
    return i;
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alpar@484
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    60  | 
  }
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alpar@484
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    61  | 
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alpar@956
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    62  | 
  int GlpkBase::_addRow(Value lo, ExprIterator b,
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deba@793
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    63  | 
                        ExprIterator e, Value up) {
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deba@793
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    64  | 
    int i = glp_add_rows(lp, 1);
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deba@793
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    65  | 
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deba@793
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    66  | 
    if (lo == -INF) {
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deba@793
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    67  | 
      if (up == INF) {
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deba@793
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    68  | 
        glp_set_row_bnds(lp, i, GLP_FR, lo, up);
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deba@793
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    69  | 
      } else {
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deba@793
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    70  | 
        glp_set_row_bnds(lp, i, GLP_UP, lo, up);
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alpar@956
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    71  | 
      }
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deba@793
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    72  | 
    } else {
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deba@793
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    73  | 
      if (up == INF) {
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deba@793
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    74  | 
        glp_set_row_bnds(lp, i, GLP_LO, lo, up);
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alpar@956
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    75  | 
      } else if (lo != up) {
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deba@793
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    76  | 
        glp_set_row_bnds(lp, i, GLP_DB, lo, up);
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deba@793
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    77  | 
      } else {
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deba@793
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        glp_set_row_bnds(lp, i, GLP_FX, lo, up);
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deba@793
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      }
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deba@793
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    }
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deba@793
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deba@793
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    82  | 
    std::vector<int> indexes;
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deba@793
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    std::vector<Value> values;
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deba@793
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    84  | 
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deba@793
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    85  | 
    indexes.push_back(0);
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deba@793
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    values.push_back(0);
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deba@793
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    87  | 
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deba@793
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    for(ExprIterator it = b; it != e; ++it) {
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deba@793
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      indexes.push_back(it->first);
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deba@793
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      values.push_back(it->second);
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deba@793
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    91  | 
    }
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deba@793
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    92  | 
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deba@793
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    93  | 
    glp_set_mat_row(lp, i, values.size() - 1,
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deba@793
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    94  | 
                    &indexes.front(), &values.front());
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deba@793
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    95  | 
    return i;
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deba@793
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    96  | 
  }
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deba@793
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    97  | 
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alpar@484
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    98  | 
  void GlpkBase::_eraseCol(int i) {
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alpar@484
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    99  | 
    int ca[2];
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alpar@484
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   100  | 
    ca[1] = i;
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alpar@484
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   101  | 
    glp_del_cols(lp, 1, ca);
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alpar@484
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   102  | 
  }
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alpar@484
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   103  | 
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alpar@484
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   104  | 
  void GlpkBase::_eraseRow(int i) {
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alpar@484
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   105  | 
    int ra[2];
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alpar@484
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   106  | 
    ra[1] = i;
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alpar@484
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   107  | 
    glp_del_rows(lp, 1, ra);
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alpar@484
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   108  | 
  }
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alpar@484
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   109  | 
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alpar@484
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   110  | 
  void GlpkBase::_eraseColId(int i) {
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alpar@484
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   111  | 
    cols.eraseIndex(i);
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alpar@484
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   112  | 
    cols.shiftIndices(i);
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alpar@484
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   113  | 
  }
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alpar@484
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   114  | 
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alpar@484
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   115  | 
  void GlpkBase::_eraseRowId(int i) {
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alpar@484
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   116  | 
    rows.eraseIndex(i);
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alpar@484
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   117  | 
    rows.shiftIndices(i);
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alpar@484
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   118  | 
  }
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alpar@484
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   119  | 
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alpar@484
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   120  | 
  void GlpkBase::_getColName(int c, std::string& name) const {
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alpar@484
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   121  | 
    const char *str = glp_get_col_name(lp, c);
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alpar@484
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   122  | 
    if (str) name = str;
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alpar@484
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   123  | 
    else name.clear();
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alpar@484
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   124  | 
  }
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alpar@484
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   125  | 
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alpar@484
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   126  | 
  void GlpkBase::_setColName(int c, const std::string & name) {
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alpar@484
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   127  | 
    glp_set_col_name(lp, c, const_cast<char*>(name.c_str()));
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alpar@484
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   128  | 
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alpar@484
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   129  | 
  }
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alpar@484
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   130  | 
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alpar@484
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   131  | 
  int GlpkBase::_colByName(const std::string& name) const {
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alpar@484
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   132  | 
    int k = glp_find_col(lp, const_cast<char*>(name.c_str()));
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alpar@484
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   133  | 
    return k > 0 ? k : -1;
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alpar@484
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   134  | 
  }
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alpar@484
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   135  | 
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alpar@484
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   136  | 
  void GlpkBase::_getRowName(int r, std::string& name) const {
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alpar@484
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   137  | 
    const char *str = glp_get_row_name(lp, r);
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alpar@484
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   138  | 
    if (str) name = str;
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alpar@484
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   139  | 
    else name.clear();
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alpar@484
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   140  | 
  }
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alpar@484
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   141  | 
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alpar@484
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   142  | 
  void GlpkBase::_setRowName(int r, const std::string & name) {
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alpar@484
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   143  | 
    glp_set_row_name(lp, r, const_cast<char*>(name.c_str()));
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alpar@484
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   144  | 
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alpar@484
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   145  | 
  }
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alpar@484
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   146  | 
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alpar@484
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   147  | 
  int GlpkBase::_rowByName(const std::string& name) const {
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alpar@484
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   148  | 
    int k = glp_find_row(lp, const_cast<char*>(name.c_str()));
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alpar@484
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   149  | 
    return k > 0 ? k : -1;
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alpar@484
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   150  | 
  }
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alpar@484
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   151  | 
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alpar@484
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   152  | 
  void GlpkBase::_setRowCoeffs(int i, ExprIterator b, ExprIterator e) {
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alpar@484
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   153  | 
    std::vector<int> indexes;
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alpar@484
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   154  | 
    std::vector<Value> values;
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alpar@484
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   155  | 
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alpar@484
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   156  | 
    indexes.push_back(0);
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alpar@484
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   157  | 
    values.push_back(0);
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alpar@484
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   158  | 
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alpar@484
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   159  | 
    for(ExprIterator it = b; it != e; ++it) {
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alpar@484
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   160  | 
      indexes.push_back(it->first);
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alpar@484
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   161  | 
      values.push_back(it->second);
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alpar@484
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   162  | 
    }
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alpar@484
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   163  | 
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alpar@484
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   164  | 
    glp_set_mat_row(lp, i, values.size() - 1,
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alpar@484
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   165  | 
                    &indexes.front(), &values.front());
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alpar@484
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   166  | 
  }
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alpar@484
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   167  | 
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alpar@484
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   168  | 
  void GlpkBase::_getRowCoeffs(int ix, InsertIterator b) const {
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alpar@484
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   169  | 
    int length = glp_get_mat_row(lp, ix, 0, 0);
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alpar@484
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   170  | 
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alpar@484
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   171  | 
    std::vector<int> indexes(length + 1);
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alpar@484
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   172  | 
    std::vector<Value> values(length + 1);
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alpar@484
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   173  | 
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alpar@484
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   174  | 
    glp_get_mat_row(lp, ix, &indexes.front(), &values.front());
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alpar@484
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   175  | 
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alpar@484
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   176  | 
    for (int i = 1; i <= length; ++i) {
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alpar@484
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   177  | 
      *b = std::make_pair(indexes[i], values[i]);
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alpar@484
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   178  | 
      ++b;
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alpar@484
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   179  | 
    }
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alpar@484
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   180  | 
  }
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alpar@484
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   181  | 
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alpar@484
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   182  | 
  void GlpkBase::_setColCoeffs(int ix, ExprIterator b,
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alpar@484
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   183  | 
                                     ExprIterator e) {
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alpar@484
 | 
   184  | 
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alpar@484
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   185  | 
    std::vector<int> indexes;
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alpar@484
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   186  | 
    std::vector<Value> values;
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alpar@484
 | 
   187  | 
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alpar@484
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   188  | 
    indexes.push_back(0);
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alpar@484
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   189  | 
    values.push_back(0);
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alpar@484
 | 
   190  | 
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alpar@484
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   191  | 
    for(ExprIterator it = b; it != e; ++it) {
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alpar@484
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   192  | 
      indexes.push_back(it->first);
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alpar@484
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   193  | 
      values.push_back(it->second);
  | 
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alpar@484
 | 
   194  | 
    }
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alpar@484
 | 
   195  | 
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alpar@484
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   196  | 
    glp_set_mat_col(lp, ix, values.size() - 1,
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alpar@484
 | 
   197  | 
                    &indexes.front(), &values.front());
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alpar@484
 | 
   198  | 
  }
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alpar@484
 | 
   199  | 
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alpar@484
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   200  | 
  void GlpkBase::_getColCoeffs(int ix, InsertIterator b) const {
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alpar@484
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   201  | 
    int length = glp_get_mat_col(lp, ix, 0, 0);
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alpar@484
 | 
   202  | 
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alpar@484
 | 
   203  | 
    std::vector<int> indexes(length + 1);
  | 
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alpar@484
 | 
   204  | 
    std::vector<Value> values(length + 1);
  | 
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alpar@484
 | 
   205  | 
  | 
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alpar@484
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   206  | 
    glp_get_mat_col(lp, ix, &indexes.front(), &values.front());
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alpar@484
 | 
   207  | 
  | 
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alpar@484
 | 
   208  | 
    for (int i = 1; i  <= length; ++i) {
 | 
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alpar@484
 | 
   209  | 
      *b = std::make_pair(indexes[i], values[i]);
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| 
alpar@484
 | 
   210  | 
      ++b;
  | 
| 
alpar@484
 | 
   211  | 
    }
  | 
| 
alpar@484
 | 
   212  | 
  }
  | 
| 
alpar@484
 | 
   213  | 
  | 
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alpar@484
 | 
   214  | 
  void GlpkBase::_setCoeff(int ix, int jx, Value value) {
 | 
| 
alpar@484
 | 
   215  | 
  | 
| 
alpar@484
 | 
   216  | 
    if (glp_get_num_cols(lp) < glp_get_num_rows(lp)) {
 | 
| 
alpar@484
 | 
   217  | 
  | 
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alpar@484
 | 
   218  | 
      int length = glp_get_mat_row(lp, ix, 0, 0);
  | 
| 
alpar@484
 | 
   219  | 
  | 
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alpar@484
 | 
   220  | 
      std::vector<int> indexes(length + 2);
  | 
| 
alpar@484
 | 
   221  | 
      std::vector<Value> values(length + 2);
  | 
| 
alpar@484
 | 
   222  | 
  | 
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alpar@484
 | 
   223  | 
      glp_get_mat_row(lp, ix, &indexes.front(), &values.front());
  | 
| 
alpar@484
 | 
   224  | 
  | 
| 
alpar@484
 | 
   225  | 
      //The following code does not suppose that the elements of the
  | 
| 
alpar@484
 | 
   226  | 
      //array indexes are sorted
  | 
| 
alpar@484
 | 
   227  | 
      bool found = false;
  | 
| 
alpar@484
 | 
   228  | 
      for (int i = 1; i  <= length; ++i) {
 | 
| 
alpar@484
 | 
   229  | 
        if (indexes[i] == jx) {
 | 
| 
alpar@484
 | 
   230  | 
          found = true;
  | 
| 
alpar@484
 | 
   231  | 
          values[i] = value;
  | 
| 
alpar@484
 | 
   232  | 
          break;
  | 
| 
alpar@484
 | 
   233  | 
        }
  | 
| 
alpar@484
 | 
   234  | 
      }
  | 
| 
alpar@484
 | 
   235  | 
      if (!found) {
 | 
| 
alpar@484
 | 
   236  | 
        ++length;
  | 
| 
alpar@484
 | 
   237  | 
        indexes[length] = jx;
  | 
| 
alpar@484
 | 
   238  | 
        values[length] = value;
  | 
| 
alpar@484
 | 
   239  | 
      }
  | 
| 
alpar@484
 | 
   240  | 
  | 
| 
alpar@484
 | 
   241  | 
      glp_set_mat_row(lp, ix, length, &indexes.front(), &values.front());
  | 
| 
alpar@484
 | 
   242  | 
  | 
| 
alpar@484
 | 
   243  | 
    } else {
 | 
| 
alpar@484
 | 
   244  | 
  | 
| 
alpar@484
 | 
   245  | 
      int length = glp_get_mat_col(lp, jx, 0, 0);
  | 
| 
alpar@484
 | 
   246  | 
  | 
| 
alpar@484
 | 
   247  | 
      std::vector<int> indexes(length + 2);
  | 
| 
alpar@484
 | 
   248  | 
      std::vector<Value> values(length + 2);
  | 
| 
alpar@484
 | 
   249  | 
  | 
| 
alpar@484
 | 
   250  | 
      glp_get_mat_col(lp, jx, &indexes.front(), &values.front());
  | 
| 
alpar@484
 | 
   251  | 
  | 
| 
alpar@484
 | 
   252  | 
      //The following code does not suppose that the elements of the
  | 
| 
alpar@484
 | 
   253  | 
      //array indexes are sorted
  | 
| 
alpar@484
 | 
   254  | 
      bool found = false;
  | 
| 
alpar@484
 | 
   255  | 
      for (int i = 1; i <= length; ++i) {
 | 
| 
alpar@484
 | 
   256  | 
        if (indexes[i] == ix) {
 | 
| 
alpar@484
 | 
   257  | 
          found = true;
  | 
| 
alpar@484
 | 
   258  | 
          values[i] = value;
  | 
| 
alpar@484
 | 
   259  | 
          break;
  | 
| 
alpar@484
 | 
   260  | 
        }
  | 
| 
alpar@484
 | 
   261  | 
      }
  | 
| 
alpar@484
 | 
   262  | 
      if (!found) {
 | 
| 
alpar@484
 | 
   263  | 
        ++length;
  | 
| 
alpar@484
 | 
   264  | 
        indexes[length] = ix;
  | 
| 
alpar@484
 | 
   265  | 
        values[length] = value;
  | 
| 
alpar@484
 | 
   266  | 
      }
  | 
| 
alpar@484
 | 
   267  | 
  | 
| 
alpar@484
 | 
   268  | 
      glp_set_mat_col(lp, jx, length, &indexes.front(), &values.front());
  | 
| 
alpar@484
 | 
   269  | 
    }
  | 
| 
alpar@484
 | 
   270  | 
  | 
| 
alpar@484
 | 
   271  | 
  }
  | 
| 
alpar@484
 | 
   272  | 
  | 
| 
alpar@484
 | 
   273  | 
  GlpkBase::Value GlpkBase::_getCoeff(int ix, int jx) const {
 | 
| 
alpar@484
 | 
   274  | 
  | 
| 
alpar@484
 | 
   275  | 
    int length = glp_get_mat_row(lp, ix, 0, 0);
  | 
| 
alpar@484
 | 
   276  | 
  | 
| 
alpar@484
 | 
   277  | 
    std::vector<int> indexes(length + 1);
  | 
| 
alpar@484
 | 
   278  | 
    std::vector<Value> values(length + 1);
  | 
| 
alpar@484
 | 
   279  | 
  | 
| 
alpar@484
 | 
   280  | 
    glp_get_mat_row(lp, ix, &indexes.front(), &values.front());
  | 
| 
alpar@484
 | 
   281  | 
  | 
| 
alpar@484
 | 
   282  | 
    for (int i = 1; i  <= length; ++i) {
 | 
| 
alpar@484
 | 
   283  | 
      if (indexes[i] == jx) {
 | 
| 
alpar@484
 | 
   284  | 
        return values[i];
  | 
| 
alpar@484
 | 
   285  | 
      }
  | 
| 
alpar@484
 | 
   286  | 
    }
  | 
| 
alpar@484
 | 
   287  | 
  | 
| 
alpar@484
 | 
   288  | 
    return 0;
  | 
| 
alpar@484
 | 
   289  | 
  }
  | 
| 
alpar@484
 | 
   290  | 
  | 
| 
alpar@484
 | 
   291  | 
  void GlpkBase::_setColLowerBound(int i, Value lo) {
 | 
| 
alpar@484
 | 
   292  | 
    LEMON_ASSERT(lo != INF, "Invalid bound");
  | 
| 
alpar@484
 | 
   293  | 
  | 
| 
alpar@484
 | 
   294  | 
    int b = glp_get_col_type(lp, i);
  | 
| 
alpar@484
 | 
   295  | 
    double up = glp_get_col_ub(lp, i);
  | 
| 
alpar@484
 | 
   296  | 
    if (lo == -INF) {
 | 
| 
alpar@484
 | 
   297  | 
      switch (b) {
 | 
| 
alpar@484
 | 
   298  | 
      case GLP_FR:
  | 
| 
alpar@484
 | 
   299  | 
      case GLP_LO:
  | 
| 
alpar@484
 | 
   300  | 
        glp_set_col_bnds(lp, i, GLP_FR, lo, up);
  | 
| 
alpar@484
 | 
   301  | 
        break;
  | 
| 
alpar@484
 | 
   302  | 
      case GLP_UP:
  | 
| 
alpar@484
 | 
   303  | 
        break;
  | 
| 
alpar@484
 | 
   304  | 
      case GLP_DB:
  | 
| 
alpar@484
 | 
   305  | 
      case GLP_FX:
  | 
| 
alpar@484
 | 
   306  | 
        glp_set_col_bnds(lp, i, GLP_UP, lo, up);
  | 
| 
alpar@484
 | 
   307  | 
        break;
  | 
| 
alpar@484
 | 
   308  | 
      default:
  | 
| 
alpar@484
 | 
   309  | 
        break;
  | 
| 
alpar@484
 | 
   310  | 
      }
  | 
| 
alpar@484
 | 
   311  | 
    } else {
 | 
| 
alpar@484
 | 
   312  | 
      switch (b) {
 | 
| 
alpar@484
 | 
   313  | 
      case GLP_FR:
  | 
| 
alpar@484
 | 
   314  | 
      case GLP_LO:
  | 
| 
alpar@484
 | 
   315  | 
        glp_set_col_bnds(lp, i, GLP_LO, lo, up);
  | 
| 
alpar@484
 | 
   316  | 
        break;
  | 
| 
alpar@484
 | 
   317  | 
      case GLP_UP:
  | 
| 
alpar@484
 | 
   318  | 
      case GLP_DB:
  | 
| 
alpar@484
 | 
   319  | 
      case GLP_FX:
  | 
| 
alpar@484
 | 
   320  | 
        if (lo == up)
  | 
| 
alpar@484
 | 
   321  | 
          glp_set_col_bnds(lp, i, GLP_FX, lo, up);
  | 
| 
alpar@484
 | 
   322  | 
        else
  | 
| 
alpar@484
 | 
   323  | 
          glp_set_col_bnds(lp, i, GLP_DB, lo, up);
  | 
| 
alpar@484
 | 
   324  | 
        break;
  | 
| 
alpar@484
 | 
   325  | 
      default:
  | 
| 
alpar@484
 | 
   326  | 
        break;
  | 
| 
alpar@484
 | 
   327  | 
      }
  | 
| 
alpar@484
 | 
   328  | 
    }
  | 
| 
alpar@484
 | 
   329  | 
  }
  | 
| 
alpar@484
 | 
   330  | 
  | 
| 
alpar@484
 | 
   331  | 
  GlpkBase::Value GlpkBase::_getColLowerBound(int i) const {
 | 
| 
alpar@484
 | 
   332  | 
    int b = glp_get_col_type(lp, i);
  | 
| 
alpar@484
 | 
   333  | 
    switch (b) {
 | 
| 
alpar@484
 | 
   334  | 
    case GLP_LO:
  | 
| 
alpar@484
 | 
   335  | 
    case GLP_DB:
  | 
| 
alpar@484
 | 
   336  | 
    case GLP_FX:
  | 
| 
alpar@484
 | 
   337  | 
      return glp_get_col_lb(lp, i);
  | 
| 
alpar@484
 | 
   338  | 
    default:
  | 
| 
alpar@484
 | 
   339  | 
      return -INF;
  | 
| 
alpar@484
 | 
   340  | 
    }
  | 
| 
alpar@484
 | 
   341  | 
  }
  | 
| 
alpar@484
 | 
   342  | 
  | 
| 
alpar@484
 | 
   343  | 
  void GlpkBase::_setColUpperBound(int i, Value up) {
 | 
| 
alpar@484
 | 
   344  | 
    LEMON_ASSERT(up != -INF, "Invalid bound");
  | 
| 
alpar@484
 | 
   345  | 
  | 
| 
alpar@484
 | 
   346  | 
    int b = glp_get_col_type(lp, i);
  | 
| 
alpar@484
 | 
   347  | 
    double lo = glp_get_col_lb(lp, i);
  | 
| 
alpar@484
 | 
   348  | 
    if (up == INF) {
 | 
| 
alpar@484
 | 
   349  | 
      switch (b) {
 | 
| 
alpar@484
 | 
   350  | 
      case GLP_FR:
  | 
| 
alpar@484
 | 
   351  | 
      case GLP_LO:
  | 
| 
alpar@484
 | 
   352  | 
        break;
  | 
| 
alpar@484
 | 
   353  | 
      case GLP_UP:
  | 
| 
alpar@484
 | 
   354  | 
        glp_set_col_bnds(lp, i, GLP_FR, lo, up);
  | 
| 
alpar@484
 | 
   355  | 
        break;
  | 
| 
alpar@484
 | 
   356  | 
      case GLP_DB:
  | 
| 
alpar@484
 | 
   357  | 
      case GLP_FX:
  | 
| 
alpar@484
 | 
   358  | 
        glp_set_col_bnds(lp, i, GLP_LO, lo, up);
  | 
| 
alpar@484
 | 
   359  | 
        break;
  | 
| 
alpar@484
 | 
   360  | 
      default:
  | 
| 
alpar@484
 | 
   361  | 
        break;
  | 
| 
alpar@484
 | 
   362  | 
      }
  | 
| 
alpar@484
 | 
   363  | 
    } else {
 | 
| 
alpar@484
 | 
   364  | 
      switch (b) {
 | 
| 
alpar@484
 | 
   365  | 
      case GLP_FR:
  | 
| 
alpar@484
 | 
   366  | 
        glp_set_col_bnds(lp, i, GLP_UP, lo, up);
  | 
| 
alpar@484
 | 
   367  | 
        break;
  | 
| 
alpar@484
 | 
   368  | 
      case GLP_UP:
  | 
| 
alpar@484
 | 
   369  | 
        glp_set_col_bnds(lp, i, GLP_UP, lo, up);
  | 
| 
alpar@484
 | 
   370  | 
        break;
  | 
| 
alpar@484
 | 
   371  | 
      case GLP_LO:
  | 
| 
alpar@484
 | 
   372  | 
      case GLP_DB:
  | 
| 
alpar@484
 | 
   373  | 
      case GLP_FX:
  | 
| 
alpar@484
 | 
   374  | 
        if (lo == up)
  | 
| 
alpar@484
 | 
   375  | 
          glp_set_col_bnds(lp, i, GLP_FX, lo, up);
  | 
| 
alpar@484
 | 
   376  | 
        else
  | 
| 
alpar@484
 | 
   377  | 
          glp_set_col_bnds(lp, i, GLP_DB, lo, up);
  | 
| 
alpar@484
 | 
   378  | 
        break;
  | 
| 
alpar@484
 | 
   379  | 
      default:
  | 
| 
alpar@484
 | 
   380  | 
        break;
  | 
| 
alpar@484
 | 
   381  | 
      }
  | 
| 
alpar@484
 | 
   382  | 
    }
  | 
| 
alpar@484
 | 
   383  | 
  | 
| 
alpar@484
 | 
   384  | 
  }
  | 
| 
alpar@484
 | 
   385  | 
  | 
| 
alpar@484
 | 
   386  | 
  GlpkBase::Value GlpkBase::_getColUpperBound(int i) const {
 | 
| 
alpar@484
 | 
   387  | 
    int b = glp_get_col_type(lp, i);
  | 
| 
alpar@484
 | 
   388  | 
      switch (b) {
 | 
| 
alpar@484
 | 
   389  | 
      case GLP_UP:
  | 
| 
alpar@484
 | 
   390  | 
      case GLP_DB:
  | 
| 
alpar@484
 | 
   391  | 
      case GLP_FX:
  | 
| 
alpar@484
 | 
   392  | 
        return glp_get_col_ub(lp, i);
  | 
| 
alpar@484
 | 
   393  | 
      default:
  | 
| 
alpar@484
 | 
   394  | 
        return INF;
  | 
| 
alpar@484
 | 
   395  | 
      }
  | 
| 
alpar@484
 | 
   396  | 
  }
  | 
| 
alpar@484
 | 
   397  | 
  | 
| 
alpar@484
 | 
   398  | 
  void GlpkBase::_setRowLowerBound(int i, Value lo) {
 | 
| 
alpar@484
 | 
   399  | 
    LEMON_ASSERT(lo != INF, "Invalid bound");
  | 
| 
alpar@484
 | 
   400  | 
  | 
| 
alpar@484
 | 
   401  | 
    int b = glp_get_row_type(lp, i);
  | 
| 
alpar@484
 | 
   402  | 
    double up = glp_get_row_ub(lp, i);
  | 
| 
alpar@484
 | 
   403  | 
    if (lo == -INF) {
 | 
| 
alpar@484
 | 
   404  | 
      switch (b) {
 | 
| 
alpar@484
 | 
   405  | 
      case GLP_FR:
  | 
| 
alpar@484
 | 
   406  | 
      case GLP_LO:
  | 
| 
alpar@484
 | 
   407  | 
        glp_set_row_bnds(lp, i, GLP_FR, lo, up);
  | 
| 
alpar@484
 | 
   408  | 
        break;
  | 
| 
alpar@484
 | 
   409  | 
      case GLP_UP:
  | 
| 
alpar@484
 | 
   410  | 
        break;
  | 
| 
alpar@484
 | 
   411  | 
      case GLP_DB:
  | 
| 
alpar@484
 | 
   412  | 
      case GLP_FX:
  | 
| 
alpar@484
 | 
   413  | 
        glp_set_row_bnds(lp, i, GLP_UP, lo, up);
  | 
| 
alpar@484
 | 
   414  | 
        break;
  | 
| 
alpar@484
 | 
   415  | 
      default:
  | 
| 
alpar@484
 | 
   416  | 
        break;
  | 
| 
alpar@484
 | 
   417  | 
      }
  | 
| 
alpar@484
 | 
   418  | 
    } else {
 | 
| 
alpar@484
 | 
   419  | 
      switch (b) {
 | 
| 
alpar@484
 | 
   420  | 
      case GLP_FR:
  | 
| 
alpar@484
 | 
   421  | 
      case GLP_LO:
  | 
| 
alpar@484
 | 
   422  | 
        glp_set_row_bnds(lp, i, GLP_LO, lo, up);
  | 
| 
alpar@484
 | 
   423  | 
        break;
  | 
| 
alpar@484
 | 
   424  | 
      case GLP_UP:
  | 
| 
alpar@484
 | 
   425  | 
      case GLP_DB:
  | 
| 
alpar@484
 | 
   426  | 
      case GLP_FX:
  | 
| 
alpar@484
 | 
   427  | 
        if (lo == up)
  | 
| 
alpar@484
 | 
   428  | 
          glp_set_row_bnds(lp, i, GLP_FX, lo, up);
  | 
| 
alpar@484
 | 
   429  | 
        else
  | 
| 
alpar@484
 | 
   430  | 
          glp_set_row_bnds(lp, i, GLP_DB, lo, up);
  | 
| 
alpar@484
 | 
   431  | 
        break;
  | 
| 
alpar@484
 | 
   432  | 
      default:
  | 
| 
alpar@484
 | 
   433  | 
        break;
  | 
| 
alpar@484
 | 
   434  | 
      }
  | 
| 
alpar@484
 | 
   435  | 
    }
  | 
| 
alpar@484
 | 
   436  | 
  | 
| 
alpar@484
 | 
   437  | 
  }
  | 
| 
alpar@484
 | 
   438  | 
  | 
| 
alpar@484
 | 
   439  | 
  GlpkBase::Value GlpkBase::_getRowLowerBound(int i) const {
 | 
| 
alpar@484
 | 
   440  | 
    int b = glp_get_row_type(lp, i);
  | 
| 
alpar@484
 | 
   441  | 
    switch (b) {
 | 
| 
alpar@484
 | 
   442  | 
    case GLP_LO:
  | 
| 
alpar@484
 | 
   443  | 
    case GLP_DB:
  | 
| 
alpar@484
 | 
   444  | 
    case GLP_FX:
  | 
| 
alpar@484
 | 
   445  | 
      return glp_get_row_lb(lp, i);
  | 
| 
alpar@484
 | 
   446  | 
    default:
  | 
| 
alpar@484
 | 
   447  | 
      return -INF;
  | 
| 
alpar@484
 | 
   448  | 
    }
  | 
| 
alpar@484
 | 
   449  | 
  }
  | 
| 
alpar@484
 | 
   450  | 
  | 
| 
alpar@484
 | 
   451  | 
  void GlpkBase::_setRowUpperBound(int i, Value up) {
 | 
| 
alpar@484
 | 
   452  | 
    LEMON_ASSERT(up != -INF, "Invalid bound");
  | 
| 
alpar@484
 | 
   453  | 
  | 
| 
alpar@484
 | 
   454  | 
    int b = glp_get_row_type(lp, i);
  | 
| 
alpar@484
 | 
   455  | 
    double lo = glp_get_row_lb(lp, i);
  | 
| 
alpar@484
 | 
   456  | 
    if (up == INF) {
 | 
| 
alpar@484
 | 
   457  | 
      switch (b) {
 | 
| 
alpar@484
 | 
   458  | 
      case GLP_FR:
  | 
| 
alpar@484
 | 
   459  | 
      case GLP_LO:
  | 
| 
alpar@484
 | 
   460  | 
        break;
  | 
| 
alpar@484
 | 
   461  | 
      case GLP_UP:
  | 
| 
alpar@484
 | 
   462  | 
        glp_set_row_bnds(lp, i, GLP_FR, lo, up);
  | 
| 
alpar@484
 | 
   463  | 
        break;
  | 
| 
alpar@484
 | 
   464  | 
      case GLP_DB:
  | 
| 
alpar@484
 | 
   465  | 
      case GLP_FX:
  | 
| 
alpar@484
 | 
   466  | 
        glp_set_row_bnds(lp, i, GLP_LO, lo, up);
  | 
| 
alpar@484
 | 
   467  | 
        break;
  | 
| 
alpar@484
 | 
   468  | 
      default:
  | 
| 
alpar@484
 | 
   469  | 
        break;
  | 
| 
alpar@484
 | 
   470  | 
      }
  | 
| 
alpar@484
 | 
   471  | 
    } else {
 | 
| 
alpar@484
 | 
   472  | 
      switch (b) {
 | 
| 
alpar@484
 | 
   473  | 
      case GLP_FR:
  | 
| 
alpar@484
 | 
   474  | 
        glp_set_row_bnds(lp, i, GLP_UP, lo, up);
  | 
| 
alpar@484
 | 
   475  | 
        break;
  | 
| 
alpar@484
 | 
   476  | 
      case GLP_UP:
  | 
| 
alpar@484
 | 
   477  | 
        glp_set_row_bnds(lp, i, GLP_UP, lo, up);
  | 
| 
alpar@484
 | 
   478  | 
        break;
  | 
| 
alpar@484
 | 
   479  | 
      case GLP_LO:
  | 
| 
alpar@484
 | 
   480  | 
      case GLP_DB:
  | 
| 
alpar@484
 | 
   481  | 
      case GLP_FX:
  | 
| 
alpar@484
 | 
   482  | 
        if (lo == up)
  | 
| 
alpar@484
 | 
   483  | 
          glp_set_row_bnds(lp, i, GLP_FX, lo, up);
  | 
| 
alpar@484
 | 
   484  | 
        else
  | 
| 
alpar@484
 | 
   485  | 
          glp_set_row_bnds(lp, i, GLP_DB, lo, up);
  | 
| 
alpar@484
 | 
   486  | 
        break;
  | 
| 
alpar@484
 | 
   487  | 
      default:
  | 
| 
alpar@484
 | 
   488  | 
        break;
  | 
| 
alpar@484
 | 
   489  | 
      }
  | 
| 
alpar@484
 | 
   490  | 
    }
  | 
| 
alpar@484
 | 
   491  | 
  }
  | 
| 
alpar@484
 | 
   492  | 
  | 
| 
alpar@484
 | 
   493  | 
  GlpkBase::Value GlpkBase::_getRowUpperBound(int i) const {
 | 
| 
alpar@484
 | 
   494  | 
    int b = glp_get_row_type(lp, i);
  | 
| 
alpar@484
 | 
   495  | 
    switch (b) {
 | 
| 
alpar@484
 | 
   496  | 
    case GLP_UP:
  | 
| 
alpar@484
 | 
   497  | 
    case GLP_DB:
  | 
| 
alpar@484
 | 
   498  | 
    case GLP_FX:
  | 
| 
alpar@484
 | 
   499  | 
      return glp_get_row_ub(lp, i);
  | 
| 
alpar@484
 | 
   500  | 
    default:
  | 
| 
alpar@484
 | 
   501  | 
      return INF;
  | 
| 
alpar@484
 | 
   502  | 
    }
  | 
| 
alpar@484
 | 
   503  | 
  }
  | 
| 
alpar@484
 | 
   504  | 
  | 
| 
alpar@484
 | 
   505  | 
  void GlpkBase::_setObjCoeffs(ExprIterator b, ExprIterator e) {
 | 
| 
alpar@484
 | 
   506  | 
    for (int i = 1; i <= glp_get_num_cols(lp); ++i) {
 | 
| 
alpar@484
 | 
   507  | 
      glp_set_obj_coef(lp, i, 0.0);
  | 
| 
alpar@484
 | 
   508  | 
    }
  | 
| 
alpar@484
 | 
   509  | 
    for (ExprIterator it = b; it != e; ++it) {
 | 
| 
alpar@484
 | 
   510  | 
      glp_set_obj_coef(lp, it->first, it->second);
  | 
| 
alpar@484
 | 
   511  | 
    }
  | 
| 
alpar@484
 | 
   512  | 
  }
  | 
| 
alpar@484
 | 
   513  | 
  | 
| 
alpar@484
 | 
   514  | 
  void GlpkBase::_getObjCoeffs(InsertIterator b) const {
 | 
| 
alpar@484
 | 
   515  | 
    for (int i = 1; i <= glp_get_num_cols(lp); ++i) {
 | 
| 
alpar@484
 | 
   516  | 
      Value val = glp_get_obj_coef(lp, i);
  | 
| 
alpar@484
 | 
   517  | 
      if (val != 0.0) {
 | 
| 
alpar@484
 | 
   518  | 
        *b = std::make_pair(i, val);
  | 
| 
alpar@484
 | 
   519  | 
        ++b;
  | 
| 
alpar@484
 | 
   520  | 
      }
  | 
| 
alpar@484
 | 
   521  | 
    }
  | 
| 
alpar@484
 | 
   522  | 
  }
  | 
| 
alpar@484
 | 
   523  | 
  | 
| 
alpar@484
 | 
   524  | 
  void GlpkBase::_setObjCoeff(int i, Value obj_coef) {
 | 
| 
alpar@484
 | 
   525  | 
    //i = 0 means the constant term (shift)
  | 
| 
alpar@484
 | 
   526  | 
    glp_set_obj_coef(lp, i, obj_coef);
  | 
| 
alpar@484
 | 
   527  | 
  }
  | 
| 
alpar@484
 | 
   528  | 
  | 
| 
alpar@484
 | 
   529  | 
  GlpkBase::Value GlpkBase::_getObjCoeff(int i) const {
 | 
| 
alpar@484
 | 
   530  | 
    //i = 0 means the constant term (shift)
  | 
| 
alpar@484
 | 
   531  | 
    return glp_get_obj_coef(lp, i);
  | 
| 
alpar@484
 | 
   532  | 
  }
  | 
| 
alpar@484
 | 
   533  | 
  | 
| 
alpar@484
 | 
   534  | 
  void GlpkBase::_setSense(GlpkBase::Sense sense) {
 | 
| 
alpar@484
 | 
   535  | 
    switch (sense) {
 | 
| 
alpar@484
 | 
   536  | 
    case MIN:
  | 
| 
alpar@484
 | 
   537  | 
      glp_set_obj_dir(lp, GLP_MIN);
  | 
| 
alpar@484
 | 
   538  | 
      break;
  | 
| 
alpar@484
 | 
   539  | 
    case MAX:
  | 
| 
alpar@484
 | 
   540  | 
      glp_set_obj_dir(lp, GLP_MAX);
  | 
| 
alpar@484
 | 
   541  | 
      break;
  | 
| 
alpar@484
 | 
   542  | 
    }
  | 
| 
alpar@484
 | 
   543  | 
  }
  | 
| 
alpar@484
 | 
   544  | 
  | 
| 
alpar@484
 | 
   545  | 
  GlpkBase::Sense GlpkBase::_getSense() const {
 | 
| 
alpar@484
 | 
   546  | 
    switch(glp_get_obj_dir(lp)) {
 | 
| 
alpar@484
 | 
   547  | 
    case GLP_MIN:
  | 
| 
alpar@484
 | 
   548  | 
      return MIN;
  | 
| 
alpar@484
 | 
   549  | 
    case GLP_MAX:
  | 
| 
alpar@484
 | 
   550  | 
      return MAX;
  | 
| 
alpar@484
 | 
   551  | 
    default:
  | 
| 
alpar@484
 | 
   552  | 
      LEMON_ASSERT(false, "Wrong sense");
  | 
| 
alpar@484
 | 
   553  | 
      return GlpkBase::Sense();
  | 
| 
alpar@484
 | 
   554  | 
    }
  | 
| 
alpar@484
 | 
   555  | 
  }
  | 
| 
alpar@484
 | 
   556  | 
  | 
| 
alpar@484
 | 
   557  | 
  void GlpkBase::_clear() {
 | 
| 
alpar@484
 | 
   558  | 
    glp_erase_prob(lp);
  | 
| 
alpar@484
 | 
   559  | 
    rows.clear();
  | 
| 
alpar@484
 | 
   560  | 
    cols.clear();
  | 
| 
alpar@484
 | 
   561  | 
  }
  | 
| 
alpar@484
 | 
   562  | 
  | 
| 
deba@584
 | 
   563  | 
  void GlpkBase::freeEnv() {
 | 
| 
deba@584
 | 
   564  | 
    glp_free_env();
  | 
| 
deba@584
 | 
   565  | 
  }
  | 
| 
deba@584
 | 
   566  | 
  | 
| 
deba@623
 | 
   567  | 
  void GlpkBase::_messageLevel(MessageLevel level) {
 | 
| 
deba@623
 | 
   568  | 
    switch (level) {
 | 
| 
deba@623
 | 
   569  | 
    case MESSAGE_NOTHING:
  | 
| 
deba@623
 | 
   570  | 
      _message_level = GLP_MSG_OFF;
  | 
| 
deba@623
 | 
   571  | 
      break;
  | 
| 
deba@623
 | 
   572  | 
    case MESSAGE_ERROR:
  | 
| 
deba@623
 | 
   573  | 
      _message_level = GLP_MSG_ERR;
  | 
| 
deba@623
 | 
   574  | 
      break;
  | 
| 
deba@623
 | 
   575  | 
    case MESSAGE_WARNING:
  | 
| 
deba@623
 | 
   576  | 
      _message_level = GLP_MSG_ERR;
  | 
| 
deba@623
 | 
   577  | 
      break;
  | 
| 
deba@623
 | 
   578  | 
    case MESSAGE_NORMAL:
  | 
| 
deba@623
 | 
   579  | 
      _message_level = GLP_MSG_ON;
  | 
| 
deba@623
 | 
   580  | 
      break;
  | 
| 
deba@623
 | 
   581  | 
    case MESSAGE_VERBOSE:
  | 
| 
deba@623
 | 
   582  | 
      _message_level = GLP_MSG_ALL;
  | 
| 
deba@623
 | 
   583  | 
      break;
  | 
| 
deba@623
 | 
   584  | 
    }
  | 
| 
deba@623
 | 
   585  | 
  }
  | 
| 
deba@623
 | 
   586  | 
  | 
| 
deba@585
 | 
   587  | 
  GlpkBase::FreeEnvHelper GlpkBase::freeEnvHelper;
  | 
| 
deba@585
 | 
   588  | 
  | 
| 
alpar@485
 | 
   589  | 
  // GlpkLp members
  | 
| 
alpar@484
 | 
   590  | 
  | 
| 
alpar@485
 | 
   591  | 
  GlpkLp::GlpkLp()
  | 
| 
deba@598
 | 
   592  | 
    : LpBase(), LpSolver(), GlpkBase() {
 | 
| 
deba@612
 | 
   593  | 
    presolver(false);
  | 
| 
alpar@484
 | 
   594  | 
  }
  | 
| 
alpar@484
 | 
   595  | 
  | 
| 
alpar@485
 | 
   596  | 
  GlpkLp::GlpkLp(const GlpkLp& other)
  | 
| 
deba@598
 | 
   597  | 
    : LpBase(other), LpSolver(other), GlpkBase(other) {
 | 
| 
deba@612
 | 
   598  | 
    presolver(false);
  | 
| 
alpar@484
 | 
   599  | 
  }
  | 
| 
alpar@484
 | 
   600  | 
  | 
| 
alpar@587
 | 
   601  | 
  GlpkLp* GlpkLp::newSolver() const { return new GlpkLp; }
 | 
| 
alpar@587
 | 
   602  | 
  GlpkLp* GlpkLp::cloneSolver() const { return new GlpkLp(*this); }
 | 
| 
alpar@484
 | 
   603  | 
  | 
| 
alpar@485
 | 
   604  | 
  const char* GlpkLp::_solverName() const { return "GlpkLp"; }
 | 
| 
alpar@484
 | 
   605  | 
  | 
| 
alpar@485
 | 
   606  | 
  void GlpkLp::_clear_temporals() {
 | 
| 
alpar@484
 | 
   607  | 
    _primal_ray.clear();
  | 
| 
alpar@484
 | 
   608  | 
    _dual_ray.clear();
  | 
| 
alpar@484
 | 
   609  | 
  }
  | 
| 
alpar@484
 | 
   610  | 
  | 
| 
alpar@485
 | 
   611  | 
  GlpkLp::SolveExitStatus GlpkLp::_solve() {
 | 
| 
alpar@484
 | 
   612  | 
    return solvePrimal();
  | 
| 
alpar@484
 | 
   613  | 
  }
  | 
| 
alpar@484
 | 
   614  | 
  | 
| 
alpar@485
 | 
   615  | 
  GlpkLp::SolveExitStatus GlpkLp::solvePrimal() {
 | 
| 
alpar@484
 | 
   616  | 
    _clear_temporals();
  | 
| 
alpar@484
 | 
   617  | 
  | 
| 
alpar@484
 | 
   618  | 
    glp_smcp smcp;
  | 
| 
alpar@484
 | 
   619  | 
    glp_init_smcp(&smcp);
  | 
| 
alpar@484
 | 
   620  | 
  | 
| 
deba@623
 | 
   621  | 
    smcp.msg_lev = _message_level;
  | 
| 
deba@612
 | 
   622  | 
    smcp.presolve = _presolve;
  | 
| 
alpar@484
 | 
   623  | 
  | 
| 
deba@612
 | 
   624  | 
    // If the basis is not valid we get an error return value.
  | 
| 
deba@612
 | 
   625  | 
    // In this case we can try to create a new basis.
  | 
| 
deba@612
 | 
   626  | 
    switch (glp_simplex(lp, &smcp)) {
 | 
| 
deba@612
 | 
   627  | 
    case 0:
  | 
| 
deba@612
 | 
   628  | 
      break;
  | 
| 
deba@612
 | 
   629  | 
    case GLP_EBADB:
  | 
| 
deba@612
 | 
   630  | 
    case GLP_ESING:
  | 
| 
deba@612
 | 
   631  | 
    case GLP_ECOND:
  | 
| 
deba@613
 | 
   632  | 
      glp_term_out(false);
  | 
| 
deba@612
 | 
   633  | 
      glp_adv_basis(lp, 0);
  | 
| 
deba@613
 | 
   634  | 
      glp_term_out(true);
  | 
| 
deba@612
 | 
   635  | 
      if (glp_simplex(lp, &smcp) != 0) return UNSOLVED;
  | 
| 
deba@612
 | 
   636  | 
      break;
  | 
| 
deba@612
 | 
   637  | 
    default:
  | 
| 
deba@612
 | 
   638  | 
      return UNSOLVED;
  | 
| 
deba@612
 | 
   639  | 
    }
  | 
| 
deba@612
 | 
   640  | 
  | 
| 
alpar@484
 | 
   641  | 
    return SOLVED;
  | 
| 
alpar@484
 | 
   642  | 
  }
  | 
| 
alpar@484
 | 
   643  | 
  | 
| 
alpar@485
 | 
   644  | 
  GlpkLp::SolveExitStatus GlpkLp::solveDual() {
 | 
| 
alpar@484
 | 
   645  | 
    _clear_temporals();
  | 
| 
alpar@484
 | 
   646  | 
  | 
| 
alpar@484
 | 
   647  | 
    glp_smcp smcp;
  | 
| 
alpar@484
 | 
   648  | 
    glp_init_smcp(&smcp);
  | 
| 
alpar@484
 | 
   649  | 
  | 
| 
deba@623
 | 
   650  | 
    smcp.msg_lev = _message_level;
  | 
| 
alpar@484
 | 
   651  | 
    smcp.meth = GLP_DUAL;
  | 
| 
deba@612
 | 
   652  | 
    smcp.presolve = _presolve;
  | 
| 
alpar@484
 | 
   653  | 
  | 
| 
deba@612
 | 
   654  | 
    // If the basis is not valid we get an error return value.
  | 
| 
deba@612
 | 
   655  | 
    // In this case we can try to create a new basis.
  | 
| 
deba@612
 | 
   656  | 
    switch (glp_simplex(lp, &smcp)) {
 | 
| 
deba@612
 | 
   657  | 
    case 0:
  | 
| 
deba@612
 | 
   658  | 
      break;
  | 
| 
deba@612
 | 
   659  | 
    case GLP_EBADB:
  | 
| 
deba@612
 | 
   660  | 
    case GLP_ESING:
  | 
| 
deba@612
 | 
   661  | 
    case GLP_ECOND:
  | 
| 
deba@613
 | 
   662  | 
      glp_term_out(false);
  | 
| 
deba@612
 | 
   663  | 
      glp_adv_basis(lp, 0);
  | 
| 
deba@613
 | 
   664  | 
      glp_term_out(true);
  | 
| 
deba@612
 | 
   665  | 
      if (glp_simplex(lp, &smcp) != 0) return UNSOLVED;
  | 
| 
deba@612
 | 
   666  | 
      break;
  | 
| 
deba@612
 | 
   667  | 
    default:
  | 
| 
deba@612
 | 
   668  | 
      return UNSOLVED;
  | 
| 
deba@612
 | 
   669  | 
    }
  | 
| 
alpar@484
 | 
   670  | 
    return SOLVED;
  | 
| 
alpar@484
 | 
   671  | 
  }
  | 
| 
alpar@484
 | 
   672  | 
  | 
| 
alpar@485
 | 
   673  | 
  GlpkLp::Value GlpkLp::_getPrimal(int i) const {
 | 
| 
alpar@484
 | 
   674  | 
    return glp_get_col_prim(lp, i);
  | 
| 
alpar@484
 | 
   675  | 
  }
  | 
| 
alpar@484
 | 
   676  | 
  | 
| 
alpar@485
 | 
   677  | 
  GlpkLp::Value GlpkLp::_getDual(int i) const {
 | 
| 
alpar@484
 | 
   678  | 
    return glp_get_row_dual(lp, i);
  | 
| 
alpar@484
 | 
   679  | 
  }
  | 
| 
alpar@484
 | 
   680  | 
  | 
| 
alpar@485
 | 
   681  | 
  GlpkLp::Value GlpkLp::_getPrimalValue() const {
 | 
| 
alpar@484
 | 
   682  | 
    return glp_get_obj_val(lp);
  | 
| 
alpar@484
 | 
   683  | 
  }
  | 
| 
alpar@484
 | 
   684  | 
  | 
| 
alpar@485
 | 
   685  | 
  GlpkLp::VarStatus GlpkLp::_getColStatus(int i) const {
 | 
| 
alpar@484
 | 
   686  | 
    switch (glp_get_col_stat(lp, i)) {
 | 
| 
alpar@484
 | 
   687  | 
    case GLP_BS:
  | 
| 
alpar@484
 | 
   688  | 
      return BASIC;
  | 
| 
alpar@484
 | 
   689  | 
    case GLP_UP:
  | 
| 
alpar@484
 | 
   690  | 
      return UPPER;
  | 
| 
alpar@484
 | 
   691  | 
    case GLP_LO:
  | 
| 
alpar@484
 | 
   692  | 
      return LOWER;
  | 
| 
alpar@484
 | 
   693  | 
    case GLP_NF:
  | 
| 
alpar@484
 | 
   694  | 
      return FREE;
  | 
| 
alpar@484
 | 
   695  | 
    case GLP_NS:
  | 
| 
alpar@484
 | 
   696  | 
      return FIXED;
  | 
| 
alpar@484
 | 
   697  | 
    default:
  | 
| 
alpar@484
 | 
   698  | 
      LEMON_ASSERT(false, "Wrong column status");
  | 
| 
alpar@485
 | 
   699  | 
      return GlpkLp::VarStatus();
  | 
| 
alpar@484
 | 
   700  | 
    }
  | 
| 
alpar@484
 | 
   701  | 
  }
  | 
| 
alpar@484
 | 
   702  | 
  | 
| 
alpar@485
 | 
   703  | 
  GlpkLp::VarStatus GlpkLp::_getRowStatus(int i) const {
 | 
| 
alpar@484
 | 
   704  | 
    switch (glp_get_row_stat(lp, i)) {
 | 
| 
alpar@484
 | 
   705  | 
    case GLP_BS:
  | 
| 
alpar@484
 | 
   706  | 
      return BASIC;
  | 
| 
alpar@484
 | 
   707  | 
    case GLP_UP:
  | 
| 
alpar@484
 | 
   708  | 
      return UPPER;
  | 
| 
alpar@484
 | 
   709  | 
    case GLP_LO:
  | 
| 
alpar@484
 | 
   710  | 
      return LOWER;
  | 
| 
alpar@484
 | 
   711  | 
    case GLP_NF:
  | 
| 
alpar@484
 | 
   712  | 
      return FREE;
  | 
| 
alpar@484
 | 
   713  | 
    case GLP_NS:
  | 
| 
alpar@484
 | 
   714  | 
      return FIXED;
  | 
| 
alpar@484
 | 
   715  | 
    default:
  | 
| 
alpar@484
 | 
   716  | 
      LEMON_ASSERT(false, "Wrong row status");
  | 
| 
alpar@485
 | 
   717  | 
      return GlpkLp::VarStatus();
  | 
| 
alpar@484
 | 
   718  | 
    }
  | 
| 
alpar@484
 | 
   719  | 
  }
  | 
| 
alpar@484
 | 
   720  | 
  | 
| 
alpar@485
 | 
   721  | 
  GlpkLp::Value GlpkLp::_getPrimalRay(int i) const {
 | 
| 
alpar@484
 | 
   722  | 
    if (_primal_ray.empty()) {
 | 
| 
alpar@484
 | 
   723  | 
      int row_num = glp_get_num_rows(lp);
  | 
| 
alpar@484
 | 
   724  | 
      int col_num = glp_get_num_cols(lp);
  | 
| 
alpar@484
 | 
   725  | 
  | 
| 
alpar@484
 | 
   726  | 
      _primal_ray.resize(col_num + 1, 0.0);
  | 
| 
alpar@484
 | 
   727  | 
  | 
| 
alpar@484
 | 
   728  | 
      int index = glp_get_unbnd_ray(lp);
  | 
| 
alpar@484
 | 
   729  | 
      if (index != 0) {
 | 
| 
alpar@484
 | 
   730  | 
        // The primal ray is found in primal simplex second phase
  | 
| 
alpar@484
 | 
   731  | 
        LEMON_ASSERT((index <= row_num ? glp_get_row_stat(lp, index) :
  | 
| 
alpar@484
 | 
   732  | 
                      glp_get_col_stat(lp, index - row_num)) != GLP_BS,
  | 
| 
alpar@484
 | 
   733  | 
                     "Wrong primal ray");
  | 
| 
alpar@484
 | 
   734  | 
  | 
| 
alpar@484
 | 
   735  | 
        bool negate = glp_get_obj_dir(lp) == GLP_MAX;
  | 
| 
alpar@484
 | 
   736  | 
  | 
| 
alpar@484
 | 
   737  | 
        if (index > row_num) {
 | 
| 
alpar@484
 | 
   738  | 
          _primal_ray[index - row_num] = 1.0;
  | 
| 
alpar@484
 | 
   739  | 
          if (glp_get_col_dual(lp, index - row_num) > 0) {
 | 
| 
alpar@484
 | 
   740  | 
            negate = !negate;
  | 
| 
alpar@484
 | 
   741  | 
          }
  | 
| 
alpar@484
 | 
   742  | 
        } else {
 | 
| 
alpar@484
 | 
   743  | 
          if (glp_get_row_dual(lp, index) > 0) {
 | 
| 
alpar@484
 | 
   744  | 
            negate = !negate;
  | 
| 
alpar@484
 | 
   745  | 
          }
  | 
| 
alpar@484
 | 
   746  | 
        }
  | 
| 
alpar@484
 | 
   747  | 
  | 
| 
alpar@484
 | 
   748  | 
        std::vector<int> ray_indexes(row_num + 1);
  | 
| 
alpar@484
 | 
   749  | 
        std::vector<Value> ray_values(row_num + 1);
  | 
| 
alpar@484
 | 
   750  | 
        int ray_length = glp_eval_tab_col(lp, index, &ray_indexes.front(),
  | 
| 
alpar@484
 | 
   751  | 
                                          &ray_values.front());
  | 
| 
alpar@484
 | 
   752  | 
  | 
| 
alpar@484
 | 
   753  | 
        for (int i = 1; i <= ray_length; ++i) {
 | 
| 
alpar@484
 | 
   754  | 
          if (ray_indexes[i] > row_num) {
 | 
| 
alpar@484
 | 
   755  | 
            _primal_ray[ray_indexes[i] - row_num] = ray_values[i];
  | 
| 
alpar@484
 | 
   756  | 
          }
  | 
| 
alpar@484
 | 
   757  | 
        }
  | 
| 
alpar@484
 | 
   758  | 
  | 
| 
alpar@484
 | 
   759  | 
        if (negate) {
 | 
| 
alpar@484
 | 
   760  | 
          for (int i = 1; i <= col_num; ++i) {
 | 
| 
alpar@484
 | 
   761  | 
            _primal_ray[i] = - _primal_ray[i];
  | 
| 
alpar@484
 | 
   762  | 
          }
  | 
| 
alpar@484
 | 
   763  | 
        }
  | 
| 
alpar@484
 | 
   764  | 
      } else {
 | 
| 
alpar@484
 | 
   765  | 
        for (int i = 1; i <= col_num; ++i) {
 | 
| 
alpar@484
 | 
   766  | 
          _primal_ray[i] = glp_get_col_prim(lp, i);
  | 
| 
alpar@484
 | 
   767  | 
        }
  | 
| 
alpar@484
 | 
   768  | 
      }
  | 
| 
alpar@484
 | 
   769  | 
    }
  | 
| 
alpar@484
 | 
   770  | 
    return _primal_ray[i];
  | 
| 
alpar@484
 | 
   771  | 
  }
  | 
| 
alpar@484
 | 
   772  | 
  | 
| 
alpar@485
 | 
   773  | 
  GlpkLp::Value GlpkLp::_getDualRay(int i) const {
 | 
| 
alpar@484
 | 
   774  | 
    if (_dual_ray.empty()) {
 | 
| 
alpar@484
 | 
   775  | 
      int row_num = glp_get_num_rows(lp);
  | 
| 
alpar@484
 | 
   776  | 
  | 
| 
alpar@484
 | 
   777  | 
      _dual_ray.resize(row_num + 1, 0.0);
  | 
| 
alpar@484
 | 
   778  | 
  | 
| 
alpar@484
 | 
   779  | 
      int index = glp_get_unbnd_ray(lp);
  | 
| 
alpar@484
 | 
   780  | 
      if (index != 0) {
 | 
| 
alpar@484
 | 
   781  | 
        // The dual ray is found in dual simplex second phase
  | 
| 
alpar@484
 | 
   782  | 
        LEMON_ASSERT((index <= row_num ? glp_get_row_stat(lp, index) :
  | 
| 
alpar@484
 | 
   783  | 
                      glp_get_col_stat(lp, index - row_num)) == GLP_BS,
  | 
| 
alpar@484
 | 
   784  | 
  | 
| 
alpar@484
 | 
   785  | 
                     "Wrong dual ray");
  | 
| 
alpar@484
 | 
   786  | 
  | 
| 
alpar@484
 | 
   787  | 
        int idx;
  | 
| 
alpar@484
 | 
   788  | 
        bool negate = false;
  | 
| 
alpar@484
 | 
   789  | 
  | 
| 
alpar@484
 | 
   790  | 
        if (index > row_num) {
 | 
| 
alpar@484
 | 
   791  | 
          idx = glp_get_col_bind(lp, index - row_num);
  | 
| 
alpar@484
 | 
   792  | 
          if (glp_get_col_prim(lp, index - row_num) >
  | 
| 
alpar@484
 | 
   793  | 
              glp_get_col_ub(lp, index - row_num)) {
 | 
| 
alpar@484
 | 
   794  | 
            negate = true;
  | 
| 
alpar@484
 | 
   795  | 
          }
  | 
| 
alpar@484
 | 
   796  | 
        } else {
 | 
| 
alpar@484
 | 
   797  | 
          idx = glp_get_row_bind(lp, index);
  | 
| 
alpar@484
 | 
   798  | 
          if (glp_get_row_prim(lp, index) > glp_get_row_ub(lp, index)) {
 | 
| 
alpar@484
 | 
   799  | 
            negate = true;
  | 
| 
alpar@484
 | 
   800  | 
          }
  | 
| 
alpar@484
 | 
   801  | 
        }
  | 
| 
alpar@484
 | 
   802  | 
  | 
| 
alpar@484
 | 
   803  | 
        _dual_ray[idx] = negate ?  - 1.0 : 1.0;
  | 
| 
alpar@484
 | 
   804  | 
  | 
| 
alpar@484
 | 
   805  | 
        glp_btran(lp, &_dual_ray.front());
  | 
| 
alpar@484
 | 
   806  | 
      } else {
 | 
| 
alpar@484
 | 
   807  | 
        double eps = 1e-7;
  | 
| 
alpar@484
 | 
   808  | 
        // The dual ray is found in primal simplex first phase
  | 
| 
alpar@484
 | 
   809  | 
        // We assume that the glpk minimizes the slack to get feasible solution
  | 
| 
alpar@484
 | 
   810  | 
        for (int i = 1; i <= row_num; ++i) {
 | 
| 
alpar@484
 | 
   811  | 
          int index = glp_get_bhead(lp, i);
  | 
| 
alpar@484
 | 
   812  | 
          if (index <= row_num) {
 | 
| 
alpar@484
 | 
   813  | 
            double res = glp_get_row_prim(lp, index);
  | 
| 
alpar@484
 | 
   814  | 
            if (res > glp_get_row_ub(lp, index) + eps) {
 | 
| 
alpar@484
 | 
   815  | 
              _dual_ray[i] = -1;
  | 
| 
alpar@484
 | 
   816  | 
            } else if (res < glp_get_row_lb(lp, index) - eps) {
 | 
| 
alpar@484
 | 
   817  | 
              _dual_ray[i] = 1;
  | 
| 
alpar@484
 | 
   818  | 
            } else {
 | 
| 
alpar@484
 | 
   819  | 
              _dual_ray[i] = 0;
  | 
| 
alpar@484
 | 
   820  | 
            }
  | 
| 
alpar@484
 | 
   821  | 
            _dual_ray[i] *= glp_get_rii(lp, index);
  | 
| 
alpar@484
 | 
   822  | 
          } else {
 | 
| 
alpar@484
 | 
   823  | 
            double res = glp_get_col_prim(lp, index - row_num);
  | 
| 
alpar@484
 | 
   824  | 
            if (res > glp_get_col_ub(lp, index - row_num) + eps) {
 | 
| 
alpar@484
 | 
   825  | 
              _dual_ray[i] = -1;
  | 
| 
alpar@484
 | 
   826  | 
            } else if (res < glp_get_col_lb(lp, index - row_num) - eps) {
 | 
| 
alpar@484
 | 
   827  | 
              _dual_ray[i] = 1;
  | 
| 
alpar@484
 | 
   828  | 
            } else {
 | 
| 
alpar@484
 | 
   829  | 
              _dual_ray[i] = 0;
  | 
| 
alpar@484
 | 
   830  | 
            }
  | 
| 
alpar@484
 | 
   831  | 
            _dual_ray[i] /= glp_get_sjj(lp, index - row_num);
  | 
| 
alpar@484
 | 
   832  | 
          }
  | 
| 
alpar@484
 | 
   833  | 
        }
  | 
| 
alpar@484
 | 
   834  | 
  | 
| 
alpar@484
 | 
   835  | 
        glp_btran(lp, &_dual_ray.front());
  | 
| 
alpar@484
 | 
   836  | 
  | 
| 
alpar@484
 | 
   837  | 
        for (int i = 1; i <= row_num; ++i) {
 | 
| 
alpar@484
 | 
   838  | 
          _dual_ray[i] /= glp_get_rii(lp, i);
  | 
| 
alpar@484
 | 
   839  | 
        }
  | 
| 
alpar@484
 | 
   840  | 
      }
  | 
| 
alpar@484
 | 
   841  | 
    }
  | 
| 
alpar@484
 | 
   842  | 
    return _dual_ray[i];
  | 
| 
alpar@484
 | 
   843  | 
  }
  | 
| 
alpar@484
 | 
   844  | 
  | 
| 
alpar@485
 | 
   845  | 
  GlpkLp::ProblemType GlpkLp::_getPrimalType() const {
 | 
| 
alpar@484
 | 
   846  | 
    if (glp_get_status(lp) == GLP_OPT)
  | 
| 
alpar@484
 | 
   847  | 
      return OPTIMAL;
  | 
| 
alpar@484
 | 
   848  | 
    switch (glp_get_prim_stat(lp)) {
 | 
| 
alpar@484
 | 
   849  | 
    case GLP_UNDEF:
  | 
| 
alpar@484
 | 
   850  | 
      return UNDEFINED;
  | 
| 
alpar@484
 | 
   851  | 
    case GLP_FEAS:
  | 
| 
alpar@484
 | 
   852  | 
    case GLP_INFEAS:
  | 
| 
alpar@484
 | 
   853  | 
      if (glp_get_dual_stat(lp) == GLP_NOFEAS) {
 | 
| 
alpar@484
 | 
   854  | 
        return UNBOUNDED;
  | 
| 
alpar@484
 | 
   855  | 
      } else {
 | 
| 
alpar@484
 | 
   856  | 
        return UNDEFINED;
  | 
| 
alpar@484
 | 
   857  | 
      }
  | 
| 
alpar@484
 | 
   858  | 
    case GLP_NOFEAS:
  | 
| 
alpar@484
 | 
   859  | 
      return INFEASIBLE;
  | 
| 
alpar@484
 | 
   860  | 
    default:
  | 
| 
alpar@484
 | 
   861  | 
      LEMON_ASSERT(false, "Wrong primal type");
  | 
| 
alpar@485
 | 
   862  | 
      return  GlpkLp::ProblemType();
  | 
| 
alpar@484
 | 
   863  | 
    }
  | 
| 
alpar@484
 | 
   864  | 
  }
  | 
| 
alpar@484
 | 
   865  | 
  | 
| 
alpar@485
 | 
   866  | 
  GlpkLp::ProblemType GlpkLp::_getDualType() const {
 | 
| 
alpar@484
 | 
   867  | 
    if (glp_get_status(lp) == GLP_OPT)
  | 
| 
alpar@484
 | 
   868  | 
      return OPTIMAL;
  | 
| 
alpar@484
 | 
   869  | 
    switch (glp_get_dual_stat(lp)) {
 | 
| 
alpar@484
 | 
   870  | 
    case GLP_UNDEF:
  | 
| 
alpar@484
 | 
   871  | 
      return UNDEFINED;
  | 
| 
alpar@484
 | 
   872  | 
    case GLP_FEAS:
  | 
| 
alpar@484
 | 
   873  | 
    case GLP_INFEAS:
  | 
| 
alpar@484
 | 
   874  | 
      if (glp_get_prim_stat(lp) == GLP_NOFEAS) {
 | 
| 
alpar@484
 | 
   875  | 
        return UNBOUNDED;
  | 
| 
alpar@484
 | 
   876  | 
      } else {
 | 
| 
alpar@484
 | 
   877  | 
        return UNDEFINED;
  | 
| 
alpar@484
 | 
   878  | 
      }
  | 
| 
alpar@484
 | 
   879  | 
    case GLP_NOFEAS:
  | 
| 
alpar@484
 | 
   880  | 
      return INFEASIBLE;
  | 
| 
alpar@484
 | 
   881  | 
    default:
  | 
| 
alpar@484
 | 
   882  | 
      LEMON_ASSERT(false, "Wrong primal type");
  | 
| 
alpar@485
 | 
   883  | 
      return  GlpkLp::ProblemType();
  | 
| 
alpar@484
 | 
   884  | 
    }
  | 
| 
alpar@484
 | 
   885  | 
  }
  | 
| 
alpar@484
 | 
   886  | 
  | 
| 
deba@612
 | 
   887  | 
  void GlpkLp::presolver(bool presolve) {
 | 
| 
deba@612
 | 
   888  | 
    _presolve = presolve;
  | 
| 
alpar@484
 | 
   889  | 
  }
  | 
| 
alpar@484
 | 
   890  | 
  | 
| 
alpar@485
 | 
   891  | 
  // GlpkMip members
  | 
| 
alpar@484
 | 
   892  | 
  | 
| 
alpar@485
 | 
   893  | 
  GlpkMip::GlpkMip()
  | 
| 
deba@598
 | 
   894  | 
    : LpBase(), MipSolver(), GlpkBase() {
 | 
| 
alpar@484
 | 
   895  | 
  }
  | 
| 
alpar@484
 | 
   896  | 
  | 
| 
alpar@485
 | 
   897  | 
  GlpkMip::GlpkMip(const GlpkMip& other)
  | 
| 
deba@598
 | 
   898  | 
    : LpBase(), MipSolver(), GlpkBase(other) {
 | 
| 
alpar@484
 | 
   899  | 
  }
  | 
| 
alpar@484
 | 
   900  | 
  | 
| 
alpar@485
 | 
   901  | 
  void GlpkMip::_setColType(int i, GlpkMip::ColTypes col_type) {
 | 
| 
alpar@484
 | 
   902  | 
    switch (col_type) {
 | 
| 
alpar@484
 | 
   903  | 
    case INTEGER:
  | 
| 
alpar@484
 | 
   904  | 
      glp_set_col_kind(lp, i, GLP_IV);
  | 
| 
alpar@484
 | 
   905  | 
      break;
  | 
| 
alpar@484
 | 
   906  | 
    case REAL:
  | 
| 
alpar@484
 | 
   907  | 
      glp_set_col_kind(lp, i, GLP_CV);
  | 
| 
alpar@484
 | 
   908  | 
      break;
  | 
| 
alpar@484
 | 
   909  | 
    }
  | 
| 
alpar@484
 | 
   910  | 
  }
  | 
| 
alpar@484
 | 
   911  | 
  | 
| 
alpar@485
 | 
   912  | 
  GlpkMip::ColTypes GlpkMip::_getColType(int i) const {
 | 
| 
alpar@484
 | 
   913  | 
    switch (glp_get_col_kind(lp, i)) {
 | 
| 
alpar@484
 | 
   914  | 
    case GLP_IV:
  | 
| 
alpar@484
 | 
   915  | 
    case GLP_BV:
  | 
| 
alpar@484
 | 
   916  | 
      return INTEGER;
  | 
| 
alpar@484
 | 
   917  | 
    default:
  | 
| 
alpar@484
 | 
   918  | 
      return REAL;
  | 
| 
alpar@484
 | 
   919  | 
    }
  | 
| 
alpar@484
 | 
   920  | 
  | 
| 
alpar@484
 | 
   921  | 
  }
  | 
| 
alpar@484
 | 
   922  | 
  | 
| 
alpar@485
 | 
   923  | 
  GlpkMip::SolveExitStatus GlpkMip::_solve() {
 | 
| 
alpar@484
 | 
   924  | 
    glp_smcp smcp;
  | 
| 
alpar@484
 | 
   925  | 
    glp_init_smcp(&smcp);
  | 
| 
alpar@484
 | 
   926  | 
  | 
| 
deba@623
 | 
   927  | 
    smcp.msg_lev = _message_level;
  | 
| 
alpar@484
 | 
   928  | 
    smcp.meth = GLP_DUAL;
  | 
| 
alpar@484
 | 
   929  | 
  | 
| 
deba@612
 | 
   930  | 
    // If the basis is not valid we get an error return value.
  | 
| 
deba@612
 | 
   931  | 
    // In this case we can try to create a new basis.
  | 
| 
deba@612
 | 
   932  | 
    switch (glp_simplex(lp, &smcp)) {
 | 
| 
deba@612
 | 
   933  | 
    case 0:
  | 
| 
deba@612
 | 
   934  | 
      break;
  | 
| 
deba@612
 | 
   935  | 
    case GLP_EBADB:
  | 
| 
deba@612
 | 
   936  | 
    case GLP_ESING:
  | 
| 
deba@612
 | 
   937  | 
    case GLP_ECOND:
  | 
| 
deba@613
 | 
   938  | 
      glp_term_out(false);
  | 
| 
deba@612
 | 
   939  | 
      glp_adv_basis(lp, 0);
  | 
| 
deba@613
 | 
   940  | 
      glp_term_out(true);
  | 
| 
deba@612
 | 
   941  | 
      if (glp_simplex(lp, &smcp) != 0) return UNSOLVED;
  | 
| 
deba@612
 | 
   942  | 
      break;
  | 
| 
deba@612
 | 
   943  | 
    default:
  | 
| 
deba@612
 | 
   944  | 
      return UNSOLVED;
  | 
| 
deba@612
 | 
   945  | 
    }
  | 
| 
deba@612
 | 
   946  | 
  | 
| 
alpar@484
 | 
   947  | 
    if (glp_get_status(lp) != GLP_OPT) return SOLVED;
  | 
| 
alpar@484
 | 
   948  | 
  | 
| 
alpar@484
 | 
   949  | 
    glp_iocp iocp;
  | 
| 
alpar@484
 | 
   950  | 
    glp_init_iocp(&iocp);
  | 
| 
alpar@484
 | 
   951  | 
  | 
| 
deba@623
 | 
   952  | 
    iocp.msg_lev = _message_level;
  | 
| 
alpar@484
 | 
   953  | 
  | 
| 
alpar@484
 | 
   954  | 
    if (glp_intopt(lp, &iocp) != 0) return UNSOLVED;
  | 
| 
alpar@484
 | 
   955  | 
    return SOLVED;
  | 
| 
alpar@484
 | 
   956  | 
  }
  | 
| 
alpar@484
 | 
   957  | 
  | 
| 
alpar@484
 | 
   958  | 
  | 
| 
alpar@485
 | 
   959  | 
  GlpkMip::ProblemType GlpkMip::_getType() const {
 | 
| 
alpar@484
 | 
   960  | 
    switch (glp_get_status(lp)) {
 | 
| 
alpar@484
 | 
   961  | 
    case GLP_OPT:
  | 
| 
alpar@484
 | 
   962  | 
      switch (glp_mip_status(lp)) {
 | 
| 
alpar@484
 | 
   963  | 
      case GLP_UNDEF:
  | 
| 
alpar@484
 | 
   964  | 
        return UNDEFINED;
  | 
| 
alpar@484
 | 
   965  | 
      case GLP_NOFEAS:
  | 
| 
alpar@484
 | 
   966  | 
        return INFEASIBLE;
  | 
| 
alpar@484
 | 
   967  | 
      case GLP_FEAS:
  | 
| 
alpar@484
 | 
   968  | 
        return FEASIBLE;
  | 
| 
alpar@484
 | 
   969  | 
      case GLP_OPT:
  | 
| 
alpar@484
 | 
   970  | 
        return OPTIMAL;
  | 
| 
alpar@484
 | 
   971  | 
      default:
  | 
| 
alpar@484
 | 
   972  | 
        LEMON_ASSERT(false, "Wrong problem type.");
  | 
| 
alpar@485
 | 
   973  | 
        return GlpkMip::ProblemType();
  | 
| 
alpar@484
 | 
   974  | 
      }
  | 
| 
alpar@484
 | 
   975  | 
    case GLP_NOFEAS:
  | 
| 
alpar@484
 | 
   976  | 
      return INFEASIBLE;
  | 
| 
alpar@484
 | 
   977  | 
    case GLP_INFEAS:
  | 
| 
alpar@484
 | 
   978  | 
    case GLP_FEAS:
  | 
| 
alpar@484
 | 
   979  | 
      if (glp_get_dual_stat(lp) == GLP_NOFEAS) {
 | 
| 
alpar@484
 | 
   980  | 
        return UNBOUNDED;
  | 
| 
alpar@484
 | 
   981  | 
      } else {
 | 
| 
alpar@484
 | 
   982  | 
        return UNDEFINED;
  | 
| 
alpar@484
 | 
   983  | 
      }
  | 
| 
alpar@484
 | 
   984  | 
    default:
  | 
| 
alpar@484
 | 
   985  | 
      LEMON_ASSERT(false, "Wrong problem type.");
  | 
| 
alpar@485
 | 
   986  | 
      return GlpkMip::ProblemType();
  | 
| 
alpar@484
 | 
   987  | 
    }
  | 
| 
alpar@484
 | 
   988  | 
  }
  | 
| 
alpar@484
 | 
   989  | 
  | 
| 
alpar@485
 | 
   990  | 
  GlpkMip::Value GlpkMip::_getSol(int i) const {
 | 
| 
alpar@484
 | 
   991  | 
    return glp_mip_col_val(lp, i);
  | 
| 
alpar@484
 | 
   992  | 
  }
  | 
| 
alpar@484
 | 
   993  | 
  | 
| 
alpar@485
 | 
   994  | 
  GlpkMip::Value GlpkMip::_getSolValue() const {
 | 
| 
alpar@484
 | 
   995  | 
    return glp_mip_obj_val(lp);
  | 
| 
alpar@484
 | 
   996  | 
  }
  | 
| 
alpar@484
 | 
   997  | 
  | 
| 
alpar@587
 | 
   998  | 
  GlpkMip* GlpkMip::newSolver() const { return new GlpkMip; }
 | 
| 
alpar@587
 | 
   999  | 
  GlpkMip* GlpkMip::cloneSolver() const {return new GlpkMip(*this); }
 | 
| 
alpar@484
 | 
  1000  | 
  | 
| 
alpar@485
 | 
  1001  | 
  const char* GlpkMip::_solverName() const { return "GlpkMip"; }
 | 
| 
alpar@484
 | 
  1002  | 
  | 
| 
alpar@484
 | 
  1003  | 
} //END OF NAMESPACE LEMON
  |