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io_wait.h
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io_wait.h
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/*
* Copyright (C) 2014-2015 OpenSIPS Solutions
* Copyright (C) 2005 iptelorg GmbH
*
* This file is part of opensips, a free SIP server.
*
* opensips is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License as published by
* the Free Software Foundation; either version 2 of the License, or
* (at your option) any later version
*
* opensips is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with this program; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
*
* History:
* --------
* 2005-06-13 created by andrei
* 2005-06-26 added kqueue (andrei)
* 2005-07-01 added /dev/poll (andrei)
* 2014-08-25 looping functions moved to io_wait_loop.h (bogdan)
*/
/*!
* \file
* \brief tcp io wait common stuff used by tcp_main.c & tcp_read.c
* - \ref TCPiowait
*/
/*! \page TCPiowait TCP io wait common stuff used by tcp_main.c & tcp_read.c
* All the functions are inline because of speed reasons and because they are
* used only from 2 places.
* You also have to define:
* - int handle_io(struct fd_map* fm, int idx) (see below)
* (this could be trivially replaced by a callback pointer entry attached
* to the io_wait handler if more flexibility rather then performance
* is needed)
* - fd_type - define to some enum of you choice and define also
* FD_TYPE_DEFINED (if you don't do it fd_type will be defined
* to int). 0 has a special not set/not init. meaning
* (a lot of sanity checks and the sigio_rt code are based on
* this assumption)
* - local_malloc (defaults to pkg_malloc)
* - local_free (defaults to pkg_free)
*
*/
#ifndef _io_wait_h
#define _io_wait_h
#include <errno.h>
#include <string.h>
#ifdef HAVE_SIGIO_RT
#define __USE_GNU /* or else F_SETSIG won't be included */
#define _GNU_SOURCE /* define this as well */
#include <sys/types.h> /* recv */
#include <sys/socket.h> /* recv */
#include <signal.h> /* sigprocmask, sigwait a.s.o */
#endif
#ifdef HAVE_EPOLL
#include <sys/epoll.h>
#endif
#ifdef HAVE_KQUEUE
#include <sys/types.h> /* needed on freebsd */
#include <sys/event.h>
#include <sys/time.h>
#endif
#ifdef HAVE_DEVPOLL
#include <sys/devpoll.h>
#endif
#ifdef HAVE_SELECT
/* needed on openbsd for select*/
#include <sys/time.h>
#include <sys/types.h>
#include <unistd.h>
/* needed according to POSIX for select*/
#include <sys/select.h>
#endif
#include <sys/poll.h>
#include <fcntl.h>
#include "dprint.h"
#include "poll_types.h" /* poll_types*/
#include "pt.h" /* mypid() */
#include "error.h"
#ifdef __OS_linux
#include <features.h> /* for GLIBC version testing */
#endif
#include "lib/dbg/backtrace.h"
#ifndef FD_TYPE_DEFINED
typedef int fd_type;
#define FD_TYPE_DEFINED
#endif
/*! \brief maps a fd to some other structure; used in almost all cases
* except epoll and maybe kqueue or /dev/poll */
struct fd_map {
int fd; /* fd no */
fd_type type; /* "data" type */
void* data; /* pointer to the corresponding structure */
int flags; /* so far used to indicate whether we should
* read, write or both ; last 4 are reserved for
* internal usage */
int app_flags; /* flags to be used by upper layer apps, not by
* the reactor */
unsigned int timeout;
};
#ifdef HAVE_KQUEUE
#ifndef KQ_CHANGES_ARRAY_SIZE
#define KQ_CHANGES_ARRAY_SIZE 128
#ifdef __OS_netbsd
#define KEV_UDATA_CAST (intptr_t)
#else
#define KEV_UDATA_CAST
#endif
#endif
#endif
#define IO_FD_CLOSING 16
/*! \brief handler structure */
struct io_wait_handler{
char *name;
int max_prio;
#ifdef HAVE_EPOLL
struct epoll_event* ep_array;
int epfd; /* epoll ctrl fd */
#endif
#ifdef HAVE_SIGIO_RT
sigset_t sset; /* signal mask for sigio & sigrtmin */
int signo; /* real time signal used */
#endif
#ifdef HAVE_KQUEUE
struct kevent* kq_array; /* used for the eventlist*/
struct kevent* kq_changes; /* used for the changelist */
size_t kq_nchanges;
size_t kq_changes_size; /* size of the changes array */
int kq_fd;
#endif
#ifdef HAVE_DEVPOLL
int dpoll_fd;
struct pollfd* dp_changes;
#endif
#ifdef HAVE_SELECT
fd_set master_set;
int max_fd_select; /* maximum select used fd */
#endif
/* common stuff for POLL, SIGIO_RT and SELECT
* since poll support is always compiled => this will always be compiled */
int *prio_idx; /* size of max_prio - idxs in fd_array where prio changes*/
struct fd_map* fd_hash;
struct pollfd* fd_array;
int fd_no; /* current index used in fd_array */
int max_fd_no; /* maximum fd no, is also the size of fd_array,
fd_hash and ep_array*/
enum poll_types poll_method;
int flags;
};
typedef struct io_wait_handler io_wait_h;
/*! \brief get the corresponding fd_map structure pointer */
#define get_fd_map(h, fd) (&(h)->fd_hash[(fd)])
/*! \brief remove a fd_map structure from the hash;
* the pointer must be returned by get_fd_map or hash_fd_map
*/
#define unhash_fd_map(pfm,c_flags,sock_flags,erase) \
do{ \
if ((c_flags & IO_FD_CLOSING) || (pfm->flags&IO_WATCH_PRV_FILTER)==sock_flags) { \
(pfm)->type=0 /*F_NONE */; \
(pfm)->fd=-1; \
(pfm)->flags = 0; \
(pfm)->data = NULL; \
erase = 1; \
} else { \
(pfm)->flags &= ~sock_flags; \
erase = 0; \
} \
}while(0)
#define unhash_fd_map2(pfm,c_flags,sock_flags,erase) \
do{ \
if ((c_flags & IO_FD_CLOSING) || (pfm->flags&IO_WATCH_PRV_FILTER)==sock_flags) { \
rla_log("erase case detected with sflags=%x\n",sock_flags); \
(pfm)->type=0 /*F_NONE */; \
(pfm)->fd=-1; \
(pfm)->flags = 0; \
(pfm)->data = NULL; \
erase = 1; \
} else { \
rla_log("not erasing flags=%x, flags=%x\n",(pfm)->flags,sock_flags); \
(pfm)->flags &= ~sock_flags; \
erase = 0; \
} \
}while(0)
/*! \brief add a fd_map structure to the fd hash */
static inline struct fd_map* hash_fd_map( io_wait_h* h,
int fd,
fd_type type,
void* data,
int flags,
unsigned int timeout,
int *already)
{
if (h->fd_hash[fd].fd <= 0) {
*already = 0;
} else {
*already = 1;
}
h->fd_hash[fd].fd=fd;
h->fd_hash[fd].type=type;
h->fd_hash[fd].data=data;
h->fd_hash[fd].flags|=flags;
h->fd_hash[fd].timeout = timeout;
return &h->fd_hash[fd];
}
#ifdef HAVE_KQUEUE
/*
* kqueue specific function: register a change
* (adds a change to the kevent change array, and if full flushes it first)
* returns: -1 on error, 0 on success
*/
static inline int kq_ev_change(io_wait_h* h, int fd, int filter, int flag,
void* data)
{
int n;
struct timespec tspec;
if (h->kq_nchanges>=h->kq_changes_size){
/* changes array full ! */
LM_WARN("[%s] kqueue changes array full trying to flush...\n",
h->name);
tspec.tv_sec=0;
tspec.tv_nsec=0;
again:
n=kevent(h->kq_fd, h->kq_changes, h->kq_nchanges, 0, 0, &tspec);
if (n==-1){
if (errno==EINTR) goto again;
LM_ERR("[%s] kevent flush changes failed: %s [%d]\n",
h->name, strerror(errno), errno);
return -1;
}
h->kq_nchanges=0; /* changes array is empty */
}
EV_SET(&h->kq_changes[h->kq_nchanges], fd, filter, flag, 0, 0,
KEV_UDATA_CAST data);
h->kq_nchanges++;
return 0;
}
#endif
#define IO_WATCH_READ (1<<0)
#define IO_WATCH_WRITE (1<<1)
#define IO_WATCH_ERROR (1<<2)
#define IO_WATCH_TIMEOUT (1<<3)
/* 24 starting are reserved, do not attempt to use */
#define IO_WATCH_PRV_FILTER ((1<<24)-1)
#define IO_WATCH_PRV_CHECKED (1<<29)
#define IO_WATCH_PRV_TRIG_READ (1<<30)
#define IO_WATCH_PRV_TRIG_WRITE (1<<31)
#define fd_array_print \
do { \
int k;\
LM_DBG("[%s] size=%d, fd array is",h->name,h->fd_no);\
for(k=0;k<h->fd_no;k++) LM_GEN1(L_DBG," %d flags = %d",h->fd_array[k].fd,h->fd_hash[h->fd_array[k].fd].flags);\
LM_GEN1(L_DBG,"\n"); \
LM_DBG("[%s] size=%d, prio array is",h->name,h->max_prio);\
for(k=0;k<h->max_prio;k++) LM_GEN1(L_DBG," %d",h->prio_idx[k]);\
LM_GEN1(L_DBG,"\n"); \
}while(0)
#define check_io_data() \
do { \
struct fd_map* _e;\
int _t,k;\
check_error = 0;\
/* iterate the fd_array and check if fd_hash is properly set for each */ \
for(k=0;k<h->fd_no;k++) {\
_e = get_fd_map(h, h->fd_array[k].fd); \
if (_e->type==0 || _e->fd<=0 || \
(_e->flags&(IO_WATCH_READ|IO_WATCH_WRITE))==0 ) {\
LM_BUG("fd_array idx %d (fd=%d) points to bogus map "\
"(fd=%d,type=%d,flags=%x,data=%p)\n",k,h->fd_array[k].fd,\
_e->fd, _e->type, _e->flags, _e->data);\
check_error = 1;\
}\
_e->flags |= IO_WATCH_PRV_CHECKED;\
}\
/* iterate the fd_map and see if all records are checked */ \
_t = 0; \
for(k=0;k<h->max_fd_no;k++) {\
_e = get_fd_map(h, k); \
if (_e->type==0) { \
/* fd not in used, everything should be on zero */ \
if (_e->fd>0 || _e->data!=NULL || _e->flags!=0 ) {\
LM_BUG("unused fd_map fd=%d has bogus data "\
"(fd=%d,flags=%x,data=%p)\n",k,\
_e->fd, _e->flags, _e->data);\
check_error = 1;\
}\
} else {\
/* fd in used, check if in checked */ \
if (_e->fd<=0 || \
(_e->flags&(IO_WATCH_READ|IO_WATCH_WRITE))==0 ) {\
LM_BUG("used fd map fd=%d has bogus data "\
"(fd=%d,type=%d,flags=%x,data=%p)\n",k,\
_e->fd, _e->type, _e->flags, _e->data);\
check_error = 1;\
}\
/* the map is valid */ \
if ((_e->flags&IO_WATCH_PRV_CHECKED)==0) {\
LM_BUG("used fd map fd=%d is not present in fd_array "\
"(fd=%d,type=%d,flags=%x,data=%p)\n",k,\
_e->fd, _e->type, _e->flags, _e->data);\
check_error = 1;\
}\
_e->flags &= ~IO_WATCH_PRV_CHECKED;\
_t++;\
}\
}\
if (_t!=h->fd_no) { \
LM_BUG("fd_map versus fd_array size mismatch: %d versus %d\n",\
_t, h->fd_no);\
check_error = 1;\
}\
} while(0)
/*! \brief generic io_watch_add function
* \return 0 on success, -1 on error
*
* this version should be faster than pointers to poll_method specific
* functions (it avoids functions calls, the overhead being only an extra
* switch())
*/
inline static int io_watch_add( io_wait_h* h, // lgtm [cpp/use-of-goto]
int fd,
fd_type type,
void* data,
int prio,
unsigned int timeout,
int flags)
{
/* helper macros */
#define fd_array_setup \
do{ \
n = h->prio_idx[prio]; \
if (n<h->fd_no)\
memmove( &h->fd_array[n+1], &h->fd_array[n],\
(h->fd_no-n)*sizeof(*(h->fd_array)) ); \
h->fd_array[n].fd=fd; \
h->fd_array[n].events=0; \
if (flags & IO_WATCH_READ) \
h->fd_array[n].events|=POLLIN; /* useless for select */ \
if (flags & IO_WATCH_WRITE) \
h->fd_array[n].events|=POLLOUT; /* useless for select */ \
h->fd_array[n].revents=0; /* useless for select */ \
for( n=prio ; n<h->max_prio ; n++) \
h->prio_idx[n]++; \
h->fd_no++; \
}while(0)
#define set_fd_flags(f) \
do{ \
ctl_flags=fcntl(fd, F_GETFL); \
if (ctl_flags==-1){ \
LM_ERR("[%s] fcntl: GETFL failed:" \
" %s [%d]\n", h->name, strerror(errno), errno); \
goto error; \
} \
if (fcntl(fd, F_SETFL, ctl_flags|(f))==-1){ \
LM_ERR("[%s] fcntl: SETFL" \
" failed: %s [%d]\n", h->name, strerror(errno), errno);\
goto error; \
} \
}while(0)
struct fd_map* e;
int already=-1;
#ifdef HAVE_EPOLL
struct epoll_event ep_event;
#endif
#ifdef HAVE_DEVPOLL
struct pollfd pfd;
#endif
int ctl_flags;
int n; //FIXME
int check_error;
#if 0 //defined(HAVE_SIGIO_RT) || defined (HAVE_EPOLL) FIXME
int n;
int idx;
int check_io;
struct pollfd pf;
check_io=0; /* set to 1 if we need to check for pre-existing queued
io/data on the fd */
idx=-1;
#endif
e=0;
if (fd==-1){
LM_CRIT("fd is -1!\n");
goto error0;
}
/* check if not too big */
if (h->fd_no >= h->max_fd_no || fd >= h->max_fd_no) {
LM_CRIT("[%s] maximum fd number exceeded: %d, %d/%d\n",
h->name, fd, h->fd_no, h->max_fd_no);
goto error0;
}
if (prio > h->max_prio) {
LM_BUG("[%s] priority %d requested (max is %d)\n",
h->name, prio, h->max_prio);
goto error0;
}
#if defined (HAVE_EPOLL)
LM_DBG("[%s] io_watch_add op (%d on %d) (%p, %d, %d, %p,%d), fd_no=%d/%d\n",
h->name,fd,h->epfd, h,fd,type,data,flags,h->fd_no,h->max_fd_no);
#else
LM_DBG("[%s] io_watch_add op (%d) (%p, %d, %d, %p,%d), fd_no=%d/%d\n",
h->name,fd, h,fd,type,data,flags,h->fd_no,h->max_fd_no);
#endif
//fd_array_print;
/* hash sanity check */
e=get_fd_map(h, fd);
check_io_data();
if (check_error) {
LM_CRIT("[%s] check failed before fd add "
"(fd=%d,type=%d,data=%p,flags=%x) already=%d\n",h->name,
fd, type, data, flags, already);
}
if (e->flags & flags){
if (e->data != data) {
LM_BUG("[%s] BUG trying to overwrite entry %d"
" in the hash(%d, %d, %p,%d) with (%d, %d, %p,%d)\n",
h->name,fd, e->fd, e->type, e->data,e->flags, fd, type, data,flags);
goto error0;
}
LM_DBG("[%s] Socket %d is already being listened on for flags %d\n",
h->name,fd,flags);
return 0;
}
if (timeout)
timeout+=get_ticks();
if ((e=hash_fd_map(h, fd, type, data,flags, timeout, &already))==0){
LM_ERR("[%s] failed to hash the fd %d\n",h->name, fd);
goto error0;
}
switch(h->poll_method){ /* faster then pointer to functions */
case POLL_POLL:
set_fd_flags(O_NONBLOCK);
break;
#ifdef HAVE_SELECT
case POLL_SELECT:
FD_SET(fd, &h->master_set);
if (h->max_fd_select<fd) h->max_fd_select=fd;
break;
#endif
#ifdef HAVE_SIGIO_RT
case POLL_SIGIO_RT:
/* re-set O_ASYNC might be needed, if not done from
* io_watch_del (or if somebody wants to add a fd which has
* already O_ASYNC/F_SETSIG set on a dupplicate)
*/
/* set async & signal */
if (fcntl(fd, F_SETOWN, my_pid())==-1){
LM_ERR("[%s] fcntl: SETOWN"
" failed: %s [%d]\n",h->name, strerror(errno), errno);
goto error;
}
if (fcntl(fd, F_SETSIG, h->signo)==-1){
LM_ERR("[%s] fcntl: SETSIG"
" failed: %s [%d]\n",h->name, strerror(errno), errno);
goto error;
}
/* set both non-blocking and async */
set_fd_flags(O_ASYNC| O_NONBLOCK);
#ifdef EXTRA_DEBUG
LM_DBG("[%s] sigio_rt on f %d, signal %d to pid %d\n",
h->name,fd, h->signo, my_pid());
#endif
/* empty socket receive buffer, if buffer is already full
* no more space to put packets
* => no more signals are ever generated
* also when moving fds, the freshly moved fd might have
* already some bytes queued, we want to get them now
* and not later -- andrei */
//idx=h->fd_no; FIXME
//check_io=1;
break;
#endif
#ifdef HAVE_EPOLL
case POLL_EPOLL:
ep_event.data.ptr=e;
ep_event.events=0;
if (e->flags & IO_WATCH_READ)
ep_event.events|=EPOLLIN;
if (e->flags & IO_WATCH_WRITE)
ep_event.events|=EPOLLOUT;
if (!already) {
again1:
#if 0
/* This is currently broken, because when using EPOLLEXCLUSIVE, the OS will
* send sequential events to the same process - thus our pseudo-dispatcher
* will no longer work, since events on a pipe will be queued by a single
* process. - razvanc
*/
#if (defined __OS_linux) && (__GLIBC__ >= 2) && (__GLIBC_MINOR__ >= 24)
if (e->flags & IO_WATCH_READ)
ep_event.events|=EPOLLEXCLUSIVE;
#endif
#endif
n=epoll_ctl(h->epfd, EPOLL_CTL_ADD, fd, &ep_event);
if (n==-1){
if (errno==EAGAIN) goto again1;
LM_ERR("[%s] epoll_ctl ADD failed: %s [%d]\n",
h->name,strerror(errno), errno);
goto error;
}
} else {
again11:
n=epoll_ctl(h->epfd, EPOLL_CTL_MOD, fd, &ep_event);
if (n==-1){
if (errno==EAGAIN) goto again11;
LM_ERR("[%s] epoll_ctl MOD failed: %s [%d]\n",
h->name,strerror(errno), errno);
goto error;
}
}
break;
#endif
#ifdef HAVE_KQUEUE
case POLL_KQUEUE:
if (kq_ev_change(h, fd, EVFILT_READ, EV_ADD, e)==-1)
goto error;
break;
#endif
#ifdef HAVE_DEVPOLL
case POLL_DEVPOLL:
pfd.fd=fd;
pfd.events=POLLIN;
pfd.revents=0;
again_devpoll:
if (write(h->dpoll_fd, &pfd, sizeof(pfd))==-1){
if (errno==EAGAIN) goto again_devpoll;
LM_ERR("[%s] /dev/poll write failed:"
"%s [%d]\n",h->name, strerror(errno), errno);
goto error;
}
break;
#endif
default:
LM_CRIT("[%s] no support for poll method "
" %s (%d)\n",h->name, poll_method_str[h->poll_method],
h->poll_method);
goto error;
}
if (!already) {
fd_array_setup;
}
#if 0 //defined(HAVE_SIGIO_RT) || defined (HAVE_EPOLL) FIXME !!!
if (check_io){
/* handle possible pre-existing events */
pf.fd=fd;
pf.events=POLLIN;
check_io_again:
while( ((n=poll(&pf, 1, 0))>0) && (handle_io(e, idx,IO_WATCH_READ)>0));
if (n==-1){
if (errno==EINTR) goto check_io_again;
LM_ERR("check_io poll: %s [%d]\n",
strerror(errno), errno);
}
}
#endif
//fd_array_print;
check_io_data();
if (check_error) {
LM_CRIT("[%s] check failed after successful fd add "
"(fd=%d,type=%d,data=%p,flags=%x) already=%d\n",h->name,
fd, type, data, flags, already);
}
return 0;
error:
if (e) unhash_fd_map(e,0,flags,already);
error0:
check_io_data();
if (check_error) {
LM_CRIT("[%s] check failed after failed fd add "
"(fd=%d,type=%d,data=%p,flags=%x) already=%d\n",h->name,
fd, type, data, flags, already);
}
return -1;
#undef fd_array_setup
#undef set_fd_flags
}
/*!
* \brief
* \param h handler
* \param fd file descriptor
* \param idx index in the fd_array if known, -1 if not
* (if index==-1 fd_array will be searched for the
* corresponding fd* entry -- slower but unavoidable in
* some cases). index is not used (no fd_array) for epoll,
* /dev/poll and kqueue
* \param flags optimization flags, e.g. IO_FD_CLOSING, the fd was or will
* shortly be closed, in some cases we can avoid extra
* remove operations (e.g.: epoll, kqueue, sigio)
* \return 0 if ok, -1 on error
*/
inline static int io_watch_del(io_wait_h* h, int fd, int idx,
int flags,int sock_flags)
{
#define fix_fd_array \
do{\
if (idx==-1){ \
/* fix idx if -1 and needed */ \
for (idx=0; (idx<h->fd_no) && \
(h->fd_array[idx].fd!=fd); idx++); \
} \
rla_log("fixing: final idx=%d out of %d, erase=%d\n",idx,idx<h->fd_no,erase); \
if (idx<h->fd_no){ \
if (erase) { \
memmove(&h->fd_array[idx], &h->fd_array[idx+1], \
(h->fd_no-(idx+1))*sizeof(*(h->fd_array))); \
for( i=0 ; i<h->max_prio && h->prio_idx[i]<=idx ; i++ ); \
for( ; i<h->max_prio ; i++ ) h->prio_idx[i]-- ; \
h->fd_no--; \
} else { \
h->fd_array[idx].events = 0; \
if (e->flags & IO_WATCH_READ) \
h->fd_array[idx].events|=POLLIN; /* useless for select */ \
if (flags & IO_WATCH_WRITE) \
h->fd_array[idx].events|=POLLOUT; /* useless for select */ \
h->fd_array[idx].revents = 0; \
} \
} \
}while(0)
struct fd_map* e;
#ifdef HAVE_EPOLL
int n;
struct epoll_event ep_event;
#endif
#ifdef HAVE_DEVPOLL
struct pollfd pfd;
#endif
#ifdef HAVE_SIGIO_RT
int fd_flags;
#endif
int erase = 0;
int check_error;
int i;
#define x_RL_NO 10
#define x_RL_LEN 200
static char rla[x_RL_NO][x_RL_LEN];
int rla_idx=0;
#define rla_log( _fmt, args...) \
snprintf( rla[rla_idx++], x_RL_LEN, _fmt, ## args)
#define rla_dump() \
do { \
int w; \
for(w=0;w<rla_idx;w++) \
LM_CRIT("[%d]-> [%s]",w,rla[w]); \
} while(0)
if ((fd<0) || (fd>=h->max_fd_no)){
LM_CRIT("[%s] invalid fd %d, not in [0, %d)\n", h->name, fd, h->fd_no);
goto error0;
}
LM_DBG("[%s] io_watch_del op on index %d %d (%p, %d, %d, 0x%x,0x%x) "
"fd_no=%d called\n", h->name,idx,fd, h, fd, idx, flags,
sock_flags,h->fd_no);
rla_log("[%s] io_watch_del op on index %d %d (%p, %d, %d, 0x%x,0x%x) "
"fd_no=%d called\n", h->name,idx,fd, h, fd, idx, flags,
sock_flags,h->fd_no);
//fd_array_print;
e=get_fd_map(h, fd);
/* more sanity checks */
if (e==0){
LM_CRIT("[%s] no corresponding hash entry for %d\n",h->name, fd);
goto error0;
}
if (e->type==0 /*F_NONE*/){
LM_ERR("[%s] trying to delete already erased"
" entry %d in the hash(%d, %d, %p) )\n",
h->name,fd, e->fd, e->type, e->data);
goto error0;
}
if (idx != -1) {
if (!(idx>=0 && idx<h->fd_no)) {
LM_CRIT("[%s] FD index check failed, idx=%d, max=%d"
" operating on %d\n",h->name, idx, h->fd_no, fd );
log_backtrace();
rla_dump();
idx = -1;
} else if (h->fd_array[idx].fd!=fd) {
LM_CRIT("[%s] FD consistency check failed, idx=%d points to fd=%d,"
" but operating on %d\n",h->name, idx, h->fd_array[idx].fd, fd );
log_backtrace();
rla_dump();
idx = -1;
}
}
if ((e->flags & sock_flags) == 0) {
LM_ERR("BUG - [%s] trying to del fd %d with flags %d %d\n",
h->name, fd, e->flags,sock_flags);
goto error0;
}
unhash_fd_map2(e,flags,sock_flags,erase);
switch(h->poll_method){
case POLL_POLL:
break;
#ifdef HAVE_SELECT
case POLL_SELECT:
FD_CLR(fd, &h->master_set);
if (h->max_fd_select && (h->max_fd_select==fd))
/* we don't know the prev. max, so we just decrement it */
h->max_fd_select--;
break;
#endif
#ifdef HAVE_SIGIO_RT
case POLL_SIGIO_RT:
/* the O_ASYNC flag must be reset all the time, the fd
* can be changed only if O_ASYNC is reset (if not and
* the fd is a duplicate, you will get signals from the dup. fd
* and not from the original, even if the dup. fd was closed
* and the signals re-set on the original) -- andrei
*/
/*if (!(flags & IO_FD_CLOSING)){*/
/* reset ASYNC */
fd_flags=fcntl(fd, F_GETFL);
if (fd_flags==-1){
LM_ERR("[%s] fcntl: GETFL failed:"
" %s [%d]\n",h->name, strerror(errno), errno);
goto error;
}
if (fcntl(fd, F_SETFL, fd_flags&(~O_ASYNC))==-1){
LM_ERR("[%s] fcntl: SETFL"
" failed: %s [%d]\n",h->name, strerror(errno), errno);
goto error;
}
break;
#endif
#ifdef HAVE_EPOLL
case POLL_EPOLL:
/* epoll doesn't seem to automatically remove sockets,
* if the socket is a dupplicate/moved and the original
* is still open. The fd is removed from the epoll set
* only when the original (and all the copies?) is/are
* closed. This is probably a bug in epoll. --andrei */
#ifdef EPOLL_NO_CLOSE_BUG
if (!(flags & IO_FD_CLOSING)){
#endif
if (erase) {
n=epoll_ctl(h->epfd, EPOLL_CTL_DEL, fd, &ep_event);
/*
* in some cases (fds managed by external libraries),
* the fd may have already been closed
*/
if (n==-1 && errno != EBADF && errno != ENOENT) {
LM_ERR("[%s] removing fd from epoll (%d from %d) "
"list failed: %s [%d]\n",h->name, fd, h->epfd,
strerror(errno), errno);
goto error;
}
} else {
ep_event.data.ptr=e;
ep_event.events=0;
if (e->flags & IO_WATCH_READ)
ep_event.events|=EPOLLIN;
if (e->flags & IO_WATCH_WRITE)
ep_event.events|=EPOLLOUT;
n=epoll_ctl(h->epfd, EPOLL_CTL_MOD, fd, &ep_event);
if (n==-1){
LM_ERR("[%s] epoll_ctl failed: %s [%d]\n",
h->name,strerror(errno), errno);
goto error;
}
}
#ifdef EPOLL_NO_CLOSE_BUG
}
#endif
break;
#endif
#ifdef HAVE_KQUEUE
case POLL_KQUEUE:
if (!(flags & IO_FD_CLOSING)){
if (kq_ev_change(h, fd, EVFILT_READ, EV_DELETE, 0)==-1)
goto error;
}
break;
#endif
#ifdef HAVE_DEVPOLL
case POLL_DEVPOLL:
/* for /dev/poll the closed fds _must_ be removed
(they are not removed automatically on close()) */
pfd.fd=fd;
pfd.events=POLLREMOVE;
pfd.revents=0;
again_devpoll:
if (write(h->dpoll_fd, &pfd, sizeof(pfd))==-1){
if (errno==EINTR) goto again_devpoll;
LM_ERR("[%s] removing fd from /dev/poll failed: "
"%s [%d]\n",h->name, strerror(errno), errno);
goto error;
}
break;
#endif
default:
LM_CRIT("[%s] no support for poll method %s (%d)\n",
h->name,poll_method_str[h->poll_method], h->poll_method);
goto error;
}
rla_log("fixing fd array, idx=%d\n",idx); \
fix_fd_array;
//fd_array_print;
check_io_data();
if (check_error) {
LM_CRIT("[%s] check failed after successful fd del "
"(fd=%d,flags=%d, sflags=%d) over map "
"(fd=%d,type=%d,data=%p,flags=%d) erase=%d\n",h->name,
fd, flags, sock_flags,
e->fd, e->type, e->data, e->flags,
erase);
rla_dump();
}
return 0;
error:
/*
* although the DEL operation failed, both
* "fd_hash" and "fd_array" must remain consistent
*/
fix_fd_array;
check_io_data();
if (check_error) {
LM_CRIT("[%s] check failed after failed fd del "
"(fd=%d,flags=%d, sflags=%d) over map "
"(fd=%d,type=%d,data=%p,flags=%d) erase=%d\n",h->name,
fd, flags, sock_flags,
e->fd, e->type, e->data, e->flags,
erase);
rla_dump();
}
error0:
return -1;
#undef fix_fd_array
}
/* init */
/*! \brief initializes the static vars/arrays
* \param h pointer to the io_wait_h that will be initialized
* \param max_fd maximum allowed fd number
* \param poll_method poll method (0 for automatic best fit)
*/
int init_io_wait(io_wait_h* h, char *name, int max_fd,
enum poll_types poll_method, int max_prio);
/*! \brief destroys everything init_io_wait allocated */
void destroy_io_wait(io_wait_h* h);
int io_set_app_flag( io_wait_h *h , int type, int app_flag);
int io_check_app_flag( io_wait_h *h , int app_flag);
#endif