trap.c revision 1.1 1 /*
2 * signal handling
3 */
4
5 /* Kludge to avoid bogus re-declaration of sigtraps[] error on AIX 3.2.5 */
6 #define FROM_TRAP_C
7 #include "sh.h"
8
9 /* Table is indexed by signal number
10 *
11 * The script siglist.sh generates siglist.out, which is a sorted, complete
12 * list of signals
13 */
14 Trap sigtraps[SIGNALS+1] = {
15 { SIGEXIT_, "EXIT", "Signal 0" },
16 #include "siglist.out" /* generated by siglist.sh */
17 { SIGERR_, "ERR", "Error handler" },
18 };
19
20 static struct sigaction Sigact_ign, Sigact_trap;
21
22 void
23 inittraps()
24 {
25 #ifdef HAVE_SYS_SIGLIST
26 # ifndef SYS_SIGLIST_DECLARED
27 extern char *sys_siglist[];
28 # endif
29 int i;
30
31 /* Use system description, if available, for unknown signals... */
32 for (i = 0; i < NSIG; i++)
33 if (!sigtraps[i].name && sys_siglist[i][0])
34 sigtraps[i].mess = sys_siglist[i];
35 #endif /* HAVE_SYS_SIGLIST */
36
37 sigemptyset(&Sigact_ign.sa_mask);
38 Sigact_ign.sa_flags = KSH_SA_FLAGS;
39 Sigact_ign.sa_handler = SIG_IGN;
40 Sigact_trap = Sigact_ign;
41 Sigact_trap.sa_handler = trapsig;
42
43 sigtraps[SIGINT].flags |= TF_DFL_INTR | TF_TTY_INTR;
44 sigtraps[SIGQUIT].flags |= TF_DFL_INTR | TF_TTY_INTR;
45 sigtraps[SIGTERM].flags |= TF_DFL_INTR;/* not fatal for interactive */
46 sigtraps[SIGHUP].flags |= TF_FATAL;
47 sigtraps[SIGCHLD].flags |= TF_SHELL_USES;
48
49 /* these are always caught so we can clean up any temproary files. */
50 setsig(&sigtraps[SIGINT], trapsig, SS_RESTORE_ORIG);
51 setsig(&sigtraps[SIGQUIT], trapsig, SS_RESTORE_ORIG);
52 setsig(&sigtraps[SIGTERM], trapsig, SS_RESTORE_ORIG);
53 setsig(&sigtraps[SIGHUP], trapsig, SS_RESTORE_ORIG);
54 }
55
56 #ifdef KSH
57 static RETSIGTYPE alarm_catcher ARGS((int sig));
58
59 void
60 alarm_init()
61 {
62 sigtraps[SIGALRM].flags |= TF_SHELL_USES;
63 setsig(&sigtraps[SIGALRM], alarm_catcher,
64 SS_RESTORE_ORIG|SS_FORCE|SS_SHTRAP);
65 }
66
67 static RETSIGTYPE
68 alarm_catcher(sig)
69 int sig;
70 {
71 if (ksh_tmout_state == TMOUT_READING) {
72 int left = alarm(0);
73
74 if (left == 0) {
75 ksh_tmout_state = TMOUT_LEAVING;
76 intrsig = 1;
77 } else
78 alarm(left);
79 }
80 return RETSIGVAL;
81 }
82 #endif /* KSH */
83
84 Trap *
85 gettrap(name)
86 const char *name;
87 {
88 int i;
89 register Trap *p;
90
91 if (digit(*name)) {
92 int n;
93
94 if (getn(name, &n) && 0 <= n && n < SIGNALS)
95 return &sigtraps[n];
96 return NULL;
97 }
98 for (p = sigtraps, i = SIGNALS+1; --i >= 0; p++)
99 if (p->name && strcasecmp(p->name, name) == 0)
100 return p;
101 return NULL;
102 }
103
104 /*
105 * trap signal handler
106 */
107 RETSIGTYPE
108 trapsig(i)
109 int i;
110 {
111 Trap *p = &sigtraps[i];
112
113 trap = p->set = 1;
114 if (p->flags & TF_DFL_INTR)
115 intrsig = 1;
116 if ((p->flags & TF_FATAL) && !p->trap) {
117 fatal_trap = 1;
118 intrsig = 1;
119 }
120 if (p->shtrap)
121 (*p->shtrap)(i);
122 #ifdef V7_SIGNALS
123 if (sigtraps[i].cursig == trapsig) /* this for SIGCHLD,SIGALRM */
124 sigaction(i, &Sigact_trap, (struct sigaction *) 0);
125 #endif /* V7_SIGNALS */
126 return RETSIGVAL;
127 }
128
129 /* called when we want to allow the user to ^C out of something - won't
130 * work if user has trapped SIGINT.
131 */
132 void
133 intrcheck()
134 {
135 if (intrsig)
136 runtraps(TF_DFL_INTR|TF_FATAL);
137 }
138
139 /* called after EINTR to check if a signal with normally causes process
140 * termination has been received.
141 */
142 int
143 fatal_trap_check()
144 {
145 int i;
146 Trap *p;
147
148 /* todo: should check if signal is fatal, not the TF_DFL_INTR flag */
149 for (p = sigtraps, i = SIGNALS+1; --i >= 0; p++)
150 if (p->set && (p->flags & (TF_DFL_INTR|TF_FATAL)))
151 /* return value is used as an exit code */
152 return 128 + p->signal;
153 return 0;
154 }
155
156 /* Returns the signal number of any pending traps: ie, a signal which has
157 * occured for which a trap has been set or for which the TF_DFL_INTR flag
158 * is set.
159 */
160 int
161 trap_pending()
162 {
163 int i;
164 Trap *p;
165
166 for (p = sigtraps, i = SIGNALS+1; --i >= 0; p++)
167 if (p->set && ((p->trap && p->trap[0])
168 || ((p->flags & (TF_DFL_INTR|TF_FATAL))
169 && !p->trap)))
170 return p->signal;
171 return 0;
172 }
173
174 /*
175 * run any pending traps. If intr is set, only run traps that
176 * can interrupt commands.
177 */
178 void
179 runtraps(flag)
180 int flag;
181 {
182 int i;
183 register Trap *p;
184
185 #ifdef KSH
186 if (ksh_tmout_state == TMOUT_LEAVING) {
187 ksh_tmout_state = TMOUT_EXECUTING;
188 warningf(FALSE, "timed out waiting for input");
189 unwind(LEXIT);
190 } else
191 /* XXX: this means the alarm will have no effect if a trap
192 * is caught after the alarm() was started...not good.
193 */
194 ksh_tmout_state = TMOUT_EXECUTING;
195 #endif /* KSH */
196 if (!flag)
197 trap = 0;
198 if (flag & TF_DFL_INTR)
199 intrsig = 0;
200 if (flag & TF_FATAL)
201 fatal_trap = 0;
202 for (p = sigtraps, i = SIGNALS+1; --i >= 0; p++)
203 if (p->set && (!flag
204 || ((p->flags & flag) && p->trap == (char *) 0)))
205 runtrap(p);
206 }
207
208 void
209 runtrap(p)
210 Trap *p;
211 {
212 int i = p->signal;
213 char *trapstr = p->trap;
214 int oexstat;
215 int UNINITIALIZED(old_changed);
216
217 p->set = 0;
218 if (trapstr == (char *) 0) { /* SIG_DFL */
219 if (p->flags & TF_FATAL) {
220 /* eg, SIGHUP */
221 exstat = 128 + i;
222 unwind(LLEAVE);
223 }
224 if (p->flags & TF_DFL_INTR) {
225 /* eg, SIGINT, SIGQUIT, SIGTERM, etc. */
226 exstat = 128 + i;
227 unwind(LINTR);
228 }
229 return;
230 }
231 if (trapstr[0] == '\0') /* SIG_IGN */
232 return;
233 if (i == SIGEXIT_ || i == SIGERR_) { /* avoid recursion on these */
234 old_changed = p->flags & TF_CHANGED;
235 p->flags &= ~TF_CHANGED;
236 p->trap = (char *) 0;
237 }
238 oexstat = exstat;
239 command(trapstr);
240 exstat = oexstat;
241 if (i == SIGEXIT_ || i == SIGERR_) {
242 if (p->flags & TF_CHANGED)
243 /* don't clear TF_CHANGED */
244 afree(trapstr, APERM);
245 else
246 p->trap = trapstr;
247 p->flags |= old_changed;
248 }
249 }
250
251 /* clear pending traps and reset user's trap handlers; used after fork(2) */
252 void
253 cleartraps()
254 {
255 int i;
256 Trap *p;
257
258 trap = 0;
259 intrsig = 0;
260 fatal_trap = 0;
261 for (i = SIGNALS+1, p = sigtraps; --i >= 0; p++) {
262 p->set = 0;
263 if ((p->flags & TF_USER_SET) && (p->trap && p->trap[0]))
264 settrap(p, (char *) 0);
265 }
266 }
267
268 /* restore signals just before an exec(2) */
269 void
270 restoresigs()
271 {
272 int i;
273 Trap *p;
274
275 for (i = SIGNALS+1, p = sigtraps; --i >= 0; p++)
276 if (p->flags & (TF_EXEC_IGN|TF_EXEC_DFL))
277 setsig(p, (p->flags & TF_EXEC_IGN) ? SIG_IGN : SIG_DFL,
278 SS_RESTORE_CURR|SS_FORCE);
279 }
280
281 void
282 settrap(p, s)
283 Trap *p;
284 char *s;
285 {
286 handler_t f;
287
288 if (p->trap)
289 afree(p->trap, APERM);
290 p->trap = str_save(s, APERM); /* handles s == 0 */
291 p->flags |= TF_CHANGED;
292 f = !s ? SIG_DFL : s[0] ? trapsig : SIG_IGN;
293
294 p->flags |= TF_USER_SET;
295 if ((p->flags & (TF_DFL_INTR|TF_FATAL)) && f == SIG_DFL)
296 f = trapsig;
297 else if (p->flags & TF_SHELL_USES) {
298 if (!(p->flags & TF_ORIG_IGN) || Flag(FTALKING)) {
299 /* do what user wants at exec time */
300 p->flags &= ~(TF_EXEC_IGN|TF_EXEC_DFL);
301 if (f == SIG_IGN)
302 p->flags |= TF_EXEC_IGN;
303 else
304 p->flags |= TF_EXEC_DFL;
305 }
306 /* assumes handler already set to what shell wants it
307 * (normally trapsig, but could be j_sigchld() or SIG_IGN)
308 */
309 return;
310 }
311
312 /* todo: should we let user know signal is ignored? how? */
313 setsig(p, f, SS_RESTORE_CURR|SS_USER);
314 }
315
316 /* Called by c_print() when writing to a co-process to ensure SIGPIPE won't
317 * kill shell (unless user catches it and exits)
318 */
319 int
320 block_pipe()
321 {
322 int restore_dfl = 0;
323 Trap *p = &sigtraps[SIGPIPE];
324
325 if (!(p->flags & (TF_ORIG_IGN|TF_ORIG_DFL))) {
326 setsig(p, SIG_IGN, SS_RESTORE_CURR);
327 if (p->flags & TF_ORIG_DFL)
328 restore_dfl = 1;
329 } else if (p->cursig == SIG_DFL) {
330 setsig(p, SIG_IGN, SS_RESTORE_CURR);
331 restore_dfl = 1; /* restore to SIG_DFL */
332 }
333 return restore_dfl;
334 }
335
336 /* Called by c_print() to undo whatever block_pipe() did */
337 void
338 restore_pipe(restore_dfl)
339 int restore_dfl;
340 {
341 if (restore_dfl)
342 setsig(&sigtraps[SIGPIPE], SIG_DFL, SS_RESTORE_CURR);
343 }
344
345 /* Set action for a signal. Action may not be set if original
346 * action was SIG_IGN, depending on the value of flags and
347 * FTALKING.
348 */
349 int
350 setsig(p, f, flags)
351 Trap *p;
352 handler_t f;
353 int flags;
354 {
355 struct sigaction sigact;
356
357 if (p->signal == SIGEXIT_ || p->signal == SIGERR_)
358 return 1;
359
360 /* First time setting this signal? If so, get and note the current
361 * setting.
362 */
363 if (!(p->flags & (TF_ORIG_IGN|TF_ORIG_DFL))) {
364 sigaction(p->signal, &Sigact_ign, &sigact);
365 p->flags |= sigact.sa_handler == SIG_IGN ?
366 TF_ORIG_IGN : TF_ORIG_DFL;
367 p->cursig = SIG_IGN;
368 }
369
370 /* Generally, an ignored signal stays ignored, except if
371 * - the user of an interactive shell wants to change it
372 * - the shell wants for force a change
373 */
374 if ((p->flags & TF_ORIG_IGN) && !(flags & SS_FORCE)
375 && (!(flags & SS_USER) || !Flag(FTALKING)))
376 return 0;
377
378 setexecsig(p, flags & SS_RESTORE_MASK);
379
380 /* This is here 'cause there should be a way of clearing shtraps, but
381 * don't know if this is a sane way of doing it. At the moment,
382 * all users of shtrap are lifetime users (SIGCHLD, SIGALRM, SIGWINCH).
383 */
384 if (!(flags & SS_USER))
385 p->shtrap = (handler_t) 0;
386 if (flags & SS_SHTRAP) {
387 p->shtrap = f;
388 f = trapsig;
389 }
390
391 if (p->cursig != f) {
392 p->cursig = f;
393 sigemptyset(&sigact.sa_mask);
394 sigact.sa_flags = KSH_SA_FLAGS;
395 sigact.sa_handler = f;
396 sigaction(p->signal, &sigact, (struct sigaction *) 0);
397 }
398
399 return 1;
400 }
401
402 /* control what signal is set to before an exec() */
403 void
404 setexecsig(p, restore)
405 Trap *p;
406 int restore;
407 {
408 /* XXX debugging */
409 if (!(p->flags & (TF_ORIG_IGN|TF_ORIG_DFL)))
410 internal_errorf(1, "setexecsig: unset signal %d(%s)",
411 p->signal, p->name);
412
413 /* restore original value for exec'd kids */
414 p->flags &= ~(TF_EXEC_IGN|TF_EXEC_DFL);
415 switch (restore & SS_RESTORE_MASK) {
416 case SS_RESTORE_CURR: /* leave things as they currently are */
417 break;
418 case SS_RESTORE_ORIG:
419 p->flags |= p->flags & TF_ORIG_IGN ? TF_EXEC_IGN : TF_EXEC_DFL;
420 break;
421 case SS_RESTORE_DFL:
422 p->flags |= TF_EXEC_DFL;
423 break;
424 case SS_RESTORE_IGN:
425 p->flags |= TF_EXEC_IGN;
426 break;
427 }
428 }
429