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revision 1.27 by teddy, Sat Feb 2 22:22:04 2002 UTC revision 1.105 by masse, Tue Mar 12 14:53:19 2002 UTC
# Line 1  Line 1 
1  /* printf */  /*
2        stack - an interactive interpreter for a stack-based language
3        Copyright (C) 2002  Mats Alritzson and Teddy Hogeborn
4    
5        This program is free software; you can redistribute it and/or modify
6        it under the terms of the GNU General Public License as published by
7        the Free Software Foundation; either version 2 of the License, or
8        (at your option) any later version.
9    
10        This program is distributed in the hope that it will be useful,
11        but WITHOUT ANY WARRANTY; without even the implied warranty of
12        MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
13        GNU General Public License for more details.
14    
15        You should have received a copy of the GNU General Public License
16        along with this program; if not, write to the Free Software
17        Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA  02111-1307  USA
18    
19        Authors: Mats Alritzson <masse@fukt.bth.se>
20                 Teddy Hogeborn <teddy@fukt.bth.se>
21    */
22    
23    #define CAR(X) X->content.c->car
24    #define CDR(X) X->content.c->cdr
25    
26    /* printf, sscanf, fgets, fprintf, fopen, perror */
27  #include <stdio.h>  #include <stdio.h>
28  /* EXIT_SUCCESS */  /* exit, EXIT_SUCCESS, malloc, free */
29  #include <stdlib.h>  #include <stdlib.h>
30  /* NULL */  /* NULL */
31  #include <stddef.h>  #include <stddef.h>
32  /* dlopen, dlsym, dlerror */  /* dlopen, dlsym, dlerror */
33  #include <dlfcn.h>  #include <dlfcn.h>
34  /* assert */  /* strcmp, strcpy, strlen, strcat, strdup */
35  #include <assert.h>  #include <string.h>
36    /* getopt, STDIN_FILENO, STDOUT_FILENO, usleep */
37    #include <unistd.h>
38    /* EX_NOINPUT, EX_USAGE */
39    #include <sysexits.h>
40    /* mtrace, muntrace */
41    #include <mcheck.h>
42    /* ioctl */
43    #include <sys/ioctl.h>
44    /* KDMKTONE */
45    #include <linux/kd.h>
46    
47    #include "stack.h"
48    
49    /* Initialize a newly created environment */
50    void init_env(environment *env)
51    {
52      int i;
53    
54      env->gc_limit= 400000;
55      env->gc_count= 0;
56      env->gc_ref= NULL;
57    
58  #define HASHTBLSIZE 65536    env->head= NULL;
59      for(i= 0; i<HASHTBLSIZE; i++)
60        env->symbols[i]= NULL;
61      env->err= 0;
62      env->in_string= NULL;
63      env->free_string= NULL;
64      env->inputstream= stdin;
65      env->interactive= 1;
66    }
67    
68  typedef struct stack_item  void printerr(const char* in_string)
69  {  {
70    enum {    fprintf(stderr, "Err: %s\n", in_string);
71      value,                      /* Integer */  }
     string,  
     ref,                        /* Reference (to an element in the  
                                    hash table) */  
     func,                       /* Function pointer */  
     symbol,  
     list  
   } type;                       /* Type of stack element */  
   
   union {  
     void* ptr;                  /* Pointer to the content */  
     int val;                    /* ...or an integer */  
   } content;                    /* Stores a pointer or an integer */  
   
   char* id;                     /* Symbol name */  
   struct stack_item* next;      /* Next element */  
 } stackitem;  
   
   
 typedef stackitem* hashtbl[HASHTBLSIZE]; /* Hash table declaration */  
 typedef void (*funcp)(stackitem**); /* funcp is a pointer to a  
                                        void function (stackitem **) */  
72    
73  /* Initialize a newly created hash table. */  /* Discard the top element of the stack. */
74  void init_hashtbl(hashtbl out_hash)  extern void toss(environment *env)
75  {  {
76    long i;    if(env->head==NULL) {
77        printerr("Too Few Arguments");
78    for(i= 0; i<HASHTBLSIZE; i++)      env->err= 1;
79      out_hash[i]= NULL;      return;
80      }
81      
82      env->head= CDR(env->head); /* Remove the top stack item */
83  }  }
84    
85  /* Returns a pointer to a pointer to an element in the hash table. */  /* Returns a pointer to a pointer to an element in the hash table. */
86  stackitem** hash(hashtbl in_hashtbl, const char* in_string)  symbol **hash(hashtbl in_hashtbl, const char *in_string)
87  {  {
88    long i= 0;    int i= 0;
89    unsigned long out_hash= 0;    unsigned int out_hash= 0;
90    char key= '\0';    char key= '\0';
91    stackitem** position;    symbol **position;
92        
93    while(1){                     /* Hash in_string */    while(1){                     /* Hash in_string */
94      key= in_string[i++];      key= in_string[i++];
# Line 75  stackitem** hash(hashtbl in_hashtbl, con Line 111  stackitem** hash(hashtbl in_hashtbl, con
111    }    }
112  }  }
113    
114  /* Generic push function. */  /* Create new value */
115  int push(stackitem** stack_head, stackitem* in_item)  value* new_val(environment *env)
116  {  {
117    in_item->next= *stack_head;    value *nval= malloc(sizeof(value));
118    *stack_head= in_item;    stackitem *nitem= malloc(sizeof(stackitem));
119    return 1;  
120      nval->content.ptr= NULL;
121    
122      nitem->item= nval;
123      nitem->next= env->gc_ref;
124    
125      env->gc_ref= nitem;
126    
127      env->gc_count += sizeof(value);
128      nval->gc.flag.mark= 0;
129      nval->gc.flag.protect= 0;
130    
131      return nval;
132  }  }
133    
134  /* Push a value on the stack. */  /* Mark values recursively.
135  int push_val(stackitem** stack_head, int in_val)     Marked values are not collected by the GC. */
136    inline void gc_mark(value *val)
137  {  {
138    stackitem* new_item= malloc(sizeof(stackitem));    if(val==NULL || val->gc.flag.mark)
139    assert(new_item != NULL);      return;
140    new_item->content.val= in_val;  
141    new_item->type= value;    val->gc.flag.mark= 1;
142    
143    push(stack_head, new_item);    if(val->type==tcons) {
144    return 1;      gc_mark(CAR(val));
145        gc_mark(CDR(val));
146      }
147  }  }
148    
149  /* Copy a string onto the stack. */  inline void gc_maybe(environment *env)
150  int push_cstring(stackitem** stack_head, const char* in_string)  {
151      if(env->gc_count < env->gc_limit)
152        return;
153      else
154        return gc_init(env);
155    }
156    
157    /* Start GC */
158    extern void gc_init(environment *env)
159  {  {
160    stackitem* new_item= malloc(sizeof(stackitem));    stackitem *new_head= NULL, *titem;
161    new_item->content.ptr= malloc(strlen(in_string)+1);    cons *iterator;
162    strcpy(new_item->content.ptr, in_string);    symbol *tsymb;
163    new_item->type= string;    int i;
164    
165      if(env->interactive)
166        printf("Garbage collecting.");
167    
168      /* Mark values on stack */
169      gc_mark(env->head);
170    
171      if(env->interactive)
172        printf(".");
173    
174    
175      /* Mark values in hashtable */
176      for(i= 0; i<HASHTBLSIZE; i++)
177        for(tsymb= env->symbols[i]; tsymb!=NULL; tsymb= tsymb->next)
178          if (tsymb->val != NULL)
179            gc_mark(tsymb->val);
180    
181    
182      if(env->interactive)
183        printf(".");
184    
185    
186      env->gc_count= 0;
187    
188      while(env->gc_ref!=NULL) {    /* Sweep unused values */
189    
190        if(!(env->gc_ref->item->gc.no_gc)){ /* neither mark nor protect */
191    
192          if(env->gc_ref->item->type==string) /* Remove content */
193            free(env->gc_ref->item->content.ptr);
194    
195          free(env->gc_ref->item);  /* Remove from gc_ref */
196          titem= env->gc_ref->next;
197          free(env->gc_ref);        /* Remove value */
198          env->gc_ref= titem;
199          continue;
200        }
201    
202        /* Keep values */    
203        env->gc_count += sizeof(value);
204        if(env->gc_ref->item->type==string)
205          env->gc_count += strlen(env->gc_ref->item->content.ptr);
206        
207        titem= env->gc_ref->next;
208        env->gc_ref->next= new_head;
209        new_head= env->gc_ref;
210        new_head->item->gc.flag.mark= 0;
211        env->gc_ref= titem;
212      }
213    
214      if (env->gc_limit < env->gc_count*2)
215        env->gc_limit= env->gc_count*2;
216    
217      env->gc_ref= new_head;
218    
219      if(env->interactive)
220        printf("done\n");
221    
   push(stack_head, new_item);  
   return 1;  
222  }  }
223    
224  /* Create a new hash entry. */  /* Protect values from GC */
225  int mk_hashentry(hashtbl in_hashtbl, stackitem* in_item, const char* id)  void protect(value *val)
226  {  {
227    in_item->id= malloc(strlen(id)+1);    if(val==NULL || val->gc.flag.protect)
228        return;
229    
230    strcpy(in_item->id, id);    val->gc.flag.protect= 1;
   push(hash(in_hashtbl, id), in_item);  
231    
232    return 1;    if(val->type==tcons) {
233        protect(CAR(val));
234        protect(CDR(val));
235      }
236  }  }
237    
238  /* Define a new function in the hash table. */  /* Unprotect values from GC */
239  void def_func(hashtbl in_hashtbl, funcp in_func, const char* id)  void unprotect(value *val)
240  {  {
241    stackitem* temp= malloc(sizeof(stackitem));    if(val==NULL || !(val->gc.flag.protect))
242        return;
243    
244      val->gc.flag.protect= 0;
245    
246    temp->type= func;    if(val->type==tcons) {
247    temp->content.ptr= in_func;      unprotect(CAR(val));
248        unprotect(CDR(val));
249      }
250    }
251    
252    mk_hashentry(in_hashtbl, temp, id);  /* Push a value onto the stack */
253    void push_val(environment *env, value *val)
254    {
255      value *new_value= new_val(env);
256    
257      new_value->content.c= malloc(sizeof(cons));
258      new_value->type= tcons;
259      CAR(new_value)= val;
260      CDR(new_value)= env->head;
261      env->head= new_value;
262  }  }
263    
264  /* Define a new symbol in the hash table. */  /* Push an integer onto the stack */
265  void def_sym(hashtbl in_hashtbl, const char* id)  void push_int(environment *env, int in_val)
266  {  {
267    stackitem* temp= malloc(sizeof(stackitem));    value *new_value= new_val(env);
268        
269    temp->type= symbol;    new_value->content.i= in_val;
270    mk_hashentry(in_hashtbl, temp, id);    new_value->type= integer;
271    
272      push_val(env, new_value);
273  }  }
274    
275  /* Push a reference to an entry in the hash table onto the stack. */  /* Push a floating point number onto the stack */
276  int push_ref(stackitem** stack_head, hashtbl in_hash, const char* in_string)  void push_float(environment *env, float in_val)
277  {  {
278    static void* handle= NULL;    value *new_value= new_val(env);
   void* symbol;  
279    
280    stackitem* new_item= malloc(sizeof(stackitem));    new_value->content.f= in_val;
281    new_item->content.ptr= *hash(in_hash, in_string);    new_value->type= tfloat;
   new_item->type= ref;  
282    
283    if(new_item->content.ptr==NULL) { /* If hash entry empty */    push_val(env, new_value);
284      if(handle==NULL)            /* If no handle */  }
       handle= dlopen(NULL, RTLD_LAZY);      
285    
286      symbol= dlsym(handle, in_string); /* Get function pointer */  /* Copy a string onto the stack. */
287      if(dlerror()==NULL)         /* If existing function pointer */  void push_cstring(environment *env, const char *in_string)
288        def_func(in_hash, symbol, in_string); /* Store function pointer */  {
289      else    value *new_value= new_val(env);
290        def_sym(in_hash, in_string); /* Make symbol */    int length= strlen(in_string)+1;
         
     new_item->content.ptr= *hash(in_hash, in_string); /* The new reference  
                                                          shouldn't point at  
                                                          NULL */  
     new_item->type= ref;  
   }  
291    
292    push(stack_head, new_item);    new_value->content.ptr= malloc(length);
293    return 1;    env->gc_count += length;
294      strcpy(new_value->content.ptr, in_string);
295      new_value->type= string;
296    
297      push_val(env, new_value);
298  }  }
299    
300  void printerr(const char* in_string) {  /* Mangle a symbol name to a valid C identifier name */
301    fprintf(stderr, "Err: %s\n", in_string);  char *mangle_str(const char *old_string)
302    {
303      char validchars[]= "0123456789abcdef";
304      char *new_string, *current;
305    
306      new_string= malloc((strlen(old_string)*2)+4);
307      strcpy(new_string, "sx_");    /* Stack eXternal */
308      current= new_string+3;
309      while(old_string[0] != '\0'){
310        current[0]= validchars[(unsigned char)(old_string[0])/16];
311        current[1]= validchars[(unsigned char)(old_string[0])%16];
312        current+= 2;
313        old_string++;
314      }
315      current[0]= '\0';
316    
317      return new_string;            /* The caller must free() it */
318  }  }
319    
320  /* Discard the top element of the stack. */  extern void mangle(environment *env)
 extern void toss(stackitem** stack_head)  
321  {  {
322    stackitem* temp= *stack_head;    char *new_string;
323    
324    if((*stack_head)==NULL) {    if(env->head==NULL) {
325      printerr("Stack empty");      printerr("Too Few Arguments");
326        env->err= 1;
327      return;      return;
328    }    }
     
   if((*stack_head)->type==string)  
     free((*stack_head)->content.ptr);  
329    
330    *stack_head= (*stack_head)->next;    if(CAR(env->head)->type!=string) {
331    free(temp);      printerr("Bad Argument Type");
332        env->err= 2;
333        return;
334      }
335    
336      new_string=
337        mangle_str((const char *)(CAR(env->head)->content.ptr));
338    
339      toss(env);
340      if(env->err) return;
341    
342      push_cstring(env, new_string);
343    }
344    
345    /* Push a symbol onto the stack. */
346    void push_sym(environment *env, const char *in_string)
347    {
348      value *new_value;             /* A new symbol value */
349      /* ...which might point to... */
350      symbol **new_symbol;          /* (if needed) A new actual symbol */
351      /* ...which, if possible, will be bound to... */
352      value *new_fvalue;            /* (if needed) A new function value */
353      /* ...which will point to... */
354      void *funcptr;                /* A function pointer */
355    
356      static void *handle= NULL;    /* Dynamic linker handle */
357      const char *dlerr;            /* Dynamic linker error */
358      char *mangled;                /* Mangled function name */
359    
360      new_value= new_val(env);
361      protect(new_value);
362      new_fvalue= new_val(env);
363      protect(new_fvalue);
364    
365      /* The new value is a symbol */
366      new_value->type= symb;
367    
368      /* Look up the symbol name in the hash table */
369      new_symbol= hash(env->symbols, in_string);
370      new_value->content.ptr= *new_symbol;
371    
372      if(*new_symbol==NULL) { /* If symbol was undefined */
373    
374        /* Create a new symbol */
375        (*new_symbol)= malloc(sizeof(symbol));
376        (*new_symbol)->val= NULL;   /* undefined value */
377        (*new_symbol)->next= NULL;
378        (*new_symbol)->id= malloc(strlen(in_string)+1);
379        strcpy((*new_symbol)->id, in_string);
380    
381        /* Intern the new symbol in the hash table */
382        new_value->content.ptr= *new_symbol;
383    
384        /* Try to load the symbol name as an external function, to see if
385           we should bind the symbol to a new function pointer value */
386        if(handle==NULL)            /* If no handle */
387          handle= dlopen(NULL, RTLD_LAZY);
388    
389        mangled= mangle_str(in_string); /* mangle the name */
390        funcptr= dlsym(handle, mangled); /* and try to find it */
391    
392        dlerr= dlerror();
393        if(dlerr != NULL) {         /* If no function was found */
394          funcptr= dlsym(handle, in_string); /* Get function pointer */
395          dlerr= dlerror();
396        }
397    
398        if(dlerr==NULL) {           /* If a function was found */
399          new_fvalue->type= func;   /* The new value is a function pointer */
400          new_fvalue->content.ptr= funcptr; /* Store function pointer */
401          (*new_symbol)->val= new_fvalue; /* Bind the symbol to the new
402                                             function value */
403        }
404    
405        free(mangled);
406      }
407    
408      push_val(env, new_value);
409      unprotect(new_value); unprotect(new_fvalue);
410  }  }
411    
412  /* Print newline. */  /* Print newline. */
# Line 195  extern void nl() Line 415  extern void nl()
415    printf("\n");    printf("\n");
416  }  }
417    
418  /* Prints the top element of the stack. */  /* Gets the type of a value */
419  extern void print_(stackitem** stack_head)  extern void type(environment *env)
420  {  {
421    stackitem* temp= *stack_head;    int typenum;
422    
423    if(temp==NULL) {    if(env->head==NULL) {
424      printerr("Stack empty");      printerr("Too Few Arguments");
425        env->err= 1;
426      return;      return;
427    }    }
428    
429    while(temp->type==ref) {    typenum= CAR(env->head)->type;
430      temp= temp->content.ptr;    toss(env);
431      switch(typenum){
432      if(temp->type!=ref) {    case integer:
433        printf("ref-> %s", temp->id);      push_sym(env, "integer");
434        return;      break;
435      }    case tfloat:
436        push_sym(env, "float");
437        break;
438      case string:
439        push_sym(env, "string");
440        break;
441      case symb:
442        push_sym(env, "symbol");
443        break;
444      case func:
445        push_sym(env, "function");
446        break;
447      case tcons:
448        push_sym(env, "list");
449        break;
450    }    }
451    }    
452    
453    switch(temp->type) {  /* Prints the top element of the stack. */
454    case value:  void print_h(value *stack_head, int noquote)
455      printf("%d", temp->content.val);  {
456      switch(CAR(stack_head)->type) {
457      case integer:
458        printf("%d", CAR(stack_head)->content.i);
459        break;
460      case tfloat:
461        printf("%f", CAR(stack_head)->content.f);
462      break;      break;
463    case string:    case string:
464      printf("\"%s\"", (char*)temp->content.ptr);      if(noquote)
465          printf("%s", (char*)CAR(stack_head)->content.ptr);
466        else
467          printf("\"%s\"", (char*)CAR(stack_head)->content.ptr);
468        break;
469      case symb:
470        printf("%s", CAR(stack_head)->content.sym->id);
471      break;      break;
   case symbol:  
472    case func:    case func:
473      printf("%s", temp->id);      printf("#<function %p>", (funcp)(CAR(stack_head)->content.ptr));
474      break;      break;
475    default:    case tcons:
476      printf("%p", temp->content.ptr);      /* A list is just a stack, so make stack_head point to it */
477        stack_head= CAR(stack_head);
478        printf("[ ");
479        while(stack_head != NULL) {
480          print_h(stack_head, noquote);
481          printf(" ");
482          stack_head= CDR(stack_head);
483        }
484        printf("]");
485      break;      break;
486    }    }
487  }  }
488    
489    extern void print_(environment *env)
490    {
491      if(env->head==NULL) {
492        printerr("Too Few Arguments");
493        env->err= 1;
494        return;
495      }
496      print_h(env->head, 0);
497      nl();
498    }
499    
500    /* Prints the top element of the stack and then discards it. */
501    extern void print(environment *env)
502    {
503      print_(env);
504      if(env->err) return;
505      toss(env);
506    }
507    
508    extern void princ_(environment *env)
509    {
510      if(env->head==NULL) {
511        printerr("Too Few Arguments");
512        env->err= 1;
513        return;
514      }
515      print_h(env->head, 1);
516    }
517    
518  /* Prints the top element of the stack and then discards it. */  /* Prints the top element of the stack and then discards it. */
519  extern void print(stackitem** stack_head)  extern void princ(environment *env)
520  {  {
521    print_(stack_head);    princ_(env);
522    toss(stack_head);    if(env->err) return;
523      toss(env);
524  }  }
525    
526  /* Only to be called by function printstack. */  /* Only to be called by function printstack. */
527  void print_st(stackitem* stack_head, long counter)  void print_st(value *stack_head, long counter)
528  {  {
529    if(stack_head->next != NULL)    if(CDR(stack_head) != NULL)
530      print_st(stack_head->next, counter+1);      print_st(CDR(stack_head), counter+1);
   
531    printf("%ld: ", counter);    printf("%ld: ", counter);
532    print_(&stack_head);    print_h(stack_head, 0);
533    nl();    nl();
534  }  }
535    
536  /* Prints the stack. */  /* Prints the stack. */
537  extern void printstack(stackitem** stack_head)  extern void printstack(environment *env)
538  {  {
539    if(*stack_head != NULL) {    if(env->head == NULL) {
540      print_st(*stack_head, 1);      printf("Stack Empty\n");
541      nl();      return;
   } else {  
     printerr("Stack empty");  
542    }    }
543    
544      print_st(env->head, 1);
545  }  }
546    
547  /* Swap the two top elements on the stack. */  /* Swap the two top elements on the stack. */
548  extern void swap(stackitem** stack_head)  extern void swap(environment *env)
549  {  {
550    stackitem* temp= (*stack_head);    value *temp= env->head;
551        
552    if((*stack_head)==NULL) {    if(env->head==NULL || CDR(env->head)==NULL) {
553      printerr("Stack empty");      printerr("Too Few Arguments");
554        env->err=1;
555      return;      return;
556    }    }
557    
558    if((*stack_head)->next==NULL)    env->head= CDR(env->head);
559      return;    CDR(temp)= CDR(env->head);
560      CDR(env->head)= temp;
   *stack_head= (*stack_head)->next;  
   temp->next= (*stack_head)->next;  
   (*stack_head)->next= temp;  
561  }  }
562    
563  stackitem* copy(stackitem* in_item)  /* Rotate the first three elements on the stack. */
564    extern void rot(environment *env)
565  {  {
566    stackitem* out_item= malloc(sizeof(stackitem));    value *temp= env->head;
567      
568      if(env->head==NULL || CDR(env->head)==NULL
569         || CDR(CDR(env->head))==NULL) {
570        printerr("Too Few Arguments");
571        env->err= 1;
572        return;
573      }
574      
575      env->head= CDR(CDR(env->head));
576      CDR(CDR(temp))= CDR(env->head);
577      CDR(env->head)= temp;
578    }
579    
580    memcpy(out_item, in_item, sizeof(stackitem));  /* Recall a value from a symbol, if bound */
581    out_item->next= NULL;  extern void rcl(environment *env)
582    {
583      value *val;
584    
585    return out_item;    if(env->head==NULL) {
586  }      printerr("Too Few Arguments");
587        env->err= 1;
588        return;
589      }
590    
591      if(CAR(env->head)->type!=symb) {
592        printerr("Bad Argument Type");
593        env->err= 2;
594        return;
595      }
596    
597      val= CAR(env->head)->content.sym->val;
598      if(val == NULL){
599        printerr("Unbound Variable");
600        env->err= 3;
601        return;
602      }
603      protect(val);
604      toss(env);            /* toss the symbol */
605      if(env->err) return;
606      push_val(env, val); /* Return its bound value */
607      unprotect(val);
608    }
609    
610  /* If the top element is a reference, determine if it's a reference to a  /* If the top element is a symbol, determine if it's bound to a
611     function, and if it is, toss the reference and execute the function. */     function value, and if it is, toss the symbol and execute the
612  extern void eval(stackitem** stack_head)     function. */
613    extern void eval(environment *env)
614  {  {
615    funcp in_func;    funcp in_func;
616    stackitem* temp= *stack_head;    value* temp_val;
617      value* iterator;
618    
619     eval_start:
620    
621    if(temp==NULL) {    gc_maybe(env);
622      printerr("Stack empty");  
623      if(env->head==NULL) {
624        printerr("Too Few Arguments");
625        env->err= 1;
626      return;      return;
627    }    }
628    
629    while(temp->type==ref)    switch(CAR(env->head)->type) {
630      temp= temp->content.ptr;      /* if it's a symbol */
631      case symb:
632        rcl(env);                   /* get its contents */
633        if(env->err) return;
634        if(CAR(env->head)->type!=symb){ /* don't recurse symbols */
635          goto eval_start;
636        }
637        return;
638    
639        /* If it's a lone function value, run it */
640      case func:
641        in_func= (funcp)(CAR(env->head)->content.ptr);
642        toss(env);
643        if(env->err) return;
644        return in_func(env);
645    
646        /* If it's a list */
647      case tcons:
648        temp_val= CAR(env->head);
649        protect(temp_val);
650    
651        toss(env); if(env->err) return;
652        iterator= temp_val;
653        
654        while(iterator!=NULL) {
655          push_val(env, CAR(iterator));
656          
657          if(CAR(env->head)->type==symb
658             && CAR(env->head)->content.sym->id[0]==';') {
659            toss(env);
660            if(env->err) return;
661            
662            if(CDR(iterator)==NULL){
663              goto eval_start;
664            }
665            eval(env);
666            if(env->err) return;
667          }
668          if (CDR(iterator)->type == tcons)
669            iterator= CDR(iterator);
670          else {
671            printerr("Bad Argument Type"); /* Improper list */
672            env->err= 2;
673            return;
674          }
675        }
676        unprotect(temp_val);
677        return;
678    
679    if(temp->type==func) {    default:
     in_func= (funcp)(temp->content.ptr);  
     toss(stack_head);  
     (*in_func)(stack_head);  
680      return;      return;
681    }    }
   
   push(stack_head, copy(temp));  
   swap(stack_head);  
   toss(stack_head);  
682  }  }
683    
684  /* Make a list. */  /* Reverse (flip) a list */
685  extern void pack(stackitem** stack_head)  extern void rev(environment *env)
686  {  {
687    void* delimiter;    value *old_head, *new_head, *item;
688    stackitem *iterator, *temp, *pack;  
689      if(env->head==NULL) {
690        printerr("Too Few Arguments");
691        env->err= 1;
692        return;
693      }
694    
695    delimiter= (*stack_head)->content.ptr; /* Get delimiter */    if(CAR(env->head)->type!=tcons) {
696    toss(stack_head);      printerr("Bad Argument Type");
697        env->err= 2;
698        return;
699      }
700    
701      old_head= CAR(env->head);
702      new_head= NULL;
703      while(old_head!=NULL) {
704        item= old_head;
705        old_head= CDR(old_head);
706        CDR(item)= new_head;
707        new_head= item;
708      }
709      CAR(env->head)= new_head;
710    }
711    
712    iterator= *stack_head;  /* Make a list. */
713    extern void pack(environment *env)
714    {
715      value *iterator, *temp;
716    
717    if(iterator==NULL || iterator->content.ptr==delimiter) {    iterator= env->head;
718      if(iterator==NULL
719         || (CAR(iterator)->type==symb
720         && CAR(iterator)->content.sym->id[0]=='[')) {
721      temp= NULL;      temp= NULL;
722      toss(stack_head);      toss(env);
723    } else {    } else {
724      /* Search for first delimiter */      /* Search for first delimiter */
725      while(iterator->next!=NULL && iterator->next->content.ptr!=delimiter)      while(CDR(iterator)!=NULL
726        iterator= iterator->next;            && (CAR(CDR(iterator))->type!=symb
727               || CAR(CDR(iterator))->content.sym->id[0]!='['))
728          iterator= CDR(iterator);
729            
730      /* Extract list */      /* Extract list */
731      temp= *stack_head;      temp= env->head;
732      *stack_head= iterator->next;      env->head= CDR(iterator);
733      iterator->next= NULL;      CDR(iterator)= NULL;
734        
735      if(*stack_head!=NULL && (*stack_head)->content.ptr==delimiter)      if(env->head!=NULL)
736        toss(stack_head);        toss(env);
737    }    }
738    
739    /* Push list */    /* Push list */
   pack= malloc(sizeof(stackitem));  
   pack->type= list;  
   pack->content.ptr= temp;  
740    
741    push(stack_head, pack);    push_val(env, temp);
742      rev(env);
743  }  }
744    
745  /* Parse input. */  /* Relocate elements of the list on the stack. */
746  int stack_read(stackitem** stack_head, hashtbl in_hash, char* in_line)  extern void expand(environment *env)
747  {  {
748    char *temp, *rest;    value *temp, *new_head;
749    int itemp;  
750    size_t inlength= strlen(in_line)+1;    /* Is top element a list? */
751    int convert= 0;    if(env->head==NULL) {
752    static int non_eval_flag= 0;      printerr("Too Few Arguments");
753        env->err= 1;
754        return;
755      }
756    
757    temp= malloc(inlength);    if(CAR(env->head)->type!=tcons) {
758    rest= malloc(inlength);      printerr("Bad Argument Type");
759        env->err= 2;
760        return;
761      }
762    
763    do {    rev(env);
764      /* If string */  
765      if((convert= sscanf(in_line, "\"%[^\"\n\r]\" %[^\n\r]", temp, rest))) {    if(env->err)
766        push_cstring(stack_head, temp);      return;
767        break;  
768      /* The first list element is the new stack head */
769      new_head= temp= CAR(env->head);
770    
771      toss(env);
772    
773      /* Find the end of the list */
774      while(CDR(temp)->content.ptr != NULL) {
775        if (CDR(temp)->type == tcons)
776          temp= CDR(temp);
777        else {
778          printerr("Bad Argument Type"); /* Improper list */
779          env->err= 2;
780          return;
781      }      }
782      /* If value */    }
783      if((convert= sscanf(in_line, "%d %[^\n\r]", &itemp, rest))) {  
784        push_val(stack_head, itemp);    /* Connect the tail of the list with the old stack head */
785        break;    CDR(temp)= env->head;
786      env->head= new_head;          /* ...and voila! */
787    
788    }
789    
790    /* Compares two elements by reference. */
791    extern void eq(environment *env)
792    {
793      void *left, *right;
794    
795      if(env->head==NULL || CDR(env->head)==NULL) {
796        printerr("Too Few Arguments");
797        env->err= 1;
798        return;
799      }
800    
801      left= CAR(env->head)->content.ptr;
802      right= CAR(CDR(env->head))->content.ptr;
803      toss(env); toss(env);
804    
805      push_int(env, left==right);
806    }
807    
808    /* Negates the top element on the stack. */
809    extern void not(environment *env)
810    {
811      int val;
812    
813      if(env->head==NULL) {
814        printerr("Too Few Arguments");
815        env->err= 1;
816        return;
817      }
818    
819      if(CAR(env->head)->type!=integer) {
820        printerr("Bad Argument Type");
821        env->err= 2;
822        return;
823      }
824    
825      val= CAR(env->head)->content.i;
826      toss(env);
827      push_int(env, !val);
828    }
829    
830    /* Compares the two top elements on the stack and return 0 if they're the
831       same. */
832    extern void neq(environment *env)
833    {
834      eq(env);
835      not(env);
836    }
837    
838    /* Give a symbol some content. */
839    extern void def(environment *env)
840    {
841      symbol *sym;
842    
843      /* Needs two values on the stack, the top one must be a symbol */
844      if(env->head==NULL || CDR(env->head)==NULL) {
845        printerr("Too Few Arguments");
846        env->err= 1;
847        return;
848      }
849    
850      if(CAR(env->head)->type!=symb) {
851        printerr("Bad Argument Type");
852        env->err= 2;
853        return;
854      }
855    
856      /* long names are a pain */
857      sym= CAR(env->head)->content.ptr;
858    
859      /* Bind the symbol to the value */
860      sym->val= CAR(CDR(env->head));
861    
862      toss(env); toss(env);
863    }
864    
865    /* Quit stack. */
866    extern void quit(environment *env)
867    {
868      int i;
869    
870      clear(env);
871    
872      if (env->err) return;
873      for(i= 0; i<HASHTBLSIZE; i++) {
874        while(env->symbols[i]!= NULL) {
875          forget_sym(&(env->symbols[i]));
876      }      }
877      /* Escape ';' with '\' */      env->symbols[i]= NULL;
878      if((convert= sscanf(in_line, "\\%c%[^\n\r]", temp, rest))) {    }
879        temp[1]= '\0';  
880        push_ref(stack_head, in_hash, temp);    env->gc_limit= 0;
881        break;    gc_maybe(env);
882      }  
883      /* If symbol */    if(env->free_string!=NULL)
884      if((convert= sscanf(in_line, "%[^][ ;\n\r]%[^\n\r]", temp, rest))) {      free(env->free_string);
885          push_ref(stack_head, in_hash, temp);    
886          break;    muntrace();
887    
888      exit(EXIT_SUCCESS);
889    }
890    
891    /* Clear stack */
892    extern void clear(environment *env)
893    {
894      while(env->head!=NULL)
895        toss(env);
896    }
897    
898    /* List all defined words */
899    extern void words(environment *env)
900    {
901      symbol *temp;
902      int i;
903      
904      for(i= 0; i<HASHTBLSIZE; i++) {
905        temp= env->symbols[i];
906        while(temp!=NULL) {
907          printf("%s\n", temp->id);
908          temp= temp->next;
909      }      }
910      /* If single char */    }
911      if((convert= sscanf(in_line, "%c%[^\n\r]", temp, rest))) {  }
912        if(*temp==';') {  
913          if(!non_eval_flag) {  /* Internal forget function */
914            eval(stack_head);             /* Evaluate top element */  void forget_sym(symbol **hash_entry)
915            break;  {
916          }    symbol *temp;
917            
918          push_ref(stack_head, in_hash, ";");    temp= *hash_entry;
919          break;    *hash_entry= (*hash_entry)->next;
920        }    
921      free(temp->id);
922      free(temp);
923    }
924    
925    /* Forgets a symbol (remove it from the hash table) */
926    extern void forget(environment *env)
927    {
928      char* sym_id;
929      value *stack_head= env->head;
930    
931      if(stack_head==NULL) {
932        printerr("Too Few Arguments");
933        env->err= 1;
934        return;
935      }
936      
937      if(CAR(stack_head)->type!=symb) {
938        printerr("Bad Argument Type");
939        env->err= 2;
940        return;
941      }
942    
943        if(*temp==']') {    sym_id= CAR(stack_head)->content.sym->id;
944          push_ref(stack_head, in_hash, "[");    toss(env);
945          pack(stack_head);  
946          if(non_eval_flag!=0)    return forget_sym(hash(env->symbols, sym_id));
947            non_eval_flag--;  }
948    
949    /* Returns the current error number to the stack */
950    extern void errn(environment *env)
951    {
952      push_int(env, env->err);
953    }
954    
955    int main(int argc, char **argv)
956    {
957      environment myenv;
958    
959      int c;                        /* getopt option character */
960    
961      mtrace();
962    
963      init_env(&myenv);
964    
965      myenv.interactive = isatty(STDIN_FILENO) && isatty(STDOUT_FILENO);
966    
967      while ((c = getopt (argc, argv, "i")) != -1)
968        switch (c)
969          {
970          case 'i':
971            myenv.interactive = 1;
972          break;          break;
973          case '?':
974            fprintf (stderr,
975                     "Unknown option character `\\x%x'.\n",
976                     optopt);
977            return EX_USAGE;
978          default:
979            abort ();
980        }        }
981      
982      if (optind < argc) {
983        myenv.interactive = 0;
984        myenv.inputstream= fopen(argv[optind], "r");
985        if(myenv.inputstream== NULL) {
986          perror(argv[0]);
987          exit (EX_NOINPUT);
988        }
989      }
990    
991        if(*temp=='[') {    if(myenv.interactive) {
992          push_ref(stack_head, in_hash, "[");      printf("Stack version $Revision$\n\
993          non_eval_flag++;  Copyright (C) 2002  Mats Alritzson and Teddy Hogeborn\n\
994          break;  Stack comes with ABSOLUTELY NO WARRANTY; for details type `warranty;'.\n\
995    This is free software, and you are welcome to redistribute it\n\
996    under certain conditions; type `copying;' for details.\n");
997      }
998    
999      while(1) {
1000        if(myenv.in_string==NULL) {
1001          if (myenv.interactive) {
1002            if(myenv.err) {
1003              printf("(error %d)\n", myenv.err);
1004            }
1005            nl();
1006            printstack(&myenv);
1007            printf("> ");
1008        }        }
1009          myenv.err=0;
1010        }
1011        sx_72656164(&myenv);
1012        if (myenv.err==4) {
1013          return EXIT_SUCCESS;      /* EOF */
1014        } else if(myenv.head!=NULL
1015                  && CAR(myenv.head)->type==symb
1016                  && CAR(myenv.head)->content.sym->id[0]
1017                  ==';') {
1018          toss(&myenv);             /* No error check in main */
1019          eval(&myenv);
1020      }      }
1021    } while(0);      gc_maybe(&myenv);
1022      }
1023      quit(&myenv);
1024      return EXIT_FAILURE;
1025    }
1026    
1027    /* "+" */
1028    extern void sx_2b(environment *env)
1029    {
1030      int a, b;
1031      float fa, fb;
1032      size_t len;
1033      char* new_string;
1034      value *a_val, *b_val;
1035    
1036      if(env->head==NULL || CDR(env->head)==NULL) {
1037        printerr("Too Few Arguments");
1038        env->err= 1;
1039        return;
1040      }
1041    
1042    free(temp);    if(CAR(env->head)->type==string
1043         && CAR(CDR(env->head))->type==string) {
1044        a_val= CAR(env->head);
1045        b_val= CAR(CDR(env->head));
1046        protect(a_val); protect(b_val);
1047        toss(env); if(env->err) return;
1048        toss(env); if(env->err) return;
1049        len= strlen(a_val->content.ptr)+strlen(b_val->content.ptr)+1;
1050        new_string= malloc(len);
1051        strcpy(new_string, b_val->content.ptr);
1052        strcat(new_string, a_val->content.ptr);
1053        push_cstring(env, new_string);
1054        unprotect(a_val); unprotect(b_val);
1055        free(new_string);
1056        
1057        return;
1058      }
1059      
1060      if(CAR(env->head)->type==integer
1061         && CAR(CDR(env->head))->type==integer) {
1062        a= CAR(env->head)->content.i;
1063        toss(env); if(env->err) return;
1064        b= CAR(env->head)->content.i;
1065        toss(env); if(env->err) return;
1066        push_int(env, b+a);
1067    
1068        return;
1069      }
1070    
1071      if(CAR(env->head)->type==tfloat
1072         && CAR(CDR(env->head))->type==tfloat) {
1073        fa= CAR(env->head)->content.f;
1074        toss(env); if(env->err) return;
1075        fb= CAR(env->head)->content.f;
1076        toss(env); if(env->err) return;
1077        push_float(env, fb+fa);
1078        
1079        return;
1080      }
1081    
1082      if(CAR(env->head)->type==tfloat
1083         && CAR(CDR(env->head))->type==integer) {
1084        fa= CAR(env->head)->content.f;
1085        toss(env); if(env->err) return;
1086        b= CAR(env->head)->content.i;
1087        toss(env); if(env->err) return;
1088        push_float(env, b+fa);
1089        
1090        return;
1091      }
1092    
1093      if(CAR(env->head)->type==integer
1094         && CAR(CDR(env->head))->type==tfloat) {
1095        a= CAR(env->head)->content.i;
1096        toss(env); if(env->err) return;
1097        fb= CAR(env->head)->content.f;
1098        toss(env); if(env->err) return;
1099        push_float(env, fb+a);
1100    
1101        return;
1102      }
1103    
1104    if(convert<2) {    printerr("Bad Argument Type");
1105      free(rest);    env->err=2;
1106      return 0;  }
1107    
1108    /* "-" */
1109    extern void sx_2d(environment *env)
1110    {
1111      int a, b;
1112      float fa, fb;
1113    
1114      if(env->head==NULL || CDR(env->head)==NULL) {
1115        printerr("Too Few Arguments");
1116        env->err=1;
1117        return;
1118    }    }
     
   stack_read(stack_head, in_hash, rest);  
1119        
1120    free(rest);    if(CAR(env->head)->type==integer
1121    return 1;       && CAR(CDR(env->head))->type==integer) {
1122        a= CAR(env->head)->content.i;
1123        toss(env); if(env->err) return;
1124        b= CAR(env->head)->content.i;
1125        toss(env); if(env->err) return;
1126        push_int(env, b-a);
1127    
1128        return;
1129      }
1130    
1131      if(CAR(env->head)->type==tfloat
1132         && CAR(CDR(env->head))->type==tfloat) {
1133        fa= CAR(env->head)->content.f;
1134        toss(env); if(env->err) return;
1135        fb= CAR(env->head)->content.f;
1136        toss(env); if(env->err) return;
1137        push_float(env, fb-fa);
1138        
1139        return;
1140      }
1141    
1142      if(CAR(env->head)->type==tfloat
1143         && CAR(CDR(env->head))->type==integer) {
1144        fa= CAR(env->head)->content.f;
1145        toss(env); if(env->err) return;
1146        b= CAR(env->head)->content.i;
1147        toss(env); if(env->err) return;
1148        push_float(env, b-fa);
1149        
1150        return;
1151      }
1152    
1153      if(CAR(env->head)->type==integer
1154         && CAR(CDR(env->head))->type==tfloat) {
1155        a= CAR(env->head)->content.i;
1156        toss(env); if(env->err) return;
1157        fb= CAR(env->head)->content.f;
1158        toss(env); if(env->err) return;
1159        push_float(env, fb-a);
1160    
1161        return;
1162      }
1163    
1164      printerr("Bad Argument Type");
1165      env->err=2;
1166  }  }
1167    
1168  /* Relocate elements of the list on the stack. */  /* ">" */
1169  extern void expand(stackitem** stack_head)  extern void sx_3e(environment *env)
1170  {  {
1171    stackitem *temp, *new_head;    int a, b;
1172      float fa, fb;
1173    
1174    /* Is top element a list? */    if(env->head==NULL || CDR(env->head)==NULL) {
1175    if((*stack_head)==NULL || (*stack_head)->type!=list) {      printerr("Too Few Arguments");
1176      printerr("Stack empty or not a list");      env->err= 1;
1177      return;      return;
1178    }    }
1179      
1180      if(CAR(env->head)->type==integer
1181         && CAR(CDR(env->head))->type==integer) {
1182        a= CAR(env->head)->content.i;
1183        toss(env); if(env->err) return;
1184        b= CAR(env->head)->content.i;
1185        toss(env); if(env->err) return;
1186        push_int(env, b>a);
1187    
1188    /* The first list element is the new stack head */      return;
1189    new_head= temp= (*stack_head)->content.ptr;    }
1190    toss(stack_head);  
1191      if(CAR(env->head)->type==tfloat
1192         && CAR(CDR(env->head))->type==tfloat) {
1193        fa= CAR(env->head)->content.f;
1194        toss(env); if(env->err) return;
1195        fb= CAR(env->head)->content.f;
1196        toss(env); if(env->err) return;
1197        push_int(env, fb>fa);
1198        
1199        return;
1200      }
1201    
1202      if(CAR(env->head)->type==tfloat
1203         && CAR(CDR(env->head))->type==integer) {
1204        fa= CAR(env->head)->content.f;
1205        toss(env); if(env->err) return;
1206        b= CAR(env->head)->content.i;
1207        toss(env); if(env->err) return;
1208        push_int(env, b>fa);
1209        
1210        return;
1211      }
1212    
1213      if(CAR(env->head)->type==integer
1214         && CAR(CDR(env->head))->type==tfloat) {
1215        a= CAR(env->head)->content.i;
1216        toss(env); if(env->err) return;
1217        fb= CAR(env->head)->content.f;
1218        toss(env); if(env->err) return;
1219        push_int(env, fb>a);
1220    
   if(temp==NULL)  
1221      return;      return;
1222      }
1223    
1224    /* Search the end of the list */    printerr("Bad Argument Type");
1225    while(temp->next!=NULL)    env->err= 2;
1226      temp= temp->next;  }
1227    
1228    /* Connect the the tail of the list with the old stack head */  /* "<" */
1229    temp->next= *stack_head;  extern void sx_3c(environment *env)
1230    *stack_head= new_head;        /* ...and voila! */  {
1231      swap(env); if(env->err) return;
1232      sx_3e(env);
1233  }  }
1234    
1235  /* Compares two elements by reference. */  /* "<=" */
1236  extern void eq(stackitem** stack_head)  extern void sx_3c3d(environment *env)
1237  {  {
1238    void *left, *right;    sx_3e(env); if(env->err) return;
1239    int result;    not(env);
1240    }
1241    
1242    /* ">=" */
1243    extern void sx_3e3d(environment *env)
1244    {
1245      sx_3c(env); if(env->err) return;
1246      not(env);
1247    }
1248    
1249    /* Return copy of a value */
1250    value *copy_val(environment *env, value *old_value)
1251    {
1252      value *new_value;
1253    
1254      if(old_value==NULL)
1255        return NULL;
1256    
1257      protect(old_value);
1258      new_value= new_val(env);
1259      protect(new_value);
1260      new_value->type= old_value->type;
1261    
1262      switch(old_value->type){
1263      case tfloat:
1264      case integer:
1265      case func:
1266      case symb:
1267        new_value->content= old_value->content;
1268        break;
1269      case string:
1270        (char *)(new_value->content.ptr)=
1271          strdup((char *)(old_value->content.ptr));
1272        break;
1273      case tcons:
1274        new_value= NULL;
1275    
1276        new_value->content.c= malloc(sizeof(cons));
1277        CAR(new_value)= copy_val(env, CAR(old_value)); /* recurse */
1278        CDR(new_value)= copy_val(env, CDR(old_value)); /* recurse */
1279        break;
1280      }
1281    
1282      unprotect(old_value); unprotect(new_value);
1283    
1284      return new_value;
1285    }
1286    
1287    /* "dup"; duplicates an item on the stack */
1288    extern void sx_647570(environment *env)
1289    {
1290      if(env->head==NULL) {
1291        printerr("Too Few Arguments");
1292        env->err= 1;
1293        return;
1294      }
1295      push_val(env, copy_val(env, CAR(env->head)));
1296    }
1297    
1298    if((*stack_head)==NULL || (*stack_head)->next==NULL) {  /* "if", If-Then */
1299      printerr("Not enough elements to compare");  extern void sx_6966(environment *env)
1300    {
1301      int truth;
1302    
1303      if(env->head==NULL || CDR(env->head)==NULL) {
1304        printerr("Too Few Arguments");
1305        env->err= 1;
1306      return;      return;
1307    }    }
1308    
1309    left= (*stack_head)->content.ptr;    if(CAR(CDR(env->head))->type != integer) {
1310    swap(stack_head);      printerr("Bad Argument Type");
1311    right= (*stack_head)->content.ptr;      env->err= 2;
1312    result= (left==right);      return;
1313      }
1314      
1315      swap(env);
1316      if(env->err) return;
1317        
1318    toss(stack_head); toss(stack_head);    truth= CAR(env->head)->content.i;
1319    push_val(stack_head, (left==right));  
1320      toss(env);
1321      if(env->err) return;
1322    
1323      if(truth)
1324        eval(env);
1325      else
1326        toss(env);
1327  }  }
1328    
1329  /* Negates the top element on the stack. */  /* If-Then-Else */
1330  extern void not(stackitem** stack_head)  extern void ifelse(environment *env)
1331  {  {
1332    int value;    int truth;
1333    
1334    if((*stack_head)==NULL || (*stack_head)->type!=value) {    if(env->head==NULL || CDR(env->head)==NULL
1335      printerr("Stack empty or element is not a value");       || CDR(CDR(env->head))==NULL) {
1336        printerr("Too Few Arguments");
1337        env->err= 1;
1338      return;      return;
1339    }    }
1340    
1341    value= (*stack_head)->content.val;    if(CAR(CDR(CDR(env->head)))->type!=integer) {
1342    toss(stack_head);      printerr("Bad Argument Type");
1343    push_val(stack_head, !value);      env->err= 2;
1344        return;
1345      }
1346      
1347      rot(env);
1348      if(env->err) return;
1349      
1350      truth= CAR(env->head)->content.i;
1351    
1352      toss(env);
1353      if(env->err) return;
1354    
1355      if(!truth)
1356        swap(env);
1357      if(env->err) return;
1358    
1359      toss(env);
1360      if(env->err) return;
1361    
1362      eval(env);
1363  }  }
1364    
1365  /* Compares the two top elements on the stack and return 0 if they're the  /* "while" */
1366     same. */  extern void sx_7768696c65(environment *env)
 extern void neq(stackitem** stack_head)  
1367  {  {
1368    eq(stack_head);    int truth;
1369    not(stack_head);    value *loop, *test;
1370    
1371      if(env->head==NULL || CDR(env->head)==NULL) {
1372        printerr("Too Few Arguments");
1373        env->err= 1;
1374        return;
1375      }
1376    
1377      loop= CAR(env->head);
1378      protect(loop);
1379      toss(env); if(env->err) return;
1380    
1381      test= CAR(env->head);
1382      protect(test);
1383      toss(env); if(env->err) return;
1384    
1385      do {
1386        push_val(env, test);
1387        eval(env);
1388        
1389        if(CAR(env->head)->type != integer) {
1390          printerr("Bad Argument Type");
1391          env->err= 2;
1392          return;
1393        }
1394        
1395        truth= CAR(env->head)->content.i;
1396        toss(env); if(env->err) return;
1397        
1398        if(truth) {
1399          push_val(env, loop);
1400          eval(env);
1401        } else {
1402          toss(env);
1403        }
1404      
1405      } while(truth);
1406    
1407      unprotect(loop); unprotect(test);
1408  }  }
1409    
1410  /* Give a symbol some content. */  
1411  extern void def(stackitem** stack_head)  /* "for"; for-loop */
1412    extern void sx_666f72(environment *env)
1413  {  {
1414    stackitem *temp, *value;    value *loop;
1415      int foo1, foo2;
1416    
1417    if(*stack_head==NULL || (*stack_head)->next==NULL    if(env->head==NULL || CDR(env->head)==NULL
1418       || (*stack_head)->type!=ref) {       || CDR(CDR(env->head))==NULL) {
1419      printerr("Define what?");      printerr("Too Few Arguments");
1420        env->err= 1;
1421      return;      return;
1422    }    }
1423    
1424    temp= (*stack_head)->content.ptr;    if(CAR(CDR(env->head))->type!=integer
1425    value= (*stack_head)->next;       || CAR(CDR(CDR(env->head)))->type!=integer) {
1426    temp->content= value->content;      printerr("Bad Argument Type");
1427    value->content.ptr=NULL;      env->err= 2;
1428    temp->type= value->type;      return;
1429      }
1430    
1431    toss(stack_head); toss(stack_head);    loop= CAR(env->head);
1432  }    protect(loop);
1433      toss(env); if(env->err) return;
1434    
1435      foo2= CAR(env->head)->content.i;
1436      toss(env); if(env->err) return;
1437    
1438      foo1= CAR(env->head)->content.i;
1439      toss(env); if(env->err) return;
1440    
1441      if(foo1<=foo2) {
1442        while(foo1<=foo2) {
1443          push_int(env, foo1);
1444          push_val(env, loop);
1445          eval(env); if(env->err) return;
1446          foo1++;
1447        }
1448      } else {
1449        while(foo1>=foo2) {
1450          push_int(env, foo1);
1451          push_val(env, loop);
1452          eval(env); if(env->err) return;
1453          foo1--;
1454        }
1455      }
1456      unprotect(loop);
1457    }
1458    
1459  /* Quit stack. */  /* Variant of for-loop */
1460  extern void quit()  extern void foreach(environment *env)
1461    {  
1462      value *loop, *foo;
1463      value *iterator;
1464      
1465      if(env->head==NULL || CDR(env->head)==NULL) {
1466        printerr("Too Few Arguments");
1467        env->err= 1;
1468        return;
1469      }
1470    
1471      if(CAR(CDR(env->head))->type!=tcons) {
1472        printerr("Bad Argument Type");
1473        env->err= 2;
1474        return;
1475      }
1476    
1477      loop= CAR(env->head);
1478      protect(loop);
1479      toss(env); if(env->err) return;
1480    
1481      foo= CAR(env->head);
1482      protect(foo);
1483      toss(env); if(env->err) return;
1484    
1485      iterator= foo;
1486    
1487      while(iterator!=NULL) {
1488        push_val(env, CAR(iterator));
1489        push_val(env, loop);
1490        eval(env); if(env->err) return;
1491        if (iterator->type == tcons){
1492          iterator= CDR(iterator);
1493        } else {
1494          printerr("Bad Argument Type"); /* Improper list */
1495          env->err= 2;
1496          break;
1497        }
1498      }
1499      unprotect(loop); unprotect(foo);
1500    }
1501    
1502    /* "to" */
1503    extern void to(environment *env)
1504  {  {
1505    exit(EXIT_SUCCESS);    int ending, start, i;
1506      value *iterator, *temp;
1507    
1508      if(env->head==NULL || CDR(env->head)==NULL) {
1509        printerr("Too Few Arguments");
1510        env->err= 1;
1511        return;
1512      }
1513    
1514      if(CAR(env->head)->type!=integer
1515         || CAR(CDR(env->head))->type!=integer) {
1516        printerr("Bad Argument Type");
1517        env->err= 2;
1518        return;
1519      }
1520    
1521      ending= CAR(env->head)->content.i;
1522      toss(env); if(env->err) return;
1523      start= CAR(env->head)->content.i;
1524      toss(env); if(env->err) return;
1525    
1526      push_sym(env, "[");
1527    
1528      if(ending>=start) {
1529        for(i= ending; i>=start; i--)
1530          push_int(env, i);
1531      } else {
1532        for(i= ending; i<=start; i++)
1533          push_int(env, i);
1534      }
1535    
1536      iterator= env->head;
1537    
1538      if(iterator==NULL
1539         || (CAR(iterator)->type==symb
1540             && CAR(iterator)->content.sym->id[0]=='[')) {
1541        temp= NULL;
1542        toss(env);
1543      } else {
1544        /* Search for first delimiter */
1545        while(CDR(iterator)!=NULL
1546              && (CAR(CDR(iterator))->type!=symb
1547                  || CAR(CDR(iterator))->content.sym->id[0]!='['))
1548          iterator= CDR(iterator);
1549        
1550        /* Extract list */
1551        temp= env->head;
1552        env->head= CDR(iterator);
1553        CDR(iterator)= NULL;
1554    
1555        if(env->head!=NULL)
1556          toss(env);
1557      }
1558    
1559      /* Push list */
1560      push_val(env, temp);
1561  }  }
1562    
1563  /* Clear stack */  /* Read a string */
1564  extern void clear(stackitem** stack_head)  extern void readline(environment *env)
1565  {  {
1566    while(*stack_head!=NULL)    char in_string[101];
1567      toss(stack_head);  
1568      if(fgets(in_string, 100, env->inputstream)==NULL)
1569        push_cstring(env, "");
1570      else
1571        push_cstring(env, in_string);
1572    }
1573    
1574    /* "read"; Read a value and place on stack */
1575    extern void sx_72656164(environment *env)
1576    {
1577      const char symbform[]= "%[a-zA-Z0-9!$%*+./:<=>?@^_~-]%n";
1578      const char strform[]= "\"%[^\"]\"%n";
1579      const char intform[]= "%i%n";
1580      const char fltform[]= "%f%n";
1581      const char blankform[]= "%*[ \t]%n";
1582      const char ebrackform[]= "]%n";
1583      const char semicform[]= ";%n";
1584      const char bbrackform[]= "[%n";
1585    
1586      int itemp, readlength= -1;
1587      int count= -1;
1588      float ftemp;
1589      static int depth= 0;
1590      char *match, *ctemp;
1591      size_t inlength;
1592    
1593      if(env->in_string==NULL) {
1594        if(depth > 0 && env->interactive) {
1595          printf("]> ");
1596        }
1597        readline(env); if(env->err) return;
1598    
1599        if(((char *)(CAR(env->head)->content.ptr))[0]=='\0'){
1600          env->err= 4;              /* "" means EOF */
1601          return;
1602        }
1603        
1604        env->in_string= malloc(strlen(CAR(env->head)->content.ptr)+1);
1605        env->free_string= env->in_string; /* Save the original pointer */
1606        strcpy(env->in_string, CAR(env->head)->content.ptr);
1607        toss(env); if(env->err) return;
1608      }
1609      
1610      inlength= strlen(env->in_string)+1;
1611      match= malloc(inlength);
1612    
1613      if(sscanf(env->in_string, blankform, &readlength) != EOF
1614         && readlength != -1) {
1615        ;
1616      } else if(sscanf(env->in_string, fltform, &ftemp, &readlength) != EOF
1617                && readlength != -1) {
1618        if(sscanf(env->in_string, intform, &itemp, &count) != EOF
1619           && count==readlength) {
1620          push_int(env, itemp);
1621        } else {
1622          push_float(env, ftemp);
1623        }
1624      } else if(sscanf(env->in_string, strform, match, &readlength) != EOF
1625                && readlength != -1) {
1626        push_cstring(env, match);
1627      } else if(sscanf(env->in_string, symbform, match, &readlength) != EOF
1628                && readlength != -1) {
1629        push_sym(env, match);
1630      } else if(sscanf(env->in_string, ebrackform, &readlength) != EOF
1631                && readlength != -1) {
1632        pack(env); if(env->err) return;
1633        if(depth != 0) depth--;
1634      } else if(sscanf(env->in_string, semicform, &readlength) != EOF
1635                && readlength != -1) {
1636        push_sym(env, ";");
1637      } else if(sscanf(env->in_string, bbrackform, &readlength) != EOF
1638                && readlength != -1) {
1639        push_sym(env, "[");
1640        depth++;
1641      } else {
1642        free(env->free_string);
1643        env->in_string = env->free_string = NULL;
1644      }
1645      if (env->in_string != NULL) {
1646        env->in_string += readlength;
1647      }
1648    
1649      free(match);
1650    
1651      if(depth)
1652        return sx_72656164(env);
1653  }  }
1654    
1655  int main()  extern void beep(environment *env)
1656  {  {
1657    stackitem* s= NULL;    int freq, dur, period, ticks;
1658    hashtbl myhash;  
1659    char in_string[100];    if(env->head==NULL || CDR(env->head)==NULL) {
1660        printerr("Too Few Arguments");
1661        env->err= 1;
1662        return;
1663      }
1664    
1665      if(CAR(env->head)->type!=integer
1666         || CAR(CDR(env->head))->type!=integer) {
1667        printerr("Bad Argument Type");
1668        env->err= 2;
1669        return;
1670      }
1671    
1672    init_hashtbl(myhash);    dur= CAR(env->head)->content.i;
1673      toss(env);
1674      freq= CAR(env->head)->content.i;
1675      toss(env);
1676    
1677      period= 1193180/freq;         /* convert freq from Hz to period
1678                                       length */
1679      ticks= dur*.001193180;        /* convert duration from µseconds to
1680                                       timer ticks */
1681    
1682    /*    ticks=dur/1000; */
1683    
1684          /*  if (ioctl(STDOUT_FILENO, KDMKTONE, (125<<16) + 0x637)==0) */
1685      switch (ioctl(STDOUT_FILENO, KDMKTONE, (ticks<<16) | period)){
1686      case 0:
1687        usleep(dur);
1688        return;
1689      case -1:
1690        perror("beep");
1691        env->err= 5;
1692        return;
1693      default:
1694        abort();
1695      }
1696    }
1697    
1698    printf("okidok\n ");  /* "wait" */
1699    extern void sx_77616974(environment *env)
1700    {
1701      int dur;
1702    
1703    while(fgets(in_string, 100, stdin) != NULL) {    if(env->head==NULL) {
1704      stack_read(&s, myhash, in_string);      printerr("Too Few Arguments");
1705      printf("okidok\n ");      env->err= 1;
1706        return;
1707    }    }
1708    
1709    exit(EXIT_SUCCESS);    if(CAR(env->head)->type!=integer) {
1710        printerr("Bad Argument Type");
1711        env->err= 2;
1712        return;
1713      }
1714    
1715      dur= CAR(env->head)->content.i;
1716      toss(env);
1717    
1718      usleep(dur);
1719    }
1720    
1721    extern void copying(environment *env)
1722    {
1723      printf("GNU GENERAL PUBLIC LICENSE\n\
1724                           Version 2, June 1991\n\
1725    \n\
1726     Copyright (C) 1989, 1991 Free Software Foundation, Inc.\n\
1727         59 Temple Place, Suite 330, Boston, MA  02111-1307  USA\n\
1728     Everyone is permitted to copy and distribute verbatim copies\n\
1729     of this license document, but changing it is not allowed.\n\
1730    \n\
1731                                Preamble\n\
1732    \n\
1733      The licenses for most software are designed to take away your\n\
1734    freedom to share and change it.  By contrast, the GNU General Public\n\
1735    License is intended to guarantee your freedom to share and change free\n\
1736    software--to make sure the software is free for all its users.  This\n\
1737    General Public License applies to most of the Free Software\n\
1738    Foundation's software and to any other program whose authors commit to\n\
1739    using it.  (Some other Free Software Foundation software is covered by\n\
1740    the GNU Library General Public License instead.)  You can apply it to\n\
1741    your programs, too.\n\
1742    \n\
1743      When we speak of free software, we are referring to freedom, not\n\
1744    price.  Our General Public Licenses are designed to make sure that you\n\
1745    have the freedom to distribute copies of free software (and charge for\n\
1746    this service if you wish), that you receive source code or can get it\n\
1747    if you want it, that you can change the software or use pieces of it\n\
1748    in new free programs; and that you know you can do these things.\n\
1749    \n\
1750      To protect your rights, we need to make restrictions that forbid\n\
1751    anyone to deny you these rights or to ask you to surrender the rights.\n\
1752    These restrictions translate to certain responsibilities for you if you\n\
1753    distribute copies of the software, or if you modify it.\n\
1754    \n\
1755      For example, if you distribute copies of such a program, whether\n\
1756    gratis or for a fee, you must give the recipients all the rights that\n\
1757    you have.  You must make sure that they, too, receive or can get the\n\
1758    source code.  And you must show them these terms so they know their\n\
1759    rights.\n\
1760    \n\
1761      We protect your rights with two steps: (1) copyright the software, and\n\
1762    (2) offer you this license which gives you legal permission to copy,\n\
1763    distribute and/or modify the software.\n\
1764    \n\
1765      Also, for each author's protection and ours, we want to make certain\n\
1766    that everyone understands that there is no warranty for this free\n\
1767    software.  If the software is modified by someone else and passed on, we\n\
1768    want its recipients to know that what they have is not the original, so\n\
1769    that any problems introduced by others will not reflect on the original\n\
1770    authors' reputations.\n\
1771    \n\
1772      Finally, any free program is threatened constantly by software\n\
1773    patents.  We wish to avoid the danger that redistributors of a free\n\
1774    program will individually obtain patent licenses, in effect making the\n\
1775    program proprietary.  To prevent this, we have made it clear that any\n\
1776    patent must be licensed for everyone's free use or not licensed at all.\n\
1777    \n\
1778      The precise terms and conditions for copying, distribution and\n\
1779    modification follow.\n\
1780    \n\
1781                        GNU GENERAL PUBLIC LICENSE\n\
1782       TERMS AND CONDITIONS FOR COPYING, DISTRIBUTION AND MODIFICATION\n\
1783    \n\
1784      0. This License applies to any program or other work which contains\n\
1785    a notice placed by the copyright holder saying it may be distributed\n\
1786    under the terms of this General Public License.  The \"Program\", below,\n\
1787    refers to any such program or work, and a \"work based on the Program\"\n\
1788    means either the Program or any derivative work under copyright law:\n\
1789    that is to say, a work containing the Program or a portion of it,\n\
1790    either verbatim or with modifications and/or translated into another\n\
1791    language.  (Hereinafter, translation is included without limitation in\n\
1792    the term \"modification\".)  Each licensee is addressed as \"you\".\n\
1793    \n\
1794    Activities other than copying, distribution and modification are not\n\
1795    covered by this License; they are outside its scope.  The act of\n\
1796    running the Program is not restricted, and the output from the Program\n\
1797    is covered only if its contents constitute a work based on the\n\
1798    Program (independent of having been made by running the Program).\n\
1799    Whether that is true depends on what the Program does.\n\
1800    \n\
1801      1. You may copy and distribute verbatim copies of the Program's\n\
1802    source code as you receive it, in any medium, provided that you\n\
1803    conspicuously and appropriately publish on each copy an appropriate\n\
1804    copyright notice and disclaimer of warranty; keep intact all the\n\
1805    notices that refer to this License and to the absence of any warranty;\n\
1806    and give any other recipients of the Program a copy of this License\n\
1807    along with the Program.\n\
1808    \n\
1809    You may charge a fee for the physical act of transferring a copy, and\n\
1810    you may at your option offer warranty protection in exchange for a fee.\n\
1811    \n\
1812      2. You may modify your copy or copies of the Program or any portion\n\
1813    of it, thus forming a work based on the Program, and copy and\n\
1814    distribute such modifications or work under the terms of Section 1\n\
1815    above, provided that you also meet all of these conditions:\n\
1816    \n\
1817        a) You must cause the modified files to carry prominent notices\n\
1818        stating that you changed the files and the date of any change.\n\
1819    \n\
1820        b) You must cause any work that you distribute or publish, that in\n\
1821        whole or in part contains or is derived from the Program or any\n\
1822        part thereof, to be licensed as a whole at no charge to all third\n\
1823        parties under the terms of this License.\n\
1824    \n\
1825        c) If the modified program normally reads commands interactively\n\
1826        when run, you must cause it, when started running for such\n\
1827        interactive use in the most ordinary way, to print or display an\n\
1828        announcement including an appropriate copyright notice and a\n\
1829        notice that there is no warranty (or else, saying that you provide\n\
1830        a warranty) and that users may redistribute the program under\n\
1831        these conditions, and telling the user how to view a copy of this\n\
1832        License.  (Exception: if the Program itself is interactive but\n\
1833        does not normally print such an announcement, your work based on\n\
1834        the Program is not required to print an announcement.)\n\
1835    \n\
1836    These requirements apply to the modified work as a whole.  If\n\
1837    identifiable sections of that work are not derived from the Program,\n\
1838    and can be reasonably considered independent and separate works in\n\
1839    themselves, then this License, and its terms, do not apply to those\n\
1840    sections when you distribute them as separate works.  But when you\n\
1841    distribute the same sections as part of a whole which is a work based\n\
1842    on the Program, the distribution of the whole must be on the terms of\n\
1843    this License, whose permissions for other licensees extend to the\n\
1844    entire whole, and thus to each and every part regardless of who wrote it.\n\
1845    \n\
1846    Thus, it is not the intent of this section to claim rights or contest\n\
1847    your rights to work written entirely by you; rather, the intent is to\n\
1848    exercise the right to control the distribution of derivative or\n\
1849    collective works based on the Program.\n\
1850    \n\
1851    In addition, mere aggregation of another work not based on the Program\n\
1852    with the Program (or with a work based on the Program) on a volume of\n\
1853    a storage or distribution medium does not bring the other work under\n\
1854    the scope of this License.\n\
1855    \n\
1856      3. You may copy and distribute the Program (or a work based on it,\n\
1857    under Section 2) in object code or executable form under the terms of\n\
1858    Sections 1 and 2 above provided that you also do one of the following:\n\
1859    \n\
1860        a) Accompany it with the complete corresponding machine-readable\n\
1861        source code, which must be distributed under the terms of Sections\n\
1862        1 and 2 above on a medium customarily used for software interchange; or,\n\
1863    \n\
1864        b) Accompany it with a written offer, valid for at least three\n\
1865        years, to give any third party, for a charge no more than your\n\
1866        cost of physically performing source distribution, a complete\n\
1867        machine-readable copy of the corresponding source code, to be\n\
1868        distributed under the terms of Sections 1 and 2 above on a medium\n\
1869        customarily used for software interchange; or,\n\
1870    \n\
1871        c) Accompany it with the information you received as to the offer\n\
1872        to distribute corresponding source code.  (This alternative is\n\
1873        allowed only for noncommercial distribution and only if you\n\
1874        received the program in object code or executable form with such\n\
1875        an offer, in accord with Subsection b above.)\n\
1876    \n\
1877    The source code for a work means the preferred form of the work for\n\
1878    making modifications to it.  For an executable work, complete source\n\
1879    code means all the source code for all modules it contains, plus any\n\
1880    associated interface definition files, plus the scripts used to\n\
1881    control compilation and installation of the executable.  However, as a\n\
1882    special exception, the source code distributed need not include\n\
1883    anything that is normally distributed (in either source or binary\n\
1884    form) with the major components (compiler, kernel, and so on) of the\n\
1885    operating system on which the executable runs, unless that component\n\
1886    itself accompanies the executable.\n\
1887    \n\
1888    If distribution of executable or object code is made by offering\n\
1889    access to copy from a designated place, then offering equivalent\n\
1890    access to copy the source code from the same place counts as\n\
1891    distribution of the source code, even though third parties are not\n\
1892    compelled to copy the source along with the object code.\n\
1893    \n\
1894      4. You may not copy, modify, sublicense, or distribute the Program\n\
1895    except as expressly provided under this License.  Any attempt\n\
1896    otherwise to copy, modify, sublicense or distribute the Program is\n\
1897    void, and will automatically terminate your rights under this License.\n\
1898    However, parties who have received copies, or rights, from you under\n\
1899    this License will not have their licenses terminated so long as such\n\
1900    parties remain in full compliance.\n\
1901    \n\
1902      5. You are not required to accept this License, since you have not\n\
1903    signed it.  However, nothing else grants you permission to modify or\n\
1904    distribute the Program or its derivative works.  These actions are\n\
1905    prohibited by law if you do not accept this License.  Therefore, by\n\
1906    modifying or distributing the Program (or any work based on the\n\
1907    Program), you indicate your acceptance of this License to do so, and\n\
1908    all its terms and conditions for copying, distributing or modifying\n\
1909    the Program or works based on it.\n\
1910    \n\
1911      6. Each time you redistribute the Program (or any work based on the\n\
1912    Program), the recipient automatically receives a license from the\n\
1913    original licensor to copy, distribute or modify the Program subject to\n\
1914    these terms and conditions.  You may not impose any further\n\
1915    restrictions on the recipients' exercise of the rights granted herein.\n\
1916    You are not responsible for enforcing compliance by third parties to\n\
1917    this License.\n\
1918    \n\
1919      7. If, as a consequence of a court judgment or allegation of patent\n\
1920    infringement or for any other reason (not limited to patent issues),\n\
1921    conditions are imposed on you (whether by court order, agreement or\n\
1922    otherwise) that contradict the conditions of this License, they do not\n\
1923    excuse you from the conditions of this License.  If you cannot\n\
1924    distribute so as to satisfy simultaneously your obligations under this\n\
1925    License and any other pertinent obligations, then as a consequence you\n\
1926    may not distribute the Program at all.  For example, if a patent\n\
1927    license would not permit royalty-free redistribution of the Program by\n\
1928    all those who receive copies directly or indirectly through you, then\n\
1929    the only way you could satisfy both it and this License would be to\n\
1930    refrain entirely from distribution of the Program.\n\
1931    \n\
1932    If any portion of this section is held invalid or unenforceable under\n\
1933    any particular circumstance, the balance of the section is intended to\n\
1934    apply and the section as a whole is intended to apply in other\n\
1935    circumstances.\n\
1936    \n\
1937    It is not the purpose of this section to induce you to infringe any\n\
1938    patents or other property right claims or to contest validity of any\n\
1939    such claims; this section has the sole purpose of protecting the\n\
1940    integrity of the free software distribution system, which is\n\
1941    implemented by public license practices.  Many people have made\n\
1942    generous contributions to the wide range of software distributed\n\
1943    through that system in reliance on consistent application of that\n\
1944    system; it is up to the author/donor to decide if he or she is willing\n\
1945    to distribute software through any other system and a licensee cannot\n\
1946    impose that choice.\n\
1947    \n\
1948    This section is intended to make thoroughly clear what is believed to\n\
1949    be a consequence of the rest of this License.\n\
1950    \n\
1951      8. If the distribution and/or use of the Program is restricted in\n\
1952    certain countries either by patents or by copyrighted interfaces, the\n\
1953    original copyright holder who places the Program under this License\n\
1954    may add an explicit geographical distribution limitation excluding\n\
1955    those countries, so that distribution is permitted only in or among\n\
1956    countries not thus excluded.  In such case, this License incorporates\n\
1957    the limitation as if written in the body of this License.\n\
1958    \n\
1959      9. The Free Software Foundation may publish revised and/or new versions\n\
1960    of the General Public License from time to time.  Such new versions will\n\
1961    be similar in spirit to the present version, but may differ in detail to\n\
1962    address new problems or concerns.\n\
1963    \n\
1964    Each version is given a distinguishing version number.  If the Program\n\
1965    specifies a version number of this License which applies to it and \"any\n\
1966    later version\", you have the option of following the terms and conditions\n\
1967    either of that version or of any later version published by the Free\n\
1968    Software Foundation.  If the Program does not specify a version number of\n\
1969    this License, you may choose any version ever published by the Free Software\n\
1970    Foundation.\n\
1971    \n\
1972      10. If you wish to incorporate parts of the Program into other free\n\
1973    programs whose distribution conditions are different, write to the author\n\
1974    to ask for permission.  For software which is copyrighted by the Free\n\
1975    Software Foundation, write to the Free Software Foundation; we sometimes\n\
1976    make exceptions for this.  Our decision will be guided by the two goals\n\
1977    of preserving the free status of all derivatives of our free software and\n\
1978    of promoting the sharing and reuse of software generally.\n");
1979    }
1980    
1981    extern void warranty(environment *env)
1982    {
1983      printf("                          NO WARRANTY\n\
1984    \n\
1985      11. BECAUSE THE PROGRAM IS LICENSED FREE OF CHARGE, THERE IS NO WARRANTY\n\
1986    FOR THE PROGRAM, TO THE EXTENT PERMITTED BY APPLICABLE LAW.  EXCEPT WHEN\n\
1987    OTHERWISE STATED IN WRITING THE COPYRIGHT HOLDERS AND/OR OTHER PARTIES\n\
1988    PROVIDE THE PROGRAM \"AS IS\" WITHOUT WARRANTY OF ANY KIND, EITHER EXPRESSED\n\
1989    OR IMPLIED, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF\n\
1990    MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE.  THE ENTIRE RISK AS\n\
1991    TO THE QUALITY AND PERFORMANCE OF THE PROGRAM IS WITH YOU.  SHOULD THE\n\
1992    PROGRAM PROVE DEFECTIVE, YOU ASSUME THE COST OF ALL NECESSARY SERVICING,\n\
1993    REPAIR OR CORRECTION.\n\
1994    \n\
1995      12. IN NO EVENT UNLESS REQUIRED BY APPLICABLE LAW OR AGREED TO IN WRITING\n\
1996    WILL ANY COPYRIGHT HOLDER, OR ANY OTHER PARTY WHO MAY MODIFY AND/OR\n\
1997    REDISTRIBUTE THE PROGRAM AS PERMITTED ABOVE, BE LIABLE TO YOU FOR DAMAGES,\n\
1998    INCLUDING ANY GENERAL, SPECIAL, INCIDENTAL OR CONSEQUENTIAL DAMAGES ARISING\n\
1999    OUT OF THE USE OR INABILITY TO USE THE PROGRAM (INCLUDING BUT NOT LIMITED\n\
2000    TO LOSS OF DATA OR DATA BEING RENDERED INACCURATE OR LOSSES SUSTAINED BY\n\
2001    YOU OR THIRD PARTIES OR A FAILURE OF THE PROGRAM TO OPERATE WITH ANY OTHER\n\
2002    PROGRAMS), EVEN IF SUCH HOLDER OR OTHER PARTY HAS BEEN ADVISED OF THE\n\
2003    POSSIBILITY OF SUCH DAMAGES.\n");
2004    }
2005    
2006    /* "*" */
2007    extern void sx_2a(environment *env)
2008    {
2009      int a, b;
2010      float fa, fb;
2011    
2012      if(env->head==NULL || CDR(env->head)==NULL) {
2013        printerr("Too Few Arguments");
2014        env->err= 1;
2015        return;
2016      }
2017      
2018      if(CAR(env->head)->type==integer
2019         && CAR(CDR(env->head))->type==integer) {
2020        a= CAR(env->head)->content.i;
2021        toss(env); if(env->err) return;
2022        b= CAR(env->head)->content.i;
2023        toss(env); if(env->err) return;
2024        push_int(env, b*a);
2025    
2026        return;
2027      }
2028    
2029      if(CAR(env->head)->type==tfloat
2030         && CAR(CDR(env->head))->type==tfloat) {
2031        fa= CAR(env->head)->content.f;
2032        toss(env); if(env->err) return;
2033        fb= CAR(env->head)->content.f;
2034        toss(env); if(env->err) return;
2035        push_float(env, fb*fa);
2036        
2037        return;
2038      }
2039    
2040      if(CAR(env->head)->type==tfloat
2041         && CAR(CDR(env->head))->type==integer) {
2042        fa= CAR(env->head)->content.f;
2043        toss(env); if(env->err) return;
2044        b= CAR(env->head)->content.i;
2045        toss(env); if(env->err) return;
2046        push_float(env, b*fa);
2047        
2048        return;
2049      }
2050    
2051      if(CAR(env->head)->type==integer
2052         && CAR(CDR(env->head))->type==tfloat) {
2053        a= CAR(env->head)->content.i;
2054        toss(env); if(env->err) return;
2055        fb= CAR(env->head)->content.f;
2056        toss(env); if(env->err) return;
2057        push_float(env, fb*a);
2058    
2059        return;
2060      }
2061    
2062      printerr("Bad Argument Type");
2063      env->err= 2;
2064    }
2065    
2066    /* "/" */
2067    extern void sx_2f(environment *env)
2068    {
2069      int a, b;
2070      float fa, fb;
2071    
2072      if(env->head==NULL || CDR(env->head)==NULL) {
2073        printerr("Too Few Arguments");
2074        env->err= 1;
2075        return;
2076      }
2077      
2078      if(CAR(env->head)->type==integer
2079         && CAR(CDR(env->head))->type==integer) {
2080        a= CAR(env->head)->content.i;
2081        toss(env); if(env->err) return;
2082        b= CAR(env->head)->content.i;
2083        toss(env); if(env->err) return;
2084        push_float(env, b/a);
2085    
2086        return;
2087      }
2088    
2089      if(CAR(env->head)->type==tfloat
2090         && CAR(CDR(env->head))->type==tfloat) {
2091        fa= CAR(env->head)->content.f;
2092        toss(env); if(env->err) return;
2093        fb= CAR(env->head)->content.f;
2094        toss(env); if(env->err) return;
2095        push_float(env, fb/fa);
2096        
2097        return;
2098      }
2099    
2100      if(CAR(env->head)->type==tfloat
2101         && CAR(CDR(env->head))->type==integer) {
2102        fa= CAR(env->head)->content.f;
2103        toss(env); if(env->err) return;
2104        b= CAR(env->head)->content.i;
2105        toss(env); if(env->err) return;
2106        push_float(env, b/fa);
2107        
2108        return;
2109      }
2110    
2111      if(CAR(env->head)->type==integer
2112         && CAR(CDR(env->head))->type==tfloat) {
2113        a= CAR(env->head)->content.i;
2114        toss(env); if(env->err) return;
2115        fb= CAR(env->head)->content.f;
2116        toss(env); if(env->err) return;
2117        push_float(env, fb/a);
2118    
2119        return;
2120      }
2121    
2122      printerr("Bad Argument Type");
2123      env->err= 2;
2124    }
2125    
2126    /* "mod" */
2127    extern void mod(environment *env)
2128    {
2129      int a, b;
2130    
2131      if(env->head==NULL || CDR(env->head)==NULL) {
2132        printerr("Too Few Arguments");
2133        env->err= 1;
2134        return;
2135      }
2136      
2137      if(CAR(env->head)->type==integer
2138         && CAR(CDR(env->head))->type==integer) {
2139        a= CAR(env->head)->content.i;
2140        toss(env); if(env->err) return;
2141        b= CAR(env->head)->content.i;
2142        toss(env); if(env->err) return;
2143        push_int(env, b%a);
2144    
2145        return;
2146      }
2147    
2148      printerr("Bad Argument Type");
2149      env->err= 2;
2150    }
2151    
2152    /* "div" */
2153    extern void sx_646976(environment *env)
2154    {
2155      int a, b;
2156      
2157      if(env->head==NULL || CDR(env->head)==NULL) {
2158        printerr("Too Few Arguments");
2159        env->err= 1;
2160        return;
2161      }
2162    
2163      if(CAR(env->head)->type==integer
2164         && CAR(CDR(env->head))->type==integer) {
2165        a= CAR(env->head)->content.i;
2166        toss(env); if(env->err) return;
2167        b= CAR(env->head)->content.i;
2168        toss(env); if(env->err) return;
2169        push_int(env, (int)b/a);
2170    
2171        return;
2172      }
2173    
2174      printerr("Bad Argument Type");
2175      env->err= 2;
2176  }  }

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