mirror of
https://github.com/nginx/nginx.git
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377 lines
9.6 KiB
C
377 lines
9.6 KiB
C
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/*
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* Copyright (C) Roman Arutyunyan
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* Copyright (C) Nginx, Inc.
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*/
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#include <ngx_config.h>
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#include <ngx_core.h>
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#include <ngx_event.h>
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#if !(NGX_WIN32)
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static void ngx_close_accepted_udp_connection(ngx_connection_t *c);
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void
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ngx_event_recvmsg(ngx_event_t *ev)
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{
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ssize_t n;
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ngx_log_t *log;
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ngx_err_t err;
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socklen_t socklen, local_socklen;
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ngx_event_t *rev, *wev;
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struct iovec iov[1];
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struct msghdr msg;
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ngx_sockaddr_t sa, lsa;
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struct sockaddr *sockaddr, *local_sockaddr;
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ngx_listening_t *ls;
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ngx_event_conf_t *ecf;
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ngx_connection_t *c, *lc;
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static u_char buffer[65535];
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#if (NGX_HAVE_MSGHDR_MSG_CONTROL)
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#if (NGX_HAVE_IP_RECVDSTADDR)
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u_char msg_control[CMSG_SPACE(sizeof(struct in_addr))];
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#elif (NGX_HAVE_IP_PKTINFO)
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u_char msg_control[CMSG_SPACE(sizeof(struct in_pktinfo))];
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#endif
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#if (NGX_HAVE_INET6 && NGX_HAVE_IPV6_RECVPKTINFO)
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u_char msg_control6[CMSG_SPACE(sizeof(struct in6_pktinfo))];
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#endif
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#endif
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if (ev->timedout) {
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if (ngx_enable_accept_events((ngx_cycle_t *) ngx_cycle) != NGX_OK) {
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return;
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}
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ev->timedout = 0;
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}
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ecf = ngx_event_get_conf(ngx_cycle->conf_ctx, ngx_event_core_module);
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if (!(ngx_event_flags & NGX_USE_KQUEUE_EVENT)) {
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ev->available = ecf->multi_accept;
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}
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lc = ev->data;
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ls = lc->listening;
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ev->ready = 0;
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ngx_log_debug2(NGX_LOG_DEBUG_EVENT, ev->log, 0,
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"recvmsg on %V, ready: %d", &ls->addr_text, ev->available);
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do {
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ngx_memzero(&msg, sizeof(struct msghdr));
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iov[0].iov_base = (void *) buffer;
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iov[0].iov_len = sizeof(buffer);
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msg.msg_name = &sa;
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msg.msg_namelen = sizeof(ngx_sockaddr_t);
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msg.msg_iov = iov;
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msg.msg_iovlen = 1;
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#if (NGX_HAVE_MSGHDR_MSG_CONTROL)
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if (ls->wildcard) {
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#if (NGX_HAVE_IP_RECVDSTADDR || NGX_HAVE_IP_PKTINFO)
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if (ls->sockaddr->sa_family == AF_INET) {
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msg.msg_control = &msg_control;
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msg.msg_controllen = sizeof(msg_control);
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}
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#endif
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#if (NGX_HAVE_INET6 && NGX_HAVE_IPV6_RECVPKTINFO)
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if (ls->sockaddr->sa_family == AF_INET6) {
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msg.msg_control = &msg_control6;
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msg.msg_controllen = sizeof(msg_control6);
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}
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#endif
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}
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#endif
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n = recvmsg(lc->fd, &msg, 0);
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if (n == -1) {
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err = ngx_socket_errno;
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if (err == NGX_EAGAIN) {
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ngx_log_debug0(NGX_LOG_DEBUG_EVENT, ev->log, err,
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"recvmsg() not ready");
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return;
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}
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ngx_log_error(NGX_LOG_ALERT, ev->log, err, "recvmsg() failed");
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return;
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}
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#if (NGX_HAVE_MSGHDR_MSG_CONTROL)
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if (msg.msg_flags & (MSG_TRUNC|MSG_CTRUNC)) {
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ngx_log_error(NGX_LOG_ALERT, ev->log, 0,
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"recvmsg() truncated data");
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continue;
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}
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#endif
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sockaddr = msg.msg_name;
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socklen = msg.msg_namelen;
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if (socklen > (socklen_t) sizeof(ngx_sockaddr_t)) {
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socklen = sizeof(ngx_sockaddr_t);
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}
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if (socklen == 0) {
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/*
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* on Linux recvmsg() returns zero msg_namelen
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* when receiving packets from unbound AF_UNIX sockets
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*/
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socklen = sizeof(struct sockaddr);
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ngx_memzero(&sa, sizeof(struct sockaddr));
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sa.sockaddr.sa_family = ls->sockaddr->sa_family;
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}
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local_sockaddr = ls->sockaddr;
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local_socklen = ls->socklen;
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#if (NGX_HAVE_MSGHDR_MSG_CONTROL)
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if (ls->wildcard) {
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struct cmsghdr *cmsg;
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ngx_memcpy(&lsa, local_sockaddr, local_socklen);
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local_sockaddr = &lsa.sockaddr;
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for (cmsg = CMSG_FIRSTHDR(&msg);
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cmsg != NULL;
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cmsg = CMSG_NXTHDR(&msg, cmsg))
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{
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#if (NGX_HAVE_IP_RECVDSTADDR)
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if (cmsg->cmsg_level == IPPROTO_IP
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&& cmsg->cmsg_type == IP_RECVDSTADDR
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&& local_sockaddr->sa_family == AF_INET)
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{
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struct in_addr *addr;
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struct sockaddr_in *sin;
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addr = (struct in_addr *) CMSG_DATA(cmsg);
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sin = (struct sockaddr_in *) local_sockaddr;
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sin->sin_addr = *addr;
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break;
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}
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#elif (NGX_HAVE_IP_PKTINFO)
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if (cmsg->cmsg_level == IPPROTO_IP
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&& cmsg->cmsg_type == IP_PKTINFO
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&& local_sockaddr->sa_family == AF_INET)
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{
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struct in_pktinfo *pkt;
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struct sockaddr_in *sin;
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pkt = (struct in_pktinfo *) CMSG_DATA(cmsg);
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sin = (struct sockaddr_in *) local_sockaddr;
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sin->sin_addr = pkt->ipi_addr;
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break;
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}
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#endif
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#if (NGX_HAVE_INET6 && NGX_HAVE_IPV6_RECVPKTINFO)
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if (cmsg->cmsg_level == IPPROTO_IPV6
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&& cmsg->cmsg_type == IPV6_PKTINFO
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&& local_sockaddr->sa_family == AF_INET6)
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{
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struct in6_pktinfo *pkt6;
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struct sockaddr_in6 *sin6;
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pkt6 = (struct in6_pktinfo *) CMSG_DATA(cmsg);
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sin6 = (struct sockaddr_in6 *) local_sockaddr;
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sin6->sin6_addr = pkt6->ipi6_addr;
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break;
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}
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#endif
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}
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}
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#endif
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#if (NGX_STAT_STUB)
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(void) ngx_atomic_fetch_add(ngx_stat_accepted, 1);
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#endif
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ngx_accept_disabled = ngx_cycle->connection_n / 8
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- ngx_cycle->free_connection_n;
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c = ngx_get_connection(lc->fd, ev->log);
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if (c == NULL) {
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return;
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}
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c->shared = 1;
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c->type = SOCK_DGRAM;
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c->socklen = socklen;
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#if (NGX_STAT_STUB)
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(void) ngx_atomic_fetch_add(ngx_stat_active, 1);
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#endif
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c->pool = ngx_create_pool(ls->pool_size, ev->log);
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if (c->pool == NULL) {
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ngx_close_accepted_udp_connection(c);
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return;
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}
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c->sockaddr = ngx_palloc(c->pool, socklen);
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if (c->sockaddr == NULL) {
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ngx_close_accepted_udp_connection(c);
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return;
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}
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ngx_memcpy(c->sockaddr, sockaddr, socklen);
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log = ngx_palloc(c->pool, sizeof(ngx_log_t));
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if (log == NULL) {
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ngx_close_accepted_udp_connection(c);
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return;
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}
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*log = ls->log;
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c->send = ngx_udp_send;
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c->send_chain = ngx_udp_send_chain;
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c->log = log;
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c->pool->log = log;
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c->listening = ls;
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if (local_sockaddr == &lsa.sockaddr) {
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local_sockaddr = ngx_palloc(c->pool, local_socklen);
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if (local_sockaddr == NULL) {
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ngx_close_accepted_udp_connection(c);
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return;
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}
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ngx_memcpy(local_sockaddr, &lsa, local_socklen);
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}
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c->local_sockaddr = local_sockaddr;
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c->local_socklen = local_socklen;
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c->buffer = ngx_create_temp_buf(c->pool, n);
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if (c->buffer == NULL) {
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ngx_close_accepted_udp_connection(c);
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return;
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}
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c->buffer->last = ngx_cpymem(c->buffer->last, buffer, n);
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rev = c->read;
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wev = c->write;
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wev->ready = 1;
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rev->log = log;
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wev->log = log;
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/*
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* TODO: MT: - ngx_atomic_fetch_add()
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* or protection by critical section or light mutex
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*
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* TODO: MP: - allocated in a shared memory
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* - ngx_atomic_fetch_add()
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* or protection by critical section or light mutex
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*/
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c->number = ngx_atomic_fetch_add(ngx_connection_counter, 1);
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#if (NGX_STAT_STUB)
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(void) ngx_atomic_fetch_add(ngx_stat_handled, 1);
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#endif
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if (ls->addr_ntop) {
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c->addr_text.data = ngx_pnalloc(c->pool, ls->addr_text_max_len);
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if (c->addr_text.data == NULL) {
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ngx_close_accepted_udp_connection(c);
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return;
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}
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c->addr_text.len = ngx_sock_ntop(c->sockaddr, c->socklen,
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c->addr_text.data,
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ls->addr_text_max_len, 0);
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if (c->addr_text.len == 0) {
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ngx_close_accepted_udp_connection(c);
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return;
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}
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}
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#if (NGX_DEBUG)
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{
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ngx_str_t addr;
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u_char text[NGX_SOCKADDR_STRLEN];
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ngx_debug_accepted_connection(ecf, c);
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if (log->log_level & NGX_LOG_DEBUG_EVENT) {
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addr.data = text;
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addr.len = ngx_sock_ntop(c->sockaddr, c->socklen, text,
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NGX_SOCKADDR_STRLEN, 1);
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ngx_log_debug4(NGX_LOG_DEBUG_EVENT, log, 0,
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"*%uA recvmsg: %V fd:%d n:%z",
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c->number, &addr, c->fd, n);
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}
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}
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#endif
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log->data = NULL;
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log->handler = NULL;
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ls->handler(c);
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if (ngx_event_flags & NGX_USE_KQUEUE_EVENT) {
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ev->available -= n;
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}
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} while (ev->available);
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}
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static void
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ngx_close_accepted_udp_connection(ngx_connection_t *c)
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{
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ngx_free_connection(c);
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c->fd = (ngx_socket_t) -1;
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if (c->pool) {
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ngx_destroy_pool(c->pool);
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}
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#if (NGX_STAT_STUB)
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(void) ngx_atomic_fetch_add(ngx_stat_active, -1);
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#endif
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}
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#endif
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