mirror of
https://github.com/bol-van/zapret.git
synced 2024-12-21 07:21:30 +03:00
278 lines
5.7 KiB
C
278 lines
5.7 KiB
C
#define _GNU_SOURCE
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#include "pools.h"
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#include <string.h>
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#include <stdlib.h>
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#include <stdio.h>
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#define DESTROY_STR_POOL(etype, ppool) \
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etype *elem, *tmp; \
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HASH_ITER(hh, *ppool, elem, tmp) { \
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free(elem->str); \
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HASH_DEL(*ppool, elem); \
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free(elem); \
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}
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#define ADD_STR_POOL(etype, ppool, keystr, keystr_len) \
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etype *elem; \
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if (!(elem = (etype*)malloc(sizeof(etype)))) \
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return false; \
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if (!(elem->str = malloc(keystr_len + 1))) \
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{ \
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free(elem); \
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return false; \
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} \
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memcpy(elem->str, keystr, keystr_len); \
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elem->str[keystr_len] = 0; \
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oom = false; \
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HASH_ADD_KEYPTR(hh, *ppool, elem->str, strlen(elem->str), elem); \
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if (oom) \
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{ \
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free(elem->str); \
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free(elem); \
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return false; \
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}
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#undef uthash_nonfatal_oom
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#define uthash_nonfatal_oom(elt) ut_oom_recover(elt)
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static bool oom = false;
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static void ut_oom_recover(void *elem)
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{
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oom = true;
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}
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// for not zero terminated strings
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bool StrPoolAddStrLen(strpool **pp, const char *s, size_t slen)
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{
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ADD_STR_POOL(strpool, pp, s, slen)
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return true;
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}
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// for zero terminated strings
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bool StrPoolAddStr(strpool **pp, const char *s)
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{
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return StrPoolAddStrLen(pp, s, strlen(s));
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}
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bool StrPoolCheckStr(strpool *p, const char *s)
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{
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strpool *elem;
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HASH_FIND_STR(p, s, elem);
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return elem != NULL;
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}
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void StrPoolDestroy(strpool **pp)
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{
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DESTROY_STR_POOL(strpool, pp)
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}
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void HostFailPoolDestroy(hostfail_pool **pp)
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{
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DESTROY_STR_POOL(hostfail_pool, pp)
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}
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hostfail_pool * HostFailPoolAdd(hostfail_pool **pp,const char *s,int fail_time)
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{
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size_t slen = strlen(s);
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ADD_STR_POOL(hostfail_pool, pp, s, slen)
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elem->expire = time(NULL) + fail_time;
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elem->counter = 0;
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return elem;
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}
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hostfail_pool *HostFailPoolFind(hostfail_pool *p,const char *s)
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{
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hostfail_pool *elem;
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HASH_FIND_STR(p, s, elem);
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return elem;
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}
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void HostFailPoolDel(hostfail_pool **p, hostfail_pool *elem)
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{
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HASH_DEL(*p, elem);
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free(elem);
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}
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void HostFailPoolPurge(hostfail_pool **pp)
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{
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hostfail_pool *elem, *tmp;
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time_t now = time(NULL);
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HASH_ITER(hh, *pp, elem, tmp)
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{
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if (now >= elem->expire)
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{
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free(elem->str);
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HASH_DEL(*pp, elem);
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free(elem);
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}
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}
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}
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static time_t host_fail_purge_prev=0;
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void HostFailPoolPurgeRateLimited(hostfail_pool **pp)
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{
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time_t now = time(NULL);
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// do not purge too often to save resources
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if (host_fail_purge_prev != now)
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{
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HostFailPoolPurge(pp);
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host_fail_purge_prev = now;
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}
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}
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void HostFailPoolDump(hostfail_pool *p)
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{
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hostfail_pool *elem, *tmp;
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time_t now = time(NULL);
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HASH_ITER(hh, p, elem, tmp)
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printf("host=%s counter=%d time_left=%lld\n",elem->str,elem->counter,(long long int)elem->expire-now);
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}
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bool strlist_add(struct str_list_head *head, const char *filename)
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{
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struct str_list *entry = malloc(sizeof(struct str_list));
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if (!entry) return false;
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entry->str = strdup(filename);
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if (!entry->str)
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{
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free(entry);
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return false;
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}
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LIST_INSERT_HEAD(head, entry, next);
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return true;
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}
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static void strlist_entry_destroy(struct str_list *entry)
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{
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if (entry->str) free(entry->str);
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free(entry);
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}
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void strlist_destroy(struct str_list_head *head)
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{
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struct str_list *entry;
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while ((entry = LIST_FIRST(head)))
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{
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LIST_REMOVE(entry, next);
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strlist_entry_destroy(entry);
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}
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}
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void ipset4Destroy(ipset4 **ipset)
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{
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ipset4 *elem, *tmp;
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HASH_ITER(hh, *ipset, elem, tmp)
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{
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HASH_DEL(*ipset, elem);
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free(elem);
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}
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}
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bool ipset4Check(ipset4 *ipset, const struct in_addr *a, uint8_t preflen)
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{
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uint32_t ip = ntohl(a->s_addr);
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struct cidr4 cidr;
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ipset4 *ips_found;
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// zero alignment bytes
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memset(&cidr,0,sizeof(cidr));
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cidr.preflen = preflen+1;
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do
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{
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cidr.preflen--;
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cidr.addr.s_addr = htonl(ip & mask_from_preflen(cidr.preflen));
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HASH_FIND(hh, ipset, &cidr, sizeof(cidr), ips_found);
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if (ips_found) return true;
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} while(cidr.preflen);
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return false;
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}
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bool ipset4Add(ipset4 **ipset, const struct in_addr *a, uint8_t preflen)
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{
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if (preflen>32) return false;
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// avoid dups
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if (ipset4Check(*ipset, a, preflen)) return true; // already included
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struct ipset4 *entry = calloc(1,sizeof(ipset4));
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if (!entry) return false;
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entry->cidr.addr.s_addr = htonl(ntohl(a->s_addr) & mask_from_preflen(preflen));
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entry->cidr.preflen = preflen;
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oom = false;
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HASH_ADD(hh, *ipset, cidr, sizeof(entry->cidr), entry);
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if (oom) { free(entry); return false; }
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return true;
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}
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void ipset4Print(ipset4 *ipset)
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{
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ipset4 *ips, *tmp;
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HASH_ITER(hh, ipset , ips, tmp)
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{
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print_cidr4(&ips->cidr);
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printf("\n");
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}
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}
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void ipset6Destroy(ipset6 **ipset)
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{
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ipset6 *elem, *tmp;
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HASH_ITER(hh, *ipset, elem, tmp)
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{
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HASH_DEL(*ipset, elem);
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free(elem);
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}
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}
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bool ipset6Check(ipset6 *ipset, const struct in6_addr *a, uint8_t preflen)
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{
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struct cidr6 cidr;
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ipset6 *ips_found;
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// zero alignment bytes
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memset(&cidr,0,sizeof(cidr));
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cidr.preflen = preflen+1;
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do
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{
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cidr.preflen--;
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ip6_and(a, mask_from_preflen6(cidr.preflen), &cidr.addr);
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HASH_FIND(hh, ipset, &cidr, sizeof(cidr), ips_found);
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if (ips_found) return true;
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} while(cidr.preflen);
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return false;
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}
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bool ipset6Add(ipset6 **ipset, const struct in6_addr *a, uint8_t preflen)
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{
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if (preflen>128) return false;
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// avoid dups
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if (ipset6Check(*ipset, a, preflen)) return true; // already included
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struct ipset6 *entry = calloc(1,sizeof(ipset6));
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if (!entry) return false;
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ip6_and(a, mask_from_preflen6(preflen), &entry->cidr.addr);
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entry->cidr.preflen = preflen;
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oom = false;
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HASH_ADD(hh, *ipset, cidr, sizeof(entry->cidr), entry);
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if (oom) { free(entry); return false; }
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return true;
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}
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void ipset6Print(ipset6 *ipset)
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{
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ipset6 *ips, *tmp;
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HASH_ITER(hh, ipset , ips, tmp)
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{
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print_cidr6(&ips->cidr);
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printf("\n");
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}
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}
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void ipsetDestroy(ipset *ipset)
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{
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ipset4Destroy(&ipset->ips4);
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ipset6Destroy(&ipset->ips6);
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}
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void ipsetPrint(ipset *ipset)
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{
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ipset4Print(ipset->ips4);
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ipset6Print(ipset->ips6);
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}
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