lexi.c revision 1.82 1 1.82 rillig /* $NetBSD: lexi.c,v 1.82 2021/10/08 21:16:23 rillig Exp $ */
2 1.3 tls
3 1.16 kamil /*-
4 1.16 kamil * SPDX-License-Identifier: BSD-4-Clause
5 1.16 kamil *
6 1.16 kamil * Copyright (c) 1985 Sun Microsystems, Inc.
7 1.5 mrg * Copyright (c) 1980, 1993
8 1.5 mrg * The Regents of the University of California. All rights reserved.
9 1.1 cgd * All rights reserved.
10 1.1 cgd *
11 1.1 cgd * Redistribution and use in source and binary forms, with or without
12 1.1 cgd * modification, are permitted provided that the following conditions
13 1.1 cgd * are met:
14 1.1 cgd * 1. Redistributions of source code must retain the above copyright
15 1.1 cgd * notice, this list of conditions and the following disclaimer.
16 1.1 cgd * 2. Redistributions in binary form must reproduce the above copyright
17 1.1 cgd * notice, this list of conditions and the following disclaimer in the
18 1.1 cgd * documentation and/or other materials provided with the distribution.
19 1.1 cgd * 3. All advertising materials mentioning features or use of this software
20 1.1 cgd * must display the following acknowledgement:
21 1.1 cgd * This product includes software developed by the University of
22 1.1 cgd * California, Berkeley and its contributors.
23 1.1 cgd * 4. Neither the name of the University nor the names of its contributors
24 1.1 cgd * may be used to endorse or promote products derived from this software
25 1.1 cgd * without specific prior written permission.
26 1.1 cgd *
27 1.1 cgd * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
28 1.1 cgd * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
29 1.1 cgd * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
30 1.1 cgd * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
31 1.1 cgd * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
32 1.1 cgd * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
33 1.1 cgd * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
34 1.1 cgd * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
35 1.1 cgd * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
36 1.1 cgd * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
37 1.1 cgd * SUCH DAMAGE.
38 1.1 cgd */
39 1.1 cgd
40 1.16 kamil #if 0
41 1.16 kamil static char sccsid[] = "@(#)lexi.c 8.1 (Berkeley) 6/6/93";
42 1.16 kamil #endif
43 1.16 kamil
44 1.6 lukem #include <sys/cdefs.h>
45 1.16 kamil #if defined(__NetBSD__)
46 1.82 rillig __RCSID("$NetBSD: lexi.c,v 1.82 2021/10/08 21:16:23 rillig Exp $");
47 1.16 kamil #elif defined(__FreeBSD__)
48 1.16 kamil __FBSDID("$FreeBSD: head/usr.bin/indent/lexi.c 337862 2018-08-15 18:19:45Z pstef $");
49 1.16 kamil #endif
50 1.1 cgd
51 1.20 rillig #include <assert.h>
52 1.1 cgd #include <stdio.h>
53 1.1 cgd #include <ctype.h>
54 1.1 cgd #include <stdlib.h>
55 1.1 cgd #include <string.h>
56 1.16 kamil #include <sys/param.h>
57 1.16 kamil
58 1.16 kamil #include "indent.h"
59 1.1 cgd
60 1.60 rillig /* must be sorted alphabetically, is used in binary search */
61 1.62 rillig static const struct keyword {
62 1.62 rillig const char *name;
63 1.62 rillig enum keyword_kind kind;
64 1.62 rillig } keywords[] = {
65 1.62 rillig {"_Bool", kw_type},
66 1.62 rillig {"_Complex", kw_type},
67 1.62 rillig {"_Imaginary", kw_type},
68 1.62 rillig {"auto", kw_storage_class},
69 1.62 rillig {"bool", kw_type},
70 1.62 rillig {"break", kw_jump},
71 1.62 rillig {"case", kw_case_or_default},
72 1.62 rillig {"char", kw_type},
73 1.62 rillig {"complex", kw_type},
74 1.62 rillig {"const", kw_type},
75 1.62 rillig {"continue", kw_jump},
76 1.62 rillig {"default", kw_case_or_default},
77 1.62 rillig {"do", kw_do_or_else},
78 1.62 rillig {"double", kw_type},
79 1.62 rillig {"else", kw_do_or_else},
80 1.62 rillig {"enum", kw_struct_or_union_or_enum},
81 1.62 rillig {"extern", kw_storage_class},
82 1.62 rillig {"float", kw_type},
83 1.62 rillig {"for", kw_for_or_if_or_while},
84 1.62 rillig {"global", kw_type},
85 1.62 rillig {"goto", kw_jump},
86 1.62 rillig {"if", kw_for_or_if_or_while},
87 1.62 rillig {"imaginary", kw_type},
88 1.62 rillig {"inline", kw_inline_or_restrict},
89 1.62 rillig {"int", kw_type},
90 1.62 rillig {"long", kw_type},
91 1.62 rillig {"offsetof", kw_offsetof},
92 1.62 rillig {"register", kw_storage_class},
93 1.62 rillig {"restrict", kw_inline_or_restrict},
94 1.62 rillig {"return", kw_jump},
95 1.62 rillig {"short", kw_type},
96 1.62 rillig {"signed", kw_type},
97 1.62 rillig {"sizeof", kw_sizeof},
98 1.62 rillig {"static", kw_storage_class},
99 1.62 rillig {"struct", kw_struct_or_union_or_enum},
100 1.62 rillig {"switch", kw_switch},
101 1.62 rillig {"typedef", kw_typedef},
102 1.62 rillig {"union", kw_struct_or_union_or_enum},
103 1.62 rillig {"unsigned", kw_type},
104 1.62 rillig {"void", kw_type},
105 1.62 rillig {"volatile", kw_type},
106 1.62 rillig {"while", kw_for_or_if_or_while}
107 1.1 cgd };
108 1.1 cgd
109 1.64 rillig struct {
110 1.64 rillig const char **items;
111 1.64 rillig unsigned int len;
112 1.64 rillig unsigned int cap;
113 1.64 rillig } typenames;
114 1.16 kamil
115 1.16 kamil /*
116 1.16 kamil * The transition table below was rewritten by hand from lx's output, given
117 1.16 kamil * the following definitions. lx is Katherine Flavel's lexer generator.
118 1.16 kamil *
119 1.16 kamil * O = /[0-7]/; D = /[0-9]/; NZ = /[1-9]/;
120 1.16 kamil * H = /[a-f0-9]/i; B = /[0-1]/; HP = /0x/i;
121 1.16 kamil * BP = /0b/i; E = /e[+\-]?/i D+; P = /p[+\-]?/i D+;
122 1.16 kamil * FS = /[fl]/i; IS = /u/i /(l|L|ll|LL)/? | /(l|L|ll|LL)/ /u/i?;
123 1.16 kamil *
124 1.16 kamil * D+ E FS? -> $float;
125 1.16 kamil * D* "." D+ E? FS? -> $float;
126 1.16 kamil * D+ "." E? FS? -> $float; HP H+ IS? -> $int;
127 1.16 kamil * HP H+ P FS? -> $float; NZ D* IS? -> $int;
128 1.16 kamil * HP H* "." H+ P FS? -> $float; "0" O* IS? -> $int;
129 1.16 kamil * HP H+ "." P FS -> $float; BP B+ IS? -> $int;
130 1.16 kamil */
131 1.71 rillig /* INDENT OFF */
132 1.82 rillig static const unsigned char lex_number_state[][26] = {
133 1.16 kamil /* examples:
134 1.16 kamil 00
135 1.16 kamil s 0xx
136 1.16 kamil t 00xaa
137 1.16 kamil a 11 101100xxa..
138 1.16 kamil r 11ee0001101lbuuxx.a.pp
139 1.16 kamil t.01.e+008bLuxll0Ll.aa.p+0
140 1.16 kamil states: ABCDEFGHIJKLMNOPQRSTUVWXYZ */
141 1.56 rillig [0] = "uuiifuufiuuiiuiiiiiuiuuuuu",
142 1.56 rillig [1] = "CEIDEHHHIJQ U Q VUVVZZZ",
143 1.56 rillig [2] = "DEIDEHHHIJQ U Q VUVVZZZ",
144 1.56 rillig [3] = "DEIDEHHHIJ U VUVVZZZ",
145 1.56 rillig [4] = "DEJDEHHHJJ U VUVVZZZ",
146 1.56 rillig [5] = " U VUVV ",
147 1.56 rillig [6] = " K U VUVV ",
148 1.56 rillig [7] = " FFF FF U VUVV ",
149 1.56 rillig [8] = " f f U VUVV f",
150 1.56 rillig [9] = " LLf fL PR Li L f",
151 1.56 rillig [10] = " OOf fO S P O i O f",
152 1.56 rillig [11] = " FFX ",
153 1.56 rillig [12] = " MM M i iiM M ",
154 1.56 rillig [13] = " N ",
155 1.56 rillig [14] = " G Y ",
156 1.56 rillig [15] = "B EE EE T W ",
157 1.16 kamil /* ABCDEFGHIJKLMNOPQRSTUVWXYZ */
158 1.1 cgd };
159 1.71 rillig /* INDENT ON */
160 1.1 cgd
161 1.82 rillig static const uint8_t lex_number_row[] = {
162 1.56 rillig ['0'] = 1,
163 1.56 rillig ['1'] = 2,
164 1.56 rillig ['2'] = 3, ['3'] = 3, ['4'] = 3, ['5'] = 3, ['6'] = 3, ['7'] = 3,
165 1.56 rillig ['8'] = 4, ['9'] = 4,
166 1.56 rillig ['A'] = 5, ['a'] = 5, ['C'] = 5, ['c'] = 5, ['D'] = 5, ['d'] = 5,
167 1.56 rillig ['B'] = 6, ['b'] = 6,
168 1.56 rillig ['E'] = 7, ['e'] = 7,
169 1.56 rillig ['F'] = 8, ['f'] = 8,
170 1.56 rillig ['L'] = 9,
171 1.56 rillig ['l'] = 10,
172 1.56 rillig ['P'] = 11, ['p'] = 11,
173 1.56 rillig ['U'] = 12, ['u'] = 12,
174 1.56 rillig ['X'] = 13, ['x'] = 13,
175 1.56 rillig ['+'] = 14, ['-'] = 14,
176 1.56 rillig ['.'] = 15,
177 1.56 rillig };
178 1.36 rillig
179 1.32 rillig static char
180 1.32 rillig inbuf_peek(void)
181 1.32 rillig {
182 1.78 rillig return *inp.s;
183 1.32 rillig }
184 1.32 rillig
185 1.66 rillig void
186 1.32 rillig inbuf_skip(void)
187 1.32 rillig {
188 1.78 rillig inp.s++;
189 1.78 rillig if (inp.s >= inp.e)
190 1.81 rillig inbuf_read_line();
191 1.32 rillig }
192 1.32 rillig
193 1.66 rillig char
194 1.32 rillig inbuf_next(void)
195 1.32 rillig {
196 1.32 rillig char ch = inbuf_peek();
197 1.32 rillig inbuf_skip();
198 1.32 rillig return ch;
199 1.32 rillig }
200 1.32 rillig
201 1.25 rillig static void
202 1.25 rillig check_size_token(size_t desired_size)
203 1.25 rillig {
204 1.58 rillig if (token.e + desired_size >= token.l)
205 1.58 rillig buf_expand(&token, desired_size);
206 1.25 rillig }
207 1.25 rillig
208 1.16 kamil static int
209 1.62 rillig cmp_keyword_by_name(const void *key, const void *elem)
210 1.16 kamil {
211 1.62 rillig return strcmp(key, ((const struct keyword *)elem)->name);
212 1.27 rillig }
213 1.27 rillig
214 1.27 rillig static int
215 1.62 rillig cmp_type_by_name(const void *key, const void *elem)
216 1.27 rillig {
217 1.27 rillig return strcmp(key, *((const char *const *)elem));
218 1.16 kamil }
219 1.1 cgd
220 1.20 rillig #ifdef debug
221 1.20 rillig const char *
222 1.47 rillig token_type_name(token_type ttype)
223 1.20 rillig {
224 1.20 rillig static const char *const name[] = {
225 1.79 rillig "end_of_file", "newline", "lparen_or_lbracket", "rparen_or_rbracket",
226 1.79 rillig "unary_op", "binary_op", "postfix_op", "question",
227 1.79 rillig "case_label", "colon",
228 1.20 rillig "semicolon", "lbrace", "rbrace", "ident", "comma",
229 1.31 rillig "comment", "switch_expr", "preprocessing", "form_feed", "decl",
230 1.29 rillig "keyword_for_if_while", "keyword_do_else",
231 1.30 rillig "if_expr", "while_expr", "for_exprs",
232 1.30 rillig "stmt", "stmt_list", "keyword_else", "keyword_do", "do_stmt",
233 1.31 rillig "if_expr_stmt", "if_expr_stmt_else", "period", "string_prefix",
234 1.31 rillig "storage_class", "funcname", "type_def", "keyword_struct_union_enum"
235 1.20 rillig };
236 1.20 rillig
237 1.62 rillig assert(0 <= ttype && ttype < nitems(name));
238 1.20 rillig
239 1.47 rillig return name[ttype];
240 1.20 rillig }
241 1.20 rillig
242 1.20 rillig static void
243 1.72 rillig debug_print_buf(const char *name, const struct buffer *buf)
244 1.20 rillig {
245 1.72 rillig if (buf->s < buf->e) {
246 1.39 rillig debug_printf(" %s ", name);
247 1.72 rillig debug_vis_range("\"", buf->s, buf->e, "\"");
248 1.20 rillig }
249 1.20 rillig }
250 1.20 rillig
251 1.20 rillig static token_type
252 1.47 rillig lexi_end(token_type ttype)
253 1.20 rillig {
254 1.39 rillig debug_printf("in line %d, lexi returns '%s'",
255 1.47 rillig line_no, token_type_name(ttype));
256 1.72 rillig debug_print_buf("token", &token);
257 1.72 rillig debug_print_buf("label", &lab);
258 1.72 rillig debug_print_buf("code", &code);
259 1.72 rillig debug_print_buf("comment", &com);
260 1.39 rillig debug_printf("\n");
261 1.20 rillig
262 1.47 rillig return ttype;
263 1.20 rillig }
264 1.20 rillig #else
265 1.71 rillig #define lexi_end(tk) (tk)
266 1.20 rillig #endif
267 1.20 rillig
268 1.43 rillig static void
269 1.43 rillig lex_number(void)
270 1.43 rillig {
271 1.71 rillig for (uint8_t s = 'A'; s != 'f' && s != 'i' && s != 'u';) {
272 1.78 rillig uint8_t ch = (uint8_t)*inp.s;
273 1.82 rillig if (ch >= nitems(lex_number_row) || lex_number_row[ch] == 0)
274 1.56 rillig break;
275 1.75 rillig
276 1.82 rillig uint8_t row = lex_number_row[ch];
277 1.82 rillig if (lex_number_state[row][s - 'A'] == ' ') {
278 1.71 rillig /*-
279 1.82 rillig * lex_number_state[0][s - 'A'] now indicates the type:
280 1.74 rillig * f = floating, i = integer, u = unknown
281 1.56 rillig */
282 1.43 rillig break;
283 1.43 rillig }
284 1.75 rillig
285 1.82 rillig s = lex_number_state[row][s - 'A'];
286 1.43 rillig check_size_token(1);
287 1.50 rillig *token.e++ = inbuf_next();
288 1.43 rillig }
289 1.43 rillig }
290 1.43 rillig
291 1.43 rillig static void
292 1.43 rillig lex_word(void)
293 1.43 rillig {
294 1.78 rillig while (isalnum((unsigned char)*inp.s) ||
295 1.78 rillig *inp.s == '\\' ||
296 1.78 rillig *inp.s == '_' || *inp.s == '$') {
297 1.75 rillig
298 1.78 rillig if (*inp.s == '\\') {
299 1.78 rillig if (inp.s[1] == '\n') {
300 1.78 rillig inp.s += 2;
301 1.78 rillig if (inp.s >= inp.e)
302 1.81 rillig inbuf_read_line();
303 1.43 rillig } else
304 1.43 rillig break;
305 1.43 rillig }
306 1.75 rillig
307 1.43 rillig check_size_token(1);
308 1.50 rillig *token.e++ = inbuf_next();
309 1.43 rillig }
310 1.43 rillig }
311 1.43 rillig
312 1.43 rillig static void
313 1.43 rillig lex_char_or_string(void)
314 1.43 rillig {
315 1.52 rillig for (char delim = *token.s;;) {
316 1.78 rillig if (*inp.s == '\n') {
317 1.52 rillig diag(1, "Unterminated literal");
318 1.52 rillig return;
319 1.52 rillig }
320 1.75 rillig
321 1.52 rillig check_size_token(2);
322 1.52 rillig *token.e++ = inbuf_next();
323 1.52 rillig if (token.e[-1] == delim)
324 1.52 rillig return;
325 1.75 rillig
326 1.52 rillig if (token.e[-1] == '\\') {
327 1.78 rillig if (*inp.s == '\n')
328 1.52 rillig ++line_no;
329 1.52 rillig *token.e++ = inbuf_next();
330 1.52 rillig }
331 1.52 rillig }
332 1.43 rillig }
333 1.43 rillig
334 1.57 rillig /*
335 1.57 rillig * This hack attempts to guess whether the current token is in fact a
336 1.57 rillig * declaration keyword -- one that has been defined by typedef.
337 1.57 rillig */
338 1.57 rillig static bool
339 1.57 rillig probably_typedef(const struct parser_state *state)
340 1.57 rillig {
341 1.70 rillig if (state->p_l_follow != 0)
342 1.70 rillig return false;
343 1.70 rillig if (state->block_init || state->in_stmt)
344 1.70 rillig return false;
345 1.78 rillig if (inp.s[0] == '*' && inp.s[1] != '=')
346 1.70 rillig goto maybe;
347 1.78 rillig if (isalpha((unsigned char)*inp.s))
348 1.70 rillig goto maybe;
349 1.70 rillig return false;
350 1.70 rillig maybe:
351 1.70 rillig return state->last_token == semicolon ||
352 1.71 rillig state->last_token == lbrace ||
353 1.71 rillig state->last_token == rbrace;
354 1.57 rillig }
355 1.57 rillig
356 1.63 rillig static bool
357 1.63 rillig is_typename(void)
358 1.63 rillig {
359 1.63 rillig if (opt.auto_typedefs) {
360 1.63 rillig const char *u;
361 1.63 rillig if ((u = strrchr(token.s, '_')) != NULL && strcmp(u, "_t") == 0)
362 1.63 rillig return true;
363 1.63 rillig }
364 1.63 rillig
365 1.64 rillig if (typenames.len == 0)
366 1.63 rillig return false;
367 1.64 rillig return bsearch(token.s, typenames.items, (size_t)typenames.len,
368 1.64 rillig sizeof(typenames.items[0]), cmp_type_by_name) != NULL;
369 1.63 rillig }
370 1.63 rillig
371 1.47 rillig /* Reads the next token, placing it in the global variable "token". */
372 1.19 rillig token_type
373 1.16 kamil lexi(struct parser_state *state)
374 1.1 cgd {
375 1.59 rillig bool unary_delim; /* whether the current token forces a
376 1.59 rillig * following operator to be unary */
377 1.59 rillig token_type ttype;
378 1.16 kamil
379 1.50 rillig token.e = token.s; /* point to start of place to save token */
380 1.16 kamil unary_delim = false;
381 1.16 kamil state->col_1 = state->last_nl; /* tell world that this token started
382 1.16 kamil * in column 1 iff the last thing
383 1.16 kamil * scanned was a newline */
384 1.16 kamil state->last_nl = false;
385 1.16 kamil
386 1.78 rillig while (is_hspace(*inp.s)) {
387 1.68 rillig state->col_1 = false;
388 1.32 rillig inbuf_skip();
389 1.16 kamil }
390 1.6 lukem
391 1.16 kamil /* Scan an alphanumeric token */
392 1.78 rillig if (isalnum((unsigned char)*inp.s) ||
393 1.78 rillig *inp.s == '_' || *inp.s == '$' ||
394 1.78 rillig (inp.s[0] == '.' && isdigit((unsigned char)inp.s[1]))) {
395 1.62 rillig struct keyword *kw;
396 1.16 kamil
397 1.78 rillig if (isdigit((unsigned char)*inp.s) ||
398 1.78 rillig (inp.s[0] == '.' && isdigit((unsigned char)inp.s[1]))) {
399 1.43 rillig lex_number();
400 1.38 rillig } else {
401 1.43 rillig lex_word();
402 1.38 rillig }
403 1.50 rillig *token.e = '\0';
404 1.16 kamil
405 1.50 rillig if (token.s[0] == 'L' && token.s[1] == '\0' &&
406 1.78 rillig (*inp.s == '"' || *inp.s == '\''))
407 1.31 rillig return lexi_end(string_prefix);
408 1.1 cgd
409 1.68 rillig while (is_hspace(inbuf_peek()))
410 1.66 rillig inbuf_skip();
411 1.62 rillig state->keyword = kw_0;
412 1.60 rillig
413 1.31 rillig if (state->last_token == keyword_struct_union_enum &&
414 1.60 rillig state->p_l_follow == 0) {
415 1.16 kamil state->last_u_d = true;
416 1.20 rillig return lexi_end(decl);
417 1.16 kamil }
418 1.16 kamil /*
419 1.16 kamil * Operator after identifier is binary unless last token was 'struct'
420 1.16 kamil */
421 1.31 rillig state->last_u_d = (state->last_token == keyword_struct_union_enum);
422 1.16 kamil
423 1.62 rillig kw = bsearch(token.s, keywords, nitems(keywords),
424 1.62 rillig sizeof(keywords[0]), cmp_keyword_by_name);
425 1.62 rillig if (kw == NULL) {
426 1.63 rillig if (is_typename()) {
427 1.62 rillig state->keyword = kw_type;
428 1.16 kamil state->last_u_d = true;
429 1.59 rillig goto found_typename;
430 1.16 kamil }
431 1.75 rillig
432 1.59 rillig } else { /* we have a keyword */
433 1.62 rillig state->keyword = kw->kind;
434 1.16 kamil state->last_u_d = true;
435 1.75 rillig
436 1.62 rillig switch (kw->kind) {
437 1.62 rillig case kw_switch:
438 1.30 rillig return lexi_end(switch_expr);
439 1.75 rillig
440 1.62 rillig case kw_case_or_default:
441 1.30 rillig return lexi_end(case_label);
442 1.75 rillig
443 1.62 rillig case kw_struct_or_union_or_enum:
444 1.62 rillig case kw_type:
445 1.71 rillig found_typename:
446 1.54 rillig if (state->p_l_follow != 0) {
447 1.16 kamil /* inside parens: cast, param list, offsetof or sizeof */
448 1.16 kamil state->cast_mask |= (1 << state->p_l_follow) & ~state->not_cast_mask;
449 1.16 kamil }
450 1.16 kamil if (state->last_token == period || state->last_token == unary_op) {
451 1.62 rillig state->keyword = kw_0;
452 1.16 kamil break;
453 1.16 kamil }
454 1.62 rillig if (kw != NULL && kw->kind == kw_struct_or_union_or_enum)
455 1.31 rillig return lexi_end(keyword_struct_union_enum);
456 1.54 rillig if (state->p_l_follow != 0)
457 1.16 kamil break;
458 1.20 rillig return lexi_end(decl);
459 1.16 kamil
460 1.62 rillig case kw_for_or_if_or_while:
461 1.29 rillig return lexi_end(keyword_for_if_while);
462 1.16 kamil
463 1.62 rillig case kw_do_or_else:
464 1.29 rillig return lexi_end(keyword_do_else);
465 1.16 kamil
466 1.62 rillig case kw_storage_class:
467 1.31 rillig return lexi_end(storage_class);
468 1.16 kamil
469 1.62 rillig case kw_typedef:
470 1.20 rillig return lexi_end(type_def);
471 1.16 kamil
472 1.16 kamil default: /* all others are treated like any other
473 1.16 kamil * identifier */
474 1.20 rillig return lexi_end(ident);
475 1.16 kamil } /* end of switch */
476 1.16 kamil } /* end of if (found_it) */
477 1.75 rillig
478 1.78 rillig if (*inp.s == '(' && state->tos <= 1 && state->ind_level == 0 &&
479 1.54 rillig !state->in_parameter_declaration && !state->block_init) {
480 1.75 rillig
481 1.80 rillig for (const char *p = inp.s; p < inp.e;)
482 1.80 rillig if (*p++ == ')' && (*p == ';' || *p == ','))
483 1.16 kamil goto not_proc;
484 1.75 rillig
485 1.50 rillig strncpy(state->procname, token.s, sizeof state->procname - 1);
486 1.16 kamil if (state->in_decl)
487 1.54 rillig state->in_parameter_declaration = true;
488 1.20 rillig return lexi_end(funcname);
489 1.16 kamil not_proc:;
490 1.75 rillig
491 1.57 rillig } else if (probably_typedef(state)) {
492 1.62 rillig state->keyword = kw_type;
493 1.16 kamil state->last_u_d = true;
494 1.20 rillig return lexi_end(decl);
495 1.16 kamil }
496 1.75 rillig
497 1.16 kamil if (state->last_token == decl) /* if this is a declared variable,
498 1.6 lukem * then following sign is unary */
499 1.16 kamil state->last_u_d = true; /* will make "int a -1" work */
500 1.75 rillig
501 1.59 rillig return lexi_end(ident); /* the ident is not in the list */
502 1.74 rillig } /* end of processing for alphanum character */
503 1.16 kamil
504 1.16 kamil /* Scan a non-alphanumeric token */
505 1.16 kamil
506 1.28 rillig check_size_token(3); /* things like "<<=" */
507 1.50 rillig *token.e++ = inbuf_next(); /* if it is only a one-character token, it is
508 1.6 lukem * moved here */
509 1.50 rillig *token.e = '\0';
510 1.16 kamil
511 1.50 rillig switch (*token.s) {
512 1.16 kamil case '\n':
513 1.16 kamil unary_delim = state->last_u_d;
514 1.16 kamil state->last_nl = true; /* remember that we just had a newline */
515 1.47 rillig /* if data has been exhausted, the newline is a dummy. */
516 1.47 rillig ttype = had_eof ? end_of_file : newline;
517 1.16 kamil break;
518 1.16 kamil
519 1.43 rillig case '\'':
520 1.43 rillig case '"':
521 1.44 rillig lex_char_or_string();
522 1.47 rillig ttype = ident;
523 1.16 kamil break;
524 1.6 lukem
525 1.40 rillig case '(':
526 1.40 rillig case '[':
527 1.16 kamil unary_delim = true;
528 1.79 rillig ttype = lparen_or_lbracket;
529 1.16 kamil break;
530 1.16 kamil
531 1.40 rillig case ')':
532 1.40 rillig case ']':
533 1.79 rillig ttype = rparen_or_rbracket;
534 1.16 kamil break;
535 1.16 kamil
536 1.16 kamil case '#':
537 1.16 kamil unary_delim = state->last_u_d;
538 1.47 rillig ttype = preprocessing;
539 1.16 kamil break;
540 1.16 kamil
541 1.16 kamil case '?':
542 1.16 kamil unary_delim = true;
543 1.47 rillig ttype = question;
544 1.16 kamil break;
545 1.16 kamil
546 1.40 rillig case ':':
547 1.47 rillig ttype = colon;
548 1.16 kamil unary_delim = true;
549 1.16 kamil break;
550 1.16 kamil
551 1.40 rillig case ';':
552 1.16 kamil unary_delim = true;
553 1.47 rillig ttype = semicolon;
554 1.16 kamil break;
555 1.16 kamil
556 1.40 rillig case '{':
557 1.16 kamil unary_delim = true;
558 1.47 rillig ttype = lbrace;
559 1.16 kamil break;
560 1.16 kamil
561 1.40 rillig case '}':
562 1.16 kamil unary_delim = true;
563 1.47 rillig ttype = rbrace;
564 1.16 kamil break;
565 1.16 kamil
566 1.69 rillig case '\f':
567 1.16 kamil unary_delim = state->last_u_d;
568 1.74 rillig state->last_nl = true; /* remember this, so we can set 'state->col_1'
569 1.16 kamil * right */
570 1.47 rillig ttype = form_feed;
571 1.16 kamil break;
572 1.16 kamil
573 1.40 rillig case ',':
574 1.16 kamil unary_delim = true;
575 1.47 rillig ttype = comma;
576 1.16 kamil break;
577 1.16 kamil
578 1.16 kamil case '.':
579 1.16 kamil unary_delim = false;
580 1.47 rillig ttype = period;
581 1.16 kamil break;
582 1.1 cgd
583 1.16 kamil case '-':
584 1.16 kamil case '+': /* check for -, +, --, ++ */
585 1.47 rillig ttype = state->last_u_d ? unary_op : binary_op;
586 1.16 kamil unary_delim = true;
587 1.16 kamil
588 1.78 rillig if (*inp.s == token.s[0]) {
589 1.16 kamil /* check for doubled character */
590 1.78 rillig *token.e++ = *inp.s++;
591 1.16 kamil /* buffer overflow will be checked at end of loop */
592 1.79 rillig if (state->last_token == ident ||
593 1.79 rillig state->last_token == rparen_or_rbracket) {
594 1.47 rillig ttype = state->last_u_d ? unary_op : postfix_op;
595 1.16 kamil /* check for following ++ or -- */
596 1.1 cgd unary_delim = false;
597 1.16 kamil }
598 1.75 rillig
599 1.78 rillig } else if (*inp.s == '=') {
600 1.16 kamil /* check for operator += */
601 1.78 rillig *token.e++ = *inp.s++;
602 1.75 rillig
603 1.78 rillig } else if (*inp.s == '>') {
604 1.16 kamil /* check for operator -> */
605 1.78 rillig *token.e++ = *inp.s++;
606 1.16 kamil unary_delim = false;
607 1.47 rillig ttype = unary_op;
608 1.16 kamil state->want_blank = false;
609 1.16 kamil }
610 1.16 kamil break; /* buffer overflow will be checked at end of
611 1.16 kamil * switch */
612 1.16 kamil
613 1.16 kamil case '=':
614 1.16 kamil if (state->in_or_st)
615 1.54 rillig state->block_init = true;
616 1.78 rillig if (*inp.s == '=') { /* == */
617 1.78 rillig *token.e++ = *inp.s++;
618 1.67 rillig *token.e = '\0';
619 1.16 kamil }
620 1.47 rillig ttype = binary_op;
621 1.16 kamil unary_delim = true;
622 1.16 kamil break;
623 1.16 kamil
624 1.16 kamil case '>':
625 1.16 kamil case '<':
626 1.16 kamil case '!': /* ops like <, <<, <=, !=, etc */
627 1.78 rillig if (*inp.s == '>' || *inp.s == '<' || *inp.s == '=')
628 1.50 rillig *token.e++ = inbuf_next();
629 1.78 rillig if (*inp.s == '=')
630 1.78 rillig *token.e++ = *inp.s++;
631 1.47 rillig ttype = state->last_u_d ? unary_op : binary_op;
632 1.16 kamil unary_delim = true;
633 1.16 kamil break;
634 1.16 kamil
635 1.16 kamil case '*':
636 1.16 kamil unary_delim = true;
637 1.16 kamil if (!state->last_u_d) {
638 1.78 rillig if (*inp.s == '=')
639 1.78 rillig *token.e++ = *inp.s++;
640 1.47 rillig ttype = binary_op;
641 1.16 kamil break;
642 1.16 kamil }
643 1.75 rillig
644 1.78 rillig while (*inp.s == '*' || isspace((unsigned char)*inp.s)) {
645 1.78 rillig if (*inp.s == '*') {
646 1.25 rillig check_size_token(1);
647 1.78 rillig *token.e++ = *inp.s;
648 1.16 kamil }
649 1.32 rillig inbuf_skip();
650 1.16 kamil }
651 1.75 rillig
652 1.16 kamil if (ps.in_decl) {
653 1.78 rillig char *tp = inp.s;
654 1.6 lukem
655 1.16 kamil while (isalpha((unsigned char)*tp) ||
656 1.16 kamil isspace((unsigned char)*tp)) {
657 1.78 rillig if (++tp >= inp.e)
658 1.81 rillig inbuf_read_line();
659 1.16 kamil }
660 1.16 kamil if (*tp == '(')
661 1.16 kamil ps.procname[0] = ' ';
662 1.16 kamil }
663 1.75 rillig
664 1.47 rillig ttype = unary_op;
665 1.16 kamil break;
666 1.1 cgd
667 1.16 kamil default:
668 1.78 rillig if (token.s[0] == '/' && (*inp.s == '*' || *inp.s == '/')) {
669 1.16 kamil /* it is start of comment */
670 1.50 rillig *token.e++ = inbuf_next();
671 1.1 cgd
672 1.47 rillig ttype = comment;
673 1.16 kamil unary_delim = state->last_u_d;
674 1.16 kamil break;
675 1.1 cgd }
676 1.75 rillig
677 1.78 rillig while (token.e[-1] == *inp.s || *inp.s == '=') {
678 1.16 kamil /*
679 1.16 kamil * handle ||, &&, etc, and also things as in int *****i
680 1.16 kamil */
681 1.25 rillig check_size_token(1);
682 1.50 rillig *token.e++ = inbuf_next();
683 1.16 kamil }
684 1.75 rillig
685 1.47 rillig ttype = state->last_u_d ? unary_op : binary_op;
686 1.16 kamil unary_delim = true;
687 1.47 rillig }
688 1.16 kamil
689 1.78 rillig if (inp.s >= inp.e) /* check for input buffer empty */
690 1.81 rillig inbuf_read_line();
691 1.75 rillig
692 1.16 kamil state->last_u_d = unary_delim;
693 1.75 rillig
694 1.25 rillig check_size_token(1);
695 1.50 rillig *token.e = '\0';
696 1.75 rillig
697 1.47 rillig return lexi_end(ttype);
698 1.1 cgd }
699 1.16 kamil
700 1.64 rillig static int
701 1.71 rillig insert_pos(const char *key, const char **arr, unsigned int len)
702 1.71 rillig {
703 1.64 rillig int lo = 0;
704 1.64 rillig int hi = (int)len - 1;
705 1.64 rillig
706 1.64 rillig while (lo <= hi) {
707 1.65 rillig int mid = (int)((unsigned)(lo + hi) >> 1);
708 1.64 rillig int cmp = strcmp(arr[mid], key);
709 1.64 rillig if (cmp < 0)
710 1.64 rillig lo = mid + 1;
711 1.64 rillig else if (cmp > 0)
712 1.64 rillig hi = mid - 1;
713 1.64 rillig else
714 1.64 rillig return mid;
715 1.64 rillig }
716 1.64 rillig return -(lo + 1);
717 1.16 kamil }
718 1.16 kamil
719 1.6 lukem void
720 1.64 rillig add_typename(const char *name)
721 1.1 cgd {
722 1.64 rillig if (typenames.len >= typenames.cap) {
723 1.64 rillig typenames.cap = 16 + 2 * typenames.cap;
724 1.64 rillig typenames.items = xrealloc(typenames.items,
725 1.64 rillig sizeof(typenames.items[0]) * typenames.cap);
726 1.64 rillig }
727 1.16 kamil
728 1.64 rillig int pos = insert_pos(name, typenames.items, typenames.len);
729 1.64 rillig if (pos >= 0)
730 1.64 rillig return; /* already in the list */
731 1.75 rillig
732 1.64 rillig pos = -(pos + 1);
733 1.64 rillig memmove(typenames.items + pos + 1, typenames.items + pos,
734 1.73 rillig sizeof(typenames.items[0]) * (typenames.len++ - (unsigned)pos));
735 1.64 rillig typenames.items[pos] = xstrdup(name);
736 1.1 cgd }
737