/[cvs]/stack/stack.c
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Contents of /stack/stack.c

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Revision 1.39 - (show annotations)
Wed Feb 6 11:39:20 2002 UTC (22 years, 2 months ago) by teddy
Branch: MAIN
Changes since 1.38: +28 -1 lines
File MIME type: text/plain
(rev): New function to reverse a list.

1 /* printf */
2 #include <stdio.h>
3 /* EXIT_SUCCESS */
4 #include <stdlib.h>
5 /* NULL */
6 #include <stddef.h>
7 /* dlopen, dlsym, dlerror */
8 #include <dlfcn.h>
9 /* assert */
10 #include <assert.h>
11
12 #define HASHTBLSIZE 65536
13
14 /* First, define some types. */
15
16 /* A value of some type */
17 typedef struct {
18 enum {
19 integer,
20 string,
21 func, /* Function pointer */
22 symb,
23 list
24 } type; /* Type of stack element */
25
26 union {
27 void *ptr; /* Pointer to the content */
28 int val; /* ...or an integer */
29 } content; /* Stores a pointer or an integer */
30
31 int refcount; /* Reference counter */
32
33 } value;
34
35 /* A symbol with a name and possible value */
36 /* (These do not need reference counters, they are kept unique by
37 hashing.) */
38 typedef struct symbol_struct {
39 char *id; /* Symbol name */
40 value *val; /* The value (if any) bound to it */
41 struct symbol_struct *next; /* In case of hashing conflicts, a */
42 } symbol; /* symbol is a kind of stack item. */
43
44 /* A type for a hash table for symbols */
45 typedef symbol *hashtbl[HASHTBLSIZE]; /* Hash table declaration */
46
47 /* An item (value) on a stack */
48 typedef struct stackitem_struct
49 {
50 value *item; /* The value on the stack */
51 struct stackitem_struct *next; /* Next item */
52 } stackitem;
53
54 /* An environment; gives access to the stack and a hash table of
55 defined symbols */
56 typedef struct {
57 stackitem *head; /* Head of the stack */
58 hashtbl symbols; /* Hash table of all variable bindings */
59 int err; /* Error flag */
60 } environment;
61
62 /* A type for pointers to external functions */
63 typedef void (*funcp)(environment *); /* funcp is a pointer to a void
64 function (environment *) */
65
66 /* Initialize a newly created environment */
67 void init_env(environment *env)
68 {
69 long i;
70
71 env->err=0;
72 for(i= 0; i<HASHTBLSIZE; i++)
73 env->symbols[i]= NULL;
74 }
75
76 /* Returns a pointer to a pointer to an element in the hash table. */
77 symbol **hash(hashtbl in_hashtbl, const char *in_string)
78 {
79 long i= 0;
80 unsigned long out_hash= 0;
81 char key= '\0';
82 symbol **position;
83
84 while(1){ /* Hash in_string */
85 key= in_string[i++];
86 if(key=='\0')
87 break;
88 out_hash= out_hash*32+key;
89 }
90
91 out_hash= out_hash%HASHTBLSIZE;
92 position= &(in_hashtbl[out_hash]);
93
94 while(1){
95 if(*position==NULL) /* If empty */
96 return position;
97
98 if(strcmp(in_string, (*position)->id)==0) /* If match */
99 return position;
100
101 position= &((*position)->next); /* Try next */
102 }
103 }
104
105 /* Generic push function. */
106 void push(stackitem** stack_head, stackitem* in_item)
107 {
108 in_item->next= *stack_head;
109 *stack_head= in_item;
110 }
111
112 /* Push a value onto the stack */
113 void push_val(stackitem **stack_head, value *val)
114 {
115 stackitem *new_item= malloc(sizeof(stackitem));
116 new_item->item= val;
117 val->refcount++;
118 push(stack_head, new_item);
119 }
120
121 /* Push an integer onto the stack. */
122 void push_int(stackitem **stack_head, int in_val)
123 {
124 value *new_value= malloc(sizeof(value));
125 stackitem *new_item= malloc(sizeof(stackitem));
126 new_item->item= new_value;
127
128 new_value->content.val= in_val;
129 new_value->type= integer;
130 new_value->refcount=1;
131
132 push(stack_head, new_item);
133 }
134
135 /* Copy a string onto the stack. */
136 void push_cstring(stackitem **stack_head, const char *in_string)
137 {
138 value *new_value= malloc(sizeof(value));
139 stackitem *new_item= malloc(sizeof(stackitem));
140 new_item->item=new_value;
141
142 new_value->content.ptr= malloc(strlen(in_string)+1);
143 strcpy(new_value->content.ptr, in_string);
144 new_value->type= string;
145 new_value->refcount=1;
146
147 push(stack_head, new_item);
148 }
149
150 /* Push a symbol onto the stack. */
151 void push_sym(environment *env, const char *in_string)
152 {
153 stackitem *new_item; /* The new stack item */
154 /* ...which will contain... */
155 value *new_value; /* A new symbol value */
156 /* ...which might point to... */
157 symbol **new_symbol; /* (if needed) A new actual symbol */
158 /* ...which, if possible, will be bound to... */
159 value *new_fvalue; /* (if needed) A new function value */
160 /* ...which will point to... */
161 void *funcptr; /* A function pointer */
162
163 static void *handle= NULL; /* Dynamic linker handle */
164
165 /* Create a new stack item containing a new value */
166 new_item= malloc(sizeof(stackitem));
167 new_value= malloc(sizeof(value));
168 new_item->item=new_value;
169
170 /* The new value is a symbol */
171 new_value->type= symb;
172 new_value->refcount= 1;
173
174 /* Look up the symbol name in the hash table */
175 new_symbol= hash(env->symbols, in_string);
176 new_value->content.ptr= *new_symbol;
177
178 if(*new_symbol==NULL) { /* If symbol was undefined */
179
180 /* Create a new symbol */
181 (*new_symbol)= malloc(sizeof(symbol));
182 (*new_symbol)->val= NULL; /* undefined value */
183 (*new_symbol)->next= NULL;
184 (*new_symbol)->id= malloc(strlen(in_string)+1);
185 strcpy((*new_symbol)->id, in_string);
186
187 /* Intern the new symbol in the hash table */
188 new_value->content.ptr= *new_symbol;
189
190 /* Try to load the symbol name as an external function, to see if
191 we should bind the symbol to a new function pointer value */
192 if(handle==NULL) /* If no handle */
193 handle= dlopen(NULL, RTLD_LAZY);
194
195 funcptr= dlsym(handle, in_string); /* Get function pointer */
196 if(dlerror()==NULL) { /* If a function was found */
197 new_fvalue= malloc(sizeof(value)); /* Create a new value */
198 new_fvalue->type=func; /* The new value is a function pointer */
199 new_fvalue->content.ptr=funcptr; /* Store function pointer */
200 (*new_symbol)->val= new_fvalue; /* Bind the symbol to the new
201 function value */
202 new_fvalue->refcount= 1;
203 }
204 }
205 push(&(env->head), new_item);
206 }
207
208 void printerr(const char* in_string) {
209 fprintf(stderr, "Err: %s\n", in_string);
210 }
211
212 /* Throw away a value */
213 void free_val(value *val){
214 stackitem *item, *temp;
215
216 val->refcount--; /* Decrease the reference count */
217 if(val->refcount == 0){
218 switch (val->type){ /* and free the contents if necessary */
219 case string:
220 free(val->content.ptr);
221 break;
222 case list: /* lists needs to be freed recursively */
223 item=val->content.ptr;
224 while(item != NULL) { /* for all stack items */
225 free_val(item->item); /* free the value */
226 temp=item->next; /* save next ptr */
227 free(item); /* free the stackitem */
228 item=temp; /* go to next stackitem */
229 }
230 free(val); /* Free the actual list value */
231 break;
232 default:
233 break;
234 }
235 }
236 }
237
238 /* Discard the top element of the stack. */
239 extern void toss(environment *env)
240 {
241 stackitem *temp= env->head;
242
243 if((env->head)==NULL) {
244 printerr("Too Few Arguments");
245 env->err=1;
246 return;
247 }
248
249 free_val(env->head->item); /* Free the value */
250 env->head= env->head->next; /* Remove the top stack item */
251 free(temp); /* Free the old top stack item */
252 }
253
254 /* Print newline. */
255 extern void nl()
256 {
257 printf("\n");
258 }
259
260 /* Gets the type of a value */
261 extern void type(environment *env){
262 int typenum;
263
264 if((env->head)==NULL) {
265 printerr("Too Few Arguments");
266 env->err=1;
267 return;
268 }
269 typenum=env->head->item->type;
270 toss(env);
271 switch(typenum){
272 case integer:
273 push_sym(env, "integer");
274 break;
275 case string:
276 push_sym(env, "string");
277 break;
278 case symb:
279 push_sym(env, "symbol");
280 break;
281 case func:
282 push_sym(env, "function");
283 break;
284 case list:
285 push_sym(env, "list");
286 break;
287 default:
288 push_sym(env, "unknown");
289 break;
290 }
291 }
292
293 /* Prints the top element of the stack. */
294 void print_h(stackitem *stack_head)
295 {
296 switch(stack_head->item->type) {
297 case integer:
298 printf("%d", stack_head->item->content.val);
299 break;
300 case string:
301 printf("\"%s\"", (char*)stack_head->item->content.ptr);
302 break;
303 case symb:
304 printf("'%s'", ((symbol *)(stack_head->item->content.ptr))->id);
305 break;
306 case func:
307 printf("#<function %p>", (funcp)(stack_head->item->content.ptr));
308 break;
309 case list:
310 /* A list is just a stack, so make stack_head point to it */
311 stack_head=(stackitem *)(stack_head->item->content.ptr);
312 printf("[ ");
313 while(stack_head != NULL) {
314 print_h(stack_head);
315 printf(" ");
316 stack_head=stack_head->next;
317 }
318 printf("]");
319 break;
320 default:
321 printf("#<unknown %p>", (stack_head->item->content.ptr));
322 break;
323 }
324 }
325
326 extern void print_(environment *env) {
327 if(env->head==NULL) {
328 printerr("Too Few Arguments");
329 env->err=1;
330 return;
331 }
332 print_h(env->head);
333 }
334
335 /* Prints the top element of the stack and then discards it. */
336 extern void print(environment *env)
337 {
338 print_(env);
339 if(env->err) return;
340 toss(env);
341 }
342
343 /* Only to be called by function printstack. */
344 void print_st(stackitem *stack_head, long counter)
345 {
346 if(stack_head->next != NULL)
347 print_st(stack_head->next, counter+1);
348 printf("%ld: ", counter);
349 print_h(stack_head);
350 nl();
351 }
352
353
354
355 /* Prints the stack. */
356 extern void printstack(environment *env)
357 {
358 if(env->head == NULL) {
359 return;
360 }
361 print_st(env->head, 1);
362 nl();
363 }
364
365 /* Swap the two top elements on the stack. */
366 extern void swap(environment *env)
367 {
368 stackitem *temp= env->head;
369
370 if((env->head)==NULL) {
371 printerr("Too Few Arguments");
372 env->err=1;
373 return;
374 }
375
376 if(env->head->next==NULL) {
377 printerr("Too Few Arguments");
378 env->err=1;
379 return;
380 }
381
382 env->head= env->head->next;
383 temp->next= env->head->next;
384 env->head->next= temp;
385 }
386
387 stackitem* copy(stackitem* in_item)
388 {
389 stackitem *out_item= malloc(sizeof(stackitem));
390
391 memcpy(out_item, in_item, sizeof(stackitem));
392 out_item->next= NULL;
393
394 return out_item;
395 }
396
397 /* Recall a value from a symbol, if bound */
398 extern void rcl(environment *env)
399 {
400 value *val;
401
402 if(env->head == NULL) {
403 printerr("Too Few Arguments");
404 env->err=1;
405 return;
406 }
407
408 if(env->head->item->type!=symb) {
409 printerr("Bad Argument Type");
410 env->err=2;
411 return;
412 }
413
414 val=((symbol *)(env->head->item->content.ptr))->val;
415 if(val == NULL){
416 printerr("Unbound Variable");
417 env->err=3;
418 return;
419 }
420 toss(env); /* toss the symbol */
421 if(env->err) return;
422 push_val(&(env->head), val); /* Return its bound value */
423 }
424
425 /* If the top element is a symbol, determine if it's bound to a
426 function value, and if it is, toss the symbol and execute the
427 function. */
428 extern void eval(environment *env)
429 {
430 funcp in_func;
431 if(env->head==NULL) {
432 printerr("Too Few Arguments");
433 env->err=1;
434 return;
435 }
436
437 /* if it's a symbol */
438 if(env->head->item->type==symb) {
439
440 rcl(env); /* get its contents */
441 if(env->err) return;
442 if(env->head->item->type!=symb){ /* don't recurse symbols */
443 eval(env); /* evaluate the value */
444 return;
445 }
446 }
447
448 /* If it's a lone function value, run it */
449 if(env->head->item->type==func) {
450 in_func= (funcp)(env->head->item->content.ptr);
451 toss(env);
452 if(env->err) return;
453 (*in_func)(env);
454 }
455 }
456
457 /* Make a list. */
458 extern void pack(environment *env)
459 {
460 void* delimiter;
461 stackitem *iterator, *temp;
462 value *pack;
463
464 delimiter= env->head->item->content.ptr; /* Get delimiter */
465 toss(env);
466
467 iterator= env->head;
468
469 if(iterator==NULL || iterator->item->content.ptr==delimiter) {
470 temp= NULL;
471 toss(env);
472 } else {
473 /* Search for first delimiter */
474 while(iterator->next!=NULL
475 && iterator->next->item->content.ptr!=delimiter)
476 iterator= iterator->next;
477
478 /* Extract list */
479 temp= env->head;
480 env->head= iterator->next;
481 iterator->next= NULL;
482
483 if(env->head!=NULL)
484 toss(env);
485 }
486
487 /* Push list */
488 pack= malloc(sizeof(value));
489 pack->type= list;
490 pack->content.ptr= temp;
491 pack->refcount= 1;
492
493 temp= malloc(sizeof(stackitem));
494 temp->item= pack;
495
496 push(&(env->head), temp);
497 }
498
499 /* Parse input. */
500 void stack_read(environment *env, char *in_line)
501 {
502 char *temp, *rest;
503 int itemp;
504 size_t inlength= strlen(in_line)+1;
505 int convert= 0;
506 static int non_eval_flag= 0;
507
508 temp= malloc(inlength);
509 rest= malloc(inlength);
510
511 do {
512 /* If string */
513 if((convert= sscanf(in_line, "\"%[^\"\n\r]\" %[^\n\r]", temp, rest))) {
514 push_cstring(&(env->head), temp);
515 break;
516 }
517 /* If integer */
518 if((convert= sscanf(in_line, "%d %[^\n\r]", &itemp, rest))) {
519 push_int(&(env->head), itemp);
520 break;
521 }
522 /* Escape ';' with '\' */
523 if((convert= sscanf(in_line, "\\%c%[^\n\r]", temp, rest))) {
524 temp[1]= '\0';
525 push_sym(env, temp);
526 break;
527 }
528 /* If symbol */
529 if((convert= sscanf(in_line, "%[^][ ;\n\r]%[^\n\r]", temp, rest))) {
530 push_sym(env, temp);
531 break;
532 }
533 /* If single char */
534 if((convert= sscanf(in_line, "%c%[^\n\r]", temp, rest))) {
535 if(*temp==';') {
536 if(!non_eval_flag) {
537 eval(env); /* Evaluate top element */
538 break;
539 }
540
541 push_sym(env, ";");
542 break;
543 }
544
545 if(*temp==']') {
546 push_sym(env, "[");
547 pack(env);
548 if(non_eval_flag!=0)
549 non_eval_flag--;
550 break;
551 }
552
553 if(*temp=='[') {
554 push_sym(env, "[");
555 non_eval_flag++;
556 break;
557 }
558 }
559 } while(0);
560
561 free(temp);
562
563 if(convert<2) {
564 free(rest);
565 return;
566 }
567
568 stack_read(env, rest);
569
570 free(rest);
571 }
572
573 /* Relocate elements of the list on the stack. */
574 extern void expand(environment *env)
575 {
576 stackitem *temp, *new_head;
577
578 /* Is top element a list? */
579 if(env->head==NULL) {
580 printerr("Too Few Arguments");
581 env->err=1;
582 return;
583 }
584 if(env->head->item->type!=list) {
585 printerr("Bad Argument Type");
586 env->err=2;
587 return;
588 }
589
590 /* The first list element is the new stack head */
591 new_head= temp= env->head->item->content.ptr;
592
593 env->head->item->refcount++;
594 toss(env);
595
596 /* Find the end of the list */
597 while(temp->next!=NULL)
598 temp= temp->next;
599
600 /* Connect the tail of the list with the old stack head */
601 temp->next= env->head;
602 env->head= new_head; /* ...and voila! */
603
604 }
605
606 /* Reverse a list */
607 extern void rev(environment *env){
608 stackitem *old_head, *new_head, *item;
609
610 if((env->head)==NULL) {
611 printerr("Too Few Arguments");
612 env->err=1;
613 return;
614 }
615
616 if(env->head->item->type!=list) {
617 printerr("Bad Argument Type");
618 env->err=2;
619 return;
620 }
621
622 old_head=(stackitem *)(env->head->item->content.ptr);
623 new_head=NULL;
624 while(old_head != NULL){
625 item=old_head;
626 old_head=old_head->next;
627 item->next=new_head;
628 new_head=item;
629 }
630 env->head->item->content.ptr=new_head;
631 }
632
633 /* Compares two elements by reference. */
634 extern void eq(environment *env)
635 {
636 void *left, *right;
637 int result;
638
639 if((env->head)==NULL || env->head->next==NULL) {
640 printerr("Too Few Arguments");
641 env->err=1;
642 return;
643 }
644
645 left= env->head->item->content.ptr;
646 swap(env);
647 right= env->head->item->content.ptr;
648 result= (left==right);
649
650 toss(env); toss(env);
651 push_int(&(env->head), result);
652 }
653
654 /* Negates the top element on the stack. */
655 extern void not(environment *env)
656 {
657 int val;
658
659 if((env->head)==NULL) {
660 printerr("Too Few Arguments");
661 env->err=1;
662 return;
663 }
664
665 if(env->head->item->type!=integer) {
666 printerr("Bad Argument Type");
667 env->err=2;
668 return;
669 }
670
671 val= env->head->item->content.val;
672 toss(env);
673 push_int(&(env->head), !val);
674 }
675
676 /* Compares the two top elements on the stack and return 0 if they're the
677 same. */
678 extern void neq(environment *env)
679 {
680 eq(env);
681 not(env);
682 }
683
684 /* Give a symbol some content. */
685 extern void def(environment *env)
686 {
687 symbol *sym;
688
689 /* Needs two values on the stack, the top one must be a symbol */
690 if(env->head==NULL || env->head->next==NULL) {
691 printerr("Too Few Arguments");
692 env->err=1;
693 return;
694 }
695
696 if(env->head->item->type!=symb) {
697 printerr("Bad Argument Type");
698 env->err=2;
699 return;
700 }
701
702 /* long names are a pain */
703 sym=env->head->item->content.ptr;
704
705 /* if the symbol was bound to something else, throw it away */
706 if(sym->val != NULL)
707 free_val(sym->val);
708
709 /* Bind the symbol to the value */
710 sym->val= env->head->next->item;
711 sym->val->refcount++; /* Increase the reference counter */
712
713 toss(env); toss(env);
714 }
715
716 /* Quit stack. */
717 extern void quit(environment *env)
718 {
719 exit(EXIT_SUCCESS);
720 }
721
722 /* Clear stack */
723 extern void clear(environment *env)
724 {
725 while(env->head!=NULL)
726 toss(env);
727 }
728
729 /* List all defined words */
730 extern void words(environment *env)
731 {
732 symbol *temp;
733 int i;
734
735 for(i= 0; i<HASHTBLSIZE; i++) {
736 temp= env->symbols[i];
737 while(temp!=NULL) {
738 printf("%s\n", temp->id);
739 temp= temp->next;
740 }
741 }
742 }
743
744 /* Forgets a symbol (remove it from the hash table) */
745 extern void forget(environment *env)
746 {
747 char* sym_id;
748 stackitem *stack_head= env->head;
749 symbol **hash_entry, *temp;
750
751 if(stack_head==NULL) {
752 printerr("Too Few Arguments");
753 env->err=1;
754 return;
755 }
756
757 if(stack_head->item->type!=symb) {
758 printerr("Bad Argument Type");
759 env->err=2;
760 return;
761 }
762
763 sym_id= ((symbol*)(stack_head->item->content.ptr))->id;
764 toss(env);
765
766 hash_entry= hash(env->symbols, sym_id);
767 temp= *hash_entry;
768 *hash_entry= (*hash_entry)->next;
769
770 if(temp->val!=NULL) {
771 free_val(temp->val);
772 }
773 free(temp->id);
774 free(temp);
775 }
776
777 /* Returns the current error number to the stack */
778 extern void errn(environment *env){
779 push_int(&(env->head), env->err);
780 }
781
782 int main()
783 {
784 environment myenv;
785 char in_string[100];
786
787 init_env(&myenv);
788
789 printf("okidok\n ");
790
791 while(fgets(in_string, 100, stdin) != NULL) {
792 stack_read(&myenv, in_string);
793 if(myenv.err) {
794 printf("(error %d) ", myenv.err);
795 myenv.err=0;
796 }
797 printf("okidok\n ");
798 }
799
800 exit(EXIT_SUCCESS);
801 }

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