package ocaml-solo5-cross-aarch64

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OCaml cross-compiler to the freestanding 64-bit ARM Solo5 backend

Install

dune-project
 Dependency

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Sources

v1.2.0.tar.gz
md5=4d07934aea2d32b77ba1b8bb062c6594
sha512=2ec008da088f7998d024b790679605813f1954de36b999031db0b003706e67f3f13554e93fa07be00f26633ea27c2b2f9f987e8b08f85c63f956bfbc306bd620

doc/compiler-libs.optcomp/Closure_origin/T/index.html

Module Closure_origin.T

type t = t
include Hashtbl.HashedType with type t := t
val equal : t -> t -> bool

The equality predicate used to compare keys.

val hash : t -> int

A hashing function on keys. It must be such that if two keys are equal according to equal, then they have identical hash values as computed by hash. Examples: suitable (equal, hash) pairs for arbitrary key types include

  • ((=), hash) for comparing objects by structure (provided objects do not contain floats)
  • ((fun x y -> compare x y = 0), hash) for comparing objects by structure and handling Stdlib.nan correctly
  • ((==), hash) for comparing objects by physical equality (e.g. for mutable or cyclic objects).
include Map.OrderedType with type t := t
val compare : t -> t -> int

A total ordering function over the keys. This is a two-argument function f such that f e1 e2 is zero if the keys e1 and e2 are equal, f e1 e2 is strictly negative if e1 is smaller than e2, and f e1 e2 is strictly positive if e1 is greater than e2. Example: a suitable ordering function is the generic structural comparison function Stdlib.compare.

val output : out_channel -> t -> unit
val print : Format.formatter -> t -> unit