223 lines
4.4 KiB
Modula-2
223 lines
4.4 KiB
Modula-2
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IMPLEMENTATION MODULE RealInOut;
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FROM FIFFEF IMPORT FIF, FEF;
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IMPORT InOut;
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CONST NDIG = 80;
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TYPE string = ARRAY[0..NDIG+6] OF CHAR;
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PROCEDURE cvt(arg: REAL;
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ndigits: INTEGER;
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VAR decpt: INTEGER;
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VAR sign: BOOLEAN;
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eflag: BOOLEAN;
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VAR buf: string);
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VAR r2, i: INTEGER;
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fi, fj: REAL;
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ind1, ind2 : INTEGER;
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BEGIN
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IF ndigits < 0 THEN ndigits := 0 END;
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IF ndigits >= NDIG-1 THEN ndigits := NDIG-2; END;
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r2 := 0;
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sign := arg < 0.0;
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ind1 := 0;
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IF sign THEN arg := -arg END;
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arg := FIF(arg, 1.0, fi);
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(*
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Do integer part, which is now in "fi". "arg" now contains the
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fraction part.
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*)
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IF fi # 0.0 THEN
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ind2 := NDIG;
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WHILE fi # 0.0 DO
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DEC(ind2);
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buf[ind2] := CHR(TRUNC((FIF(fi, 0.1, fi) +
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0.03
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) * 10.0
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) + ORD('0')
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);
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INC(r2);
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END;
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WHILE ind2 < NDIG DO
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buf[ind1] := buf[ind2];
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INC(ind1);
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INC(ind2);
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END;
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ELSIF arg > 0.0 THEN
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WHILE arg*10.0 < 1.0 DO
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arg := arg * 10.0;
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fj := arg;
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DEC(r2);
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END;
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END;
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ind2 := ndigits;
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IF NOT eflag THEN ind2 := ind2 + r2 END;
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decpt := r2;
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IF ind2 < 0 THEN
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buf[0] := 0C;
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RETURN;
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END;
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WHILE (ind1 <= ind2) AND (ind1 < NDIG) DO
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arg := FIF(arg, 10.0, fj);
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buf[ind1] := CHR(TRUNC(fj)+ORD('0'));
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INC(ind1);
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END;
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IF ind2 >= NDIG THEN
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buf[NDIG-1] := 0C;
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RETURN;
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END;
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ind1 := ind2;
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buf[ind2] := CHR(ORD(buf[ind2])+5);
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WHILE buf[ind2] > '9' DO
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buf[ind2] := '0';
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IF ind2 > 0 THEN
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DEC(ind2);
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buf[ind2] := CHR(ORD(buf[ind2])+1);
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ELSE
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buf[ind2] := '1';
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INC(decpt);
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IF NOT eflag THEN
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IF ind1 > 0 THEN buf[ind1] := '0'; END;
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INC(ind1);
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END;
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END;
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END;
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buf[ind1] := 0C;
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END cvt;
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PROCEDURE ecvt(arg: REAL;
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ndigits: INTEGER;
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VAR decpt: INTEGER;
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VAR sign: BOOLEAN;
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VAR buf: string);
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BEGIN
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cvt(arg, ndigits, decpt, sign, TRUE, buf);
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END ecvt;
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PROCEDURE fcvt(arg: REAL;
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ndigits: INTEGER;
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VAR decpt: INTEGER;
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VAR sign: BOOLEAN;
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VAR buf: string);
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BEGIN
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cvt(arg, ndigits, decpt, sign, FALSE, buf);
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END fcvt;
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PROCEDURE WriteReal(arg: REAL; ndigits: CARDINAL);
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VAR buf, cvtbuf: string;
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ind1, ind2: INTEGER;
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d,i: INTEGER;
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sign: BOOLEAN;
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BEGIN
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IF ndigits-6 < 2 THEN i := 2 ELSE i := ndigits-6; END;
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ecvt(arg,i,d,sign,cvtbuf);
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IF sign THEN buf[0] := '-' ELSE buf[0] := ' ' END;
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ind1 := 1;
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ind2 := 0;
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IF cvtbuf[ind2] = '0' THEN INC(d); END;
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buf[ind1] := cvtbuf[ind2]; INC(ind1); INC(ind2);
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buf[ind1] := '.'; INC(ind1);
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FOR i := i-1 TO 1 BY -1 DO
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buf[ind1] := cvtbuf[ind2]; INC(ind1); INC(ind2);
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END;
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buf[ind1] := 'E'; INC(ind1);
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DEC(d);
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IF d < 0 THEN
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d := -d;
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buf[ind1] := '-';
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ELSE
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buf[ind1] := '+';
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END;
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INC(ind1);
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buf[ind1] := CHR(ORD('0') + CARDINAL(d DIV 10));
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buf[ind1+1] := CHR(ORD('0') + CARDINAL(d MOD 10));
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buf[ind1+2] := 0C;
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InOut.WriteString(buf);
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END WriteReal;
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PROCEDURE ReadReal(VAR x: REAL);
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CONST BIG = 1.0E17;
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VAR r : REAL;
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pow10 : INTEGER;
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i : INTEGER;
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e : REAL;
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ch : CHAR;
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signed: BOOLEAN;
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signedexp: BOOLEAN;
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Buf: ARRAY[0..512] OF CHAR;
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iB: INTEGER;
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PROCEDURE dig(ch: CARDINAL);
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BEGIN
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IF r>BIG THEN INC(pow10) ELSE r:= 10.0*r + FLOAT(ch) END;
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END dig;
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PROCEDURE isdig(ch: CHAR) : BOOLEAN;
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BEGIN
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RETURN (ch >= '0') AND (ch <= '9');
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END isdig;
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BEGIN
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r := 0.0;
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pow10 := 0;
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InOut.ReadString(Buf);
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iB := 0;
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signed := FALSE;
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IF Buf[0] = '-' THEN signed := TRUE; INC(iB)
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ELSIF Buf[0] = '+' THEN INC(iB)
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END;
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ch := Buf[iB]; INC(iB);
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IF NOT isdig(ch) THEN Done := FALSE; RETURN END;
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REPEAT
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dig(ORD(ch));
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ch := Buf[iB]; INC(iB);
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UNTIL NOT isdig(ch);
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IF ch = '.' THEN
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ch := Buf[iB]; INC(iB);
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IF NOT isdig(ch) THEN Done := FALSE; RETURN END;
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REPEAT
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dig(ORD(ch));
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DEC(pow10);
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ch := Buf[iB]; INC(iB);
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UNTIL NOT isdig(ch);
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END;
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IF ch = 'E' THEN
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ch := Buf[iB]; INC(iB);
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i := 0;
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signedexp := FALSE;
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IF ch = '-' THEN signedexp := TRUE; ch:= Buf[iB]; INC(iB)
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ELSIF Buf[iB] = '+' THEN ch := Buf[iB]; INC(iB)
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END;
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IF NOT isdig(ch) THEN Done := FALSE; RETURN END;
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REPEAT
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i := i*10 + INTEGER(ORD(ch) - ORD('0'));
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ch := Buf[iB]; INC(iB);
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UNTIL NOT isdig(ch);
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IF signedexp THEN i := -i END;
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pow10 := pow10 + i;
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END;
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IF pow10 < 0 THEN i := -pow10; ELSE i := pow10; END;
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e := 1.0;
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DEC(i);
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WHILE i >= 0 DO
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e := e * 10.0;
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DEC(i)
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END;
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IF pow10<0 THEN
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r := r / e;
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ELSE
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r := r * e;
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END;
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IF signed THEN x := -r; ELSE x := r END;
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END ReadReal;
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PROCEDURE WriteRealOct(x: REAL);
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BEGIN
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END WriteRealOct;
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BEGIN
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Done := FALSE;
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END RealInOut.
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