371 lines
7.4 KiB
Modula-2
Executable file
371 lines
7.4 KiB
Modula-2
Executable file
(*
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(c) copyright 1988 by the Vrije Universiteit, Amsterdam, The Netherlands.
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See the copyright notice in the ACK home directory, in the file "Copyright".
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*)
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(*$R-*)
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IMPLEMENTATION MODULE InOut ;
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(*
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Module: Wirth's Input/Output module
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Author: Ceriel J.H. Jacobs
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Version: $Header$
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*)
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IMPORT Streams;
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FROM Conversions IMPORT
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ConvertCardinal, ConvertInteger,
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ConvertOctal, ConvertHex;
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FROM Traps IMPORT Message;
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CONST TAB = 11C;
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TYPE numbuf = ARRAY[0..255] OF CHAR;
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VAR unread: BOOLEAN;
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unreadch: CHAR;
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CurrIn, CurrOut: Streams.Stream;
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result: Streams.StreamResult;
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PROCEDURE Read(VAR c : CHAR);
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BEGIN
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IF unread THEN
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unread := FALSE;
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c := unreadch;
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Done := TRUE;
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ELSE
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Streams.Read(CurrIn, c, result);
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Done := result = Streams.succeeded;
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END;
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END Read;
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PROCEDURE UnRead(ch: CHAR);
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BEGIN
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unread := TRUE;
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unreadch := ch;
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END UnRead;
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PROCEDURE Write(c: CHAR);
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BEGIN
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Streams.Write(CurrOut, c, result);
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END Write;
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PROCEDURE OpenInput(defext: ARRAY OF CHAR);
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VAR namebuf : ARRAY [1..128] OF CHAR;
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BEGIN
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IF CurrIn # Streams.InputStream THEN
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Streams.CloseStream(CurrIn, result);
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END;
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MakeFileName("Name of input file: ", defext, namebuf);
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IF NOT Done THEN RETURN; END;
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openinput(namebuf);
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END OpenInput;
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PROCEDURE OpenInputFile(filename: ARRAY OF CHAR);
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BEGIN
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IF CurrIn # Streams.InputStream THEN
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Streams.CloseStream(CurrIn, result);
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END;
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openinput(filename);
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END OpenInputFile;
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PROCEDURE openinput(namebuf: ARRAY OF CHAR);
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BEGIN
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IF (namebuf[0] = '-') AND (namebuf[1] = 0C) THEN
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CurrIn := Streams.InputStream;
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Done := TRUE;
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ELSE
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Streams.OpenStream(CurrIn, namebuf, Streams.text,
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Streams.reading, result);
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Done := result = Streams.succeeded;
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END;
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END openinput;
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PROCEDURE CloseInput;
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BEGIN
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IF CurrIn # Streams.InputStream THEN
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Streams.CloseStream(CurrIn, result);
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END;
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CurrIn := Streams.InputStream;
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END CloseInput;
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PROCEDURE OpenOutput(defext: ARRAY OF CHAR);
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VAR namebuf : ARRAY [1..128] OF CHAR;
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BEGIN
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IF CurrOut # Streams.OutputStream THEN
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Streams.CloseStream(CurrOut, result);
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END;
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MakeFileName("Name of output file: ", defext, namebuf);
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IF NOT Done THEN RETURN; END;
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openoutput(namebuf);
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END OpenOutput;
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PROCEDURE OpenOutputFile(filename: ARRAY OF CHAR);
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BEGIN
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IF CurrOut # Streams.OutputStream THEN
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Streams.CloseStream(CurrOut, result);
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END;
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openoutput(filename);
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END OpenOutputFile;
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PROCEDURE openoutput(namebuf: ARRAY OF CHAR);
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BEGIN
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IF (namebuf[1] = '-') AND (namebuf[2] = 0C) THEN
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CurrOut := Streams.OutputStream;
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Done := TRUE;
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ELSE
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Streams.OpenStream(CurrOut, namebuf, Streams.text,
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Streams.writing, result);
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Done := result = Streams.succeeded;
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END;
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END openoutput;
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PROCEDURE CloseOutput;
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BEGIN
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IF CurrOut # Streams.OutputStream THEN
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Streams.CloseStream(CurrOut, result);
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END;
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CurrOut := Streams.OutputStream;
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END CloseOutput;
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PROCEDURE MakeFileName(prompt, defext : ARRAY OF CHAR;
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VAR buf : ARRAY OF CHAR);
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VAR i : INTEGER;
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j : CARDINAL;
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BEGIN
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Done := TRUE;
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IF Streams.isatty(Streams.InputStream, result) THEN
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XWriteString(prompt);
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END;
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XReadString(buf);
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i := 0;
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WHILE buf[i] # 0C DO i := i + 1 END;
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IF i # 0 THEN
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i := i - 1;
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IF buf[i] = '.' THEN
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FOR j := 0 TO HIGH(defext) DO
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i := i + 1;
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buf[i] := defext[j];
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END;
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buf[i+1] := 0C;
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END;
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RETURN;
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END;
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Done := FALSE;
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END MakeFileName;
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PROCEDURE ReadInt(VAR integ : INTEGER);
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CONST
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SAFELIMITDIV10 = MAX(INTEGER) DIV 10;
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SAFELIMITREM10 = MAX(INTEGER) MOD 10;
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TYPE
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itype = [0..31];
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ibuf = ARRAY itype OF CHAR;
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VAR
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int : INTEGER;
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neg : BOOLEAN;
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safedigit: [0 .. 9];
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chvalue: CARDINAL;
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buf : ibuf;
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index : itype;
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BEGIN
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ReadString(buf);
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IF NOT Done THEN
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RETURN
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END;
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index := 0;
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IF buf[index] = '-' THEN
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neg := TRUE;
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INC(index);
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ELSIF buf[index] = '+' THEN
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neg := FALSE;
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INC(index);
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ELSE
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neg := FALSE
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END;
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safedigit := SAFELIMITREM10;
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IF neg THEN safedigit := safedigit + 1 END;
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int := 0;
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WHILE (buf[index] >= '0') & (buf[index] <= '9') DO
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chvalue := ORD(buf[index]) - ORD('0');
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IF (int > SAFELIMITDIV10) OR
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( (int = SAFELIMITDIV10) AND
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(chvalue > safedigit)) THEN
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Message("integer too large");
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HALT;
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ELSE
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int := 10*int + VAL(INTEGER, chvalue);
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INC(index)
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END;
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END;
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IF neg THEN
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integ := -int
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ELSE
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integ := int
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END;
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IF buf[index] > " " THEN
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Message("illegal integer");
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HALT;
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END;
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Done := TRUE;
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END ReadInt;
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PROCEDURE ReadCard(VAR card : CARDINAL);
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CONST
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SAFELIMITDIV10 = MAX(CARDINAL) DIV 10;
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SAFELIMITREM10 = MAX(CARDINAL) MOD 10;
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TYPE
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itype = [0..31];
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ibuf = ARRAY itype OF CHAR;
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VAR
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int : CARDINAL;
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index : itype;
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buf : ibuf;
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safedigit: [0 .. 9];
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chvalue: CARDINAL;
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BEGIN
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ReadString(buf);
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IF NOT Done THEN RETURN; END;
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index := 0;
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safedigit := SAFELIMITREM10;
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int := 0;
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WHILE (buf[index] >= '0') & (buf[index] <= '9') DO
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chvalue := ORD(buf[index]) - ORD('0');
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IF (int > SAFELIMITDIV10) OR
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( (int = SAFELIMITDIV10) AND
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(chvalue > safedigit)) THEN
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Message("cardinal too large");
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HALT;
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ELSE
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int := 10*int + chvalue;
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INC(index);
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END;
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END;
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IF buf[index] > " " THEN
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Message("illegal cardinal");
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HALT;
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END;
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card := int;
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Done := TRUE;
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END ReadCard;
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PROCEDURE ReadString(VAR s : ARRAY OF CHAR);
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TYPE charset = SET OF CHAR;
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VAR i : CARDINAL;
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ch : CHAR;
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BEGIN
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i := 0;
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REPEAT
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Read(ch);
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UNTIL NOT (ch IN charset{' ', TAB, 12C, 15C});
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IF NOT Done THEN
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RETURN;
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END;
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UnRead(ch);
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REPEAT
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Read(ch);
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termCH := ch;
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IF i <= HIGH(s) THEN
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s[i] := ch;
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IF (NOT Done) OR (ch <= " ") THEN
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s[i] := 0C;
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END;
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END;
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INC(i);
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UNTIL (NOT Done) OR (ch <= " ");
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IF Done THEN UnRead(ch); END;
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END ReadString;
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PROCEDURE XReadString(VAR s : ARRAY OF CHAR);
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VAR j : CARDINAL;
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ch : CHAR;
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BEGIN
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j := 0;
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LOOP
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Streams.Read(Streams.InputStream, ch, result);
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IF result # Streams.succeeded THEN
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EXIT;
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END;
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IF ch <= " " THEN
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s[j] := 0C;
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EXIT;
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END;
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IF j < HIGH(s) THEN
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s[j] := ch;
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INC(j);
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END;
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END;
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END XReadString;
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PROCEDURE XWriteString(s: ARRAY OF CHAR);
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VAR i: CARDINAL;
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BEGIN
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i := 0;
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LOOP
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IF (i <= HIGH(s)) AND (s[i] # 0C) THEN
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Streams.Write(Streams.OutputStream, s[i], result);
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INC(i);
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ELSE
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EXIT;
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END;
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END;
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END XWriteString;
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PROCEDURE WriteCard(card, width : CARDINAL);
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VAR
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buf : numbuf;
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BEGIN
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ConvertCardinal(card, width, buf);
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WriteString(buf);
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END WriteCard;
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PROCEDURE WriteInt(int : INTEGER; width : CARDINAL);
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VAR
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buf : numbuf;
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BEGIN
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ConvertInteger(int, width, buf);
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WriteString(buf);
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END WriteInt;
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PROCEDURE WriteHex(card, width : CARDINAL);
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VAR
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buf : numbuf;
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BEGIN
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ConvertHex(card, width, buf);
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WriteString(buf);
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END WriteHex;
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PROCEDURE WriteLn;
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BEGIN
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Write(EOL)
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END WriteLn;
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PROCEDURE WriteOct(card, width : CARDINAL);
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VAR
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buf : numbuf;
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BEGIN
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ConvertOctal(card, width, buf);
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WriteString(buf);
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END WriteOct;
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PROCEDURE WriteString(str : ARRAY OF CHAR);
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VAR
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nbytes : CARDINAL;
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BEGIN
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nbytes := 0;
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WHILE (nbytes <= HIGH(str)) AND (str[nbytes] # 0C) DO
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Write(str[nbytes]);
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INC(nbytes)
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END;
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END WriteString;
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BEGIN (* InOut initialization *)
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CurrIn := Streams.InputStream;
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CurrOut := Streams.OutputStream;
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unread := FALSE;
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END InOut.
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