#ifndef OT_TIMER_PIN_HPP_ #define OT_TIMER_PIN_HPP_ #include namespace ot { // Forward declaration class Timer; class Net; class Gate; class RctNode; class Arc; class Pin; class Test; class SCC; // ------------------------------------------------------------------------------------------------ // PrimayInput class PrimaryInput { friend class Timer; friend class Pin; public: PrimaryInput(Pin&); private: Pin& _pin; TimingData, MAX_SPLIT, MAX_TRAN> _slew; TimingData, MAX_SPLIT, MAX_TRAN> _at; void _scale_time(float s); void _scale_capacitance(float s); }; // ------------------------------------------------------------------------------------------------ // PrimaryOutput class PrimaryOutput { friend class Timer; friend class Pin; public: PrimaryOutput(Pin&); std::optional rat(Split, Tran) const; std::optional slack(Split, Tran) const; private: Pin& _pin; TimingData _load {{{.0f, .0f}, {.0f, .0f}}}; TimingData, MAX_SPLIT, MAX_TRAN> _rat; void _scale_time(float); void _scale_capacitance(float); }; // ------------------------------------------------------------------------------------------------ // Class: Pin class Pin { // At storage struct At { Arc* pi_arc {nullptr}; Split pi_el; Tran pi_rf; float numeric; At(Arc*, Split, Tran, float); inline operator float () const; inline auto pi() const; }; // Slew storage. struct Slew { Arc* pi_arc {nullptr}; Split pi_el; Tran pi_rf; float numeric; Slew(Arc*, Split, Tran, float); inline operator float () const; inline auto pi() const; }; // Rat storage struct Rat { Arc* pi_arc {nullptr}; Split pi_el; Tran pi_rf; float numeric; Rat(Arc*, Split, Tran, float); inline operator float () const; inline auto pi() const; }; friend class Timer; friend class Net; friend class Arc; friend class Gate; friend class Test; friend class PrimaryOutput; friend class PrimaryInput; friend class SCC; friend struct Point; friend struct Path; constexpr static int FPROP_CAND = 0x01; constexpr static int BPROP_CAND = 0x02; constexpr static int IN_FPROP_STACK = 0x04; constexpr static int IN_BPROP_STACK = 0x08; constexpr static int UNLOOP_CAND = 0x10; constexpr static int IN_UNLOOP_STACK = 0x20; public: Pin(const std::string&); inline const std::string& name() const; inline const PrimaryInput* primary_input() const; inline const PrimaryOutput* primary_output() const; inline const Cellpin* cellpin(Split) const; inline const Net* net() const; inline const Gate* gate() const; bool is_input() const; bool is_output() const; bool is_rct_root() const; bool is_datapath_source() const; bool has_self_loop() const; std::optional slew(Split, Tran) const; std::optional at(Split, Tran) const; std::optional rat(Split, Tran) const; std::optional slack(Split, Tran) const; std::pair power() const; float cap(Split, Tran) const; inline size_t num_fanouts() const; inline size_t num_fanins() const; inline size_t idx() const; private: std::string _name; size_t _idx; Net* _net {nullptr}; SCC* _scc {nullptr}; Gate* _gate {nullptr}; std::variant _handle; std::list _fanout; std::list _fanin; std::list _tests; std::optional::iterator> _frontier_satellite; std::optional::iterator> _net_satellite; TimingData, MAX_SPLIT, MAX_TRAN> _slew; TimingData, MAX_SPLIT, MAX_TRAN> _rat; TimingData, MAX_SPLIT, MAX_TRAN> _at; int _state {0}; std::optional _ftask; std::optional _btask; bool _has_state(int) const; bool _has_no_state(int) const; void _insert_fanout(Arc&); void _insert_fanin(Arc&); void _remove_fanout(Arc&); void _remove_fanin(Arc&); void _remap_cellpin(Split, const Cellpin*); void _remap_cellpin(Split, const Cellpin&); void _reset_slew(); void _reset_at(); void _reset_rat(); void _relax_slew(Arc*, Split, Tran, Split, Tran, float); void _relax_at(Arc*, Split, Tran, Split, Tran, float); void _relax_rat(Arc*, Split, Tran, Split, Tran, float); void _insert_state(int); void _remove_state(int = 0); Arc* _find_fanin(Pin&); Arc* _find_fanout(Pin&); inline PrimaryOutput* _primary_output(); inline PrimaryInput* _primary_input(); std::optional _delta_at(Split, Tran, Split, Tran) const; std::optional _delta_slew(Split, Tran, Split, Tran) const; std::optional _delta_rat(Split, Tran, Split, Tran) const; }; // ------------------------------------------------------------------------------------------------ // Operator inline Pin::At::operator float () const { return numeric; } // Function: pi inline auto Pin::At::pi() const { return std::make_tuple(pi_arc, pi_el, pi_rf); } // ------------------------------------------------------------------------------------------------ // Operator inline Pin::Slew::operator float () const { return numeric; } // Function: pi inline auto Pin::Slew::pi() const { return std::make_tuple(pi_arc, pi_el, pi_rf); } // ------------------------------------------------------------------------------------------------ // Operator inline Pin::Rat::operator float () const { return numeric; } // Function: pi inline auto Pin::Rat::pi() const { return std::make_tuple(pi_arc, pi_el, pi_rf); } // ------------------------------------------------------------------------------------------------ // Function: name inline const std::string& Pin::name() const { return _name; } // Function: idx inline size_t Pin::idx() const { return _idx; } // Function: _pi inline PrimaryInput* Pin::_primary_input() { if(auto ptr = std::get_if(&_handle)) { return *ptr; } return nullptr; } // Function: pi inline const PrimaryInput* Pin::primary_input() const { if(auto ptr = std::get_if(&_handle)) { return *ptr; } return nullptr; } // Function: _po inline PrimaryOutput* Pin::_primary_output() { if(auto ptr = std::get_if(&_handle)) { return *ptr; } return nullptr; } // Function: po inline const PrimaryOutput* Pin::primary_output() const { if(auto ptr = std::get_if(&_handle)) { return *ptr; } return nullptr; } // Function: gate inline const Gate* Pin::gate() const { return _gate; } // Function: cellpin inline const Cellpin* Pin::cellpin(Split m) const { if(auto cp = std::get_if(&_handle); cp) { return (*cp)[m]; } return nullptr; } // Function: net inline const Net* Pin::net() const { return _net; } inline size_t Pin::num_fanins() const { return _fanin.size(); } inline size_t Pin::num_fanouts() const { return _fanout.size(); } }; // end of namespace ot. ----------------------------------------------------------------------- #endif