| 1 | #include "SimpleBoundCons.hpp" | 
| 2 |  | 
| 3 | SimpleBoundCons::SimpleBoundCons(int index, double b, bool flag) | 
| 4 | : ConstraintBase(){ | 
| 5 |  | 
| 6 | bound = b; | 
| 7 |  | 
| 8 | consType = simpleBound; | 
| 9 |  | 
| 10 | if (flag){ | 
| 11 | boundType = btUpper; | 
| 12 | } | 
| 13 | else{ | 
| 14 | boundType = btLower; | 
| 15 | } | 
| 16 | } | 
| 17 |  | 
| 18 | SimpleBoundCons::SimpleBoundCons(int ndim, int index, double b, bool flag) | 
| 19 | : ConstraintBase(ndim){ | 
| 20 |  | 
| 21 | bound = b; | 
| 22 |  | 
| 23 | consType = simpleBound; | 
| 24 |  | 
| 25 | if (flag){ | 
| 26 | boundType = btUpper; | 
| 27 | } | 
| 28 | else{ | 
| 29 | boundType = btLower; | 
| 30 | } | 
| 31 | } | 
| 32 | double SimpleBoundCons::calcResidual(vector<double>& x){ | 
| 33 | double residual; | 
| 34 |  | 
| 35 | residual = x[index] - bound; | 
| 36 |  | 
| 37 | if(boundType == btLower) | 
| 38 | return -residual; | 
| 39 | else if (boundType == btUpper) | 
| 40 | return residual; | 
| 41 | else{ | 
| 42 | cout << "SimpleBoundCons Error: BoundType of SimpleBoundCons can not be btEqu" << endl; | 
| 43 | exit(ERROR_CONSTRAINT); | 
| 44 | } | 
| 45 | } | 
| 46 |  | 
| 47 | vector<double> SimpleBoundCons::calcConsGrad(vector<double>& x){ | 
| 48 | vector<double> result(ndim, 0); | 
| 49 |  | 
| 50 | if(boundType == btLower) | 
| 51 | result[index] = -1.0; | 
| 52 | else if (boundType == btUpper) | 
| 53 | result[index] = 1.0; | 
| 54 | else{ | 
| 55 | cout << "SimpleBoundCons Error: BoundType of SimpleBoundCons can not be btEqu" << endl; | 
| 56 | exit(ERROR_CONSTRAINT); | 
| 57 | } | 
| 58 |  | 
| 59 | return result; | 
| 60 | } | 
| 61 | SymMatrix SimpleBoundCons::calcConsHessian(vector<double>& x){ | 
| 62 | SymMatrix H(ndim); | 
| 63 | H = 0; | 
| 64 | return H; | 
| 65 | } |