#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <errno.h>
#include <signal.h>
#include <openssl/opensslconf.h>
#if defined(OPENSSL_SYS_VMS_DECC) && !defined(__U_INT)
#define __U_INT
typedef unsigned int u_int;
#endif
#ifdef _WIN32
#include <process.h>
#ifdef _MSC_VER
#define getpid _getpid
#endif
#endif
#ifndef OPENSSL_NO_SOCK
#include "internal/e_os.h"
#include "apps.h"
#include "s_apps.h"
#include "internal/sockets.h"
#include <openssl/bio.h>
#include <openssl/err.h>
BIO_ADDR *ourpeer = NULL;
int init_client(int *sock, const char *host, const char *port,
const char *bindhost, const char *bindport,
int family, int type, int protocol, int tfo, int doconn,
BIO_ADDR **ba_ret)
{
BIO_ADDRINFO *res = NULL;
BIO_ADDRINFO *bindaddr = NULL;
const BIO_ADDRINFO *ai = NULL;
const BIO_ADDRINFO *bi = NULL;
int found = 0;
int ret;
int options = 0;
if (BIO_sock_init() != 1)
return 0;
ret = BIO_lookup_ex(host, port, BIO_LOOKUP_CLIENT, family, type, protocol,
&res);
if (ret == 0) {
ERR_print_errors(bio_err);
return 0;
}
if (bindhost != NULL || bindport != NULL) {
ret = BIO_lookup_ex(bindhost, bindport, BIO_LOOKUP_CLIENT,
family, type, protocol, &bindaddr);
if (ret == 0) {
ERR_print_errors(bio_err);
goto out;
}
}
ret = 0;
for (ai = res; ai != NULL; ai = BIO_ADDRINFO_next(ai)) {
OPENSSL_assert((family == AF_UNSPEC
|| family == BIO_ADDRINFO_family(ai))
&& (type == 0 || type == BIO_ADDRINFO_socktype(ai))
&& (protocol == 0
|| protocol == BIO_ADDRINFO_protocol(ai)));
if (bindaddr != NULL) {
for (bi = bindaddr; bi != NULL; bi = BIO_ADDRINFO_next(bi)) {
if (BIO_ADDRINFO_family(bi) == BIO_ADDRINFO_family(ai))
break;
}
if (bi == NULL)
continue;
++found;
}
*sock = BIO_socket(BIO_ADDRINFO_family(ai), BIO_ADDRINFO_socktype(ai),
BIO_ADDRINFO_protocol(ai), 0);
if (*sock == INVALID_SOCKET) {
continue;
}
if (bi != NULL) {
if (!BIO_bind(*sock, BIO_ADDRINFO_address(bi),
BIO_SOCK_REUSEADDR)) {
BIO_closesocket(*sock);
*sock = INVALID_SOCKET;
break;
}
}
#ifndef OPENSSL_NO_SCTP
if (protocol == IPPROTO_SCTP) {
BIO *tmpbio = BIO_new_dgram_sctp(*sock, BIO_NOCLOSE);
if (tmpbio == NULL) {
BIO_closesocket(*sock);
*sock = INVALID_SOCKET;
continue;
}
BIO_free(tmpbio);
}
#endif
if (BIO_ADDRINFO_protocol(ai) == IPPROTO_TCP) {
options |= BIO_SOCK_NODELAY;
if (tfo)
options |= BIO_SOCK_TFO;
}
if (doconn && !BIO_connect(*sock, BIO_ADDRINFO_address(ai), options)) {
BIO_closesocket(*sock);
*sock = INVALID_SOCKET;
continue;
}
if (tfo || !doconn) {
if (ba_ret == NULL) {
BIO_printf(bio_err, "Internal error\n");
BIO_closesocket(*sock);
*sock = INVALID_SOCKET;
goto out;
}
*ba_ret = BIO_ADDR_dup(BIO_ADDRINFO_address(ai));
}
break;
}
if (*sock == INVALID_SOCKET) {
if (bindaddr != NULL && !found) {
BIO_printf(bio_err, "Can't bind %saddress for %s%s%s\n",
#ifdef AF_INET6
BIO_ADDRINFO_family(res) == AF_INET6 ? "IPv6 " :
#endif
BIO_ADDRINFO_family(res) == AF_INET ? "IPv4 "
: BIO_ADDRINFO_family(res) == AF_UNIX ? "unix "
: "",
bindhost != NULL ? bindhost : "",
bindport != NULL ? ":" : "",
bindport != NULL ? bindport : "");
ERR_clear_error();
ret = 0;
}
ERR_print_errors(bio_err);
} else {
char *hostname = NULL;
hostname = BIO_ADDR_hostname_string(BIO_ADDRINFO_address(ai), 1);
if (hostname != NULL) {
BIO_printf(bio_err, "Connecting to %s\n", hostname);
OPENSSL_free(hostname);
}
ERR_clear_error();
ret = 1;
}
out:
if (bindaddr != NULL) {
BIO_ADDRINFO_free(bindaddr);
}
BIO_ADDRINFO_free(res);
return ret;
}
void get_sock_info_address(int asock, char **hostname, char **service)
{
union BIO_sock_info_u info;
if (hostname != NULL)
*hostname = NULL;
if (service != NULL)
*service = NULL;
if ((info.addr = BIO_ADDR_new()) != NULL
&& BIO_sock_info(asock, BIO_SOCK_INFO_ADDRESS, &info)) {
if (hostname != NULL)
*hostname = BIO_ADDR_hostname_string(info.addr, 1);
if (service != NULL)
*service = BIO_ADDR_service_string(info.addr, 1);
}
BIO_ADDR_free(info.addr);
}
int report_server_accept(BIO *out, int asock, int with_address, int with_pid)
{
int success = 1;
if (BIO_printf(out, "ACCEPT") <= 0)
return 0;
if (with_address) {
char *hostname, *service;
get_sock_info_address(asock, &hostname, &service);
success = hostname != NULL && service != NULL;
if (success)
success = BIO_printf(out,
strchr(hostname, ':') == NULL
? " %s:%s"
: " [%s]:%s",
hostname, service)
> 0;
else
(void)BIO_printf(out, "unknown:error\n");
OPENSSL_free(hostname);
OPENSSL_free(service);
}
if (with_pid)
success *= BIO_printf(out, " PID=%d", getpid()) > 0;
success *= BIO_printf(out, "\n") > 0;
(void)BIO_flush(out);
return success;
}
int do_server(int *accept_sock, const char *host, const char *port,
int family, int type, int protocol, do_server_cb cb,
unsigned char *context, int naccept, BIO *bio_s_out,
int tfo)
{
int asock = 0;
int sock;
int i;
BIO_ADDRINFO *res = NULL;
const BIO_ADDRINFO *next;
int sock_family, sock_type, sock_protocol, sock_port;
const BIO_ADDR *sock_address;
int sock_family_fallback = AF_UNSPEC;
const BIO_ADDR *sock_address_fallback = NULL;
int sock_options = BIO_SOCK_REUSEADDR;
int ret = 0;
if (BIO_sock_init() != 1)
return 0;
if (!BIO_lookup_ex(host, port, BIO_LOOKUP_SERVER, family, type, protocol,
&res)) {
ERR_print_errors(bio_err);
return 0;
}
OPENSSL_assert((family == AF_UNSPEC || family == BIO_ADDRINFO_family(res))
&& (type == 0 || type == BIO_ADDRINFO_socktype(res))
&& (protocol == 0 || protocol == BIO_ADDRINFO_protocol(res)));
sock_family = BIO_ADDRINFO_family(res);
sock_type = BIO_ADDRINFO_socktype(res);
sock_protocol = BIO_ADDRINFO_protocol(res);
sock_address = BIO_ADDRINFO_address(res);
next = BIO_ADDRINFO_next(res);
if (tfo && sock_type == SOCK_STREAM)
sock_options |= BIO_SOCK_TFO;
#ifdef AF_INET6
if (sock_family == AF_INET6)
sock_options |= BIO_SOCK_V6_ONLY;
if (next != NULL
&& BIO_ADDRINFO_socktype(next) == sock_type
&& BIO_ADDRINFO_protocol(next) == sock_protocol) {
if (sock_family == AF_INET
&& BIO_ADDRINFO_family(next) == AF_INET6) {
sock_family_fallback = sock_family;
sock_address_fallback = sock_address;
sock_family = AF_INET6;
sock_address = BIO_ADDRINFO_address(next);
} else if (sock_family == AF_INET6
&& BIO_ADDRINFO_family(next) == AF_INET) {
sock_options &= ~BIO_SOCK_V6_ONLY;
}
}
#endif
asock = BIO_socket(sock_family, sock_type, sock_protocol, 0);
if (asock == INVALID_SOCKET && sock_family_fallback != AF_UNSPEC) {
asock = BIO_socket(sock_family_fallback, sock_type, sock_protocol, 0);
sock_address = sock_address_fallback;
}
if (asock == INVALID_SOCKET
|| !BIO_listen(asock, sock_address, sock_options)) {
BIO_ADDRINFO_free(res);
ERR_print_errors(bio_err);
if (asock != INVALID_SOCKET)
BIO_closesocket(asock);
goto end;
}
#ifndef OPENSSL_NO_SCTP
if (protocol == IPPROTO_SCTP) {
BIO *tmpbio = BIO_new_dgram_sctp(asock, BIO_NOCLOSE);
if (tmpbio == NULL) {
BIO_ADDRINFO_free(res);
BIO_closesocket(asock);
ERR_print_errors(bio_err);
goto end;
}
BIO_free(tmpbio);
}
#endif
sock_port = BIO_ADDR_rawport(sock_address);
BIO_ADDRINFO_free(res);
res = NULL;
if (!report_server_accept(bio_s_out, asock, sock_port == 0, 0)) {
BIO_closesocket(asock);
ERR_print_errors(bio_err);
goto end;
}
if (accept_sock != NULL)
*accept_sock = asock;
for (;;) {
char sink[64];
struct timeval timeout;
fd_set readfds;
if (type == SOCK_STREAM) {
BIO_ADDR_free(ourpeer);
ourpeer = BIO_ADDR_new();
if (ourpeer == NULL) {
BIO_closesocket(asock);
ERR_print_errors(bio_err);
goto end;
}
do {
sock = BIO_accept_ex(asock, ourpeer, 0);
} while (sock < 0 && BIO_sock_should_retry(sock));
if (sock < 0) {
ERR_print_errors(bio_err);
BIO_closesocket(asock);
break;
}
if (naccept != -1)
naccept--;
BIO_set_tcp_ndelay(sock, 1);
i = (*cb)(sock, type, protocol, context);
shutdown(sock, 1);
timeout.tv_sec = 0;
timeout.tv_usec = 500000;
do {
FD_ZERO(&readfds);
openssl_fdset(sock, &readfds);
} while (select(sock + 1, &readfds, NULL, NULL, &timeout) > 0
&& readsocket(sock, sink, sizeof(sink)) > 0);
BIO_closesocket(sock);
} else {
if (naccept != -1)
naccept--;
i = (*cb)(asock, type, protocol, context);
}
if (i < 0 || naccept == 0) {
BIO_closesocket(asock);
asock = INVALID_SOCKET;
ret = i;
break;
}
}
end:
#ifdef AF_UNIX
if (family == AF_UNIX)
unlink(host);
#endif
BIO_ADDR_free(ourpeer);
ourpeer = NULL;
return ret;
}
void do_ssl_shutdown(SSL *ssl)
{
int ret;
do {
ret = SSL_shutdown(ssl);
if (ret < 0) {
switch (SSL_get_error(ssl, ret)) {
case SSL_ERROR_WANT_READ:
case SSL_ERROR_WANT_WRITE:
case SSL_ERROR_WANT_ASYNC:
case SSL_ERROR_WANT_ASYNC_JOB:
continue;
}
ret = 0;
}
} while (ret < 0);
}
#endif