573 lines
20 KiB
C
573 lines
20 KiB
C
/*
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* IRC - Internet Relay Chat, ircd/IPcheck.c
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* Copyright (C) 1998 Carlo Wood ( Run @ undernet.org )
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; either version 2, or (at your option)
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* any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
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*/
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/** @file
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* @brief Code to count users connected from particular IP addresses.
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* @version $Id: IPcheck.c 1456 2005-08-15 23:22:50Z entrope $
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*/
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#include "config.h"
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#include "IPcheck.h"
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#include "client.h"
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#include "ircd.h"
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#include "match.h"
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#include "msg.h"
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#include "ircd_alloc.h"
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#include "ircd_events.h"
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#include "ircd_features.h"
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#include "ircd_log.h"
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#include "ircd_string.h" /* ircd_ntoa */
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#include "s_debug.h" /* Debug */
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#include "s_user.h" /* TARGET_DELAY */
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#include "send.h"
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/* #include <assert.h> -- Now using assert in ircd_log.h */
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#include <string.h>
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/** Stores free target information for a particular user. */
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struct IPTargetEntry {
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unsigned int count; /**< Number of free targets targets. */
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unsigned char targets[MAXTARGETS]; /**< Array of recent targets. */
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};
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/** Stores recent information about a particular IP address. */
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struct IPRegistryEntry {
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struct IPRegistryEntry* next; /**< Next entry in the hash chain. */
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struct IPTargetEntry* target; /**< Recent targets, if any. */
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struct irc_in_addr addr; /**< IP address for this user. */
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int last_connect; /**< Last connection attempt timestamp. */
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unsigned short connected; /**< Number of currently connected clients. */
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unsigned char attempts; /**< Number of recent connection attempts. */
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};
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/** Size of hash table (must be a power of two). */
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#define IP_REGISTRY_TABLE_SIZE 0x10000
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/** Report current time for tracking in IPRegistryEntry::last_connect. */
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#define NOW ((unsigned short)(CurrentTime & 0xffff))
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/** Time from \a x until now, in seconds. */
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#define CONNECTED_SINCE(x) (NOW - (x))
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/** Macro for easy access to configured IPcheck clone limit. */
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#define IPCHECK_CLONE_LIMIT feature_int(FEAT_IPCHECK_CLONE_LIMIT)
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/** Macro for easy access to configured IPcheck clone period. */
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#define IPCHECK_CLONE_PERIOD feature_int(FEAT_IPCHECK_CLONE_PERIOD)
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/** Macro for easy access to configured IPcheck clone delay. */
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#define IPCHECK_CLONE_DELAY feature_int(FEAT_IPCHECK_CLONE_DELAY)
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/** Hash table for storing IPRegistryEntry entries. */
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static struct IPRegistryEntry* hashTable[IP_REGISTRY_TABLE_SIZE];
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/** List of allocated but unused IPRegistryEntry structs. */
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static struct IPRegistryEntry* freeList;
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/** Periodic timer to look for too-old registry entries. */
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static struct Timer expireTimer;
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/** Convert IP addresses to canonical form for comparison. IPv4
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* addresses are translated into 6to4 form; IPv6 addresses are left
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* alone.
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* @param[out] out Receives canonical format for address.
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* @param[in] in IP address to canonicalize.
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*/
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static void ip_registry_canonicalize(struct irc_in_addr *out, const struct irc_in_addr *in)
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{
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if (irc_in_addr_is_ipv4(in)) {
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out->in6_16[0] = htons(0x2002);
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out->in6_16[1] = in->in6_16[6];
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out->in6_16[2] = in->in6_16[7];
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out->in6_16[3] = out->in6_16[4] = out->in6_16[5] = 0;
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out->in6_16[6] = out->in6_16[7] = 0;
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} else
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memcpy(out, in, sizeof(*out));
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}
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/** Calculate hash value for an IP address.
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* @param[in] ip Address to hash; must be in canonical form.
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* @return Hash value for address.
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*/
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static unsigned int ip_registry_hash(const struct irc_in_addr *ip)
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{
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unsigned int res;
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/* Only use the first 64 bits of address, since the last 64 bits
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* tend to be under user control. */
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res = ip->in6_16[0] ^ ip->in6_16[1] ^ ip->in6_16[2] ^ ip->in6_16[3];
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return res & (IP_REGISTRY_TABLE_SIZE - 1);
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}
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/** Find an IP registry entry if one exists for the IP address.
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* If \a ip looks like an IPv6 address, only consider the first 64 bits
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* of the address. Otherwise, only consider the final 32 bits.
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* @param[in] ip IP address to search for.
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* @return Matching registry entry, or NULL if none exists.
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*/
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static struct IPRegistryEntry* ip_registry_find(const struct irc_in_addr *ip)
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{
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struct irc_in_addr canon;
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struct IPRegistryEntry* entry;
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ip_registry_canonicalize(&canon, ip);
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entry = hashTable[ip_registry_hash(&canon)];
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for ( ; entry; entry = entry->next) {
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int bits = (canon.in6_16[0] == htons(0x2002)) ? 48 : 64;
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if (ipmask_check(&canon, &entry->addr, bits))
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break;
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}
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return entry;
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}
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/** Add an IP registry entry to the hash table.
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* @param[in] entry Registry entry to add.
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*/
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static void ip_registry_add(struct IPRegistryEntry* entry)
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{
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unsigned int bucket = ip_registry_hash(&entry->addr);
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entry->next = hashTable[bucket];
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hashTable[bucket] = entry;
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}
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/** Remove an IP registry entry from the hash table.
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* @param[in] entry Registry entry to add.
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*/
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static void ip_registry_remove(struct IPRegistryEntry* entry)
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{
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unsigned int bucket = ip_registry_hash(&entry->addr);
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if (hashTable[bucket] == entry)
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hashTable[bucket] = entry->next;
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else {
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struct IPRegistryEntry* prev = hashTable[bucket];
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for ( ; prev; prev = prev->next) {
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if (prev->next == entry) {
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prev->next = entry->next;
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break;
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}
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}
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}
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}
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/** Allocate a new IP registry entry.
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* For members that have a sensible default value, that is used.
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* @return Newly allocated registry entry.
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*/
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static struct IPRegistryEntry* ip_registry_new_entry(void)
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{
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struct IPRegistryEntry* entry = freeList;
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if (entry)
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freeList = entry->next;
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else
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entry = (struct IPRegistryEntry*) MyMalloc(sizeof(struct IPRegistryEntry));
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assert(0 != entry);
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memset(entry, 0, sizeof(struct IPRegistryEntry));
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entry->last_connect = NOW; /* Seconds since last connect attempt */
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entry->connected = 1; /* connected clients for this IP */
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entry->attempts = 1; /* Number attempts for this IP */
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return entry;
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}
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/** Deallocate memory for \a entry.
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* The entry itself is prepended to #freeList.
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* @param[in] entry IP registry entry to release.
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*/
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static void ip_registry_delete_entry(struct IPRegistryEntry* entry)
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{
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if (entry->target)
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MyFree(entry->target);
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entry->next = freeList;
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freeList = entry;
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}
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/** Update free target count for \a entry.
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* @param[in,out] entry IP registry entry to update.
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*/
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static unsigned int ip_registry_update_free_targets(struct IPRegistryEntry* entry)
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{
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unsigned int free_targets = STARTTARGETS;
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if (entry->target) {
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free_targets = entry->target->count + (CONNECTED_SINCE(entry->last_connect) / TARGET_DELAY);
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if (free_targets > STARTTARGETS)
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free_targets = STARTTARGETS;
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entry->target->count = free_targets;
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}
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return free_targets;
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}
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/** Check whether all or part of \a entry needs to be expired.
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* If the entry is at least 600 seconds stale, free the entire thing.
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* If it is at least 120 seconds stale, expire its free targets list.
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* @param[in] entry Registry entry to check for expiration.
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*/
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static void ip_registry_expire_entry(struct IPRegistryEntry* entry)
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{
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/*
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* Don't touch this number, it has statistical significance
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* XXX - blah blah blah
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*/
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if (CONNECTED_SINCE(entry->last_connect) > 600) {
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/*
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* expired
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*/
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Debug((DEBUG_DNS, "IPcheck expiring registry for %s (no clients connected).", ircd_ntoa(&entry->addr)));
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ip_registry_remove(entry);
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ip_registry_delete_entry(entry);
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}
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else if (CONNECTED_SINCE(entry->last_connect) > 120 && 0 != entry->target) {
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/*
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* Expire storage of targets
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*/
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MyFree(entry->target);
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entry->target = 0;
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}
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}
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/** Periodic timer callback to check for expired registry entries.
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* @param[in] ev Timer event (ignored).
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*/
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static void ip_registry_expire(struct Event* ev)
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{
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int i;
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struct IPRegistryEntry* entry;
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struct IPRegistryEntry* entry_next;
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assert(ET_EXPIRE == ev_type(ev));
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assert(0 != ev_timer(ev));
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for (i = 0; i < IP_REGISTRY_TABLE_SIZE; ++i) {
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for (entry = hashTable[i]; entry; entry = entry_next) {
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entry_next = entry->next;
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if (0 == entry->connected)
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ip_registry_expire_entry(entry);
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}
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}
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}
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/** Initialize the IPcheck subsystem. */
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void IPcheck_init(void)
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{
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timer_add(timer_init(&expireTimer), ip_registry_expire, 0, TT_PERIODIC, 60);
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}
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/** Check whether a new connection from a local client should be allowed.
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* A connection is rejected if someone from the "same" address (see
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* ip_registry_find()) connects IPCHECK_CLONE_LIMIT times, each time
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* separated by no more than IPCHECK_CLONE_PERIOD seconds.
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* @param[in] addr Address of client.
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* @param[out] next_target_out Receives time to grant another free target.
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* @return Non-zero if the connection is permitted, zero if denied.
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*/
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int ip_registry_check_local(const struct irc_in_addr *addr, time_t* next_target_out)
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{
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struct IPRegistryEntry* entry = ip_registry_find(addr);
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unsigned int free_targets = STARTTARGETS;
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if (0 == entry) {
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entry = ip_registry_new_entry();
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ip_registry_canonicalize(&entry->addr, addr);
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ip_registry_add(entry);
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Debug((DEBUG_DNS, "IPcheck added new registry for local connection from %s.", ircd_ntoa(&entry->addr)));
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return 1;
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}
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/* Note that this also counts server connects.
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* It is hard and not interesting, to change that.
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* Refuse connection if it would overflow the counter.
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*/
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if (0 == ++entry->connected)
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{
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entry->connected--;
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Debug((DEBUG_DNS, "IPcheck refusing local connection from %s: counter overflow.", ircd_ntoa(&entry->addr)));
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return 0;
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}
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if (CONNECTED_SINCE(entry->last_connect) > IPCHECK_CLONE_PERIOD)
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entry->attempts = 0;
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free_targets = ip_registry_update_free_targets(entry);
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entry->last_connect = NOW;
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if (0 == ++entry->attempts) /* Check for overflow */
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--entry->attempts;
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if (entry->attempts < IPCHECK_CLONE_LIMIT) {
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if (next_target_out)
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*next_target_out = CurrentTime - (TARGET_DELAY * free_targets - 1);
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}
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else if ((CurrentTime - cli_since(&me)) > IPCHECK_CLONE_DELAY) {
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/*
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* Don't refuse connection when we just rebooted the server
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*/
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#ifndef NOTHROTTLE
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assert(entry->connected > 0);
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--entry->connected;
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Debug((DEBUG_DNS, "IPcheck refusing local connection from %s: too fast.", ircd_ntoa(&entry->addr)));
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return 0;
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#endif
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}
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Debug((DEBUG_DNS, "IPcheck accepting local connection from %s.", ircd_ntoa(&entry->addr)));
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return 1;
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}
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/** Check whether a connection from a remote client should be allowed.
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* This is much more relaxed than ip_registry_check_local(): The only
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* cause for rejection is when the IPRegistryEntry::connected counter
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* would overflow.
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* @param[in] cptr Client that has connected.
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* @param[in] is_burst Non-zero if client was introduced during a burst.
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* @return Non-zero if the client should be accepted, zero if they must be killed.
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*/
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int ip_registry_check_remote(struct Client* cptr, int is_burst)
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{
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struct IPRegistryEntry* entry;
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/*
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* Mark that we did add/update an IPregistry entry
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*/
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SetIPChecked(cptr);
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if (!irc_in_addr_valid(&cli_ip(cptr))) {
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Debug((DEBUG_DNS, "IPcheck accepting remote connection from invalid %s.", ircd_ntoa(&cli_ip(cptr))));
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return 1;
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}
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entry = ip_registry_find(&cli_ip(cptr));
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if (0 == entry) {
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entry = ip_registry_new_entry();
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ip_registry_canonicalize(&entry->addr, &cli_ip(cptr));
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if (is_burst)
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entry->attempts = 0;
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ip_registry_add(entry);
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Debug((DEBUG_DNS, "IPcheck added new registry for remote connection from %s.", ircd_ntoa(&entry->addr)));
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return 1;
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}
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/* Avoid overflowing the connection counter. */
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if (0 == ++entry->connected) {
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Debug((DEBUG_DNS, "IPcheck refusing remote connection from %s: counter overflow.", ircd_ntoa(&entry->addr)));
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return 0;
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}
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if (CONNECTED_SINCE(entry->last_connect) > IPCHECK_CLONE_PERIOD)
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entry->attempts = 0;
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if (!is_burst) {
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if (0 == ++entry->attempts) {
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/*
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* Check for overflow
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*/
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--entry->attempts;
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}
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ip_registry_update_free_targets(entry);
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entry->last_connect = NOW;
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}
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Debug((DEBUG_DNS, "IPcheck counting remote connection from %s.", ircd_ntoa(&entry->addr)));
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return 1;
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}
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/** Handle a client being rejected during connection through no fault
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* of their own. This "undoes" the effect of ip_registry_check_local()
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* so the client's address is not penalized for the failure.
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* @param[in] addr Address of rejected client.
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* @param[in] disconnect If true, also count the client as disconnecting.
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*/
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void ip_registry_connect_fail(const struct irc_in_addr *addr, int disconnect)
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{
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struct IPRegistryEntry* entry = ip_registry_find(addr);
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if (entry) {
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if (0 == --entry->attempts) {
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Debug((DEBUG_DNS, "IPcheck noting local connection failure for %s.", ircd_ntoa(&entry->addr)));
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++entry->attempts;
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}
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if (disconnect) {
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assert(entry->connected > 0);
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entry->connected--;
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}
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}
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}
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/** Handle a client that has successfully connected.
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* This copies free target information to \a cptr from his address's
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* registry entry and sends him a NOTICE describing the parameters for
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* the entry.
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* @param[in,out] cptr Client that has successfully connected.
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*/
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void ip_registry_connect_succeeded(struct Client *cptr)
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{
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const char* tr = "";
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unsigned int free_targets = STARTTARGETS;
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struct IPRegistryEntry* entry = ip_registry_find(&cli_ip(cptr));
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assert(entry);
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if (entry->target) {
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memcpy(cli_targets(cptr), entry->target->targets, MAXTARGETS);
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free_targets = entry->target->count;
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tr = " tr";
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}
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Debug((DEBUG_DNS, "IPcheck noting local connection success for %s.", ircd_ntoa(&entry->addr)));
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sendcmdto_one(&me, CMD_NOTICE, cptr, "%C :on %u ca %u(%u) ft %u(%u)%s",
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cptr, entry->connected, entry->attempts, IPCHECK_CLONE_LIMIT,
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free_targets, STARTTARGETS, tr);
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}
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/** Handle a client that decided to disconnect (or was killed after
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* completing his connection). This updates the free target
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* information for his IP registry entry.
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* @param[in] cptr Client that has exited.
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*/
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void ip_registry_disconnect(struct Client *cptr)
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{
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struct IPRegistryEntry* entry = ip_registry_find(&cli_ip(cptr));
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if (!irc_in_addr_valid(&cli_ip(cptr))) {
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Debug((DEBUG_DNS, "IPcheck noting dicconnect from invalid %s.", ircd_ntoa(&cli_ip(cptr))));
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return;
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}
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assert(entry);
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assert(entry->connected > 0);
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Debug((DEBUG_DNS, "IPcheck noting disconnect from %s.", ircd_ntoa(&entry->addr)));
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/*
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* If this was the last one, set `last_connect' to disconnect time (used for expiration)
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*/
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if (0 == --entry->connected) {
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if (CONNECTED_SINCE(entry->last_connect) > IPCHECK_CLONE_LIMIT * IPCHECK_CLONE_PERIOD) {
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/*
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* Otherwise we'd penalize for this old value if the client reconnects within 20 seconds
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*/
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entry->attempts = 0;
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}
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ip_registry_update_free_targets(entry);
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entry->last_connect = NOW;
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}
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if (MyConnect(cptr)) {
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unsigned int free_targets;
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/*
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* Copy the clients targets
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*/
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if (0 == entry->target) {
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entry->target = (struct IPTargetEntry*) MyMalloc(sizeof(struct IPTargetEntry));
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entry->target->count = STARTTARGETS;
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}
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assert(0 != entry->target);
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memcpy(entry->target->targets, cli_targets(cptr), MAXTARGETS);
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/*
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* This calculation can be pretty unfair towards large multi-user hosts, but
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* there is "nothing" we can do without also allowing spam bots to send more
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* messages or by drastically increasing the amount of memory used in the IPregistry.
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*
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* The problem is that when a client disconnects, leaving no free targets, then
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* the next client from that IP number has to pay for it (getting no free targets).
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* But ALSO the next client, and the next client, and the next client etc - until
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* another client disconnects that DOES leave free targets. The reason for this
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* is that if there are 10 SPAM bots, and they all disconnect at once, then they
|
|
* ALL should get no free targets when reconnecting. We'd need to store an entry
|
|
* per client (instead of per IP number) to avoid this.
|
|
*/
|
|
if (cli_nexttarget(cptr) < CurrentTime) {
|
|
/*
|
|
* Number of free targets
|
|
*/
|
|
free_targets = (CurrentTime - cli_nexttarget(cptr)) / TARGET_DELAY + 1;
|
|
}
|
|
else
|
|
free_targets = 0;
|
|
/*
|
|
* Add bonus, this is pretty fuzzy, but it will help in some cases.
|
|
*/
|
|
if ((CurrentTime - cli_firsttime(cptr)) > 600)
|
|
/*
|
|
* Was longer then 10 minutes online?
|
|
*/
|
|
free_targets += (CurrentTime - cli_firsttime(cptr) - 600) / TARGET_DELAY;
|
|
/*
|
|
* Finally, store smallest value for Judgment Day
|
|
*/
|
|
if (free_targets < entry->target->count)
|
|
entry->target->count = free_targets;
|
|
}
|
|
}
|
|
|
|
/** Find number of clients from a particular IP address.
|
|
* @param[in] addr Address to look up.
|
|
* @return Number of clients known to be connected from that address.
|
|
*/
|
|
int ip_registry_count(const struct irc_in_addr *addr)
|
|
{
|
|
struct IPRegistryEntry* entry = ip_registry_find(addr);
|
|
return (entry) ? entry->connected : 0;
|
|
}
|
|
|
|
/** Check whether a client is allowed to connect locally.
|
|
* @param[in] a Address of client.
|
|
* @param[out] next_target_out Receives time to grant another free target.
|
|
* @return Non-zero if the connection is permitted, zero if denied.
|
|
*/
|
|
int IPcheck_local_connect(const struct irc_in_addr *a, time_t* next_target_out)
|
|
{
|
|
assert(0 != next_target_out);
|
|
return ip_registry_check_local(a, next_target_out);
|
|
}
|
|
|
|
/** Check whether a client is allowed to connect remotely.
|
|
* @param[in] cptr Client that has connected.
|
|
* @param[in] is_burst Non-zero if client was introduced during a burst.
|
|
* @return Non-zero if the client should be accepted, zero if they must be killed.
|
|
*/
|
|
int IPcheck_remote_connect(struct Client *cptr, int is_burst)
|
|
{
|
|
assert(0 != cptr);
|
|
assert(!IsIPChecked(cptr));
|
|
return ip_registry_check_remote(cptr, is_burst);
|
|
}
|
|
|
|
/** Handle a client being rejected during connection through no fault
|
|
* of their own. This "undoes" the effect of ip_registry_check_local()
|
|
* so the client's address is not penalized for the failure.
|
|
* @param[in] cptr Client who has been rejected.
|
|
* @param[in] disconnect If true, also count the client as disconnecting.
|
|
*/
|
|
void IPcheck_connect_fail(const struct Client *cptr, int disconnect)
|
|
{
|
|
assert(IsIPChecked(cptr));
|
|
ip_registry_connect_fail(&cli_ip(cptr), disconnect);
|
|
}
|
|
|
|
/** Handle a client that has successfully connected.
|
|
* This copies free target information to \a cptr from his address's
|
|
* registry entry and sends him a NOTICE describing the parameters for
|
|
* the entry.
|
|
* @param[in,out] cptr Client that has successfully connected.
|
|
*/
|
|
void IPcheck_connect_succeeded(struct Client *cptr)
|
|
{
|
|
assert(0 != cptr);
|
|
assert(IsIPChecked(cptr));
|
|
ip_registry_connect_succeeded(cptr);
|
|
}
|
|
|
|
/** Handle a client that decided to disconnect (or was killed after
|
|
* completing his connection). This updates the free target
|
|
* information for his IP registry entry.
|
|
* @param[in] cptr Client that has exited.
|
|
*/
|
|
void IPcheck_disconnect(struct Client *cptr)
|
|
{
|
|
assert(0 != cptr);
|
|
assert(IsIPChecked(cptr));
|
|
ip_registry_disconnect(cptr);
|
|
}
|
|
|
|
/** Find number of clones of a client.
|
|
* @param[in] cptr Client whose address to look up.
|
|
* @return Number of clients known to be connected from that address.
|
|
*/
|
|
unsigned short IPcheck_nr(struct Client *cptr)
|
|
{
|
|
assert(0 != cptr);
|
|
return ip_registry_count(&cli_ip(cptr));
|
|
}
|