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[smlnj] View of /sml/trunk/src/compiler/MiscUtil/util/literal-to-num.sml
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View of /sml/trunk/src/compiler/MiscUtil/util/literal-to-num.sml

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Revision 246 - (download) (annotate)
Sat Apr 17 18:47:12 1999 UTC (21 years, 4 months ago) by monnier
File size: 1846 byte(s)
This commit was generated by cvs2svn to compensate for changes in r245,
which included commits to RCS files with non-trunk default branches.
(* literal-to-num.sml
 * COPYRIGHT (c) 1995 AT&T Bell Laboratories.
 * Conversions from integer/word literals (which are represented as
 * arbitrary precision ints) to fixed size.
 * This structure is a hack, which should be replaced by a parameterized
 * numeric types.

signature LITERAL_TO_NUM =
    val int    : IntInf.int -> int
    val int32  : IntInf.int -> Int32.int
    val word   : IntInf.int -> word
    val word8  : IntInf.int -> word
    val word32 : IntInf.int -> Word32.word

structure LiteralToNum : LITERAL_TO_NUM =

    val zero = IntInf.fromInt 0
    val one = IntInf.fromInt 1
    val two = IntInf.fromInt 2
    val two_8 = IntInf.pow(two, 8)
    val two_30 = IntInf.pow(two, 30)
    val two_31 = IntInf.pow(two, 31)
    val two_32 = IntInf.pow(two, 32)
    val neg_two_30 = IntInf.~ two_31
    val neg_two_31 = IntInf.~ two_31

  (* return n if it is in the range [lo..hi-1]; otherwise raise Overflow *)
    fun chkIntRange (lo, hi) n =
	  if (IntInf.<=(lo, n) andalso IntInf.<(n, hi))
	    then n
	    else raise Overflow

  (* return n if it is in the range [0..hi-1]; otherwise raise Overflow *)
    fun chkWordRange hi n = if (IntInf.<(n, hi)) then n else raise Overflow

    fun int i = IntInf.toInt(chkIntRange (neg_two_30, two_30) i)
    fun int32 i = IntInf.toLarge(chkIntRange (neg_two_31, two_31) i)
    fun word w = Word.fromLargeInt(IntInf.toLarge(chkWordRange two_31 w))
    fun word8 w = Word.fromInt(IntInf.toInt(chkWordRange two_8 w))
    fun word32 w =
	  if (IntInf.>=(w, two_32))
	    then raise Overflow
	    else Word32.fromLargeInt(IntInf.toLarge w)
	      handle Overflow => let
		val (d, m) = IntInf.divmod(w, two)
		val d = Word32.fromLargeInt(IntInf.toLarge d)
		  if (m = zero) then Word32.<<(d, 0w1) else Word32.<<(d, 0w1)+0w1


 * $Log$

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