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io.c revision 1.3
      1 /*	$NetBSD: io.c,v 1.3 1995/04/24 12:21:37 cgd Exp $	*/
      2 
      3 /*-
      4  * Copyright (c) 1991, 1993
      5  *	The Regents of the University of California.  All rights reserved.
      6  *
      7  * The game adventure was originally written in Fortran by Will Crowther
      8  * and Don Woods.  It was later translated to C and enhanced by Jim
      9  * Gillogly.  This code is derived from software contributed to Berkeley
     10  * by Jim Gillogly at The Rand Corporation.
     11  *
     12  * Redistribution and use in source and binary forms, with or without
     13  * modification, are permitted provided that the following conditions
     14  * are met:
     15  * 1. Redistributions of source code must retain the above copyright
     16  *    notice, this list of conditions and the following disclaimer.
     17  * 2. Redistributions in binary form must reproduce the above copyright
     18  *    notice, this list of conditions and the following disclaimer in the
     19  *    documentation and/or other materials provided with the distribution.
     20  * 3. All advertising materials mentioning features or use of this software
     21  *    must display the following acknowledgement:
     22  *	This product includes software developed by the University of
     23  *	California, Berkeley and its contributors.
     24  * 4. Neither the name of the University nor the names of its contributors
     25  *    may be used to endorse or promote products derived from this software
     26  *    without specific prior written permission.
     27  *
     28  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     29  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     30  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     31  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     32  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     33  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     34  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     35  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     36  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     37  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     38  * SUCH DAMAGE.
     39  */
     40 
     41 #ifndef lint
     42 #if 0
     43 static char sccsid[] = "@(#)io.c	8.1 (Berkeley) 5/31/93";
     44 #else
     45 static char rcsid[] = "$NetBSD: io.c,v 1.3 1995/04/24 12:21:37 cgd Exp $";
     46 #endif
     47 #endif /* not lint */
     48 
     49 /*      Re-coding of advent in C: file i/o and user i/o                 */
     50 
     51 #include "hdr.h"
     52 #include <stdio.h>
     53 #include <string.h>
     54 
     55 
     56 getin(wrd1,wrd2)                        /* get command from user        */
     57 char **wrd1,**wrd2;                     /* no prompt, usually           */
     58 {       register char *s;
     59 	static char wd1buf[MAXSTR],wd2buf[MAXSTR];
     60 	int first, numch;
     61 
     62 	*wrd1=wd1buf;                   /* return ptr to internal string*/
     63 	*wrd2=wd2buf;
     64 	wd2buf[0]=0;                    /* in case it isn't set here    */
     65 	for (s=wd1buf, first=1, numch=0;;)
     66 	{       if ((*s=getchar())>='A' && *s <='Z') *s = *s - ('A' -'a');
     67 					/* convert to upper case        */
     68 		switch(*s)              /* start reading from user      */
     69 		{   case '\n':
     70 			*s=0;
     71 			return;
     72 		    case ' ':
     73 			if (s==wd1buf||s==wd2buf)  /* initial blank   */
     74 				continue;
     75 			*s=0;
     76 			if (first)      /* finished 1st wd; start 2nd   */
     77 			{       first=numch=0;
     78 				s=wd2buf;
     79 				break;
     80 			}
     81 			else            /* finished 2nd word            */
     82 			{       FLUSHLINE;
     83 				*s=0;
     84 				return;
     85 			}
     86 		    default:
     87 			if (++numch>=MAXSTR)    /* string too long      */
     88 			{       printf("Give me a break!!\n");
     89 				wd1buf[0]=wd2buf[0]=0;
     90 				FLUSHLINE;
     91 				return;
     92 			}
     93 			s++;
     94 		}
     95 	}
     96 }
     97 
     98 
     99 confirm(mesg)                           /* confirm irreversible action  */
    100 char *mesg;
    101 {       register int result;
    102 	printf("%s",mesg);              /* tell him what he did         */
    103 	if (getchar()=='y')             /* was his first letter a 'y'?  */
    104 		result=1;
    105 	else    result=0;
    106 	FLUSHLINE;
    107 	return(result);
    108 }
    109 
    110 yes(x,y,z)                              /* confirm with rspeak          */
    111 int x,y,z;
    112 {       register int result;
    113 	register char ch;
    114 	for (;;)
    115 	{       rspeak(x);                     /* tell him what we want*/
    116 		if ((ch=getchar())=='y')
    117 			result=TRUE;
    118 		else if (ch=='n') result=FALSE;
    119 		FLUSHLINE;
    120 		if (ch=='y'|| ch=='n') break;
    121 		printf("Please answer the question.\n");
    122 	}
    123 	if (result==TRUE) rspeak(y);
    124 	if (result==FALSE) rspeak(z);
    125 	return(result);
    126 }
    127 
    128 yesm(x,y,z)                             /* confirm with mspeak          */
    129 int x,y,z;
    130 {       register int result;
    131 	register char ch;
    132 	for (;;)
    133 	{       mspeak(x);                     /* tell him what we want*/
    134 		if ((ch=getchar())=='y')
    135 			result=TRUE;
    136 		else if (ch=='n') result=FALSE;
    137 		FLUSHLINE;
    138 		if (ch=='y'|| ch=='n') break;
    139 		printf("Please answer the question.\n");
    140 	}
    141 	if (result==TRUE) mspeak(y);
    142 	if (result==FALSE) mspeak(z);
    143 	return(result);
    144 }
    145 
    146 /* FILE *inbuf,*outbuf; */
    147 
    148 char *inptr;                            /* Pointer into virtual disk    */
    149 
    150 int outsw = 0;				/* putting stuff to data file?  */
    151 
    152 char iotape[] = "Ax3F'\003tt$8h\315qer*h\017nGKrX\207:!l";
    153 char *tape = iotape;			/* pointer to encryption tape   */
    154 
    155 next()                                  /* next virtual char, bump adr  */
    156 {
    157 	int ch;
    158 
    159 	ch=(*inptr ^ random()) & 0xFF;  /* Decrypt input data           */
    160 	if (outsw)                      /* putting data in tmp file     */
    161 	{   if (*tape==0) tape=iotape;  /* rewind encryption tape       */
    162 	    *inptr = ch ^ *tape++;      /* re-encrypt and replace value */
    163 	}
    164 	inptr++;
    165 	return(ch);
    166 }
    167 
    168 char breakch;                           /* tell which char ended rnum   */
    169 
    170 rdata()                                 /* "read" data from virtual file*/
    171 {       register int sect;
    172 	register char ch;
    173 
    174 	inptr = data_file;              /* Pointer to virtual data file */
    175 	srandom(SEED);                  /* which is lightly encrypted.  */
    176 
    177 	clsses=1;
    178 	for (;;)                        /* read data sections           */
    179 	{       sect=next()-'0';        /* 1st digit of section number  */
    180 #ifdef VERBOSE
    181 		printf("Section %c",sect+'0');
    182 #endif
    183 		if ((ch=next())!=LF)    /* is there a second digit?     */
    184 		{
    185 			FLUSHLF;
    186 #ifdef VERBOSE
    187 			putchar(ch);
    188 #endif
    189 			sect=10*sect+ch-'0';
    190 		}
    191 #ifdef VERBOSE
    192 		putchar('\n');
    193 #endif
    194 		switch(sect)
    195 		{   case 0:             /* finished reading database    */
    196 			return;
    197 		    case 1:             /* long form descriptions       */
    198 			rdesc(1);
    199 			break;
    200 		    case 2:             /* short form descriptions      */
    201 			rdesc(2);
    202 			break;
    203 		    case 3:             /* travel table                 */
    204 			rtrav();   break;
    205 		    case 4:             /* vocabulary                   */
    206 			rvoc();
    207 			break;
    208 		    case 5:             /* object descriptions          */
    209 			rdesc(5);
    210 			break;
    211 		    case 6:             /* arbitrary messages           */
    212 			rdesc(6);
    213 			break;
    214 		    case 7:             /* object locations             */
    215 			rlocs();   break;
    216 		    case 8:             /* action defaults              */
    217 			rdflt();   break;
    218 		    case 9:             /* liquid assets                */
    219 			rliq();    break;
    220 		    case 10:            /* class messages               */
    221 			rdesc(10);
    222 			break;
    223 		    case 11:            /* hints                        */
    224 			rhints();  break;
    225 		    case 12:            /* magic messages               */
    226 			rdesc(12);
    227 			break;
    228 		    default:
    229 			printf("Invalid data section number: %d\n",sect);
    230 			for (;;) putchar(next());
    231 		}
    232 		if (breakch!=LF)        /* routines return after "-1"   */
    233 			FLUSHLF;
    234 	}
    235 }
    236 
    237 char nbf[12];
    238 
    239 
    240 rnum()                                  /* read initial location num    */
    241 {       register char *s;
    242 	tape = iotape;                  /* restart encryption tape      */
    243 	for (s=nbf,*s=0;; s++)
    244 		if ((*s=next())==TAB || *s=='\n' || *s==LF)
    245 			break;
    246 	breakch= *s;                    /* save char for rtrav()        */
    247 	*s=0;                           /* got the number as ascii      */
    248 	if (nbf[0]=='-') return(-1);    /* end of data                  */
    249 	return(atoi(nbf));              /* convert it to integer        */
    250 }
    251 
    252 char *seekhere;
    253 
    254 rdesc(sect)                             /* read description-format msgs */
    255 int sect;
    256 {       register char *s,*t;
    257 	register int locc;
    258 	char *seekstart, *maystart, *adrstart;
    259 	char *entry;
    260 
    261 	seekhere = inptr;               /* Where are we in virtual file?*/
    262 	outsw=1;                        /* these msgs go into tmp file  */
    263 	for (oldloc= -1, seekstart=seekhere;;)
    264 	{       maystart=inptr;         /* maybe starting new entry     */
    265 		if ((locc=rnum())!=oldloc && oldloc>=0  /* finished msg */
    266 		    && ! (sect==5 && (locc==0 || locc>=100)))/* unless sect 5*/
    267 		{       switch(sect)    /* now put it into right table  */
    268 			{   case 1:     /* long descriptions            */
    269 				ltext[oldloc].seekadr=seekhere;
    270 				ltext[oldloc].txtlen=maystart-seekstart;
    271 				break;
    272 			    case 2:     /* short descriptions           */
    273 				stext[oldloc].seekadr=seekhere;
    274 				stext[oldloc].txtlen=maystart-seekstart;
    275 				break;
    276 			    case 5:     /* object descriptions          */
    277 				ptext[oldloc].seekadr=seekhere;
    278 				ptext[oldloc].txtlen=maystart-seekstart;
    279 				break;
    280 			    case 6:     /* random messages              */
    281 				if (oldloc>RTXSIZ)
    282 				{       printf("Too many random msgs\n");
    283 					exit(0);
    284 				}
    285 				rtext[oldloc].seekadr=seekhere;
    286 				rtext[oldloc].txtlen=maystart-seekstart;
    287 				break;
    288 			    case 10:    /* class messages               */
    289 				ctext[clsses].seekadr=seekhere;
    290 				ctext[clsses].txtlen=maystart-seekstart;
    291 				cval[clsses++]=oldloc;
    292 				break;
    293 			    case 12:    /* magic messages               */
    294 				if (oldloc>MAGSIZ)
    295 				{       printf("Too many magic msgs\n");
    296 					exit(0);
    297 				}
    298 				mtext[oldloc].seekadr=seekhere;
    299 				mtext[oldloc].txtlen=maystart-seekstart;
    300 				break;
    301 			    default:
    302 				printf("rdesc called with bad section\n");
    303 				exit(0);
    304 			}
    305 			seekhere += maystart-seekstart;
    306 		}
    307 		if (locc<0)
    308 		{       outsw=0;        /* turn off output              */
    309 			seekhere += 3;  /* -1<delimiter>                */
    310 			return;
    311 		}
    312 		if (sect!=5 || (locc>0 && locc<100))
    313 		{       if (oldloc!=locc)/* starting a new message       */
    314 				seekstart=maystart;
    315 			oldloc=locc;
    316 		}
    317 		FLUSHLF;                /* scan the line                */
    318 	}
    319 }
    320 
    321 
    322 rtrav()                                 /* read travel table            */
    323 {       register int locc;
    324 	register struct travlist *t;
    325 	register char *s;
    326 	char buf[12];
    327 	int len,m,n,entries;
    328 	for (oldloc= -1;;)              /* get another line             */
    329 	{       if ((locc=rnum())!=oldloc && oldloc>=0) /* end of entry */
    330 		{
    331 			t->next = 0;    /* terminate the old entry      */
    332 		/*      printf("%d:%d entries\n",oldloc,entries);       */
    333 		/*      twrite(oldloc);                                 */
    334 		}
    335 		if (locc== -1) return;
    336 		if (locc!=oldloc)        /* getting a new entry         */
    337 		{       t=travel[locc]=(struct travlist *) malloc(sizeof (struct travlist));
    338 		/*      printf("New travel list for %d\n",locc);        */
    339 			entries=0;
    340 			oldloc=locc;
    341 		}
    342 		for (s=buf;; *s++)      /* get the newloc number /ASCII */
    343 			if ((*s=next())==TAB || *s==LF) break;
    344 		*s=0;
    345 		len=length(buf)-1;      /* quad long number handling    */
    346 	/*      printf("Newloc: %s (%d chars)\n",buf,len);              */
    347 		if (len<4)              /* no "m" conditions            */
    348 		{       m=0;
    349 			n=atoi(buf);    /* newloc mod 1000 = newloc     */
    350 		}
    351 		else                    /* a long integer               */
    352 		{       n=atoi(buf+len-3);
    353 			buf[len-3]=0;   /* terminate newloc/1000        */
    354 			m=atoi(buf);
    355 		}
    356 		while (breakch!=LF)     /* only do one line at a time   */
    357 		{       if (entries++) t=t->next=(struct travlist *) malloc(sizeof (struct travlist));
    358 			t->tverb=rnum();/* get verb from the file       */
    359 			t->tloc=n;      /* table entry mod 1000         */
    360 			t->conditions=m;/* table entry / 1000           */
    361 		/*      printf("entry %d for %d\n",entries,locc);       */
    362 		}
    363 	}
    364 }
    365 
    366 #ifdef DEBUG
    367 
    368 twrite(loq)                             /* travel options from this loc */
    369 int loq;
    370 {       register struct travlist *t;
    371 	printf("If");
    372 	speak(&ltext[loq]);
    373 	printf("then\n");
    374 	for (t=travel[loq]; t!=0; t=t->next)
    375 	{       printf("verb %d takes you to ",t->tverb);
    376 		if (t->tloc<=300)
    377 			speak(&ltext[t->tloc]);
    378 		else if (t->tloc<=500)
    379 			printf("special code %d\n",t->tloc-300);
    380 		else
    381 			rspeak(t->tloc-500);
    382 		printf("under conditions %d\n",t->conditions);
    383 	}
    384 }
    385 
    386 #endif DEBUG
    387 
    388 rvoc()
    389 {       register char *s;               /* read the vocabulary          */
    390 	register int index;
    391 	char buf[6];
    392 	for (;;)
    393 	{       index=rnum();
    394 		if (index<0) break;
    395 		for (s=buf,*s=0;; s++)  /* get the word                 */
    396 			if ((*s=next())==TAB || *s=='\n' || *s==LF
    397 				|| *s==' ') break;
    398 			/* terminate word with newline, LF, tab, blank  */
    399 		if (*s!='\n' && *s!=LF) FLUSHLF;  /* can be comments    */
    400 		*s=0;
    401 	/*      printf("\"%s\"=%d\n",buf,index);*/
    402 		vocab(buf,-2,index);
    403 	}
    404 /*	prht();	*/
    405 }
    406 
    407 
    408 rlocs()                                 /* initial object locations     */
    409 {	for (;;)
    410 	{       if ((obj=rnum())<0) break;
    411 		plac[obj]=rnum();       /* initial loc for this obj     */
    412 		if (breakch==TAB)       /* there's another entry        */
    413 			fixd[obj]=rnum();
    414 		else    fixd[obj]=0;
    415 	}
    416 }
    417 
    418 rdflt()                                 /* default verb messages        */
    419 {	for (;;)
    420 	{       if ((verb=rnum())<0) break;
    421 		actspk[verb]=rnum();
    422 	}
    423 }
    424 
    425 rliq()                                  /* liquid assets &c: cond bits  */
    426 {       register int bitnum;
    427 	for (;;)                        /* read new bit list            */
    428 	{       if ((bitnum=rnum())<0) break;
    429 		for (;;)                /* read locs for bits           */
    430 		{       cond[rnum()] |= setbit[bitnum];
    431 			if (breakch==LF) break;
    432 		}
    433 	}
    434 }
    435 
    436 rhints()
    437 {       register int hintnum,i;
    438 	hntmax=0;
    439 	for (;;)
    440 	{       if ((hintnum=rnum())<0) break;
    441 		for (i=1; i<5; i++)
    442 			hints[hintnum][i]=rnum();
    443 		if (hintnum>hntmax) hntmax=hintnum;
    444 	}
    445 }
    446 
    447 
    448 rspeak(msg)
    449 int msg;
    450 {       if (msg!=0) speak(&rtext[msg]);
    451 }
    452 
    453 
    454 mspeak(msg)
    455 int msg;
    456 {       if (msg!=0) speak(&mtext[msg]);
    457 }
    458 
    459 
    460 speak(msg)       /* read, decrypt, and print a message (not ptext)      */
    461 struct text *msg;/* msg is a pointer to seek address and length of mess */
    462 {
    463 	register char *s, nonfirst;
    464 
    465 	s = msg->seekadr;
    466 	nonfirst=0;
    467 	while (s - msg->seekadr < msg->txtlen)  /* read a line at a time */
    468 	{       tape=iotape;            /* restart decryption tape      */
    469 		while ((*s++ ^ *tape++) != TAB); /* read past loc num       */
    470 		/* assume tape is longer than location number           */
    471 		/*   plus the lookahead put together                    */
    472 		if ((*s ^ *tape) == '>' &&
    473 			(*(s+1) ^ *(tape+1)) == '$' &&
    474 			(*(s+2) ^ *(tape+2)) == '<') break;
    475 		if (blklin && !nonfirst++) putchar('\n');
    476 		do
    477 		{       if (*tape == 0) tape = iotape;/* rewind decryp tape */
    478 			putchar(*s ^ *tape);
    479 		} while ((*s++ ^ *tape++) != LF);   /* better end with LF   */
    480 	}
    481 }
    482 
    483 
    484 pspeak(m,skip) /* read, decrypt an print a ptext message              */
    485 int m;         /* msg is the number of all the p msgs for this place  */
    486 int skip;       /* assumes object 1 doesn't have prop 1, obj 2 no prop 2 &c*/
    487 {
    488 	register char *s,nonfirst;
    489 	char *numst, save;
    490 	struct text *msg;
    491 	char *tbuf;
    492 
    493 	msg = &ptext[m];
    494 	if ((tbuf=(char *) malloc(msg->txtlen + 1)) == 0) bug(108);
    495 	memcpy(tbuf, msg->seekadr, msg->txtlen + 1);   /* Room to null */
    496 	s = tbuf;
    497 
    498 	nonfirst=0;
    499 	while (s - tbuf < msg->txtlen) /* read line at a time */
    500 	{       tape=iotape;            /* restart decryption tape      */
    501 		for (numst=s; (*s^= *tape++)!=TAB; s++); /* get number  */
    502 
    503 		save = *s; /* Temporarily trash the string (cringe) */
    504 		*s++ = 0; /* decrypting number within the string          */
    505 
    506 		if (atoi(numst) != 100 * skip && skip >= 0)
    507 		{       while ((*s++^*tape++)!=LF) /* flush the line    */
    508 				if (*tape==0) tape=iotape;
    509 			continue;
    510 		}
    511 		if ((*s^*tape)=='>' && (*(s+1)^*(tape+1))=='$' &&
    512 			(*(s+2)^*(tape+2))=='<') break;
    513 		if (blklin && ! nonfirst++) putchar('\n');
    514 		do
    515 		{       if (*tape==0) tape=iotape;
    516 			putchar(*s^*tape);
    517 		} while ((*s++^*tape++)!=LF);   /* better end with LF   */
    518 		if (skip<0) break;
    519 	}
    520 	free(tbuf);
    521 }
    522