0
5
0
1 | 1 |
/* -*- mode: C++; indent-tabs-mode: nil; -*- |
2 | 2 |
* |
3 | 3 |
* This file is a part of LEMON, a generic C++ optimization library. |
4 | 4 |
* |
5 |
* Copyright (C) 2003- |
|
5 |
* Copyright (C) 2003-2009 |
|
6 | 6 |
* Egervary Jeno Kombinatorikus Optimalizalasi Kutatocsoport |
7 | 7 |
* (Egervary Research Group on Combinatorial Optimization, EGRES). |
8 | 8 |
* |
9 | 9 |
* Permission to use, modify and distribute this software is granted |
10 | 10 |
* provided that this copyright notice appears in all copies. For |
11 | 11 |
* precise terms see the accompanying LICENSE file. |
12 | 12 |
* |
13 | 13 |
* This software is provided "AS IS" with no warranty of any kind, |
14 | 14 |
* express or implied, and with no claim as to its suitability for any |
15 | 15 |
* purpose. |
16 | 16 |
* |
17 | 17 |
*/ |
18 | 18 |
|
19 | 19 |
#include <iostream> |
20 | 20 |
#include <vector> |
21 | 21 |
#include <cstring> |
22 | 22 |
|
23 | 23 |
#include <lemon/cplex.h> |
24 | 24 |
|
25 | 25 |
extern "C" { |
26 | 26 |
#include <ilcplex/cplex.h> |
27 | 27 |
} |
28 | 28 |
|
29 | 29 |
|
30 | 30 |
///\file |
31 | 31 |
///\brief Implementation of the LEMON-CPLEX lp solver interface. |
32 | 32 |
namespace lemon { |
33 | 33 |
|
34 | 34 |
CplexEnv::LicenseError::LicenseError(int status) { |
35 | 35 |
if (!CPXgeterrorstring(0, status, _message)) { |
36 | 36 |
std::strcpy(_message, "Cplex unknown error"); |
37 | 37 |
} |
38 | 38 |
} |
39 | 39 |
|
40 | 40 |
CplexEnv::CplexEnv() { |
41 | 41 |
int status; |
42 | 42 |
_cnt = new int; |
43 | 43 |
_env = CPXopenCPLEX(&status); |
44 | 44 |
if (_env == 0) { |
45 | 45 |
delete _cnt; |
46 | 46 |
_cnt = 0; |
47 | 47 |
throw LicenseError(status); |
48 | 48 |
} |
49 | 49 |
} |
50 | 50 |
|
51 | 51 |
CplexEnv::CplexEnv(const CplexEnv& other) { |
52 | 52 |
_env = other._env; |
53 | 53 |
_cnt = other._cnt; |
... | ... |
@@ -396,103 +396,103 @@ |
396 | 396 |
} |
397 | 397 |
|
398 | 398 |
void CplexBase::_setObjCoeff(int i, Value obj_coef) |
399 | 399 |
{ |
400 | 400 |
CPXchgobj(cplexEnv(), _prob, 1, &i, &obj_coef); |
401 | 401 |
} |
402 | 402 |
|
403 | 403 |
CplexBase::Value CplexBase::_getObjCoeff(int i) const |
404 | 404 |
{ |
405 | 405 |
Value x; |
406 | 406 |
CPXgetobj(cplexEnv(), _prob, &x, i, i); |
407 | 407 |
return x; |
408 | 408 |
} |
409 | 409 |
|
410 | 410 |
void CplexBase::_setSense(CplexBase::Sense sense) { |
411 | 411 |
switch (sense) { |
412 | 412 |
case MIN: |
413 | 413 |
CPXchgobjsen(cplexEnv(), _prob, CPX_MIN); |
414 | 414 |
break; |
415 | 415 |
case MAX: |
416 | 416 |
CPXchgobjsen(cplexEnv(), _prob, CPX_MAX); |
417 | 417 |
break; |
418 | 418 |
} |
419 | 419 |
} |
420 | 420 |
|
421 | 421 |
CplexBase::Sense CplexBase::_getSense() const { |
422 | 422 |
switch (CPXgetobjsen(cplexEnv(), _prob)) { |
423 | 423 |
case CPX_MIN: |
424 | 424 |
return MIN; |
425 | 425 |
case CPX_MAX: |
426 | 426 |
return MAX; |
427 | 427 |
default: |
428 | 428 |
LEMON_ASSERT(false, "Invalid sense"); |
429 | 429 |
return CplexBase::Sense(); |
430 | 430 |
} |
431 | 431 |
} |
432 | 432 |
|
433 | 433 |
void CplexBase::_clear() { |
434 | 434 |
CPXfreeprob(cplexEnv(),&_prob); |
435 | 435 |
int status; |
436 | 436 |
_prob = CPXcreateprob(cplexEnv(), &status, "Cplex problem"); |
437 | 437 |
rows.clear(); |
438 | 438 |
cols.clear(); |
439 | 439 |
} |
440 | 440 |
|
441 | 441 |
// CplexLp members |
442 | 442 |
|
443 | 443 |
CplexLp::CplexLp() |
444 |
: LpBase(), |
|
444 |
: LpBase(), LpSolver(), CplexBase() {} |
|
445 | 445 |
|
446 | 446 |
CplexLp::CplexLp(const CplexEnv& env) |
447 |
: LpBase(), |
|
447 |
: LpBase(), LpSolver(), CplexBase(env) {} |
|
448 | 448 |
|
449 | 449 |
CplexLp::CplexLp(const CplexLp& other) |
450 |
: LpBase(), |
|
450 |
: LpBase(), LpSolver(), CplexBase(other) {} |
|
451 | 451 |
|
452 | 452 |
CplexLp::~CplexLp() {} |
453 | 453 |
|
454 | 454 |
CplexLp* CplexLp::newSolver() const { return new CplexLp; } |
455 | 455 |
CplexLp* CplexLp::cloneSolver() const {return new CplexLp(*this); } |
456 | 456 |
|
457 | 457 |
const char* CplexLp::_solverName() const { return "CplexLp"; } |
458 | 458 |
|
459 | 459 |
void CplexLp::_clear_temporals() { |
460 | 460 |
_col_status.clear(); |
461 | 461 |
_row_status.clear(); |
462 | 462 |
_primal_ray.clear(); |
463 | 463 |
_dual_ray.clear(); |
464 | 464 |
} |
465 | 465 |
|
466 | 466 |
// The routine returns zero unless an error occurred during the |
467 | 467 |
// optimization. Examples of errors include exhausting available |
468 | 468 |
// memory (CPXERR_NO_MEMORY) or encountering invalid data in the |
469 | 469 |
// CPLEX problem object (CPXERR_NO_PROBLEM). Exceeding a |
470 | 470 |
// user-specified CPLEX limit, or proving the model infeasible or |
471 | 471 |
// unbounded, are not considered errors. Note that a zero return |
472 | 472 |
// value does not necessarily mean that a solution exists. Use query |
473 | 473 |
// routines CPXsolninfo, CPXgetstat, and CPXsolution to obtain |
474 | 474 |
// further information about the status of the optimization. |
475 | 475 |
CplexLp::SolveExitStatus CplexLp::convertStatus(int status) { |
476 | 476 |
#if CPX_VERSION >= 800 |
477 | 477 |
if (status == 0) { |
478 | 478 |
switch (CPXgetstat(cplexEnv(), _prob)) { |
479 | 479 |
case CPX_STAT_OPTIMAL: |
480 | 480 |
case CPX_STAT_INFEASIBLE: |
481 | 481 |
case CPX_STAT_UNBOUNDED: |
482 | 482 |
return SOLVED; |
483 | 483 |
default: |
484 | 484 |
return UNSOLVED; |
485 | 485 |
} |
486 | 486 |
} else { |
487 | 487 |
return UNSOLVED; |
488 | 488 |
} |
489 | 489 |
#else |
490 | 490 |
if (status == 0) { |
491 | 491 |
//We want to exclude some cases |
492 | 492 |
switch (CPXgetstat(cplexEnv(), _prob)) { |
493 | 493 |
case CPX_OBJ_LIM: |
494 | 494 |
case CPX_IT_LIM_FEAS: |
495 | 495 |
case CPX_IT_LIM_INFEAS: |
496 | 496 |
case CPX_TIME_LIM_FEAS: |
497 | 497 |
case CPX_TIME_LIM_INFEAS: |
498 | 498 |
return UNSOLVED; |
... | ... |
@@ -753,118 +753,118 @@ |
753 | 753 |
|
754 | 754 |
//9.0-as cplex verzio statusai |
755 | 755 |
// CPX_STAT_ABORT_DUAL_OBJ_LIM |
756 | 756 |
// CPX_STAT_ABORT_IT_LIM |
757 | 757 |
// CPX_STAT_ABORT_OBJ_LIM |
758 | 758 |
// CPX_STAT_ABORT_PRIM_OBJ_LIM |
759 | 759 |
// CPX_STAT_ABORT_TIME_LIM |
760 | 760 |
// CPX_STAT_ABORT_USER |
761 | 761 |
// CPX_STAT_FEASIBLE_RELAXED |
762 | 762 |
// CPX_STAT_INFEASIBLE |
763 | 763 |
// CPX_STAT_INForUNBD |
764 | 764 |
// CPX_STAT_NUM_BEST |
765 | 765 |
// CPX_STAT_OPTIMAL |
766 | 766 |
// CPX_STAT_OPTIMAL_FACE_UNBOUNDED |
767 | 767 |
// CPX_STAT_OPTIMAL_INFEAS |
768 | 768 |
// CPX_STAT_OPTIMAL_RELAXED |
769 | 769 |
// CPX_STAT_UNBOUNDED |
770 | 770 |
|
771 | 771 |
CplexLp::ProblemType CplexLp::_getDualType() const { |
772 | 772 |
int stat = CPXgetstat(cplexEnv(), _prob); |
773 | 773 |
#if CPX_VERSION >= 800 |
774 | 774 |
switch (stat) { |
775 | 775 |
case CPX_STAT_OPTIMAL: |
776 | 776 |
return OPTIMAL; |
777 | 777 |
case CPX_STAT_UNBOUNDED: |
778 | 778 |
return INFEASIBLE; |
779 | 779 |
default: |
780 | 780 |
return UNDEFINED; |
781 | 781 |
} |
782 | 782 |
#else |
783 | 783 |
statusSwitch(cplexEnv(),stat); |
784 | 784 |
switch (stat) { |
785 | 785 |
case 0: |
786 | 786 |
return UNDEFINED; //Undefined |
787 | 787 |
case CPX_OPTIMAL://Optimal |
788 | 788 |
return OPTIMAL; |
789 | 789 |
case CPX_UNBOUNDED: |
790 | 790 |
return INFEASIBLE; |
791 | 791 |
default: |
792 | 792 |
return UNDEFINED; //Everything else comes here |
793 | 793 |
//FIXME error |
794 | 794 |
} |
795 | 795 |
#endif |
796 | 796 |
} |
797 | 797 |
|
798 | 798 |
// CplexMip members |
799 | 799 |
|
800 | 800 |
CplexMip::CplexMip() |
801 |
: LpBase(), |
|
801 |
: LpBase(), MipSolver(), CplexBase() { |
|
802 | 802 |
|
803 | 803 |
#if CPX_VERSION < 800 |
804 | 804 |
CPXchgprobtype(cplexEnv(), _prob, CPXPROB_MIP); |
805 | 805 |
#else |
806 | 806 |
CPXchgprobtype(cplexEnv(), _prob, CPXPROB_MILP); |
807 | 807 |
#endif |
808 | 808 |
} |
809 | 809 |
|
810 | 810 |
CplexMip::CplexMip(const CplexEnv& env) |
811 |
: LpBase(), |
|
811 |
: LpBase(), MipSolver(), CplexBase(env) { |
|
812 | 812 |
|
813 | 813 |
#if CPX_VERSION < 800 |
814 | 814 |
CPXchgprobtype(cplexEnv(), _prob, CPXPROB_MIP); |
815 | 815 |
#else |
816 | 816 |
CPXchgprobtype(cplexEnv(), _prob, CPXPROB_MILP); |
817 | 817 |
#endif |
818 | 818 |
|
819 | 819 |
} |
820 | 820 |
|
821 | 821 |
CplexMip::CplexMip(const CplexMip& other) |
822 |
: LpBase(), |
|
822 |
: LpBase(), MipSolver(), CplexBase(other) {} |
|
823 | 823 |
|
824 | 824 |
CplexMip::~CplexMip() {} |
825 | 825 |
|
826 | 826 |
CplexMip* CplexMip::newSolver() const { return new CplexMip; } |
827 | 827 |
CplexMip* CplexMip::cloneSolver() const {return new CplexMip(*this); } |
828 | 828 |
|
829 | 829 |
const char* CplexMip::_solverName() const { return "CplexMip"; } |
830 | 830 |
|
831 | 831 |
void CplexMip::_setColType(int i, CplexMip::ColTypes col_type) { |
832 | 832 |
|
833 | 833 |
// Note If a variable is to be changed to binary, a call to CPXchgbds |
834 | 834 |
// should also be made to change the bounds to 0 and 1. |
835 | 835 |
|
836 | 836 |
switch (col_type){ |
837 | 837 |
case INTEGER: { |
838 | 838 |
const char t = 'I'; |
839 | 839 |
CPXchgctype (cplexEnv(), _prob, 1, &i, &t); |
840 | 840 |
} break; |
841 | 841 |
case REAL: { |
842 | 842 |
const char t = 'C'; |
843 | 843 |
CPXchgctype (cplexEnv(), _prob, 1, &i, &t); |
844 | 844 |
} break; |
845 | 845 |
default: |
846 | 846 |
break; |
847 | 847 |
} |
848 | 848 |
} |
849 | 849 |
|
850 | 850 |
CplexMip::ColTypes CplexMip::_getColType(int i) const { |
851 | 851 |
char t; |
852 | 852 |
CPXgetctype (cplexEnv(), _prob, &t, i, i); |
853 | 853 |
switch (t) { |
854 | 854 |
case 'I': |
855 | 855 |
return INTEGER; |
856 | 856 |
case 'C': |
857 | 857 |
return REAL; |
858 | 858 |
default: |
859 | 859 |
LEMON_ASSERT(false, "Invalid column type"); |
860 | 860 |
return ColTypes(); |
861 | 861 |
} |
862 | 862 |
|
863 | 863 |
} |
864 | 864 |
|
865 | 865 |
CplexMip::SolveExitStatus CplexMip::_solve() { |
866 | 866 |
int status; |
867 | 867 |
status = CPXmipopt (cplexEnv(), _prob); |
868 | 868 |
if (status==0) |
869 | 869 |
return SOLVED; |
870 | 870 |
else |
1 | 1 |
/* -*- mode: C++; indent-tabs-mode: nil; -*- |
2 | 2 |
* |
3 | 3 |
* This file is a part of LEMON, a generic C++ optimization library. |
4 | 4 |
* |
5 |
* Copyright (C) 2003- |
|
5 |
* Copyright (C) 2003-2009 |
|
6 | 6 |
* Egervary Jeno Kombinatorikus Optimalizalasi Kutatocsoport |
7 | 7 |
* (Egervary Research Group on Combinatorial Optimization, EGRES). |
8 | 8 |
* |
9 | 9 |
* Permission to use, modify and distribute this software is granted |
10 | 10 |
* provided that this copyright notice appears in all copies. For |
11 | 11 |
* precise terms see the accompanying LICENSE file. |
12 | 12 |
* |
13 | 13 |
* This software is provided "AS IS" with no warranty of any kind, |
14 | 14 |
* express or implied, and with no claim as to its suitability for any |
15 | 15 |
* purpose. |
16 | 16 |
* |
17 | 17 |
*/ |
18 | 18 |
|
19 | 19 |
#ifndef LEMON_CPLEX_H |
20 | 20 |
#define LEMON_CPLEX_H |
21 | 21 |
|
22 | 22 |
///\file |
23 | 23 |
///\brief Header of the LEMON-CPLEX lp solver interface. |
24 | 24 |
|
25 | 25 |
#include <lemon/lp_base.h> |
26 | 26 |
|
27 | 27 |
struct cpxenv; |
28 | 28 |
struct cpxlp; |
29 | 29 |
|
30 | 30 |
namespace lemon { |
31 | 31 |
|
32 | 32 |
/// \brief Reference counted wrapper around cpxenv pointer |
33 | 33 |
/// |
34 | 34 |
/// The cplex uses environment object which is responsible for |
35 | 35 |
/// checking the proper license usage. This class provides a simple |
36 | 36 |
/// interface for share the environment object between different |
37 | 37 |
/// problems. |
38 | 38 |
class CplexEnv { |
39 | 39 |
friend class CplexBase; |
40 | 40 |
private: |
41 | 41 |
cpxenv* _env; |
42 | 42 |
mutable int* _cnt; |
43 | 43 |
|
44 | 44 |
public: |
45 | 45 |
|
46 | 46 |
/// \brief This exception is thrown when the license check is not |
47 | 47 |
/// sufficient |
48 | 48 |
class LicenseError : public Exception { |
49 | 49 |
friend class CplexEnv; |
50 | 50 |
private: |
51 | 51 |
|
52 | 52 |
LicenseError(int status); |
53 | 53 |
char _message[510]; |
54 | 54 |
|
55 | 55 |
public: |
56 | 56 |
|
57 | 57 |
/// The short error message |
58 | 58 |
virtual const char* what() const throw() { |
59 | 59 |
return _message; |
60 | 60 |
} |
61 | 61 |
}; |
62 | 62 |
|
63 | 63 |
/// Constructor |
64 | 64 |
CplexEnv(); |
65 | 65 |
/// Shallow copy constructor |
66 | 66 |
CplexEnv(const CplexEnv&); |
67 | 67 |
/// Shallow assignement |
68 | 68 |
CplexEnv& operator=(const CplexEnv&); |
69 | 69 |
/// Destructor |
70 | 70 |
virtual ~CplexEnv(); |
71 | 71 |
|
72 | 72 |
protected: |
73 | 73 |
|
74 | 74 |
cpxenv* cplexEnv() { return _env; } |
75 | 75 |
const cpxenv* cplexEnv() const { return _env; } |
76 | 76 |
}; |
77 | 77 |
|
78 | 78 |
/// \brief Base interface for the CPLEX LP and MIP solver |
79 | 79 |
/// |
80 | 80 |
/// This class implements the common interface of the CPLEX LP and |
81 |
/// MIP solvers. |
|
81 |
/// MIP solvers. |
|
82 | 82 |
/// \ingroup lp_group |
83 | 83 |
class CplexBase : virtual public LpBase { |
84 | 84 |
protected: |
85 | 85 |
|
86 | 86 |
CplexEnv _env; |
87 | 87 |
cpxlp* _prob; |
88 | 88 |
|
89 | 89 |
CplexBase(); |
90 | 90 |
CplexBase(const CplexEnv&); |
91 | 91 |
CplexBase(const CplexBase &); |
92 | 92 |
virtual ~CplexBase(); |
93 | 93 |
|
94 | 94 |
virtual int _addCol(); |
95 | 95 |
virtual int _addRow(); |
96 | 96 |
|
97 | 97 |
virtual void _eraseCol(int i); |
98 | 98 |
virtual void _eraseRow(int i); |
99 | 99 |
|
100 | 100 |
virtual void _eraseColId(int i); |
101 | 101 |
virtual void _eraseRowId(int i); |
102 | 102 |
|
103 | 103 |
virtual void _getColName(int col, std::string& name) const; |
104 | 104 |
virtual void _setColName(int col, const std::string& name); |
105 | 105 |
virtual int _colByName(const std::string& name) const; |
106 | 106 |
|
107 | 107 |
virtual void _getRowName(int row, std::string& name) const; |
108 | 108 |
virtual void _setRowName(int row, const std::string& name); |
109 | 109 |
virtual int _rowByName(const std::string& name) const; |
110 | 110 |
|
111 | 111 |
virtual void _setRowCoeffs(int i, ExprIterator b, ExprIterator e); |
112 | 112 |
virtual void _getRowCoeffs(int i, InsertIterator b) const; |
113 | 113 |
|
114 | 114 |
virtual void _setColCoeffs(int i, ExprIterator b, ExprIterator e); |
115 | 115 |
virtual void _getColCoeffs(int i, InsertIterator b) const; |
116 | 116 |
|
117 | 117 |
virtual void _setCoeff(int row, int col, Value value); |
118 | 118 |
virtual Value _getCoeff(int row, int col) const; |
119 | 119 |
|
120 | 120 |
virtual void _setColLowerBound(int i, Value value); |
121 | 121 |
virtual Value _getColLowerBound(int i) const; |
122 | 122 |
|
123 | 123 |
virtual void _setColUpperBound(int i, Value value); |
124 | 124 |
virtual Value _getColUpperBound(int i) const; |
125 | 125 |
|
126 | 126 |
private: |
127 | 127 |
void _set_row_bounds(int i, Value lb, Value ub); |
128 | 128 |
protected: |
129 | 129 |
|
... | ... |
@@ -190,69 +190,72 @@ |
190 | 190 |
SolveExitStatus convertStatus(int status); |
191 | 191 |
|
192 | 192 |
protected: |
193 | 193 |
|
194 | 194 |
virtual const char* _solverName() const; |
195 | 195 |
|
196 | 196 |
virtual SolveExitStatus _solve(); |
197 | 197 |
virtual Value _getPrimal(int i) const; |
198 | 198 |
virtual Value _getDual(int i) const; |
199 | 199 |
virtual Value _getPrimalValue() const; |
200 | 200 |
|
201 | 201 |
virtual VarStatus _getColStatus(int i) const; |
202 | 202 |
virtual VarStatus _getRowStatus(int i) const; |
203 | 203 |
|
204 | 204 |
virtual Value _getPrimalRay(int i) const; |
205 | 205 |
virtual Value _getDualRay(int i) const; |
206 | 206 |
|
207 | 207 |
virtual ProblemType _getPrimalType() const; |
208 | 208 |
virtual ProblemType _getDualType() const; |
209 | 209 |
|
210 | 210 |
public: |
211 | 211 |
|
212 | 212 |
/// Solve with primal simplex method |
213 | 213 |
SolveExitStatus solvePrimal(); |
214 | 214 |
|
215 | 215 |
/// Solve with dual simplex method |
216 | 216 |
SolveExitStatus solveDual(); |
217 | 217 |
|
218 | 218 |
/// Solve with barrier method |
219 | 219 |
SolveExitStatus solveBarrier(); |
220 | 220 |
|
221 | 221 |
}; |
222 | 222 |
|
223 | 223 |
/// \brief Interface for the CPLEX MIP solver |
224 | 224 |
/// |
225 | 225 |
/// This class implements an interface for the CPLEX MIP solver. |
226 | 226 |
///\ingroup lp_group |
227 | 227 |
class CplexMip : public MipSolver, public CplexBase { |
228 | 228 |
public: |
229 | 229 |
/// \e |
230 | 230 |
CplexMip(); |
231 | 231 |
/// \e |
232 | 232 |
CplexMip(const CplexEnv&); |
233 | 233 |
/// \e |
234 | 234 |
CplexMip(const CplexMip&); |
235 | 235 |
/// \e |
236 | 236 |
virtual ~CplexMip(); |
237 | 237 |
|
238 |
/// \e |
|
239 |
virtual CplexMip* cloneSolver() const; |
|
240 |
/// \e |
|
241 |
virtual CplexMip* newSolver() const; |
|
242 |
|
|
238 | 243 |
protected: |
239 | 244 |
|
240 |
virtual CplexMip* _cloneSolver() const; |
|
241 |
virtual CplexMip* _newSolver() const; |
|
242 | 245 |
|
243 | 246 |
virtual const char* _solverName() const; |
244 | 247 |
|
245 | 248 |
virtual ColTypes _getColType(int col) const; |
246 | 249 |
virtual void _setColType(int col, ColTypes col_type); |
247 | 250 |
|
248 | 251 |
virtual SolveExitStatus _solve(); |
249 | 252 |
virtual ProblemType _getType() const; |
250 | 253 |
virtual Value _getSol(int i) const; |
251 | 254 |
virtual Value _getSolValue() const; |
252 | 255 |
|
253 | 256 |
}; |
254 | 257 |
|
255 | 258 |
} //END OF NAMESPACE LEMON |
256 | 259 |
|
257 | 260 |
#endif //LEMON_CPLEX_H |
258 | 261 |
1 | 1 |
/* -*- mode: C++; indent-tabs-mode: nil; -*- |
2 | 2 |
* |
3 | 3 |
* This file is a part of LEMON, a generic C++ optimization library. |
4 | 4 |
* |
5 |
* Copyright (C) 2003- |
|
5 |
* Copyright (C) 2003-2009 |
|
6 | 6 |
* Egervary Jeno Kombinatorikus Optimalizalasi Kutatocsoport |
7 | 7 |
* (Egervary Research Group on Combinatorial Optimization, EGRES). |
8 | 8 |
* |
9 | 9 |
* Permission to use, modify and distribute this software is granted |
10 | 10 |
* provided that this copyright notice appears in all copies. For |
11 | 11 |
* precise terms see the accompanying LICENSE file. |
12 | 12 |
* |
13 | 13 |
* This software is provided "AS IS" with no warranty of any kind, |
14 | 14 |
* express or implied, and with no claim as to its suitability for any |
15 | 15 |
* purpose. |
16 | 16 |
* |
17 | 17 |
*/ |
18 | 18 |
|
19 | 19 |
///\file |
20 | 20 |
///\brief Implementation of the LEMON GLPK LP and MIP solver interface. |
21 | 21 |
|
22 | 22 |
#include <lemon/glpk.h> |
23 | 23 |
#include <glpk.h> |
24 | 24 |
|
25 | 25 |
#include <lemon/assert.h> |
26 | 26 |
|
27 | 27 |
namespace lemon { |
28 | 28 |
|
29 | 29 |
// GlpkBase members |
30 | 30 |
|
31 | 31 |
GlpkBase::GlpkBase() : LpBase() { |
32 | 32 |
lp = glp_create_prob(); |
33 | 33 |
glp_create_index(lp); |
34 | 34 |
} |
35 | 35 |
|
36 | 36 |
GlpkBase::GlpkBase(const GlpkBase &other) : LpBase() { |
37 | 37 |
lp = glp_create_prob(); |
38 | 38 |
glp_copy_prob(lp, other.lp, GLP_ON); |
39 | 39 |
glp_create_index(lp); |
40 | 40 |
rows = other.rows; |
41 | 41 |
cols = other.cols; |
42 | 42 |
} |
43 | 43 |
|
44 | 44 |
GlpkBase::~GlpkBase() { |
45 | 45 |
glp_delete_prob(lp); |
46 | 46 |
} |
47 | 47 |
|
48 | 48 |
int GlpkBase::_addCol() { |
49 | 49 |
int i = glp_add_cols(lp, 1); |
50 | 50 |
glp_set_col_bnds(lp, i, GLP_FR, 0.0, 0.0); |
51 | 51 |
return i; |
52 | 52 |
} |
53 | 53 |
|
... | ... |
@@ -486,102 +486,102 @@ |
486 | 486 |
void GlpkBase::_setObjCoeff(int i, Value obj_coef) { |
487 | 487 |
//i = 0 means the constant term (shift) |
488 | 488 |
glp_set_obj_coef(lp, i, obj_coef); |
489 | 489 |
} |
490 | 490 |
|
491 | 491 |
GlpkBase::Value GlpkBase::_getObjCoeff(int i) const { |
492 | 492 |
//i = 0 means the constant term (shift) |
493 | 493 |
return glp_get_obj_coef(lp, i); |
494 | 494 |
} |
495 | 495 |
|
496 | 496 |
void GlpkBase::_setSense(GlpkBase::Sense sense) { |
497 | 497 |
switch (sense) { |
498 | 498 |
case MIN: |
499 | 499 |
glp_set_obj_dir(lp, GLP_MIN); |
500 | 500 |
break; |
501 | 501 |
case MAX: |
502 | 502 |
glp_set_obj_dir(lp, GLP_MAX); |
503 | 503 |
break; |
504 | 504 |
} |
505 | 505 |
} |
506 | 506 |
|
507 | 507 |
GlpkBase::Sense GlpkBase::_getSense() const { |
508 | 508 |
switch(glp_get_obj_dir(lp)) { |
509 | 509 |
case GLP_MIN: |
510 | 510 |
return MIN; |
511 | 511 |
case GLP_MAX: |
512 | 512 |
return MAX; |
513 | 513 |
default: |
514 | 514 |
LEMON_ASSERT(false, "Wrong sense"); |
515 | 515 |
return GlpkBase::Sense(); |
516 | 516 |
} |
517 | 517 |
} |
518 | 518 |
|
519 | 519 |
void GlpkBase::_clear() { |
520 | 520 |
glp_erase_prob(lp); |
521 | 521 |
rows.clear(); |
522 | 522 |
cols.clear(); |
523 | 523 |
} |
524 | 524 |
|
525 | 525 |
void GlpkBase::freeEnv() { |
526 | 526 |
glp_free_env(); |
527 | 527 |
} |
528 | 528 |
|
529 | 529 |
GlpkBase::FreeEnvHelper GlpkBase::freeEnvHelper; |
530 | 530 |
|
531 | 531 |
// GlpkLp members |
532 | 532 |
|
533 | 533 |
GlpkLp::GlpkLp() |
534 |
: LpBase(), |
|
534 |
: LpBase(), LpSolver(), GlpkBase() { |
|
535 | 535 |
messageLevel(MESSAGE_NO_OUTPUT); |
536 | 536 |
} |
537 | 537 |
|
538 | 538 |
GlpkLp::GlpkLp(const GlpkLp& other) |
539 |
: LpBase(other), |
|
539 |
: LpBase(other), LpSolver(other), GlpkBase(other) { |
|
540 | 540 |
messageLevel(MESSAGE_NO_OUTPUT); |
541 | 541 |
} |
542 | 542 |
|
543 | 543 |
GlpkLp* GlpkLp::newSolver() const { return new GlpkLp; } |
544 | 544 |
GlpkLp* GlpkLp::cloneSolver() const { return new GlpkLp(*this); } |
545 | 545 |
|
546 | 546 |
const char* GlpkLp::_solverName() const { return "GlpkLp"; } |
547 | 547 |
|
548 | 548 |
void GlpkLp::_clear_temporals() { |
549 | 549 |
_primal_ray.clear(); |
550 | 550 |
_dual_ray.clear(); |
551 | 551 |
} |
552 | 552 |
|
553 | 553 |
GlpkLp::SolveExitStatus GlpkLp::_solve() { |
554 | 554 |
return solvePrimal(); |
555 | 555 |
} |
556 | 556 |
|
557 | 557 |
GlpkLp::SolveExitStatus GlpkLp::solvePrimal() { |
558 | 558 |
_clear_temporals(); |
559 | 559 |
|
560 | 560 |
glp_smcp smcp; |
561 | 561 |
glp_init_smcp(&smcp); |
562 | 562 |
|
563 | 563 |
switch (_message_level) { |
564 | 564 |
case MESSAGE_NO_OUTPUT: |
565 | 565 |
smcp.msg_lev = GLP_MSG_OFF; |
566 | 566 |
break; |
567 | 567 |
case MESSAGE_ERROR_MESSAGE: |
568 | 568 |
smcp.msg_lev = GLP_MSG_ERR; |
569 | 569 |
break; |
570 | 570 |
case MESSAGE_NORMAL_OUTPUT: |
571 | 571 |
smcp.msg_lev = GLP_MSG_ON; |
572 | 572 |
break; |
573 | 573 |
case MESSAGE_FULL_OUTPUT: |
574 | 574 |
smcp.msg_lev = GLP_MSG_ALL; |
575 | 575 |
break; |
576 | 576 |
} |
577 | 577 |
|
578 | 578 |
if (glp_simplex(lp, &smcp) != 0) return UNSOLVED; |
579 | 579 |
return SOLVED; |
580 | 580 |
} |
581 | 581 |
|
582 | 582 |
GlpkLp::SolveExitStatus GlpkLp::solveDual() { |
583 | 583 |
_clear_temporals(); |
584 | 584 |
|
585 | 585 |
glp_smcp smcp; |
586 | 586 |
glp_init_smcp(&smcp); |
587 | 587 |
|
... | ... |
@@ -785,102 +785,102 @@ |
785 | 785 |
return UNDEFINED; |
786 | 786 |
case GLP_FEAS: |
787 | 787 |
case GLP_INFEAS: |
788 | 788 |
if (glp_get_dual_stat(lp) == GLP_NOFEAS) { |
789 | 789 |
return UNBOUNDED; |
790 | 790 |
} else { |
791 | 791 |
return UNDEFINED; |
792 | 792 |
} |
793 | 793 |
case GLP_NOFEAS: |
794 | 794 |
return INFEASIBLE; |
795 | 795 |
default: |
796 | 796 |
LEMON_ASSERT(false, "Wrong primal type"); |
797 | 797 |
return GlpkLp::ProblemType(); |
798 | 798 |
} |
799 | 799 |
} |
800 | 800 |
|
801 | 801 |
GlpkLp::ProblemType GlpkLp::_getDualType() const { |
802 | 802 |
if (glp_get_status(lp) == GLP_OPT) |
803 | 803 |
return OPTIMAL; |
804 | 804 |
switch (glp_get_dual_stat(lp)) { |
805 | 805 |
case GLP_UNDEF: |
806 | 806 |
return UNDEFINED; |
807 | 807 |
case GLP_FEAS: |
808 | 808 |
case GLP_INFEAS: |
809 | 809 |
if (glp_get_prim_stat(lp) == GLP_NOFEAS) { |
810 | 810 |
return UNBOUNDED; |
811 | 811 |
} else { |
812 | 812 |
return UNDEFINED; |
813 | 813 |
} |
814 | 814 |
case GLP_NOFEAS: |
815 | 815 |
return INFEASIBLE; |
816 | 816 |
default: |
817 | 817 |
LEMON_ASSERT(false, "Wrong primal type"); |
818 | 818 |
return GlpkLp::ProblemType(); |
819 | 819 |
} |
820 | 820 |
} |
821 | 821 |
|
822 | 822 |
void GlpkLp::presolver(bool b) { |
823 | 823 |
lpx_set_int_parm(lp, LPX_K_PRESOL, b ? 1 : 0); |
824 | 824 |
} |
825 | 825 |
|
826 | 826 |
void GlpkLp::messageLevel(MessageLevel m) { |
827 | 827 |
_message_level = m; |
828 | 828 |
} |
829 | 829 |
|
830 | 830 |
// GlpkMip members |
831 | 831 |
|
832 | 832 |
GlpkMip::GlpkMip() |
833 |
: LpBase(), |
|
833 |
: LpBase(), MipSolver(), GlpkBase() { |
|
834 | 834 |
messageLevel(MESSAGE_NO_OUTPUT); |
835 | 835 |
} |
836 | 836 |
|
837 | 837 |
GlpkMip::GlpkMip(const GlpkMip& other) |
838 |
: LpBase(), |
|
838 |
: LpBase(), MipSolver(), GlpkBase(other) { |
|
839 | 839 |
messageLevel(MESSAGE_NO_OUTPUT); |
840 | 840 |
} |
841 | 841 |
|
842 | 842 |
void GlpkMip::_setColType(int i, GlpkMip::ColTypes col_type) { |
843 | 843 |
switch (col_type) { |
844 | 844 |
case INTEGER: |
845 | 845 |
glp_set_col_kind(lp, i, GLP_IV); |
846 | 846 |
break; |
847 | 847 |
case REAL: |
848 | 848 |
glp_set_col_kind(lp, i, GLP_CV); |
849 | 849 |
break; |
850 | 850 |
} |
851 | 851 |
} |
852 | 852 |
|
853 | 853 |
GlpkMip::ColTypes GlpkMip::_getColType(int i) const { |
854 | 854 |
switch (glp_get_col_kind(lp, i)) { |
855 | 855 |
case GLP_IV: |
856 | 856 |
case GLP_BV: |
857 | 857 |
return INTEGER; |
858 | 858 |
default: |
859 | 859 |
return REAL; |
860 | 860 |
} |
861 | 861 |
|
862 | 862 |
} |
863 | 863 |
|
864 | 864 |
GlpkMip::SolveExitStatus GlpkMip::_solve() { |
865 | 865 |
glp_smcp smcp; |
866 | 866 |
glp_init_smcp(&smcp); |
867 | 867 |
|
868 | 868 |
switch (_message_level) { |
869 | 869 |
case MESSAGE_NO_OUTPUT: |
870 | 870 |
smcp.msg_lev = GLP_MSG_OFF; |
871 | 871 |
break; |
872 | 872 |
case MESSAGE_ERROR_MESSAGE: |
873 | 873 |
smcp.msg_lev = GLP_MSG_ERR; |
874 | 874 |
break; |
875 | 875 |
case MESSAGE_NORMAL_OUTPUT: |
876 | 876 |
smcp.msg_lev = GLP_MSG_ON; |
877 | 877 |
break; |
878 | 878 |
case MESSAGE_FULL_OUTPUT: |
879 | 879 |
smcp.msg_lev = GLP_MSG_ALL; |
880 | 880 |
break; |
881 | 881 |
} |
882 | 882 |
smcp.meth = GLP_DUAL; |
883 | 883 |
|
884 | 884 |
if (glp_simplex(lp, &smcp) != 0) return UNSOLVED; |
885 | 885 |
if (glp_get_status(lp) != GLP_OPT) return SOLVED; |
886 | 886 |
1 | 1 |
/* -*- mode: C++; indent-tabs-mode: nil; -*- |
2 | 2 |
* |
3 | 3 |
* This file is a part of LEMON, a generic C++ optimization library. |
4 | 4 |
* |
5 |
* Copyright (C) 2003- |
|
5 |
* Copyright (C) 2003-2009 |
|
6 | 6 |
* Egervary Jeno Kombinatorikus Optimalizalasi Kutatocsoport |
7 | 7 |
* (Egervary Research Group on Combinatorial Optimization, EGRES). |
8 | 8 |
* |
9 | 9 |
* Permission to use, modify and distribute this software is granted |
10 | 10 |
* provided that this copyright notice appears in all copies. For |
11 | 11 |
* precise terms see the accompanying LICENSE file. |
12 | 12 |
* |
13 | 13 |
* This software is provided "AS IS" with no warranty of any kind, |
14 | 14 |
* express or implied, and with no claim as to its suitability for any |
15 | 15 |
* purpose. |
16 | 16 |
* |
17 | 17 |
*/ |
18 | 18 |
|
19 | 19 |
#include <sstream> |
20 | 20 |
#include <lemon/lp_skeleton.h> |
21 | 21 |
#include "test_tools.h" |
22 | 22 |
#include <lemon/tolerance.h> |
23 | 23 |
|
24 | 24 |
#ifdef HAVE_CONFIG_H |
25 | 25 |
#include <lemon/config.h> |
26 | 26 |
#endif |
27 | 27 |
|
28 | 28 |
#ifdef HAVE_GLPK |
29 | 29 |
#include <lemon/glpk.h> |
30 | 30 |
#endif |
31 | 31 |
|
32 | 32 |
#ifdef HAVE_CPLEX |
33 | 33 |
#include <lemon/cplex.h> |
34 | 34 |
#endif |
35 | 35 |
|
36 | 36 |
#ifdef HAVE_SOPLEX |
37 | 37 |
#include <lemon/soplex.h> |
38 | 38 |
#endif |
39 | 39 |
|
40 | 40 |
#ifdef HAVE_CLP |
41 | 41 |
#include <lemon/clp.h> |
42 | 42 |
#endif |
43 | 43 |
|
44 | 44 |
using namespace lemon; |
45 | 45 |
|
46 | 46 |
void lpTest(LpSolver& lp) |
47 | 47 |
{ |
48 | 48 |
|
49 | 49 |
typedef LpSolver LP; |
50 | 50 |
|
51 | 51 |
std::vector<LP::Col> x(10); |
52 | 52 |
// for(int i=0;i<10;i++) x.push_back(lp.addCol()); |
53 | 53 |
lp.addColSet(x); |
... | ... |
@@ -320,107 +320,107 @@ |
320 | 320 |
"The lower bound for variable x1 should be 0."); |
321 | 321 |
check(clp->colUpperBound(x1)==LpSolver::INF, |
322 | 322 |
"The upper bound for variable x1 should be infty."); |
323 | 323 |
|
324 | 324 |
check(lp.rowLowerBound(upright)==-LpSolver::INF, |
325 | 325 |
"The lower bound for the first row should be -infty."); |
326 | 326 |
check(lp.rowUpperBound(upright)==1, |
327 | 327 |
"The upper bound for the first row should be 1."); |
328 | 328 |
e = clp->row(upright); |
329 | 329 |
check(e[x1] == 1, "The first coefficient should 1."); |
330 | 330 |
check(e[x2] == 1, "The second coefficient should 1."); |
331 | 331 |
|
332 | 332 |
de = clp->col(x1); |
333 | 333 |
check(de[upright] == 1, "The first coefficient should 1."); |
334 | 334 |
|
335 | 335 |
delete clp; |
336 | 336 |
|
337 | 337 |
//Maximization of x1+x2 |
338 | 338 |
//over the triangle with vertices (0,0) (0,1) (1,0) |
339 | 339 |
double expected_opt=1; |
340 | 340 |
solveAndCheck(lp, LpSolver::OPTIMAL, expected_opt); |
341 | 341 |
|
342 | 342 |
//Minimization |
343 | 343 |
lp.sense(lp.MIN); |
344 | 344 |
expected_opt=0; |
345 | 345 |
solveAndCheck(lp, LpSolver::OPTIMAL, expected_opt); |
346 | 346 |
|
347 | 347 |
//Vertex (-1,0) instead of (0,0) |
348 | 348 |
lp.colLowerBound(x1, -LpSolver::INF); |
349 | 349 |
expected_opt=-1; |
350 | 350 |
solveAndCheck(lp, LpSolver::OPTIMAL, expected_opt); |
351 | 351 |
|
352 | 352 |
//Erase one constraint and return to maximization |
353 | 353 |
lp.erase(upright); |
354 | 354 |
lp.sense(lp.MAX); |
355 | 355 |
expected_opt=LpSolver::INF; |
356 | 356 |
solveAndCheck(lp, LpSolver::UNBOUNDED, expected_opt); |
357 | 357 |
|
358 | 358 |
//Infeasibilty |
359 | 359 |
lp.addRow(x1+x2 <=-2); |
360 | 360 |
solveAndCheck(lp, LpSolver::INFEASIBLE, expected_opt); |
361 | 361 |
|
362 | 362 |
} |
363 | 363 |
|
364 | 364 |
template<class LP> |
365 | 365 |
void cloneTest() |
366 | 366 |
{ |
367 | 367 |
//Test for clone/new |
368 |
|
|
368 |
|
|
369 | 369 |
LP* lp = new LP(); |
370 | 370 |
LP* lpnew = lp->newSolver(); |
371 | 371 |
LP* lpclone = lp->cloneSolver(); |
372 | 372 |
delete lp; |
373 | 373 |
delete lpnew; |
374 | 374 |
delete lpclone; |
375 | 375 |
} |
376 | 376 |
|
377 | 377 |
int main() |
378 | 378 |
{ |
379 | 379 |
LpSkeleton lp_skel; |
380 | 380 |
lpTest(lp_skel); |
381 | 381 |
|
382 | 382 |
#ifdef HAVE_GLPK |
383 | 383 |
{ |
384 | 384 |
GlpkLp lp_glpk1,lp_glpk2; |
385 | 385 |
lpTest(lp_glpk1); |
386 | 386 |
aTest(lp_glpk2); |
387 | 387 |
cloneTest<GlpkLp>(); |
388 | 388 |
} |
389 | 389 |
#endif |
390 | 390 |
|
391 | 391 |
#ifdef HAVE_CPLEX |
392 | 392 |
try { |
393 | 393 |
CplexLp lp_cplex1,lp_cplex2; |
394 | 394 |
lpTest(lp_cplex1); |
395 | 395 |
aTest(lp_cplex2); |
396 |
cloneTest<CplexLp>(); |
|
396 | 397 |
} catch (CplexEnv::LicenseError& error) { |
397 | 398 |
#ifdef LEMON_FORCE_CPLEX_CHECK |
398 | 399 |
check(false, error.what()); |
399 | 400 |
#else |
400 | 401 |
std::cerr << error.what() << std::endl; |
401 | 402 |
std::cerr << "Cplex license check failed, lp check skipped" << std::endl; |
402 | 403 |
#endif |
403 | 404 |
} |
404 |
cloneTest<CplexLp>(); |
|
405 | 405 |
#endif |
406 | 406 |
|
407 | 407 |
#ifdef HAVE_SOPLEX |
408 | 408 |
{ |
409 | 409 |
SoplexLp lp_soplex1,lp_soplex2; |
410 | 410 |
lpTest(lp_soplex1); |
411 | 411 |
aTest(lp_soplex2); |
412 | 412 |
cloneTest<SoplexLp>(); |
413 | 413 |
} |
414 | 414 |
#endif |
415 | 415 |
|
416 | 416 |
#ifdef HAVE_CLP |
417 | 417 |
{ |
418 | 418 |
ClpLp lp_clp1,lp_clp2; |
419 | 419 |
lpTest(lp_clp1); |
420 | 420 |
aTest(lp_clp2); |
421 | 421 |
cloneTest<ClpLp>(); |
422 | 422 |
} |
423 | 423 |
#endif |
424 | 424 |
|
425 | 425 |
return 0; |
426 | 426 |
} |
1 | 1 |
/* -*- mode: C++; indent-tabs-mode: nil; -*- |
2 | 2 |
* |
3 | 3 |
* This file is a part of LEMON, a generic C++ optimization library. |
4 | 4 |
* |
5 |
* Copyright (C) 2003- |
|
5 |
* Copyright (C) 2003-2009 |
|
6 | 6 |
* Egervary Jeno Kombinatorikus Optimalizalasi Kutatocsoport |
7 | 7 |
* (Egervary Research Group on Combinatorial Optimization, EGRES). |
8 | 8 |
* |
9 | 9 |
* Permission to use, modify and distribute this software is granted |
10 | 10 |
* provided that this copyright notice appears in all copies. For |
11 | 11 |
* precise terms see the accompanying LICENSE file. |
12 | 12 |
* |
13 | 13 |
* This software is provided "AS IS" with no warranty of any kind, |
14 | 14 |
* express or implied, and with no claim as to its suitability for any |
15 | 15 |
* purpose. |
16 | 16 |
* |
17 | 17 |
*/ |
18 | 18 |
|
19 | 19 |
#include "test_tools.h" |
20 | 20 |
|
21 | 21 |
|
22 | 22 |
#ifdef HAVE_CONFIG_H |
23 | 23 |
#include <lemon/config.h> |
24 | 24 |
#endif |
25 | 25 |
|
26 | 26 |
#ifdef HAVE_CPLEX |
27 | 27 |
#include <lemon/cplex.h> |
28 | 28 |
#endif |
29 | 29 |
|
30 | 30 |
#ifdef HAVE_GLPK |
31 | 31 |
#include <lemon/glpk.h> |
32 | 32 |
#endif |
33 | 33 |
|
34 | 34 |
|
35 | 35 |
using namespace lemon; |
36 | 36 |
|
37 | 37 |
void solveAndCheck(MipSolver& mip, MipSolver::ProblemType stat, |
38 | 38 |
double exp_opt) { |
39 | 39 |
using std::string; |
40 | 40 |
|
41 | 41 |
mip.solve(); |
42 | 42 |
//int decimal,sign; |
43 | 43 |
std::ostringstream buf; |
44 | 44 |
buf << "Type should be: " << int(stat)<<" and it is "<<int(mip.type()); |
45 | 45 |
|
46 | 46 |
|
47 | 47 |
// itoa(stat,buf1, 10); |
48 | 48 |
check(mip.type()==stat, buf.str()); |
49 | 49 |
|
50 | 50 |
if (stat == MipSolver::OPTIMAL) { |
51 | 51 |
std::ostringstream sbuf; |
52 | 52 |
buf << "Wrong optimal value: the right optimum is " << exp_opt; |
53 | 53 |
check(std::abs(mip.solValue()-exp_opt) < 1e-3, sbuf.str()); |
... | ... |
@@ -64,86 +64,86 @@ |
64 | 64 |
typedef MipSolver::Col Col; |
65 | 65 |
|
66 | 66 |
|
67 | 67 |
|
68 | 68 |
Col x1 = mip.addCol(); |
69 | 69 |
Col x2 = mip.addCol(); |
70 | 70 |
|
71 | 71 |
|
72 | 72 |
//Objective function |
73 | 73 |
mip.obj(x1); |
74 | 74 |
|
75 | 75 |
mip.max(); |
76 | 76 |
|
77 | 77 |
|
78 | 78 |
//Unconstrained optimization |
79 | 79 |
mip.solve(); |
80 | 80 |
//Check it out! |
81 | 81 |
|
82 | 82 |
//Constraints |
83 | 83 |
mip.addRow(2*x1+x2 <=2); |
84 | 84 |
mip.addRow(x1-2*x2 <=0); |
85 | 85 |
|
86 | 86 |
//Nonnegativity of the variable x1 |
87 | 87 |
mip.colLowerBound(x1, 0); |
88 | 88 |
|
89 | 89 |
//Maximization of x1 |
90 | 90 |
//over the triangle with vertices (0,0),(4/5,2/5),(0,2) |
91 | 91 |
double expected_opt=4.0/5.0; |
92 | 92 |
solveAndCheck(mip, MipSolver::OPTIMAL, expected_opt); |
93 | 93 |
|
94 | 94 |
//Restrict x2 to integer |
95 | 95 |
mip.colType(x2,MipSolver::INTEGER); |
96 | 96 |
expected_opt=1.0/2.0; |
97 | 97 |
solveAndCheck(mip, MipSolver::OPTIMAL, expected_opt); |
98 | 98 |
|
99 | 99 |
|
100 | 100 |
//Restrict both to integer |
101 | 101 |
mip.colType(x1,MipSolver::INTEGER); |
102 | 102 |
expected_opt=0; |
103 | 103 |
solveAndCheck(mip, MipSolver::OPTIMAL, expected_opt); |
104 | 104 |
|
105 | 105 |
|
106 | 106 |
|
107 | 107 |
} |
108 | 108 |
|
109 | 109 |
template<class MIP> |
110 | 110 |
void cloneTest() |
111 | 111 |
{ |
112 |
|
|
112 |
|
|
113 | 113 |
MIP* mip = new MIP(); |
114 | 114 |
MIP* mipnew = mip->newSolver(); |
115 | 115 |
MIP* mipclone = mip->cloneSolver(); |
116 | 116 |
delete mip; |
117 | 117 |
delete mipnew; |
118 | 118 |
delete mipclone; |
119 | 119 |
} |
120 | 120 |
|
121 | 121 |
int main() |
122 | 122 |
{ |
123 | 123 |
|
124 | 124 |
#ifdef HAVE_GLPK |
125 | 125 |
{ |
126 | 126 |
GlpkMip mip1; |
127 | 127 |
aTest(mip1); |
128 | 128 |
cloneTest<GlpkMip>(); |
129 | 129 |
} |
130 | 130 |
#endif |
131 | 131 |
|
132 | 132 |
#ifdef HAVE_CPLEX |
133 | 133 |
try { |
134 | 134 |
CplexMip mip2; |
135 | 135 |
aTest(mip2); |
136 |
cloneTest<CplexMip>(); |
|
136 | 137 |
} catch (CplexEnv::LicenseError& error) { |
137 | 138 |
#ifdef LEMON_FORCE_CPLEX_CHECK |
138 | 139 |
check(false, error.what()); |
139 | 140 |
#else |
140 | 141 |
std::cerr << error.what() << std::endl; |
141 | 142 |
std::cerr << "Cplex license check failed, lp check skipped" << std::endl; |
142 | 143 |
#endif |
143 | 144 |
} |
144 |
cloneTest<CplexMip>(); |
|
145 | 145 |
#endif |
146 | 146 |
|
147 | 147 |
return 0; |
148 | 148 |
|
149 | 149 |
} |
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