lex.c revision 1.173 1 1.173 rillig /* $NetBSD: lex.c,v 1.173 2023/07/10 09:51:30 rillig Exp $ */
2 1.1 rillig
3 1.1 rillig /*
4 1.1 rillig * Copyright (c) 1996 Christopher G. Demetriou. All Rights Reserved.
5 1.1 rillig * Copyright (c) 1994, 1995 Jochen Pohl
6 1.1 rillig * All Rights Reserved.
7 1.1 rillig *
8 1.1 rillig * Redistribution and use in source and binary forms, with or without
9 1.1 rillig * modification, are permitted provided that the following conditions
10 1.1 rillig * are met:
11 1.1 rillig * 1. Redistributions of source code must retain the above copyright
12 1.1 rillig * notice, this list of conditions and the following disclaimer.
13 1.1 rillig * 2. Redistributions in binary form must reproduce the above copyright
14 1.1 rillig * notice, this list of conditions and the following disclaimer in the
15 1.1 rillig * documentation and/or other materials provided with the distribution.
16 1.1 rillig * 3. All advertising materials mentioning features or use of this software
17 1.1 rillig * must display the following acknowledgement:
18 1.1 rillig * This product includes software developed by Jochen Pohl for
19 1.1 rillig * The NetBSD Project.
20 1.1 rillig * 4. The name of the author may not be used to endorse or promote products
21 1.1 rillig * derived from this software without specific prior written permission.
22 1.1 rillig *
23 1.1 rillig * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
24 1.1 rillig * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
25 1.1 rillig * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
26 1.1 rillig * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
27 1.1 rillig * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
28 1.1 rillig * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
29 1.1 rillig * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
30 1.1 rillig * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
31 1.1 rillig * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
32 1.1 rillig * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
33 1.1 rillig */
34 1.1 rillig
35 1.4 christos #if HAVE_NBTOOL_CONFIG_H
36 1.4 christos #include "nbtool_config.h"
37 1.4 christos #endif
38 1.4 christos
39 1.1 rillig #include <sys/cdefs.h>
40 1.131 rillig #if defined(__RCSID)
41 1.173 rillig __RCSID("$NetBSD: lex.c,v 1.173 2023/07/10 09:51:30 rillig Exp $");
42 1.1 rillig #endif
43 1.1 rillig
44 1.1 rillig #include <ctype.h>
45 1.1 rillig #include <errno.h>
46 1.1 rillig #include <float.h>
47 1.1 rillig #include <limits.h>
48 1.1 rillig #include <math.h>
49 1.1 rillig #include <stdlib.h>
50 1.1 rillig #include <string.h>
51 1.1 rillig
52 1.1 rillig #include "lint1.h"
53 1.1 rillig #include "cgram.h"
54 1.1 rillig
55 1.72 rillig #define CHAR_MASK ((1U << CHAR_SIZE) - 1)
56 1.1 rillig
57 1.1 rillig
58 1.1 rillig /* Current position (it's also updated when an included file is parsed) */
59 1.23 rillig pos_t curr_pos = { "", 1, 0 };
60 1.1 rillig
61 1.1 rillig /*
62 1.1 rillig * Current position in C source (not updated when an included file is
63 1.1 rillig * parsed).
64 1.1 rillig */
65 1.23 rillig pos_t csrc_pos = { "", 1, 0 };
66 1.1 rillig
67 1.94 rillig bool in_gcc_attribute;
68 1.94 rillig bool in_system_header;
69 1.1 rillig
70 1.125 rillig /*
71 1.125 rillig * Valid values for 'since' are 78, 90, 99, 11.
72 1.125 rillig *
73 1.146 rillig * The C11 keywords are added in C99 mode as well, to provide good error
74 1.125 rillig * messages instead of a simple parse error. If the keyword '_Generic' were
75 1.125 rillig * not defined, it would be interpreted as an implicit function call, leading
76 1.125 rillig * to a parse error.
77 1.125 rillig */
78 1.133 rillig #define kwdef(name, token, scl, tspec, tqual, since, gcc, deco) \
79 1.13 rillig { \
80 1.13 rillig name, token, scl, tspec, tqual, \
81 1.122 rillig (since) == 90, \
82 1.122 rillig /* CONSTCOND */ (since) == 99 || (since) == 11, \
83 1.133 rillig (gcc) > 0, \
84 1.66 rillig ((deco) & 1) != 0, ((deco) & 2) != 0, ((deco) & 4) != 0, \
85 1.13 rillig }
86 1.122 rillig #define kwdef_token(name, token, since, gcc, deco) \
87 1.133 rillig kwdef(name, token, 0, 0, 0, since, gcc, deco)
88 1.122 rillig #define kwdef_sclass(name, sclass, since, gcc, deco) \
89 1.133 rillig kwdef(name, T_SCLASS, sclass, 0, 0, since, gcc, deco)
90 1.132 rillig #define kwdef_type(name, tspec, since) \
91 1.133 rillig kwdef(name, T_TYPE, 0, tspec, 0, since, 0, 1)
92 1.122 rillig #define kwdef_tqual(name, tqual, since, gcc, deco) \
93 1.133 rillig kwdef(name, T_QUAL, 0, 0, tqual, since, gcc, deco)
94 1.35 rillig #define kwdef_keyword(name, token) \
95 1.133 rillig kwdef(name, token, 0, 0, 0, 78, 0, 1)
96 1.13 rillig
97 1.94 rillig /* During initialization, these keywords are written to the symbol table. */
98 1.106 rillig static const struct keyword {
99 1.146 rillig const char *kw_name;
100 1.1 rillig int kw_token; /* token returned by yylex() */
101 1.146 rillig scl_t kw_scl; /* storage class if kw_token is T_SCLASS */
102 1.147 rillig tspec_t kw_tspec; /* type specifier if kw_token is T_TYPE or
103 1.147 rillig * T_STRUCT_OR_UNION */
104 1.146 rillig tqual_t kw_tqual; /* type qualifier if kw_token is T_QUAL */
105 1.146 rillig bool kw_c90:1; /* available in C90 mode */
106 1.146 rillig bool kw_c99_or_c11:1; /* available in C99 or C11 mode */
107 1.146 rillig bool kw_gcc:1; /* available in GCC mode */
108 1.93 rillig bool kw_plain:1; /* 'name' */
109 1.93 rillig bool kw_leading:1; /* '__name' */
110 1.93 rillig bool kw_both:1; /* '__name__' */
111 1.94 rillig } keywords[] = {
112 1.35 rillig kwdef_keyword( "_Alignas", T_ALIGNAS),
113 1.35 rillig kwdef_keyword( "_Alignof", T_ALIGNOF),
114 1.130 rillig kwdef_token( "alignof", T_ALIGNOF, 78,0,6),
115 1.146 rillig kwdef_token( "asm", T_ASM, 78,1,7),
116 1.142 rillig kwdef_token( "_Atomic", T_ATOMIC, 11,0,1),
117 1.122 rillig kwdef_token( "attribute", T_ATTRIBUTE, 78,1,6),
118 1.122 rillig kwdef_sclass( "auto", AUTO, 78,0,1),
119 1.132 rillig kwdef_type( "_Bool", BOOL, 99),
120 1.35 rillig kwdef_keyword( "break", T_BREAK),
121 1.122 rillig kwdef_token( "__builtin_offsetof", T_BUILTIN_OFFSETOF, 78,1,1),
122 1.35 rillig kwdef_keyword( "case", T_CASE),
123 1.132 rillig kwdef_type( "char", CHAR, 78),
124 1.132 rillig kwdef_type( "_Complex", COMPLEX, 99),
125 1.122 rillig kwdef_tqual( "const", CONST, 90,0,7),
126 1.35 rillig kwdef_keyword( "continue", T_CONTINUE),
127 1.35 rillig kwdef_keyword( "default", T_DEFAULT),
128 1.35 rillig kwdef_keyword( "do", T_DO),
129 1.132 rillig kwdef_type( "double", DOUBLE, 78),
130 1.35 rillig kwdef_keyword( "else", T_ELSE),
131 1.35 rillig kwdef_keyword( "enum", T_ENUM),
132 1.122 rillig kwdef_token( "__extension__",T_EXTENSION, 78,1,1),
133 1.122 rillig kwdef_sclass( "extern", EXTERN, 78,0,1),
134 1.132 rillig kwdef_type( "float", FLOAT, 78),
135 1.35 rillig kwdef_keyword( "for", T_FOR),
136 1.122 rillig kwdef_token( "_Generic", T_GENERIC, 11,0,1),
137 1.35 rillig kwdef_keyword( "goto", T_GOTO),
138 1.35 rillig kwdef_keyword( "if", T_IF),
139 1.122 rillig kwdef_token( "__imag__", T_IMAG, 78,1,1),
140 1.122 rillig kwdef_sclass( "inline", INLINE, 99,0,7),
141 1.132 rillig kwdef_type( "int", INT, 78),
142 1.56 rillig #ifdef INT128_SIZE
143 1.132 rillig kwdef_type( "__int128_t", INT128, 99),
144 1.56 rillig #endif
145 1.132 rillig kwdef_type( "long", LONG, 78),
146 1.124 rillig kwdef_token( "_Noreturn", T_NORETURN, 11,0,1),
147 1.124 rillig kwdef_token( "__packed", T_PACKED, 78,0,1),
148 1.124 rillig kwdef_token( "__real__", T_REAL, 78,1,1),
149 1.124 rillig kwdef_sclass( "register", REG, 78,0,1),
150 1.124 rillig kwdef_tqual( "restrict", RESTRICT, 99,0,7),
151 1.124 rillig kwdef_keyword( "return", T_RETURN),
152 1.132 rillig kwdef_type( "short", SHORT, 78),
153 1.133 rillig kwdef( "signed", T_TYPE, 0, SIGNED, 0, 90,0,3),
154 1.124 rillig kwdef_keyword( "sizeof", T_SIZEOF),
155 1.124 rillig kwdef_sclass( "static", STATIC, 78,0,1),
156 1.124 rillig kwdef_keyword( "_Static_assert", T_STATIC_ASSERT),
157 1.133 rillig kwdef("struct", T_STRUCT_OR_UNION, 0, STRUCT, 0, 78,0,1),
158 1.124 rillig kwdef_keyword( "switch", T_SWITCH),
159 1.124 rillig kwdef_token( "__symbolrename", T_SYMBOLRENAME, 78,0,1),
160 1.124 rillig kwdef_tqual( "__thread", THREAD, 78,1,1),
161 1.141 rillig /* XXX: _Thread_local is a storage-class-specifier, not tqual. */
162 1.124 rillig kwdef_tqual( "_Thread_local", THREAD, 11,0,1),
163 1.124 rillig kwdef_sclass( "typedef", TYPEDEF, 78,0,1),
164 1.124 rillig kwdef_token( "typeof", T_TYPEOF, 78,1,7),
165 1.124 rillig #ifdef INT128_SIZE
166 1.132 rillig kwdef_type( "__uint128_t", UINT128, 99),
167 1.124 rillig #endif
168 1.133 rillig kwdef("union", T_STRUCT_OR_UNION, 0, UNION, 0, 78,0,1),
169 1.132 rillig kwdef_type( "unsigned", UNSIGN, 78),
170 1.132 rillig kwdef_type( "void", VOID, 78),
171 1.124 rillig kwdef_tqual( "volatile", VOLATILE, 90,0,7),
172 1.124 rillig kwdef_keyword( "while", T_WHILE),
173 1.13 rillig #undef kwdef
174 1.13 rillig #undef kwdef_token
175 1.13 rillig #undef kwdef_sclass
176 1.13 rillig #undef kwdef_type
177 1.13 rillig #undef kwdef_tqual
178 1.36 rillig #undef kwdef_keyword
179 1.1 rillig };
180 1.1 rillig
181 1.146 rillig /*
182 1.146 rillig * The symbol table containing all keywords, identifiers and labels. The hash
183 1.146 rillig * entries are linked via sym_t.s_symtab_next.
184 1.146 rillig */
185 1.173 rillig static sym_t *symtab[503];
186 1.1 rillig
187 1.146 rillig /*
188 1.146 rillig * The kind of the next expected symbol, to distinguish the namespaces of
189 1.146 rillig * members, labels, type tags and other identifiers.
190 1.146 rillig */
191 1.146 rillig symt_t symtyp;
192 1.1 rillig
193 1.1 rillig
194 1.104 rillig static unsigned int
195 1.104 rillig hash(const char *s)
196 1.104 rillig {
197 1.104 rillig unsigned int v;
198 1.104 rillig const char *p;
199 1.104 rillig
200 1.104 rillig v = 0;
201 1.104 rillig for (p = s; *p != '\0'; p++) {
202 1.104 rillig v = (v << 4) + (unsigned char)*p;
203 1.104 rillig v ^= v >> 28;
204 1.104 rillig }
205 1.173 rillig return v % (sizeof(symtab) / sizeof(symtab[0]));
206 1.104 rillig }
207 1.104 rillig
208 1.1 rillig static void
209 1.62 rillig symtab_add(sym_t *sym)
210 1.60 rillig {
211 1.104 rillig unsigned int h;
212 1.60 rillig
213 1.62 rillig h = hash(sym->s_name);
214 1.102 rillig if ((sym->s_symtab_next = symtab[h]) != NULL)
215 1.102 rillig symtab[h]->s_symtab_ref = &sym->s_symtab_next;
216 1.102 rillig sym->s_symtab_ref = &symtab[h];
217 1.60 rillig symtab[h] = sym;
218 1.60 rillig }
219 1.60 rillig
220 1.104 rillig static sym_t *
221 1.143 rillig symtab_search(const char *name)
222 1.104 rillig {
223 1.104 rillig
224 1.143 rillig unsigned int h = hash(name);
225 1.104 rillig for (sym_t *sym = symtab[h]; sym != NULL; sym = sym->s_symtab_next) {
226 1.143 rillig if (strcmp(sym->s_name, name) != 0)
227 1.104 rillig continue;
228 1.148 rillig if (sym->s_keyword != NULL ||
229 1.148 rillig sym->s_kind == symtyp ||
230 1.148 rillig in_gcc_attribute)
231 1.104 rillig return sym;
232 1.104 rillig }
233 1.104 rillig
234 1.104 rillig return NULL;
235 1.104 rillig }
236 1.104 rillig
237 1.60 rillig static void
238 1.61 rillig symtab_remove(sym_t *sym)
239 1.61 rillig {
240 1.61 rillig
241 1.102 rillig if ((*sym->s_symtab_ref = sym->s_symtab_next) != NULL)
242 1.102 rillig sym->s_symtab_next->s_symtab_ref = sym->s_symtab_ref;
243 1.102 rillig sym->s_symtab_next = NULL;
244 1.61 rillig }
245 1.61 rillig
246 1.104 rillig static void
247 1.104 rillig symtab_remove_locals(void)
248 1.104 rillig {
249 1.104 rillig
250 1.173 rillig for (size_t i = 0; i < sizeof(symtab) / sizeof(symtab[0]); i++) {
251 1.104 rillig for (sym_t *sym = symtab[i]; sym != NULL; ) {
252 1.104 rillig sym_t *next = sym->s_symtab_next;
253 1.104 rillig if (sym->s_block_level >= 1)
254 1.104 rillig symtab_remove(sym);
255 1.104 rillig sym = next;
256 1.104 rillig }
257 1.104 rillig }
258 1.104 rillig }
259 1.61 rillig
260 1.107 rillig #ifdef DEBUG
261 1.107 rillig static int
262 1.107 rillig sym_by_name(const void *va, const void *vb)
263 1.107 rillig {
264 1.107 rillig const sym_t *a = *(const sym_t *const *)va;
265 1.107 rillig const sym_t *b = *(const sym_t *const *)vb;
266 1.107 rillig
267 1.107 rillig return strcmp(a->s_name, b->s_name);
268 1.107 rillig }
269 1.107 rillig
270 1.107 rillig struct syms {
271 1.107 rillig const sym_t **items;
272 1.107 rillig size_t len;
273 1.107 rillig size_t cap;
274 1.107 rillig };
275 1.107 rillig
276 1.107 rillig static void
277 1.107 rillig syms_add(struct syms *syms, const sym_t *sym)
278 1.107 rillig {
279 1.146 rillig if (syms->len >= syms->cap) {
280 1.107 rillig syms->cap *= 2;
281 1.107 rillig syms->items = xrealloc(syms->items,
282 1.107 rillig syms->cap * sizeof(syms->items[0]));
283 1.107 rillig }
284 1.107 rillig syms->items[syms->len++] = sym;
285 1.107 rillig }
286 1.107 rillig
287 1.107 rillig void
288 1.107 rillig debug_symtab(void)
289 1.107 rillig {
290 1.107 rillig struct syms syms = { xcalloc(64, sizeof(syms.items[0])), 0, 64 };
291 1.107 rillig
292 1.111 rillig for (int level = -1;; level++) {
293 1.107 rillig bool more = false;
294 1.107 rillig size_t n = sizeof(symtab) / sizeof(symtab[0]);
295 1.107 rillig
296 1.107 rillig syms.len = 0;
297 1.107 rillig for (size_t i = 0; i < n; i++) {
298 1.107 rillig for (sym_t *sym = symtab[i]; sym != NULL;) {
299 1.107 rillig if (sym->s_block_level == level &&
300 1.107 rillig sym->s_keyword == NULL)
301 1.107 rillig syms_add(&syms, sym);
302 1.107 rillig if (sym->s_block_level > level)
303 1.107 rillig more = true;
304 1.107 rillig sym = sym->s_symtab_next;
305 1.107 rillig }
306 1.107 rillig }
307 1.107 rillig
308 1.111 rillig if (syms.len > 0) {
309 1.111 rillig debug_printf("symbol table level %d\n", level);
310 1.111 rillig debug_indent_inc();
311 1.111 rillig qsort(syms.items, syms.len, sizeof(syms.items[0]),
312 1.111 rillig sym_by_name);
313 1.111 rillig for (size_t i = 0; i < syms.len; i++)
314 1.114 rillig debug_sym("", syms.items[i], "\n");
315 1.111 rillig debug_indent_dec();
316 1.111 rillig
317 1.111 rillig lint_assert(level != -1);
318 1.111 rillig }
319 1.107 rillig
320 1.107 rillig if (!more)
321 1.107 rillig break;
322 1.107 rillig }
323 1.107 rillig
324 1.107 rillig free(syms.items);
325 1.107 rillig }
326 1.107 rillig #endif
327 1.107 rillig
328 1.61 rillig static void
329 1.94 rillig add_keyword(const struct keyword *kw, bool leading, bool trailing)
330 1.1 rillig {
331 1.146 rillig
332 1.1 rillig const char *name;
333 1.66 rillig if (!leading && !trailing) {
334 1.1 rillig name = kw->kw_name;
335 1.66 rillig } else {
336 1.146 rillig char buf[256];
337 1.73 rillig (void)snprintf(buf, sizeof(buf), "%s%s%s",
338 1.66 rillig leading ? "__" : "", kw->kw_name, trailing ? "__" : "");
339 1.66 rillig name = xstrdup(buf);
340 1.1 rillig }
341 1.1 rillig
342 1.146 rillig sym_t *sym = block_zero_alloc(sizeof(*sym));
343 1.1 rillig sym->s_name = name;
344 1.1 rillig sym->s_keyword = kw;
345 1.146 rillig int tok = kw->kw_token;
346 1.146 rillig sym->u.s_keyword.sk_token = tok;
347 1.146 rillig if (tok == T_TYPE || tok == T_STRUCT_OR_UNION)
348 1.117 rillig sym->u.s_keyword.sk_tspec = kw->kw_tspec;
349 1.146 rillig if (tok == T_SCLASS)
350 1.1 rillig sym->s_scl = kw->kw_scl;
351 1.146 rillig if (tok == T_QUAL)
352 1.117 rillig sym->u.s_keyword.sk_qualifier = kw->kw_tqual;
353 1.60 rillig
354 1.60 rillig symtab_add(sym);
355 1.1 rillig }
356 1.1 rillig
357 1.126 rillig static bool
358 1.126 rillig is_keyword_known(const struct keyword *kw)
359 1.126 rillig {
360 1.126 rillig
361 1.126 rillig if ((kw->kw_c90 || kw->kw_c99_or_c11) && !allow_c90)
362 1.126 rillig return false;
363 1.126 rillig
364 1.126 rillig /*
365 1.126 rillig * In the 1990s, GCC defined several keywords that were later
366 1.126 rillig * incorporated into C99, therefore in GCC mode, all C99 keywords are
367 1.126 rillig * made available. The C11 keywords are made available as well, but
368 1.126 rillig * there are so few that they don't matter practically.
369 1.126 rillig */
370 1.126 rillig if (allow_gcc)
371 1.126 rillig return true;
372 1.126 rillig if (kw->kw_gcc)
373 1.126 rillig return false;
374 1.126 rillig
375 1.126 rillig if (kw->kw_c99_or_c11 && !allow_c99)
376 1.126 rillig return false;
377 1.126 rillig return true;
378 1.126 rillig }
379 1.126 rillig
380 1.146 rillig /* Write all keywords to the symbol table. */
381 1.1 rillig void
382 1.1 rillig initscan(void)
383 1.1 rillig {
384 1.1 rillig
385 1.146 rillig size_t n = sizeof(keywords) / sizeof(keywords[0]);
386 1.146 rillig for (size_t i = 0; i < n; i++) {
387 1.146 rillig const struct keyword *kw = keywords + i;
388 1.126 rillig if (!is_keyword_known(kw))
389 1.1 rillig continue;
390 1.66 rillig if (kw->kw_plain)
391 1.66 rillig add_keyword(kw, false, false);
392 1.66 rillig if (kw->kw_leading)
393 1.66 rillig add_keyword(kw, true, false);
394 1.66 rillig if (kw->kw_both)
395 1.66 rillig add_keyword(kw, true, true);
396 1.1 rillig }
397 1.1 rillig }
398 1.1 rillig
399 1.1 rillig /*
400 1.135 rillig * When scanning the remainder of a long token (see lex_input), read a byte
401 1.135 rillig * and return it as an unsigned char or as EOF.
402 1.135 rillig *
403 1.135 rillig * Increment the line counts if necessary.
404 1.1 rillig */
405 1.1 rillig static int
406 1.135 rillig read_byte(void)
407 1.1 rillig {
408 1.159 rillig int c;
409 1.1 rillig
410 1.41 rillig if ((c = lex_input()) == EOF)
411 1.41 rillig return c;
412 1.41 rillig if (c == '\0')
413 1.41 rillig return EOF; /* lex returns 0 on EOF. */
414 1.41 rillig if (c == '\n')
415 1.6 rillig lex_next_line();
416 1.1 rillig return c;
417 1.1 rillig }
418 1.1 rillig
419 1.105 rillig static int
420 1.105 rillig lex_keyword(sym_t *sym)
421 1.105 rillig {
422 1.144 rillig int tok = sym->u.s_keyword.sk_token;
423 1.105 rillig
424 1.144 rillig if (tok == T_SCLASS)
425 1.105 rillig yylval.y_scl = sym->s_scl;
426 1.144 rillig if (tok == T_TYPE || tok == T_STRUCT_OR_UNION)
427 1.117 rillig yylval.y_tspec = sym->u.s_keyword.sk_tspec;
428 1.144 rillig if (tok == T_QUAL)
429 1.117 rillig yylval.y_tqual = sym->u.s_keyword.sk_qualifier;
430 1.144 rillig return tok;
431 1.105 rillig }
432 1.105 rillig
433 1.1 rillig /*
434 1.146 rillig * Look up the definition of a name in the symbol table. This symbol must
435 1.146 rillig * either be a keyword or a symbol of the type required by symtyp (label,
436 1.146 rillig * member, tag, ...).
437 1.1 rillig */
438 1.1 rillig extern int
439 1.1 rillig lex_name(const char *yytext, size_t yyleng)
440 1.1 rillig {
441 1.1 rillig
442 1.143 rillig sym_t *sym = symtab_search(yytext);
443 1.143 rillig if (sym != NULL && sym->s_keyword != NULL)
444 1.105 rillig return lex_keyword(sym);
445 1.1 rillig
446 1.143 rillig sbuf_t *sb = xmalloc(sizeof(*sb));
447 1.143 rillig sb->sb_len = yyleng;
448 1.1 rillig sb->sb_sym = sym;
449 1.143 rillig yylval.y_name = sb;
450 1.1 rillig
451 1.1 rillig if (sym != NULL) {
452 1.12 rillig lint_assert(block_level >= sym->s_block_level);
453 1.1 rillig sb->sb_name = sym->s_name;
454 1.143 rillig return sym->s_scl == TYPEDEF ? T_TYPENAME : T_NAME;
455 1.1 rillig }
456 1.1 rillig
457 1.144 rillig char *name = block_zero_alloc(yyleng + 1);
458 1.144 rillig (void)memcpy(name, yytext, yyleng + 1);
459 1.144 rillig sb->sb_name = name;
460 1.143 rillig return T_NAME;
461 1.1 rillig }
462 1.1 rillig
463 1.1 rillig int
464 1.6 rillig lex_integer_constant(const char *yytext, size_t yyleng, int base)
465 1.1 rillig {
466 1.77 rillig /* C11 6.4.4.1p5 */
467 1.77 rillig static const tspec_t suffix_type[2][3] = {
468 1.167 rillig { INT, LONG, LLONG, },
469 1.167 rillig { UINT, ULONG, ULLONG, }
470 1.1 rillig };
471 1.1 rillig
472 1.151 rillig const char *cp = yytext;
473 1.151 rillig size_t len = yyleng;
474 1.1 rillig
475 1.1 rillig /* skip 0[xX] or 0[bB] */
476 1.1 rillig if (base == 16 || base == 2) {
477 1.1 rillig cp += 2;
478 1.1 rillig len -= 2;
479 1.1 rillig }
480 1.1 rillig
481 1.1 rillig /* read suffixes */
482 1.151 rillig unsigned l_suffix = 0, u_suffix = 0;
483 1.143 rillig for (;; len--) {
484 1.151 rillig char c = cp[len - 1];
485 1.151 rillig if (c == 'l' || c == 'L')
486 1.1 rillig l_suffix++;
487 1.143 rillig else if (c == 'u' || c == 'U')
488 1.1 rillig u_suffix++;
489 1.143 rillig else
490 1.1 rillig break;
491 1.1 rillig }
492 1.1 rillig if (l_suffix > 2 || u_suffix > 1) {
493 1.1 rillig /* malformed integer constant */
494 1.1 rillig warning(251);
495 1.1 rillig if (l_suffix > 2)
496 1.1 rillig l_suffix = 2;
497 1.1 rillig if (u_suffix > 1)
498 1.1 rillig u_suffix = 1;
499 1.1 rillig }
500 1.151 rillig if (!allow_c90 && u_suffix > 0) {
501 1.171 rillig /* suffix 'U' is illegal in traditional C */
502 1.1 rillig warning(97);
503 1.1 rillig }
504 1.151 rillig tspec_t typ = suffix_type[u_suffix][l_suffix];
505 1.1 rillig
506 1.151 rillig bool warned = false;
507 1.1 rillig errno = 0;
508 1.151 rillig char *eptr;
509 1.166 rillig uint64_t ui = (uint64_t)strtoull(cp, &eptr, base);
510 1.1 rillig lint_assert(eptr == cp + len);
511 1.11 rillig if (errno != 0) {
512 1.1 rillig /* integer constant out of range */
513 1.1 rillig warning(252);
514 1.11 rillig warned = true;
515 1.11 rillig }
516 1.1 rillig
517 1.166 rillig if (any_query_enabled && base == 8 && ui != 0) {
518 1.155 rillig /* octal number '%.*s' */
519 1.155 rillig query_message(8, (int)len, cp);
520 1.155 rillig }
521 1.155 rillig
522 1.1 rillig /*
523 1.1 rillig * If the value is too big for the current type, we must choose
524 1.1 rillig * another type.
525 1.1 rillig */
526 1.151 rillig bool ansiu = false;
527 1.1 rillig switch (typ) {
528 1.1 rillig case INT:
529 1.166 rillig if (ui <= TARG_INT_MAX) {
530 1.1 rillig /* ok */
531 1.166 rillig } else if (ui <= TARG_UINT_MAX && base != 10) {
532 1.1 rillig typ = UINT;
533 1.166 rillig } else if (ui <= TARG_LONG_MAX) {
534 1.1 rillig typ = LONG;
535 1.1 rillig } else {
536 1.1 rillig typ = ULONG;
537 1.166 rillig if (ui > TARG_ULONG_MAX && !warned) {
538 1.1 rillig /* integer constant out of range */
539 1.1 rillig warning(252);
540 1.1 rillig }
541 1.1 rillig }
542 1.1 rillig if (typ == UINT || typ == ULONG) {
543 1.127 rillig if (!allow_c90) {
544 1.1 rillig typ = LONG;
545 1.151 rillig } else if (allow_trad) {
546 1.1 rillig /*
547 1.1 rillig * Remember that the constant is unsigned
548 1.128 rillig * only in ANSI C.
549 1.1 rillig */
550 1.1 rillig ansiu = true;
551 1.1 rillig }
552 1.1 rillig }
553 1.1 rillig break;
554 1.1 rillig case UINT:
555 1.166 rillig if (ui > TARG_UINT_MAX) {
556 1.1 rillig typ = ULONG;
557 1.166 rillig if (ui > TARG_ULONG_MAX && !warned) {
558 1.1 rillig /* integer constant out of range */
559 1.1 rillig warning(252);
560 1.1 rillig }
561 1.1 rillig }
562 1.1 rillig break;
563 1.1 rillig case LONG:
564 1.166 rillig if (ui > TARG_LONG_MAX && allow_c90) {
565 1.1 rillig typ = ULONG;
566 1.154 rillig if (allow_trad)
567 1.1 rillig ansiu = true;
568 1.166 rillig if (ui > TARG_ULONG_MAX && !warned) {
569 1.1 rillig /* integer constant out of range */
570 1.1 rillig warning(252);
571 1.1 rillig }
572 1.1 rillig }
573 1.1 rillig break;
574 1.1 rillig case ULONG:
575 1.166 rillig if (ui > TARG_ULONG_MAX && !warned) {
576 1.1 rillig /* integer constant out of range */
577 1.1 rillig warning(252);
578 1.1 rillig }
579 1.1 rillig break;
580 1.167 rillig case LLONG:
581 1.167 rillig if (ui > TARG_LLONG_MAX && allow_c90)
582 1.167 rillig typ = ULLONG;
583 1.1 rillig break;
584 1.167 rillig case ULLONG:
585 1.167 rillig if (ui > TARG_ULLONG_MAX && !warned) {
586 1.1 rillig /* integer constant out of range */
587 1.1 rillig warning(252);
588 1.1 rillig }
589 1.1 rillig break;
590 1.64 rillig default:
591 1.1 rillig break;
592 1.1 rillig }
593 1.1 rillig
594 1.166 rillig ui = (uint64_t)convert_integer((int64_t)ui, typ, 0);
595 1.1 rillig
596 1.22 rillig yylval.y_val = xcalloc(1, sizeof(*yylval.y_val));
597 1.17 rillig yylval.y_val->v_tspec = typ;
598 1.46 rillig yylval.y_val->v_unsigned_since_c90 = ansiu;
599 1.166 rillig yylval.y_val->u.integer = (int64_t)ui;
600 1.1 rillig
601 1.1 rillig return T_CON;
602 1.1 rillig }
603 1.1 rillig
604 1.1 rillig /*
605 1.166 rillig * Extend or truncate si to match t. If t is signed, sign-extend.
606 1.50 rillig *
607 1.134 rillig * len is the number of significant bits. If len is 0, len is set
608 1.50 rillig * to the width of type t.
609 1.1 rillig */
610 1.1 rillig int64_t
611 1.166 rillig convert_integer(int64_t si, tspec_t t, unsigned int len)
612 1.1 rillig {
613 1.1 rillig
614 1.72 rillig if (len == 0)
615 1.10 rillig len = size_in_bits(t);
616 1.1 rillig
617 1.134 rillig uint64_t vbits = value_bits(len);
618 1.172 rillig uint64_t ui = (uint64_t)si;
619 1.172 rillig return t == PTR || is_uinteger(t) || ((ui & bit(len - 1)) == 0)
620 1.172 rillig ? (int64_t)(ui & vbits)
621 1.172 rillig : (int64_t)(ui | ~vbits);
622 1.1 rillig }
623 1.1 rillig
624 1.1 rillig int
625 1.6 rillig lex_floating_constant(const char *yytext, size_t yyleng)
626 1.1 rillig {
627 1.151 rillig const char *cp = yytext;
628 1.151 rillig size_t len = yyleng;
629 1.1 rillig
630 1.158 rillig bool imaginary = cp[len - 1] == 'i';
631 1.158 rillig if (imaginary)
632 1.158 rillig len--;
633 1.81 rillig
634 1.151 rillig char c = cp[len - 1];
635 1.151 rillig tspec_t typ;
636 1.151 rillig if (c == 'f' || c == 'F') {
637 1.158 rillig typ = imaginary ? FCOMPLEX : FLOAT;
638 1.1 rillig len--;
639 1.1 rillig } else if (c == 'l' || c == 'L') {
640 1.158 rillig typ = imaginary ? LCOMPLEX : LDOUBLE;
641 1.1 rillig len--;
642 1.152 rillig } else
643 1.158 rillig typ = imaginary ? DCOMPLEX : DOUBLE;
644 1.1 rillig
645 1.127 rillig if (!allow_c90 && typ != DOUBLE) {
646 1.171 rillig /* suffixes 'F' and 'L' are illegal in traditional C */
647 1.1 rillig warning(98);
648 1.1 rillig }
649 1.1 rillig
650 1.1 rillig errno = 0;
651 1.151 rillig char *eptr;
652 1.150 rillig long double ld = strtold(cp, &eptr);
653 1.149 rillig lint_assert(eptr == cp + len);
654 1.156 rillig if (errno != 0) {
655 1.1 rillig /* floating-point constant out of range */
656 1.1 rillig warning(248);
657 1.156 rillig } else if (typ == FLOAT) {
658 1.150 rillig ld = (float)ld;
659 1.150 rillig if (isfinite(ld) == 0) {
660 1.1 rillig /* floating-point constant out of range */
661 1.1 rillig warning(248);
662 1.150 rillig ld = ld > 0 ? FLT_MAX : -FLT_MAX;
663 1.150 rillig }
664 1.169 rillig } else if (typ == DOUBLE
665 1.169 rillig || /* CONSTCOND */LDOUBLE_SIZE == DOUBLE_SIZE) {
666 1.150 rillig ld = (double)ld;
667 1.150 rillig if (isfinite(ld) == 0) {
668 1.150 rillig /* floating-point constant out of range */
669 1.150 rillig warning(248);
670 1.150 rillig ld = ld > 0 ? DBL_MAX : -DBL_MAX;
671 1.1 rillig }
672 1.1 rillig }
673 1.1 rillig
674 1.22 rillig yylval.y_val = xcalloc(1, sizeof(*yylval.y_val));
675 1.17 rillig yylval.y_val->v_tspec = typ;
676 1.166 rillig yylval.y_val->u.floating = ld;
677 1.1 rillig
678 1.1 rillig return T_CON;
679 1.1 rillig }
680 1.1 rillig
681 1.1 rillig int
682 1.1 rillig lex_operator(int t, op_t o)
683 1.1 rillig {
684 1.1 rillig
685 1.1 rillig yylval.y_op = o;
686 1.1 rillig return t;
687 1.1 rillig }
688 1.1 rillig
689 1.136 rillig static int prev_byte = -1;
690 1.136 rillig
691 1.136 rillig static int
692 1.136 rillig read_escaped_oct(int c)
693 1.136 rillig {
694 1.136 rillig int n = 3;
695 1.139 rillig int value = 0;
696 1.136 rillig do {
697 1.139 rillig value = (value << 3) + (c - '0');
698 1.136 rillig c = read_byte();
699 1.136 rillig } while (--n > 0 && '0' <= c && c <= '7');
700 1.136 rillig prev_byte = c;
701 1.139 rillig if (value > TARG_UCHAR_MAX) {
702 1.136 rillig /* character escape does not fit in character */
703 1.136 rillig warning(76);
704 1.139 rillig value &= CHAR_MASK;
705 1.136 rillig }
706 1.139 rillig return value;
707 1.136 rillig }
708 1.136 rillig
709 1.145 rillig static unsigned int
710 1.136 rillig read_escaped_hex(int c)
711 1.136 rillig {
712 1.136 rillig if (!allow_c90)
713 1.136 rillig /* \x undefined in traditional C */
714 1.136 rillig warning(82);
715 1.145 rillig unsigned int value = 0;
716 1.140 rillig int state = 0; /* 0 = no digits, 1 = OK, 2 = overflow */
717 1.136 rillig while (c = read_byte(), isxdigit(c)) {
718 1.139 rillig c = isdigit(c) ? c - '0' : toupper(c) - 'A' + 10;
719 1.139 rillig value = (value << 4) + c;
720 1.140 rillig if (state == 2)
721 1.140 rillig continue;
722 1.140 rillig if ((value & ~CHAR_MASK) != 0) {
723 1.140 rillig /* overflow in hex escape */
724 1.140 rillig warning(75);
725 1.140 rillig state = 2;
726 1.140 rillig } else {
727 1.140 rillig state = 1;
728 1.136 rillig }
729 1.136 rillig }
730 1.136 rillig prev_byte = c;
731 1.139 rillig if (state == 0) {
732 1.136 rillig /* no hex digits follow \x */
733 1.136 rillig error(74);
734 1.136 rillig }
735 1.140 rillig if (state == 2)
736 1.139 rillig value &= CHAR_MASK;
737 1.139 rillig return value;
738 1.136 rillig }
739 1.136 rillig
740 1.137 rillig static int
741 1.137 rillig read_escaped_backslash(int delim)
742 1.137 rillig {
743 1.137 rillig int c;
744 1.137 rillig
745 1.137 rillig switch (c = read_byte()) {
746 1.137 rillig case '"':
747 1.137 rillig if (!allow_c90 && delim == '\'')
748 1.137 rillig /* \" inside character constants undef... */
749 1.137 rillig warning(262);
750 1.137 rillig return '"';
751 1.137 rillig case '\'':
752 1.137 rillig return '\'';
753 1.137 rillig case '?':
754 1.137 rillig if (!allow_c90)
755 1.137 rillig /* \? undefined in traditional C */
756 1.137 rillig warning(263);
757 1.137 rillig return '?';
758 1.137 rillig case '\\':
759 1.137 rillig return '\\';
760 1.137 rillig case 'a':
761 1.137 rillig if (!allow_c90)
762 1.137 rillig /* \a undefined in traditional C */
763 1.137 rillig warning(81);
764 1.137 rillig return '\a';
765 1.137 rillig case 'b':
766 1.137 rillig return '\b';
767 1.137 rillig case 'f':
768 1.137 rillig return '\f';
769 1.137 rillig case 'n':
770 1.137 rillig return '\n';
771 1.137 rillig case 'r':
772 1.137 rillig return '\r';
773 1.137 rillig case 't':
774 1.137 rillig return '\t';
775 1.137 rillig case 'v':
776 1.137 rillig if (!allow_c90)
777 1.137 rillig /* \v undefined in traditional C */
778 1.137 rillig warning(264);
779 1.137 rillig return '\v';
780 1.137 rillig case '8': case '9':
781 1.170 rillig /* bad octal digit '%c' */
782 1.137 rillig warning(77, c);
783 1.137 rillig /* FALLTHROUGH */
784 1.137 rillig case '0': case '1': case '2': case '3':
785 1.137 rillig case '4': case '5': case '6': case '7':
786 1.137 rillig return read_escaped_oct(c);
787 1.137 rillig case 'x':
788 1.145 rillig return (int)read_escaped_hex(c);
789 1.137 rillig case '\n':
790 1.138 rillig return -3;
791 1.137 rillig case EOF:
792 1.137 rillig return -2;
793 1.137 rillig default:
794 1.137 rillig if (isprint(c)) {
795 1.137 rillig /* dubious escape \%c */
796 1.137 rillig warning(79, c);
797 1.137 rillig } else {
798 1.137 rillig /* dubious escape \%o */
799 1.137 rillig warning(80, c);
800 1.137 rillig }
801 1.137 rillig return c;
802 1.137 rillig }
803 1.137 rillig }
804 1.137 rillig
805 1.138 rillig /*
806 1.138 rillig * Read a character which is part of a character constant or of a string
807 1.138 rillig * and handle escapes.
808 1.138 rillig *
809 1.146 rillig * 'delim' is '\'' for character constants and '"' for string literals.
810 1.138 rillig *
811 1.138 rillig * Returns -1 if the end of the character constant or string is reached,
812 1.138 rillig * -2 if the EOF is reached, and the character otherwise.
813 1.138 rillig */
814 1.138 rillig static int
815 1.138 rillig get_escaped_char(int delim)
816 1.138 rillig {
817 1.138 rillig
818 1.146 rillig int c = prev_byte;
819 1.146 rillig if (c != -1)
820 1.146 rillig prev_byte = -1;
821 1.146 rillig else
822 1.138 rillig c = read_byte();
823 1.146 rillig
824 1.138 rillig if (c == delim)
825 1.138 rillig return -1;
826 1.138 rillig switch (c) {
827 1.138 rillig case '\n':
828 1.138 rillig if (!allow_c90) {
829 1.138 rillig /* newline in string or char constant */
830 1.138 rillig error(254);
831 1.138 rillig return -2;
832 1.138 rillig }
833 1.138 rillig return c;
834 1.138 rillig case '\0':
835 1.138 rillig /* syntax error '%s' */
836 1.138 rillig error(249, "EOF or null byte in literal");
837 1.138 rillig return -2;
838 1.138 rillig case EOF:
839 1.138 rillig return -2;
840 1.138 rillig case '\\':
841 1.138 rillig c = read_escaped_backslash(delim);
842 1.138 rillig if (c == -3)
843 1.138 rillig return get_escaped_char(delim);
844 1.138 rillig }
845 1.138 rillig return c;
846 1.138 rillig }
847 1.138 rillig
848 1.113 rillig /* Called if lex found a leading "'". */
849 1.1 rillig int
850 1.6 rillig lex_character_constant(void)
851 1.1 rillig {
852 1.159 rillig size_t n;
853 1.1 rillig int val, c;
854 1.1 rillig
855 1.1 rillig n = 0;
856 1.1 rillig val = 0;
857 1.6 rillig while ((c = get_escaped_char('\'')) >= 0) {
858 1.145 rillig val = (int)((unsigned int)val << CHAR_SIZE) + c;
859 1.1 rillig n++;
860 1.1 rillig }
861 1.1 rillig if (c == -2) {
862 1.1 rillig /* unterminated character constant */
863 1.1 rillig error(253);
864 1.43 rillig } else if (n > sizeof(int) || (n > 1 && (pflag || hflag))) {
865 1.145 rillig /*
866 1.145 rillig * XXX: ^^ should rather be sizeof(TARG_INT). Luckily,
867 1.145 rillig * sizeof(int) is the same on all supported platforms.
868 1.145 rillig */
869 1.43 rillig /* too many characters in character constant */
870 1.43 rillig error(71);
871 1.43 rillig } else if (n > 1) {
872 1.43 rillig /* multi-character character constant */
873 1.43 rillig warning(294);
874 1.43 rillig } else if (n == 0) {
875 1.43 rillig /* empty character constant */
876 1.43 rillig error(73);
877 1.1 rillig }
878 1.74 rillig if (n == 1)
879 1.74 rillig val = (int)convert_integer(val, CHAR, CHAR_SIZE);
880 1.1 rillig
881 1.22 rillig yylval.y_val = xcalloc(1, sizeof(*yylval.y_val));
882 1.1 rillig yylval.y_val->v_tspec = INT;
883 1.161 rillig yylval.y_val->v_char_constant = true;
884 1.166 rillig yylval.y_val->u.integer = val;
885 1.1 rillig
886 1.1 rillig return T_CON;
887 1.1 rillig }
888 1.1 rillig
889 1.1 rillig /*
890 1.1 rillig * Called if lex found a leading L\'
891 1.1 rillig */
892 1.1 rillig int
893 1.6 rillig lex_wide_character_constant(void)
894 1.1 rillig {
895 1.159 rillig static char buf[MB_LEN_MAX + 1];
896 1.159 rillig size_t n, nmax;
897 1.1 rillig int c;
898 1.159 rillig wchar_t wc;
899 1.1 rillig
900 1.44 rillig nmax = MB_CUR_MAX;
901 1.7 rillig
902 1.44 rillig n = 0;
903 1.6 rillig while ((c = get_escaped_char('\'')) >= 0) {
904 1.44 rillig if (n < nmax)
905 1.44 rillig buf[n] = (char)c;
906 1.44 rillig n++;
907 1.1 rillig }
908 1.1 rillig
909 1.1 rillig wc = 0;
910 1.1 rillig
911 1.1 rillig if (c == -2) {
912 1.1 rillig /* unterminated character constant */
913 1.1 rillig error(253);
914 1.44 rillig } else if (n == 0) {
915 1.1 rillig /* empty character constant */
916 1.1 rillig error(73);
917 1.44 rillig } else if (n > nmax) {
918 1.44 rillig n = nmax;
919 1.43 rillig /* too many characters in character constant */
920 1.43 rillig error(71);
921 1.1 rillig } else {
922 1.44 rillig buf[n] = '\0';
923 1.43 rillig (void)mbtowc(NULL, NULL, 0);
924 1.44 rillig if (mbtowc(&wc, buf, nmax) < 0)
925 1.43 rillig /* invalid multibyte character */
926 1.43 rillig error(291);
927 1.1 rillig }
928 1.1 rillig
929 1.22 rillig yylval.y_val = xcalloc(1, sizeof(*yylval.y_val));
930 1.173 rillig yylval.y_val->v_tspec = WCHAR_TSPEC;
931 1.161 rillig yylval.y_val->v_char_constant = true;
932 1.166 rillig yylval.y_val->u.integer = wc;
933 1.1 rillig
934 1.1 rillig return T_CON;
935 1.1 rillig }
936 1.1 rillig
937 1.1 rillig /* See https://gcc.gnu.org/onlinedocs/cpp/Preprocessor-Output.html */
938 1.1 rillig static void
939 1.25 rillig parse_line_directive_flags(const char *p,
940 1.25 rillig bool *is_begin, bool *is_end, bool *is_system)
941 1.1 rillig {
942 1.1 rillig
943 1.25 rillig *is_begin = false;
944 1.25 rillig *is_end = false;
945 1.25 rillig *is_system = false;
946 1.1 rillig
947 1.8 rillig while (*p != '\0') {
948 1.1 rillig while (ch_isspace(*p))
949 1.1 rillig p++;
950 1.8 rillig
951 1.157 rillig const char *word = p;
952 1.8 rillig while (*p != '\0' && !ch_isspace(*p))
953 1.8 rillig p++;
954 1.157 rillig size_t len = (size_t)(p - word);
955 1.8 rillig
956 1.157 rillig if (len == 1 && word[0] == '1')
957 1.25 rillig *is_begin = true;
958 1.157 rillig if (len == 1 && word[0] == '2')
959 1.25 rillig *is_end = true;
960 1.157 rillig if (len == 1 && word[0] == '3')
961 1.25 rillig *is_system = true;
962 1.94 rillig /* Flag '4' is only interesting for C++. */
963 1.1 rillig }
964 1.1 rillig }
965 1.1 rillig
966 1.1 rillig /*
967 1.1 rillig * Called for preprocessor directives. Currently implemented are:
968 1.94 rillig * # pragma [argument...]
969 1.1 rillig * # lineno
970 1.1 rillig * # lineno "filename"
971 1.2 rillig * # lineno "filename" GCC-flag...
972 1.1 rillig */
973 1.1 rillig void
974 1.1 rillig lex_directive(const char *yytext)
975 1.1 rillig {
976 1.159 rillig const char *cp, *fn;
977 1.159 rillig char c, *eptr;
978 1.159 rillig size_t fnl;
979 1.159 rillig long ln;
980 1.159 rillig bool is_begin, is_end, is_system;
981 1.25 rillig
982 1.159 rillig static bool first = true;
983 1.1 rillig
984 1.1 rillig /* Go to first non-whitespace after # */
985 1.1 rillig for (cp = yytext + 1; (c = *cp) == ' ' || c == '\t'; cp++)
986 1.1 rillig continue;
987 1.1 rillig
988 1.1 rillig if (!ch_isdigit(c)) {
989 1.1 rillig if (strncmp(cp, "pragma", 6) == 0 && ch_isspace(cp[6]))
990 1.1 rillig return;
991 1.1 rillig error:
992 1.170 rillig /* undefined or invalid '#' directive */
993 1.1 rillig warning(255);
994 1.1 rillig return;
995 1.1 rillig }
996 1.1 rillig ln = strtol(--cp, &eptr, 10);
997 1.94 rillig if (eptr == cp)
998 1.1 rillig goto error;
999 1.1 rillig if ((c = *(cp = eptr)) != ' ' && c != '\t' && c != '\0')
1000 1.1 rillig goto error;
1001 1.1 rillig while ((c = *cp++) == ' ' || c == '\t')
1002 1.1 rillig continue;
1003 1.1 rillig if (c != '\0') {
1004 1.1 rillig if (c != '"')
1005 1.1 rillig goto error;
1006 1.1 rillig fn = cp;
1007 1.1 rillig while ((c = *cp) != '"' && c != '\0')
1008 1.1 rillig cp++;
1009 1.1 rillig if (c != '"')
1010 1.1 rillig goto error;
1011 1.1 rillig if ((fnl = cp++ - fn) > PATH_MAX)
1012 1.1 rillig goto error;
1013 1.1 rillig /* empty string means stdin */
1014 1.1 rillig if (fnl == 0) {
1015 1.1 rillig fn = "{standard input}";
1016 1.135 rillig fnl = 16; /* strlen (fn) */
1017 1.1 rillig }
1018 1.19 rillig curr_pos.p_file = record_filename(fn, fnl);
1019 1.1 rillig /*
1020 1.1 rillig * If this is the first directive, the name is the name
1021 1.1 rillig * of the C source file as specified at the command line.
1022 1.1 rillig * It is written to the output file.
1023 1.1 rillig */
1024 1.1 rillig if (first) {
1025 1.1 rillig csrc_pos.p_file = curr_pos.p_file;
1026 1.19 rillig outsrc(transform_filename(curr_pos.p_file,
1027 1.1 rillig strlen(curr_pos.p_file)));
1028 1.1 rillig first = false;
1029 1.1 rillig }
1030 1.25 rillig
1031 1.25 rillig parse_line_directive_flags(cp, &is_begin, &is_end, &is_system);
1032 1.26 rillig update_location(curr_pos.p_file, (int)ln, is_begin, is_end);
1033 1.26 rillig in_system_header = is_system;
1034 1.1 rillig }
1035 1.1 rillig curr_pos.p_line = (int)ln - 1;
1036 1.1 rillig curr_pos.p_uniq = 0;
1037 1.1 rillig if (curr_pos.p_file == csrc_pos.p_file) {
1038 1.1 rillig csrc_pos.p_line = (int)ln - 1;
1039 1.1 rillig csrc_pos.p_uniq = 0;
1040 1.1 rillig }
1041 1.1 rillig }
1042 1.1 rillig
1043 1.1 rillig /*
1044 1.2 rillig * Handle lint comments such as ARGSUSED.
1045 1.2 rillig *
1046 1.1 rillig * If one of these comments is recognized, the argument, if any, is
1047 1.1 rillig * parsed and a function which handles this comment is called.
1048 1.1 rillig */
1049 1.1 rillig void
1050 1.1 rillig lex_comment(void)
1051 1.1 rillig {
1052 1.146 rillig int c;
1053 1.1 rillig static const struct {
1054 1.1 rillig const char *keywd;
1055 1.3 rillig bool arg;
1056 1.1 rillig void (*func)(int);
1057 1.1 rillig } keywtab[] = {
1058 1.3 rillig { "ARGSUSED", true, argsused },
1059 1.3 rillig { "BITFIELDTYPE", false, bitfieldtype },
1060 1.3 rillig { "CONSTCOND", false, constcond },
1061 1.3 rillig { "CONSTANTCOND", false, constcond },
1062 1.3 rillig { "CONSTANTCONDITION", false, constcond },
1063 1.3 rillig { "FALLTHRU", false, fallthru },
1064 1.3 rillig { "FALLTHROUGH", false, fallthru },
1065 1.79 rillig { "FALL THROUGH", false, fallthru },
1066 1.80 rillig { "fallthrough", false, fallthru },
1067 1.3 rillig { "LINTLIBRARY", false, lintlib },
1068 1.3 rillig { "LINTED", true, linted },
1069 1.3 rillig { "LONGLONG", false, longlong },
1070 1.3 rillig { "NOSTRICT", true, linted },
1071 1.15 rillig { "NOTREACHED", false, not_reached },
1072 1.3 rillig { "PRINTFLIKE", true, printflike },
1073 1.3 rillig { "PROTOLIB", true, protolib },
1074 1.3 rillig { "SCANFLIKE", true, scanflike },
1075 1.3 rillig { "VARARGS", true, varargs },
1076 1.1 rillig };
1077 1.159 rillig char keywd[32];
1078 1.159 rillig char arg[32];
1079 1.159 rillig size_t l, i;
1080 1.159 rillig int a;
1081 1.1 rillig
1082 1.146 rillig bool seen_end_of_comment = false;
1083 1.1 rillig
1084 1.1 rillig /* Skip whitespace after the start of the comment */
1085 1.135 rillig while (c = read_byte(), isspace(c))
1086 1.1 rillig continue;
1087 1.1 rillig
1088 1.1 rillig /* Read the potential keyword to keywd */
1089 1.1 rillig l = 0;
1090 1.79 rillig while (c != EOF && l < sizeof(keywd) - 1 &&
1091 1.80 rillig (isalpha(c) || isspace(c))) {
1092 1.80 rillig if (islower(c) && l > 0 && ch_isupper(keywd[0]))
1093 1.80 rillig break;
1094 1.1 rillig keywd[l++] = (char)c;
1095 1.135 rillig c = read_byte();
1096 1.1 rillig }
1097 1.79 rillig while (l > 0 && ch_isspace(keywd[l - 1]))
1098 1.79 rillig l--;
1099 1.1 rillig keywd[l] = '\0';
1100 1.1 rillig
1101 1.1 rillig /* look for the keyword */
1102 1.22 rillig for (i = 0; i < sizeof(keywtab) / sizeof(keywtab[0]); i++) {
1103 1.1 rillig if (strcmp(keywtab[i].keywd, keywd) == 0)
1104 1.1 rillig break;
1105 1.1 rillig }
1106 1.22 rillig if (i == sizeof(keywtab) / sizeof(keywtab[0]))
1107 1.1 rillig goto skip_rest;
1108 1.1 rillig
1109 1.1 rillig /* skip whitespace after the keyword */
1110 1.94 rillig while (isspace(c))
1111 1.135 rillig c = read_byte();
1112 1.1 rillig
1113 1.1 rillig /* read the argument, if the keyword accepts one and there is one */
1114 1.1 rillig l = 0;
1115 1.1 rillig if (keywtab[i].arg) {
1116 1.94 rillig while (isdigit(c) && l < sizeof(arg) - 1) {
1117 1.1 rillig arg[l++] = (char)c;
1118 1.135 rillig c = read_byte();
1119 1.1 rillig }
1120 1.1 rillig }
1121 1.1 rillig arg[l] = '\0';
1122 1.168 rillig a = l != 0 ? atoi(arg) : -1;
1123 1.1 rillig
1124 1.1 rillig /* skip whitespace after the argument */
1125 1.94 rillig while (isspace(c))
1126 1.135 rillig c = read_byte();
1127 1.1 rillig
1128 1.146 rillig seen_end_of_comment = c == '*' && (c = read_byte()) == '/';
1129 1.146 rillig if (!seen_end_of_comment && keywtab[i].func != linted)
1130 1.146 rillig /* extra characters in lint comment */
1131 1.146 rillig warning(257);
1132 1.1 rillig
1133 1.1 rillig if (keywtab[i].func != NULL)
1134 1.146 rillig keywtab[i].func(a);
1135 1.1 rillig
1136 1.1 rillig skip_rest:
1137 1.146 rillig while (!seen_end_of_comment) {
1138 1.146 rillig int lc = c;
1139 1.135 rillig if ((c = read_byte()) == EOF) {
1140 1.1 rillig /* unterminated comment */
1141 1.1 rillig error(256);
1142 1.1 rillig break;
1143 1.1 rillig }
1144 1.1 rillig if (lc == '*' && c == '/')
1145 1.146 rillig seen_end_of_comment = true;
1146 1.1 rillig }
1147 1.1 rillig }
1148 1.1 rillig
1149 1.1 rillig void
1150 1.6 rillig lex_slash_slash_comment(void)
1151 1.1 rillig {
1152 1.1 rillig int c;
1153 1.1 rillig
1154 1.121 rillig if (!allow_c99 && !allow_gcc)
1155 1.170 rillig /* %s does not support '//' comments */
1156 1.121 rillig gnuism(312, allow_c90 ? "C90" : "traditional C");
1157 1.1 rillig
1158 1.135 rillig while ((c = read_byte()) != EOF && c != '\n')
1159 1.1 rillig continue;
1160 1.1 rillig }
1161 1.1 rillig
1162 1.1 rillig /*
1163 1.1 rillig * Clear flags for lint comments LINTED, LONGLONG and CONSTCOND.
1164 1.94 rillig * clear_warn_flags is called after function definitions and global and
1165 1.1 rillig * local declarations and definitions. It is also called between
1166 1.1 rillig * the controlling expression and the body of control statements
1167 1.1 rillig * (if, switch, for, while).
1168 1.1 rillig */
1169 1.1 rillig void
1170 1.1 rillig clear_warn_flags(void)
1171 1.1 rillig {
1172 1.1 rillig
1173 1.1 rillig lwarn = LWARN_ALL;
1174 1.166 rillig long_long_flag = false;
1175 1.1 rillig constcond_flag = false;
1176 1.1 rillig }
1177 1.1 rillig
1178 1.1 rillig int
1179 1.1 rillig lex_string(void)
1180 1.1 rillig {
1181 1.71 rillig unsigned char *s;
1182 1.159 rillig int c;
1183 1.159 rillig size_t len, max;
1184 1.1 rillig
1185 1.1 rillig s = xmalloc(max = 64);
1186 1.1 rillig
1187 1.1 rillig len = 0;
1188 1.39 rillig while ((c = get_escaped_char('"')) >= 0) {
1189 1.1 rillig /* +1 to reserve space for a trailing NUL character */
1190 1.1 rillig if (len + 1 == max)
1191 1.1 rillig s = xrealloc(s, max *= 2);
1192 1.1 rillig s[len++] = (char)c;
1193 1.1 rillig }
1194 1.1 rillig s[len] = '\0';
1195 1.1 rillig if (c == -2)
1196 1.1 rillig /* unterminated string constant */
1197 1.1 rillig error(258);
1198 1.1 rillig
1199 1.143 rillig strg_t *strg = xcalloc(1, sizeof(*strg));
1200 1.103 rillig strg->st_char = true;
1201 1.1 rillig strg->st_len = len;
1202 1.103 rillig strg->st_mem = s;
1203 1.1 rillig
1204 1.1 rillig yylval.y_string = strg;
1205 1.1 rillig return T_STRING;
1206 1.1 rillig }
1207 1.1 rillig
1208 1.1 rillig int
1209 1.6 rillig lex_wide_string(void)
1210 1.1 rillig {
1211 1.159 rillig int c, n;
1212 1.1 rillig
1213 1.143 rillig size_t len = 0, max = 64;
1214 1.143 rillig char *s = xmalloc(max);
1215 1.6 rillig while ((c = get_escaped_char('"')) >= 0) {
1216 1.1 rillig /* +1 to save space for a trailing NUL character */
1217 1.1 rillig if (len + 1 >= max)
1218 1.1 rillig s = xrealloc(s, max *= 2);
1219 1.1 rillig s[len++] = (char)c;
1220 1.1 rillig }
1221 1.1 rillig s[len] = '\0';
1222 1.1 rillig if (c == -2)
1223 1.1 rillig /* unterminated string constant */
1224 1.1 rillig error(258);
1225 1.1 rillig
1226 1.1 rillig /* get length of wide-character string */
1227 1.1 rillig (void)mblen(NULL, 0);
1228 1.143 rillig size_t wlen = 0;
1229 1.143 rillig for (size_t i = 0; i < len; i += n, wlen++) {
1230 1.1 rillig if ((n = mblen(&s[i], MB_CUR_MAX)) == -1) {
1231 1.1 rillig /* invalid multibyte character */
1232 1.1 rillig error(291);
1233 1.1 rillig break;
1234 1.1 rillig }
1235 1.1 rillig if (n == 0)
1236 1.1 rillig n = 1;
1237 1.1 rillig }
1238 1.1 rillig
1239 1.159 rillig wchar_t *ws = xmalloc((wlen + 1) * sizeof(*ws));
1240 1.143 rillig size_t wi = 0;
1241 1.1 rillig /* convert from multibyte to wide char */
1242 1.1 rillig (void)mbtowc(NULL, NULL, 0);
1243 1.143 rillig for (size_t i = 0; i < len; i += n, wi++) {
1244 1.1 rillig if ((n = mbtowc(&ws[wi], &s[i], MB_CUR_MAX)) == -1)
1245 1.1 rillig break;
1246 1.1 rillig if (n == 0)
1247 1.1 rillig n = 1;
1248 1.1 rillig }
1249 1.1 rillig ws[wi] = 0;
1250 1.1 rillig free(s);
1251 1.1 rillig
1252 1.143 rillig strg_t *strg = xcalloc(1, sizeof(*strg));
1253 1.103 rillig strg->st_char = false;
1254 1.1 rillig strg->st_len = wlen;
1255 1.103 rillig strg->st_mem = ws;
1256 1.1 rillig
1257 1.1 rillig yylval.y_string = strg;
1258 1.1 rillig return T_STRING;
1259 1.1 rillig }
1260 1.1 rillig
1261 1.105 rillig void
1262 1.105 rillig lex_next_line(void)
1263 1.105 rillig {
1264 1.105 rillig curr_pos.p_line++;
1265 1.105 rillig curr_pos.p_uniq = 0;
1266 1.105 rillig debug_step("parsing %s:%d", curr_pos.p_file, curr_pos.p_line);
1267 1.105 rillig if (curr_pos.p_file == csrc_pos.p_file) {
1268 1.105 rillig csrc_pos.p_line++;
1269 1.105 rillig csrc_pos.p_uniq = 0;
1270 1.105 rillig }
1271 1.105 rillig }
1272 1.105 rillig
1273 1.105 rillig void
1274 1.105 rillig lex_unknown_character(int c)
1275 1.105 rillig {
1276 1.105 rillig
1277 1.105 rillig /* unknown character \%o */
1278 1.105 rillig error(250, c);
1279 1.105 rillig }
1280 1.105 rillig
1281 1.1 rillig /*
1282 1.113 rillig * The scanner does not create new symbol table entries for symbols it cannot
1283 1.113 rillig * find in the symbol table. This is to avoid putting undeclared symbols into
1284 1.113 rillig * the symbol table if a syntax error occurs.
1285 1.1 rillig *
1286 1.113 rillig * getsym is called as soon as it is probably ok to put the symbol in the
1287 1.53 rillig * symbol table. It is still possible that symbols are put in the symbol
1288 1.53 rillig * table that are not completely declared due to syntax errors. To avoid too
1289 1.113 rillig * many problems in this case, symbols get type 'int' in getsym.
1290 1.1 rillig *
1291 1.113 rillig * XXX calls to getsym should be delayed until declare_1_* is called.
1292 1.1 rillig */
1293 1.1 rillig sym_t *
1294 1.1 rillig getsym(sbuf_t *sb)
1295 1.1 rillig {
1296 1.1 rillig
1297 1.143 rillig sym_t *sym = sb->sb_sym;
1298 1.1 rillig
1299 1.1 rillig /*
1300 1.1 rillig * During member declaration it is possible that name() looked
1301 1.1 rillig * for symbols of type FVFT, although it should have looked for
1302 1.1 rillig * symbols of type FTAG. Same can happen for labels. Both cases
1303 1.1 rillig * are compensated here.
1304 1.1 rillig */
1305 1.1 rillig if (symtyp == FMEMBER || symtyp == FLABEL) {
1306 1.1 rillig if (sym == NULL || sym->s_kind == FVFT)
1307 1.143 rillig sym = symtab_search(sb->sb_name);
1308 1.1 rillig }
1309 1.1 rillig
1310 1.1 rillig if (sym != NULL) {
1311 1.98 rillig lint_assert(sym->s_kind == symtyp);
1312 1.1 rillig symtyp = FVFT;
1313 1.100 rillig free(sb);
1314 1.1 rillig return sym;
1315 1.1 rillig }
1316 1.1 rillig
1317 1.1 rillig /* create a new symbol table entry */
1318 1.1 rillig
1319 1.1 rillig /* labels must always be allocated at level 1 (outermost block) */
1320 1.164 rillig decl_level *dl;
1321 1.1 rillig if (symtyp == FLABEL) {
1322 1.101 rillig sym = level_zero_alloc(1, sizeof(*sym));
1323 1.143 rillig char *s = level_zero_alloc(1, sb->sb_len + 1);
1324 1.1 rillig (void)memcpy(s, sb->sb_name, sb->sb_len + 1);
1325 1.1 rillig sym->s_name = s;
1326 1.12 rillig sym->s_block_level = 1;
1327 1.164 rillig dl = dcs;
1328 1.164 rillig while (dl->d_enclosing != NULL &&
1329 1.164 rillig dl->d_enclosing->d_enclosing != NULL)
1330 1.164 rillig dl = dl->d_enclosing;
1331 1.164 rillig lint_assert(dl->d_kind == DLK_AUTO);
1332 1.1 rillig } else {
1333 1.101 rillig sym = block_zero_alloc(sizeof(*sym));
1334 1.1 rillig sym->s_name = sb->sb_name;
1335 1.12 rillig sym->s_block_level = block_level;
1336 1.164 rillig dl = dcs;
1337 1.1 rillig }
1338 1.1 rillig
1339 1.163 rillig sym->s_def_pos = unique_curr_pos();
1340 1.1 rillig if ((sym->s_kind = symtyp) != FLABEL)
1341 1.1 rillig sym->s_type = gettyp(INT);
1342 1.1 rillig
1343 1.1 rillig symtyp = FVFT;
1344 1.1 rillig
1345 1.133 rillig if (!in_gcc_attribute) {
1346 1.133 rillig symtab_add(sym);
1347 1.1 rillig
1348 1.164 rillig *dl->d_last_dlsym = sym;
1349 1.164 rillig dl->d_last_dlsym = &sym->s_level_next;
1350 1.133 rillig }
1351 1.1 rillig
1352 1.100 rillig free(sb);
1353 1.1 rillig return sym;
1354 1.1 rillig }
1355 1.1 rillig
1356 1.1 rillig /*
1357 1.146 rillig * Construct a temporary symbol. The symbol name starts with a digit to avoid
1358 1.146 rillig * name clashes with other identifiers.
1359 1.1 rillig */
1360 1.1 rillig sym_t *
1361 1.112 rillig mktempsym(type_t *tp)
1362 1.1 rillig {
1363 1.112 rillig static unsigned n = 0;
1364 1.119 rillig char *s = level_zero_alloc((size_t)block_level, 64);
1365 1.101 rillig sym_t *sym = block_zero_alloc(sizeof(*sym));
1366 1.28 rillig scl_t scl;
1367 1.1 rillig
1368 1.112 rillig (void)snprintf(s, 64, "%.8u_tmp", n++);
1369 1.1 rillig
1370 1.28 rillig scl = dcs->d_scl;
1371 1.28 rillig if (scl == NOSCL)
1372 1.28 rillig scl = block_level > 0 ? AUTO : EXTERN;
1373 1.28 rillig
1374 1.1 rillig sym->s_name = s;
1375 1.112 rillig sym->s_type = tp;
1376 1.12 rillig sym->s_block_level = block_level;
1377 1.28 rillig sym->s_scl = scl;
1378 1.1 rillig sym->s_kind = FVFT;
1379 1.1 rillig sym->s_used = true;
1380 1.1 rillig sym->s_set = true;
1381 1.1 rillig
1382 1.60 rillig symtab_add(sym);
1383 1.1 rillig
1384 1.162 rillig *dcs->d_last_dlsym = sym;
1385 1.162 rillig dcs->d_last_dlsym = &sym->s_level_next;
1386 1.1 rillig
1387 1.1 rillig return sym;
1388 1.1 rillig }
1389 1.1 rillig
1390 1.61 rillig /* Remove a symbol forever from the symbol table. */
1391 1.1 rillig void
1392 1.1 rillig rmsym(sym_t *sym)
1393 1.1 rillig {
1394 1.1 rillig
1395 1.98 rillig debug_step("rmsym '%s' %s '%s'",
1396 1.98 rillig sym->s_name, symt_name(sym->s_kind), type_name(sym->s_type));
1397 1.61 rillig symtab_remove(sym);
1398 1.61 rillig
1399 1.61 rillig /* avoid that the symbol will later be put back to the symbol table */
1400 1.12 rillig sym->s_block_level = -1;
1401 1.1 rillig }
1402 1.1 rillig
1403 1.1 rillig /*
1404 1.113 rillig * Remove all symbols from the symbol table that have the same level as the
1405 1.113 rillig * given symbol.
1406 1.1 rillig */
1407 1.1 rillig void
1408 1.165 rillig symtab_remove_level(sym_t *syms)
1409 1.1 rillig {
1410 1.1 rillig
1411 1.113 rillig /* Note the use of s_level_next instead of s_symtab_next. */
1412 1.165 rillig for (sym_t *sym = syms; sym != NULL; sym = sym->s_level_next) {
1413 1.12 rillig if (sym->s_block_level != -1) {
1414 1.165 rillig debug_step("symtab_remove_level '%s' %s '%s'",
1415 1.98 rillig sym->s_name, symt_name(sym->s_kind),
1416 1.59 rillig type_name(sym->s_type));
1417 1.61 rillig symtab_remove(sym);
1418 1.102 rillig sym->s_symtab_ref = NULL;
1419 1.1 rillig }
1420 1.1 rillig }
1421 1.1 rillig }
1422 1.1 rillig
1423 1.146 rillig /* Put a symbol into the symbol table. */
1424 1.1 rillig void
1425 1.113 rillig inssym(int level, sym_t *sym)
1426 1.1 rillig {
1427 1.1 rillig
1428 1.98 rillig debug_step("inssym '%s' %s '%s'",
1429 1.98 rillig sym->s_name, symt_name(sym->s_kind), type_name(sym->s_type));
1430 1.60 rillig symtab_add(sym);
1431 1.113 rillig sym->s_block_level = level;
1432 1.113 rillig
1433 1.113 rillig /*
1434 1.113 rillig * Placing the inner symbols to the beginning of the list ensures
1435 1.113 rillig * that these symbols are preferred over symbols from the outer
1436 1.113 rillig * blocks that happen to have the same name.
1437 1.113 rillig */
1438 1.146 rillig const sym_t *next = sym->s_symtab_next;
1439 1.146 rillig if (next != NULL)
1440 1.146 rillig lint_assert(sym->s_block_level >= next->s_block_level);
1441 1.1 rillig }
1442 1.1 rillig
1443 1.146 rillig /* Called at level 0 after syntax errors. */
1444 1.1 rillig void
1445 1.109 rillig clean_up_after_error(void)
1446 1.1 rillig {
1447 1.1 rillig
1448 1.104 rillig symtab_remove_locals();
1449 1.1 rillig
1450 1.143 rillig while (mem_block_level > 0)
1451 1.143 rillig level_free_all(mem_block_level--);
1452 1.1 rillig }
1453 1.1 rillig
1454 1.113 rillig /* Create a new symbol with the same name as an existing symbol. */
1455 1.1 rillig sym_t *
1456 1.21 rillig pushdown(const sym_t *sym)
1457 1.1 rillig {
1458 1.159 rillig sym_t *nsym;
1459 1.1 rillig
1460 1.98 rillig debug_step("pushdown '%s' %s '%s'",
1461 1.98 rillig sym->s_name, symt_name(sym->s_kind), type_name(sym->s_type));
1462 1.101 rillig nsym = block_zero_alloc(sizeof(*nsym));
1463 1.12 rillig lint_assert(sym->s_block_level <= block_level);
1464 1.1 rillig nsym->s_name = sym->s_name;
1465 1.163 rillig nsym->s_def_pos = unique_curr_pos();
1466 1.1 rillig nsym->s_kind = sym->s_kind;
1467 1.12 rillig nsym->s_block_level = block_level;
1468 1.1 rillig
1469 1.60 rillig symtab_add(nsym);
1470 1.1 rillig
1471 1.162 rillig *dcs->d_last_dlsym = nsym;
1472 1.162 rillig dcs->d_last_dlsym = &nsym->s_level_next;
1473 1.1 rillig
1474 1.1 rillig return nsym;
1475 1.1 rillig }
1476 1.1 rillig
1477 1.1 rillig /*
1478 1.1 rillig * Free any dynamically allocated memory referenced by
1479 1.1 rillig * the value stack or yylval.
1480 1.1 rillig * The type of information in yylval is described by tok.
1481 1.1 rillig */
1482 1.1 rillig void
1483 1.1 rillig freeyyv(void *sp, int tok)
1484 1.1 rillig {
1485 1.1 rillig if (tok == T_NAME || tok == T_TYPENAME) {
1486 1.1 rillig sbuf_t *sb = *(sbuf_t **)sp;
1487 1.100 rillig free(sb);
1488 1.1 rillig } else if (tok == T_CON) {
1489 1.1 rillig val_t *val = *(val_t **)sp;
1490 1.1 rillig free(val);
1491 1.1 rillig } else if (tok == T_STRING) {
1492 1.1 rillig strg_t *strg = *(strg_t **)sp;
1493 1.103 rillig free(strg->st_mem);
1494 1.1 rillig free(strg);
1495 1.1 rillig }
1496 1.1 rillig }
1497