6 #include "CoinPackedMatrix.hpp"
41 virtual double infeasibility(
const OsiBranchingInformation * info,
76 int numberOnDownSide,
const int * down,
77 int numberOnUpSide,
const int * up);
106 virtual void print();
Abstract branching object base class Now just difference with OsiBranchingObject. ...
virtual CbcBranchObjType type() const
Return the type (an integer identifier) of this.
virtual CbcBranchingObject * clone() const
Clone.
General Branching Object class.
int * rhs_
Possible rhs (if 0 then not possible)
virtual void print() const
Print something about branch - only if log level high.
int * upList_
upList - variables to fix to lb on up branch
int numberUp_
Number on up list.
CbcFollowOn & operator=(const CbcFollowOn &rhs)
virtual double infeasibility(const OsiBranchingInformation *info, int &preferredWay) const
Infeasibility - large is 0.5.
virtual CbcBranchingObject * createCbcBranch(OsiSolverInterface *solver, const OsiBranchingInformation *info, int way)
Creates a branching object.
virtual double branch()
Does next branch and updates state.
CbcFixingBranchingObject & operator=(const CbcFixingBranchingObject &rhs)
Define a follow on class.
int * downList_
downList - variables to fix to lb on down branch
virtual void feasibleRegion()=0
For the variable(s) referenced by the object, look at the current solution and set bounds to match th...
virtual void print()
Print something about branch - only if log level high.
virtual void feasibleRegion()
This looks at solution and sets bounds to contain solution.
int preferredWay() const
If -1 down always chosen first, +1 up always, 0 normal.
CoinPackedMatrix matrix_
data Matrix
CoinPackedMatrix matrixByRow_
Matrix by row.
virtual ~CbcFixingBranchingObject()
virtual int gutsOfFollowOn(int &otherRow, int &preferredWay) const
As some computation is needed in more than one place - returns row.
virtual void previousBranch()
Reset every information so that the branching object appears to point to the previous child...
int way() const
Get the state of the branching object.
CbcModel * model() const
Return model.
virtual CbcRangeCompare compareBranchingObject(const CbcBranchingObject *brObj, const bool replaceIfOverlap=false)
Compare the this with brObj.
int numberDown_
data Number on down list
virtual int compareOriginalObject(const CbcBranchingObject *brObj) const
Compare the original object of this with the original object of brObj.
CbcFixingBranchingObject()
CbcModel * model() const
Return model.
Simple Branch and bound class.
virtual CbcObject * clone() const
Clone.
virtual double branch()=0
Execute the actions required to branch, as specified by the current state of the branching object...