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zed: allow limiting concurrent jobs
200ms time-out is relatively long, but if we already hit the cap, then we'll likely be able to spawn multiple new jobs when we wake up Reviewed-by: Brian Behlendorf <behlendorf1@llnl.gov> Signed-off-by: Ahelenia Ziemiańska <nabijaczleweli@nabijaczleweli.xyz> Closes #11807
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02a0fa1999
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@ -51,6 +51,7 @@ zed_conf_create(void)
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zcp->state_fd = -1; /* opened via zed_conf_open_state() */
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zcp->zfs_hdl = NULL; /* opened via zed_event_init() */
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zcp->zevent_fd = -1; /* opened via zed_event_init() */
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zcp->max_jobs = 16;
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if (!(zcp->conf_file = strdup(ZED_CONF_FILE)))
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goto nomem;
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@ -172,6 +173,8 @@ _zed_conf_display_help(const char *prog, int got_err)
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"Write daemon's PID to FILE.", ZED_PID_FILE);
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fprintf(fp, "%*c%*s %s [%s]\n", w1, 0x20, -w2, "-s FILE",
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"Write daemon's state to FILE.", ZED_STATE_FILE);
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fprintf(fp, "%*c%*s %s [%d]\n", w1, 0x20, -w2, "-j JOBS",
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"Start at most JOBS at once.", 16);
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fprintf(fp, "\n");
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exit(got_err ? EXIT_FAILURE : EXIT_SUCCESS);
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@ -251,8 +254,9 @@ _zed_conf_parse_path(char **resultp, const char *path)
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void
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zed_conf_parse_opts(struct zed_conf *zcp, int argc, char **argv)
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{
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const char * const opts = ":hLVc:d:p:P:s:vfFMZI";
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const char * const opts = ":hLVc:d:p:P:s:vfFMZIj:";
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int opt;
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unsigned long raw;
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if (!zcp || !argv || !argv[0])
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zed_log_die("Failed to parse options: Internal error");
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@ -303,6 +307,17 @@ zed_conf_parse_opts(struct zed_conf *zcp, int argc, char **argv)
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case 'Z':
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zcp->do_zero = 1;
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break;
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case 'j':
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errno = 0;
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raw = strtoul(optarg, NULL, 0);
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if (errno == ERANGE || raw > INT16_MAX) {
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zed_log_die("%lu is too many jobs", raw);
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} if (raw == 0) {
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zed_log_die("0 jobs makes no sense");
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} else {
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zcp->max_jobs = raw;
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}
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break;
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case '?':
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default:
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if (optopt == '?')
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@ -39,6 +39,7 @@ struct zed_conf {
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libzfs_handle_t *zfs_hdl; /* handle to libzfs */
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int zevent_fd; /* fd for access to zevents */
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char *path; /* custom $PATH for zedlets to use */
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int16_t max_jobs; /* max zedlets to run at one time */
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};
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struct zed_conf *zed_conf_create(void);
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@ -955,8 +955,7 @@ zed_event_service(struct zed_conf *zcp)
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_zed_event_add_time_strings(eid, zsp, etime);
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zed_exec_process(eid, class, subclass,
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zcp->zedlet_dir, zcp->zedlets, zsp, zcp->zevent_fd);
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zed_exec_process(eid, class, subclass, zcp, zsp);
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zed_conf_write_state(zcp, eid, etime);
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@ -63,6 +63,7 @@ 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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static int16_t _launched_processes_limit;
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/*
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* Create an environment string array for passing to execve() using the
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@ -122,12 +123,18 @@ _zed_exec_fork_child(uint64_t eid, const char *dir, const char *prog,
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int fd;
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struct launched_process_node *node;
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sigset_t mask;
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struct timespec launch_timeout =
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{ .tv_sec = 0, .tv_nsec = 200 * 1000 * 1000, };
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assert(dir != NULL);
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assert(prog != NULL);
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assert(env != NULL);
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assert(zfd >= 0);
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while (__atomic_load_n(&_launched_processes_limit,
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__ATOMIC_SEQ_CST) <= 0)
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(void) nanosleep(&launch_timeout, NULL);
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n = snprintf(path, sizeof (path), "%s/%s", dir, prog);
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if ((n < 0) || (n >= sizeof (path))) {
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zed_log_msg(LOG_WARNING,
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@ -159,6 +166,7 @@ _zed_exec_fork_child(uint64_t eid, const char *dir, const char *prog,
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/* parent process */
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__atomic_sub_fetch(&_launched_processes_limit, 1, __ATOMIC_SEQ_CST);
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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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@ -216,6 +224,8 @@ _reap_children(void *arg)
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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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__atomic_add_fetch(&_launched_processes_limit, 1,
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__ATOMIC_SEQ_CST);
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if (WIFEXITED(status)) {
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zed_log_msg(LOG_INFO,
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@ -270,20 +280,21 @@ zed_exec_fini(void)
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* Process the event [eid] by synchronously invoking all zedlets with a
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* matching class prefix.
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*
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* Each executable in [zedlets] from the directory [dir] is matched against
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* the event's [class], [subclass], and the "all" class (which matches
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* all events). Every zedlet with a matching class prefix is invoked.
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* Each executable in [zcp->zedlets] from the directory [zcp->zedlet_dir]
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* is matched against the event's [class], [subclass], and the "all" class
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* (which matches all events).
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* Every zedlet with a matching class prefix is invoked.
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* The NAME=VALUE strings in [envs] will be passed to the zedlet as
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* environment variables.
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*
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* The file descriptor [zfd] is the zevent_fd used to track the
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* The file descriptor [zcp->zevent_fd] is the zevent_fd used to track the
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* current cursor location within the zevent nvlist.
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*
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* Return 0 on success, -1 on error.
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*/
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int
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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, int zfd)
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struct zed_conf *zcp, zed_strings_t *envs)
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{
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const char *class_strings[4];
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const char *allclass = "all";
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@ -292,10 +303,12 @@ zed_exec_process(uint64_t eid, const char *class, const char *subclass,
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char **e;
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int n;
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if (!dir || !zedlets || !envs || zfd < 0)
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if (!zcp->zedlet_dir || !zcp->zedlets || !envs || zcp->zevent_fd < 0)
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return (-1);
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if (_reap_children_tid == (pthread_t)-1) {
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_launched_processes_limit = zcp->max_jobs;
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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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@ -321,11 +334,13 @@ zed_exec_process(uint64_t eid, const char *class, const char *subclass,
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e = _zed_exec_create_env(envs);
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for (z = zed_strings_first(zedlets); z; z = zed_strings_next(zedlets)) {
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for (z = zed_strings_first(zcp->zedlets); z;
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z = zed_strings_next(zcp->zedlets)) {
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for (csp = class_strings; *csp; csp++) {
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n = strlen(*csp);
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if ((strncmp(z, *csp, n) == 0) && !isalpha(z[n]))
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_zed_exec_fork_child(eid, dir, z, e, zfd);
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_zed_exec_fork_child(eid, zcp->zedlet_dir,
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z, e, zcp->zevent_fd);
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}
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}
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free(e);
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@ -17,11 +17,11 @@
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#include <stdint.h>
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#include "zed_strings.h"
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#include "zed_conf.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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struct zed_conf *zcp, zed_strings_t *envs);
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#endif /* !ZED_EXEC_H */
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@ -29,6 +29,7 @@ ZED \- ZFS Event Daemon
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[\fB\-p\fR \fIpidfile\fR]
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[\fB\-P\fR \fIpath\fR]
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[\fB\-s\fR \fIstatefile\fR]
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[\fB\-j\fR \fIjobs\fR]
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[\fB\-v\fR]
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[\fB\-V\fR]
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[\fB\-Z\fR]
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@ -95,6 +96,11 @@ it in production!
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.TP
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.BI \-s\ statefile
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Write the daemon's state to the specified file.
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.TP
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.BI \-j\ jobs
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Allow at most \fIjobs\fR ZEDLETs to run concurrently,
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delaying execution of new ones until they finish.
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Defaults to 16.
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.SH ZEVENTS
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.PP
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A zevent is comprised of a list of nvpairs (name/value pairs). Each zevent
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@ -3705,8 +3705,8 @@ function zed_start
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# run ZED in the background and redirect foreground logging
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# output to $ZED_LOG.
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log_must truncate -s 0 $ZED_DEBUG_LOG
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log_must eval "zed -vF -d $ZEDLET_DIR -p $ZEDLET_DIR/zed.pid -P $PATH" \
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"-s $ZEDLET_DIR/state 2>$ZED_LOG &"
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log_must eval "zed -vF -d $ZEDLET_DIR -P $PATH" \
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"-s $ZEDLET_DIR/state -j 1 2>$ZED_LOG &"
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fi
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return 0
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@ -3722,14 +3722,13 @@ function zed_stop
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fi
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log_note "Stopping ZED"
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if [[ -f ${ZEDLET_DIR}/zed.pid ]]; then
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zedpid=$(<${ZEDLET_DIR}/zed.pid)
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kill $zedpid
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while ps -p $zedpid > /dev/null; do
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sleep 1
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done
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rm -f ${ZEDLET_DIR}/zed.pid
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fi
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while true; do
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zedpids="$(pgrep -x zed)"
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[ "$?" -ne 0 ] && break
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log_must kill $zedpids
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sleep 1
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done
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return 0
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}
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@ -49,6 +49,7 @@ log_assert "Verify zpool sub-commands generate expected events"
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log_onexit cleanup
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log_must zpool events -c
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log_must zed_stop
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log_must zed_start
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# Backup our zed.rc
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