package core_kernel
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  doc/core_kernel.uuid/Uuid/Map/index.html
Module Uuid.Map
module Key : sig ... endinclude 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
type +'a t = (Key.t, 'a, Key.comparator_witness) Base.Map.tval compare : ('a -> 'a -> Base.Int.t) -> 'a t -> 'a t -> Base.Int.tinclude 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.Creators1
  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.Creators1
  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 empty : _ tval of_alist_or_error : (Key.t * 'a) list -> 'a t Base.Or_error.tval of_sorted_array : (Key.t * 'a) array -> 'a t Base.Or_error.tval of_increasing_sequence : 
  (Key.t * 'a) Base.Sequence.t ->
  'a t Base.Or_error.tval of_sequence : 
  (Key.t * 'a) Base.Sequence.t ->
  [ `Ok of 'a t | `Duplicate_key of Key.t ]val of_sequence_or_error : (Key.t * 'a) Base.Sequence.t -> 'a t Base.Or_error.tval of_sequence_exn : (Key.t * 'a) Base.Sequence.t -> 'a tval of_sequence_multi : (Key.t * 'a) Base.Sequence.t -> 'a list tval of_sequence_fold : 
  (Key.t * 'a) Base.Sequence.t ->
  init:'b ->
  f:('b -> 'a -> 'b) ->
  'b tval of_sequence_reduce : 
  (Key.t * 'a) Base.Sequence.t ->
  f:('a -> 'a -> 'a) ->
  'a tval of_hashtbl_exn : (Key.t, 'a) Core_kernel.Hashtbl.t -> 'a tval of_key_set : 
  (Key.t, Key.comparator_witness) Base.Set.t ->
  f:(Key.t -> 'v) ->
  'v tval quickcheck_generator : 
  Key.t Core_kernel.Quickcheck.Generator.t ->
  'a Core_kernel.Quickcheck.Generator.t ->
  'a t Core_kernel.Quickcheck.Generator.tinclude 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 length : _ t -> intval iter : 'a t -> f:('a -> unit) -> unitval partition_mapi : 
  'a t ->
  f:(key:Key.t -> data:'a -> ('b, 'c) Base.Either.t) ->
  'b t * 'c tval partition_map : 'a t -> f:('a -> ('b, 'c) Base.Either.t) -> 'b t * 'c tval combine_errors : 'a Base.Or_error.t t -> 'a t Base.Or_error.tval data : 'a t -> 'a listval validate : 
  name:(Key.t -> string) ->
  'a Base.Validate.check ->
  'a t Base.Validate.checkval validatei : 
  name:(Key.t -> string) ->
  (Key.t * 'a) Base.Validate.check ->
  'a t Base.Validate.checkval 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 for_all : 'a t -> f:('a -> bool) -> boolval exists : 'a t -> f:('a -> bool) -> boolval count : 'a t -> f:('a -> bool) -> intval subrange : 
  'a t ->
  lower_bound:Key.t Base.Maybe_bound.t ->
  upper_bound:Key.t Base.Maybe_bound.t ->
  'a tval 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 key_set : _ t -> (Key.t, Key.comparator_witness) Base.Set.tval quickcheck_observer : 
  Key.t Core_kernel.Quickcheck.Observer.t ->
  'v Core_kernel.Quickcheck.Observer.t ->
  'v t Core_kernel.Quickcheck.Observer.tval quickcheck_shrinker : 
  Key.t Core_kernel.Quickcheck.Shrinker.t ->
  'v Core_kernel.Quickcheck.Shrinker.t ->
  'v t Core_kernel.Quickcheck.Shrinker.tmodule Provide_of_sexp (Key : sig ... end) : sig ... endmodule Provide_bin_io
  (Key : sig ... end) : 
  Core_kernel.Map_intf.Binable.S1 with type 'a t := 'a tmodule Provide_hash (Key : Base.Hasher.S with type t := Key.t) : sig ... endinclude Core_kernel.Map_intf.Binable.S1 with type 'a t := 'a t
val bin_shape_t : Bin_prot.Shape.t -> Bin_prot.Shape.tval bin_size_t : ('a, 'a t) Bin_prot.Size.sizer1val bin_write_t : ('a, 'a t) Bin_prot.Write.writer1val bin_read_t : ('a, 'a t) Bin_prot.Read.reader1val __bin_read_t__ : ('a, int -> 'a t) Bin_prot.Read.reader1val bin_writer_t : ('a, 'a t) Bin_prot.Type_class.S1.writerval bin_reader_t : ('a, 'a t) Bin_prot.Type_class.S1.readerval bin_t : ('a, 'a t) Bin_prot.Type_class.S1.t sectionYPositions = computeSectionYPositions($el), 10)"
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