Source file int8_u.ml
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[@@@ocaml.flambda_o3]
open! Stdlib
type t = int8#
let size = 8
external of_int8 : int8 -> int8# @@ portable = "%int8#_of_int8"
external to_int8 : int8# -> int8 @@ portable = "%int8_of_int8#"
external of_int : int -> int8# @@ portable = "%int8#_of_int"
external to_int : int8# -> int @@ portable = "%int_of_int8#"
external ( < ) : int8# -> int8# -> bool @@ portable = "%int8#_lessthan"
let zero () = of_int 0
let one () = of_int 1
let minus_one () = of_int (-1)
external neg : int8# -> int8# @@ portable = "%int8#_neg"
external add : int8# -> int8# -> int8# @@ portable = "%int8#_add"
external sub : int8# -> int8# -> int8# @@ portable = "%int8#_sub"
external mul : int8# -> int8# -> int8# @@ portable = "%int8#_mul"
external div : int8# -> int8# -> int8# @@ portable = "%int8#_div"
external rem : int8# -> int8# -> int8# @@ portable = "%int8#_mod"
external succ : int8# -> int8# @@ portable = "%int8#_succ"
external pred : int8# -> int8# @@ portable = "%int8#_pred"
external logand : int8# -> int8# -> int8# @@ portable = "%int8#_and"
external logor : int8# -> int8# -> int8# @@ portable = "%int8#_or"
external logxor : int8# -> int8# -> int8# @@ portable = "%int8#_xor"
let[@inline] lognot x = logxor x (minus_one ())
external shift_left : int8# -> int -> int8# @@ portable = "%int8#_lsl"
external shift_right : int8# -> int -> int8# @@ portable = "%int8#_asr"
external shift_right_logical : int8# -> int -> int8# @@ portable = "%int8#_lsr"
let[@inline] abs x = if x < zero () then neg x else x
external equal : int8# -> int8# -> bool @@ portable = "%int8#_equal"
external compare : int8# -> int8# -> int @@ portable = "%int8#_compare"
let[@inline] min x y = if x < y then x else y
let[@inline] max x y = if x < y then y else x
external of_float : float -> int8# @@ portable = "%int8#_of_float"
external to_float : int8# -> float @@ portable = "%float_of_int8#"
let[@inline] to_string t = Int.to_string (to_int t)
let[@inline] of_string s = of_int8 (Int8.of_string s)
let max_int () = shift_right_logical (minus_one ()) 1
let min_int () = succ (max_int ())
let[@inline] unsigned_to_int t = to_int t land ((1 lsl size) - 1)
external unsigned_compare : int8# -> int8# -> int @@ portable
= "%int8#_unsigned_compare"
external unsigned_lt : int8# -> int8# -> bool @@ portable
= "%int8#_unsigned_lessthan"
let[@inline] unsigned_div n d =
if d < zero ()
then if unsigned_lt n d then zero () else one ()
else
let q = shift_left (div (shift_right_logical n 1) d) 1 in
let r = sub n (mul q d) in
if unsigned_lt r d then q else succ q
let[@inline] unsigned_rem n d = sub n (mul (unsigned_div n d) d)
let seeded_hash seed x = Stdlib.Hashtbl.seeded_hash seed (to_int x)
let hash x = Stdlib.Hashtbl.hash (to_int x)