59 lines
2.6 KiB
OCaml
59 lines
2.6 KiB
OCaml
(***********************************************************************)
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(* *)
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(* OCaml *)
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(* *)
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(* Xavier Leroy, projet Cristal, INRIA Rocquencourt *)
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(* *)
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(* Copyright 1996 Institut National de Recherche en Informatique et *)
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(* en Automatique. All rights reserved. This file is distributed *)
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(* under the terms of the GNU Library General Public License, with *)
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(* the special exception on linking described in file ../LICENSE. *)
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(* *)
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(***********************************************************************)
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(* Module [Int64]: 64-bit integers *)
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external neg : int64 -> int64 = "%int64_neg"
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external add : int64 -> int64 -> int64 = "%int64_add"
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external sub : int64 -> int64 -> int64 = "%int64_sub"
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external mul : int64 -> int64 -> int64 = "%int64_mul"
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external div : int64 -> int64 -> int64 = "%int64_div"
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external rem : int64 -> int64 -> int64 = "%int64_mod"
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external logand : int64 -> int64 -> int64 = "%int64_and"
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external logor : int64 -> int64 -> int64 = "%int64_or"
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external logxor : int64 -> int64 -> int64 = "%int64_xor"
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external shift_left : int64 -> int -> int64 = "%int64_lsl"
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external shift_right : int64 -> int -> int64 = "%int64_asr"
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external shift_right_logical : int64 -> int -> int64 = "%int64_lsr"
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external of_int : int -> int64 = "%int64_of_int"
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external to_int : int64 -> int = "%int64_to_int"
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external of_float : float -> int64 = "caml_int64_of_float"
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external to_float : int64 -> float = "caml_int64_to_float"
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external of_int32 : int32 -> int64 = "%int64_of_int32"
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external to_int32 : int64 -> int32 = "%int64_to_int32"
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external of_nativeint : nativeint -> int64 = "%int64_of_nativeint"
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external to_nativeint : int64 -> nativeint = "%int64_to_nativeint"
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let zero = 0L
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let one = 1L
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let minus_one = -1L
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let succ n = add n 1L
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let pred n = sub n 1L
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let abs n = if n >= 0L then n else neg n
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let min_int = 0x8000000000000000L
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let max_int = 0x7FFFFFFFFFFFFFFFL
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let lognot n = logxor n (-1L)
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external format : string -> int64 -> string = "caml_int64_format"
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let to_string n = format "%d" n
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external of_string : string -> int64 = "caml_int64_of_string"
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external bits_of_float : float -> int64 = "caml_int64_bits_of_float"
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external float_of_bits : int64 -> float = "caml_int64_float_of_bits"
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type t = int64
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let compare (x: t) (y: t) = Pervasives.compare x y
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let equal (x: t) (y: t) = compare x y = 0
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