init.c revision 1.65 1 1.65 rillig /* $NetBSD: init.c,v 1.65 2021/01/30 18:16:45 rillig Exp $ */
2 1.2 cgd
3 1.1 cgd /*
4 1.1 cgd * Copyright (c) 1994, 1995 Jochen Pohl
5 1.1 cgd * All Rights Reserved.
6 1.1 cgd *
7 1.1 cgd * Redistribution and use in source and binary forms, with or without
8 1.1 cgd * modification, are permitted provided that the following conditions
9 1.1 cgd * are met:
10 1.1 cgd * 1. Redistributions of source code must retain the above copyright
11 1.1 cgd * notice, this list of conditions and the following disclaimer.
12 1.1 cgd * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 cgd * notice, this list of conditions and the following disclaimer in the
14 1.1 cgd * documentation and/or other materials provided with the distribution.
15 1.1 cgd * 3. All advertising materials mentioning features or use of this software
16 1.1 cgd * must display the following acknowledgement:
17 1.1 cgd * This product includes software developed by Jochen Pohl for
18 1.1 cgd * The NetBSD Project.
19 1.1 cgd * 4. The name of the author may not be used to endorse or promote products
20 1.1 cgd * derived from this software without specific prior written permission.
21 1.1 cgd *
22 1.1 cgd * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
23 1.1 cgd * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
24 1.1 cgd * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
25 1.1 cgd * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
26 1.1 cgd * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
27 1.1 cgd * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
28 1.1 cgd * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
29 1.1 cgd * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
30 1.1 cgd * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
31 1.1 cgd * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
32 1.1 cgd */
33 1.1 cgd
34 1.18 jmc #if HAVE_NBTOOL_CONFIG_H
35 1.18 jmc #include "nbtool_config.h"
36 1.18 jmc #endif
37 1.18 jmc
38 1.5 christos #include <sys/cdefs.h>
39 1.10 tv #if defined(__RCSID) && !defined(lint)
40 1.65 rillig __RCSID("$NetBSD: init.c,v 1.65 2021/01/30 18:16:45 rillig Exp $");
41 1.1 cgd #endif
42 1.1 cgd
43 1.1 cgd #include <stdlib.h>
44 1.17 thorpej #include <string.h>
45 1.1 cgd
46 1.1 cgd #include "lint1.h"
47 1.1 cgd
48 1.53 rillig
49 1.53 rillig /*
50 1.53 rillig * Type of stack which is used for initialisation of aggregate types.
51 1.54 rillig *
52 1.54 rillig * XXX: Since C99, a stack is an inappropriate data structure for modelling
53 1.54 rillig * an initialization, since the designators don't have to be listed in a
54 1.54 rillig * particular order and can designate parts of sub-objects. The member names
55 1.54 rillig * of non-leaf structs may thus appear repeatedly, as demonstrated in
56 1.54 rillig * d_init_pop_member.c.
57 1.54 rillig *
58 1.54 rillig * XXX: During initialization, there may be members of the top-level struct
59 1.54 rillig * that are partially initialized. The simple i_remaining cannot model this
60 1.54 rillig * appropriately.
61 1.54 rillig *
62 1.54 rillig * See C99 6.7.8, which spans 6 pages full of tricky details and carefully
63 1.54 rillig * selected examples.
64 1.53 rillig */
65 1.53 rillig typedef struct istk {
66 1.53 rillig type_t *i_type; /* type of initialisation */
67 1.53 rillig type_t *i_subt; /* type of next level */
68 1.56 rillig bool i_brace : 1; /* need } for pop */
69 1.56 rillig bool i_nolimit : 1; /* incomplete array type */
70 1.56 rillig bool i_namedmem : 1; /* has c9x named members */
71 1.53 rillig sym_t *i_mem; /* next structure member */
72 1.53 rillig int i_remaining; /* # of remaining elements */
73 1.53 rillig struct istk *i_next; /* previous level */
74 1.53 rillig } istk_t;
75 1.53 rillig
76 1.55 rillig /*
77 1.55 rillig * The names for a nested C99 initialization designator, in a circular list.
78 1.55 rillig *
79 1.55 rillig * Example:
80 1.55 rillig * struct stat st = {
81 1.55 rillig * .st_size = 123,
82 1.55 rillig * .st_mtim.tv_sec = 45,
83 1.55 rillig * .st_mtim.tv_nsec
84 1.55 rillig * };
85 1.55 rillig *
86 1.55 rillig * During initialization, this list first contains ["st_size"], then
87 1.55 rillig * ["st_mtim", "tv_sec"], then ["st_mtim", "tv_nsec"].
88 1.55 rillig */
89 1.53 rillig typedef struct namlist {
90 1.53 rillig const char *n_name;
91 1.53 rillig struct namlist *n_prev;
92 1.53 rillig struct namlist *n_next;
93 1.53 rillig } namlist_t;
94 1.53 rillig
95 1.53 rillig
96 1.1 cgd /*
97 1.8 wiz * initerr is set as soon as a fatal error occurred in an initialisation.
98 1.1 cgd * The effect is that the rest of the initialisation is ignored (parsed
99 1.1 cgd * by yacc, expression trees built, but no initialisation takes place).
100 1.1 cgd */
101 1.62 rillig bool initerr;
102 1.1 cgd
103 1.1 cgd /* Pointer to the symbol which is to be initialized. */
104 1.1 cgd sym_t *initsym;
105 1.1 cgd
106 1.1 cgd /* Points to the top element of the initialisation stack. */
107 1.1 cgd istk_t *initstk;
108 1.1 cgd
109 1.12 christos /* Points to a c9x named member; */
110 1.12 christos namlist_t *namedmem = NULL;
111 1.12 christos
112 1.1 cgd
113 1.62 rillig static bool initstack_string(tnode_t *);
114 1.12 christos
115 1.12 christos #ifndef DEBUG
116 1.12 christos #define DPRINTF(a)
117 1.12 christos #else
118 1.12 christos #define DPRINTF(a) printf a
119 1.12 christos #endif
120 1.12 christos
121 1.12 christos void
122 1.51 rillig push_member(sbuf_t *sb)
123 1.12 christos {
124 1.28 rillig namlist_t *nam = xcalloc(1, sizeof (namlist_t));
125 1.12 christos nam->n_name = sb->sb_name;
126 1.27 christos DPRINTF(("%s: %s %p\n", __func__, nam->n_name, nam));
127 1.12 christos if (namedmem == NULL) {
128 1.51 rillig /*
129 1.51 rillig * XXX: Why is this a circular list?
130 1.51 rillig * XXX: Why is this a doubly-linked list?
131 1.51 rillig * A simple stack should suffice.
132 1.51 rillig */
133 1.12 christos nam->n_prev = nam->n_next = nam;
134 1.12 christos namedmem = nam;
135 1.12 christos } else {
136 1.12 christos namedmem->n_prev->n_next = nam;
137 1.12 christos nam->n_prev = namedmem->n_prev;
138 1.12 christos nam->n_next = namedmem;
139 1.12 christos namedmem->n_prev = nam;
140 1.12 christos }
141 1.12 christos }
142 1.12 christos
143 1.12 christos static void
144 1.34 rillig pop_member(void)
145 1.12 christos {
146 1.27 christos DPRINTF(("%s: %s %p\n", __func__, namedmem->n_name, namedmem));
147 1.12 christos if (namedmem->n_next == namedmem) {
148 1.12 christos free(namedmem);
149 1.12 christos namedmem = NULL;
150 1.12 christos } else {
151 1.12 christos namlist_t *nam = namedmem;
152 1.12 christos namedmem = namedmem->n_next;
153 1.52 rillig nam->n_prev->n_next = nam->n_next;
154 1.52 rillig nam->n_next->n_prev = nam->n_prev;
155 1.12 christos free(nam);
156 1.12 christos }
157 1.12 christos }
158 1.1 cgd
159 1.55 rillig static void
160 1.55 rillig named_member_dprint(void)
161 1.55 rillig {
162 1.55 rillig namlist_t *name;
163 1.55 rillig
164 1.55 rillig if (namedmem == NULL)
165 1.55 rillig return;
166 1.55 rillig name = namedmem;
167 1.55 rillig DPRINTF(("named member:"));
168 1.55 rillig do {
169 1.55 rillig DPRINTF((" %s", name->n_name));
170 1.55 rillig name = name->n_next;
171 1.55 rillig } while (name != namedmem);
172 1.55 rillig DPRINTF(("\n"));
173 1.55 rillig }
174 1.1 cgd
175 1.1 cgd /*
176 1.1 cgd * Initialize the initialisation stack by putting an entry for the variable
177 1.1 cgd * which is to be initialized on it.
178 1.1 cgd */
179 1.1 cgd void
180 1.35 rillig initstack_init(void)
181 1.1 cgd {
182 1.1 cgd istk_t *istk;
183 1.1 cgd
184 1.1 cgd if (initerr)
185 1.1 cgd return;
186 1.1 cgd
187 1.1 cgd /* free memory used in last initialisation */
188 1.1 cgd while ((istk = initstk) != NULL) {
189 1.46 rillig initstk = istk->i_next;
190 1.1 cgd free(istk);
191 1.1 cgd }
192 1.1 cgd
193 1.38 rillig DPRINTF(("%s\n", __func__));
194 1.38 rillig
195 1.1 cgd /*
196 1.1 cgd * If the type which is to be initialized is an incomplete type,
197 1.1 cgd * it must be duplicated.
198 1.1 cgd */
199 1.65 rillig if (initsym->s_type->t_tspec == ARRAY && is_incomplete(initsym->s_type))
200 1.1 cgd initsym->s_type = duptyp(initsym->s_type);
201 1.1 cgd
202 1.1 cgd istk = initstk = xcalloc(1, sizeof (istk_t));
203 1.1 cgd istk->i_subt = initsym->s_type;
204 1.43 rillig istk->i_remaining = 1;
205 1.1 cgd }
206 1.1 cgd
207 1.1 cgd static void
208 1.35 rillig initstack_pop_item(void)
209 1.1 cgd {
210 1.1 cgd istk_t *istk;
211 1.1 cgd sym_t *m;
212 1.1 cgd
213 1.41 rillig istk = initstk;
214 1.40 rillig DPRINTF(("%s: pop type=%s, brace=%d remaining=%d named=%d\n", __func__,
215 1.57 rillig type_name(istk->i_type ? istk->i_type : istk->i_subt),
216 1.43 rillig istk->i_brace, istk->i_remaining, istk->i_namedmem));
217 1.40 rillig
218 1.46 rillig initstk = istk->i_next;
219 1.1 cgd free(istk);
220 1.1 cgd istk = initstk;
221 1.44 rillig lint_assert(istk != NULL);
222 1.26 christos
223 1.40 rillig DPRINTF(("%s: top type=%s, brace=%d remaining=%d named=%d\n", __func__,
224 1.57 rillig type_name(istk->i_type ? istk->i_type : istk->i_subt),
225 1.43 rillig istk->i_brace, istk->i_remaining, istk->i_namedmem));
226 1.1 cgd
227 1.43 rillig istk->i_remaining--;
228 1.44 rillig lint_assert(istk->i_remaining >= 0);
229 1.1 cgd
230 1.40 rillig DPRINTF(("%s: top remaining=%d rhs.name=%s\n", __func__,
231 1.43 rillig istk->i_remaining, namedmem ? namedmem->n_name : "*null*"));
232 1.40 rillig
233 1.43 rillig if (istk->i_remaining >= 0 && namedmem != NULL) {
234 1.40 rillig
235 1.40 rillig DPRINTF(("%s: named remaining=%d type=%s, rhs.name=%s\n",
236 1.43 rillig __func__, istk->i_remaining,
237 1.57 rillig type_name(istk->i_type), namedmem->n_name));
238 1.38 rillig
239 1.45 rillig for (m = istk->i_type->t_str->memb; m != NULL; m = m->s_next) {
240 1.40 rillig DPRINTF(("%s: pop lhs.name=%s rhs.name=%s\n", __func__,
241 1.40 rillig m->s_name, namedmem->n_name));
242 1.48 rillig if (m->s_bitfield && m->s_name == unnamed)
243 1.12 christos continue;
244 1.12 christos if (strcmp(m->s_name, namedmem->n_name) == 0) {
245 1.12 christos istk->i_subt = m->s_type;
246 1.43 rillig istk->i_remaining++;
247 1.34 rillig pop_member();
248 1.12 christos return;
249 1.12 christos }
250 1.12 christos }
251 1.50 rillig /* undefined struct/union member: %s */
252 1.12 christos error(101, namedmem->n_name);
253 1.40 rillig DPRINTF(("%s: end rhs.name=%s\n", __func__, namedmem->n_name));
254 1.34 rillig pop_member();
255 1.62 rillig istk->i_namedmem = true;
256 1.12 christos return;
257 1.12 christos }
258 1.1 cgd /*
259 1.1 cgd * If the removed element was a structure member, we must go
260 1.1 cgd * to the next structure member.
261 1.1 cgd */
262 1.43 rillig if (istk->i_remaining > 0 && istk->i_type->t_tspec == STRUCT &&
263 1.12 christos !istk->i_namedmem) {
264 1.1 cgd do {
265 1.45 rillig m = istk->i_mem = istk->i_mem->s_next;
266 1.44 rillig lint_assert(m != NULL);
267 1.40 rillig DPRINTF(("%s: pop %s\n", __func__, m->s_name));
268 1.48 rillig } while (m->s_bitfield && m->s_name == unnamed);
269 1.1 cgd istk->i_subt = m->s_type;
270 1.1 cgd }
271 1.1 cgd }
272 1.1 cgd
273 1.36 rillig /*
274 1.36 rillig * Take all entries, including the first which requires a closing brace,
275 1.36 rillig * from the stack.
276 1.36 rillig */
277 1.36 rillig static void
278 1.36 rillig initstack_pop_brace(void)
279 1.36 rillig {
280 1.62 rillig bool brace;
281 1.36 rillig
282 1.36 rillig DPRINTF(("%s\n", __func__));
283 1.36 rillig do {
284 1.36 rillig brace = initstk->i_brace;
285 1.38 rillig DPRINTF(("%s: loop brace=%d\n", __func__, brace));
286 1.36 rillig initstack_pop_item();
287 1.36 rillig } while (!brace);
288 1.36 rillig DPRINTF(("%s: done\n", __func__));
289 1.36 rillig }
290 1.36 rillig
291 1.36 rillig /*
292 1.36 rillig * Take all entries which cannot be used for further initializers from the
293 1.36 rillig * stack, but do this only if they do not require a closing brace.
294 1.36 rillig */
295 1.1 cgd static void
296 1.36 rillig initstack_pop_nobrace(void)
297 1.1 cgd {
298 1.7 lukem
299 1.36 rillig DPRINTF(("%s\n", __func__));
300 1.43 rillig while (!initstk->i_brace && initstk->i_remaining == 0 &&
301 1.43 rillig !initstk->i_nolimit)
302 1.36 rillig initstack_pop_item();
303 1.36 rillig DPRINTF(("%s: done\n", __func__));
304 1.1 cgd }
305 1.1 cgd
306 1.1 cgd static void
307 1.35 rillig initstack_push(void)
308 1.1 cgd {
309 1.22 ad istk_t *istk, *inxt;
310 1.1 cgd int cnt;
311 1.1 cgd sym_t *m;
312 1.1 cgd
313 1.1 cgd istk = initstk;
314 1.1 cgd
315 1.1 cgd /* Extend an incomplete array type by one element */
316 1.43 rillig if (istk->i_remaining == 0) {
317 1.57 rillig DPRINTF(("%s(extend) %s\n", __func__, type_name(istk->i_type)));
318 1.1 cgd /*
319 1.1 cgd * Inside of other aggregate types must not be an incomplete
320 1.1 cgd * type.
321 1.1 cgd */
322 1.46 rillig lint_assert(istk->i_next->i_next == NULL);
323 1.43 rillig istk->i_remaining = 1;
324 1.44 rillig lint_assert(istk->i_type->t_tspec == ARRAY);
325 1.1 cgd istk->i_type->t_dim++;
326 1.63 rillig setcomplete(istk->i_type, true);
327 1.1 cgd }
328 1.1 cgd
329 1.44 rillig lint_assert(istk->i_remaining > 0);
330 1.61 rillig lint_assert(istk->i_type == NULL || !is_scalar(istk->i_type->t_tspec));
331 1.1 cgd
332 1.1 cgd initstk = xcalloc(1, sizeof (istk_t));
333 1.46 rillig initstk->i_next = istk;
334 1.1 cgd initstk->i_type = istk->i_subt;
335 1.44 rillig lint_assert(initstk->i_type->t_tspec != FUNC);
336 1.1 cgd
337 1.12 christos again:
338 1.1 cgd istk = initstk;
339 1.1 cgd
340 1.57 rillig DPRINTF(("%s(%s)\n", __func__, type_name(istk->i_type)));
341 1.1 cgd switch (istk->i_type->t_tspec) {
342 1.1 cgd case ARRAY:
343 1.62 rillig if (namedmem != NULL) {
344 1.26 christos DPRINTF(("%s: ARRAY %s brace=%d\n", __func__,
345 1.20 christos namedmem->n_name, istk->i_brace));
346 1.19 christos goto pop;
347 1.46 rillig } else if (istk->i_next->i_namedmem) {
348 1.62 rillig istk->i_brace = true;
349 1.26 christos DPRINTF(("%s ARRAY brace=%d, namedmem=%d\n", __func__,
350 1.46 rillig istk->i_brace, istk->i_next->i_namedmem));
351 1.20 christos }
352 1.20 christos
353 1.65 rillig if (is_incomplete(istk->i_type) &&
354 1.65 rillig istk->i_next->i_next != NULL) {
355 1.1 cgd /* initialisation of an incomplete type */
356 1.1 cgd error(175);
357 1.62 rillig initerr = true;
358 1.1 cgd return;
359 1.1 cgd }
360 1.1 cgd istk->i_subt = istk->i_type->t_subt;
361 1.65 rillig istk->i_nolimit = is_incomplete(istk->i_type);
362 1.43 rillig istk->i_remaining = istk->i_type->t_dim;
363 1.26 christos DPRINTF(("%s: elements array %s[%d] %s\n", __func__,
364 1.57 rillig type_name(istk->i_subt), istk->i_remaining,
365 1.16 christos namedmem ? namedmem->n_name : "*none*"));
366 1.1 cgd break;
367 1.1 cgd case UNION:
368 1.1 cgd if (tflag)
369 1.1 cgd /* initialisation of union is illegal in trad. C */
370 1.1 cgd warning(238);
371 1.1 cgd /* FALLTHROUGH */
372 1.1 cgd case STRUCT:
373 1.65 rillig if (is_incomplete(istk->i_type)) {
374 1.1 cgd /* initialisation of an incomplete type */
375 1.1 cgd error(175);
376 1.62 rillig initerr = true;
377 1.1 cgd return;
378 1.1 cgd }
379 1.1 cgd cnt = 0;
380 1.40 rillig DPRINTF(("%s: lookup type=%s, name=%s named=%d\n", __func__,
381 1.57 rillig type_name(istk->i_type),
382 1.26 christos namedmem ? namedmem->n_name : "*none*", istk->i_namedmem));
383 1.45 rillig for (m = istk->i_type->t_str->memb; m != NULL; m = m->s_next) {
384 1.48 rillig if (m->s_bitfield && m->s_name == unnamed)
385 1.1 cgd continue;
386 1.12 christos if (namedmem != NULL) {
387 1.40 rillig DPRINTF(("%s: named lhs.member=%s, rhs.member=%s\n",
388 1.26 christos __func__, m->s_name, namedmem->n_name));
389 1.12 christos if (strcmp(m->s_name, namedmem->n_name) == 0) {
390 1.12 christos cnt++;
391 1.12 christos break;
392 1.12 christos } else
393 1.12 christos continue;
394 1.12 christos }
395 1.1 cgd if (++cnt == 1) {
396 1.1 cgd istk->i_mem = m;
397 1.1 cgd istk->i_subt = m->s_type;
398 1.1 cgd }
399 1.1 cgd }
400 1.12 christos if (namedmem != NULL) {
401 1.12 christos if (m == NULL) {
402 1.40 rillig DPRINTF(("%s: pop struct\n", __func__));
403 1.19 christos goto pop;
404 1.28 rillig }
405 1.26 christos istk->i_mem = m;
406 1.26 christos istk->i_subt = m->s_type;
407 1.62 rillig istk->i_namedmem = true;
408 1.40 rillig DPRINTF(("%s: named name=%s\n", __func__,
409 1.26 christos namedmem->n_name));
410 1.34 rillig pop_member();
411 1.12 christos cnt = istk->i_type->t_tspec == STRUCT ? 2 : 1;
412 1.12 christos }
413 1.62 rillig istk->i_brace = true;
414 1.40 rillig DPRINTF(("%s: unnamed type=%s, brace=%d\n", __func__,
415 1.57 rillig type_name(istk->i_type ? istk->i_type : istk->i_subt),
416 1.26 christos istk->i_brace));
417 1.1 cgd if (cnt == 0) {
418 1.1 cgd /* cannot init. struct/union with no named member */
419 1.1 cgd error(179);
420 1.62 rillig initerr = true;
421 1.1 cgd return;
422 1.1 cgd }
423 1.43 rillig istk->i_remaining = istk->i_type->t_tspec == STRUCT ? cnt : 1;
424 1.1 cgd break;
425 1.1 cgd default:
426 1.62 rillig if (namedmem != NULL) {
427 1.40 rillig DPRINTF(("%s: pop\n", __func__));
428 1.19 christos pop:
429 1.46 rillig inxt = initstk->i_next;
430 1.12 christos free(istk);
431 1.22 ad initstk = inxt;
432 1.12 christos goto again;
433 1.12 christos }
434 1.43 rillig istk->i_remaining = 1;
435 1.1 cgd break;
436 1.1 cgd }
437 1.1 cgd }
438 1.1 cgd
439 1.1 cgd static void
440 1.35 rillig initstack_check_too_many(void)
441 1.1 cgd {
442 1.1 cgd istk_t *istk;
443 1.1 cgd
444 1.1 cgd istk = initstk;
445 1.1 cgd
446 1.1 cgd /*
447 1.1 cgd * If a closing brace is expected we have at least one initializer
448 1.1 cgd * too much.
449 1.1 cgd */
450 1.43 rillig if (istk->i_remaining == 0 && !istk->i_nolimit && !istk->i_namedmem) {
451 1.1 cgd switch (istk->i_type->t_tspec) {
452 1.1 cgd case ARRAY:
453 1.49 rillig /* too many array initializers, expected %d */
454 1.23 christos error(173, istk->i_type->t_dim);
455 1.1 cgd break;
456 1.1 cgd case STRUCT:
457 1.1 cgd case UNION:
458 1.1 cgd /* too many struct/union initializers */
459 1.1 cgd error(172);
460 1.1 cgd break;
461 1.1 cgd default:
462 1.1 cgd /* too many initializers */
463 1.1 cgd error(174);
464 1.1 cgd break;
465 1.1 cgd }
466 1.62 rillig initerr = true;
467 1.1 cgd }
468 1.1 cgd }
469 1.1 cgd
470 1.1 cgd static void
471 1.37 rillig initstack_next_brace(void)
472 1.1 cgd {
473 1.7 lukem
474 1.37 rillig DPRINTF(("%s\n", __func__));
475 1.61 rillig if (initstk->i_type != NULL && is_scalar(initstk->i_type->t_tspec)) {
476 1.49 rillig /* invalid initializer type %s */
477 1.57 rillig error(176, type_name(initstk->i_type));
478 1.62 rillig initerr = true;
479 1.37 rillig }
480 1.37 rillig if (!initerr)
481 1.37 rillig initstack_check_too_many();
482 1.37 rillig if (!initerr)
483 1.37 rillig initstack_push();
484 1.37 rillig if (!initerr) {
485 1.62 rillig initstk->i_brace = true;
486 1.57 rillig DPRINTF(("%s: %p %s\n", __func__, namedmem, type_name(
487 1.40 rillig initstk->i_type ? initstk->i_type : initstk->i_subt)));
488 1.37 rillig }
489 1.37 rillig }
490 1.37 rillig
491 1.37 rillig static void
492 1.37 rillig initstack_next_nobrace(void)
493 1.37 rillig {
494 1.37 rillig
495 1.37 rillig DPRINTF(("%s\n", __func__));
496 1.61 rillig if (initstk->i_type == NULL && !is_scalar(initstk->i_subt->t_tspec)) {
497 1.37 rillig /* {}-enclosed initializer required */
498 1.37 rillig error(181);
499 1.37 rillig }
500 1.37 rillig
501 1.37 rillig /* Make sure an entry with a scalar type is at the top of the stack. */
502 1.37 rillig if (!initerr)
503 1.37 rillig initstack_check_too_many();
504 1.42 rillig while (!initerr) {
505 1.42 rillig if ((initstk->i_type != NULL &&
506 1.61 rillig is_scalar(initstk->i_type->t_tspec)))
507 1.42 rillig break;
508 1.42 rillig initstack_push();
509 1.1 cgd }
510 1.1 cgd }
511 1.1 cgd
512 1.1 cgd void
513 1.34 rillig init_lbrace(void)
514 1.1 cgd {
515 1.26 christos DPRINTF(("%s\n", __func__));
516 1.7 lukem
517 1.1 cgd if (initerr)
518 1.1 cgd return;
519 1.1 cgd
520 1.1 cgd if ((initsym->s_scl == AUTO || initsym->s_scl == REG) &&
521 1.46 rillig initstk->i_next == NULL) {
522 1.61 rillig if (tflag && !is_scalar(initstk->i_subt->t_tspec))
523 1.50 rillig /* no automatic aggregate initialization in trad. C */
524 1.1 cgd warning(188);
525 1.1 cgd }
526 1.1 cgd
527 1.1 cgd /*
528 1.1 cgd * Remove all entries which cannot be used for further initializers
529 1.1 cgd * and do not expect a closing brace.
530 1.1 cgd */
531 1.36 rillig initstack_pop_nobrace();
532 1.1 cgd
533 1.37 rillig initstack_next_brace();
534 1.1 cgd }
535 1.1 cgd
536 1.1 cgd void
537 1.34 rillig init_rbrace(void)
538 1.1 cgd {
539 1.26 christos DPRINTF(("%s\n", __func__));
540 1.7 lukem
541 1.1 cgd if (initerr)
542 1.1 cgd return;
543 1.1 cgd
544 1.36 rillig initstack_pop_brace();
545 1.1 cgd }
546 1.1 cgd
547 1.1 cgd void
548 1.7 lukem mkinit(tnode_t *tn)
549 1.1 cgd {
550 1.1 cgd ptrdiff_t offs;
551 1.1 cgd sym_t *sym;
552 1.1 cgd tspec_t lt, rt;
553 1.1 cgd tnode_t *ln;
554 1.1 cgd struct mbl *tmem;
555 1.1 cgd scl_t sc;
556 1.12 christos #ifdef DEBUG
557 1.57 rillig char sbuf[64];
558 1.12 christos #endif
559 1.1 cgd
560 1.40 rillig DPRINTF(("%s: type=%s, value=%s\n", __func__,
561 1.57 rillig type_name(tn->tn_type),
562 1.34 rillig print_tnode(sbuf, sizeof(sbuf), tn)));
563 1.55 rillig named_member_dprint();
564 1.55 rillig
565 1.1 cgd if (initerr || tn == NULL)
566 1.25 christos return;
567 1.1 cgd
568 1.1 cgd sc = initsym->s_scl;
569 1.1 cgd
570 1.1 cgd /*
571 1.13 christos * Do not test for automatic aggregate initialisation. If the
572 1.9 wiz * initializer starts with a brace we have the warning already.
573 1.1 cgd * If not, an error will be printed that the initializer must
574 1.1 cgd * be enclosed by braces.
575 1.1 cgd */
576 1.1 cgd
577 1.1 cgd /*
578 1.1 cgd * Local initialisation of non-array-types with only one expression
579 1.1 cgd * without braces is done by ASSIGN
580 1.1 cgd */
581 1.1 cgd if ((sc == AUTO || sc == REG) &&
582 1.46 rillig initsym->s_type->t_tspec != ARRAY && initstk->i_next == NULL) {
583 1.60 rillig ln = new_name_node(initsym, 0);
584 1.1 cgd ln->tn_type = tduptyp(ln->tn_type);
585 1.62 rillig ln->tn_type->t_const = false;
586 1.1 cgd tn = build(ASSIGN, ln, tn);
587 1.63 rillig expr(tn, false, false, false);
588 1.25 christos return;
589 1.1 cgd }
590 1.1 cgd
591 1.1 cgd /*
592 1.1 cgd * Remove all entries which cannot be used for further initializers
593 1.1 cgd * and do not require a closing brace.
594 1.1 cgd */
595 1.36 rillig initstack_pop_nobrace();
596 1.1 cgd
597 1.35 rillig /* Initialisations by strings are done in initstack_string(). */
598 1.35 rillig if (initstack_string(tn))
599 1.25 christos return;
600 1.1 cgd
601 1.37 rillig initstack_next_nobrace();
602 1.1 cgd if (initerr || tn == NULL)
603 1.25 christos return;
604 1.1 cgd
605 1.43 rillig initstk->i_remaining--;
606 1.43 rillig DPRINTF(("%s: remaining=%d tn=%p\n", __func__,
607 1.43 rillig initstk->i_remaining, tn));
608 1.1 cgd /* Create a temporary node for the left side. */
609 1.1 cgd ln = tgetblk(sizeof (tnode_t));
610 1.1 cgd ln->tn_op = NAME;
611 1.1 cgd ln->tn_type = tduptyp(initstk->i_type);
612 1.62 rillig ln->tn_type->t_const = false;
613 1.62 rillig ln->tn_lvalue = true;
614 1.1 cgd ln->tn_sym = initsym; /* better than nothing */
615 1.1 cgd
616 1.1 cgd tn = cconv(tn);
617 1.1 cgd
618 1.1 cgd lt = ln->tn_type->t_tspec;
619 1.1 cgd rt = tn->tn_type->t_tspec;
620 1.1 cgd
621 1.61 rillig lint_assert(is_scalar(lt));
622 1.1 cgd
623 1.1 cgd if (!typeok(INIT, 0, ln, tn))
624 1.25 christos return;
625 1.1 cgd
626 1.1 cgd /*
627 1.38 rillig * Store the tree memory. This is necessary because otherwise
628 1.1 cgd * expr() would free it.
629 1.1 cgd */
630 1.1 cgd tmem = tsave();
631 1.63 rillig expr(tn, true, false, true);
632 1.1 cgd trestor(tmem);
633 1.7 lukem
634 1.61 rillig if (is_integer(lt) && ln->tn_type->t_bitfield && !is_integer(rt)) {
635 1.1 cgd /*
636 1.1 cgd * Bit-fields can be initialized in trad. C only by integer
637 1.1 cgd * constants.
638 1.1 cgd */
639 1.1 cgd if (tflag)
640 1.1 cgd /* bit-field initialisation is illegal in trad. C */
641 1.1 cgd warning(186);
642 1.1 cgd }
643 1.1 cgd
644 1.59 rillig if (lt != rt || (initstk->i_type->t_bitfield && tn->tn_op == CON))
645 1.1 cgd tn = convert(INIT, 0, initstk->i_type, tn);
646 1.1 cgd
647 1.1 cgd if (tn != NULL && tn->tn_op != CON) {
648 1.1 cgd sym = NULL;
649 1.1 cgd offs = 0;
650 1.64 rillig if (!constant_addr(tn, &sym, &offs)) {
651 1.3 jpo if (sc == AUTO || sc == REG) {
652 1.1 cgd /* non-constant initializer */
653 1.58 rillig c99ism(177);
654 1.1 cgd } else {
655 1.1 cgd /* non-constant initializer */
656 1.1 cgd error(177);
657 1.1 cgd }
658 1.1 cgd }
659 1.1 cgd }
660 1.1 cgd }
661 1.1 cgd
662 1.1 cgd
663 1.62 rillig static bool
664 1.35 rillig initstack_string(tnode_t *tn)
665 1.1 cgd {
666 1.1 cgd tspec_t t;
667 1.1 cgd istk_t *istk;
668 1.1 cgd int len;
669 1.1 cgd strg_t *strg;
670 1.1 cgd
671 1.1 cgd if (tn->tn_op != STRING)
672 1.63 rillig return false;
673 1.1 cgd
674 1.1 cgd istk = initstk;
675 1.47 rillig strg = tn->tn_string;
676 1.1 cgd
677 1.1 cgd /*
678 1.1 cgd * Check if we have an array type which can be initialized by
679 1.1 cgd * the string.
680 1.1 cgd */
681 1.12 christos if (istk->i_subt != NULL && istk->i_subt->t_tspec == ARRAY) {
682 1.26 christos DPRINTF(("%s: subt array\n", __func__));
683 1.1 cgd t = istk->i_subt->t_subt->t_tspec;
684 1.1 cgd if (!((strg->st_tspec == CHAR &&
685 1.1 cgd (t == CHAR || t == UCHAR || t == SCHAR)) ||
686 1.1 cgd (strg->st_tspec == WCHAR && t == WCHAR))) {
687 1.63 rillig return false;
688 1.1 cgd }
689 1.1 cgd /* Put the array at top of stack */
690 1.35 rillig initstack_push();
691 1.1 cgd istk = initstk;
692 1.1 cgd } else if (istk->i_type != NULL && istk->i_type->t_tspec == ARRAY) {
693 1.26 christos DPRINTF(("%s: type array\n", __func__));
694 1.1 cgd t = istk->i_type->t_subt->t_tspec;
695 1.1 cgd if (!((strg->st_tspec == CHAR &&
696 1.1 cgd (t == CHAR || t == UCHAR || t == SCHAR)) ||
697 1.1 cgd (strg->st_tspec == WCHAR && t == WCHAR))) {
698 1.63 rillig return false;
699 1.1 cgd }
700 1.1 cgd /*
701 1.1 cgd * If the array is already partly initialized, we are
702 1.1 cgd * wrong here.
703 1.1 cgd */
704 1.43 rillig if (istk->i_remaining != istk->i_type->t_dim)
705 1.63 rillig return false;
706 1.1 cgd } else {
707 1.63 rillig return false;
708 1.1 cgd }
709 1.1 cgd
710 1.1 cgd /* Get length without trailing NUL character. */
711 1.1 cgd len = strg->st_len;
712 1.1 cgd
713 1.1 cgd if (istk->i_nolimit) {
714 1.62 rillig istk->i_nolimit = false;
715 1.1 cgd istk->i_type->t_dim = len + 1;
716 1.63 rillig setcomplete(istk->i_type, true);
717 1.1 cgd } else {
718 1.1 cgd if (istk->i_type->t_dim < len) {
719 1.1 cgd /* non-null byte ignored in string initializer */
720 1.1 cgd warning(187);
721 1.1 cgd }
722 1.1 cgd }
723 1.1 cgd
724 1.1 cgd /* In every case the array is initialized completely. */
725 1.43 rillig istk->i_remaining = 0;
726 1.1 cgd
727 1.63 rillig return true;
728 1.1 cgd }
729