| /********************************************************************************************************* |
| * Software License Agreement (BSD License) * |
| * Author: Sebastien Decugis <sdecugis@freediameter.net> * |
| * * |
| * Copyright (c) 2013, WIDE Project and NICT * |
| * All rights reserved. * |
| * * |
| * Redistribution and use of this software in source and binary forms, with or without modification, are * |
| * permitted provided that the following conditions are met: * |
| * * |
| * * Redistributions of source code must retain the above * |
| * copyright notice, this list of conditions and the * |
| * following disclaimer. * |
| * * |
| * * Redistributions in binary form must reproduce the above * |
| * copyright notice, this list of conditions and the * |
| * following disclaimer in the documentation and/or other * |
| * materials provided with the distribution. * |
| * * |
| * * Neither the name of the WIDE Project or NICT nor the * |
| * names of its contributors may be used to endorse or * |
| * promote products derived from this software without * |
| * specific prior written permission of WIDE Project and * |
| * NICT. * |
| * * |
| * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED * |
| * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A * |
| * PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR * |
| * ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT * |
| * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS * |
| * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR * |
| * TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF * |
| * ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. * |
| *********************************************************************************************************/ |
| |
| /* |
| * This extension allows to perform some pattern-matching on an AVP |
| * and send the message to a server accordingly. |
| * See rt_ereg.conf.sample file for the format of the configuration file. |
| */ |
| |
| #include "rtereg.h" |
| |
| /* The configuration structure */ |
| struct rtereg_conf rtereg_conf; |
| |
| #ifndef HAVE_REG_STARTEND |
| static char * buf = NULL; |
| static size_t bufsz; |
| static pthread_mutex_t mtx = PTHREAD_MUTEX_INITIALIZER; |
| #endif /* HAVE_REG_STARTEND */ |
| |
| static int proceed(char * value, size_t len, struct fd_list * candidates) |
| { |
| int i; |
| |
| for (i = 0; i < rtereg_conf.rules_nb; i++) { |
| /* Does this pattern match the value? */ |
| struct rtereg_rule * r = &rtereg_conf.rules[i]; |
| int err = 0; |
| struct fd_list * c; |
| |
| TRACE_DEBUG(ANNOYING, "Attempt pattern matching of '%.*s' with rule '%s'", (int)len, value, r->pattern); |
| |
| #ifdef HAVE_REG_STARTEND |
| { |
| regmatch_t pmatch[1]; |
| memset(pmatch, 0, sizeof(pmatch)); |
| pmatch[0].rm_so = 0; |
| pmatch[0].rm_eo = len; |
| err = regexec(&r->preg, value, 0, pmatch, REG_STARTEND); |
| } |
| #else /* HAVE_REG_STARTEND */ |
| { |
| /* We have a 0-terminated string */ |
| err = regexec(&r->preg, value, 0, NULL, 0); |
| } |
| #endif /* HAVE_REG_STARTEND */ |
| |
| if (err == REG_NOMATCH) |
| continue; |
| |
| if (err != 0) { |
| char * errstr; |
| size_t bl; |
| |
| /* Error while compiling the regex */ |
| TRACE_DEBUG(INFO, "Error while executing the regular expression '%s':", r->pattern); |
| |
| /* Get the error message size */ |
| bl = regerror(err, &r->preg, NULL, 0); |
| |
| /* Alloc the buffer for error message */ |
| CHECK_MALLOC( errstr = malloc(bl) ); |
| |
| /* Get the error message content */ |
| regerror(err, &r->preg, errstr, bl); |
| TRACE_DEBUG(INFO, "\t%s", errstr); |
| |
| /* Free the buffer, return the error */ |
| free(errstr); |
| |
| return (err == REG_ESPACE) ? ENOMEM : EINVAL; |
| } |
| |
| /* From this point, the expression matched the AVP value */ |
| TRACE_DEBUG(FULL, "[rt_ereg] Match: '%s' to value '%.*s' => '%s' += %d", |
| r->pattern, |
| (int)len, |
| value, |
| r->server, |
| r->score); |
| |
| for (c = candidates->next; c != candidates; c = c->next) { |
| struct rtd_candidate * cand = (struct rtd_candidate *)c; |
| |
| if (strcmp(r->server, cand->diamid) == 0) { |
| cand->score += r->score; |
| break; |
| } |
| } |
| }; |
| |
| return 0; |
| } |
| |
| /* The callback called on new messages */ |
| static int rtereg_out(void * cbdata, struct msg ** pmsg, struct fd_list * candidates) |
| { |
| struct msg * msg = *pmsg; |
| struct avp * avp = NULL; |
| |
| TRACE_ENTRY("%p %p %p", cbdata, msg, candidates); |
| |
| CHECK_PARAMS(msg && candidates); |
| |
| /* Check if it is worth processing the message */ |
| if (FD_IS_LIST_EMPTY(candidates)) { |
| return 0; |
| } |
| |
| /* Now search the AVP in the message */ |
| CHECK_FCT( fd_msg_search_avp ( msg, rtereg_conf.avp, &avp ) ); |
| if (avp != NULL) { |
| struct avp_hdr * ahdr = NULL; |
| CHECK_FCT( fd_msg_avp_hdr ( avp, &ahdr ) ); |
| if (ahdr->avp_value != NULL) { |
| #ifndef HAVE_REG_STARTEND |
| int ret; |
| |
| /* Lock the buffer */ |
| CHECK_POSIX( pthread_mutex_lock(&mtx) ); |
| |
| /* Augment the buffer if needed */ |
| if (ahdr->avp_value->os.len >= bufsz) { |
| CHECK_MALLOC_DO( buf = realloc(buf, ahdr->avp_value->os.len + 1), |
| { pthread_mutex_unlock(&mtx); return ENOMEM; } ); |
| } |
| |
| /* Copy the AVP value */ |
| memcpy(buf, ahdr->avp_value->os.data, ahdr->avp_value->os.len); |
| buf[ahdr->avp_value->os.len] = '\0'; |
| |
| /* Now apply the rules */ |
| ret = proceed(buf, ahdr->avp_value->os.len, candidates); |
| |
| CHECK_POSIX(pthread_mutex_unlock(&mtx)); |
| |
| CHECK_FCT(ret); |
| #else /* HAVE_REG_STARTEND */ |
| CHECK_FCT( proceed((char *) ahdr->avp_value->os.data, ahdr->avp_value->os.len, candidates) ); |
| #endif /* HAVE_REG_STARTEND */ |
| } |
| } |
| |
| return 0; |
| } |
| |
| /* handler */ |
| static struct fd_rt_out_hdl * rtereg_hdl = NULL; |
| |
| /* entry point */ |
| static int rtereg_entry(char * conffile) |
| { |
| TRACE_ENTRY("%p", conffile); |
| |
| /* Initialize the configuration */ |
| memset(&rtereg_conf, 0, sizeof(rtereg_conf)); |
| |
| /* Parse the configuration file */ |
| CHECK_FCT( rtereg_conf_handle(conffile) ); |
| |
| /* Register the callback */ |
| CHECK_FCT( fd_rt_out_register( rtereg_out, NULL, 1, &rtereg_hdl ) ); |
| |
| /* We're done */ |
| return 0; |
| } |
| |
| /* Unload */ |
| void fd_ext_fini(void) |
| { |
| int i; |
| TRACE_ENTRY(); |
| |
| /* Unregister the cb */ |
| CHECK_FCT_DO( fd_rt_out_unregister ( rtereg_hdl, NULL ), /* continue */ ); |
| |
| /* Destroy the data */ |
| if (rtereg_conf.rules) |
| for (i = 0; i < rtereg_conf.rules_nb; i++) { |
| free(rtereg_conf.rules[i].pattern); |
| free(rtereg_conf.rules[i].server); |
| regfree(&rtereg_conf.rules[i].preg); |
| } |
| free(rtereg_conf.rules); |
| #ifndef HAVE_REG_STARTEND |
| free(buf); |
| #endif /* HAVE_REG_STARTEND */ |
| |
| /* Done */ |
| return ; |
| } |
| |
| EXTENSION_ENTRY("rt_ereg", rtereg_entry); |