86 lines
2.5 KiB
Plaintext
86 lines
2.5 KiB
Plaintext
(* Abbreviation: RealConv *)
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(* Version 1.10, Nov 1984 *)
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DEFINITION MODULE RealConversions;
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(*
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Conversion Module for floating numbers
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*)
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EXPORT QUALIFIED
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RealToString, StringToReal;
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PROCEDURE RealToString (r: REAL;
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digits, width : INTEGER;
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VAR str:ARRAY OF CHAR;
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VAR okay : BOOLEAN);
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(*
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- Convert a REAL to right-justified fixed point or
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exponent representation
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in: r real number to be represented,
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digits number of digits to the right of the
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decimal point,
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width maximum width of representation,
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out: str string result,
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okay TRUE if the conversion is done properly,
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FALSE otherwise.
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If 'digits' < 0 then exponent notation is used,
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otherwise fixed point notation is used. Note that a
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leading '-' is generated if r < 0, but never a '+'.
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If the representation of 'r' uses fewer than 'width'
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digits, blanks are added on the left. If the
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representation will not fit in 'width' then 'str' is
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returned empty and 'okay' is set to FALSE.
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The minimum required 'width' is:
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- if 'digits' < 0: width >= ABS(digits) + 8
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- if 'digits' >= 0: width >= ABS(digits) + 2 + before,
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where 'before' is the number of digits before the
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decimal point of 'r' in fixed point notation (e.g.
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r = 123.456 --> before = 3, r = 0.012 --> before = 1)
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*)
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PROCEDURE StringToReal (str:ARRAY OF CHAR;
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VAR r:REAL;
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VAR okay:BOOLEAN);
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(*
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- Convert ARRAY OF CHAR to REAL representation.
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in: str string to be represented,
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out: r REAL result,
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okay TRUE if the conversion is done properly,
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FALSE otherwise.
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Leading blanks are skipped, control code characters and
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space are considered as legal terminators. The syntax for
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a legal real representation in 'str' is:
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realnumber = fixedpointnumber [exponent].
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fixedpointnumber = [sign] {digit} [ '.' {digit} ].
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exponent = ('e' | 'E') [sign] digit {digit}.
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sign = '+' | '-'.
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digit = '0'|'1'|'2'|'3'|'4'|'5'|'6'|'7'|
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'8'|'9'.
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The following numbers are legal representations of one
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hundred: 100, 10E1, 100E0, 1000E-1, E2, +E2, 1E2, +1E2,
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+1E+2, 1E+2 .
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At most 15 digits are significant, leading zeros not
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counting. The range of representable real numbers is:
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1.0E-307 <= ABS(r) < 1.0E308
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*)
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END RealConversions.
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