Mercurial > dnsbl
annotate src/dnsbl.cpp @ 86:c1280cd3e248
add multiple debug syslog levels, remove duplicate dnsbl definitions
author | carl |
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date | Tue, 19 Jul 2005 22:47:15 -0700 |
parents | 091d3fe3db46 |
children | 946fc1bcfb2c |
rev | line source |
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0 | 1 /* |
2 | |
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3 Copyright (c) 2004, 2005 Carl Byington - 510 Software Group, released |
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4 under the GPL version 2 or any later version at your choice available at |
0 | 5 http://www.fsf.org/licenses/gpl.txt |
6 | |
7 Based on a sample milter Copyright (c) 2000-2003 Sendmail, Inc. and its | |
8 suppliers. Inspired by the DCC by Rhyolite Software | |
9 | |
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10 -r port The port used to talk to our internal dns resolver processes |
0 | 11 -p port The port through which the MTA will connect to this milter. |
12 -t sec The timeout value. | |
9 | 13 -c Check the config, and print a copy to stdout. Don't start the |
4 | 14 milter or do anything with the socket. |
76 | 15 -s Stress test by loading and deleting the current config in a loop. |
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16 -d increase debug level |
76 | 17 -e f|t Print the results of looking up from address f and to address |
18 t in the current config | |
16 | 19 |
0 | 20 |
13 | 21 TODO: |
22 | |
76 | 23 1) Add option for using smtp connections to verify addresses from backup |
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24 mx machines. This allows the backup mx to learn the valid addresses |
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25 on the primary machine. |
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26 |
0 | 27 */ |
28 | |
29 | |
30 // from sendmail sample | |
31 #include <sys/types.h> | |
32 #include <sys/stat.h> | |
33 #include <errno.h> | |
34 #include <sysexits.h> | |
35 #include <unistd.h> | |
36 | |
37 // needed for socket io | |
38 #include <sys/ioctl.h> | |
39 #include <net/if.h> | |
40 #include <arpa/inet.h> | |
41 #include <netinet/in.h> | |
42 #include <netinet/tcp.h> | |
43 #include <netdb.h> | |
44 #include <sys/socket.h> | |
42 | 45 #include <sys/un.h> |
0 | 46 |
47 // needed for thread | |
48 #include <pthread.h> | |
49 | |
50 // needed for std c++ collections | |
51 #include <set> | |
52 #include <map> | |
53 #include <list> | |
54 | |
55 // for the dns resolver | |
56 #include <netinet/in.h> | |
57 #include <arpa/nameser.h> | |
58 #include <resolv.h> | |
59 | |
60 // misc stuff needed here | |
61 #include <ctype.h> | |
62 #include <syslog.h> | |
42 | 63 #include <pwd.h> |
65 | 64 #include <sys/wait.h> /* header for waitpid() and various macros */ |
65 #include <signal.h> /* header for signal functions */ | |
0 | 66 |
72 | 67 #include "includes.h" |
8 | 68 |
73 | 69 static char* dnsbl_version="$Id$"; |
1 | 70 |
0 | 71 |
72 extern "C" { | |
73 #include "libmilter/mfapi.h" | |
74 sfsistat mlfi_connect(SMFICTX *ctx, char *hostname, _SOCK_ADDR *hostaddr); | |
75 sfsistat mlfi_envfrom(SMFICTX *ctx, char **argv); | |
76 sfsistat mlfi_envrcpt(SMFICTX *ctx, char **argv); | |
8 | 77 sfsistat mlfi_body(SMFICTX *ctx, u_char *data, size_t len); |
78 sfsistat mlfi_eom(SMFICTX *ctx); | |
79 sfsistat mlfi_abort(SMFICTX *ctx); | |
0 | 80 sfsistat mlfi_close(SMFICTX *ctx); |
65 | 81 void sig_chld(int signo); |
0 | 82 } |
83 | |
86
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84 int debug_syslog = 0; |
72 | 85 bool syslog_opened = false; |
75 | 86 bool use_syslog = true; // false to printf |
87 bool loader_run = true; // used to stop the config loader thread | |
76 | 88 CONFIG *config = NULL; // protected by the config_mutex |
89 int generation = 0; // protected by the config_mutex | |
90 const int maxlen = 1000; // used for snprintf buffers | |
0 | 91 |
72 | 92 pthread_mutex_t config_mutex; |
93 pthread_mutex_t syslog_mutex; | |
94 pthread_mutex_t resolve_mutex; | |
95 pthread_mutex_t fd_pool_mutex; | |
0 | 96 |
72 | 97 std::set<int> fd_pool; |
98 int NULL_SOCKET = -1; | |
99 char *resolver_port = NULL; // unix domain socket to talk to the dns resolver process | |
100 int resolver_socket = NULL_SOCKET; // socket used to listen for resolver requests | |
101 time_t ERROR_SOCKET_TIME = 60; // number of seconds between attempts to open the spam filter socket | |
102 time_t last_error_time; | |
103 int resolver_sock_count = 0; // protected with fd_pool_mutex | |
104 int resolver_pool_size = 0; // protected with fd_pool_mutex | |
105 | |
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106 |
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107 struct ns_map { |
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108 // all the strings are owned by the keys/values in the ns_host string map |
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109 string_map ns_host; // nameserver name -> host name that uses this name server |
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110 ns_mapper ns_ip; // nameserver name -> ip address of the name server |
72 | 111 ~ns_map(); |
112 void add(char *name, char *refer); | |
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113 }; |
0 | 114 |
72 | 115 |
74 | 116 ns_map::~ns_map() { |
72 | 117 for (string_map::iterator i=ns_host.begin(); i!=ns_host.end(); i++) { |
118 char *x = (*i).first; | |
119 char *y = (*i).second; | |
120 free(x); | |
121 free(y); | |
0 | 122 } |
72 | 123 ns_ip.clear(); |
124 ns_host.clear(); | |
0 | 125 } |
126 | |
127 | |
72 | 128 void ns_map::add(char *name, char *refer) { |
129 string_map::iterator i = ns_host.find(name); | |
130 if (i != ns_host.end()) return; | |
131 char *x = strdup(name); | |
132 char *y = strdup(refer); | |
133 ns_ip[x] = 0; | |
134 ns_host[x] = y; | |
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135 |
72 | 136 } |
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137 |
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138 // packed structure to allow a single socket write to dump the |
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139 // length and the following answer. The packing attribute is gcc specific. |
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140 struct glommer { |
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141 int length; |
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142 #ifdef NS_PACKETSZ |
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143 u_char answer[NS_PACKETSZ]; // with a resolver, we return resolver answers |
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144 #else |
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145 int answer; // without a resolver, we return a single ip4 address, 0 == no answer |
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146 #endif |
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147 } __attribute__ ((packed)); |
0 | 148 |
72 | 149 |
150 //////////////////////////////////////////////// | |
151 // helper to discard the strings held by a context_map | |
152 // | |
153 void discard(context_map &cm); | |
154 void discard(context_map &cm) { | |
155 for (context_map::iterator i=cm.begin(); i!=cm.end(); i++) { | |
156 char *x = (*i).first; | |
157 free(x); | |
158 } | |
76 | 159 cm.clear(); |
72 | 160 } |
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161 |
0 | 162 |
163 //////////////////////////////////////////////// | |
72 | 164 // helper to register a string in a context_map |
34 | 165 // |
72 | 166 void register_string(context_map &cm, char *name, CONTEXT *con); |
167 void register_string(context_map &cm, char *name, CONTEXT *con) { | |
168 context_map::iterator i = cm.find(name); | |
169 if (i != cm.end()) return; | |
34 | 170 char *x = strdup(name); |
72 | 171 cm[x] = con; |
34 | 172 } |
173 | |
12 | 174 |
0 | 175 //////////////////////////////////////////////// |
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176 // disconnect the fd from the dns resolver process |
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177 // |
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178 void my_disconnect(int sock, bool decrement = true); |
72 | 179 void my_disconnect(int sock, bool decrement) { |
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180 if (sock != NULL_SOCKET) { |
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181 if (decrement) { |
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182 pthread_mutex_lock(&fd_pool_mutex); |
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183 resolver_sock_count--; |
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184 pthread_mutex_unlock(&fd_pool_mutex); |
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185 } |
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186 shutdown(sock, SHUT_RDWR); |
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187 close(sock); |
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188 } |
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189 } |
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190 |
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191 |
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192 //////////////////////////////////////////////// |
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193 // return fd connected to the dns resolver process |
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194 // |
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195 int my_connect(); |
72 | 196 int my_connect() { |
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197 // if we have had recent errors, don't even try to open the socket |
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198 time_t now = time(NULL); |
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199 if ((now - last_error_time) < ERROR_SOCKET_TIME) return NULL_SOCKET; |
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200 |
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201 // nothing recent, maybe this time it will work |
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202 int sock = NULL_SOCKET; |
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203 sockaddr_un server; |
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204 memset(&server, '\0', sizeof(server)); |
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205 server.sun_family = AF_UNIX; |
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206 strncpy(server.sun_path, resolver_port, sizeof(server.sun_path)-1); |
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207 sock = socket(AF_UNIX, SOCK_STREAM, 0); |
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208 if (sock != NULL_SOCKET) { |
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209 bool rc = (connect(sock, (sockaddr *)&server, sizeof(server)) == 0); |
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210 if (!rc) { |
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211 my_disconnect(sock, false); |
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212 sock = NULL_SOCKET; |
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213 last_error_time = now; |
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214 } |
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215 } |
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216 else last_error_time = now; |
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217 if (sock != NULL_SOCKET) { |
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218 pthread_mutex_lock(&fd_pool_mutex); |
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219 resolver_sock_count++; |
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220 pthread_mutex_unlock(&fd_pool_mutex); |
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221 } |
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222 return sock; |
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223 } |
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224 |
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225 |
0 | 226 mlfiPriv::mlfiPriv() { |
227 pthread_mutex_lock(&config_mutex); | |
228 pc = config; | |
229 pc->reference_count++; | |
230 pthread_mutex_unlock(&config_mutex); | |
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231 get_fd(); |
76 | 232 ip = 0; |
233 mailaddr = NULL; | |
234 queueid = NULL; | |
235 authenticated = false; | |
236 have_whites = false; | |
237 only_whites = true; | |
238 memory = NULL; | |
239 scanner = NULL; | |
240 content_suffix = NULL; | |
241 content_message = NULL; | |
242 content_host_ignore = NULL; | |
0 | 243 } |
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244 |
0 | 245 mlfiPriv::~mlfiPriv() { |
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246 return_fd(); |
0 | 247 pthread_mutex_lock(&config_mutex); |
248 pc->reference_count--; | |
249 pthread_mutex_unlock(&config_mutex); | |
8 | 250 reset(true); |
251 } | |
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252 |
8 | 253 void mlfiPriv::reset(bool final) { |
0 | 254 if (mailaddr) free(mailaddr); |
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255 if (queueid) free(queueid); |
72 | 256 discard(env_to); |
76 | 257 if (memory) delete memory; |
258 if (scanner) delete scanner; | |
8 | 259 if (!final) { |
76 | 260 mailaddr = NULL; |
261 queueid = NULL; | |
262 authenticated = false; | |
263 have_whites = false; | |
264 only_whites = true; | |
265 memory = NULL; | |
266 scanner = NULL; | |
267 content_suffix = NULL; | |
268 content_message = NULL; | |
269 content_host_ignore = NULL; | |
8 | 270 } |
0 | 271 } |
272 | |
72 | 273 void mlfiPriv::get_fd() { |
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274 err = true; |
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275 fd = NULL_SOCKET; |
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276 int result = pthread_mutex_lock(&fd_pool_mutex); |
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277 if (!result) { |
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278 std::set<int>::iterator i; |
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279 i = fd_pool.begin(); |
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280 if (i != fd_pool.end()) { |
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281 // have at least one fd in the pool |
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282 err = false; |
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283 fd = *i; |
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284 fd_pool.erase(fd); |
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285 resolver_pool_size--; |
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286 pthread_mutex_unlock(&fd_pool_mutex); |
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287 } |
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288 else { |
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289 // pool is empty, get a new fd |
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290 pthread_mutex_unlock(&fd_pool_mutex); |
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291 fd = my_connect(); |
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292 err = (fd == NULL_SOCKET); |
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293 } |
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294 } |
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295 else { |
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296 // cannot lock the pool, just get a new fd |
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297 fd = my_connect(); |
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298 err = (fd == NULL_SOCKET); |
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299 } |
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300 } |
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301 |
72 | 302 void mlfiPriv::return_fd() { |
59
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303 if (err) { |
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304 // this fd got a socket error, so close it, rather than returning it to the pool |
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305 my_disconnect(fd); |
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306 } |
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307 else { |
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308 int result = pthread_mutex_lock(&fd_pool_mutex); |
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309 if (!result) { |
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310 if ((resolver_sock_count > resolver_pool_size*5) || (resolver_pool_size < 5)) { |
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311 // return the fd to the pool |
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312 fd_pool.insert(fd); |
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313 resolver_pool_size++; |
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314 pthread_mutex_unlock(&fd_pool_mutex); |
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315 } |
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316 else { |
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317 // more than 20% of the open resolver sockets are in the pool, and the |
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318 // pool as at least 5 sockets. that is enough, so just close this one. |
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319 pthread_mutex_unlock(&fd_pool_mutex); |
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320 my_disconnect(fd); |
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321 } |
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322 } |
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323 else { |
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324 // could not lock the pool, so just close the fd |
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325 my_disconnect(fd); |
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326 } |
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327 } |
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328 } |
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329 |
72 | 330 int mlfiPriv::my_write(char *buf, int len) { |
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331 if (err) return 0; |
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332 int rs = 0; |
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333 while (len) { |
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334 int ws = write(fd, buf, len); |
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335 if (ws > 0) { |
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336 rs += ws; |
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337 len -= ws; |
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338 buf += ws; |
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339 } |
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340 else { |
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341 // peer closed the socket! |
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342 rs = 0; |
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343 err = true; |
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344 break; |
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345 } |
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346 } |
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347 return rs; |
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348 } |
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349 |
72 | 350 int mlfiPriv::my_read(char *buf, int len) { |
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351 if (err) return 0; |
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352 int rs = 0; |
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353 while (len > 1) { |
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354 int ws = read(fd, buf, len); |
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355 if (ws > 0) { |
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356 rs += ws; |
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357 len -= ws; |
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358 buf += ws; |
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359 } |
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360 else { |
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361 // peer closed the socket! |
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362 rs = 0; |
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363 err = true; |
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364 break; |
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365 } |
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366 } |
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367 return rs; |
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368 } |
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369 |
72 | 370 void mlfiPriv::need_content_filter(char *rcpt, CONTEXT &con) { |
371 register_string(env_to, rcpt, &con); | |
76 | 372 if (!memory) { |
373 // first recipient that needs content filtering sets all | |
374 // the content filtering parameters | |
375 memory = new recorder(this, con.get_html_tags(), con.get_content_tlds()); | |
376 scanner = new url_scanner(memory); | |
377 content_suffix = con.get_content_suffix(); | |
378 content_message = con.get_content_message(); | |
379 content_host_ignore = &con.get_content_host_ignore(); | |
380 } | |
72 | 381 } |
382 | |
0 | 383 #define MLFIPRIV ((struct mlfiPriv *) smfi_getpriv(ctx)) |
384 | |
385 | |
386 //////////////////////////////////////////////// | |
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387 // syslog a message |
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388 // |
72 | 389 void my_syslog(mlfiPriv *priv, char *text) { |
76 | 390 char buf[maxlen]; |
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391 if (priv) { |
42 | 392 snprintf(buf, sizeof(buf), "%s: %s", priv->queueid, text); |
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393 text = buf; |
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394 } |
75 | 395 if (use_syslog) { |
396 pthread_mutex_lock(&syslog_mutex); | |
397 if (!syslog_opened) { | |
398 openlog("dnsbl", LOG_PID, LOG_MAIL); | |
399 syslog_opened = true; | |
400 } | |
401 syslog(LOG_NOTICE, "%s", text); | |
79 | 402 // closelog(); |
403 // syslog_opened = false; | |
75 | 404 pthread_mutex_unlock(&syslog_mutex); |
405 } | |
406 else { | |
407 printf("%s \n", text); | |
408 } | |
41
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409 } |
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410 |
72 | 411 void my_syslog(char *text) { |
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412 my_syslog(NULL, text); |
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413 } |
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414 |
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415 |
0 | 416 //////////////////////////////////////////////// |
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417 // read a resolver request from the socket, process it, and |
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418 // write the result back to the socket. |
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419 |
72 | 420 void process_resolver_requests(int socket); |
421 void process_resolver_requests(int socket) { | |
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422 #ifdef NS_MAXDNAME |
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423 char question[NS_MAXDNAME]; |
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424 #else |
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425 char question[1000]; |
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426 #endif |
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427 glommer glom; |
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428 |
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429 int maxq = sizeof(question); |
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430 while (true) { |
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431 // read a question |
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432 int rs = 0; |
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433 while (true) { |
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434 int ns = read(socket, question+rs, maxq-rs); |
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435 if (ns > 0) { |
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436 rs += ns; |
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437 if (question[rs-1] == '\0') { |
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438 // last byte read was the null terminator, we are done |
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439 break; |
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440 } |
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441 } |
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442 else { |
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443 // peer closed the socket |
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444 //my_syslog("!!child worker process, peer closed socket while reading question"); |
59
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445 shutdown(socket, SHUT_RDWR); |
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446 close(socket); |
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447 return; |
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448 } |
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449 } |
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450 |
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451 // find the answer |
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452 #ifdef NS_PACKETSZ |
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453 //char text[1000]; |
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454 //snprintf(text, sizeof(text), "!!child worker process has a question %s", question); |
59
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455 //my_syslog(text); |
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456 glom.length = res_search(question, ns_c_in, ns_t_a, glom.answer, sizeof(glom.answer)); |
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457 if (glom.length < 0) glom.length = 0; // represent all errors as zero length answers |
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458 #else |
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459 glom.length = sizeof(glom.answer); |
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460 glom.answer = 0; |
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461 struct hostent *host = gethostbyname(question); |
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462 if (host && (host->h_addrtype == AF_INET)) { |
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463 memcpy(&glom.answer, host->h_addr, sizeof(glom.answer)); |
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464 } |
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465 #endif |
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466 |
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467 // write the answer |
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468 char *buf = (char *)&glom; |
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469 int len = glom.length + sizeof(glom.length); |
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470 //snprintf(text, sizeof(text), "!!child worker process writing answer length %d for total %d", glom.length, len); |
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471 //my_syslog(text); |
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472 int ws = 0; |
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473 while (len > ws) { |
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474 int ns = write(socket, buf+ws, len-ws); |
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475 if (ns > 0) { |
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476 ws += ns; |
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477 } |
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478 else { |
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479 // peer closed the socket! |
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480 //my_syslog("!!child worker process, peer closed socket while writing answer"); |
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481 shutdown(socket, SHUT_RDWR); |
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482 close(socket); |
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483 return; |
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484 } |
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485 } |
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486 } |
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487 } |
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488 |
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489 |
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490 //////////////////////////////////////////////// |
8 | 491 // ask a dns question and get an A record answer - we don't try |
492 // very hard, just using the default resolver retry settings. | |
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493 // If we cannot get an answer, we just accept the mail. |
8 | 494 // |
0 | 495 // |
72 | 496 int dns_interface(mlfiPriv &priv, char *question, bool maybe_ip, ns_map *nameservers); |
497 int dns_interface(mlfiPriv &priv, char *question, bool maybe_ip, ns_map *nameservers) { | |
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498 // this part can be done without locking the resolver mutex. Each |
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499 // milter thread is talking over its own socket to a separate resolver |
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500 // process, which does the actual dns resolution. |
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501 if (priv.err) return 0; // cannot ask more questions on this socket. |
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502 priv.my_write(question, strlen(question)+1); // write the question including the null terminator |
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503 glommer glom; |
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504 char *buf = (char *)&glom; |
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505 priv.my_read(buf, sizeof(glom.length)); |
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506 buf += sizeof(glom.length); |
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507 ///char text[1000]; |
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508 ///snprintf(text, sizeof(text), "!!milter thread wrote question %s and has answer length %d", question, glom.length); |
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509 ///my_syslog(text); |
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510 if ((glom.length < 0) || (glom.length > sizeof(glom.answer))) { |
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511 priv.err = true; |
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512 return 0; // cannot process overlarge answers |
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513 } |
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514 priv.my_read(buf, glom.length); |
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515 |
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516 #ifdef NS_PACKETSZ |
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517 // now we need to lock the resolver mutex to keep the milter threads from |
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518 // stepping on each other while parsing the dns answer. |
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519 int ret_address = 0; |
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520 pthread_mutex_lock(&resolve_mutex); |
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521 if (glom.length > 0) { |
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522 // parse the answer |
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523 ns_msg handle; |
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524 ns_rr rr; |
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525 if (ns_initparse(glom.answer, glom.length, &handle) == 0) { |
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526 // look for ns names |
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527 if (nameservers) { |
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528 ns_map &ns = *nameservers; |
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529 int rrnum = 0; |
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530 while (ns_parserr(&handle, ns_s_ns, rrnum++, &rr) == 0) { |
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531 if (ns_rr_type(rr) == ns_t_ns) { |
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532 char nam[NS_MAXDNAME+1]; |
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533 char *n = nam; |
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534 const u_char *p = ns_rr_rdata(rr); |
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535 while (((n-nam) < NS_MAXDNAME) && ((p-glom.answer) < glom.length) && *p) { |
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536 size_t s = *(p++); |
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537 if (s > 191) { |
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538 // compression pointer |
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539 s = (s-192)*256 + *(p++); |
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540 if (s >= glom.length) break; // pointer outside bounds of answer |
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541 p = glom.answer + s; |
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542 s = *(p++); |
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543 } |
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544 if (s > 0) { |
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545 if ((n-nam) >= (NS_MAXDNAME-s)) break; // destination would overflow name buffer |
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546 if ((p-glom.answer) >= (glom.length-s)) break; // source outside bounds of answer |
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547 memcpy(n, p, s); |
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548 n += s; |
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549 p += s; |
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550 *(n++) = '.'; |
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551 } |
34 | 552 } |
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553 if (n-nam) n--; // remove trailing . |
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554 *n = '\0'; // null terminate it |
72 | 555 ns.add(nam, question); // ns host to lookup later |
34 | 556 } |
557 } | |
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558 rrnum = 0; |
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559 while (ns_parserr(&handle, ns_s_ar, rrnum++, &rr) == 0) { |
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560 if (ns_rr_type(rr) == ns_t_a) { |
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561 char* nam = (char*)ns_rr_name(rr); |
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562 ns_mapper::iterator i = ns.ns_ip.find(nam); |
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563 if (i != ns.ns_ip.end()) { |
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564 // we want this ip address |
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565 int address; |
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566 memcpy(&address, ns_rr_rdata(rr), sizeof(address)); |
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567 ns.ns_ip[nam] = address; |
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568 } |
34 | 569 } |
570 } | |
571 } | |
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572 int rrnum = 0; |
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573 while (ns_parserr(&handle, ns_s_an, rrnum++, &rr) == 0) { |
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574 if (ns_rr_type(rr) == ns_t_a) { |
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575 int address; |
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576 memcpy(&address, ns_rr_rdata(rr), sizeof(address)); |
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577 ret_address = address; |
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578 } |
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579 } |
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580 } |
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581 } |
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582 if (maybe_ip && !ret_address) { |
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583 // might be a bare ip address |
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584 in_addr ip; |
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585 if (inet_aton(question, &ip)) { |
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586 ret_address = ip.s_addr; |
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587 } |
8 | 588 } |
59
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589 pthread_mutex_unlock(&resolve_mutex); |
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590 return ret_address; |
16 | 591 #else |
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592 return glom.answer; |
16 | 593 #endif |
8 | 594 } |
595 | |
596 | |
597 //////////////////////////////////////////////// | |
598 // check a single dnsbl | |
599 // | |
72 | 600 bool check_single(mlfiPriv &priv, int ip, char *suffix); |
601 bool check_single(mlfiPriv &priv, int ip, char *suffix) { | |
0 | 602 // make a dns question |
603 const u_char *src = (const u_char *)&ip; | |
75 | 604 if (src[0] == 127) return false; // don't do dns lookups on localhost |
16 | 605 #ifdef NS_MAXDNAME |
0 | 606 char question[NS_MAXDNAME]; |
16 | 607 #else |
608 char question[1000]; | |
609 #endif | |
8 | 610 snprintf(question, sizeof(question), "%u.%u.%u.%u.%s.", src[3], src[2], src[1], src[0], suffix); |
611 // ask the question, if we get an A record it implies a blacklisted ip address | |
72 | 612 return dns_interface(priv, question, false, NULL); |
8 | 613 } |
614 | |
615 | |
616 //////////////////////////////////////////////// | |
617 // check a single dnsbl | |
618 // | |
72 | 619 bool check_single(mlfiPriv &priv, int ip, DNSBL &bl); |
620 bool check_single(mlfiPriv &priv, int ip, DNSBL &bl) { | |
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621 return check_single(priv, ip, bl.suffix); |
0 | 622 } |
623 | |
624 | |
625 //////////////////////////////////////////////// | |
626 // check the dnsbls specified for this recipient | |
627 // | |
72 | 628 bool check_dnsbl(mlfiPriv &priv, dnsblp_list &dnsbll, DNSBLP &rejectlist); |
629 bool check_dnsbl(mlfiPriv &priv, dnsblp_list &dnsbll, DNSBLP &rejectlist) { | |
75 | 630 if (priv.authenticated) return false; |
72 | 631 for (dnsblp_list::iterator i=dnsbll.begin(); i!=dnsbll.end(); i++) { |
0 | 632 DNSBLP dp = *i; // non null by construction |
72 | 633 bool st; |
634 map<DNSBLP, bool>::iterator f = priv.checked.find(dp); | |
0 | 635 if (f == priv.checked.end()) { |
636 // have not checked this list yet | |
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637 st = check_single(priv, priv.ip, *dp); |
0 | 638 rejectlist = dp; |
639 priv.checked[dp] = st; | |
640 } | |
641 else { | |
642 st = (*f).second; | |
643 rejectlist = (*f).first; | |
644 } | |
72 | 645 if (st) return st; |
0 | 646 } |
72 | 647 return false; |
0 | 648 } |
649 | |
650 | |
651 //////////////////////////////////////////////// | |
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652 // check the hosts from the body against the content dnsbl |
8 | 653 // |
78 | 654 bool check_hosts(mlfiPriv &priv, bool random, int limit, char *&host, int &ip); |
655 bool check_hosts(mlfiPriv &priv, bool random, int limit, char *&host, int &ip) { | |
75 | 656 CONFIG &dc = *priv.pc; |
74 | 657 string_set &hosts = priv.memory->get_hosts(); |
76 | 658 string_set &ignore = *priv.content_host_ignore; |
659 char *suffix = priv.content_suffix; | |
72 | 660 |
8 | 661 int count = 0; |
72 | 662 int cnt = hosts.size(); // number of hosts we could look at |
663 int_set ips; | |
664 ns_map nameservers; | |
665 for (string_set::iterator i=hosts.begin(); i!=hosts.end(); i++) { | |
666 host = *i; // a reference into hosts, which will live until this smtp transaction is closed | |
58 | 667 |
668 // don't bother looking up hosts on the ignore list | |
72 | 669 string_set::iterator j = ignore.find(host); |
670 if (j != ignore.end()) continue; | |
58 | 671 |
72 | 672 // try to only look at limit/cnt fraction of the available cnt host names in random mode |
673 if ((cnt > limit) && (limit > 0) && random) { | |
44 | 674 int r = rand() % cnt; |
72 | 675 if (r >= limit) { |
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676 if (debug_syslog > 2) { |
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677 char buf[maxlen]; |
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678 snprintf(buf, sizeof(buf), "host %s skipped", host); |
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679 my_syslog(&priv, buf); |
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680 } |
44 | 681 continue; |
682 } | |
683 } | |
8 | 684 count++; |
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685 ip = dns_interface(priv, host, true, &nameservers); |
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686 if (debug_syslog > 2) { |
76 | 687 char buf[maxlen]; |
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688 if (ip) { |
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689 char adr[sizeof "255.255.255.255"]; |
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690 adr[0] = '\0'; |
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691 inet_ntop(AF_INET, (const u_char *)&ip, adr, sizeof(adr)); |
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692 snprintf(buf, sizeof(buf), "host %s found at %s", host, adr); |
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693 } |
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694 else { |
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695 snprintf(buf, sizeof(buf), "host %s not found", host); |
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696 } |
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697 my_syslog(&priv, buf); |
16 | 698 } |
8 | 699 if (ip) { |
44 | 700 int_set::iterator i = ips.find(ip); |
701 if (i == ips.end()) { | |
702 ips.insert(ip); | |
75 | 703 if (check_single(priv, ip, suffix)) { |
72 | 704 return true; |
44 | 705 } |
34 | 706 } |
8 | 707 } |
708 } | |
72 | 709 limit *= 4; // allow average of 3 ns per host name |
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710 for (ns_mapper::iterator i=nameservers.ns_ip.begin(); i!=nameservers.ns_ip.end(); i++) { |
34 | 711 count++; |
72 | 712 if ((count > limit) && (limit > 0)) { |
713 if (random) continue; // don't complain | |
714 return true; | |
34 | 715 } |
36 | 716 host = (*i).first; // a transient reference that needs to be replaced before we return it |
34 | 717 ip = (*i).second; |
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718 if (!ip) ip = dns_interface(priv, host, false, NULL); |
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719 if (debug_syslog > 2) { |
76 | 720 char buf[maxlen]; |
34 | 721 if (ip) { |
722 char adr[sizeof "255.255.255.255"]; | |
723 adr[0] = '\0'; | |
724 inet_ntop(AF_INET, (const u_char *)&ip, adr, sizeof(adr)); | |
725 snprintf(buf, sizeof(buf), "ns %s found at %s", host, adr); | |
726 } | |
727 else { | |
728 snprintf(buf, sizeof(buf), "ns %s not found", host); | |
729 } | |
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730 my_syslog(&priv, buf); |
34 | 731 } |
732 if (ip) { | |
44 | 733 int_set::iterator i = ips.find(ip); |
734 if (i == ips.end()) { | |
735 ips.insert(ip); | |
75 | 736 if (check_single(priv, ip, suffix)) { |
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737 string_map::iterator j = nameservers.ns_host.find(host); |
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738 if (j != nameservers.ns_host.end()) { |
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739 char *refer = (*j).second; |
76 | 740 char buf[maxlen]; |
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741 snprintf(buf, sizeof(buf), "%s with nameserver %s", refer, host); |
72 | 742 host = register_string(hosts, buf); // put a copy into hosts, and return that reference |
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743 } |
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744 else { |
72 | 745 host = register_string(hosts, host); // put a copy into hosts, and return that reference |
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746 } |
72 | 747 return true; |
44 | 748 } |
34 | 749 } |
750 } | |
751 } | |
72 | 752 return false; |
8 | 753 } |
754 | |
755 | |
756 //////////////////////////////////////////////// | |
75 | 757 // this email address is passed in from sendmail, and will |
758 // always be enclosed in <>. It may have mixed case, just | |
759 // as the mail client sent it. We dup the string and convert | |
760 // the duplicate to lower case. | |
761 // | |
762 char *to_lower_string(char *email); | |
763 char *to_lower_string(char *email) { | |
764 int n = strlen(email)-2; | |
765 if (n < 1) return strdup(email); | |
766 char *key = strdup(email+1); | |
767 key[n] = '\0'; | |
768 for (int i=0; i<n; i++) key[i] = tolower(key[i]); | |
769 return key; | |
770 } | |
771 | |
772 | |
773 //////////////////////////////////////////////// | |
0 | 774 // start of sendmail milter interfaces |
775 // | |
776 sfsistat mlfi_connect(SMFICTX *ctx, char *hostname, _SOCK_ADDR *hostaddr) | |
777 { | |
778 // allocate some private memory | |
779 mlfiPriv *priv = new mlfiPriv; | |
780 if (hostaddr->sa_family == AF_INET) { | |
781 priv->ip = ((struct sockaddr_in *)hostaddr)->sin_addr.s_addr; | |
782 } | |
783 | |
784 // save the private data | |
785 smfi_setpriv(ctx, (void*)priv); | |
786 | |
787 // continue processing | |
788 return SMFIS_CONTINUE; | |
789 } | |
790 | |
791 sfsistat mlfi_envfrom(SMFICTX *ctx, char **from) | |
792 { | |
793 mlfiPriv &priv = *MLFIPRIV; | |
75 | 794 priv.mailaddr = to_lower_string(from[0]); |
0 | 795 priv.authenticated = (smfi_getsymval(ctx, "{auth_authen}") != NULL); |
796 return SMFIS_CONTINUE; | |
797 } | |
798 | |
799 sfsistat mlfi_envrcpt(SMFICTX *ctx, char **rcpt) | |
800 { | |
801 DNSBLP rejectlist = NULL; // list that caused the reject | |
802 mlfiPriv &priv = *MLFIPRIV; | |
803 CONFIG &dc = *priv.pc; | |
42 | 804 if (!priv.queueid) priv.queueid = strdup(smfi_getsymval(ctx, "i")); |
75 | 805 char *rcptaddr = rcpt[0]; |
806 char *loto = to_lower_string(rcptaddr); | |
76 | 807 CONTEXT &con = *(dc.find_context(loto)->find_context(priv.mailaddr)); |
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808 if (debug_syslog > 1) { |
76 | 809 char buf[maxlen]; |
810 char msg[maxlen]; | |
811 snprintf(msg, sizeof(msg), "from <%s> to <%s> using context %s", priv.mailaddr, loto, con.get_full_name(buf,maxlen)); | |
812 my_syslog(&priv, msg); | |
813 } | |
72 | 814 char *fromvalue = con.find_from(priv.mailaddr); |
75 | 815 free(loto); |
72 | 816 status st; |
817 if (fromvalue == token_black) { | |
818 st = black; | |
0 | 819 } |
72 | 820 else if (fromvalue == token_white) { |
0 | 821 st = white; |
822 } | |
823 else { | |
72 | 824 // check the dns based lists |
78 | 825 st = (check_dnsbl(priv, con.get_dnsbl_list(), rejectlist)) ? reject : oksofar; |
0 | 826 } |
827 if (st == reject) { | |
828 // reject the recipient based on some dnsbl | |
829 char adr[sizeof "255.255.255.255"]; | |
830 adr[0] = '\0'; | |
8 | 831 inet_ntop(AF_INET, (const u_char *)&priv.ip, adr, sizeof(adr)); |
76 | 832 char buf[maxlen]; |
0 | 833 snprintf(buf, sizeof(buf), rejectlist->message, adr, adr); |
834 smfi_setreply(ctx, "550", "5.7.1", buf); | |
835 return SMFIS_REJECT; | |
836 } | |
837 else if (st == black) { | |
838 // reject the recipient based on blacklisting either from or to | |
839 smfi_setreply(ctx, "550", "5.7.1", "no such user"); | |
840 return SMFIS_REJECT; | |
841 } | |
842 else { | |
843 // accept the recipient | |
72 | 844 if (!con.get_content_filtering()) st = white; |
8 | 845 if (st == oksofar) { |
846 // but remember the non-whites | |
72 | 847 priv.need_content_filter(rcptaddr, con); |
8 | 848 priv.only_whites = false; |
849 } | |
850 if (st == white) { | |
851 priv.have_whites = true; | |
852 } | |
0 | 853 return SMFIS_CONTINUE; |
854 } | |
855 } | |
856 | |
8 | 857 sfsistat mlfi_body(SMFICTX *ctx, u_char *data, size_t len) |
0 | 858 { |
859 mlfiPriv &priv = *MLFIPRIV; | |
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860 if (priv.authenticated) return SMFIS_CONTINUE; |
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861 if (priv.only_whites) return SMFIS_CONTINUE; |
8 | 862 priv.scanner->scan(data, len); |
11 | 863 return SMFIS_CONTINUE; |
8 | 864 } |
865 | |
866 sfsistat mlfi_eom(SMFICTX *ctx) | |
867 { | |
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868 sfsistat rc; |
8 | 869 mlfiPriv &priv = *MLFIPRIV; |
72 | 870 CONFIG &dc = *priv.pc; |
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871 char *host = NULL; |
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872 int ip; |
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873 status st; |
8 | 874 // process end of message |
72 | 875 if (priv.authenticated || priv.only_whites) rc = SMFIS_CONTINUE; |
8 | 876 else { |
76 | 877 // assert env_to not empty |
878 char buf[maxlen]; | |
72 | 879 char *msg = NULL; |
880 string_set alive; | |
881 bool random = false; | |
74 | 882 int limit = 0; |
883 for (context_map::iterator i=priv.env_to.begin(); i!=priv.env_to.end(); i++) { | |
72 | 884 char *rcpt = (*i).first; |
885 CONTEXT &con = *((*i).second); | |
74 | 886 if (!con.acceptable_content(*priv.memory, msg)) { |
72 | 887 // bad html tags or excessive hosts |
888 smfi_delrcpt(ctx, rcpt); | |
24 | 889 } |
890 else { | |
72 | 891 alive.insert(rcpt); |
892 random |= con.get_host_random(); | |
893 limit = max(limit, con.get_host_limit()); | |
894 } | |
895 } | |
76 | 896 bool rejecting = alive.empty(); // if alive is empty, we must have set msg above in acceptable_content() |
72 | 897 if (!rejecting) { |
76 | 898 if (check_hosts(priv, random, limit, host, ip)) { |
24 | 899 char adr[sizeof "255.255.255.255"]; |
900 adr[0] = '\0'; | |
901 inet_ntop(AF_INET, (const u_char *)&ip, adr, sizeof(adr)); | |
76 | 902 snprintf(buf, sizeof(buf), priv.content_message, host, adr); |
72 | 903 msg = buf; |
76 | 904 rejecting = true; |
24 | 905 } |
72 | 906 } |
907 if (!rejecting) { | |
908 rc = SMFIS_CONTINUE; | |
909 } | |
76 | 910 else if (!priv.have_whites) { |
72 | 911 // can reject the entire message |
912 smfi_setreply(ctx, "550", "5.7.1", msg); | |
8 | 913 rc = SMFIS_REJECT; |
914 } | |
915 else { | |
916 // need to accept it but remove the recipients that don't want it | |
72 | 917 for (string_set::iterator i=alive.begin(); i!=alive.end(); i++) { |
8 | 918 char *rcpt = *i; |
919 smfi_delrcpt(ctx, rcpt); | |
920 } | |
921 rc = SMFIS_CONTINUE; | |
922 } | |
0 | 923 } |
8 | 924 // reset for a new message on the same connection |
925 mlfi_abort(ctx); | |
926 return rc; | |
927 } | |
928 | |
929 sfsistat mlfi_abort(SMFICTX *ctx) | |
930 { | |
931 mlfiPriv &priv = *MLFIPRIV; | |
932 priv.reset(); | |
0 | 933 return SMFIS_CONTINUE; |
934 } | |
935 | |
936 sfsistat mlfi_close(SMFICTX *ctx) | |
937 { | |
938 mlfiPriv *priv = MLFIPRIV; | |
939 if (!priv) return SMFIS_CONTINUE; | |
940 delete priv; | |
941 smfi_setpriv(ctx, NULL); | |
942 return SMFIS_CONTINUE; | |
943 } | |
944 | |
945 struct smfiDesc smfilter = | |
946 { | |
947 "DNSBL", // filter name | |
948 SMFI_VERSION, // version code -- do not change | |
949 SMFIF_DELRCPT, // flags | |
950 mlfi_connect, // connection info filter | |
951 NULL, // SMTP HELO command filter | |
952 mlfi_envfrom, // envelope sender filter | |
953 mlfi_envrcpt, // envelope recipient filter | |
954 NULL, // header filter | |
955 NULL, // end of header | |
8 | 956 mlfi_body, // body block filter |
957 mlfi_eom, // end of message | |
958 mlfi_abort, // message aborted | |
0 | 959 mlfi_close, // connection cleanup |
960 }; | |
961 | |
962 | |
963 //////////////////////////////////////////////// | |
964 // reload the config | |
965 // | |
72 | 966 CONFIG* new_conf(); |
967 CONFIG* new_conf() { | |
0 | 968 CONFIG *newc = new CONFIG; |
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969 pthread_mutex_lock(&config_mutex); |
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970 newc->generation = generation++; |
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971 pthread_mutex_unlock(&config_mutex); |
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972 if (debug_syslog) { |
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973 char buf[maxlen]; |
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974 snprintf(buf, sizeof(buf), "loading configuration generation %d", newc->generation); |
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975 my_syslog(buf); |
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976 } |
74 | 977 if (load_conf(*newc, "dnsbl.conf")) { |
72 | 978 newc->load_time = time(NULL); |
979 return newc; | |
980 } | |
981 delete newc; | |
982 return NULL; | |
0 | 983 } |
984 | |
985 | |
986 //////////////////////////////////////////////// | |
987 // thread to watch the old config files for changes | |
988 // and reload when needed. we also cleanup old | |
989 // configs whose reference count has gone to zero. | |
990 // | |
72 | 991 void* config_loader(void *arg); |
992 void* config_loader(void *arg) { | |
0 | 993 typedef set<CONFIG *> configp_set; |
994 configp_set old_configs; | |
18 | 995 while (loader_run) { |
0 | 996 sleep(180); // look for modifications every 3 minutes |
18 | 997 if (!loader_run) break; |
0 | 998 CONFIG &dc = *config; |
999 time_t then = dc.load_time; | |
1000 struct stat st; | |
1001 bool reload = false; | |
74 | 1002 for (string_set::iterator i=dc.config_files.begin(); i!=dc.config_files.end(); i++) { |
0 | 1003 char *fn = *i; |
1004 if (stat(fn, &st)) reload = true; // file disappeared | |
1005 else if (st.st_mtime > then) reload = true; // file modified | |
1006 if (reload) break; | |
1007 } | |
1008 if (reload) { | |
1009 CONFIG *newc = new_conf(); | |
1010 // replace the global config pointer | |
1011 pthread_mutex_lock(&config_mutex); | |
1012 CONFIG *old = config; | |
1013 config = newc; | |
1014 pthread_mutex_unlock(&config_mutex); | |
1015 if (old) old_configs.insert(old); | |
1016 } | |
1017 // now look for old configs with zero ref counts | |
1018 for (configp_set::iterator i=old_configs.begin(); i!=old_configs.end(); ) { | |
1019 CONFIG *old = *i; | |
1020 if (!old->reference_count) { | |
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1021 if (debug_syslog) { |
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1022 char buf[maxlen]; |
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1023 snprintf(buf, sizeof(buf), "freeing memory for old configuration generation %d", old->generation); |
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1024 my_syslog(buf); |
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1025 } |
0 | 1026 delete old; // destructor does all the work |
1027 old_configs.erase(i++); | |
1028 } | |
1029 else i++; | |
1030 } | |
1031 } | |
18 | 1032 return NULL; |
0 | 1033 } |
1034 | |
1035 | |
72 | 1036 void usage(char *prog); |
1037 void usage(char *prog) | |
0 | 1038 { |
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1039 fprintf(stderr, "Usage: %s [-d [level]] [-c] [-s] [-e from|to] -r port -p sm-sock-addr [-t timeout]\n", prog); |
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1040 fprintf(stderr, "where port is for the connection to our own dns resolver processes\n"); |
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1041 fprintf(stderr, " and should be local-domain-socket-file-name\n"); |
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1042 fprintf(stderr, "where sm-sock-addr is for the connection to sendmail\n"); |
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1043 fprintf(stderr, " and should be one of\n"); |
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1044 fprintf(stderr, " inet:port@ip-address\n"); |
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1045 fprintf(stderr, " local:local-domain-socket-file-name\n"); |
9 | 1046 fprintf(stderr, "-c will load and dump the config to stdout\n"); |
75 | 1047 fprintf(stderr, "-s will stress test the config loading code by repeating the load/free cycle\n"); |
1048 fprintf(stderr, " in an infinte loop.\n"); | |
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1049 fprintf(stderr, "-d will set the syslog message level, currently 0 to 3"); |
75 | 1050 fprintf(stderr, "-e will print the results of looking up the from and to addresses in the\n"); |
1051 fprintf(stderr, " current config. The | character is used to separate the from and to\n"); | |
1052 fprintf(stderr, " addresses in the argument to the -e switch\n"); | |
0 | 1053 } |
1054 | |
1055 | |
42 | 1056 |
72 | 1057 void setup_socket(char *sock); |
1058 void setup_socket(char *sock) { | |
42 | 1059 unlink(sock); |
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1060 // sockaddr_un addr; |
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1061 // memset(&addr, '\0', sizeof addr); |
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1062 // addr.sun_family = AF_UNIX; |
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1063 // strncpy(addr.sun_path, sock, sizeof(addr.sun_path)-1); |
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1064 // int s = socket(AF_UNIX, SOCK_STREAM, 0); |
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1065 // bind(s, (sockaddr*)&addr, sizeof(addr)); |
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1066 // close(s); |
42 | 1067 } |
1068 | |
1069 | |
65 | 1070 /* |
1071 * The signal handler function -- only gets called when a SIGCHLD | |
1072 * is received, ie when a child terminates | |
1073 */ | |
1074 void sig_chld(int signo) | |
1075 { | |
1076 int status; | |
1077 /* Wait for any child without blocking */ | |
1078 while (waitpid(-1, &status, WNOHANG) > 0) { | |
1079 // ignore child exit status, we only do this to cleanup zombies | |
1080 } | |
1081 } | |
1082 | |
1083 | |
0 | 1084 int main(int argc, char**argv) |
1085 { | |
72 | 1086 token_init(); |
3 | 1087 bool check = false; |
75 | 1088 bool stress = false; |
3 | 1089 bool setconn = false; |
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1090 bool setreso = false; |
75 | 1091 char *email = NULL; |
0 | 1092 int c; |
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1093 const char *args = "r:p:t:e:d:chs"; |
0 | 1094 extern char *optarg; |
1095 | |
1096 // Process command line options | |
1097 while ((c = getopt(argc, argv, args)) != -1) { | |
1098 switch (c) { | |
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1099 case 'r': |
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1100 if (optarg == NULL || *optarg == '\0') { |
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1101 fprintf(stderr, "Illegal resolver socket: %s\n", optarg); |
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1102 exit(EX_USAGE); |
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1103 } |
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1104 resolver_port = strdup(optarg); |
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1105 setup_socket(resolver_port); |
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1106 setreso = true; |
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1107 break; |
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1108 |
0 | 1109 case 'p': |
1110 if (optarg == NULL || *optarg == '\0') { | |
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1111 fprintf(stderr, "Illegal sendmail socket: %s\n", optarg); |
0 | 1112 exit(EX_USAGE); |
1113 } | |
1114 if (smfi_setconn(optarg) == MI_FAILURE) { | |
1115 fprintf(stderr, "smfi_setconn failed\n"); | |
1116 exit(EX_SOFTWARE); | |
1117 } | |
42 | 1118 if (strncasecmp(optarg, "unix:", 5) == 0) setup_socket(optarg + 5); |
1119 else if (strncasecmp(optarg, "local:", 6) == 0) setup_socket(optarg + 6); | |
3 | 1120 setconn = true; |
0 | 1121 break; |
1122 | |
1123 case 't': | |
1124 if (optarg == NULL || *optarg == '\0') { | |
1125 fprintf(stderr, "Illegal timeout: %s\n", optarg); | |
1126 exit(EX_USAGE); | |
1127 } | |
1128 if (smfi_settimeout(atoi(optarg)) == MI_FAILURE) { | |
1129 fprintf(stderr, "smfi_settimeout failed\n"); | |
1130 exit(EX_SOFTWARE); | |
1131 } | |
1132 break; | |
1133 | |
75 | 1134 case 'e': |
1135 if (email) free(email); | |
1136 email = strdup(optarg); | |
1137 break; | |
1138 | |
3 | 1139 case 'c': |
1140 check = true; | |
1141 break; | |
1142 | |
75 | 1143 case 's': |
1144 stress = true; | |
1145 break; | |
1146 | |
16 | 1147 case 'd': |
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1148 if (optarg == NULL || *optarg == '\0') debug_syslog = 1; |
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1149 else debug_syslog = atoi(optarg); |
16 | 1150 break; |
1151 | |
0 | 1152 case 'h': |
1153 default: | |
1154 usage(argv[0]); | |
1155 exit(EX_USAGE); | |
1156 } | |
1157 } | |
5 | 1158 |
1159 if (check) { | |
76 | 1160 use_syslog = false; |
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1161 debug_syslog = 10; |
72 | 1162 CONFIG *conf = new_conf(); |
1163 if (conf) { | |
1164 conf->dump(); | |
1165 delete conf; | |
1166 return 0; | |
1167 } | |
1168 else { | |
1169 return 1; // config failed to load | |
1170 } | |
5 | 1171 } |
1172 | |
75 | 1173 if (stress) { |
1174 fprintf(stdout, "stress testing\n"); | |
1175 while (1) { | |
1176 for (int i=0; i<10; i++) { | |
1177 CONFIG *conf = new_conf(); | |
1178 if (conf) delete conf; | |
1179 } | |
1180 fprintf(stdout, "."); | |
1181 fflush(stdout); | |
1182 sleep(1); | |
1183 } | |
1184 } | |
1185 | |
1186 if (email) { | |
1187 char *x = strchr(email, '|'); | |
1188 if (x) { | |
1189 *x = '\0'; | |
1190 char *from = strdup(email); | |
1191 char *to = strdup(x+1); | |
1192 use_syslog = false; | |
1193 CONFIG *conf = new_conf(); | |
1194 if (conf) { | |
1195 CONTEXTP con = conf->find_context(to); | |
1196 char buf[maxlen]; | |
1197 fprintf(stdout, "envelope to <%s> finds context %s\n", to, con->get_full_name(buf,maxlen)); | |
1198 CONTEXTP fc = con->find_context(from); | |
1199 fprintf(stdout, "envelope from <%s> finds context %s\n", from, fc->get_full_name(buf,maxlen)); | |
1200 char *st = fc->find_from(from); | |
1201 fprintf(stdout, "envelope from <%s> finds status %s\n", from, st); | |
1202 delete conf; | |
1203 } | |
1204 } | |
1205 return 0; | |
1206 } | |
1207 | |
0 | 1208 if (!setconn) { |
1209 fprintf(stderr, "%s: Missing required -p argument\n", argv[0]); | |
1210 usage(argv[0]); | |
1211 exit(EX_USAGE); | |
1212 } | |
5 | 1213 |
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1214 if (!setreso) { |
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1215 fprintf(stderr, "%s: Missing required -r argument\n", argv[0]); |
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1216 usage(argv[0]); |
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1217 exit(EX_USAGE); |
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1218 } |
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1219 |
0 | 1220 if (smfi_register(smfilter) == MI_FAILURE) { |
1221 fprintf(stderr, "smfi_register failed\n"); | |
1222 exit(EX_UNAVAILABLE); | |
1223 } | |
1224 | |
1225 // switch to background mode | |
1226 if (daemon(1,0) < 0) { | |
1227 fprintf(stderr, "daemon() call failed\n"); | |
1228 exit(EX_UNAVAILABLE); | |
1229 } | |
1230 | |
1231 // write the pid | |
1232 const char *pidpath = "/var/run/dnsbl.pid"; | |
1233 unlink(pidpath); | |
1234 FILE *f = fopen(pidpath, "w"); | |
1235 if (f) { | |
22 | 1236 #ifdef linux |
1237 // from a comment in the DCC source code: | |
1238 // Linux threads are broken. Signals given the | |
1239 // original process are delivered to only the | |
1240 // thread that happens to have that PID. The | |
1241 // sendmail libmilter thread that needs to hear | |
1242 // SIGINT and other signals does not, and that breaks | |
1243 // scripts that need to stop milters. | |
1244 // However, signaling the process group works. | |
0 | 1245 fprintf(f, "-%d\n", (u_int)getpgrp()); |
22 | 1246 #else |
1247 fprintf(f, "%d\n", (u_int)getpid()); | |
1248 #endif | |
0 | 1249 fclose(f); |
1250 } | |
1251 | |
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1252 // initialize the thread sync objects |
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1253 pthread_mutex_init(&config_mutex, 0); |
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1254 pthread_mutex_init(&syslog_mutex, 0); |
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1255 pthread_mutex_init(&resolve_mutex, 0); |
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1256 pthread_mutex_init(&fd_pool_mutex, 0); |
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1257 |
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1258 // drop root privs |
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1259 struct passwd *pw = getpwnam("dnsbl"); |
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1260 if (pw) { |
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1261 if (setgid(pw->pw_gid) == -1) { |
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1262 my_syslog("failed to switch to group dnsbl"); |
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1263 } |
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1264 if (setuid(pw->pw_uid) == -1) { |
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1265 my_syslog("failed to switch to user dnsbl"); |
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1266 } |
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1267 } |
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1268 |
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1269 // fork off the resolver listener process |
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1270 pid_t child = fork(); |
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1271 if (child < 0) { |
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1272 my_syslog("failed to create resolver listener process"); |
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1273 exit(0); |
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1274 } |
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1275 if (child == 0) { |
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1276 // we are the child - dns resolver listener process |
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1277 resolver_socket = socket(AF_UNIX, SOCK_STREAM, 0); |
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1278 if (resolver_socket < 0) { |
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1279 my_syslog("child failed to create resolver socket"); |
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1280 exit(0); // failed |
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1281 } |
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1282 sockaddr_un server; |
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1283 memset(&server, '\0', sizeof(server)); |
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1284 server.sun_family = AF_UNIX; |
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1285 strncpy(server.sun_path, resolver_port, sizeof(server.sun_path)-1); |
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1286 //try to bind the address to the socket. |
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1287 if (bind(resolver_socket, (sockaddr *)&server, sizeof(server)) < 0) { |
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1288 // bind failed |
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1289 shutdown(resolver_socket, SHUT_RDWR); |
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1290 close(resolver_socket); |
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1291 my_syslog("child failed to bind resolver socket"); |
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1292 exit(0); // failed |
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1293 } |
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1294 //listen on the socket. |
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1295 if (listen(resolver_socket, 10) < 0) { |
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1296 // listen failed |
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1297 shutdown(resolver_socket, SHUT_RDWR); |
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1298 close(resolver_socket); |
65 | 1299 my_syslog("child failed to listen to resolver socket"); |
1300 exit(0); // failed | |
1301 } | |
1302 // setup sigchld handler to prevent zombies | |
1303 struct sigaction act; | |
1304 act.sa_handler = sig_chld; // Assign sig_chld as our SIGCHLD handler | |
1305 sigemptyset(&act.sa_mask); // We don't want to block any other signals in this example | |
1306 act.sa_flags = SA_NOCLDSTOP; // only want children that have terminated | |
1307 if (sigaction(SIGCHLD, &act, NULL) < 0) { | |
1308 my_syslog("child failed to setup SIGCHLD handler"); | |
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1309 exit(0); // failed |
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1310 } |
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1311 while (true) { |
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1312 sockaddr_un client; |
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1313 socklen_t clientlen = sizeof(client); |
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1314 int s = accept(resolver_socket, (sockaddr *)&client, &clientlen); |
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1315 if (s > 0) { |
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1316 // accept worked, it did not get cancelled before we could accept it |
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1317 // fork off a process to handle this connection |
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1318 int newchild = fork(); |
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1319 if (newchild == 0) { |
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1320 // this is the worker process |
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1321 // child does not need the listening socket |
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1322 close(resolver_socket); |
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1323 process_resolver_requests(s); |
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1324 exit(0); |
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1325 } |
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1326 else { |
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1327 // this is the parent |
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1328 // parent does not need the accepted socket |
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1329 close(s); |
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1330 } |
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1331 } |
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1332 } |
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1333 exit(0); // make sure we don't fall thru. |
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1334 } |
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1335 else { |
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1336 sleep(2); // allow child to get started |
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1337 } |
48 | 1338 |
1339 // load the initial config | |
1340 config = new_conf(); | |
1341 | |
1342 // only create threads after the fork() in daemon | |
1343 pthread_t tid; | |
1344 if (pthread_create(&tid, 0, config_loader, 0)) | |
1345 my_syslog("failed to create config loader thread"); | |
1346 if (pthread_detach(tid)) | |
1347 my_syslog("failed to detach config loader thread"); | |
1348 | |
18 | 1349 time_t starting = time(NULL); |
1350 int rc = smfi_main(); | |
22 | 1351 if ((rc != MI_SUCCESS) && (time(NULL) > starting+5*60)) { |
18 | 1352 my_syslog("trying to restart after smfi_main()"); |
1353 loader_run = false; // eventually the config loader thread will terminate | |
1354 execvp(argv[0], argv); | |
1355 } | |
1356 exit((rc == MI_SUCCESS) ? 0 : EX_UNAVAILABLE); | |
0 | 1357 } |
8 | 1358 |