3proxy/src/common.c

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15 KiB
C
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/*
3APA3A simpliest proxy server
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(c) 2002-2016 by Vladimir Dubrovin <3proxy@3proxy.ru>
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please read License Agreement
*/
#include "proxy.h"
char * copyright = COPYRIGHT;
int randomizer = 1;
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#ifndef _WIN32
pthread_attr_t pa;
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void daemonize(void){
if(fork() > 0) {
usleep(SLEEPTIME);
_exit(0);
}
setsid();
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}
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#endif
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char **stringtable = NULL;
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#ifdef WITH_LINUX_FUTEX
int sys_futex(void *addr1, int op, int val1, struct timespec *timeout, void *addr2, int val3)
{
return syscall(SYS_futex, addr1, op, val1, timeout, addr2, val3);
}
int mutex_lock(int *val)
{
int c;
if ((c = __sync_val_compare_and_swap(val, 0, 1)) != 0)
do {
if(c == 2 || __sync_val_compare_and_swap(val, 1, 2) != 0)
sys_futex(val, FUTEX_WAIT_PRIVATE, 2, NULL, NULL, 0);
} while ((c = __sync_val_compare_and_swap(val, 0, 2)) != 0);
return 0;
}
int mutex_unlock(int *val)
{
if(__sync_fetch_and_sub (val, 1) != 1){
*val = 0;
sys_futex(val, FUTEX_WAKE_PRIVATE, 1, NULL, NULL, 0);
}
return 0;
}
#endif
int myinet_ntop(int af, void *src, char *dst, socklen_t size){
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#ifndef NOIPV6
if(af != AF_INET6){
#endif
unsigned u = ntohl(((struct in_addr *)src)->s_addr);
return sprintf(dst, "%u.%u.%u.%u",
((u&0xFF000000)>>24),
((u&0x00FF0000)>>16),
((u&0x0000FF00)>>8),
((u&0x000000FF)));
#ifndef NOIPV6
}
*dst = 0;
inet_ntop(af, src, dst, size);
return (int)strlen(dst);
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#endif
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}
char *rotations[] = {
"",
"/min",
"/hour",
"/day",
"/week",
"/month",
"/year",
"",
};
struct extparam conf = {
{1, 5, 30, 60, 180, 1800, 15, 60, 15, 5, 0, 0}, /* int timeouts[12]; */
NULL, /*struct ace * acl; */
NULL, /* char * conffile; */
NULL, NULL, /* struct bandlim * bandlimiter, *bandlimiterout; */
NULL, /* struct connlim * connlimiter; */
NULL, /* struct trafcount * trafcounter; */
NULL, /* struct srvparam *services; */
0, /* int stacksize, */
0, -1, 0, 0, 0, 0, /* threadinit, counterd, haveerror, rotate, paused, archiverc, */
0, 500, 0, 0, 0, 0, /* demon, maxchild, needreload, timetoexit, version, noforce; */
6, 600, /* int authcachetype, authcachetime; */
1048576, /* int filtermaxsize; */
NULL, /* **archiver; */
NONE, NONE, /* ROTATION logtype, countertype; */
NULL, /* char * counterfile; */
#ifndef NOIPV6
{AF_INET},{AF_INET6},{AF_INET}, /* struct sockaddr_in6 intsa;
struct sockaddr_in6 extsa6;
struct sockaddr_in6 extsa; */
#else
{AF_INET},{AF_INET}, /* struct sockaddr_in intsa;
struct sockaddr_in extsa; */
#endif
NULL, /* struct passwords *pwl; */
NULL, /* struct auth * authenticate; */
doconnect, /* AUTHFUNC authfunc; */
NULL, /* BANDLIMFUNC bandlimfunc; */
NULL, /* TRAFCOUNTFUNC trafcountfunc; */
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NULL, /* void (*prelog)(struct clientparam * param); */
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NULL, NULL, /* char *logtarget, *logformat; */
NULL, /* struct filemon * fmon; */
NULL, /* struct filter * filters; */
NULL, /* struct auth *authfuncs; */
NULL, /* char* demanddialprog; */
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NULL, /* char **stringtable; */
(time_t)0, /* time_t time; */
0,0, /* unsigned logdumpsrv, logdumpcli; */
'@', /* char delimchar; */
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};
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int numservers=0;
char* NULLADDR="\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0";
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int myrand(void * entropy, int len){
int i;
unsigned short init;
init = randomizer;
for(i=0; i < len/2; i++){
init ^= ((unsigned short *)entropy)[i];
}
srand(init);
randomizer = rand();
return rand();
}
#ifndef WITH_POLL
#ifndef WITH_WSAPOLL
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int
#ifdef _WIN32
WINAPI
#endif
mypoll(struct mypollfd *fds, unsigned int nfds, int timeout){
fd_set readfd;
fd_set writefd;
fd_set oobfd;
struct timeval tv;
unsigned i;
int num;
SOCKET maxfd = 0;
tv.tv_sec = timeout/1000;
tv.tv_usec = (timeout%1000)*1000;
FD_ZERO(&readfd);
FD_ZERO(&writefd);
FD_ZERO(&oobfd);
for(i=0; i<nfds; i++){
if((fds[i].events&POLLIN))FD_SET(fds[i].fd, &readfd);
if((fds[i].events&POLLOUT))FD_SET(fds[i].fd, &writefd);
if((fds[i].events&POLLPRI))FD_SET(fds[i].fd, &oobfd);
fds[i].revents = 0;
if(fds[i].fd > maxfd) maxfd = fds[i].fd;
}
if((num = select(((int)(maxfd))+1, &readfd, &writefd, &oobfd, &tv)) < 1) return num;
for(i=0; i<nfds; i++){
if(FD_ISSET(fds[i].fd, &readfd)) fds[i].revents |= POLLIN;
if(FD_ISSET(fds[i].fd, &writefd)) fds[i].revents |= POLLOUT;
if(FD_ISSET(fds[i].fd, &oobfd)) fds[i].revents |= POLLPRI;
}
return num;
}
#endif
#endif
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struct sockfuncs so = {
socket,
accept,
bind,
listen,
connect,
getpeername,
getsockname,
getsockopt,
setsockopt,
#ifndef WITH_POLL
#ifndef WITH_WSAPOLL
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mypoll,
#else
WSAPoll,
#endif
#else
poll,
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#endif
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(void *)send,
(void *)sendto,
(void *)recv,
(void *)recvfrom,
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shutdown,
#ifdef _WIN32
closesocket
#else
close
#endif
};
#ifdef _WINCE
static char cebuf[1024];
static char ceargbuf[256];
char * ceargv[32];
char * CEToUnicode (const char *str){
int i;
for(i=0; i<510 && str[i]; i++){
cebuf[(i*2)] = str[i];
cebuf[(i*2)+1] = 0;
}
cebuf[(i*2)] = 0;
cebuf[(i*2)+1] = 0;
return cebuf;
};
int cesystem(const char *str){
STARTUPINFO startupInfo = {0};
startupInfo.cb = sizeof(startupInfo);
PROCESS_INFORMATION processInformation;
return CreateProcessW((LPWSTR)CEToUnicode(str), NULL, NULL, NULL, FALSE, NORMAL_PRIORITY_CLASS, NULL, NULL, &startupInfo, &processInformation);
}
int ceparseargs(const char *str){
int argc = 0, i;
int space = 1;
for(i=0; i<250 && argc<30 && str[2*i]; i++){
ceargbuf[i] = str[2*i];
if(space && ceargbuf[i]!=' '&& ceargbuf[i]!='\t'&& ceargbuf[i]!='\r'&& ceargbuf[i]!='\n'){
ceargv[argc++] = ceargbuf + i;
space = 0;
}
else if(!space && (ceargbuf[i]==' ' || ceargbuf[i]=='\t' || ceargbuf[i]=='\r' || ceargbuf[i]=='\n')){
ceargbuf[i] = 0;
space = 1;
}
}
return argc;
}
#endif
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int parsehost(int family, char *host, struct sockaddr *sa){
char *sp=NULL,*se=NULL;
unsigned short port=0;
int ret = 0;
if(!host) return 2;
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if(*host == '[') se=strchr((char *)host, ']');
if ( (sp = strchr(se?se:(char *)host, ':')) && !strchr(sp+1, ':')) *sp = 0;
if(se){
*se = 0;
}
if(sp){
port = atoi(sp+1);
}
ret = !getip46(family, host + (se!=0), (struct sockaddr *)sa);
if(se) *se = ']';
if(sp) *sp = ':';
if(port)*SAPORT(sa) = htons(port);
return ret;
}
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int parsehostname(char *hostname, struct clientparam *param, unsigned short port){
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char *sp=NULL,*se=NULL;
int ret = 0;
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if(!hostname || !*hostname)return 2;
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if(*hostname == '[') se=strchr(hostname, ']');
if (sp = strchr(se?se:hostname, ':')) {
if(strchr(sp+1, ':'))sp = NULL;
else *sp = 0;
}
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if(se){
*se = 0;
}
if(hostname != (char *)param->hostname){
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if(param->hostname) myfree(param->hostname);
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param->hostname = (char *)mystrdup(hostname + (se!=0));
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}
if(sp){
port = atoi(sp+1);
}
ret = !getip46(param->srv->family, param->hostname, (struct sockaddr *)&param->req);
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if(se) *se = ']';
if(sp) *sp = ':';
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*SAPORT(&param->req) = htons(port);
memset(&param->sinsr, 0, sizeof(param->sinsr));
return ret;
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}
int parseusername(char *username, struct clientparam *param, int extpasswd){
char *sb = NULL, *se = NULL, *sp = NULL;
if(!username || !*username) return 1;
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if(param->srv->needuser && (sb = strchr(username, ':')) && (se = strchr(sb + 1, ':')) && (!extpasswd || (sp = strchr(se + 1, ':')))){
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*sb = 0;
*se = 0;
if(sp) *sp = 0;
if(*(sb+1)) {
if(param->password) myfree(param->password);
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param->password = (char *)mystrdup(sb+1);
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}
if(*username) {
if(param->username) myfree(param->username);
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param->username = (char *)mystrdup(username);
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}
username = se+1;
}
if(extpasswd){
if(!sp) sp = strchr(username, ':');
if(sp){
*sp = 0;
if(param->extpassword) myfree(param->extpassword);
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param->extpassword = (char *) mystrdup(sp+1);
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}
}
if(param->extusername) myfree(param->extusername);
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param->extusername = (char *)mystrdup(username);
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if(sb) *sb = ':';
if(se) *se = ':';
if(sp) *sp = ':';
return 0;
}
int parseconnusername(char *username, struct clientparam *param, int extpasswd, unsigned short port){
char *sb, *se;
if(!username || !*username) return 1;
if ((sb=strchr(username, conf.delimchar)) == NULL){
if(!param->hostname && param->remsock == INVALID_SOCKET) return 2;
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if(param->hostname)parsehostname((char *)param->hostname, param, port);
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return parseusername(username, param, extpasswd);
}
while ((se=strchr(sb+1, conf.delimchar)))sb=se;
*(sb) = 0;
if(parseusername(username, param, extpasswd)) return 3;
*(sb) = conf.delimchar;
if(parsehostname(sb+1, param, port)) return 4;
return 0;
}
int connectwithpoll(SOCKET sock, struct sockaddr *sa, SASIZETYPE size, int to){
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struct pollfd fds[1];
#ifdef _WIN32
unsigned long ul = 1;
ioctlsocket(sock, FIONBIO, &ul);
#else
fcntl(sock,F_SETFL, O_NONBLOCK | fcntl(sock,F_GETFL));
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#endif
if(so._connect(sock,sa,size)) {
if(errno != EAGAIN && errno != EINPROGRESS) return (13);
}
memset(fds, 0, sizeof(fds));
fds[0].fd = sock;
fds[0].events = POLLOUT;
if(so._poll(fds, 1, to*1000) <= 0) {
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return (13);
}
return 0;
}
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int doconnect(struct clientparam * param){
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SASIZETYPE size;
if (*SAFAMILY(&param->sincl) == *SAFAMILY(&param->req) && !memcmp(SAADDR(&param->sincl), SAADDR(&param->req), SAADDRLEN(&param->req)) &&
*SAPORT(&param->sincl) == *SAPORT(&param->req)) return 519;
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if (param->operation == ADMIN || param->operation == DNSRESOLVE || param->operation == BIND || param->operation == UDPASSOC)
return 0;
if (param->remsock != INVALID_SOCKET){
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size = sizeof(param->sinsr);
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if(so._getpeername(param->remsock, (struct sockaddr *)&param->sinsr, &size)==-1) {return (15);}
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}
else {
struct linger lg = {1,conf.timeouts[SINGLEBYTE_S]};
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if(SAISNULL(&param->sinsr)){
if(SAISNULL(&param->req)) {
return 100;
}
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*SAFAMILY(&param->sinsr) = *SAFAMILY(&param->req);
memcpy(SAADDR(&param->sinsr), SAADDR(&param->req), SAADDRLEN(&param->req));
}
if(!*SAPORT(&param->sinsr))*SAPORT(&param->sinsr) = *SAPORT(&param->req);
if ((param->remsock=so._socket(SASOCK(&param->sinsr), SOCK_STREAM, IPPROTO_TCP)) == INVALID_SOCKET) {return (11);}
setopts(param->remsock, param->srv->srvsockopts);
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so._setsockopt(param->remsock, SOL_SOCKET, SO_LINGER, (char *)&lg, sizeof(lg));
#ifdef REUSE
{
int opt;
#ifdef SO_REUSEADDR
opt = 1;
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so._setsockopt(param->remsock, SOL_SOCKET, SO_REUSEADDR, (char *)&opt, sizeof(int));
#endif
#ifdef SO_REUSEPORT
opt = 1;
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so._setsockopt(param->remsock, SOL_SOCKET, SO_REUSEPORT, (char *)&opt, sizeof(int));
#endif
}
#endif
#ifdef SO_BINDTODEVICE
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if(param->srv->obindtodevice) {
if(so._setsockopt(param->remsock, SOL_SOCKET, SO_BINDTODEVICE, param->srv->obindtodevice, strlen(param->srv->obindtodevice) + 1))
return 12;
}
#endif
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if(SAISNULL(&param->sinsl)){
#ifndef NOIPV6
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if(*SAFAMILY(&param->sinsr) == AF_INET6) param->sinsl = param->srv->extsa6;
else
#endif
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param->sinsl = param->srv->extsa;
}
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*SAPORT(&param->sinsl) = 0;
if(so._bind(param->remsock, (struct sockaddr*)&param->sinsl, SASIZE(&param->sinsl))==-1) {
return 12;
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}
if(param->operation >= 256 || (param->operation & CONNECT)){
if(connectwithpoll(param->remsock,(struct sockaddr *)&param->sinsr,SASIZE(&param->sinsr),CONNECT_TO)) {
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return 13;
}
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}
size = sizeof(param->sinsl);
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if(so._getsockname(param->remsock, (struct sockaddr *)&param->sinsl, &size)==-1) {return (15);}
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}
return 0;
}
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int scanaddr(const char *s, unsigned long * ip, unsigned long * mask) {
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unsigned d1, d2, d3, d4, m;
int res;
if ((res = sscanf((char *)s, "%u.%u.%u.%u/%u", &d1, &d2, &d3, &d4, &m)) < 4) return 0;
if(mask && res == 4) *mask = 0xFFFFFFFF;
else if (mask) *mask = htonl(0xFFFFFFFF << (32 - m));
*ip = htonl ((d1<<24) ^ (d2<<16) ^ (d3<<8) ^ d4);
return res;
}
RESOLVFUNC resolvfunc = NULL;
#ifndef _WIN32
pthread_mutex_t gethostbyname_mutex;
int ghbn_init = 0;
#endif
#ifdef GETHOSTBYNAME_R
struct hostent * my_gethostbyname(char *name, char *buf, struct hostent *hp){
struct hostent *result;
int gherrno;
#ifdef _SOLARIS
return gethostbyname_r(name, hp, buf, 1024, &gherrno);
#else
if(gethostbyname_r(name, hp, buf, 1024, &result, &gherrno) != 0)
return NULL;
return result;
#endif
}
#endif
#ifdef NOIPV6
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unsigned long getip(char *name){
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unsigned long retval;
int i;
int ndots = 0;
struct hostent *hp=NULL;
RESOLVFUNC tmpresolv;
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#ifdef GETHOSTBYNAME_R
struct hostent he;
char ghbuf[1024];
#define gethostbyname(NAME) my_gethostbyname(NAME, ghbuf, &he)
#endif
if(strlen((char *)name)>255)name[255] = 0;
for(i=0; name[i]; i++){
if(name[i] == '.'){
if(++ndots > 3) break;
continue;
}
if(name[i] <'0' || name[i] >'9') break;
}
if(!name[i] && ndots == 3){
if(scanaddr(name, &retval, NULL) == 4){
return retval;
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}
}
if((tmpresolv=resolvfunc)){
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if((*tmpresolv)(AF_INET, name, (char *)&retval)) return retval;
return (*tmpresolv)(AF_INET, name, (char *)&retval)?retval:0;
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}
#if !defined(_WIN32) && !defined(GETHOSTBYNAME_R)
if(!ghbn_init){
pthread_mutex_init(&gethostbyname_mutex, NULL);
ghbn_init++;
}
pthread_mutex_lock(&gethostbyname_mutex);
#endif
hp=gethostbyname((char *)name);
if (!hp && conf.demanddialprog) {
system(conf.demanddialprog);
hp=gethostbyname((char *)name);
}
retval = hp?*(unsigned long *)hp->h_addr:0;
#if !defined(_WIN32) && !defined(GETHOSTBYNAME_R)
pthread_mutex_unlock(&gethostbyname_mutex);
#endif
#ifdef GETHOSTBYNAME_R
#undef gethostbyname
#endif
return retval;
}
#endif
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int afdetect(char *name){
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int ndots=0, ncols=0, nhex=0;
int i;
for(i=0; name[i]; i++){
if(name[i] == '.'){
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if(++ndots > 3) {
return -1;
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}
}
else if(name[i] == ':'){
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if(++ncols > 7) {
return -1;
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}
}
else if(name[i] == '%' || (name[i] >= 'a' && name[i] <= 'f') || (name[i] >= 'A' && name[i] <= 'F')){
nhex++;
}
else if(name[i] <'0' || name[i] >'9') {
return -1;
}
}
if(ndots == 3 && ncols == 0 && nhex == 0){
return AF_INET;
}
if(ncols >= 2) {
return AF_INET6;
}
return -1;
}
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unsigned long getip46(int family, char *name, struct sockaddr *sa){
#ifndef NOIPV6
int detect;
struct addrinfo *ai, hint;
RESOLVFUNC tmpresolv;
if(!sa) return 0;
if(!family) {
family = 4;
#else
((struct sockaddr_in *)sa)->sin_family = AF_INET;
return (((struct sockaddr_in *)sa)->sin_addr.s_addr = getip(name))? AF_INET:0;
#endif
#ifndef NOIPV6
}
detect = afdetect(name);
if(detect != -1){
if(family == 4 && detect != AF_INET) return 0;
*SAFAMILY(sa) = (family == 6)? AF_INET6 : detect;
return inet_pton(*SAFAMILY(sa), (char *)name, SAADDR(sa))? *SAFAMILY(sa) : 0;
}
if((tmpresolv = resolvfunc)){
int f = (family == 6 || family == 64)?AF_INET6:AF_INET;
*SAFAMILY(sa) = f;
if(tmpresolv(f, name, SAADDR(sa))) return f;
if(family == 4 || family == 6) return 0;
f = (family == 46)? AF_INET6 : AF_INET;
*SAFAMILY(sa) = f;
if(tmpresolv(f, name, SAADDR(sa))) return f;
return 0;
}
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memset(&hint, 0, sizeof(hint));
hint.ai_family = (family == 6 || family == 64)?AF_INET6:AF_INET;
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if (getaddrinfo((char *)name, NULL, &hint, &ai)) {
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if(family == 64 || family == 46){
hint.ai_family = (family == 64)?AF_INET:AF_INET6;
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if (getaddrinfo((char *)name, NULL, &hint, &ai)) return 0;
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}
else return 0;
}
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if(ai){
if(ai->ai_addr->sa_family == AF_INET || ai->ai_addr->sa_family == AF_INET6){
*SAFAMILY(sa)=ai->ai_addr->sa_family;
memcpy(SAADDR(sa), SAADDR(ai->ai_addr), SAADDRLEN(ai->ai_addr));
freeaddrinfo(ai);
return *SAFAMILY(sa);
}
freeaddrinfo(ai);
}
2014-05-11 05:39:02 +08:00
return 0;
#endif
}