parser.c revision 1.159 1 1.159 kre /* $NetBSD: parser.c,v 1.159 2018/12/11 13:31:20 kre Exp $ */
2 1.24 cgd
3 1.1 cgd /*-
4 1.11 jtc * Copyright (c) 1991, 1993
5 1.11 jtc * The Regents of the University of California. All rights reserved.
6 1.1 cgd *
7 1.1 cgd * This code is derived from software contributed to Berkeley by
8 1.1 cgd * Kenneth Almquist.
9 1.1 cgd *
10 1.1 cgd * Redistribution and use in source and binary forms, with or without
11 1.1 cgd * modification, are permitted provided that the following conditions
12 1.1 cgd * are met:
13 1.1 cgd * 1. Redistributions of source code must retain the above copyright
14 1.1 cgd * notice, this list of conditions and the following disclaimer.
15 1.1 cgd * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 cgd * notice, this list of conditions and the following disclaimer in the
17 1.1 cgd * documentation and/or other materials provided with the distribution.
18 1.55 agc * 3. Neither the name of the University nor the names of its contributors
19 1.1 cgd * may be used to endorse or promote products derived from this software
20 1.1 cgd * without specific prior written permission.
21 1.1 cgd *
22 1.1 cgd * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
23 1.1 cgd * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
24 1.1 cgd * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
25 1.1 cgd * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
26 1.1 cgd * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
27 1.1 cgd * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
28 1.1 cgd * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
29 1.1 cgd * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
30 1.1 cgd * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
31 1.1 cgd * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
32 1.1 cgd * SUCH DAMAGE.
33 1.1 cgd */
34 1.1 cgd
35 1.36 christos #include <sys/cdefs.h>
36 1.1 cgd #ifndef lint
37 1.24 cgd #if 0
38 1.26 christos static char sccsid[] = "@(#)parser.c 8.7 (Berkeley) 5/16/95";
39 1.24 cgd #else
40 1.159 kre __RCSID("$NetBSD: parser.c,v 1.159 2018/12/11 13:31:20 kre Exp $");
41 1.24 cgd #endif
42 1.1 cgd #endif /* not lint */
43 1.1 cgd
44 1.85 christos #include <stdio.h>
45 1.25 christos #include <stdlib.h>
46 1.82 christos #include <limits.h>
47 1.25 christos
48 1.1 cgd #include "shell.h"
49 1.1 cgd #include "parser.h"
50 1.1 cgd #include "nodes.h"
51 1.1 cgd #include "expand.h" /* defines rmescapes() */
52 1.46 christos #include "eval.h" /* defines commandname */
53 1.1 cgd #include "syntax.h"
54 1.1 cgd #include "options.h"
55 1.1 cgd #include "input.h"
56 1.1 cgd #include "output.h"
57 1.1 cgd #include "var.h"
58 1.1 cgd #include "error.h"
59 1.1 cgd #include "memalloc.h"
60 1.1 cgd #include "mystring.h"
61 1.11 jtc #include "alias.h"
62 1.25 christos #include "show.h"
63 1.35 christos #ifndef SMALL
64 1.11 jtc #include "myhistedit.h"
65 1.14 cgd #endif
66 1.1 cgd
67 1.1 cgd /*
68 1.1 cgd * Shell command parser.
69 1.1 cgd */
70 1.1 cgd
71 1.1 cgd /* values returned by readtoken */
72 1.30 christos #include "token.h"
73 1.1 cgd
74 1.51 christos #define OPENBRACE '{'
75 1.51 christos #define CLOSEBRACE '}'
76 1.1 cgd
77 1.140 kre struct HereDoc {
78 1.140 kre struct HereDoc *next; /* next here document in list */
79 1.1 cgd union node *here; /* redirection node */
80 1.1 cgd char *eofmark; /* string indicating end of input */
81 1.1 cgd int striptabs; /* if set, strip leading tabs */
82 1.116 christos int startline; /* line number where << seen */
83 1.1 cgd };
84 1.1 cgd
85 1.140 kre MKINIT struct parse_state parse_state;
86 1.140 kre union parse_state_p psp = { .c_current_parser = &parse_state };
87 1.1 cgd
88 1.140 kre static const struct parse_state init_parse_state = { /* all 0's ... */
89 1.140 kre .ps_heredoclist = NULL,
90 1.140 kre .ps_parsebackquote = 0,
91 1.140 kre .ps_doprompt = 0,
92 1.140 kre .ps_needprompt = 0,
93 1.140 kre .ps_lasttoken = 0,
94 1.140 kre .ps_tokpushback = 0,
95 1.140 kre .ps_wordtext = NULL,
96 1.140 kre .ps_checkkwd = 0,
97 1.140 kre .ps_redirnode = NULL,
98 1.140 kre .ps_heredoc = NULL,
99 1.140 kre .ps_quoteflag = 0,
100 1.140 kre .ps_startlinno = 0,
101 1.140 kre .ps_funclinno = 0,
102 1.140 kre .ps_elided_nl = 0,
103 1.140 kre };
104 1.1 cgd
105 1.142 kre STATIC union node *list(int);
106 1.54 christos STATIC union node *andor(void);
107 1.54 christos STATIC union node *pipeline(void);
108 1.54 christos STATIC union node *command(void);
109 1.54 christos STATIC union node *simplecmd(union node **, union node *);
110 1.155 kre STATIC union node *makeword(int);
111 1.54 christos STATIC void parsefname(void);
112 1.134 kre STATIC int slurp_heredoc(char *const, const int, const int);
113 1.111 christos STATIC void readheredocs(void);
114 1.54 christos STATIC int peektoken(void);
115 1.54 christos STATIC int readtoken(void);
116 1.54 christos STATIC int xxreadtoken(void);
117 1.111 christos STATIC int readtoken1(int, char const *, int);
118 1.54 christos STATIC int noexpand(char *);
119 1.142 kre STATIC void linebreak(void);
120 1.142 kre STATIC void consumetoken(int);
121 1.108 christos STATIC void synexpect(int, const char *) __dead;
122 1.66 perry STATIC void synerror(const char *) __dead;
123 1.54 christos STATIC void setprompt(int);
124 1.121 kre STATIC int pgetc_linecont(void);
125 1.1 cgd
126 1.102 christos static const char EOFhere[] = "EOF reading here (<<) document";
127 1.102 christos
128 1.134 kre #ifdef DEBUG
129 1.134 kre int parsing = 0;
130 1.134 kre #endif
131 1.108 christos
132 1.1 cgd /*
133 1.1 cgd * Read and parse a command. Returns NEOF on end of file. (NULL is a
134 1.1 cgd * valid parse tree indicating a blank line.)
135 1.1 cgd */
136 1.1 cgd
137 1.1 cgd union node *
138 1.45 cgd parsecmd(int interact)
139 1.22 cgd {
140 1.1 cgd int t;
141 1.116 christos union node *n;
142 1.1 cgd
143 1.134 kre #ifdef DEBUG
144 1.134 kre parsing++;
145 1.134 kre #endif
146 1.47 christos tokpushback = 0;
147 1.142 kre checkkwd = 0;
148 1.1 cgd doprompt = interact;
149 1.1 cgd if (doprompt)
150 1.11 jtc setprompt(1);
151 1.11 jtc else
152 1.11 jtc setprompt(0);
153 1.1 cgd needprompt = 0;
154 1.11 jtc t = readtoken();
155 1.134 kre #ifdef DEBUG
156 1.134 kre parsing--;
157 1.134 kre #endif
158 1.11 jtc if (t == TEOF)
159 1.1 cgd return NEOF;
160 1.1 cgd if (t == TNL)
161 1.1 cgd return NULL;
162 1.134 kre
163 1.134 kre #ifdef DEBUG
164 1.134 kre parsing++;
165 1.134 kre #endif
166 1.1 cgd tokpushback++;
167 1.142 kre n = list(1);
168 1.134 kre #ifdef DEBUG
169 1.134 kre parsing--;
170 1.134 kre #endif
171 1.116 christos if (heredoclist)
172 1.116 christos error("%d: Here document (<<%s) expected but not present",
173 1.116 christos heredoclist->startline, heredoclist->eofmark);
174 1.116 christos return n;
175 1.1 cgd }
176 1.1 cgd
177 1.1 cgd
178 1.1 cgd STATIC union node *
179 1.142 kre list(int nlflag)
180 1.22 cgd {
181 1.150 kre union node *ntop, *n1, *n2, *n3;
182 1.12 jtc int tok;
183 1.126 kre
184 1.142 kre CTRACE(DBG_PARSE, ("list(%d): entered @%d\n",nlflag,plinno));
185 1.1 cgd
186 1.156 kre checkkwd = CHKNL | CHKKWD | CHKALIAS;
187 1.1 cgd if (nlflag == 0 && tokendlist[peektoken()])
188 1.1 cgd return NULL;
189 1.150 kre ntop = n1 = NULL;
190 1.1 cgd for (;;) {
191 1.12 jtc n2 = andor();
192 1.12 jtc tok = readtoken();
193 1.12 jtc if (tok == TBACKGND) {
194 1.142 kre if (n2->type == NCMD || n2->type == NPIPE)
195 1.12 jtc n2->ncmd.backgnd = 1;
196 1.142 kre else if (n2->type == NREDIR)
197 1.12 jtc n2->type = NBACKGND;
198 1.142 kre else {
199 1.101 christos n3 = stalloc(sizeof(struct nredir));
200 1.1 cgd n3->type = NBACKGND;
201 1.12 jtc n3->nredir.n = n2;
202 1.1 cgd n3->nredir.redirect = NULL;
203 1.12 jtc n2 = n3;
204 1.1 cgd }
205 1.12 jtc }
206 1.142 kre
207 1.150 kre if (ntop == NULL)
208 1.150 kre ntop = n2;
209 1.150 kre else if (n1 == NULL) {
210 1.150 kre n1 = stalloc(sizeof(struct nbinary));
211 1.150 kre n1->type = NSEMI;
212 1.150 kre n1->nbinary.ch1 = ntop;
213 1.150 kre n1->nbinary.ch2 = n2;
214 1.150 kre ntop = n1;
215 1.150 kre } else {
216 1.101 christos n3 = stalloc(sizeof(struct nbinary));
217 1.12 jtc n3->type = NSEMI;
218 1.150 kre n3->nbinary.ch1 = n1->nbinary.ch2;
219 1.12 jtc n3->nbinary.ch2 = n2;
220 1.150 kre n1->nbinary.ch2 = n3;
221 1.12 jtc n1 = n3;
222 1.150 kre }
223 1.142 kre
224 1.12 jtc switch (tok) {
225 1.12 jtc case TBACKGND:
226 1.12 jtc case TSEMI:
227 1.12 jtc tok = readtoken();
228 1.108 christos /* FALLTHROUGH */
229 1.1 cgd case TNL:
230 1.12 jtc if (tok == TNL) {
231 1.111 christos readheredocs();
232 1.1 cgd if (nlflag)
233 1.150 kre return ntop;
234 1.142 kre } else if (tok == TEOF && nlflag)
235 1.150 kre return ntop;
236 1.142 kre else
237 1.1 cgd tokpushback++;
238 1.142 kre
239 1.156 kre checkkwd = CHKNL | CHKKWD | CHKALIAS;
240 1.142 kre if (!nlflag && tokendlist[peektoken()])
241 1.150 kre return ntop;
242 1.1 cgd break;
243 1.1 cgd case TEOF:
244 1.116 christos pungetc(); /* push back EOF on input */
245 1.150 kre return ntop;
246 1.1 cgd default:
247 1.142 kre if (nlflag)
248 1.108 christos synexpect(-1, 0);
249 1.1 cgd tokpushback++;
250 1.150 kre return ntop;
251 1.1 cgd }
252 1.1 cgd }
253 1.1 cgd }
254 1.1 cgd
255 1.1 cgd STATIC union node *
256 1.54 christos andor(void)
257 1.54 christos {
258 1.1 cgd union node *n1, *n2, *n3;
259 1.1 cgd int t;
260 1.1 cgd
261 1.130 kre CTRACE(DBG_PARSE, ("andor: entered @%d\n", plinno));
262 1.126 kre
263 1.1 cgd n1 = pipeline();
264 1.1 cgd for (;;) {
265 1.1 cgd if ((t = readtoken()) == TAND) {
266 1.1 cgd t = NAND;
267 1.1 cgd } else if (t == TOR) {
268 1.1 cgd t = NOR;
269 1.1 cgd } else {
270 1.1 cgd tokpushback++;
271 1.1 cgd return n1;
272 1.1 cgd }
273 1.1 cgd n2 = pipeline();
274 1.101 christos n3 = stalloc(sizeof(struct nbinary));
275 1.1 cgd n3->type = t;
276 1.1 cgd n3->nbinary.ch1 = n1;
277 1.1 cgd n3->nbinary.ch2 = n2;
278 1.1 cgd n1 = n3;
279 1.1 cgd }
280 1.1 cgd }
281 1.1 cgd
282 1.1 cgd STATIC union node *
283 1.54 christos pipeline(void)
284 1.54 christos {
285 1.44 christos union node *n1, *n2, *pipenode;
286 1.1 cgd struct nodelist *lp, *prev;
287 1.44 christos int negate;
288 1.1 cgd
289 1.130 kre CTRACE(DBG_PARSE, ("pipeline: entered @%d\n", plinno));
290 1.65 dsl
291 1.44 christos negate = 0;
292 1.156 kre checkkwd = CHKNL | CHKKWD | CHKALIAS;
293 1.65 dsl while (readtoken() == TNOT) {
294 1.130 kre CTRACE(DBG_PARSE, ("pipeline: TNOT recognized\n"));
295 1.129 kre #ifndef BOGUS_NOT_COMMAND
296 1.129 kre if (posix && negate)
297 1.129 kre synerror("2nd \"!\" unexpected");
298 1.129 kre #endif
299 1.125 kre negate++;
300 1.65 dsl }
301 1.44 christos tokpushback++;
302 1.1 cgd n1 = command();
303 1.1 cgd if (readtoken() == TPIPE) {
304 1.101 christos pipenode = stalloc(sizeof(struct npipe));
305 1.1 cgd pipenode->type = NPIPE;
306 1.1 cgd pipenode->npipe.backgnd = 0;
307 1.101 christos lp = stalloc(sizeof(struct nodelist));
308 1.1 cgd pipenode->npipe.cmdlist = lp;
309 1.1 cgd lp->n = n1;
310 1.1 cgd do {
311 1.1 cgd prev = lp;
312 1.101 christos lp = stalloc(sizeof(struct nodelist));
313 1.1 cgd lp->n = command();
314 1.1 cgd prev->next = lp;
315 1.1 cgd } while (readtoken() == TPIPE);
316 1.1 cgd lp->next = NULL;
317 1.1 cgd n1 = pipenode;
318 1.1 cgd }
319 1.1 cgd tokpushback++;
320 1.44 christos if (negate) {
321 1.130 kre CTRACE(DBG_PARSE, ("%snegate pipeline\n",
322 1.130 kre (negate&1) ? "" : "double "));
323 1.101 christos n2 = stalloc(sizeof(struct nnot));
324 1.125 kre n2->type = (negate & 1) ? NNOT : NDNOT;
325 1.44 christos n2->nnot.com = n1;
326 1.44 christos return n2;
327 1.44 christos } else
328 1.44 christos return n1;
329 1.1 cgd }
330 1.1 cgd
331 1.1 cgd
332 1.1 cgd
333 1.1 cgd STATIC union node *
334 1.54 christos command(void)
335 1.54 christos {
336 1.1 cgd union node *n1, *n2;
337 1.1 cgd union node *ap, **app;
338 1.1 cgd union node *cp, **cpp;
339 1.1 cgd union node *redir, **rpp;
340 1.129 kre int t;
341 1.129 kre #ifdef BOGUS_NOT_COMMAND
342 1.129 kre int negate = 0;
343 1.129 kre #endif
344 1.1 cgd
345 1.130 kre CTRACE(DBG_PARSE, ("command: entered @%d\n", plinno));
346 1.65 dsl
347 1.156 kre checkkwd = CHKNL | CHKKWD | CHKALIAS;
348 1.25 christos redir = NULL;
349 1.25 christos n1 = NULL;
350 1.5 sef rpp = &redir;
351 1.31 christos
352 1.5 sef /* Check for redirection which may precede command */
353 1.5 sef while (readtoken() == TREDIR) {
354 1.5 sef *rpp = n2 = redirnode;
355 1.5 sef rpp = &n2->nfile.next;
356 1.5 sef parsefname();
357 1.5 sef }
358 1.5 sef tokpushback++;
359 1.5 sef
360 1.129 kre #ifdef BOGUS_NOT_COMMAND /* only in pileline() */
361 1.31 christos while (readtoken() == TNOT) {
362 1.130 kre CTRACE(DBG_PARSE, ("command: TNOT (bogus) recognized\n"));
363 1.125 kre negate++;
364 1.31 christos }
365 1.31 christos tokpushback++;
366 1.129 kre #endif
367 1.31 christos
368 1.1 cgd switch (readtoken()) {
369 1.1 cgd case TIF:
370 1.101 christos n1 = stalloc(sizeof(struct nif));
371 1.1 cgd n1->type = NIF;
372 1.142 kre n1->nif.test = list(0);
373 1.142 kre consumetoken(TTHEN);
374 1.142 kre n1->nif.ifpart = list(0);
375 1.1 cgd n2 = n1;
376 1.1 cgd while (readtoken() == TELIF) {
377 1.101 christos n2->nif.elsepart = stalloc(sizeof(struct nif));
378 1.1 cgd n2 = n2->nif.elsepart;
379 1.1 cgd n2->type = NIF;
380 1.142 kre n2->nif.test = list(0);
381 1.142 kre consumetoken(TTHEN);
382 1.142 kre n2->nif.ifpart = list(0);
383 1.1 cgd }
384 1.1 cgd if (lasttoken == TELSE)
385 1.142 kre n2->nif.elsepart = list(0);
386 1.1 cgd else {
387 1.1 cgd n2->nif.elsepart = NULL;
388 1.1 cgd tokpushback++;
389 1.1 cgd }
390 1.142 kre consumetoken(TFI);
391 1.156 kre checkkwd = CHKKWD | CHKALIAS;
392 1.1 cgd break;
393 1.1 cgd case TWHILE:
394 1.142 kre case TUNTIL:
395 1.101 christos n1 = stalloc(sizeof(struct nbinary));
396 1.1 cgd n1->type = (lasttoken == TWHILE)? NWHILE : NUNTIL;
397 1.142 kre n1->nbinary.ch1 = list(0);
398 1.142 kre consumetoken(TDO);
399 1.142 kre n1->nbinary.ch2 = list(0);
400 1.142 kre consumetoken(TDONE);
401 1.156 kre checkkwd = CHKKWD | CHKALIAS;
402 1.1 cgd break;
403 1.1 cgd case TFOR:
404 1.1 cgd if (readtoken() != TWORD || quoteflag || ! goodname(wordtext))
405 1.1 cgd synerror("Bad for loop variable");
406 1.101 christos n1 = stalloc(sizeof(struct nfor));
407 1.1 cgd n1->type = NFOR;
408 1.1 cgd n1->nfor.var = wordtext;
409 1.142 kre linebreak();
410 1.142 kre if (lasttoken==TWORD && !quoteflag && equal(wordtext,"in")) {
411 1.1 cgd app = ≈
412 1.1 cgd while (readtoken() == TWORD) {
413 1.155 kre n2 = makeword(startlinno);
414 1.1 cgd *app = n2;
415 1.1 cgd app = &n2->narg.next;
416 1.1 cgd }
417 1.1 cgd *app = NULL;
418 1.1 cgd n1->nfor.args = ap;
419 1.5 sef if (lasttoken != TNL && lasttoken != TSEMI)
420 1.142 kre synexpect(TSEMI, 0);
421 1.1 cgd } else {
422 1.95 christos static char argvars[5] = {
423 1.95 christos CTLVAR, VSNORMAL|VSQUOTE, '@', '=', '\0'
424 1.95 christos };
425 1.126 kre
426 1.101 christos n2 = stalloc(sizeof(struct narg));
427 1.1 cgd n2->type = NARG;
428 1.43 christos n2->narg.text = argvars;
429 1.1 cgd n2->narg.backquote = NULL;
430 1.1 cgd n2->narg.next = NULL;
431 1.135 kre n2->narg.lineno = startlinno;
432 1.1 cgd n1->nfor.args = n2;
433 1.11 jtc /*
434 1.11 jtc * Newline or semicolon here is optional (but note
435 1.11 jtc * that the original Bourne shell only allowed NL).
436 1.11 jtc */
437 1.11 jtc if (lasttoken != TNL && lasttoken != TSEMI)
438 1.11 jtc tokpushback++;
439 1.1 cgd }
440 1.156 kre checkkwd = CHKNL | CHKKWD | CHKALIAS;
441 1.1 cgd if ((t = readtoken()) == TDO)
442 1.1 cgd t = TDONE;
443 1.1 cgd else if (t == TBEGIN)
444 1.1 cgd t = TEND;
445 1.1 cgd else
446 1.142 kre synexpect(TDO, 0);
447 1.142 kre n1->nfor.body = list(0);
448 1.142 kre consumetoken(t);
449 1.156 kre checkkwd = CHKKWD | CHKALIAS;
450 1.1 cgd break;
451 1.1 cgd case TCASE:
452 1.101 christos n1 = stalloc(sizeof(struct ncase));
453 1.1 cgd n1->type = NCASE;
454 1.134 kre n1->ncase.lineno = startlinno - elided_nl;
455 1.142 kre consumetoken(TWORD);
456 1.155 kre n1->ncase.expr = makeword(startlinno);
457 1.142 kre linebreak();
458 1.142 kre if (lasttoken != TWORD || !equal(wordtext, "in"))
459 1.108 christos synexpect(-1, "in");
460 1.1 cgd cpp = &n1->ncase.cases;
461 1.156 kre checkkwd = CHKNL | CHKKWD;
462 1.142 kre readtoken();
463 1.87 christos /*
464 1.88 christos * Both ksh and bash accept 'case x in esac'
465 1.87 christos * so configure scripts started taking advantage of this.
466 1.88 christos * The page: http://pubs.opengroup.org/onlinepubs/\
467 1.88 christos * 009695399/utilities/xcu_chap02.html contradicts itself,
468 1.88 christos * as to if this is legal; the "Case Conditional Format"
469 1.88 christos * paragraph shows one case is required, but the "Grammar"
470 1.88 christos * section shows a grammar that explicitly allows the no
471 1.88 christos * case option.
472 1.141 kre *
473 1.141 kre * The standard also says (section 2.10):
474 1.141 kre * This formal syntax shall take precedence over the
475 1.141 kre * preceding text syntax description.
476 1.141 kre * ie: the "Grammar" section wins. The text is just
477 1.141 kre * a rough guide (introduction to the common case.)
478 1.87 christos */
479 1.87 christos while (lasttoken != TESAC) {
480 1.101 christos *cpp = cp = stalloc(sizeof(struct nclist));
481 1.142 kre cp->type = NCLIST;
482 1.142 kre app = &cp->nclist.pattern;
483 1.61 christos if (lasttoken == TLP)
484 1.61 christos readtoken();
485 1.1 cgd for (;;) {
486 1.142 kre if (lasttoken < TWORD)
487 1.142 kre synexpect(TWORD, 0);
488 1.155 kre *app = ap = makeword(startlinno);
489 1.156 kre checkkwd = CHKNL | CHKKWD;
490 1.142 kre if (readtoken() != TPIPE)
491 1.1 cgd break;
492 1.1 cgd app = &ap->narg.next;
493 1.16 jtc readtoken();
494 1.1 cgd }
495 1.142 kre if (lasttoken != TRP)
496 1.108 christos synexpect(TRP, 0);
497 1.135 kre cp->nclist.lineno = startlinno;
498 1.142 kre cp->nclist.body = list(0);
499 1.15 jtc
500 1.156 kre checkkwd = CHKNL | CHKKWD | CHKALIAS;
501 1.15 jtc if ((t = readtoken()) != TESAC) {
502 1.123 kre if (t != TENDCASE && t != TCASEFALL) {
503 1.108 christos synexpect(TENDCASE, 0);
504 1.48 christos } else {
505 1.123 kre if (t == TCASEFALL)
506 1.123 kre cp->type = NCLISTCONT;
507 1.156 kre checkkwd = CHKNL | CHKKWD;
508 1.48 christos readtoken();
509 1.48 christos }
510 1.15 jtc }
511 1.1 cgd cpp = &cp->nclist.next;
512 1.86 christos }
513 1.1 cgd *cpp = NULL;
514 1.156 kre checkkwd = CHKKWD | CHKALIAS;
515 1.1 cgd break;
516 1.1 cgd case TLP:
517 1.101 christos n1 = stalloc(sizeof(struct nredir));
518 1.1 cgd n1->type = NSUBSHELL;
519 1.142 kre n1->nredir.n = list(0);
520 1.1 cgd n1->nredir.redirect = NULL;
521 1.120 kre if (n1->nredir.n == NULL)
522 1.120 kre synexpect(-1, 0);
523 1.142 kre consumetoken(TRP);
524 1.156 kre checkkwd = CHKKWD | CHKALIAS;
525 1.1 cgd break;
526 1.1 cgd case TBEGIN:
527 1.142 kre n1 = list(0);
528 1.120 kre if (posix && n1 == NULL)
529 1.120 kre synexpect(-1, 0);
530 1.142 kre consumetoken(TEND);
531 1.156 kre checkkwd = CHKKWD | CHKALIAS;
532 1.1 cgd break;
533 1.119 kre
534 1.142 kre case TBACKGND:
535 1.19 mycroft case TSEMI:
536 1.119 kre case TAND:
537 1.119 kre case TOR:
538 1.119 kre case TPIPE:
539 1.119 kre case TNL:
540 1.119 kre case TEOF:
541 1.119 kre case TRP:
542 1.142 kre case TENDCASE:
543 1.142 kre case TCASEFALL:
544 1.19 mycroft /*
545 1.119 kre * simple commands must have something in them,
546 1.119 kre * either a word (which at this point includes a=b)
547 1.119 kre * or a redirection. If we reached the end of the
548 1.119 kre * command (which one of these tokens indicates)
549 1.119 kre * when we are just starting, and have not had a
550 1.119 kre * redirect, then ...
551 1.119 kre *
552 1.119 kre * nb: it is still possible to end up with empty
553 1.119 kre * simple commands, if the "command" is a var
554 1.142 kre * expansion that produces nothing:
555 1.119 kre * X= ; $X && $X
556 1.119 kre * --> &&
557 1.142 kre * That is OK and is handled after word expansions.
558 1.19 mycroft */
559 1.19 mycroft if (!redir)
560 1.108 christos synexpect(-1, 0);
561 1.142 kre /*
562 1.142 kre * continue to build a node containing the redirect.
563 1.142 kre * the tokpushback means that our ending token will be
564 1.142 kre * read again in simplecmd, causing it to terminate,
565 1.142 kre * so only the redirect(s) will be contained in the
566 1.142 kre * returned n1
567 1.142 kre */
568 1.142 kre /* FALLTHROUGH */
569 1.1 cgd case TWORD:
570 1.1 cgd tokpushback++;
571 1.31 christos n1 = simplecmd(rpp, redir);
572 1.31 christos goto checkneg;
573 1.1 cgd default:
574 1.108 christos synexpect(-1, 0);
575 1.39 mycroft /* NOTREACHED */
576 1.1 cgd }
577 1.1 cgd
578 1.1 cgd /* Now check for redirection which may follow command */
579 1.1 cgd while (readtoken() == TREDIR) {
580 1.1 cgd *rpp = n2 = redirnode;
581 1.1 cgd rpp = &n2->nfile.next;
582 1.1 cgd parsefname();
583 1.1 cgd }
584 1.1 cgd tokpushback++;
585 1.1 cgd *rpp = NULL;
586 1.1 cgd if (redir) {
587 1.152 kre if (n1 == NULL || n1->type != NSUBSHELL) {
588 1.101 christos n2 = stalloc(sizeof(struct nredir));
589 1.1 cgd n2->type = NREDIR;
590 1.1 cgd n2->nredir.n = n1;
591 1.1 cgd n1 = n2;
592 1.1 cgd }
593 1.1 cgd n1->nredir.redirect = redir;
594 1.1 cgd }
595 1.31 christos
596 1.126 kre checkneg:
597 1.129 kre #ifdef BOGUS_NOT_COMMAND
598 1.31 christos if (negate) {
599 1.130 kre VTRACE(DBG_PARSE, ("bogus %snegate command\n",
600 1.130 kre (negate&1) ? "" : "double "));
601 1.101 christos n2 = stalloc(sizeof(struct nnot));
602 1.125 kre n2->type = (negate & 1) ? NNOT : NDNOT;
603 1.31 christos n2->nnot.com = n1;
604 1.31 christos return n2;
605 1.31 christos }
606 1.31 christos else
607 1.129 kre #endif
608 1.31 christos return n1;
609 1.1 cgd }
610 1.1 cgd
611 1.1 cgd
612 1.1 cgd STATIC union node *
613 1.54 christos simplecmd(union node **rpp, union node *redir)
614 1.54 christos {
615 1.1 cgd union node *args, **app;
616 1.129 kre union node *n = NULL;
617 1.134 kre int line = 0;
618 1.156 kre int savecheckkwd;
619 1.129 kre #ifdef BOGUS_NOT_COMMAND
620 1.129 kre union node *n2;
621 1.31 christos int negate = 0;
622 1.129 kre #endif
623 1.1 cgd
624 1.130 kre CTRACE(DBG_PARSE, ("simple command with%s redir already @%d\n",
625 1.130 kre redir ? "" : "out", plinno));
626 1.130 kre
627 1.11 jtc /* If we don't have any redirections already, then we must reset */
628 1.11 jtc /* rpp to be the address of the local redir variable. */
629 1.5 sef if (redir == 0)
630 1.5 sef rpp = &redir;
631 1.5 sef
632 1.1 cgd args = NULL;
633 1.1 cgd app = &args;
634 1.11 jtc
635 1.129 kre #ifdef BOGUS_NOT_COMMAND /* pipelines get negated, commands do not */
636 1.31 christos while (readtoken() == TNOT) {
637 1.130 kre VTRACE(DBG_PARSE, ("simplcmd: bogus TNOT recognized\n"));
638 1.125 kre negate++;
639 1.31 christos }
640 1.31 christos tokpushback++;
641 1.129 kre #endif
642 1.31 christos
643 1.156 kre savecheckkwd = CHKALIAS;
644 1.1 cgd for (;;) {
645 1.156 kre checkkwd = savecheckkwd;
646 1.1 cgd if (readtoken() == TWORD) {
647 1.134 kre if (line == 0)
648 1.134 kre line = startlinno;
649 1.155 kre n = makeword(startlinno);
650 1.1 cgd *app = n;
651 1.1 cgd app = &n->narg.next;
652 1.156 kre if (savecheckkwd != 0 && !isassignment(wordtext))
653 1.156 kre savecheckkwd = 0;
654 1.1 cgd } else if (lasttoken == TREDIR) {
655 1.134 kre if (line == 0)
656 1.134 kre line = startlinno;
657 1.1 cgd *rpp = n = redirnode;
658 1.1 cgd rpp = &n->nfile.next;
659 1.1 cgd parsefname(); /* read name of redirection file */
660 1.1 cgd } else if (lasttoken == TLP && app == &args->narg.next
661 1.110 christos && redir == 0) {
662 1.1 cgd /* We have a function */
663 1.142 kre consumetoken(TRP);
664 1.84 christos funclinno = plinno;
665 1.64 christos rmescapes(n->narg.text);
666 1.118 kre if (strchr(n->narg.text, '/'))
667 1.1 cgd synerror("Bad function name");
668 1.134 kre VTRACE(DBG_PARSE, ("Function '%s' seen @%d\n",
669 1.134 kre n->narg.text, plinno));
670 1.1 cgd n->type = NDEFUN;
671 1.134 kre n->narg.lineno = plinno - elided_nl;
672 1.1 cgd n->narg.next = command();
673 1.84 christos funclinno = 0;
674 1.31 christos goto checkneg;
675 1.1 cgd } else {
676 1.1 cgd tokpushback++;
677 1.1 cgd break;
678 1.1 cgd }
679 1.1 cgd }
680 1.120 kre
681 1.120 kre if (args == NULL && redir == NULL)
682 1.120 kre synexpect(-1, 0);
683 1.1 cgd *app = NULL;
684 1.1 cgd *rpp = NULL;
685 1.101 christos n = stalloc(sizeof(struct ncmd));
686 1.1 cgd n->type = NCMD;
687 1.134 kre n->ncmd.lineno = line - elided_nl;
688 1.1 cgd n->ncmd.backgnd = 0;
689 1.1 cgd n->ncmd.args = args;
690 1.1 cgd n->ncmd.redirect = redir;
691 1.133 kre n->ncmd.lineno = startlinno;
692 1.31 christos
693 1.126 kre checkneg:
694 1.129 kre #ifdef BOGUS_NOT_COMMAND
695 1.31 christos if (negate) {
696 1.130 kre VTRACE(DBG_PARSE, ("bogus %snegate simplecmd\n",
697 1.130 kre (negate&1) ? "" : "double "));
698 1.101 christos n2 = stalloc(sizeof(struct nnot));
699 1.125 kre n2->type = (negate & 1) ? NNOT : NDNOT;
700 1.31 christos n2->nnot.com = n;
701 1.31 christos return n2;
702 1.31 christos }
703 1.31 christos else
704 1.129 kre #endif
705 1.31 christos return n;
706 1.1 cgd }
707 1.1 cgd
708 1.18 jtc STATIC union node *
709 1.155 kre makeword(int lno)
710 1.54 christos {
711 1.18 jtc union node *n;
712 1.18 jtc
713 1.101 christos n = stalloc(sizeof(struct narg));
714 1.18 jtc n->type = NARG;
715 1.18 jtc n->narg.next = NULL;
716 1.18 jtc n->narg.text = wordtext;
717 1.18 jtc n->narg.backquote = backquotelist;
718 1.142 kre n->narg.lineno = lno;
719 1.18 jtc return n;
720 1.18 jtc }
721 1.18 jtc
722 1.95 christos void
723 1.95 christos fixredir(union node *n, const char *text, int err)
724 1.95 christos {
725 1.126 kre
726 1.130 kre VTRACE(DBG_PARSE, ("Fix redir %s %d\n", text, err));
727 1.18 jtc if (!err)
728 1.18 jtc n->ndup.vname = NULL;
729 1.18 jtc
730 1.91 christos if (is_number(text))
731 1.91 christos n->ndup.dupfd = number(text);
732 1.18 jtc else if (text[0] == '-' && text[1] == '\0')
733 1.18 jtc n->ndup.dupfd = -1;
734 1.18 jtc else {
735 1.30 christos
736 1.18 jtc if (err)
737 1.18 jtc synerror("Bad fd number");
738 1.18 jtc else
739 1.155 kre n->ndup.vname = makeword(startlinno - elided_nl);
740 1.18 jtc }
741 1.18 jtc }
742 1.18 jtc
743 1.1 cgd
744 1.1 cgd STATIC void
745 1.54 christos parsefname(void)
746 1.54 christos {
747 1.1 cgd union node *n = redirnode;
748 1.1 cgd
749 1.1 cgd if (readtoken() != TWORD)
750 1.108 christos synexpect(-1, 0);
751 1.1 cgd if (n->type == NHERE) {
752 1.140 kre struct HereDoc *here = heredoc;
753 1.140 kre struct HereDoc *p;
754 1.1 cgd
755 1.1 cgd if (quoteflag == 0)
756 1.1 cgd n->type = NXHERE;
757 1.130 kre VTRACE(DBG_PARSE, ("Here document %d @%d\n", n->type, plinno));
758 1.1 cgd if (here->striptabs) {
759 1.1 cgd while (*wordtext == '\t')
760 1.1 cgd wordtext++;
761 1.1 cgd }
762 1.111 christos
763 1.111 christos /*
764 1.111 christos * this test is not really necessary, we are not
765 1.111 christos * required to expand wordtext, but there's no reason
766 1.111 christos * it cannot be $$ or something like that - that would
767 1.111 christos * not mean the pid, but literally two '$' characters.
768 1.111 christos * There is no need for limits on what the word can be.
769 1.111 christos * However, it needs to stay literal as entered, not
770 1.111 christos * have $ converted to CTLVAR or something, which as
771 1.111 christos * the parser is, at the minute, is impossible to prevent.
772 1.111 christos * So, leave it like this until the rest of the parser is fixed.
773 1.111 christos */
774 1.126 kre if (!noexpand(wordtext))
775 1.1 cgd synerror("Illegal eof marker for << redirection");
776 1.111 christos
777 1.1 cgd rmescapes(wordtext);
778 1.1 cgd here->eofmark = wordtext;
779 1.1 cgd here->next = NULL;
780 1.1 cgd if (heredoclist == NULL)
781 1.1 cgd heredoclist = here;
782 1.1 cgd else {
783 1.90 christos for (p = heredoclist ; p->next ; p = p->next)
784 1.90 christos continue;
785 1.1 cgd p->next = here;
786 1.1 cgd }
787 1.1 cgd } else if (n->type == NTOFD || n->type == NFROMFD) {
788 1.18 jtc fixredir(n, wordtext, 0);
789 1.1 cgd } else {
790 1.155 kre n->nfile.fname = makeword(startlinno - elided_nl);
791 1.1 cgd }
792 1.1 cgd }
793 1.1 cgd
794 1.111 christos /*
795 1.111 christos * Check to see whether we are at the end of the here document. When this
796 1.111 christos * is called, c is set to the first character of the next input line. If
797 1.111 christos * we are at the end of the here document, this routine sets the c to PEOF.
798 1.111 christos * The new value of c is returned.
799 1.111 christos */
800 1.111 christos
801 1.111 christos static int
802 1.111 christos checkend(int c, char * const eofmark, const int striptabs)
803 1.111 christos {
804 1.126 kre
805 1.111 christos if (striptabs) {
806 1.111 christos while (c == '\t')
807 1.111 christos c = pgetc();
808 1.111 christos }
809 1.111 christos if (c == PEOF) {
810 1.111 christos if (*eofmark == '\0')
811 1.111 christos return (c);
812 1.111 christos synerror(EOFhere);
813 1.111 christos }
814 1.111 christos if (c == *eofmark) {
815 1.111 christos int c2;
816 1.111 christos char *q;
817 1.111 christos
818 1.111 christos for (q = eofmark + 1; c2 = pgetc(), *q != '\0' && c2 == *q; q++)
819 1.138 kre if (c2 == '\n') {
820 1.138 kre plinno++;
821 1.138 kre needprompt = doprompt;
822 1.138 kre }
823 1.111 christos if ((c2 == PEOF || c2 == '\n') && *q == '\0') {
824 1.111 christos c = PEOF;
825 1.111 christos if (c2 == '\n') {
826 1.111 christos plinno++;
827 1.111 christos needprompt = doprompt;
828 1.111 christos }
829 1.111 christos } else {
830 1.111 christos pungetc();
831 1.111 christos pushstring(eofmark + 1, q - (eofmark + 1), NULL);
832 1.111 christos }
833 1.111 christos } else if (c == '\n' && *eofmark == '\0') {
834 1.111 christos c = PEOF;
835 1.111 christos plinno++;
836 1.111 christos needprompt = doprompt;
837 1.111 christos }
838 1.111 christos return (c);
839 1.111 christos }
840 1.111 christos
841 1.1 cgd
842 1.1 cgd /*
843 1.1 cgd * Input any here documents.
844 1.1 cgd */
845 1.1 cgd
846 1.134 kre STATIC int
847 1.115 christos slurp_heredoc(char *const eofmark, const int striptabs, const int sq)
848 1.111 christos {
849 1.111 christos int c;
850 1.111 christos char *out;
851 1.134 kre int lines = plinno;
852 1.111 christos
853 1.111 christos c = pgetc();
854 1.111 christos
855 1.111 christos /*
856 1.111 christos * If we hit EOF on the input, and the eofmark is a null string ('')
857 1.111 christos * we consider this empty line to be the eofmark, and exit without err.
858 1.111 christos */
859 1.111 christos if (c == PEOF && *eofmark != '\0')
860 1.111 christos synerror(EOFhere);
861 1.111 christos
862 1.111 christos STARTSTACKSTR(out);
863 1.111 christos
864 1.111 christos while ((c = checkend(c, eofmark, striptabs)) != PEOF) {
865 1.111 christos do {
866 1.111 christos if (sq) {
867 1.111 christos /*
868 1.111 christos * in single quoted mode (eofmark quoted)
869 1.111 christos * all we look for is \n so we can check
870 1.111 christos * for the epfmark - everything saved literally.
871 1.111 christos */
872 1.111 christos STPUTC(c, out);
873 1.122 kre if (c == '\n') {
874 1.122 kre plinno++;
875 1.111 christos break;
876 1.122 kre }
877 1.111 christos continue;
878 1.111 christos }
879 1.111 christos /*
880 1.111 christos * In double quoted (non-quoted eofmark)
881 1.111 christos * we must handle \ followed by \n here
882 1.111 christos * otherwise we can mismatch the end mark.
883 1.111 christos * All other uses of \ will be handled later
884 1.111 christos * when the here doc is expanded.
885 1.111 christos *
886 1.111 christos * This also makes sure \\ followed by \n does
887 1.111 christos * not suppress the newline (the \ quotes itself)
888 1.111 christos */
889 1.111 christos if (c == '\\') { /* A backslash */
890 1.138 kre STPUTC(c, out);
891 1.111 christos c = pgetc(); /* followed by */
892 1.122 kre if (c == '\n') { /* a newline? */
893 1.138 kre STPUTC(c, out);
894 1.122 kre plinno++;
895 1.138 kre continue; /* don't break */
896 1.122 kre }
897 1.111 christos }
898 1.111 christos STPUTC(c, out); /* keep the char */
899 1.122 kre if (c == '\n') { /* at end of line */
900 1.122 kre plinno++;
901 1.111 christos break; /* look for eofmark */
902 1.122 kre }
903 1.111 christos } while ((c = pgetc()) != PEOF);
904 1.111 christos
905 1.111 christos /*
906 1.111 christos * If we have read a line, and reached EOF, without
907 1.111 christos * finding the eofmark, whether the EOF comes before
908 1.111 christos * or immediately after the \n, that is an error.
909 1.111 christos */
910 1.111 christos if (c == PEOF || (c = pgetc()) == PEOF)
911 1.111 christos synerror(EOFhere);
912 1.111 christos }
913 1.111 christos STPUTC('\0', out);
914 1.111 christos
915 1.111 christos c = out - stackblock();
916 1.111 christos out = stackblock();
917 1.111 christos grabstackblock(c);
918 1.111 christos wordtext = out;
919 1.111 christos
920 1.130 kre VTRACE(DBG_PARSE,
921 1.134 kre ("Slurped a %d line %sheredoc (to '%s')%s: len %d, \"%.*s%s\" @%d\n",
922 1.134 kre plinno - lines, sq ? "quoted " : "", eofmark,
923 1.134 kre striptabs ? " tab stripped" : "", c, (c > 16 ? 16 : c),
924 1.130 kre wordtext, (c > 16 ? "..." : ""), plinno));
925 1.134 kre
926 1.134 kre return (plinno - lines);
927 1.134 kre }
928 1.134 kre
929 1.134 kre static char *
930 1.134 kre insert_elided_nl(char *str)
931 1.134 kre {
932 1.134 kre while (elided_nl > 0) {
933 1.134 kre STPUTC(CTLNONL, str);
934 1.134 kre elided_nl--;
935 1.134 kre }
936 1.134 kre return str;
937 1.111 christos }
938 1.111 christos
939 1.111 christos STATIC void
940 1.111 christos readheredocs(void)
941 1.54 christos {
942 1.140 kre struct HereDoc *here;
943 1.1 cgd union node *n;
944 1.134 kre int line, l;
945 1.1 cgd
946 1.134 kre line = 0; /*XXX - gcc! obviously unneeded */
947 1.134 kre if (heredoclist)
948 1.134 kre line = heredoclist->startline + 1;
949 1.134 kre l = 0;
950 1.1 cgd while (heredoclist) {
951 1.134 kre line += l;
952 1.1 cgd here = heredoclist;
953 1.1 cgd heredoclist = here->next;
954 1.1 cgd if (needprompt) {
955 1.11 jtc setprompt(2);
956 1.1 cgd needprompt = 0;
957 1.1 cgd }
958 1.111 christos
959 1.134 kre l = slurp_heredoc(here->eofmark, here->striptabs,
960 1.111 christos here->here->nhere.type == NHERE);
961 1.111 christos
962 1.155 kre here->here->nhere.doc = n = makeword(line);
963 1.1 cgd
964 1.115 christos if (here->here->nhere.type == NHERE)
965 1.115 christos continue;
966 1.111 christos
967 1.115 christos /*
968 1.115 christos * Now "parse" here docs that have unquoted eofmarkers.
969 1.115 christos */
970 1.134 kre setinputstring(wordtext, 1, line);
971 1.138 kre VTRACE(DBG_PARSE, ("Reprocessing %d line here doc from %d\n",
972 1.138 kre l, line));
973 1.115 christos readtoken1(pgetc(), DQSYNTAX, 1);
974 1.115 christos n->narg.text = wordtext;
975 1.115 christos n->narg.backquote = backquotelist;
976 1.115 christos popfile();
977 1.115 christos }
978 1.111 christos }
979 1.111 christos
980 1.1 cgd STATIC int
981 1.54 christos peektoken(void)
982 1.54 christos {
983 1.1 cgd int t;
984 1.1 cgd
985 1.1 cgd t = readtoken();
986 1.1 cgd tokpushback++;
987 1.1 cgd return (t);
988 1.1 cgd }
989 1.1 cgd
990 1.1 cgd STATIC int
991 1.54 christos readtoken(void)
992 1.54 christos {
993 1.1 cgd int t;
994 1.1 cgd #ifdef DEBUG
995 1.1 cgd int alreadyseen = tokpushback;
996 1.156 kre int savecheckkwd = checkkwd;
997 1.1 cgd #endif
998 1.48 christos struct alias *ap;
999 1.30 christos
1000 1.140 kre top:
1001 1.1 cgd t = xxreadtoken();
1002 1.1 cgd
1003 1.156 kre if (checkkwd & CHKNL) {
1004 1.156 kre while (t == TNL) {
1005 1.156 kre readheredocs();
1006 1.156 kre t = xxreadtoken();
1007 1.156 kre }
1008 1.156 kre }
1009 1.156 kre
1010 1.156 kre /*
1011 1.156 kre * check for keywords and aliases
1012 1.156 kre */
1013 1.156 kre if (t == TWORD && !quoteflag) {
1014 1.156 kre const char *const *pp;
1015 1.1 cgd
1016 1.156 kre if (checkkwd & CHKKWD)
1017 1.43 christos for (pp = parsekwd; *pp; pp++) {
1018 1.95 christos if (**pp == *wordtext && equal(*pp, wordtext)) {
1019 1.90 christos lasttoken = t = pp -
1020 1.43 christos parsekwd + KWDOFFSET;
1021 1.130 kre VTRACE(DBG_PARSE,
1022 1.134 kre ("keyword %s recognized @%d\n",
1023 1.134 kre tokname[t], plinno));
1024 1.11 jtc goto out;
1025 1.1 cgd }
1026 1.1 cgd }
1027 1.156 kre
1028 1.156 kre if (checkkwd & CHKALIAS &&
1029 1.156 kre (ap = lookupalias(wordtext, 1)) != NULL) {
1030 1.156 kre VTRACE(DBG_PARSE,
1031 1.156 kre ("alias '%s' recognized -> <:%s:>\n",
1032 1.156 kre wordtext, ap->val));
1033 1.156 kre pushstring(ap->val, strlen(ap->val), ap);
1034 1.156 kre goto top;
1035 1.1 cgd }
1036 1.156 kre }
1037 1.126 kre out:
1038 1.156 kre if (t != TNOT)
1039 1.156 kre checkkwd = 0;
1040 1.156 kre
1041 1.156 kre VTRACE(DBG_PARSE, ("%stoken %s %s @%d (chkkwd %x->%x)\n",
1042 1.156 kre alreadyseen ? "reread " : "", tokname[t],
1043 1.156 kre t == TWORD ? wordtext : "", plinno, savecheckkwd, checkkwd));
1044 1.1 cgd return (t);
1045 1.1 cgd }
1046 1.1 cgd
1047 1.1 cgd
1048 1.1 cgd /*
1049 1.1 cgd * Read the next input token.
1050 1.1 cgd * If the token is a word, we set backquotelist to the list of cmds in
1051 1.1 cgd * backquotes. We set quoteflag to true if any part of the word was
1052 1.1 cgd * quoted.
1053 1.1 cgd * If the token is TREDIR, then we set redirnode to a structure containing
1054 1.1 cgd * the redirection.
1055 1.1 cgd * In all cases, the variable startlinno is set to the number of the line
1056 1.1 cgd * on which the token starts.
1057 1.1 cgd *
1058 1.1 cgd * [Change comment: here documents and internal procedures]
1059 1.1 cgd * [Readtoken shouldn't have any arguments. Perhaps we should make the
1060 1.1 cgd * word parsing code into a separate routine. In this case, readtoken
1061 1.1 cgd * doesn't need to have any internal procedures, but parseword does.
1062 1.1 cgd * We could also make parseoperator in essence the main routine, and
1063 1.1 cgd * have parseword (readtoken1?) handle both words and redirection.]
1064 1.1 cgd */
1065 1.1 cgd
1066 1.1 cgd #define RETURN(token) return lasttoken = token
1067 1.1 cgd
1068 1.1 cgd STATIC int
1069 1.54 christos xxreadtoken(void)
1070 1.54 christos {
1071 1.32 tls int c;
1072 1.1 cgd
1073 1.1 cgd if (tokpushback) {
1074 1.1 cgd tokpushback = 0;
1075 1.1 cgd return lasttoken;
1076 1.1 cgd }
1077 1.1 cgd if (needprompt) {
1078 1.11 jtc setprompt(2);
1079 1.1 cgd needprompt = 0;
1080 1.1 cgd }
1081 1.134 kre elided_nl = 0;
1082 1.1 cgd startlinno = plinno;
1083 1.1 cgd for (;;) { /* until token or start of word found */
1084 1.1 cgd c = pgetc_macro();
1085 1.1 cgd switch (c) {
1086 1.156 kre case ' ': case '\t': case PFAKE:
1087 1.1 cgd continue;
1088 1.1 cgd case '#':
1089 1.90 christos while ((c = pgetc()) != '\n' && c != PEOF)
1090 1.90 christos continue;
1091 1.1 cgd pungetc();
1092 1.1 cgd continue;
1093 1.108 christos
1094 1.1 cgd case '\n':
1095 1.1 cgd plinno++;
1096 1.1 cgd needprompt = doprompt;
1097 1.1 cgd RETURN(TNL);
1098 1.1 cgd case PEOF:
1099 1.1 cgd RETURN(TEOF);
1100 1.108 christos
1101 1.1 cgd case '&':
1102 1.121 kre if (pgetc_linecont() == '&')
1103 1.1 cgd RETURN(TAND);
1104 1.1 cgd pungetc();
1105 1.1 cgd RETURN(TBACKGND);
1106 1.1 cgd case '|':
1107 1.121 kre if (pgetc_linecont() == '|')
1108 1.1 cgd RETURN(TOR);
1109 1.1 cgd pungetc();
1110 1.1 cgd RETURN(TPIPE);
1111 1.1 cgd case ';':
1112 1.123 kre switch (pgetc_linecont()) {
1113 1.123 kre case ';':
1114 1.1 cgd RETURN(TENDCASE);
1115 1.123 kre case '&':
1116 1.123 kre RETURN(TCASEFALL);
1117 1.123 kre default:
1118 1.123 kre pungetc();
1119 1.123 kre RETURN(TSEMI);
1120 1.123 kre }
1121 1.1 cgd case '(':
1122 1.1 cgd RETURN(TLP);
1123 1.1 cgd case ')':
1124 1.1 cgd RETURN(TRP);
1125 1.108 christos
1126 1.108 christos case '\\':
1127 1.108 christos switch (pgetc()) {
1128 1.108 christos case '\n':
1129 1.108 christos startlinno = ++plinno;
1130 1.108 christos if (doprompt)
1131 1.108 christos setprompt(2);
1132 1.108 christos else
1133 1.108 christos setprompt(0);
1134 1.108 christos continue;
1135 1.108 christos case PEOF:
1136 1.108 christos RETURN(TEOF);
1137 1.108 christos default:
1138 1.108 christos pungetc();
1139 1.108 christos break;
1140 1.108 christos }
1141 1.108 christos /* FALLTHROUGH */
1142 1.1 cgd default:
1143 1.111 christos return readtoken1(c, BASESYNTAX, 0);
1144 1.1 cgd }
1145 1.1 cgd }
1146 1.1 cgd #undef RETURN
1147 1.1 cgd }
1148 1.1 cgd
1149 1.1 cgd
1150 1.1 cgd
1151 1.1 cgd /*
1152 1.1 cgd * If eofmark is NULL, read a word or a redirection symbol. If eofmark
1153 1.1 cgd * is not NULL, read a here document. In the latter case, eofmark is the
1154 1.1 cgd * word which marks the end of the document and striptabs is true if
1155 1.1 cgd * leading tabs should be stripped from the document. The argument firstc
1156 1.1 cgd * is the first character of the input token or document.
1157 1.1 cgd *
1158 1.1 cgd * Because C does not have internal subroutines, I have simulated them
1159 1.1 cgd * using goto's to implement the subroutine linkage. The following macros
1160 1.1 cgd * will run code that appears at the end of readtoken1.
1161 1.1 cgd */
1162 1.1 cgd
1163 1.96 christos /*
1164 1.96 christos * We used to remember only the current syntax, variable nesting level,
1165 1.102 christos * double quote state for each var nesting level, and arith nesting
1166 1.96 christos * level (unrelated to var nesting) and one prev syntax when in arith
1167 1.96 christos * syntax. This worked for simple cases, but can't handle arith inside
1168 1.96 christos * var expansion inside arith inside var with some quoted and some not.
1169 1.96 christos *
1170 1.96 christos * Inspired by FreeBSD's implementation (though it was the obvious way)
1171 1.96 christos * though implemented differently, we now have a stack that keeps track
1172 1.96 christos * of what we are doing now, and what we were doing previously.
1173 1.96 christos * Every time something changes, which will eventually end and should
1174 1.96 christos * revert to the previous state, we push this stack, and then pop it
1175 1.96 christos * again later (that is every ${} with an operator (to parse the word
1176 1.102 christos * or pattern that follows) ${x} and $x are too simple to need it)
1177 1.96 christos * $(( )) $( ) and "...". Always. Really, always!
1178 1.96 christos *
1179 1.96 christos * The stack is implemented as one static (on the C stack) base block
1180 1.96 christos * containing LEVELS_PER_BLOCK (8) stack entries, which should be
1181 1.96 christos * enough for the vast majority of cases. For torture tests, we
1182 1.96 christos * malloc more blocks as needed. All accesses through the inline
1183 1.96 christos * functions below.
1184 1.96 christos */
1185 1.96 christos
1186 1.96 christos /*
1187 1.96 christos * varnest & arinest will typically be 0 or 1
1188 1.96 christos * (varnest can increment in usages like ${x=${y}} but probably
1189 1.96 christos * does not really need to)
1190 1.96 christos * parenlevel allows balancing parens inside a $(( )), it is reset
1191 1.96 christos * at each new nesting level ( $(( ( x + 3 ${unset-)} )) does not work.
1192 1.96 christos * quoted is special - we need to know 2 things ... are we inside "..."
1193 1.96 christos * (even if inherited from some previous nesting level) and was there
1194 1.96 christos * an opening '"' at this level (so the next will be closing).
1195 1.106 christos * "..." can span nesting levels, but cannot be opened in one and
1196 1.96 christos * closed in a different one.
1197 1.96 christos * To handle this, "quoted" has two fields, the bottom 4 (really 2)
1198 1.96 christos * bits are 0, 1, or 2, for un, single, and double quoted (single quoted
1199 1.96 christos * is really so special that this setting is not very important)
1200 1.96 christos * and 0x10 that indicates that an opening quote has been seen.
1201 1.96 christos * The bottom 4 bits are inherited, the 0x10 bit is not.
1202 1.96 christos */
1203 1.96 christos struct tokenstate {
1204 1.96 christos const char *ts_syntax;
1205 1.96 christos unsigned short ts_parenlevel; /* counters */
1206 1.96 christos unsigned short ts_varnest; /* 64000 levels should be enough! */
1207 1.96 christos unsigned short ts_arinest;
1208 1.96 christos unsigned short ts_quoted; /* 1 -> single, 2 -> double */
1209 1.96 christos };
1210 1.96 christos
1211 1.106 christos #define NQ 0x00 /* Unquoted */
1212 1.106 christos #define SQ 0x01 /* Single Quotes */
1213 1.106 christos #define DQ 0x02 /* Double Quotes (or equivalent) */
1214 1.144 kre #define CQ 0x03 /* C style Single Quotes */
1215 1.106 christos #define QF 0x0F /* Mask to extract previous values */
1216 1.106 christos #define QS 0x10 /* Quoting started at this level in stack */
1217 1.96 christos
1218 1.96 christos #define LEVELS_PER_BLOCK 8
1219 1.103 christos #define VSS struct statestack
1220 1.96 christos
1221 1.96 christos struct statestack {
1222 1.96 christos VSS *prev; /* previous block in list */
1223 1.96 christos int cur; /* which of our tokenstates is current */
1224 1.96 christos struct tokenstate tokenstate[LEVELS_PER_BLOCK];
1225 1.96 christos };
1226 1.96 christos
1227 1.103 christos static inline struct tokenstate *
1228 1.96 christos currentstate(VSS *stack)
1229 1.96 christos {
1230 1.96 christos return &stack->tokenstate[stack->cur];
1231 1.96 christos }
1232 1.96 christos
1233 1.158 christos #ifdef notdef
1234 1.103 christos static inline struct tokenstate *
1235 1.96 christos prevstate(VSS *stack)
1236 1.96 christos {
1237 1.96 christos if (stack->cur != 0)
1238 1.96 christos return &stack->tokenstate[stack->cur - 1];
1239 1.96 christos if (stack->prev == NULL) /* cannot drop below base */
1240 1.96 christos return &stack->tokenstate[0];
1241 1.96 christos return &stack->prev->tokenstate[LEVELS_PER_BLOCK - 1];
1242 1.96 christos }
1243 1.158 christos #endif
1244 1.96 christos
1245 1.96 christos static inline VSS *
1246 1.96 christos bump_state_level(VSS *stack)
1247 1.96 christos {
1248 1.103 christos struct tokenstate *os, *ts;
1249 1.96 christos
1250 1.96 christos os = currentstate(stack);
1251 1.96 christos
1252 1.96 christos if (++stack->cur >= LEVELS_PER_BLOCK) {
1253 1.96 christos VSS *ss;
1254 1.96 christos
1255 1.96 christos ss = (VSS *)ckmalloc(sizeof (struct statestack));
1256 1.96 christos ss->cur = 0;
1257 1.96 christos ss->prev = stack;
1258 1.96 christos stack = ss;
1259 1.96 christos }
1260 1.96 christos
1261 1.96 christos ts = currentstate(stack);
1262 1.96 christos
1263 1.96 christos ts->ts_parenlevel = 0; /* parens inside never match outside */
1264 1.96 christos
1265 1.96 christos ts->ts_quoted = os->ts_quoted & QF; /* these are default settings */
1266 1.96 christos ts->ts_varnest = os->ts_varnest;
1267 1.96 christos ts->ts_arinest = os->ts_arinest; /* when appropriate */
1268 1.96 christos ts->ts_syntax = os->ts_syntax; /* they will be altered */
1269 1.96 christos
1270 1.96 christos return stack;
1271 1.96 christos }
1272 1.96 christos
1273 1.96 christos static inline VSS *
1274 1.96 christos drop_state_level(VSS *stack)
1275 1.96 christos {
1276 1.96 christos if (stack->cur == 0) {
1277 1.96 christos VSS *ss;
1278 1.96 christos
1279 1.96 christos ss = stack;
1280 1.96 christos stack = ss->prev;
1281 1.96 christos if (stack == NULL)
1282 1.96 christos return ss;
1283 1.106 christos ckfree(ss);
1284 1.96 christos }
1285 1.96 christos --stack->cur;
1286 1.96 christos return stack;
1287 1.96 christos }
1288 1.96 christos
1289 1.96 christos static inline void
1290 1.96 christos cleanup_state_stack(VSS *stack)
1291 1.96 christos {
1292 1.96 christos while (stack->prev != NULL) {
1293 1.96 christos stack->cur = 0;
1294 1.96 christos stack = drop_state_level(stack);
1295 1.96 christos }
1296 1.96 christos }
1297 1.96 christos
1298 1.95 christos #define PARSESUB() {goto parsesub; parsesub_return:;}
1299 1.11 jtc #define PARSEARITH() {goto parsearith; parsearith_return:;}
1300 1.1 cgd
1301 1.52 christos /*
1302 1.96 christos * The following macros all assume the existance of a local var "stack"
1303 1.96 christos * which contains a pointer to the current struct stackstate
1304 1.52 christos */
1305 1.51 christos
1306 1.96 christos /*
1307 1.96 christos * These are macros rather than inline funcs to avoid code churn as much
1308 1.96 christos * as possible - they replace macros of the same name used previously.
1309 1.96 christos */
1310 1.96 christos #define ISDBLQUOTE() (currentstate(stack)->ts_quoted & QS)
1311 1.96 christos #define SETDBLQUOTE() (currentstate(stack)->ts_quoted = QS | DQ)
1312 1.158 christos #ifdef notdef
1313 1.96 christos #define CLRDBLQUOTE() (currentstate(stack)->ts_quoted = \
1314 1.96 christos stack->cur != 0 || stack->prev ? \
1315 1.96 christos prevstate(stack)->ts_quoted & QF : 0)
1316 1.158 christos #endif
1317 1.96 christos
1318 1.96 christos /*
1319 1.96 christos * This set are just to avoid excess typing and line lengths...
1320 1.96 christos * The ones that "look like" var names must be implemented to be lvalues
1321 1.96 christos */
1322 1.96 christos #define syntax (currentstate(stack)->ts_syntax)
1323 1.96 christos #define parenlevel (currentstate(stack)->ts_parenlevel)
1324 1.96 christos #define varnest (currentstate(stack)->ts_varnest)
1325 1.96 christos #define arinest (currentstate(stack)->ts_arinest)
1326 1.96 christos #define quoted (currentstate(stack)->ts_quoted)
1327 1.106 christos #define TS_PUSH() (stack = bump_state_level(stack))
1328 1.106 christos #define TS_POP() (stack = drop_state_level(stack))
1329 1.106 christos
1330 1.106 christos /*
1331 1.106 christos * Called to parse command substitutions. oldstyle is true if the command
1332 1.106 christos * is enclosed inside `` (otherwise it was enclosed in "$( )")
1333 1.106 christos *
1334 1.106 christos * Internally nlpp is a pointer to the head of the linked
1335 1.106 christos * list of commands (passed by reference), and savelen is the number of
1336 1.106 christos * characters on the top of the stack which must be preserved.
1337 1.106 christos */
1338 1.106 christos static char *
1339 1.107 christos parsebackq(VSS *const stack, char * const in,
1340 1.138 kre struct nodelist **const pbqlist, const int oldstyle, const int magicq)
1341 1.106 christos {
1342 1.106 christos struct nodelist **nlpp;
1343 1.109 christos const int savepbq = parsebackquote;
1344 1.106 christos union node *n;
1345 1.107 christos char *out;
1346 1.106 christos char *str = NULL;
1347 1.106 christos char *volatile sstr = str;
1348 1.106 christos struct jmploc jmploc;
1349 1.106 christos struct jmploc *const savehandler = handler;
1350 1.109 christos const int savelen = in - stackblock();
1351 1.106 christos int saveprompt;
1352 1.138 kre int lno;
1353 1.106 christos
1354 1.106 christos if (setjmp(jmploc.loc)) {
1355 1.106 christos if (sstr)
1356 1.106 christos ckfree(__UNVOLATILE(sstr));
1357 1.106 christos cleanup_state_stack(stack);
1358 1.106 christos parsebackquote = 0;
1359 1.106 christos handler = savehandler;
1360 1.106 christos longjmp(handler->loc, 1);
1361 1.106 christos }
1362 1.106 christos INTOFF;
1363 1.106 christos sstr = str = NULL;
1364 1.106 christos if (savelen > 0) {
1365 1.106 christos sstr = str = ckmalloc(savelen);
1366 1.106 christos memcpy(str, stackblock(), savelen);
1367 1.106 christos }
1368 1.106 christos handler = &jmploc;
1369 1.106 christos INTON;
1370 1.126 kre if (oldstyle) {
1371 1.134 kre /*
1372 1.134 kre * We must read until the closing backquote, giving special
1373 1.134 kre * treatment to some slashes, and then push the string and
1374 1.134 kre * reread it as input, interpreting it normally.
1375 1.134 kre */
1376 1.126 kre int pc;
1377 1.126 kre int psavelen;
1378 1.126 kre char *pstr;
1379 1.134 kre int line1 = plinno;
1380 1.106 christos
1381 1.138 kre VTRACE(DBG_PARSE, ("parsebackq: repackaging `` as $( )"));
1382 1.106 christos /*
1383 1.106 christos * Because the entire `...` is read here, we don't
1384 1.106 christos * need to bother the state stack. That will be used
1385 1.106 christos * (as appropriate) when the processed string is re-read.
1386 1.106 christos */
1387 1.126 kre STARTSTACKSTR(out);
1388 1.138 kre #ifdef DEBUG
1389 1.138 kre for (psavelen = 0;;psavelen++) {
1390 1.138 kre #else
1391 1.106 christos for (;;) {
1392 1.138 kre #endif
1393 1.106 christos if (needprompt) {
1394 1.106 christos setprompt(2);
1395 1.106 christos needprompt = 0;
1396 1.106 christos }
1397 1.138 kre pc = pgetc();
1398 1.134 kre if (pc == '`')
1399 1.134 kre break;
1400 1.134 kre switch (pc) {
1401 1.106 christos case '\\':
1402 1.138 kre pc = pgetc();
1403 1.138 kre #ifdef DEBUG
1404 1.138 kre psavelen++;
1405 1.138 kre #endif
1406 1.138 kre if (pc == '\n') { /* keep \ \n for later */
1407 1.138 kre plinno++;
1408 1.138 kre needprompt = doprompt;
1409 1.138 kre }
1410 1.126 kre if (pc != '\\' && pc != '`' && pc != '$'
1411 1.126 kre && (!ISDBLQUOTE() || pc != '"'))
1412 1.126 kre STPUTC('\\', out);
1413 1.106 christos break;
1414 1.106 christos
1415 1.106 christos case '\n':
1416 1.106 christos plinno++;
1417 1.106 christos needprompt = doprompt;
1418 1.106 christos break;
1419 1.106 christos
1420 1.106 christos case PEOF:
1421 1.138 kre startlinno = line1;
1422 1.106 christos synerror("EOF in backquote substitution");
1423 1.106 christos break;
1424 1.106 christos
1425 1.106 christos default:
1426 1.106 christos break;
1427 1.106 christos }
1428 1.109 christos STPUTC(pc, out);
1429 1.126 kre }
1430 1.126 kre STPUTC('\0', out);
1431 1.138 kre VTRACE(DBG_PARSE, (" read %d", psavelen));
1432 1.126 kre psavelen = out - stackblock();
1433 1.138 kre VTRACE(DBG_PARSE, (" produced %d\n", psavelen));
1434 1.126 kre if (psavelen > 0) {
1435 1.109 christos pstr = grabstackstr(out);
1436 1.134 kre setinputstring(pstr, 1, line1);
1437 1.126 kre }
1438 1.126 kre }
1439 1.106 christos nlpp = pbqlist;
1440 1.106 christos while (*nlpp)
1441 1.106 christos nlpp = &(*nlpp)->next;
1442 1.106 christos *nlpp = stalloc(sizeof(struct nodelist));
1443 1.106 christos (*nlpp)->next = NULL;
1444 1.106 christos parsebackquote = oldstyle;
1445 1.106 christos
1446 1.106 christos if (oldstyle) {
1447 1.106 christos saveprompt = doprompt;
1448 1.106 christos doprompt = 0;
1449 1.106 christos } else
1450 1.106 christos saveprompt = 0;
1451 1.106 christos
1452 1.138 kre lno = -plinno;
1453 1.142 kre n = list(0);
1454 1.138 kre lno += plinno;
1455 1.106 christos
1456 1.142 kre if (oldstyle) {
1457 1.142 kre if (peektoken() != TEOF)
1458 1.142 kre synexpect(-1, 0);
1459 1.106 christos doprompt = saveprompt;
1460 1.142 kre } else
1461 1.142 kre consumetoken(TRP);
1462 1.106 christos
1463 1.106 christos (*nlpp)->n = n;
1464 1.126 kre if (oldstyle) {
1465 1.106 christos /*
1466 1.106 christos * Start reading from old file again, ignoring any pushed back
1467 1.106 christos * tokens left from the backquote parsing
1468 1.106 christos */
1469 1.126 kre popfile();
1470 1.106 christos tokpushback = 0;
1471 1.106 christos }
1472 1.109 christos
1473 1.106 christos while (stackblocksize() <= savelen)
1474 1.106 christos growstackblock();
1475 1.109 christos STARTSTACKSTR(out);
1476 1.106 christos if (str) {
1477 1.109 christos memcpy(out, str, savelen);
1478 1.109 christos STADJUST(savelen, out);
1479 1.106 christos INTOFF;
1480 1.106 christos ckfree(str);
1481 1.106 christos sstr = str = NULL;
1482 1.106 christos INTON;
1483 1.106 christos }
1484 1.106 christos parsebackquote = savepbq;
1485 1.106 christos handler = savehandler;
1486 1.138 kre if (arinest || ISDBLQUOTE()) {
1487 1.139 kre STPUTC(CTLBACKQ | CTLQUOTE, out);
1488 1.138 kre while (--lno >= 0)
1489 1.139 kre STPUTC(CTLNONL, out);
1490 1.138 kre } else
1491 1.139 kre STPUTC(CTLBACKQ, out);
1492 1.106 christos
1493 1.109 christos return out;
1494 1.106 christos }
1495 1.94 christos
1496 1.112 christos /*
1497 1.112 christos * Parse a redirection operator. The parameter "out" points to a string
1498 1.112 christos * specifying the fd to be redirected. It is guaranteed to be either ""
1499 1.112 christos * or a numeric string (for now anyway). The parameter "c" contains the
1500 1.112 christos * first character of the redirection operator.
1501 1.112 christos *
1502 1.112 christos * Note the string "out" is on the stack, which we are about to clobber,
1503 1.112 christos * so process it first...
1504 1.112 christos */
1505 1.112 christos
1506 1.112 christos static void
1507 1.112 christos parseredir(const char *out, int c)
1508 1.112 christos {
1509 1.112 christos union node *np;
1510 1.112 christos int fd;
1511 1.112 christos
1512 1.147 kre fd = (*out == '\0') ? -1 : number(out);
1513 1.112 christos
1514 1.112 christos np = stalloc(sizeof(struct nfile));
1515 1.112 christos if (c == '>') {
1516 1.112 christos if (fd < 0)
1517 1.112 christos fd = 1;
1518 1.121 kre c = pgetc_linecont();
1519 1.112 christos if (c == '>')
1520 1.112 christos np->type = NAPPEND;
1521 1.112 christos else if (c == '|')
1522 1.112 christos np->type = NCLOBBER;
1523 1.112 christos else if (c == '&')
1524 1.112 christos np->type = NTOFD;
1525 1.112 christos else {
1526 1.112 christos np->type = NTO;
1527 1.112 christos pungetc();
1528 1.112 christos }
1529 1.112 christos } else { /* c == '<' */
1530 1.112 christos if (fd < 0)
1531 1.112 christos fd = 0;
1532 1.121 kre switch (c = pgetc_linecont()) {
1533 1.112 christos case '<':
1534 1.112 christos if (sizeof (struct nfile) != sizeof (struct nhere)) {
1535 1.112 christos np = stalloc(sizeof(struct nhere));
1536 1.112 christos np->nfile.fd = 0;
1537 1.112 christos }
1538 1.112 christos np->type = NHERE;
1539 1.140 kre heredoc = stalloc(sizeof(struct HereDoc));
1540 1.112 christos heredoc->here = np;
1541 1.116 christos heredoc->startline = plinno;
1542 1.121 kre if ((c = pgetc_linecont()) == '-') {
1543 1.112 christos heredoc->striptabs = 1;
1544 1.112 christos } else {
1545 1.112 christos heredoc->striptabs = 0;
1546 1.112 christos pungetc();
1547 1.112 christos }
1548 1.112 christos break;
1549 1.112 christos
1550 1.112 christos case '&':
1551 1.112 christos np->type = NFROMFD;
1552 1.112 christos break;
1553 1.112 christos
1554 1.112 christos case '>':
1555 1.112 christos np->type = NFROMTO;
1556 1.112 christos break;
1557 1.112 christos
1558 1.112 christos default:
1559 1.112 christos np->type = NFROM;
1560 1.112 christos pungetc();
1561 1.112 christos break;
1562 1.112 christos }
1563 1.112 christos }
1564 1.112 christos np->nfile.fd = fd;
1565 1.112 christos
1566 1.112 christos redirnode = np; /* this is the "value" of TRENODE */
1567 1.112 christos }
1568 1.112 christos
1569 1.144 kre /*
1570 1.144 kre * Called to parse a backslash escape sequence inside $'...'.
1571 1.144 kre * The backslash has already been read.
1572 1.144 kre */
1573 1.144 kre static char *
1574 1.144 kre readcstyleesc(char *out)
1575 1.144 kre {
1576 1.144 kre int c, vc, i, n;
1577 1.144 kre unsigned int v;
1578 1.144 kre
1579 1.144 kre c = pgetc();
1580 1.144 kre switch (c) {
1581 1.144 kre case '\0':
1582 1.144 kre case PEOF:
1583 1.144 kre synerror("Unterminated quoted string");
1584 1.144 kre case '\n':
1585 1.144 kre plinno++;
1586 1.144 kre if (doprompt)
1587 1.144 kre setprompt(2);
1588 1.144 kre else
1589 1.144 kre setprompt(0);
1590 1.144 kre return out;
1591 1.144 kre
1592 1.144 kre case '\\':
1593 1.144 kre case '\'':
1594 1.144 kre case '"':
1595 1.144 kre v = c;
1596 1.144 kre break;
1597 1.144 kre
1598 1.144 kre case 'a': v = '\a'; break;
1599 1.144 kre case 'b': v = '\b'; break;
1600 1.144 kre case 'e': v = '\033'; break;
1601 1.144 kre case 'f': v = '\f'; break;
1602 1.144 kre case 'n': v = '\n'; break;
1603 1.144 kre case 'r': v = '\r'; break;
1604 1.144 kre case 't': v = '\t'; break;
1605 1.144 kre case 'v': v = '\v'; break;
1606 1.144 kre
1607 1.144 kre case '0': case '1': case '2': case '3':
1608 1.144 kre case '4': case '5': case '6': case '7':
1609 1.144 kre v = c - '0';
1610 1.144 kre c = pgetc();
1611 1.144 kre if (c >= '0' && c <= '7') {
1612 1.144 kre v <<= 3;
1613 1.144 kre v += c - '0';
1614 1.144 kre c = pgetc();
1615 1.144 kre if (c >= '0' && c <= '7') {
1616 1.144 kre v <<= 3;
1617 1.144 kre v += c - '0';
1618 1.144 kre } else
1619 1.144 kre pungetc();
1620 1.144 kre } else
1621 1.144 kre pungetc();
1622 1.144 kre break;
1623 1.144 kre
1624 1.144 kre case 'c':
1625 1.144 kre c = pgetc();
1626 1.144 kre if (c < 0x3f || c > 0x7a || c == 0x60)
1627 1.144 kre synerror("Bad \\c escape sequence");
1628 1.144 kre if (c == '\\' && pgetc() != '\\')
1629 1.144 kre synerror("Bad \\c\\ escape sequence");
1630 1.144 kre if (c == '?')
1631 1.144 kre v = 127;
1632 1.144 kre else
1633 1.144 kre v = c & 0x1f;
1634 1.144 kre break;
1635 1.144 kre
1636 1.144 kre case 'x':
1637 1.144 kre n = 2;
1638 1.144 kre goto hexval;
1639 1.144 kre case 'u':
1640 1.144 kre n = 4;
1641 1.144 kre goto hexval;
1642 1.144 kre case 'U':
1643 1.144 kre n = 8;
1644 1.144 kre hexval:
1645 1.144 kre v = 0;
1646 1.144 kre for (i = 0; i < n; i++) {
1647 1.144 kre c = pgetc();
1648 1.144 kre if (c >= '0' && c <= '9')
1649 1.144 kre v = (v << 4) + c - '0';
1650 1.144 kre else if (c >= 'A' && c <= 'F')
1651 1.144 kre v = (v << 4) + c - 'A' + 10;
1652 1.144 kre else if (c >= 'a' && c <= 'f')
1653 1.144 kre v = (v << 4) + c - 'a' + 10;
1654 1.144 kre else {
1655 1.144 kre pungetc();
1656 1.144 kre break;
1657 1.144 kre }
1658 1.144 kre }
1659 1.144 kre if (n > 2 && v > 127) {
1660 1.144 kre if (v >= 0xd800 && v <= 0xdfff)
1661 1.144 kre synerror("Invalid \\u escape sequence");
1662 1.144 kre
1663 1.144 kre /* XXX should we use iconv here. What locale? */
1664 1.144 kre CHECKSTRSPACE(4, out);
1665 1.144 kre
1666 1.144 kre if (v <= 0x7ff) {
1667 1.144 kre USTPUTC(0xc0 | v >> 6, out);
1668 1.144 kre USTPUTC(0x80 | (v & 0x3f), out);
1669 1.144 kre return out;
1670 1.144 kre } else if (v <= 0xffff) {
1671 1.144 kre USTPUTC(0xe0 | v >> 12, out);
1672 1.144 kre USTPUTC(0x80 | ((v >> 6) & 0x3f), out);
1673 1.144 kre USTPUTC(0x80 | (v & 0x3f), out);
1674 1.144 kre return out;
1675 1.144 kre } else if (v <= 0x10ffff) {
1676 1.144 kre USTPUTC(0xf0 | v >> 18, out);
1677 1.144 kre USTPUTC(0x80 | ((v >> 12) & 0x3f), out);
1678 1.144 kre USTPUTC(0x80 | ((v >> 6) & 0x3f), out);
1679 1.144 kre USTPUTC(0x80 | (v & 0x3f), out);
1680 1.144 kre return out;
1681 1.144 kre }
1682 1.144 kre if (v > 127)
1683 1.144 kre v = '?';
1684 1.144 kre }
1685 1.144 kre break;
1686 1.144 kre default:
1687 1.144 kre synerror("Unknown $'' escape sequence");
1688 1.144 kre }
1689 1.144 kre vc = (char)v;
1690 1.144 kre
1691 1.144 kre /*
1692 1.144 kre * If we managed to create a \n from a \ sequence (no matter how)
1693 1.144 kre * then we replace it with the magic CRTCNL control char, which
1694 1.144 kre * will turn into a \n again later, but in the meantime, never
1695 1.144 kre * causes LINENO increments.
1696 1.144 kre */
1697 1.144 kre if (vc == '\n') {
1698 1.144 kre USTPUTC(CTLCNL, out);
1699 1.144 kre return out;
1700 1.144 kre }
1701 1.144 kre
1702 1.144 kre /*
1703 1.144 kre * We can't handle NUL bytes.
1704 1.144 kre * POSIX says we should skip till the closing quote.
1705 1.144 kre */
1706 1.144 kre if (vc == '\0') {
1707 1.144 kre while ((c = pgetc()) != '\'') {
1708 1.144 kre if (c == '\\')
1709 1.144 kre c = pgetc();
1710 1.144 kre if (c == PEOF)
1711 1.144 kre synerror("Unterminated quoted string");
1712 1.144 kre if (c == '\n') {
1713 1.144 kre plinno++;
1714 1.144 kre if (doprompt)
1715 1.144 kre setprompt(2);
1716 1.144 kre else
1717 1.144 kre setprompt(0);
1718 1.144 kre }
1719 1.144 kre }
1720 1.144 kre pungetc();
1721 1.144 kre return out;
1722 1.144 kre }
1723 1.153 kre if (NEEDESC(vc))
1724 1.144 kre USTPUTC(CTLESC, out);
1725 1.144 kre USTPUTC(vc, out);
1726 1.144 kre return out;
1727 1.144 kre }
1728 1.112 christos
1729 1.112 christos /*
1730 1.112 christos * The lowest level basic tokenizer.
1731 1.112 christos *
1732 1.112 christos * The next input byte (character) is in firstc, syn says which
1733 1.112 christos * syntax tables we are to use (basic, single or double quoted, or arith)
1734 1.112 christos * and magicq (used with sqsyntax and dqsyntax only) indicates that the
1735 1.112 christos * quote character itself is not special (used parsing here docs and similar)
1736 1.112 christos *
1737 1.112 christos * The result is the type of the next token (its value, when there is one,
1738 1.112 christos * is saved in the relevant global var - must fix that someday!) which is
1739 1.112 christos * also saved for re-reading ("lasttoken").
1740 1.112 christos *
1741 1.112 christos * Overall, this routine does far more parsing than it is supposed to.
1742 1.112 christos * That will also need fixing, someday...
1743 1.112 christos */
1744 1.1 cgd STATIC int
1745 1.111 christos readtoken1(int firstc, char const *syn, int magicq)
1746 1.54 christos {
1747 1.113 christos int c;
1748 1.103 christos char * out;
1749 1.1 cgd int len;
1750 1.1 cgd struct nodelist *bqlist;
1751 1.106 christos int quotef;
1752 1.96 christos VSS static_stack;
1753 1.106 christos VSS *stack = &static_stack;
1754 1.96 christos
1755 1.96 christos stack->prev = NULL;
1756 1.96 christos stack->cur = 0;
1757 1.96 christos
1758 1.96 christos syntax = syn;
1759 1.1 cgd
1760 1.1 cgd startlinno = plinno;
1761 1.51 christos varnest = 0;
1762 1.99 christos quoted = 0;
1763 1.108 christos if (syntax == DQSYNTAX)
1764 1.51 christos SETDBLQUOTE();
1765 1.1 cgd quotef = 0;
1766 1.1 cgd bqlist = NULL;
1767 1.11 jtc arinest = 0;
1768 1.11 jtc parenlevel = 0;
1769 1.134 kre elided_nl = 0;
1770 1.11 jtc
1771 1.1 cgd STARTSTACKSTR(out);
1772 1.113 christos
1773 1.113 christos for (c = firstc ;; c = pgetc_macro()) { /* until of token */
1774 1.134 kre if (syntax == ARISYNTAX)
1775 1.134 kre out = insert_elided_nl(out);
1776 1.148 kre CHECKSTRSPACE(6, out); /* permit 6 calls to USTPUTC */
1777 1.113 christos switch (syntax[c]) {
1778 1.156 kre case CFAKE:
1779 1.156 kre if (syntax == BASESYNTAX && varnest == 0)
1780 1.156 kre break;
1781 1.156 kre continue;
1782 1.113 christos case CNL: /* '\n' */
1783 1.146 kre if (syntax == BASESYNTAX && varnest == 0)
1784 1.113 christos break; /* exit loop */
1785 1.113 christos USTPUTC(c, out);
1786 1.113 christos plinno++;
1787 1.113 christos if (doprompt)
1788 1.113 christos setprompt(2);
1789 1.113 christos else
1790 1.113 christos setprompt(0);
1791 1.113 christos continue;
1792 1.113 christos
1793 1.144 kre case CSBACK: /* single quoted backslash */
1794 1.144 kre if ((quoted & QF) == CQ) {
1795 1.144 kre out = readcstyleesc(out);
1796 1.144 kre continue;
1797 1.144 kre }
1798 1.148 kre USTPUTC(CTLESC, out);
1799 1.144 kre /* FALLTHROUGH */
1800 1.113 christos case CWORD:
1801 1.113 christos USTPUTC(c, out);
1802 1.113 christos continue;
1803 1.144 kre
1804 1.113 christos case CCTL:
1805 1.113 christos if (!magicq || ISDBLQUOTE())
1806 1.113 christos USTPUTC(CTLESC, out);
1807 1.113 christos USTPUTC(c, out);
1808 1.113 christos continue;
1809 1.113 christos case CBACK: /* backslash */
1810 1.113 christos c = pgetc();
1811 1.113 christos if (c == PEOF) {
1812 1.113 christos USTPUTC('\\', out);
1813 1.113 christos pungetc();
1814 1.113 christos continue;
1815 1.113 christos }
1816 1.113 christos if (c == '\n') {
1817 1.1 cgd plinno++;
1818 1.134 kre elided_nl++;
1819 1.11 jtc if (doprompt)
1820 1.11 jtc setprompt(2);
1821 1.11 jtc else
1822 1.11 jtc setprompt(0);
1823 1.113 christos continue;
1824 1.113 christos }
1825 1.113 christos quotef = 1; /* current token is quoted */
1826 1.113 christos if (ISDBLQUOTE() && c != '\\' && c != '`' &&
1827 1.149 kre c != '$' && (c != '"' || magicq)) {
1828 1.153 kre /*
1829 1.153 kre * retain the \ (which we *know* needs CTLESC)
1830 1.153 kre * when in "..." and the following char is
1831 1.153 kre * not one of the magic few.)
1832 1.153 kre * Otherwise the \ has done its work, and
1833 1.153 kre * is dropped.
1834 1.153 kre */
1835 1.149 kre USTPUTC(CTLESC, out);
1836 1.113 christos USTPUTC('\\', out);
1837 1.149 kre }
1838 1.153 kre if (NEEDESC(c))
1839 1.113 christos USTPUTC(CTLESC, out);
1840 1.113 christos else if (!magicq) {
1841 1.157 kre USTPUTC(CTLESC, out);
1842 1.59 dsl USTPUTC(c, out);
1843 1.113 christos continue;
1844 1.113 christos }
1845 1.113 christos USTPUTC(c, out);
1846 1.113 christos continue;
1847 1.113 christos case CSQUOTE:
1848 1.113 christos if (syntax != SQSYNTAX) {
1849 1.113 christos if (!magicq)
1850 1.113 christos USTPUTC(CTLQUOTEMARK, out);
1851 1.113 christos quotef = 1;
1852 1.113 christos TS_PUSH();
1853 1.113 christos syntax = SQSYNTAX;
1854 1.113 christos quoted = SQ;
1855 1.113 christos continue;
1856 1.113 christos }
1857 1.113 christos if (magicq && arinest == 0 && varnest == 0) {
1858 1.113 christos /* Ignore inside quoted here document */
1859 1.1 cgd USTPUTC(c, out);
1860 1.113 christos continue;
1861 1.113 christos }
1862 1.113 christos /* End of single quotes... */
1863 1.113 christos TS_POP();
1864 1.157 kre if (syntax == BASESYNTAX)
1865 1.113 christos USTPUTC(CTLQUOTEEND, out);
1866 1.113 christos continue;
1867 1.113 christos case CDQUOTE:
1868 1.113 christos if (magicq && arinest == 0 && varnest == 0) {
1869 1.113 christos /* Ignore inside here document */
1870 1.56 dsl USTPUTC(c, out);
1871 1.113 christos continue;
1872 1.113 christos }
1873 1.113 christos quotef = 1;
1874 1.113 christos if (arinest) {
1875 1.56 dsl if (ISDBLQUOTE()) {
1876 1.157 kre USTPUTC(CTLQUOTEEND, out);
1877 1.96 christos TS_POP();
1878 1.1 cgd } else {
1879 1.96 christos TS_PUSH();
1880 1.56 dsl syntax = DQSYNTAX;
1881 1.56 dsl SETDBLQUOTE();
1882 1.56 dsl USTPUTC(CTLQUOTEMARK, out);
1883 1.1 cgd }
1884 1.113 christos continue;
1885 1.113 christos }
1886 1.113 christos if (magicq)
1887 1.113 christos continue;
1888 1.113 christos if (ISDBLQUOTE()) {
1889 1.113 christos TS_POP();
1890 1.157 kre USTPUTC(CTLQUOTEEND, out);
1891 1.113 christos } else {
1892 1.113 christos TS_PUSH();
1893 1.113 christos syntax = DQSYNTAX;
1894 1.113 christos SETDBLQUOTE();
1895 1.113 christos USTPUTC(CTLQUOTEMARK, out);
1896 1.113 christos }
1897 1.113 christos continue;
1898 1.113 christos case CVAR: /* '$' */
1899 1.134 kre out = insert_elided_nl(out);
1900 1.113 christos PARSESUB(); /* parse substitution */
1901 1.113 christos continue;
1902 1.113 christos case CENDVAR: /* CLOSEBRACE */
1903 1.113 christos if (varnest > 0 && !ISDBLQUOTE()) {
1904 1.113 christos TS_POP();
1905 1.113 christos USTPUTC(CTLENDVAR, out);
1906 1.113 christos } else {
1907 1.113 christos USTPUTC(c, out);
1908 1.113 christos }
1909 1.134 kre out = insert_elided_nl(out);
1910 1.113 christos continue;
1911 1.113 christos case CLP: /* '(' in arithmetic */
1912 1.113 christos parenlevel++;
1913 1.113 christos USTPUTC(c, out);
1914 1.113 christos continue;;
1915 1.113 christos case CRP: /* ')' in arithmetic */
1916 1.113 christos if (parenlevel > 0) {
1917 1.11 jtc USTPUTC(c, out);
1918 1.113 christos --parenlevel;
1919 1.113 christos } else {
1920 1.138 kre if (pgetc_linecont() == /*(*/ ')') {
1921 1.134 kre out = insert_elided_nl(out);
1922 1.113 christos if (--arinest == 0) {
1923 1.113 christos TS_POP();
1924 1.113 christos USTPUTC(CTLENDARI, out);
1925 1.113 christos } else
1926 1.138 kre USTPUTC(/*(*/ ')', out);
1927 1.11 jtc } else {
1928 1.141 kre break; /* to synerror() just below */
1929 1.141 kre #if 0 /* the old way, causes weird errors on bad input */
1930 1.113 christos /*
1931 1.113 christos * unbalanced parens
1932 1.113 christos * (don't 2nd guess - no error)
1933 1.113 christos */
1934 1.113 christos pungetc();
1935 1.138 kre USTPUTC(/*(*/ ')', out);
1936 1.141 kre #endif
1937 1.11 jtc }
1938 1.1 cgd }
1939 1.113 christos continue;
1940 1.113 christos case CBQUOTE: /* '`' */
1941 1.138 kre out = parsebackq(stack, out, &bqlist, 1, magicq);
1942 1.113 christos continue;
1943 1.113 christos case CEOF: /* --> c == PEOF */
1944 1.113 christos break; /* will exit loop */
1945 1.113 christos default:
1946 1.113 christos if (varnest == 0 && !ISDBLQUOTE())
1947 1.113 christos break; /* exit loop */
1948 1.113 christos USTPUTC(c, out);
1949 1.113 christos continue;
1950 1.1 cgd }
1951 1.113 christos break; /* break from switch -> break from for loop too */
1952 1.1 cgd }
1953 1.113 christos
1954 1.96 christos if (syntax == ARISYNTAX) {
1955 1.96 christos cleanup_state_stack(stack);
1956 1.138 kre synerror(/*((*/ "Missing '))'");
1957 1.96 christos }
1958 1.111 christos if (syntax != BASESYNTAX && /* ! parsebackquote && */ !magicq) {
1959 1.96 christos cleanup_state_stack(stack);
1960 1.1 cgd synerror("Unterminated quoted string");
1961 1.96 christos }
1962 1.1 cgd if (varnest != 0) {
1963 1.96 christos cleanup_state_stack(stack);
1964 1.1 cgd startlinno = plinno;
1965 1.51 christos /* { */
1966 1.1 cgd synerror("Missing '}'");
1967 1.1 cgd }
1968 1.113 christos
1969 1.138 kre STPUTC('\0', out);
1970 1.1 cgd len = out - stackblock();
1971 1.1 cgd out = stackblock();
1972 1.113 christos
1973 1.111 christos if (!magicq) {
1974 1.111 christos if ((c == '<' || c == '>')
1975 1.113 christos && quotef == 0 && (*out == '\0' || is_number(out))) {
1976 1.112 christos parseredir(out, c);
1977 1.96 christos cleanup_state_stack(stack);
1978 1.1 cgd return lasttoken = TREDIR;
1979 1.1 cgd } else {
1980 1.1 cgd pungetc();
1981 1.1 cgd }
1982 1.1 cgd }
1983 1.113 christos
1984 1.138 kre VTRACE(DBG_PARSE,
1985 1.138 kre ("readtoken1 %sword \"%s\", completed%s (%d) left %d enl\n",
1986 1.138 kre (quotef ? "quoted " : ""), out, (bqlist ? " with cmdsubs" : ""),
1987 1.138 kre len, elided_nl));
1988 1.138 kre
1989 1.1 cgd quoteflag = quotef;
1990 1.1 cgd backquotelist = bqlist;
1991 1.1 cgd grabstackblock(len);
1992 1.1 cgd wordtext = out;
1993 1.96 christos cleanup_state_stack(stack);
1994 1.1 cgd return lasttoken = TWORD;
1995 1.1 cgd /* end of readtoken routine */
1996 1.1 cgd
1997 1.1 cgd
1998 1.1 cgd /*
1999 1.1 cgd * Parse a substitution. At this point, we have read the dollar sign
2000 1.1 cgd * and nothing else.
2001 1.1 cgd */
2002 1.1 cgd
2003 1.1 cgd parsesub: {
2004 1.1 cgd int subtype;
2005 1.1 cgd int typeloc;
2006 1.1 cgd int flags;
2007 1.1 cgd char *p;
2008 1.1 cgd static const char types[] = "}-+?=";
2009 1.1 cgd
2010 1.121 kre c = pgetc_linecont();
2011 1.144 kre if (c == '(' /*)*/) { /* $(command) or $((arith)) */
2012 1.134 kre if (pgetc_linecont() == '(' /*')'*/ ) {
2013 1.134 kre out = insert_elided_nl(out);
2014 1.11 jtc PARSEARITH();
2015 1.11 jtc } else {
2016 1.134 kre out = insert_elided_nl(out);
2017 1.11 jtc pungetc();
2018 1.138 kre out = parsebackq(stack, out, &bqlist, 0, magicq);
2019 1.11 jtc }
2020 1.144 kre } else if (c == OPENBRACE || is_name(c) || is_special(c)) {
2021 1.1 cgd USTPUTC(CTLVAR, out);
2022 1.1 cgd typeloc = out - stackblock();
2023 1.1 cgd USTPUTC(VSNORMAL, out);
2024 1.1 cgd subtype = VSNORMAL;
2025 1.84 christos flags = 0;
2026 1.51 christos if (c == OPENBRACE) {
2027 1.121 kre c = pgetc_linecont();
2028 1.23 christos if (c == '#') {
2029 1.127 kre if ((c = pgetc_linecont()) == CLOSEBRACE)
2030 1.26 christos c = '#';
2031 1.127 kre else if (is_name(c) || isdigit(c))
2032 1.26 christos subtype = VSLENGTH;
2033 1.127 kre else if (is_special(c)) {
2034 1.127 kre /*
2035 1.128 kre * ${#} is $# - the number of sh params
2036 1.127 kre * ${##} is the length of ${#}
2037 1.128 kre * ${###} is ${#} with as much nothing
2038 1.128 kre * as possible removed from start
2039 1.127 kre * ${##1} is ${#} with leading 1 gone
2040 1.128 kre * ${##\#} is ${#} with leading # gone
2041 1.127 kre *
2042 1.127 kre * this stuff is UGLY!
2043 1.127 kre */
2044 1.127 kre if (pgetc_linecont() == CLOSEBRACE) {
2045 1.127 kre pungetc();
2046 1.127 kre subtype = VSLENGTH;
2047 1.127 kre } else {
2048 1.127 kre static char cbuf[2];
2049 1.128 kre
2050 1.128 kre pungetc(); /* would like 2 */
2051 1.128 kre cbuf[0] = c; /* so ... */
2052 1.127 kre cbuf[1] = '\0';
2053 1.127 kre pushstring(cbuf, 1, NULL);
2054 1.128 kre c = '#'; /* ${#:...} */
2055 1.128 kre subtype = 0; /* .. or similar */
2056 1.127 kre }
2057 1.127 kre } else {
2058 1.127 kre pungetc();
2059 1.127 kre c = '#';
2060 1.127 kre subtype = 0;
2061 1.127 kre }
2062 1.23 christos }
2063 1.23 christos else
2064 1.23 christos subtype = 0;
2065 1.1 cgd }
2066 1.1 cgd if (is_name(c)) {
2067 1.84 christos p = out;
2068 1.1 cgd do {
2069 1.1 cgd STPUTC(c, out);
2070 1.121 kre c = pgetc_linecont();
2071 1.1 cgd } while (is_in_name(c));
2072 1.134 kre #if 0
2073 1.84 christos if (out - p == 6 && strncmp(p, "LINENO", 6) == 0) {
2074 1.134 kre int i;
2075 1.134 kre int linno;
2076 1.134 kre char buf[10];
2077 1.134 kre
2078 1.134 kre /*
2079 1.134 kre * The "LINENO hack"
2080 1.134 kre *
2081 1.134 kre * Replace the variable name with the
2082 1.134 kre * current line number.
2083 1.134 kre */
2084 1.84 christos linno = plinno;
2085 1.84 christos if (funclinno != 0)
2086 1.84 christos linno -= funclinno - 1;
2087 1.84 christos snprintf(buf, sizeof(buf), "%d", linno);
2088 1.84 christos STADJUST(-6, out);
2089 1.84 christos for (i = 0; buf[i] != '\0'; i++)
2090 1.84 christos STPUTC(buf[i], out);
2091 1.84 christos flags |= VSLINENO;
2092 1.84 christos }
2093 1.134 kre #endif
2094 1.34 christos } else if (is_digit(c)) {
2095 1.33 christos do {
2096 1.134 kre STPUTC(c, out);
2097 1.121 kre c = pgetc_linecont();
2098 1.114 christos } while (subtype != VSNORMAL && is_digit(c));
2099 1.34 christos }
2100 1.34 christos else if (is_special(c)) {
2101 1.34 christos USTPUTC(c, out);
2102 1.121 kre c = pgetc_linecont();
2103 1.1 cgd }
2104 1.96 christos else {
2105 1.126 kre badsub:
2106 1.96 christos cleanup_state_stack(stack);
2107 1.96 christos synerror("Bad substitution");
2108 1.96 christos }
2109 1.33 christos
2110 1.1 cgd STPUTC('=', out);
2111 1.1 cgd if (subtype == 0) {
2112 1.23 christos switch (c) {
2113 1.23 christos case ':':
2114 1.84 christos flags |= VSNUL;
2115 1.121 kre c = pgetc_linecont();
2116 1.23 christos /*FALLTHROUGH*/
2117 1.23 christos default:
2118 1.23 christos p = strchr(types, c);
2119 1.23 christos if (p == NULL)
2120 1.23 christos goto badsub;
2121 1.23 christos subtype = p - types + VSNORMAL;
2122 1.23 christos break;
2123 1.23 christos case '%':
2124 1.30 christos case '#':
2125 1.23 christos {
2126 1.23 christos int cc = c;
2127 1.23 christos subtype = c == '#' ? VSTRIMLEFT :
2128 1.23 christos VSTRIMRIGHT;
2129 1.121 kre c = pgetc_linecont();
2130 1.23 christos if (c == cc)
2131 1.23 christos subtype++;
2132 1.23 christos else
2133 1.23 christos pungetc();
2134 1.23 christos break;
2135 1.23 christos }
2136 1.1 cgd }
2137 1.1 cgd } else {
2138 1.127 kre if (subtype == VSLENGTH && c != /*{*/ '}')
2139 1.127 kre synerror("no modifiers allowed with ${#var}");
2140 1.1 cgd pungetc();
2141 1.1 cgd }
2142 1.157 kre if (quoted || arinest)
2143 1.1 cgd flags |= VSQUOTE;
2144 1.98 christos if (subtype >= VSTRIMLEFT && subtype <= VSTRIMRIGHTMAX)
2145 1.98 christos flags |= VSPATQ;
2146 1.1 cgd *(stackblock() + typeloc) = subtype | flags;
2147 1.96 christos if (subtype != VSNORMAL) {
2148 1.96 christos TS_PUSH();
2149 1.96 christos varnest++;
2150 1.96 christos arinest = 0;
2151 1.96 christos if (subtype > VSASSIGN) { /* # ## % %% */
2152 1.96 christos syntax = BASESYNTAX;
2153 1.157 kre quoted = 0;
2154 1.96 christos }
2155 1.96 christos }
2156 1.144 kre } else if (c == '\'' && syntax == BASESYNTAX) {
2157 1.144 kre USTPUTC(CTLQUOTEMARK, out);
2158 1.144 kre quotef = 1;
2159 1.144 kre TS_PUSH();
2160 1.144 kre syntax = SQSYNTAX;
2161 1.144 kre quoted = CQ;
2162 1.144 kre } else {
2163 1.144 kre USTPUTC('$', out);
2164 1.144 kre pungetc();
2165 1.1 cgd }
2166 1.1 cgd goto parsesub_return;
2167 1.1 cgd }
2168 1.1 cgd
2169 1.1 cgd
2170 1.1 cgd /*
2171 1.11 jtc * Parse an arithmetic expansion (indicate start of one and set state)
2172 1.1 cgd */
2173 1.11 jtc parsearith: {
2174 1.1 cgd
2175 1.131 kre #if 0
2176 1.96 christos if (syntax == ARISYNTAX) {
2177 1.96 christos /*
2178 1.96 christos * we collapse embedded arithmetic expansion to
2179 1.96 christos * parentheses, which should be equivalent
2180 1.134 kre *
2181 1.134 kre * XXX It isn't, must fix, soonish...
2182 1.96 christos */
2183 1.138 kre USTPUTC('(' /*)*/, out);
2184 1.138 kre USTPUTC('(' /*)*/, out);
2185 1.96 christos /*
2186 1.96 christos * Need 2 of them because there will (should be)
2187 1.96 christos * two closing ))'s to follow later.
2188 1.96 christos */
2189 1.96 christos parenlevel += 2;
2190 1.131 kre } else
2191 1.131 kre #endif
2192 1.131 kre {
2193 1.11 jtc USTPUTC(CTLARI, out);
2194 1.51 christos if (ISDBLQUOTE())
2195 1.41 mycroft USTPUTC('"',out);
2196 1.41 mycroft else
2197 1.41 mycroft USTPUTC(' ',out);
2198 1.131 kre
2199 1.132 kre TS_PUSH();
2200 1.132 kre syntax = ARISYNTAX;
2201 1.132 kre arinest = 1;
2202 1.132 kre varnest = 0;
2203 1.1 cgd }
2204 1.11 jtc goto parsearith_return;
2205 1.1 cgd }
2206 1.1 cgd
2207 1.11 jtc } /* end of readtoken */
2208 1.1 cgd
2209 1.1 cgd
2210 1.1 cgd
2211 1.134 kre
2212 1.11 jtc #ifdef mkinit
2213 1.140 kre INCLUDE "parser.h"
2214 1.140 kre
2215 1.11 jtc RESET {
2216 1.140 kre psp.v_current_parser = &parse_state;
2217 1.138 kre
2218 1.140 kre parse_state.ps_tokpushback = 0;
2219 1.140 kre parse_state.ps_checkkwd = 0;
2220 1.140 kre parse_state.ps_heredoclist = NULL;
2221 1.1 cgd }
2222 1.1 cgd #endif
2223 1.1 cgd
2224 1.1 cgd /*
2225 1.1 cgd * Returns true if the text contains nothing to expand (no dollar signs
2226 1.1 cgd * or backquotes).
2227 1.1 cgd */
2228 1.1 cgd
2229 1.1 cgd STATIC int
2230 1.54 christos noexpand(char *text)
2231 1.54 christos {
2232 1.32 tls char *p;
2233 1.32 tls char c;
2234 1.1 cgd
2235 1.1 cgd p = text;
2236 1.1 cgd while ((c = *p++) != '\0') {
2237 1.157 kre if (c == CTLQUOTEMARK || c == CTLQUOTEEND)
2238 1.41 mycroft continue;
2239 1.1 cgd if (c == CTLESC)
2240 1.1 cgd p++;
2241 1.38 mrg else if (BASESYNTAX[(int)c] == CCTL)
2242 1.1 cgd return 0;
2243 1.1 cgd }
2244 1.1 cgd return 1;
2245 1.1 cgd }
2246 1.1 cgd
2247 1.1 cgd
2248 1.1 cgd /*
2249 1.1 cgd * Return true if the argument is a legal variable name (a letter or
2250 1.1 cgd * underscore followed by zero or more letters, underscores, and digits).
2251 1.1 cgd */
2252 1.1 cgd
2253 1.1 cgd int
2254 1.154 kre goodname(const char *name)
2255 1.108 christos {
2256 1.154 kre const char *p;
2257 1.1 cgd
2258 1.1 cgd p = name;
2259 1.1 cgd if (! is_name(*p))
2260 1.1 cgd return 0;
2261 1.1 cgd while (*++p) {
2262 1.1 cgd if (! is_in_name(*p))
2263 1.1 cgd return 0;
2264 1.1 cgd }
2265 1.1 cgd return 1;
2266 1.1 cgd }
2267 1.1 cgd
2268 1.156 kre int
2269 1.156 kre isassignment(const char *p)
2270 1.156 kre {
2271 1.156 kre if (!is_name(*p))
2272 1.156 kre return 0;
2273 1.156 kre while (*++p != '=')
2274 1.156 kre if (*p == '\0' || !is_in_name(*p))
2275 1.156 kre return 0;
2276 1.156 kre return 1;
2277 1.156 kre }
2278 1.156 kre
2279 1.142 kre /*
2280 1.142 kre * skip past any \n's, and leave lasttoken set to whatever follows
2281 1.142 kre */
2282 1.142 kre STATIC void
2283 1.142 kre linebreak(void)
2284 1.142 kre {
2285 1.142 kre while (readtoken() == TNL)
2286 1.142 kre ;
2287 1.142 kre }
2288 1.142 kre
2289 1.142 kre /*
2290 1.142 kre * The next token must be "token" -- check, then move past it
2291 1.142 kre */
2292 1.142 kre STATIC void
2293 1.142 kre consumetoken(int token)
2294 1.142 kre {
2295 1.142 kre if (readtoken() != token) {
2296 1.142 kre VTRACE(DBG_PARSE, ("consumetoken(%d): expecting %s got %s",
2297 1.142 kre token, tokname[token], tokname[lasttoken]));
2298 1.142 kre CVTRACE(DBG_PARSE, (lasttoken==TWORD), (" \"%s\"", wordtext));
2299 1.142 kre VTRACE(DBG_PARSE, ("\n"));
2300 1.142 kre synexpect(token, NULL);
2301 1.142 kre }
2302 1.142 kre }
2303 1.1 cgd
2304 1.1 cgd /*
2305 1.1 cgd * Called when an unexpected token is read during the parse. The argument
2306 1.1 cgd * is the token that is expected, or -1 if more than one type of token can
2307 1.1 cgd * occur at this point.
2308 1.1 cgd */
2309 1.1 cgd
2310 1.1 cgd STATIC void
2311 1.108 christos synexpect(int token, const char *text)
2312 1.22 cgd {
2313 1.1 cgd char msg[64];
2314 1.108 christos char *p;
2315 1.108 christos
2316 1.108 christos if (lasttoken == TWORD) {
2317 1.108 christos size_t len = strlen(wordtext);
2318 1.108 christos
2319 1.108 christos if (len <= 13)
2320 1.108 christos fmtstr(msg, 34, "Word \"%.13s\" unexpected", wordtext);
2321 1.108 christos else
2322 1.108 christos fmtstr(msg, 34,
2323 1.108 christos "Word \"%.10s...\" unexpected", wordtext);
2324 1.108 christos } else
2325 1.108 christos fmtstr(msg, 34, "%s unexpected", tokname[lasttoken]);
2326 1.108 christos
2327 1.108 christos p = strchr(msg, '\0');
2328 1.108 christos if (text)
2329 1.108 christos fmtstr(p, 30, " (expecting \"%.10s\")", text);
2330 1.108 christos else if (token >= 0)
2331 1.108 christos fmtstr(p, 30, " (expecting %s)", tokname[token]);
2332 1.1 cgd
2333 1.1 cgd synerror(msg);
2334 1.39 mycroft /* NOTREACHED */
2335 1.1 cgd }
2336 1.1 cgd
2337 1.1 cgd
2338 1.1 cgd STATIC void
2339 1.54 christos synerror(const char *msg)
2340 1.54 christos {
2341 1.124 kre error("%d: Syntax error: %s", startlinno, msg);
2342 1.39 mycroft /* NOTREACHED */
2343 1.11 jtc }
2344 1.11 jtc
2345 1.11 jtc STATIC void
2346 1.54 christos setprompt(int which)
2347 1.54 christos {
2348 1.11 jtc whichprompt = which;
2349 1.11 jtc
2350 1.35 christos #ifndef SMALL
2351 1.11 jtc if (!el)
2352 1.14 cgd #endif
2353 1.11 jtc out2str(getprompt(NULL));
2354 1.11 jtc }
2355 1.11 jtc
2356 1.11 jtc /*
2357 1.121 kre * handle getting the next character, while ignoring \ \n
2358 1.121 kre * (which is a little tricky as we only have one char of pushback
2359 1.121 kre * and we need that one elsewhere).
2360 1.121 kre */
2361 1.121 kre STATIC int
2362 1.121 kre pgetc_linecont(void)
2363 1.121 kre {
2364 1.121 kre int c;
2365 1.121 kre
2366 1.121 kre while ((c = pgetc_macro()) == '\\') {
2367 1.121 kre c = pgetc();
2368 1.121 kre if (c == '\n') {
2369 1.121 kre plinno++;
2370 1.134 kre elided_nl++;
2371 1.121 kre if (doprompt)
2372 1.121 kre setprompt(2);
2373 1.121 kre else
2374 1.121 kre setprompt(0);
2375 1.121 kre } else {
2376 1.121 kre pungetc();
2377 1.121 kre /* Allow the backslash to be pushed back. */
2378 1.121 kre pushstring("\\", 1, NULL);
2379 1.121 kre return (pgetc());
2380 1.121 kre }
2381 1.121 kre }
2382 1.121 kre return (c);
2383 1.121 kre }
2384 1.121 kre
2385 1.121 kre /*
2386 1.11 jtc * called by editline -- any expansions to the prompt
2387 1.11 jtc * should be added here.
2388 1.11 jtc */
2389 1.43 christos const char *
2390 1.45 cgd getprompt(void *unused)
2391 1.108 christos {
2392 1.140 kre char *p;
2393 1.140 kre const char *cp;
2394 1.143 kre int wp;
2395 1.140 kre
2396 1.140 kre if (!doprompt)
2397 1.140 kre return "";
2398 1.140 kre
2399 1.140 kre VTRACE(DBG_PARSE|DBG_EXPAND, ("getprompt %d\n", whichprompt));
2400 1.140 kre
2401 1.143 kre switch (wp = whichprompt) {
2402 1.11 jtc case 0:
2403 1.11 jtc return "";
2404 1.11 jtc case 1:
2405 1.140 kre p = ps1val();
2406 1.140 kre break;
2407 1.11 jtc case 2:
2408 1.140 kre p = ps2val();
2409 1.140 kre break;
2410 1.11 jtc default:
2411 1.11 jtc return "<internal prompt error>";
2412 1.11 jtc }
2413 1.140 kre if (p == NULL)
2414 1.140 kre return "";
2415 1.140 kre
2416 1.140 kre VTRACE(DBG_PARSE|DBG_EXPAND, ("prompt <<%s>>\n", p));
2417 1.140 kre
2418 1.140 kre cp = expandstr(p, plinno);
2419 1.143 kre whichprompt = wp; /* history depends on it not changing */
2420 1.140 kre
2421 1.140 kre VTRACE(DBG_PARSE|DBG_EXPAND, ("prompt -> <<%s>>\n", cp));
2422 1.140 kre
2423 1.140 kre return cp;
2424 1.140 kre }
2425 1.140 kre
2426 1.140 kre /*
2427 1.140 kre * Expand a string ... used for expanding prompts (PS1...)
2428 1.140 kre *
2429 1.140 kre * Never return NULL, always some string (return input string if invalid)
2430 1.145 kre *
2431 1.145 kre * The internal routine does the work, leaving the result on the
2432 1.145 kre * stack (or in a static string, or even the input string) and
2433 1.145 kre * handles parser recursion, and cleanup after an error while parsing.
2434 1.145 kre *
2435 1.145 kre * The visible interface copies the result off the stack (if it is there),
2436 1.145 kre * and handles stack management, leaving the stack in the exact same
2437 1.145 kre * state it was when expandstr() was called (so it can be used part way
2438 1.145 kre * through building a stack data structure - as in when PS2 is being
2439 1.145 kre * expanded half way through reading a "command line")
2440 1.145 kre *
2441 1.145 kre * on error, expandonstack() cleans up the parser state, but then
2442 1.145 kre * simply jumps out through expandstr() withut doing any stack cleanup,
2443 1.145 kre * which is OK, as the error handler must deal with that anyway.
2444 1.145 kre *
2445 1.145 kre * The split into two funcs is to avoid problems with setjmp/longjmp
2446 1.145 kre * and local variables which could otherwise be optimised into bizarre
2447 1.145 kre * behaviour.
2448 1.140 kre */
2449 1.145 kre static const char *
2450 1.159 kre expandonstack(char *ps, int cmdsub, int lineno)
2451 1.140 kre {
2452 1.140 kre union node n;
2453 1.140 kre struct jmploc jmploc;
2454 1.140 kre struct jmploc *const savehandler = handler;
2455 1.140 kre struct parsefile *const savetopfile = getcurrentfile();
2456 1.140 kre const int save_x = xflag;
2457 1.140 kre struct parse_state new_state = init_parse_state;
2458 1.140 kre struct parse_state *const saveparser = psp.v_current_parser;
2459 1.140 kre const char *result = NULL;
2460 1.140 kre
2461 1.140 kre if (!setjmp(jmploc.loc)) {
2462 1.140 kre handler = &jmploc;
2463 1.140 kre
2464 1.140 kre psp.v_current_parser = &new_state;
2465 1.140 kre setinputstring(ps, 1, lineno);
2466 1.140 kre
2467 1.140 kre readtoken1(pgetc(), DQSYNTAX, 1);
2468 1.159 kre if (backquotelist != NULL) {
2469 1.159 kre if (!cmdsub)
2470 1.159 kre result = ps;
2471 1.159 kre else if (!promptcmds)
2472 1.159 kre result = "-o promptcmds not set: ";
2473 1.159 kre }
2474 1.159 kre if (result == NULL) {
2475 1.140 kre n.narg.type = NARG;
2476 1.140 kre n.narg.next = NULL;
2477 1.140 kre n.narg.text = wordtext;
2478 1.140 kre n.narg.lineno = lineno;
2479 1.140 kre n.narg.backquote = backquotelist;
2480 1.140 kre
2481 1.140 kre xflag = 0; /* we might be expanding PS4 ... */
2482 1.140 kre expandarg(&n, NULL, 0);
2483 1.140 kre result = stackblock();
2484 1.140 kre }
2485 1.140 kre INTOFF;
2486 1.140 kre }
2487 1.140 kre psp.v_current_parser = saveparser;
2488 1.140 kre xflag = save_x;
2489 1.140 kre popfilesupto(savetopfile);
2490 1.140 kre handler = savehandler;
2491 1.140 kre
2492 1.151 kre if (exception == EXEXIT)
2493 1.151 kre longjmp(handler->loc, 1);
2494 1.151 kre
2495 1.140 kre if (result != NULL) {
2496 1.140 kre INTON;
2497 1.140 kre } else {
2498 1.140 kre if (exception == EXINT)
2499 1.140 kre exraise(SIGINT);
2500 1.140 kre result = ps;
2501 1.140 kre }
2502 1.140 kre
2503 1.140 kre return result;
2504 1.1 cgd }
2505 1.145 kre
2506 1.145 kre const char *
2507 1.145 kre expandstr(char *ps, int lineno)
2508 1.145 kre {
2509 1.145 kre const char *result = NULL;
2510 1.145 kre struct stackmark smark;
2511 1.145 kre static char *buffer = NULL; /* storage for prompt, never freed */
2512 1.145 kre static size_t bufferlen = 0;
2513 1.145 kre
2514 1.145 kre setstackmark(&smark);
2515 1.145 kre /*
2516 1.145 kre * At this point we anticipate that there may be a string
2517 1.145 kre * growing on the stack, but we have no idea how big it is.
2518 1.145 kre * However we know that it cannot be bigger than the current
2519 1.145 kre * allocated stack block, so simply reserve the whole thing,
2520 1.145 kre * then we can use the stack without barfing all over what
2521 1.145 kre * is there already... (the stack mark undoes this later.)
2522 1.145 kre */
2523 1.145 kre (void) stalloc(stackblocksize());
2524 1.145 kre
2525 1.159 kre result = expandonstack(ps, 1, lineno);
2526 1.145 kre
2527 1.145 kre if (__predict_true(result == stackblock())) {
2528 1.145 kre size_t len = strlen(result) + 1;
2529 1.145 kre
2530 1.145 kre /*
2531 1.145 kre * the result (usual case) is on the stack, which we
2532 1.145 kre * are just about to discard (popstackmark()) so we
2533 1.145 kre * need to move it somewhere safe first.
2534 1.145 kre */
2535 1.145 kre
2536 1.145 kre if (__predict_false(len > bufferlen)) {
2537 1.145 kre char *new;
2538 1.145 kre size_t newlen = bufferlen;
2539 1.145 kre
2540 1.145 kre if (__predict_false(len > (SIZE_MAX >> 4))) {
2541 1.145 kre result = "huge prompt: ";
2542 1.145 kre goto getout;
2543 1.145 kre }
2544 1.145 kre
2545 1.145 kre if (newlen == 0)
2546 1.145 kre newlen = 32;
2547 1.145 kre while (newlen <= len)
2548 1.145 kre newlen <<= 1;
2549 1.145 kre
2550 1.145 kre new = (char *)realloc(buffer, newlen);
2551 1.145 kre
2552 1.145 kre if (__predict_false(new == NULL)) {
2553 1.145 kre /*
2554 1.145 kre * this should rarely (if ever) happen
2555 1.145 kre * but we must do something when it does...
2556 1.145 kre */
2557 1.145 kre result = "No mem for prompt: ";
2558 1.145 kre goto getout;
2559 1.145 kre } else {
2560 1.145 kre buffer = new;
2561 1.145 kre bufferlen = newlen;
2562 1.145 kre }
2563 1.145 kre }
2564 1.145 kre (void)memcpy(buffer, result, len);
2565 1.145 kre result = buffer;
2566 1.145 kre }
2567 1.145 kre
2568 1.145 kre getout:;
2569 1.145 kre popstackmark(&smark);
2570 1.145 kre
2571 1.145 kre return result;
2572 1.145 kre }
2573 1.159 kre
2574 1.159 kre /*
2575 1.159 kre * and a simpler version, which does no $( ) expansions, for
2576 1.159 kre * use during shell startup when we know we are not parsing,
2577 1.159 kre * and so the stack is not in use - we can do what we like,
2578 1.159 kre * and do not need to clean up (that's handled externally).
2579 1.159 kre *
2580 1.159 kre * Simply return the result, even if it is on the stack
2581 1.159 kre */
2582 1.159 kre const char *
2583 1.159 kre expandenv(char *arg)
2584 1.159 kre {
2585 1.159 kre return expandonstack(arg, 0, 0);
2586 1.159 kre }
2587