/* Licensed to the Apache Software Foundation (ASF) under one or more *contributorlicenseagreements.SeetheNOTICEfiledistributedwith *thisworkforadditionalinformationregardingcopyrightownership. *TheASFlicensesthisfiletoYouundertheApacheLicense,Version2.0 *(the"License");youmaynotusethisfileexceptincompliancewith *theLicense.YoumayobtainacopyoftheLicenseat * *http://www.apache.org/licenses/LICENSE-2.0 * *Unlessrequiredbyapplicablelaworagreedtoinwriting,software *distributedundertheLicenseisdistributedonan"ASIS"BASIS, *WITHOUTWARRANTIESORCONDITIONSOFANYKIND,eitherexpressorimplied. *SeetheLicenseforthespecificlanguagegoverningpermissionsand *limitationsundertheLicense.
*/
/* The purpose of this file is to store the code that MOST mpm's will need *thisdoesnotmeanafunctiononlygoesintothisfileifeveryMPMneeds *it.ItmeansthatifafunctionisneededbymorethanoneMPM,and *futuremaintenancewouldbeservedbymakingthecodecommon,thenthe *functionbelongshere. * *Thisisgoinginsrc/mainbecauseitisnotplatformspecific,itis *specifictomulti-processservers,butNOTtoUnix.Whichiswhyit *doesnotbelonginsrc/os/unix
*/
while (cur && cur->pid != pid) {
prev = cur;
cur = cur->next;
}
if (cur) { if (prev) {
prev->next = cur->next;
} else {
extras = cur->next;
}
*old_gen = cur->gen;
free(cur); return1; /* found */
} else { /* we don't know about any such process */ return0;
}
}
case SEND_SIGTERM: /* ok, now it's being annoying */
ap_log_error(APLOG_MARK, APLOG_WARNING, 0, ap_server_conf, APLOGNO(00045) "child process %" APR_PID_T_FMT " still did not exit, " "sending a SIGTERM",
pid); /* FALLTHROUGH */ case SEND_SIGTERM_NOLOG:
kill(pid, SIGTERM); break;
case SEND_SIGKILL:
ap_log_error(APLOG_MARK, APLOG_ERR, 0, ap_server_conf, APLOGNO(00046) "child process %" APR_PID_T_FMT " still did not exit, " "sending a SIGKILL",
pid);
kill(pid, SIGKILL); break;
case GIVEUP: /* gave it our best shot, but alas... If this really *isachildwearetryingtokillanditreallyhasn't *exited,wewilllikelyfailtobindtotheport *aftertherestart.
*/
ap_log_error(APLOG_MARK, APLOG_ERR, 0, ap_server_conf, APLOGNO(00047) "could not make child process %" APR_PID_T_FMT " exit, " "attempting to continue anyway",
pid); break;
}
return0;
}
AP_DECLARE(void) ap_reclaim_child_processes(int terminate,
ap_reclaim_callback_fn_t *mpm_callback)
{
apr_time_t waittime = 1024 * 16; int i;
extra_process_t *cur_extra; int not_dead_yet; int max_daemons;
apr_time_t starttime = apr_time_now(); /* this table of actions and elapsed times tells what action is taken *atwhichelapsedtimefromstartingthereclaim
*/ struct {
action_t action;
apr_time_t action_time;
} action_table[] = {
{DO_NOTHING, 0}, /* dummy entry for iterations where we reap *childrenbuttakenoactionagainst *stragglers
*/
{SEND_SIGTERM_NOLOG, 0}, /* skipped if terminate == 0 */
{SEND_SIGTERM, apr_time_from_sec(3)},
{SEND_SIGTERM, apr_time_from_sec(5)},
{SEND_SIGTERM, apr_time_from_sec(7)},
{SEND_SIGKILL, apr_time_from_sec(9)},
{GIVEUP, apr_time_from_sec(10)}
}; int cur_action; /* index of action we decided to take this *iteration
*/ int next_action = terminate ? 1 : 2; /* index of first real action */
do { if (action_table[next_action].action_time > 0) {
apr_sleep(waittime); /* don't let waittime get longer than 1 second; otherwise, we don't *reactquicklytothelastchildexiting,andtakingactioncan *bedelayed
*/
waittime = waittime * 4; if (waittime > apr_time_from_sec(1)) {
waittime = apr_time_from_sec(1);
}
}
/* see what action to take, if any */ if (action_table[next_action].action_time <= apr_time_now() - starttime) {
cur_action = next_action;
++next_action;
} else {
cur_action = 0; /* nothing to do */
}
/* now see who is done */
not_dead_yet = 0; for (i = 0; i < max_daemons; ++i) {
process_score *ps = ap_get_scoreboard_process(i);
pid_t pid = ps->pid;
if (pid == 0) { continue; /* not every scoreboard entry is in use */
}
/* Before sending the signal to the pid this function verifies that *thepidisamemberofthecurrentprocessgroup;eitherusing *apr_proc_wait(),wherewaitpid()guaranteestofailfornon-child
* processes; or by using getpgid() directly, if available. */
AP_DECLARE(apr_status_t) ap_mpm_safe_kill(pid_t pid, int sig)
{ #ifndef HAVE_GETPGID
apr_proc_t proc;
apr_status_t rv;
apr_exit_why_e why; int status;
proc.pid = pid;
rv = apr_proc_wait(&proc, &status, &why, APR_NOWAIT); if (rv == APR_CHILD_DONE) { /* The child already died - log the termination status if
* necessary: */
ap_process_child_status(&proc, why, status); return APR_EINVAL;
} elseif (rv != APR_CHILD_NOTDONE) { /* The child is already dead and reaped, or was a bogus pid -
* log this either way. */
ap_log_error(APLOG_MARK, APLOG_NOTICE, rv, ap_server_conf, APLOGNO(00048) "cannot send signal %d to pid %ld (non-child or " "already dead)", sig, (long)pid); return APR_EINVAL;
} #else
pid_t pg;
pg = getpgid(pid); if (pg == -1) { /* Process already dead... */ return errno;
}
if (pg != getpgrp()) {
ap_log_error(APLOG_MARK, APLOG_ALERT, 0, ap_server_conf, APLOGNO(00049) "refusing to send signal %d to pid %ld outside " "process group", sig, (long)pid); return APR_EINVAL;
} #endif
return kill(pid, sig) ? errno : APR_SUCCESS;
}
AP_DECLARE(int) ap_process_child_status(apr_proc_t *pid, apr_exit_why_e why, int status)
{ int signum = status; constchar *sigdesc;
/* Child died... if it died due to a fatal error, *weshouldsimplybailout.Thecallerneedsto *checkforbadrcfromusandexit,runningany *appropriatecleanups. * *Ifthechilddiedduetoaresourceshortage, *theparentshouldlimittherateofforking
*/ if (APR_PROC_CHECK_EXIT(why)) { if (status == APEXIT_CHILDSICK) { return status;
}
if (status == APEXIT_CHILDFATAL) {
ap_log_error(APLOG_MARK, APLOG_ALERT, 0, ap_server_conf, APLOGNO(00050) "Child %" APR_PID_T_FMT " returned a Fatal error... Apache is exiting!",
pid->pid); return APEXIT_CHILDFATAL;
}
return0;
}
if (APR_PROC_CHECK_SIGNALED(why)) {
sigdesc = apr_signal_description_get(signum);
switch (signum) { case SIGTERM: case SIGHUP: case AP_SIG_GRACEFUL: case SIGKILL: break;
/* close these before exec. */
apr_file_inherit_unset((*pod)->pod_in);
apr_file_inherit_unset((*pod)->pod_out);
return APR_SUCCESS;
}
AP_DECLARE(int) ap_mpm_podx_check(ap_pod_t *pod)
{ char c;
apr_os_file_t fd; int rc;
/* we need to surface EINTR so we'll have to grab the *nativefiledescriptoranddotheOSread()ourselves
*/
apr_os_file_get(&fd, pod->pod_in);
rc = read(fd, &c, 1); if (rc == 1) { switch (c) { case AP_MPM_PODX_RESTART_CHAR: return AP_MPM_PODX_RESTART; case AP_MPM_PODX_GRACEFUL_CHAR: return AP_MPM_PODX_GRACEFUL;
}
} return AP_MPM_PODX_NORESTART;
}
AP_DECLARE(void) ap_mpm_podx_killpg(ap_pod_t * pod, int num,
ap_podx_restart_t graceful)
{ int i;
apr_status_t rv = APR_SUCCESS;
for (i = 0; i < num && rv == APR_SUCCESS; i++) {
rv = podx_signal_internal(pod, graceful);
}
}
/* This function connects to the server and sends enough data to *ensurethechildwakesupandprocessesanewconnection.This *permitstheMPMtoskipthepollwhenthereisonlyonelistening *socket,becauseitprovidesaalternatewaytounblockanaccept()
* when the pod is used. */ static apr_status_t dummy_connection(ap_pod_t *pod)
{ constchar *data;
apr_status_t rv;
apr_socket_t *sock;
apr_pool_t *p;
apr_size_t len;
ap_listen_rec *lp;
/* create a temporary pool for the socket. pconf stays around too long */
rv = apr_pool_create(&p, pod->p); if (rv != APR_SUCCESS) { return rv;
}
apr_pool_tag(p, "dummy_connection");
/* If possible, find a listener which is configured for *plain-HTTP,notSSL;usinganSSLportwouldeitherbe *expensivetodocorrectly(performingacompleteSSLhandshake)
* or cause log spam by doing incorrectly (simply sending EOF). */
lp = ap_listeners; while (lp && lp->protocol && ap_cstr_casecmp(lp->protocol, "http") != 0) {
lp = lp->next;
} if (!lp) {
lp = ap_listeners;
}
rv = apr_socket_create(&sock, lp->bind_addr->family, SOCK_STREAM, 0, p); if (rv != APR_SUCCESS) {
ap_log_error(APLOG_MARK, APLOG_WARNING, rv, ap_server_conf, APLOGNO(00054) "get socket to connect to listener");
apr_pool_destroy(p); return rv;
}
/* on some platforms (e.g., FreeBSD), the kernel won't accept many *queuedconnectionsbeforeitstartsblockinglocalconnects... *weneedtokeepfromblockingtoolongandinsteadreturnanerror, *becausetheMPMwon'twanttoholdupagracefulrestartfora *longtime
*/
rv = apr_socket_timeout_set(sock, apr_time_from_sec(3)); if (rv != APR_SUCCESS) {
ap_log_error(APLOG_MARK, APLOG_WARNING, rv, ap_server_conf, APLOGNO(00055) "set timeout on socket to connect to listener");
apr_socket_close(sock);
apr_pool_destroy(p); return rv;
}
rv = apr_socket_connect(sock, lp->bind_addr); if (rv != APR_SUCCESS) { int log_level = APLOG_WARNING;
if (APR_STATUS_IS_TIMEUP(rv)) { /* probably some server processes bailed out already and there *isnobodyaroundtocallacceptandclearoutthekernel *connectionqueue;usuallythisisnotworthlogging
*/
log_level = APLOG_DEBUG;
}
ap_log_error(APLOG_MARK, log_level, rv, ap_server_conf, APLOGNO(00056) "connect to listener on %pI", lp->bind_addr);
apr_pool_destroy(p); return rv;
}
if (lp->protocol && ap_cstr_casecmp(lp->protocol, "https") == 0) { /* Send a TLS 1.0 close_notify alert. This is perhaps the *"leastwrong"waytoopenandcleanlyterminateanSSL *connection.Itshould"work"withoutnoisyerrorlogsif *theserveractuallyexpectsSSLv3/TLSv1.With *SSLv23_server_method()OpenSSL'sSSL_accept()fails *ungracefullyonreceiptofthismessage,sinceitrequires
* an 11-byte ClientHello message and this is too short. */ staticconstunsignedchar tls10_close_notify[7] = { '\x15', /* TLSPlainText.type = Alert (21) */ '\x03', '\x01', /* TLSPlainText.version = {3, 1} */ '\x00', '\x02', /* TLSPlainText.length = 2 */ '\x01', /* Alert.level = warning (1) */ '\x00'/* Alert.description = close_notify (0) */
};
data = (constchar *)tls10_close_notify;
len = sizeof(tls10_close_notify);
} else/* ... XXX other request types here? */ { /* Create an HTTP request string. We include a User-Agent so *thatadministratorscantrackdownthecauseofthe *odd-lookingrequestsintheirlogs.Acompleterequestis *usedsincekernel-levelfilteringmayrequirethatmuch
* data before returning from accept(). */
data = apr_pstrcat(p, "OPTIONS * HTTP/1.0\r\nUser-Agent: ",
ap_get_server_description(), " (internal dummy connection)\r\n\r\n", NULL);
len = strlen(data);
}
void ap_mpm_pod_killpg(ap_pod_t *pod, int num)
{ int i;
apr_status_t rv = APR_SUCCESS;
/* we don't write anything to the pod here... we assume *thatthewould-bereaderofthepodhasanotherwayto *seethatitistimetodieoncewewakeitup * *writinglotsofthingstothepodatonceisvery *problematic...wecanfillthekernelpipebufferand *beblockeduntilsomebodyconsumessomebytesor *wehitatimeout...ifwehitatimeoutwecan'tjust *keeptryingbecausemaybewe'llneversuccessfully *writeagain...butthenmaybewe'llleavewould-be *readersstranded(anumberofthemcouldbetiedupfor *awhileservingtime-consumingrequests)
*/ /* Recall: we only worry about IDLE child processes here */ for (i = 0; i < num && rv == APR_SUCCESS; i++) { if (ap_scoreboard_image->servers[i][0].status != SERVER_READY ||
ap_scoreboard_image->servers[i][0].pid == 0) { continue;
}
rv = dummy_connection(pod);
}
}
/* We can't call sig_coredump (ap_log_error) once pconf is destroyed, so *avoiddoublefaultsbyrestoringeachdefaultsignalhandleroncleanup.
*/ static apr_status_t fatal_signal_cleanup(void *unused)
{
(void)unused;
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