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#ifndef RR_GRAPH_H
#define RR_GRAPH_H
enum e_graph_type
{
GRAPH_GLOBAL, /* One node per channel with wire capacity > 1 and full connectivity */
GRAPH_BIDIR, /* Detailed bidirectional graph */
GRAPH_UNIDIR, /* Detailed unidir graph, untilable */
/* RESEARCH TODO: Get this option debugged */
GRAPH_UNIDIR_TILEABLE /* Detail unidir graph with wire groups multiples of 2*L */
};
typedef enum e_graph_type t_graph_type;
/* Warnings about the routing graph that can be returned.
* This is to avoid output messages during a value sweep */
enum
{
RR_GRAPH_NO_WARN = 0x00,
RR_GRAPH_WARN_FC_CLIPPED = 0x01,
RR_GRAPH_WARN_CHAN_WIDTH_CHANGED = 0x02
};
void build_rr_graph(INP t_graph_type graph_type,
INP int num_types,
INP t_type_ptr types,
INP int nx,
INP int ny,
INP struct s_grid_tile **grid,
INP int chan_width,
INP struct s_chan_width_dist *chan_capacity_inf,
INP enum e_switch_block_type sb_type,
INP int Fs,
INP int num_seg_types,
INP int num_switches,
INP t_segment_inf * segment_inf,
INP int global_route_switch,
INP int delayless_switch,
INP t_timing_inf timing_inf,
INP int wire_to_ipin_switch,
INP enum e_base_cost_type base_cost_type,
OUTP int *Warnings);
void free_rr_graph(void);
void dump_rr_graph(INP const char *file_name);
void print_rr_indexed_data(FILE * fp,
int index); /* For debugging only */
void load_net_rr_terminals(t_ivec *** rr_node_indices);
void print_rr_node(FILE *fp, t_rr_node *rr_node, int inode);
#endif