module Int32: sig .. end
This module provides operations on the type int32
of signed 32-bit integers. Unlike the built-in int
type,
the type int32
is guaranteed to be exactly 32-bit wide on all
platforms. All arithmetic operations over int32
are taken
modulo 232.
Performance notice: values of type int32
occupy more memory
space than values of type int
, and arithmetic operations on
int32
are generally slower than those on int
. Use int32
only when the application requires exact 32-bit arithmetic.
let zero: int32;
let one: int32;
let minus_one: int32;
let neg: int32 => int32;
let add: (int32, int32) => int32;
let sub: (int32, int32) => int32;
let mul: (int32, int32) => int32;
let div: (int32, int32) => int32;
Division_by_zero
if the second
argument is zero. This division rounds the real quotient of
its arguments towards zero, as specified for Pervasives.(/)
.let rem: (int32, int32) => int32;
y
is not zero, the result
of Int32.rem x y
satisfies the following property:
x = Int32.add (Int32.mul (Int32.div x y) y) (Int32.rem x y)
.
If y = 0
, Int32.rem x y
raises Division_by_zero
.let succ: int32 => int32;
Int32.succ x
is Int32.add x Int32.one
.let pred: int32 => int32;
Int32.pred x
is Int32.sub x Int32.one
.let abs: int32 => int32;
let max_int: int32;
let min_int: int32;
let logand: (int32, int32) => int32;
let logor: (int32, int32) => int32;
let logxor: (int32, int32) => int32;
let lognot: int32 => int32;
let shift_left: (int32, int) => int32;
Int32.shift_left x y
shifts x
to the left by y
bits.
The result is unspecified if y < 0
or y >= 32
.let shift_right: (int32, int) => int32;
Int32.shift_right x y
shifts x
to the right by y
bits.
This is an arithmetic shift: the sign bit of x
is replicated
and inserted in the vacated bits.
The result is unspecified if y < 0
or y >= 32
.let shift_right_logical: (int32, int) => int32;
Int32.shift_right_logical x y
shifts x
to the right by y
bits.
This is a logical shift: zeroes are inserted in the vacated bits
regardless of the sign of x
.
The result is unspecified if y < 0
or y >= 32
.let of_int: int => int32;
int
) to a 32-bit integer
(type int32
).let to_int: int32 => int;
int32
) to an
integer (type int
). On 32-bit platforms, the 32-bit integer
is taken modulo 231, i.e. the high-order bit is lost
during the conversion. On 64-bit platforms, the conversion
is exact.let of_float: float => int32;
Int32.min_int
, Int32.max_int
].let to_float: int32 => float;
let of_string: string => int32;
0x
, 0o
or 0b
respectively.
Raise Failure "int_of_string"
if the given string is not
a valid representation of an integer, or if the integer represented
exceeds the range of integers representable in type int32
.let to_string: int32 => string;
let bits_of_float: float => int32;
let float_of_bits: int32 => float;
int32
.type t = int32;
let compare: (t, t) => int;
Pervasives.compare
. Along with the type t
, this function compare
allows the module Int32
to be passed as argument to the functors
Set.Make
and Map.Make
.let format: (string, int32) => string;