172 lines
		
	
	
		
			5.1 KiB
		
	
	
	
		
			C++
		
	
	
			
		
		
	
	
			172 lines
		
	
	
		
			5.1 KiB
		
	
	
	
		
			C++
		
	
	
/*
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 * Scheduler.h
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 * @brief an example how inference can be used for scheduling qualifiers
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 * @date Mar 26, 2011
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 * @author Frank Dellaert
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 */
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#pragma once
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#include <gtsam_unstable/discrete/CSP.h>
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namespace gtsam {
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  /**
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   * Scheduler class
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   * Creates one variable for each student, and three variables for each
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   * of the student's areas, for a total of 4*nrStudents variables.
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   * The "student" variable will determine when the student takes the qual.
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   * The "area" variables determine which faculty are on his/her committee.
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   */
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  class GTSAM_UNSTABLE_EXPORT Scheduler : public CSP {
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  private:
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    /** Internal data structure for students */
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    struct Student {
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      std::string name_;
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      DiscreteKey key_; // key for student
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      std::vector<DiscreteKey> keys_; // key for areas
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      std::vector<std::string> areaName_;
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      std::vector<double> advisor_;
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      Student(size_t nrFaculty, size_t advisorIndex) :
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        keys_(3), areaName_(3), advisor_(nrFaculty, 1.0) {
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        advisor_[advisorIndex] = 0.0;
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      }
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      void print() const {
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        using std::cout;
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        cout << name_ << ": ";
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        for (size_t area = 0; area < 3; area++)
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          cout << areaName_[area] << " ";
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        cout << std::endl;
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      }
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    };
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    /** Maximum number of students */
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    size_t maxNrStudents_;
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    /** discrete keys, indexed by student and area index */
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    std::vector<Student> students_;
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    /** faculty identifiers */
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    std::map<std::string, size_t> facultyIndex_;
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    std::vector<std::string> facultyName_, slotName_, areaName_;
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    /** area constraints */
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    typedef std::map<std::string, std::vector<double> > FacultyInArea;
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    FacultyInArea facultyInArea_;
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    /** nrTimeSlots * nrFaculty availability constraints */
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    std::string available_;
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    /** which slots are good */
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    std::vector<double> slotsAvailable_;
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  public:
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    /**
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     * Constructor
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     * WE need to know the number of students in advance for ordering keys.
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     * then add faculty, slots, areas, availability, students, in that order
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     */
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    Scheduler(size_t maxNrStudents):maxNrStudents_(maxNrStudents) {
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    }
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    void addFaculty(const std::string& facultyName) {
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      facultyIndex_[facultyName] = nrFaculty();
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      facultyName_.push_back(facultyName);
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    }
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    size_t nrFaculty() const {
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      return facultyName_.size();
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    }
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    /** boolean std::string of nrTimeSlots * nrFaculty */
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    void setAvailability(const std::string& available) {
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      available_ = available;
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    }
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    void addSlot(const std::string& slotName) {
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      slotName_.push_back(slotName);
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    }
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    size_t nrTimeSlots() const {
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      return slotName_.size();
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    }
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    const std::string& slotName(size_t s) const {
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      return slotName_[s];
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    }
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    /** slots available, boolean */
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    void setSlotsAvailable(const std::vector<double>& slotsAvailable) {
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      slotsAvailable_ = slotsAvailable;
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    }
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    void addArea(const std::string& facultyName, const std::string& areaName) {
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      areaName_.push_back(areaName);
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      std::vector<double>& table = facultyInArea_[areaName]; // will create if needed
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      if (table.empty()) table.resize(nrFaculty(), 0);
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      table[facultyIndex_[facultyName]] = 1;
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    }
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    /**
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     * Constructor that reads in faculty, slots, availibility.
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     * Still need to add areas and students after this
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     */
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    Scheduler(size_t maxNrStudents, const std::string& filename);
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    /** get key for student and area, 0 is time slot itself */
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    const DiscreteKey& key(size_t s, boost::optional<size_t> area = boost::none) const;
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    /** addStudent has to be called after adding slots and faculty */
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    void addStudent(const std::string& studentName, const std::string& area1,
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        const std::string& area2, const std::string& area3,
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        const std::string& advisor);
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    /// current number of students
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    size_t nrStudents() const {
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      return students_.size();
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    }
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    const std::string& studentName(size_t i) const;
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    const DiscreteKey& studentKey(size_t i) const;
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    const std::string& studentArea(size_t i, size_t area) const;
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    /** Add student-specific constraints to the graph */
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    void addStudentSpecificConstraints(size_t i, boost::optional<size_t> slot = boost::none);
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    /** Main routine that builds factor graph */
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    void buildGraph(size_t mutexBound = 7);
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    /** print */
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    void print(const std::string& s = "Scheduler") const;
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    /** Print readable form of assignment */
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    void printAssignment(sharedValues assignment) const;
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    /** Special print for single-student case */
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    void printSpecial(sharedValues assignment) const;
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    /** Accumulate faculty stats */
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    void accumulateStats(sharedValues assignment,
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        std::vector<size_t>& stats) const;
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    /** Eliminate, return a Bayes net */
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    DiscreteBayesNet::shared_ptr eliminate() const;
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    /** Find the best total assignment - can be expensive */
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    sharedValues optimalAssignment() const;
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    /** find the assignment of students to slots with most possible committees */
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    sharedValues bestSchedule() const;
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    /** find the corresponding most desirable committee assignment */
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    sharedValues bestAssignment(sharedValues bestSchedule) const;
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  }; // Scheduler
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} // gtsam
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