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source: kBuild/trunk/src/gmake/variable.c@ 552

Last change on this file since 552 was 552, checked in by bird, 18 years ago
  • kBuild/footer.kmk:

o Recursive template inheritance.

  • kBuild/header.kmk, kBuild/footer.kmk:

o Removed some checks for features which are present in both gmake 3.81 and kmk.

Anyone trying to bootstrap kBuild will have to build gmake 3.81 first.

  • Config.kmk, src/gmake:

o Allow all kinds of ways of saying Windows in BUILD_TARGET.

  • kBuild/bin/x86.win32/:

o Rebuilt kmk.exe.

  • kBuild/bin/x86.os2/:

o Added kDepPre.exe and kDepIDB.exe.
o Rebuilt kmk.exe and kmk_gmake.exe.

  • src/gmake:

o Update KMK_FEATURES to include the optimizations from earlier this week.

  • Property svn:eol-style set to native
File size: 56.2 KB
Line 
1/* Internals of variables for GNU Make.
2Copyright (C) 1988, 1989, 1990, 1991, 1992, 1993, 1994, 1995, 1996, 1997,
31998, 1999, 2000, 2001, 2002, 2003, 2004, 2005, 2006 Free Software
4Foundation, Inc.
5This file is part of GNU Make.
6
7GNU Make is free software; you can redistribute it and/or modify it under the
8terms of the GNU General Public License as published by the Free Software
9Foundation; either version 2, or (at your option) any later version.
10
11GNU Make is distributed in the hope that it will be useful, but WITHOUT ANY
12WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR
13A PARTICULAR PURPOSE. See the GNU General Public License for more details.
14
15You should have received a copy of the GNU General Public License along with
16GNU Make; see the file COPYING. If not, write to the Free Software
17Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA. */
18
19#include "make.h"
20
21#include <assert.h>
22
23#include "dep.h"
24#include "filedef.h"
25#include "job.h"
26#include "commands.h"
27#include "variable.h"
28#include "rule.h"
29#ifdef WINDOWS32
30#include "pathstuff.h"
31#endif
32#include "hash.h"
33
34/* Chain of all pattern-specific variables. */
35
36static struct pattern_var *pattern_vars;
37
38/* Pointer to last struct in the chain, so we can add onto the end. */
39
40static struct pattern_var *last_pattern_var;
41
42/* Create a new pattern-specific variable struct. */
43
44struct pattern_var *
45create_pattern_var (char *target, char *suffix)
46{
47 register struct pattern_var *p
48 = (struct pattern_var *) xmalloc (sizeof (struct pattern_var));
49
50 if (last_pattern_var != 0)
51 last_pattern_var->next = p;
52 else
53 pattern_vars = p;
54 last_pattern_var = p;
55 p->next = 0;
56
57 p->target = target;
58 p->len = strlen (target);
59 p->suffix = suffix + 1;
60
61 return p;
62}
63
64/* Look up a target in the pattern-specific variable list. */
65
66static struct pattern_var *
67lookup_pattern_var (struct pattern_var *start, char *target)
68{
69 struct pattern_var *p;
70 unsigned int targlen = strlen(target);
71
72 for (p = start ? start->next : pattern_vars; p != 0; p = p->next)
73 {
74 char *stem;
75 unsigned int stemlen;
76
77 if (p->len > targlen)
78 /* It can't possibly match. */
79 continue;
80
81 /* From the lengths of the filename and the pattern parts,
82 find the stem: the part of the filename that matches the %. */
83 stem = target + (p->suffix - p->target - 1);
84 stemlen = targlen - p->len + 1;
85
86 /* Compare the text in the pattern before the stem, if any. */
87 if (stem > target && !strneq (p->target, target, stem - target))
88 continue;
89
90 /* Compare the text in the pattern after the stem, if any.
91 We could test simply using streq, but this way we compare the
92 first two characters immediately. This saves time in the very
93 common case where the first character matches because it is a
94 period. */
95 if (*p->suffix == stem[stemlen]
96 && (*p->suffix == '\0' || streq (&p->suffix[1], &stem[stemlen+1])))
97 break;
98 }
99
100 return p;
101}
102
103
104/* Hash table of all global variable definitions. */
105
106#ifdef CONFIG_WITH_OPTIMIZATION_HACKS
107# ifdef _MSC_VER
108# define inline _inline
109typedef signed int int32_t;
110typedef signed short int int16_t;
111# endif
112static inline unsigned long variable_hash_2i(register const unsigned char *var, register int length)
113{
114 register unsigned int hash = 0;
115 var += length;
116 switch (length)
117 {
118 default:
119 case 16: hash = *--var + (hash << 6) + (hash << 16) - hash;
120 case 15: hash = *--var + (hash << 6) + (hash << 16) - hash;
121 case 14: hash = *--var + (hash << 6) + (hash << 16) - hash;
122 case 13: hash = *--var + (hash << 6) + (hash << 16) - hash;
123 case 12: hash = *--var + (hash << 6) + (hash << 16) - hash;
124 case 11: hash = *--var + (hash << 6) + (hash << 16) - hash;
125 case 10: hash = *--var + (hash << 6) + (hash << 16) - hash;
126 case 9: hash = *--var + (hash << 6) + (hash << 16) - hash;
127 case 8: hash = *--var + (hash << 6) + (hash << 16) - hash;
128 case 7: hash = *--var + (hash << 6) + (hash << 16) - hash;
129 case 6: hash = *--var + (hash << 6) + (hash << 16) - hash;
130 case 5: hash = *--var + (hash << 6) + (hash << 16) - hash;
131 case 4: hash = *--var + (hash << 6) + (hash << 16) - hash;
132 case 3: hash = *--var + (hash << 6) + (hash << 16) - hash;
133 case 2: hash = *--var + (hash << 6) + (hash << 16) - hash;
134 case 1: hash = *--var + (hash << 6) + (hash << 16) - hash;
135 case 0:
136 break;
137 }
138 return hash;
139}
140
141static inline unsigned long variable_hash_1i(register const unsigned char *var, register int length)
142{
143 register unsigned int hash = ((5381 << 5) + 5381) + *var;
144 switch (length)
145 {
146 default:
147 case 8: hash = ((hash << 5) + hash) + var[7];
148 case 7: hash = ((hash << 5) + hash) + var[6];
149 case 6: hash = ((hash << 5) + hash) + var[5];
150 case 5: hash = ((hash << 5) + hash) + var[4];
151 case 4: hash = ((hash << 5) + hash) + var[3];
152 case 3: hash = ((hash << 5) + hash) + var[2];
153 case 2: hash = ((hash << 5) + hash) + var[1];
154 case 1: return hash;
155 case 0: return 5381; /* shouldn't happen */
156 }
157}
158#endif /* CONFIG_WITH_OPTIMIZATION_HACKS */
159
160static unsigned long
161variable_hash_1 (const void *keyv)
162{
163 struct variable const *key = (struct variable const *) keyv;
164#ifdef VARIABLE_HASH /* bird */
165# ifdef VARIABLE_HASH_STRICT
166 if (key->hash1 != variable_hash_1i (key->name, key->length))
167 __asm__("int3");
168 if (key->hash2 && key->hash2 != variable_hash_2i (key->name, key->length))
169 __asm__("int3");
170# endif
171 return key->hash1;
172#else
173# ifdef CONFIG_WITH_OPTIMIZATION_HACKS
174 return variable_hash_1i (key->name, key->length);
175# else
176 return_STRING_N_HASH_1 (key->name, key->length);
177# endif
178#endif
179}
180
181static unsigned long
182variable_hash_2 (const void *keyv)
183{
184#ifdef VARIABLE_HASH /* bird */
185 struct variable *key = (struct variable *) keyv;
186 if (!key->hash2)
187 key->hash2 = variable_hash_2i (key->name, key->length);
188 return key->hash2;
189#else
190 struct variable const *key = (struct variable const *) keyv;
191# ifdef CONFIG_WITH_OPTIMIZATION_HACKS
192 return variable_hash_2i (key->name, key->length);
193# else
194 return_STRING_N_HASH_2 (key->name, key->length);
195# endif
196#endif
197}
198
199static int
200variable_hash_cmp (const void *xv, const void *yv)
201{
202 struct variable const *x = (struct variable const *) xv;
203 struct variable const *y = (struct variable const *) yv;
204 int result = x->length - y->length;
205 if (result)
206 return result;
207#ifdef VARIABLE_HASH_STRICT /* bird */
208 if (x->hash1 != variable_hash_1i (x->name, x->length))
209 __asm__("int3");
210 if (x->hash2 && x->hash2 != variable_hash_2i (x->name, x->length))
211 __asm__("int3");
212 if (y->hash1 != variable_hash_1i (y->name, y->length))
213 __asm__("int3");
214 if (y->hash2 && y->hash2 != variable_hash_2i (y->name, y->length))
215 __asm__("int3");
216#endif
217#ifdef VARIABLE_HASH
218 /* hash 1 */
219 result = x->hash1 - y->hash1;
220 if (result)
221 return result;
222#endif
223#ifdef CONFIG_WITH_OPTIMIZATION_HACKS /* bird: speed */
224 {
225 const char *xs = x->name;
226 const char *ys = y->name;
227 switch (x->length)
228 {
229 case 8:
230 result = *(int32_t*)(xs + 4) - *(int32_t*)(ys + 4);
231 if (result)
232 return result;
233 return *(int32_t*)xs - *(int32_t*)ys;
234 case 7:
235 result = xs[6] - ys[6];
236 if (result)
237 return result;
238 case 6:
239 result = *(int32_t*)xs - *(int32_t*)ys;
240 if (result)
241 return result;
242 return *(int16_t*)(xs + 4) - *(int16_t*)(ys + 4);
243 case 5:
244 result = xs[4] - ys[4];
245 if (result)
246 return result;
247 case 4:
248 return *(int32_t*)xs - *(int32_t*)ys;
249 case 3:
250 result = xs[2] - ys[2];
251 if (result)
252 return result;
253 case 2:
254 return *(int16_t*)xs - *(int16_t*)ys;
255 case 1:
256 return *xs - *ys;
257 case 0:
258 return 0;
259 }
260 }
261#endif /* CONFIG_WITH_OPTIMIZATION_HACKS */
262#ifdef VARIABLE_HASH
263 /* hash 2 */
264 if (!x->hash2)
265 ((struct variable *)x)->hash2 = variable_hash_2i (x->name, x->length);
266 if (!y->hash2)
267 ((struct variable *)y)->hash2 = variable_hash_2i (y->name, y->length);
268 result = x->hash2 - y->hash2;
269 if (result)
270 return result;
271#endif
272#ifdef CONFIG_WITH_OPTIMIZATION_HACKS
273 return memcmp (x->name, y->name, x->length);
274#else
275 return_STRING_N_COMPARE (x->name, y->name, x->length);
276#endif
277}
278
279#ifndef VARIABLE_BUCKETS
280#define VARIABLE_BUCKETS 523
281#endif
282#ifndef PERFILE_VARIABLE_BUCKETS
283#define PERFILE_VARIABLE_BUCKETS 23
284#endif
285#ifndef SMALL_SCOPE_VARIABLE_BUCKETS
286#define SMALL_SCOPE_VARIABLE_BUCKETS 13
287#endif
288
289static struct variable_set global_variable_set;
290static struct variable_set_list global_setlist
291 = { 0, &global_variable_set };
292struct variable_set_list *current_variable_set_list = &global_setlist;
293
294
295/* Implement variables. */
296
297void
298init_hash_global_variable_set (void)
299{
300 hash_init (&global_variable_set.table,
301#ifdef KMK /* FIMXE: just redefine the bucket size! */
302 16384,
303#else
304 VARIABLE_BUCKETS,
305#endif
306 variable_hash_1, variable_hash_2, variable_hash_cmp);
307}
308
309/* Define variable named NAME with value VALUE in SET. VALUE is copied.
310 LENGTH is the length of NAME, which does not need to be null-terminated.
311 ORIGIN specifies the origin of the variable (makefile, command line
312 or environment).
313 If RECURSIVE is nonzero a flag is set in the variable saying
314 that it should be recursively re-expanded. */
315
316#ifdef CONFIG_WITH_VALUE_LENGTH
317struct variable *
318define_variable_in_set (const char *name, unsigned int length,
319 char *value, unsigned int value_length, int duplicate_value,
320 enum variable_origin origin, int recursive,
321 struct variable_set *set, const struct floc *flocp)
322#else
323struct variable *
324define_variable_in_set (const char *name, unsigned int length,
325 char *value, enum variable_origin origin,
326 int recursive, struct variable_set *set,
327 const struct floc *flocp)
328#endif
329{
330 struct variable *v;
331 struct variable **var_slot;
332 struct variable var_key;
333
334 if (set == NULL)
335 set = &global_variable_set;
336
337 var_key.name = (char *) name;
338 var_key.length = length;
339#ifdef VARIABLE_HASH /* bird */
340 var_key.hash1 = variable_hash_1i (name, length);
341 var_key.hash2 = 0;
342#endif
343 var_slot = (struct variable **) hash_find_slot (&set->table, &var_key);
344
345 if (env_overrides && origin == o_env)
346 origin = o_env_override;
347
348 v = *var_slot;
349 if (! HASH_VACANT (v))
350 {
351 if (env_overrides && v->origin == o_env)
352 /* V came from in the environment. Since it was defined
353 before the switches were parsed, it wasn't affected by -e. */
354 v->origin = o_env_override;
355
356 /* A variable of this name is already defined.
357 If the old definition is from a stronger source
358 than this one, don't redefine it. */
359 if ((int) origin >= (int) v->origin)
360 {
361#ifdef CONFIG_WITH_VALUE_LENGTH
362 if (value_length == ~0U)
363 value_length = strlen (value);
364 else
365 assert (value_length == strlen (value));
366 if (!duplicate_value)
367 {
368 if (v->value != 0)
369 free (v->value);
370 v->value = value;
371 v->value_alloc_len = value_length + 1;
372 }
373 else
374 {
375 if ((unsigned int)v->value_alloc_len <= value_length)
376 {
377 free (v->value);
378 v->value_alloc_len = (value_length + 0x40) & ~0x3f;
379 v->value = xmalloc (v->value_alloc_len);
380 }
381 memcpy (v->value, value, value_length + 1);
382 }
383 v->value_length = value_length;
384#else
385 if (v->value != 0)
386 free (v->value);
387 v->value = xstrdup (value);
388#endif
389 if (flocp != 0)
390 v->fileinfo = *flocp;
391 else
392 v->fileinfo.filenm = 0;
393 v->origin = origin;
394 v->recursive = recursive;
395 }
396 return v;
397 }
398
399 /* Create a new variable definition and add it to the hash table. */
400
401 v = (struct variable *) xmalloc (sizeof (struct variable));
402 v->name = savestring (name, length);
403 v->length = length;
404#ifdef VARIABLE_HASH /* bird */
405 v->hash1 = variable_hash_1i (name, length);
406 v->hash2 = 0;
407#endif
408 hash_insert_at (&set->table, v, var_slot);
409#ifdef CONFIG_WITH_VALUE_LENGTH
410 if (value_length == ~0U)
411 value_length = strlen (value);
412 else
413 assert (value_length == strlen (value));
414 v->value_length = value_length;
415 if (!duplicate_value)
416 {
417 v->value_alloc_len = value_length + 1;
418 v->value = value;
419 }
420 else
421 {
422 v->value_alloc_len = (value_length + 32) & ~31;
423 v->value = xmalloc (v->value_alloc_len);
424 memcpy (v->value, value, value_length + 1);
425 }
426#else
427 v->value = xstrdup (value);
428#endif
429 if (flocp != 0)
430 v->fileinfo = *flocp;
431 else
432 v->fileinfo.filenm = 0;
433 v->origin = origin;
434 v->recursive = recursive;
435 v->special = 0;
436 v->expanding = 0;
437 v->exp_count = 0;
438 v->per_target = 0;
439 v->append = 0;
440 v->export = v_default;
441
442 v->exportable = 1;
443 if (*name != '_' && (*name < 'A' || *name > 'Z')
444 && (*name < 'a' || *name > 'z'))
445 v->exportable = 0;
446 else
447 {
448 for (++name; *name != '\0'; ++name)
449 if (*name != '_' && (*name < 'a' || *name > 'z')
450 && (*name < 'A' || *name > 'Z') && !ISDIGIT(*name))
451 break;
452
453 if (*name != '\0')
454 v->exportable = 0;
455 }
456
457 return v;
458}
459
460
461/* If the variable passed in is "special", handle its special nature.
462 Currently there are two such variables, both used for introspection:
463 .VARIABLES expands to a list of all the variables defined in this instance
464 of make.
465 .TARGETS expands to a list of all the targets defined in this
466 instance of make.
467 Returns the variable reference passed in. */
468
469#define EXPANSION_INCREMENT(_l) ((((_l) / 500) + 1) * 500)
470
471static struct variable *
472handle_special_var (struct variable *var)
473{
474 static unsigned long last_var_count = 0;
475
476
477 /* This one actually turns out to be very hard, due to the way the parser
478 records targets. The way it works is that target information is collected
479 internally until make knows the target is completely specified. It unitl
480 it sees that some new construct (a new target or variable) is defined that
481 it knows the previous one is done. In short, this means that if you do
482 this:
483
484 all:
485
486 TARGS := $(.TARGETS)
487
488 then $(TARGS) won't contain "all", because it's not until after the
489 variable is created that the previous target is completed.
490
491 Changing this would be a major pain. I think a less complex way to do it
492 would be to pre-define the target files as soon as the first line is
493 parsed, then come back and do the rest of the definition as now. That
494 would allow $(.TARGETS) to be correct without a major change to the way
495 the parser works.
496
497 if (streq (var->name, ".TARGETS"))
498 var->value = build_target_list (var->value);
499 else
500 */
501
502 if (streq (var->name, ".VARIABLES")
503 && global_variable_set.table.ht_fill != last_var_count)
504 {
505 unsigned long max = EXPANSION_INCREMENT (strlen (var->value));
506 unsigned long len;
507 char *p;
508 struct variable **vp = (struct variable **) global_variable_set.table.ht_vec;
509 struct variable **end = &vp[global_variable_set.table.ht_size];
510
511 /* Make sure we have at least MAX bytes in the allocated buffer. */
512 var->value = xrealloc (var->value, max);
513
514 /* Walk through the hash of variables, constructing a list of names. */
515 p = var->value;
516 len = 0;
517 for (; vp < end; ++vp)
518 if (!HASH_VACANT (*vp))
519 {
520 struct variable *v = *vp;
521 int l = v->length;
522
523 len += l + 1;
524 if (len > max)
525 {
526 unsigned long off = p - var->value;
527
528 max += EXPANSION_INCREMENT (l + 1);
529 var->value = xrealloc (var->value, max);
530 p = &var->value[off];
531 }
532
533 bcopy (v->name, p, l);
534 p += l;
535 *(p++) = ' ';
536 }
537 *(p-1) = '\0';
538
539 /* Remember how many variables are in our current count. Since we never
540 remove variables from the list, this is a reliable way to know whether
541 the list is up to date or needs to be recomputed. */
542
543 last_var_count = global_variable_set.table.ht_fill;
544 }
545
546 return var;
547}
548
549
550
551/* Lookup a variable whose name is a string starting at NAME
552 and with LENGTH chars. NAME need not be null-terminated.
553 Returns address of the `struct variable' containing all info
554 on the variable, or nil if no such variable is defined. */
555
556struct variable *
557lookup_variable (const char *name, unsigned int length)
558{
559 const struct variable_set_list *setlist;
560 struct variable var_key;
561
562 var_key.name = (char *) name;
563 var_key.length = length;
564#ifdef VARIABLE_HASH /* bird */
565 var_key.hash1 = variable_hash_1i (name, length);
566 var_key.hash2 = 0;
567#endif
568
569 for (setlist = current_variable_set_list;
570 setlist != 0; setlist = setlist->next)
571 {
572#ifdef VARIABLE_HASH /* bird: speed */
573 struct hash_table *ht = &setlist->set->table;
574 unsigned int hash_1 = var_key.hash1;
575 struct variable *v;
576
577 ht->ht_lookups++;
578 for (;;)
579 {
580 hash_1 &= (ht->ht_size - 1);
581 v = (struct variable *)ht->ht_vec[hash_1];
582
583 if (v == 0)
584 break;
585 if ((void *)v != hash_deleted_item)
586 {
587 if (variable_hash_cmp(&var_key, v) == 0)
588 {
589# ifdef VARIABLE_HASH_STRICT /* bird */
590 struct variable *v2 = (struct variable *) hash_find_item ((struct hash_table *) &setlist->set->table, &var_key);
591 assert(v2 == v);
592# endif
593 return v->special ? handle_special_var (v) : v;
594 }
595 ht->ht_collisions++;
596 }
597 if (!var_key.hash2)
598 var_key.hash2 = variable_hash_2i(name, length);
599 hash_1 += (var_key.hash2 | 1);
600 }
601
602#else /* !VARIABLE_HASH */
603 const struct variable_set *set = setlist->set;
604 struct variable *v;
605
606 v = (struct variable *) hash_find_item ((struct hash_table *) &set->table, &var_key);
607 if (v)
608 return v->special ? handle_special_var (v) : v;
609#endif /* !VARIABLE_HASH */
610 }
611
612#ifdef VMS
613 /* since we don't read envp[] on startup, try to get the
614 variable via getenv() here. */
615 {
616 char *vname = alloca (length + 1);
617 char *value;
618 strncpy (vname, name, length);
619 vname[length] = 0;
620 value = getenv (vname);
621 if (value != 0)
622 {
623 char *sptr;
624 int scnt;
625
626 sptr = value;
627 scnt = 0;
628
629 while ((sptr = strchr (sptr, '$')))
630 {
631 scnt++;
632 sptr++;
633 }
634
635 if (scnt > 0)
636 {
637 char *nvalue;
638 char *nptr;
639
640 nvalue = alloca (strlen (value) + scnt + 1);
641 sptr = value;
642 nptr = nvalue;
643
644 while (*sptr)
645 {
646 if (*sptr == '$')
647 {
648 *nptr++ = '$';
649 *nptr++ = '$';
650 }
651 else
652 {
653 *nptr++ = *sptr;
654 }
655 sptr++;
656 }
657
658 *nptr = '\0';
659 return define_variable (vname, length, nvalue, o_env, 1);
660
661 }
662
663 return define_variable (vname, length, value, o_env, 1);
664 }
665 }
666#endif /* VMS */
667
668 return 0;
669}
670
671
672/* Lookup a variable whose name is a string starting at NAME
673 and with LENGTH chars in set SET. NAME need not be null-terminated.
674 Returns address of the `struct variable' containing all info
675 on the variable, or nil if no such variable is defined. */
676
677struct variable *
678lookup_variable_in_set (const char *name, unsigned int length,
679 const struct variable_set *set)
680{
681 struct variable var_key;
682
683 var_key.name = (char *) name;
684 var_key.length = length;
685#ifdef VARIABLE_HASH /* bird */
686 var_key.hash1 = variable_hash_1i (name, length);
687 var_key.hash2 = 0;
688#endif
689
690 return (struct variable *) hash_find_item ((struct hash_table *) &set->table, &var_key);
691}
692
693
694/* Initialize FILE's variable set list. If FILE already has a variable set
695 list, the topmost variable set is left intact, but the the rest of the
696 chain is replaced with FILE->parent's setlist. If FILE is a double-colon
697 rule, then we will use the "root" double-colon target's variable set as the
698 parent of FILE's variable set.
699
700 If we're READing a makefile, don't do the pattern variable search now,
701 since the pattern variable might not have been defined yet. */
702
703void
704initialize_file_variables (struct file *file, int reading)
705{
706 struct variable_set_list *l = file->variables;
707
708 if (l == 0)
709 {
710 l = (struct variable_set_list *)
711 xmalloc (sizeof (struct variable_set_list));
712 l->set = (struct variable_set *) xmalloc (sizeof (struct variable_set));
713 hash_init (&l->set->table, PERFILE_VARIABLE_BUCKETS,
714 variable_hash_1, variable_hash_2, variable_hash_cmp);
715 file->variables = l;
716 }
717
718 /* If this is a double-colon, then our "parent" is the "root" target for
719 this double-colon rule. Since that rule has the same name, parent,
720 etc. we can just use its variables as the "next" for ours. */
721
722 if (file->double_colon && file->double_colon != file)
723 {
724 initialize_file_variables (file->double_colon, reading);
725 l->next = file->double_colon->variables;
726 return;
727 }
728
729 if (file->parent == 0)
730 l->next = &global_setlist;
731 else
732 {
733 initialize_file_variables (file->parent, reading);
734 l->next = file->parent->variables;
735 }
736
737 /* If we're not reading makefiles and we haven't looked yet, see if
738 we can find pattern variables for this target. */
739
740 if (!reading && !file->pat_searched)
741 {
742 struct pattern_var *p;
743
744 p = lookup_pattern_var (0, file->name);
745 if (p != 0)
746 {
747 struct variable_set_list *global = current_variable_set_list;
748
749 /* We found at least one. Set up a new variable set to accumulate
750 all the pattern variables that match this target. */
751
752 file->pat_variables = create_new_variable_set ();
753 current_variable_set_list = file->pat_variables;
754
755 do
756 {
757 /* We found one, so insert it into the set. */
758
759 struct variable *v;
760
761 if (p->variable.flavor == f_simple)
762 {
763 v = define_variable_loc (
764 p->variable.name, strlen (p->variable.name),
765 p->variable.value, p->variable.origin,
766 0, &p->variable.fileinfo);
767
768 v->flavor = f_simple;
769 }
770 else
771 {
772 v = do_variable_definition (
773 &p->variable.fileinfo, p->variable.name,
774 p->variable.value, p->variable.origin,
775 p->variable.flavor, 1);
776 }
777
778 /* Also mark it as a per-target and copy export status. */
779 v->per_target = p->variable.per_target;
780 v->export = p->variable.export;
781 }
782 while ((p = lookup_pattern_var (p, file->name)) != 0);
783
784 current_variable_set_list = global;
785 }
786 file->pat_searched = 1;
787 }
788
789 /* If we have a pattern variable match, set it up. */
790
791 if (file->pat_variables != 0)
792 {
793 file->pat_variables->next = l->next;
794 l->next = file->pat_variables;
795 }
796}
797
798
799/* Pop the top set off the current variable set list,
800 and free all its storage. */
801
802struct variable_set_list *
803create_new_variable_set (void)
804{
805 register struct variable_set_list *setlist;
806 register struct variable_set *set;
807
808 set = (struct variable_set *) xmalloc (sizeof (struct variable_set));
809 hash_init (&set->table, SMALL_SCOPE_VARIABLE_BUCKETS,
810 variable_hash_1, variable_hash_2, variable_hash_cmp);
811
812 setlist = (struct variable_set_list *)
813 xmalloc (sizeof (struct variable_set_list));
814 setlist->set = set;
815 setlist->next = current_variable_set_list;
816
817 return setlist;
818}
819
820static void
821free_variable_name_and_value (const void *item)
822{
823 struct variable *v = (struct variable *) item;
824 free (v->name);
825 free (v->value);
826}
827
828void
829free_variable_set (struct variable_set_list *list)
830{
831 hash_map (&list->set->table, free_variable_name_and_value);
832 hash_free (&list->set->table, 1);
833 free ((char *) list->set);
834 free ((char *) list);
835}
836
837/* Create a new variable set and push it on the current setlist.
838 If we're pushing a global scope (that is, the current scope is the global
839 scope) then we need to "push" it the other way: file variable sets point
840 directly to the global_setlist so we need to replace that with the new one.
841 */
842
843struct variable_set_list *
844push_new_variable_scope (void)
845{
846 current_variable_set_list = create_new_variable_set();
847 if (current_variable_set_list->next == &global_setlist)
848 {
849 /* It was the global, so instead of new -> &global we want to replace
850 &global with the new one and have &global -> new, with current still
851 pointing to &global */
852 struct variable_set *set = current_variable_set_list->set;
853 current_variable_set_list->set = global_setlist.set;
854 global_setlist.set = set;
855 current_variable_set_list->next = global_setlist.next;
856 global_setlist.next = current_variable_set_list;
857 current_variable_set_list = &global_setlist;
858 }
859 return (current_variable_set_list);
860}
861
862void
863pop_variable_scope (void)
864{
865 struct variable_set_list *setlist;
866 struct variable_set *set;
867
868 /* Can't call this if there's no scope to pop! */
869 assert(current_variable_set_list->next != NULL);
870
871 if (current_variable_set_list != &global_setlist)
872 {
873 /* We're not pointing to the global setlist, so pop this one. */
874 setlist = current_variable_set_list;
875 set = setlist->set;
876 current_variable_set_list = setlist->next;
877 }
878 else
879 {
880 /* This set is the one in the global_setlist, but there is another global
881 set beyond that. We want to copy that set to global_setlist, then
882 delete what used to be in global_setlist. */
883 setlist = global_setlist.next;
884 set = global_setlist.set;
885 global_setlist.set = setlist->set;
886 global_setlist.next = setlist->next;
887 }
888
889 /* Free the one we no longer need. */
890 free ((char *) setlist);
891 hash_map (&set->table, free_variable_name_and_value);
892 hash_free (&set->table, 1);
893 free ((char *) set);
894}
895
896
897/* Merge FROM_SET into TO_SET, freeing unused storage in FROM_SET. */
898
899static void
900merge_variable_sets (struct variable_set *to_set,
901 struct variable_set *from_set)
902{
903 struct variable **from_var_slot = (struct variable **) from_set->table.ht_vec;
904 struct variable **from_var_end = from_var_slot + from_set->table.ht_size;
905
906 for ( ; from_var_slot < from_var_end; from_var_slot++)
907 if (! HASH_VACANT (*from_var_slot))
908 {
909 struct variable *from_var = *from_var_slot;
910 struct variable **to_var_slot
911 = (struct variable **) hash_find_slot (&to_set->table, *from_var_slot);
912 if (HASH_VACANT (*to_var_slot))
913 hash_insert_at (&to_set->table, from_var, to_var_slot);
914 else
915 {
916 /* GKM FIXME: delete in from_set->table */
917 free (from_var->value);
918 free (from_var);
919 }
920 }
921}
922
923/* Merge SETLIST1 into SETLIST0, freeing unused storage in SETLIST1. */
924
925void
926merge_variable_set_lists (struct variable_set_list **setlist0,
927 struct variable_set_list *setlist1)
928{
929 struct variable_set_list *to = *setlist0;
930 struct variable_set_list *last0 = 0;
931
932 /* If there's nothing to merge, stop now. */
933 if (!setlist1)
934 return;
935
936 /* This loop relies on the fact that all setlists terminate with the global
937 setlist (before NULL). If that's not true, arguably we SHOULD die. */
938 if (to)
939 while (setlist1 != &global_setlist && to != &global_setlist)
940 {
941 struct variable_set_list *from = setlist1;
942 setlist1 = setlist1->next;
943
944 merge_variable_sets (to->set, from->set);
945
946 last0 = to;
947 to = to->next;
948 }
949
950 if (setlist1 != &global_setlist)
951 {
952 if (last0 == 0)
953 *setlist0 = setlist1;
954 else
955 last0->next = setlist1;
956 }
957}
958
959
960/* Define the automatic variables, and record the addresses
961 of their structures so we can change their values quickly. */
962
963void
964define_automatic_variables (void)
965{
966#if defined(WINDOWS32) || defined(__EMX__)
967 extern char* default_shell;
968#else
969 extern char default_shell[];
970#endif
971 register struct variable *v;
972 char buf[200];
973
974 sprintf (buf, "%u", makelevel);
975 (void) define_variable (MAKELEVEL_NAME, MAKELEVEL_LENGTH, buf, o_env, 0);
976
977 sprintf (buf, "%s%s%s",
978 version_string,
979 (remote_description == 0 || remote_description[0] == '\0')
980 ? "" : "-",
981 (remote_description == 0 || remote_description[0] == '\0')
982 ? "" : remote_description);
983 (void) define_variable ("MAKE_VERSION", 12, buf, o_default, 0);
984
985#ifdef KMK
986 /* Define KMK_VERSION to indicate kMk. */
987 (void) define_variable ("KMK_VERSION", 11, buf, o_default, 0);
988
989 /* Define KMK_FEATURES to indicate various working KMK features. */
990# if defined(CONFIG_WITH_TOUPPER_TOLOWER) \
991 && defined(CONFIG_WITH_VALUE_LENGTH) && defined(CONFIG_WITH_COMPARE) \
992 && defined(KMK_HELPERS)
993 (void) define_variable ("KMK_FEATURES", 12,
994 "abspath"
995 " toupper tolower"
996 " comp-vars"
997 " kb-src-tool kb-obj-base kb-obj-suff kb-src-prop kb-src-one"
998 , o_default, 0);
999# else /* MSC can't deal with strings mixed with #if/#endif, thus the slow way. */
1000 strcpy(buf, "abspath");
1001# if defined(CONFIG_WITH_TOUPPER_TOLOWER)
1002 strcat(buf, " toupper tolower");
1003# endif
1004# if defined(CONFIG_WITH_VALUE_LENGTH) && defined(CONFIG_WITH_COMPARE)
1005 strcat(buf, " comp-vars");
1006# endif
1007# ifdef KMK_HELPERS
1008 strcat(buf, " kb-src-tool kb-obj-base kb-obj-suff kb-src-prop kb-src-one");
1009# endif
1010 (void) define_variable ("KMK_FEATURES", 12, buf, o_default, 0);
1011# endif
1012#endif /* KMK */
1013
1014#ifdef CONFIG_WITH_KMK_BUILTIN
1015 /* The supported kMk Builtin commands. */
1016 (void) define_variable ("KMK_BUILTIN", 11, "append cp echo install ln mkdir rm", o_default, 0);
1017#endif
1018
1019#ifdef __MSDOS__
1020 /* Allow to specify a special shell just for Make,
1021 and use $COMSPEC as the default $SHELL when appropriate. */
1022 {
1023 static char shell_str[] = "SHELL";
1024 const int shlen = sizeof (shell_str) - 1;
1025 struct variable *mshp = lookup_variable ("MAKESHELL", 9);
1026 struct variable *comp = lookup_variable ("COMSPEC", 7);
1027
1028 /* Make $MAKESHELL override $SHELL even if -e is in effect. */
1029 if (mshp)
1030 (void) define_variable (shell_str, shlen,
1031 mshp->value, o_env_override, 0);
1032 else if (comp)
1033 {
1034 /* $COMSPEC shouldn't override $SHELL. */
1035 struct variable *shp = lookup_variable (shell_str, shlen);
1036
1037 if (!shp)
1038 (void) define_variable (shell_str, shlen, comp->value, o_env, 0);
1039 }
1040 }
1041#elif defined(__EMX__)
1042 {
1043 static char shell_str[] = "SHELL";
1044 const int shlen = sizeof (shell_str) - 1;
1045 struct variable *shell = lookup_variable (shell_str, shlen);
1046 struct variable *replace = lookup_variable ("MAKESHELL", 9);
1047
1048 /* if $MAKESHELL is defined in the environment assume o_env_override */
1049 if (replace && *replace->value && replace->origin == o_env)
1050 replace->origin = o_env_override;
1051
1052 /* if $MAKESHELL is not defined use $SHELL but only if the variable
1053 did not come from the environment */
1054 if (!replace || !*replace->value)
1055 if (shell && *shell->value && (shell->origin == o_env
1056 || shell->origin == o_env_override))
1057 {
1058 /* overwrite whatever we got from the environment */
1059 free(shell->value);
1060 shell->value = xstrdup (default_shell);
1061 shell->origin = o_default;
1062 }
1063
1064 /* Some people do not like cmd to be used as the default
1065 if $SHELL is not defined in the Makefile.
1066 With -DNO_CMD_DEFAULT you can turn off this behaviour */
1067# ifndef NO_CMD_DEFAULT
1068 /* otherwise use $COMSPEC */
1069 if (!replace || !*replace->value)
1070 replace = lookup_variable ("COMSPEC", 7);
1071
1072 /* otherwise use $OS2_SHELL */
1073 if (!replace || !*replace->value)
1074 replace = lookup_variable ("OS2_SHELL", 9);
1075# else
1076# warning NO_CMD_DEFAULT: GNU make will not use CMD.EXE as default shell
1077# endif
1078
1079 if (replace && *replace->value)
1080 /* overwrite $SHELL */
1081 (void) define_variable (shell_str, shlen, replace->value,
1082 replace->origin, 0);
1083 else
1084 /* provide a definition if there is none */
1085 (void) define_variable (shell_str, shlen, default_shell,
1086 o_default, 0);
1087 }
1088
1089#endif
1090
1091 /* This won't override any definition, but it will provide one if there
1092 isn't one there. */
1093 v = define_variable ("SHELL", 5, default_shell, o_default, 0);
1094
1095 /* On MSDOS we do use SHELL from environment, since it isn't a standard
1096 environment variable on MSDOS, so whoever sets it, does that on purpose.
1097 On OS/2 we do not use SHELL from environment but we have already handled
1098 that problem above. */
1099#if !defined(__MSDOS__) && !defined(__EMX__)
1100 /* Don't let SHELL come from the environment. */
1101 if (*v->value == '\0' || v->origin == o_env || v->origin == o_env_override)
1102 {
1103 free (v->value);
1104 v->origin = o_file;
1105 v->value = xstrdup (default_shell);
1106#ifdef CONFIG_WITH_VALUE_LENGTH
1107 v->value_length = strlen (v->value);
1108 v->value_alloc_len = v->value_length + 1;
1109#endif
1110 }
1111#endif
1112
1113 /* Make sure MAKEFILES gets exported if it is set. */
1114 v = define_variable ("MAKEFILES", 9, "", o_default, 0);
1115 v->export = v_ifset;
1116
1117 /* Define the magic D and F variables in terms of
1118 the automatic variables they are variations of. */
1119
1120#ifdef VMS
1121 define_variable ("@D", 2, "$(dir $@)", o_automatic, 1);
1122 define_variable ("%D", 2, "$(dir $%)", o_automatic, 1);
1123 define_variable ("*D", 2, "$(dir $*)", o_automatic, 1);
1124 define_variable ("<D", 2, "$(dir $<)", o_automatic, 1);
1125 define_variable ("?D", 2, "$(dir $?)", o_automatic, 1);
1126 define_variable ("^D", 2, "$(dir $^)", o_automatic, 1);
1127 define_variable ("+D", 2, "$(dir $+)", o_automatic, 1);
1128#else
1129 define_variable ("@D", 2, "$(patsubst %/,%,$(dir $@))", o_automatic, 1);
1130 define_variable ("%D", 2, "$(patsubst %/,%,$(dir $%))", o_automatic, 1);
1131 define_variable ("*D", 2, "$(patsubst %/,%,$(dir $*))", o_automatic, 1);
1132 define_variable ("<D", 2, "$(patsubst %/,%,$(dir $<))", o_automatic, 1);
1133 define_variable ("?D", 2, "$(patsubst %/,%,$(dir $?))", o_automatic, 1);
1134 define_variable ("^D", 2, "$(patsubst %/,%,$(dir $^))", o_automatic, 1);
1135 define_variable ("+D", 2, "$(patsubst %/,%,$(dir $+))", o_automatic, 1);
1136#endif
1137 define_variable ("@F", 2, "$(notdir $@)", o_automatic, 1);
1138 define_variable ("%F", 2, "$(notdir $%)", o_automatic, 1);
1139 define_variable ("*F", 2, "$(notdir $*)", o_automatic, 1);
1140 define_variable ("<F", 2, "$(notdir $<)", o_automatic, 1);
1141 define_variable ("?F", 2, "$(notdir $?)", o_automatic, 1);
1142 define_variable ("^F", 2, "$(notdir $^)", o_automatic, 1);
1143 define_variable ("+F", 2, "$(notdir $+)", o_automatic, 1);
1144}
1145
1146
1147int export_all_variables;
1148
1149/* Create a new environment for FILE's commands.
1150 If FILE is nil, this is for the `shell' function.
1151 The child's MAKELEVEL variable is incremented. */
1152
1153char **
1154target_environment (struct file *file)
1155{
1156 struct variable_set_list *set_list;
1157 register struct variable_set_list *s;
1158 struct hash_table table;
1159 struct variable **v_slot;
1160 struct variable **v_end;
1161 struct variable makelevel_key;
1162 char **result_0;
1163 char **result;
1164
1165 if (file == 0)
1166 set_list = current_variable_set_list;
1167 else
1168 set_list = file->variables;
1169
1170 hash_init (&table, VARIABLE_BUCKETS,
1171 variable_hash_1, variable_hash_2, variable_hash_cmp);
1172
1173 /* Run through all the variable sets in the list,
1174 accumulating variables in TABLE. */
1175 for (s = set_list; s != 0; s = s->next)
1176 {
1177 struct variable_set *set = s->set;
1178 v_slot = (struct variable **) set->table.ht_vec;
1179 v_end = v_slot + set->table.ht_size;
1180 for ( ; v_slot < v_end; v_slot++)
1181 if (! HASH_VACANT (*v_slot))
1182 {
1183 struct variable **new_slot;
1184 struct variable *v = *v_slot;
1185
1186 /* If this is a per-target variable and it hasn't been touched
1187 already then look up the global version and take its export
1188 value. */
1189 if (v->per_target && v->export == v_default)
1190 {
1191 struct variable *gv;
1192
1193 gv = lookup_variable_in_set (v->name, strlen(v->name),
1194 &global_variable_set);
1195 if (gv)
1196 v->export = gv->export;
1197 }
1198
1199 switch (v->export)
1200 {
1201 case v_default:
1202 if (v->origin == o_default || v->origin == o_automatic)
1203 /* Only export default variables by explicit request. */
1204 continue;
1205
1206 /* The variable doesn't have a name that can be exported. */
1207 if (! v->exportable)
1208 continue;
1209
1210 if (! export_all_variables
1211 && v->origin != o_command
1212 && v->origin != o_env && v->origin != o_env_override)
1213 continue;
1214 break;
1215
1216 case v_export:
1217 break;
1218
1219 case v_noexport:
1220 /* If this is the SHELL variable and it's not exported, then
1221 add the value from our original environment. */
1222 if (streq (v->name, "SHELL"))
1223 {
1224 extern struct variable shell_var;
1225 v = &shell_var;
1226 break;
1227 }
1228 continue;
1229
1230 case v_ifset:
1231 if (v->origin == o_default)
1232 continue;
1233 break;
1234 }
1235
1236 new_slot = (struct variable **) hash_find_slot (&table, v);
1237 if (HASH_VACANT (*new_slot))
1238 hash_insert_at (&table, v, new_slot);
1239 }
1240 }
1241
1242 makelevel_key.name = MAKELEVEL_NAME;
1243 makelevel_key.length = MAKELEVEL_LENGTH;
1244#ifdef VARIABLE_HASH /* bird */
1245 makelevel_key.hash1 = variable_hash_1i (MAKELEVEL_NAME, MAKELEVEL_LENGTH);
1246 makelevel_key.hash2 = 0;
1247#endif
1248 hash_delete (&table, &makelevel_key);
1249
1250 result = result_0 = (char **) xmalloc ((table.ht_fill + 2) * sizeof (char *));
1251
1252 v_slot = (struct variable **) table.ht_vec;
1253 v_end = v_slot + table.ht_size;
1254 for ( ; v_slot < v_end; v_slot++)
1255 if (! HASH_VACANT (*v_slot))
1256 {
1257 struct variable *v = *v_slot;
1258
1259 /* If V is recursively expanded and didn't come from the environment,
1260 expand its value. If it came from the environment, it should
1261 go back into the environment unchanged. */
1262 if (v->recursive
1263 && v->origin != o_env && v->origin != o_env_override)
1264 {
1265 char *value = recursively_expand_for_file (v, file);
1266#ifdef WINDOWS32
1267 if (strcmp(v->name, "Path") == 0 ||
1268 strcmp(v->name, "PATH") == 0)
1269 convert_Path_to_windows32(value, ';');
1270#endif
1271 *result++ = concat (v->name, "=", value);
1272 free (value);
1273 }
1274 else
1275 {
1276#ifdef WINDOWS32
1277 if (strcmp(v->name, "Path") == 0 ||
1278 strcmp(v->name, "PATH") == 0)
1279 convert_Path_to_windows32(v->value, ';');
1280#endif
1281 *result++ = concat (v->name, "=", v->value);
1282 }
1283 }
1284
1285 *result = (char *) xmalloc (100);
1286 (void) sprintf (*result, "%s=%u", MAKELEVEL_NAME, makelevel + 1);
1287 *++result = 0;
1288
1289 hash_free (&table, 0);
1290
1291 return result_0;
1292}
1293
1294
1295#ifdef CONFIG_WITH_VALUE_LENGTH
1296static struct variable *
1297do_variable_definition_append (const struct floc *flocp, struct variable *v, char *value,
1298 enum variable_origin origin)
1299{
1300 if (env_overrides && origin == o_env)
1301 origin = o_env_override;
1302
1303 if (env_overrides && v->origin == o_env)
1304 /* V came from in the environment. Since it was defined
1305 before the switches were parsed, it wasn't affected by -e. */
1306 v->origin = o_env_override;
1307
1308 /* A variable of this name is already defined.
1309 If the old definition is from a stronger source
1310 than this one, don't redefine it. */
1311 if ((int) origin < (int) v->origin)
1312 return v;
1313 v->origin = origin;
1314
1315 /* location */
1316 if (flocp != 0)
1317 v->fileinfo = *flocp;
1318
1319 /* The juicy bits, append the specified value to the variable
1320 This is a heavily exercied code path in kBuild. */
1321 if (v->recursive)
1322 {
1323 /* The previous definition of the variable was recursive.
1324 The new value is the unexpanded old and new values. */
1325 unsigned int value_len = strlen (value);
1326 unsigned int new_value_len = value_len + (v->value_length != 0 ? 1 + v->value_length : 0);
1327
1328 /* adjust the size. */
1329 if ((unsigned)v->value_alloc_len <= new_value_len)
1330 {
1331 v->value_alloc_len = (new_value_len + 0x80) + 0x7f;
1332 v->value = xrealloc (v->value, v->value_alloc_len);
1333 }
1334
1335 /* insert the new bits */
1336 if (v->value_length != 0)
1337 {
1338 v->value[v->value_length] = ' ';
1339 memcpy (&v->value[v->value_length + 1], value, value_len + 1);
1340 }
1341 else
1342 memcpy (v->value, value, value_len + 1);
1343 v->value_length = new_value_len;
1344 }
1345 else
1346 {
1347 /* The previous definition of the variable was simple.
1348 The new value comes from the old value, which was expanded
1349 when it was set; and from the expanded new value. */
1350 append_expanded_string_to_variable(v, value);
1351 }
1352
1353 /* update the variable */
1354 return v;
1355}
1356#endif /* CONFIG_WITH_VALUE_LENGTH */
1357
1358
1359/* Given a variable, a value, and a flavor, define the variable.
1360 See the try_variable_definition() function for details on the parameters. */
1361
1362struct variable *
1363do_variable_definition (const struct floc *flocp, const char *varname,
1364 char *value, enum variable_origin origin,
1365 enum variable_flavor flavor, int target_var)
1366{
1367 char *p, *alloc_value = NULL;
1368 struct variable *v;
1369 int append = 0;
1370 int conditional = 0;
1371 const size_t varname_len = strlen (varname); /* bird */
1372# ifdef CONFIG_WITH_VALUE_LENGTH
1373 unsigned int value_len = ~0U;
1374# endif
1375
1376 /* Calculate the variable's new value in VALUE. */
1377
1378 switch (flavor)
1379 {
1380 default:
1381 case f_bogus:
1382 /* Should not be possible. */
1383 abort ();
1384 case f_simple:
1385 /* A simple variable definition "var := value". Expand the value.
1386 We have to allocate memory since otherwise it'll clobber the
1387 variable buffer, and we may still need that if we're looking at a
1388 target-specific variable. */
1389 p = alloc_value = allocated_variable_expand (value);
1390 break;
1391 case f_conditional:
1392 /* A conditional variable definition "var ?= value".
1393 The value is set IFF the variable is not defined yet. */
1394 v = lookup_variable (varname, varname_len);
1395 if (v)
1396 return v;
1397
1398 conditional = 1;
1399 flavor = f_recursive;
1400 /* FALLTHROUGH */
1401 case f_recursive:
1402 /* A recursive variable definition "var = value".
1403 The value is used verbatim. */
1404 p = value;
1405 break;
1406 case f_append:
1407 {
1408 /* If we have += but we're in a target variable context, we want to
1409 append only with other variables in the context of this target. */
1410 if (target_var)
1411 {
1412 append = 1;
1413 v = lookup_variable_in_set (varname, varname_len,
1414 current_variable_set_list->set);
1415
1416 /* Don't append from the global set if a previous non-appending
1417 target-specific variable definition exists. */
1418 if (v && !v->append)
1419 append = 0;
1420 }
1421 else
1422 v = lookup_variable (varname, varname_len);
1423
1424 if (v == 0)
1425 {
1426 /* There was no old value.
1427 This becomes a normal recursive definition. */
1428 p = value;
1429 flavor = f_recursive;
1430 }
1431 else
1432 {
1433#ifdef CONFIG_WITH_VALUE_LENGTH
1434 v->append = append;
1435 return do_variable_definition_append (flocp, v, value, origin);
1436#else /* !CONFIG_WITH_VALUE_LENGTH */
1437
1438 /* Paste the old and new values together in VALUE. */
1439
1440 unsigned int oldlen, vallen;
1441 char *val;
1442
1443 val = value;
1444 if (v->recursive)
1445 /* The previous definition of the variable was recursive.
1446 The new value is the unexpanded old and new values. */
1447 flavor = f_recursive;
1448 else
1449 /* The previous definition of the variable was simple.
1450 The new value comes from the old value, which was expanded
1451 when it was set; and from the expanded new value. Allocate
1452 memory for the expansion as we may still need the rest of the
1453 buffer if we're looking at a target-specific variable. */
1454 val = alloc_value = allocated_variable_expand (val);
1455
1456 oldlen = strlen (v->value);
1457 vallen = strlen (val);
1458 p = (char *) alloca (oldlen + 1 + vallen + 1);
1459 bcopy (v->value, p, oldlen);
1460 p[oldlen] = ' ';
1461 bcopy (val, &p[oldlen + 1], vallen + 1);
1462#endif /* !CONFIG_WITH_VALUE_LENGTH */
1463 }
1464 }
1465 }
1466
1467#ifdef __MSDOS__
1468 /* Many Unix Makefiles include a line saying "SHELL=/bin/sh", but
1469 non-Unix systems don't conform to this default configuration (in
1470 fact, most of them don't even have `/bin'). On the other hand,
1471 $SHELL in the environment, if set, points to the real pathname of
1472 the shell.
1473 Therefore, we generally won't let lines like "SHELL=/bin/sh" from
1474 the Makefile override $SHELL from the environment. But first, we
1475 look for the basename of the shell in the directory where SHELL=
1476 points, and along the $PATH; if it is found in any of these places,
1477 we define $SHELL to be the actual pathname of the shell. Thus, if
1478 you have bash.exe installed as d:/unix/bash.exe, and d:/unix is on
1479 your $PATH, then SHELL=/usr/local/bin/bash will have the effect of
1480 defining SHELL to be "d:/unix/bash.exe". */
1481 if ((origin == o_file || origin == o_override)
1482 && strcmp (varname, "SHELL") == 0)
1483 {
1484 PATH_VAR (shellpath);
1485 extern char * __dosexec_find_on_path (const char *, char *[], char *);
1486
1487 /* See if we can find "/bin/sh.exe", "/bin/sh.com", etc. */
1488 if (__dosexec_find_on_path (p, (char **)0, shellpath))
1489 {
1490 char *p;
1491
1492 for (p = shellpath; *p; p++)
1493 {
1494 if (*p == '\\')
1495 *p = '/';
1496 }
1497 v = define_variable_loc (varname, varname_len,
1498 shellpath, origin, flavor == f_recursive,
1499 flocp);
1500 }
1501 else
1502 {
1503 char *shellbase, *bslash;
1504 struct variable *pathv = lookup_variable ("PATH", 4);
1505 char *path_string;
1506 char *fake_env[2];
1507 size_t pathlen = 0;
1508
1509 shellbase = strrchr (p, '/');
1510 bslash = strrchr (p, '\\');
1511 if (!shellbase || bslash > shellbase)
1512 shellbase = bslash;
1513 if (!shellbase && p[1] == ':')
1514 shellbase = p + 1;
1515 if (shellbase)
1516 shellbase++;
1517 else
1518 shellbase = p;
1519
1520 /* Search for the basename of the shell (with standard
1521 executable extensions) along the $PATH. */
1522 if (pathv)
1523 pathlen = strlen (pathv->value);
1524 path_string = (char *)xmalloc (5 + pathlen + 2 + 1);
1525 /* On MSDOS, current directory is considered as part of $PATH. */
1526 sprintf (path_string, "PATH=.;%s", pathv ? pathv->value : "");
1527 fake_env[0] = path_string;
1528 fake_env[1] = (char *)0;
1529 if (__dosexec_find_on_path (shellbase, fake_env, shellpath))
1530 {
1531 char *p;
1532
1533 for (p = shellpath; *p; p++)
1534 {
1535 if (*p == '\\')
1536 *p = '/';
1537 }
1538 v = define_variable_loc (varname, varname_len,
1539 shellpath, origin,
1540 flavor == f_recursive, flocp);
1541 }
1542 else
1543 v = lookup_variable (varname, varname_len);
1544
1545 free (path_string);
1546 }
1547 }
1548 else
1549#endif /* __MSDOS__ */
1550#ifdef WINDOWS32
1551 if ( varname_len == sizeof("SHELL") - 1 /* bird */
1552 && (origin == o_file || origin == o_override || origin == o_command)
1553 && streq (varname, "SHELL"))
1554 {
1555 extern char *default_shell;
1556
1557 /* Call shell locator function. If it returns TRUE, then
1558 set no_default_sh_exe to indicate sh was found and
1559 set new value for SHELL variable. */
1560
1561 if (find_and_set_default_shell (p))
1562 {
1563 v = define_variable_in_set (varname, varname_len, default_shell,
1564# ifdef CONFIG_WITH_VALUE_LENGTH
1565 ~0U, 1 /* duplicate_value */,
1566# endif
1567 origin, flavor == f_recursive,
1568 (target_var
1569 ? current_variable_set_list->set
1570 : NULL),
1571 flocp);
1572 no_default_sh_exe = 0;
1573 }
1574 else
1575 v = lookup_variable (varname, varname_len);
1576# ifdef CONFIG_WITH_VALUE_LENGTH
1577 if (alloc_value)
1578 free (alloc_value);
1579# endif
1580 }
1581 else
1582#endif
1583
1584 /* If we are defining variables inside an $(eval ...), we might have a
1585 different variable context pushed, not the global context (maybe we're
1586 inside a $(call ...) or something. Since this function is only ever
1587 invoked in places where we want to define globally visible variables,
1588 make sure we define this variable in the global set. */
1589
1590 v = define_variable_in_set (varname, varname_len, p,
1591#ifdef CONFIG_WITH_VALUE_LENGTH
1592 value_len, !alloc_value,
1593#endif
1594 origin, flavor == f_recursive,
1595 (target_var
1596 ? current_variable_set_list->set : NULL),
1597 flocp);
1598 v->append = append;
1599 v->conditional = conditional;
1600
1601#ifndef CONFIG_WITH_VALUE_LENGTH
1602 if (alloc_value)
1603 free (alloc_value);
1604#endif
1605
1606 return v;
1607}
1608
1609
1610/* Try to interpret LINE (a null-terminated string) as a variable definition.
1611
1612 ORIGIN may be o_file, o_override, o_env, o_env_override,
1613 or o_command specifying that the variable definition comes
1614 from a makefile, an override directive, the environment with
1615 or without the -e switch, or the command line.
1616
1617 See the comments for parse_variable_definition().
1618
1619 If LINE was recognized as a variable definition, a pointer to its `struct
1620 variable' is returned. If LINE is not a variable definition, NULL is
1621 returned. */
1622
1623struct variable *
1624parse_variable_definition (struct variable *v, char *line)
1625{
1626 register int c;
1627 register char *p = line;
1628 register char *beg;
1629 register char *end;
1630 enum variable_flavor flavor = f_bogus;
1631 char *name;
1632
1633 while (1)
1634 {
1635 c = *p++;
1636 if (c == '\0' || c == '#')
1637 return 0;
1638 if (c == '=')
1639 {
1640 end = p - 1;
1641 flavor = f_recursive;
1642 break;
1643 }
1644 else if (c == ':')
1645 if (*p == '=')
1646 {
1647 end = p++ - 1;
1648 flavor = f_simple;
1649 break;
1650 }
1651 else
1652 /* A colon other than := is a rule line, not a variable defn. */
1653 return 0;
1654 else if (c == '+' && *p == '=')
1655 {
1656 end = p++ - 1;
1657 flavor = f_append;
1658 break;
1659 }
1660 else if (c == '?' && *p == '=')
1661 {
1662 end = p++ - 1;
1663 flavor = f_conditional;
1664 break;
1665 }
1666 else if (c == '$')
1667 {
1668 /* This might begin a variable expansion reference. Make sure we
1669 don't misrecognize chars inside the reference as =, := or +=. */
1670 char closeparen;
1671 int count;
1672 c = *p++;
1673 if (c == '(')
1674 closeparen = ')';
1675 else if (c == '{')
1676 closeparen = '}';
1677 else
1678 continue; /* Nope. */
1679
1680 /* P now points past the opening paren or brace.
1681 Count parens or braces until it is matched. */
1682 count = 0;
1683 for (; *p != '\0'; ++p)
1684 {
1685 if (*p == c)
1686 ++count;
1687 else if (*p == closeparen && --count < 0)
1688 {
1689 ++p;
1690 break;
1691 }
1692 }
1693 }
1694 }
1695 v->flavor = flavor;
1696
1697 beg = next_token (line);
1698 while (end > beg && isblank ((unsigned char)end[-1]))
1699 --end;
1700 p = next_token (p);
1701 v->value = p;
1702#ifdef CONFIG_WITH_VALUE_LENGTH
1703 v->value_length = v->value_alloc_len = -1;
1704#endif
1705
1706 /* Expand the name, so "$(foo)bar = baz" works. */
1707 name = (char *) alloca (end - beg + 1);
1708 bcopy (beg, name, end - beg);
1709 name[end - beg] = '\0';
1710 v->name = allocated_variable_expand (name);
1711
1712 if (v->name[0] == '\0')
1713 fatal (&v->fileinfo, _("empty variable name"));
1714
1715 return v;
1716}
1717
1718
1719/* Try to interpret LINE (a null-terminated string) as a variable definition.
1720
1721 ORIGIN may be o_file, o_override, o_env, o_env_override,
1722 or o_command specifying that the variable definition comes
1723 from a makefile, an override directive, the environment with
1724 or without the -e switch, or the command line.
1725
1726 See the comments for parse_variable_definition().
1727
1728 If LINE was recognized as a variable definition, a pointer to its `struct
1729 variable' is returned. If LINE is not a variable definition, NULL is
1730 returned. */
1731
1732struct variable *
1733try_variable_definition (const struct floc *flocp, char *line,
1734 enum variable_origin origin, int target_var)
1735{
1736 struct variable v;
1737 struct variable *vp;
1738
1739 if (flocp != 0)
1740 v.fileinfo = *flocp;
1741 else
1742 v.fileinfo.filenm = 0;
1743
1744 if (!parse_variable_definition (&v, line))
1745 return 0;
1746
1747 vp = do_variable_definition (flocp, v.name, v.value,
1748 origin, v.flavor, target_var);
1749
1750 free (v.name);
1751
1752 return vp;
1753}
1754
1755
1756/* Print information for variable V, prefixing it with PREFIX. */
1757
1758static void
1759print_variable (const void *item, void *arg)
1760{
1761 const struct variable *v = (struct variable *) item;
1762 const char *prefix = (char *) arg;
1763 const char *origin;
1764
1765 switch (v->origin)
1766 {
1767 case o_default:
1768 origin = _("default");
1769 break;
1770 case o_env:
1771 origin = _("environment");
1772 break;
1773 case o_file:
1774 origin = _("makefile");
1775 break;
1776 case o_env_override:
1777 origin = _("environment under -e");
1778 break;
1779 case o_command:
1780 origin = _("command line");
1781 break;
1782 case o_override:
1783 origin = _("`override' directive");
1784 break;
1785 case o_automatic:
1786 origin = _("automatic");
1787 break;
1788 case o_invalid:
1789 default:
1790 abort ();
1791 }
1792 fputs ("# ", stdout);
1793 fputs (origin, stdout);
1794 if (v->fileinfo.filenm)
1795 printf (_(" (from `%s', line %lu)"),
1796 v->fileinfo.filenm, v->fileinfo.lineno);
1797 putchar ('\n');
1798 fputs (prefix, stdout);
1799
1800 /* Is this a `define'? */
1801 if (v->recursive && strchr (v->value, '\n') != 0)
1802 printf ("define %s\n%s\nendef\n", v->name, v->value);
1803 else
1804 {
1805 register char *p;
1806
1807 printf ("%s %s= ", v->name, v->recursive ? v->append ? "+" : "" : ":");
1808
1809 /* Check if the value is just whitespace. */
1810 p = next_token (v->value);
1811 if (p != v->value && *p == '\0')
1812 /* All whitespace. */
1813 printf ("$(subst ,,%s)", v->value);
1814 else if (v->recursive)
1815 fputs (v->value, stdout);
1816 else
1817 /* Double up dollar signs. */
1818 for (p = v->value; *p != '\0'; ++p)
1819 {
1820 if (*p == '$')
1821 putchar ('$');
1822 putchar (*p);
1823 }
1824 putchar ('\n');
1825 }
1826}
1827
1828
1829/* Print all the variables in SET. PREFIX is printed before
1830 the actual variable definitions (everything else is comments). */
1831
1832void
1833print_variable_set (struct variable_set *set, char *prefix)
1834{
1835 hash_map_arg (&set->table, print_variable, prefix);
1836
1837 fputs (_("# variable set hash-table stats:\n"), stdout);
1838 fputs ("# ", stdout);
1839 hash_print_stats (&set->table, stdout);
1840 putc ('\n', stdout);
1841}
1842
1843/* Print the data base of variables. */
1844
1845void
1846print_variable_data_base (void)
1847{
1848 puts (_("\n# Variables\n"));
1849
1850 print_variable_set (&global_variable_set, "");
1851
1852 puts (_("\n# Pattern-specific Variable Values"));
1853
1854 {
1855 struct pattern_var *p;
1856 int rules = 0;
1857
1858 for (p = pattern_vars; p != 0; p = p->next)
1859 {
1860 ++rules;
1861 printf ("\n%s :\n", p->target);
1862 print_variable (&p->variable, "# ");
1863 }
1864
1865 if (rules == 0)
1866 puts (_("\n# No pattern-specific variable values."));
1867 else
1868 printf (_("\n# %u pattern-specific variable values"), rules);
1869 }
1870}
1871
1872
1873/* Print all the local variables of FILE. */
1874
1875void
1876print_file_variables (struct file *file)
1877{
1878 if (file->variables != 0)
1879 print_variable_set (file->variables->set, "# ");
1880}
1881
1882#ifdef WINDOWS32
1883void
1884sync_Path_environment (void)
1885{
1886 char *path = allocated_variable_expand ("$(PATH)");
1887 static char *environ_path = NULL;
1888
1889 if (!path)
1890 return;
1891
1892 /*
1893 * If done this before, don't leak memory unnecessarily.
1894 * Free the previous entry before allocating new one.
1895 */
1896 if (environ_path)
1897 free (environ_path);
1898
1899 /*
1900 * Create something WINDOWS32 world can grok
1901 */
1902 convert_Path_to_windows32 (path, ';');
1903 environ_path = concat ("PATH", "=", path);
1904 putenv (environ_path);
1905 free (path);
1906}
1907#endif
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