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

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Revision 1.85 - (hide annotations)
Fri Feb 15 12:45:28 2002 UTC (22 years, 2 months ago) by teddy
Branch: MAIN
Changes since 1.84: +18 -15 lines
File MIME type: text/plain
(main): Only reset error flag after a complete read.

More consistent comments on mangled functions.

1 teddy 1.84 /* printf, sscanf, fgets, fprintf, fopen, perror */
2 masse 1.1 #include <stdio.h>
3 teddy 1.52 /* exit, EXIT_SUCCESS, malloc, free */
4 masse 1.1 #include <stdlib.h>
5     /* NULL */
6     #include <stddef.h>
7 teddy 1.3 /* dlopen, dlsym, dlerror */
8 masse 1.1 #include <dlfcn.h>
9 teddy 1.52 /* strcmp, strcpy, strlen, strcat, strdup */
10 masse 1.47 #include <string.h>
11 teddy 1.84 /* getopt, STDIN_FILENO, STDOUT_FILENO */
12     #include <unistd.h>
13     /* EX_NOINPUT, EX_USAGE */
14     #include <sysexits.h>
15 masse 1.83 /* mtrace, muntrace */
16     #include <mcheck.h>
17 masse 1.1
18 masse 1.72 #define HASHTBLSIZE 2048
19 masse 1.1
20 teddy 1.28 /* First, define some types. */
21    
22     /* A value of some type */
23     typedef struct {
24 masse 1.16 enum {
25 teddy 1.28 integer,
26 teddy 1.18 string,
27 masse 1.16 func, /* Function pointer */
28 teddy 1.28 symb,
29 masse 1.16 list
30 teddy 1.18 } type; /* Type of stack element */
31    
32 masse 1.1 union {
33 teddy 1.28 void *ptr; /* Pointer to the content */
34 masse 1.16 int val; /* ...or an integer */
35     } content; /* Stores a pointer or an integer */
36 masse 1.1
37 teddy 1.28 int refcount; /* Reference counter */
38    
39     } value;
40    
41     /* A symbol with a name and possible value */
42     /* (These do not need reference counters, they are kept unique by
43     hashing.) */
44     typedef struct symbol_struct {
45     char *id; /* Symbol name */
46     value *val; /* The value (if any) bound to it */
47     struct symbol_struct *next; /* In case of hashing conflicts, a */
48     } symbol; /* symbol is a kind of stack item. */
49    
50     /* A type for a hash table for symbols */
51     typedef symbol *hashtbl[HASHTBLSIZE]; /* Hash table declaration */
52    
53     /* An item (value) on a stack */
54     typedef struct stackitem_struct
55     {
56     value *item; /* The value on the stack */
57 teddy 1.56 /* (This is never NULL) */
58 teddy 1.28 struct stackitem_struct *next; /* Next item */
59 masse 1.1 } stackitem;
60    
61 teddy 1.28 /* An environment; gives access to the stack and a hash table of
62     defined symbols */
63     typedef struct {
64     stackitem *head; /* Head of the stack */
65     hashtbl symbols; /* Hash table of all variable bindings */
66 teddy 1.33 int err; /* Error flag */
67 masse 1.70 char *in_string; /* Input pending to be read */
68 teddy 1.78 char *free_string; /* Free this string when all input is
69     read from in_string */
70 teddy 1.84 FILE *inputstream; /* stdin or a file, most likely */
71     int interactive; /* print prompts, stack, etc */
72 teddy 1.28 } environment;
73    
74     /* A type for pointers to external functions */
75     typedef void (*funcp)(environment *); /* funcp is a pointer to a void
76     function (environment *) */
77 masse 1.1
78 teddy 1.28 /* Initialize a newly created environment */
79     void init_env(environment *env)
80 masse 1.1 {
81 masse 1.46 int i;
82 masse 1.1
83 teddy 1.84 env->head= NULL;
84 masse 1.1 for(i= 0; i<HASHTBLSIZE; i++)
85 teddy 1.28 env->symbols[i]= NULL;
86 teddy 1.84 env->err= 0;
87     env->in_string= NULL;
88     env->free_string= NULL;
89     env->inputstream= stdin;
90     env->interactive= 1;
91 masse 1.1 }
92    
93 teddy 1.48 void printerr(const char* in_string) {
94     fprintf(stderr, "Err: %s\n", in_string);
95     }
96    
97     /* Throw away a value */
98     void free_val(value *val){
99     stackitem *item, *temp;
100    
101     val->refcount--; /* Decrease the reference count */
102     if(val->refcount == 0){
103     switch (val->type){ /* and free the contents if necessary */
104     case string:
105     free(val->content.ptr);
106     break;
107     case list: /* lists needs to be freed recursively */
108     item=val->content.ptr;
109     while(item != NULL) { /* for all stack items */
110     free_val(item->item); /* free the value */
111     temp=item->next; /* save next ptr */
112     free(item); /* free the stackitem */
113     item=temp; /* go to next stackitem */
114     }
115     break;
116 teddy 1.54 case integer:
117     case func:
118 masse 1.82 break;
119 teddy 1.54 case symb:
120 masse 1.82 free(((symbol*)(val->content.ptr))->id);
121     if(((symbol*)(val->content.ptr))->val!=NULL)
122     free_val(((symbol*)(val->content.ptr))->val);
123     free(val->content.ptr);
124 teddy 1.48 break;
125     }
126 masse 1.83 free(val); /* Free the actual value structure */
127 teddy 1.48 }
128     }
129    
130     /* Discard the top element of the stack. */
131     extern void toss(environment *env)
132     {
133     stackitem *temp= env->head;
134    
135     if((env->head)==NULL) {
136     printerr("Too Few Arguments");
137     env->err=1;
138     return;
139     }
140    
141     free_val(env->head->item); /* Free the value */
142     env->head= env->head->next; /* Remove the top stack item */
143     free(temp); /* Free the old top stack item */
144     }
145    
146 teddy 1.27 /* Returns a pointer to a pointer to an element in the hash table. */
147 teddy 1.28 symbol **hash(hashtbl in_hashtbl, const char *in_string)
148 masse 1.1 {
149 masse 1.46 int i= 0;
150     unsigned int out_hash= 0;
151 teddy 1.18 char key= '\0';
152 teddy 1.28 symbol **position;
153 masse 1.1
154 masse 1.16 while(1){ /* Hash in_string */
155 masse 1.1 key= in_string[i++];
156     if(key=='\0')
157     break;
158     out_hash= out_hash*32+key;
159     }
160    
161     out_hash= out_hash%HASHTBLSIZE;
162     position= &(in_hashtbl[out_hash]);
163    
164 masse 1.25 while(1){
165 teddy 1.18 if(*position==NULL) /* If empty */
166 masse 1.1 return position;
167    
168 teddy 1.18 if(strcmp(in_string, (*position)->id)==0) /* If match */
169 masse 1.1 return position;
170    
171 masse 1.16 position= &((*position)->next); /* Try next */
172 masse 1.1 }
173     }
174    
175 teddy 1.29 /* Push a value onto the stack */
176 masse 1.72 void push_val(environment *env, value *val)
177 teddy 1.29 {
178     stackitem *new_item= malloc(sizeof(stackitem));
179     new_item->item= val;
180     val->refcount++;
181 masse 1.75 new_item->next= env->head;
182     env->head= new_item;
183 teddy 1.29 }
184    
185 teddy 1.28 /* Push an integer onto the stack. */
186 masse 1.72 void push_int(environment *env, int in_val)
187 masse 1.1 {
188 teddy 1.28 value *new_value= malloc(sizeof(value));
189    
190     new_value->content.val= in_val;
191     new_value->type= integer;
192 masse 1.83 new_value->refcount= 0;
193 masse 1.1
194 masse 1.75 push_val(env, new_value);
195 masse 1.1 }
196    
197 masse 1.14 /* Copy a string onto the stack. */
198 masse 1.72 void push_cstring(environment *env, const char *in_string)
199 masse 1.1 {
200 teddy 1.28 value *new_value= malloc(sizeof(value));
201    
202     new_value->content.ptr= malloc(strlen(in_string)+1);
203     strcpy(new_value->content.ptr, in_string);
204     new_value->type= string;
205 masse 1.83 new_value->refcount= 0;
206 masse 1.1
207 masse 1.75 push_val(env, new_value);
208 masse 1.1 }
209    
210 teddy 1.48 /* Mangle a symbol name to a valid C identifier name */
211 teddy 1.51 char *mangle_str(const char *old_string){
212 teddy 1.48 char validchars[]
213     ="0123456789abcdef";
214     char *new_string, *current;
215    
216 teddy 1.50 new_string=malloc((strlen(old_string)*2)+4);
217 teddy 1.48 strcpy(new_string, "sx_"); /* Stack eXternal */
218     current=new_string+3;
219     while(old_string[0] != '\0'){
220 teddy 1.53 current[0]=validchars[(unsigned char)(old_string[0])/16];
221     current[1]=validchars[(unsigned char)(old_string[0])%16];
222 teddy 1.48 current+=2;
223     old_string++;
224     }
225     current[0]='\0';
226    
227     return new_string; /* The caller must free() it */
228     }
229    
230     extern void mangle(environment *env){
231     char *new_string;
232    
233     if((env->head)==NULL) {
234     printerr("Too Few Arguments");
235     env->err=1;
236     return;
237     }
238    
239     if(env->head->item->type!=string) {
240     printerr("Bad Argument Type");
241     env->err=2;
242     return;
243     }
244    
245 teddy 1.51 new_string= mangle_str((const char *)(env->head->item->content.ptr));
246 teddy 1.48
247     toss(env);
248     if(env->err) return;
249    
250 masse 1.81 push_cstring(env, new_string);
251 teddy 1.48 }
252    
253 teddy 1.28 /* Push a symbol onto the stack. */
254 teddy 1.35 void push_sym(environment *env, const char *in_string)
255 masse 1.1 {
256 teddy 1.28 value *new_value; /* A new symbol value */
257     /* ...which might point to... */
258 teddy 1.29 symbol **new_symbol; /* (if needed) A new actual symbol */
259 teddy 1.28 /* ...which, if possible, will be bound to... */
260     value *new_fvalue; /* (if needed) A new function value */
261     /* ...which will point to... */
262     void *funcptr; /* A function pointer */
263    
264     static void *handle= NULL; /* Dynamic linker handle */
265 teddy 1.48 const char *dlerr; /* Dynamic linker error */
266     char *mangled; /* Mangled function name */
267 teddy 1.28
268     new_value= malloc(sizeof(value));
269    
270     /* The new value is a symbol */
271     new_value->type= symb;
272     new_value->refcount= 1;
273    
274     /* Look up the symbol name in the hash table */
275 teddy 1.29 new_symbol= hash(env->symbols, in_string);
276     new_value->content.ptr= *new_symbol;
277 teddy 1.28
278 teddy 1.30 if(*new_symbol==NULL) { /* If symbol was undefined */
279 teddy 1.28
280     /* Create a new symbol */
281 teddy 1.30 (*new_symbol)= malloc(sizeof(symbol));
282 teddy 1.29 (*new_symbol)->val= NULL; /* undefined value */
283     (*new_symbol)->next= NULL;
284     (*new_symbol)->id= malloc(strlen(in_string)+1);
285     strcpy((*new_symbol)->id, in_string);
286 masse 1.1
287 teddy 1.28 /* Intern the new symbol in the hash table */
288 teddy 1.29 new_value->content.ptr= *new_symbol;
289 masse 1.1
290 teddy 1.28 /* Try to load the symbol name as an external function, to see if
291     we should bind the symbol to a new function pointer value */
292 masse 1.16 if(handle==NULL) /* If no handle */
293 teddy 1.28 handle= dlopen(NULL, RTLD_LAZY);
294 masse 1.6
295 teddy 1.28 funcptr= dlsym(handle, in_string); /* Get function pointer */
296 teddy 1.48 dlerr=dlerror();
297     if(dlerr != NULL) { /* If no function was found */
298 teddy 1.51 mangled=mangle_str(in_string);
299 teddy 1.48 funcptr= dlsym(handle, mangled); /* try mangling it */
300     free(mangled);
301     dlerr=dlerror();
302     }
303     if(dlerr==NULL) { /* If a function was found */
304 teddy 1.28 new_fvalue= malloc(sizeof(value)); /* Create a new value */
305     new_fvalue->type=func; /* The new value is a function pointer */
306     new_fvalue->content.ptr=funcptr; /* Store function pointer */
307 teddy 1.29 (*new_symbol)->val= new_fvalue; /* Bind the symbol to the new
308     function value */
309 teddy 1.28 new_fvalue->refcount= 1;
310     }
311 masse 1.1 }
312 masse 1.75 push_val(env, new_value);
313 masse 1.1 }
314    
315 masse 1.14 /* Print newline. */
316 masse 1.34 extern void nl()
317 masse 1.8 {
318     printf("\n");
319     }
320 masse 1.1
321 teddy 1.37 /* Gets the type of a value */
322     extern void type(environment *env){
323     int typenum;
324    
325     if((env->head)==NULL) {
326     printerr("Too Few Arguments");
327     env->err=1;
328     return;
329     }
330     typenum=env->head->item->type;
331     toss(env);
332     switch(typenum){
333     case integer:
334     push_sym(env, "integer");
335     break;
336     case string:
337     push_sym(env, "string");
338     break;
339     case symb:
340     push_sym(env, "symbol");
341     break;
342     case func:
343     push_sym(env, "function");
344     break;
345     case list:
346     push_sym(env, "list");
347     break;
348     }
349     }
350    
351 masse 1.14 /* Prints the top element of the stack. */
352 teddy 1.80 void print_h(stackitem *stack_head, int noquote)
353 masse 1.8 {
354 teddy 1.28 switch(stack_head->item->type) {
355     case integer:
356     printf("%d", stack_head->item->content.val);
357 teddy 1.2 break;
358     case string:
359 teddy 1.80 if(noquote)
360     printf("%s", (char*)stack_head->item->content.ptr);
361     else
362     printf("\"%s\"", (char*)stack_head->item->content.ptr);
363 teddy 1.2 break;
364 teddy 1.28 case symb:
365 teddy 1.45 printf("%s", ((symbol *)(stack_head->item->content.ptr))->id);
366 masse 1.6 break;
367 teddy 1.35 case func:
368     printf("#<function %p>", (funcp)(stack_head->item->content.ptr));
369     break;
370     case list:
371 teddy 1.38 /* A list is just a stack, so make stack_head point to it */
372     stack_head=(stackitem *)(stack_head->item->content.ptr);
373     printf("[ ");
374     while(stack_head != NULL) {
375 teddy 1.80 print_h(stack_head, noquote);
376 teddy 1.38 printf(" ");
377     stack_head=stack_head->next;
378     }
379 teddy 1.39 printf("]");
380 teddy 1.35 break;
381 teddy 1.2 }
382 masse 1.1 }
383    
384 teddy 1.28 extern void print_(environment *env) {
385 teddy 1.35 if(env->head==NULL) {
386 teddy 1.36 printerr("Too Few Arguments");
387 teddy 1.35 env->err=1;
388     return;
389     }
390 teddy 1.80 print_h(env->head, 0);
391     nl();
392 teddy 1.28 }
393    
394 masse 1.14 /* Prints the top element of the stack and then discards it. */
395 teddy 1.28 extern void print(environment *env)
396 masse 1.8 {
397 teddy 1.28 print_(env);
398 teddy 1.35 if(env->err) return;
399 teddy 1.28 toss(env);
400 masse 1.8 }
401    
402 teddy 1.80 extern void princ_(environment *env) {
403     if(env->head==NULL) {
404     printerr("Too Few Arguments");
405     env->err=1;
406     return;
407     }
408     print_h(env->head, 1);
409     }
410    
411     /* Prints the top element of the stack and then discards it. */
412     extern void princ(environment *env)
413     {
414     princ_(env);
415     if(env->err) return;
416     toss(env);
417     }
418    
419 masse 1.14 /* Only to be called by function printstack. */
420 teddy 1.28 void print_st(stackitem *stack_head, long counter)
421 masse 1.8 {
422     if(stack_head->next != NULL)
423     print_st(stack_head->next, counter+1);
424     printf("%ld: ", counter);
425 teddy 1.80 print_h(stack_head, 0);
426 masse 1.8 nl();
427     }
428    
429 masse 1.14 /* Prints the stack. */
430 teddy 1.28 extern void printstack(environment *env)
431 masse 1.1 {
432 teddy 1.35 if(env->head == NULL) {
433 teddy 1.80 printf("Stack Empty\n");
434 teddy 1.35 return;
435 masse 1.1 }
436 teddy 1.35 print_st(env->head, 1);
437 masse 1.1 }
438    
439 masse 1.26 /* Swap the two top elements on the stack. */
440 teddy 1.28 extern void swap(environment *env)
441 masse 1.26 {
442 teddy 1.28 stackitem *temp= env->head;
443 masse 1.26
444 masse 1.46 if(env->head==NULL || env->head->next==NULL) {
445 teddy 1.36 printerr("Too Few Arguments");
446 teddy 1.35 env->err=1;
447 masse 1.26 return;
448 teddy 1.28 }
449 masse 1.26
450 teddy 1.28 env->head= env->head->next;
451     temp->next= env->head->next;
452     env->head->next= temp;
453 masse 1.26 }
454    
455 teddy 1.56 /* Rotate the first three elements on the stack. */
456     extern void rot(environment *env)
457     {
458     stackitem *temp= env->head;
459    
460     if(env->head==NULL || env->head->next==NULL
461     || env->head->next->next==NULL) {
462     printerr("Too Few Arguments");
463     env->err=1;
464     return;
465     }
466    
467     env->head= env->head->next->next;
468     temp->next->next= env->head->next;
469     env->head->next= temp;
470     }
471    
472 teddy 1.33 /* Recall a value from a symbol, if bound */
473 teddy 1.31 extern void rcl(environment *env)
474     {
475     value *val;
476    
477     if(env->head == NULL) {
478 teddy 1.36 printerr("Too Few Arguments");
479 teddy 1.35 env->err=1;
480 teddy 1.31 return;
481     }
482    
483     if(env->head->item->type!=symb) {
484 teddy 1.36 printerr("Bad Argument Type");
485     env->err=2;
486 teddy 1.31 return;
487     }
488 teddy 1.35
489 teddy 1.31 val=((symbol *)(env->head->item->content.ptr))->val;
490 teddy 1.33 if(val == NULL){
491 teddy 1.36 printerr("Unbound Variable");
492     env->err=3;
493 teddy 1.33 return;
494     }
495 teddy 1.31 toss(env); /* toss the symbol */
496 teddy 1.35 if(env->err) return;
497 masse 1.72 push_val(env, val); /* Return its bound value */
498 teddy 1.31 }
499 masse 1.26
500 teddy 1.29 /* If the top element is a symbol, determine if it's bound to a
501     function value, and if it is, toss the symbol and execute the
502     function. */
503 teddy 1.28 extern void eval(environment *env)
504 masse 1.1 {
505     funcp in_func;
506 masse 1.44 value* temp_val;
507     stackitem* iterator;
508    
509 teddy 1.80 eval_start:
510    
511 teddy 1.29 if(env->head==NULL) {
512 teddy 1.36 printerr("Too Few Arguments");
513 teddy 1.35 env->err=1;
514 masse 1.1 return;
515 masse 1.17 }
516 masse 1.1
517 masse 1.46 switch(env->head->item->type) {
518     /* if it's a symbol */
519     case symb:
520 teddy 1.35 rcl(env); /* get its contents */
521     if(env->err) return;
522     if(env->head->item->type!=symb){ /* don't recurse symbols */
523 teddy 1.64 goto eval_start;
524 teddy 1.29 }
525 teddy 1.59 return;
526 masse 1.22
527 masse 1.46 /* If it's a lone function value, run it */
528     case func:
529 teddy 1.29 in_func= (funcp)(env->head->item->content.ptr);
530 teddy 1.28 toss(env);
531 teddy 1.35 if(env->err) return;
532 teddy 1.59 return (*in_func)(env);
533 masse 1.44
534 masse 1.46 /* If it's a list */
535     case list:
536 masse 1.44 temp_val= env->head->item;
537     env->head->item->refcount++;
538     toss(env);
539     if(env->err) return;
540     iterator= (stackitem*)temp_val->content.ptr;
541 teddy 1.59 while(iterator!=NULL) {
542 masse 1.72 push_val(env, iterator->item);
543 masse 1.44 if(env->head->item->type==symb
544     && strcmp(";", ((symbol*)(env->head->item->content.ptr))->id)==0) {
545     toss(env);
546     if(env->err) return;
547 teddy 1.59 if(iterator->next == NULL){
548     free_val(temp_val);
549 teddy 1.64 goto eval_start;
550 teddy 1.59 }
551 masse 1.44 eval(env);
552 masse 1.46 if(env->err) return;
553 masse 1.44 }
554     iterator= iterator->next;
555     }
556     free_val(temp_val);
557 teddy 1.59 return;
558 masse 1.46
559 masse 1.71 default:
560 teddy 1.59 return;
561 masse 1.26 }
562 masse 1.1 }
563    
564 masse 1.44 /* Reverse (flip) a list */
565 teddy 1.40 extern void rev(environment *env){
566 teddy 1.78 stackitem *old_head, *new_head, *item;
567 teddy 1.40
568     if((env->head)==NULL) {
569     printerr("Too Few Arguments");
570     env->err=1;
571     return;
572     }
573    
574     if(env->head->item->type!=list) {
575     printerr("Bad Argument Type");
576     env->err=2;
577     return;
578     }
579    
580 teddy 1.78 old_head=(stackitem *)(env->head->item->content.ptr);
581     new_head=NULL;
582     while(old_head != NULL){
583     item=old_head;
584     old_head=old_head->next;
585     item->next=new_head;
586     new_head=item;
587 teddy 1.40 }
588 teddy 1.78 env->head->item->content.ptr=new_head;
589 teddy 1.40 }
590    
591 masse 1.19 /* Make a list. */
592 teddy 1.28 extern void pack(environment *env)
593 masse 1.19 {
594 teddy 1.28 stackitem *iterator, *temp;
595     value *pack;
596 masse 1.19
597 teddy 1.28 iterator= env->head;
598 masse 1.19
599 masse 1.73 if(iterator==NULL
600     || (iterator->item->type==symb
601     && ((symbol*)(iterator->item->content.ptr))->id[0]=='[')) {
602 masse 1.24 temp= NULL;
603 teddy 1.28 toss(env);
604 masse 1.24 } else {
605     /* Search for first delimiter */
606 teddy 1.28 while(iterator->next!=NULL
607 masse 1.73 && (iterator->next->item->type!=symb
608     || ((symbol*)(iterator->next->item->content.ptr))->id[0]!='['))
609 masse 1.24 iterator= iterator->next;
610    
611     /* Extract list */
612 teddy 1.28 temp= env->head;
613     env->head= iterator->next;
614 masse 1.24 iterator->next= NULL;
615    
616 teddy 1.28 if(env->head!=NULL)
617     toss(env);
618 masse 1.24 }
619 masse 1.19
620     /* Push list */
621 teddy 1.28 pack= malloc(sizeof(value));
622 masse 1.19 pack->type= list;
623     pack->content.ptr= temp;
624 masse 1.83 pack->refcount= 0;
625 teddy 1.28
626 masse 1.74 push_val(env, pack);
627 teddy 1.40 rev(env);
628 masse 1.19 }
629    
630 masse 1.16 /* Relocate elements of the list on the stack. */
631 teddy 1.28 extern void expand(environment *env)
632 masse 1.1 {
633 masse 1.8 stackitem *temp, *new_head;
634    
635 masse 1.16 /* Is top element a list? */
636 teddy 1.36 if(env->head==NULL) {
637     printerr("Too Few Arguments");
638 teddy 1.35 env->err=1;
639 masse 1.8 return;
640 masse 1.17 }
641 teddy 1.36 if(env->head->item->type!=list) {
642     printerr("Bad Argument Type");
643     env->err=2;
644     return;
645     }
646 masse 1.43
647     rev(env);
648    
649     if(env->err)
650     return;
651 masse 1.8
652 masse 1.16 /* The first list element is the new stack head */
653 teddy 1.28 new_head= temp= env->head->item->content.ptr;
654 masse 1.8
655 teddy 1.28 env->head->item->refcount++;
656     toss(env);
657 masse 1.24
658 teddy 1.28 /* Find the end of the list */
659 masse 1.8 while(temp->next!=NULL)
660     temp= temp->next;
661    
662 teddy 1.28 /* Connect the tail of the list with the old stack head */
663     temp->next= env->head;
664     env->head= new_head; /* ...and voila! */
665    
666 teddy 1.5 }
667 masse 1.11
668 masse 1.14 /* Compares two elements by reference. */
669 teddy 1.28 extern void eq(environment *env)
670 masse 1.11 {
671     void *left, *right;
672     int result;
673    
674 teddy 1.28 if((env->head)==NULL || env->head->next==NULL) {
675 teddy 1.36 printerr("Too Few Arguments");
676 teddy 1.35 env->err=1;
677 masse 1.11 return;
678 masse 1.17 }
679 masse 1.11
680 teddy 1.28 left= env->head->item->content.ptr;
681     swap(env);
682     right= env->head->item->content.ptr;
683 masse 1.11 result= (left==right);
684    
685 teddy 1.28 toss(env); toss(env);
686 masse 1.72 push_int(env, result);
687 masse 1.11 }
688    
689 masse 1.14 /* Negates the top element on the stack. */
690 teddy 1.28 extern void not(environment *env)
691 masse 1.11 {
692 teddy 1.28 int val;
693 masse 1.11
694 teddy 1.36 if((env->head)==NULL) {
695     printerr("Too Few Arguments");
696 teddy 1.35 env->err=1;
697 masse 1.11 return;
698 masse 1.17 }
699 masse 1.11
700 teddy 1.36 if(env->head->item->type!=integer) {
701     printerr("Bad Argument Type");
702     env->err=2;
703     return;
704     }
705    
706 teddy 1.28 val= env->head->item->content.val;
707     toss(env);
708 masse 1.72 push_int(env, !val);
709 masse 1.11 }
710    
711 masse 1.14 /* Compares the two top elements on the stack and return 0 if they're the
712     same. */
713 teddy 1.28 extern void neq(environment *env)
714 masse 1.11 {
715 teddy 1.28 eq(env);
716     not(env);
717 masse 1.11 }
718 masse 1.12
719 masse 1.14 /* Give a symbol some content. */
720 teddy 1.28 extern void def(environment *env)
721 masse 1.12 {
722 teddy 1.28 symbol *sym;
723 masse 1.12
724 teddy 1.28 /* Needs two values on the stack, the top one must be a symbol */
725 teddy 1.36 if(env->head==NULL || env->head->next==NULL) {
726     printerr("Too Few Arguments");
727 teddy 1.35 env->err=1;
728 masse 1.12 return;
729 masse 1.17 }
730 masse 1.12
731 teddy 1.36 if(env->head->item->type!=symb) {
732     printerr("Bad Argument Type");
733     env->err=2;
734     return;
735     }
736    
737 teddy 1.28 /* long names are a pain */
738     sym=env->head->item->content.ptr;
739    
740     /* if the symbol was bound to something else, throw it away */
741     if(sym->val != NULL)
742     free_val(sym->val);
743    
744     /* Bind the symbol to the value */
745     sym->val= env->head->next->item;
746     sym->val->refcount++; /* Increase the reference counter */
747 masse 1.12
748 teddy 1.28 toss(env); toss(env);
749 masse 1.12 }
750 masse 1.10
751 teddy 1.77 extern void clear(environment *);
752     void forget_sym(symbol **);
753 masse 1.83 extern void words(environment *);
754 teddy 1.77
755 masse 1.14 /* Quit stack. */
756 teddy 1.28 extern void quit(environment *env)
757 teddy 1.5 {
758 teddy 1.77 long i;
759    
760     clear(env);
761 masse 1.83
762 teddy 1.77 if (env->err) return;
763     for(i= 0; i<HASHTBLSIZE; i++) {
764 masse 1.79 while(env->symbols[i]!= NULL) {
765 teddy 1.77 forget_sym(&(env->symbols[i]));
766     }
767 teddy 1.80 env->symbols[i]= NULL;
768 teddy 1.77 }
769 masse 1.83
770     if(env->free_string!=NULL)
771     free(env->free_string);
772    
773     muntrace();
774    
775 teddy 1.5 exit(EXIT_SUCCESS);
776 masse 1.24 }
777    
778     /* Clear stack */
779 teddy 1.28 extern void clear(environment *env)
780 masse 1.24 {
781 teddy 1.28 while(env->head!=NULL)
782     toss(env);
783 masse 1.1 }
784    
785 teddy 1.33 /* List all defined words */
786 masse 1.32 extern void words(environment *env)
787     {
788     symbol *temp;
789     int i;
790    
791     for(i= 0; i<HASHTBLSIZE; i++) {
792     temp= env->symbols[i];
793     while(temp!=NULL) {
794     printf("%s\n", temp->id);
795     temp= temp->next;
796     }
797     }
798     }
799 masse 1.34
800 teddy 1.77 /* Internal forget function */
801     void forget_sym(symbol **hash_entry) {
802     symbol *temp;
803    
804     temp= *hash_entry;
805     *hash_entry= (*hash_entry)->next;
806    
807     if(temp->val!=NULL) {
808     free_val(temp->val);
809     }
810     free(temp->id);
811     free(temp);
812     }
813    
814 masse 1.34 /* Forgets a symbol (remove it from the hash table) */
815     extern void forget(environment *env)
816     {
817     char* sym_id;
818     stackitem *stack_head= env->head;
819    
820 teddy 1.36 if(stack_head==NULL) {
821     printerr("Too Few Arguments");
822     env->err=1;
823     return;
824     }
825    
826     if(stack_head->item->type!=symb) {
827     printerr("Bad Argument Type");
828     env->err=2;
829 masse 1.34 return;
830     }
831    
832     sym_id= ((symbol*)(stack_head->item->content.ptr))->id;
833     toss(env);
834    
835 teddy 1.77 return forget_sym(hash(env->symbols, sym_id));
836 teddy 1.36 }
837    
838     /* Returns the current error number to the stack */
839     extern void errn(environment *env){
840 masse 1.72 push_int(env, env->err);
841 teddy 1.36 }
842 masse 1.32
843 teddy 1.84 extern void sx_72656164(environment*);
844 masse 1.69
845 teddy 1.84 int main(int argc, char **argv)
846 masse 1.1 {
847 teddy 1.28 environment myenv;
848 masse 1.1
849 teddy 1.84 int c; /* getopt option character */
850    
851 masse 1.83 mtrace();
852    
853 teddy 1.28 init_env(&myenv);
854 masse 1.1
855 teddy 1.84 myenv.interactive = isatty(STDIN_FILENO) && isatty(STDOUT_FILENO);
856    
857     while ((c = getopt (argc, argv, "i")) != -1)
858     switch (c)
859     {
860     case 'i':
861     myenv.interactive = 1;
862     break;
863     case '?':
864     fprintf (stderr,
865     "Unknown option character `\\x%x'.\n",
866     optopt);
867     return EX_USAGE;
868     default:
869     abort ();
870     }
871    
872     if (optind < argc) {
873     myenv.interactive = 0;
874     myenv.inputstream= fopen(argv[optind], "r");
875     if(myenv.inputstream== NULL) {
876     perror(argv[0]);
877     exit (EX_NOINPUT);
878     }
879     }
880    
881 masse 1.69 while(1) {
882 teddy 1.85 if(myenv.in_string==NULL) {
883     if (myenv.interactive) {
884     if(myenv.err) {
885     printf("(error %d)\n", myenv.err);
886     }
887     nl();
888     printstack(&myenv);
889     printf("> ");
890     }
891     myenv.err=0;
892 teddy 1.80 }
893 teddy 1.84 sx_72656164(&myenv);
894 teddy 1.85 if (myenv.err==4) {
895     return EX_NOINPUT;
896 masse 1.71 } else if(myenv.head!=NULL
897     && myenv.head->item->type==symb
898 masse 1.69 && ((symbol*)(myenv.head->item->content.ptr))->id[0]==';') {
899     toss(&myenv); /* No error check in main */
900     eval(&myenv);
901 teddy 1.35 }
902 masse 1.1 }
903 teddy 1.41 quit(&myenv);
904 teddy 1.42 return EXIT_FAILURE;
905 teddy 1.48 }
906    
907 teddy 1.85 /* "+" */
908 teddy 1.48 extern void sx_2b(environment *env) {
909     int a, b;
910 masse 1.49 size_t len;
911     char* new_string;
912     value *a_val, *b_val;
913 teddy 1.48
914     if((env->head)==NULL || env->head->next==NULL) {
915     printerr("Too Few Arguments");
916     env->err=1;
917 masse 1.49 return;
918     }
919    
920     if(env->head->item->type==string
921     && env->head->next->item->type==string) {
922     a_val= env->head->item;
923     b_val= env->head->next->item;
924     a_val->refcount++;
925     b_val->refcount++;
926     toss(env); if(env->err) return;
927     toss(env); if(env->err) return;
928     len= strlen(a_val->content.ptr)+strlen(b_val->content.ptr)+1;
929     new_string= malloc(len);
930     strcpy(new_string, b_val->content.ptr);
931     strcat(new_string, a_val->content.ptr);
932     free_val(a_val); free_val(b_val);
933 masse 1.72 push_cstring(env, new_string);
934 masse 1.49 free(new_string);
935 teddy 1.48 return;
936     }
937    
938     if(env->head->item->type!=integer
939     || env->head->next->item->type!=integer) {
940     printerr("Bad Argument Type");
941     env->err=2;
942     return;
943     }
944     a=env->head->item->content.val;
945     toss(env);
946     if(env->err) return;
947 teddy 1.62 if(env->head->item->refcount == 1)
948     env->head->item->content.val += a;
949     else {
950     b=env->head->item->content.val;
951     toss(env);
952     if(env->err) return;
953 masse 1.72 push_int(env, a+b);
954 teddy 1.62 }
955 masse 1.1 }
956 teddy 1.55
957 teddy 1.85 /* "-" */
958 teddy 1.60 extern void sx_2d(environment *env) {
959 teddy 1.62 int a, b;
960 teddy 1.60
961     if((env->head)==NULL || env->head->next==NULL) {
962     printerr("Too Few Arguments");
963     env->err=1;
964     return;
965     }
966    
967     if(env->head->item->type!=integer
968     || env->head->next->item->type!=integer) {
969     printerr("Bad Argument Type");
970     env->err=2;
971     return;
972     }
973     a=env->head->item->content.val;
974     toss(env);
975     if(env->err) return;
976 teddy 1.62 if(env->head->item->refcount == 1)
977     env->head->item->content.val -= a;
978     else {
979     b=env->head->item->content.val;
980     toss(env);
981     if(env->err) return;
982 masse 1.72 push_int(env, b-a);
983 teddy 1.62 }
984 teddy 1.60 }
985    
986 teddy 1.85 /* ">" */
987 teddy 1.61 extern void sx_3e(environment *env) {
988 teddy 1.62 int a, b;
989 teddy 1.61
990     if((env->head)==NULL || env->head->next==NULL) {
991     printerr("Too Few Arguments");
992     env->err=1;
993     return;
994     }
995    
996     if(env->head->item->type!=integer
997     || env->head->next->item->type!=integer) {
998     printerr("Bad Argument Type");
999     env->err=2;
1000     return;
1001     }
1002     a=env->head->item->content.val;
1003     toss(env);
1004     if(env->err) return;
1005 teddy 1.62 if(env->head->item->refcount == 1)
1006     env->head->item->content.val = (env->head->item->content.val > a);
1007     else {
1008     b=env->head->item->content.val;
1009     toss(env);
1010     if(env->err) return;
1011 masse 1.72 push_int(env, b>a);
1012 teddy 1.62 }
1013 teddy 1.61 }
1014    
1015 teddy 1.55 /* Return copy of a value */
1016     value *copy_val(value *old_value){
1017     stackitem *old_item, *new_item, *prev_item;
1018    
1019     value *new_value=malloc(sizeof(value));
1020    
1021     new_value->type=old_value->type;
1022     new_value->refcount=0; /* This is increased if/when this
1023     value is referenced somewhere, like
1024     in a stack item or a variable */
1025     switch(old_value->type){
1026     case integer:
1027     new_value->content.val=old_value->content.val;
1028     break;
1029     case string:
1030     (char *)(new_value->content.ptr)
1031     = strdup((char *)(old_value->content.ptr));
1032     break;
1033     case func:
1034     case symb:
1035     new_value->content.ptr=old_value->content.ptr;
1036     break;
1037     case list:
1038     new_value->content.ptr=NULL;
1039    
1040     prev_item=NULL;
1041     old_item=(stackitem *)(old_value->content.ptr);
1042    
1043     while(old_item != NULL) { /* While list is not empty */
1044     new_item= malloc(sizeof(stackitem));
1045     new_item->item=copy_val(old_item->item); /* recurse */
1046     new_item->next=NULL;
1047     if(prev_item != NULL) /* If this wasn't the first item */
1048     prev_item->next=new_item; /* point the previous item to the
1049     new item */
1050     else
1051     new_value->content.ptr=new_item;
1052     old_item=old_item->next;
1053     prev_item=new_item;
1054     }
1055     break;
1056     }
1057     return new_value;
1058     }
1059    
1060 teddy 1.84 /* "dup"; duplicates an item on the stack */
1061     extern void sx_647570(environment *env) {
1062 teddy 1.55 if((env->head)==NULL) {
1063     printerr("Too Few Arguments");
1064     env->err=1;
1065     return;
1066     }
1067 masse 1.72 push_val(env, copy_val(env->head->item));
1068 teddy 1.55 }
1069 teddy 1.56
1070 teddy 1.59 /* "if", If-Then */
1071 masse 1.57 extern void sx_6966(environment *env) {
1072 teddy 1.56
1073     int truth;
1074    
1075     if((env->head)==NULL || env->head->next==NULL) {
1076     printerr("Too Few Arguments");
1077     env->err=1;
1078     return;
1079     }
1080    
1081     if(env->head->next->item->type != integer) {
1082     printerr("Bad Argument Type");
1083     env->err=2;
1084     return;
1085     }
1086    
1087     swap(env);
1088     if(env->err) return;
1089    
1090     truth=env->head->item->content.val;
1091    
1092     toss(env);
1093     if(env->err) return;
1094    
1095     if(truth)
1096     eval(env);
1097     else
1098     toss(env);
1099     }
1100    
1101     /* If-Then-Else */
1102 masse 1.57 extern void ifelse(environment *env) {
1103 teddy 1.56
1104     int truth;
1105    
1106     if((env->head)==NULL || env->head->next==NULL
1107     || env->head->next->next==NULL) {
1108     printerr("Too Few Arguments");
1109     env->err=1;
1110     return;
1111     }
1112    
1113     if(env->head->next->next->item->type != integer) {
1114     printerr("Bad Argument Type");
1115     env->err=2;
1116     return;
1117     }
1118    
1119     rot(env);
1120     if(env->err) return;
1121    
1122     truth=env->head->item->content.val;
1123    
1124     toss(env);
1125     if(env->err) return;
1126    
1127     if(!truth)
1128     swap(env);
1129     if(env->err) return;
1130    
1131     toss(env);
1132     if(env->err) return;
1133    
1134     eval(env);
1135 masse 1.58 }
1136    
1137 teddy 1.85 /* "while" */
1138 masse 1.58 extern void sx_7768696c65(environment *env) {
1139    
1140     int truth;
1141 masse 1.63 value *loop, *test;
1142 masse 1.58
1143     if((env->head)==NULL || env->head->next==NULL) {
1144     printerr("Too Few Arguments");
1145     env->err=1;
1146     return;
1147     }
1148    
1149 masse 1.63 loop= env->head->item;
1150     loop->refcount++;
1151     toss(env); if(env->err) return;
1152    
1153     test= env->head->item;
1154     test->refcount++;
1155     toss(env); if(env->err) return;
1156    
1157 masse 1.58 do {
1158 masse 1.72 push_val(env, test);
1159 masse 1.63 eval(env);
1160 masse 1.58
1161     if(env->head->item->type != integer) {
1162     printerr("Bad Argument Type");
1163     env->err=2;
1164     return;
1165     }
1166    
1167     truth= env->head->item->content.val;
1168     toss(env); if(env->err) return;
1169    
1170     if(truth) {
1171 masse 1.72 push_val(env, loop);
1172 masse 1.58 eval(env);
1173     } else {
1174     toss(env);
1175     }
1176    
1177     } while(truth);
1178 masse 1.63
1179     free_val(test);
1180     free_val(loop);
1181 teddy 1.56 }
1182 masse 1.65
1183 teddy 1.84 /* "for"; For-loop */
1184 masse 1.65 extern void sx_666f72(environment *env) {
1185    
1186     value *loop, *foo;
1187     stackitem *iterator;
1188    
1189     if((env->head)==NULL || env->head->next==NULL) {
1190     printerr("Too Few Arguments");
1191     env->err=1;
1192     return;
1193     }
1194    
1195     if(env->head->next->item->type != list) {
1196     printerr("Bad Argument Type");
1197     env->err=2;
1198     return;
1199     }
1200    
1201     loop= env->head->item;
1202     loop->refcount++;
1203     toss(env); if(env->err) return;
1204    
1205     foo= env->head->item;
1206     foo->refcount++;
1207     toss(env); if(env->err) return;
1208    
1209     iterator= foo->content.ptr;
1210    
1211     while(iterator!=NULL) {
1212 masse 1.72 push_val(env, iterator->item);
1213     push_val(env, loop);
1214 masse 1.65 eval(env); if(env->err) return;
1215     iterator= iterator->next;
1216     }
1217    
1218     free_val(loop);
1219     free_val(foo);
1220     }
1221 masse 1.66
1222 teddy 1.85 /* "to" */
1223 masse 1.66 extern void to(environment *env) {
1224     int i, start, ending;
1225 masse 1.74 stackitem *temp_head;
1226     value *temp_val;
1227 masse 1.66
1228     if((env->head)==NULL || env->head->next==NULL) {
1229     printerr("Too Few Arguments");
1230     env->err=1;
1231     return;
1232     }
1233    
1234     if(env->head->item->type!=integer
1235     || env->head->next->item->type!=integer) {
1236     printerr("Bad Argument Type");
1237     env->err=2;
1238     return;
1239     }
1240    
1241     ending= env->head->item->content.val;
1242     toss(env); if(env->err) return;
1243     start= env->head->item->content.val;
1244     toss(env); if(env->err) return;
1245    
1246 masse 1.74 temp_head= env->head;
1247     env->head= NULL;
1248 masse 1.66
1249 masse 1.67 if(ending>=start) {
1250 masse 1.74 for(i= ending; i>=start; i--)
1251 masse 1.72 push_int(env, i);
1252 masse 1.67 } else {
1253 masse 1.74 for(i= ending; i<=start; i++)
1254 masse 1.72 push_int(env, i);
1255 masse 1.67 }
1256 masse 1.66
1257 masse 1.74 temp_val= malloc(sizeof(value));
1258     temp_val->content.ptr= env->head;
1259 masse 1.83 temp_val->refcount= 0;
1260 masse 1.74 temp_val->type= list;
1261     env->head= temp_head;
1262     push_val(env, temp_val);
1263 masse 1.66 }
1264 masse 1.68
1265     /* Read a string */
1266     extern void readline(environment *env) {
1267     char in_string[101];
1268    
1269 teddy 1.84 if(fgets(in_string, 100, env->inputstream)==NULL)
1270     push_cstring(env, "");
1271     else
1272     push_cstring(env, in_string);
1273 masse 1.68 }
1274    
1275 teddy 1.84 /* "read"; Read a value and place on stack */
1276     extern void sx_72656164(environment *env) {
1277 teddy 1.78 const char symbform[]= "%[a-zA-Z0-9!$%*+./:<=>?@^_~-]%n";
1278     const char strform[]= "\"%[^\"]\"%n";
1279     const char intform[]= "%i%n";
1280     const char blankform[]= "%*[ \t]%n";
1281     const char ebrackform[]= "%*1[]]%n";
1282     const char semicform[]= "%*1[;]%n";
1283     const char bbrackform[]= "%*1[[]%n";
1284 masse 1.68
1285 teddy 1.78 int itemp, readlength= -1;
1286 masse 1.68 static int depth= 0;
1287 masse 1.83 char *match;
1288 masse 1.68 size_t inlength;
1289    
1290 masse 1.70 if(env->in_string==NULL) {
1291 teddy 1.84 if(depth > 0 && env->interactive) {
1292 teddy 1.80 printf("]> ");
1293     }
1294 masse 1.68 readline(env); if(env->err) return;
1295 teddy 1.84
1296     if(((char *)(env->head->item->content.ptr))[0]=='\0'){
1297 teddy 1.85 env->err= 4; /* "" means EOF */
1298 teddy 1.84 return;
1299     }
1300 masse 1.68
1301 masse 1.70 env->in_string= malloc(strlen(env->head->item->content.ptr)+1);
1302 teddy 1.78 env->free_string= env->in_string; /* Save the original pointer */
1303 masse 1.70 strcpy(env->in_string, env->head->item->content.ptr);
1304 masse 1.68 toss(env); if(env->err) return;
1305     }
1306    
1307 masse 1.70 inlength= strlen(env->in_string)+1;
1308 masse 1.68 match= malloc(inlength);
1309    
1310 teddy 1.78 if(sscanf(env->in_string, blankform, &readlength)!=EOF
1311     && readlength != -1) {
1312 masse 1.71 ;
1313 teddy 1.78 } else if(sscanf(env->in_string, intform, &itemp, &readlength) != EOF
1314     && readlength != -1) {
1315 masse 1.72 push_int(env, itemp);
1316 teddy 1.78 } else if(sscanf(env->in_string, strform, match, &readlength) != EOF
1317     && readlength != -1) {
1318 masse 1.72 push_cstring(env, match);
1319 teddy 1.78 } else if(sscanf(env->in_string, symbform, match, &readlength) != EOF
1320     && readlength != -1) {
1321 masse 1.68 push_sym(env, match);
1322 teddy 1.78 } else if(sscanf(env->in_string, ebrackform, &readlength) != EOF
1323     && readlength != -1) {
1324 masse 1.68 pack(env); if(env->err) return;
1325 teddy 1.78 if(depth != 0) depth--;
1326     } else if(sscanf(env->in_string, semicform, &readlength) != EOF
1327     && readlength != -1) {
1328 masse 1.68 push_sym(env, ";");
1329 teddy 1.78 } else if(sscanf(env->in_string, bbrackform, &readlength) != EOF
1330     && readlength != -1) {
1331 masse 1.68 push_sym(env, "[");
1332     depth++;
1333     } else {
1334 teddy 1.78 free(env->free_string);
1335     env->in_string = env->free_string = NULL;
1336     }
1337     if ( env->in_string != NULL) {
1338     env->in_string += readlength;
1339 masse 1.68 }
1340 masse 1.83
1341     free(match);
1342 masse 1.68
1343 masse 1.71 if(depth)
1344 teddy 1.84 return sx_72656164(env);
1345 masse 1.68 }

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