job.c revision 1.221 1 1.221 rillig /* $NetBSD: job.c,v 1.221 2020/08/28 20:23:20 rillig Exp $ */
2 1.10 christos
3 1.1 cgd /*
4 1.1 cgd * Copyright (c) 1988, 1989, 1990 The Regents of the University of California.
5 1.82 agc * All rights reserved.
6 1.82 agc *
7 1.82 agc * This code is derived from software contributed to Berkeley by
8 1.82 agc * Adam de Boor.
9 1.82 agc *
10 1.82 agc * Redistribution and use in source and binary forms, with or without
11 1.82 agc * modification, are permitted provided that the following conditions
12 1.82 agc * are met:
13 1.82 agc * 1. Redistributions of source code must retain the above copyright
14 1.82 agc * notice, this list of conditions and the following disclaimer.
15 1.82 agc * 2. Redistributions in binary form must reproduce the above copyright
16 1.82 agc * notice, this list of conditions and the following disclaimer in the
17 1.82 agc * documentation and/or other materials provided with the distribution.
18 1.82 agc * 3. Neither the name of the University nor the names of its contributors
19 1.82 agc * may be used to endorse or promote products derived from this software
20 1.82 agc * without specific prior written permission.
21 1.82 agc *
22 1.82 agc * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
23 1.82 agc * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
24 1.82 agc * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
25 1.82 agc * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
26 1.82 agc * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
27 1.82 agc * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
28 1.82 agc * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
29 1.82 agc * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
30 1.82 agc * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
31 1.82 agc * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
32 1.82 agc * SUCH DAMAGE.
33 1.82 agc */
34 1.82 agc
35 1.82 agc /*
36 1.1 cgd * Copyright (c) 1988, 1989 by Adam de Boor
37 1.1 cgd * Copyright (c) 1989 by Berkeley Softworks
38 1.1 cgd * All rights reserved.
39 1.1 cgd *
40 1.1 cgd * This code is derived from software contributed to Berkeley by
41 1.1 cgd * Adam de Boor.
42 1.1 cgd *
43 1.1 cgd * Redistribution and use in source and binary forms, with or without
44 1.1 cgd * modification, are permitted provided that the following conditions
45 1.1 cgd * are met:
46 1.1 cgd * 1. Redistributions of source code must retain the above copyright
47 1.1 cgd * notice, this list of conditions and the following disclaimer.
48 1.1 cgd * 2. Redistributions in binary form must reproduce the above copyright
49 1.1 cgd * notice, this list of conditions and the following disclaimer in the
50 1.1 cgd * documentation and/or other materials provided with the distribution.
51 1.1 cgd * 3. All advertising materials mentioning features or use of this software
52 1.1 cgd * must display the following acknowledgement:
53 1.1 cgd * This product includes software developed by the University of
54 1.1 cgd * California, Berkeley and its contributors.
55 1.1 cgd * 4. Neither the name of the University nor the names of its contributors
56 1.1 cgd * may be used to endorse or promote products derived from this software
57 1.1 cgd * without specific prior written permission.
58 1.1 cgd *
59 1.1 cgd * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
60 1.1 cgd * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
61 1.1 cgd * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
62 1.1 cgd * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
63 1.1 cgd * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
64 1.1 cgd * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
65 1.1 cgd * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
66 1.1 cgd * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
67 1.1 cgd * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
68 1.1 cgd * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
69 1.1 cgd * SUCH DAMAGE.
70 1.1 cgd */
71 1.1 cgd
72 1.84 ross #ifndef MAKE_NATIVE
73 1.221 rillig static char rcsid[] = "$NetBSD: job.c,v 1.221 2020/08/28 20:23:20 rillig Exp $";
74 1.21 lukem #else
75 1.19 christos #include <sys/cdefs.h>
76 1.1 cgd #ifndef lint
77 1.10 christos #if 0
78 1.16 christos static char sccsid[] = "@(#)job.c 8.2 (Berkeley) 3/19/94";
79 1.10 christos #else
80 1.221 rillig __RCSID("$NetBSD: job.c,v 1.221 2020/08/28 20:23:20 rillig Exp $");
81 1.10 christos #endif
82 1.1 cgd #endif /* not lint */
83 1.21 lukem #endif
84 1.1 cgd
85 1.1 cgd /*-
86 1.1 cgd * job.c --
87 1.1 cgd * handle the creation etc. of our child processes.
88 1.1 cgd *
89 1.1 cgd * Interface:
90 1.1 cgd * Job_Make Start the creation of the given target.
91 1.1 cgd *
92 1.1 cgd * Job_CatchChildren Check for and handle the termination of any
93 1.1 cgd * children. This must be called reasonably
94 1.1 cgd * frequently to keep the whole make going at
95 1.1 cgd * a decent clip, since job table entries aren't
96 1.1 cgd * removed until their process is caught this way.
97 1.1 cgd *
98 1.1 cgd * Job_CatchOutput Print any output our children have produced.
99 1.1 cgd * Should also be called fairly frequently to
100 1.1 cgd * keep the user informed of what's going on.
101 1.1 cgd * If no output is waiting, it will block for
102 1.1 cgd * a time given by the SEL_* constants, below,
103 1.1 cgd * or until output is ready.
104 1.1 cgd *
105 1.192 dholland * Job_Init Called to initialize this module. in addition,
106 1.1 cgd * any commands attached to the .BEGIN target
107 1.1 cgd * are executed before this function returns.
108 1.1 cgd * Hence, the makefile must have been parsed
109 1.1 cgd * before this function is called.
110 1.1 cgd *
111 1.22 christos * Job_End Cleanup any memory used.
112 1.22 christos *
113 1.1 cgd * Job_ParseShell Given the line following a .SHELL target, parse
114 1.1 cgd * the line as a shell specification. Returns
115 1.1 cgd * FAILURE if the spec was incorrect.
116 1.1 cgd *
117 1.22 christos * Job_Finish Perform any final processing which needs doing.
118 1.1 cgd * This includes the execution of any commands
119 1.1 cgd * which have been/were attached to the .END
120 1.1 cgd * target. It should only be called when the
121 1.1 cgd * job table is empty.
122 1.1 cgd *
123 1.1 cgd * Job_AbortAll Abort all currently running jobs. It doesn't
124 1.1 cgd * handle output or do anything for the jobs,
125 1.1 cgd * just kills them. It should only be called in
126 1.1 cgd * an emergency, as it were.
127 1.1 cgd *
128 1.1 cgd * Job_CheckCommands Verify that the commands for a target are
129 1.1 cgd * ok. Provide them if necessary and possible.
130 1.1 cgd *
131 1.1 cgd * Job_Touch Update a target without really updating it.
132 1.1 cgd *
133 1.1 cgd * Job_Wait Wait for all currently-running jobs to finish.
134 1.1 cgd */
135 1.1 cgd
136 1.5 cgd #include <sys/types.h>
137 1.1 cgd #include <sys/stat.h>
138 1.1 cgd #include <sys/file.h>
139 1.1 cgd #include <sys/time.h>
140 1.1 cgd #include <sys/wait.h>
141 1.72 wiz
142 1.72 wiz #include <errno.h>
143 1.35 christos #ifndef USE_SELECT
144 1.35 christos #include <poll.h>
145 1.35 christos #endif
146 1.72 wiz #include <signal.h>
147 1.72 wiz #include <utime.h>
148 1.72 wiz
149 1.5 cgd #include "make.h"
150 1.5 cgd #include "dir.h"
151 1.1 cgd #include "job.h"
152 1.1 cgd #include "pathnames.h"
153 1.40 sommerfe #include "trace.h"
154 1.12 christos # define STATIC static
155 1.1 cgd
156 1.1 cgd /*
157 1.16 christos * error handling variables
158 1.1 cgd */
159 1.5 cgd static int errors = 0; /* number of errors reported */
160 1.5 cgd static int aborting = 0; /* why is the make aborting? */
161 1.1 cgd #define ABORT_ERROR 1 /* Because of an error */
162 1.1 cgd #define ABORT_INTERRUPT 2 /* Because it was interrupted */
163 1.1 cgd #define ABORT_WAIT 3 /* Waiting for jobs to finish */
164 1.101 dsl #define JOB_TOKENS "+EI+" /* Token to requeue for each abort state */
165 1.1 cgd
166 1.16 christos /*
167 1.103 dsl * this tracks the number of tokens currently "out" to build jobs.
168 1.103 dsl */
169 1.103 dsl int jobTokensRunning = 0;
170 1.103 dsl
171 1.103 dsl /*
172 1.12 christos * XXX: Avoid SunOS bug... FILENO() is fp->_file, and file
173 1.12 christos * is a char! So when we go above 127 we turn negative!
174 1.12 christos */
175 1.139 christos #define FILENO(a) ((unsigned) fileno(a))
176 1.1 cgd
177 1.1 cgd /*
178 1.1 cgd * post-make command processing. The node postCommands is really just the
179 1.1 cgd * .END target but we keep it around to avoid having to search for it
180 1.1 cgd * all the time.
181 1.1 cgd */
182 1.142 dsl static GNode *postCommands = NULL;
183 1.71 christos /* node containing commands to execute when
184 1.1 cgd * everything else is done */
185 1.1 cgd static int numCommands; /* The number of commands actually printed
186 1.1 cgd * for a target. Should this number be
187 1.1 cgd * 0, no shell will be executed. */
188 1.1 cgd
189 1.1 cgd /*
190 1.1 cgd * Return values from JobStart.
191 1.1 cgd */
192 1.1 cgd #define JOB_RUNNING 0 /* Job is running */
193 1.1 cgd #define JOB_ERROR 1 /* Error in starting the job */
194 1.1 cgd #define JOB_FINISHED 2 /* The job is already finished */
195 1.1 cgd
196 1.1 cgd /*
197 1.1 cgd * Descriptions for various shells.
198 1.121 apb *
199 1.133 apb * The build environment may set DEFSHELL_INDEX to one of
200 1.133 apb * DEFSHELL_INDEX_SH, DEFSHELL_INDEX_KSH, or DEFSHELL_INDEX_CSH, to
201 1.133 apb * select one of the prefedined shells as the default shell.
202 1.133 apb *
203 1.133 apb * Alternatively, the build environment may set DEFSHELL_CUSTOM to the
204 1.133 apb * name or the full path of a sh-compatible shell, which will be used as
205 1.133 apb * the default shell.
206 1.133 apb *
207 1.133 apb * ".SHELL" lines in Makefiles can choose the default shell from the
208 1.133 apb # set defined here, or add additional shells.
209 1.133 apb */
210 1.133 apb
211 1.133 apb #ifdef DEFSHELL_CUSTOM
212 1.133 apb #define DEFSHELL_INDEX_CUSTOM 0
213 1.133 apb #define DEFSHELL_INDEX_SH 1
214 1.133 apb #define DEFSHELL_INDEX_KSH 2
215 1.133 apb #define DEFSHELL_INDEX_CSH 3
216 1.133 apb #else /* !DEFSHELL_CUSTOM */
217 1.133 apb #define DEFSHELL_INDEX_SH 0
218 1.133 apb #define DEFSHELL_INDEX_KSH 1
219 1.133 apb #define DEFSHELL_INDEX_CSH 2
220 1.133 apb #endif /* !DEFSHELL_CUSTOM */
221 1.133 apb
222 1.133 apb #ifndef DEFSHELL_INDEX
223 1.133 apb #define DEFSHELL_INDEX 0 /* DEFSHELL_INDEX_CUSTOM or DEFSHELL_INDEX_SH */
224 1.133 apb #endif /* !DEFSHELL_INDEX */
225 1.133 apb
226 1.1 cgd static Shell shells[] = {
227 1.133 apb #ifdef DEFSHELL_CUSTOM
228 1.1 cgd /*
229 1.121 apb * An sh-compatible shell with a non-standard name.
230 1.121 apb *
231 1.121 apb * Keep this in sync with the "sh" description below, but avoid
232 1.121 apb * non-portable features that might not be supplied by all
233 1.121 apb * sh-compatible shells.
234 1.1 cgd */
235 1.1 cgd {
236 1.133 apb DEFSHELL_CUSTOM,
237 1.121 apb FALSE, "", "", "", 0,
238 1.121 apb FALSE, "echo \"%s\"\n", "%s\n", "{ %s \n} || exit $?\n", "'\n'", '#',
239 1.121 apb "",
240 1.121 apb "",
241 1.1 cgd },
242 1.133 apb #endif /* DEFSHELL_CUSTOM */
243 1.1 cgd /*
244 1.1 cgd * SH description. Echo control is also possible and, under
245 1.1 cgd * sun UNIX anyway, one can even control error checking.
246 1.1 cgd */
247 1.1 cgd {
248 1.1 cgd "sh",
249 1.83 jmc FALSE, "", "", "", 0,
250 1.112 rillig FALSE, "echo \"%s\"\n", "%s\n", "{ %s \n} || exit $?\n", "'\n'", '#',
251 1.121 apb #if defined(MAKE_NATIVE) && defined(__NetBSD__)
252 1.83 jmc "q",
253 1.27 christos #else
254 1.83 jmc "",
255 1.27 christos #endif
256 1.83 jmc "",
257 1.1 cgd },
258 1.1 cgd /*
259 1.201 rillig * KSH description.
260 1.81 sjg */
261 1.81 sjg {
262 1.81 sjg "ksh",
263 1.81 sjg TRUE, "set +v", "set -v", "set +v", 6,
264 1.112 rillig FALSE, "echo \"%s\"\n", "%s\n", "{ %s \n} || exit $?\n", "'\n'", '#',
265 1.81 sjg "v",
266 1.83 jmc "",
267 1.81 sjg },
268 1.81 sjg /*
269 1.121 apb * CSH description. The csh can do echo control by playing
270 1.121 apb * with the setting of the 'echo' shell variable. Sadly,
271 1.121 apb * however, it is unable to do error control nicely.
272 1.121 apb */
273 1.121 apb {
274 1.121 apb "csh",
275 1.121 apb TRUE, "unset verbose", "set verbose", "unset verbose", 10,
276 1.121 apb FALSE, "echo \"%s\"\n", "csh -c \"%s || exit 0\"\n", "", "'\\\n'", '#',
277 1.121 apb "v", "e",
278 1.121 apb },
279 1.121 apb /*
280 1.1 cgd * UNKNOWN.
281 1.1 cgd */
282 1.1 cgd {
283 1.98 christos NULL,
284 1.98 christos FALSE, NULL, NULL, NULL, 0,
285 1.112 rillig FALSE, NULL, NULL, NULL, NULL, 0,
286 1.98 christos NULL, NULL,
287 1.1 cgd }
288 1.1 cgd };
289 1.133 apb static Shell *commandShell = &shells[DEFSHELL_INDEX]; /* this is the shell to
290 1.1 cgd * which we pass all
291 1.1 cgd * commands in the Makefile.
292 1.1 cgd * It is set by the
293 1.1 cgd * Job_ParseShell function */
294 1.81 sjg const char *shellPath = NULL, /* full pathname of
295 1.1 cgd * executable image */
296 1.205 rillig *shellName = NULL; /* last component of shell */
297 1.174 sjg char *shellErrFlag = NULL;
298 1.209 rillig static char *shellArgv = NULL; /* Custom shell args */
299 1.1 cgd
300 1.1 cgd
301 1.114 dsl STATIC Job *job_table; /* The structures that describe them */
302 1.114 dsl STATIC Job *job_table_end; /* job_table + maxJobs */
303 1.120 dsl static int wantToken; /* we want a token */
304 1.117 dsl static int lurking_children = 0;
305 1.118 dsl static int make_suspended = 0; /* non-zero if we've seen a SIGTSTP (etc) */
306 1.40 sommerfe
307 1.35 christos /*
308 1.35 christos * Set of descriptors of pipes connected to
309 1.35 christos * the output channels of children
310 1.35 christos */
311 1.35 christos static struct pollfd *fds = NULL;
312 1.36 christos static Job **jobfds = NULL;
313 1.139 christos static int nfds = 0;
314 1.72 wiz static void watchfd(Job *);
315 1.72 wiz static void clearfd(Job *);
316 1.72 wiz static int readyfd(Job *);
317 1.1 cgd
318 1.12 christos STATIC GNode *lastNode; /* The node for which output was most recently
319 1.1 cgd * produced. */
320 1.158 christos static char *targPrefix = NULL; /* What we print at the start of TARG_FMT */
321 1.40 sommerfe static Job tokenWaitJob; /* token wait pseudo-job */
322 1.12 christos
323 1.73 gson static Job childExitJob; /* child exit pseudo-job */
324 1.105 dsl #define CHILD_EXIT "."
325 1.106 dsl #define DO_JOB_RESUME "R"
326 1.73 gson
327 1.196 riastrad static const int npseudojobs = 2; /* number of pseudo-jobs */
328 1.196 riastrad
329 1.125 sjg #define TARG_FMT "%s %s ---\n" /* Default format */
330 1.106 dsl #define MESSAGE(fp, gn) \
331 1.175 sjg if (maxJobs != 1 && targPrefix && *targPrefix) \
332 1.158 christos (void)fprintf(fp, TARG_FMT, targPrefix, gn->name)
333 1.1 cgd
334 1.104 dsl static sigset_t caught_signals; /* Set of signals we handle */
335 1.1 cgd
336 1.73 gson static void JobChildSig(int);
337 1.72 wiz static void JobContinueSig(int);
338 1.153 sjg static Job *JobFindPid(int, int, Boolean);
339 1.144 dsl static int JobPrintCommand(void *, void *);
340 1.144 dsl static int JobSaveCommand(void *, void *);
341 1.72 wiz static void JobClose(Job *);
342 1.72 wiz static void JobExec(Job *, char **);
343 1.72 wiz static void JobMakeArgv(Job *, char **);
344 1.108 dsl static int JobStart(GNode *, int);
345 1.72 wiz static char *JobOutput(Job *, char *, char *, int);
346 1.72 wiz static void JobDoOutput(Job *, Boolean);
347 1.77 christos static Shell *JobMatchShell(const char *);
348 1.162 joerg static void JobInterrupt(int, int) MAKE_ATTR_DEAD;
349 1.72 wiz static void JobRestartJobs(void);
350 1.72 wiz static void JobTokenAdd(void);
351 1.69 pk static void JobSigLock(sigset_t *);
352 1.69 pk static void JobSigUnlock(sigset_t *);
353 1.69 pk static void JobSigReset(void);
354 1.69 pk
355 1.221 rillig const char *malloc_options MAKE_ATTR_UNUSED = "A"; /* see jemalloc(3) */
356 1.69 pk
357 1.196 riastrad static unsigned
358 1.196 riastrad nfds_per_job(void)
359 1.196 riastrad {
360 1.197 sjg #if defined(USE_FILEMON) && !defined(USE_FILEMON_DEV)
361 1.196 riastrad if (useMeta)
362 1.196 riastrad return 2;
363 1.196 riastrad #endif
364 1.196 riastrad return 1;
365 1.196 riastrad }
366 1.196 riastrad
367 1.114 dsl static void
368 1.114 dsl job_table_dump(const char *where)
369 1.114 dsl {
370 1.114 dsl Job *job;
371 1.114 dsl
372 1.139 christos fprintf(debug_file, "job table @ %s\n", where);
373 1.114 dsl for (job = job_table; job < job_table_end; job++) {
374 1.139 christos fprintf(debug_file, "job %d, status %d, flags %d, pid %d\n",
375 1.139 christos (int)(job - job_table), job->job_state, job->flags, job->pid);
376 1.114 dsl }
377 1.114 dsl }
378 1.69 pk
379 1.69 pk /*
380 1.188 dholland * Delete the target of a failed, interrupted, or otherwise
381 1.188 dholland * unsuccessful job unless inhibited by .PRECIOUS.
382 1.188 dholland */
383 1.188 dholland static void
384 1.188 dholland JobDeleteTarget(GNode *gn)
385 1.188 dholland {
386 1.188 dholland if ((gn->type & (OP_JOIN|OP_PHONY)) == 0 && !Targ_Precious(gn)) {
387 1.188 dholland char *file = (gn->path == NULL ? gn->name : gn->path);
388 1.188 dholland if (!noExecute && eunlink(file) != -1) {
389 1.188 dholland Error("*** %s removed", file);
390 1.188 dholland }
391 1.188 dholland }
392 1.188 dholland }
393 1.188 dholland
394 1.188 dholland /*
395 1.69 pk * JobSigLock/JobSigUnlock
396 1.69 pk *
397 1.69 pk * Signal lock routines to get exclusive access. Currently used to
398 1.69 pk * protect `jobs' and `stoppedJobs' list manipulations.
399 1.69 pk */
400 1.72 wiz static void JobSigLock(sigset_t *omaskp)
401 1.69 pk {
402 1.69 pk if (sigprocmask(SIG_BLOCK, &caught_signals, omaskp) != 0) {
403 1.69 pk Punt("JobSigLock: sigprocmask: %s", strerror(errno));
404 1.104 dsl sigemptyset(omaskp);
405 1.69 pk }
406 1.69 pk }
407 1.69 pk
408 1.72 wiz static void JobSigUnlock(sigset_t *omaskp)
409 1.69 pk {
410 1.96 christos (void)sigprocmask(SIG_SETMASK, omaskp, NULL);
411 1.69 pk }
412 1.1 cgd
413 1.122 dsl static void
414 1.122 dsl JobCreatePipe(Job *job, int minfd)
415 1.122 dsl {
416 1.189 riastrad int i, fd, flags;
417 1.122 dsl
418 1.122 dsl if (pipe(job->jobPipe) == -1)
419 1.122 dsl Punt("Cannot create pipe: %s", strerror(errno));
420 1.122 dsl
421 1.173 sjg for (i = 0; i < 2; i++) {
422 1.173 sjg /* Avoid using low numbered fds */
423 1.173 sjg fd = fcntl(job->jobPipe[i], F_DUPFD, minfd);
424 1.173 sjg if (fd != -1) {
425 1.173 sjg close(job->jobPipe[i]);
426 1.173 sjg job->jobPipe[i] = fd;
427 1.173 sjg }
428 1.173 sjg }
429 1.201 rillig
430 1.122 dsl /* Set close-on-exec flag for both */
431 1.189 riastrad if (fcntl(job->jobPipe[0], F_SETFD, FD_CLOEXEC) == -1)
432 1.189 riastrad Punt("Cannot set close-on-exec: %s", strerror(errno));
433 1.189 riastrad if (fcntl(job->jobPipe[1], F_SETFD, FD_CLOEXEC) == -1)
434 1.189 riastrad Punt("Cannot set close-on-exec: %s", strerror(errno));
435 1.122 dsl
436 1.122 dsl /*
437 1.122 dsl * We mark the input side of the pipe non-blocking; we poll(2) the
438 1.122 dsl * pipe when we're waiting for a job token, but we might lose the
439 1.201 rillig * race for the token when a new one becomes available, so the read
440 1.122 dsl * from the pipe should not block.
441 1.122 dsl */
442 1.189 riastrad flags = fcntl(job->jobPipe[0], F_GETFL, 0);
443 1.189 riastrad if (flags == -1)
444 1.189 riastrad Punt("Cannot get flags: %s", strerror(errno));
445 1.189 riastrad flags |= O_NONBLOCK;
446 1.189 riastrad if (fcntl(job->jobPipe[0], F_SETFL, flags) == -1)
447 1.189 riastrad Punt("Cannot set flags: %s", strerror(errno));
448 1.122 dsl }
449 1.122 dsl
450 1.1 cgd /*-
451 1.1 cgd *-----------------------------------------------------------------------
452 1.1 cgd * JobCondPassSig --
453 1.119 dsl * Pass a signal to a job
454 1.1 cgd *
455 1.72 wiz * Input:
456 1.72 wiz * signop Signal to send it
457 1.72 wiz *
458 1.1 cgd * Side Effects:
459 1.1 cgd * None, except the job may bite it.
460 1.1 cgd *
461 1.1 cgd *-----------------------------------------------------------------------
462 1.1 cgd */
463 1.114 dsl static void
464 1.114 dsl JobCondPassSig(int signo)
465 1.1 cgd {
466 1.114 dsl Job *job;
467 1.106 dsl
468 1.116 dsl if (DEBUG(JOB)) {
469 1.123 dsl (void)fprintf(debug_file, "JobCondPassSig(%d) called.\n", signo);
470 1.116 dsl }
471 1.116 dsl
472 1.114 dsl for (job = job_table; job < job_table_end; job++) {
473 1.116 dsl if (job->job_state != JOB_ST_RUNNING)
474 1.114 dsl continue;
475 1.114 dsl if (DEBUG(JOB)) {
476 1.123 dsl (void)fprintf(debug_file,
477 1.139 christos "JobCondPassSig passing signal %d to child %d.\n",
478 1.139 christos signo, job->pid);
479 1.114 dsl }
480 1.116 dsl KILLPG(job->pid, signo);
481 1.12 christos }
482 1.1 cgd }
483 1.1 cgd
484 1.1 cgd /*-
485 1.1 cgd *-----------------------------------------------------------------------
486 1.73 gson * JobChldSig --
487 1.73 gson * SIGCHLD handler.
488 1.37 sommerfe *
489 1.72 wiz * Input:
490 1.72 wiz * signo The signal number we've received
491 1.72 wiz *
492 1.37 sommerfe * Results:
493 1.37 sommerfe * None.
494 1.37 sommerfe *
495 1.37 sommerfe * Side Effects:
496 1.73 gson * Sends a token on the child exit pipe to wake us up from
497 1.73 gson * select()/poll().
498 1.37 sommerfe *
499 1.37 sommerfe *-----------------------------------------------------------------------
500 1.37 sommerfe */
501 1.37 sommerfe static void
502 1.162 joerg JobChildSig(int signo MAKE_ATTR_UNUSED)
503 1.37 sommerfe {
504 1.165 christos while (write(childExitJob.outPipe, CHILD_EXIT, 1) == -1 && errno == EAGAIN)
505 1.165 christos continue;
506 1.37 sommerfe }
507 1.37 sommerfe
508 1.37 sommerfe
509 1.47 sommerfe /*-
510 1.47 sommerfe *-----------------------------------------------------------------------
511 1.47 sommerfe * JobContinueSig --
512 1.47 sommerfe * Resume all stopped jobs.
513 1.47 sommerfe *
514 1.72 wiz * Input:
515 1.72 wiz * signo The signal number we've received
516 1.72 wiz *
517 1.47 sommerfe * Results:
518 1.47 sommerfe * None.
519 1.47 sommerfe *
520 1.47 sommerfe * Side Effects:
521 1.47 sommerfe * Jobs start running again.
522 1.47 sommerfe *
523 1.47 sommerfe *-----------------------------------------------------------------------
524 1.47 sommerfe */
525 1.47 sommerfe static void
526 1.162 joerg JobContinueSig(int signo MAKE_ATTR_UNUSED)
527 1.47 sommerfe {
528 1.116 dsl /*
529 1.118 dsl * Defer sending to SIGCONT to our stopped children until we return
530 1.116 dsl * from the signal handler.
531 1.116 dsl */
532 1.165 christos while (write(childExitJob.outPipe, DO_JOB_RESUME, 1) == -1 &&
533 1.165 christos errno == EAGAIN)
534 1.165 christos continue;
535 1.47 sommerfe }
536 1.37 sommerfe
537 1.37 sommerfe /*-
538 1.37 sommerfe *-----------------------------------------------------------------------
539 1.1 cgd * JobPassSig --
540 1.119 dsl * Pass a signal on to all jobs, then resend to ourselves.
541 1.1 cgd *
542 1.72 wiz * Input:
543 1.72 wiz * signo The signal number we've received
544 1.72 wiz *
545 1.1 cgd * Results:
546 1.1 cgd * None.
547 1.1 cgd *
548 1.1 cgd * Side Effects:
549 1.1 cgd * We die by the same signal.
550 1.16 christos *
551 1.1 cgd *-----------------------------------------------------------------------
552 1.1 cgd */
553 1.162 joerg MAKE_ATTR_DEAD static void
554 1.116 dsl JobPassSig_int(int signo)
555 1.116 dsl {
556 1.116 dsl /* Run .INTERRUPT target then exit */
557 1.116 dsl JobInterrupt(TRUE, signo);
558 1.116 dsl }
559 1.116 dsl
560 1.162 joerg MAKE_ATTR_DEAD static void
561 1.116 dsl JobPassSig_term(int signo)
562 1.116 dsl {
563 1.116 dsl /* Dont run .INTERRUPT target then exit */
564 1.116 dsl JobInterrupt(FALSE, signo);
565 1.116 dsl }
566 1.116 dsl
567 1.116 dsl static void
568 1.116 dsl JobPassSig_suspend(int signo)
569 1.1 cgd {
570 1.13 christos sigset_t nmask, omask;
571 1.14 christos struct sigaction act;
572 1.118 dsl
573 1.118 dsl /* Suppress job started/continued messages */
574 1.118 dsl make_suspended = 1;
575 1.16 christos
576 1.116 dsl /* Pass the signal onto every job */
577 1.114 dsl JobCondPassSig(signo);
578 1.1 cgd
579 1.1 cgd /*
580 1.1 cgd * Send ourselves the signal now we've given the message to everyone else.
581 1.1 cgd * Note we block everything else possible while we're getting the signal.
582 1.1 cgd * This ensures that all our jobs get continued when we wake up before
583 1.1 cgd * we take any other signal.
584 1.1 cgd */
585 1.28 christos sigfillset(&nmask);
586 1.68 pk sigdelset(&nmask, signo);
587 1.96 christos (void)sigprocmask(SIG_SETMASK, &nmask, &omask);
588 1.68 pk
589 1.14 christos act.sa_handler = SIG_DFL;
590 1.14 christos sigemptyset(&act.sa_mask);
591 1.14 christos act.sa_flags = 0;
592 1.96 christos (void)sigaction(signo, &act, NULL);
593 1.13 christos
594 1.12 christos if (DEBUG(JOB)) {
595 1.123 dsl (void)fprintf(debug_file,
596 1.47 sommerfe "JobPassSig passing signal %d to self.\n", signo);
597 1.12 christos }
598 1.1 cgd
599 1.96 christos (void)kill(getpid(), signo);
600 1.115 dsl
601 1.115 dsl /*
602 1.116 dsl * We've been continued.
603 1.116 dsl *
604 1.116 dsl * A whole host of signals continue to happen!
605 1.118 dsl * SIGCHLD for any processes that actually suspended themselves.
606 1.116 dsl * SIGCHLD for any processes that exited while we were alseep.
607 1.116 dsl * The SIGCONT that actually caused us to wakeup.
608 1.116 dsl *
609 1.116 dsl * Since we defer passing the SIGCONT on to our children until
610 1.116 dsl * the main processing loop, we can be sure that all the SIGCHLD
611 1.116 dsl * events will have happened by then - and that the waitpid() will
612 1.116 dsl * collect the child 'suspended' events.
613 1.116 dsl * For correct sequencing we just need to ensure we process the
614 1.116 dsl * waitpid() before passign on the SIGCONT.
615 1.116 dsl *
616 1.116 dsl * In any case nothing else is needed here.
617 1.115 dsl */
618 1.1 cgd
619 1.68 pk /* Restore handler and signal mask */
620 1.116 dsl act.sa_handler = JobPassSig_suspend;
621 1.96 christos (void)sigaction(signo, &act, NULL);
622 1.96 christos (void)sigprocmask(SIG_SETMASK, &omask, NULL);
623 1.1 cgd }
624 1.1 cgd
625 1.1 cgd /*-
626 1.1 cgd *-----------------------------------------------------------------------
627 1.116 dsl * JobFindPid --
628 1.1 cgd * Compare the pid of the job with the given pid and return 0 if they
629 1.120 dsl * are equal. This function is called from Job_CatchChildren
630 1.120 dsl * to find the job descriptor of the finished job.
631 1.1 cgd *
632 1.72 wiz * Input:
633 1.72 wiz * job job to examine
634 1.72 wiz * pid process id desired
635 1.72 wiz *
636 1.1 cgd * Results:
637 1.114 dsl * Job with matching pid
638 1.1 cgd *
639 1.1 cgd * Side Effects:
640 1.1 cgd * None
641 1.1 cgd *-----------------------------------------------------------------------
642 1.1 cgd */
643 1.114 dsl static Job *
644 1.153 sjg JobFindPid(int pid, int status, Boolean isJobs)
645 1.1 cgd {
646 1.114 dsl Job *job;
647 1.114 dsl
648 1.114 dsl for (job = job_table; job < job_table_end; job++) {
649 1.116 dsl if ((job->job_state == status) && job->pid == pid)
650 1.114 dsl return job;
651 1.114 dsl }
652 1.153 sjg if (DEBUG(JOB) && isJobs)
653 1.114 dsl job_table_dump("no pid");
654 1.114 dsl return NULL;
655 1.12 christos }
656 1.12 christos
657 1.1 cgd /*-
658 1.1 cgd *-----------------------------------------------------------------------
659 1.1 cgd * JobPrintCommand --
660 1.1 cgd * Put out another command for the given job. If the command starts
661 1.1 cgd * with an @ or a - we process it specially. In the former case,
662 1.1 cgd * so long as the -s and -n flags weren't given to make, we stick
663 1.1 cgd * a shell-specific echoOff command in the script. In the latter,
664 1.1 cgd * we ignore errors for the entire job, unless the shell has error
665 1.1 cgd * control.
666 1.1 cgd * If the command is just "..." we take all future commands for this
667 1.1 cgd * job to be commands to be executed once the entire graph has been
668 1.1 cgd * made and return non-zero to signal that the end of the commands
669 1.1 cgd * was reached. These commands are later attached to the postCommands
670 1.1 cgd * node and executed by Job_End when all things are done.
671 1.1 cgd * This function is called from JobStart via Lst_ForEach.
672 1.1 cgd *
673 1.72 wiz * Input:
674 1.72 wiz * cmdp command string to print
675 1.72 wiz * jobp job for which to print it
676 1.72 wiz *
677 1.1 cgd * Results:
678 1.1 cgd * Always 0, unless the command was "..."
679 1.1 cgd *
680 1.1 cgd * Side Effects:
681 1.1 cgd * If the command begins with a '-' and the shell has no error control,
682 1.1 cgd * the JOB_IGNERR flag is set in the job descriptor.
683 1.1 cgd * If the command is "..." and we're not ignoring such things,
684 1.1 cgd * tailCmds is set to the successor node of the cmd.
685 1.1 cgd * numCommands is incremented if the command is actually printed.
686 1.1 cgd *-----------------------------------------------------------------------
687 1.1 cgd */
688 1.1 cgd static int
689 1.144 dsl JobPrintCommand(void *cmdp, void *jobp)
690 1.1 cgd {
691 1.1 cgd Boolean noSpecials; /* true if we shouldn't worry about
692 1.1 cgd * inserting special commands into
693 1.1 cgd * the input stream. */
694 1.1 cgd Boolean shutUp = FALSE; /* true if we put a no echo command
695 1.1 cgd * into the command file */
696 1.1 cgd Boolean errOff = FALSE; /* true if we turned error checking
697 1.1 cgd * off before printing the command
698 1.1 cgd * and need to turn it back on */
699 1.77 christos const char *cmdTemplate; /* Template to use when printing the
700 1.1 cgd * command */
701 1.1 cgd char *cmdStart; /* Start of expanded command */
702 1.83 jmc char *escCmd = NULL; /* Command with quotes/backticks escaped */
703 1.98 christos char *cmd = (char *)cmdp;
704 1.98 christos Job *job = (Job *)jobp;
705 1.83 jmc int i, j;
706 1.83 jmc
707 1.45 sommerfe noSpecials = NoExecute(job->node);
708 1.1 cgd
709 1.12 christos if (strcmp(cmd, "...") == 0) {
710 1.16 christos job->node->type |= OP_SAVE_CMDS;
711 1.1 cgd if ((job->flags & JOB_IGNDOTS) == 0) {
712 1.220 rillig LstNode dotsNode = Lst_Member(job->node->commands, cmd);
713 1.220 rillig job->tailCmds = dotsNode != NULL ? Lst_Succ(dotsNode) : NULL;
714 1.16 christos return 1;
715 1.12 christos }
716 1.16 christos return 0;
717 1.1 cgd }
718 1.1 cgd
719 1.12 christos #define DBPRINTF(fmt, arg) if (DEBUG(JOB)) { \
720 1.123 dsl (void)fprintf(debug_file, fmt, arg); \
721 1.12 christos } \
722 1.96 christos (void)fprintf(job->cmdFILE, fmt, arg); \
723 1.96 christos (void)fflush(job->cmdFILE);
724 1.1 cgd
725 1.1 cgd numCommands += 1;
726 1.1 cgd
727 1.203 rillig cmdStart = cmd = Var_Subst(cmd, job->node, VARE_WANTRES);
728 1.1 cgd
729 1.1 cgd cmdTemplate = "%s\n";
730 1.1 cgd
731 1.1 cgd /*
732 1.1 cgd * Check for leading @' and -'s to control echoing and error checking.
733 1.1 cgd */
734 1.85 sjg while (*cmd == '@' || *cmd == '-' || (*cmd == '+')) {
735 1.85 sjg switch (*cmd) {
736 1.85 sjg case '@':
737 1.135 sjg shutUp = DEBUG(LOUD) ? FALSE : TRUE;
738 1.85 sjg break;
739 1.85 sjg case '-':
740 1.1 cgd errOff = TRUE;
741 1.85 sjg break;
742 1.85 sjg case '+':
743 1.85 sjg if (noSpecials) {
744 1.85 sjg /*
745 1.85 sjg * We're not actually executing anything...
746 1.85 sjg * but this one needs to be - use compat mode just for it.
747 1.85 sjg */
748 1.124 dsl CompatRunCommand(cmdp, job->node);
749 1.190 riastrad free(cmdStart);
750 1.85 sjg return 0;
751 1.85 sjg }
752 1.85 sjg break;
753 1.1 cgd }
754 1.1 cgd cmd++;
755 1.1 cgd }
756 1.1 cgd
757 1.5 cgd while (isspace((unsigned char) *cmd))
758 1.5 cgd cmd++;
759 1.1 cgd
760 1.83 jmc /*
761 1.83 jmc * If the shell doesn't have error control the alternate echo'ing will
762 1.201 rillig * be done (to avoid showing additional error checking code)
763 1.83 jmc * and this will need the characters '$ ` \ "' escaped
764 1.83 jmc */
765 1.83 jmc
766 1.83 jmc if (!commandShell->hasErrCtl) {
767 1.83 jmc /* Worst that could happen is every char needs escaping. */
768 1.140 joerg escCmd = bmake_malloc((strlen(cmd) * 2) + 1);
769 1.83 jmc for (i = 0, j= 0; cmd[i] != '\0'; i++, j++) {
770 1.201 rillig if (cmd[i] == '$' || cmd[i] == '`' || cmd[i] == '\\' ||
771 1.83 jmc cmd[i] == '"')
772 1.83 jmc escCmd[j++] = '\\';
773 1.201 rillig escCmd[j] = cmd[i];
774 1.83 jmc }
775 1.83 jmc escCmd[j] = 0;
776 1.83 jmc }
777 1.83 jmc
778 1.1 cgd if (shutUp) {
779 1.12 christos if (!(job->flags & JOB_SILENT) && !noSpecials &&
780 1.1 cgd commandShell->hasEchoCtl) {
781 1.12 christos DBPRINTF("%s\n", commandShell->echoOff);
782 1.1 cgd } else {
783 1.83 jmc if (commandShell->hasErrCtl)
784 1.83 jmc shutUp = FALSE;
785 1.1 cgd }
786 1.1 cgd }
787 1.1 cgd
788 1.1 cgd if (errOff) {
789 1.152 christos if (!noSpecials) {
790 1.1 cgd if (commandShell->hasErrCtl) {
791 1.1 cgd /*
792 1.1 cgd * we don't want the error-control commands showing
793 1.1 cgd * up either, so we turn off echoing while executing
794 1.1 cgd * them. We could put another field in the shell
795 1.1 cgd * structure to tell JobDoOutput to look for this
796 1.1 cgd * string too, but why make it any more complex than
797 1.1 cgd * it already is?
798 1.1 cgd */
799 1.12 christos if (!(job->flags & JOB_SILENT) && !shutUp &&
800 1.1 cgd commandShell->hasEchoCtl) {
801 1.12 christos DBPRINTF("%s\n", commandShell->echoOff);
802 1.12 christos DBPRINTF("%s\n", commandShell->ignErr);
803 1.12 christos DBPRINTF("%s\n", commandShell->echoOn);
804 1.1 cgd } else {
805 1.83 jmc DBPRINTF("%s\n", commandShell->ignErr);
806 1.1 cgd }
807 1.1 cgd } else if (commandShell->ignErr &&
808 1.12 christos (*commandShell->ignErr != '\0'))
809 1.1 cgd {
810 1.1 cgd /*
811 1.1 cgd * The shell has no error control, so we need to be
812 1.1 cgd * weird to get it to ignore any errors from the command.
813 1.1 cgd * If echoing is turned on, we turn it off and use the
814 1.1 cgd * errCheck template to echo the command. Leave echoing
815 1.1 cgd * off so the user doesn't see the weirdness we go through
816 1.1 cgd * to ignore errors. Set cmdTemplate to use the weirdness
817 1.1 cgd * instead of the simple "%s\n" template.
818 1.1 cgd */
819 1.178 sjg job->flags |= JOB_IGNERR;
820 1.83 jmc if (!(job->flags & JOB_SILENT) && !shutUp) {
821 1.83 jmc if (commandShell->hasEchoCtl) {
822 1.83 jmc DBPRINTF("%s\n", commandShell->echoOff);
823 1.83 jmc }
824 1.83 jmc DBPRINTF(commandShell->errCheck, escCmd);
825 1.1 cgd shutUp = TRUE;
826 1.83 jmc } else {
827 1.83 jmc if (!shutUp) {
828 1.83 jmc DBPRINTF(commandShell->errCheck, escCmd);
829 1.83 jmc }
830 1.1 cgd }
831 1.1 cgd cmdTemplate = commandShell->ignErr;
832 1.1 cgd /*
833 1.16 christos * The error ignoration (hee hee) is already taken care
834 1.1 cgd * of by the ignErr template, so pretend error checking
835 1.1 cgd * is still on.
836 1.1 cgd */
837 1.1 cgd errOff = FALSE;
838 1.1 cgd } else {
839 1.1 cgd errOff = FALSE;
840 1.1 cgd }
841 1.1 cgd } else {
842 1.1 cgd errOff = FALSE;
843 1.1 cgd }
844 1.83 jmc } else {
845 1.83 jmc
846 1.201 rillig /*
847 1.83 jmc * If errors are being checked and the shell doesn't have error control
848 1.83 jmc * but does supply an errOut template, then setup commands to run
849 1.83 jmc * through it.
850 1.83 jmc */
851 1.83 jmc
852 1.201 rillig if (!commandShell->hasErrCtl && commandShell->errOut &&
853 1.83 jmc (*commandShell->errOut != '\0')) {
854 1.83 jmc if (!(job->flags & JOB_SILENT) && !shutUp) {
855 1.83 jmc if (commandShell->hasEchoCtl) {
856 1.83 jmc DBPRINTF("%s\n", commandShell->echoOff);
857 1.83 jmc }
858 1.83 jmc DBPRINTF(commandShell->errCheck, escCmd);
859 1.83 jmc shutUp = TRUE;
860 1.83 jmc }
861 1.93 jmc /* If it's a comment line or blank, treat as an ignored error */
862 1.93 jmc if ((escCmd[0] == commandShell->commentChar) ||
863 1.93 jmc (escCmd[0] == 0))
864 1.83 jmc cmdTemplate = commandShell->ignErr;
865 1.83 jmc else
866 1.83 jmc cmdTemplate = commandShell->errOut;
867 1.83 jmc errOff = FALSE;
868 1.83 jmc }
869 1.1 cgd }
870 1.16 christos
871 1.49 sjg if (DEBUG(SHELL) && strcmp(shellName, "sh") == 0 &&
872 1.49 sjg (job->flags & JOB_TRACED) == 0) {
873 1.49 sjg DBPRINTF("set -%s\n", "x");
874 1.49 sjg job->flags |= JOB_TRACED;
875 1.49 sjg }
876 1.201 rillig
877 1.12 christos DBPRINTF(cmdTemplate, cmd);
878 1.23 itohy free(cmdStart);
879 1.185 christos free(escCmd);
880 1.1 cgd if (errOff) {
881 1.1 cgd /*
882 1.1 cgd * If echoing is already off, there's no point in issuing the
883 1.1 cgd * echoOff command. Otherwise we issue it and pretend it was on
884 1.1 cgd * for the whole command...
885 1.1 cgd */
886 1.1 cgd if (!shutUp && !(job->flags & JOB_SILENT) && commandShell->hasEchoCtl){
887 1.12 christos DBPRINTF("%s\n", commandShell->echoOff);
888 1.1 cgd shutUp = TRUE;
889 1.1 cgd }
890 1.12 christos DBPRINTF("%s\n", commandShell->errCheck);
891 1.1 cgd }
892 1.83 jmc if (shutUp && commandShell->hasEchoCtl) {
893 1.12 christos DBPRINTF("%s\n", commandShell->echoOn);
894 1.1 cgd }
895 1.12 christos return 0;
896 1.1 cgd }
897 1.1 cgd
898 1.1 cgd /*-
899 1.1 cgd *-----------------------------------------------------------------------
900 1.1 cgd * JobSaveCommand --
901 1.1 cgd * Save a command to be executed when everything else is done.
902 1.1 cgd * Callback function for JobFinish...
903 1.1 cgd *
904 1.1 cgd * Results:
905 1.1 cgd * Always returns 0
906 1.1 cgd *
907 1.1 cgd * Side Effects:
908 1.221 rillig * The command is tacked onto the end of postCommands' commands list.
909 1.1 cgd *
910 1.1 cgd *-----------------------------------------------------------------------
911 1.1 cgd */
912 1.1 cgd static int
913 1.144 dsl JobSaveCommand(void *cmd, void *gn)
914 1.1 cgd {
915 1.203 rillig cmd = Var_Subst((char *)cmd, (GNode *)gn, VARE_WANTRES);
916 1.220 rillig Lst_Append(postCommands->commands, cmd);
917 1.200 rillig return 0;
918 1.12 christos }
919 1.12 christos
920 1.12 christos
921 1.12 christos /*-
922 1.12 christos *-----------------------------------------------------------------------
923 1.12 christos * JobClose --
924 1.12 christos * Called to close both input and output pipes when a job is finished.
925 1.12 christos *
926 1.12 christos * Results:
927 1.12 christos * Nada
928 1.12 christos *
929 1.12 christos * Side Effects:
930 1.12 christos * The file descriptors associated with the job are closed.
931 1.12 christos *
932 1.12 christos *-----------------------------------------------------------------------
933 1.12 christos */
934 1.12 christos static void
935 1.72 wiz JobClose(Job *job)
936 1.12 christos {
937 1.120 dsl clearfd(job);
938 1.122 dsl (void)close(job->outPipe);
939 1.122 dsl job->outPipe = -1;
940 1.122 dsl
941 1.120 dsl JobDoOutput(job, TRUE);
942 1.120 dsl (void)close(job->inPipe);
943 1.120 dsl job->inPipe = -1;
944 1.1 cgd }
945 1.1 cgd
946 1.1 cgd /*-
947 1.1 cgd *-----------------------------------------------------------------------
948 1.1 cgd * JobFinish --
949 1.1 cgd * Do final processing for the given job including updating
950 1.1 cgd * parents and starting new jobs as available/necessary. Note
951 1.1 cgd * that we pay no attention to the JOB_IGNERR flag here.
952 1.1 cgd * This is because when we're called because of a noexecute flag
953 1.1 cgd * or something, jstat.w_status is 0 and when called from
954 1.1 cgd * Job_CatchChildren, the status is zeroed if it s/b ignored.
955 1.1 cgd *
956 1.72 wiz * Input:
957 1.72 wiz * job job to finish
958 1.72 wiz * status sub-why job went away
959 1.72 wiz *
960 1.1 cgd * Results:
961 1.1 cgd * None
962 1.1 cgd *
963 1.1 cgd * Side Effects:
964 1.1 cgd * Final commands for the job are placed on postCommands.
965 1.1 cgd *
966 1.16 christos * If we got an error and are aborting (aborting == ABORT_ERROR) and
967 1.1 cgd * the job list is now empty, we are done for the day.
968 1.16 christos * If we recognized an error (errors !=0), we set the aborting flag
969 1.1 cgd * to ABORT_ERROR so no more jobs will be started.
970 1.1 cgd *-----------------------------------------------------------------------
971 1.1 cgd */
972 1.1 cgd /*ARGSUSED*/
973 1.5 cgd static void
974 1.116 dsl JobFinish(Job *job, int status)
975 1.1 cgd {
976 1.102 dsl Boolean done, return_job_token;
977 1.1 cgd
978 1.116 dsl if (DEBUG(JOB)) {
979 1.139 christos fprintf(debug_file, "Jobfinish: %d [%s], status %d\n",
980 1.139 christos job->pid, job->node->name, status);
981 1.116 dsl }
982 1.116 dsl
983 1.116 dsl if ((WIFEXITED(status) &&
984 1.116 dsl (((WEXITSTATUS(status) != 0) && !(job->flags & JOB_IGNERR)))) ||
985 1.116 dsl WIFSIGNALED(status))
986 1.1 cgd {
987 1.1 cgd /*
988 1.1 cgd * If it exited non-zero and either we're doing things our
989 1.1 cgd * way or we're not ignoring errors, the job is finished.
990 1.1 cgd * Similarly, if the shell died because of a signal
991 1.1 cgd * the job is also finished. In these
992 1.1 cgd * cases, finish out the job's output before printing the exit
993 1.1 cgd * status...
994 1.1 cgd */
995 1.12 christos JobClose(job);
996 1.1 cgd if (job->cmdFILE != NULL && job->cmdFILE != stdout) {
997 1.96 christos (void)fclose(job->cmdFILE);
998 1.34 christos job->cmdFILE = NULL;
999 1.1 cgd }
1000 1.1 cgd done = TRUE;
1001 1.116 dsl } else if (WIFEXITED(status)) {
1002 1.1 cgd /*
1003 1.1 cgd * Deal with ignored errors in -B mode. We need to print a message
1004 1.1 cgd * telling of the ignored error as well as setting status.w_status
1005 1.1 cgd * to 0 so the next command gets run. To do this, we set done to be
1006 1.12 christos * TRUE if in -B mode and the job exited non-zero.
1007 1.12 christos */
1008 1.116 dsl done = WEXITSTATUS(status) != 0;
1009 1.16 christos /*
1010 1.12 christos * Old comment said: "Note we don't
1011 1.1 cgd * want to close down any of the streams until we know we're at the
1012 1.12 christos * end."
1013 1.12 christos * But we do. Otherwise when are we going to print the rest of the
1014 1.12 christos * stuff?
1015 1.12 christos */
1016 1.12 christos JobClose(job);
1017 1.1 cgd } else {
1018 1.1 cgd /*
1019 1.1 cgd * No need to close things down or anything.
1020 1.1 cgd */
1021 1.1 cgd done = FALSE;
1022 1.1 cgd }
1023 1.16 christos
1024 1.116 dsl if (done) {
1025 1.116 dsl if (WIFEXITED(status)) {
1026 1.12 christos if (DEBUG(JOB)) {
1027 1.139 christos (void)fprintf(debug_file, "Process %d [%s] exited.\n",
1028 1.139 christos job->pid, job->node->name);
1029 1.12 christos }
1030 1.116 dsl if (WEXITSTATUS(status) != 0) {
1031 1.120 dsl if (job->node != lastNode) {
1032 1.107 dsl MESSAGE(stdout, job->node);
1033 1.1 cgd lastNode = job->node;
1034 1.1 cgd }
1035 1.155 sjg #ifdef USE_META
1036 1.155 sjg if (useMeta) {
1037 1.155 sjg meta_job_error(job, job->node, job->flags, WEXITSTATUS(status));
1038 1.155 sjg }
1039 1.155 sjg #endif
1040 1.198 sjg if (!dieQuietly(job->node, -1))
1041 1.198 sjg (void)printf("*** [%s] Error code %d%s\n",
1042 1.198 sjg job->node->name,
1043 1.198 sjg WEXITSTATUS(status),
1044 1.198 sjg (job->flags & JOB_IGNERR) ? " (ignored)" : "");
1045 1.151 sjg if (job->flags & JOB_IGNERR) {
1046 1.116 dsl status = 0;
1047 1.151 sjg } else {
1048 1.188 dholland if (deleteOnError) {
1049 1.188 dholland JobDeleteTarget(job->node);
1050 1.188 dholland }
1051 1.151 sjg PrintOnError(job->node, NULL);
1052 1.151 sjg }
1053 1.1 cgd } else if (DEBUG(JOB)) {
1054 1.120 dsl if (job->node != lastNode) {
1055 1.107 dsl MESSAGE(stdout, job->node);
1056 1.1 cgd lastNode = job->node;
1057 1.1 cgd }
1058 1.107 dsl (void)printf("*** [%s] Completed successfully\n",
1059 1.61 pk job->node->name);
1060 1.12 christos }
1061 1.1 cgd } else {
1062 1.120 dsl if (job->node != lastNode) {
1063 1.107 dsl MESSAGE(stdout, job->node);
1064 1.1 cgd lastNode = job->node;
1065 1.1 cgd }
1066 1.107 dsl (void)printf("*** [%s] Signal %d\n",
1067 1.116 dsl job->node->name, WTERMSIG(status));
1068 1.188 dholland if (deleteOnError) {
1069 1.188 dholland JobDeleteTarget(job->node);
1070 1.188 dholland }
1071 1.1 cgd }
1072 1.107 dsl (void)fflush(stdout);
1073 1.1 cgd }
1074 1.16 christos
1075 1.156 sjg #ifdef USE_META
1076 1.156 sjg if (useMeta) {
1077 1.187 sjg int x;
1078 1.187 sjg
1079 1.187 sjg if ((x = meta_job_finish(job)) != 0 && status == 0) {
1080 1.187 sjg status = x;
1081 1.187 sjg }
1082 1.156 sjg }
1083 1.156 sjg #endif
1084 1.201 rillig
1085 1.102 dsl return_job_token = FALSE;
1086 1.102 dsl
1087 1.107 dsl Trace_Log(JOBEND, job);
1088 1.107 dsl if (!(job->flags & JOB_SPECIAL)) {
1089 1.116 dsl if ((status != 0) ||
1090 1.107 dsl (aborting == ABORT_ERROR) ||
1091 1.107 dsl (aborting == ABORT_INTERRUPT))
1092 1.107 dsl return_job_token = TRUE;
1093 1.42 sommerfe }
1094 1.1 cgd
1095 1.116 dsl if ((aborting != ABORT_ERROR) && (aborting != ABORT_INTERRUPT) && (status == 0)) {
1096 1.1 cgd /*
1097 1.1 cgd * As long as we aren't aborting and the job didn't return a non-zero
1098 1.1 cgd * status that we shouldn't ignore, we call Make_Update to update
1099 1.1 cgd * the parents. In addition, any saved commands for the node are placed
1100 1.1 cgd * on the .END target.
1101 1.1 cgd */
1102 1.142 dsl if (job->tailCmds != NULL) {
1103 1.220 rillig Lst_ForEachFrom(job->node->commands, job->tailCmds,
1104 1.1 cgd JobSaveCommand,
1105 1.216 rillig job->node);
1106 1.1 cgd }
1107 1.1 cgd job->node->made = MADE;
1108 1.43 sommerfe if (!(job->flags & JOB_SPECIAL))
1109 1.102 dsl return_job_token = TRUE;
1110 1.12 christos Make_Update(job->node);
1111 1.116 dsl job->job_state = JOB_ST_FREE;
1112 1.116 dsl } else if (status != 0) {
1113 1.1 cgd errors += 1;
1114 1.116 dsl job->job_state = JOB_ST_FREE;
1115 1.1 cgd }
1116 1.1 cgd
1117 1.1 cgd /*
1118 1.1 cgd * Set aborting if any error.
1119 1.1 cgd */
1120 1.1 cgd if (errors && !keepgoing && (aborting != ABORT_INTERRUPT)) {
1121 1.1 cgd /*
1122 1.1 cgd * If we found any errors in this batch of children and the -k flag
1123 1.1 cgd * wasn't given, we set the aborting flag so no more jobs get
1124 1.1 cgd * started.
1125 1.1 cgd */
1126 1.1 cgd aborting = ABORT_ERROR;
1127 1.1 cgd }
1128 1.16 christos
1129 1.102 dsl if (return_job_token)
1130 1.102 dsl Job_TokenReturn();
1131 1.102 dsl
1132 1.111 dsl if (aborting == ABORT_ERROR && jobTokensRunning == 0) {
1133 1.1 cgd /*
1134 1.1 cgd * If we are aborting and the job table is now empty, we finish.
1135 1.1 cgd */
1136 1.12 christos Finish(errors);
1137 1.1 cgd }
1138 1.1 cgd }
1139 1.1 cgd
1140 1.1 cgd /*-
1141 1.1 cgd *-----------------------------------------------------------------------
1142 1.1 cgd * Job_Touch --
1143 1.1 cgd * Touch the given target. Called by JobStart when the -t flag was
1144 1.1 cgd * given
1145 1.1 cgd *
1146 1.72 wiz * Input:
1147 1.72 wiz * gn the node of the file to touch
1148 1.72 wiz * silent TRUE if should not print message
1149 1.72 wiz *
1150 1.1 cgd * Results:
1151 1.1 cgd * None
1152 1.1 cgd *
1153 1.1 cgd * Side Effects:
1154 1.1 cgd * The data modification of the file is changed. In addition, if the
1155 1.1 cgd * file did not exist, it is created.
1156 1.1 cgd *-----------------------------------------------------------------------
1157 1.1 cgd */
1158 1.1 cgd void
1159 1.72 wiz Job_Touch(GNode *gn, Boolean silent)
1160 1.1 cgd {
1161 1.1 cgd int streamID; /* ID of stream opened to do the touch */
1162 1.14 christos struct utimbuf times; /* Times for utime() call */
1163 1.1 cgd
1164 1.157 christos if (gn->type & (OP_JOIN|OP_USE|OP_USEBEFORE|OP_EXEC|OP_OPTIONAL|
1165 1.157 christos OP_SPECIAL|OP_PHONY)) {
1166 1.1 cgd /*
1167 1.1 cgd * .JOIN, .USE, .ZEROTIME and .OPTIONAL targets are "virtual" targets
1168 1.1 cgd * and, as such, shouldn't really be created.
1169 1.1 cgd */
1170 1.1 cgd return;
1171 1.1 cgd }
1172 1.16 christos
1173 1.45 sommerfe if (!silent || NoExecute(gn)) {
1174 1.96 christos (void)fprintf(stdout, "touch %s\n", gn->name);
1175 1.96 christos (void)fflush(stdout);
1176 1.1 cgd }
1177 1.1 cgd
1178 1.45 sommerfe if (NoExecute(gn)) {
1179 1.1 cgd return;
1180 1.1 cgd }
1181 1.1 cgd
1182 1.1 cgd if (gn->type & OP_ARCHV) {
1183 1.12 christos Arch_Touch(gn);
1184 1.1 cgd } else if (gn->type & OP_LIB) {
1185 1.12 christos Arch_TouchLib(gn);
1186 1.1 cgd } else {
1187 1.1 cgd char *file = gn->path ? gn->path : gn->name;
1188 1.1 cgd
1189 1.14 christos times.actime = times.modtime = now;
1190 1.14 christos if (utime(file, ×) < 0){
1191 1.12 christos streamID = open(file, O_RDWR | O_CREAT, 0666);
1192 1.1 cgd
1193 1.1 cgd if (streamID >= 0) {
1194 1.1 cgd char c;
1195 1.1 cgd
1196 1.1 cgd /*
1197 1.1 cgd * Read and write a byte to the file to change the
1198 1.1 cgd * modification time, then close the file.
1199 1.1 cgd */
1200 1.1 cgd if (read(streamID, &c, 1) == 1) {
1201 1.96 christos (void)lseek(streamID, (off_t)0, SEEK_SET);
1202 1.165 christos while (write(streamID, &c, 1) == -1 && errno == EAGAIN)
1203 1.165 christos continue;
1204 1.1 cgd }
1205 1.16 christos
1206 1.96 christos (void)close(streamID);
1207 1.12 christos } else {
1208 1.96 christos (void)fprintf(stdout, "*** couldn't touch %s: %s",
1209 1.12 christos file, strerror(errno));
1210 1.96 christos (void)fflush(stdout);
1211 1.12 christos }
1212 1.1 cgd }
1213 1.1 cgd }
1214 1.1 cgd }
1215 1.1 cgd
1216 1.1 cgd /*-
1217 1.1 cgd *-----------------------------------------------------------------------
1218 1.1 cgd * Job_CheckCommands --
1219 1.16 christos * Make sure the given node has all the commands it needs.
1220 1.1 cgd *
1221 1.72 wiz * Input:
1222 1.72 wiz * gn The target whose commands need verifying
1223 1.72 wiz * abortProc Function to abort with message
1224 1.72 wiz *
1225 1.1 cgd * Results:
1226 1.1 cgd * TRUE if the commands list is/was ok.
1227 1.1 cgd *
1228 1.1 cgd * Side Effects:
1229 1.1 cgd * The node will have commands from the .DEFAULT rule added to it
1230 1.1 cgd * if it needs them.
1231 1.1 cgd *-----------------------------------------------------------------------
1232 1.1 cgd */
1233 1.1 cgd Boolean
1234 1.77 christos Job_CheckCommands(GNode *gn, void (*abortProc)(const char *, ...))
1235 1.1 cgd {
1236 1.220 rillig if (OP_NOP(gn->type) && Lst_IsEmpty(gn->commands) &&
1237 1.220 rillig ((gn->type & OP_LIB) == 0 || Lst_IsEmpty(gn->children))) {
1238 1.1 cgd /*
1239 1.1 cgd * No commands. Look for .DEFAULT rule from which we might infer
1240 1.16 christos * commands
1241 1.1 cgd */
1242 1.220 rillig if ((DEFAULT != NULL) && !Lst_IsEmpty(DEFAULT->commands) &&
1243 1.110 dsl (gn->type & OP_SPECIAL) == 0) {
1244 1.6 jtc char *p1;
1245 1.1 cgd /*
1246 1.1 cgd * Make only looks for a .DEFAULT if the node was never the
1247 1.1 cgd * target of an operator, so that's what we do too. If
1248 1.1 cgd * a .DEFAULT was given, we substitute its commands for gn's
1249 1.1 cgd * commands and set the IMPSRC variable to be the target's name
1250 1.1 cgd * The DEFAULT node acts like a transformation rule, in that
1251 1.1 cgd * gn also inherits any attributes or sources attached to
1252 1.1 cgd * .DEFAULT itself.
1253 1.1 cgd */
1254 1.1 cgd Make_HandleUse(DEFAULT, gn);
1255 1.199 rillig Var_Set(IMPSRC, Var_Value(TARGET, gn, &p1), gn);
1256 1.204 rillig bmake_free(p1);
1257 1.161 christos } else if (Dir_MTime(gn, 0) == 0 && (gn->type & OP_SPECIAL) == 0) {
1258 1.1 cgd /*
1259 1.1 cgd * The node wasn't the target of an operator we have no .DEFAULT
1260 1.1 cgd * rule to go on and the target doesn't already exist. There's
1261 1.1 cgd * nothing more we can do for this branch. If the -k flag wasn't
1262 1.1 cgd * given, we stop in our tracks, otherwise we just don't update
1263 1.16 christos * this node's parents so they never get examined.
1264 1.1 cgd */
1265 1.46 christos static const char msg[] = ": don't know how to make";
1266 1.12 christos
1267 1.134 dsl if (gn->flags & FROM_DEPEND) {
1268 1.172 christos if (!Job_RunTarget(".STALE", gn->fname))
1269 1.172 christos fprintf(stdout, "%s: %s, %d: ignoring stale %s for %s\n",
1270 1.172 christos progname, gn->fname, gn->lineno, makeDependfile,
1271 1.172 christos gn->name);
1272 1.134 dsl return TRUE;
1273 1.134 dsl }
1274 1.134 dsl
1275 1.1 cgd if (gn->type & OP_OPTIONAL) {
1276 1.152 christos (void)fprintf(stdout, "%s%s %s (ignored)\n", progname,
1277 1.46 christos msg, gn->name);
1278 1.96 christos (void)fflush(stdout);
1279 1.1 cgd } else if (keepgoing) {
1280 1.152 christos (void)fprintf(stdout, "%s%s %s (continuing)\n", progname,
1281 1.46 christos msg, gn->name);
1282 1.96 christos (void)fflush(stdout);
1283 1.205 rillig return FALSE;
1284 1.1 cgd } else {
1285 1.46 christos (*abortProc)("%s%s %s. Stop", progname, msg, gn->name);
1286 1.12 christos return FALSE;
1287 1.1 cgd }
1288 1.1 cgd }
1289 1.1 cgd }
1290 1.12 christos return TRUE;
1291 1.1 cgd }
1292 1.1 cgd
1293 1.1 cgd /*-
1294 1.1 cgd *-----------------------------------------------------------------------
1295 1.1 cgd * JobExec --
1296 1.116 dsl * Execute the shell for the given job. Called from JobStart
1297 1.1 cgd *
1298 1.72 wiz * Input:
1299 1.72 wiz * job Job to execute
1300 1.72 wiz *
1301 1.1 cgd * Results:
1302 1.1 cgd * None.
1303 1.1 cgd *
1304 1.1 cgd * Side Effects:
1305 1.1 cgd * A shell is executed, outputs is altered and the Job structure added
1306 1.1 cgd * to the job table.
1307 1.1 cgd *
1308 1.1 cgd *-----------------------------------------------------------------------
1309 1.1 cgd */
1310 1.1 cgd static void
1311 1.72 wiz JobExec(Job *job, char **argv)
1312 1.1 cgd {
1313 1.139 christos int cpid; /* ID of new child */
1314 1.69 pk sigset_t mask;
1315 1.16 christos
1316 1.49 sjg job->flags &= ~JOB_TRACED;
1317 1.49 sjg
1318 1.1 cgd if (DEBUG(JOB)) {
1319 1.1 cgd int i;
1320 1.16 christos
1321 1.123 dsl (void)fprintf(debug_file, "Running %s %sly\n", job->node->name, "local");
1322 1.123 dsl (void)fprintf(debug_file, "\tCommand: ");
1323 1.12 christos for (i = 0; argv[i] != NULL; i++) {
1324 1.123 dsl (void)fprintf(debug_file, "%s ", argv[i]);
1325 1.1 cgd }
1326 1.205 rillig (void)fprintf(debug_file, "\n");
1327 1.1 cgd }
1328 1.16 christos
1329 1.1 cgd /*
1330 1.1 cgd * Some jobs produce no output and it's disconcerting to have
1331 1.16 christos * no feedback of their running (since they produce no output, the
1332 1.1 cgd * banner with their name in it never appears). This is an attempt to
1333 1.1 cgd * provide that feedback, even if nothing follows it.
1334 1.1 cgd */
1335 1.109 dsl if ((lastNode != job->node) && !(job->flags & JOB_SILENT)) {
1336 1.12 christos MESSAGE(stdout, job->node);
1337 1.1 cgd lastNode = job->node;
1338 1.1 cgd }
1339 1.16 christos
1340 1.69 pk /* No interruptions until this job is on the `jobs' list */
1341 1.69 pk JobSigLock(&mask);
1342 1.69 pk
1343 1.116 dsl /* Pre-emptively mark job running, pid still zero though */
1344 1.116 dsl job->job_state = JOB_ST_RUNNING;
1345 1.116 dsl
1346 1.149 sjg cpid = vFork();
1347 1.116 dsl if (cpid == -1)
1348 1.53 matt Punt("Cannot vfork: %s", strerror(errno));
1349 1.116 dsl
1350 1.116 dsl if (cpid == 0) {
1351 1.116 dsl /* Child */
1352 1.146 sjg sigset_t tmask;
1353 1.1 cgd
1354 1.155 sjg #ifdef USE_META
1355 1.155 sjg if (useMeta) {
1356 1.155 sjg meta_job_child(job);
1357 1.155 sjg }
1358 1.155 sjg #endif
1359 1.1 cgd /*
1360 1.69 pk * Reset all signal handlers; this is necessary because we also
1361 1.69 pk * need to unblock signals before we exec(2).
1362 1.69 pk */
1363 1.69 pk JobSigReset();
1364 1.69 pk
1365 1.69 pk /* Now unblock signals */
1366 1.146 sjg sigemptyset(&tmask);
1367 1.146 sjg JobSigUnlock(&tmask);
1368 1.69 pk
1369 1.69 pk /*
1370 1.1 cgd * Must duplicate the input stream down to the child's input and
1371 1.16 christos * reset it to the beginning (again). Since the stream was marked
1372 1.1 cgd * close-on-exec, we must clear that bit in the new input.
1373 1.1 cgd */
1374 1.64 pk if (dup2(FILENO(job->cmdFILE), 0) == -1) {
1375 1.64 pk execError("dup2", "job->cmdFILE");
1376 1.64 pk _exit(1);
1377 1.64 pk }
1378 1.189 riastrad if (fcntl(0, F_SETFD, 0) == -1) {
1379 1.189 riastrad execError("fcntl clear close-on-exec", "stdin");
1380 1.189 riastrad _exit(1);
1381 1.189 riastrad }
1382 1.189 riastrad if (lseek(0, (off_t)0, SEEK_SET) == -1) {
1383 1.189 riastrad execError("lseek to 0", "stdin");
1384 1.189 riastrad _exit(1);
1385 1.189 riastrad }
1386 1.16 christos
1387 1.177 christos if (job->node->type & (OP_MAKE | OP_SUBMAKE)) {
1388 1.40 sommerfe /*
1389 1.40 sommerfe * Pass job token pipe to submakes.
1390 1.40 sommerfe */
1391 1.189 riastrad if (fcntl(tokenWaitJob.inPipe, F_SETFD, 0) == -1) {
1392 1.189 riastrad execError("clear close-on-exec", "tokenWaitJob.inPipe");
1393 1.189 riastrad _exit(1);
1394 1.189 riastrad }
1395 1.189 riastrad if (fcntl(tokenWaitJob.outPipe, F_SETFD, 0) == -1) {
1396 1.189 riastrad execError("clear close-on-exec", "tokenWaitJob.outPipe");
1397 1.189 riastrad _exit(1);
1398 1.189 riastrad }
1399 1.40 sommerfe }
1400 1.201 rillig
1401 1.120 dsl /*
1402 1.120 dsl * Set up the child's output to be routed through the pipe
1403 1.120 dsl * we've created for it.
1404 1.120 dsl */
1405 1.120 dsl if (dup2(job->outPipe, 1) == -1) {
1406 1.120 dsl execError("dup2", "job->outPipe");
1407 1.120 dsl _exit(1);
1408 1.1 cgd }
1409 1.1 cgd /*
1410 1.1 cgd * The output channels are marked close on exec. This bit was
1411 1.96 christos * duplicated by the dup2(on some systems), so we have to clear
1412 1.1 cgd * it before routing the shell's error output to the same place as
1413 1.1 cgd * its standard output.
1414 1.1 cgd */
1415 1.189 riastrad if (fcntl(1, F_SETFD, 0) == -1) {
1416 1.189 riastrad execError("clear close-on-exec", "stdout");
1417 1.189 riastrad _exit(1);
1418 1.189 riastrad }
1419 1.64 pk if (dup2(1, 2) == -1) {
1420 1.64 pk execError("dup2", "1, 2");
1421 1.64 pk _exit(1);
1422 1.64 pk }
1423 1.1 cgd
1424 1.1 cgd /*
1425 1.1 cgd * We want to switch the child into a different process family so
1426 1.1 cgd * we can kill it and all its descendants in one fell swoop,
1427 1.1 cgd * by killing its process family, but not commit suicide.
1428 1.1 cgd */
1429 1.170 christos #if defined(MAKE_NATIVE) || defined(HAVE_SETPGID)
1430 1.119 dsl #if defined(SYSV)
1431 1.119 dsl /* XXX: dsl - I'm sure this should be setpgrp()... */
1432 1.97 christos (void)setsid();
1433 1.119 dsl #else
1434 1.96 christos (void)setpgid(0, getpid());
1435 1.119 dsl #endif
1436 1.170 christos #endif
1437 1.1 cgd
1438 1.126 sjg Var_ExportVars();
1439 1.126 sjg
1440 1.106 dsl (void)execv(shellPath, argv);
1441 1.106 dsl execError("exec", shellPath);
1442 1.12 christos _exit(1);
1443 1.116 dsl }
1444 1.116 dsl
1445 1.116 dsl /* Parent, continuing after the child exec */
1446 1.116 dsl job->pid = cpid;
1447 1.1 cgd
1448 1.116 dsl Trace_Log(JOBSTART, job);
1449 1.40 sommerfe
1450 1.196 riastrad #ifdef USE_META
1451 1.196 riastrad if (useMeta) {
1452 1.196 riastrad meta_job_parent(job, cpid);
1453 1.196 riastrad }
1454 1.196 riastrad #endif
1455 1.196 riastrad
1456 1.120 dsl /*
1457 1.120 dsl * Set the current position in the buffer to the beginning
1458 1.120 dsl * and mark another stream to watch in the outputs mask
1459 1.120 dsl */
1460 1.120 dsl job->curPos = 0;
1461 1.16 christos
1462 1.120 dsl watchfd(job);
1463 1.1 cgd
1464 1.116 dsl if (job->cmdFILE != NULL && job->cmdFILE != stdout) {
1465 1.116 dsl (void)fclose(job->cmdFILE);
1466 1.116 dsl job->cmdFILE = NULL;
1467 1.1 cgd }
1468 1.1 cgd
1469 1.1 cgd /*
1470 1.1 cgd * Now the job is actually running, add it to the table.
1471 1.1 cgd */
1472 1.69 pk if (DEBUG(JOB)) {
1473 1.139 christos fprintf(debug_file, "JobExec(%s): pid %d added to jobs table\n",
1474 1.139 christos job->node->name, job->pid);
1475 1.114 dsl job_table_dump("job started");
1476 1.69 pk }
1477 1.69 pk JobSigUnlock(&mask);
1478 1.1 cgd }
1479 1.1 cgd
1480 1.1 cgd /*-
1481 1.1 cgd *-----------------------------------------------------------------------
1482 1.1 cgd * JobMakeArgv --
1483 1.1 cgd * Create the argv needed to execute the shell for a given job.
1484 1.16 christos *
1485 1.1 cgd *
1486 1.1 cgd * Results:
1487 1.1 cgd *
1488 1.1 cgd * Side Effects:
1489 1.1 cgd *
1490 1.1 cgd *-----------------------------------------------------------------------
1491 1.1 cgd */
1492 1.1 cgd static void
1493 1.72 wiz JobMakeArgv(Job *job, char **argv)
1494 1.1 cgd {
1495 1.1 cgd int argc;
1496 1.77 christos static char args[10]; /* For merged arguments */
1497 1.16 christos
1498 1.77 christos argv[0] = UNCONST(shellName);
1499 1.1 cgd argc = 1;
1500 1.1 cgd
1501 1.1 cgd if ((commandShell->exit && (*commandShell->exit != '-')) ||
1502 1.1 cgd (commandShell->echo && (*commandShell->echo != '-')))
1503 1.1 cgd {
1504 1.1 cgd /*
1505 1.1 cgd * At least one of the flags doesn't have a minus before it, so
1506 1.1 cgd * merge them together. Have to do this because the *(&(@*#*&#$#
1507 1.1 cgd * Bourne shell thinks its second argument is a file to source.
1508 1.1 cgd * Grrrr. Note the ten-character limitation on the combined arguments.
1509 1.1 cgd */
1510 1.29 christos (void)snprintf(args, sizeof(args), "-%s%s",
1511 1.1 cgd ((job->flags & JOB_IGNERR) ? "" :
1512 1.1 cgd (commandShell->exit ? commandShell->exit : "")),
1513 1.1 cgd ((job->flags & JOB_SILENT) ? "" :
1514 1.1 cgd (commandShell->echo ? commandShell->echo : "")));
1515 1.1 cgd
1516 1.1 cgd if (args[1]) {
1517 1.1 cgd argv[argc] = args;
1518 1.1 cgd argc++;
1519 1.1 cgd }
1520 1.1 cgd } else {
1521 1.1 cgd if (!(job->flags & JOB_IGNERR) && commandShell->exit) {
1522 1.77 christos argv[argc] = UNCONST(commandShell->exit);
1523 1.1 cgd argc++;
1524 1.1 cgd }
1525 1.1 cgd if (!(job->flags & JOB_SILENT) && commandShell->echo) {
1526 1.77 christos argv[argc] = UNCONST(commandShell->echo);
1527 1.1 cgd argc++;
1528 1.1 cgd }
1529 1.1 cgd }
1530 1.12 christos argv[argc] = NULL;
1531 1.1 cgd }
1532 1.1 cgd
1533 1.1 cgd /*-
1534 1.1 cgd *-----------------------------------------------------------------------
1535 1.1 cgd * JobStart --
1536 1.1 cgd * Start a target-creation process going for the target described
1537 1.16 christos * by the graph node gn.
1538 1.1 cgd *
1539 1.72 wiz * Input:
1540 1.72 wiz * gn target to create
1541 1.72 wiz * flags flags for the job to override normal ones.
1542 1.72 wiz * e.g. JOB_SPECIAL or JOB_IGNDOTS
1543 1.72 wiz * previous The previous Job structure for this node, if any.
1544 1.72 wiz *
1545 1.1 cgd * Results:
1546 1.1 cgd * JOB_ERROR if there was an error in the commands, JOB_FINISHED
1547 1.1 cgd * if there isn't actually anything left to do for the job and
1548 1.1 cgd * JOB_RUNNING if the job has been started.
1549 1.1 cgd *
1550 1.1 cgd * Side Effects:
1551 1.1 cgd * A new Job node is created and added to the list of running
1552 1.1 cgd * jobs. PMake is forked and a child shell created.
1553 1.110 dsl *
1554 1.110 dsl * NB: I'm fairly sure that this code is never called with JOB_SPECIAL set
1555 1.110 dsl * JOB_IGNDOTS is never set (dsl)
1556 1.122 dsl * Also the return value is ignored by everyone.
1557 1.1 cgd *-----------------------------------------------------------------------
1558 1.1 cgd */
1559 1.1 cgd static int
1560 1.108 dsl JobStart(GNode *gn, int flags)
1561 1.1 cgd {
1562 1.72 wiz Job *job; /* new job descriptor */
1563 1.29 christos char *argv[10]; /* Argument vector to shell */
1564 1.1 cgd Boolean cmdsOK; /* true if the nodes commands were all right */
1565 1.1 cgd Boolean noExec; /* Set true if we decide not to run the job */
1566 1.31 christos int tfd; /* File descriptor to the temp file */
1567 1.1 cgd
1568 1.114 dsl for (job = job_table; job < job_table_end; job++) {
1569 1.116 dsl if (job->job_state == JOB_ST_FREE)
1570 1.114 dsl break;
1571 1.114 dsl }
1572 1.114 dsl if (job >= job_table_end)
1573 1.122 dsl Punt("JobStart no job slots vacant");
1574 1.122 dsl
1575 1.114 dsl memset(job, 0, sizeof *job);
1576 1.116 dsl job->job_state = JOB_ST_SETUP;
1577 1.91 christos if (gn->type & OP_SPECIAL)
1578 1.91 christos flags |= JOB_SPECIAL;
1579 1.1 cgd
1580 1.1 cgd job->node = gn;
1581 1.142 dsl job->tailCmds = NULL;
1582 1.1 cgd
1583 1.1 cgd /*
1584 1.1 cgd * Set the initial value of the flags for this job based on the global
1585 1.1 cgd * ones and the node's attributes... Any flags supplied by the caller
1586 1.1 cgd * are also added to the field.
1587 1.1 cgd */
1588 1.1 cgd job->flags = 0;
1589 1.12 christos if (Targ_Ignore(gn)) {
1590 1.1 cgd job->flags |= JOB_IGNERR;
1591 1.1 cgd }
1592 1.12 christos if (Targ_Silent(gn)) {
1593 1.1 cgd job->flags |= JOB_SILENT;
1594 1.1 cgd }
1595 1.1 cgd job->flags |= flags;
1596 1.1 cgd
1597 1.1 cgd /*
1598 1.1 cgd * Check the commands now so any attributes from .DEFAULT have a chance
1599 1.1 cgd * to migrate to the node
1600 1.1 cgd */
1601 1.109 dsl cmdsOK = Job_CheckCommands(gn, Error);
1602 1.16 christos
1603 1.36 christos job->inPollfd = NULL;
1604 1.1 cgd /*
1605 1.16 christos * If the -n flag wasn't given, we open up OUR (not the child's)
1606 1.1 cgd * temporary file to stuff commands in it. The thing is rd/wr so we don't
1607 1.1 cgd * need to reopen it to feed it to the shell. If the -n flag *was* given,
1608 1.1 cgd * we just set the file to be stdout. Cute, huh?
1609 1.1 cgd */
1610 1.45 sommerfe if (((gn->type & OP_MAKE) && !(noRecursiveExecute)) ||
1611 1.122 dsl (!noExecute && !touchFlag)) {
1612 1.1 cgd /*
1613 1.34 christos * tfile is the name of a file into which all shell commands are
1614 1.145 apb * put. It is removed before the child shell is executed, unless
1615 1.145 apb * DEBUG(SCRIPT) is set.
1616 1.34 christos */
1617 1.145 apb char *tfile;
1618 1.69 pk sigset_t mask;
1619 1.34 christos /*
1620 1.1 cgd * We're serious here, but if the commands were bogus, we're
1621 1.1 cgd * also dead...
1622 1.1 cgd */
1623 1.1 cgd if (!cmdsOK) {
1624 1.154 sjg PrintOnError(gn, NULL); /* provide some clue */
1625 1.1 cgd DieHorribly();
1626 1.1 cgd }
1627 1.16 christos
1628 1.69 pk JobSigLock(&mask);
1629 1.148 sjg tfd = mkTempFile(TMPPAT, &tfile);
1630 1.94 jmc if (!DEBUG(SCRIPT))
1631 1.96 christos (void)eunlink(tfile);
1632 1.69 pk JobSigUnlock(&mask);
1633 1.31 christos
1634 1.31 christos job->cmdFILE = fdopen(tfd, "w+");
1635 1.12 christos if (job->cmdFILE == NULL) {
1636 1.31 christos Punt("Could not fdopen %s", tfile);
1637 1.1 cgd }
1638 1.183 christos (void)fcntl(FILENO(job->cmdFILE), F_SETFD, FD_CLOEXEC);
1639 1.1 cgd /*
1640 1.1 cgd * Send the commands to the command file, flush all its buffers then
1641 1.1 cgd * rewind and remove the thing.
1642 1.1 cgd */
1643 1.1 cgd noExec = FALSE;
1644 1.1 cgd
1645 1.155 sjg #ifdef USE_META
1646 1.155 sjg if (useMeta) {
1647 1.155 sjg meta_job_start(job, gn);
1648 1.159 sjg if (Targ_Silent(gn)) { /* might have changed */
1649 1.159 sjg job->flags |= JOB_SILENT;
1650 1.159 sjg }
1651 1.155 sjg }
1652 1.155 sjg #endif
1653 1.1 cgd /*
1654 1.107 dsl * We can do all the commands at once. hooray for sanity
1655 1.1 cgd */
1656 1.107 dsl numCommands = 0;
1657 1.220 rillig Lst_ForEach(gn->commands, JobPrintCommand, job);
1658 1.16 christos
1659 1.107 dsl /*
1660 1.107 dsl * If we didn't print out any commands to the shell script,
1661 1.107 dsl * there's not much point in executing the shell, is there?
1662 1.107 dsl */
1663 1.107 dsl if (numCommands == 0) {
1664 1.107 dsl noExec = TRUE;
1665 1.1 cgd }
1666 1.145 apb
1667 1.145 apb free(tfile);
1668 1.45 sommerfe } else if (NoExecute(gn)) {
1669 1.1 cgd /*
1670 1.1 cgd * Not executing anything -- just print all the commands to stdout
1671 1.1 cgd * in one fell swoop. This will still set up job->tailCmds correctly.
1672 1.1 cgd */
1673 1.1 cgd if (lastNode != gn) {
1674 1.12 christos MESSAGE(stdout, gn);
1675 1.1 cgd lastNode = gn;
1676 1.1 cgd }
1677 1.1 cgd job->cmdFILE = stdout;
1678 1.1 cgd /*
1679 1.1 cgd * Only print the commands if they're ok, but don't die if they're
1680 1.1 cgd * not -- just let the user know they're bad and keep going. It
1681 1.1 cgd * doesn't do any harm in this case and may do some good.
1682 1.1 cgd */
1683 1.1 cgd if (cmdsOK) {
1684 1.220 rillig Lst_ForEach(gn->commands, JobPrintCommand, job);
1685 1.1 cgd }
1686 1.1 cgd /*
1687 1.1 cgd * Don't execute the shell, thank you.
1688 1.1 cgd */
1689 1.1 cgd noExec = TRUE;
1690 1.1 cgd } else {
1691 1.1 cgd /*
1692 1.1 cgd * Just touch the target and note that no shell should be executed.
1693 1.1 cgd * Set cmdFILE to stdout to make life easier. Check the commands, too,
1694 1.1 cgd * but don't die if they're no good -- it does no harm to keep working
1695 1.1 cgd * up the graph.
1696 1.1 cgd */
1697 1.1 cgd job->cmdFILE = stdout;
1698 1.205 rillig Job_Touch(gn, job->flags&JOB_SILENT);
1699 1.1 cgd noExec = TRUE;
1700 1.1 cgd }
1701 1.118 dsl /* Just in case it isn't already... */
1702 1.118 dsl (void)fflush(job->cmdFILE);
1703 1.1 cgd
1704 1.1 cgd /*
1705 1.16 christos * If we're not supposed to execute a shell, don't.
1706 1.1 cgd */
1707 1.1 cgd if (noExec) {
1708 1.110 dsl if (!(job->flags & JOB_SPECIAL))
1709 1.110 dsl Job_TokenReturn();
1710 1.1 cgd /*
1711 1.1 cgd * Unlink and close the command file if we opened one
1712 1.1 cgd */
1713 1.1 cgd if (job->cmdFILE != stdout) {
1714 1.34 christos if (job->cmdFILE != NULL) {
1715 1.96 christos (void)fclose(job->cmdFILE);
1716 1.34 christos job->cmdFILE = NULL;
1717 1.34 christos }
1718 1.1 cgd }
1719 1.1 cgd
1720 1.1 cgd /*
1721 1.1 cgd * We only want to work our way up the graph if we aren't here because
1722 1.1 cgd * the commands for the job were no good.
1723 1.1 cgd */
1724 1.118 dsl if (cmdsOK && aborting == 0) {
1725 1.142 dsl if (job->tailCmds != NULL) {
1726 1.220 rillig Lst_ForEachFrom(job->node->commands, job->tailCmds,
1727 1.216 rillig JobSaveCommand,
1728 1.216 rillig job->node);
1729 1.1 cgd }
1730 1.118 dsl job->node->made = MADE;
1731 1.118 dsl Make_Update(job->node);
1732 1.1 cgd }
1733 1.118 dsl job->job_state = JOB_ST_FREE;
1734 1.118 dsl return cmdsOK ? JOB_FINISHED : JOB_ERROR;
1735 1.1 cgd }
1736 1.1 cgd
1737 1.1 cgd /*
1738 1.1 cgd * Set up the control arguments to the shell. This is based on the flags
1739 1.1 cgd * set earlier for this job.
1740 1.1 cgd */
1741 1.1 cgd JobMakeArgv(job, argv);
1742 1.1 cgd
1743 1.122 dsl /* Create the pipe by which we'll get the shell's output. */
1744 1.122 dsl JobCreatePipe(job, 3);
1745 1.1 cgd
1746 1.106 dsl JobExec(job, argv);
1747 1.200 rillig return JOB_RUNNING;
1748 1.1 cgd }
1749 1.1 cgd
1750 1.16 christos static char *
1751 1.72 wiz JobOutput(Job *job, char *cp, char *endp, int msg)
1752 1.12 christos {
1753 1.72 wiz char *ecp;
1754 1.12 christos
1755 1.12 christos if (commandShell->noPrint) {
1756 1.12 christos ecp = Str_FindSubstring(cp, commandShell->noPrint);
1757 1.12 christos while (ecp != NULL) {
1758 1.12 christos if (cp != ecp) {
1759 1.12 christos *ecp = '\0';
1760 1.99 dsl if (!beSilent && msg && job->node != lastNode) {
1761 1.12 christos MESSAGE(stdout, job->node);
1762 1.12 christos lastNode = job->node;
1763 1.12 christos }
1764 1.12 christos /*
1765 1.12 christos * The only way there wouldn't be a newline after
1766 1.12 christos * this line is if it were the last in the buffer.
1767 1.12 christos * however, since the non-printable comes after it,
1768 1.12 christos * there must be a newline, so we don't print one.
1769 1.12 christos */
1770 1.96 christos (void)fprintf(stdout, "%s", cp);
1771 1.96 christos (void)fflush(stdout);
1772 1.12 christos }
1773 1.12 christos cp = ecp + commandShell->noPLen;
1774 1.12 christos if (cp != endp) {
1775 1.12 christos /*
1776 1.12 christos * Still more to print, look again after skipping
1777 1.12 christos * the whitespace following the non-printable
1778 1.12 christos * command....
1779 1.12 christos */
1780 1.12 christos cp++;
1781 1.12 christos while (*cp == ' ' || *cp == '\t' || *cp == '\n') {
1782 1.12 christos cp++;
1783 1.12 christos }
1784 1.12 christos ecp = Str_FindSubstring(cp, commandShell->noPrint);
1785 1.12 christos } else {
1786 1.12 christos return cp;
1787 1.12 christos }
1788 1.12 christos }
1789 1.12 christos }
1790 1.12 christos return cp;
1791 1.12 christos }
1792 1.12 christos
1793 1.1 cgd /*-
1794 1.1 cgd *-----------------------------------------------------------------------
1795 1.1 cgd * JobDoOutput --
1796 1.1 cgd * This function is called at different times depending on
1797 1.1 cgd * whether the user has specified that output is to be collected
1798 1.1 cgd * via pipes or temporary files. In the former case, we are called
1799 1.1 cgd * whenever there is something to read on the pipe. We collect more
1800 1.1 cgd * output from the given job and store it in the job's outBuf. If
1801 1.1 cgd * this makes up a line, we print it tagged by the job's identifier,
1802 1.1 cgd * as necessary.
1803 1.1 cgd * If output has been collected in a temporary file, we open the
1804 1.1 cgd * file and read it line by line, transfering it to our own
1805 1.1 cgd * output channel until the file is empty. At which point we
1806 1.1 cgd * remove the temporary file.
1807 1.1 cgd * In both cases, however, we keep our figurative eye out for the
1808 1.1 cgd * 'noPrint' line for the shell from which the output came. If
1809 1.1 cgd * we recognize a line, we don't print it. If the command is not
1810 1.16 christos * alone on the line (the character after it is not \0 or \n), we
1811 1.1 cgd * do print whatever follows it.
1812 1.1 cgd *
1813 1.72 wiz * Input:
1814 1.72 wiz * job the job whose output needs printing
1815 1.72 wiz * finish TRUE if this is the last time we'll be called
1816 1.72 wiz * for this job
1817 1.72 wiz *
1818 1.1 cgd * Results:
1819 1.1 cgd * None
1820 1.1 cgd *
1821 1.1 cgd * Side Effects:
1822 1.1 cgd * curPos may be shifted as may the contents of outBuf.
1823 1.1 cgd *-----------------------------------------------------------------------
1824 1.1 cgd */
1825 1.12 christos STATIC void
1826 1.72 wiz JobDoOutput(Job *job, Boolean finish)
1827 1.1 cgd {
1828 1.1 cgd Boolean gotNL = FALSE; /* true if got a newline */
1829 1.12 christos Boolean fbuf; /* true if our buffer filled up */
1830 1.139 christos int nr; /* number of bytes read */
1831 1.139 christos int i; /* auxiliary index into outBuf */
1832 1.139 christos int max; /* limit for i (end of current data) */
1833 1.139 christos int nRead; /* (Temporary) number of bytes read */
1834 1.1 cgd
1835 1.120 dsl /*
1836 1.120 dsl * Read as many bytes as will fit in the buffer.
1837 1.120 dsl */
1838 1.1 cgd end_loop:
1839 1.120 dsl gotNL = FALSE;
1840 1.120 dsl fbuf = FALSE;
1841 1.16 christos
1842 1.120 dsl nRead = read(job->inPipe, &job->outBuf[job->curPos],
1843 1.139 christos JOB_BUFSIZE - job->curPos);
1844 1.120 dsl if (nRead < 0) {
1845 1.122 dsl if (errno == EAGAIN)
1846 1.122 dsl return;
1847 1.120 dsl if (DEBUG(JOB)) {
1848 1.120 dsl perror("JobDoOutput(piperead)");
1849 1.1 cgd }
1850 1.120 dsl nr = 0;
1851 1.120 dsl } else {
1852 1.120 dsl nr = nRead;
1853 1.120 dsl }
1854 1.1 cgd
1855 1.120 dsl /*
1856 1.120 dsl * If we hit the end-of-file (the job is dead), we must flush its
1857 1.120 dsl * remaining output, so pretend we read a newline if there's any
1858 1.120 dsl * output remaining in the buffer.
1859 1.120 dsl * Also clear the 'finish' flag so we stop looping.
1860 1.120 dsl */
1861 1.120 dsl if ((nr == 0) && (job->curPos != 0)) {
1862 1.120 dsl job->outBuf[job->curPos] = '\n';
1863 1.120 dsl nr = 1;
1864 1.120 dsl finish = FALSE;
1865 1.120 dsl } else if (nr == 0) {
1866 1.120 dsl finish = FALSE;
1867 1.120 dsl }
1868 1.16 christos
1869 1.120 dsl /*
1870 1.120 dsl * Look for the last newline in the bytes we just got. If there is
1871 1.120 dsl * one, break out of the loop with 'i' as its index and gotNL set
1872 1.120 dsl * TRUE.
1873 1.120 dsl */
1874 1.120 dsl max = job->curPos + nr;
1875 1.139 christos for (i = job->curPos + nr - 1; i >= job->curPos; i--) {
1876 1.139 christos if (job->outBuf[i] == '\n') {
1877 1.139 christos gotNL = TRUE;
1878 1.139 christos break;
1879 1.139 christos } else if (job->outBuf[i] == '\0') {
1880 1.139 christos /*
1881 1.139 christos * Why?
1882 1.139 christos */
1883 1.139 christos job->outBuf[i] = ' ';
1884 1.1 cgd }
1885 1.139 christos }
1886 1.16 christos
1887 1.120 dsl if (!gotNL) {
1888 1.120 dsl job->curPos += nr;
1889 1.120 dsl if (job->curPos == JOB_BUFSIZE) {
1890 1.1 cgd /*
1891 1.120 dsl * If we've run out of buffer space, we have no choice
1892 1.120 dsl * but to print the stuff. sigh.
1893 1.1 cgd */
1894 1.120 dsl fbuf = TRUE;
1895 1.120 dsl i = job->curPos;
1896 1.120 dsl }
1897 1.120 dsl }
1898 1.120 dsl if (gotNL || fbuf) {
1899 1.120 dsl /*
1900 1.120 dsl * Need to send the output to the screen. Null terminate it
1901 1.120 dsl * first, overwriting the newline character if there was one.
1902 1.120 dsl * So long as the line isn't one we should filter (according
1903 1.120 dsl * to the shell description), we print the line, preceded
1904 1.120 dsl * by a target banner if this target isn't the same as the
1905 1.120 dsl * one for which we last printed something.
1906 1.120 dsl * The rest of the data in the buffer are then shifted down
1907 1.120 dsl * to the start of the buffer and curPos is set accordingly.
1908 1.120 dsl */
1909 1.120 dsl job->outBuf[i] = '\0';
1910 1.120 dsl if (i >= job->curPos) {
1911 1.120 dsl char *cp;
1912 1.16 christos
1913 1.120 dsl cp = JobOutput(job, job->outBuf, &job->outBuf[i], FALSE);
1914 1.1 cgd
1915 1.120 dsl /*
1916 1.120 dsl * There's still more in that thar buffer. This time, though,
1917 1.120 dsl * we know there's no newline at the end, so we add one of
1918 1.120 dsl * our own free will.
1919 1.120 dsl */
1920 1.120 dsl if (*cp != '\0') {
1921 1.120 dsl if (!beSilent && job->node != lastNode) {
1922 1.120 dsl MESSAGE(stdout, job->node);
1923 1.120 dsl lastNode = job->node;
1924 1.1 cgd }
1925 1.155 sjg #ifdef USE_META
1926 1.155 sjg if (useMeta) {
1927 1.155 sjg meta_job_output(job, cp, gotNL ? "\n" : "");
1928 1.155 sjg }
1929 1.155 sjg #endif
1930 1.120 dsl (void)fprintf(stdout, "%s%s", cp, gotNL ? "\n" : "");
1931 1.120 dsl (void)fflush(stdout);
1932 1.1 cgd }
1933 1.120 dsl }
1934 1.180 joerg /*
1935 1.180 joerg * max is the last offset still in the buffer. Move any remaining
1936 1.180 joerg * characters to the start of the buffer and update the end marker
1937 1.180 joerg * curPos.
1938 1.180 joerg */
1939 1.180 joerg if (i < max) {
1940 1.180 joerg (void)memmove(job->outBuf, &job->outBuf[i + 1], max - (i + 1));
1941 1.180 joerg job->curPos = max - (i + 1);
1942 1.180 joerg } else {
1943 1.180 joerg assert(i == max);
1944 1.180 joerg job->curPos = 0;
1945 1.180 joerg }
1946 1.120 dsl }
1947 1.120 dsl if (finish) {
1948 1.1 cgd /*
1949 1.120 dsl * If the finish flag is true, we must loop until we hit
1950 1.120 dsl * end-of-file on the pipe. This is guaranteed to happen
1951 1.120 dsl * eventually since the other end of the pipe is now closed
1952 1.120 dsl * (we closed it explicitly and the child has exited). When
1953 1.120 dsl * we do get an EOF, finish will be set FALSE and we'll fall
1954 1.120 dsl * through and out.
1955 1.120 dsl */
1956 1.120 dsl goto end_loop;
1957 1.1 cgd }
1958 1.1 cgd }
1959 1.1 cgd
1960 1.91 christos static void
1961 1.91 christos JobRun(GNode *targ)
1962 1.91 christos {
1963 1.91 christos #ifdef notyet
1964 1.91 christos /*
1965 1.91 christos * Unfortunately it is too complicated to run .BEGIN, .END,
1966 1.91 christos * and .INTERRUPT job in the parallel job module. This has
1967 1.91 christos * the nice side effect that it avoids a lot of other problems.
1968 1.91 christos */
1969 1.207 rillig Lst lst = Lst_Init();
1970 1.220 rillig Lst_Append(lst, targ);
1971 1.91 christos (void)Make_Run(lst);
1972 1.142 dsl Lst_Destroy(lst, NULL);
1973 1.108 dsl JobStart(targ, JOB_SPECIAL);
1974 1.110 dsl while (jobTokensRunning) {
1975 1.91 christos Job_CatchOutput();
1976 1.91 christos }
1977 1.91 christos #else
1978 1.91 christos Compat_Make(targ, targ);
1979 1.91 christos if (targ->made == ERROR) {
1980 1.147 sjg PrintOnError(targ, "\n\nStop.");
1981 1.91 christos exit(1);
1982 1.91 christos }
1983 1.91 christos #endif
1984 1.91 christos }
1985 1.91 christos
1986 1.1 cgd /*-
1987 1.1 cgd *-----------------------------------------------------------------------
1988 1.1 cgd * Job_CatchChildren --
1989 1.1 cgd * Handle the exit of a child. Called from Make_Make.
1990 1.1 cgd *
1991 1.72 wiz * Input:
1992 1.72 wiz * block TRUE if should block on the wait
1993 1.72 wiz *
1994 1.1 cgd * Results:
1995 1.1 cgd * none.
1996 1.1 cgd *
1997 1.1 cgd * Side Effects:
1998 1.1 cgd * The job descriptor is removed from the list of children.
1999 1.1 cgd *
2000 1.1 cgd * Notes:
2001 1.1 cgd * We do waits, blocking or not, according to the wisdom of our
2002 1.1 cgd * caller, until there are no more children to report. For each
2003 1.118 dsl * job, call JobFinish to finish things off.
2004 1.1 cgd *
2005 1.1 cgd *-----------------------------------------------------------------------
2006 1.1 cgd */
2007 1.116 dsl
2008 1.1 cgd void
2009 1.120 dsl Job_CatchChildren(void)
2010 1.1 cgd {
2011 1.139 christos int pid; /* pid of dead child */
2012 1.139 christos int status; /* Exit/termination status */
2013 1.1 cgd
2014 1.1 cgd /*
2015 1.1 cgd * Don't even bother if we know there's no one around.
2016 1.1 cgd */
2017 1.116 dsl if (jobTokensRunning == 0)
2018 1.1 cgd return;
2019 1.16 christos
2020 1.120 dsl while ((pid = waitpid((pid_t) -1, &status, WNOHANG | WUNTRACED)) > 0) {
2021 1.12 christos if (DEBUG(JOB)) {
2022 1.139 christos (void)fprintf(debug_file, "Process %d exited/stopped status %x.\n", pid,
2023 1.139 christos status);
2024 1.12 christos }
2025 1.153 sjg JobReapChild(pid, status, TRUE);
2026 1.153 sjg }
2027 1.153 sjg }
2028 1.153 sjg
2029 1.153 sjg /*
2030 1.153 sjg * It is possible that wait[pid]() was called from elsewhere,
2031 1.153 sjg * this lets us reap jobs regardless.
2032 1.153 sjg */
2033 1.153 sjg void
2034 1.153 sjg JobReapChild(pid_t pid, int status, Boolean isJobs)
2035 1.153 sjg {
2036 1.153 sjg Job *job; /* job descriptor for dead child */
2037 1.153 sjg
2038 1.153 sjg /*
2039 1.153 sjg * Don't even bother if we know there's no one around.
2040 1.153 sjg */
2041 1.153 sjg if (jobTokensRunning == 0)
2042 1.153 sjg return;
2043 1.16 christos
2044 1.153 sjg job = JobFindPid(pid, JOB_ST_RUNNING, isJobs);
2045 1.153 sjg if (job == NULL) {
2046 1.153 sjg if (isJobs) {
2047 1.117 dsl if (!lurking_children)
2048 1.139 christos Error("Child (%d) status %x not in table?", pid, status);
2049 1.116 dsl }
2050 1.153 sjg return; /* not ours */
2051 1.153 sjg }
2052 1.153 sjg if (WIFSTOPPED(status)) {
2053 1.153 sjg if (DEBUG(JOB)) {
2054 1.153 sjg (void)fprintf(debug_file, "Process %d (%s) stopped.\n",
2055 1.153 sjg job->pid, job->node->name);
2056 1.153 sjg }
2057 1.153 sjg if (!make_suspended) {
2058 1.153 sjg switch (WSTOPSIG(status)) {
2059 1.153 sjg case SIGTSTP:
2060 1.153 sjg (void)printf("*** [%s] Suspended\n", job->node->name);
2061 1.153 sjg break;
2062 1.153 sjg case SIGSTOP:
2063 1.153 sjg (void)printf("*** [%s] Stopped\n", job->node->name);
2064 1.153 sjg break;
2065 1.153 sjg default:
2066 1.153 sjg (void)printf("*** [%s] Stopped -- signal %d\n",
2067 1.153 sjg job->node->name, WSTOPSIG(status));
2068 1.1 cgd }
2069 1.153 sjg job->job_suspended = 1;
2070 1.1 cgd }
2071 1.153 sjg (void)fflush(stdout);
2072 1.153 sjg return;
2073 1.153 sjg }
2074 1.1 cgd
2075 1.153 sjg job->job_state = JOB_ST_FINISHED;
2076 1.153 sjg job->exit_status = status;
2077 1.116 dsl
2078 1.153 sjg JobFinish(job, status);
2079 1.1 cgd }
2080 1.1 cgd
2081 1.1 cgd /*-
2082 1.1 cgd *-----------------------------------------------------------------------
2083 1.1 cgd * Job_CatchOutput --
2084 1.1 cgd * Catch the output from our children, if we're using
2085 1.1 cgd * pipes do so. Otherwise just block time until we get a
2086 1.96 christos * signal(most likely a SIGCHLD) since there's no point in
2087 1.1 cgd * just spinning when there's nothing to do and the reaping
2088 1.16 christos * of a child can wait for a while.
2089 1.1 cgd *
2090 1.1 cgd * Results:
2091 1.16 christos * None
2092 1.1 cgd *
2093 1.1 cgd * Side Effects:
2094 1.1 cgd * Output is read from pipes if we're piping.
2095 1.1 cgd * -----------------------------------------------------------------------
2096 1.1 cgd */
2097 1.1 cgd void
2098 1.72 wiz Job_CatchOutput(void)
2099 1.1 cgd {
2100 1.122 dsl int nready;
2101 1.122 dsl Job *job;
2102 1.169 christos int i;
2103 1.1 cgd
2104 1.96 christos (void)fflush(stdout);
2105 1.105 dsl
2106 1.120 dsl /* The first fd in the list is the job token pipe */
2107 1.169 christos do {
2108 1.169 christos nready = poll(fds + 1 - wantToken, nfds - 1 + wantToken, POLL_MSEC);
2109 1.169 christos } while (nready < 0 && errno == EINTR);
2110 1.169 christos
2111 1.169 christos if (nready < 0)
2112 1.169 christos Punt("poll: %s", strerror(errno));
2113 1.120 dsl
2114 1.169 christos if (nready > 0 && readyfd(&childExitJob)) {
2115 1.120 dsl char token = 0;
2116 1.169 christos ssize_t count;
2117 1.169 christos count = read(childExitJob.inPipe, &token, 1);
2118 1.169 christos switch (count) {
2119 1.169 christos case 0:
2120 1.169 christos Punt("unexpected eof on token pipe");
2121 1.169 christos case -1:
2122 1.169 christos Punt("token pipe read: %s", strerror(errno));
2123 1.169 christos case 1:
2124 1.169 christos if (token == DO_JOB_RESUME[0])
2125 1.169 christos /* Complete relay requested from our SIGCONT handler */
2126 1.169 christos JobRestartJobs();
2127 1.169 christos break;
2128 1.169 christos default:
2129 1.169 christos abort();
2130 1.169 christos }
2131 1.169 christos --nready;
2132 1.120 dsl }
2133 1.120 dsl
2134 1.169 christos Job_CatchChildren();
2135 1.169 christos if (nready == 0)
2136 1.169 christos return;
2137 1.122 dsl
2138 1.196 riastrad for (i = npseudojobs*nfds_per_job(); i < nfds; i++) {
2139 1.122 dsl if (!fds[i].revents)
2140 1.122 dsl continue;
2141 1.122 dsl job = jobfds[i];
2142 1.169 christos if (job->job_state == JOB_ST_RUNNING)
2143 1.169 christos JobDoOutput(job, FALSE);
2144 1.197 sjg #if defined(USE_FILEMON) && !defined(USE_FILEMON_DEV)
2145 1.196 riastrad /*
2146 1.196 riastrad * With meta mode, we may have activity on the job's filemon
2147 1.196 riastrad * descriptor too, which at the moment is any pollfd other than
2148 1.196 riastrad * job->inPollfd.
2149 1.196 riastrad */
2150 1.196 riastrad if (useMeta && job->inPollfd != &fds[i]) {
2151 1.196 riastrad if (meta_job_event(job) <= 0) {
2152 1.196 riastrad fds[i].events = 0; /* never mind */
2153 1.196 riastrad }
2154 1.196 riastrad }
2155 1.196 riastrad #endif
2156 1.169 christos if (--nready == 0)
2157 1.169 christos return;
2158 1.1 cgd }
2159 1.1 cgd }
2160 1.1 cgd
2161 1.1 cgd /*-
2162 1.1 cgd *-----------------------------------------------------------------------
2163 1.1 cgd * Job_Make --
2164 1.1 cgd * Start the creation of a target. Basically a front-end for
2165 1.1 cgd * JobStart used by the Make module.
2166 1.1 cgd *
2167 1.1 cgd * Results:
2168 1.1 cgd * None.
2169 1.1 cgd *
2170 1.1 cgd * Side Effects:
2171 1.1 cgd * Another job is started.
2172 1.1 cgd *
2173 1.1 cgd *-----------------------------------------------------------------------
2174 1.1 cgd */
2175 1.1 cgd void
2176 1.72 wiz Job_Make(GNode *gn)
2177 1.1 cgd {
2178 1.108 dsl (void)JobStart(gn, 0);
2179 1.1 cgd }
2180 1.1 cgd
2181 1.81 sjg void
2182 1.120 dsl Shell_Init(void)
2183 1.81 sjg {
2184 1.81 sjg if (shellPath == NULL) {
2185 1.81 sjg /*
2186 1.127 sjg * We are using the default shell, which may be an absolute
2187 1.133 apb * path if DEFSHELL_CUSTOM is defined.
2188 1.81 sjg */
2189 1.81 sjg shellName = commandShell->name;
2190 1.133 apb #ifdef DEFSHELL_CUSTOM
2191 1.127 sjg if (*shellName == '/') {
2192 1.127 sjg shellPath = shellName;
2193 1.127 sjg shellName = strrchr(shellPath, '/');
2194 1.127 sjg shellName++;
2195 1.127 sjg } else
2196 1.127 sjg #endif
2197 1.206 rillig shellPath = str_concat3(_PATH_DEFSHELLDIR, "/", shellName);
2198 1.81 sjg }
2199 1.213 sjg Var_Set_with_flags(".SHELL", shellPath, VAR_CMD, VAR_SET_READONLY);
2200 1.81 sjg if (commandShell->exit == NULL) {
2201 1.81 sjg commandShell->exit = "";
2202 1.81 sjg }
2203 1.81 sjg if (commandShell->echo == NULL) {
2204 1.81 sjg commandShell->echo = "";
2205 1.81 sjg }
2206 1.174 sjg if (commandShell->hasErrCtl && *commandShell->exit) {
2207 1.174 sjg if (shellErrFlag &&
2208 1.174 sjg strcmp(commandShell->exit, &shellErrFlag[1]) != 0) {
2209 1.174 sjg free(shellErrFlag);
2210 1.174 sjg shellErrFlag = NULL;
2211 1.174 sjg }
2212 1.174 sjg if (!shellErrFlag) {
2213 1.174 sjg int n = strlen(commandShell->exit) + 2;
2214 1.174 sjg
2215 1.174 sjg shellErrFlag = bmake_malloc(n);
2216 1.174 sjg if (shellErrFlag) {
2217 1.174 sjg snprintf(shellErrFlag, n, "-%s", commandShell->exit);
2218 1.174 sjg }
2219 1.174 sjg }
2220 1.174 sjg } else if (shellErrFlag) {
2221 1.174 sjg free(shellErrFlag);
2222 1.174 sjg shellErrFlag = NULL;
2223 1.174 sjg }
2224 1.81 sjg }
2225 1.81 sjg
2226 1.1 cgd /*-
2227 1.112 rillig * Returns the string literal that is used in the current command shell
2228 1.112 rillig * to produce a newline character.
2229 1.112 rillig */
2230 1.112 rillig const char *
2231 1.112 rillig Shell_GetNewline(void)
2232 1.112 rillig {
2233 1.112 rillig
2234 1.112 rillig return commandShell->newline;
2235 1.112 rillig }
2236 1.112 rillig
2237 1.125 sjg void
2238 1.125 sjg Job_SetPrefix(void)
2239 1.125 sjg {
2240 1.199 rillig
2241 1.125 sjg if (targPrefix) {
2242 1.125 sjg free(targPrefix);
2243 1.126 sjg } else if (!Var_Exists(MAKE_JOB_PREFIX, VAR_GLOBAL)) {
2244 1.199 rillig Var_Set(MAKE_JOB_PREFIX, "---", VAR_GLOBAL);
2245 1.125 sjg }
2246 1.128 dsl
2247 1.203 rillig targPrefix = Var_Subst("${" MAKE_JOB_PREFIX "}",
2248 1.202 rillig VAR_GLOBAL, VARE_WANTRES);
2249 1.125 sjg }
2250 1.125 sjg
2251 1.112 rillig /*-
2252 1.1 cgd *-----------------------------------------------------------------------
2253 1.1 cgd * Job_Init --
2254 1.1 cgd * Initialize the process module
2255 1.1 cgd *
2256 1.72 wiz * Input:
2257 1.72 wiz *
2258 1.1 cgd * Results:
2259 1.1 cgd * none
2260 1.1 cgd *
2261 1.1 cgd * Side Effects:
2262 1.1 cgd * lists and counters are initialized
2263 1.1 cgd *-----------------------------------------------------------------------
2264 1.1 cgd */
2265 1.1 cgd void
2266 1.111 dsl Job_Init(void)
2267 1.1 cgd {
2268 1.176 sjg Job_SetPrefix();
2269 1.114 dsl /* Allocate space for all the job info */
2270 1.140 joerg job_table = bmake_malloc(maxJobs * sizeof *job_table);
2271 1.114 dsl memset(job_table, 0, maxJobs * sizeof *job_table);
2272 1.114 dsl job_table_end = job_table + maxJobs;
2273 1.120 dsl wantToken = 0;
2274 1.1 cgd
2275 1.1 cgd aborting = 0;
2276 1.1 cgd errors = 0;
2277 1.1 cgd
2278 1.142 dsl lastNode = NULL;
2279 1.1 cgd
2280 1.117 dsl /*
2281 1.117 dsl * There is a non-zero chance that we already have children.
2282 1.117 dsl * eg after 'make -f- <<EOF'
2283 1.117 dsl * Since their termination causes a 'Child (pid) not in table' message,
2284 1.117 dsl * Collect the status of any that are already dead, and suppress the
2285 1.117 dsl * error message if there are any undead ones.
2286 1.117 dsl */
2287 1.117 dsl for (;;) {
2288 1.117 dsl int rval, status;
2289 1.117 dsl rval = waitpid((pid_t) -1, &status, WNOHANG);
2290 1.117 dsl if (rval > 0)
2291 1.117 dsl continue;
2292 1.117 dsl if (rval == 0)
2293 1.117 dsl lurking_children = 1;
2294 1.117 dsl break;
2295 1.117 dsl }
2296 1.117 dsl
2297 1.81 sjg Shell_Init();
2298 1.1 cgd
2299 1.122 dsl JobCreatePipe(&childExitJob, 3);
2300 1.73 gson
2301 1.196 riastrad /* Preallocate enough for the maximum number of jobs. */
2302 1.196 riastrad fds = bmake_malloc(sizeof(*fds) *
2303 1.196 riastrad (npseudojobs + maxJobs) * nfds_per_job());
2304 1.196 riastrad jobfds = bmake_malloc(sizeof(*jobfds) *
2305 1.196 riastrad (npseudojobs + maxJobs) * nfds_per_job());
2306 1.122 dsl
2307 1.122 dsl /* These are permanent entries and take slots 0 and 1 */
2308 1.122 dsl watchfd(&tokenWaitJob);
2309 1.122 dsl watchfd(&childExitJob);
2310 1.73 gson
2311 1.69 pk sigemptyset(&caught_signals);
2312 1.1 cgd /*
2313 1.73 gson * Install a SIGCHLD handler.
2314 1.1 cgd */
2315 1.150 sjg (void)bmake_signal(SIGCHLD, JobChildSig);
2316 1.69 pk sigaddset(&caught_signals, SIGCHLD);
2317 1.69 pk
2318 1.69 pk #define ADDSIG(s,h) \
2319 1.150 sjg if (bmake_signal(s, SIG_IGN) != SIG_IGN) { \
2320 1.69 pk sigaddset(&caught_signals, s); \
2321 1.150 sjg (void)bmake_signal(s, h); \
2322 1.1 cgd }
2323 1.69 pk
2324 1.37 sommerfe /*
2325 1.69 pk * Catch the four signals that POSIX specifies if they aren't ignored.
2326 1.69 pk * JobPassSig will take care of calling JobInterrupt if appropriate.
2327 1.37 sommerfe */
2328 1.116 dsl ADDSIG(SIGINT, JobPassSig_int)
2329 1.116 dsl ADDSIG(SIGHUP, JobPassSig_term)
2330 1.116 dsl ADDSIG(SIGTERM, JobPassSig_term)
2331 1.116 dsl ADDSIG(SIGQUIT, JobPassSig_term)
2332 1.69 pk
2333 1.1 cgd /*
2334 1.1 cgd * There are additional signals that need to be caught and passed if
2335 1.1 cgd * either the export system wants to be told directly of signals or if
2336 1.16 christos * we're giving each job its own process group (since then it won't get
2337 1.1 cgd * signals from the terminal driver as we own the terminal)
2338 1.1 cgd */
2339 1.116 dsl ADDSIG(SIGTSTP, JobPassSig_suspend)
2340 1.116 dsl ADDSIG(SIGTTOU, JobPassSig_suspend)
2341 1.116 dsl ADDSIG(SIGTTIN, JobPassSig_suspend)
2342 1.116 dsl ADDSIG(SIGWINCH, JobCondPassSig)
2343 1.69 pk ADDSIG(SIGCONT, JobContinueSig)
2344 1.69 pk #undef ADDSIG
2345 1.16 christos
2346 1.172 christos (void)Job_RunTarget(".BEGIN", NULL);
2347 1.12 christos postCommands = Targ_FindNode(".END", TARG_CREATE);
2348 1.1 cgd }
2349 1.1 cgd
2350 1.72 wiz static void JobSigReset(void)
2351 1.69 pk {
2352 1.69 pk #define DELSIG(s) \
2353 1.69 pk if (sigismember(&caught_signals, s)) { \
2354 1.150 sjg (void)bmake_signal(s, SIG_DFL); \
2355 1.69 pk }
2356 1.69 pk
2357 1.69 pk DELSIG(SIGINT)
2358 1.69 pk DELSIG(SIGHUP)
2359 1.69 pk DELSIG(SIGQUIT)
2360 1.69 pk DELSIG(SIGTERM)
2361 1.69 pk DELSIG(SIGTSTP)
2362 1.69 pk DELSIG(SIGTTOU)
2363 1.69 pk DELSIG(SIGTTIN)
2364 1.69 pk DELSIG(SIGWINCH)
2365 1.69 pk DELSIG(SIGCONT)
2366 1.69 pk #undef DELSIG
2367 1.150 sjg (void)bmake_signal(SIGCHLD, SIG_DFL);
2368 1.69 pk }
2369 1.69 pk
2370 1.1 cgd /*-
2371 1.1 cgd *-----------------------------------------------------------------------
2372 1.1 cgd * JobMatchShell --
2373 1.66 pk * Find a shell in 'shells' given its name.
2374 1.1 cgd *
2375 1.1 cgd * Results:
2376 1.1 cgd * A pointer to the Shell structure.
2377 1.1 cgd *
2378 1.1 cgd * Side Effects:
2379 1.1 cgd * None.
2380 1.1 cgd *
2381 1.1 cgd *-----------------------------------------------------------------------
2382 1.1 cgd */
2383 1.1 cgd static Shell *
2384 1.77 christos JobMatchShell(const char *name)
2385 1.1 cgd {
2386 1.66 pk Shell *sh;
2387 1.1 cgd
2388 1.1 cgd for (sh = shells; sh->name != NULL; sh++) {
2389 1.66 pk if (strcmp(name, sh->name) == 0)
2390 1.200 rillig return sh;
2391 1.1 cgd }
2392 1.142 dsl return NULL;
2393 1.1 cgd }
2394 1.1 cgd
2395 1.1 cgd /*-
2396 1.1 cgd *-----------------------------------------------------------------------
2397 1.1 cgd * Job_ParseShell --
2398 1.1 cgd * Parse a shell specification and set up commandShell, shellPath
2399 1.1 cgd * and shellName appropriately.
2400 1.1 cgd *
2401 1.72 wiz * Input:
2402 1.72 wiz * line The shell spec
2403 1.72 wiz *
2404 1.1 cgd * Results:
2405 1.1 cgd * FAILURE if the specification was incorrect.
2406 1.1 cgd *
2407 1.1 cgd * Side Effects:
2408 1.1 cgd * commandShell points to a Shell structure (either predefined or
2409 1.1 cgd * created from the shell spec), shellPath is the full path of the
2410 1.1 cgd * shell described by commandShell, while shellName is just the
2411 1.1 cgd * final component of shellPath.
2412 1.1 cgd *
2413 1.1 cgd * Notes:
2414 1.1 cgd * A shell specification consists of a .SHELL target, with dependency
2415 1.1 cgd * operator, followed by a series of blank-separated words. Double
2416 1.1 cgd * quotes can be used to use blanks in words. A backslash escapes
2417 1.1 cgd * anything (most notably a double-quote and a space) and
2418 1.1 cgd * provides the functionality it does in C. Each word consists of
2419 1.1 cgd * keyword and value separated by an equal sign. There should be no
2420 1.1 cgd * unnecessary spaces in the word. The keywords are as follows:
2421 1.1 cgd * name Name of shell.
2422 1.66 pk * path Location of shell.
2423 1.1 cgd * quiet Command to turn off echoing.
2424 1.1 cgd * echo Command to turn echoing on
2425 1.1 cgd * filter Result of turning off echoing that shouldn't be
2426 1.1 cgd * printed.
2427 1.1 cgd * echoFlag Flag to turn echoing on at the start
2428 1.1 cgd * errFlag Flag to turn error checking on at the start
2429 1.1 cgd * hasErrCtl True if shell has error checking control
2430 1.112 rillig * newline String literal to represent a newline char
2431 1.1 cgd * check Command to turn on error checking if hasErrCtl
2432 1.1 cgd * is TRUE or template of command to echo a command
2433 1.1 cgd * for which error checking is off if hasErrCtl is
2434 1.1 cgd * FALSE.
2435 1.1 cgd * ignore Command to turn off error checking if hasErrCtl
2436 1.1 cgd * is TRUE or template of command to execute a
2437 1.1 cgd * command so as to ignore any errors it returns if
2438 1.1 cgd * hasErrCtl is FALSE.
2439 1.1 cgd *
2440 1.1 cgd *-----------------------------------------------------------------------
2441 1.1 cgd */
2442 1.1 cgd ReturnStatus
2443 1.72 wiz Job_ParseShell(char *line)
2444 1.1 cgd {
2445 1.65 pk char **words;
2446 1.65 pk char **argv;
2447 1.215 rillig size_t argc;
2448 1.65 pk char *path;
2449 1.65 pk Shell newShell;
2450 1.65 pk Boolean fullSpec = FALSE;
2451 1.66 pk Shell *sh;
2452 1.1 cgd
2453 1.24 christos while (isspace((unsigned char)*line)) {
2454 1.1 cgd line++;
2455 1.1 cgd }
2456 1.22 christos
2457 1.209 rillig free(shellArgv);
2458 1.22 christos
2459 1.97 christos memset(&newShell, 0, sizeof(newShell));
2460 1.16 christos
2461 1.1 cgd /*
2462 1.1 cgd * Parse the specification by keyword
2463 1.1 cgd */
2464 1.215 rillig words = brk_string(line, TRUE, &argc, &path);
2465 1.143 christos if (words == NULL) {
2466 1.143 christos Error("Unterminated quoted string [%s]", line);
2467 1.143 christos return FAILURE;
2468 1.143 christos }
2469 1.77 christos shellArgv = path;
2470 1.65 pk
2471 1.65 pk for (path = NULL, argv = words; argc != 0; argc--, argv++) {
2472 1.22 christos if (strncmp(*argv, "path=", 5) == 0) {
2473 1.22 christos path = &argv[0][5];
2474 1.22 christos } else if (strncmp(*argv, "name=", 5) == 0) {
2475 1.22 christos newShell.name = &argv[0][5];
2476 1.22 christos } else {
2477 1.22 christos if (strncmp(*argv, "quiet=", 6) == 0) {
2478 1.22 christos newShell.echoOff = &argv[0][6];
2479 1.22 christos } else if (strncmp(*argv, "echo=", 5) == 0) {
2480 1.22 christos newShell.echoOn = &argv[0][5];
2481 1.22 christos } else if (strncmp(*argv, "filter=", 7) == 0) {
2482 1.22 christos newShell.noPrint = &argv[0][7];
2483 1.22 christos newShell.noPLen = strlen(newShell.noPrint);
2484 1.22 christos } else if (strncmp(*argv, "echoFlag=", 9) == 0) {
2485 1.22 christos newShell.echo = &argv[0][9];
2486 1.22 christos } else if (strncmp(*argv, "errFlag=", 8) == 0) {
2487 1.22 christos newShell.exit = &argv[0][8];
2488 1.22 christos } else if (strncmp(*argv, "hasErrCtl=", 10) == 0) {
2489 1.22 christos char c = argv[0][10];
2490 1.22 christos newShell.hasErrCtl = !((c != 'Y') && (c != 'y') &&
2491 1.12 christos (c != 'T') && (c != 't'));
2492 1.112 rillig } else if (strncmp(*argv, "newline=", 8) == 0) {
2493 1.112 rillig newShell.newline = &argv[0][8];
2494 1.22 christos } else if (strncmp(*argv, "check=", 6) == 0) {
2495 1.22 christos newShell.errCheck = &argv[0][6];
2496 1.22 christos } else if (strncmp(*argv, "ignore=", 7) == 0) {
2497 1.22 christos newShell.ignErr = &argv[0][7];
2498 1.83 jmc } else if (strncmp(*argv, "errout=", 7) == 0) {
2499 1.83 jmc newShell.errOut = &argv[0][7];
2500 1.83 jmc } else if (strncmp(*argv, "comment=", 8) == 0) {
2501 1.83 jmc newShell.commentChar = argv[0][8];
2502 1.22 christos } else {
2503 1.22 christos Parse_Error(PARSE_FATAL, "Unknown keyword \"%s\"",
2504 1.22 christos *argv);
2505 1.22 christos free(words);
2506 1.200 rillig return FAILURE;
2507 1.22 christos }
2508 1.22 christos fullSpec = TRUE;
2509 1.22 christos }
2510 1.1 cgd }
2511 1.1 cgd
2512 1.12 christos if (path == NULL) {
2513 1.1 cgd /*
2514 1.1 cgd * If no path was given, the user wants one of the pre-defined shells,
2515 1.1 cgd * yes? So we find the one s/he wants with the help of JobMatchShell
2516 1.1 cgd * and set things up the right way. shellPath will be set up by
2517 1.163 sjg * Shell_Init.
2518 1.1 cgd */
2519 1.12 christos if (newShell.name == NULL) {
2520 1.12 christos Parse_Error(PARSE_FATAL, "Neither path nor name specified");
2521 1.66 pk free(words);
2522 1.200 rillig return FAILURE;
2523 1.1 cgd } else {
2524 1.66 pk if ((sh = JobMatchShell(newShell.name)) == NULL) {
2525 1.66 pk Parse_Error(PARSE_WARNING, "%s: No matching shell",
2526 1.66 pk newShell.name);
2527 1.66 pk free(words);
2528 1.200 rillig return FAILURE;
2529 1.66 pk }
2530 1.66 pk commandShell = sh;
2531 1.1 cgd shellName = newShell.name;
2532 1.163 sjg if (shellPath) {
2533 1.163 sjg /* Shell_Init has already been called! Do it again. */
2534 1.163 sjg free(UNCONST(shellPath));
2535 1.163 sjg shellPath = NULL;
2536 1.163 sjg Shell_Init();
2537 1.163 sjg }
2538 1.1 cgd }
2539 1.1 cgd } else {
2540 1.1 cgd /*
2541 1.16 christos * The user provided a path. If s/he gave nothing else (fullSpec is
2542 1.1 cgd * FALSE), try and find a matching shell in the ones we know of.
2543 1.1 cgd * Else we just take the specification at its word and copy it
2544 1.1 cgd * to a new location. In either case, we need to record the
2545 1.1 cgd * path the user gave for the shell.
2546 1.1 cgd */
2547 1.1 cgd shellPath = path;
2548 1.12 christos path = strrchr(path, '/');
2549 1.12 christos if (path == NULL) {
2550 1.77 christos path = UNCONST(shellPath);
2551 1.1 cgd } else {
2552 1.1 cgd path += 1;
2553 1.1 cgd }
2554 1.12 christos if (newShell.name != NULL) {
2555 1.1 cgd shellName = newShell.name;
2556 1.1 cgd } else {
2557 1.1 cgd shellName = path;
2558 1.1 cgd }
2559 1.1 cgd if (!fullSpec) {
2560 1.66 pk if ((sh = JobMatchShell(shellName)) == NULL) {
2561 1.66 pk Parse_Error(PARSE_WARNING, "%s: No matching shell",
2562 1.66 pk shellName);
2563 1.66 pk free(words);
2564 1.200 rillig return FAILURE;
2565 1.66 pk }
2566 1.66 pk commandShell = sh;
2567 1.1 cgd } else {
2568 1.140 joerg commandShell = bmake_malloc(sizeof(Shell));
2569 1.1 cgd *commandShell = newShell;
2570 1.1 cgd }
2571 1.174 sjg /* this will take care of shellErrFlag */
2572 1.174 sjg Shell_Init();
2573 1.1 cgd }
2574 1.1 cgd
2575 1.1 cgd if (commandShell->echoOn && commandShell->echoOff) {
2576 1.1 cgd commandShell->hasEchoCtl = TRUE;
2577 1.1 cgd }
2578 1.16 christos
2579 1.1 cgd if (!commandShell->hasErrCtl) {
2580 1.12 christos if (commandShell->errCheck == NULL) {
2581 1.1 cgd commandShell->errCheck = "";
2582 1.1 cgd }
2583 1.12 christos if (commandShell->ignErr == NULL) {
2584 1.1 cgd commandShell->ignErr = "%s\n";
2585 1.1 cgd }
2586 1.1 cgd }
2587 1.16 christos
2588 1.1 cgd /*
2589 1.1 cgd * Do not free up the words themselves, since they might be in use by the
2590 1.22 christos * shell specification.
2591 1.1 cgd */
2592 1.12 christos free(words);
2593 1.1 cgd return SUCCESS;
2594 1.1 cgd }
2595 1.1 cgd
2596 1.1 cgd /*-
2597 1.1 cgd *-----------------------------------------------------------------------
2598 1.1 cgd * JobInterrupt --
2599 1.1 cgd * Handle the receipt of an interrupt.
2600 1.1 cgd *
2601 1.72 wiz * Input:
2602 1.72 wiz * runINTERRUPT Non-zero if commands for the .INTERRUPT target
2603 1.72 wiz * should be executed
2604 1.72 wiz * signo signal received
2605 1.72 wiz *
2606 1.1 cgd * Results:
2607 1.1 cgd * None
2608 1.1 cgd *
2609 1.1 cgd * Side Effects:
2610 1.1 cgd * All children are killed. Another job will be started if the
2611 1.1 cgd * .INTERRUPT target was given.
2612 1.1 cgd *-----------------------------------------------------------------------
2613 1.1 cgd */
2614 1.1 cgd static void
2615 1.72 wiz JobInterrupt(int runINTERRUPT, int signo)
2616 1.69 pk {
2617 1.69 pk Job *job; /* job descriptor in that element */
2618 1.69 pk GNode *interrupt; /* the node describing the .INTERRUPT target */
2619 1.69 pk sigset_t mask;
2620 1.114 dsl GNode *gn;
2621 1.16 christos
2622 1.1 cgd aborting = ABORT_INTERRUPT;
2623 1.1 cgd
2624 1.69 pk JobSigLock(&mask);
2625 1.69 pk
2626 1.114 dsl for (job = job_table; job < job_table_end; job++) {
2627 1.116 dsl if (job->job_state != JOB_ST_RUNNING)
2628 1.114 dsl continue;
2629 1.67 pk
2630 1.67 pk gn = job->node;
2631 1.1 cgd
2632 1.188 dholland JobDeleteTarget(gn);
2633 1.1 cgd if (job->pid) {
2634 1.12 christos if (DEBUG(JOB)) {
2635 1.123 dsl (void)fprintf(debug_file,
2636 1.139 christos "JobInterrupt passing signal %d to child %d.\n",
2637 1.139 christos signo, job->pid);
2638 1.12 christos }
2639 1.116 dsl KILLPG(job->pid, signo);
2640 1.12 christos }
2641 1.12 christos }
2642 1.12 christos
2643 1.69 pk JobSigUnlock(&mask);
2644 1.69 pk
2645 1.1 cgd if (runINTERRUPT && !touchFlag) {
2646 1.12 christos interrupt = Targ_FindNode(".INTERRUPT", TARG_NOCREATE);
2647 1.142 dsl if (interrupt != NULL) {
2648 1.1 cgd ignoreErrors = FALSE;
2649 1.91 christos JobRun(interrupt);
2650 1.1 cgd }
2651 1.1 cgd }
2652 1.40 sommerfe Trace_Log(MAKEINTR, 0);
2653 1.12 christos exit(signo);
2654 1.1 cgd }
2655 1.1 cgd
2656 1.1 cgd /*
2657 1.1 cgd *-----------------------------------------------------------------------
2658 1.22 christos * Job_Finish --
2659 1.1 cgd * Do final processing such as the running of the commands
2660 1.16 christos * attached to the .END target.
2661 1.1 cgd *
2662 1.1 cgd * Results:
2663 1.1 cgd * Number of errors reported.
2664 1.1 cgd *
2665 1.1 cgd * Side Effects:
2666 1.34 christos * None.
2667 1.1 cgd *-----------------------------------------------------------------------
2668 1.1 cgd */
2669 1.1 cgd int
2670 1.72 wiz Job_Finish(void)
2671 1.1 cgd {
2672 1.142 dsl if (postCommands != NULL &&
2673 1.220 rillig (!Lst_IsEmpty(postCommands->commands) ||
2674 1.220 rillig !Lst_IsEmpty(postCommands->children))) {
2675 1.1 cgd if (errors) {
2676 1.12 christos Error("Errors reported so .END ignored");
2677 1.1 cgd } else {
2678 1.91 christos JobRun(postCommands);
2679 1.1 cgd }
2680 1.1 cgd }
2681 1.200 rillig return errors;
2682 1.22 christos }
2683 1.22 christos
2684 1.22 christos /*-
2685 1.22 christos *-----------------------------------------------------------------------
2686 1.22 christos * Job_End --
2687 1.22 christos * Cleanup any memory used by the jobs module
2688 1.22 christos *
2689 1.22 christos * Results:
2690 1.22 christos * None.
2691 1.22 christos *
2692 1.22 christos * Side Effects:
2693 1.22 christos * Memory is freed
2694 1.22 christos *-----------------------------------------------------------------------
2695 1.22 christos */
2696 1.22 christos void
2697 1.72 wiz Job_End(void)
2698 1.22 christos {
2699 1.30 mycroft #ifdef CLEANUP
2700 1.185 christos free(shellArgv);
2701 1.30 mycroft #endif
2702 1.1 cgd }
2703 1.1 cgd
2704 1.1 cgd /*-
2705 1.1 cgd *-----------------------------------------------------------------------
2706 1.1 cgd * Job_Wait --
2707 1.1 cgd * Waits for all running jobs to finish and returns. Sets 'aborting'
2708 1.1 cgd * to ABORT_WAIT to prevent other jobs from starting.
2709 1.1 cgd *
2710 1.1 cgd * Results:
2711 1.1 cgd * None.
2712 1.1 cgd *
2713 1.1 cgd * Side Effects:
2714 1.1 cgd * Currently running jobs finish.
2715 1.1 cgd *
2716 1.1 cgd *-----------------------------------------------------------------------
2717 1.1 cgd */
2718 1.1 cgd void
2719 1.72 wiz Job_Wait(void)
2720 1.1 cgd {
2721 1.1 cgd aborting = ABORT_WAIT;
2722 1.110 dsl while (jobTokensRunning != 0) {
2723 1.1 cgd Job_CatchOutput();
2724 1.1 cgd }
2725 1.1 cgd aborting = 0;
2726 1.1 cgd }
2727 1.1 cgd
2728 1.1 cgd /*-
2729 1.1 cgd *-----------------------------------------------------------------------
2730 1.1 cgd * Job_AbortAll --
2731 1.1 cgd * Abort all currently running jobs without handling output or anything.
2732 1.1 cgd * This function is to be called only in the event of a major
2733 1.1 cgd * error. Most definitely NOT to be called from JobInterrupt.
2734 1.1 cgd *
2735 1.1 cgd * Results:
2736 1.1 cgd * None
2737 1.1 cgd *
2738 1.1 cgd * Side Effects:
2739 1.1 cgd * All children are killed, not just the firstborn
2740 1.1 cgd *-----------------------------------------------------------------------
2741 1.1 cgd */
2742 1.1 cgd void
2743 1.72 wiz Job_AbortAll(void)
2744 1.1 cgd {
2745 1.63 pk Job *job; /* the job descriptor in that element */
2746 1.63 pk int foo;
2747 1.16 christos
2748 1.1 cgd aborting = ABORT_ERROR;
2749 1.16 christos
2750 1.110 dsl if (jobTokensRunning) {
2751 1.114 dsl for (job = job_table; job < job_table_end; job++) {
2752 1.116 dsl if (job->job_state != JOB_ST_RUNNING)
2753 1.114 dsl continue;
2754 1.1 cgd /*
2755 1.1 cgd * kill the child process with increasingly drastic signals to make
2756 1.16 christos * darn sure it's dead.
2757 1.1 cgd */
2758 1.116 dsl KILLPG(job->pid, SIGINT);
2759 1.116 dsl KILLPG(job->pid, SIGKILL);
2760 1.1 cgd }
2761 1.1 cgd }
2762 1.16 christos
2763 1.1 cgd /*
2764 1.1 cgd * Catch as many children as want to report in at first, then give up
2765 1.1 cgd */
2766 1.13 christos while (waitpid((pid_t) -1, &foo, WNOHANG) > 0)
2767 1.5 cgd continue;
2768 1.12 christos }
2769 1.12 christos
2770 1.12 christos /*-
2771 1.12 christos *-----------------------------------------------------------------------
2772 1.12 christos * JobRestartJobs --
2773 1.12 christos * Tries to restart stopped jobs if there are slots available.
2774 1.118 dsl * Called in process context in response to a SIGCONT.
2775 1.12 christos *
2776 1.12 christos * Results:
2777 1.12 christos * None.
2778 1.12 christos *
2779 1.12 christos * Side Effects:
2780 1.116 dsl * Resumes jobs.
2781 1.12 christos *
2782 1.12 christos *-----------------------------------------------------------------------
2783 1.12 christos */
2784 1.12 christos static void
2785 1.72 wiz JobRestartJobs(void)
2786 1.12 christos {
2787 1.114 dsl Job *job;
2788 1.69 pk
2789 1.114 dsl for (job = job_table; job < job_table_end; job++) {
2790 1.118 dsl if (job->job_state == JOB_ST_RUNNING &&
2791 1.118 dsl (make_suspended || job->job_suspended)) {
2792 1.116 dsl if (DEBUG(JOB)) {
2793 1.139 christos (void)fprintf(debug_file, "Restarting stopped job pid %d.\n",
2794 1.139 christos job->pid);
2795 1.116 dsl }
2796 1.118 dsl if (job->job_suspended) {
2797 1.118 dsl (void)printf("*** [%s] Continued\n", job->node->name);
2798 1.118 dsl (void)fflush(stdout);
2799 1.118 dsl }
2800 1.118 dsl job->job_suspended = 0;
2801 1.116 dsl if (KILLPG(job->pid, SIGCONT) != 0 && DEBUG(JOB)) {
2802 1.139 christos fprintf(debug_file, "Failed to send SIGCONT to %d\n", job->pid);
2803 1.116 dsl }
2804 1.12 christos }
2805 1.116 dsl if (job->job_state == JOB_ST_FINISHED)
2806 1.116 dsl /* Job exit deferred after calling waitpid() in a signal handler */
2807 1.116 dsl JobFinish(job, job->exit_status);
2808 1.12 christos }
2809 1.118 dsl make_suspended = 0;
2810 1.1 cgd }
2811 1.35 christos
2812 1.35 christos static void
2813 1.72 wiz watchfd(Job *job)
2814 1.35 christos {
2815 1.36 christos if (job->inPollfd != NULL)
2816 1.36 christos Punt("Watching watched job");
2817 1.35 christos
2818 1.36 christos fds[nfds].fd = job->inPipe;
2819 1.39 mycroft fds[nfds].events = POLLIN;
2820 1.39 mycroft jobfds[nfds] = job;
2821 1.36 christos job->inPollfd = &fds[nfds];
2822 1.39 mycroft nfds++;
2823 1.197 sjg #if defined(USE_FILEMON) && !defined(USE_FILEMON_DEV)
2824 1.196 riastrad if (useMeta) {
2825 1.196 riastrad fds[nfds].fd = meta_job_fd(job);
2826 1.196 riastrad fds[nfds].events = fds[nfds].fd == -1 ? 0 : POLLIN;
2827 1.196 riastrad jobfds[nfds] = job;
2828 1.196 riastrad nfds++;
2829 1.196 riastrad }
2830 1.196 riastrad #endif
2831 1.35 christos }
2832 1.35 christos
2833 1.35 christos static void
2834 1.72 wiz clearfd(Job *job)
2835 1.35 christos {
2836 1.35 christos int i;
2837 1.36 christos if (job->inPollfd == NULL)
2838 1.36 christos Punt("Unwatching unwatched job");
2839 1.36 christos i = job->inPollfd - fds;
2840 1.36 christos nfds--;
2841 1.197 sjg #if defined(USE_FILEMON) && !defined(USE_FILEMON_DEV)
2842 1.196 riastrad if (useMeta) {
2843 1.196 riastrad /*
2844 1.196 riastrad * Sanity check: there should be two fds per job, so the job's
2845 1.196 riastrad * pollfd number should be even.
2846 1.196 riastrad */
2847 1.196 riastrad assert(nfds_per_job() == 2);
2848 1.196 riastrad if (i % 2)
2849 1.196 riastrad Punt("odd-numbered fd with meta");
2850 1.196 riastrad nfds--;
2851 1.196 riastrad }
2852 1.196 riastrad #endif
2853 1.38 sommerfe /*
2854 1.38 sommerfe * Move last job in table into hole made by dead job.
2855 1.38 sommerfe */
2856 1.36 christos if (nfds != i) {
2857 1.38 sommerfe fds[i] = fds[nfds];
2858 1.38 sommerfe jobfds[i] = jobfds[nfds];
2859 1.38 sommerfe jobfds[i]->inPollfd = &fds[i];
2860 1.197 sjg #if defined(USE_FILEMON) && !defined(USE_FILEMON_DEV)
2861 1.196 riastrad if (useMeta) {
2862 1.196 riastrad fds[i + 1] = fds[nfds + 1];
2863 1.196 riastrad jobfds[i + 1] = jobfds[nfds + 1];
2864 1.196 riastrad }
2865 1.196 riastrad #endif
2866 1.36 christos }
2867 1.36 christos job->inPollfd = NULL;
2868 1.35 christos }
2869 1.35 christos
2870 1.35 christos static int
2871 1.72 wiz readyfd(Job *job)
2872 1.35 christos {
2873 1.36 christos if (job->inPollfd == NULL)
2874 1.36 christos Punt("Polling unwatched job");
2875 1.36 christos return (job->inPollfd->revents & POLLIN) != 0;
2876 1.35 christos }
2877 1.40 sommerfe
2878 1.40 sommerfe /*-
2879 1.40 sommerfe *-----------------------------------------------------------------------
2880 1.40 sommerfe * JobTokenAdd --
2881 1.40 sommerfe * Put a token into the job pipe so that some make process can start
2882 1.40 sommerfe * another job.
2883 1.40 sommerfe *
2884 1.40 sommerfe * Side Effects:
2885 1.40 sommerfe * Allows more build jobs to be spawned somewhere.
2886 1.40 sommerfe *
2887 1.40 sommerfe *-----------------------------------------------------------------------
2888 1.40 sommerfe */
2889 1.40 sommerfe
2890 1.40 sommerfe static void
2891 1.72 wiz JobTokenAdd(void)
2892 1.40 sommerfe {
2893 1.101 dsl char tok = JOB_TOKENS[aborting], tok1;
2894 1.101 dsl
2895 1.101 dsl /* If we are depositing an error token flush everything else */
2896 1.122 dsl while (tok != '+' && read(tokenWaitJob.inPipe, &tok1, 1) == 1)
2897 1.101 dsl continue;
2898 1.40 sommerfe
2899 1.40 sommerfe if (DEBUG(JOB))
2900 1.139 christos fprintf(debug_file, "(%d) aborting %d, deposit token %c\n",
2901 1.139 christos getpid(), aborting, JOB_TOKENS[aborting]);
2902 1.165 christos while (write(tokenWaitJob.outPipe, &tok, 1) == -1 && errno == EAGAIN)
2903 1.165 christos continue;
2904 1.40 sommerfe }
2905 1.40 sommerfe
2906 1.40 sommerfe /*-
2907 1.40 sommerfe *-----------------------------------------------------------------------
2908 1.40 sommerfe * Job_ServerStartTokenAdd --
2909 1.40 sommerfe * Prep the job token pipe in the root make process.
2910 1.40 sommerfe *
2911 1.40 sommerfe *-----------------------------------------------------------------------
2912 1.40 sommerfe */
2913 1.40 sommerfe
2914 1.72 wiz void
2915 1.122 dsl Job_ServerStart(int max_tokens, int jp_0, int jp_1)
2916 1.40 sommerfe {
2917 1.122 dsl int i;
2918 1.40 sommerfe char jobarg[64];
2919 1.201 rillig
2920 1.122 dsl if (jp_0 >= 0 && jp_1 >= 0) {
2921 1.122 dsl /* Pipe passed in from parent */
2922 1.122 dsl tokenWaitJob.inPipe = jp_0;
2923 1.122 dsl tokenWaitJob.outPipe = jp_1;
2924 1.183 christos (void)fcntl(jp_0, F_SETFD, FD_CLOEXEC);
2925 1.183 christos (void)fcntl(jp_1, F_SETFD, FD_CLOEXEC);
2926 1.122 dsl return;
2927 1.100 dsl }
2928 1.100 dsl
2929 1.122 dsl JobCreatePipe(&tokenWaitJob, 15);
2930 1.40 sommerfe
2931 1.122 dsl snprintf(jobarg, sizeof(jobarg), "%d,%d",
2932 1.122 dsl tokenWaitJob.inPipe, tokenWaitJob.outPipe);
2933 1.40 sommerfe
2934 1.40 sommerfe Var_Append(MAKEFLAGS, "-J", VAR_GLOBAL);
2935 1.201 rillig Var_Append(MAKEFLAGS, jobarg, VAR_GLOBAL);
2936 1.101 dsl
2937 1.40 sommerfe /*
2938 1.122 dsl * Preload the job pipe with one token per job, save the one
2939 1.40 sommerfe * "extra" token for the primary job.
2940 1.201 rillig *
2941 1.122 dsl * XXX should clip maxJobs against PIPE_BUF -- if max_tokens is
2942 1.40 sommerfe * larger than the write buffer size of the pipe, we will
2943 1.40 sommerfe * deadlock here.
2944 1.40 sommerfe */
2945 1.122 dsl for (i = 1; i < max_tokens; i++)
2946 1.40 sommerfe JobTokenAdd();
2947 1.40 sommerfe }
2948 1.40 sommerfe
2949 1.40 sommerfe /*-
2950 1.40 sommerfe *-----------------------------------------------------------------------
2951 1.40 sommerfe * Job_TokenReturn --
2952 1.40 sommerfe * Return a withdrawn token to the pool.
2953 1.40 sommerfe *
2954 1.40 sommerfe *-----------------------------------------------------------------------
2955 1.40 sommerfe */
2956 1.40 sommerfe
2957 1.40 sommerfe void
2958 1.72 wiz Job_TokenReturn(void)
2959 1.40 sommerfe {
2960 1.44 sommerfe jobTokensRunning--;
2961 1.44 sommerfe if (jobTokensRunning < 0)
2962 1.40 sommerfe Punt("token botch");
2963 1.102 dsl if (jobTokensRunning || JOB_TOKENS[aborting] != '+')
2964 1.101 dsl JobTokenAdd();
2965 1.40 sommerfe }
2966 1.40 sommerfe
2967 1.40 sommerfe /*-
2968 1.40 sommerfe *-----------------------------------------------------------------------
2969 1.40 sommerfe * Job_TokenWithdraw --
2970 1.40 sommerfe * Attempt to withdraw a token from the pool.
2971 1.40 sommerfe *
2972 1.40 sommerfe * Results:
2973 1.40 sommerfe * Returns TRUE if a token was withdrawn, and FALSE if the pool
2974 1.40 sommerfe * is currently empty.
2975 1.40 sommerfe *
2976 1.40 sommerfe * Side Effects:
2977 1.40 sommerfe * If pool is empty, set wantToken so that we wake up
2978 1.40 sommerfe * when a token is released.
2979 1.40 sommerfe *
2980 1.40 sommerfe *-----------------------------------------------------------------------
2981 1.40 sommerfe */
2982 1.40 sommerfe
2983 1.40 sommerfe
2984 1.40 sommerfe Boolean
2985 1.72 wiz Job_TokenWithdraw(void)
2986 1.40 sommerfe {
2987 1.101 dsl char tok, tok1;
2988 1.40 sommerfe int count;
2989 1.40 sommerfe
2990 1.120 dsl wantToken = 0;
2991 1.101 dsl if (DEBUG(JOB))
2992 1.139 christos fprintf(debug_file, "Job_TokenWithdraw(%d): aborting %d, running %d\n",
2993 1.139 christos getpid(), aborting, jobTokensRunning);
2994 1.60 enami
2995 1.111 dsl if (aborting || (jobTokensRunning >= maxJobs))
2996 1.102 dsl return FALSE;
2997 1.40 sommerfe
2998 1.122 dsl count = read(tokenWaitJob.inPipe, &tok, 1);
2999 1.40 sommerfe if (count == 0)
3000 1.40 sommerfe Fatal("eof on job pipe!");
3001 1.194 christos if (count < 0 && jobTokensRunning != 0) {
3002 1.40 sommerfe if (errno != EAGAIN) {
3003 1.40 sommerfe Fatal("job pipe read: %s", strerror(errno));
3004 1.40 sommerfe }
3005 1.40 sommerfe if (DEBUG(JOB))
3006 1.139 christos fprintf(debug_file, "(%d) blocked for token\n", getpid());
3007 1.194 christos return FALSE;
3008 1.40 sommerfe }
3009 1.102 dsl
3010 1.102 dsl if (count == 1 && tok != '+') {
3011 1.120 dsl /* make being abvorted - remove any other job tokens */
3012 1.101 dsl if (DEBUG(JOB))
3013 1.139 christos fprintf(debug_file, "(%d) aborted by token %c\n", getpid(), tok);
3014 1.122 dsl while (read(tokenWaitJob.inPipe, &tok1, 1) == 1)
3015 1.101 dsl continue;
3016 1.101 dsl /* And put the stopper back */
3017 1.165 christos while (write(tokenWaitJob.outPipe, &tok, 1) == -1 && errno == EAGAIN)
3018 1.165 christos continue;
3019 1.198 sjg if (dieQuietly(NULL, 1))
3020 1.198 sjg exit(2);
3021 1.102 dsl Fatal("A failure has been detected in another branch of the parallel make");
3022 1.101 dsl }
3023 1.102 dsl
3024 1.102 dsl if (count == 1 && jobTokensRunning == 0)
3025 1.102 dsl /* We didn't want the token really */
3026 1.165 christos while (write(tokenWaitJob.outPipe, &tok, 1) == -1 && errno == EAGAIN)
3027 1.165 christos continue;
3028 1.102 dsl
3029 1.44 sommerfe jobTokensRunning++;
3030 1.40 sommerfe if (DEBUG(JOB))
3031 1.139 christos fprintf(debug_file, "(%d) withdrew token\n", getpid());
3032 1.40 sommerfe return TRUE;
3033 1.41 sommerfe }
3034 1.41 sommerfe
3035 1.172 christos /*-
3036 1.172 christos *-----------------------------------------------------------------------
3037 1.172 christos * Job_RunTarget --
3038 1.172 christos * Run the named target if found. If a filename is specified, then
3039 1.172 christos * set that to the sources.
3040 1.172 christos *
3041 1.172 christos * Results:
3042 1.172 christos * None
3043 1.172 christos *
3044 1.172 christos * Side Effects:
3045 1.172 christos * exits if the target fails.
3046 1.172 christos *
3047 1.172 christos *-----------------------------------------------------------------------
3048 1.172 christos */
3049 1.172 christos Boolean
3050 1.172 christos Job_RunTarget(const char *target, const char *fname) {
3051 1.172 christos GNode *gn = Targ_FindNode(target, TARG_NOCREATE);
3052 1.172 christos
3053 1.172 christos if (gn == NULL)
3054 1.172 christos return FALSE;
3055 1.172 christos
3056 1.172 christos if (fname)
3057 1.199 rillig Var_Set(ALLSRC, fname, gn);
3058 1.172 christos
3059 1.172 christos JobRun(gn);
3060 1.172 christos if (gn->made == ERROR) {
3061 1.172 christos PrintOnError(gn, "\n\nStop.");
3062 1.172 christos exit(1);
3063 1.172 christos }
3064 1.172 christos return TRUE;
3065 1.172 christos }
3066 1.172 christos
3067 1.73 gson #ifdef USE_SELECT
3068 1.73 gson int
3069 1.73 gson emul_poll(struct pollfd *fd, int nfd, int timeout)
3070 1.73 gson {
3071 1.73 gson fd_set rfds, wfds;
3072 1.73 gson int i, maxfd, nselect, npoll;
3073 1.73 gson struct timeval tv, *tvp;
3074 1.73 gson long usecs;
3075 1.73 gson
3076 1.73 gson FD_ZERO(&rfds);
3077 1.73 gson FD_ZERO(&wfds);
3078 1.73 gson
3079 1.73 gson maxfd = -1;
3080 1.73 gson for (i = 0; i < nfd; i++) {
3081 1.73 gson fd[i].revents = 0;
3082 1.73 gson
3083 1.73 gson if (fd[i].events & POLLIN)
3084 1.73 gson FD_SET(fd[i].fd, &rfds);
3085 1.73 gson
3086 1.73 gson if (fd[i].events & POLLOUT)
3087 1.73 gson FD_SET(fd[i].fd, &wfds);
3088 1.73 gson
3089 1.73 gson if (fd[i].fd > maxfd)
3090 1.73 gson maxfd = fd[i].fd;
3091 1.73 gson }
3092 1.201 rillig
3093 1.73 gson if (maxfd >= FD_SETSIZE) {
3094 1.201 rillig Punt("Ran out of fd_set slots; "
3095 1.73 gson "recompile with a larger FD_SETSIZE.");
3096 1.73 gson }
3097 1.73 gson
3098 1.73 gson if (timeout < 0) {
3099 1.73 gson tvp = NULL;
3100 1.73 gson } else {
3101 1.73 gson usecs = timeout * 1000;
3102 1.73 gson tv.tv_sec = usecs / 1000000;
3103 1.73 gson tv.tv_usec = usecs % 1000000;
3104 1.205 rillig tvp = &tv;
3105 1.73 gson }
3106 1.73 gson
3107 1.73 gson nselect = select(maxfd + 1, &rfds, &wfds, 0, tvp);
3108 1.73 gson
3109 1.73 gson if (nselect <= 0)
3110 1.73 gson return nselect;
3111 1.73 gson
3112 1.73 gson npoll = 0;
3113 1.73 gson for (i = 0; i < nfd; i++) {
3114 1.73 gson if (FD_ISSET(fd[i].fd, &rfds))
3115 1.73 gson fd[i].revents |= POLLIN;
3116 1.73 gson
3117 1.73 gson if (FD_ISSET(fd[i].fd, &wfds))
3118 1.73 gson fd[i].revents |= POLLOUT;
3119 1.73 gson
3120 1.73 gson if (fd[i].revents)
3121 1.73 gson npoll++;
3122 1.73 gson }
3123 1.73 gson
3124 1.73 gson return npoll;
3125 1.73 gson }
3126 1.73 gson #endif /* USE_SELECT */
3127