2022-11-19 14:59:21 -08:00
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#ifndef DLX_DLX_HPP_
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#define DLX_DLX_HPP_
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#include <cstddef>
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#include <functional>
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#include <vector>
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#include <utility>
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namespace dlx {
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2022-11-20 11:15:15 -08:00
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struct Cell;
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class Dlx final {
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std::vector<Cell*> ctab_;
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std::vector<Cell*> rtab_;
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Cell* root_;
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auto AddCol() -> void;
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auto AddRow() -> void;
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auto AllocCol(std::size_t n) -> void;
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auto AllocRow(std::size_t n) -> void;
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public:
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Dlx();
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~Dlx();
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Dlx(Dlx const&) = delete;
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auto operator=(Dlx const&) -> Dlx& = delete;
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Dlx(Dlx &&);
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auto operator=(Dlx &&) -> Dlx&;
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// Returns number of rows.
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auto Rows() const -> std::size_t;
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// Returns number of columns.
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auto Cols() const -> std::size_t;
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// Places a 1 in the given row and column.
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// Increases the number of rows and columns if necessary.
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auto Set(std::size_t row, std::size_t col) -> void;
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// Marks a column as optional: a solution need not cover the given column,
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// but it still must respect the constraints it entails.
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auto MarkOptional(std::size_t col) -> void;
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// Removes a row from consideration.
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// Should only be called after all dlx_set() calls.
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auto RemoveRow(std::size_t row) -> void;
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// Picks a row to be part of the solution.
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// Should only be called after all Set() calls and RemoveRows() calls.
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// TODO: Check the row can be legally chosen.
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auto PickRow(std::size_t row) -> void;
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auto Solve(
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std::function<bool(std::size_t, std::size_t, std::size_t)> try_cb,
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std::function<bool()> undo_cb,
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std::function<bool()> found_cb,
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std::function<bool(std::size_t)> stuck_cb) -> void;
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};
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auto ForallCover(Dlx& dlx, auto cb) {
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std::vector<std::size_t> sol;
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dlx.Solve(
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[&](std::size_t c, std::size_t s, std::size_t r) { sol.push_back(r); return false; },
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[&](){ sol.pop_back(); return false; },
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[&](){ return cb(std::as_const(sol)); },
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[](std::size_t){ return false; }
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);
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}
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} // namespace
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2022-11-21 14:14:20 -08:00
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#endif
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