event
void EventSet(myevent_s *ev, int fd, void (*call_back)(int, int, void*), void *arg)
{
ev->fd = fd;
ev->call_back = call_back;
ev->events = 0;
ev->arg = arg;
ev->status = 0;
bzero(ev->buff, sizeof(ev->buff));
ev->s_offset = 0;
ev->len = 0;
ev->last_active = time(NULL);
}
// add/mod an event to epoll
void EventAdd(int epollFd, int events, myevent_s *ev)
{
struct epoll_event epv = {0, {0}};
int op;
epv.data.ptr = ev;
epv.events = ev->events = events;
if(ev->status == 1){
op = EPOLL_CTL_MOD;
}
else{
op = EPOLL_CTL_ADD;
ev->status = 1;
}
if(epoll_ctl(epollFd, op, ev->fd, &epv) < 0)
printf("Event Add failed[fd=%d], evnets[%d]\n", ev->fd, events);
else
printf("Event Add OK[fd=%d], op=%d, evnets[%0X]\n", ev->fd, op, events);
}
// delete an event from epoll
void EventDel(int epollFd, myevent_s *ev)
{
struct epoll_event epv = {0, {0}};
if(ev->status != 1) return;
epv.data.ptr = ev;
ev->status = 0;
epoll_ctl(epollFd, EPOLL_CTL_DEL, ev->fd, &epv);
}
int g_epollFd;
myevent_s g_Events[MAX_EVENTS+1]; // g_Events[MAX_EVENTS] is used by listen fd
void RecvData(int fd, int events, void *arg);
void SendData(int fd, int events, void *arg);
// accept new connections from clients
void AcceptConn(int fd, int events, void *arg)
{
struct sockaddr_in sin;
socklen_t len = sizeof(struct sockaddr_in);
int nfd, i;
// accept
if((nfd = accept(fd, (struct sockaddr*)&sin, &len)) == -1)
{
if(errno != EAGAIN && errno != EINTR)
{
}
printf("%s: accept, %d", __func__, errno);
return;
}
do
{
for(i = 0; i < MAX_EVENTS; i++)
{
if(g_Events[i].status == 0)
{
break;
}
}
if(i == MAX_EVENTS)
{
printf("%s:max connection limit[%d].", __func__, MAX_EVENTS);
break;
}
// set nonblocking
int iret = 0;
if((iret = fcntl(nfd, F_SETFL, O_NONBLOCK)) < 0)
{
printf("%s: fcntl nonblocking failed:%d", __func__, iret);
break;
}
// add a read event for receive data
EventSet(&g_Events[i], nfd, RecvData, &g_Events[i]);
EventAdd(g_epollFd, EPOLLIN, &g_Events[i]);
}while(0);
printf("new conn[%s:%d][time:%d], pos[%d]\n", inet_ntoa(sin.sin_addr),
ntohs(sin.sin_port), g_Events[i].last_active, i);
}
// receive data
void RecvData(int fd, int events, void *arg)
{
struct myevent_s *ev = (struct myevent_s*)arg;
int len;
// receive data
len = recv(fd, ev->buff+ev->len, sizeof(ev->buff)-1-ev->len, 0);
EventDel(g_epollFd, ev);
if(len > 0)
{
ev->len += len;
ev->buff[len] = '\0';
printf("C[%d]:%s\n", fd, ev->buff);
// change to send event
EventSet(ev, fd, SendData, ev);
EventAdd(g_epollFd, EPOLLOUT, ev);
}
else if(len == 0)
{
close(ev->fd);
printf("[fd=%d] pos[%d], closed gracefully.\n", fd, ev-g_Events);
}
else
{
close(ev->fd);
printf("recv[fd=%d] error[%d]:%s\n", fd, errno, strerror(errno));
}
}
// send data
void SendData(int fd, int events, void *arg)
{
struct myevent_s *ev = (struct myevent_s*)arg;
int len;
// send data
len = send(fd, ev->buff + ev->s_offset, ev->len - ev->s_offset, 0);
if(len > 0)
{
printf("send[fd=%d], [%d<->%d]%s\n", fd, len, ev->len, ev->buff);
ev->s_offset += len;
if(ev->s_offset == ev->len)
{
// change to receive event
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