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code. PR: Obtained from: Submitted by: Reviewed by: git-svn-id: https://svn.apache.org/repos/asf/httpd/httpd/trunk@90789 13f79535-47bb-0310-9956-ffa450edef68
538 lines
14 KiB
C
538 lines
14 KiB
C
/* ====================================================================
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* The Apache Software License, Version 1.1
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*
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* Copyright (c) 2000-2001 The Apache Software Foundation. All rights
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* reserved.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions
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* are met:
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*
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* 1. Redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer.
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*
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* 2. Redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in
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* the documentation and/or other materials provided with the
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* distribution.
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*
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* 3. The end-user documentation included with the redistribution,
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* if any, must include the following acknowledgment:
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* "This product includes software developed by the
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* Apache Software Foundation (http://www.apache.org/)."
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* Alternately, this acknowledgment may appear in the software itself,
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* if and wherever such third-party acknowledgments normally appear.
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*
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* 4. The names "Apache" and "Apache Software Foundation" must
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* not be used to endorse or promote products derived from this
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* software without prior written permission. For written
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* permission, please contact apache@apache.org.
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*
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* 5. Products derived from this software may not be called "Apache",
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* nor may "Apache" appear in their name, without prior written
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* permission of the Apache Software Foundation.
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*
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* THIS SOFTWARE IS PROVIDED ``AS IS'' AND ANY EXPRESSED OR IMPLIED
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* WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
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* OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
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* DISCLAIMED. IN NO EVENT SHALL THE APACHE SOFTWARE FOUNDATION OR
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* ITS CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
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* SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
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* LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF
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* USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
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* ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
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* OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
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* OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
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* SUCH DAMAGE.
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* ====================================================================
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*
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* This software consists of voluntary contributions made by many
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* individuals on behalf of the Apache Software Foundation. For more
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* information on the Apache Software Foundation, please see
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* <http://www.apache.org/>.
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*/
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/*
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* util_ldap_cache_mgr.c: LDAP cache manager things
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*
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* Original code from auth_ldap module for Apache v1.3:
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* Copyright 1998, 1999 Enbridge Pipelines Inc.
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* Copyright 1999-2001 Dave Carrigan
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*/
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#include <apr_ldap.h>
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#include "util_ldap.h"
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#include "util_ldap_cache.h"
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#include <apr_strings.h>
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#ifdef APU_HAS_LDAP
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/* only here until strdup is gone */
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#include <string.h>
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/* here till malloc is gone */
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#include <stdlib.h>
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static const int primes[] =
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{
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11,
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19,
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37,
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73,
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109,
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163,
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251,
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367,
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557,
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823,
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1237,
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1861,
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2777,
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4177,
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6247,
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9371,
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14057,
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21089,
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31627,
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47431,
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71143,
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106721,
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160073,
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240101,
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360163,
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540217,
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810343,
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1215497,
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1823231,
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2734867,
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4102283,
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6153409,
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9230113,
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13845163,
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0
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};
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void util_ald_free(const void *ptr)
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{
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#if APR_HAS_SHARED_MEMORY
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if (util_ldap_shm) {
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if (ptr)
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apr_shm_free(util_ldap_shm, (void *)ptr);
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} else {
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if (ptr)
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free((void *)ptr);
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}
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#else
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if (ptr)
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free((void *)ptr);
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#endif
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}
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void *util_ald_alloc(unsigned long size)
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{
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if (0 == size)
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return NULL;
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#if APR_HAS_SHARED_MEMORY
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if (util_ldap_shm) {
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return (void *)apr_shm_calloc(util_ldap_shm, size);
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} else {
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return (void *)calloc(sizeof(char), size);
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}
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#else
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return (void *)calloc(sizeof(char), size);
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#endif
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}
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const char *util_ald_strdup(const char *s)
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{
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#if APR_HAS_SHARED_MEMORY
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if (util_ldap_shm) {
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char *buf = apr_shm_malloc(util_ldap_shm, strlen(s)+1);
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if (buf) {
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strcpy(buf, s);
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return buf;
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}
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else {
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return NULL;
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}
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} else {
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return strdup(s);
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}
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#else
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return strdup(s);
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#endif
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}
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/*
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* Computes the hash on a set of strings. The first argument is the number
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* of strings to hash, the rest of the args are strings.
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* Algorithm taken from glibc.
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*/
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unsigned long util_ald_hash_string(int nstr, ...)
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{
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int i;
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va_list args;
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unsigned long h=0, g;
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char *str, *p;
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va_start(args, nstr);
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for (i=0; i < nstr; ++i) {
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str = va_arg(args, char *);
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for (p = str; *p; ++p) {
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h = ( h << 4 ) + *p;
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if ( ( g = h & 0xf0000000 ) ) {
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h = h ^ (g >> 24);
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h = h ^ g;
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}
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}
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}
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va_end(args);
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return h;
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}
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/*
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Purges a cache that has gotten full. We keep track of the time that we
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added the entry that made the cache 3/4 full, then delete all entries
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that were added before that time. It's pretty simplistic, but time to
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purge is only O(n), which is more important.
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*/
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void util_ald_cache_purge(util_ald_cache_t *cache)
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{
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int i;
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util_cache_node_t *p, *q;
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apr_time_t t;
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if (!cache)
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return;
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cache->last_purge = apr_time_now();
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cache->npurged = 0;
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cache->numpurges++;
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for (i=0; i < cache->size; ++i) {
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p = cache->nodes[i];
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while (p != NULL) {
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if (p->add_time < cache->marktime) {
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q = p->next;
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(*cache->free)(p->payload);
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util_ald_free(p);
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cache->numentries--;
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cache->npurged++;
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p = q;
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}
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else {
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p = p->next;
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}
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}
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}
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t = apr_time_now();
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cache->avg_purgetime =
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((t - cache->last_purge) + (cache->avg_purgetime * (cache->numpurges-1))) /
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cache->numpurges;
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}
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/*
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* create caches
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*/
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util_url_node_t *util_ald_create_caches(util_ldap_state_t *st, const char *url)
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{
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util_url_node_t *curl = NULL;
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util_ald_cache_t *search_cache;
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util_ald_cache_t *compare_cache;
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util_ald_cache_t *dn_compare_cache;
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/* create the three caches */
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search_cache = util_ald_create_cache(st->search_cache_size,
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util_ldap_search_node_hash,
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util_ldap_search_node_compare,
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util_ldap_search_node_copy,
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util_ldap_search_node_free);
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compare_cache = util_ald_create_cache(st->compare_cache_size,
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util_ldap_compare_node_hash,
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util_ldap_compare_node_compare,
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util_ldap_compare_node_copy,
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util_ldap_compare_node_free);
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dn_compare_cache = util_ald_create_cache(st->compare_cache_size,
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util_ldap_dn_compare_node_hash,
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util_ldap_dn_compare_node_compare,
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util_ldap_dn_compare_node_copy,
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util_ldap_dn_compare_node_free);
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/* check that all the caches initialised successfully */
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if (search_cache && compare_cache && dn_compare_cache) {
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curl = (util_url_node_t *)apr_pcalloc(st->pool, sizeof(util_url_node_t));
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curl->url = url;
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curl->search_cache = search_cache;
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curl->compare_cache = compare_cache;
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curl->dn_compare_cache = dn_compare_cache;
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util_ald_cache_insert(util_ldap_cache, curl);
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}
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return curl;
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}
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util_ald_cache_t *util_ald_create_cache(unsigned long maxentries,
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unsigned long (*hashfunc)(void *),
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int (*comparefunc)(void *, void *),
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void * (*copyfunc)(void *),
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void (*freefunc)(void *))
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{
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util_ald_cache_t *cache;
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int i;
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if (maxentries <= 0)
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return NULL;
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cache = (util_ald_cache_t *)util_ald_alloc(sizeof(util_ald_cache_t));
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if (!cache)
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return NULL;
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cache->maxentries = maxentries;
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cache->numentries = 0;
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cache->size = maxentries / 3;
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if (cache->size < 64) cache->size = 64;
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for (i = 0; primes[i] && primes[i] < cache->size; ++i) ;
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cache->size = primes[i]? primes[i] : primes[i-1];
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cache->nodes = (util_cache_node_t **)util_ald_alloc(cache->size * sizeof(util_cache_node_t *));
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if (!cache->nodes) {
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util_ald_free(cache);
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return NULL;
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}
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for (i=0; i < cache->size; ++i)
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cache->nodes[i] = NULL;
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cache->hash = hashfunc;
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cache->compare = comparefunc;
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cache->copy = copyfunc;
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cache->free = freefunc;
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cache->fullmark = cache->maxentries / 4 * 3;
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cache->marktime = 0;
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cache->avg_purgetime = 0.0;
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cache->numpurges = 0;
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cache->last_purge = 0;
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cache->npurged = 0;
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cache->fetches = 0;
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cache->hits = 0;
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cache->inserts = 0;
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cache->removes = 0;
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return cache;
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}
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void util_ald_destroy_cache(util_ald_cache_t *cache)
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{
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int i;
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util_cache_node_t *p, *q;
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if (cache == NULL)
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return;
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for (i = 0; i < cache->size; ++i) {
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p = cache->nodes[i];
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q = NULL;
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while (p != NULL) {
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q = p->next;
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(*cache->free)(p->payload);
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util_ald_free(p);
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p = q;
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}
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}
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util_ald_free(cache->nodes);
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}
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void *util_ald_cache_fetch(util_ald_cache_t *cache, void *payload)
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{
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int hashval;
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util_cache_node_t *p;
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if (cache == NULL)
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return NULL;
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cache->fetches++;
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hashval = (*cache->hash)(payload) % cache->size;
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for (p = cache->nodes[hashval];
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p && !(*cache->compare)(p->payload, payload);
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p = p->next) ;
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if (p != NULL) {
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cache->hits++;
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return p->payload;
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}
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else {
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return NULL;
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}
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}
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/*
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* Insert an item into the cache.
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* *** Does not catch duplicates!!! ***
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*/
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void util_ald_cache_insert(util_ald_cache_t *cache, void *payload)
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{
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int hashval;
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util_cache_node_t *node;
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if (cache == NULL || payload == NULL)
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return;
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cache->inserts++;
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hashval = (*cache->hash)(payload) % cache->size;
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node = (util_cache_node_t *)util_ald_alloc(sizeof(util_cache_node_t));
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node->add_time = apr_time_now();
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node->payload = (*cache->copy)(payload);
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node->next = cache->nodes[hashval];
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cache->nodes[hashval] = node;
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if (++cache->numentries == cache->fullmark)
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cache->marktime=apr_time_now();
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if (cache->numentries >= cache->maxentries)
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util_ald_cache_purge(cache);
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}
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void util_ald_cache_remove(util_ald_cache_t *cache, void *payload)
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{
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int hashval;
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util_cache_node_t *p, *q;
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if (cache == NULL)
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return;
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cache->removes++;
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hashval = (*cache->hash)(payload) % cache->size;
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for (p = cache->nodes[hashval], q=NULL;
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p && !(*cache->compare)(p->payload, payload);
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p = p->next) {
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q = p;
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}
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/* If p is null, it means that we couldn't find the node, so just return */
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if (p == NULL)
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return;
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if (q == NULL) {
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/* We found the node, and it's the first in the list */
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cache->nodes[hashval] = p->next;
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}
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else {
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/* We found the node and it's not the first in the list */
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q->next = p->next;
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}
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(*cache->free)(p->payload);
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util_ald_free(p);
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cache->numentries--;
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}
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char *util_ald_cache_display_stats(apr_pool_t *p, util_ald_cache_t *cache, char *name)
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{
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int i;
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int totchainlen = 0;
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int nchains = 0;
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double chainlen;
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util_cache_node_t *n;
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char *buf;
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if (cache == NULL) {
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return "";
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}
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for (i=0; i < cache->size; ++i) {
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if (cache->nodes[i] != NULL) {
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nchains++;
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for (n = cache->nodes[i]; n != NULL; n = n->next)
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totchainlen++;
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}
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}
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chainlen = nchains? (double)totchainlen / (double)nchains : 0;
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buf = apr_psprintf(p,
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"<tr valign='top'>"
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"<td nowrap>%s</td>"
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"<td align='right' nowrap>%lu (%.0f%% full)</td>"
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"<td align='right'>%.1f</td>"
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"<td align='right'>%lu/%lu</td>"
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"<td align='right'>%.0f%%</td>"
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"<td align='right'>%lu/%lu</td>",
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name,
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cache->numentries,
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(double)cache->numentries / (double)cache->maxentries * 100.0,
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chainlen,
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cache->hits,
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cache->fetches,
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(cache->fetches > 0 ? (double)(cache->hits) / (double)(cache->fetches) * 100.0 : 100.0),
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cache->inserts,
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cache->removes);
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if (cache->numpurges) {
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char str_ctime[APR_CTIME_LEN];
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apr_ctime(str_ctime, cache->last_purge);
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buf = apr_psprintf(p,
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"%s"
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"<td align='right'>%lu</td>\n"
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"<td align='right' nowrap>%s</td>\n",
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buf,
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cache->numpurges,
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str_ctime);
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}
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else {
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buf = apr_psprintf(p,
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"%s<td colspan='2' align='center'>(none)</td>\n",
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buf);
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}
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buf = apr_psprintf(p, "%s<td align='right'>%.2g</td>\n</tr>", buf, cache->avg_purgetime);
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return buf;
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}
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char *util_ald_cache_display(apr_pool_t *pool)
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{
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int i;
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char *buf, *t1, *t2, *t3;
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if (!util_ldap_cache) {
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return "<tr valign='top'><td nowrap colspan=7>Cache has not been enabled/initialised.</td></tr>";
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}
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buf = util_ald_cache_display_stats(pool, util_ldap_cache, "LDAP URL Cache");
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for (i=0; i < util_ldap_cache->size; ++i) {
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util_cache_node_t *p;
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for (p = util_ldap_cache->nodes[i]; p != NULL; p = p->next) {
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util_url_node_t *n;
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n = (util_url_node_t *)p->payload;
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t1 = apr_psprintf(pool, "%s (Searches)", n->url);
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t2 = apr_psprintf(pool, "%s (Compares)", n->url);
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t3 = apr_psprintf(pool, "%s (DNCompares)", n->url);
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buf = apr_psprintf(pool, "%s\n\n"
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"%s\n\n"
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"%s\n\n"
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"%s\n\n",
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buf,
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util_ald_cache_display_stats(pool, n->search_cache, t1),
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util_ald_cache_display_stats(pool, n->compare_cache, t2),
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util_ald_cache_display_stats(pool, n->dn_compare_cache, t3)
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);
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}
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}
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return buf;
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}
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#endif /* APU_HAS_LDAP */
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