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|
/*
Copyright (c) 2010 Gluster, Inc. <http://www.gluster.com>
This file is part of GlusterFS.
GlusterFS is free software; you can redistribute it and/or modify
it under the terms of the GNU Affero General Public License as published
by the Free Software Foundation; either version 3 of the License,
or (at your option) any later version.
GlusterFS is distributed in the hope that it will be useful, but
WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
Affero General Public License for more details.
You should have received a copy of the GNU Affero General Public License
along with this program. If not, see
<http://www.gnu.org/licenses/>.
*/
#ifndef _CONFIG_H
#define _CONFIG_H
#include "config.h"
#endif
#include "rpcsvc.h"
#include "dict.h"
#include "xlator.h"
#include "mount3.h"
#include "xdr-nfs3.h"
#include "msg-nfs3.h"
#include "iobuf.h"
#include "nfs-common.h"
#include "nfs3-fh.h"
#include "nfs-fops.h"
#include "nfs-inodes.h"
#include "nfs-generics.h"
#include "locking.h"
#include "iatt.h"
#include "nfs-mem-types.h"
#include "nfs.h"
#include "common-utils.h"
#include <errno.h>
#include <sys/socket.h>
#include <sys/uio.h>
typedef ssize_t (*mnt3_serializer) (struct iovec outmsg, void *args);
/* Generic reply function for MOUNTv3 specific replies. */
int
mnt3svc_submit_reply (rpcsvc_request_t *req, void *arg, mnt3_serializer sfunc)
{
struct iovec outmsg = {0, };
struct iobuf *iob = NULL;
struct mount3_state *ms = NULL;
int ret = -1;
if (!req)
return -1;
ms = (struct mount3_state *)nfs_rpcsvc_request_program_private (req);
if (!ms) {
gf_log (GF_MNT, GF_LOG_ERROR, "mount state not found");
goto ret;
}
/* First, get the io buffer into which the reply in arg will
* be serialized.
*/
iob = iobuf_get (ms->iobpool);
if (!iob) {
gf_log (GF_MNT, GF_LOG_ERROR, "Failed to get iobuf");
goto ret;
}
iobuf_to_iovec (iob, &outmsg);
/* Use the given serializer to translate the give C structure in arg
* to XDR format which will be written into the buffer in outmsg.
*/
outmsg.iov_len = sfunc (outmsg, arg);
/* Then, submit the message for transmission. */
ret = nfs_rpcsvc_submit_message (req, outmsg, iob);
iobuf_unref (iob);
if (ret == -1) {
gf_log (GF_MNT, GF_LOG_ERROR, "Reply submission failed");
goto ret;
}
ret = 0;
ret:
return ret;
}
/* Generic error reply function, just pass the err status
* and it will do the rest, including transmission.
*/
int
mnt3svc_mnt_error_reply (rpcsvc_request_t *req, int mntstat)
{
mountres3 res;
if (!req)
return -1;
res.fhs_status = mntstat;
mnt3svc_submit_reply (req, (void *)&res,
(mnt3_serializer)xdr_serialize_mountres3);
return 0;
}
mountstat3
mnt3svc_errno_to_mnterr (int32_t errnum)
{
mountstat3 stat;
switch (errnum) {
case 0:
stat = MNT3_OK;
break;
case ENOENT:
stat = MNT3ERR_NOENT;
break;
case EPERM:
stat = MNT3ERR_PERM;
break;
case EIO:
stat = MNT3ERR_IO;
break;
case EACCES:
stat = MNT3ERR_ACCES;
break;
case ENOTDIR:
stat = MNT3ERR_NOTDIR;
break;
case EINVAL:
stat = MNT3ERR_INVAL;
break;
case ENOSYS:
stat = MNT3ERR_NOTSUPP;
break;
case ENOMEM:
stat = MNT3ERR_SERVERFAULT;
break;
default:
stat = MNT3ERR_SERVERFAULT;
break;
}
return stat;
}
mountres3
mnt3svc_set_mountres3 (mountstat3 stat, struct nfs3_fh *fh, int *authflavor,
u_int aflen)
{
mountres3 res = {0, };
uint32_t fhlen = 0;
res.fhs_status = stat;
fhlen = nfs3_fh_compute_size (fh);
res.mountres3_u.mountinfo.fhandle.fhandle3_len = fhlen;
res.mountres3_u.mountinfo.fhandle.fhandle3_val = (char *)fh;
res.mountres3_u.mountinfo.auth_flavors.auth_flavors_val = authflavor;
res.mountres3_u.mountinfo.auth_flavors.auth_flavors_len = aflen;
return res;
}
int
mnt3svc_update_mountlist (struct mount3_state *ms, rpcsvc_request_t *req,
char *expname)
{
struct mountentry *me = NULL;
int ret = -1;
if ((!ms) || (!req) || (!expname))
return -1;
me = (struct mountentry *)GF_CALLOC (1, sizeof (*me),
gf_nfs_mt_mountentry);
if (!me)
return -1;
strcpy (me->exname, expname);
INIT_LIST_HEAD (&me->mlist);
/* Must get the IP or hostname of the client so we
* can map it into the mount entry.
*/
ret = nfs_rpcsvc_conn_peername (req->conn, me->hostname, MNTPATHLEN);
if (ret == -1)
goto free_err;
LOCK (&ms->mountlock);
{
list_add_tail (&me->mlist, &ms->mountlist);
}
UNLOCK (&ms->mountlock);
free_err:
if (ret == -1)
GF_FREE (me);
return ret;
}
int
__mnt3_get_volume_id (struct mount3_state *ms, xlator_t *mntxl,
uuid_t volumeid)
{
int ret = -1;
struct mnt3_export *exp = NULL;
if ((!ms) || (!mntxl))
return ret;
list_for_each_entry (exp, &ms->exportlist, explist) {
if (exp->vol == mntxl) {
uuid_copy (volumeid, exp->volumeid);
ret = 0;
goto out;
}
}
out:
return ret;
}
int32_t
mnt3svc_lookup_mount_cbk (call_frame_t *frame, void *cookie,
xlator_t *this, int32_t op_ret, int32_t op_errno,
inode_t *inode, struct iatt *buf, dict_t *xattr,
struct iatt *postparent)
{
mountres3 res = {0, };
rpcsvc_request_t *req = NULL;
struct nfs3_fh fh = {{0}, };
struct mount3_state *ms = NULL;
mountstat3 status = 0;
int autharr[10];
int autharrlen = 0;
rpcsvc_t *svc = NULL;
xlator_t *mntxl = NULL;
uuid_t volumeid = {0, };
char fhstr[1024];
req = (rpcsvc_request_t *)frame->local;
if (!req)
return -1;
mntxl = (xlator_t *)cookie;
ms = (struct mount3_state *)nfs_rpcsvc_request_program_private (req);
if (!ms) {
gf_log (GF_MNT, GF_LOG_ERROR, "mount state not found");
op_ret = -1;
op_errno = EINVAL;
}
if (op_ret == -1)
status = mnt3svc_errno_to_mnterr (op_errno);
if (status != MNT3_OK)
goto xmit_res;
mnt3svc_update_mountlist (ms, req, mntxl->name);
if (gf_nfs_dvm_off (nfs_state (ms->nfsx))) {
fh = nfs3_fh_build_indexed_root_fh (ms->nfsx->children, mntxl);
goto xmit_res;
}
__mnt3_get_volume_id (ms, mntxl, volumeid);
fh = nfs3_fh_build_uuid_root_fh (volumeid);
xmit_res:
nfs3_fh_to_str (&fh, fhstr);
gf_log (GF_MNT, GF_LOG_DEBUG, "MNT reply: fh %s, status: %d", fhstr,
status);
if (op_ret == 0) {
svc = nfs_rpcsvc_request_service (req);
autharrlen = nfs_rpcsvc_auth_array (svc, mntxl->name, autharr,
10);
}
res = mnt3svc_set_mountres3 (status, &fh, autharr, autharrlen);
mnt3svc_submit_reply (req, (void *)&res,
(mnt3_serializer)xdr_serialize_mountres3);
return 0;
}
int
mnt3_match_dirpath_export (char *expname, char *dirpath)
{
int ret = 0;
int dlen = 0;
if ((!expname) || (!dirpath))
return 0;
/* Some clients send a dirpath for mount that includes the slash at the
* end. String compare for searching the export will fail because our
* exports list does not include that slash. Remove the slash to
* compare.
*/
dlen = strlen (dirpath);
if (dirpath [dlen - 1] == '/')
dirpath [dlen - 1] = '\0';
if (dirpath[0] != '/')
expname++;
if (strcmp (expname, dirpath) == 0)
ret = 1;
return ret;
}
int
mnt3svc_mount_inode (rpcsvc_request_t *req, struct mount3_state *ms,
xlator_t * xl, inode_t *exportinode)
{
int ret = -EFAULT;
nfs_user_t nfu = {0, };
loc_t exportloc = {0, };
if ((!req) || (!xl) || (!ms) || (!exportinode))
return ret;
ret = nfs_inode_loc_fill (exportinode, &exportloc);
if (ret < 0) {
gf_log (GF_MNT, GF_LOG_ERROR, "Loc fill failed for export inode"
": ino %"PRIu64", volume: %s",
exportinode->ino, xl->name);
goto err;
}
/* To service the mount request, all we need to do
* is to send a lookup fop that returns the stat
* for the root of the child volume. This is
* used to build the root fh sent to the client.
*/
nfs_request_user_init (&nfu, req);
ret = nfs_lookup (ms->nfsx, xl, &nfu, &exportloc,
mnt3svc_lookup_mount_cbk, (void *)req);
nfs_loc_wipe (&exportloc);
err:
return ret;
}
/* For a volume mount request, we just have to create loc on the root inode,
* and send a lookup. In the lookup callback the mount reply is send along with
* the file handle.
*/
int
mnt3svc_volume_mount (rpcsvc_request_t *req, struct mount3_state *ms,
struct mnt3_export *exp)
{
inode_t *exportinode = NULL;
int ret = -EFAULT;
uuid_t rootgfid = {0, };
if ((!req) || (!exp) || (!ms))
return ret;
rootgfid[15] = 1;
exportinode = inode_find (exp->vol->itable, rootgfid);
if (!exportinode) {
gf_log (GF_MNT, GF_LOG_ERROR, "Faild to get root inode");
ret = -ENOENT;
goto err;
}
ret = mnt3svc_mount_inode (req, ms, exp->vol, exportinode);
inode_unref (exportinode);
err:
return ret;
}
/* The catch with directory exports is that the first component of the export
* name will be the name of the volume.
* Any lookup that needs to be performed to build the directory's file handle
* needs to start from the directory path from the root of the volume. For that
* we need to strip out the volume name first.
*/
char *
__volume_subdir (char *dirpath, char **volname)
{
char *subdir = NULL;
int volname_len = 0;
if (!dirpath)
return NULL;
if (dirpath[0] == '/')
dirpath++;
subdir = index (dirpath, (int)'/');
if (!subdir)
goto out;
if (!*volname)
goto out;
/* subdir points to the first / after the volume name while dirpath
* points to the first char of the volume name.
*/
volname_len = subdir - dirpath;
strncpy (*volname, dirpath, volname_len);
*(*volname + volname_len) = '\0';
out:
return subdir;
}
void
mnt3_resolve_state_wipe (mnt3_resolve_t *mres)
{
if (!mres)
return;
nfs_loc_wipe (&mres->resolveloc);
GF_FREE (mres);
}
/* Sets up the component argument to contain the next component in the path and
* sets up path as an absolute path starting from the next component.
*/
char *
__setup_next_component (char *path, char *component)
{
char *comp = NULL;
char *nextcomp = NULL;
if ((!path) || (!component))
return NULL;
strcpy (component, path);
comp = index (component, (int)'/');
if (!comp)
goto err;
comp++;
nextcomp = index (comp, (int)'/');
if (nextcomp) {
strcpy (path, nextcomp);
*nextcomp = '\0';
} else
path[0] = '\0';
err:
return comp;
}
int32_t
mnt3_resolve_subdir_cbk (call_frame_t *frame, void *cookie, xlator_t *this,
int32_t op_ret, int32_t op_errno, inode_t *inode,
struct iatt *buf, dict_t *xattr,
struct iatt *postparent);
/* There are multiple components in the directory export path and each one
* needs to be looked up one after the other.
*/
int
__mnt3_resolve_export_subdir_comp (mnt3_resolve_t *mres)
{
char dupsubdir[MNTPATHLEN];
char *nextcomp = NULL;
int ret = -EFAULT;
nfs_user_t nfu = {0, };
uuid_t gfid = {0, };
if (!mres)
return ret;
nextcomp = __setup_next_component (mres->remainingdir, dupsubdir);
if (!nextcomp)
goto err;
/* Wipe the contents of the previous component */
uuid_copy (gfid, mres->resolveloc.inode->gfid);
nfs_loc_wipe (&mres->resolveloc);
ret = nfs_entry_loc_fill (mres->exp->vol->itable, gfid, nextcomp,
&mres->resolveloc, NFS_RESOLVE_CREATE);
if ((ret < 0) && (ret != -2)) {
gf_log (GF_MNT, GF_LOG_ERROR, "Failed to resolve and create "
"inode: parent gfid %s, entry %s", uuid_utoa (mres->resolveloc.inode->gfid), nextcomp);
ret = -EFAULT;
goto err;
}
nfs_request_user_init (&nfu, mres->req);
ret = nfs_lookup (mres->mstate->nfsx, mres->exp->vol, &nfu,
&mres->resolveloc, mnt3_resolve_subdir_cbk, mres);
err:
return ret;
}
int32_t
mnt3_resolve_subdir_cbk (call_frame_t *frame, void *cookie, xlator_t *this,
int32_t op_ret, int32_t op_errno, inode_t *inode,
struct iatt *buf, dict_t *xattr,
struct iatt *postparent)
{
mnt3_resolve_t *mres = NULL;
mountstat3 mntstat = MNT3ERR_SERVERFAULT;
struct nfs3_fh fh = {{0}, };
int autharr[10];
int autharrlen = 0;
rpcsvc_t *svc = NULL;
mountres3 res = {0, };
xlator_t *mntxl = NULL;
mres = frame->local;
mntxl = (xlator_t *)cookie;
if (op_ret == -1) {
mntstat = mnt3svc_errno_to_mnterr (op_errno);
goto err;
}
inode_link (mres->resolveloc.inode, mres->resolveloc.parent,
mres->resolveloc.name, buf);
nfs3_fh_build_child_fh (&mres->parentfh, buf, &fh);
if (strlen (mres->remainingdir) <= 0) {
op_ret = -1;
mntstat = MNT3_OK;
mnt3svc_update_mountlist (mres->mstate, mres->req,
mres->exp->expname);
goto err;
}
mres->parentfh = fh;
op_ret = __mnt3_resolve_export_subdir_comp (mres);
if (op_ret < 0)
mntstat = mnt3svc_errno_to_mnterr (-op_ret);
err:
if (op_ret == -1) {
gf_log (GF_MNT, GF_LOG_DEBUG, "Mount reply status: %d",
mntstat);
svc = nfs_rpcsvc_request_service (mres->req);
autharrlen = nfs_rpcsvc_auth_array (svc, mntxl->name, autharr,
10);
res = mnt3svc_set_mountres3 (mntstat, &fh, autharr, autharrlen);
mnt3svc_submit_reply (mres->req, (void *)&res,
(mnt3_serializer)xdr_serialize_mountres3);
mnt3_resolve_state_wipe (mres);
}
return 0;
}
/* We will always have to perform a hard lookup on all the components of a
* directory export for a mount request because in the mount reply we need the
* file handle of the directory. Our file handle creation code is designed with
* the assumption that to build a child file/dir fh, we'll always have the
* parent dir's fh available so that we may copy the hash array of the previous
* dir levels.
*
* Since we do not store the file handles anywhere, for every mount request we
* must resolve the file handles of every component so that the parent dir file
* of the exported directory can be built.
*/
int
__mnt3_resolve_subdir (mnt3_resolve_t *mres)
{
char dupsubdir[MNTPATHLEN];
char *firstcomp = NULL;
int ret = -EFAULT;
nfs_user_t nfu = {0, };
uuid_t rootgfid = {0, };
if (!mres)
return ret;
firstcomp = __setup_next_component (mres->remainingdir, dupsubdir);
if (!firstcomp)
goto err;
rootgfid[15] = 1;
ret = nfs_entry_loc_fill (mres->exp->vol->itable, rootgfid, firstcomp,
&mres->resolveloc, NFS_RESOLVE_CREATE);
if ((ret < 0) && (ret != -2)) {
gf_log (GF_MNT, GF_LOG_ERROR, "Failed to resolve and create "
"inode for volume root: %s", mres->exp->vol->name);
ret = -EFAULT;
goto err;
}
nfs_request_user_init (&nfu, mres->req);
ret = nfs_lookup (mres->mstate->nfsx, mres->exp->vol, &nfu,
&mres->resolveloc, mnt3_resolve_subdir_cbk, mres);
err:
return ret;
}
int
mnt3_resolve_subdir (rpcsvc_request_t *req, struct mount3_state *ms,
struct mnt3_export *exp, char *subdir)
{
mnt3_resolve_t *mres = NULL;
int ret = -EFAULT;
struct nfs3_fh pfh = GF_NFS3FH_STATIC_INITIALIZER;
if ((!req) || (!ms) || (!exp) || (!subdir))
return ret;
mres = GF_CALLOC (1, sizeof (mnt3_resolve_t), gf_nfs_mt_mnt3_resolve);
if (!mres) {
gf_log (GF_MNT, GF_LOG_ERROR, "Memory allocation failed");
goto err;
}
mres->exp = exp;
mres->mstate = ms;
mres->req = req;
strcpy (mres->remainingdir, subdir);
if (gf_nfs_dvm_off (nfs_state (ms->nfsx)))
pfh = nfs3_fh_build_indexed_root_fh (mres->mstate->nfsx->children, mres->exp->vol);
else
pfh = nfs3_fh_build_uuid_root_fh (exp->volumeid);
mres->parentfh = pfh;
ret = __mnt3_resolve_subdir (mres);
if (ret < 0) {
gf_log (GF_MNT, GF_LOG_ERROR, "Failed to resolve export dir: %s"
, mres->exp->expname);
GF_FREE (mres);
}
err:
return ret;
}
int
mnt3_resolve_export_subdir (rpcsvc_request_t *req, struct mount3_state *ms,
struct mnt3_export *exp)
{
char *volume_subdir = NULL;
int ret = -EFAULT;
if ((!req) || (!ms) || (!exp))
return ret;
volume_subdir = __volume_subdir (exp->expname, NULL);
if (!volume_subdir)
goto err;
ret = mnt3_resolve_subdir (req, ms, exp, exp->expname);
if (ret < 0) {
gf_log (GF_MNT, GF_LOG_ERROR, "Failed to resolve export dir: %s"
, exp->expname);
goto err;
}
err:
return ret;
}
int
mnt3svc_mount (rpcsvc_request_t *req, struct mount3_state *ms,
struct mnt3_export *exp)
{
int ret = -EFAULT;
if ((!req) || (!ms) || (!exp))
return ret;
if (exp->exptype == MNT3_EXPTYPE_VOLUME)
ret = mnt3svc_volume_mount (req, ms, exp);
else if (exp->exptype == MNT3_EXPTYPE_DIR)
ret = mnt3_resolve_export_subdir (req, ms, exp);
return ret;
}
/* mnt3_mntpath_to_xlator sets this to 1 if the mount is for a full
* volume or 2 for a subdir in the volume.
*/
struct mnt3_export *
mnt3_mntpath_to_export (struct mount3_state *ms, char *dirpath)
{
struct mnt3_export *exp = NULL;
struct mnt3_export *found = NULL;
if ((!ms) || (!dirpath))
return NULL;
list_for_each_entry (exp, &ms->exportlist, explist) {
/* Search for the an exact match with the volume */
if (mnt3_match_dirpath_export (exp->expname, dirpath)) {
found = exp;
gf_log (GF_MNT, GF_LOG_DEBUG, "Found export volume: "
"%s", exp->vol->name);
goto foundexp;
}
}
gf_log (GF_MNT, GF_LOG_DEBUG, "Export not found");
foundexp:
return found;
}
int
mnt3_check_client_net (struct mount3_state *ms, rpcsvc_request_t *req,
xlator_t *targetxl)
{
rpcsvc_t *svc = NULL;
int ret = -1;
if ((!ms) || (!req) || (!targetxl))
return -1;
svc = nfs_rpcsvc_request_service (req);
ret = nfs_rpcsvc_conn_peer_check (svc->options, targetxl->name,
nfs_rpcsvc_request_conn (req));
if (ret == RPCSVC_AUTH_REJECT) {
gf_log (GF_MNT, GF_LOG_TRACE, "Peer not allowed");
goto err;
}
ret = nfs_rpcsvc_conn_privport_check (svc, targetxl->name,
nfs_rpcsvc_request_conn (req));
if (ret == RPCSVC_AUTH_REJECT) {
gf_log (GF_MNT, GF_LOG_TRACE, "Unprivileged port not allowed");
goto err;
}
ret = 0;
err:
return ret;
}
int
mnt3_parse_dir_exports (rpcsvc_request_t *req, struct mount3_state *ms,
char *subdir)
{
char volname[1024];
struct mnt3_export *exp = NULL;
char *volname_ptr = NULL;
int ret = -1;
if ((!ms) || (!subdir))
return -1;
volname_ptr = volname;
subdir = __volume_subdir (subdir, &volname_ptr);
if (!subdir)
goto err;
exp = mnt3_mntpath_to_export (ms, volname);
if (!exp)
goto err;
ret = mnt3_resolve_subdir (req, ms, exp, subdir);
if (ret < 0) {
gf_log (GF_MNT, GF_LOG_ERROR, "Failed to resolve export dir: %s"
, subdir);
goto err;
}
err:
return ret;
}
int
mnt3_find_export (rpcsvc_request_t *req, char *path, struct mnt3_export **e)
{
int ret = -EFAULT;
struct mount3_state *ms = NULL;
struct mnt3_export *exp = NULL;
struct nfs_state *nfs = NULL;
if ((!req) || (!path) || (!e))
return -1;
ms = (struct mount3_state *)nfs_rpcsvc_request_program_private (req);
if (!ms) {
gf_log (GF_MNT, GF_LOG_ERROR, "Mount state not present");
nfs_rpcsvc_request_seterr (req, SYSTEM_ERR);
goto err;
}
nfs = (struct nfs_state *)ms->nfsx->private;
gf_log (GF_MNT, GF_LOG_DEBUG, "dirpath: %s", path);
exp = mnt3_mntpath_to_export (ms, path);
if (exp) {
ret = 0;
*e = exp;
goto err;
}
if (!gf_mnt3_export_dirs(ms)) {
ret = -1;
goto err;
}
ret = mnt3_parse_dir_exports (req, ms, path);
if (ret == 0) {
ret = -2;
goto err;
}
err:
return ret;
}
int
mnt3svc_mnt (rpcsvc_request_t *req)
{
struct iovec pvec = {0, };
char path[MNTPATHLEN];
int ret = -1;
struct mount3_state *ms = NULL;
mountstat3 mntstat = MNT3ERR_SERVERFAULT;
struct mnt3_export *exp = NULL;
struct nfs_state *nfs = NULL;
if (!req)
return -1;
pvec.iov_base = path;
pvec.iov_len = MNTPATHLEN;
ret = xdr_to_mountpath (pvec, req->msg);
if (ret == -1) {
gf_log (GF_MNT, GF_LOG_ERROR, "Failed to decode args");
nfs_rpcsvc_request_seterr (req, GARBAGE_ARGS);
goto rpcerr;
}
ms = (struct mount3_state *)nfs_rpcsvc_request_program_private (req);
if (!ms) {
gf_log (GF_MNT, GF_LOG_ERROR, "Mount state not present");
nfs_rpcsvc_request_seterr (req, SYSTEM_ERR);
ret = -1;
goto rpcerr;
}
ret = 0;
nfs = (struct nfs_state *)ms->nfsx->private;
gf_log (GF_MNT, GF_LOG_DEBUG, "dirpath: %s", path);
ret = mnt3_find_export (req, path, &exp);
if (ret == -2) {
ret = 0;
goto rpcerr;
} else if (ret < 0) {
ret = -1;
mntstat = MNT3ERR_NOENT;
goto mnterr;
}
if (!nfs_subvolume_started (nfs, exp->vol)) {
gf_log (GF_MNT, GF_LOG_DEBUG, "Volume %s not started",
exp->vol->name);
ret = -1;
mntstat = MNT3ERR_NOENT;
goto mnterr;
}
ret = mnt3_check_client_net (ms, req, exp->vol);
if (ret == RPCSVC_AUTH_REJECT) {
mntstat = MNT3ERR_ACCES;
gf_log (GF_MNT, GF_LOG_DEBUG, "Client mount not allowed");
ret = -1;
goto mnterr;
}
ret = mnt3svc_mount (req, ms, exp);
if (ret < 0)
mntstat = mnt3svc_errno_to_mnterr (-ret);
mnterr:
if (ret < 0) {
mnt3svc_mnt_error_reply (req, mntstat);
ret = 0;
}
rpcerr:
return ret;
}
int
mnt3svc_null (rpcsvc_request_t *req)
{
struct iovec dummyvec = {0, };
if (!req) {
gf_log (GF_MNT, GF_LOG_ERROR, "Got NULL request!");
return 0;
}
nfs_rpcsvc_submit_generic (req, dummyvec, NULL);
return 0;
}
mountlist
__build_mountlist (struct mount3_state *ms, int *count)
{
struct mountbody *mlist = NULL;
struct mountbody *prev = NULL;
struct mountbody *first = NULL;
size_t namelen = 0;
int ret = -1;
struct mountentry *me = NULL;
if ((!ms) || (!count))
return NULL;
*count = 0;
gf_log (GF_MNT, GF_LOG_DEBUG, "Building mount list:");
list_for_each_entry (me, &ms->mountlist, mlist) {
namelen = strlen (me->exname);
mlist = GF_CALLOC (1, sizeof (*mlist), gf_nfs_mt_mountbody);
if (!mlist) {
gf_log (GF_MNT, GF_LOG_ERROR, "Memory allocation"
" failed");
goto free_list;
}
mlist->ml_directory = GF_CALLOC (namelen + 2, sizeof (char),
gf_nfs_mt_char);
if (!mlist->ml_directory) {
gf_log (GF_MNT, GF_LOG_ERROR, "Memory allocation"
" failed");
goto free_list;
}
strcpy (mlist->ml_directory, "/");
strcat (mlist->ml_directory, me->exname);
namelen = strlen (me->hostname);
mlist->ml_hostname = GF_CALLOC (namelen + 2, sizeof (char),
gf_nfs_mt_char);
if (!mlist->ml_hostname) {
gf_log (GF_MNT, GF_LOG_ERROR, "Memory allocation"
" failed");
goto free_list;
}
strcat (mlist->ml_hostname, me->hostname);
gf_log (GF_MNT, GF_LOG_DEBUG, "mount entry: dir: %s, host: %s",
mlist->ml_directory, mlist->ml_hostname);
if (prev) {
prev->ml_next = mlist;
prev = mlist;
} else
prev = mlist;
if (!first)
first = mlist;
(*count)++;
}
ret = 0;
free_list:
if (ret == -1) {
xdr_free_mountlist (first);
first = NULL;
}
return first;
}
mountlist
mnt3svc_build_mountlist (struct mount3_state *ms, int *count)
{
struct mountbody *first = NULL;
LOCK (&ms->mountlock);
{
first = __build_mountlist (ms, count);
}
UNLOCK (&ms->mountlock);
return first;
}
int
mnt3svc_dump (rpcsvc_request_t *req)
{
int ret = -1;
struct mount3_state *ms = NULL;
mountlist mlist;
mountstat3 mstat = 0;
mnt3_serializer sfunc = NULL;
void *arg = NULL;
if (!req)
return -1;
ms = (struct mount3_state *)nfs_rpcsvc_request_program_private (req);
if (!ms) {
nfs_rpcsvc_request_seterr (req, SYSTEM_ERR);
goto rpcerr;
}
sfunc = (mnt3_serializer)xdr_serialize_mountlist;
mlist = mnt3svc_build_mountlist (ms, &ret);
arg = mlist;
if (!mlist) {
if (ret != 0) {
nfs_rpcsvc_request_seterr (req, SYSTEM_ERR);
ret = -1;
goto rpcerr;
} else {
arg = &mstat;
sfunc = (mnt3_serializer)xdr_serialize_mountstat3;
}
}
mnt3svc_submit_reply (req, arg, sfunc);
xdr_free_mountlist (mlist);
ret = 0;
rpcerr:
return ret;
}
int
__mnt3svc_umount (struct mount3_state *ms, char *dirpath, char *hostname)
{
struct mountentry *me = NULL;
char *exname = NULL;
int ret = -1;
if ((!ms) || (!dirpath) || (!hostname))
return -1;
if (list_empty (&ms->mountlist))
return 0;
if (dirpath[0] == '/')
exname = dirpath+1;
else
exname = dirpath;
list_for_each_entry (me, &ms->mountlist, mlist) {
if ((strcmp (me->exname, exname) == 0) &&
(strcmp (me->hostname, hostname) == 0)) {
ret = 0;
break;
}
}
/* Need this check here because at the end of the search me might still
* be pointing to the last entry, which may not be the one we're
* looking for.
*/
if (ret == -1) {/* Not found in list. */
gf_log (GF_MNT, GF_LOG_DEBUG, "Export not found");
goto ret;
}
if (!me)
goto ret;
gf_log (GF_MNT, GF_LOG_DEBUG, "Unmounting: dir %s, host: %s",
me->exname, me->hostname);
list_del (&me->mlist);
GF_FREE (me);
ret = 0;
ret:
return ret;
}
int
mnt3svc_umount (struct mount3_state *ms, char *dirpath, char *hostname)
{
int ret = -1;
if ((!ms) || (!dirpath) || (!hostname))
return -1;
LOCK (&ms->mountlock);
{
ret = __mnt3svc_umount (ms, dirpath, hostname);
}
UNLOCK (&ms->mountlock);
return ret;
}
int
mnt3svc_umnt (rpcsvc_request_t *req)
{
char hostname[MNTPATHLEN];
char dirpath[MNTPATHLEN];
struct iovec pvec = {0, };
int ret = -1;
struct mount3_state *ms = NULL;
mountstat3 mstat = MNT3_OK;
if (!req)
return -1;
/* Remove the mount point from the exports list. */
pvec.iov_base = dirpath;
pvec.iov_len = MNTPATHLEN;
ret = xdr_to_mountpath (pvec, req->msg);;
if (ret == -1) {
gf_log (GF_MNT, GF_LOG_ERROR, "Failed decode args");
nfs_rpcsvc_request_seterr (req, GARBAGE_ARGS);
goto rpcerr;
}
ms = (struct mount3_state *)nfs_rpcsvc_request_program_private (req);
if (!ms) {
gf_log (GF_MNT, GF_LOG_ERROR, "Mount state not present");
nfs_rpcsvc_request_seterr (req, SYSTEM_ERR);
ret = -1;
goto rpcerr;
}
ret = nfs_rpcsvc_conn_peername (req->conn, hostname, MNTPATHLEN);
if (ret != 0) {
gf_log (GF_MNT, GF_LOG_ERROR, "Failed to get remote name: %s",
gai_strerror (ret));
goto try_umount_with_addr;
}
gf_log (GF_MNT, GF_LOG_DEBUG, "dirpath: %s, hostname: %s", dirpath,
hostname);
ret = mnt3svc_umount (ms, dirpath, hostname);
/* Unmount succeeded with the given hostname. */
if (ret == 0)
goto snd_reply;
try_umount_with_addr:
if (ret != 0)
ret = nfs_rpcsvc_conn_peeraddr (req->conn, hostname, MNTPATHLEN,
NULL, 0);
if (ret != 0) {
gf_log (GF_MNT, GF_LOG_ERROR, "Failed to get remote addr: %s",
gai_strerror (ret));
nfs_rpcsvc_request_seterr (req, SYSTEM_ERR);
goto rpcerr;
}
gf_log (GF_MNT, GF_LOG_DEBUG, "dirpath: %s, hostname: %s", dirpath,
hostname);
ret = mnt3svc_umount (ms, dirpath, hostname);
if (ret == -1)
mstat = MNT3ERR_INVAL;
ret = 0;
snd_reply:
mnt3svc_submit_reply (req, &mstat,
(mnt3_serializer)xdr_serialize_mountstat3);
rpcerr:
return ret;
}
int
__mnt3svc_umountall (struct mount3_state *ms)
{
struct mountentry *me = NULL;
struct mountentry *tmp = NULL;
if (!ms)
return -1;
if (list_empty (&ms->mountlist))
return 0;
list_for_each_entry_safe (me, tmp, &ms->mountlist, mlist) {
list_del (&me->mlist);
GF_FREE (me);
}
return 0;
}
int
mnt3svc_umountall (struct mount3_state *ms)
{
int ret = -1;
if (!ms)
return -1;
LOCK (&ms->mountlock);
{
ret = __mnt3svc_umountall (ms);
}
UNLOCK (&ms->mountlock);
return ret;
}
int
mnt3svc_umntall (rpcsvc_request_t *req)
{
int ret = RPCSVC_ACTOR_ERROR;
struct mount3_state *ms = NULL;
mountstat3 mstat = MNT3_OK;
if (!req)
return ret;
ms = (struct mount3_state *)nfs_rpcsvc_request_program_private (req);
if (!ms) {
gf_log (GF_MNT, GF_LOG_ERROR, "Mount state not present");
nfs_rpcsvc_request_seterr (req, SYSTEM_ERR);
goto rpcerr;
}
mnt3svc_umountall (ms);
mnt3svc_submit_reply (req, &mstat,
(mnt3_serializer)xdr_serialize_mountstat3);
ret = RPCSVC_ACTOR_SUCCESS;
rpcerr:
return ret;
}
exports
mnt3_xlchildren_to_exports (rpcsvc_t *svc, struct mount3_state *ms)
{
struct exportnode *elist = NULL;
struct exportnode *prev = NULL;
struct exportnode *first = NULL;
size_t namelen = 0;
int ret = -1;
char *addrstr = NULL;
struct mnt3_export *ent = NULL;
struct nfs_state *nfs = NULL;
if ((!ms) || (!svc))
return NULL;
nfs = (struct nfs_state *)ms->nfsx->private;
list_for_each_entry(ent, &ms->exportlist, explist) {
/* If volume is not started yet, do not list it for tools like
* showmount.
*/
if (!nfs_subvolume_started (nfs, ent->vol))
continue;
namelen = strlen (ent->expname) + 1;
elist = GF_CALLOC (1, sizeof (*elist), gf_nfs_mt_exportnode);
if (!elist) {
gf_log (GF_MNT, GF_LOG_ERROR, "Memory allocation"
" failed");
goto free_list;
}
elist->ex_dir = GF_CALLOC (namelen + 2, sizeof (char),
gf_nfs_mt_char);
if (!elist->ex_dir) {
gf_log (GF_MNT, GF_LOG_ERROR, "Memory allocation"
" failed");
goto free_list;
}
strcpy (elist->ex_dir, ent->expname);
addrstr = nfs_rpcsvc_volume_allowed (svc->options,
ent->vol->name);
if (addrstr)
addrstr = gf_strdup (addrstr);
else
addrstr = gf_strdup ("No Access");
elist->ex_groups = GF_CALLOC (1, sizeof (struct groupnode),
gf_nfs_mt_groupnode);
if (!elist->ex_groups) {
gf_log (GF_MNT, GF_LOG_ERROR, "Memory allocation"
" failed");
goto free_list;
}
elist->ex_groups->gr_name = addrstr;
if (prev) {
prev->ex_next = elist;
prev = elist;
} else
prev = elist;
if (!first)
first = elist;
}
ret = 0;
free_list:
if (ret == -1) {
xdr_free_exports_list (first);
first = NULL;
}
return first;
}
int
mnt3svc_export (rpcsvc_request_t *req)
{
struct mount3_state *ms = NULL;
exports elist = NULL;
int ret = -1;
if (!req)
return -1;
ms = (struct mount3_state *)nfs_rpcsvc_request_program_private (req);
if (!ms) {
gf_log (GF_MNT, GF_LOG_ERROR, "mount state not found");
nfs_rpcsvc_request_seterr (req, SYSTEM_ERR);
goto err;
}
/* Using the children translator names, build the export list */
elist = mnt3_xlchildren_to_exports (nfs_rpcsvc_request_service (req),
ms);
/* Do not return error when exports list is empty. An exports list can
* be empty when no subvolumes have come up. No point returning error
* and confusing the user.
if (!elist) {
gf_log (GF_MNT, GF_LOG_ERROR, "Failed to build exports list");
nfs_rpcsvc_request_seterr (req, SYSTEM_ERR);
goto err;
}
*/
/* Note how the serializer is passed to the generic reply function. */
mnt3svc_submit_reply (req, &elist,
(mnt3_serializer)xdr_serialize_exports);
xdr_free_exports_list (elist);
ret = 0;
err:
return ret;
}
struct mnt3_export *
mnt3_init_export_ent (struct mount3_state *ms, xlator_t *xl, char *exportpath,
uuid_t volumeid)
{
struct mnt3_export *exp = NULL;
int alloclen = 0;
int ret = -1;
if ((!ms) || (!xl))
return NULL;
exp = GF_CALLOC (1, sizeof (*exp), gf_nfs_mt_mnt3_export);
if (!exp) {
gf_log (GF_MNT, GF_LOG_ERROR, "Memory allocation failed");
return NULL;
}
INIT_LIST_HEAD (&exp->explist);
if (exportpath)
alloclen = strlen (xl->name) + 2 + strlen (exportpath);
else
alloclen = strlen (xl->name) + 2;
exp->expname = GF_CALLOC (alloclen, sizeof (char), gf_nfs_mt_char);
if (!exp->expname) {
gf_log (GF_MNT, GF_LOG_ERROR, "Memory allocation failed");
GF_FREE (exp);
exp = NULL;
goto err;
}
if (exportpath) {
gf_log (GF_MNT, GF_LOG_TRACE, "Initing dir export: %s:%s",
xl->name, exportpath);
exp->exptype = MNT3_EXPTYPE_DIR;
ret = snprintf (exp->expname, alloclen, "/%s%s", xl->name,
exportpath);
} else {
gf_log (GF_MNT, GF_LOG_TRACE, "Initing volume export: %s",
xl->name);
exp->exptype = MNT3_EXPTYPE_VOLUME;
ret = snprintf (exp->expname, alloclen, "/%s", xl->name);
}
/* Just copy without discrimination, we'll determine whether to
* actually use it when a mount request comes in and a file handle
* needs to be built.
*/
uuid_copy (exp->volumeid, volumeid);
exp->vol = xl;
err:
return exp;
}
int
__mnt3_init_volume_direxports (struct mount3_state *ms, xlator_t *xlator,
char *optstr, uuid_t volumeid)
{
struct mnt3_export *newexp = NULL;
int ret = -1;
char *savptr = NULL;
char *dupopt = NULL;
char *token = NULL;
if ((!ms) || (!xlator) || (!optstr))
return -1;
dupopt = gf_strdup (optstr);
if (!dupopt) {
gf_log (GF_MNT, GF_LOG_ERROR, "gf_strdup failed");
goto err;
}
token = strtok_r (dupopt, ",", &savptr);
while (token) {
newexp = mnt3_init_export_ent (ms, xlator, token, volumeid);
if (!newexp) {
gf_log (GF_MNT, GF_LOG_ERROR, "Failed to init dir "
"export: %s", token);
ret = -1;
goto err;
}
list_add_tail (&newexp->explist, &ms->exportlist);
token = strtok_r (NULL, ",", &savptr);
}
ret = 0;
err:
if (dupopt)
GF_FREE (dupopt);
return ret;
}
int
__mnt3_init_volume (struct mount3_state *ms, dict_t *opts, xlator_t *xlator)
{
struct mnt3_export *newexp = NULL;
int ret = -1;
char searchstr[1024];
char *optstr = NULL;
uuid_t volumeid = {0, };
if ((!ms) || (!xlator) || (!opts))
return -1;
uuid_clear (volumeid);
if (gf_nfs_dvm_off (nfs_state (ms->nfsx)))
goto no_dvm;
ret = snprintf (searchstr, 1024, "nfs3.%s.volume-id", xlator->name);
if (ret < 0) {
gf_log (GF_MNT, GF_LOG_ERROR, "snprintf failed");
ret = -1;
goto err;
}
if (dict_get (opts, searchstr)) {
ret = dict_get_str (opts, searchstr, &optstr);
if (ret < 0) {
gf_log (GF_MNT, GF_LOG_ERROR, "Failed to read option"
": %s", searchstr);
ret = -1;
goto err;
}
} else {
gf_log (GF_MNT, GF_LOG_ERROR, "DVM is on but volume-id not "
"given for volume: %s", xlator->name);
ret = -1;
goto err;
}
if (optstr) {
ret = uuid_parse (optstr, volumeid);
if (ret < 0) {
gf_log (GF_MNT, GF_LOG_ERROR, "Failed to parse volume "
"UUID");
ret = -1;
goto err;
}
}
no_dvm:
ret = snprintf (searchstr, 1024, "nfs3.%s.export-dir", xlator->name);
if (ret < 0) {
gf_log (GF_MNT, GF_LOG_ERROR, "snprintf failed");
ret = -1;
goto err;
}
if (dict_get (opts, searchstr)) {
ret = dict_get_str (opts, searchstr, &optstr);
if (ret < 0) {
gf_log (GF_MNT, GF_LOG_ERROR, "Failed to read option: "
"%s", searchstr);
ret = -1;
goto err;
}
ret = __mnt3_init_volume_direxports (ms, xlator, optstr,
volumeid);
if (ret == -1) {
gf_log (GF_MNT, GF_LOG_ERROR, "Dir export setup failed"
" for volume: %s", xlator->name);
goto err;
}
}
if (ms->export_volumes) {
newexp = mnt3_init_export_ent (ms, xlator, NULL, volumeid);
if (!newexp) {
ret = -1;
goto err;
}
list_add_tail (&newexp->explist, &ms->exportlist);
}
ret = 0;
err:
return ret;
}
int
__mnt3_init_volume_export (struct mount3_state *ms, dict_t *opts)
{
int ret = -1;
char *optstr = NULL;
/* On by default. */
gf_boolean_t boolt = _gf_true;
if ((!ms) || (!opts))
return -1;
if (!dict_get (opts, "nfs3.export-volumes")) {
ret = 0;
goto err;
}
ret = dict_get_str (opts, "nfs3.export-volumes", &optstr);
if (ret < 0) {
gf_log (GF_MNT, GF_LOG_ERROR, "Failed to read option: "
"nfs3.export-volumes");
ret = -1;
goto err;
}
gf_string2boolean (optstr, &boolt);
ret = 0;
err:
if (boolt == _gf_false) {
gf_log (GF_MNT, GF_LOG_TRACE, "Volume exports disabled");
ms->export_volumes = 0;
} else {
gf_log (GF_MNT, GF_LOG_TRACE, "Volume exports enabled");
ms->export_volumes = 1;
}
return ret;
}
int
__mnt3_init_dir_export (struct mount3_state *ms, dict_t *opts)
{
int ret = -1;
char *optstr = NULL;
/* On by default. */
gf_boolean_t boolt = _gf_true;
if ((!ms) || (!opts))
return -1;
if (!dict_get (opts, "nfs3.export-dirs")) {
ret = 0;
goto err;
}
ret = dict_get_str (opts, "nfs3.export-dirs", &optstr);
if (ret < 0) {
gf_log (GF_MNT, GF_LOG_ERROR, "Failed to read option: "
"nfs3.export-dirs");
ret = -1;
goto err;
}
gf_string2boolean (optstr, &boolt);
ret = 0;
err:
if (boolt == _gf_false) {
gf_log (GF_MNT, GF_LOG_TRACE, "Dir exports disabled");
ms->export_dirs = 0;
} else {
gf_log (GF_MNT, GF_LOG_TRACE, "Dir exports enabled");
ms->export_dirs = 1;
}
return ret;
}
int
mnt3_init_options (struct mount3_state *ms, dict_t *options)
{
xlator_list_t *volentry = NULL;
int ret = -1;
if ((!ms) || (!options))
return -1;
__mnt3_init_volume_export (ms, options);
__mnt3_init_dir_export (ms, options);
volentry = ms->nfsx->children;
while (volentry) {
gf_log (GF_MNT, GF_LOG_TRACE, "Initing options for: %s",
volentry->xlator->name);
ret = __mnt3_init_volume (ms, options, volentry->xlator);
if (ret < 0) {
gf_log (GF_MNT, GF_LOG_ERROR, "Volume init failed");
goto err;
}
volentry = volentry->next;
}
ret = 0;
err:
return ret;
}
struct mount3_state *
mnt3_init_state (xlator_t *nfsx)
{
struct mount3_state *ms = NULL;
int ret = -1;
if (!nfsx)
return NULL;
ms = GF_CALLOC (1, sizeof (*ms), gf_nfs_mt_mount3_state);
if (!ms) {
gf_log (GF_MNT, GF_LOG_ERROR, "Memory allocation failed");
return NULL;
}
ms->iobpool = nfsx->ctx->iobuf_pool;
ms->nfsx = nfsx;
INIT_LIST_HEAD (&ms->exportlist);
ret = mnt3_init_options (ms, nfsx->options);
if (ret < 0) {
gf_log (GF_MNT, GF_LOG_ERROR, "Options init failed");
return NULL;
}
INIT_LIST_HEAD (&ms->mountlist);
LOCK_INIT (&ms->mountlock);
return ms;
}
int
mount_init_state (xlator_t *nfsx)
{
int ret = -1;
struct nfs_state *nfs = NULL;
if (!nfsx)
goto out;
nfs = (struct nfs_state *)nfs_state (nfsx);
/*Maintaining global state for MOUNT1 and MOUNT3*/
nfs->mstate = mnt3_init_state (nfsx);
if (!nfs->mstate) {
gf_log (GF_NFS, GF_LOG_ERROR, "Failed to allocate"
"mount state");
goto out;
}
ret = 0;
out:
return ret;
}
rpcsvc_actor_t mnt3svc_actors[MOUNT3_PROC_COUNT] = {
{"NULL", MOUNT3_NULL, mnt3svc_null, NULL, NULL},
{"MNT", MOUNT3_MNT, mnt3svc_mnt, NULL, NULL},
{"DUMP", MOUNT3_DUMP, mnt3svc_dump, NULL, NULL},
{"UMNT", MOUNT3_UMNT, mnt3svc_umnt, NULL, NULL},
{"UMNTALL", MOUNT3_UMNTALL, mnt3svc_umntall, NULL, NULL},
{"EXPORT", MOUNT3_EXPORT, mnt3svc_export, NULL, NULL}
};
/* Static init parts are assigned here, dynamic ones are done in
* mnt3svc_init and mnt3_init_state.
*/
rpcsvc_program_t mnt3prog = {
.progname = "MOUNT3",
.prognum = MOUNT_PROGRAM,
.progver = MOUNT_V3,
.progport = GF_MOUNTV3_PORT,
.progaddrfamily = AF_INET,
.proghost = NULL,
.actors = mnt3svc_actors,
.numactors = MOUNT3_PROC_COUNT,
};
rpcsvc_program_t *
mnt3svc_init (xlator_t *nfsx)
{
struct mount3_state *mstate = NULL;
struct nfs_state *nfs = NULL;
if (!nfsx || !nfsx->private)
return NULL;
nfs = (struct nfs_state *)nfsx->private;
gf_log (GF_MNT, GF_LOG_DEBUG, "Initing Mount v3 state");
mstate = (struct mount3_state *)nfs->mstate;
if (!mstate) {
gf_log (GF_MNT, GF_LOG_ERROR, "Mount v3 state init failed");
goto err;
}
mnt3prog.private = mstate;
return &mnt3prog;
err:
return NULL;
}
rpcsvc_actor_t mnt1svc_actors[MOUNT1_PROC_COUNT] = {
{"NULL", MOUNT1_NULL, mnt3svc_null, NULL, NULL},
{{0}, },
{"DUMP", MOUNT1_DUMP, mnt3svc_dump, NULL, NULL},
{"UMNT", MOUNT1_UMNT, mnt3svc_umnt, NULL, NULL},
{{0}, },
{"EXPORT", MOUNT1_EXPORT, mnt3svc_export, NULL, NULL}
};
rpcsvc_program_t mnt1prog = {
.progname = "MOUNT1",
.prognum = MOUNT_PROGRAM,
.progver = MOUNT_V1,
.progport = GF_MOUNTV1_PORT,
.progaddrfamily = AF_INET,
.proghost = NULL,
.actors = mnt1svc_actors,
.numactors = MOUNT1_PROC_COUNT,
};
rpcsvc_program_t *
mnt1svc_init (xlator_t *nfsx)
{
struct mount3_state *mstate = NULL;
struct nfs_state *nfs = NULL;
if (!nfsx || !nfsx->private)
return NULL;
nfs = (struct nfs_state *)nfsx->private;
gf_log (GF_MNT, GF_LOG_DEBUG, "Initing Mount v1 state");
mstate = (struct mount3_state *)nfs->mstate;
if (!mstate) {
gf_log (GF_MNT, GF_LOG_ERROR, "Mount v3 state init failed");
goto err;
}
mnt1prog.private = mstate;
return &mnt1prog;
err:
return NULL;
}
|