package ocamlgraph

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Module
Module type
Parameter
Class
Class type
type t
module V : sig ... end
type vertex = V.t
module E : sig ... end
type edge = E.t
val is_directed : bool
val create : ?size:int -> unit -> t
val clear : t -> unit
val copy : t -> t
val add_vertex : t -> V.t -> unit
val remove_vertex : t -> V.t -> unit
val add_edge : t -> V.t -> V.t -> unit
val add_edge_e : t -> E.t -> unit
val remove_edge : t -> V.t -> V.t -> unit
val remove_edge_e : t -> E.t -> unit
module Mark : sig ... end
val is_empty : t -> bool
val nb_vertex : t -> int
val nb_edges : t -> int
val out_degree : t -> V.t -> int
val in_degree : t -> V.t -> int
val mem_vertex : t -> V.t -> bool
val mem_edge : t -> V.t -> V.t -> bool
val mem_edge_e : t -> E.t -> bool
val find_edge : t -> V.t -> V.t -> E.t
val find_all_edges : t -> V.t -> V.t -> E.t list
val succ : t -> V.t -> V.t list
val pred : t -> V.t -> V.t list
val succ_e : t -> V.t -> E.t list
val pred_e : t -> V.t -> E.t list
val iter_vertex : (V.t -> unit) -> t -> unit
val iter_edges : (V.t -> V.t -> unit) -> t -> unit
val fold_vertex : (V.t -> 'a -> 'a) -> t -> 'a -> 'a
val fold_edges : (V.t -> V.t -> 'a -> 'a) -> t -> 'a -> 'a
val map_vertex : (V.t -> V.t) -> t -> t
val iter_edges_e : (E.t -> unit) -> t -> unit
val fold_edges_e : (E.t -> 'a -> 'a) -> t -> 'a -> 'a
val iter_succ : (V.t -> unit) -> t -> V.t -> unit
val iter_pred : (V.t -> unit) -> t -> V.t -> unit
val fold_succ : (V.t -> 'a -> 'a) -> t -> V.t -> 'a -> 'a
val fold_pred : (V.t -> 'a -> 'a) -> t -> V.t -> 'a -> 'a
val iter_succ_e : (E.t -> unit) -> t -> V.t -> unit
val fold_succ_e : (E.t -> 'a -> 'a) -> t -> V.t -> 'a -> 'a
val iter_pred_e : (E.t -> unit) -> t -> V.t -> unit
val fold_pred_e : (E.t -> 'a -> 'a) -> t -> V.t -> 'a -> 'a
val find_vertex : t -> int -> V.t
val transitive_closure : ?reflexive:bool -> t -> t
val add_transitive_closure : ?reflexive:bool -> t -> t
val mirror : t -> t
val complement : t -> t
val intersect : t -> t -> t
val union : t -> t -> t
module Dfs : sig ... end
module Bfs : sig ... end
module Marking : sig ... end
module Classic : sig ... end
module Rand : sig ... end
module Components : sig ... end
val shortest_path : t -> V.t -> V.t -> E.t list * int
val ford_fulkerson : t -> V.t -> V.t -> (E.t -> int) * int
val goldberg : t -> V.t -> V.t -> (E.t -> int) * int
val bellman_ford : t -> V.t -> E.t list
module PathCheck : sig ... end
module Topological : sig ... end
val spanningtree : t -> E.t list
val dot_output : t -> string -> unit
val display_with_gv : t -> unit
val parse_gml_file : string -> t
val parse_dot_file : string -> t
val print_gml_file : t -> string -> unit
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