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

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#include <ngx_config.h>
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#include <ngx_core.h>
#include <ngx_types.h>
#include <ngx_log.h>
#include <ngx_time.h>
#include <ngx_connection.h>
#include <ngx_event.h>
#include <ngx_select_module.h>
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static fd_set master_read_fd_set;
static fd_set master_write_fd_set;
static fd_set work_read_fd_set;
static fd_set work_write_fd_set;
#if (WIN32)
static int max_read;
static int max_write;
#else
static int max_fd;
#endif
static ngx_event_t event_queue;
static ngx_event_t timer_queue;
static fd_set *ngx_select_get_fd_set(ngx_socket_t fd, int event,
ngx_log_t *log);
void ngx_select_init(int max_connections, ngx_log_t *log)
{
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if (max_connections > FD_SETSIZE) {
ngx_log_error(NGX_LOG_EMERG, log, 0,
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#if (WIN32)
"maximum number of descriptors "
"supported by select() is %d", FD_SETSIZE);
#else
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"maximum descriptor number"
"supported by select() is %d", FD_SETSIZE - 1);
#endif
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exit(1);
}
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FD_ZERO(&master_read_fd_set);
FD_ZERO(&master_write_fd_set);
event_queue.prev = &event_queue;
event_queue.next = &event_queue;
timer_queue.timer_prev = &timer_queue;
timer_queue.timer_next = &timer_queue;
ngx_event_actions.add = ngx_select_add_event;
ngx_event_actions.del = ngx_select_del_event;
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ngx_event_actions.timer = ngx_select_add_timer;
ngx_event_actions.process = ngx_select_process_events;
#if (WIN32)
max_read = max_write = 0;
#else
max_fd = -1;
#endif
}
int ngx_select_add_event(ngx_event_t *ev, int event, u_int flags)
{
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ngx_connection_t *c;
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c = (ngx_connection_t *) ev->data;
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ngx_log_debug(ev->log, "select fd:%d event:%d" _ c->fd _ event);
#if (WIN32)
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if ((event == NGX_READ_EVENT) && (max_read >= FD_SETSIZE)
|| (event == NGX_WRITE_EVENT) && (max_write >= FD_SETSIZE))
{
ngx_log_error(NGX_LOG_ERR, ev->log, 0,
"maximum number of descriptors "
"supported by select() is %d", FD_SETSIZE);
return NGX_ERROR;
}
if (event == NGX_READ_EVENT) {
FD_SET(c->fd, &master_read_fd_set);
max_read++;
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} else if (event == NGX_WRITE_EVENT) {
FD_SET(c->fd, &master_write_fd_set);
max_write++;
}
#else
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if (event == NGX_READ_EVENT)
FD_SET(c->fd, &master_read_fd_set);
else if (event == NGX_WRITE_EVENT)
FD_SET(c->fd, &master_write_fd_set);
if (max_fd != -1 && max_fd < c->fd)
max_fd = c->fd;
#endif
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ev->oneshot = (flags & NGX_ONESHOT_EVENT) ? 1: 0;
ev->prev = &event_queue;
ev->next = event_queue.next;
event_queue.next->prev = ev;
event_queue.next = ev;
return NGX_OK;
}
int ngx_select_del_event(ngx_event_t *ev, int event)
{
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ngx_connection_t *c;
c = (ngx_connection_t *) ev->data;
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#if (WIN32)
if (event == NGX_READ_EVENT) {
FD_CLR(c->fd, &master_read_fd_set);
max_read--;
} else if (event == NGX_WRITE_EVENT) {
FD_CLR(c->fd, &master_write_fd_set);
max_write--;
}
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#else
if (event == NGX_READ_EVENT)
FD_CLR(c->fd, &master_read_fd_set);
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else if (event == NGX_WRITE_EVENT)
FD_CLR(c->fd, &master_write_fd_set);
if (max_fd == c->fd)
max_fd = -1;
#endif
if (ev->prev)
ev->prev->next = ev->next;
if (ev->next) {
ev->next->prev = ev->prev;
ev->prev = NULL;
}
if (ev->prev)
ev->next = NULL;
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return NGX_OK;
}
int ngx_select_process_events(ngx_log_t *log)
{
int ready, found;
u_int timer, delta;
ngx_event_t *ev, *nx;
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ngx_connection_t *c;
struct timeval tv, *tp;
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work_read_fd_set = master_read_fd_set;
work_write_fd_set = master_write_fd_set;
if (timer_queue.timer_next != &timer_queue) {
timer = timer_queue.timer_next->timer_delta;
tv.tv_sec = timer / 1000;
tv.tv_usec = (timer % 1000) * 1000;
tp = &tv;
delta = ngx_msec();
} else {
timer = 0;
tp = NULL;
delta = 0;
}
#if !(WIN32)
if (max_fd == -1) {
for (ev = event_queue.next; ev != &event_queue; ev = ev->next) {
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c = (ngx_connection_t *) ev->data;
if (max_fd < c->fd)
max_fd = c->fd;
}
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ngx_log_debug(log, "change max_fd: %d" _ max_fd);
}
#endif
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ngx_log_debug(log, "select timer: %d" _ timer);
#if (WIN32)
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if ((ready = select(0, &work_read_fd_set, &work_write_fd_set, NULL, tp))
#else
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if ((ready = select(max_fd + 1, &work_read_fd_set, &work_write_fd_set,
NULL, tp))
#endif
== -1) {
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ngx_log_error(NGX_LOG_ALERT, log, ngx_socket_errno, "select() failed");
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return NGX_ERROR;
}
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ngx_log_debug(log, "select ready %d" _ ready);
if (timer) {
delta = ngx_msec() - delta;
} else {
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ngx_assert((ready != 0), return NGX_ERROR, log,
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"select() returns no events without timeout");
}
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ngx_log_debug(log, "select timer: %d, delta: %d" _ timer _ delta);
if (timer) {
if (delta >= timer) {
for (ev = timer_queue.timer_next;
ev != &timer_queue && delta >= ev->timer_delta;
/* void */)
{
delta -= ev->timer_delta;
nx = ev->timer_next;
ngx_del_timer(ev);
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ev->timedout = 1;
if (ev->event_handler(ev) == -1)
ev->close_handler(ev);
ev = nx;
}
} else {
timer_queue.timer_next->timer_delta -= delta;
}
}
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for (ev = event_queue.next; ev != &event_queue; /* void */) {
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c = (ngx_connection_t *) ev->data;
found = 0;
if (ev->write) {
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if (FD_ISSET(c->fd, &work_write_fd_set)) {
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ngx_log_debug(log, "select write %d" _
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c->fd);
found = 1;
}
} else {
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if (FD_ISSET(c->fd, &work_read_fd_set)) {
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ngx_log_debug(log, "select read %d" _
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c->fd);
found = 1;
}
}
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nx = ev->next;
if (found) {
ev->ready = 1;
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if (ev->oneshot) {
ngx_del_timer(ev);
if (ev->write)
ngx_select_del_event(ev, NGX_WRITE_EVENT);
else
ngx_select_del_event(ev, NGX_READ_EVENT);
}
if (ev->event_handler(ev) == -1)
ev->close_handler(ev);
ready--;
}
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ev = nx;
}
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ngx_assert((ready == 0), /* void */ ; , log, "select ready != events");
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return NGX_OK;
}
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void ngx_select_add_timer(ngx_event_t *ev, ngx_msec_t timer)
{
ngx_event_t *e;
for (e = timer_queue.timer_next;
e != &timer_queue && timer > e->timer_delta;
e = e->timer_next)
timer -= e->timer_delta;
ev->timer_delta = timer;
ev->timer_next = e;
ev->timer_prev = e->timer_prev;
e->timer_prev->timer_next = ev;
e->timer_prev = ev;
}