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Make current loglevel and current log callback global to the library. Attaching them to the nsock pool doesn't bring any benefit and prevents from logging activity in code sections that don't have access to a pool (such as proxy chain specification parsing). Updated external calls and nsock tests accordingly.
361 lines
12 KiB
C
361 lines
12 KiB
C
/***************************************************************************
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* engine_epoll.c -- epoll(7) based IO engine. *
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* *
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***********************IMPORTANT NSOCK LICENSE TERMS***********************
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* *
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* The nsock parallel socket event library is (C) 1999-2015 Insecure.Com *
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* LLC This library is free software; you may redistribute and/or *
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* modify it under the terms of the GNU General Public License as *
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* published by the Free Software Foundation; Version 2. This guarantees *
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* your right to use, modify, and redistribute this software under certain *
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* conditions. If this license is unacceptable to you, Insecure.Com LLC *
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* may be willing to sell alternative licenses (contact *
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* sales@insecure.com ). *
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* *
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* As a special exception to the GPL terms, Insecure.Com LLC grants *
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* permission to link the code of this program with any version of the *
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* OpenSSL library which is distributed under a license identical to that *
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* listed in the included docs/licenses/OpenSSL.txt file, and distribute *
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* linked combinations including the two. You must obey the GNU GPL in all *
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* respects for all of the code used other than OpenSSL. If you modify *
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* this file, you may extend this exception to your version of the file, *
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* but you are not obligated to do so. *
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* *
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* If you received these files with a written license agreement stating *
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* terms other than the (GPL) terms above, then that alternative license *
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* agreement takes precedence over this comment. *
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* *
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* Source is provided to this software because we believe users have a *
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* right to know exactly what a program is going to do before they run it. *
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* This also allows you to audit the software for security holes. *
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* *
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* Source code also allows you to port Nmap to new platforms, fix bugs, *
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* and add new features. You are highly encouraged to send your changes *
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* to the dev@nmap.org mailing list for possible incorporation into the *
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* main distribution. By sending these changes to Fyodor or one of the *
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* Insecure.Org development mailing lists, or checking them into the Nmap *
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* source code repository, it is understood (unless you specify otherwise) *
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* that you are offering the Nmap Project (Insecure.Com LLC) the *
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* unlimited, non-exclusive right to reuse, modify, and relicense the *
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* code. Nmap will always be available Open Source, but this is important *
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* because the inability to relicense code has caused devastating problems *
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* for other Free Software projects (such as KDE and NASM). We also *
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* occasionally relicense the code to third parties as discussed above. *
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* If you wish to specify special license conditions of your *
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* contributions, just say so when you send them. *
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* *
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* This program is distributed in the hope that it will be useful, but *
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* WITHOUT ANY WARRANTY; without even the implied warranty of *
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU *
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* General Public License v2.0 for more details *
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* (http://www.gnu.org/licenses/gpl-2.0.html). *
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* *
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***************************************************************************/
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/* $Id$ */
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#ifdef HAVE_CONFIG_H
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#include "nsock_config.h"
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#endif
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#if HAVE_EPOLL
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#include <sys/epoll.h>
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#include <errno.h>
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#include "nsock_internal.h"
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#include "nsock_log.h"
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#if HAVE_PCAP
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#include "nsock_pcap.h"
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#endif
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#define INITIAL_EV_COUNT 128
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#define EPOLL_R_FLAGS (EPOLLIN | EPOLLPRI)
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#define EPOLL_W_FLAGS EPOLLOUT
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#ifdef EPOLLRDHUP
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#define EPOLL_X_FLAGS (EPOLLERR | EPOLLRDHUP| EPOLLHUP)
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#else
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/* EPOLLRDHUP was introduced later and might be unavailable on older systems. */
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#define EPOLL_X_FLAGS (EPOLLERR | EPOLLHUP)
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#endif /* EPOLLRDHUP */
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/* --- ENGINE INTERFACE PROTOTYPES --- */
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static int epoll_init(struct npool *nsp);
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static void epoll_destroy(struct npool *nsp);
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static int epoll_iod_register(struct npool *nsp, struct niod *iod, int ev);
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static int epoll_iod_unregister(struct npool *nsp, struct niod *iod);
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static int epoll_iod_modify(struct npool *nsp, struct niod *iod, int ev_set, int ev_clr);
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static int epoll_loop(struct npool *nsp, int msec_timeout);
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/* ---- ENGINE DEFINITION ---- */
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struct io_engine engine_epoll = {
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"epoll",
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epoll_init,
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epoll_destroy,
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epoll_iod_register,
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epoll_iod_unregister,
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epoll_iod_modify,
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epoll_loop
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};
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/* --- INTERNAL PROTOTYPES --- */
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static void iterate_through_event_lists(struct npool *nsp, int evcount);
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/* defined in nsock_core.c */
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void process_iod_events(struct npool *nsp, struct niod *nsi, int ev);
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void process_event(struct npool *nsp, gh_list_t *evlist, struct nevent *nse, int ev);
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void process_expired_events(struct npool *nsp);
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#if HAVE_PCAP
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#ifndef PCAP_CAN_DO_SELECT
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int pcap_read_on_nonselect(struct npool *nsp);
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#endif
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#endif
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/* defined in nsock_event.c */
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void update_first_events(struct nevent *nse);
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extern struct timeval nsock_tod;
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/*
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* Engine specific data structure
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*/
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struct epoll_engine_info {
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/* file descriptor corresponding to our epoll instance */
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int epfd;
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/* number of epoll_events we can deal with */
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int evlen;
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/* list of epoll events, resized if necessary (when polling over large numbers of IODs) */
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struct epoll_event *events;
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};
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int epoll_init(struct npool *nsp) {
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struct epoll_engine_info *einfo;
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einfo = (struct epoll_engine_info *)safe_malloc(sizeof(struct epoll_engine_info));
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einfo->epfd = epoll_create(10); /* argument is ignored */
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einfo->evlen = INITIAL_EV_COUNT;
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einfo->events = (struct epoll_event *)safe_malloc(einfo->evlen * sizeof(struct epoll_event));
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nsp->engine_data = (void *)einfo;
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return 1;
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}
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void epoll_destroy(struct npool *nsp) {
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struct epoll_engine_info *einfo = (struct epoll_engine_info *)nsp->engine_data;
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assert(einfo != NULL);
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close(einfo->epfd);
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free(einfo->events);
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free(einfo);
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}
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int epoll_iod_register(struct npool *nsp, struct niod *iod, int ev) {
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int sd;
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struct epoll_event epev;
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struct epoll_engine_info *einfo = (struct epoll_engine_info *)nsp->engine_data;
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assert(!IOD_PROPGET(iod, IOD_REGISTERED));
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iod->watched_events = ev;
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memset(&epev, 0x00, sizeof(struct epoll_event));
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epev.events = EPOLLET;
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epev.data.ptr = (void *)iod;
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if (ev & EV_READ)
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epev.events |= EPOLL_R_FLAGS;
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if (ev & EV_WRITE)
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epev.events |= EPOLL_W_FLAGS;
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if (ev & EV_EXCEPT)
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epev.events |= EPOLL_X_FLAGS;
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sd = nsock_iod_get_sd(iod);
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if (epoll_ctl(einfo->epfd, EPOLL_CTL_ADD, sd, &epev) < 0)
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fatal("Unable to register IOD #%lu: %s", iod->id, strerror(errno));
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IOD_PROPSET(iod, IOD_REGISTERED);
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return 1;
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}
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int epoll_iod_unregister(struct npool *nsp, struct niod *iod) {
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iod->watched_events = EV_NONE;
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/* some IODs can be unregistered here if they're associated to an event that was
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* immediately completed */
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if (IOD_PROPGET(iod, IOD_REGISTERED)) {
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struct epoll_engine_info *einfo = (struct epoll_engine_info *)nsp->engine_data;
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int sd;
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sd = nsock_iod_get_sd(iod);
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epoll_ctl(einfo->epfd, EPOLL_CTL_DEL, sd, NULL);
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IOD_PROPCLR(iod, IOD_REGISTERED);
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}
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return 1;
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}
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int epoll_iod_modify(struct npool *nsp, struct niod *iod, int ev_set, int ev_clr) {
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int sd;
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struct epoll_event epev;
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int new_events;
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struct epoll_engine_info *einfo = (struct epoll_engine_info *)nsp->engine_data;
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assert((ev_set & ev_clr) == 0);
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assert(IOD_PROPGET(iod, IOD_REGISTERED));
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memset(&epev, 0x00, sizeof(struct epoll_event));
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epev.events = EPOLLET;
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epev.data.ptr = (void *)iod;
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new_events = iod->watched_events;
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new_events |= ev_set;
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new_events &= ~ev_clr;
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if (new_events == iod->watched_events)
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return 1; /* nothing to do */
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iod->watched_events = new_events;
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/* regenerate the current set of events for this IOD */
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if (iod->watched_events & EV_READ)
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epev.events |= EPOLL_R_FLAGS;
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if (iod->watched_events & EV_WRITE)
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epev.events |= EPOLL_W_FLAGS;
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if (iod->watched_events & EV_EXCEPT)
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epev.events |= EPOLL_X_FLAGS;
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sd = nsock_iod_get_sd(iod);
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if (epoll_ctl(einfo->epfd, EPOLL_CTL_MOD, sd, &epev) < 0)
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fatal("Unable to update events for IOD #%lu: %s", iod->id, strerror(errno));
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return 1;
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}
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int epoll_loop(struct npool *nsp, int msec_timeout) {
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int results_left = 0;
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int event_msecs; /* msecs before an event goes off */
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int combined_msecs;
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int sock_err = 0;
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unsigned int iod_count;
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struct epoll_engine_info *einfo = (struct epoll_engine_info *)nsp->engine_data;
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assert(msec_timeout >= -1);
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if (nsp->events_pending == 0)
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return 0; /* No need to wait on 0 events ... */
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iod_count = gh_list_count(&nsp->active_iods);
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if (iod_count > einfo->evlen) {
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einfo->evlen = iod_count * 2;
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einfo->events = (struct epoll_event *)safe_realloc(einfo->events, einfo->evlen * sizeof(struct epoll_event));
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}
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do {
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struct nevent *nse;
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nsock_log_debug_all("wait for events");
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nse = next_expirable_event(nsp);
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if (!nse)
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event_msecs = -1; /* None of the events specified a timeout */
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else
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event_msecs = MAX(0, TIMEVAL_MSEC_SUBTRACT(nse->timeout, nsock_tod));
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#if HAVE_PCAP
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#ifndef PCAP_CAN_DO_SELECT
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/* Force a low timeout when capturing packets on systems where
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* the pcap descriptor is not select()able. */
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if (gh_list_count(&nsp->pcap_read_events) > 0)
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if (event_msecs > PCAP_POLL_INTERVAL)
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event_msecs = PCAP_POLL_INTERVAL;
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#endif
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#endif
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/* We cast to unsigned because we want -1 to be very high (since it means no
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* timeout) */
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combined_msecs = MIN((unsigned)event_msecs, (unsigned)msec_timeout);
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#if HAVE_PCAP
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#ifndef PCAP_CAN_DO_SELECT
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/* do non-blocking read on pcap devices that doesn't support select()
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* If there is anything read, just leave this loop. */
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if (pcap_read_on_nonselect(nsp)) {
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/* okay, something was read. */
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} else
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#endif
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#endif
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{
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results_left = epoll_wait(einfo->epfd, einfo->events, einfo->evlen, combined_msecs);
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if (results_left == -1)
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sock_err = socket_errno();
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}
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gettimeofday(&nsock_tod, NULL); /* Due to epoll delay */
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} while (results_left == -1 && sock_err == EINTR); /* repeat only if signal occurred */
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if (results_left == -1 && sock_err != EINTR) {
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nsock_log_error("nsock_loop error %d: %s", sock_err, socket_strerror(sock_err));
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nsp->errnum = sock_err;
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return -1;
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}
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iterate_through_event_lists(nsp, results_left);
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return 1;
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}
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/* ---- INTERNAL FUNCTIONS ---- */
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static inline int get_evmask(struct epoll_engine_info *einfo, int n) {
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int evmask = EV_NONE;
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if (einfo->events[n].events & EPOLL_R_FLAGS)
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evmask |= EV_READ;
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if (einfo->events[n].events & EPOLL_W_FLAGS)
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evmask |= EV_WRITE;
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if (einfo->events[n].events & EPOLL_X_FLAGS)
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evmask |= (EV_READ | EV_WRITE | EV_EXCEPT);
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return evmask;
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}
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/* Iterate through all the event lists (such as connect_events, read_events,
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* timer_events, etc) and take action for those that have completed (due to
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* timeout, i/o, etc) */
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void iterate_through_event_lists(struct npool *nsp, int evcount) {
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struct epoll_engine_info *einfo = (struct epoll_engine_info *)nsp->engine_data;
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int n;
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for (n = 0; n < evcount; n++) {
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struct niod *nsi = (struct niod *)einfo->events[n].data.ptr;
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assert(nsi);
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/* process all the pending events for this IOD */
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process_iod_events(nsp, nsi, get_evmask(einfo, n));
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if (nsi->state == NSIOD_STATE_DELETED) {
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gh_list_remove(&nsp->active_iods, &nsi->nodeq);
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gh_list_prepend(&nsp->free_iods, &nsi->nodeq);
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}
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}
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/* iterate through timers and expired events */
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process_expired_events(nsp);
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}
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#endif /* HAVE_EPOLL */
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