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1// SPDX-License-Identifier: GPL-2.0
2/*
3 * Copyright (C) 2002 Roman Zippel <zippel@linux-m68k.org>
4 */
5
6#include <ctype.h>
7#include <stdlib.h>
8#include <string.h>
9#include <regex.h>
10#include <sys/utsname.h>
11
12#include "lkc.h"
13
14struct symbol symbol_yes = {
15 .name = "y",
16 .curr = { "y", yes },
17 .flags = SYMBOL_CONST|SYMBOL_VALID,
18}, symbol_mod = {
19 .name = "m",
20 .curr = { "m", mod },
21 .flags = SYMBOL_CONST|SYMBOL_VALID,
22}, symbol_no = {
23 .name = "n",
24 .curr = { "n", no },
25 .flags = SYMBOL_CONST|SYMBOL_VALID,
26}, symbol_empty = {
27 .name = "",
28 .curr = { "", no },
29 .flags = SYMBOL_VALID,
30};
31
32struct symbol *sym_defconfig_list;
33struct symbol *modules_sym;
34tristate modules_val;
35
36enum symbol_type sym_get_type(struct symbol *sym)
37{
38 enum symbol_type type = sym->type;
39
40 if (type == S_TRISTATE) {
41 if (sym_is_choice_value(sym) && sym->visible == yes)
42 type = S_BOOLEAN;
43 else if (modules_val == no)
44 type = S_BOOLEAN;
45 }
46 return type;
47}
48
49const char *sym_type_name(enum symbol_type type)
50{
51 switch (type) {
52 case S_BOOLEAN:
53 return "bool";
54 case S_TRISTATE:
55 return "tristate";
56 case S_INT:
57 return "integer";
58 case S_HEX:
59 return "hex";
60 case S_STRING:
61 return "string";
62 case S_UNKNOWN:
63 return "unknown";
64 }
65 return "???";
66}
67
68struct property *sym_get_choice_prop(struct symbol *sym)
69{
70 struct property *prop;
71
72 for_all_choices(sym, prop)
73 return prop;
74 return NULL;
75}
76
77static struct property *sym_get_default_prop(struct symbol *sym)
78{
79 struct property *prop;
80
81 for_all_defaults(sym, prop) {
82 prop->visible.tri = expr_calc_value(prop->visible.expr);
83 if (prop->visible.tri != no)
84 return prop;
85 }
86 return NULL;
87}
88
89struct property *sym_get_range_prop(struct symbol *sym)
90{
91 struct property *prop;
92
93 for_all_properties(sym, prop, P_RANGE) {
94 prop->visible.tri = expr_calc_value(prop->visible.expr);
95 if (prop->visible.tri != no)
96 return prop;
97 }
98 return NULL;
99}
100
101static long long sym_get_range_val(struct symbol *sym, int base)
102{
103 sym_calc_value(sym);
104 switch (sym->type) {
105 case S_INT:
106 base = 10;
107 break;
108 case S_HEX:
109 base = 16;
110 break;
111 default:
112 break;
113 }
114 return strtoll(sym->curr.val, NULL, base);
115}
116
117static void sym_validate_range(struct symbol *sym)
118{
119 struct property *prop;
120 int base;
121 long long val, val2;
122 char str[64];
123
124 switch (sym->type) {
125 case S_INT:
126 base = 10;
127 break;
128 case S_HEX:
129 base = 16;
130 break;
131 default:
132 return;
133 }
134 prop = sym_get_range_prop(sym);
135 if (!prop)
136 return;
137 val = strtoll(sym->curr.val, NULL, base);
138 val2 = sym_get_range_val(prop->expr->left.sym, base);
139 if (val >= val2) {
140 val2 = sym_get_range_val(prop->expr->right.sym, base);
141 if (val <= val2)
142 return;
143 }
144 if (sym->type == S_INT)
145 sprintf(str, "%lld", val2);
146 else
147 sprintf(str, "0x%llx", val2);
148 sym->curr.val = xstrdup(str);
149}
150
151static void sym_set_changed(struct symbol *sym)
152{
153 struct property *prop;
154
155 sym->flags |= SYMBOL_CHANGED;
156 for (prop = sym->prop; prop; prop = prop->next) {
157 if (prop->menu)
158 prop->menu->flags |= MENU_CHANGED;
159 }
160}
161
162static void sym_set_all_changed(void)
163{
164 struct symbol *sym;
165 int i;
166
167 for_all_symbols(i, sym)
168 sym_set_changed(sym);
169}
170
171static void sym_calc_visibility(struct symbol *sym)
172{
173 struct property *prop;
174 struct symbol *choice_sym = NULL;
175 tristate tri;
176
177 /* any prompt visible? */
178 tri = no;
179
180 if (sym_is_choice_value(sym))
181 choice_sym = prop_get_symbol(sym_get_choice_prop(sym));
182
183 for_all_prompts(sym, prop) {
184 prop->visible.tri = expr_calc_value(prop->visible.expr);
185 /*
186 * Tristate choice_values with visibility 'mod' are
187 * not visible if the corresponding choice's value is
188 * 'yes'.
189 */
190 if (choice_sym && sym->type == S_TRISTATE &&
191 prop->visible.tri == mod && choice_sym->curr.tri == yes)
192 prop->visible.tri = no;
193
194 tri = EXPR_OR(tri, prop->visible.tri);
195 }
196 if (tri == mod && (sym->type != S_TRISTATE || modules_val == no))
197 tri = yes;
198 if (sym->visible != tri) {
199 sym->visible = tri;
200 sym_set_changed(sym);
201 }
202 if (sym_is_choice_value(sym))
203 return;
204 /* defaulting to "yes" if no explicit "depends on" are given */
205 tri = yes;
206 if (sym->dir_dep.expr)
207 tri = expr_calc_value(sym->dir_dep.expr);
208 if (tri == mod && sym_get_type(sym) == S_BOOLEAN)
209 tri = yes;
210 if (sym->dir_dep.tri != tri) {
211 sym->dir_dep.tri = tri;
212 sym_set_changed(sym);
213 }
214 tri = no;
215 if (sym->rev_dep.expr)
216 tri = expr_calc_value(sym->rev_dep.expr);
217 if (tri == mod && sym_get_type(sym) == S_BOOLEAN)
218 tri = yes;
219 if (sym->rev_dep.tri != tri) {
220 sym->rev_dep.tri = tri;
221 sym_set_changed(sym);
222 }
223 tri = no;
224 if (sym->implied.expr && sym->dir_dep.tri != no)
225 tri = expr_calc_value(sym->implied.expr);
226 if (tri == mod && sym_get_type(sym) == S_BOOLEAN)
227 tri = yes;
228 if (sym->implied.tri != tri) {
229 sym->implied.tri = tri;
230 sym_set_changed(sym);
231 }
232}
233
234/*
235 * Find the default symbol for a choice.
236 * First try the default values for the choice symbol
237 * Next locate the first visible choice value
238 * Return NULL if none was found
239 */
240struct symbol *sym_choice_default(struct symbol *sym)
241{
242 struct symbol *def_sym;
243 struct property *prop;
244 struct expr *e;
245
246 /* any of the defaults visible? */
247 for_all_defaults(sym, prop) {
248 prop->visible.tri = expr_calc_value(prop->visible.expr);
249 if (prop->visible.tri == no)
250 continue;
251 def_sym = prop_get_symbol(prop);
252 if (def_sym->visible != no)
253 return def_sym;
254 }
255
256 /* just get the first visible value */
257 prop = sym_get_choice_prop(sym);
258 expr_list_for_each_sym(prop->expr, e, def_sym)
259 if (def_sym->visible != no)
260 return def_sym;
261
262 /* failed to locate any defaults */
263 return NULL;
264}
265
266static struct symbol *sym_calc_choice(struct symbol *sym)
267{
268 struct symbol *def_sym;
269 struct property *prop;
270 struct expr *e;
271 int flags;
272
273 /* first calculate all choice values' visibilities */
274 flags = sym->flags;
275 prop = sym_get_choice_prop(sym);
276 expr_list_for_each_sym(prop->expr, e, def_sym) {
277 sym_calc_visibility(def_sym);
278 if (def_sym->visible != no)
279 flags &= def_sym->flags;
280 }
281
282 sym->flags &= flags | ~SYMBOL_DEF_USER;
283
284 /* is the user choice visible? */
285 def_sym = sym->def[S_DEF_USER].val;
286 if (def_sym && def_sym->visible != no)
287 return def_sym;
288
289 def_sym = sym_choice_default(sym);
290
291 if (def_sym == NULL)
292 /* no choice? reset tristate value */
293 sym->curr.tri = no;
294
295 return def_sym;
296}
297
298static void sym_warn_unmet_dep(struct symbol *sym)
299{
300 struct gstr gs = str_new();
301
302 str_printf(&gs,
303 "\nWARNING: unmet direct dependencies detected for %s\n",
304 sym->name);
305 str_printf(&gs,
306 " Depends on [%c]: ",
307 sym->dir_dep.tri == mod ? 'm' : 'n');
308 expr_gstr_print(sym->dir_dep.expr, &gs);
309 str_printf(&gs, "\n");
310
311 expr_gstr_print_revdep(sym->rev_dep.expr, &gs, yes,
312 " Selected by [y]:\n");
313 expr_gstr_print_revdep(sym->rev_dep.expr, &gs, mod,
314 " Selected by [m]:\n");
315
316 fputs(str_get(&gs), stderr);
317}
318
319void sym_calc_value(struct symbol *sym)
320{
321 struct symbol_value newval, oldval;
322 struct property *prop;
323 struct expr *e;
324
325 if (!sym)
326 return;
327
328 if (sym->flags & SYMBOL_VALID)
329 return;
330
331 if (sym_is_choice_value(sym) &&
332 sym->flags & SYMBOL_NEED_SET_CHOICE_VALUES) {
333 sym->flags &= ~SYMBOL_NEED_SET_CHOICE_VALUES;
334 prop = sym_get_choice_prop(sym);
335 sym_calc_value(prop_get_symbol(prop));
336 }
337
338 sym->flags |= SYMBOL_VALID;
339
340 oldval = sym->curr;
341
342 switch (sym->type) {
343 case S_INT:
344 case S_HEX:
345 case S_STRING:
346 newval = symbol_empty.curr;
347 break;
348 case S_BOOLEAN:
349 case S_TRISTATE:
350 newval = symbol_no.curr;
351 break;
352 default:
353 sym->curr.val = sym->name;
354 sym->curr.tri = no;
355 return;
356 }
357 sym->flags &= ~SYMBOL_WRITE;
358
359 sym_calc_visibility(sym);
360
361 if (sym->visible != no)
362 sym->flags |= SYMBOL_WRITE;
363
364 /* set default if recursively called */
365 sym->curr = newval;
366
367 switch (sym_get_type(sym)) {
368 case S_BOOLEAN:
369 case S_TRISTATE:
370 if (sym_is_choice_value(sym) && sym->visible == yes) {
371 prop = sym_get_choice_prop(sym);
372 newval.tri = (prop_get_symbol(prop)->curr.val == sym) ? yes : no;
373 } else {
374 if (sym->visible != no) {
375 /* if the symbol is visible use the user value
376 * if available, otherwise try the default value
377 */
378 if (sym_has_value(sym)) {
379 newval.tri = EXPR_AND(sym->def[S_DEF_USER].tri,
380 sym->visible);
381 goto calc_newval;
382 }
383 }
384 if (sym->rev_dep.tri != no)
385 sym->flags |= SYMBOL_WRITE;
386 if (!sym_is_choice(sym)) {
387 prop = sym_get_default_prop(sym);
388 if (prop) {
389 newval.tri = EXPR_AND(expr_calc_value(prop->expr),
390 prop->visible.tri);
391 if (newval.tri != no)
392 sym->flags |= SYMBOL_WRITE;
393 }
394 if (sym->implied.tri != no) {
395 sym->flags |= SYMBOL_WRITE;
396 newval.tri = EXPR_OR(newval.tri, sym->implied.tri);
397 }
398 }
399 calc_newval:
400 if (sym->dir_dep.tri < sym->rev_dep.tri)
401 sym_warn_unmet_dep(sym);
402 newval.tri = EXPR_OR(newval.tri, sym->rev_dep.tri);
403 }
404 if (newval.tri == mod &&
405 (sym_get_type(sym) == S_BOOLEAN || sym->implied.tri == yes))
406 newval.tri = yes;
407 break;
408 case S_STRING:
409 case S_HEX:
410 case S_INT:
411 if (sym->visible != no && sym_has_value(sym)) {
412 newval.val = sym->def[S_DEF_USER].val;
413 break;
414 }
415 prop = sym_get_default_prop(sym);
416 if (prop) {
417 struct symbol *ds = prop_get_symbol(prop);
418 if (ds) {
419 sym->flags |= SYMBOL_WRITE;
420 sym_calc_value(ds);
421 newval.val = ds->curr.val;
422 }
423 }
424 break;
425 default:
426 ;
427 }
428
429 sym->curr = newval;
430 if (sym_is_choice(sym) && newval.tri == yes)
431 sym->curr.val = sym_calc_choice(sym);
432 sym_validate_range(sym);
433
434 if (memcmp(&oldval, &sym->curr, sizeof(oldval))) {
435 sym_set_changed(sym);
436 if (modules_sym == sym) {
437 sym_set_all_changed();
438 modules_val = modules_sym->curr.tri;
439 }
440 }
441
442 if (sym_is_choice(sym)) {
443 struct symbol *choice_sym;
444
445 prop = sym_get_choice_prop(sym);
446 expr_list_for_each_sym(prop->expr, e, choice_sym) {
447 if ((sym->flags & SYMBOL_WRITE) &&
448 choice_sym->visible != no)
449 choice_sym->flags |= SYMBOL_WRITE;
450 if (sym->flags & SYMBOL_CHANGED)
451 sym_set_changed(choice_sym);
452 }
453 }
454
455 if (sym->flags & SYMBOL_NO_WRITE)
456 sym->flags &= ~SYMBOL_WRITE;
457
458 if (sym->flags & SYMBOL_NEED_SET_CHOICE_VALUES)
459 set_all_choice_values(sym);
460}
461
462void sym_clear_all_valid(void)
463{
464 struct symbol *sym;
465 int i;
466
467 for_all_symbols(i, sym)
468 sym->flags &= ~SYMBOL_VALID;
469 sym_add_change_count(1);
470 sym_calc_value(modules_sym);
471}
472
473bool sym_tristate_within_range(struct symbol *sym, tristate val)
474{
475 int type = sym_get_type(sym);
476
477 if (sym->visible == no)
478 return false;
479
480 if (type != S_BOOLEAN && type != S_TRISTATE)
481 return false;
482
483 if (type == S_BOOLEAN && val == mod)
484 return false;
485 if (sym->visible <= sym->rev_dep.tri)
486 return false;
487 if (sym->implied.tri == yes && val == mod)
488 return false;
489 if (sym_is_choice_value(sym) && sym->visible == yes)
490 return val == yes;
491 return val >= sym->rev_dep.tri && val <= sym->visible;
492}
493
494bool sym_set_tristate_value(struct symbol *sym, tristate val)
495{
496 tristate oldval = sym_get_tristate_value(sym);
497
498 if (oldval != val && !sym_tristate_within_range(sym, val))
499 return false;
500
501 if (!(sym->flags & SYMBOL_DEF_USER)) {
502 sym->flags |= SYMBOL_DEF_USER;
503 sym_set_changed(sym);
504 }
505 /*
506 * setting a choice value also resets the new flag of the choice
507 * symbol and all other choice values.
508 */
509 if (sym_is_choice_value(sym) && val == yes) {
510 struct symbol *cs = prop_get_symbol(sym_get_choice_prop(sym));
511 struct property *prop;
512 struct expr *e;
513
514 cs->def[S_DEF_USER].val = sym;
515 cs->flags |= SYMBOL_DEF_USER;
516 prop = sym_get_choice_prop(cs);
517 for (e = prop->expr; e; e = e->left.expr) {
518 if (e->right.sym->visible != no)
519 e->right.sym->flags |= SYMBOL_DEF_USER;
520 }
521 }
522
523 sym->def[S_DEF_USER].tri = val;
524 if (oldval != val)
525 sym_clear_all_valid();
526
527 return true;
528}
529
530tristate sym_toggle_tristate_value(struct symbol *sym)
531{
532 tristate oldval, newval;
533
534 oldval = newval = sym_get_tristate_value(sym);
535 do {
536 switch (newval) {
537 case no:
538 newval = mod;
539 break;
540 case mod:
541 newval = yes;
542 break;
543 case yes:
544 newval = no;
545 break;
546 }
547 if (sym_set_tristate_value(sym, newval))
548 break;
549 } while (oldval != newval);
550 return newval;
551}
552
553bool sym_string_valid(struct symbol *sym, const char *str)
554{
555 signed char ch;
556
557 switch (sym->type) {
558 case S_STRING:
559 return true;
560 case S_INT:
561 ch = *str++;
562 if (ch == '-')
563 ch = *str++;
564 if (!isdigit(ch))
565 return false;
566 if (ch == '0' && *str != 0)
567 return false;
568 while ((ch = *str++)) {
569 if (!isdigit(ch))
570 return false;
571 }
572 return true;
573 case S_HEX:
574 if (str[0] == '0' && (str[1] == 'x' || str[1] == 'X'))
575 str += 2;
576 ch = *str++;
577 do {
578 if (!isxdigit(ch))
579 return false;
580 } while ((ch = *str++));
581 return true;
582 case S_BOOLEAN:
583 case S_TRISTATE:
584 switch (str[0]) {
585 case 'y': case 'Y':
586 case 'm': case 'M':
587 case 'n': case 'N':
588 return true;
589 }
590 return false;
591 default:
592 return false;
593 }
594}
595
596bool sym_string_within_range(struct symbol *sym, const char *str)
597{
598 struct property *prop;
599 long long val;
600
601 switch (sym->type) {
602 case S_STRING:
603 return sym_string_valid(sym, str);
604 case S_INT:
605 if (!sym_string_valid(sym, str))
606 return false;
607 prop = sym_get_range_prop(sym);
608 if (!prop)
609 return true;
610 val = strtoll(str, NULL, 10);
611 return val >= sym_get_range_val(prop->expr->left.sym, 10) &&
612 val <= sym_get_range_val(prop->expr->right.sym, 10);
613 case S_HEX:
614 if (!sym_string_valid(sym, str))
615 return false;
616 prop = sym_get_range_prop(sym);
617 if (!prop)
618 return true;
619 val = strtoll(str, NULL, 16);
620 return val >= sym_get_range_val(prop->expr->left.sym, 16) &&
621 val <= sym_get_range_val(prop->expr->right.sym, 16);
622 case S_BOOLEAN:
623 case S_TRISTATE:
624 switch (str[0]) {
625 case 'y': case 'Y':
626 return sym_tristate_within_range(sym, yes);
627 case 'm': case 'M':
628 return sym_tristate_within_range(sym, mod);
629 case 'n': case 'N':
630 return sym_tristate_within_range(sym, no);
631 }
632 return false;
633 default:
634 return false;
635 }
636}
637
638bool sym_set_string_value(struct symbol *sym, const char *newval)
639{
640 const char *oldval;
641 char *val;
642 int size;
643
644 switch (sym->type) {
645 case S_BOOLEAN:
646 case S_TRISTATE:
647 switch (newval[0]) {
648 case 'y': case 'Y':
649 return sym_set_tristate_value(sym, yes);
650 case 'm': case 'M':
651 return sym_set_tristate_value(sym, mod);
652 case 'n': case 'N':
653 return sym_set_tristate_value(sym, no);
654 }
655 return false;
656 default:
657 ;
658 }
659
660 if (!sym_string_within_range(sym, newval))
661 return false;
662
663 if (!(sym->flags & SYMBOL_DEF_USER)) {
664 sym->flags |= SYMBOL_DEF_USER;
665 sym_set_changed(sym);
666 }
667
668 oldval = sym->def[S_DEF_USER].val;
669 size = strlen(newval) + 1;
670 if (sym->type == S_HEX && (newval[0] != '0' || (newval[1] != 'x' && newval[1] != 'X'))) {
671 size += 2;
672 sym->def[S_DEF_USER].val = val = xmalloc(size);
673 *val++ = '0';
674 *val++ = 'x';
675 } else if (!oldval || strcmp(oldval, newval))
676 sym->def[S_DEF_USER].val = val = xmalloc(size);
677 else
678 return true;
679
680 strcpy(val, newval);
681 free((void *)oldval);
682 sym_clear_all_valid();
683
684 return true;
685}
686
687/*
688 * Find the default value associated to a symbol.
689 * For tristate symbol handle the modules=n case
690 * in which case "m" becomes "y".
691 * If the symbol does not have any default then fallback
692 * to the fixed default values.
693 */
694const char *sym_get_string_default(struct symbol *sym)
695{
696 struct property *prop;
697 struct symbol *ds;
698 const char *str;
699 tristate val;
700
701 sym_calc_visibility(sym);
702 sym_calc_value(modules_sym);
703 val = symbol_no.curr.tri;
704 str = symbol_empty.curr.val;
705
706 /* If symbol has a default value look it up */
707 prop = sym_get_default_prop(sym);
708 if (prop != NULL) {
709 switch (sym->type) {
710 case S_BOOLEAN:
711 case S_TRISTATE:
712 /* The visibility may limit the value from yes => mod */
713 val = EXPR_AND(expr_calc_value(prop->expr), prop->visible.tri);
714 break;
715 default:
716 /*
717 * The following fails to handle the situation
718 * where a default value is further limited by
719 * the valid range.
720 */
721 ds = prop_get_symbol(prop);
722 if (ds != NULL) {
723 sym_calc_value(ds);
724 str = (const char *)ds->curr.val;
725 }
726 }
727 }
728
729 /* Handle select statements */
730 val = EXPR_OR(val, sym->rev_dep.tri);
731
732 /* transpose mod to yes if modules are not enabled */
733 if (val == mod)
734 if (!sym_is_choice_value(sym) && modules_sym->curr.tri == no)
735 val = yes;
736
737 /* transpose mod to yes if type is bool */
738 if (sym->type == S_BOOLEAN && val == mod)
739 val = yes;
740
741 /* adjust the default value if this symbol is implied by another */
742 if (val < sym->implied.tri)
743 val = sym->implied.tri;
744
745 switch (sym->type) {
746 case S_BOOLEAN:
747 case S_TRISTATE:
748 switch (val) {
749 case no: return "n";
750 case mod: return "m";
751 case yes: return "y";
752 }
753 case S_INT:
754 case S_HEX:
755 return str;
756 case S_STRING:
757 return str;
758 case S_UNKNOWN:
759 break;
760 }
761 return "";
762}
763
764const char *sym_get_string_value(struct symbol *sym)
765{
766 tristate val;
767
768 switch (sym->type) {
769 case S_BOOLEAN:
770 case S_TRISTATE:
771 val = sym_get_tristate_value(sym);
772 switch (val) {
773 case no:
774 return "n";
775 case mod:
776 sym_calc_value(modules_sym);
777 return (modules_sym->curr.tri == no) ? "n" : "m";
778 case yes:
779 return "y";
780 }
781 break;
782 default:
783 ;
784 }
785 return (const char *)sym->curr.val;
786}
787
788bool sym_is_changeable(struct symbol *sym)
789{
790 return sym->visible > sym->rev_dep.tri;
791}
792
793static unsigned strhash(const char *s)
794{
795 /* fnv32 hash */
796 unsigned hash = 2166136261U;
797 for (; *s; s++)
798 hash = (hash ^ *s) * 0x01000193;
799 return hash;
800}
801
802struct symbol *sym_lookup(const char *name, int flags)
803{
804 struct symbol *symbol;
805 char *new_name;
806 int hash;
807
808 if (name) {
809 if (name[0] && !name[1]) {
810 switch (name[0]) {
811 case 'y': return &symbol_yes;
812 case 'm': return &symbol_mod;
813 case 'n': return &symbol_no;
814 }
815 }
816 hash = strhash(name) % SYMBOL_HASHSIZE;
817
818 for (symbol = symbol_hash[hash]; symbol; symbol = symbol->next) {
819 if (symbol->name &&
820 !strcmp(symbol->name, name) &&
821 (flags ? symbol->flags & flags
822 : !(symbol->flags & (SYMBOL_CONST|SYMBOL_CHOICE))))
823 return symbol;
824 }
825 new_name = xstrdup(name);
826 } else {
827 new_name = NULL;
828 hash = 0;
829 }
830
831 symbol = xmalloc(sizeof(*symbol));
832 memset(symbol, 0, sizeof(*symbol));
833 symbol->name = new_name;
834 symbol->type = S_UNKNOWN;
835 symbol->flags |= flags;
836
837 symbol->next = symbol_hash[hash];
838 symbol_hash[hash] = symbol;
839
840 return symbol;
841}
842
843struct symbol *sym_find(const char *name)
844{
845 struct symbol *symbol = NULL;
846 int hash = 0;
847
848 if (!name)
849 return NULL;
850
851 if (name[0] && !name[1]) {
852 switch (name[0]) {
853 case 'y': return &symbol_yes;
854 case 'm': return &symbol_mod;
855 case 'n': return &symbol_no;
856 }
857 }
858 hash = strhash(name) % SYMBOL_HASHSIZE;
859
860 for (symbol = symbol_hash[hash]; symbol; symbol = symbol->next) {
861 if (symbol->name &&
862 !strcmp(symbol->name, name) &&
863 !(symbol->flags & SYMBOL_CONST))
864 break;
865 }
866
867 return symbol;
868}
869
870const char *sym_escape_string_value(const char *in)
871{
872 const char *p;
873 size_t reslen;
874 char *res;
875 size_t l;
876
877 reslen = strlen(in) + strlen("\"\"") + 1;
878
879 p = in;
880 for (;;) {
881 l = strcspn(p, "\"\\");
882 p += l;
883
884 if (p[0] == '\0')
885 break;
886
887 reslen++;
888 p++;
889 }
890
891 res = xmalloc(reslen);
892 res[0] = '\0';
893
894 strcat(res, "\"");
895
896 p = in;
897 for (;;) {
898 l = strcspn(p, "\"\\");
899 strncat(res, p, l);
900 p += l;
901
902 if (p[0] == '\0')
903 break;
904
905 strcat(res, "\\");
906 strncat(res, p++, 1);
907 }
908
909 strcat(res, "\"");
910 return res;
911}
912
913struct sym_match {
914 struct symbol *sym;
915 off_t so, eo;
916};
917
918/* Compare matched symbols as thus:
919 * - first, symbols that match exactly
920 * - then, alphabetical sort
921 */
922static int sym_rel_comp(const void *sym1, const void *sym2)
923{
924 const struct sym_match *s1 = sym1;
925 const struct sym_match *s2 = sym2;
926 int exact1, exact2;
927
928 /* Exact match:
929 * - if matched length on symbol s1 is the length of that symbol,
930 * then this symbol should come first;
931 * - if matched length on symbol s2 is the length of that symbol,
932 * then this symbol should come first.
933 * Note: since the search can be a regexp, both symbols may match
934 * exactly; if this is the case, we can't decide which comes first,
935 * and we fallback to sorting alphabetically.
936 */
937 exact1 = (s1->eo - s1->so) == strlen(s1->sym->name);
938 exact2 = (s2->eo - s2->so) == strlen(s2->sym->name);
939 if (exact1 && !exact2)
940 return -1;
941 if (!exact1 && exact2)
942 return 1;
943
944 /* As a fallback, sort symbols alphabetically */
945 return strcmp(s1->sym->name, s2->sym->name);
946}
947
948struct symbol **sym_re_search(const char *pattern)
949{
950 struct symbol *sym, **sym_arr = NULL;
951 struct sym_match *sym_match_arr = NULL;
952 int i, cnt, size;
953 regex_t re;
954 regmatch_t match[1];
955
956 cnt = size = 0;
957 /* Skip if empty */
958 if (strlen(pattern) == 0)
959 return NULL;
960 if (regcomp(&re, pattern, REG_EXTENDED|REG_ICASE))
961 return NULL;
962
963 for_all_symbols(i, sym) {
964 if (sym->flags & SYMBOL_CONST || !sym->name)
965 continue;
966 if (regexec(&re, sym->name, 1, match, 0))
967 continue;
968 if (cnt >= size) {
969 void *tmp;
970 size += 16;
971 tmp = realloc(sym_match_arr, size * sizeof(struct sym_match));
972 if (!tmp)
973 goto sym_re_search_free;
974 sym_match_arr = tmp;
975 }
976 sym_calc_value(sym);
977 /* As regexec returned 0, we know we have a match, so
978 * we can use match[0].rm_[se]o without further checks
979 */
980 sym_match_arr[cnt].so = match[0].rm_so;
981 sym_match_arr[cnt].eo = match[0].rm_eo;
982 sym_match_arr[cnt++].sym = sym;
983 }
984 if (sym_match_arr) {
985 qsort(sym_match_arr, cnt, sizeof(struct sym_match), sym_rel_comp);
986 sym_arr = malloc((cnt+1) * sizeof(struct symbol *));
987 if (!sym_arr)
988 goto sym_re_search_free;
989 for (i = 0; i < cnt; i++)
990 sym_arr[i] = sym_match_arr[i].sym;
991 sym_arr[cnt] = NULL;
992 }
993sym_re_search_free:
994 /* sym_match_arr can be NULL if no match, but free(NULL) is OK */
995 free(sym_match_arr);
996 regfree(&re);
997
998 return sym_arr;
999}
1000
1001/*
1002 * When we check for recursive dependencies we use a stack to save
1003 * current state so we can print out relevant info to user.
1004 * The entries are located on the call stack so no need to free memory.
1005 * Note insert() remove() must always match to properly clear the stack.
1006 */
1007static struct dep_stack {
1008 struct dep_stack *prev, *next;
1009 struct symbol *sym;
1010 struct property *prop;
1011 struct expr **expr;
1012} *check_top;
1013
1014static void dep_stack_insert(struct dep_stack *stack, struct symbol *sym)
1015{
1016 memset(stack, 0, sizeof(*stack));
1017 if (check_top)
1018 check_top->next = stack;
1019 stack->prev = check_top;
1020 stack->sym = sym;
1021 check_top = stack;
1022}
1023
1024static void dep_stack_remove(void)
1025{
1026 check_top = check_top->prev;
1027 if (check_top)
1028 check_top->next = NULL;
1029}
1030
1031/*
1032 * Called when we have detected a recursive dependency.
1033 * check_top point to the top of the stact so we use
1034 * the ->prev pointer to locate the bottom of the stack.
1035 */
1036static void sym_check_print_recursive(struct symbol *last_sym)
1037{
1038 struct dep_stack *stack;
1039 struct symbol *sym, *next_sym;
1040 struct menu *menu = NULL;
1041 struct property *prop;
1042 struct dep_stack cv_stack;
1043
1044 if (sym_is_choice_value(last_sym)) {
1045 dep_stack_insert(&cv_stack, last_sym);
1046 last_sym = prop_get_symbol(sym_get_choice_prop(last_sym));
1047 }
1048
1049 for (stack = check_top; stack != NULL; stack = stack->prev)
1050 if (stack->sym == last_sym)
1051 break;
1052 if (!stack) {
1053 fprintf(stderr, "unexpected recursive dependency error\n");
1054 return;
1055 }
1056
1057 for (; stack; stack = stack->next) {
1058 sym = stack->sym;
1059 next_sym = stack->next ? stack->next->sym : last_sym;
1060 prop = stack->prop;
1061 if (prop == NULL)
1062 prop = stack->sym->prop;
1063
1064 /* for choice values find the menu entry (used below) */
1065 if (sym_is_choice(sym) || sym_is_choice_value(sym)) {
1066 for (prop = sym->prop; prop; prop = prop->next) {
1067 menu = prop->menu;
1068 if (prop->menu)
1069 break;
1070 }
1071 }
1072 if (stack->sym == last_sym)
1073 fprintf(stderr, "%s:%d:error: recursive dependency detected!\n",
1074 prop->file->name, prop->lineno);
1075
1076 if (sym_is_choice(sym)) {
1077 fprintf(stderr, "%s:%d:\tchoice %s contains symbol %s\n",
1078 menu->file->name, menu->lineno,
1079 sym->name ? sym->name : "<choice>",
1080 next_sym->name ? next_sym->name : "<choice>");
1081 } else if (sym_is_choice_value(sym)) {
1082 fprintf(stderr, "%s:%d:\tsymbol %s is part of choice %s\n",
1083 menu->file->name, menu->lineno,
1084 sym->name ? sym->name : "<choice>",
1085 next_sym->name ? next_sym->name : "<choice>");
1086 } else if (stack->expr == &sym->dir_dep.expr) {
1087 fprintf(stderr, "%s:%d:\tsymbol %s depends on %s\n",
1088 prop->file->name, prop->lineno,
1089 sym->name ? sym->name : "<choice>",
1090 next_sym->name ? next_sym->name : "<choice>");
1091 } else if (stack->expr == &sym->rev_dep.expr) {
1092 fprintf(stderr, "%s:%d:\tsymbol %s is selected by %s\n",
1093 prop->file->name, prop->lineno,
1094 sym->name ? sym->name : "<choice>",
1095 next_sym->name ? next_sym->name : "<choice>");
1096 } else if (stack->expr == &sym->implied.expr) {
1097 fprintf(stderr, "%s:%d:\tsymbol %s is implied by %s\n",
1098 prop->file->name, prop->lineno,
1099 sym->name ? sym->name : "<choice>",
1100 next_sym->name ? next_sym->name : "<choice>");
1101 } else if (stack->expr) {
1102 fprintf(stderr, "%s:%d:\tsymbol %s %s value contains %s\n",
1103 prop->file->name, prop->lineno,
1104 sym->name ? sym->name : "<choice>",
1105 prop_get_type_name(prop->type),
1106 next_sym->name ? next_sym->name : "<choice>");
1107 } else {
1108 fprintf(stderr, "%s:%d:\tsymbol %s %s is visible depending on %s\n",
1109 prop->file->name, prop->lineno,
1110 sym->name ? sym->name : "<choice>",
1111 prop_get_type_name(prop->type),
1112 next_sym->name ? next_sym->name : "<choice>");
1113 }
1114 }
1115
1116 fprintf(stderr,
1117 "For a resolution refer to Documentation/kbuild/kconfig-language.rst\n"
1118 "subsection \"Kconfig recursive dependency limitations\"\n"
1119 "\n");
1120
1121 if (check_top == &cv_stack)
1122 dep_stack_remove();
1123}
1124
1125static struct symbol *sym_check_expr_deps(struct expr *e)
1126{
1127 struct symbol *sym;
1128
1129 if (!e)
1130 return NULL;
1131 switch (e->type) {
1132 case E_OR:
1133 case E_AND:
1134 sym = sym_check_expr_deps(e->left.expr);
1135 if (sym)
1136 return sym;
1137 return sym_check_expr_deps(e->right.expr);
1138 case E_NOT:
1139 return sym_check_expr_deps(e->left.expr);
1140 case E_EQUAL:
1141 case E_GEQ:
1142 case E_GTH:
1143 case E_LEQ:
1144 case E_LTH:
1145 case E_UNEQUAL:
1146 sym = sym_check_deps(e->left.sym);
1147 if (sym)
1148 return sym;
1149 return sym_check_deps(e->right.sym);
1150 case E_SYMBOL:
1151 return sym_check_deps(e->left.sym);
1152 default:
1153 break;
1154 }
1155 fprintf(stderr, "Oops! How to check %d?\n", e->type);
1156 return NULL;
1157}
1158
1159/* return NULL when dependencies are OK */
1160static struct symbol *sym_check_sym_deps(struct symbol *sym)
1161{
1162 struct symbol *sym2;
1163 struct property *prop;
1164 struct dep_stack stack;
1165
1166 dep_stack_insert(&stack, sym);
1167
1168 stack.expr = &sym->dir_dep.expr;
1169 sym2 = sym_check_expr_deps(sym->dir_dep.expr);
1170 if (sym2)
1171 goto out;
1172
1173 stack.expr = &sym->rev_dep.expr;
1174 sym2 = sym_check_expr_deps(sym->rev_dep.expr);
1175 if (sym2)
1176 goto out;
1177
1178 stack.expr = &sym->implied.expr;
1179 sym2 = sym_check_expr_deps(sym->implied.expr);
1180 if (sym2)
1181 goto out;
1182
1183 stack.expr = NULL;
1184
1185 for (prop = sym->prop; prop; prop = prop->next) {
1186 if (prop->type == P_CHOICE || prop->type == P_SELECT ||
1187 prop->type == P_IMPLY)
1188 continue;
1189 stack.prop = prop;
1190 sym2 = sym_check_expr_deps(prop->visible.expr);
1191 if (sym2)
1192 break;
1193 if (prop->type != P_DEFAULT || sym_is_choice(sym))
1194 continue;
1195 stack.expr = &prop->expr;
1196 sym2 = sym_check_expr_deps(prop->expr);
1197 if (sym2)
1198 break;
1199 stack.expr = NULL;
1200 }
1201
1202out:
1203 dep_stack_remove();
1204
1205 return sym2;
1206}
1207
1208static struct symbol *sym_check_choice_deps(struct symbol *choice)
1209{
1210 struct symbol *sym, *sym2;
1211 struct property *prop;
1212 struct expr *e;
1213 struct dep_stack stack;
1214
1215 dep_stack_insert(&stack, choice);
1216
1217 prop = sym_get_choice_prop(choice);
1218 expr_list_for_each_sym(prop->expr, e, sym)
1219 sym->flags |= (SYMBOL_CHECK | SYMBOL_CHECKED);
1220
1221 choice->flags |= (SYMBOL_CHECK | SYMBOL_CHECKED);
1222 sym2 = sym_check_sym_deps(choice);
1223 choice->flags &= ~SYMBOL_CHECK;
1224 if (sym2)
1225 goto out;
1226
1227 expr_list_for_each_sym(prop->expr, e, sym) {
1228 sym2 = sym_check_sym_deps(sym);
1229 if (sym2)
1230 break;
1231 }
1232out:
1233 expr_list_for_each_sym(prop->expr, e, sym)
1234 sym->flags &= ~SYMBOL_CHECK;
1235
1236 if (sym2 && sym_is_choice_value(sym2) &&
1237 prop_get_symbol(sym_get_choice_prop(sym2)) == choice)
1238 sym2 = choice;
1239
1240 dep_stack_remove();
1241
1242 return sym2;
1243}
1244
1245struct symbol *sym_check_deps(struct symbol *sym)
1246{
1247 struct symbol *sym2;
1248 struct property *prop;
1249
1250 if (sym->flags & SYMBOL_CHECK) {
1251 sym_check_print_recursive(sym);
1252 return sym;
1253 }
1254 if (sym->flags & SYMBOL_CHECKED)
1255 return NULL;
1256
1257 if (sym_is_choice_value(sym)) {
1258 struct dep_stack stack;
1259
1260 /* for choice groups start the check with main choice symbol */
1261 dep_stack_insert(&stack, sym);
1262 prop = sym_get_choice_prop(sym);
1263 sym2 = sym_check_deps(prop_get_symbol(prop));
1264 dep_stack_remove();
1265 } else if (sym_is_choice(sym)) {
1266 sym2 = sym_check_choice_deps(sym);
1267 } else {
1268 sym->flags |= (SYMBOL_CHECK | SYMBOL_CHECKED);
1269 sym2 = sym_check_sym_deps(sym);
1270 sym->flags &= ~SYMBOL_CHECK;
1271 }
1272
1273 return sym2;
1274}
1275
1276struct property *prop_alloc(enum prop_type type, struct symbol *sym)
1277{
1278 struct property *prop;
1279 struct property **propp;
1280
1281 prop = xmalloc(sizeof(*prop));
1282 memset(prop, 0, sizeof(*prop));
1283 prop->type = type;
1284 prop->sym = sym;
1285 prop->file = current_file;
1286 prop->lineno = zconf_lineno();
1287
1288 /* append property to the prop list of symbol */
1289 if (sym) {
1290 for (propp = &sym->prop; *propp; propp = &(*propp)->next)
1291 ;
1292 *propp = prop;
1293 }
1294
1295 return prop;
1296}
1297
1298struct symbol *prop_get_symbol(struct property *prop)
1299{
1300 if (prop->expr && (prop->expr->type == E_SYMBOL ||
1301 prop->expr->type == E_LIST))
1302 return prop->expr->left.sym;
1303 return NULL;
1304}
1305
1306const char *prop_get_type_name(enum prop_type type)
1307{
1308 switch (type) {
1309 case P_PROMPT:
1310 return "prompt";
1311 case P_COMMENT:
1312 return "comment";
1313 case P_MENU:
1314 return "menu";
1315 case P_DEFAULT:
1316 return "default";
1317 case P_CHOICE:
1318 return "choice";
1319 case P_SELECT:
1320 return "select";
1321 case P_IMPLY:
1322 return "imply";
1323 case P_RANGE:
1324 return "range";
1325 case P_SYMBOL:
1326 return "symbol";
1327 case P_UNKNOWN:
1328 break;
1329 }
1330 return "unknown";
1331}
1// SPDX-License-Identifier: GPL-2.0
2/*
3 * Copyright (C) 2002 Roman Zippel <zippel@linux-m68k.org>
4 */
5
6#include <sys/types.h>
7#include <ctype.h>
8#include <stdlib.h>
9#include <string.h>
10#include <regex.h>
11
12#include <hash.h>
13#include <xalloc.h>
14#include "internal.h"
15#include "lkc.h"
16
17struct symbol symbol_yes = {
18 .name = "y",
19 .type = S_TRISTATE,
20 .curr = { "y", yes },
21 .menus = LIST_HEAD_INIT(symbol_yes.menus),
22 .flags = SYMBOL_CONST|SYMBOL_VALID,
23};
24
25struct symbol symbol_mod = {
26 .name = "m",
27 .type = S_TRISTATE,
28 .curr = { "m", mod },
29 .menus = LIST_HEAD_INIT(symbol_mod.menus),
30 .flags = SYMBOL_CONST|SYMBOL_VALID,
31};
32
33struct symbol symbol_no = {
34 .name = "n",
35 .type = S_TRISTATE,
36 .curr = { "n", no },
37 .menus = LIST_HEAD_INIT(symbol_no.menus),
38 .flags = SYMBOL_CONST|SYMBOL_VALID,
39};
40
41struct symbol *modules_sym;
42static tristate modules_val;
43static int sym_warnings;
44
45enum symbol_type sym_get_type(const struct symbol *sym)
46{
47 enum symbol_type type = sym->type;
48
49 if (type == S_TRISTATE && modules_val == no)
50 type = S_BOOLEAN;
51 return type;
52}
53
54const char *sym_type_name(enum symbol_type type)
55{
56 switch (type) {
57 case S_BOOLEAN:
58 return "bool";
59 case S_TRISTATE:
60 return "tristate";
61 case S_INT:
62 return "integer";
63 case S_HEX:
64 return "hex";
65 case S_STRING:
66 return "string";
67 case S_UNKNOWN:
68 return "unknown";
69 }
70 return "???";
71}
72
73/**
74 * sym_get_prompt_menu - get the menu entry with a prompt
75 *
76 * @sym: a symbol pointer
77 *
78 * Return: the menu entry with a prompt.
79 */
80struct menu *sym_get_prompt_menu(const struct symbol *sym)
81{
82 struct menu *m;
83
84 list_for_each_entry(m, &sym->menus, link)
85 if (m->prompt)
86 return m;
87
88 return NULL;
89}
90
91/**
92 * sym_get_choice_menu - get the parent choice menu if present
93 *
94 * @sym: a symbol pointer
95 *
96 * Return: a choice menu if this function is called against a choice member.
97 */
98struct menu *sym_get_choice_menu(const struct symbol *sym)
99{
100 struct menu *menu = NULL;
101
102 /*
103 * Choice members must have a prompt. Find a menu entry with a prompt,
104 * and assume it resides inside a choice block.
105 */
106 menu = sym_get_prompt_menu(sym);
107 if (!menu)
108 return NULL;
109
110 do {
111 menu = menu->parent;
112 } while (menu && !menu->sym);
113
114 if (menu && menu->sym && sym_is_choice(menu->sym))
115 return menu;
116
117 return NULL;
118}
119
120static struct property *sym_get_default_prop(struct symbol *sym)
121{
122 struct property *prop;
123
124 for_all_defaults(sym, prop) {
125 prop->visible.tri = expr_calc_value(prop->visible.expr);
126 if (prop->visible.tri != no)
127 return prop;
128 }
129 return NULL;
130}
131
132struct property *sym_get_range_prop(struct symbol *sym)
133{
134 struct property *prop;
135
136 for_all_properties(sym, prop, P_RANGE) {
137 prop->visible.tri = expr_calc_value(prop->visible.expr);
138 if (prop->visible.tri != no)
139 return prop;
140 }
141 return NULL;
142}
143
144static long long sym_get_range_val(struct symbol *sym, int base)
145{
146 sym_calc_value(sym);
147 switch (sym->type) {
148 case S_INT:
149 base = 10;
150 break;
151 case S_HEX:
152 base = 16;
153 break;
154 default:
155 break;
156 }
157 return strtoll(sym->curr.val, NULL, base);
158}
159
160static void sym_validate_range(struct symbol *sym)
161{
162 struct property *prop;
163 struct symbol *range_sym;
164 int base;
165 long long val, val2;
166
167 switch (sym->type) {
168 case S_INT:
169 base = 10;
170 break;
171 case S_HEX:
172 base = 16;
173 break;
174 default:
175 return;
176 }
177 prop = sym_get_range_prop(sym);
178 if (!prop)
179 return;
180 val = strtoll(sym->curr.val, NULL, base);
181 range_sym = prop->expr->left.sym;
182 val2 = sym_get_range_val(range_sym, base);
183 if (val >= val2) {
184 range_sym = prop->expr->right.sym;
185 val2 = sym_get_range_val(range_sym, base);
186 if (val <= val2)
187 return;
188 }
189 sym->curr.val = range_sym->curr.val;
190}
191
192static void sym_set_changed(struct symbol *sym)
193{
194 struct menu *menu;
195
196 list_for_each_entry(menu, &sym->menus, link)
197 menu->flags |= MENU_CHANGED;
198}
199
200static void sym_set_all_changed(void)
201{
202 struct symbol *sym;
203
204 for_all_symbols(sym)
205 sym_set_changed(sym);
206}
207
208static void sym_calc_visibility(struct symbol *sym)
209{
210 struct property *prop;
211 tristate tri;
212
213 /* any prompt visible? */
214 tri = no;
215 for_all_prompts(sym, prop) {
216 prop->visible.tri = expr_calc_value(prop->visible.expr);
217 tri = EXPR_OR(tri, prop->visible.tri);
218 }
219 if (tri == mod && (sym->type != S_TRISTATE || modules_val == no))
220 tri = yes;
221 if (sym->visible != tri) {
222 sym->visible = tri;
223 sym_set_changed(sym);
224 }
225 if (sym_is_choice_value(sym))
226 return;
227 /* defaulting to "yes" if no explicit "depends on" are given */
228 tri = yes;
229 if (sym->dir_dep.expr)
230 tri = expr_calc_value(sym->dir_dep.expr);
231 if (tri == mod && sym_get_type(sym) == S_BOOLEAN)
232 tri = yes;
233 if (sym->dir_dep.tri != tri) {
234 sym->dir_dep.tri = tri;
235 sym_set_changed(sym);
236 }
237 tri = no;
238 if (sym->rev_dep.expr)
239 tri = expr_calc_value(sym->rev_dep.expr);
240 if (tri == mod && sym_get_type(sym) == S_BOOLEAN)
241 tri = yes;
242 if (sym->rev_dep.tri != tri) {
243 sym->rev_dep.tri = tri;
244 sym_set_changed(sym);
245 }
246 tri = no;
247 if (sym->implied.expr)
248 tri = expr_calc_value(sym->implied.expr);
249 if (tri == mod && sym_get_type(sym) == S_BOOLEAN)
250 tri = yes;
251 if (sym->implied.tri != tri) {
252 sym->implied.tri = tri;
253 sym_set_changed(sym);
254 }
255}
256
257/*
258 * Find the default symbol for a choice.
259 * First try the default values for the choice symbol
260 * Next locate the first visible choice value
261 * Return NULL if none was found
262 */
263struct symbol *sym_choice_default(struct menu *choice)
264{
265 struct menu *menu;
266 struct symbol *def_sym;
267 struct property *prop;
268
269 /* any of the defaults visible? */
270 for_all_defaults(choice->sym, prop) {
271 prop->visible.tri = expr_calc_value(prop->visible.expr);
272 if (prop->visible.tri == no)
273 continue;
274 def_sym = prop_get_symbol(prop);
275 if (def_sym->visible != no)
276 return def_sym;
277 }
278
279 /* just get the first visible value */
280 menu_for_each_sub_entry(menu, choice)
281 if (menu->sym && menu->sym->visible != no)
282 return menu->sym;
283
284 /* failed to locate any defaults */
285 return NULL;
286}
287
288/*
289 * sym_calc_choice - calculate symbol values in a choice
290 *
291 * @choice: a menu of the choice
292 *
293 * Return: a chosen symbol
294 */
295struct symbol *sym_calc_choice(struct menu *choice)
296{
297 struct symbol *res = NULL;
298 struct symbol *sym;
299 struct menu *menu;
300
301 /* Traverse the list of choice members in the priority order. */
302 list_for_each_entry(sym, &choice->choice_members, choice_link) {
303 sym_calc_visibility(sym);
304 if (sym->visible == no)
305 continue;
306
307 /* The first visible symble with the user value 'y'. */
308 if (sym_has_value(sym) && sym->def[S_DEF_USER].tri == yes) {
309 res = sym;
310 break;
311 }
312 }
313
314 /*
315 * If 'y' is not found in the user input, use the default, unless it is
316 * explicitly set to 'n'.
317 */
318 if (!res) {
319 res = sym_choice_default(choice);
320 if (res && sym_has_value(res) && res->def[S_DEF_USER].tri == no)
321 res = NULL;
322 }
323
324 /* Still not found. Pick up the first visible, user-unspecified symbol. */
325 if (!res) {
326 menu_for_each_sub_entry(menu, choice) {
327 sym = menu->sym;
328
329 if (!sym || sym->visible == no || sym_has_value(sym))
330 continue;
331
332 res = sym;
333 break;
334 }
335 }
336
337 /*
338 * Still not found. Traverse the linked list in the _reverse_ order to
339 * pick up the least prioritized 'n'.
340 */
341 if (!res) {
342 list_for_each_entry_reverse(sym, &choice->choice_members,
343 choice_link) {
344 if (sym->visible == no)
345 continue;
346
347 res = sym;
348 break;
349 }
350 }
351
352 menu_for_each_sub_entry(menu, choice) {
353 tristate val;
354
355 sym = menu->sym;
356
357 if (!sym || sym->visible == no)
358 continue;
359
360 val = sym == res ? yes : no;
361
362 if (sym->curr.tri != val)
363 sym_set_changed(sym);
364
365 sym->curr.tri = val;
366 sym->flags |= SYMBOL_VALID | SYMBOL_WRITE;
367 }
368
369 return res;
370}
371
372static void sym_warn_unmet_dep(const struct symbol *sym)
373{
374 struct gstr gs = str_new();
375
376 str_printf(&gs,
377 "\nWARNING: unmet direct dependencies detected for %s\n",
378 sym->name);
379 str_printf(&gs,
380 " Depends on [%c]: ",
381 sym->dir_dep.tri == mod ? 'm' : 'n');
382 expr_gstr_print(sym->dir_dep.expr, &gs);
383 str_printf(&gs, "\n");
384
385 expr_gstr_print_revdep(sym->rev_dep.expr, &gs, yes,
386 " Selected by [y]:\n");
387 expr_gstr_print_revdep(sym->rev_dep.expr, &gs, mod,
388 " Selected by [m]:\n");
389
390 fputs(str_get(&gs), stderr);
391 str_free(&gs);
392 sym_warnings++;
393}
394
395bool sym_dep_errors(void)
396{
397 if (sym_warnings)
398 return getenv("KCONFIG_WERROR");
399 return false;
400}
401
402void sym_calc_value(struct symbol *sym)
403{
404 struct symbol_value newval, oldval;
405 struct property *prop;
406 struct menu *choice_menu;
407
408 if (!sym)
409 return;
410
411 if (sym->flags & SYMBOL_VALID)
412 return;
413
414 sym->flags |= SYMBOL_VALID;
415
416 oldval = sym->curr;
417
418 newval.tri = no;
419
420 switch (sym->type) {
421 case S_INT:
422 newval.val = "0";
423 break;
424 case S_HEX:
425 newval.val = "0x0";
426 break;
427 case S_STRING:
428 newval.val = "";
429 break;
430 case S_BOOLEAN:
431 case S_TRISTATE:
432 newval.val = "n";
433 break;
434 default:
435 sym->curr.val = sym->name;
436 sym->curr.tri = no;
437 return;
438 }
439 sym->flags &= ~SYMBOL_WRITE;
440
441 sym_calc_visibility(sym);
442
443 if (sym->visible != no)
444 sym->flags |= SYMBOL_WRITE;
445
446 /* set default if recursively called */
447 sym->curr = newval;
448
449 switch (sym_get_type(sym)) {
450 case S_BOOLEAN:
451 case S_TRISTATE:
452 choice_menu = sym_get_choice_menu(sym);
453
454 if (choice_menu) {
455 sym_calc_choice(choice_menu);
456 newval.tri = sym->curr.tri;
457 } else {
458 if (sym->visible != no) {
459 /* if the symbol is visible use the user value
460 * if available, otherwise try the default value
461 */
462 if (sym_has_value(sym)) {
463 newval.tri = EXPR_AND(sym->def[S_DEF_USER].tri,
464 sym->visible);
465 goto calc_newval;
466 }
467 }
468 if (sym->rev_dep.tri != no)
469 sym->flags |= SYMBOL_WRITE;
470 if (!sym_is_choice(sym)) {
471 prop = sym_get_default_prop(sym);
472 if (prop) {
473 newval.tri = EXPR_AND(expr_calc_value(prop->expr),
474 prop->visible.tri);
475 if (newval.tri != no)
476 sym->flags |= SYMBOL_WRITE;
477 }
478 if (sym->implied.tri != no) {
479 sym->flags |= SYMBOL_WRITE;
480 newval.tri = EXPR_OR(newval.tri, sym->implied.tri);
481 newval.tri = EXPR_AND(newval.tri,
482 sym->dir_dep.tri);
483 }
484 }
485 calc_newval:
486 if (sym->dir_dep.tri < sym->rev_dep.tri)
487 sym_warn_unmet_dep(sym);
488 newval.tri = EXPR_OR(newval.tri, sym->rev_dep.tri);
489 }
490 if (newval.tri == mod && sym_get_type(sym) == S_BOOLEAN)
491 newval.tri = yes;
492 break;
493 case S_STRING:
494 case S_HEX:
495 case S_INT:
496 if (sym->visible != no && sym_has_value(sym)) {
497 newval.val = sym->def[S_DEF_USER].val;
498 break;
499 }
500 prop = sym_get_default_prop(sym);
501 if (prop) {
502 struct symbol *ds = prop_get_symbol(prop);
503 if (ds) {
504 sym->flags |= SYMBOL_WRITE;
505 sym_calc_value(ds);
506 newval.val = ds->curr.val;
507 }
508 }
509 break;
510 default:
511 ;
512 }
513
514 sym->curr = newval;
515 sym_validate_range(sym);
516
517 if (memcmp(&oldval, &sym->curr, sizeof(oldval))) {
518 sym_set_changed(sym);
519 if (modules_sym == sym) {
520 sym_set_all_changed();
521 modules_val = modules_sym->curr.tri;
522 }
523 }
524
525 if (sym_is_choice(sym))
526 sym->flags &= ~SYMBOL_WRITE;
527}
528
529void sym_clear_all_valid(void)
530{
531 struct symbol *sym;
532
533 for_all_symbols(sym)
534 sym->flags &= ~SYMBOL_VALID;
535 expr_invalidate_all();
536 conf_set_changed(true);
537 sym_calc_value(modules_sym);
538}
539
540bool sym_tristate_within_range(const struct symbol *sym, tristate val)
541{
542 int type = sym_get_type(sym);
543
544 if (sym->visible == no)
545 return false;
546
547 if (type != S_BOOLEAN && type != S_TRISTATE)
548 return false;
549
550 if (type == S_BOOLEAN && val == mod)
551 return false;
552 if (sym->visible <= sym->rev_dep.tri)
553 return false;
554 return val >= sym->rev_dep.tri && val <= sym->visible;
555}
556
557bool sym_set_tristate_value(struct symbol *sym, tristate val)
558{
559 tristate oldval = sym_get_tristate_value(sym);
560
561 if (!sym_tristate_within_range(sym, val))
562 return false;
563
564 if (!(sym->flags & SYMBOL_DEF_USER) || sym->def[S_DEF_USER].tri != val) {
565 sym->def[S_DEF_USER].tri = val;
566 sym->flags |= SYMBOL_DEF_USER;
567 sym_set_changed(sym);
568 }
569
570 if (oldval != val)
571 sym_clear_all_valid();
572
573 return true;
574}
575
576/**
577 * choice_set_value - set the user input to a choice
578 *
579 * @choice: menu entry for the choice
580 * @sym: selected symbol
581 */
582void choice_set_value(struct menu *choice, struct symbol *sym)
583{
584 struct menu *menu;
585 bool changed = false;
586
587 menu_for_each_sub_entry(menu, choice) {
588 tristate val;
589
590 if (!menu->sym)
591 continue;
592
593 if (menu->sym->visible == no)
594 continue;
595
596 val = menu->sym == sym ? yes : no;
597
598 if (menu->sym->curr.tri != val)
599 changed = true;
600
601 menu->sym->def[S_DEF_USER].tri = val;
602 menu->sym->flags |= SYMBOL_DEF_USER;
603
604 /*
605 * Now, the user has explicitly enabled or disabled this symbol,
606 * it should be given the highest priority. We are possibly
607 * setting multiple symbols to 'n', where the first symbol is
608 * given the least prioritized 'n'. This works well when the
609 * choice block ends up with selecting 'n' symbol.
610 * (see sym_calc_choice())
611 */
612 list_move(&menu->sym->choice_link, &choice->choice_members);
613 }
614
615 if (changed)
616 sym_clear_all_valid();
617}
618
619tristate sym_toggle_tristate_value(struct symbol *sym)
620{
621 struct menu *choice;
622 tristate oldval, newval;
623
624 choice = sym_get_choice_menu(sym);
625 if (choice) {
626 choice_set_value(choice, sym);
627 return yes;
628 }
629
630 oldval = newval = sym_get_tristate_value(sym);
631 do {
632 switch (newval) {
633 case no:
634 newval = mod;
635 break;
636 case mod:
637 newval = yes;
638 break;
639 case yes:
640 newval = no;
641 break;
642 }
643 if (sym_set_tristate_value(sym, newval))
644 break;
645 } while (oldval != newval);
646 return newval;
647}
648
649bool sym_string_valid(struct symbol *sym, const char *str)
650{
651 signed char ch;
652
653 switch (sym->type) {
654 case S_STRING:
655 return true;
656 case S_INT:
657 ch = *str++;
658 if (ch == '-')
659 ch = *str++;
660 if (!isdigit(ch))
661 return false;
662 if (ch == '0' && *str != 0)
663 return false;
664 while ((ch = *str++)) {
665 if (!isdigit(ch))
666 return false;
667 }
668 return true;
669 case S_HEX:
670 if (str[0] == '0' && (str[1] == 'x' || str[1] == 'X'))
671 str += 2;
672 ch = *str++;
673 do {
674 if (!isxdigit(ch))
675 return false;
676 } while ((ch = *str++));
677 return true;
678 case S_BOOLEAN:
679 case S_TRISTATE:
680 switch (str[0]) {
681 case 'y': case 'Y':
682 case 'm': case 'M':
683 case 'n': case 'N':
684 return true;
685 }
686 return false;
687 default:
688 return false;
689 }
690}
691
692bool sym_string_within_range(struct symbol *sym, const char *str)
693{
694 struct property *prop;
695 long long val;
696
697 switch (sym->type) {
698 case S_STRING:
699 return sym_string_valid(sym, str);
700 case S_INT:
701 if (!sym_string_valid(sym, str))
702 return false;
703 prop = sym_get_range_prop(sym);
704 if (!prop)
705 return true;
706 val = strtoll(str, NULL, 10);
707 return val >= sym_get_range_val(prop->expr->left.sym, 10) &&
708 val <= sym_get_range_val(prop->expr->right.sym, 10);
709 case S_HEX:
710 if (!sym_string_valid(sym, str))
711 return false;
712 prop = sym_get_range_prop(sym);
713 if (!prop)
714 return true;
715 val = strtoll(str, NULL, 16);
716 return val >= sym_get_range_val(prop->expr->left.sym, 16) &&
717 val <= sym_get_range_val(prop->expr->right.sym, 16);
718 case S_BOOLEAN:
719 case S_TRISTATE:
720 switch (str[0]) {
721 case 'y': case 'Y':
722 return sym_tristate_within_range(sym, yes);
723 case 'm': case 'M':
724 return sym_tristate_within_range(sym, mod);
725 case 'n': case 'N':
726 return sym_tristate_within_range(sym, no);
727 }
728 return false;
729 default:
730 return false;
731 }
732}
733
734bool sym_set_string_value(struct symbol *sym, const char *newval)
735{
736 const char *oldval;
737 char *val;
738 int size;
739
740 switch (sym->type) {
741 case S_BOOLEAN:
742 case S_TRISTATE:
743 switch (newval[0]) {
744 case 'y': case 'Y':
745 return sym_set_tristate_value(sym, yes);
746 case 'm': case 'M':
747 return sym_set_tristate_value(sym, mod);
748 case 'n': case 'N':
749 return sym_set_tristate_value(sym, no);
750 }
751 return false;
752 default:
753 ;
754 }
755
756 if (!sym_string_within_range(sym, newval))
757 return false;
758
759 if (!(sym->flags & SYMBOL_DEF_USER)) {
760 sym->flags |= SYMBOL_DEF_USER;
761 sym_set_changed(sym);
762 }
763
764 oldval = sym->def[S_DEF_USER].val;
765 size = strlen(newval) + 1;
766 if (sym->type == S_HEX && (newval[0] != '0' || (newval[1] != 'x' && newval[1] != 'X'))) {
767 size += 2;
768 sym->def[S_DEF_USER].val = val = xmalloc(size);
769 *val++ = '0';
770 *val++ = 'x';
771 } else if (!oldval || strcmp(oldval, newval))
772 sym->def[S_DEF_USER].val = val = xmalloc(size);
773 else
774 return true;
775
776 strcpy(val, newval);
777 free((void *)oldval);
778 sym_clear_all_valid();
779
780 return true;
781}
782
783/*
784 * Find the default value associated to a symbol.
785 * For tristate symbol handle the modules=n case
786 * in which case "m" becomes "y".
787 * If the symbol does not have any default then fallback
788 * to the fixed default values.
789 */
790const char *sym_get_string_default(struct symbol *sym)
791{
792 struct property *prop;
793 struct symbol *ds;
794 const char *str = "";
795 tristate val;
796
797 sym_calc_visibility(sym);
798 sym_calc_value(modules_sym);
799 val = symbol_no.curr.tri;
800
801 /* If symbol has a default value look it up */
802 prop = sym_get_default_prop(sym);
803 if (prop != NULL) {
804 switch (sym->type) {
805 case S_BOOLEAN:
806 case S_TRISTATE:
807 /* The visibility may limit the value from yes => mod */
808 val = EXPR_AND(expr_calc_value(prop->expr), prop->visible.tri);
809 break;
810 default:
811 /*
812 * The following fails to handle the situation
813 * where a default value is further limited by
814 * the valid range.
815 */
816 ds = prop_get_symbol(prop);
817 if (ds != NULL) {
818 sym_calc_value(ds);
819 str = (const char *)ds->curr.val;
820 }
821 }
822 }
823
824 /* Handle select statements */
825 val = EXPR_OR(val, sym->rev_dep.tri);
826
827 /* transpose mod to yes if modules are not enabled */
828 if (val == mod)
829 if (!sym_is_choice_value(sym) && modules_sym->curr.tri == no)
830 val = yes;
831
832 /* transpose mod to yes if type is bool */
833 if (sym->type == S_BOOLEAN && val == mod)
834 val = yes;
835
836 /* adjust the default value if this symbol is implied by another */
837 if (val < sym->implied.tri)
838 val = sym->implied.tri;
839
840 switch (sym->type) {
841 case S_BOOLEAN:
842 case S_TRISTATE:
843 switch (val) {
844 case no: return "n";
845 case mod: return "m";
846 case yes: return "y";
847 }
848 case S_INT:
849 if (!str[0])
850 str = "0";
851 break;
852 case S_HEX:
853 if (!str[0])
854 str = "0x0";
855 break;
856 default:
857 break;
858 }
859 return str;
860}
861
862const char *sym_get_string_value(struct symbol *sym)
863{
864 tristate val;
865
866 switch (sym->type) {
867 case S_BOOLEAN:
868 case S_TRISTATE:
869 val = sym_get_tristate_value(sym);
870 switch (val) {
871 case no:
872 return "n";
873 case mod:
874 return "m";
875 case yes:
876 return "y";
877 }
878 break;
879 default:
880 ;
881 }
882 return (const char *)sym->curr.val;
883}
884
885bool sym_is_changeable(const struct symbol *sym)
886{
887 return !sym_is_choice(sym) && sym->visible > sym->rev_dep.tri;
888}
889
890bool sym_is_choice_value(const struct symbol *sym)
891{
892 return !list_empty(&sym->choice_link);
893}
894
895HASHTABLE_DEFINE(sym_hashtable, SYMBOL_HASHSIZE);
896
897struct symbol *sym_lookup(const char *name, int flags)
898{
899 struct symbol *symbol;
900 char *new_name;
901 int hash;
902
903 if (name) {
904 if (name[0] && !name[1]) {
905 switch (name[0]) {
906 case 'y': return &symbol_yes;
907 case 'm': return &symbol_mod;
908 case 'n': return &symbol_no;
909 }
910 }
911 hash = hash_str(name);
912
913 hash_for_each_possible(sym_hashtable, symbol, node, hash) {
914 if (symbol->name &&
915 !strcmp(symbol->name, name) &&
916 (flags ? symbol->flags & flags
917 : !(symbol->flags & SYMBOL_CONST)))
918 return symbol;
919 }
920 new_name = xstrdup(name);
921 } else {
922 new_name = NULL;
923 hash = 0;
924 }
925
926 symbol = xmalloc(sizeof(*symbol));
927 memset(symbol, 0, sizeof(*symbol));
928 symbol->name = new_name;
929 symbol->type = S_UNKNOWN;
930 symbol->flags = flags;
931 INIT_LIST_HEAD(&symbol->menus);
932 INIT_LIST_HEAD(&symbol->choice_link);
933
934 hash_add(sym_hashtable, &symbol->node, hash);
935
936 return symbol;
937}
938
939struct symbol *sym_find(const char *name)
940{
941 struct symbol *symbol = NULL;
942 int hash = 0;
943
944 if (!name)
945 return NULL;
946
947 if (name[0] && !name[1]) {
948 switch (name[0]) {
949 case 'y': return &symbol_yes;
950 case 'm': return &symbol_mod;
951 case 'n': return &symbol_no;
952 }
953 }
954 hash = hash_str(name);
955
956 hash_for_each_possible(sym_hashtable, symbol, node, hash) {
957 if (symbol->name &&
958 !strcmp(symbol->name, name) &&
959 !(symbol->flags & SYMBOL_CONST))
960 break;
961 }
962
963 return symbol;
964}
965
966struct sym_match {
967 struct symbol *sym;
968 off_t so, eo;
969};
970
971/* Compare matched symbols as thus:
972 * - first, symbols that match exactly
973 * - then, alphabetical sort
974 */
975static int sym_rel_comp(const void *sym1, const void *sym2)
976{
977 const struct sym_match *s1 = sym1;
978 const struct sym_match *s2 = sym2;
979 int exact1, exact2;
980
981 /* Exact match:
982 * - if matched length on symbol s1 is the length of that symbol,
983 * then this symbol should come first;
984 * - if matched length on symbol s2 is the length of that symbol,
985 * then this symbol should come first.
986 * Note: since the search can be a regexp, both symbols may match
987 * exactly; if this is the case, we can't decide which comes first,
988 * and we fallback to sorting alphabetically.
989 */
990 exact1 = (s1->eo - s1->so) == strlen(s1->sym->name);
991 exact2 = (s2->eo - s2->so) == strlen(s2->sym->name);
992 if (exact1 && !exact2)
993 return -1;
994 if (!exact1 && exact2)
995 return 1;
996
997 /* As a fallback, sort symbols alphabetically */
998 return strcmp(s1->sym->name, s2->sym->name);
999}
1000
1001struct symbol **sym_re_search(const char *pattern)
1002{
1003 struct symbol *sym, **sym_arr = NULL;
1004 struct sym_match *sym_match_arr = NULL;
1005 int i, cnt, size;
1006 regex_t re;
1007 regmatch_t match[1];
1008
1009 cnt = size = 0;
1010 /* Skip if empty */
1011 if (strlen(pattern) == 0)
1012 return NULL;
1013 if (regcomp(&re, pattern, REG_EXTENDED|REG_ICASE))
1014 return NULL;
1015
1016 for_all_symbols(sym) {
1017 if (sym->flags & SYMBOL_CONST || !sym->name)
1018 continue;
1019 if (regexec(&re, sym->name, 1, match, 0))
1020 continue;
1021 if (cnt >= size) {
1022 void *tmp;
1023 size += 16;
1024 tmp = realloc(sym_match_arr, size * sizeof(struct sym_match));
1025 if (!tmp)
1026 goto sym_re_search_free;
1027 sym_match_arr = tmp;
1028 }
1029 sym_calc_value(sym);
1030 /* As regexec returned 0, we know we have a match, so
1031 * we can use match[0].rm_[se]o without further checks
1032 */
1033 sym_match_arr[cnt].so = match[0].rm_so;
1034 sym_match_arr[cnt].eo = match[0].rm_eo;
1035 sym_match_arr[cnt++].sym = sym;
1036 }
1037 if (sym_match_arr) {
1038 qsort(sym_match_arr, cnt, sizeof(struct sym_match), sym_rel_comp);
1039 sym_arr = malloc((cnt+1) * sizeof(struct symbol *));
1040 if (!sym_arr)
1041 goto sym_re_search_free;
1042 for (i = 0; i < cnt; i++)
1043 sym_arr[i] = sym_match_arr[i].sym;
1044 sym_arr[cnt] = NULL;
1045 }
1046sym_re_search_free:
1047 /* sym_match_arr can be NULL if no match, but free(NULL) is OK */
1048 free(sym_match_arr);
1049 regfree(&re);
1050
1051 return sym_arr;
1052}
1053
1054/*
1055 * When we check for recursive dependencies we use a stack to save
1056 * current state so we can print out relevant info to user.
1057 * The entries are located on the call stack so no need to free memory.
1058 * Note insert() remove() must always match to properly clear the stack.
1059 */
1060static struct dep_stack {
1061 struct dep_stack *prev, *next;
1062 struct symbol *sym;
1063 struct property *prop;
1064 struct expr **expr;
1065} *check_top;
1066
1067static void dep_stack_insert(struct dep_stack *stack, struct symbol *sym)
1068{
1069 memset(stack, 0, sizeof(*stack));
1070 if (check_top)
1071 check_top->next = stack;
1072 stack->prev = check_top;
1073 stack->sym = sym;
1074 check_top = stack;
1075}
1076
1077static void dep_stack_remove(void)
1078{
1079 check_top = check_top->prev;
1080 if (check_top)
1081 check_top->next = NULL;
1082}
1083
1084/*
1085 * Called when we have detected a recursive dependency.
1086 * check_top point to the top of the stact so we use
1087 * the ->prev pointer to locate the bottom of the stack.
1088 */
1089static void sym_check_print_recursive(struct symbol *last_sym)
1090{
1091 struct dep_stack *stack;
1092 struct symbol *sym, *next_sym;
1093 struct menu *choice;
1094 struct dep_stack cv_stack;
1095 enum prop_type type;
1096
1097 choice = sym_get_choice_menu(last_sym);
1098 if (choice) {
1099 dep_stack_insert(&cv_stack, last_sym);
1100 last_sym = choice->sym;
1101 }
1102
1103 for (stack = check_top; stack != NULL; stack = stack->prev)
1104 if (stack->sym == last_sym)
1105 break;
1106 if (!stack) {
1107 fprintf(stderr, "unexpected recursive dependency error\n");
1108 return;
1109 }
1110
1111 for (; stack; stack = stack->next) {
1112 sym = stack->sym;
1113 next_sym = stack->next ? stack->next->sym : last_sym;
1114 type = stack->prop ? stack->prop->type : P_UNKNOWN;
1115
1116 if (stack->sym == last_sym)
1117 fprintf(stderr, "error: recursive dependency detected!\n");
1118
1119 if (sym_is_choice(next_sym)) {
1120 choice = list_first_entry(&next_sym->menus, struct menu, link);
1121
1122 fprintf(stderr, "\tsymbol %s is part of choice block at %s:%d\n",
1123 sym->name ? sym->name : "<choice>",
1124 choice->filename, choice->lineno);
1125 } else if (stack->expr == &sym->dir_dep.expr) {
1126 fprintf(stderr, "\tsymbol %s depends on %s\n",
1127 sym->name ? sym->name : "<choice>",
1128 next_sym->name);
1129 } else if (stack->expr == &sym->rev_dep.expr) {
1130 fprintf(stderr, "\tsymbol %s is selected by %s\n",
1131 sym->name, next_sym->name);
1132 } else if (stack->expr == &sym->implied.expr) {
1133 fprintf(stderr, "\tsymbol %s is implied by %s\n",
1134 sym->name, next_sym->name);
1135 } else if (stack->expr) {
1136 fprintf(stderr, "\tsymbol %s %s value contains %s\n",
1137 sym->name ? sym->name : "<choice>",
1138 prop_get_type_name(type),
1139 next_sym->name);
1140 } else {
1141 fprintf(stderr, "\tsymbol %s %s is visible depending on %s\n",
1142 sym->name ? sym->name : "<choice>",
1143 prop_get_type_name(type),
1144 next_sym->name);
1145 }
1146 }
1147
1148 fprintf(stderr,
1149 "For a resolution refer to Documentation/kbuild/kconfig-language.rst\n"
1150 "subsection \"Kconfig recursive dependency limitations\"\n"
1151 "\n");
1152
1153 if (check_top == &cv_stack)
1154 dep_stack_remove();
1155}
1156
1157static struct symbol *sym_check_expr_deps(const struct expr *e)
1158{
1159 struct symbol *sym;
1160
1161 if (!e)
1162 return NULL;
1163 switch (e->type) {
1164 case E_OR:
1165 case E_AND:
1166 sym = sym_check_expr_deps(e->left.expr);
1167 if (sym)
1168 return sym;
1169 return sym_check_expr_deps(e->right.expr);
1170 case E_NOT:
1171 return sym_check_expr_deps(e->left.expr);
1172 case E_EQUAL:
1173 case E_GEQ:
1174 case E_GTH:
1175 case E_LEQ:
1176 case E_LTH:
1177 case E_UNEQUAL:
1178 sym = sym_check_deps(e->left.sym);
1179 if (sym)
1180 return sym;
1181 return sym_check_deps(e->right.sym);
1182 case E_SYMBOL:
1183 return sym_check_deps(e->left.sym);
1184 default:
1185 break;
1186 }
1187 fprintf(stderr, "Oops! How to check %d?\n", e->type);
1188 return NULL;
1189}
1190
1191/* return NULL when dependencies are OK */
1192static struct symbol *sym_check_sym_deps(struct symbol *sym)
1193{
1194 struct symbol *sym2;
1195 struct property *prop;
1196 struct dep_stack stack;
1197
1198 dep_stack_insert(&stack, sym);
1199
1200 stack.expr = &sym->dir_dep.expr;
1201 sym2 = sym_check_expr_deps(sym->dir_dep.expr);
1202 if (sym2)
1203 goto out;
1204
1205 stack.expr = &sym->rev_dep.expr;
1206 sym2 = sym_check_expr_deps(sym->rev_dep.expr);
1207 if (sym2)
1208 goto out;
1209
1210 stack.expr = &sym->implied.expr;
1211 sym2 = sym_check_expr_deps(sym->implied.expr);
1212 if (sym2)
1213 goto out;
1214
1215 stack.expr = NULL;
1216
1217 for (prop = sym->prop; prop; prop = prop->next) {
1218 if (prop->type == P_SELECT || prop->type == P_IMPLY)
1219 continue;
1220 stack.prop = prop;
1221 sym2 = sym_check_expr_deps(prop->visible.expr);
1222 if (sym2)
1223 break;
1224 if (prop->type != P_DEFAULT || sym_is_choice(sym))
1225 continue;
1226 stack.expr = &prop->expr;
1227 sym2 = sym_check_expr_deps(prop->expr);
1228 if (sym2)
1229 break;
1230 stack.expr = NULL;
1231 }
1232
1233out:
1234 dep_stack_remove();
1235
1236 return sym2;
1237}
1238
1239static struct symbol *sym_check_choice_deps(struct symbol *choice)
1240{
1241 struct menu *choice_menu, *menu;
1242 struct symbol *sym2;
1243 struct dep_stack stack;
1244
1245 dep_stack_insert(&stack, choice);
1246
1247 choice_menu = list_first_entry(&choice->menus, struct menu, link);
1248
1249 menu_for_each_sub_entry(menu, choice_menu) {
1250 if (menu->sym)
1251 menu->sym->flags |= SYMBOL_CHECK | SYMBOL_CHECKED;
1252 }
1253
1254 choice->flags |= (SYMBOL_CHECK | SYMBOL_CHECKED);
1255 sym2 = sym_check_sym_deps(choice);
1256 choice->flags &= ~SYMBOL_CHECK;
1257 if (sym2)
1258 goto out;
1259
1260 menu_for_each_sub_entry(menu, choice_menu) {
1261 if (!menu->sym)
1262 continue;
1263 sym2 = sym_check_sym_deps(menu->sym);
1264 if (sym2)
1265 break;
1266 }
1267out:
1268 menu_for_each_sub_entry(menu, choice_menu)
1269 if (menu->sym)
1270 menu->sym->flags &= ~SYMBOL_CHECK;
1271
1272 if (sym2) {
1273 struct menu *choice_menu2;
1274
1275 choice_menu2 = sym_get_choice_menu(sym2);
1276 if (choice_menu2 == choice_menu)
1277 sym2 = choice;
1278 }
1279
1280 dep_stack_remove();
1281
1282 return sym2;
1283}
1284
1285struct symbol *sym_check_deps(struct symbol *sym)
1286{
1287 struct menu *choice;
1288 struct symbol *sym2;
1289
1290 if (sym->flags & SYMBOL_CHECK) {
1291 sym_check_print_recursive(sym);
1292 return sym;
1293 }
1294 if (sym->flags & SYMBOL_CHECKED)
1295 return NULL;
1296
1297 choice = sym_get_choice_menu(sym);
1298 if (choice) {
1299 struct dep_stack stack;
1300
1301 /* for choice groups start the check with main choice symbol */
1302 dep_stack_insert(&stack, sym);
1303 sym2 = sym_check_deps(choice->sym);
1304 dep_stack_remove();
1305 } else if (sym_is_choice(sym)) {
1306 sym2 = sym_check_choice_deps(sym);
1307 } else {
1308 sym->flags |= (SYMBOL_CHECK | SYMBOL_CHECKED);
1309 sym2 = sym_check_sym_deps(sym);
1310 sym->flags &= ~SYMBOL_CHECK;
1311 }
1312
1313 return sym2;
1314}
1315
1316struct symbol *prop_get_symbol(const struct property *prop)
1317{
1318 if (prop->expr && prop->expr->type == E_SYMBOL)
1319 return prop->expr->left.sym;
1320 return NULL;
1321}
1322
1323const char *prop_get_type_name(enum prop_type type)
1324{
1325 switch (type) {
1326 case P_PROMPT:
1327 return "prompt";
1328 case P_COMMENT:
1329 return "comment";
1330 case P_MENU:
1331 return "menu";
1332 case P_DEFAULT:
1333 return "default";
1334 case P_SELECT:
1335 return "select";
1336 case P_IMPLY:
1337 return "imply";
1338 case P_RANGE:
1339 return "range";
1340 case P_UNKNOWN:
1341 break;
1342 }
1343 return "unknown";
1344}