feat:replace boost library with C++11 std library

This commit is contained in:
Livox-SDK
2020-04-01 20:53:55 +08:00
parent 6d06233944
commit d3258bbd97
1936 changed files with 241862 additions and 60153 deletions
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#include "../unix/inet_ntop.c"
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#include "../unix/inet_pton.c"
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/* Licensed to the Apache Software Foundation (ASF) under one or more
* contributor license agreements. See the NOTICE file distributed with
* this work for additional information regarding copyright ownership.
* The ASF licenses this file to You under the Apache License, Version 2.0
* (the "License"); you may not use this file except in compliance with
* the License. You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*/
#include "apr_arch_networkio.h"
#include "apr_network_io.h"
#include "apr_portable.h"
#include "apr_general.h"
#include "apr_lib.h"
static int os2_socket_init(int, int ,int);
int (*apr_os2_socket)(int, int, int) = os2_socket_init;
int (*apr_os2_select)(int *, int, int, int, long) = NULL;
int (*apr_os2_sock_errno)() = NULL;
int (*apr_os2_accept)(int, struct sockaddr *, int *) = NULL;
int (*apr_os2_bind)(int, struct sockaddr *, int) = NULL;
int (*apr_os2_connect)(int, struct sockaddr *, int) = NULL;
int (*apr_os2_getpeername)(int, struct sockaddr *, int *) = NULL;
int (*apr_os2_getsockname)(int, struct sockaddr *, int *) = NULL;
int (*apr_os2_getsockopt)(int, int, int, char *, int *) = NULL;
int (*apr_os2_ioctl)(int, int, caddr_t, int) = NULL;
int (*apr_os2_listen)(int, int) = NULL;
int (*apr_os2_recv)(int, char *, int, int) = NULL;
int (*apr_os2_send)(int, const char *, int, int) = NULL;
int (*apr_os2_setsockopt)(int, int, int, char *, int) = NULL;
int (*apr_os2_shutdown)(int, int) = NULL;
int (*apr_os2_soclose)(int) = NULL;
int (*apr_os2_writev)(int, struct iovec *, int) = NULL;
int (*apr_os2_sendto)(int, const char *, int, int, const struct sockaddr *, int);
int (*apr_os2_recvfrom)(int, char *, int, int, struct sockaddr *, int *);
static HMODULE hSO32DLL;
static int os2_fn_link()
{
DosEnterCritSec(); /* Stop two threads doing this at the same time */
if (apr_os2_socket == os2_socket_init) {
ULONG rc;
char errorstr[200];
rc = DosLoadModule(errorstr, sizeof(errorstr), "SO32DLL", &hSO32DLL);
if (rc)
return APR_OS2_STATUS(rc);
rc = DosQueryProcAddr(hSO32DLL, 0, "SOCKET", &apr_os2_socket);
if (!rc)
rc = DosQueryProcAddr(hSO32DLL, 0, "SELECT", &apr_os2_select);
if (!rc)
rc = DosQueryProcAddr(hSO32DLL, 0, "SOCK_ERRNO", &apr_os2_sock_errno);
if (!rc)
rc = DosQueryProcAddr(hSO32DLL, 0, "ACCEPT", &apr_os2_accept);
if (!rc)
rc = DosQueryProcAddr(hSO32DLL, 0, "BIND", &apr_os2_bind);
if (!rc)
rc = DosQueryProcAddr(hSO32DLL, 0, "CONNECT", &apr_os2_connect);
if (!rc)
rc = DosQueryProcAddr(hSO32DLL, 0, "GETPEERNAME", &apr_os2_getpeername);
if (!rc)
rc = DosQueryProcAddr(hSO32DLL, 0, "GETSOCKNAME", &apr_os2_getsockname);
if (!rc)
rc = DosQueryProcAddr(hSO32DLL, 0, "GETSOCKOPT", &apr_os2_getsockopt);
if (!rc)
rc = DosQueryProcAddr(hSO32DLL, 0, "IOCTL", &apr_os2_ioctl);
if (!rc)
rc = DosQueryProcAddr(hSO32DLL, 0, "LISTEN", &apr_os2_listen);
if (!rc)
rc = DosQueryProcAddr(hSO32DLL, 0, "RECV", &apr_os2_recv);
if (!rc)
rc = DosQueryProcAddr(hSO32DLL, 0, "SEND", &apr_os2_send);
if (!rc)
rc = DosQueryProcAddr(hSO32DLL, 0, "SETSOCKOPT", &apr_os2_setsockopt);
if (!rc)
rc = DosQueryProcAddr(hSO32DLL, 0, "SHUTDOWN", &apr_os2_shutdown);
if (!rc)
rc = DosQueryProcAddr(hSO32DLL, 0, "SOCLOSE", &apr_os2_soclose);
if (!rc)
rc = DosQueryProcAddr(hSO32DLL, 0, "WRITEV", &apr_os2_writev);
if (!rc)
rc = DosQueryProcAddr(hSO32DLL, 0, "SENDTO", &apr_os2_sendto);
if (!rc)
rc = DosQueryProcAddr(hSO32DLL, 0, "RECVFROM", &apr_os2_recvfrom);
if (rc)
return APR_OS2_STATUS(rc);
}
DosExitCritSec();
return APR_SUCCESS;
}
static int os2_socket_init(int domain, int type, int protocol)
{
int rc = os2_fn_link();
if (rc == APR_SUCCESS)
return apr_os2_socket(domain, type, protocol);
return rc;
}
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/* Licensed to the Apache Software Foundation (ASF) under one or more
* contributor license agreements. See the NOTICE file distributed with
* this work for additional information regarding copyright ownership.
* The ASF licenses this file to You under the Apache License, Version 2.0
* (the "License"); you may not use this file except in compliance with
* the License. You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*/
#include "apr_arch_networkio.h"
#include "apr_errno.h"
#include "apr_general.h"
#include "apr_network_io.h"
#include "apr_lib.h"
#include <sys/time.h>
APR_DECLARE(apr_status_t) apr_socket_send(apr_socket_t *sock, const char *buf,
apr_size_t *len)
{
apr_ssize_t rv;
int fds, err = 0;
if (*len > 65536) {
*len = 65536;
}
do {
if (!sock->nonblock || err == SOCEWOULDBLOCK) {
fds = sock->socketdes;
rv = select(&fds, 0, 1, 0, sock->timeout >= 0 ? sock->timeout/1000 : -1);
if (rv != 1) {
*len = 0;
err = sock_errno();
if (rv == 0)
return APR_TIMEUP;
if (err == SOCEINTR)
continue;
return APR_OS2_STATUS(err);
}
}
rv = send(sock->socketdes, buf, (*len), 0);
err = rv < 0 ? sock_errno() : 0;
} while (err == SOCEINTR || err == SOCEWOULDBLOCK);
if (err) {
*len = 0;
return APR_OS2_STATUS(err);
}
(*len) = rv;
return APR_SUCCESS;
}
APR_DECLARE(apr_status_t) apr_socket_recv(apr_socket_t *sock, char *buf,
apr_size_t *len)
{
apr_ssize_t rv;
int fds, err = 0;
do {
if (!sock->nonblock || (err == SOCEWOULDBLOCK && sock->timeout != 0)) {
fds = sock->socketdes;
rv = select(&fds, 1, 0, 0, sock->timeout >= 0 ? sock->timeout/1000 : -1);
if (rv != 1) {
*len = 0;
err = sock_errno();
if (rv == 0)
return APR_TIMEUP;
if (err == SOCEINTR)
continue;
return APR_OS2_STATUS(err);
}
}
rv = recv(sock->socketdes, buf, (*len), 0);
err = rv < 0 ? sock_errno() : 0;
} while (err == SOCEINTR || (err == SOCEWOULDBLOCK && sock->timeout != 0));
if (err) {
*len = 0;
return APR_OS2_STATUS(err);
}
(*len) = rv;
return rv == 0 ? APR_EOF : APR_SUCCESS;
}
APR_DECLARE(apr_status_t) apr_socket_sendv(apr_socket_t *sock,
const struct iovec *vec,
apr_int32_t nvec, apr_size_t *len)
{
apr_status_t rv;
struct iovec *tmpvec;
int fds, err = 0;
int nv_tosend, total = 0;
/* Make sure writev() only gets fed 64k at a time */
for ( nv_tosend = 0; nv_tosend < nvec && total + vec[nv_tosend].iov_len < 65536; nv_tosend++ ) {
total += vec[nv_tosend].iov_len;
}
tmpvec = alloca(sizeof(struct iovec) * nv_tosend);
memcpy(tmpvec, vec, sizeof(struct iovec) * nv_tosend);
do {
if (!sock->nonblock || err == SOCEWOULDBLOCK) {
fds = sock->socketdes;
rv = select(&fds, 0, 1, 0, sock->timeout >= 0 ? sock->timeout/1000 : -1);
if (rv != 1) {
*len = 0;
err = sock_errno();
if (rv == 0)
return APR_TIMEUP;
if (err == SOCEINTR)
continue;
return APR_OS2_STATUS(err);
}
}
rv = writev(sock->socketdes, tmpvec, nv_tosend);
err = rv < 0 ? sock_errno() : 0;
} while (err == SOCEINTR || err == SOCEWOULDBLOCK);
if (err) {
*len = 0;
return APR_OS2_STATUS(err);
}
*len = rv;
return APR_SUCCESS;
}
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/* Licensed to the Apache Software Foundation (ASF) under one or more
* contributor license agreements. See the NOTICE file distributed with
* this work for additional information regarding copyright ownership.
* The ASF licenses this file to You under the Apache License, Version 2.0
* (the "License"); you may not use this file except in compliance with
* the License. You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*/
#include "apr_arch_networkio.h"
#include "apr_errno.h"
#include "apr_general.h"
#include "apr_network_io.h"
#include "apr_support.h"
#include "apr_lib.h"
#include <sys/time.h>
APR_DECLARE(apr_status_t) apr_socket_sendto(apr_socket_t *sock,
apr_sockaddr_t *where,
apr_int32_t flags, const char *buf,
apr_size_t *len)
{
apr_ssize_t rv;
int serrno;
do {
rv = sendto(sock->socketdes, buf, (*len), flags,
(struct sockaddr*)&where->sa,
where->salen);
} while (rv == -1 && (serrno = sock_errno()) == EINTR);
if (rv == -1 && serrno == SOCEWOULDBLOCK && sock->timeout != 0) {
apr_status_t arv = apr_wait_for_io_or_timeout(NULL, sock, 0);
if (arv != APR_SUCCESS) {
*len = 0;
return arv;
} else {
do {
rv = sendto(sock->socketdes, buf, *len, flags,
(const struct sockaddr*)&where->sa,
where->salen);
} while (rv == -1 && (serrno = sock_errno()) == SOCEINTR);
}
}
if (rv == -1) {
*len = 0;
return APR_FROM_OS_ERROR(serrno);
}
*len = rv;
return APR_SUCCESS;
}
APR_DECLARE(apr_status_t) apr_socket_recvfrom(apr_sockaddr_t *from,
apr_socket_t *sock,
apr_int32_t flags, char *buf,
apr_size_t *len)
{
apr_ssize_t rv;
int serrno;
do {
rv = recvfrom(sock->socketdes, buf, (*len), flags,
(struct sockaddr*)&from->sa, &from->salen);
} while (rv == -1 && (serrno = sock_errno()) == EINTR);
if (rv == -1 && serrno == SOCEWOULDBLOCK && sock->timeout != 0) {
apr_status_t arv = apr_wait_for_io_or_timeout(NULL, sock, 1);
if (arv != APR_SUCCESS) {
*len = 0;
return arv;
} else {
do {
rv = recvfrom(sock->socketdes, buf, *len, flags,
(struct sockaddr*)&from->sa, &from->salen);
} while (rv == -1 && (serrno = sock_errno()) == EINTR);
}
}
if (rv == -1) {
(*len) = 0;
return APR_FROM_OS_ERROR(serrno);
}
(*len) = rv;
if (rv == 0 && sock->type == SOCK_STREAM)
return APR_EOF;
return APR_SUCCESS;
}
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#include "../unix/sockaddr.c"
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#include "../unix/socket_util.c"
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/* Licensed to the Apache Software Foundation (ASF) under one or more
* contributor license agreements. See the NOTICE file distributed with
* this work for additional information regarding copyright ownership.
* The ASF licenses this file to You under the Apache License, Version 2.0
* (the "License"); you may not use this file except in compliance with
* the License. You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*/
#include "apr_arch_networkio.h"
#include "apr_arch_inherit.h"
#include "apr_network_io.h"
#include "apr_general.h"
#include "apr_portable.h"
#include "apr_lib.h"
#include "apr_strings.h"
#include <errno.h>
#include <string.h>
#include <sys/socket.h>
#include <netinet/tcp.h>
#include <netinet/in.h>
#include <arpa/inet.h>
#include <netdb.h>
#include "apr_arch_os2calls.h"
static apr_status_t socket_cleanup(void *sock)
{
apr_socket_t *thesocket = sock;
if (thesocket->socketdes < 0) {
return APR_EINVALSOCK;
}
if (soclose(thesocket->socketdes) == 0) {
thesocket->socketdes = -1;
return APR_SUCCESS;
}
else {
return APR_OS2_STATUS(sock_errno());
}
}
static void set_socket_vars(apr_socket_t *sock, int family, int type, int protocol)
{
sock->type = type;
sock->protocol = protocol;
apr_sockaddr_vars_set(sock->local_addr, family, 0);
apr_sockaddr_vars_set(sock->remote_addr, family, 0);
}
static void alloc_socket(apr_socket_t **new, apr_pool_t *p)
{
*new = (apr_socket_t *)apr_pcalloc(p, sizeof(apr_socket_t));
(*new)->pool = p;
(*new)->local_addr = (apr_sockaddr_t *)apr_pcalloc((*new)->pool,
sizeof(apr_sockaddr_t));
(*new)->local_addr->pool = p;
(*new)->remote_addr = (apr_sockaddr_t *)apr_pcalloc((*new)->pool,
sizeof(apr_sockaddr_t));
(*new)->remote_addr->pool = p;
(*new)->remote_addr_unknown = 1;
/* Create a pollset with room for one descriptor. */
/* ### check return codes */
(void) apr_pollset_create(&(*new)->pollset, 1, p, 0);
}
APR_DECLARE(apr_status_t) apr_socket_protocol_get(apr_socket_t *sock, int *protocol)
{
*protocol = sock->protocol;
return APR_SUCCESS;
}
APR_DECLARE(apr_status_t) apr_socket_create(apr_socket_t **new, int family, int type,
int protocol, apr_pool_t *cont)
{
int downgrade = (family == AF_UNSPEC);
apr_pollfd_t pfd;
if (family == AF_UNSPEC) {
#if APR_HAVE_IPV6
family = AF_INET6;
#else
family = AF_INET;
#endif
}
alloc_socket(new, cont);
(*new)->socketdes = socket(family, type, protocol);
#if APR_HAVE_IPV6
if ((*new)->socketdes < 0 && downgrade) {
family = AF_INET;
(*new)->socketdes = socket(family, type, protocol);
}
#endif
if ((*new)->socketdes < 0) {
return APR_OS2_STATUS(sock_errno());
}
set_socket_vars(*new, family, type, protocol);
(*new)->timeout = -1;
(*new)->nonblock = FALSE;
apr_pool_cleanup_register((*new)->pool, (void *)(*new),
socket_cleanup, apr_pool_cleanup_null);
return APR_SUCCESS;
}
APR_DECLARE(apr_status_t) apr_socket_shutdown(apr_socket_t *thesocket,
apr_shutdown_how_e how)
{
if (shutdown(thesocket->socketdes, how) == 0) {
return APR_SUCCESS;
}
else {
return APR_OS2_STATUS(sock_errno());
}
}
APR_DECLARE(apr_status_t) apr_socket_close(apr_socket_t *thesocket)
{
apr_pool_cleanup_kill(thesocket->pool, thesocket, socket_cleanup);
return socket_cleanup(thesocket);
}
APR_DECLARE(apr_status_t) apr_socket_bind(apr_socket_t *sock,
apr_sockaddr_t *sa)
{
if (bind(sock->socketdes,
(struct sockaddr *)&sa->sa,
sa->salen) == -1)
return APR_OS2_STATUS(sock_errno());
else {
sock->local_addr = sa;
/* XXX IPv6 - this assumes sin_port and sin6_port at same offset */
if (sock->local_addr->sa.sin.sin_port == 0) { /* no need for ntohs() when comparing w/ 0 */
sock->local_port_unknown = 1; /* kernel got us an ephemeral port */
}
return APR_SUCCESS;
}
}
APR_DECLARE(apr_status_t) apr_socket_listen(apr_socket_t *sock,
apr_int32_t backlog)
{
if (listen(sock->socketdes, backlog) == -1)
return APR_OS2_STATUS(sock_errno());
else
return APR_SUCCESS;
}
APR_DECLARE(apr_status_t) apr_socket_accept(apr_socket_t **new,
apr_socket_t *sock,
apr_pool_t *connection_context)
{
alloc_socket(new, connection_context);
set_socket_vars(*new, sock->local_addr->sa.sin.sin_family, SOCK_STREAM, sock->protocol);
(*new)->timeout = -1;
(*new)->nonblock = FALSE;
(*new)->socketdes = accept(sock->socketdes,
(struct sockaddr *)&(*new)->remote_addr->sa,
&(*new)->remote_addr->salen);
if ((*new)->socketdes < 0) {
return APR_OS2_STATUS(sock_errno());
}
*(*new)->local_addr = *sock->local_addr;
(*new)->local_addr->pool = connection_context;
(*new)->remote_addr->port = ntohs((*new)->remote_addr->sa.sin.sin_port);
/* fix up any pointers which are no longer valid */
if (sock->local_addr->sa.sin.sin_family == AF_INET) {
(*new)->local_addr->ipaddr_ptr = &(*new)->local_addr->sa.sin.sin_addr;
}
apr_pool_cleanup_register((*new)->pool, (void *)(*new),
socket_cleanup, apr_pool_cleanup_null);
return APR_SUCCESS;
}
APR_DECLARE(apr_status_t) apr_socket_connect(apr_socket_t *sock,
apr_sockaddr_t *sa)
{
if ((connect(sock->socketdes, (struct sockaddr *)&sa->sa.sin,
sa->salen) < 0) &&
(sock_errno() != SOCEINPROGRESS)) {
return APR_OS2_STATUS(sock_errno());
}
else {
int namelen = sizeof(sock->local_addr->sa.sin);
getsockname(sock->socketdes, (struct sockaddr *)&sock->local_addr->sa.sin,
&namelen);
sock->remote_addr = sa;
return APR_SUCCESS;
}
}
APR_DECLARE(apr_status_t) apr_socket_type_get(apr_socket_t *sock, int *type)
{
*type = sock->type;
return APR_SUCCESS;
}
APR_DECLARE(apr_status_t) apr_socket_data_get(void **data, const char *key,
apr_socket_t *sock)
{
sock_userdata_t *cur = sock->userdata;
*data = NULL;
while (cur) {
if (!strcmp(cur->key, key)) {
*data = cur->data;
break;
}
cur = cur->next;
}
return APR_SUCCESS;
}
APR_DECLARE(apr_status_t) apr_socket_data_set(apr_socket_t *sock, void *data, const char *key,
apr_status_t (*cleanup) (void *))
{
sock_userdata_t *new = apr_palloc(sock->pool, sizeof(sock_userdata_t));
new->key = apr_pstrdup(sock->pool, key);
new->data = data;
new->next = sock->userdata;
sock->userdata = new;
if (cleanup) {
apr_pool_cleanup_register(sock->pool, data, cleanup, cleanup);
}
return APR_SUCCESS;
}
APR_DECLARE(apr_status_t) apr_os_sock_get(apr_os_sock_t *thesock, apr_socket_t *sock)
{
*thesock = sock->socketdes;
return APR_SUCCESS;
}
APR_DECLARE(apr_status_t) apr_os_sock_make(apr_socket_t **apr_sock,
apr_os_sock_info_t *os_sock_info,
apr_pool_t *cont)
{
alloc_socket(apr_sock, cont);
set_socket_vars(*apr_sock, os_sock_info->family, os_sock_info->type, os_sock_info->protocol);
(*apr_sock)->timeout = -1;
(*apr_sock)->socketdes = *os_sock_info->os_sock;
if (os_sock_info->local) {
memcpy(&(*apr_sock)->local_addr->sa.sin,
os_sock_info->local,
(*apr_sock)->local_addr->salen);
/* XXX IPv6 - this assumes sin_port and sin6_port at same offset */
(*apr_sock)->local_addr->port = ntohs((*apr_sock)->local_addr->sa.sin.sin_port);
}
else {
(*apr_sock)->local_port_unknown = (*apr_sock)->local_interface_unknown = 1;
}
if (os_sock_info->remote) {
memcpy(&(*apr_sock)->remote_addr->sa.sin,
os_sock_info->remote,
(*apr_sock)->remote_addr->salen);
/* XXX IPv6 - this assumes sin_port and sin6_port at same offset */
(*apr_sock)->remote_addr->port = ntohs((*apr_sock)->remote_addr->sa.sin.sin_port);
}
else {
(*apr_sock)->remote_addr_unknown = 1;
}
apr_pool_cleanup_register((*apr_sock)->pool, (void *)(*apr_sock),
socket_cleanup, apr_pool_cleanup_null);
return APR_SUCCESS;
}
APR_DECLARE(apr_status_t) apr_os_sock_put(apr_socket_t **sock, apr_os_sock_t *thesock, apr_pool_t *cont)
{
if (cont == NULL) {
return APR_ENOPOOL;
}
if ((*sock) == NULL) {
alloc_socket(sock, cont);
set_socket_vars(*sock, AF_INET, SOCK_STREAM, 0);
(*sock)->timeout = -1;
}
(*sock)->local_port_unknown = (*sock)->local_interface_unknown = 1;
(*sock)->remote_addr_unknown = 1;
(*sock)->socketdes = *thesock;
return APR_SUCCESS;
}
APR_POOL_IMPLEMENT_ACCESSOR(socket);
APR_IMPLEMENT_INHERIT_SET(socket, inherit, pool, socket_cleanup)
APR_IMPLEMENT_INHERIT_UNSET(socket, inherit, pool, socket_cleanup)
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/* Licensed to the Apache Software Foundation (ASF) under one or more
* contributor license agreements. See the NOTICE file distributed with
* this work for additional information regarding copyright ownership.
* The ASF licenses this file to You under the Apache License, Version 2.0
* (the "License"); you may not use this file except in compliance with
* the License. You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*/
#include "apr_arch_networkio.h"
#include "apr_network_io.h"
#include "apr_general.h"
#include "apr_lib.h"
#include "apr_strings.h"
#include <errno.h>
#include <string.h>
#include <sys/socket.h>
#include <netinet/tcp.h>
#include <netinet/in.h>
#include <unistd.h>
#include <netdb.h>
#include <sys/so_ioctl.h>
APR_DECLARE(apr_status_t) apr_socket_timeout_set(apr_socket_t *sock,
apr_interval_time_t t)
{
sock->timeout = t;
return APR_SUCCESS;
}
APR_DECLARE(apr_status_t) apr_socket_opt_set(apr_socket_t *sock,
apr_int32_t opt, apr_int32_t on)
{
int one;
struct linger li;
if (on)
one = 1;
else
one = 0;
if (opt & APR_SO_KEEPALIVE) {
if (setsockopt(sock->socketdes, SOL_SOCKET, SO_KEEPALIVE, (void *)&one, sizeof(int)) == -1) {
return APR_OS2_STATUS(sock_errno());
}
}
if (opt & APR_SO_DEBUG) {
if (setsockopt(sock->socketdes, SOL_SOCKET, SO_DEBUG, (void *)&one, sizeof(int)) == -1) {
return APR_OS2_STATUS(sock_errno());
}
}
if (opt & APR_SO_BROADCAST) {
if (setsockopt(sock->socketdes, SOL_SOCKET, SO_BROADCAST, (void *)&one, sizeof(int)) == -1) {
return APR_FROM_OS_ERROR(sock_errno());
}
}
if (opt & APR_SO_REUSEADDR) {
if (setsockopt(sock->socketdes, SOL_SOCKET, SO_REUSEADDR, (void *)&one, sizeof(int)) == -1) {
return APR_OS2_STATUS(sock_errno());
}
}
if (opt & APR_SO_SNDBUF) {
if (setsockopt(sock->socketdes, SOL_SOCKET, SO_SNDBUF, (void *)&on, sizeof(int)) == -1) {
return APR_OS2_STATUS(sock_errno());
}
}
if (opt & APR_SO_NONBLOCK) {
if (ioctl(sock->socketdes, FIONBIO, (caddr_t)&one, sizeof(one)) == -1) {
return APR_OS2_STATUS(sock_errno());
} else {
sock->nonblock = one;
}
}
if (opt & APR_SO_LINGER) {
li.l_onoff = on;
li.l_linger = APR_MAX_SECS_TO_LINGER;
if (setsockopt(sock->socketdes, SOL_SOCKET, SO_LINGER, (char *) &li, sizeof(struct linger)) == -1) {
return APR_OS2_STATUS(sock_errno());
}
}
if (opt & APR_TCP_NODELAY) {
if (setsockopt(sock->socketdes, IPPROTO_TCP, TCP_NODELAY, (void *)&on, sizeof(int)) == -1) {
return APR_OS2_STATUS(sock_errno());
}
}
return APR_SUCCESS;
}
APR_DECLARE(apr_status_t) apr_socket_timeout_get(apr_socket_t *sock,
apr_interval_time_t *t)
{
*t = sock->timeout;
return APR_SUCCESS;
}
APR_DECLARE(apr_status_t) apr_socket_opt_get(apr_socket_t *sock,
apr_int32_t opt, apr_int32_t *on)
{
switch(opt) {
default:
return APR_EINVAL;
}
return APR_SUCCESS;
}
APR_DECLARE(apr_status_t) apr_socket_atmark(apr_socket_t *sock, int *atmark)
{
int oobmark;
if (ioctl(sock->socketdes, SIOCATMARK, (void*)&oobmark, sizeof(oobmark)) < 0) {
return APR_OS2_STATUS(sock_errno());
}
*atmark = (oobmark != 0);
return APR_SUCCESS;
}
APR_DECLARE(apr_status_t) apr_gethostname(char *buf, apr_int32_t len,
apr_pool_t *cont)
{
if (gethostname(buf, len) == -1) {
buf[0] = '\0';
return APR_OS2_STATUS(sock_errno());
}
else if (!memchr(buf, '\0', len)) { /* buffer too small */
buf[0] = '\0';
return APR_ENAMETOOLONG;
}
return APR_SUCCESS;
}