package biocaml
sectionYPositions = computeSectionYPositions($el), 10)"
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The OCaml Bioinformatics Library
Install
dune-project
Dependency
Authors
Maintainers
Sources
biocaml-0.11.2.tbz
sha256=fae219e66db06f81f3fd7d9e44717ccf2d6d85701adb12004ab4ae6d3359dd2d
sha512=f6abd60dac2e02777be81ce3b5acdc0db23b3fa06731f5b2d0b32e6ecc9305fe64f407bbd95a3a9488b14d0a7ac7c41c73a7e18c329a8f18febfc8fd50eccbc6
doc/biocaml.unix/Biocaml_unix/Seq_range/Make/argument-1-S/index.html
Parameter Make.S
include Core.Comparable
include Base.Comparable.S
compare t1 t2 returns 0 if t1 is equal to t2, a negative integer if t1 is less than t2, and a positive integer if t1 is greater than t2.
ascending is identical to compare. descending x y = ascending y x. These are intended to be mnemonic when used like List.sort ~compare:ascending and List.sort ~cmp:descending, since they cause the list to be sorted in ascending or descending order, respectively.
clamp_exn t ~min ~max returns t', the closest value to t such that between t' ~low:min ~high:max is true.
Raises if not (min <= max).
val comparator : (t, comparator_witness) Base__.Comparator.comparatorval validate_lbound : min:t Core.Maybe_bound.t -> t Validate.checkval validate_ubound : max:t Core.Maybe_bound.t -> t Validate.checkval validate_bound :
min:t Core.Maybe_bound.t ->
max:t Core.Maybe_bound.t ->
t Validate.checkmodule Replace_polymorphic_compare :
Base.Comparable.Polymorphic_compare with type t := tmodule Map :
Core.Map.S
with type Key.t = t
with type Key.comparator_witness = comparator_witnessmodule Set :
Core.Set.S
with type Elt.t = t
with type Elt.comparator_witness = comparator_witnessinclude Core.Sexpable with type t := t
val t_of_sexp : Sexplib0.Sexp.t -> tval sexp_of_t : t -> Sexplib0.Sexp.tval to_string : t -> string sectionYPositions = computeSectionYPositions($el), 10)"
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