include Core_kernel.Map_intf.S with module Key := Key
module Tree : sig ... endinclude Core_kernel.Map_intf.S_plain
with module Key := Key
and module Tree := Tree
include Core_kernel.Map_intf.Creators_and_accessors1
with type 'a t := 'a t
with type 'a tree := 'a Tree.t
with type key := Key.t
with type comparator_witness := Key.comparator_witness
include Core_kernel.Map_intf.Accessors1
with type 'a t := 'a t
with type 'a tree := 'a Tree.t
with type key := Key.t
with type comparator_witness := Key.comparator_witness
include Base.Map.Accessors1
with type 'a t := 'a t
with type 'a tree := 'a Tree.t
with type key := Key.t
with type comparator_witness := Key.comparator_witness
val invariants : _ t -> boolval is_empty : _ t -> boolval add : 'a t -> key:Key.t -> data:'a -> [ `Ok of 'a t | `Duplicate ]val add_exn : 'a t -> key:Key.t -> data:'a -> 'a tval set : 'a t -> key:Key.t -> data:'a -> 'a tval add_multi : 'a list t -> key:Key.t -> data:'a -> 'a list tval remove_multi : 'a list t -> Key.t -> 'a list tval find_multi : 'a list t -> Key.t -> 'a listval change : 'a t -> Key.t -> f:('a option -> 'a option) -> 'a tval update : 'a t -> Key.t -> f:('a option -> 'a) -> 'a tval find : 'a t -> Key.t -> 'a optionval find_exn : 'a t -> Key.t -> 'aval mem : _ t -> Key.t -> boolval iter_keys : _ t -> f:(Key.t -> unit) -> unitval iter : 'a t -> f:('a -> unit) -> unitval iteri : 'a t -> f:(key:Key.t -> data:'a -> unit) -> unitval iteri_until :
'a t ->
f:(key:Key.t -> data:'a -> Base__.Map_intf.Continue_or_stop.t) ->
Base__.Map_intf.Finished_or_unfinished.tval iter2 :
'a t ->
'b t ->
f:
(key:Key.t ->
data:[ `Left of 'a | `Right of 'b | `Both of 'a * 'b ] ->
unit) ->
unitval map : 'a t -> f:('a -> 'b) -> 'b tval mapi : 'a t -> f:(key:Key.t -> data:'a -> 'b) -> 'b tval fold : 'a t -> init:'b -> f:(key:Key.t -> data:'a -> 'b -> 'b) -> 'bval fold_right : 'a t -> init:'b -> f:(key:Key.t -> data:'a -> 'b -> 'b) -> 'bval fold2 :
'a t ->
'b t ->
init:'c ->
f:
(key:Key.t ->
data:[ `Left of 'a | `Right of 'b | `Both of 'a * 'b ] ->
'c ->
'c) ->
'cval filter_keys : 'a t -> f:(Key.t -> bool) -> 'a tval filter : 'a t -> f:('a -> bool) -> 'a tval filteri : 'a t -> f:(key:Key.t -> data:'a -> bool) -> 'a tval filter_map : 'a t -> f:('a -> 'b option) -> 'b tval filter_mapi : 'a t -> f:(key:Key.t -> data:'a -> 'b option) -> 'b tval partitioni_tf : 'a t -> f:(key:Key.t -> data:'a -> bool) -> 'a t * 'a tval partition_tf : 'a t -> f:('a -> bool) -> 'a t * 'a tval compare_direct : ('a -> 'a -> int) -> 'a t -> 'a t -> intval equal : ('a -> 'a -> bool) -> 'a t -> 'a t -> boolval data : 'a t -> 'a listval to_alist :
?key_order:[ `Increasing | `Decreasing ] ->
'a t ->
(Key.t * 'a) listval merge :
'a t ->
'b t ->
f:
(key:Key.t ->
[ `Left of 'a | `Right of 'b | `Both of 'a * 'b ] ->
'c option) ->
'c tval symmetric_diff :
'a t ->
'a t ->
data_equal:('a -> 'a -> bool) ->
(Key.t * [ `Left of 'a | `Right of 'a | `Unequal of 'a * 'a ])
Base.Sequence.tval fold_symmetric_diff :
'a t ->
'a t ->
data_equal:('a -> 'a -> bool) ->
init:'c ->
f:
('c ->
(Key.t * [ `Left of 'a | `Right of 'a | `Unequal of 'a * 'a ]) ->
'c) ->
'cval min_elt : 'a t -> (Key.t * 'a) optionval min_elt_exn : 'a t -> Key.t * 'aval max_elt : 'a t -> (Key.t * 'a) optionval max_elt_exn : 'a t -> Key.t * 'aval for_all : 'a t -> f:('a -> bool) -> boolval for_alli : 'a t -> f:(key:Key.t -> data:'a -> bool) -> boolval exists : 'a t -> f:('a -> bool) -> boolval existsi : 'a t -> f:(key:Key.t -> data:'a -> bool) -> boolval count : 'a t -> f:('a -> bool) -> intval counti : 'a t -> f:(key:Key.t -> data:'a -> bool) -> intval append :
lower_part:'a t ->
upper_part:'a t ->
[ `Ok of 'a t | `Overlapping_key_ranges ]val fold_range_inclusive :
'a t ->
min:Key.t ->
max:Key.t ->
init:'b ->
f:(key:Key.t -> data:'a -> 'b -> 'b) ->
'bval closest_key :
'a t ->
[ `Greater_or_equal_to | `Greater_than | `Less_or_equal_to | `Less_than ] ->
Key.t ->
(Key.t * 'a) optionval nth : 'a t -> int -> (Key.t * 'a) optionval nth_exn : 'a t -> int -> Key.t * 'aval rank : _ t -> Key.t -> int optionval to_sequence :
?order:[ `Increasing_key | `Decreasing_key ] ->
?keys_greater_or_equal_to:Key.t ->
?keys_less_or_equal_to:Key.t ->
'a t ->
(Key.t * 'a) Base.Sequence.tval binary_search :
'a t ->
compare:(key:Key.t -> data:'a -> 'key -> int) ->
[ `Last_strictly_less_than
| `Last_less_than_or_equal_to
| `Last_equal_to
| `First_equal_to
| `First_greater_than_or_equal_to
| `First_strictly_greater_than ] ->
'key ->
(Key.t * 'a) optionval binary_search_segmented :
'a t ->
segment_of:(key:Key.t -> data:'a -> [ `Left | `Right ]) ->
[ `Last_on_left | `First_on_right ] ->
(Key.t * 'a) optioninclude Base.Sexpable.S1 with type 'a t := 'a t
val t_of_sexp : (Sexplib0__.Sexp.t -> 'a) -> Sexplib0__.Sexp.t -> 'a tval sexp_of_t : ('a -> Sexplib0__.Sexp.t) -> 'a t -> Sexplib0__.Sexp.t