nginx/src/event/ngx_event_accept.c

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#include <ngx_config.h>
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#include <ngx_core.h>
#include <ngx_event.h>
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#include <nginx.h>
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void ngx_event_accept(ngx_event_t *ev)
{
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int instance;
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socklen_t len;
struct sockaddr *sa;
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ngx_err_t err;
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ngx_pool_t *pool;
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ngx_socket_t s;
ngx_event_t *rev, *wev;
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ngx_connection_t *c, *ls;
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ngx_event_conf_t *ecf;
ecf = ngx_event_get_conf(ngx_event_module);
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ls = ev->data;
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ngx_log_debug(ev->log, "ngx_event_accept: accept ready: %d" _
ev->available);
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ev->ready = 0;
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do {
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/*
* Create the pool before accept() to avoid copy the sockaddr.
* Although accept() can fail it's uncommon case
* and the pool can be got from the free pool list
*/
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pool = ngx_create_pool(ls->pool_size, ev->log);
if (pool == NULL) {
return;
}
sa = ngx_palloc(pool, ls->socklen);
if (sa == NULL) {
return;
}
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len = ls->socklen;
s = accept(ls->fd, sa, &len);
if (s == -1) {
err = ngx_socket_errno;
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if (err == NGX_EAGAIN) {
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ngx_log_error(NGX_LOG_NOTICE, ev->log, err,
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"EAGAIN while accept() %s", ls->addr_text.data);
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return;
}
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ngx_log_error(NGX_LOG_ALERT, ev->log, err,
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"accept() %s failed", ls->addr_text.data);
ngx_destroy_pool(pool);
return;
}
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/* disable warnings: Win32 SOCKET is u_int while UNIX socket is int */
if ((unsigned) s >= (unsigned) ecf->connections) {
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ngx_log_error(NGX_LOG_ALERT, ev->log, 0,
"accept() %s returned socket #%d while "
"only %d connections was configured, "
"sleeping for 1 second",
ls->addr_text.data, s, ecf->connections);
if (ngx_close_socket(s) == -1) {
ngx_log_error(NGX_LOG_ALERT, ev->log, ngx_socket_errno,
ngx_close_socket_n " %s failed",
ls->addr_text.data);
}
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ngx_msleep(1000);
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ngx_destroy_pool(pool);
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return;
}
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/* set a blocking mode for aio and non-blocking mode for others */
if (ngx_inherited_nonblocking) {
if ((ngx_event_flags & NGX_USE_AIO_EVENT)) {
if (ngx_blocking(s) == -1) {
ngx_log_error(NGX_LOG_ALERT, ev->log, ngx_socket_errno,
ngx_blocking_n " %s failed",
ls->addr_text.data);
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if (ngx_close_socket(s) == -1) {
ngx_log_error(NGX_LOG_ALERT, ev->log, ngx_socket_errno,
ngx_close_socket_n " %s failed",
ls->addr_text.data);
}
ngx_destroy_pool(pool);
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return;
}
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}
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} else {
if ((ngx_event_flags & NGX_USE_AIO_EVENT) == 0) {
if (ngx_nonblocking(s) == -1) {
ngx_log_error(NGX_LOG_ALERT, ev->log, ngx_socket_errno,
ngx_nonblocking_n " %s failed",
ls->addr_text.data);
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if (ngx_close_socket(s) == -1) {
ngx_log_error(NGX_LOG_ALERT, ev->log, ngx_socket_errno,
ngx_close_socket_n " %s failed",
ls->addr_text.data);
}
ngx_destroy_pool(pool);
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return;
}
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}
}
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rev = &ngx_read_events[s];
wev = &ngx_write_events[s];
c = &ngx_connections[s];
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instance = rev->instance;
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ngx_memzero(rev, sizeof(ngx_event_t));
ngx_memzero(wev, sizeof(ngx_event_t));
ngx_memzero(c, sizeof(ngx_connection_t));
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c->pool = pool;
c->sockaddr = sa;
c->family = ls->family;
c->socklen = len;
c->addr = ls->addr;
c->addr_text_max_len = ls->addr_text_max_len;
c->post_accept_timeout = ls->post_accept_timeout;
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rev->instance = wev->instance = !instance;
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rev->index = wev->index = NGX_INVALID_INDEX;
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rev->data = wev->data = c;
c->read = rev;
c->write = wev;
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c->fd = s;
c->unexpected_eof = 1;
wev->write = 1;
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if ((ngx_event_flags & NGX_USE_AIO_EVENT) == 0) {
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wev->ready = 1;
}
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c->ctx = ls->ctx;
c->servers = ls->servers;
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c->log = ngx_palloc(c->pool, sizeof(ngx_log_t));
if (c->log == NULL) {
return;
}
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ngx_memcpy(c->log, ev->log, sizeof(ngx_log_t));
rev->log = wev->log = c->log;
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/* TODO: x86: MT: lock xadd, MP: lock xadd, shared */
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c->number = ngx_connection_counter++;
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ngx_log_debug(ev->log, "accept: %d, %d" _ s _ c->number);
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if (ev->deferred_accept) {
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rev->ready = 1;
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}
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if (ngx_add_conn) {
if (ngx_add_conn(c) == NGX_ERROR) {
if (ngx_close_socket(s) == -1) {
ngx_log_error(NGX_LOG_ALERT, ev->log, ngx_socket_errno,
ngx_close_socket_n " %s failed",
ls->addr_text.data);
}
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ngx_destroy_pool(pool);
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return;
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}
}
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ls->handler(c);
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if (ngx_event_flags & NGX_HAVE_KQUEUE_EVENT) {
ev->available--;
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}
} while (ev->available);
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return;
}