nginx-quic/src/event/modules/ngx_kqueue_module.c

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/*
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* Copyright (C) 2002-2004 Igor Sysoev, http://sysoev.ru/en/
*/
#include <ngx_config.h>
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#include <ngx_core.h>
#include <ngx_event.h>
#include <ngx_kqueue_module.h>
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typedef struct {
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int changes;
int events;
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} ngx_kqueue_conf_t;
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static ngx_int_t ngx_kqueue_init(ngx_cycle_t *cycle);
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static void ngx_kqueue_done(ngx_cycle_t *cycle);
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static ngx_int_t ngx_kqueue_add_event(ngx_event_t *ev, int event, u_int flags);
static ngx_int_t ngx_kqueue_del_event(ngx_event_t *ev, int event, u_int flags);
static ngx_int_t ngx_kqueue_set_event(ngx_event_t *ev, int filter, u_int flags);
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static ngx_int_t ngx_kqueue_process_changes(ngx_cycle_t *cycle, ngx_uint_t try);
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static ngx_int_t ngx_kqueue_process_events(ngx_cycle_t *cycle);
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static ngx_inline void ngx_kqueue_dump_event(ngx_log_t *log,
struct kevent *kev);
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static void *ngx_kqueue_create_conf(ngx_cycle_t *cycle);
static char *ngx_kqueue_init_conf(ngx_cycle_t *cycle, void *conf);
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int ngx_kqueue = -1;
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/*
* The "change_list" should be declared as ngx_thread_volatile.
* However, the use of the change_list is localized in kqueue functions and
* is protected by the mutex so even the "icc -ipo" should not build the code
* with the race condition. Thus we avoid the declaration to make a more
* readable code.
*/
static struct kevent *change_list, *change_list0, *change_list1;
static struct kevent *event_list;
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static int max_changes, nchanges, nevents;
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#if (NGX_THREADS)
static ngx_mutex_t *ngx_kqueue_mutex;
#endif
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static ngx_str_t kqueue_name = ngx_string("kqueue");
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static ngx_command_t ngx_kqueue_commands[] = {
{ngx_string("kqueue_changes"),
NGX_EVENT_CONF|NGX_CONF_TAKE1,
ngx_conf_set_num_slot,
0,
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offsetof(ngx_kqueue_conf_t, changes),
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NULL},
{ngx_string("kqueue_events"),
NGX_EVENT_CONF|NGX_CONF_TAKE1,
ngx_conf_set_num_slot,
0,
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offsetof(ngx_kqueue_conf_t, events),
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NULL},
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ngx_null_command
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};
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ngx_event_module_t ngx_kqueue_module_ctx = {
&kqueue_name,
ngx_kqueue_create_conf, /* create configuration */
ngx_kqueue_init_conf, /* init configuration */
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{
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ngx_kqueue_add_event, /* add an event */
ngx_kqueue_del_event, /* delete an event */
ngx_kqueue_add_event, /* enable an event */
ngx_kqueue_del_event, /* disable an event */
NULL, /* add an connection */
NULL, /* delete an connection */
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ngx_kqueue_process_changes, /* process the changes */
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ngx_kqueue_process_events, /* process the events */
ngx_kqueue_init, /* init the events */
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ngx_kqueue_done /* done the events */
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}
};
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ngx_module_t ngx_kqueue_module = {
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NGX_MODULE,
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&ngx_kqueue_module_ctx, /* module context */
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ngx_kqueue_commands, /* module directives */
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NGX_EVENT_MODULE, /* module type */
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NULL, /* init module */
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NULL /* init process */
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};
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static ngx_int_t ngx_kqueue_init(ngx_cycle_t *cycle)
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{
struct timespec ts;
ngx_kqueue_conf_t *kcf;
kcf = ngx_event_get_conf(cycle->conf_ctx, ngx_kqueue_module);
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if (ngx_kqueue == -1) {
ngx_kqueue = kqueue();
if (ngx_kqueue == -1) {
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ngx_log_error(NGX_LOG_EMERG, cycle->log, ngx_errno,
"kqueue() failed");
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return NGX_ERROR;
}
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#if (NGX_THREADS)
if (!(ngx_kqueue_mutex = ngx_mutex_init(cycle->log, 0))) {
return NGX_ERROR;
}
#endif
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}
if (max_changes < kcf->changes) {
if (nchanges) {
ts.tv_sec = 0;
ts.tv_nsec = 0;
if (kevent(ngx_kqueue, change_list, nchanges, NULL, 0, &ts) == -1) {
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ngx_log_error(NGX_LOG_ALERT, cycle->log, ngx_errno,
"kevent() failed");
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return NGX_ERROR;
}
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nchanges = 0;
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}
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if (change_list0) {
ngx_free(change_list0);
}
change_list0 = ngx_alloc(kcf->changes * sizeof(struct kevent),
cycle->log);
if (change_list0 == NULL) {
return NGX_ERROR;
}
if (change_list1) {
ngx_free(change_list1);
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}
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change_list1 = ngx_alloc(kcf->changes * sizeof(struct kevent),
cycle->log);
if (change_list1 == NULL) {
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return NGX_ERROR;
}
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change_list = change_list0;
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}
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max_changes = kcf->changes;
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if (nevents < kcf->events) {
if (event_list) {
ngx_free(event_list);
}
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event_list = ngx_alloc(kcf->events * sizeof(struct kevent), cycle->log);
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if (event_list == NULL) {
return NGX_ERROR;
}
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}
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nevents = kcf->events;
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ngx_io = ngx_os_io;
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ngx_event_actions = ngx_kqueue_module_ctx.actions;
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ngx_event_flags = NGX_USE_ONESHOT_EVENT
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#if (HAVE_CLEAR_EVENT)
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|NGX_USE_CLEAR_EVENT
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#else
|NGX_USE_LEVEL_EVENT
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#endif
#if (HAVE_LOWAT_EVENT)
|NGX_HAVE_LOWAT_EVENT
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#endif
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|NGX_HAVE_KQUEUE_EVENT;
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return NGX_OK;
}
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static void ngx_kqueue_done(ngx_cycle_t *cycle)
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{
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if (close(ngx_kqueue) == -1) {
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ngx_log_error(NGX_LOG_ALERT, cycle->log, ngx_errno,
"kqueue close() failed");
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}
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ngx_kqueue = -1;
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ngx_mutex_destroy(ngx_kqueue_mutex);
ngx_free(change_list1);
ngx_free(change_list0);
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ngx_free(event_list);
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change_list1 = NULL;
change_list0 = NULL;
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change_list = NULL;
event_list = NULL;
max_changes = 0;
nchanges = 0;
nevents = 0;
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}
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static ngx_int_t ngx_kqueue_add_event(ngx_event_t *ev, int event, u_int flags)
{
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ngx_int_t rc;
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ngx_event_t *e;
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ngx_connection_t *c;
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ev->active = 1;
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ev->disabled = 0;
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ev->oneshot = (flags & NGX_ONESHOT_EVENT) ? 1 : 0;
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if (ngx_mutex_lock(ngx_kqueue_mutex) == NGX_ERROR) {
return NGX_ERROR;
}
if (nchanges > 0
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&& ev->index < (u_int) nchanges
&& ((uintptr_t) change_list[ev->index].udata & (uintptr_t) ~1)
== (uintptr_t) ev)
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{
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if (change_list[ev->index].flags == EV_DISABLE) {
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/*
* if the EV_DISABLE is still not passed to a kernel
* we will not pass it
*/
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ngx_log_debug2(NGX_LOG_DEBUG_EVENT, ev->log, 0,
"kevent activated: %d: ft:%d",
ngx_event_ident(ev->data), event);
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if (ev->index < (u_int) --nchanges) {
e = (ngx_event_t *) change_list[nchanges].udata;
change_list[ev->index] = change_list[nchanges];
e->index = ev->index;
}
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ngx_mutex_unlock(ngx_kqueue_mutex);
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return NGX_OK;
}
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c = ev->data;
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ngx_log_error(NGX_LOG_ALERT, ev->log, 0,
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"previous event on #%d were not passed in kernel", c->fd);
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ngx_mutex_unlock(ngx_kqueue_mutex);
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return NGX_ERROR;
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}
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rc = ngx_kqueue_set_event(ev, event, EV_ADD|EV_ENABLE|flags);
ngx_mutex_unlock(ngx_kqueue_mutex);
return rc;
}
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static ngx_int_t ngx_kqueue_del_event(ngx_event_t *ev, int event, u_int flags)
{
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ngx_int_t rc;
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ngx_event_t *e;
ev->active = 0;
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ev->disabled = 0;
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if (ngx_mutex_lock(ngx_kqueue_mutex) == NGX_ERROR) {
return NGX_ERROR;
}
if (nchanges > 0
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&& ev->index < (u_int) nchanges
&& ((uintptr_t) change_list[ev->index].udata & (uintptr_t) ~1)
== (uintptr_t) ev)
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{
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ngx_log_debug2(NGX_LOG_DEBUG_EVENT, ev->log, 0,
"kevent deleted: %d: ft:%d",
ngx_event_ident(ev->data), event);
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/* if the event is still not passed to a kernel we will not pass it */
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if (ev->index < (u_int) --nchanges) {
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e = (ngx_event_t *) change_list[nchanges].udata;
change_list[ev->index] = change_list[nchanges];
e->index = ev->index;
}
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ngx_mutex_unlock(ngx_kqueue_mutex);
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return NGX_OK;
}
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/*
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* when the file descriptor is closed the kqueue automatically deletes
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* its filters so we do not need to delete explicity the event
* before the closing the file descriptor.
*/
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if (flags & NGX_CLOSE_EVENT) {
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ngx_mutex_unlock(ngx_kqueue_mutex);
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return NGX_OK;
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}
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if (flags & NGX_DISABLE_EVENT) {
ev->disabled = 1;
}
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rc = ngx_kqueue_set_event(ev, event,
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flags & NGX_DISABLE_EVENT ? EV_DISABLE : EV_DELETE);
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ngx_mutex_unlock(ngx_kqueue_mutex);
return rc;
}
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static ngx_int_t ngx_kqueue_set_event(ngx_event_t *ev, int filter, u_int flags)
{
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struct kevent *kev;
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struct timespec ts;
ngx_connection_t *c;
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c = ev->data;
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ngx_log_debug3(NGX_LOG_DEBUG_EVENT, c->log, 0,
"kevent set event: %d: ft:%d fl:%04X",
c->fd, filter, flags);
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if (nchanges >= max_changes) {
ngx_log_error(NGX_LOG_WARN, ev->log, 0,
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"kqueue change list is filled up");
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ts.tv_sec = 0;
ts.tv_nsec = 0;
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if (kevent(ngx_kqueue, change_list, nchanges, NULL, 0, &ts) == -1) {
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ngx_log_error(NGX_LOG_ALERT, ev->log, ngx_errno, "kevent() failed");
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return NGX_ERROR;
}
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nchanges = 0;
}
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kev = &change_list[nchanges];
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kev->ident = c->fd;
kev->filter = filter;
kev->flags = flags;
kev->udata = (void *) ((uintptr_t) ev | ev->instance);
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if (filter == EVFILT_VNODE) {
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kev->fflags = NOTE_DELETE|NOTE_WRITE|NOTE_EXTEND
|NOTE_ATTRIB|NOTE_RENAME
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#if (__FreeBSD__ == 4 && __FreeBSD_version >= 430000) \
|| __FreeBSD_version >= 500018
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|NOTE_REVOKE
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#endif
;
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kev->data = 0;
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} else {
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#if (HAVE_LOWAT_EVENT)
if (flags & NGX_LOWAT_EVENT) {
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kev->fflags = NOTE_LOWAT;
kev->data = ev->available;
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} else {
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kev->fflags = 0;
kev->data = 0;
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}
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#else
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kev->fflags = 0;
kev->data = 0;
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#endif
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}
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ev->index = nchanges;
nchanges++;
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return NGX_OK;
}
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static ngx_int_t ngx_kqueue_process_events(ngx_cycle_t *cycle)
{
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int events, n;
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ngx_int_t i, instance;
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ngx_uint_t lock, accept_lock, expire;
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ngx_err_t err;
ngx_msec_t timer;
ngx_event_t *ev;
ngx_epoch_msec_t delta;
struct timeval tv;
struct timespec ts, *tp;
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for ( ;; ) {
timer = ngx_event_find_timer();
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#if (NGX_THREADS)
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if (timer == NGX_TIMER_ERROR) {
return NGX_ERROR;
}
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if (timer == NGX_TIMER_INFINITE || timer > 500) {
timer = 500;
break;
}
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#endif
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if (timer != 0) {
break;
}
ngx_log_debug0(NGX_LOG_DEBUG_EVENT, cycle->log, 0,
"kevent expired timer");
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ngx_event_expire_timers((ngx_msec_t)
(ngx_elapsed_msec - ngx_old_elapsed_msec));
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/* TODO: if ngx_threaded then wake up the worker thread */
}
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ngx_old_elapsed_msec = ngx_elapsed_msec;
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expire = 1;
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accept_lock = 0;
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if (ngx_accept_mutex) {
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if (ngx_accept_disabled > 0) {
ngx_accept_disabled--;
} else {
if (ngx_trylock_accept_mutex(cycle) == NGX_ERROR) {
return NGX_ERROR;
}
if (ngx_accept_mutex_held) {
accept_lock = 1;
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} else if (timer == NGX_TIMER_INFINITE
|| timer > ngx_accept_mutex_delay)
{
timer = ngx_accept_mutex_delay;
expire = 0;
}
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}
}
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if (ngx_threaded) {
if (ngx_kqueue_process_changes(cycle, 0) == NGX_ERROR) {
ngx_accept_mutex_unlock();
return NGX_ERROR;
}
n = 0;
} else {
n = nchanges;
nchanges = 0;
}
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if (timer == NGX_TIMER_INFINITE) {
tp = NULL;
expire = 0;
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} else {
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ts.tv_sec = timer / 1000;
ts.tv_nsec = (timer % 1000) * 1000000;
tp = &ts;
}
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ngx_log_debug2(NGX_LOG_DEBUG_EVENT, cycle->log, 0,
"kevent timer: %d, changes: %d", timer, n);
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events = kevent(ngx_kqueue, change_list, n, event_list, nevents, tp);
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if (events == -1) {
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err = ngx_errno;
} else {
err = 0;
}
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ngx_gettimeofday(&tv);
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ngx_time_update(tv.tv_sec);
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ngx_log_debug1(NGX_LOG_DEBUG_EVENT, cycle->log, 0,
"kevent events: %d", events);
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delta = ngx_elapsed_msec;
ngx_elapsed_msec = tv.tv_sec * 1000 + tv.tv_usec / 1000 - ngx_start_msec;
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if (err) {
ngx_log_error((err == NGX_EINTR) ? NGX_LOG_INFO : NGX_LOG_ALERT,
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cycle->log, err, "kevent() failed");
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ngx_accept_mutex_unlock();
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return NGX_ERROR;
}
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if (timer != NGX_TIMER_INFINITE) {
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delta = ngx_elapsed_msec - delta;
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ngx_log_debug2(NGX_LOG_DEBUG_EVENT, cycle->log, 0,
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"kevent timer: %d, delta: %d", timer, (int) delta);
} else {
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if (events == 0) {
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ngx_log_error(NGX_LOG_ALERT, cycle->log, 0,
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"kevent() returned no events without timeout");
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ngx_accept_mutex_unlock();
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return NGX_ERROR;
}
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}
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if (events > 0) {
if (ngx_mutex_lock(ngx_posted_events_mutex) == NGX_ERROR) {
ngx_accept_mutex_unlock();
return NGX_ERROR;
}
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lock = 1;
} else {
lock =0;
}
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for (i = 0; i < events; i++) {
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ngx_kqueue_dump_event(cycle->log, &event_list[i]);
if (event_list[i].flags & EV_ERROR) {
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ngx_log_error(NGX_LOG_ALERT, cycle->log, event_list[i].data,
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"kevent() error on %d", event_list[i].ident);
continue;
}
ev = (ngx_event_t *) event_list[i].udata;
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switch (event_list[i].filter) {
case EVFILT_READ:
case EVFILT_WRITE:
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instance = (uintptr_t) ev & 1;
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ev = (ngx_event_t *) ((uintptr_t) ev & (uintptr_t) ~1);
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if (ev->closed || ev->instance != instance) {
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/*
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* the stale event from a file descriptor
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* that was just closed in this iteration
*/
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ngx_log_debug1(NGX_LOG_DEBUG_EVENT, cycle->log, 0,
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"kevent: stale event " PTR_FMT, ev);
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continue;
}
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if (ev->log && (ev->log->log_level & NGX_LOG_DEBUG_CONNECTION)) {
ngx_kqueue_dump_event(ev->log, &event_list[i]);
}
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#if (NGX_THREADS)
if (ngx_threaded && !ev->accept) {
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ev->posted_ready = 1;
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ev->posted_available = event_list[i].data;
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if (event_list[i].flags & EV_EOF) {
ev->posted_eof = 1;
ev->posted_errno = event_list[i].fflags;
}
ngx_post_event(ev);
continue;
}
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#endif
ev->available = event_list[i].data;
if (event_list[i].flags & EV_EOF) {
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ev->pending_eof = 1;
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ev->kq_errno = event_list[i].fflags;
}
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ev->ready = 1;
break;
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case EVFILT_VNODE:
ev->kq_vnode = 1;
break;
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case EVFILT_AIO:
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ev->complete = 1;
ev->ready = 1;
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break;
default:
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ngx_log_error(NGX_LOG_ALERT, cycle->log, 0,
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"unexpected kevent() filter %d",
event_list[i].filter);
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continue;
}
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if (!ngx_threaded && !ngx_accept_mutex_held) {
ev->event_handler(ev);
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continue;
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}
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if (!ev->accept) {
ngx_post_event(ev);
continue;
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}
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if (ngx_accept_disabled > 0) {
continue;
}
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ngx_mutex_unlock(ngx_posted_events_mutex);
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ev->event_handler(ev);
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if (ngx_accept_disabled > 0) {
ngx_accept_mutex_unlock();
accept_lock = 0;
}
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if (i + 1 == events) {
lock = 0;
break;
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}
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if (ngx_mutex_lock(ngx_posted_events_mutex) == NGX_ERROR) {
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if (accept_lock) {
ngx_accept_mutex_unlock();
}
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return NGX_ERROR;
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}
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}
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if (accept_lock) {
ngx_accept_mutex_unlock();
}
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if (lock) {
ngx_mutex_unlock(ngx_posted_events_mutex);
}
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if (expire && delta) {
ngx_event_expire_timers((ngx_msec_t) delta);
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}
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if (ngx_posted_events) {
if (ngx_threaded) {
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ngx_wakeup_worker_thread(cycle);
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} else {
ngx_event_process_posted(cycle);
}
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}
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return NGX_OK;
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}
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static ngx_int_t ngx_kqueue_process_changes(ngx_cycle_t *cycle, ngx_uint_t try)
{
int n;
ngx_int_t rc;
ngx_err_t err;
struct timespec ts;
struct kevent *changes;
if (try) {
rc = ngx_mutex_trylock(ngx_kqueue_mutex);
if (rc != NGX_OK) {
return rc;
}
} else {
if (ngx_mutex_lock(ngx_kqueue_mutex) == NGX_ERROR) {
return NGX_ERROR;
}
}
if (nchanges == 0) {
ngx_mutex_unlock(ngx_kqueue_mutex);
return NGX_OK;
}
changes = (struct kevent *) change_list;
if (change_list == change_list0) {
change_list = change_list1;
} else {
change_list = change_list0;
}
n = nchanges;
nchanges = 0;
ts.tv_sec = 0;
ts.tv_nsec = 0;
ngx_log_debug1(NGX_LOG_DEBUG_EVENT, cycle->log, 0,
"kevent changes: %d", n);
if (kevent(ngx_kqueue, changes, n, NULL, 0, &ts) == -1) {
err = ngx_errno;
ngx_log_error((err == NGX_EINTR) ? NGX_LOG_INFO : NGX_LOG_ALERT,
cycle->log, err, "kevent() failed");
rc = NGX_ERROR;
} else {
rc = NGX_OK;
}
ngx_mutex_unlock(ngx_kqueue_mutex);
return rc;
}
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static ngx_inline void ngx_kqueue_dump_event(ngx_log_t *log, struct kevent *kev)
{
ngx_log_debug6(NGX_LOG_DEBUG_EVENT, log, 0,
(kev->ident > 0x8000000 && kev->ident != (unsigned) -1) ?
"kevent: " PTR_FMT ": ft:%d fl:%04X ff:%08X d:%d ud:"
PTR_FMT:
"kevent: %d: ft:%d fl:%04X ff:%08X d:%d ud:" PTR_FMT,
kev->ident, kev->filter,
kev->flags, kev->fflags,
kev->data, kev->udata);
}
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static void *ngx_kqueue_create_conf(ngx_cycle_t *cycle)
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{
ngx_kqueue_conf_t *kcf;
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ngx_test_null(kcf, ngx_palloc(cycle->pool, sizeof(ngx_kqueue_conf_t)),
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NGX_CONF_ERROR);
kcf->changes = NGX_CONF_UNSET;
kcf->events = NGX_CONF_UNSET;
return kcf;
}
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static char *ngx_kqueue_init_conf(ngx_cycle_t *cycle, void *conf)
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{
ngx_kqueue_conf_t *kcf = conf;
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ngx_conf_init_value(kcf->changes, 512);
ngx_conf_init_value(kcf->events, 512);
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return NGX_CONF_OK;
}