include Bin_prot.Binable.S with type t := M.t
include Bin_prot.Binable.S_only_functions with type t := M.t
val bin_size_t : M.t Bin_prot.Size.sizerval bin_write_t : M.t Bin_prot.Write.writerval bin_read_t : M.t Bin_prot.Read.readerval __bin_read_t__ : (int -> M.t) Bin_prot.Read.readerThis function only needs implementation if
texposed to be a polymorphic variant. Despite what the type reads, this does *not* produce a function after reading; instead it takes the constructor tag (int) before reading and reads the rest of the varianttafterwards.
val bin_shape_t : Bin_prot.Shape.tval bin_writer_t : M.t Bin_prot.Type_class.writerval bin_reader_t : M.t Bin_prot.Type_class.readerval bin_t : M.t Bin_prot.Type_class.t
val hash_fold_t : Base.Hash.state -> M.t -> Base.Hash.stateval hash : M.t -> Base.Hash.hash_value
include Ppx_sexp_conv_lib.Sexpable.S with type t := M.t
val t_of_sexp : Sexplib0.Sexp.t -> M.tval sexp_of_t : M.t -> Sexplib0.Sexp.t
include S_common with type t := M.t
val compare : M.t -> M.t -> Base.Int.tval hash_fold_t : Base.Hash.state -> M.t -> Base.Hash.stateval hash : M.t -> Base.Hash.hash_valueval sexp_of_t : M.t -> Ppx_sexp_conv_lib.Sexp.t
include Base.Stringable.S with type t := M.t
include Base.Pretty_printer.S with type t := M.t
val pp : Base.Formatter.t -> M.t -> unit
include Comparable.S_binable with type comparator_witness := M.comparator_witness and type t := M.t
include Base.Comparable.S with type comparator_witness := M.comparator_witness and type t := M.t
val ascending : M.t -> M.t -> intascendingis identical tocompare.descending x y = ascending y x. These are intended to be mnemonic when used likeList.sort ~compare:ascendingandList.sort ~cmp:descending, since they cause the list to be sorted in ascending or descending order, respectively.
val descending : M.t -> M.t -> intval between : M.t -> low:M.t -> high:M.t -> boolbetween t ~low ~highmeanslow <= t <= high
val clamp_exn : M.t -> min:M.t -> max:M.t -> M.tclamp_exn t ~min ~maxreturnst', the closest value totsuch thatbetween t' ~low:min ~high:maxis true.Raises if
not (min <= max).
val clamp : M.t -> min:M.t -> max:M.t -> M.t Base.Or_error.t
include Base.Comparator.S with type comparator_witness := M.comparator_witness and type t := M.t
val comparator : (M.t, M.comparator_witness) Base.Comparator.comparator
val validate_lbound : min:M.t Base.Maybe_bound.t -> M.t Base.Validate.checkval validate_ubound : max:M.t Base.Maybe_bound.t -> M.t Base.Validate.checkval validate_bound : min:M.t Base.Maybe_bound.t -> max:M.t Base.Maybe_bound.t -> M.t Base.Validate.check
module Replace_polymorphic_compare : sig ... endinclude Comparator.S with type comparator_witness := M.comparator_witness and type t := M.t
val comparator : (M.t, M.comparator_witness) Comparator.comparator
module Map : Map.S_binable with type Key.t = M.t with type Key.comparator_witness = M.comparator_witnessmodule Set : Set.S_binable with type Elt.t = M.t with type Elt.comparator_witness = M.comparator_witnessinclude Hashable.S_binable with type t := M.t
val hash_fold_t : Base.Hash.state -> M.t -> Base.Hash.stateval hash : M.t -> Base.Hash.hash_value
val hashable : M.t Hashtbl.Hashable.t
module Table : Hashtbl.S_binable with type key = M.tmodule Hash_set : Hash_set.S_binable with type elt = M.tmodule Hash_queue : Hash_queue.S with type key = M.t