Add batch 2 (danielholanda_LeFlow, The-OpenROAD-Project_OpenSTA, omarelhedaby_CNN-FPGA, QShen3_CNN-FPGA, openrisc_mor1kx)
23d354c verified Download The-OpenROAD-Project_OpenSTA/include/sta/Graph.hh from SAIFIINDUSTRIES/verilog_data-1: direct link, hf CLI and curl.
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| // OpenSTA, Static Timing Analyzer | |
| // Copyright (c) 2026, Parallax Software, Inc. | |
| // | |
| // This program is free software: you can redistribute it and/or modify | |
| // it under the terms of the GNU General Public License as published by | |
| // the Free Software Foundation, either version 3 of the License, or | |
| // (at your option) any later version. | |
| // | |
| // This program is distributed in the hope that it will be useful, | |
| // but WITHOUT ANY WARRANTY; without even the implied warranty of | |
| // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the | |
| // GNU General Public License for more details. | |
| // | |
| // You should have received a copy of the GNU General Public License | |
| // along with this program. If not, see <https://www.gnu.org/licenses/>. | |
| // | |
| // The origin of this software must not be misrepresented; you must not | |
| // claim that you wrote the original software. | |
| // | |
| // Altered source versions must be plainly marked as such, and must not be | |
| // misrepresented as being the original software. | |
| // | |
| // This notice may not be removed or altered from any source distribution. | |
| namespace sta { | |
| class MinMax; | |
| class Sdc; | |
| using VertexTable = ObjectTable<Vertex>; | |
| using EdgeTable = ObjectTable<Edge>; | |
| using PinVertexMap = std::map<const Pin*, Vertex*>; | |
| using VertexEdgeIterator = Iterator<Edge*>; | |
| using PeriodCheckAnnotations = std::map<const Pin*, float*, PinIdLess>; | |
| using EdgeId = ObjectId; | |
| static constexpr EdgeId edge_id_null = object_id_null; | |
| static constexpr ObjectIdx edge_idx_null = object_id_null; | |
| static constexpr ObjectIdx vertex_idx_null = object_idx_null; | |
| // The graph acts as a BUILDER for the graph vertices and edges. | |
| class Graph : public StaState | |
| { | |
| public: | |
| Graph(StaState *sta, | |
| DcalcAPIndex ap_count); | |
| void makeGraph(); | |
| ~Graph() override; | |
| void delayCountChanged(); | |
| size_t slewCount(); | |
| // Vertex functions. | |
| // Bidirect pins have two vertices. | |
| Vertex *vertex(VertexId vertex_id) const; | |
| VertexId id(const Vertex *vertex) const; | |
| void makePinVertices(Pin *pin); | |
| void makePinVertices(Pin *pin, | |
| Vertex *&vertex, | |
| Vertex *&bidir_drvr_vertex); | |
| // Both vertices for bidirects. | |
| void pinVertices(const Pin *pin, | |
| // Return values. | |
| Vertex *&vertex, | |
| Vertex *&bidirect_drvr_vertex) const; | |
| // Driver vertex for bidirects. | |
| Vertex *pinDrvrVertex(const Pin *pin) const; | |
| // Load vertex for bidirects. | |
| Vertex *pinLoadVertex(const Pin *pin) const; | |
| void deleteVertex(Vertex *vertex); | |
| bool hasFaninOne(Vertex *vertex) const; | |
| VertexId vertexCount() { return vertices_->size(); } | |
| void visitFanouts(Vertex *vertex, | |
| SearchPred *pred, | |
| const VertexFn &fn); | |
| void visitFanins(Vertex *vertex, | |
| SearchPred *pred, | |
| const VertexFn &fn); | |
| void visitFanoutEdges(Vertex *vertex, | |
| SearchPred *pred, | |
| const EdgeFn &fn); | |
| void visitFaninEdges(Vertex *vertex, | |
| SearchPred *pred, | |
| const EdgeFn &fn); | |
| // Reported slew are the same as those in the liberty tables. | |
| // reported_slews = measured_slews / slew_derate_from_library | |
| // Measured slews are between slew_lower_threshold and slew_upper_threshold. | |
| Slew slew(const Vertex *vertex, | |
| const RiseFall *rf, | |
| DcalcAPIndex ap_index); | |
| Slew slew(const Vertex *vertex, | |
| size_t index); | |
| void setSlew(Vertex *vertex, | |
| const RiseFall *rf, | |
| DcalcAPIndex ap_index, | |
| const Slew &slew); | |
| // Edge functions. | |
| Edge *edge(EdgeId edge_id) const; | |
| EdgeId id(const Edge *edge) const; | |
| Edge *makeEdge(Vertex *from, | |
| Vertex *to, | |
| TimingArcSet *arc_set); | |
| void makeWireEdge(const Pin *from_pin, | |
| const Pin *to_pin); | |
| void makePinInstanceEdges(const Pin *pin); | |
| void makeInstanceEdges(const Instance *inst); | |
| void makeWireEdgesToPin(const Pin *to_pin); | |
| void makeWireEdgesThruPin(const Pin *hpin); | |
| void makeWireEdgesFromPin(const Pin *drvr_pin); | |
| void deleteEdge(Edge *edge); | |
| // Find the edge and timing arc on a gate between in_pin and drvr_pin. | |
| void gateEdgeArc(const Pin *in_pin, | |
| const RiseFall *in_rf, | |
| const Pin *drvr_pin, | |
| const RiseFall *drvr_rf, | |
| // Return values. | |
| Edge *&edge, | |
| const TimingArc *&arc) const; | |
| ArcDelay arcDelay(const Edge *edge, | |
| const TimingArc *arc, | |
| DcalcAPIndex ap_index) const; | |
| void setArcDelay(Edge *edge, | |
| const TimingArc *arc, | |
| DcalcAPIndex ap_index, | |
| const ArcDelay &delay); | |
| // Alias for arcDelays using library wire arcs. | |
| ArcDelay wireArcDelay(const Edge *edge, | |
| const RiseFall *rf, | |
| DcalcAPIndex ap_index); | |
| void setWireArcDelay(Edge *edge, | |
| const RiseFall *rf, | |
| DcalcAPIndex ap_index, | |
| const ArcDelay &delay); | |
| // Is timing arc delay annotated. | |
| bool arcDelayAnnotated(const Edge *edge, | |
| const TimingArc *arc, | |
| DcalcAPIndex ap_index) const; | |
| void setArcDelayAnnotated(Edge *edge, | |
| const TimingArc *arc, | |
| DcalcAPIndex ap_index, | |
| bool annotated); | |
| bool wireDelayAnnotated(const Edge *edge, | |
| const RiseFall *rf, | |
| DcalcAPIndex ap_index) const; | |
| void setWireDelayAnnotated(Edge *edge, | |
| const RiseFall *rf, | |
| DcalcAPIndex ap_index, | |
| bool annotated); | |
| void minPulseWidthArc(Vertex *vertex, | |
| const RiseFall *hi_low, | |
| // Return values. | |
| Edge *&edge, | |
| TimingArc *&arc); | |
| void minPeriodArc(Vertex *vertex, | |
| const RiseFall *rf, | |
| // Return values. | |
| Edge *&edge, | |
| TimingArc *&arc); | |
| // Sdf period check annotation. | |
| void periodCheckAnnotation(const Pin *pin, | |
| DcalcAPIndex ap_index, | |
| // Return values. | |
| float &period, | |
| bool &exists); | |
| void setPeriodCheckAnnotation(const Pin *pin, | |
| DcalcAPIndex ap_index, | |
| float period); | |
| // Remove all delay and slew annotations. | |
| void removeDelaySlewAnnotations(); | |
| VertexSet ®ClkVertices() { return reg_clk_vertices_; } | |
| static constexpr int vertex_level_bits = 24; | |
| static constexpr int vertex_level_max = (1<<vertex_level_bits) - 1; | |
| protected: | |
| void makeVerticesAndEdges(); | |
| Vertex *makeVertex(Pin *pin, | |
| bool is_bidirect_drvr, | |
| bool is_reg_clk); | |
| void makeEdgeArcDelays(Edge *edge); | |
| void makePinVertices(const Instance *inst); | |
| void makeWireEdgesFromPin(const Pin *drvr_pin, | |
| PinSet &visited_drvrs); | |
| bool isIsolatedNet(PinSeq &drvrs, | |
| PinSeq &loads) const; | |
| void makeWireEdges(); | |
| void makeInstDrvrWireEdges(const Instance *inst, | |
| PinSet &visited_drvrs); | |
| void makePortInstanceEdges(const Instance *inst, | |
| LibertyCell *cell, | |
| LibertyPort *from_to_port); | |
| void removePeriodCheckAnnotations(); | |
| void makeVertexSlews(Vertex *vertex); | |
| void deleteInEdge(Vertex *vertex, | |
| Edge *edge); | |
| void deleteOutEdge(Vertex *vertex, | |
| Edge *edge); | |
| void initSlews(); | |
| void initSlews(Vertex *vertex); | |
| void initArcDelays(Edge *edge); | |
| void removeDelayAnnotated(Edge *edge); | |
| VertexTable *vertices_{nullptr}; | |
| EdgeTable *edges_{nullptr}; | |
| // Bidirect pins are split into two vertices: | |
| // load/sink (top level output, instance pin input) vertex in pin_vertex_map | |
| // driver/source (top level input, instance pin output) vertex | |
| // in pin_bidirect_drvr_vertex_map | |
| PinVertexMap pin_bidirect_drvr_vertex_map_; | |
| // Sdf period check annotations. | |
| PeriodCheckAnnotations period_check_annotations_; | |
| // Register/latch clock vertices to search from. | |
| VertexSet reg_clk_vertices_; | |
| DcalcAPIndex ap_count_; | |
| friend class Vertex; | |
| friend class VertexIterator; | |
| friend class VertexInEdgeIterator; | |
| friend class VertexOutEdgeIterator; | |
| friend class MakeEdgesThruHierPin; | |
| }; | |
| // Each Vertex corresponds to one network pin. | |
| class Vertex | |
| { | |
| public: | |
| Vertex(); | |
| ~Vertex(); | |
| Pin *pin() const { return pin_; } | |
| // Pin path with load/driver suffix for bidirects. | |
| std::string to_string(const StaState *sta) const; | |
| // compatibility | |
| std::string name(const Network *network) const; | |
| [[nodiscard]] bool isBidirectDriver() const { return is_bidirect_drvr_; } | |
| [[nodiscard]] bool isDriver(const Network *network) const; | |
| [[nodiscard]] bool isLoad(const Network *network) const; | |
| Level level() const { return level_; } | |
| void setLevel(Level level); | |
| [[nodiscard]] bool visited() const { return visited1_; } | |
| void setVisited(bool visited); | |
| [[nodiscard]] bool visited2() const { return visited2_; } | |
| void setVisited2(bool visited); | |
| [[nodiscard]] bool isRoot() const{ return level_ == 0; } | |
| [[nodiscard]] bool hasFanin() const; | |
| [[nodiscard]] bool hasFanout() const; | |
| Path *paths() const { return paths_; } | |
| Path *makePaths(uint32_t count); | |
| void setPaths(Path *paths); | |
| void deletePaths(); | |
| TagGroupIndex tagGroupIndex() const; | |
| void setTagGroupIndex(TagGroupIndex tag_index); | |
| // Slew is annotated by sdc set_annotated_transition cmd. | |
| bool slewAnnotated(const RiseFall *rf, | |
| const MinMax *min_max) const; | |
| // True if any rise/fall analysis pt slew is annotated. | |
| bool slewAnnotated() const; | |
| void setSlewAnnotated(bool annotated, | |
| const RiseFall *rf, | |
| DcalcAPIndex ap_index); | |
| void removeSlewAnnotated(); | |
| // True when vertex has timing check edges that constrain it. | |
| [[nodiscard]] bool hasChecks() const { return has_checks_; } | |
| void setHasChecks(bool has_checks); | |
| [[nodiscard]] bool isCheckClk() const { return is_check_clk_; } | |
| void setIsCheckClk(bool is_check_clk); | |
| [[nodiscard]] bool hasDownstreamClkPin() const { return has_downstream_clk_pin_; } | |
| void setHasDownstreamClkPin(bool has_clk_pin); | |
| [[nodiscard]] bool isRegClk() const { return is_reg_clk_; } | |
| // Has sim value in some mode. | |
| [[nodiscard]] bool hasSimValue() const { return has_sim_value_; } | |
| void setHasSimValue(bool has_sim); | |
| [[nodiscard]] bool bfsInQueue(BfsIndex index) const; | |
| void setBfsInQueue(BfsIndex index, bool value); | |
| [[nodiscard]] bool bfsPredecessorChanged() const { return bfs_predecessor_changed_; } | |
| void setBfsPredecessorChanged(bool changed); | |
| // ObjectTable interface. | |
| [[nodiscard]] ObjectIdx objectIdx() const { return object_idx_; } | |
| void setObjectIdx(ObjectIdx idx); | |
| protected: | |
| void init(Pin *pin, | |
| bool is_bidirect_drvr, | |
| bool is_reg_clk); | |
| void clear(); | |
| Slew *slews() { return reinterpret_cast<Slew*>(slews_); } | |
| const Slew *slews() const { return reinterpret_cast<const Slew*>(slews_); } | |
| float *slewsFloat() { return slews_; } | |
| const float *slewsFloat() const { return slews_; } | |
| void setSlews(float *slews); | |
| Pin *pin_; | |
| EdgeId in_edges_; // Edges to this vertex. | |
| EdgeId out_edges_; // Edges from this vertex. | |
| // Delay calc | |
| float *slews_; | |
| // Search | |
| Path *paths_; | |
| // These fields are written by multiple threads, so they | |
| // cannot share the same word as the following bit fields. | |
| uint32_t tag_group_index_; | |
| uint32_t object_idx_; | |
| // Each bit corresponds to a different BFS queue. | |
| std::atomic<uint8_t> bfs_in_queue_; // 8 | |
| // Bidirect pins have two vertices. | |
| // This flag distinguishes the driver and load vertices. | |
| unsigned int is_bidirect_drvr_:1; | |
| unsigned int is_reg_clk_:1; | |
| // Constrained by timing check edge. | |
| unsigned int has_checks_:1; | |
| // Is the clock for a timing check. | |
| unsigned int is_check_clk_:1; | |
| unsigned int has_downstream_clk_pin_:1; | |
| unsigned int visited1_:1; | |
| unsigned int visited2_:1; | |
| unsigned int bfs_predecessor_changed_:1; | |
| unsigned int has_sim_value_:1; | |
| int level_:Graph::vertex_level_bits; // 24 | |
| unsigned int slew_annotated_:slew_annotated_bits; // 4 | |
| private: | |
| friend class Graph; | |
| friend class Edge; | |
| friend class VertexInEdgeIterator; | |
| friend class VertexOutEdgeIterator; | |
| }; | |
| // There is one Edge between each pair of pins that has a timing | |
| // path between them. | |
| class Edge | |
| { | |
| public: | |
| Edge(); | |
| ~Edge(); | |
| std::string to_string(const StaState *sta) const; | |
| Vertex *to(const Graph *graph) const { return graph->vertex(to_); } | |
| VertexId to() const { return to_; } | |
| Vertex *from(const Graph *graph) const { return graph->vertex(from_); } | |
| VertexId from() const { return from_; } | |
| const TimingRole *role() const; | |
| bool isWire() const; | |
| TimingSense sense() const; | |
| TimingArcSet *timingArcSet() const { return arc_set_; } | |
| void setTimingArcSet(TimingArcSet *set); | |
| float *arcDelays() { return arc_delays_; } | |
| const float *arcDelays() const { return arc_delays_; } | |
| void setArcDelays(float *delays); | |
| bool delay_Annotation_Is_Incremental() const {return delay_annotation_is_incremental_;}; | |
| void setDelayAnnotationIsIncremental(bool is_incr); | |
| // Edge is disabled to break combinational loops. | |
| [[nodiscard]] bool isDisabledLoop() const { return is_disabled_loop_; } | |
| void setIsDisabledLoop(bool disabled); | |
| // Edge is disabled to prevent converging clocks from merging (Xilinx). | |
| bool isBidirectInstPath() const { return is_bidirect_inst_path_; } | |
| void setIsBidirectInstPath(bool is_bidir); | |
| bool isBidirectNetPath() const { return is_bidirect_net_path_; } | |
| void setIsBidirectNetPath(bool is_bidir); | |
| bool isBidirectPortPath() const { return is_bidirect_port_path_; } | |
| void setIsBidirectPortPath(bool is_bidir); | |
| void removeDelayAnnotated(); | |
| [[nodiscard]] bool hasSimSense() const { return has_sim_sense_; } | |
| void setHasSimSense(bool has_sense); | |
| [[nodiscard]] bool hasDisabledCond() const { return has_disabled_cond_; } | |
| void setHasDisabledCond(bool has_disabled); | |
| // ObjectTable interface. | |
| ObjectIdx objectIdx() const { return object_idx_; } | |
| void setObjectIdx(ObjectIdx idx); | |
| protected: | |
| void init(VertexId from, | |
| VertexId to, | |
| TimingArcSet *arc_set); | |
| void clear(); | |
| bool arcDelayAnnotated(const TimingArc *arc, | |
| DcalcAPIndex ap_index, | |
| DcalcAPIndex ap_count) const; | |
| void setArcDelayAnnotated(const TimingArc *arc, | |
| DcalcAPIndex ap_index, | |
| DcalcAPIndex ap_count, | |
| bool annotated); | |
| static uintptr_t arcDelayAnnotateBit(size_t index); | |
| TimingArcSet *arc_set_; | |
| float *arc_delays_; | |
| union { | |
| uintptr_t bits_; | |
| std::vector<bool> *seq_; | |
| } arc_delay_annotated_; | |
| VertexId from_; | |
| VertexId to_; | |
| EdgeId vertex_in_next_; // Vertex in edges list. | |
| EdgeId vertex_out_next_; // Vertex out edges doubly linked list. | |
| EdgeId vertex_out_prev_; | |
| bool arc_delay_annotated_is_bits_:1; | |
| bool delay_annotation_is_incremental_:1; | |
| bool is_bidirect_inst_path_:1; | |
| bool is_bidirect_net_path_:1; | |
| // Bidirect load -> driver edge. | |
| bool is_bidirect_port_path_:1; | |
| bool is_disabled_loop_:1; | |
| bool has_sim_sense_:1; | |
| bool has_disabled_cond_:1; | |
| unsigned object_idx_:VertexTable::idx_bits; | |
| private: | |
| friend class Graph; | |
| friend class GraphDelays1; | |
| friend class GraphSlewsDelays1; | |
| friend class GraphSlewsDelays2; | |
| friend class Vertex; | |
| friend class VertexInEdgeIterator; | |
| friend class VertexOutEdgeIterator; | |
| }; | |
| // Iterate over all graph vertices. | |
| class VertexIterator : public Iterator<Vertex*> | |
| { | |
| public: | |
| VertexIterator(Graph *graph); | |
| bool hasNext() override { return vertex_ || bidir_vertex_; } | |
| Vertex *next() override; | |
| private: | |
| bool findNextPin(); | |
| void findNext(); | |
| Graph *graph_; | |
| Network *network_; | |
| Instance *top_inst_; | |
| LeafInstanceIterator *inst_iter_; | |
| InstancePinIterator *pin_iter_{nullptr}; | |
| Vertex *vertex_{nullptr}; | |
| Vertex *bidir_vertex_{nullptr}; | |
| }; | |
| class VertexInEdgeIterator : public VertexEdgeIterator | |
| { | |
| public: | |
| VertexInEdgeIterator(Vertex *vertex, | |
| const Graph *graph); | |
| VertexInEdgeIterator(VertexId vertex_id, | |
| const Graph *graph); | |
| bool hasNext() override { return (next_ != nullptr); } | |
| Edge *next() override; | |
| private: | |
| Edge *next_; | |
| const Graph *graph_; | |
| }; | |
| class VertexOutEdgeIterator : public VertexEdgeIterator | |
| { | |
| public: | |
| VertexOutEdgeIterator(Vertex *vertex, | |
| const Graph *graph); | |
| bool hasNext() override { return (next_ != nullptr); } | |
| Edge *next() override; | |
| private: | |
| Edge *next_; | |
| const Graph *graph_; | |
| }; | |
| // Iterate over the edges through a hierarchical pin. | |
| class EdgesThruHierPinIterator : public Iterator<Edge*> | |
| { | |
| public: | |
| EdgesThruHierPinIterator(const Pin *hpin, | |
| Network *network, | |
| Graph *graph); | |
| bool hasNext() override; | |
| Edge *next() override; | |
| private: | |
| EdgeSet edges_; | |
| EdgeSet::iterator edge_iter_; | |
| }; | |
| // Helper function to create a VertexSet with the comparator initialized | |
| inline VertexSet | |
| makeVertexSet(StaState *sta) | |
| { | |
| return VertexSet(VertexIdLess(sta->graphRef())); | |
| } | |
| } // namespace sta | |