2024-10-16 13:42:59 +03:00
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#include <stdio.h>
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#include "ipset.h"
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#include "gzip.h"
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#include "helpers.h"
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// inplace tolower() and add to pool
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static bool addpool(ipset *ips, char **s, const char *end, int *ct)
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{
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char *p, cidr[128];
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size_t l;
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struct cidr4 c4;
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struct cidr6 c6;
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// advance until eol
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for (p=*s; p<end && *p && *p!='\r' && *p != '\n'; p++);
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// comment line
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if (!(**s == '#' || **s == ';' || **s == '/' || **s == '\r' || **s == '\n' ))
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{
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l = p-*s;
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if (l>=sizeof(cidr)) l=sizeof(cidr)-1;
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memcpy(cidr,*s,l);
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cidr[l]=0;
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rtrim(cidr);
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if (parse_cidr4(cidr,&c4))
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{
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if (!ipset4AddCidr(&ips->ips4, &c4))
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{
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ipsetDestroy(ips);
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return false;
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}
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(*ct)++;
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}
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else if (parse_cidr6(cidr,&c6))
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{
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if (!ipset6AddCidr(&ips->ips6, &c6))
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{
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ipsetDestroy(ips);
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return false;
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}
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(*ct)++;
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}
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else
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DLOG_ERR("bad ip or subnet : %s\n",cidr);
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}
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// advance to the next line
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for (; p<end && (!*p || *p=='\r' || *p=='\n') ; p++);
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*s = p;
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return true;
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}
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static bool AppendIpset(ipset *ips, const char *filename)
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{
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char *p, *e, s[256], *zbuf;
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size_t zsize;
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int ct = 0;
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FILE *F;
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int r;
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DLOG_CONDUP("Loading ipset %s\n",filename);
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if (!(F = fopen(filename, "rb")))
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{
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DLOG_ERR("Could not open %s\n", filename);
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return false;
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}
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if (is_gzip(F))
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{
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r = z_readfile(F,&zbuf,&zsize);
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fclose(F);
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if (r==Z_OK)
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{
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DLOG_CONDUP("zlib compression detected. uncompressed size : %zu\n", zsize);
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2024-10-16 14:25:16 +03:00
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2024-10-16 13:42:59 +03:00
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p = zbuf;
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e = zbuf + zsize;
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while(p<e)
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{
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if (!addpool(ips,&p,e,&ct))
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{
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DLOG_ERR("Not enough memory to store ipset : %s\n", filename);
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free(zbuf);
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return false;
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}
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}
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free(zbuf);
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}
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else
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{
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DLOG_ERR("zlib decompression failed : result %d\n",r);
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return false;
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}
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}
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else
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{
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DLOG_CONDUP("loading plain text list\n");
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2024-10-16 14:26:09 +03:00
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2024-10-16 13:42:59 +03:00
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while (fgets(s, sizeof(s)-1, F))
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{
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p = s;
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if (!addpool(ips,&p,p+strlen(p),&ct))
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{
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DLOG_ERR("Not enough memory to store ipset : %s\n", filename);
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fclose(F);
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return false;
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}
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}
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fclose(F);
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}
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DLOG_CONDUP("Loaded %d ip/subnets from %s\n", ct, filename);
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return true;
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}
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static bool LoadIpsets(ipset *ips, struct str_list_head *file_list)
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{
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struct str_list *file;
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ipsetDestroy(ips);
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LIST_FOREACH(file, file_list, next)
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{
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if (!AppendIpset(ips, file->str)) return false;
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}
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return true;
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}
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bool LoadIncludeIpsets()
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{
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struct desync_profile_list *dpl;
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LIST_FOREACH(dpl, ¶ms.desync_profiles, next)
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if (!LoadIpsets(&dpl->dp.ips, &dpl->dp.ipset_files))
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return false;
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return true;
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}
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bool LoadExcludeIpsets()
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{
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struct desync_profile_list *dpl;
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LIST_FOREACH(dpl, ¶ms.desync_profiles, next)
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if (!LoadIpsets(&dpl->dp.ips_exclude, &dpl->dp.ipset_exclude_files))
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return false;
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return true;
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}
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bool SearchIpset(const ipset *ips, const struct in_addr *ipv4, const struct in6_addr *ipv6)
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{
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char s_ip[40];
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bool bInSet=false;
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if (!!ipv4 != !!ipv6)
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{
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*s_ip=0;
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if (ipv4)
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{
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if (params.debug) inet_ntop(AF_INET, ipv4, s_ip, sizeof(s_ip));
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if (ips->ips4) bInSet = ipset4Check(ips->ips4, ipv4, 32);
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}
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if (ipv6)
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{
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if (params.debug) inet_ntop(AF_INET6, ipv6, s_ip, sizeof(s_ip));
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if (ips->ips6) bInSet = ipset6Check(ips->ips6, ipv6, 128);
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}
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DLOG("ipset check for %s : %s\n", s_ip, bInSet ? "positive" : "negative");
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}
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else
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// ipv4 and ipv6 are both empty or non-empty
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DLOG("ipset check error !!!!!!!! ipv4=%p ipv6=%p\n",ipv4,ipv6);
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return bInSet;
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}
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static bool IpsetCheck_(const ipset *ips, const ipset *ips_exclude, const struct in_addr *ipv4, const struct in6_addr *ipv6)
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{
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if (!IPSET_EMPTY(ips_exclude))
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{
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DLOG("exclude ");
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if (SearchIpset(ips_exclude, ipv4, ipv6))
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return false;
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}
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if (!IPSET_EMPTY(ips))
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{
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DLOG("include ");
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return SearchIpset(ips, ipv4, ipv6);
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}
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return true;
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}
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bool IpsetCheck(struct desync_profile *dp, const struct in_addr *ipv4, const struct in6_addr *ipv6)
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{
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if (!PROFILE_IPSETS_EMPTY(dp)) DLOG("* ipset check for profile %d\n",dp->n);
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return IpsetCheck_(&dp->ips,&dp->ips_exclude,ipv4,ipv6);
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}
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