conf.c 45 KB

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  1. /*
  2. 3APA3A simpliest proxy server
  3. (c) 2002-2016 by Vladimir Dubrovin <3proxy@3proxy.ru>
  4. please read License Agreement
  5. */
  6. #include "proxy.h"
  7. #ifndef _WIN32
  8. #include <sys/resource.h>
  9. #include <pwd.h>
  10. #include <grp.h>
  11. #ifndef NOPLUGINS
  12. #include <dlfcn.h>
  13. #endif
  14. #endif
  15. #ifndef DEFAULTCONFIG
  16. #define DEFAULTCONFIG conf.stringtable[25]
  17. #endif
  18. pthread_mutex_t bandlim_mutex;
  19. pthread_mutex_t connlim_mutex;
  20. pthread_mutex_t tc_mutex;
  21. pthread_mutex_t pwl_mutex;
  22. pthread_mutex_t hash_mutex;
  23. pthread_mutex_t config_mutex;
  24. int haveerror = 0;
  25. int linenum = 0;
  26. FILE *writable;
  27. struct counter_header cheader = {"3CF", (time_t)0};
  28. struct counter_record crecord;
  29. int mainfunc (int argc, char** argv);
  30. struct proxydef childdef = {NULL, 0, 0, S_NOSERVICE, ""};
  31. #define STRINGBUF 65535
  32. #define NPARAMS 4096
  33. #ifndef _WIN32
  34. char *chrootp = NULL;
  35. static pthread_attr_t pa;
  36. #endif
  37. char * curconf = NULL;
  38. FILE * confopen(){
  39. curconf = conf.conffile;
  40. #ifndef _WIN32
  41. if(chrootp){
  42. if(strstr(curconf, chrootp) == curconf)
  43. curconf += strlen(chrootp);
  44. }
  45. #endif
  46. if(writable) {
  47. rewind(writable);
  48. return writable;
  49. }
  50. return fopen(curconf, "r");
  51. }
  52. #ifdef _WIN32
  53. DWORD WINAPI startsrv(LPVOID data) {
  54. #else
  55. void * startsrv(void * data) {
  56. #endif
  57. struct child *d = (struct child *)data;
  58. mainfunc(d->argc, (char **)d->argv);
  59. return 0;
  60. }
  61. int included =0;
  62. int getrotate(char c){
  63. switch(c){
  64. case 'c':
  65. case 'C':
  66. return MINUTELY;
  67. case 'h':
  68. case 'H':
  69. return HOURLY;
  70. case 'd':
  71. case 'D':
  72. return DAILY;
  73. case 'w':
  74. case 'W':
  75. return WEEKLY;
  76. case 'y':
  77. case 'Y':
  78. return ANNUALLY;
  79. case 'm':
  80. case 'M':
  81. return MONTHLY;
  82. default:
  83. return NEVER;
  84. }
  85. }
  86. int start_proxy_thread(struct child * chp){
  87. pthread_t thread;
  88. #ifdef _WIN32
  89. HANDLE h;
  90. #endif
  91. conf.threadinit = 1;
  92. #ifdef _WIN32
  93. #ifndef _WINCE
  94. h = (HANDLE)_beginthreadex((LPSECURITY_ATTRIBUTES )NULL, 16384+conf.stacksize, (void *)startsrv, (void *) chp, (DWORD)0, &thread);
  95. #else
  96. h = (HANDLE)CreateThread((LPSECURITY_ATTRIBUTES )NULL, 16384+conf.stacksize, (void *)startsrv, (void *) chp, (DWORD)0, &thread);
  97. #endif
  98. if(h)CloseHandle(h);
  99. #else
  100. pthread_attr_init(&pa);
  101. pthread_attr_setstacksize(&pa,PTHREAD_STACK_MIN + (32768+conf.stacksize));
  102. pthread_attr_setdetachstate(&pa,PTHREAD_CREATE_DETACHED);
  103. pthread_create(&thread, &pa, startsrv, (void *)chp);
  104. pthread_attr_destroy(&pa);
  105. #endif
  106. while(conf.threadinit)usleep(SLEEPTIME);
  107. if(haveerror) {
  108. fprintf(stderr, "Service not started on line: %d\n", linenum);
  109. return(40);
  110. }
  111. return 0;
  112. }
  113. static int h_proxy(int argc, unsigned char ** argv){
  114. struct child ch;
  115. ch.argc = argc;
  116. ch.argv = argv;
  117. if(!strcmp((char *)argv[0], "proxy")) {
  118. childdef.pf = proxychild;
  119. childdef.port = 3128;
  120. childdef.isudp = 0;
  121. childdef.service = S_PROXY;
  122. childdef.helpmessage = " -n - no NTLM support\n";
  123. #ifdef NOIPV6
  124. if(!resolvfunc || (resolvfunc == myresolver && !dns_table.hashsize)){
  125. fprintf(stderr, "[line %d] Warning: no nserver/nscache configured, proxy may run very slow\n", linenum);
  126. }
  127. #endif
  128. }
  129. else if(!strcmp((char *)argv[0], "pop3p")) {
  130. childdef.pf = pop3pchild;
  131. childdef.port = 110;
  132. childdef.isudp = 0;
  133. childdef.service = S_POP3P;
  134. childdef.helpmessage = " -hdefault_host[:port] - use this host and port as default if no host specified\n";
  135. }
  136. else if(!strcmp((char *)argv[0], "smtpp")) {
  137. childdef.pf = smtppchild;
  138. childdef.port = 25;
  139. childdef.isudp = 0;
  140. childdef.service = S_SMTPP;
  141. childdef.helpmessage = " -hdefault_host[:port] - use this host and port as default if no host specified\n";
  142. }
  143. else if(!strcmp((char *)argv[0], "ftppr")) {
  144. childdef.pf = ftpprchild;
  145. childdef.port = 21;
  146. childdef.isudp = 0;
  147. childdef.service = S_FTPPR;
  148. childdef.helpmessage = " -hdefault_host[:port] - use this host and port as default if no host specified\n";
  149. }
  150. else if(!strcmp((char *)argv[0], "socks")) {
  151. childdef.pf = sockschild;
  152. childdef.port = 1080;
  153. childdef.isudp = 0;
  154. childdef.service = S_SOCKS;
  155. childdef.helpmessage = " -n - no NTLM support\n";
  156. #ifdef NOIPV6
  157. if(!resolvfunc || (resolvfunc == myresolver && !dns_table.hashsize)){
  158. fprintf(stderr, "[line %d] Warning: no nserver/nscache configured, socks may run very slow\n", linenum);
  159. }
  160. #endif
  161. }
  162. else if(!strcmp((char *)argv[0], "tcppm")) {
  163. childdef.pf = tcppmchild;
  164. childdef.port = 0;
  165. childdef.isudp = 0;
  166. childdef.service = S_TCPPM;
  167. childdef.helpmessage = "";
  168. }
  169. else if(!strcmp((char *)argv[0], "udppm")) {
  170. childdef.pf = udppmchild;
  171. childdef.port = 0;
  172. childdef.isudp = 1;
  173. childdef.service = S_UDPPM;
  174. childdef.helpmessage = " -s single packet UDP service for request/reply (DNS-like) services\n";
  175. }
  176. else if(!strcmp((char *)argv[0], "admin")) {
  177. childdef.pf = adminchild;
  178. childdef.port = 80;
  179. childdef.isudp = 0;
  180. childdef.service = S_ADMIN;
  181. }
  182. else if(!strcmp((char *)argv[0], "dnspr")) {
  183. childdef.pf = dnsprchild;
  184. childdef.port = 53;
  185. childdef.isudp = 1;
  186. childdef.service = S_DNSPR;
  187. childdef.helpmessage = " -s - simple DNS forwarding - do not use 3proxy resolver / name cache\n";
  188. #ifndef NOIPV6
  189. if(!resolvfunc || (resolvfunc == myresolver && !dns_table.hashsize) || resolvfunc == fakeresolver){
  190. fprintf(stderr, "[line %d] Warning: no nserver/nscache configured, dnspr will not work as expected\n", linenum);
  191. }
  192. #endif
  193. }
  194. return start_proxy_thread(&ch);
  195. }
  196. static int h_internal(int argc, unsigned char ** argv){
  197. getip46(46, argv[1], (struct sockaddr *)&conf.intsa);
  198. return 0;
  199. }
  200. static int h_external(int argc, unsigned char ** argv){
  201. int res;
  202. #ifndef NOIPV6
  203. struct sockaddr_in6 sa6;
  204. memset(&sa6, 0, sizeof(sa6));
  205. res = getip46(46, argv[1], (struct sockaddr *)&sa6);
  206. if(!res) return 1;
  207. if (*SAFAMILY(&sa6)==AF_INET) conf.extsa = sa6;
  208. else conf.extsa6 = sa6;
  209. #else
  210. res = getip46(46, argv[1], (struct sockaddr *)&conf.extsa);
  211. #endif
  212. return 0;
  213. }
  214. static int h_log(int argc, unsigned char ** argv){
  215. myfree(conf.logtarget);
  216. if(argc < 2) conf.logtarget = (unsigned char *)mystrdup("");
  217. else conf.logtarget = (unsigned char *)mystrdup((char *)argv[1]);
  218. if(argc > 2) {
  219. conf.logtype = getrotate(*argv[2]);
  220. }
  221. return 0;
  222. }
  223. static int h_stacksize(int argc, unsigned char **argv){
  224. conf.stacksize = atoi((char *)argv[1]);
  225. return 0;
  226. }
  227. static int h_force(int argc, unsigned char **argv){
  228. conf.noforce = 0;
  229. return 0;
  230. }
  231. static int h_noforce(int argc, unsigned char **argv){
  232. conf.noforce = 1;
  233. return 0;
  234. }
  235. static int h_service(int argc, unsigned char **argv){
  236. return 0;
  237. }
  238. static int h_daemon(int argc, unsigned char **argv){
  239. if(!conf.demon)daemonize();
  240. conf.demon = 1;
  241. return 0;
  242. }
  243. static int h_config(int argc, unsigned char **argv){
  244. if(conf.conffile)myfree(conf.conffile);
  245. conf.conffile = mystrdup((char *)argv[1]);
  246. return 0;
  247. }
  248. static int h_include(int argc, unsigned char **argv){
  249. int res;
  250. FILE *fp1;
  251. fp1 = fopen((char *)argv[1], "r");
  252. if(!fp1){
  253. fprintf(stderr, "Unable to open included file: %s\n", argv[1]);
  254. return 1;
  255. }
  256. res = readconfig(fp1);
  257. fclose(fp1);
  258. return res;
  259. }
  260. static int h_archiver(int argc, unsigned char **argv){
  261. int j;
  262. conf.archiver = myalloc(argc * sizeof(char *));
  263. if(conf.archiver) {
  264. conf.archiverc = argc;
  265. for(j = 0; j < conf.archiverc; j++) conf.archiver[j] = (unsigned char *)mystrdup((char *)argv[j]);
  266. }
  267. return 0;
  268. }
  269. static int h_counter(int argc, unsigned char **argv){
  270. struct counter_header ch1;
  271. if(conf.counterd >=0)close(conf.counterd);
  272. if(!conf.trafcountfunc) conf.trafcountfunc = trafcountfunc;
  273. conf.counterd = open((char *)argv[1], O_BINARY|O_RDWR|O_CREAT, 0660);
  274. if(conf.counterd<0){
  275. fprintf(stderr, "Unable to open counter file %s, line %d\n", argv[1], linenum);
  276. return 1;
  277. }
  278. if(read(conf.counterd, &ch1, sizeof(ch1))==sizeof(ch1)){
  279. if(memcmp(&ch1, &cheader, 4)){
  280. fprintf(stderr, "Not a counter file %s, line %d\n", argv[1], linenum);
  281. return 2;
  282. }
  283. #ifdef _TIME64_T_DEFINED
  284. #ifdef _MAX__TIME64_T
  285. #define MAX_COUNTER_TIME (_MAX__TIME64_T)
  286. #elif defined (MAX__TIME64_T)
  287. #define MAX_COUNTER_TIME (MAX__TIME64_T)
  288. #else
  289. #define MAX_COUNTER_TIME (0x793406fff)
  290. #endif
  291. #else
  292. #define MAX_COUNTER_TIME ((sizeof(time_t)>4)?(time_t)0x793406fff:(time_t)0x7fffffff)
  293. #endif
  294. if(ch1.updated < 0 || ch1.updated >= MAX_COUNTER_TIME){
  295. fprintf(stderr, "Invalid or corrupted counter file %s. Use countersutil utility to convert from older version\n", argv[1]);
  296. return 3;
  297. }
  298. cheader.updated = ch1.updated;
  299. }
  300. if(argc >=4) {
  301. conf.countertype = getrotate(*argv[2]);
  302. if(conf.counterfile) myfree(conf.counterfile);
  303. conf.counterfile = mystrdup((char *)argv[3]);
  304. }
  305. return 0;
  306. }
  307. static int h_rotate(int argc, unsigned char **argv){
  308. conf.rotate = atoi((char *)argv[1]);
  309. return 0;
  310. }
  311. static int h_logformat(int argc, unsigned char **argv){
  312. unsigned char * old = conf.logformat;
  313. conf.logformat = (unsigned char *)mystrdup((char *)argv[1]);
  314. if(old) myfree(old);
  315. return 0;
  316. }
  317. static int h_timeouts(int argc, unsigned char **argv){
  318. int j;
  319. for(j = 0; conf.timeouts[j] && j + 1 < argc; j++) {
  320. if((conf.timeouts[j] = atoi((char *)argv[j + 1])) <= 0 || conf.timeouts[j] > 2000000){
  321. fprintf(stderr, "Invalid timeout: %s, line %d\n", argv[j + 1], linenum);
  322. return(1);
  323. }
  324. }
  325. return 0;
  326. }
  327. static int h_noop(int argc, unsigned char **argv){
  328. return 0;
  329. }
  330. static int h_auth(int argc, unsigned char **argv){
  331. struct auth *au, * newau;
  332. freeauth(conf.authfuncs);
  333. conf.authfuncs = NULL;
  334. if(!conf.bandlimfunc)conf.bandlimfunc = bandlimitfunc;
  335. for(argc--; argc; argc--){
  336. for(au = authfuncs; au; au=au->next){
  337. if(!strcmp((char *)argv[argc], au->desc)){
  338. newau = myalloc(sizeof(struct auth));
  339. newau->next = conf.authfuncs;
  340. conf.authfuncs = newau;
  341. conf.authfuncs->desc = au->desc;
  342. conf.authfuncs->preauthorize = au->preauthorize;
  343. conf.authfuncs->authenticate = au->authenticate;
  344. conf.authfuncs->authorize = au->authorize;
  345. break;
  346. }
  347. }
  348. if(!au) return 1;
  349. }
  350. conf.authfunc = doauth;
  351. return 0;
  352. }
  353. static int h_users(int argc, unsigned char **argv){
  354. int j;
  355. unsigned char *arg;
  356. struct passwords *pwl = NULL;
  357. for (j = 1; j<argc; j++) {
  358. if(!(pwl = myalloc(sizeof(struct passwords)))) {
  359. fprintf(stderr, "No memory for PWL entry, line %d\n", linenum);
  360. return(1);
  361. }
  362. memset(pwl, 0, sizeof(struct passwords));
  363. arg = (unsigned char *)strchr((char *)argv[j], ':');
  364. if(!arg||!arg[1]||!arg[2]||arg[3]!=':') {
  365. pwl->user = (unsigned char *)mystrdup((char *)argv[j]);
  366. pwl->pwtype = SYS;
  367. }
  368. else {
  369. *arg = 0;
  370. pwl->user = (unsigned char *)mystrdup((char *)argv[j]);
  371. if((arg[1] == 'C' && arg[2] == 'L' && (pwl->pwtype = CL)) ||
  372. (arg[1] == 'C' && arg[2] == 'R' && (pwl->pwtype = CR)) ||
  373. (arg[1] == 'N' && arg[2] == 'T' && (pwl->pwtype = NT)) ||
  374. (arg[1] == 'L' && arg[2] == 'M' && (pwl->pwtype = LM))){
  375. pwl->password = (unsigned char *)mystrdup((char *)arg+4);
  376. }
  377. else {
  378. pwl->password = (unsigned char *) mystrdup((char *)arg + 1);
  379. pwl->pwtype = UN;
  380. }
  381. }
  382. pthread_mutex_lock(&pwl_mutex);
  383. pwl->next = conf.pwl;
  384. conf.pwl = pwl;
  385. pthread_mutex_unlock(&pwl_mutex);
  386. }
  387. return 0;
  388. }
  389. static int h_maxconn(int argc, unsigned char **argv){
  390. conf.maxchild = atoi((char *)argv[1]);
  391. if(!conf.maxchild) {
  392. return(1);
  393. }
  394. #ifndef _WIN32
  395. {
  396. struct rlimit rl;
  397. if(!getrlimit(RLIMIT_NOFILE, &rl)){
  398. if((conf.maxchild<<1) > rl.rlim_cur)
  399. fprintf(stderr, "[line %d] Warning: current open file ulimits are too low (cur: %d/max: %d),"
  400. " maxconn requires at least %d for every running service."
  401. " Configure ulimits according to system documentation\n",
  402. linenum, (int)rl.rlim_cur, (int)rl.rlim_max, (conf.maxchild<<1));
  403. }
  404. }
  405. #endif
  406. return 0;
  407. }
  408. static int h_flush(int argc, unsigned char **argv){
  409. freeacl(conf.acl);
  410. conf.acl = NULL;
  411. return 0;
  412. }
  413. /*
  414. static int h_flushusers(int argc, unsigned char **argv){
  415. freepwl(conf.pwl);
  416. conf.pwl = NULL;
  417. return 0;
  418. }
  419. */
  420. static int h_nserver(int argc, unsigned char **argv){
  421. char *str;
  422. if(numservers < MAXNSERVERS) {
  423. if((str = strchr((char *)argv[1], '/')))
  424. *str = 0;
  425. *SAPORT(&nservers[numservers].addr) = htons(53);
  426. if(parsehost(46, argv[1], (struct sockaddr *)&nservers[numservers].addr)) return 1;
  427. if(str) {
  428. nservers[numservers].usetcp = strstr(str + 1, "tcp")? 1:0;
  429. *str = '/';
  430. }
  431. numservers++;
  432. }
  433. resolvfunc = myresolver;
  434. return 0;
  435. }
  436. static int h_authnserver(int argc, unsigned char **argv){
  437. char *str;
  438. if((str = strchr((char *)argv[1], '/')))
  439. *str = 0;
  440. if(parsehost(46, argv[1], (struct sockaddr *)&authnserver.addr)) return 1;
  441. *SAPORT(&authnserver.addr) = htons(53);
  442. if(str) {
  443. authnserver.usetcp = strstr(str + 1, "tcp")? 1:0;
  444. *str = '/';
  445. }
  446. return 0;
  447. }
  448. static int h_fakeresolve(int argc, unsigned char **argv){
  449. resolvfunc = fakeresolver;
  450. return 0;
  451. }
  452. static int h_nscache(int argc, unsigned char **argv){
  453. int res;
  454. res = atoi((char *)argv[1]);
  455. if(res < 256) {
  456. fprintf(stderr, "Invalid NS cache size: %d\n", res);
  457. return 1;
  458. }
  459. if(inithashtable(&dns_table, (unsigned)res)){
  460. fprintf(stderr, "Failed to initialize NS cache\n");
  461. return 2;
  462. }
  463. return 0;
  464. }
  465. static int h_nscache6(int argc, unsigned char **argv){
  466. int res;
  467. res = atoi((char *)argv[1]);
  468. if(res < 256) {
  469. fprintf(stderr, "Invalid NS cache size: %d\n", res);
  470. return 1;
  471. }
  472. if(inithashtable(&dns6_table, (unsigned)res)){
  473. fprintf(stderr, "Failed to initialize NS cache\n");
  474. return 2;
  475. }
  476. return 0;
  477. }
  478. static int h_nsrecord(int argc, unsigned char **argv){
  479. #ifndef NOIPV6
  480. struct sockaddr_in6 sa;
  481. #else
  482. struct sockaddr_in sa;
  483. #endif
  484. memset(&sa, 0, sizeof(sa));
  485. if(!getip46(46, argv[2], (struct sockaddr *)&sa)) return 1;
  486. hashadd(*SAFAMILY(&sa)==AF_INET6?&dns6_table:&dns_table, argv[1], SAADDR(&sa), (time_t)0xffffffff);
  487. return 0;
  488. }
  489. static int h_system(int argc, unsigned char **argv){
  490. int res;
  491. if((res = system((char *)argv[1])) == -1){
  492. fprintf(stderr, "Failed to start %s\n", argv[1]);
  493. return(1);
  494. }
  495. return 0;
  496. }
  497. static int h_pidfile(int argc, unsigned char **argv){
  498. FILE *pidf;
  499. if(!(pidf = fopen((char *)argv[1], "w"))){
  500. fprintf(stderr, "Failed to open pid file %s\n", argv[1]);
  501. return(1);
  502. }
  503. fprintf(pidf,"%u", (unsigned)getpid());
  504. fclose(pidf);
  505. return 0;
  506. }
  507. static int h_monitor(int argc, unsigned char **argv){
  508. struct filemon * fm;
  509. fm = myalloc(sizeof (struct filemon));
  510. if(stat((char *)argv[1], &fm->sb)){
  511. myfree(fm);
  512. fprintf(stderr, "Warning: file %s doesn't exist on line %d\n", argv[1], linenum);
  513. }
  514. else {
  515. fm->path = mystrdup((char *)argv[1]);
  516. fm->next = conf.fmon;
  517. conf.fmon = fm;
  518. }
  519. return 0;
  520. }
  521. static int h_parent(int argc, unsigned char **argv){
  522. struct ace *acl = NULL;
  523. struct chain *chains;
  524. acl = conf.acl;
  525. while(acl && acl->next) acl = acl->next;
  526. if(!acl || (acl->action && acl->action != 2)) {
  527. fprintf(stderr, "Chaining error: last ACL entry was not \"allow\" or \"redirect\" on line %d\n", linenum);
  528. return(1);
  529. }
  530. acl->action = 2;
  531. chains = myalloc(sizeof(struct chain));
  532. if(!chains){
  533. fprintf(stderr, "Chainig error: unable to allocate memory for chain\n");
  534. return(2);
  535. }
  536. memset(chains, 0, sizeof(struct chain));
  537. chains->weight = (unsigned)atoi((char *)argv[1]);
  538. if(chains->weight == 0 || chains->weight >1000) {
  539. fprintf(stderr, "Chaining error: bad chain weight %u line %d\n", chains->weight, linenum);
  540. return(3);
  541. }
  542. if(!strcmp((char *)argv[2], "tcp"))chains->type = R_TCP;
  543. else if(!strcmp((char *)argv[2], "http"))chains->type = R_HTTP;
  544. else if(!strcmp((char *)argv[2], "connect"))chains->type = R_CONNECT;
  545. else if(!strcmp((char *)argv[2], "socks4"))chains->type = R_SOCKS4;
  546. else if(!strcmp((char *)argv[2], "socks5"))chains->type = R_SOCKS5;
  547. else if(!strcmp((char *)argv[2], "connect+"))chains->type = R_CONNECTP;
  548. else if(!strcmp((char *)argv[2], "socks4+"))chains->type = R_SOCKS4P;
  549. else if(!strcmp((char *)argv[2], "socks5+"))chains->type = R_SOCKS5P;
  550. else if(!strcmp((char *)argv[2], "socks4b"))chains->type = R_SOCKS4B;
  551. else if(!strcmp((char *)argv[2], "socks5b"))chains->type = R_SOCKS5B;
  552. else if(!strcmp((char *)argv[2], "pop3"))chains->type = R_POP3;
  553. else if(!strcmp((char *)argv[2], "ftp"))chains->type = R_FTP;
  554. else if(!strcmp((char *)argv[2], "admin"))chains->type = R_ADMIN;
  555. else if(!strcmp((char *)argv[2], "extip"))chains->type = R_EXTIP;
  556. else if(!strcmp((char *)argv[2], "smtp"))chains->type = R_SMTP;
  557. else {
  558. fprintf(stderr, "Chaining error: bad chain type (%s)\n", argv[2]);
  559. return(4);
  560. }
  561. #ifndef NOIPV6
  562. if(!getip46(46, argv[3], (struct sockaddr *)&chains->addr)) return 5;
  563. #else
  564. getip46(46, argv[3], (struct sockaddr *)&chains->addr);
  565. #endif
  566. chains->exthost = (unsigned char *)mystrdup((char *)argv[3]);
  567. *SAPORT(&chains->addr) = htons((unsigned short)atoi((char *)argv[4]));
  568. if(argc > 5) chains->extuser = (unsigned char *)mystrdup((char *)argv[5]);
  569. if(argc > 6) chains->extpass = (unsigned char *)mystrdup((char *)argv[6]);
  570. if(!acl->chains) {
  571. acl->chains = chains;
  572. }
  573. else {
  574. struct chain *tmpchain;
  575. for(tmpchain = acl->chains; tmpchain->next; tmpchain = tmpchain->next);
  576. tmpchain->next = chains;
  577. }
  578. return 0;
  579. }
  580. static int h_nolog(int argc, unsigned char **argv){
  581. struct ace *acl = NULL;
  582. acl = conf.acl;
  583. if(!acl) {
  584. fprintf(stderr, "Chaining error: last ACL entry was not \"allow/deny\" on line %d\n", linenum);
  585. return(1);
  586. }
  587. while(acl->next) acl = acl->next;
  588. if(argc == 1) acl->nolog = 1;
  589. else acl->weight = atoi((char*)argv[1]);
  590. return 0;
  591. }
  592. int scanipl(unsigned char *arg, struct iplist *dst){
  593. #ifndef NOIPV6
  594. struct sockaddr_in6 sa;
  595. #else
  596. struct sockaddr_in sa;
  597. #endif
  598. char * slash, *dash;
  599. int masklen, addrlen;
  600. if((slash = strchr((char *)arg, '/'))) *slash = 0;
  601. if((dash = strchr((char *)arg,'-'))) *dash = 0;
  602. if(afdetect(arg) == -1) return 1;
  603. if(!getip46(46, arg, (struct sockaddr *)&sa)) return 1;
  604. memcpy(&dst->ip_from, SAADDR(&sa), SAADDRLEN(&sa));
  605. dst->family = *SAFAMILY(&sa);
  606. if(dash){
  607. if(afdetect(dash+1) == -1) return 1;
  608. if(!getip46(46, (unsigned char *)dash+1, (struct sockaddr *)&sa)) return 2;
  609. memcpy(&dst->ip_to, SAADDR(&sa), SAADDRLEN(&sa));
  610. if(*SAFAMILY(&sa) != dst->family || memcmp(&dst->ip_to, &dst->ip_from, SAADDRLEN(&sa)) < 0) return 3;
  611. return 0;
  612. }
  613. memcpy(&dst->ip_to, &dst->ip_from, SAADDRLEN(&sa));
  614. if(slash){
  615. addrlen = SAADDRLEN(&sa);
  616. masklen = atoi(slash+1);
  617. if(masklen < 0 || masklen > (addrlen*8)) return 4;
  618. else {
  619. int i, nbytes = masklen / 8, nbits = (8 - (masklen % 8)) % 8;
  620. for(i = addrlen; i>(nbytes + (nbits > 0)); i--){
  621. ((unsigned char *)&dst->ip_from)[i-1] = 0x00;
  622. ((unsigned char *)&dst->ip_to)[i-1] = 0xff;
  623. }
  624. for(;nbits;nbits--){
  625. ((unsigned char *)&dst->ip_from)[nbytes] &= ~(0x01<<(nbits-1));
  626. ((unsigned char *)&dst->ip_to)[nbytes] |= (0x01<<(nbits-1));
  627. }
  628. return 0;
  629. }
  630. }
  631. return 0;
  632. }
  633. struct ace * make_ace (int argc, unsigned char ** argv){
  634. struct ace * acl;
  635. unsigned char *arg;
  636. struct iplist *ipl=NULL;
  637. struct portlist *portl=NULL;
  638. struct userlist *userl=NULL;
  639. struct hostname *hostnamel=NULL;
  640. int res;
  641. acl = myalloc(sizeof(struct ace));
  642. if(!acl) return acl;
  643. memset(acl, 0, sizeof(struct ace));
  644. if(argc > 0 && strcmp("*", (char *)argv[0])) {
  645. arg = argv[0];
  646. arg = (unsigned char *)strtok((char *)arg, ",");
  647. do {
  648. if(!acl->users) {
  649. acl->users = userl = myalloc(sizeof(struct userlist));
  650. }
  651. else {
  652. userl->next = myalloc(sizeof(struct userlist));
  653. userl = userl -> next;
  654. }
  655. if(!userl) {
  656. fprintf(stderr, "No memory for ACL entry, line %d\n", linenum);
  657. return(NULL);
  658. }
  659. memset(userl, 0, sizeof(struct userlist));
  660. userl->user=(unsigned char*)mystrdup((char *)arg);
  661. } while((arg = (unsigned char *)strtok((char *)NULL, ",")));
  662. }
  663. if(argc > 1 && strcmp("*", (char *)argv[1])) {
  664. arg = (unsigned char *)strtok((char *)argv[1], ",");
  665. do {
  666. if(!acl->src) {
  667. acl->src = ipl = myalloc(sizeof(struct iplist));
  668. }
  669. else {
  670. ipl->next = myalloc(sizeof(struct iplist));
  671. ipl = ipl -> next;
  672. }
  673. if(!ipl) {
  674. fprintf(stderr, "No memory for ACL entry, line %d\n", linenum);
  675. return(NULL);
  676. }
  677. memset(ipl, 0, sizeof(struct iplist));
  678. if (scanipl(arg, ipl)) {
  679. fprintf(stderr, "Invalid IP, IP range or CIDR, line %d\n", linenum);
  680. return(NULL);
  681. }
  682. } while((arg = (unsigned char *)strtok((char *)NULL, ",")));
  683. }
  684. if(argc > 2 && strcmp("*", (char *)argv[2])) {
  685. arg = (unsigned char *)strtok((char *)argv[2], ",");
  686. do {
  687. int arglen;
  688. unsigned char *pattern;
  689. struct iplist tmpip={NULL};
  690. arglen = (int)strlen((char *)arg);
  691. if(scanipl(arg, &tmpip)){
  692. if(!arglen) continue;
  693. if(!acl->dstnames) {
  694. acl->dstnames = hostnamel = myalloc(sizeof(struct hostname));
  695. }
  696. else {
  697. hostnamel->next = myalloc(sizeof(struct hostname));
  698. hostnamel = hostnamel -> next;
  699. }
  700. if(!hostnamel){
  701. fprintf(stderr, "No memory for ACL entry, line %d\n", linenum);
  702. return(NULL);
  703. }
  704. memset(hostnamel, 0, sizeof(struct hostname));
  705. hostnamel->matchtype = 3;
  706. pattern = arg;
  707. if(pattern[arglen-1] == '*'){
  708. arglen --;
  709. pattern[arglen] = 0;
  710. hostnamel->matchtype ^= MATCHEND;
  711. }
  712. if(pattern[0] == '*'){
  713. pattern++;
  714. arglen--;
  715. hostnamel->matchtype ^= MATCHBEGIN;
  716. }
  717. hostnamel->name = (unsigned char *) mystrdup( (char *)pattern);
  718. if(!hostnamel->name) {
  719. fprintf(stderr, "No memory for ACL entry, line %d\n", linenum);
  720. return(NULL);
  721. }
  722. }
  723. else {
  724. if(!acl->dst) {
  725. acl->dst = ipl = myalloc(sizeof(struct iplist));
  726. }
  727. else {
  728. ipl->next = myalloc(sizeof(struct iplist));
  729. ipl = ipl -> next;
  730. }
  731. if(!ipl) {
  732. fprintf(stderr, "No memory for ACL entry, line %d\n", linenum);
  733. return(NULL);
  734. }
  735. *ipl = tmpip;
  736. }
  737. }while((arg = (unsigned char *)strtok((char *)NULL, ",")));
  738. }
  739. if(argc > 3 && strcmp("*", (char *)argv[3])) {
  740. arg = (unsigned char *)strtok((char *)argv[3], ",");
  741. do {
  742. if(!acl->ports) {
  743. acl->ports = portl = myalloc(sizeof(struct portlist));
  744. }
  745. else {
  746. portl->next = myalloc(sizeof(struct portlist));
  747. portl = portl -> next;
  748. }
  749. if(!portl) {
  750. fprintf(stderr, "No memory for ACL entry, line %d\n", linenum);
  751. return(NULL);
  752. }
  753. memset(portl, 0, sizeof(struct portlist));
  754. res = sscanf((char *)arg, "%hu-%hu", &portl->startport, &portl->endport);
  755. if(res < 1) {
  756. fprintf(stderr, "Invalid port or port range, line %d\n", linenum);
  757. return(NULL);
  758. }
  759. if (res == 1) portl->endport = portl->startport;
  760. } while((arg = (unsigned char *)strtok((char *)NULL, ",")));
  761. }
  762. if(argc > 4 && strcmp("*", (char *)argv[4])) {
  763. arg = (unsigned char *)strtok((char *)argv[4], ",");
  764. do {
  765. if(!strcmp((char *)arg, "CONNECT")){
  766. acl->operation |= CONNECT;
  767. }
  768. else if(!strcmp((char *)arg, "BIND")){
  769. acl->operation |= BIND;
  770. }
  771. else if(!strcmp((char *)arg, "UDPASSOC")){
  772. acl->operation |= UDPASSOC;
  773. }
  774. else if(!strcmp((char *)arg, "ICMPASSOC")){
  775. acl->operation |= ICMPASSOC;
  776. }
  777. else if(!strcmp((char *)arg, "HTTP_GET")){
  778. acl->operation |= HTTP_GET;
  779. }
  780. else if(!strcmp((char *)arg, "HTTP_PUT")){
  781. acl->operation |= HTTP_PUT;
  782. }
  783. else if(!strcmp((char *)arg, "HTTP_POST")){
  784. acl->operation |= HTTP_POST;
  785. }
  786. else if(!strcmp((char *)arg, "HTTP_HEAD")){
  787. acl->operation |= HTTP_HEAD;
  788. }
  789. else if(!strcmp((char *)arg, "HTTP_OTHER")){
  790. acl->operation |= HTTP_OTHER;
  791. }
  792. else if(!strcmp((char *)arg, "HTTP_CONNECT")){
  793. acl->operation |= HTTP_CONNECT;
  794. }
  795. else if(!strcmp((char *)arg, "HTTP")){
  796. acl->operation |= HTTP;
  797. }
  798. else if(!strcmp((char *)arg, "HTTPS")){
  799. acl->operation |= HTTPS;
  800. }
  801. else if(!strcmp((char *)arg, "FTP_GET")){
  802. acl->operation |= FTP_GET;
  803. }
  804. else if(!strcmp((char *)arg, "FTP_PUT")){
  805. acl->operation |= FTP_PUT;
  806. }
  807. else if(!strcmp((char *)arg, "FTP_LIST")){
  808. acl->operation |= FTP_LIST;
  809. }
  810. else if(!strcmp((char *)arg, "FTP_DATA")){
  811. acl->operation |= FTP_DATA;
  812. }
  813. else if(!strcmp((char *)arg, "FTP")){
  814. acl->operation |= FTP;
  815. }
  816. else if(!strcmp((char *)arg, "ADMIN")){
  817. acl->operation |= ADMIN;
  818. }
  819. else if(!strcmp((char *)arg, "DNSRESOLVE")){
  820. acl->operation |= DNSRESOLVE;
  821. }
  822. else {
  823. fprintf(stderr, "Unknown operation type: %s line %d\n", arg, linenum);
  824. return(NULL);
  825. }
  826. } while((arg = (unsigned char *)strtok((char *)NULL, ",")));
  827. }
  828. if(argc > 5){
  829. for(arg = argv[5]; *arg;){
  830. int val, val1;
  831. if(!isnumber(*arg)){
  832. arg++;
  833. continue;
  834. }
  835. val1 = val = (*arg - '0');
  836. arg++;
  837. if(*arg == '-' && isnumber(*(arg+1)) && (*(arg+1) - '0') > val) {
  838. val1 = (*(arg+1) - '0');
  839. arg+=2;
  840. }
  841. for(; val<=val1; val++) acl->wdays |= (1 << (val % 7));
  842. }
  843. }
  844. if(argc > 6){
  845. for(arg = argv[6]; strlen((char *)arg) >= 17 &&
  846. isdigit(arg[0]) &&
  847. isdigit(arg[1]) &&
  848. isdigit(arg[3]) &&
  849. isdigit(arg[4]) &&
  850. isdigit(arg[6]) &&
  851. isdigit(arg[7]) &&
  852. isdigit(arg[9]) &&
  853. isdigit(arg[10]) &&
  854. isdigit(arg[12]) &&
  855. isdigit(arg[13]) &&
  856. isdigit(arg[15]) &&
  857. isdigit(arg[16])
  858. ; arg+=18){
  859. int t1, t2;
  860. struct period *sp;
  861. t1 = (arg[0] - '0') * 10 + (arg[1] - '0');
  862. t1 = (t1 * 60) + (arg[3] - '0') * 10 + (arg[4] - '0');
  863. t1 = (t1 * 60) + (arg[6] - '0') * 10 + (arg[7] - '0');
  864. t2 = (arg[9] - '0') * 10 + (arg[10] - '0');
  865. t2 = (t2 * 60) + (arg[12] - '0') * 10 + (arg[13] - '0');
  866. t2 = (t2 * 60) + (arg[15] - '0') * 10 + (arg[16] - '0');
  867. if(t2 < t1) break;
  868. sp = myalloc(sizeof(struct period));
  869. if(sp){
  870. sp->fromtime = t1;
  871. sp->totime = t2;
  872. sp->next = acl->periods;
  873. acl->periods = sp;
  874. }
  875. if(arg[17]!=',') break;
  876. }
  877. }
  878. if (argc > 7){
  879. acl->weight = atoi((char *)argv[7]);
  880. }
  881. return acl;
  882. }
  883. static int h_ace(int argc, unsigned char **argv){
  884. int res = 0;
  885. int offset = 0;
  886. struct ace *acl = NULL;
  887. struct bandlim * nbl;
  888. struct trafcount * tl;
  889. struct connlim * ncl;
  890. if(!strcmp((char *)argv[0], "allow")){
  891. res = ALLOW;
  892. }
  893. else if(!strcmp((char *)argv[0], "deny")){
  894. res = DENY;
  895. }
  896. else if(!strcmp((char *)argv[0], "redirect")){
  897. res = REDIRECT;
  898. offset = 2;
  899. }
  900. else if(!strcmp((char *)argv[0], "bandlimin")||!strcmp((char *)argv[0], "bandlimout")){
  901. res = BANDLIM;
  902. offset = 1;
  903. }
  904. else if(!strcmp((char *)argv[0], "nobandlimin")||!strcmp((char *)argv[0], "nobandlimout")){
  905. res = NOBANDLIM;
  906. }
  907. else if(!strcmp((char *)argv[0], "countin")){
  908. res = COUNTIN;
  909. offset = 3;
  910. }
  911. else if(!strcmp((char *)argv[0], "nocountin")){
  912. res = NOCOUNTIN;
  913. }
  914. else if(!strcmp((char *)argv[0], "countout")){
  915. res = COUNTOUT;
  916. offset = 3;
  917. }
  918. else if(!strcmp((char *)argv[0], "nocountout")){
  919. res = NOCOUNTOUT;
  920. }
  921. else if(!strcmp((char *)argv[0], "countall")){
  922. res = COUNTALL;
  923. offset = 3;
  924. }
  925. else if(!strcmp((char *)argv[0], "nocountall")){
  926. res = NOCOUNTALL;
  927. }
  928. else if(!strcmp((char *)argv[0], "connlim")){
  929. res = CONNLIM;
  930. offset = 2;
  931. }
  932. else if(!strcmp((char *)argv[0], "noconnlim")){
  933. res = NOCONNLIM;
  934. }
  935. acl = make_ace(argc - (offset+1), argv + (offset + 1));
  936. if(!acl) {
  937. fprintf(stderr, "Unable to parse ACL entry, line %d\n", linenum);
  938. return(1);
  939. }
  940. acl->action = res;
  941. switch(acl->action){
  942. case REDIRECT:
  943. acl->chains = myalloc(sizeof(struct chain));
  944. memset(acl->chains, 0, sizeof(struct chain));
  945. if(!acl->chains) {
  946. fprintf(stderr, "No memory for ACL entry, line %d\n", linenum);
  947. return(2);
  948. }
  949. acl->chains->type = R_HTTP;
  950. if(!getip46(46, argv[1], (struct sockaddr *)&acl->chains->addr)) return 5;
  951. *SAPORT(&acl->chains->addr) = htons((unsigned short)atoi((char *)argv[2]));
  952. acl->chains->weight = 1000;
  953. case ALLOW:
  954. case DENY:
  955. if(!conf.acl){
  956. conf.acl = acl;
  957. }
  958. else {
  959. struct ace * acei;
  960. for(acei = conf.acl; acei->next; acei = acei->next);
  961. acei->next = acl;
  962. }
  963. break;
  964. case CONNLIM:
  965. case NOCONNLIM:
  966. ncl = myalloc(sizeof(struct connlim));
  967. if(!ncl) {
  968. fprintf(stderr, "No memory to create connection limit filter\n");
  969. return(3);
  970. }
  971. memset(ncl, 0, sizeof(struct connlim));
  972. ncl->ace = acl;
  973. if(acl->action == CONNLIM) {
  974. sscanf((char *)argv[1], "%u", &ncl->rate);
  975. sscanf((char *)argv[2], "%u", &ncl->period);
  976. }
  977. pthread_mutex_lock(&connlim_mutex);
  978. if(!conf.connlimiter){
  979. conf.connlimiter = ncl;
  980. }
  981. else {
  982. struct connlim * cli;
  983. for(cli = conf.connlimiter; cli->next; cli = cli->next);
  984. cli->next = ncl;
  985. }
  986. pthread_mutex_unlock(&connlim_mutex);
  987. break;
  988. case BANDLIM:
  989. case NOBANDLIM:
  990. nbl = myalloc(sizeof(struct bandlim));
  991. if(!nbl) {
  992. fprintf(stderr, "No memory to create band limit filter\n");
  993. return(3);
  994. }
  995. memset(nbl, 0, sizeof(struct bandlim));
  996. nbl->ace = acl;
  997. if(acl->action == BANDLIM) {
  998. sscanf((char *)argv[1], "%u", &nbl->rate);
  999. if(nbl->rate < 300) {
  1000. fprintf(stderr, "Wrong bandwidth specified, line %d\n", linenum);
  1001. return(4);
  1002. }
  1003. }
  1004. pthread_mutex_lock(&bandlim_mutex);
  1005. if(!strcmp((char *)argv[0], "bandlimin") || !strcmp((char *)argv[0], "nobandlimin")){
  1006. if(!conf.bandlimiter){
  1007. conf.bandlimiter = nbl;
  1008. }
  1009. else {
  1010. struct bandlim * bli;
  1011. for(bli = conf.bandlimiter; bli->next; bli = bli->next);
  1012. bli->next = nbl;
  1013. }
  1014. }
  1015. else {
  1016. if(!conf.bandlimiterout){
  1017. conf.bandlimiterout = nbl;
  1018. }
  1019. else {
  1020. struct bandlim * bli;
  1021. for(bli = conf.bandlimiterout; bli->next; bli = bli->next);
  1022. bli->next = nbl;
  1023. }
  1024. }
  1025. pthread_mutex_unlock(&bandlim_mutex);
  1026. break;
  1027. case COUNTIN:
  1028. case NOCOUNTIN:
  1029. case COUNTOUT:
  1030. case NOCOUNTOUT:
  1031. case COUNTALL:
  1032. case NOCOUNTALL:
  1033. tl = myalloc(sizeof(struct trafcount));
  1034. if(!tl) {
  1035. fprintf(stderr, "No memory to create traffic limit filter\n");
  1036. return(5);
  1037. }
  1038. memset(tl, 0, sizeof(struct trafcount));
  1039. tl->ace = acl;
  1040. if((acl->action == COUNTIN)||(acl->action == COUNTOUT)||(acl->action == COUNTALL)) {
  1041. unsigned long lim;
  1042. tl->comment = ( char *)argv[1];
  1043. while(isdigit(*tl->comment))tl->comment++;
  1044. if(*tl->comment== '/')tl->comment++;
  1045. tl->comment = mystrdup(tl->comment);
  1046. sscanf((char *)argv[1], "%u", &tl->number);
  1047. sscanf((char *)argv[3], "%lu", &lim);
  1048. tl->type = getrotate(*argv[2]);
  1049. tl->traflim64 = ((uint64_t)lim)*(1024*1024);
  1050. if(!tl->traflim64) {
  1051. fprintf(stderr, "Wrong traffic limit specified, line %d\n", linenum);
  1052. return(6);
  1053. }
  1054. if(tl->number != 0 && conf.counterd >= 0) {
  1055. lseek(conf.counterd,
  1056. sizeof(struct counter_header) + (tl->number - 1) * sizeof(struct counter_record),
  1057. SEEK_SET);
  1058. memset(&crecord, 0, sizeof(struct counter_record));
  1059. read(conf.counterd, &crecord, sizeof(struct counter_record));
  1060. tl->traf64 = crecord.traf64;
  1061. tl->cleared = crecord.cleared;
  1062. tl->updated = crecord.updated;
  1063. if(tl->cleared < 0 || tl->cleared >= MAX_COUNTER_TIME || tl->updated < 0 || tl->updated >= MAX_COUNTER_TIME){
  1064. fprintf(stderr, "Invalid, incompatible or corrupted counter file.\n");
  1065. return(6);
  1066. }
  1067. }
  1068. }
  1069. pthread_mutex_lock(&tc_mutex);
  1070. if(!conf.trafcounter){
  1071. conf.trafcounter = tl;
  1072. }
  1073. else {
  1074. struct trafcount * ntl;
  1075. for(ntl = conf.trafcounter; ntl->next; ntl = ntl->next);
  1076. ntl->next = tl;
  1077. }
  1078. pthread_mutex_unlock(&tc_mutex);
  1079. }
  1080. return 0;
  1081. }
  1082. static int h_logdump(int argc, unsigned char **argv){
  1083. conf.logdumpsrv = (unsigned) atoi((char *) *(argv + 1));
  1084. if(argc > 2) conf.logdumpcli = (unsigned) atoi((char *) *(argv + 2));
  1085. return 0;
  1086. }
  1087. static int h_filtermaxsize(int argc, unsigned char **argv){
  1088. conf.filtermaxsize = atoi((char *) *(argv + 1));
  1089. return 0;
  1090. }
  1091. static int h_delimchar(int argc, unsigned char **argv){
  1092. conf.delimchar = *argv[1];
  1093. return 0;
  1094. }
  1095. #ifndef NORADIUS
  1096. static int h_radius(int argc, unsigned char **argv){
  1097. unsigned short port;
  1098. /*
  1099. int oldrad;
  1100. #ifdef NOIPV6
  1101. struct sockaddr_in bindaddr;
  1102. #else
  1103. struct sockaddr_in6 bindaddr;
  1104. #endif
  1105. oldrad = nradservers;
  1106. nradservers = 0;
  1107. for(; oldrad; oldrad--){
  1108. if(radiuslist[oldrad].logsock >= 0) so._closesocket(radiuslist[oldrad].logsock);
  1109. radiuslist[oldrad].logsock = -1;
  1110. }
  1111. */
  1112. memset(radiuslist, 0, sizeof(radiuslist));
  1113. if(strlen(argv[1]) > 63) argv[1][63] = 0;
  1114. strcpy(radiussecret, argv[1]);
  1115. for( nradservers=0; nradservers < MAXRADIUS && nradservers < argc -2; nradservers++){
  1116. char *s = 0;
  1117. if(strchr(argv[nradservers + 2], '/')){
  1118. *s = 0;
  1119. s++;
  1120. }
  1121. if( !getip46(46, argv[nradservers + 2], (struct sockaddr *)&radiuslist[nradservers].authaddr)) return 1;
  1122. if( s && !getip46(46, s, (struct sockaddr *)&radiuslist[nradservers].localaddr)) return 2;
  1123. if(!*SAPORT(&radiuslist[nradservers].authaddr))*SAPORT(&radiuslist[nradservers].authaddr) = htons(1812);
  1124. port = ntohs(*SAPORT(&radiuslist[nradservers].authaddr));
  1125. radiuslist[nradservers].logaddr = radiuslist[nradservers].authaddr;
  1126. *SAPORT(&radiuslist[nradservers].logaddr) = htons(port+1);
  1127. /*
  1128. bindaddr = radiuslist[nradservers].localaddr;
  1129. if ((radiuslist[nradservers].logsock = so._socket(SASOCK(&radiuslist[nradservers].logaddr), SOCK_DGRAM, 0)) < 0) return 2;
  1130. if (so._bind(radiuslist[nradservers].logsock, (struct sockaddr *)&bindaddr, SASIZE(&bindaddr))) return 3;
  1131. */
  1132. }
  1133. return 0;
  1134. }
  1135. #endif
  1136. static int h_authcache(int argc, unsigned char **argv){
  1137. conf.authcachetype = 0;
  1138. if(strstr((char *) *(argv + 1), "ip")) conf.authcachetype |= 1;
  1139. if(strstr((char *) *(argv + 1), "user")) conf.authcachetype |= 2;
  1140. if(strstr((char *) *(argv + 1), "pass")) conf.authcachetype |= 4;
  1141. if(strstr((char *) *(argv + 1), "limit")) conf.authcachetype |= 8;
  1142. if(strstr((char *) *(argv + 1), "acl")) conf.authcachetype |= 16;
  1143. if(strstr((char *) *(argv + 1), "ext")) conf.authcachetype |= 32;
  1144. if(argc > 2) conf.authcachetime = (unsigned) atoi((char *) *(argv + 2));
  1145. if(!conf.authcachetype) conf.authcachetype = 6;
  1146. if(!conf.authcachetime) conf.authcachetime = 600;
  1147. return 0;
  1148. }
  1149. static int h_plugin(int argc, unsigned char **argv){
  1150. #ifdef NOPLUGINS
  1151. return 999;
  1152. #else
  1153. #ifdef _WIN32
  1154. HINSTANCE hi;
  1155. FARPROC fp;
  1156. #ifdef _WINCE
  1157. hi = LoadLibraryW((LPCWSTR)CEToUnicode(argv[1]));
  1158. #else
  1159. hi = LoadLibrary((char *)argv[1]);
  1160. #endif
  1161. if(!hi) {
  1162. fprintf(stderr, "Failed to load %s, code %d\n", argv[1], (int)GetLastError());
  1163. return 1;
  1164. }
  1165. #ifdef _WINCE
  1166. fp = GetProcAddressW(hi, (LPCWSTR)CEToUnicode(argv[2]));
  1167. #else
  1168. fp = GetProcAddress(hi, (char *)argv[2]);
  1169. #endif
  1170. if(!fp) {
  1171. printf("%s not found in %s, code: %d\n", argv[2], argv[1], (int)GetLastError());
  1172. return 2;
  1173. }
  1174. return (*(PLUGINFUNC)fp)(&pluginlink, argc - 2, (char **)argv + 2);
  1175. #else
  1176. void *hi, *fp;
  1177. hi = dlopen((char *)argv[1], RTLD_LAZY);
  1178. if(!hi) return 1;
  1179. fp = dlsym(hi, (char *)argv[2]);
  1180. if(!fp) return 2;
  1181. return (*(PLUGINFUNC)fp)(&pluginlink, argc - 2, (char **)argv + 2);
  1182. #endif
  1183. #endif
  1184. }
  1185. #ifndef _WIN32
  1186. uid_t strtouid(unsigned char *str){
  1187. uid_t res = 0;
  1188. if(!isnumber(*(char *)str)){
  1189. struct passwd *pw;
  1190. pw = getpwnam((char *)str);
  1191. if(pw) res = pw->pw_uid;
  1192. }
  1193. else res = atoi((char *)str);
  1194. return res;
  1195. }
  1196. static int h_setuid(int argc, unsigned char **argv){
  1197. uid_t res = 0;
  1198. res = strtouid(argv[1]);
  1199. if(!res || setreuid(res,res)) {
  1200. fprintf(stderr, "Unable to set uid %d", res);
  1201. return(1);
  1202. }
  1203. return 0;
  1204. }
  1205. gid_t strtogid(unsigned char *str){
  1206. gid_t res = 0;
  1207. if(!isnumber(*(char *)str)){
  1208. struct group *gr;
  1209. gr = getgrnam((char *)str);
  1210. if(gr) res = gr->gr_gid;
  1211. }
  1212. else res = atoi((char *)str);
  1213. return res;
  1214. }
  1215. static int h_setgid(int argc, unsigned char **argv){
  1216. gid_t res = 0;
  1217. res = strtogid(argv[1]);
  1218. if(!res || setregid(res,res)) {
  1219. fprintf(stderr, "Unable to set gid %d", res);
  1220. return(1);
  1221. }
  1222. return 0;
  1223. }
  1224. static int h_chroot(int argc, unsigned char **argv){
  1225. uid_t uid = 0;
  1226. gid_t gid = 0;
  1227. if(argc > 2) {
  1228. uid = strtouid(argv[2]);
  1229. if(!uid){
  1230. fprintf(stderr, "Unable to resolve uid %s", argv[2]);
  1231. return(2);
  1232. }
  1233. }
  1234. if(argc > 3) {
  1235. gid = strtogid(argv[3]);
  1236. if(!gid){
  1237. fprintf(stderr, "Unable to resolve gid %s", argv[3]);
  1238. return(3);
  1239. }
  1240. }
  1241. if(!chrootp){
  1242. char *p;
  1243. if(chroot((char *)argv[1])) {
  1244. fprintf(stderr, "Unable to chroot %s", argv[1]);
  1245. return(1);
  1246. }
  1247. p = (char *)argv[1] + strlen((char *)argv[1]) ;
  1248. while (p > (char *)argv[1] && p[-1] == '/'){
  1249. p--;
  1250. *p = 0;
  1251. }
  1252. chrootp = mystrdup((char *)argv[1]);
  1253. }
  1254. if (gid && setregid(gid,gid)) {
  1255. fprintf(stderr, "Unable to set gid %d", (int)gid);
  1256. return(4);
  1257. }
  1258. if (uid && setreuid(uid,uid)) {
  1259. fprintf(stderr, "Unable to set uid %d", (int)uid);
  1260. return(5);
  1261. }
  1262. chdir("/");
  1263. return 0;
  1264. }
  1265. #endif
  1266. struct commands specificcommands[]={
  1267. #ifndef _WIN32
  1268. {specificcommands+1, "setuid", h_setuid, 2, 2},
  1269. {specificcommands+2, "setgid", h_setgid, 2, 2},
  1270. {specificcommands+3, "chroot", h_chroot, 2, 4},
  1271. #endif
  1272. {NULL, "", h_noop, 1, 0}
  1273. };
  1274. struct commands commandhandlers[]={
  1275. {commandhandlers+1, "", h_noop, 1, 0},
  1276. {commandhandlers+2, "proxy", h_proxy, 1, 0},
  1277. {commandhandlers+3, "pop3p", h_proxy, 1, 0},
  1278. {commandhandlers+4, "ftppr", h_proxy, 1, 0},
  1279. {commandhandlers+5, "socks", h_proxy, 1, 0},
  1280. {commandhandlers+6, "tcppm", h_proxy, 4, 0},
  1281. {commandhandlers+7, "udppm", h_proxy, 4, 0},
  1282. {commandhandlers+8, "admin", h_proxy, 1, 0},
  1283. {commandhandlers+9, "dnspr", h_proxy, 1, 0},
  1284. {commandhandlers+10, "internal", h_internal, 2, 2},
  1285. {commandhandlers+11, "external", h_external, 2, 2},
  1286. {commandhandlers+12, "log", h_log, 1, 0},
  1287. {commandhandlers+13, "service", h_service, 1, 1},
  1288. {commandhandlers+14, "daemon", h_daemon, 1, 1},
  1289. {commandhandlers+15, "config", h_config, 2, 2},
  1290. {commandhandlers+16, "include", h_include, 2, 2},
  1291. {commandhandlers+17, "archiver", h_archiver, 3, 0},
  1292. {commandhandlers+18, "counter", h_counter, 2, 4},
  1293. {commandhandlers+19, "rotate", h_rotate, 2, 2},
  1294. {commandhandlers+20, "logformat", h_logformat, 2, 2},
  1295. {commandhandlers+21, "timeouts", h_timeouts, 2, 0},
  1296. {commandhandlers+22, "auth", h_auth, 2, 0},
  1297. {commandhandlers+23, "users", h_users, 2, 0},
  1298. {commandhandlers+24, "maxconn", h_maxconn, 2, 2},
  1299. {commandhandlers+25, "flush", h_flush, 1, 1},
  1300. {commandhandlers+26, "nserver", h_nserver, 2, 2},
  1301. {commandhandlers+27, "fakeresolve", h_fakeresolve, 1, 1},
  1302. {commandhandlers+28, "nscache", h_nscache, 2, 2},
  1303. {commandhandlers+29, "nscache6", h_nscache6, 2, 2},
  1304. {commandhandlers+30, "nsrecord", h_nsrecord, 3, 3},
  1305. {commandhandlers+31, "system", h_system, 2, 2},
  1306. {commandhandlers+32, "pidfile", h_pidfile, 2, 2},
  1307. {commandhandlers+33, "monitor", h_monitor, 2, 2},
  1308. {commandhandlers+34, "parent", h_parent, 5, 0},
  1309. {commandhandlers+35, "allow", h_ace, 1, 0},
  1310. {commandhandlers+36, "deny", h_ace, 1, 0},
  1311. {commandhandlers+37, "redirect", h_ace, 3, 0},
  1312. {commandhandlers+38, "bandlimin", h_ace, 2, 0},
  1313. {commandhandlers+39, "bandlimout", h_ace, 2, 0},
  1314. {commandhandlers+40, "nobandlimin", h_ace, 1, 0},
  1315. {commandhandlers+41, "nobandlimout", h_ace, 1, 0},
  1316. {commandhandlers+42, "countin", h_ace, 4, 0},
  1317. {commandhandlers+43, "nocountin", h_ace, 1, 0},
  1318. {commandhandlers+44, "countout", h_ace, 4, 0},
  1319. {commandhandlers+45, "nocountout", h_ace, 1, 0},
  1320. {commandhandlers+46, "connlim", h_ace, 4, 0},
  1321. {commandhandlers+47, "noconnlim", h_ace, 1, 0},
  1322. {commandhandlers+48, "plugin", h_plugin, 3, 0},
  1323. {commandhandlers+49, "logdump", h_logdump, 2, 3},
  1324. {commandhandlers+50, "filtermaxsize", h_filtermaxsize, 2, 2},
  1325. {commandhandlers+51, "nolog", h_nolog, 1, 1},
  1326. {commandhandlers+52, "weight", h_nolog, 2, 2},
  1327. {commandhandlers+53, "authcache", h_authcache, 2, 3},
  1328. {commandhandlers+54, "smtpp", h_proxy, 1, 0},
  1329. {commandhandlers+55, "delimchar",h_delimchar, 2, 2},
  1330. {commandhandlers+56, "authnserver", h_authnserver, 2, 2},
  1331. {commandhandlers+57, "stacksize", h_stacksize, 2, 2},
  1332. {commandhandlers+58, "force", h_force, 1, 1},
  1333. {commandhandlers+59, "noforce", h_noforce, 1, 1},
  1334. #ifndef NORADIUS
  1335. {commandhandlers+61, "radius", h_radius, 3, 0},
  1336. #endif
  1337. {specificcommands, "", h_noop, 1, 0}
  1338. };
  1339. int parsestr (unsigned char *str, unsigned char **argm, int nitems, unsigned char ** buff, int *inbuf, int *bufsize){
  1340. #define buf (*buff)
  1341. int argc = 0;
  1342. int space = 1;
  1343. int comment = 0;
  1344. unsigned char * incbegin = 0;
  1345. int fd;
  1346. int res, len;
  1347. unsigned char *str1;
  1348. for(;;str++){
  1349. if(*str == '\"'){
  1350. str1 = str;
  1351. do {
  1352. *str1 = *(str1 + 1);
  1353. }while(*(str1++));
  1354. if(!comment || *str != '\"'){
  1355. comment = !comment;
  1356. }
  1357. }
  1358. switch(*str){
  1359. case '\0':
  1360. if(comment) return -1;
  1361. argm[argc] = 0;
  1362. return argc;
  1363. case '$':
  1364. if(comment){
  1365. if(space){
  1366. argm[argc++] = str;
  1367. if(argc >= nitems) return argc;
  1368. space = 0;
  1369. }
  1370. }
  1371. else if(!included){
  1372. incbegin = str;
  1373. *str = 0;
  1374. }
  1375. break;
  1376. case '\r':
  1377. case '\n':
  1378. case '\t':
  1379. case ' ':
  1380. if(!comment){
  1381. *str = 0;
  1382. space = 1;
  1383. if(incbegin){
  1384. argc--;
  1385. if((fd = open((char *)incbegin+1, O_RDONLY)) <= 0){
  1386. fprintf(stderr, "Failed to open %s\n", incbegin+1);
  1387. break;
  1388. }
  1389. if((*bufsize - *inbuf) <STRINGBUF){
  1390. *bufsize += STRINGBUF;
  1391. if(!(buf = myrealloc(buf, *bufsize))){
  1392. fprintf(stderr, "Failed to allocate memory for %s\n", incbegin+1);
  1393. close(fd);
  1394. break;
  1395. }
  1396. }
  1397. len = 0;
  1398. if(argm[argc]!=(incbegin+1)) {
  1399. len = (int)strlen((char *)argm[argc]);
  1400. memmove(buf+*inbuf, argm[argc], len);
  1401. }
  1402. if((res = read(fd, buf+*inbuf+len, STRINGBUF-(1+len))) <= 0) {
  1403. perror((char *)incbegin+1);
  1404. close(fd);
  1405. break;
  1406. }
  1407. close(fd);
  1408. buf[*inbuf+res+len] = 0;
  1409. incbegin = buf + *inbuf;
  1410. (*inbuf) += (res + len + 1);
  1411. included++;
  1412. argc+=parsestr(incbegin, argm + argc, nitems - argc, buff, inbuf, bufsize);
  1413. included--;
  1414. incbegin = NULL;
  1415. }
  1416. break;
  1417. }
  1418. default:
  1419. if(space) {
  1420. if(comment && *str == '\"' && str[1] != '\"'){
  1421. str++;
  1422. comment = 0;
  1423. }
  1424. argm[argc++] = str;
  1425. if(argc >= nitems) return argc;
  1426. space = 0;
  1427. }
  1428. }
  1429. }
  1430. #undef buf
  1431. }
  1432. int readconfig(FILE * fp){
  1433. unsigned char ** argv = NULL;
  1434. unsigned char * buf = NULL;
  1435. int bufsize = STRINGBUF*2;
  1436. int inbuf = 0;
  1437. int argc;
  1438. struct commands * cm;
  1439. int res = 0;
  1440. if( !(buf = myalloc(bufsize)) || ! (argv = myalloc((NPARAMS + 1) * sizeof(unsigned char *))) ) {
  1441. fprintf(stderr, "No memory for configuration");
  1442. return(10);
  1443. }
  1444. for (linenum = 1; fgets((char *)buf, STRINGBUF, fp); linenum++){
  1445. if(!*buf || isspace(*buf) || (*buf) == '#')continue;
  1446. inbuf = (int)(strlen((char *)buf) + 1);
  1447. argc = parsestr (buf, argv, NPARAMS-1, &buf, &inbuf, &bufsize);
  1448. if(argc < 1) {
  1449. fprintf(stderr, "Parse error line %d\n", linenum);
  1450. return(21);
  1451. }
  1452. argv[argc] = NULL;
  1453. if(!strcmp((char *)argv[0], "end") && argc == 1) {
  1454. break;
  1455. }
  1456. else if(!strcmp((char *)argv[0], "writable") && argc == 1) {
  1457. if(!writable){
  1458. writable = freopen(curconf, "r+", fp);
  1459. if(!writable){
  1460. fprintf(stderr, "Unable to reopen config for writing: %s\n", curconf);
  1461. return 1;
  1462. }
  1463. }
  1464. continue;
  1465. }
  1466. res = 1;
  1467. for(cm = commandhandlers; cm; cm = cm->next){
  1468. if(!strcmp((char *)argv[0], (char *)cm->command) && argc >= cm->minargs && (!cm->maxargs || argc <= cm->maxargs)){
  1469. res = (*cm->handler)(argc, argv);
  1470. if(res > 0){
  1471. fprintf(stderr, "Command: '%s' failed with code %d, line %d\n", argv[0], res, linenum);
  1472. return(linenum);
  1473. }
  1474. if(!res) break;
  1475. }
  1476. }
  1477. if(res != 1)continue;
  1478. fprintf(stderr, "Unknown command: '%s' line %d\n", argv[0], linenum);
  1479. return(linenum);
  1480. }
  1481. myfree(buf);
  1482. myfree(argv);
  1483. return 0;
  1484. }
  1485. void freepwl(struct passwords *pwl){
  1486. for(; pwl; pwl = (struct passwords *)itfree(pwl, pwl->next)){
  1487. if(pwl->user)myfree(pwl->user);
  1488. if(pwl->password)myfree(pwl->password);
  1489. }
  1490. }
  1491. void freeconf(struct extparam *confp){
  1492. struct bandlim * bl;
  1493. struct bandlim * blout;
  1494. struct connlim * cl;
  1495. struct trafcount * tc;
  1496. struct passwords *pw;
  1497. struct ace *acl;
  1498. struct filemon *fm;
  1499. int counterd, archiverc;
  1500. unsigned char *logtarget;
  1501. unsigned char **archiver;
  1502. unsigned char * logformat;
  1503. int i;
  1504. pthread_mutex_lock(&tc_mutex);
  1505. confp->trafcountfunc = NULL;
  1506. tc = confp->trafcounter;
  1507. confp->trafcounter = NULL;
  1508. counterd = confp->counterd;
  1509. confp->counterd = -1;
  1510. confp->countertype = NONE;
  1511. pthread_mutex_unlock(&tc_mutex);
  1512. pthread_mutex_lock(&bandlim_mutex);
  1513. bl = confp->bandlimiter;
  1514. blout = confp->bandlimiterout;
  1515. confp->bandlimiter = NULL;
  1516. confp->bandlimiterout = NULL;
  1517. confp->bandlimfunc = NULL;
  1518. pthread_mutex_unlock(&bandlim_mutex);
  1519. pthread_mutex_lock(&connlim_mutex);
  1520. cl = confp->connlimiter;
  1521. confp->connlimiter = NULL;
  1522. pthread_mutex_unlock(&connlim_mutex);
  1523. pthread_mutex_lock(&pwl_mutex);
  1524. pw = confp->pwl;
  1525. confp->pwl = NULL;
  1526. pthread_mutex_unlock(&pwl_mutex);
  1527. logtarget = confp->logtarget;
  1528. confp->logtarget = NULL;
  1529. logformat = confp->logformat;
  1530. confp->logformat = NULL;
  1531. confp->rotate = 0;
  1532. confp->logtype = NONE;
  1533. confp->time = 0;
  1534. archiverc = confp->archiverc;
  1535. confp->archiverc = 0;
  1536. archiver = confp->archiver;
  1537. confp->archiver = NULL;
  1538. fm = confp->fmon;
  1539. confp->fmon = NULL;
  1540. confp->bandlimfunc = NULL;
  1541. memset(&confp->intsa, 0, sizeof(confp->intsa));
  1542. memset(&confp->extsa, 0, sizeof(confp->extsa));
  1543. #ifndef NOIPV6
  1544. memset(&confp->extsa6, 0, sizeof(confp->extsa6));
  1545. *SAFAMILY(&confp->extsa6) = AF_INET6;
  1546. #endif
  1547. *SAFAMILY(&confp->intsa) = AF_INET;
  1548. *SAFAMILY(&confp->extsa) = AF_INET;
  1549. confp->maxchild = 100;
  1550. resolvfunc = NULL;
  1551. numservers = 0;
  1552. acl = confp->acl;
  1553. confp->acl = NULL;
  1554. usleep(SLEEPTIME);
  1555. {
  1556. char * args[] = {"auth", "iponly", NULL};
  1557. h_auth(2, (unsigned char **)args);
  1558. }
  1559. if(tc)dumpcounters(tc,counterd);
  1560. for(; tc; tc = (struct trafcount *) itfree(tc, tc->next)){
  1561. if(tc->comment)myfree(tc->comment);
  1562. freeacl(tc->ace);
  1563. }
  1564. freeacl(acl);
  1565. freepwl(pw);
  1566. for(; bl; bl = (struct bandlim *) itfree(bl, bl->next)) freeacl(bl->ace);
  1567. for(; blout; blout = (struct bandlim *) itfree(blout, blout->next))freeacl(blout->ace);
  1568. for(; cl; cl = (struct connlim *) itfree(cl, cl->next)) freeacl(cl->ace);
  1569. if(counterd != -1) {
  1570. close(counterd);
  1571. }
  1572. for(; fm; fm = (struct filemon *)itfree(fm, fm->next)){
  1573. if(fm->path) myfree(fm->path);
  1574. }
  1575. myfree(logtarget);
  1576. myfree(logformat);
  1577. if(archiver) {
  1578. for(i = 0; i < archiverc; i++) myfree(archiver[i]);
  1579. myfree(archiver);
  1580. }
  1581. }
  1582. int reload (void){
  1583. FILE *fp;
  1584. int error = -2;
  1585. conf.paused++;
  1586. freeconf(&conf);
  1587. conf.paused++;
  1588. fp = confopen();
  1589. if(fp){
  1590. error = readconfig(fp);
  1591. conf.version++;
  1592. if(error) {
  1593. freeconf(&conf);
  1594. }
  1595. if(!writable)fclose(fp);
  1596. }
  1597. return error;
  1598. }