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/** BEGIN COPYRIGHT BLOCK
* Copyright 2001 Sun Microsystems, Inc.
* Portions copyright 1999, 2001-2003 Netscape Communications Corporation.
* All rights reserved.
* END COPYRIGHT BLOCK **/
/*
* net.c: sockets abstraction and DNS related things
*
* Note: sockets created with net_socket are placed in non-blocking mode,
* however this API simulates that the calls are blocking.
*
* Rob McCool
*/
#include "netsite.h"
#include "prio.h"
#include "private/pprio.h"
#include <nspr.h>
#include <frame/conf.h>
/* Removed for ns security integration
#include "sslio/sslio.h"
*/
#include "net.h"
#include "util.h"
#include "daemon.h" /* child_exit */
#include "ereport.h" /* error reporting */
#include <string.h>
#ifdef XP_UNIX
#include <arpa/inet.h> /* inet_ntoa */
#include <netdb.h> /* hostent stuff */
#ifdef NEED_GHN_PROTO
extern "C" int gethostname (char *name, size_t namelen);
#endif
#endif /* XP_UNIX */
#ifdef LINUX
#include <sys/ioctl.h> /* ioctl */
#endif
extern "C" {
#include "ssl.h"
}
#if defined(OSF1)
#include <stropts.h>
#endif
#include "base/systems.h"
#include "base/dbtbase.h"
#if defined(OSF1)
#include <stropts.h>
#endif
#ifdef IRIX
#include <bstring.h> /* fd_zero uses bzero */
#endif
#include "netio.h"
net_io_t net_io_functions;
/* removed for ns security integration
#include "xp_error.h"
*/
#include "libadmin/libadmin.h"
int net_enabledns = 1;
int net_enableAsyncDNS = 0;
int net_listenqsize = DAEMON_LISTEN_SIZE;
unsigned int NET_BUFFERSIZE = NET_DEFAULT_BUFFERSIZE;
unsigned int NET_READ_TIMEOUT = NET_DEFAULT_READ_TIMEOUT;
unsigned int NET_WRITE_TIMEOUT = NET_DEFAULT_WRITE_TIMEOUT;
unsigned int SSL_HANDSHAKE_TIMEOUT = SSL_DEFAULT_HANDSHAKE_TIMEOUT;
/* ------------------------------ net_init -------------------------------- */
NSAPI_PUBLIC int net_init(int security_on)
{
return 0;
}
/* ------------------------------ net_socket ------------------------------ */
NSAPI_PUBLIC SYS_NETFD net_socket(int domain, int type, int protocol)
{
SYS_NETFD sock;
SYS_NETFD prsock;
if (security_active) {
if (protocol == IPPROTO_TCP)
prsock = PR_NewTCPSocket();
else
prsock = PR_NewUDPSocket();
if(prsock)
sock = SSL_ImportFD(NULL, prsock);
else sock = NULL;
}
else {
if (protocol == IPPROTO_TCP) sock = PR_NewTCPSocket();
else sock = PR_NewUDPSocket();
}
if (sock == NULL)
return (SYS_NETFD)SYS_NET_ERRORFD;
return sock;
}
/* ---------------------------- net_getsockopt ---------------------------- */
NSAPI_PUBLIC int net_getsockopt(SYS_NETFD s, int level, int optname,
void *optval, int *optlen)
{
return getsockopt(PR_FileDesc2NativeHandle(s), level, optname,
(char *)optval, (TCPLEN_T *)optlen);
}
/* ---------------------------- net_setsockopt ---------------------------- */
NSAPI_PUBLIC int net_setsockopt(SYS_NETFD s, int level, int optname,
const void *optval, int optlen)
{
return setsockopt(PR_FileDesc2NativeHandle(s), level, optname,
(const char *)optval, optlen);
}
/* ------------------------------ net_listen ------------------------------ */
NSAPI_PUBLIC int net_listen(SYS_NETFD s, int backlog)
{
return PR_Listen(s, backlog)==PR_FAILURE?IO_ERROR:0;
}
/* ------------------------- net_create_listener -------------------------- */
NSAPI_PUBLIC SYS_NETFD net_create_listener(char *ipstr, int port)
{
SYS_NETFD sd;
/*
struct sockaddr_in sa_server;
*/
PRNetAddr sa_server;
PRStatus status;
PRInt32 flags;
if ((sd = net_socket(AF_INET,SOCK_STREAM,IPPROTO_TCP)) == SYS_NET_ERRORFD) {
return SYS_NET_ERRORFD;
}
#ifdef SOLARIS
/*
* unset NONBLOCK flag;
*/
/* Have no idea why Solaris want to unset NONBLOCK flag when it should
be in NON-BLOCK mode, and new NSPR20 does not give file descriptor
back, so the code are removed --- yjh
flags = fcntl(sd->osfd, F_GETFL, 0);
fcntl(sd->osfd, F_SETFL, flags & ~O_NONBLOCK);
*/
#endif
/* Convert to NSPR21 for ns security integration
ZERO((char *) &sa_server, sizeof(sa_server));
sa_server.sin_family=AF_INET;
sa_server.sin_addr.s_addr = (ipstr ? inet_addr(ipstr) : htonl(INADDR_ANY));
sa_server.sin_port=htons(port);
if(net_bind(sd, (struct sockaddr *) &sa_server,sizeof(sa_server)) < 0) {
return SYS_NET_ERRORFD;
}
net_listen(sd, net_listenqsize);
*/
if (ipstr) {
status = PR_InitializeNetAddr(PR_IpAddrNull, port, &sa_server);
if (status == PR_SUCCESS) sa_server.inet.ip = inet_addr(ipstr);
else return SYS_NET_ERRORFD;
}
else {
status = PR_InitializeNetAddr(PR_IpAddrAny, port, &sa_server);
if (status == PR_FAILURE) return SYS_NET_ERRORFD;
}
status = PR_Bind(sd, &sa_server);
if (status == PR_FAILURE) return SYS_NET_ERRORFD;
status = PR_Listen(sd, net_listenqsize);
if (status == PR_FAILURE) return SYS_NET_ERRORFD;
return sd;
}
/* ------------------------------ net_select ------------------------------ */
/*
NSAPI_PUBLIC int net_select(int nfds, fd_set *r, fd_set *w, fd_set *e,
struct timeval *timeout)
{
PR_fd_set rd, wr, ex;
int index;
int rv;
if (nfds > (64*1024))
return -1;
PR_FD_ZERO(&rd);
PR_FD_ZERO(&wr);
PR_FD_ZERO(&ex);
for (index=0; index<nfds; index++) {
if (FD_ISSET(index, r))
PR_FD_NSET(index, &rd);
if (FD_ISSET(index, w))
PR_FD_NSET(index, &wr);
if (FD_ISSET(index, e))
PR_FD_NSET(index, &ex);
}
rv = PR_Select(0, &rd, &wr, &ex, PR_SecondsToInterval(timeout->tv_sec));
if (rv > 0) {
FD_ZERO(r);
FD_ZERO(w);
FD_ZERO(e);
for (index=0; index<nfds; index++) {
if (PR_FD_NISSET(index, &rd))
FD_SET(index, r);
if (PR_FD_NISSET(index, &wr))
FD_SET(index, w);
if (PR_FD_NISSET(index, &ex))
FD_SET(index, e);
}
}
return rv;
}
*/
NSAPI_PUBLIC int net_select(int nfds, fd_set *r, fd_set *w, fd_set *e,
struct timeval *timeout)
{
return 1;
}
/* ----------------------------- net_isalive ------------------------------ */
/*
* XXXmikep As suggested by shaver@ingenia.com. If everyone was POSIX
* compilent, a write() of 0 bytes would work as well
*/
NSAPI_PUBLIC int net_isalive(SYS_NETFD sd)
{
char c;
if (PR_RecvFrom(sd, &c, 1, MSG_PEEK, NULL, 0) == -1 ) {
return 0;
}
return 1;
}
/* ------------------------------ net_connect ------------------------------ */
NSAPI_PUBLIC int net_connect(SYS_NETFD s, const void *sockaddr, int namelen)
{
int rv;
child_status(CHILD_WRITING);
rv = PR_Connect(s, (PRNetAddr *)sockaddr, PR_INTERVAL_NO_TIMEOUT);
child_status(CHILD_PROCESSING);
return rv==PR_FAILURE?IO_ERROR:0;
}
/* ------------------------------ net_ioctl ------------------------------ */
NSAPI_PUBLIC int net_ioctl(SYS_NETFD s, int tag, void *result)
{
#if defined(NET_WINSOCK)
return ioctlsocket(PR_FileDesc2NativeHandle(s),tag,(unsigned long *)result);
#elif defined(XP_UNIX)
return ioctl(PR_FileDesc2NativeHandle(s), tag, result);
#else
write me;
#endif
}
/* --------------------------- net_getpeername ---------------------------- */
NSAPI_PUBLIC int net_getpeername(SYS_NETFD s, struct sockaddr *name,
int *namelen)
{
#if defined (SNI) || defined (UnixWare)
return getpeername(PR_FileDesc2NativeHandle(s), name, (size_t *)namelen);
#else /* defined (SNI) || defined (UnixWare) */
return getpeername(PR_FileDesc2NativeHandle(s), name, (TCPLEN_T *)namelen);
#endif /* defined (SNI) || defined (UnixWare) */
}
/* ------------------------------ net_close ------------------------------- */
NSAPI_PUBLIC int net_close(SYS_NETFD s)
{
return PR_Close(s)==PR_FAILURE?IO_ERROR:0;
}
NSAPI_PUBLIC int net_shutdown(SYS_NETFD s, int how)
{
switch (how) {
case 0:
return PR_Shutdown(s, PR_SHUTDOWN_RCV);
break;
case 1:
return PR_Shutdown(s, PR_SHUTDOWN_SEND);
break;
case 2:
return PR_Shutdown(s, PR_SHUTDOWN_BOTH);
break;
default:
return -1;
}
return 0;
}
/* ------------------------------- net_bind ------------------------------- */
NSAPI_PUBLIC int net_bind(SYS_NETFD s, const struct sockaddr *name,
int namelen)
{
return PR_Bind(s, (const PRNetAddr *)name)==PR_FAILURE?IO_ERROR:0;
}
/* ------------------------------ net_accept ------------------------------ */
NSAPI_PUBLIC SYS_NETFD net_accept(SYS_NETFD sd, struct sockaddr *addr,
int *addrlen)
{
SYS_NETFD sock = PR_Accept(sd, (PRNetAddr *)addr, PR_INTERVAL_NO_TIMEOUT);
if (sock == NULL)
return SYS_NET_ERRORFD;
return sock;
}
/* ------------------------------- net_read ------------------------------- */
NSAPI_PUBLIC int net_read(SYS_NETFD fd, char *buf, int sz, int timeout)
{
int rv;
if (timeout == NET_ZERO_TIMEOUT)
timeout = PR_INTERVAL_NO_WAIT;
else if (timeout == NET_INFINITE_TIMEOUT)
timeout = PR_INTERVAL_NO_TIMEOUT;
else
timeout = PR_SecondsToInterval(timeout);
child_status(CHILD_READING);
rv = PR_Recv(fd, buf, sz, 0, timeout);
child_status(CHILD_PROCESSING);
return rv;
}
/* ------------------------------ net_write ------------------------------- */
#ifndef NEEDS_WRITEV
int net_writev(SYS_NETFD fd, struct iovec *iov, int iov_size)
{
int rv;
child_status(CHILD_WRITING);
rv = PR_Writev(fd, (PRIOVec *)iov, iov_size, PR_INTERVAL_NO_TIMEOUT);
child_status(CHILD_PROCESSING);
return rv;
}
#else /* NEEDS_WRITEV */
/* Since SSL and NT do not support writev(), we just emulate it.
* This does not lead to the optimal number of packets going out...
*/
int net_writev(SYS_NETFD fd, struct iovec *iov, int iov_size)
{
int index;
child_status(CHILD_WRITING);
for (index=0; index<iov_size; index++) {
/* net_write already does the buffer for nonblocked IO */
if ( net_write(fd, iov[index].iov_base, iov[index].iov_len) ==IO_ERROR){
child_status(CHILD_PROCESSING);
return IO_ERROR;
}
}
child_status(CHILD_PROCESSING);
return IO_OKAY;
}
#endif /* NEEDS_WRITEV */
NSAPI_PUBLIC int net_write(SYS_NETFD fd, char *buf, int sz)
{
int rv;
child_status(CHILD_WRITING);
rv = PR_Send(fd, buf, sz, 0, PR_INTERVAL_NO_TIMEOUT);
child_status(CHILD_PROCESSING);
if(rv < 0) {
return IO_ERROR;
}
return rv;
}
NSAPI_PUBLIC int net_socketpair(SYS_NETFD *pair)
{
return PR_NewTCPSocketPair(pair);
}
#ifdef XP_UNIX
NSAPI_PUBLIC SYS_NETFD net_dup2(SYS_NETFD prfd, int osfd)
{
SYS_NETFD newfd = NULL;
if (prfd && PR_FileDesc2NativeHandle(prfd) != osfd) {
if (dup2(PR_FileDesc2NativeHandle(prfd), osfd) != -1) {
newfd = PR_ImportFile(osfd);
if (!newfd)
close(osfd);
}
}
return newfd;
}
NSAPI_PUBLIC int net_is_STDOUT(SYS_NETFD prfd)
{
int fd = PR_FileDesc2NativeHandle(prfd);
if (fd == STDOUT_FILENO) return 1;
return 0;
}
NSAPI_PUBLIC int net_is_STDIN(SYS_NETFD prfd)
{
int fd = PR_FileDesc2NativeHandle(prfd);
if (fd == STDIN_FILENO) return 1;
return 0;
}
#endif /* XP_UNIX */
/* -------------------------- Accept mutex crap --------------------------- */
#ifndef NET_WINSOCK
#include "sem.h"
static SEMAPHORE mob_sem;
static int have_mob_sem;
void net_accept_enter(void)
{
if(sem_grab(mob_sem) == -1)
ereport(LOG_CATASTROPHE, "sem_grab failed (%s)", system_errmsg());
have_mob_sem = 1;
}
int net_accept_tenter(void)
{
int ret = sem_tgrab(mob_sem);
if(ret != -1)
have_mob_sem = 1;
return ret;
}
void net_accept_exit(void)
{
if(sem_release(mob_sem) == -1)
ereport(LOG_CATASTROPHE, "sem_release failed (%s)", system_errmsg());
have_mob_sem = 0;
}
#ifdef AIX
#undef accept
#define accept naccept
#endif
void net_accept_texit(void)
{
if(have_mob_sem && (sem_release(mob_sem) == -1))
ereport(LOG_CATASTROPHE, "sem_release failed (%s)", system_errmsg());
have_mob_sem = 0;
}
int net_accept_init(int port)
{
/* XXXMB how to translate this to nspr? */
/* since SSL_AcceptHook is no longer in ns security (HCL_1_5),
so this is gone! (It does exist in HCL_101)
SSL_AcceptHook((SSLAcceptFunc)PR_Accept);
*/
have_mob_sem = 0;
mob_sem = sem_init("netsite", port);
return (mob_sem == SEM_ERROR ? -1 : 0);
}
void net_accept_terminate(void)
{
sem_terminate(mob_sem);
}
#endif /* !NET_WINSOCK */
/* ----------------------------- net_ip2host ------------------------------ */
char *dns_ip2host(char *ip, int verify);
NSAPI_PUBLIC char *net_ip2host(char *ip, int verify)
{
if(!net_enabledns)
return NULL;
return dns_ip2host(ip, verify);
}
/* ---------------------------- util_hostname ----------------------------- */
#ifdef XP_UNIX
#include <sys/param.h>
#else /* WIN32 */
#define MAXHOSTNAMELEN 255
#endif /* XP_UNIX */
/* Defined in dns.c */
char *net_find_fqdn(PRHostEnt *p);
NSAPI_PUBLIC char *util_hostname(void)
{
char str[MAXHOSTNAMELEN];
PRHostEnt hent;
char buf[PR_NETDB_BUF_SIZE];
PRStatus err;
gethostname(str, MAXHOSTNAMELEN);
err = PR_GetHostByName(
str,
buf,
PR_NETDB_BUF_SIZE,
&hent);
if (err == PR_FAILURE)
return NULL;
return net_find_fqdn(&hent);
}
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