Module Int_ids.Const
type t = private Flambda2_algorithms.Table_by_int_id.Id.tinclude Flambda2_algorithms.Container_types.S
with type t := Flambda2_identifiers.Int_ids.Const.t
module T :
Flambda2_algorithms.Container_types_intf.Thing
with type t = Flambda2_identifiers.Int_ids.Const.tinclude Flambda2_algorithms.Container_types_intf.Thing
with type t := Flambda2_identifiers.Int_ids.Const.T.t
include Stdlib.Hashtbl.HashedType
with type t := Flambda2_identifiers.Int_ids.Const.T.t
val equal :
Flambda2_identifiers.Int_ids.Const.T.t ->
Flambda2_identifiers.Int_ids.Const.T.t ->
boolThe equality predicate used to compare keys.
val hash : Flambda2_identifiers.Int_ids.Const.T.t -> intA 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 handlingStdlib.nancorrectly - (
(==),hash) for comparing objects by physical equality (e.g. for mutable or cyclic objects).
include Stdlib.Map.OrderedType
with type t := Flambda2_identifiers.Int_ids.Const.T.t
val compare :
Flambda2_identifiers.Int_ids.Const.T.t ->
Flambda2_identifiers.Int_ids.Const.T.t ->
intA 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 print :
Stdlib.Format.formatter ->
Flambda2_identifiers.Int_ids.Const.T.t ->
unitmodule Set :
Flambda2_algorithms.Container_types_intf.Set
with type elt = Flambda2_identifiers.Int_ids.Const.tmodule Map :
Flambda2_algorithms.Container_types_intf.Map
with type key = Flambda2_identifiers.Int_ids.Const.t
and module Set = Flambda2_identifiers.Int_ids.Const.Setval const_true :
Target_system.Machine_width.t ->
Flambda2_identifiers.Int_ids.Const.tval const_false :
Target_system.Machine_width.t ->
Flambda2_identifiers.Int_ids.Const.tval untagged_const_true :
Target_system.Machine_width.t ->
Flambda2_identifiers.Int_ids.Const.tval untagged_const_false :
Target_system.Machine_width.t ->
Flambda2_identifiers.Int_ids.Const.tval untagged_const_zero :
Target_system.Machine_width.t ->
Flambda2_identifiers.Int_ids.Const.tval untagged_const_int :
Flambda2_numbers.Target_ocaml_int.t ->
Flambda2_identifiers.Int_ids.Const.tval const_zero :
Target_system.Machine_width.t ->
Flambda2_identifiers.Int_ids.Const.tval const_one :
Target_system.Machine_width.t ->
Flambda2_identifiers.Int_ids.Const.tval const_unit :
Target_system.Machine_width.t ->
Flambda2_identifiers.Int_ids.Const.tval const_int :
Flambda2_numbers.Target_ocaml_int.t ->
Flambda2_identifiers.Int_ids.Const.tval const_null : Flambda2_identifiers.Int_ids.Const.tval naked_immediate :
Flambda2_numbers.Target_ocaml_int.t ->
Flambda2_identifiers.Int_ids.Const.tnaked_immediate is similar to naked_nativeint, but represents integers of width n - 1 bits, where n is the native machine width. (By contrast, naked_nativeint represents integers of width n bits.)
val tagged_immediate :
Flambda2_numbers.Target_ocaml_int.t ->
Flambda2_identifiers.Int_ids.Const.tval naked_float32 :
Flambda2_numbers.Numeric_types.Float32_by_bit_pattern.t ->
Flambda2_identifiers.Int_ids.Const.tval naked_int8 :
Flambda2_numbers.Numeric_types.Int8.t ->
Flambda2_identifiers.Int_ids.Const.tval naked_int16 :
Flambda2_numbers.Numeric_types.Int16.t ->
Flambda2_identifiers.Int_ids.Const.tval naked_int32 : Stdlib.Int32.t -> Flambda2_identifiers.Int_ids.Const.tval naked_int64 : Stdlib.Int64.t -> Flambda2_identifiers.Int_ids.Const.tval naked_nativeint :
Flambda2_numbers.Targetint_32_64.t ->
Flambda2_identifiers.Int_ids.Const.tval naked_vec128 :
Flambda2_numbers.Vector_types.Vec128.Bit_pattern.t ->
Flambda2_identifiers.Int_ids.Const.tval naked_vec256 :
Flambda2_numbers.Vector_types.Vec256.Bit_pattern.t ->
Flambda2_identifiers.Int_ids.Const.tval naked_vec512 :
Flambda2_numbers.Vector_types.Vec512.Bit_pattern.t ->
Flambda2_identifiers.Int_ids.Const.tmodule Descr : sig ... end