108 lines
2.8 KiB
C
108 lines
2.8 KiB
C
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#ifndef _MINE_MINE_H
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#define _MINE_MINE_H _MINE_MINE_H
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#include <vector>
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#include <list>
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#include <ostream>
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class Position {
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public:
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int x, y;
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inline Position(int x, int y) : x(x), y(y) { }
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inline Position() : x(-1), y(-1) { }
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inline bool operator==(const Position &other) { return x == other.x && y == other.y; }
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inline void set(int x, int y) { this->x = x; this->y = y; }
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inline Position left(int n = 1) const { return Position(x-n, y); }
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inline Position right(int n = 1) const { return Position(x+n, y); }
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inline Position top(int n = 1) const { return Position(x, y+n); }
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inline Position bottom(int n = 1) const { return Position(x, y-n); }
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inline Position topleft() const { return Position(x-1, y+1); }
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inline Position topright() const { return Position(x+1, y+1); }
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inline Position bottomleft() const { return Position(x-1, y-1); }
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inline Position bottomright() const { return Position(x+1, y-1); }
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inline bool valid() const { return x >= 0 && y >= 0; }
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};
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class Mine {
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public:
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enum Cell { Wall=0, Robot, Rock, Lambda, Lift, Earth, Space };
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enum Move { Left=0, Right, Up, Down, Wait, Abort };
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enum State { Alive=0, Won, Lost, Aborted };
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Mine(const std::vector<unsigned char>& data);
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Mine(const Mine& other);
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Mine& operator=(const Mine& other);
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~Mine();
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inline int width() const { return m_width; }
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inline int height() const { return m_height; }
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inline Cell at(int x, int y) const {
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if (x < 0 || y < 0 || x >= m_width || y >= m_height) return Wall;
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return (Cell)m_cells[y*m_width+x];
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}
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inline Cell at(const Position &pos) const {
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return at(pos.x, pos.y);
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}
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inline Cell operator()(int x, int y) const {
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return at(x, y);
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}
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inline Cell operator()(const Position &pos) const {
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return at(pos.x, pos.y);
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}
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inline const Position& robot() const { return m_robot; }
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inline const std::vector<Position>& lifts() const { return m_lifts; }
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inline bool isLiftOpen() const { return m_lambdas.size() == 0; }
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inline const std::vector<Position>& lambdas() const { return m_lambdas; }
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int score() const {
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switch (m_state) {
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case Lost:
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return 25*m_nLambdas - m_nMoves;
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case Won: return 75*m_nLambdas - m_nMoves;
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case Alive:
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case Aborted: return 50*m_nLambdas - m_nMoves;
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}
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return 0;
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}
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inline int foundLambdas() const { return m_nLambdas; }
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inline int moves() const { return m_nMoves; }
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inline State state() const { return m_state; }
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void move(Move m);
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void show(std::ostream &o);
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private:
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// no bound checks, writes must be valid.
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inline void set(int x, int y, Cell c) {
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m_cells[y*m_width+x] = c;
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}
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inline void set(Position pos, Cell c) {
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set(pos.x, pos.y, c);
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}
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typedef unsigned char iCell;
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iCell *m_cells;
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bool *m_newRocks; // tmp row in map update
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int m_width, m_height;
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Position m_robot;
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std::vector<Position> m_lifts, m_lambdas;
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int m_nLambdas, m_nMoves;
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State m_state;
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};
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#endif
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