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zed: use separate reaper thread and collect ZEDLETs asynchronously
Reviewed-by: Brian Behlendorf <behlendorf1@llnl.gov> Signed-off-by: Ahelenia Ziemiańska <nabijaczleweli@nabijaczleweli.xyz> Closes #11807
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@ -60,8 +60,8 @@ _setup_sig_handlers(void)
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zed_log_die("Failed to initialize sigset");
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sa.sa_flags = SA_RESTART;
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sa.sa_handler = SIG_IGN;
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sa.sa_handler = SIG_IGN;
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if (sigaction(SIGPIPE, &sa, NULL) < 0)
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zed_log_die("Failed to ignore SIGPIPE");
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@ -75,6 +75,10 @@ _setup_sig_handlers(void)
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sa.sa_handler = _hup_handler;
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if (sigaction(SIGHUP, &sa, NULL) < 0)
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zed_log_die("Failed to register SIGHUP handler");
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(void) sigaddset(&sa.sa_mask, SIGCHLD);
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if (pthread_sigmask(SIG_BLOCK, &sa.sa_mask, NULL) < 0)
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zed_log_die("Failed to block SIGCHLD");
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}
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/*
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@ -15,7 +15,7 @@
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#include <ctype.h>
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#include <errno.h>
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#include <fcntl.h>
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#include <libzfs.h> /* FIXME: Replace with libzfs_core. */
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#include <libzfs_core.h>
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#include <paths.h>
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#include <stdarg.h>
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#include <stdio.h>
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@ -96,6 +96,8 @@ zed_event_fini(struct zed_conf *zcp)
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libzfs_fini(zcp->zfs_hdl);
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zcp->zfs_hdl = NULL;
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}
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zed_exec_fini();
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}
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/*
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@ -18,10 +18,13 @@
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#include <fcntl.h>
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#include <stdlib.h>
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#include <string.h>
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#include <stddef.h>
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#include <sys/avl.h>
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#include <sys/stat.h>
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#include <sys/wait.h>
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#include <time.h>
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#include <unistd.h>
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#include <pthread.h>
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#include "zed_exec.h"
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#include "zed_file.h"
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#include "zed_log.h"
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@ -29,6 +32,38 @@
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#define ZEVENT_FILENO 3
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struct launched_process_node {
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avl_node_t node;
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pid_t pid;
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uint64_t eid;
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char *name;
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};
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static int
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_launched_process_node_compare(const void *x1, const void *x2)
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{
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pid_t p1;
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pid_t p2;
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assert(x1 != NULL);
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assert(x2 != NULL);
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p1 = ((const struct launched_process_node *) x1)->pid;
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p2 = ((const struct launched_process_node *) x2)->pid;
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if (p1 < p2)
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return (-1);
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else if (p1 == p2)
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return (0);
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else
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return (1);
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}
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static pthread_t _reap_children_tid = (pthread_t)-1;
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static volatile boolean_t _reap_children_stop;
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static avl_tree_t _launched_processes;
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static pthread_mutex_t _launched_processes_lock = PTHREAD_MUTEX_INITIALIZER;
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/*
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* Create an environment string array for passing to execve() using the
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* NAME=VALUE strings in container [zsp].
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@ -85,8 +120,8 @@ _zed_exec_fork_child(uint64_t eid, const char *dir, const char *prog,
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int n;
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pid_t pid;
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int fd;
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pid_t wpid;
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int status;
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struct launched_process_node *node;
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sigset_t mask;
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assert(dir != NULL);
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assert(prog != NULL);
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@ -107,6 +142,9 @@ _zed_exec_fork_child(uint64_t eid, const char *dir, const char *prog,
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prog, eid, strerror(errno));
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return;
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} else if (pid == 0) {
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(void) sigemptyset(&mask);
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(void) sigprocmask(SIG_SETMASK, &mask, NULL);
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(void) umask(022);
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if ((fd = open("/dev/null", O_RDWR)) != -1) {
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(void) dup2(fd, STDIN_FILENO);
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@ -124,57 +162,108 @@ _zed_exec_fork_child(uint64_t eid, const char *dir, const char *prog,
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zed_log_msg(LOG_INFO, "Invoking \"%s\" eid=%llu pid=%d",
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prog, eid, pid);
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/* FIXME: Timeout rogue child processes with sigalarm? */
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node = calloc(1, sizeof (*node));
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if (node) {
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node->pid = pid;
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node->eid = eid;
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node->name = strdup(prog);
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(void) pthread_mutex_lock(&_launched_processes_lock);
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avl_add(&_launched_processes, node);
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(void) pthread_mutex_unlock(&_launched_processes_lock);
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}
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}
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/*
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* Wait for child process using WNOHANG to limit
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* the time spent waiting to 10 seconds (10,000ms).
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*/
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for (n = 0; n < 1000; n++) {
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wpid = waitpid(pid, &status, WNOHANG);
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if (wpid == (pid_t)-1) {
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if (errno == EINTR)
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continue;
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zed_log_msg(LOG_WARNING,
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"Failed to wait for \"%s\" eid=%llu pid=%d",
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prog, eid, pid);
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break;
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} else if (wpid == 0) {
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struct timespec t;
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static void
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_nop(int sig)
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{}
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/* child still running */
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t.tv_sec = 0;
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t.tv_nsec = 10000000; /* 10ms */
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(void) nanosleep(&t, NULL);
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continue;
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}
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static void *
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_reap_children(void *arg)
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{
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struct launched_process_node node, *pnode;
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pid_t pid;
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int status;
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struct sigaction sa = {};
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if (WIFEXITED(status)) {
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zed_log_msg(LOG_INFO,
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"Finished \"%s\" eid=%llu pid=%d exit=%d",
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prog, eid, pid, WEXITSTATUS(status));
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} else if (WIFSIGNALED(status)) {
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zed_log_msg(LOG_INFO,
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"Finished \"%s\" eid=%llu pid=%d sig=%d/%s",
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prog, eid, pid, WTERMSIG(status),
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strsignal(WTERMSIG(status)));
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(void) sigfillset(&sa.sa_mask);
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(void) sigdelset(&sa.sa_mask, SIGCHLD);
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(void) pthread_sigmask(SIG_SETMASK, &sa.sa_mask, NULL);
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(void) sigemptyset(&sa.sa_mask);
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sa.sa_handler = _nop;
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sa.sa_flags = SA_NOCLDSTOP;
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(void) sigaction(SIGCHLD, &sa, NULL);
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for (_reap_children_stop = B_FALSE; !_reap_children_stop; ) {
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pid = waitpid(0, &status, 0);
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if (pid == (pid_t)-1) {
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if (errno == ECHILD)
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pause();
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else if (errno != EINTR)
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zed_log_msg(LOG_WARNING,
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"Failed to wait for children: %s",
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strerror(errno));
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} else {
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zed_log_msg(LOG_INFO,
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"Finished \"%s\" eid=%llu pid=%d status=0x%X",
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prog, eid, (unsigned int) status);
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memset(&node, 0, sizeof (node));
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node.pid = pid;
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(void) pthread_mutex_lock(&_launched_processes_lock);
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pnode = avl_find(&_launched_processes, &node, NULL);
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if (pnode) {
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memcpy(&node, pnode, sizeof (node));
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avl_remove(&_launched_processes, pnode);
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free(pnode);
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}
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(void) pthread_mutex_unlock(&_launched_processes_lock);
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if (WIFEXITED(status)) {
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zed_log_msg(LOG_INFO,
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"Finished \"%s\" eid=%llu pid=%d exit=%d",
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node.name, node.eid, pid,
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WEXITSTATUS(status));
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} else if (WIFSIGNALED(status)) {
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zed_log_msg(LOG_INFO,
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"Finished \"%s\" eid=%llu pid=%d sig=%d/%s",
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node.name, node.eid, pid, WTERMSIG(status),
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strsignal(WTERMSIG(status)));
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} else {
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zed_log_msg(LOG_INFO,
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"Finished \"%s\" eid=%llu pid=%d "
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"status=0x%X",
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node.name, node.eid, (unsigned int) status);
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}
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free(node.name);
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}
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break;
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}
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/*
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* kill child process after 10 seconds
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*/
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if (wpid == 0) {
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zed_log_msg(LOG_WARNING, "Killing hung \"%s\" pid=%d",
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prog, pid);
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(void) kill(pid, SIGKILL);
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(void) waitpid(pid, &status, 0);
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return (NULL);
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}
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void
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zed_exec_fini(void)
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{
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struct launched_process_node *node;
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void *ck = NULL;
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if (_reap_children_tid == (pthread_t)-1)
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return;
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_reap_children_stop = B_TRUE;
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(void) pthread_kill(_reap_children_tid, SIGCHLD);
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(void) pthread_join(_reap_children_tid, NULL);
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while ((node = avl_destroy_nodes(&_launched_processes, &ck)) != NULL) {
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free(node->name);
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free(node);
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}
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avl_destroy(&_launched_processes);
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(void) pthread_mutex_destroy(&_launched_processes_lock);
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(void) pthread_mutex_init(&_launched_processes_lock, NULL);
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_reap_children_tid = (pthread_t)-1;
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}
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/*
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@ -206,6 +295,17 @@ zed_exec_process(uint64_t eid, const char *class, const char *subclass,
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if (!dir || !zedlets || !envs || zfd < 0)
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return (-1);
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if (_reap_children_tid == (pthread_t)-1) {
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if (pthread_create(&_reap_children_tid, NULL,
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_reap_children, NULL) != 0)
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return (-1);
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pthread_setname_np(_reap_children_tid, "reap ZEDLETs");
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avl_create(&_launched_processes, _launched_process_node_compare,
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sizeof (struct launched_process_node),
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offsetof(struct launched_process_node, node));
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}
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csp = class_strings;
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if (class)
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#include <stdint.h>
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#include "zed_strings.h"
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void zed_exec_fini(void);
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int zed_exec_process(uint64_t eid, const char *class, const char *subclass,
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const char *dir, zed_strings_t *zedlets, zed_strings_t *envs,
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int zevent_fd);
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.SH BUGS
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.PP
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Events are processed synchronously by a single thread. This can delay the
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processing of simultaneous zevents.
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.PP
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ZEDLETs are killed after a maximum of ten seconds.
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This can lead to a violation of a ZEDLET's atomicity assumptions.
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.PP
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The ownership and permissions of the \fIenabled-zedlets\fR directory (along
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with all parent directories) are not checked. If any of these directories
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are improperly owned or permissioned, an unprivileged user could insert a
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