init.c revision 1.124 1 1.124 rillig /* $NetBSD: init.c,v 1.124 2021/03/25 19:33:44 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 1.124 rillig __RCSID("$NetBSD: init.c,v 1.124 2021/03/25 19:33:44 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 1.93 rillig * Initialization
51 1.93 rillig *
52 1.93 rillig * Handles initializations of global or local objects, like in:
53 1.93 rillig *
54 1.93 rillig * int number = 12345;
55 1.93 rillig * int number_with_braces = { 12345 };
56 1.93 rillig *
57 1.93 rillig * int array_of_unknown_size[] = { 111, 222, 333 };
58 1.93 rillig * int array_flat[2][2] = { 11, 12, 21, 22 };
59 1.93 rillig * int array_nested[2][2] = { { 11, 12 }, { 21, 22 } };
60 1.93 rillig *
61 1.93 rillig * struct { int x, y; } point = { 3, 4 };
62 1.119 rillig * struct { int x, y; } point = { .y = 4, .x = 3 };
63 1.93 rillig *
64 1.119 rillig * Any scalar expression in the initializer may be surrounded by arbitrarily
65 1.119 rillig * many extra pairs of braces, like in the example 'number_with_braces' (C99
66 1.119 rillig * 6.7.8p11).
67 1.119 rillig *
68 1.119 rillig * For multi-dimensional arrays, the inner braces may be omitted like in
69 1.112 rillig * array_flat or spelled out like in array_nested.
70 1.93 rillig *
71 1.93 rillig * For the initializer, the grammar parser calls these functions:
72 1.93 rillig *
73 1.119 rillig * begin_initialization
74 1.119 rillig * init_lbrace for each '{'
75 1.119 rillig * designator_push_name for each '.member' before '='
76 1.119 rillig * designator_push_subscript for each '[123]' before '='
77 1.119 rillig * init_using_expr for each expression
78 1.119 rillig * init_rbrace for each '}'
79 1.119 rillig * end_initialization
80 1.93 rillig *
81 1.93 rillig * The state of the current initialization is stored in initstk, a stack of
82 1.94 rillig * initstack_element, one element per type aggregate level.
83 1.119 rillig * XXX: Or is that "one element per brace level"? C99 mandates in 6.7.8p17
84 1.119 rillig * that "each brace-enclosed initializer list has an associated current
85 1.119 rillig * object".
86 1.93 rillig *
87 1.94 rillig * Most of the time, the topmost level of initstk contains a scalar type, and
88 1.94 rillig * its remaining count toggles between 1 and 0.
89 1.93 rillig *
90 1.93 rillig * See also:
91 1.93 rillig * C99 6.7.8 "Initialization"
92 1.93 rillig * d_c99_init.c for more examples
93 1.93 rillig */
94 1.93 rillig
95 1.93 rillig
96 1.93 rillig /*
97 1.89 rillig * Type of stack which is used for initialization of aggregate types.
98 1.54 rillig *
99 1.119 rillig * XXX: Since C99, the initializers can be listed in arbitrary order by using
100 1.119 rillig * designators to specify the sub-object to be initialized. The member names
101 1.54 rillig * of non-leaf structs may thus appear repeatedly, as demonstrated in
102 1.54 rillig * d_init_pop_member.c.
103 1.54 rillig *
104 1.54 rillig * See C99 6.7.8, which spans 6 pages full of tricky details and carefully
105 1.54 rillig * selected examples.
106 1.53 rillig */
107 1.79 rillig typedef struct initstack_element {
108 1.77 rillig
109 1.92 rillig /*
110 1.92 rillig * The type to be initialized at this level.
111 1.102 rillig *
112 1.102 rillig * On the outermost element, this is always NULL since the outermost
113 1.102 rillig * initializer-expression may be enclosed in an optional pair of
114 1.119 rillig * braces, as of the current implementation.
115 1.119 rillig *
116 1.119 rillig * FIXME: This approach is wrong. It's not that the outermost
117 1.119 rillig * initializer may be enclosed in additional braces, it's every scalar
118 1.119 rillig * that may be enclosed in additional braces, as of C99 6.7.8p11.
119 1.102 rillig *
120 1.102 rillig * Everywhere else it is nonnull.
121 1.92 rillig */
122 1.92 rillig type_t *i_type;
123 1.102 rillig
124 1.92 rillig /*
125 1.102 rillig * The type that will be initialized at the next initialization level,
126 1.102 rillig * usually enclosed by another pair of braces.
127 1.92 rillig *
128 1.102 rillig * For an array, it is the element type, but without 'const'.
129 1.102 rillig *
130 1.102 rillig * For a struct or union type, it is one of the member types, but
131 1.102 rillig * without 'const'.
132 1.102 rillig *
133 1.102 rillig * The outermost stack element has no i_type but nevertheless has
134 1.102 rillig * i_subt. For example, in 'int var = { 12345 }', initially there is
135 1.102 rillig * an initstack_element with i_subt 'int'. When the '{' is processed,
136 1.102 rillig * an element with i_type 'int' is pushed to the stack. When the
137 1.92 rillig * corresponding '}' is processed, the inner element is popped again.
138 1.92 rillig *
139 1.92 rillig * During initialization, only the top 2 elements of the stack are
140 1.92 rillig * looked at.
141 1.119 rillig *
142 1.119 rillig * XXX: Having i_subt here is the wrong approach, it should not be
143 1.119 rillig * necessary at all; see i_type.
144 1.92 rillig */
145 1.92 rillig type_t *i_subt;
146 1.77 rillig
147 1.82 rillig /*
148 1.119 rillig * Whether this level of the initializer requires a '}' to be
149 1.119 rillig * completed.
150 1.82 rillig *
151 1.82 rillig * Multidimensional arrays do not need a closing brace to complete
152 1.82 rillig * an inner array; for example, { 1, 2, 3, 4 } is a valid initializer
153 1.119 rillig * for 'int arr[2][2]'.
154 1.82 rillig *
155 1.82 rillig * TODO: Do structs containing structs need a closing brace?
156 1.82 rillig * TODO: Do arrays of structs need a closing brace after each struct?
157 1.119 rillig *
158 1.119 rillig * XXX: Double-check whether this is the correct approach at all; see
159 1.119 rillig * i_type.
160 1.82 rillig */
161 1.77 rillig bool i_brace: 1;
162 1.82 rillig
163 1.93 rillig /* Whether i_type is an array of unknown size. */
164 1.77 rillig bool i_array_of_unknown_size: 1;
165 1.119 rillig
166 1.119 rillig /*
167 1.119 rillig * XXX: This feels wrong. Whether or not there has been a named
168 1.119 rillig * initializer (called 'designation' since C99) should not matter at
169 1.119 rillig * all. Even after an initializer with designation, counting of the
170 1.119 rillig * remaining elements continues, see C99 6.7.8p17.
171 1.119 rillig */
172 1.77 rillig bool i_seen_named_member: 1;
173 1.77 rillig
174 1.77 rillig /*
175 1.78 rillig * For structs, the next member to be initialized by an initializer
176 1.78 rillig * without an optional designator.
177 1.119 rillig *
178 1.119 rillig * FIXME: The name is wrong. C99 defines the "current object" as
179 1.119 rillig * being the subobject being initialized, while this is rather the
180 1.119 rillig * next member. This only makes sense for structs anyway and should
181 1.119 rillig * be amended by i_next_subscript for arrays. See C99 6.7.8p17 and
182 1.119 rillig * footnote 128 for unions.
183 1.77 rillig */
184 1.77 rillig sym_t *i_current_object;
185 1.77 rillig
186 1.77 rillig /*
187 1.102 rillig * The number of remaining elements to be used by expressions without
188 1.102 rillig * designator.
189 1.102 rillig *
190 1.102 rillig * This says nothing about which members have been initialized or not
191 1.102 rillig * since starting with C99, members may be initialized in arbitrary
192 1.102 rillig * order by using designators.
193 1.77 rillig *
194 1.93 rillig * For an array of unknown size, this is always 0 and thus irrelevant.
195 1.93 rillig *
196 1.77 rillig * XXX: for scalars?
197 1.77 rillig * XXX: for structs?
198 1.77 rillig * XXX: for unions?
199 1.77 rillig * XXX: for arrays?
200 1.119 rillig *
201 1.119 rillig * XXX: Having the count of remaining objects should not be necessary.
202 1.119 rillig * It is probably clearer to use i_next_member and i_next_subscript
203 1.119 rillig * (as suggested in i_current_object) for this purpose.
204 1.77 rillig */
205 1.77 rillig int i_remaining;
206 1.77 rillig
207 1.77 rillig /*
208 1.77 rillig * The initialization state of the enclosing data structure
209 1.77 rillig * (struct, union, array).
210 1.119 rillig *
211 1.119 rillig * XXX: Or for a scalar, for the top-level element, or for expressions
212 1.119 rillig * in redundant braces such as '{{{{ 0 }}}}' (not yet implemented as
213 1.119 rillig * of 2021-03-25).
214 1.77 rillig */
215 1.79 rillig struct initstack_element *i_enclosing;
216 1.119 rillig
217 1.79 rillig } initstack_element;
218 1.53 rillig
219 1.55 rillig /*
220 1.55 rillig * The names for a nested C99 initialization designator, in a circular list.
221 1.55 rillig *
222 1.55 rillig * Example:
223 1.55 rillig * struct stat st = {
224 1.55 rillig * .st_size = 123,
225 1.55 rillig * .st_mtim.tv_sec = 45,
226 1.55 rillig * .st_mtim.tv_nsec
227 1.55 rillig * };
228 1.55 rillig *
229 1.55 rillig * During initialization, this list first contains ["st_size"], then
230 1.55 rillig * ["st_mtim", "tv_sec"], then ["st_mtim", "tv_nsec"].
231 1.55 rillig */
232 1.53 rillig typedef struct namlist {
233 1.53 rillig const char *n_name;
234 1.53 rillig struct namlist *n_prev;
235 1.53 rillig struct namlist *n_next;
236 1.53 rillig } namlist_t;
237 1.53 rillig
238 1.110 rillig struct initialization {
239 1.110 rillig /*
240 1.111 rillig * is set as soon as a fatal error occurred in the initialization.
241 1.111 rillig * The effect is that the rest of the initialization is ignored
242 1.111 rillig * (parsed by yacc, expression trees built, but no initialization
243 1.111 rillig * takes place).
244 1.110 rillig */
245 1.110 rillig bool initerr;
246 1.110 rillig
247 1.110 rillig /* Pointer to the symbol which is to be initialized. */
248 1.110 rillig sym_t *initsym;
249 1.53 rillig
250 1.110 rillig /* Points to the top element of the initialization stack. */
251 1.110 rillig initstack_element *initstk;
252 1.1 cgd
253 1.124 rillig /*
254 1.124 rillig * The C99 designator, if any, for the current initialization
255 1.124 rillig * expression.
256 1.124 rillig */
257 1.124 rillig namlist_t *designation;
258 1.1 cgd
259 1.110 rillig struct initialization *next;
260 1.110 rillig };
261 1.1 cgd
262 1.111 rillig static struct initialization *init;
263 1.12 christos
264 1.1 cgd
265 1.119 rillig /* XXX: unnecessary prototype since it is not recursive */
266 1.82 rillig static bool init_array_using_string(tnode_t *);
267 1.12 christos
268 1.119 rillig
269 1.119 rillig /* TODO: replace the following functions with current_init */
270 1.119 rillig
271 1.110 rillig bool *
272 1.110 rillig current_initerr(void)
273 1.110 rillig {
274 1.111 rillig lint_assert(init != NULL);
275 1.111 rillig return &init->initerr;
276 1.110 rillig }
277 1.110 rillig
278 1.110 rillig sym_t **
279 1.110 rillig current_initsym(void)
280 1.110 rillig {
281 1.111 rillig lint_assert(init != NULL);
282 1.111 rillig return &init->initsym;
283 1.110 rillig }
284 1.110 rillig
285 1.110 rillig static namlist_t **
286 1.123 rillig current_designation_mod(void)
287 1.110 rillig {
288 1.111 rillig lint_assert(init != NULL);
289 1.124 rillig return &init->designation;
290 1.110 rillig }
291 1.110 rillig
292 1.123 rillig static const namlist_t *
293 1.123 rillig current_designation(void)
294 1.123 rillig {
295 1.123 rillig return *current_designation_mod();
296 1.123 rillig }
297 1.123 rillig
298 1.110 rillig static initstack_element **
299 1.110 rillig current_initstk(void)
300 1.110 rillig {
301 1.111 rillig lint_assert(init != NULL);
302 1.111 rillig return &init->initstk;
303 1.110 rillig }
304 1.110 rillig
305 1.121 rillig static void
306 1.121 rillig free_initialization(struct initialization *in)
307 1.121 rillig {
308 1.121 rillig initstack_element *el, *next;
309 1.121 rillig
310 1.121 rillig for (el = in->initstk; el != NULL; el = next) {
311 1.121 rillig next = el->i_enclosing;
312 1.121 rillig free(el);
313 1.121 rillig }
314 1.121 rillig
315 1.121 rillig free(in);
316 1.121 rillig }
317 1.121 rillig
318 1.119 rillig #define initerr (*current_initerr())
319 1.119 rillig #define initsym (*current_initsym())
320 1.119 rillig #define initstk (*current_initstk())
321 1.110 rillig
322 1.12 christos #ifndef DEBUG
323 1.90 rillig
324 1.75 rillig #define debug_printf(fmt, ...) do { } while (false)
325 1.75 rillig #define debug_indent() do { } while (false)
326 1.75 rillig #define debug_enter(a) do { } while (false)
327 1.75 rillig #define debug_step(fmt, ...) do { } while (false)
328 1.75 rillig #define debug_leave(a) do { } while (false)
329 1.90 rillig #define debug_named_member() do { } while (false)
330 1.90 rillig #define debug_initstack_element(elem) do { } while (false)
331 1.90 rillig #define debug_initstack() do { } while (false)
332 1.90 rillig
333 1.12 christos #else
334 1.90 rillig
335 1.68 rillig static int debug_ind = 0;
336 1.68 rillig
337 1.68 rillig static void __printflike(1, 2)
338 1.68 rillig debug_printf(const char *fmt, ...)
339 1.68 rillig {
340 1.68 rillig va_list va;
341 1.68 rillig
342 1.68 rillig va_start(va, fmt);
343 1.68 rillig vfprintf(stdout, fmt, va);
344 1.68 rillig va_end(va);
345 1.68 rillig }
346 1.68 rillig
347 1.68 rillig static void
348 1.68 rillig debug_indent(void)
349 1.68 rillig {
350 1.68 rillig debug_printf("%*s", 2 * debug_ind, "");
351 1.68 rillig }
352 1.68 rillig
353 1.68 rillig static void
354 1.68 rillig debug_enter(const char *func)
355 1.68 rillig {
356 1.68 rillig printf("%*s+ %s\n", 2 * debug_ind++, "", func);
357 1.68 rillig }
358 1.68 rillig
359 1.68 rillig static void __printflike(1, 2)
360 1.68 rillig debug_step(const char *fmt, ...)
361 1.68 rillig {
362 1.68 rillig va_list va;
363 1.68 rillig
364 1.68 rillig printf("%*s", 2 * debug_ind, "");
365 1.68 rillig va_start(va, fmt);
366 1.68 rillig vfprintf(stdout, fmt, va);
367 1.68 rillig va_end(va);
368 1.68 rillig printf("\n");
369 1.68 rillig }
370 1.68 rillig
371 1.68 rillig static void
372 1.68 rillig debug_leave(const char *func)
373 1.68 rillig {
374 1.68 rillig printf("%*s- %s\n", 2 * --debug_ind, "", func);
375 1.68 rillig }
376 1.68 rillig
377 1.55 rillig static void
378 1.68 rillig debug_named_member(void)
379 1.55 rillig {
380 1.123 rillig const namlist_t *head = current_designation(), *name;
381 1.55 rillig
382 1.122 rillig if (head == NULL)
383 1.55 rillig return;
384 1.68 rillig debug_indent();
385 1.106 rillig debug_printf("named member: ");
386 1.122 rillig name = head;
387 1.55 rillig do {
388 1.106 rillig debug_printf(".%s", name->n_name);
389 1.55 rillig name = name->n_next;
390 1.122 rillig } while (name != head);
391 1.68 rillig debug_printf("\n");
392 1.55 rillig }
393 1.1 cgd
394 1.119 rillig /*
395 1.119 rillig * TODO: try whether a single-line output is more readable
396 1.119 rillig *
397 1.119 rillig * TODO: only log the top of the stack after each modifying operation
398 1.119 rillig *
399 1.119 rillig * TODO: wrap all write accesses to initstack_element in setter functions
400 1.119 rillig */
401 1.78 rillig static void
402 1.79 rillig debug_initstack_element(const initstack_element *elem)
403 1.74 rillig {
404 1.78 rillig if (elem->i_type != NULL)
405 1.120 rillig debug_printf("type '%s'", type_name(elem->i_type));
406 1.120 rillig if (elem->i_type != NULL && elem->i_subt != NULL)
407 1.120 rillig debug_printf(", ");
408 1.78 rillig if (elem->i_subt != NULL)
409 1.120 rillig debug_printf("subtype '%s'", type_name(elem->i_subt));
410 1.78 rillig
411 1.78 rillig if (elem->i_brace)
412 1.120 rillig debug_printf(", needs closing brace");
413 1.78 rillig if (elem->i_array_of_unknown_size)
414 1.120 rillig debug_printf(", array of unknown size");
415 1.78 rillig if (elem->i_seen_named_member)
416 1.120 rillig debug_printf(", seen named member");
417 1.78 rillig
418 1.78 rillig const type_t *eff_type = elem->i_type != NULL
419 1.78 rillig ? elem->i_type : elem->i_subt;
420 1.78 rillig if (eff_type->t_tspec == STRUCT && elem->i_current_object != NULL)
421 1.120 rillig debug_printf(", current object '%s'",
422 1.78 rillig elem->i_current_object->s_name);
423 1.78 rillig
424 1.120 rillig debug_printf(", remaining %d\n", elem->i_remaining);
425 1.74 rillig }
426 1.74 rillig
427 1.119 rillig /*
428 1.119 rillig * TODO: only call debug_initstack after each push/pop.
429 1.119 rillig */
430 1.73 rillig static void
431 1.73 rillig debug_initstack(void)
432 1.73 rillig {
433 1.73 rillig if (initstk == NULL) {
434 1.73 rillig debug_step("initstk is empty");
435 1.73 rillig return;
436 1.73 rillig }
437 1.73 rillig
438 1.73 rillig size_t i = 0;
439 1.79 rillig for (const initstack_element *elem = initstk;
440 1.77 rillig elem != NULL; elem = elem->i_enclosing) {
441 1.120 rillig debug_indent();
442 1.120 rillig debug_printf("initstk[%zu]: ", i);
443 1.78 rillig debug_initstack_element(elem);
444 1.73 rillig i++;
445 1.73 rillig }
446 1.73 rillig }
447 1.90 rillig
448 1.90 rillig #define debug_enter() debug_enter(__func__)
449 1.90 rillig #define debug_leave() debug_leave(__func__)
450 1.90 rillig
451 1.73 rillig #endif
452 1.73 rillig
453 1.111 rillig
454 1.111 rillig void
455 1.111 rillig begin_initialization(sym_t *sym)
456 1.111 rillig {
457 1.111 rillig struct initialization *curr_init;
458 1.111 rillig
459 1.118 rillig debug_step("begin initialization of '%s'", type_name(sym->s_type));
460 1.111 rillig curr_init = xcalloc(1, sizeof *curr_init);
461 1.111 rillig curr_init->next = init;
462 1.111 rillig init = curr_init;
463 1.111 rillig initsym = sym;
464 1.111 rillig }
465 1.111 rillig
466 1.111 rillig void
467 1.111 rillig end_initialization(void)
468 1.111 rillig {
469 1.111 rillig struct initialization *curr_init;
470 1.111 rillig
471 1.111 rillig curr_init = init;
472 1.111 rillig init = init->next;
473 1.121 rillig free_initialization(curr_init);
474 1.111 rillig debug_step("end initialization");
475 1.111 rillig }
476 1.111 rillig
477 1.90 rillig void
478 1.103 rillig designator_push_name(sbuf_t *sb)
479 1.90 rillig {
480 1.123 rillig namlist_t *designation = *current_designation_mod();
481 1.90 rillig namlist_t *nam = xcalloc(1, sizeof (namlist_t));
482 1.90 rillig nam->n_name = sb->sb_name;
483 1.90 rillig
484 1.122 rillig if (designation == NULL) {
485 1.90 rillig /*
486 1.90 rillig * XXX: Why is this a circular list?
487 1.90 rillig * XXX: Why is this a doubly-linked list?
488 1.119 rillig * A simple queue should suffice.
489 1.90 rillig */
490 1.90 rillig nam->n_prev = nam->n_next = nam;
491 1.123 rillig *current_designation_mod() = nam;
492 1.90 rillig } else {
493 1.122 rillig designation->n_prev->n_next = nam;
494 1.122 rillig nam->n_prev = designation->n_prev;
495 1.122 rillig nam->n_next = designation;
496 1.122 rillig designation->n_prev = nam;
497 1.90 rillig }
498 1.106 rillig
499 1.106 rillig debug_named_member();
500 1.90 rillig }
501 1.90 rillig
502 1.91 rillig /*
503 1.119 rillig * A sub-object of an array is initialized using a designator. This does not
504 1.119 rillig * have to be an array element directly, it can also be used to initialize
505 1.119 rillig * only a sub-object of the array element.
506 1.91 rillig *
507 1.91 rillig * C99 example: struct { int member[4]; } var = { [2] = 12345 };
508 1.91 rillig *
509 1.91 rillig * GNU example: struct { int member[4]; } var = { [1 ... 3] = 12345 };
510 1.119 rillig *
511 1.119 rillig * TODO: test the following initialization with an outer and an inner type:
512 1.119 rillig *
513 1.119 rillig * .deeply[0].nested = {
514 1.119 rillig * .deeply[1].nested = {
515 1.119 rillig * 12345,
516 1.119 rillig * },
517 1.119 rillig * }
518 1.91 rillig */
519 1.91 rillig void
520 1.91 rillig designator_push_subscript(range_t range)
521 1.91 rillig {
522 1.91 rillig debug_enter();
523 1.91 rillig debug_step("subscript range is %zu ... %zu", range.lo, range.hi);
524 1.91 rillig debug_initstack();
525 1.91 rillig debug_leave();
526 1.91 rillig }
527 1.91 rillig
528 1.119 rillig /* TODO: add support for array subscripts, not only named members */
529 1.90 rillig static void
530 1.105 rillig designator_shift_name(void)
531 1.90 rillig {
532 1.123 rillig namlist_t *designation = *current_designation_mod();
533 1.122 rillig
534 1.122 rillig if (designation->n_next == designation) {
535 1.122 rillig free(designation);
536 1.123 rillig *current_designation_mod() = NULL;
537 1.90 rillig } else {
538 1.122 rillig namlist_t *nam = designation;
539 1.123 rillig *current_designation_mod() = designation->n_next;
540 1.90 rillig nam->n_prev->n_next = nam->n_next;
541 1.90 rillig nam->n_next->n_prev = nam->n_prev;
542 1.90 rillig free(nam);
543 1.90 rillig }
544 1.106 rillig
545 1.106 rillig debug_named_member();
546 1.90 rillig }
547 1.90 rillig
548 1.1 cgd /*
549 1.89 rillig * Initialize the initialization stack by putting an entry for the object
550 1.1 cgd * which is to be initialized on it.
551 1.119 rillig *
552 1.119 rillig * TODO: merge into begin_initialization
553 1.1 cgd */
554 1.1 cgd void
555 1.35 rillig initstack_init(void)
556 1.1 cgd {
557 1.79 rillig initstack_element *istk;
558 1.1 cgd
559 1.1 cgd if (initerr)
560 1.1 cgd return;
561 1.1 cgd
562 1.119 rillig /* TODO: merge into init_using_expr */
563 1.123 rillig while (current_designation() != NULL)
564 1.108 rillig designator_shift_name();
565 1.1 cgd
566 1.70 rillig debug_enter();
567 1.38 rillig
568 1.1 cgd /*
569 1.77 rillig * If the type which is to be initialized is an incomplete array,
570 1.1 cgd * it must be duplicated.
571 1.1 cgd */
572 1.65 rillig if (initsym->s_type->t_tspec == ARRAY && is_incomplete(initsym->s_type))
573 1.1 cgd initsym->s_type = duptyp(initsym->s_type);
574 1.119 rillig /* TODO: does 'duptyp' create a memory leak? */
575 1.1 cgd
576 1.79 rillig istk = initstk = xcalloc(1, sizeof (initstack_element));
577 1.1 cgd istk->i_subt = initsym->s_type;
578 1.43 rillig istk->i_remaining = 1;
579 1.70 rillig
580 1.73 rillig debug_initstack();
581 1.70 rillig debug_leave();
582 1.1 cgd }
583 1.1 cgd
584 1.119 rillig /* TODO: document me */
585 1.1 cgd static void
586 1.101 rillig initstack_pop_item_named_member(void)
587 1.1 cgd {
588 1.101 rillig initstack_element *istk = initstk;
589 1.101 rillig sym_t *m;
590 1.1 cgd
591 1.119 rillig /*
592 1.119 rillig * TODO: fix wording of the debug message; this doesn't seem to be
593 1.119 rillig * related to initializing the named member.
594 1.119 rillig */
595 1.122 rillig debug_step("initializing named member '%s'",
596 1.123 rillig current_designation()->n_name);
597 1.68 rillig
598 1.104 rillig if (istk->i_type->t_tspec != STRUCT &&
599 1.104 rillig istk->i_type->t_tspec != UNION) {
600 1.104 rillig /* syntax error '%s' */
601 1.104 rillig error(249, "named member must only be used with struct/union");
602 1.104 rillig initerr = true;
603 1.104 rillig return;
604 1.104 rillig }
605 1.104 rillig
606 1.101 rillig for (m = istk->i_type->t_str->sou_first_member;
607 1.101 rillig m != NULL; m = m->s_next) {
608 1.40 rillig
609 1.101 rillig if (m->s_bitfield && m->s_name == unnamed)
610 1.101 rillig continue;
611 1.26 christos
612 1.123 rillig if (strcmp(m->s_name, current_designation()->n_name) == 0) {
613 1.101 rillig debug_step("found matching member");
614 1.101 rillig istk->i_subt = m->s_type;
615 1.101 rillig /* XXX: why ++? */
616 1.101 rillig istk->i_remaining++;
617 1.101 rillig /* XXX: why is i_seen_named_member not set? */
618 1.105 rillig designator_shift_name();
619 1.101 rillig return;
620 1.101 rillig }
621 1.101 rillig }
622 1.40 rillig
623 1.101 rillig /* undefined struct/union member: %s */
624 1.123 rillig error(101, current_designation()->n_name);
625 1.38 rillig
626 1.105 rillig designator_shift_name();
627 1.101 rillig istk->i_seen_named_member = true;
628 1.101 rillig }
629 1.80 rillig
630 1.119 rillig /* TODO: think of a better name than 'pop' */
631 1.101 rillig static void
632 1.101 rillig initstack_pop_item_unnamed(void)
633 1.101 rillig {
634 1.101 rillig initstack_element *istk = initstk;
635 1.101 rillig sym_t *m;
636 1.80 rillig
637 1.1 cgd /*
638 1.1 cgd * If the removed element was a structure member, we must go
639 1.1 cgd * to the next structure member.
640 1.1 cgd */
641 1.43 rillig if (istk->i_remaining > 0 && istk->i_type->t_tspec == STRUCT &&
642 1.77 rillig !istk->i_seen_named_member) {
643 1.1 cgd do {
644 1.77 rillig m = istk->i_current_object =
645 1.77 rillig istk->i_current_object->s_next;
646 1.80 rillig /* XXX: can this assertion be made to fail? */
647 1.44 rillig lint_assert(m != NULL);
648 1.68 rillig debug_step("pop %s", m->s_name);
649 1.48 rillig } while (m->s_bitfield && m->s_name == unnamed);
650 1.80 rillig /* XXX: duplicate code for skipping unnamed bit-fields */
651 1.1 cgd istk->i_subt = m->s_type;
652 1.1 cgd }
653 1.101 rillig }
654 1.101 rillig
655 1.119 rillig /* TODO: think of a better name than 'pop' */
656 1.101 rillig static void
657 1.101 rillig initstack_pop_item(void)
658 1.101 rillig {
659 1.101 rillig initstack_element *istk;
660 1.101 rillig
661 1.101 rillig debug_enter();
662 1.101 rillig
663 1.101 rillig istk = initstk;
664 1.120 rillig debug_indent();
665 1.120 rillig debug_printf("popping: ");
666 1.101 rillig debug_initstack_element(istk);
667 1.101 rillig
668 1.101 rillig initstk = istk->i_enclosing;
669 1.101 rillig free(istk);
670 1.101 rillig istk = initstk;
671 1.101 rillig lint_assert(istk != NULL);
672 1.101 rillig
673 1.101 rillig istk->i_remaining--;
674 1.101 rillig lint_assert(istk->i_remaining >= 0);
675 1.101 rillig debug_step("%d elements remaining", istk->i_remaining);
676 1.101 rillig
677 1.123 rillig if (current_designation() != NULL)
678 1.101 rillig initstack_pop_item_named_member();
679 1.101 rillig else
680 1.101 rillig initstack_pop_item_unnamed();
681 1.101 rillig
682 1.73 rillig debug_initstack();
683 1.68 rillig debug_leave();
684 1.1 cgd }
685 1.1 cgd
686 1.36 rillig /*
687 1.36 rillig * Take all entries, including the first which requires a closing brace,
688 1.36 rillig * from the stack.
689 1.36 rillig */
690 1.36 rillig static void
691 1.36 rillig initstack_pop_brace(void)
692 1.36 rillig {
693 1.62 rillig bool brace;
694 1.36 rillig
695 1.68 rillig debug_enter();
696 1.73 rillig debug_initstack();
697 1.36 rillig do {
698 1.36 rillig brace = initstk->i_brace;
699 1.119 rillig /* TODO: improve wording of the debug message */
700 1.68 rillig debug_step("loop brace=%d", brace);
701 1.36 rillig initstack_pop_item();
702 1.36 rillig } while (!brace);
703 1.73 rillig debug_initstack();
704 1.68 rillig debug_leave();
705 1.36 rillig }
706 1.36 rillig
707 1.36 rillig /*
708 1.36 rillig * Take all entries which cannot be used for further initializers from the
709 1.36 rillig * stack, but do this only if they do not require a closing brace.
710 1.36 rillig */
711 1.119 rillig /* TODO: think of a better name than 'pop' */
712 1.1 cgd static void
713 1.36 rillig initstack_pop_nobrace(void)
714 1.1 cgd {
715 1.7 lukem
716 1.68 rillig debug_enter();
717 1.43 rillig while (!initstk->i_brace && initstk->i_remaining == 0 &&
718 1.77 rillig !initstk->i_array_of_unknown_size)
719 1.36 rillig initstack_pop_item();
720 1.68 rillig debug_leave();
721 1.1 cgd }
722 1.1 cgd
723 1.97 rillig /* Extend an array of unknown size by one element */
724 1.97 rillig static void
725 1.97 rillig extend_if_array_of_unknown_size(void)
726 1.97 rillig {
727 1.97 rillig initstack_element *istk = initstk;
728 1.97 rillig
729 1.97 rillig if (istk->i_remaining != 0)
730 1.97 rillig return;
731 1.97 rillig
732 1.97 rillig /*
733 1.97 rillig * The only place where an incomplete array may appear is at the
734 1.97 rillig * outermost aggregate level of the object to be initialized.
735 1.97 rillig */
736 1.97 rillig lint_assert(istk->i_enclosing->i_enclosing == NULL);
737 1.97 rillig lint_assert(istk->i_type->t_tspec == ARRAY);
738 1.97 rillig
739 1.97 rillig debug_step("extending array of unknown size '%s'",
740 1.97 rillig type_name(istk->i_type));
741 1.97 rillig istk->i_remaining = 1;
742 1.97 rillig istk->i_type->t_dim++;
743 1.97 rillig setcomplete(istk->i_type, true);
744 1.97 rillig
745 1.97 rillig debug_step("extended type is '%s'", type_name(istk->i_type));
746 1.97 rillig }
747 1.97 rillig
748 1.119 rillig /* TODO: document me */
749 1.119 rillig /* TODO: think of a better name than 'push' */
750 1.1 cgd static void
751 1.99 rillig initstack_push_array(void)
752 1.99 rillig {
753 1.99 rillig initstack_element *const istk = initstk;
754 1.99 rillig
755 1.99 rillig if (istk->i_enclosing->i_seen_named_member) {
756 1.99 rillig istk->i_brace = true;
757 1.124 rillig debug_step("ARRAY%s%s",
758 1.124 rillig istk->i_brace ? ", needs closing brace" : "",
759 1.124 rillig istk->i_enclosing->i_seen_named_member
760 1.124 rillig ? ", seen named member" : "");
761 1.99 rillig }
762 1.99 rillig
763 1.99 rillig if (is_incomplete(istk->i_type) &&
764 1.99 rillig istk->i_enclosing->i_enclosing != NULL) {
765 1.99 rillig /* initialization of an incomplete type */
766 1.99 rillig error(175);
767 1.99 rillig initerr = true;
768 1.99 rillig return;
769 1.99 rillig }
770 1.99 rillig
771 1.99 rillig istk->i_subt = istk->i_type->t_subt;
772 1.99 rillig istk->i_array_of_unknown_size = is_incomplete(istk->i_type);
773 1.99 rillig istk->i_remaining = istk->i_type->t_dim;
774 1.99 rillig debug_named_member();
775 1.99 rillig debug_step("type '%s' remaining %d",
776 1.99 rillig type_name(istk->i_type), istk->i_remaining);
777 1.99 rillig }
778 1.99 rillig
779 1.119 rillig /* TODO: document me */
780 1.119 rillig /* TODO: think of a better name than 'push' */
781 1.99 rillig static bool
782 1.99 rillig initstack_push_struct_or_union(void)
783 1.99 rillig {
784 1.119 rillig /*
785 1.119 rillig * TODO: remove unnecessary 'const' for variables in functions that
786 1.119 rillig * fit on a single screen. Keep it for larger functions.
787 1.119 rillig */
788 1.99 rillig initstack_element *const istk = initstk;
789 1.99 rillig int cnt;
790 1.99 rillig sym_t *m;
791 1.99 rillig
792 1.99 rillig if (is_incomplete(istk->i_type)) {
793 1.99 rillig /* initialization of an incomplete type */
794 1.99 rillig error(175);
795 1.99 rillig initerr = true;
796 1.99 rillig return false;
797 1.99 rillig }
798 1.100 rillig
799 1.99 rillig cnt = 0;
800 1.99 rillig debug_named_member();
801 1.99 rillig debug_step("lookup for '%s'%s",
802 1.99 rillig type_name(istk->i_type),
803 1.99 rillig istk->i_seen_named_member ? ", seen named member" : "");
804 1.100 rillig
805 1.99 rillig for (m = istk->i_type->t_str->sou_first_member;
806 1.99 rillig m != NULL; m = m->s_next) {
807 1.99 rillig if (m->s_bitfield && m->s_name == unnamed)
808 1.99 rillig continue;
809 1.119 rillig /*
810 1.119 rillig * TODO: split into separate functions:
811 1.119 rillig *
812 1.119 rillig * look_up_array_next
813 1.119 rillig * look_up_array_designator
814 1.119 rillig * look_up_struct_next
815 1.119 rillig * look_up_struct_designator
816 1.119 rillig */
817 1.123 rillig if (current_designation() != NULL) {
818 1.119 rillig /* XXX: this log entry looks unnecessarily verbose */
819 1.100 rillig debug_step("have member '%s', want member '%s'",
820 1.123 rillig m->s_name, current_designation()->n_name);
821 1.123 rillig if (strcmp(m->s_name, current_designation()->n_name) ==
822 1.122 rillig 0) {
823 1.99 rillig cnt++;
824 1.99 rillig break;
825 1.99 rillig } else
826 1.99 rillig continue;
827 1.99 rillig }
828 1.99 rillig if (++cnt == 1) {
829 1.99 rillig istk->i_current_object = m;
830 1.99 rillig istk->i_subt = m->s_type;
831 1.99 rillig }
832 1.99 rillig }
833 1.100 rillig
834 1.123 rillig if (current_designation() != NULL) {
835 1.99 rillig if (m == NULL) {
836 1.99 rillig debug_step("pop struct");
837 1.99 rillig return true;
838 1.99 rillig }
839 1.99 rillig istk->i_current_object = m;
840 1.99 rillig istk->i_subt = m->s_type;
841 1.99 rillig istk->i_seen_named_member = true;
842 1.123 rillig debug_step("named member '%s'", current_designation()->n_name);
843 1.105 rillig designator_shift_name();
844 1.99 rillig cnt = istk->i_type->t_tspec == STRUCT ? 2 : 1;
845 1.99 rillig }
846 1.99 rillig istk->i_brace = true;
847 1.99 rillig debug_step("unnamed element with type '%s'%s",
848 1.99 rillig type_name(istk->i_type != NULL ? istk->i_type : istk->i_subt),
849 1.99 rillig istk->i_brace ? ", needs closing brace" : "");
850 1.99 rillig if (cnt == 0) {
851 1.99 rillig /* cannot init. struct/union with no named member */
852 1.99 rillig error(179);
853 1.99 rillig initerr = true;
854 1.99 rillig return false;
855 1.99 rillig }
856 1.99 rillig istk->i_remaining = istk->i_type->t_tspec == STRUCT ? cnt : 1;
857 1.99 rillig return false;
858 1.99 rillig }
859 1.99 rillig
860 1.119 rillig /* TODO: document me */
861 1.119 rillig /* TODO: think of a better name than 'push' */
862 1.99 rillig static void
863 1.35 rillig initstack_push(void)
864 1.1 cgd {
865 1.79 rillig initstack_element *istk, *inxt;
866 1.1 cgd
867 1.68 rillig debug_enter();
868 1.68 rillig
869 1.97 rillig extend_if_array_of_unknown_size();
870 1.97 rillig
871 1.1 cgd istk = initstk;
872 1.44 rillig lint_assert(istk->i_remaining > 0);
873 1.61 rillig lint_assert(istk->i_type == NULL || !is_scalar(istk->i_type->t_tspec));
874 1.1 cgd
875 1.79 rillig initstk = xcalloc(1, sizeof (initstack_element));
876 1.77 rillig initstk->i_enclosing = istk;
877 1.1 cgd initstk->i_type = istk->i_subt;
878 1.44 rillig lint_assert(initstk->i_type->t_tspec != FUNC);
879 1.1 cgd
880 1.12 christos again:
881 1.1 cgd istk = initstk;
882 1.1 cgd
883 1.88 rillig debug_step("expecting type '%s'", type_name(istk->i_type));
884 1.107 rillig lint_assert(istk->i_type != NULL);
885 1.1 cgd switch (istk->i_type->t_tspec) {
886 1.1 cgd case ARRAY:
887 1.123 rillig if (current_designation() != NULL) {
888 1.124 rillig debug_step("pop array, named member '%s'%s",
889 1.124 rillig current_designation()->n_name,
890 1.124 rillig istk->i_brace ? ", needs closing brace" : "");
891 1.19 christos goto pop;
892 1.98 rillig }
893 1.98 rillig
894 1.99 rillig initstack_push_array();
895 1.99 rillig break;
896 1.20 christos
897 1.1 cgd case UNION:
898 1.1 cgd if (tflag)
899 1.89 rillig /* initialization of union is illegal in trad. C */
900 1.1 cgd warning(238);
901 1.1 cgd /* FALLTHROUGH */
902 1.1 cgd case STRUCT:
903 1.99 rillig if (initstack_push_struct_or_union())
904 1.99 rillig goto pop;
905 1.1 cgd break;
906 1.1 cgd default:
907 1.123 rillig if (current_designation() != NULL) {
908 1.100 rillig debug_step("pop scalar");
909 1.19 christos pop:
910 1.119 rillig /* TODO: extract this into end_initializer_level */
911 1.77 rillig inxt = initstk->i_enclosing;
912 1.12 christos free(istk);
913 1.22 ad initstk = inxt;
914 1.12 christos goto again;
915 1.12 christos }
916 1.100 rillig /* The initialization stack now expects a single scalar. */
917 1.43 rillig istk->i_remaining = 1;
918 1.1 cgd break;
919 1.1 cgd }
920 1.68 rillig
921 1.73 rillig debug_initstack();
922 1.68 rillig debug_leave();
923 1.1 cgd }
924 1.1 cgd
925 1.1 cgd static void
926 1.84 rillig check_too_many_initializers(void)
927 1.1 cgd {
928 1.1 cgd
929 1.84 rillig const initstack_element *istk = initstk;
930 1.84 rillig if (istk->i_remaining > 0)
931 1.84 rillig return;
932 1.119 rillig /*
933 1.119 rillig * FIXME: even with named members, there can be too many initializers
934 1.119 rillig */
935 1.84 rillig if (istk->i_array_of_unknown_size || istk->i_seen_named_member)
936 1.84 rillig return;
937 1.1 cgd
938 1.84 rillig tspec_t t = istk->i_type->t_tspec;
939 1.84 rillig if (t == ARRAY) {
940 1.84 rillig /* too many array initializers, expected %d */
941 1.84 rillig error(173, istk->i_type->t_dim);
942 1.84 rillig } else if (t == STRUCT || t == UNION) {
943 1.84 rillig /* too many struct/union initializers */
944 1.84 rillig error(172);
945 1.84 rillig } else {
946 1.84 rillig /* too many initializers */
947 1.84 rillig error(174);
948 1.1 cgd }
949 1.84 rillig initerr = true;
950 1.1 cgd }
951 1.1 cgd
952 1.92 rillig /*
953 1.92 rillig * Process a '{' in an initializer by starting the initialization of the
954 1.92 rillig * nested data structure, with i_type being the i_subt of the outer
955 1.92 rillig * initialization level.
956 1.92 rillig */
957 1.1 cgd static void
958 1.37 rillig initstack_next_brace(void)
959 1.1 cgd {
960 1.7 lukem
961 1.68 rillig debug_enter();
962 1.73 rillig debug_initstack();
963 1.68 rillig
964 1.61 rillig if (initstk->i_type != NULL && is_scalar(initstk->i_type->t_tspec)) {
965 1.49 rillig /* invalid initializer type %s */
966 1.57 rillig error(176, type_name(initstk->i_type));
967 1.62 rillig initerr = true;
968 1.37 rillig }
969 1.37 rillig if (!initerr)
970 1.84 rillig check_too_many_initializers();
971 1.37 rillig if (!initerr)
972 1.37 rillig initstack_push();
973 1.37 rillig if (!initerr) {
974 1.62 rillig initstk->i_brace = true;
975 1.92 rillig debug_named_member();
976 1.92 rillig debug_step("expecting type '%s'",
977 1.92 rillig type_name(initstk->i_type != NULL ? initstk->i_type
978 1.74 rillig : initstk->i_subt));
979 1.37 rillig }
980 1.68 rillig
981 1.73 rillig debug_initstack();
982 1.68 rillig debug_leave();
983 1.37 rillig }
984 1.37 rillig
985 1.119 rillig /* TODO: document me, or think of a better name */
986 1.37 rillig static void
987 1.118 rillig initstack_next_nobrace(tnode_t *tn)
988 1.37 rillig {
989 1.68 rillig debug_enter();
990 1.37 rillig
991 1.61 rillig if (initstk->i_type == NULL && !is_scalar(initstk->i_subt->t_tspec)) {
992 1.37 rillig /* {}-enclosed initializer required */
993 1.37 rillig error(181);
994 1.92 rillig /* XXX: maybe set initerr here */
995 1.37 rillig }
996 1.37 rillig
997 1.84 rillig if (!initerr)
998 1.84 rillig check_too_many_initializers();
999 1.84 rillig
1000 1.42 rillig while (!initerr) {
1001 1.118 rillig initstack_element *istk = initstk;
1002 1.118 rillig
1003 1.118 rillig if (tn->tn_type->t_tspec == STRUCT &&
1004 1.118 rillig istk->i_type == tn->tn_type &&
1005 1.118 rillig istk->i_enclosing != NULL &&
1006 1.118 rillig istk->i_enclosing->i_enclosing != NULL) {
1007 1.118 rillig istk->i_brace = false;
1008 1.118 rillig istk->i_remaining = 1; /* the struct itself */
1009 1.118 rillig break;
1010 1.118 rillig }
1011 1.118 rillig
1012 1.118 rillig if ((istk->i_type != NULL && is_scalar(istk->i_type->t_tspec)))
1013 1.42 rillig break;
1014 1.42 rillig initstack_push();
1015 1.1 cgd }
1016 1.68 rillig
1017 1.73 rillig debug_initstack();
1018 1.68 rillig debug_leave();
1019 1.1 cgd }
1020 1.1 cgd
1021 1.119 rillig /* TODO: document me */
1022 1.1 cgd void
1023 1.34 rillig init_lbrace(void)
1024 1.1 cgd {
1025 1.1 cgd if (initerr)
1026 1.1 cgd return;
1027 1.1 cgd
1028 1.68 rillig debug_enter();
1029 1.73 rillig debug_initstack();
1030 1.68 rillig
1031 1.1 cgd if ((initsym->s_scl == AUTO || initsym->s_scl == REG) &&
1032 1.77 rillig initstk->i_enclosing == NULL) {
1033 1.61 rillig if (tflag && !is_scalar(initstk->i_subt->t_tspec))
1034 1.50 rillig /* no automatic aggregate initialization in trad. C */
1035 1.1 cgd warning(188);
1036 1.1 cgd }
1037 1.1 cgd
1038 1.1 cgd /*
1039 1.1 cgd * Remove all entries which cannot be used for further initializers
1040 1.1 cgd * and do not expect a closing brace.
1041 1.1 cgd */
1042 1.36 rillig initstack_pop_nobrace();
1043 1.1 cgd
1044 1.37 rillig initstack_next_brace();
1045 1.68 rillig
1046 1.73 rillig debug_initstack();
1047 1.68 rillig debug_leave();
1048 1.1 cgd }
1049 1.1 cgd
1050 1.92 rillig /*
1051 1.92 rillig * Process a '}' in an initializer by finishing the current level of the
1052 1.92 rillig * initialization stack.
1053 1.92 rillig */
1054 1.1 cgd void
1055 1.34 rillig init_rbrace(void)
1056 1.1 cgd {
1057 1.1 cgd if (initerr)
1058 1.1 cgd return;
1059 1.1 cgd
1060 1.68 rillig debug_enter();
1061 1.36 rillig initstack_pop_brace();
1062 1.68 rillig debug_leave();
1063 1.1 cgd }
1064 1.1 cgd
1065 1.86 rillig /* In traditional C, bit-fields can be initialized only by integer constants. */
1066 1.86 rillig static void
1067 1.86 rillig check_bit_field_init(const tnode_t *ln, tspec_t lt, tspec_t rt)
1068 1.86 rillig {
1069 1.86 rillig if (tflag &&
1070 1.86 rillig is_integer(lt) &&
1071 1.86 rillig ln->tn_type->t_bitfield &&
1072 1.86 rillig !is_integer(rt)) {
1073 1.89 rillig /* bit-field initialization is illegal in traditional C */
1074 1.86 rillig warning(186);
1075 1.86 rillig }
1076 1.86 rillig }
1077 1.86 rillig
1078 1.87 rillig static void
1079 1.87 rillig check_non_constant_initializer(const tnode_t *tn, scl_t sclass)
1080 1.87 rillig {
1081 1.119 rillig /* TODO: rename CON to CONSTANT to avoid ambiguity with CONVERT */
1082 1.87 rillig if (tn == NULL || tn->tn_op == CON)
1083 1.87 rillig return;
1084 1.87 rillig
1085 1.87 rillig sym_t *sym;
1086 1.87 rillig ptrdiff_t offs;
1087 1.87 rillig if (constant_addr(tn, &sym, &offs))
1088 1.87 rillig return;
1089 1.87 rillig
1090 1.87 rillig if (sclass == AUTO || sclass == REG) {
1091 1.87 rillig /* non-constant initializer */
1092 1.87 rillig c99ism(177);
1093 1.87 rillig } else {
1094 1.87 rillig /* non-constant initializer */
1095 1.87 rillig error(177);
1096 1.87 rillig }
1097 1.87 rillig }
1098 1.87 rillig
1099 1.114 rillig /*
1100 1.119 rillig * Initialize a non-array object with automatic storage duration and only a
1101 1.119 rillig * single initializer expression without braces by delegating to ASSIGN.
1102 1.114 rillig */
1103 1.114 rillig static bool
1104 1.114 rillig init_using_assign(tnode_t *rn)
1105 1.114 rillig {
1106 1.114 rillig tnode_t *ln, *tn;
1107 1.114 rillig
1108 1.114 rillig if (initsym->s_type->t_tspec == ARRAY)
1109 1.114 rillig return false;
1110 1.114 rillig if (initstk->i_enclosing != NULL)
1111 1.114 rillig return false;
1112 1.114 rillig
1113 1.114 rillig debug_step("handing over to ASSIGN");
1114 1.119 rillig
1115 1.114 rillig ln = new_name_node(initsym, 0);
1116 1.114 rillig ln->tn_type = tduptyp(ln->tn_type);
1117 1.114 rillig ln->tn_type->t_const = false;
1118 1.119 rillig
1119 1.114 rillig tn = build(ASSIGN, ln, rn);
1120 1.114 rillig expr(tn, false, false, false, false);
1121 1.119 rillig
1122 1.114 rillig /* XXX: why not clean up the initstack here already? */
1123 1.114 rillig return true;
1124 1.114 rillig }
1125 1.114 rillig
1126 1.116 rillig static void
1127 1.116 rillig check_init_expr(tnode_t *tn, scl_t sclass)
1128 1.116 rillig {
1129 1.116 rillig tnode_t *ln;
1130 1.116 rillig tspec_t lt, rt;
1131 1.116 rillig struct mbl *tmem;
1132 1.116 rillig
1133 1.116 rillig /* Create a temporary node for the left side. */
1134 1.116 rillig ln = tgetblk(sizeof (tnode_t));
1135 1.116 rillig ln->tn_op = NAME;
1136 1.116 rillig ln->tn_type = tduptyp(initstk->i_type);
1137 1.116 rillig ln->tn_type->t_const = false;
1138 1.116 rillig ln->tn_lvalue = true;
1139 1.116 rillig ln->tn_sym = initsym; /* better than nothing */
1140 1.116 rillig
1141 1.116 rillig tn = cconv(tn);
1142 1.116 rillig
1143 1.116 rillig lt = ln->tn_type->t_tspec;
1144 1.116 rillig rt = tn->tn_type->t_tspec;
1145 1.116 rillig
1146 1.116 rillig debug_step("typeok '%s', '%s'",
1147 1.116 rillig type_name(ln->tn_type), type_name(tn->tn_type));
1148 1.116 rillig if (!typeok(INIT, 0, ln, tn))
1149 1.116 rillig return;
1150 1.116 rillig
1151 1.116 rillig /*
1152 1.119 rillig * Preserve the tree memory. This is necessary because otherwise
1153 1.116 rillig * expr() would free it.
1154 1.116 rillig */
1155 1.116 rillig tmem = tsave();
1156 1.116 rillig expr(tn, true, false, true, false);
1157 1.116 rillig trestor(tmem);
1158 1.116 rillig
1159 1.116 rillig check_bit_field_init(ln, lt, rt);
1160 1.116 rillig
1161 1.116 rillig /*
1162 1.116 rillig * XXX: Is it correct to do this conversion _after_ the typeok above?
1163 1.116 rillig */
1164 1.116 rillig if (lt != rt || (initstk->i_type->t_bitfield && tn->tn_op == CON))
1165 1.116 rillig tn = convert(INIT, 0, initstk->i_type, tn);
1166 1.116 rillig
1167 1.116 rillig check_non_constant_initializer(tn, sclass);
1168 1.116 rillig }
1169 1.116 rillig
1170 1.1 cgd void
1171 1.69 rillig init_using_expr(tnode_t *tn)
1172 1.1 cgd {
1173 1.81 rillig scl_t sclass;
1174 1.1 cgd
1175 1.68 rillig debug_enter();
1176 1.92 rillig debug_initstack();
1177 1.68 rillig debug_named_member();
1178 1.95 rillig debug_step("expr:");
1179 1.95 rillig debug_node(tn, debug_ind + 1);
1180 1.55 rillig
1181 1.113 rillig if (initerr || tn == NULL)
1182 1.113 rillig goto done;
1183 1.1 cgd
1184 1.81 rillig sclass = initsym->s_scl;
1185 1.114 rillig if ((sclass == AUTO || sclass == REG) && init_using_assign(tn))
1186 1.113 rillig goto done;
1187 1.1 cgd
1188 1.36 rillig initstack_pop_nobrace();
1189 1.1 cgd
1190 1.82 rillig if (init_array_using_string(tn)) {
1191 1.82 rillig debug_step("after initializing the string:");
1192 1.82 rillig /* XXX: why not clean up the initstack here already? */
1193 1.113 rillig goto done_initstack;
1194 1.68 rillig }
1195 1.1 cgd
1196 1.118 rillig initstack_next_nobrace(tn);
1197 1.113 rillig if (initerr || tn == NULL)
1198 1.113 rillig goto done_initstack;
1199 1.1 cgd
1200 1.43 rillig initstk->i_remaining--;
1201 1.83 rillig debug_step("%d elements remaining", initstk->i_remaining);
1202 1.83 rillig
1203 1.116 rillig check_init_expr(tn, sclass);
1204 1.68 rillig
1205 1.113 rillig done_initstack:
1206 1.73 rillig debug_initstack();
1207 1.113 rillig done:
1208 1.68 rillig debug_leave();
1209 1.1 cgd }
1210 1.1 cgd
1211 1.1 cgd
1212 1.82 rillig /* Initialize a character array or wchar_t array with a string literal. */
1213 1.62 rillig static bool
1214 1.82 rillig init_array_using_string(tnode_t *tn)
1215 1.1 cgd {
1216 1.1 cgd tspec_t t;
1217 1.79 rillig initstack_element *istk;
1218 1.1 cgd int len;
1219 1.1 cgd strg_t *strg;
1220 1.1 cgd
1221 1.1 cgd if (tn->tn_op != STRING)
1222 1.63 rillig return false;
1223 1.1 cgd
1224 1.68 rillig debug_enter();
1225 1.73 rillig debug_initstack();
1226 1.68 rillig
1227 1.1 cgd istk = initstk;
1228 1.47 rillig strg = tn->tn_string;
1229 1.1 cgd
1230 1.1 cgd /*
1231 1.1 cgd * Check if we have an array type which can be initialized by
1232 1.1 cgd * the string.
1233 1.1 cgd */
1234 1.12 christos if (istk->i_subt != NULL && istk->i_subt->t_tspec == ARRAY) {
1235 1.68 rillig debug_step("subt array");
1236 1.1 cgd t = istk->i_subt->t_subt->t_tspec;
1237 1.1 cgd if (!((strg->st_tspec == CHAR &&
1238 1.1 cgd (t == CHAR || t == UCHAR || t == SCHAR)) ||
1239 1.1 cgd (strg->st_tspec == WCHAR && t == WCHAR))) {
1240 1.68 rillig debug_leave();
1241 1.63 rillig return false;
1242 1.1 cgd }
1243 1.82 rillig /* XXX: duplicate code, see below */
1244 1.119 rillig
1245 1.1 cgd /* Put the array at top of stack */
1246 1.35 rillig initstack_push();
1247 1.1 cgd istk = initstk;
1248 1.119 rillig
1249 1.119 rillig
1250 1.119 rillig /* TODO: what if both i_type and i_subt are ARRAY? */
1251 1.119 rillig
1252 1.1 cgd } else if (istk->i_type != NULL && istk->i_type->t_tspec == ARRAY) {
1253 1.68 rillig debug_step("type array");
1254 1.1 cgd t = istk->i_type->t_subt->t_tspec;
1255 1.1 cgd if (!((strg->st_tspec == CHAR &&
1256 1.1 cgd (t == CHAR || t == UCHAR || t == SCHAR)) ||
1257 1.1 cgd (strg->st_tspec == WCHAR && t == WCHAR))) {
1258 1.68 rillig debug_leave();
1259 1.63 rillig return false;
1260 1.1 cgd }
1261 1.82 rillig /* XXX: duplicate code, see above */
1262 1.119 rillig
1263 1.119 rillig /*
1264 1.119 rillig * TODO: is this really not needed in the branch above this
1265 1.119 rillig * one?
1266 1.119 rillig */
1267 1.1 cgd /*
1268 1.1 cgd * If the array is already partly initialized, we are
1269 1.1 cgd * wrong here.
1270 1.1 cgd */
1271 1.115 rillig if (istk->i_remaining != istk->i_type->t_dim) {
1272 1.68 rillig debug_leave();
1273 1.63 rillig return false;
1274 1.115 rillig }
1275 1.1 cgd } else {
1276 1.68 rillig debug_leave();
1277 1.63 rillig return false;
1278 1.1 cgd }
1279 1.1 cgd
1280 1.1 cgd /* Get length without trailing NUL character. */
1281 1.1 cgd len = strg->st_len;
1282 1.1 cgd
1283 1.77 rillig if (istk->i_array_of_unknown_size) {
1284 1.77 rillig istk->i_array_of_unknown_size = false;
1285 1.1 cgd istk->i_type->t_dim = len + 1;
1286 1.63 rillig setcomplete(istk->i_type, true);
1287 1.1 cgd } else {
1288 1.119 rillig /*
1289 1.119 rillig * TODO: check for buffer overflow in the object to be
1290 1.119 rillig * initialized
1291 1.119 rillig */
1292 1.119 rillig /* XXX: double-check for off-by-one error */
1293 1.1 cgd if (istk->i_type->t_dim < len) {
1294 1.1 cgd /* non-null byte ignored in string initializer */
1295 1.1 cgd warning(187);
1296 1.1 cgd }
1297 1.119 rillig
1298 1.119 rillig /*
1299 1.119 rillig * TODO: C99 6.7.8p14 allows a string literal to be enclosed
1300 1.119 rillig * in optional redundant braces, just like scalars. Add tests
1301 1.119 rillig * for this.
1302 1.119 rillig */
1303 1.1 cgd }
1304 1.1 cgd
1305 1.1 cgd /* In every case the array is initialized completely. */
1306 1.43 rillig istk->i_remaining = 0;
1307 1.1 cgd
1308 1.73 rillig debug_initstack();
1309 1.68 rillig debug_leave();
1310 1.63 rillig return true;
1311 1.1 cgd }
1312