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mirror of https://github.com/samba-team/samba.git synced 2025-02-05 21:57:51 +03:00
Andrew Tridgell fcc4efd1ea the next step in the dcerpc server code. Added the link between the
IPC IO routines and the dcerpc endpoint servers.
(This used to be commit 4929c53bc8dddda8a763fdfbcf81a79776d01113)
2003-12-11 09:07:45 +00:00

865 lines
22 KiB
C

/*
Unix SMB/CIFS implementation.
simple NTVFS filesystem backend
Copyright (C) Andrew Tridgell 2003
This program is free software; you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation; either version 2 of the License, or
(at your option) any later version.
This program 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 General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program; if not, write to the Free Software
Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
*/
/*
this implements a very simple NTVFS filesystem backend.
this backend largely ignores the POSIX -> CIFS mappings, just doing absolutely
minimal work to give a working backend.
*/
#include "includes.h"
#include "svfs.h"
#ifndef O_DIRECTORY
#define O_DIRECTORY 0
#endif
/*
connect to a share - used when a tree_connect operation comes
in. For a disk based backend we needs to ensure that the base
directory exists (tho it doesn't need to be accessible by the user,
that comes later)
*/
static NTSTATUS svfs_connect(struct request_context *req, const char *sharename)
{
struct stat st;
struct tcon_context *conn = req->conn;
struct svfs_private *private;
conn->ntvfs_private = talloc(conn->mem_ctx, sizeof(struct svfs_private));
private = conn->ntvfs_private;
private->next_search_handle = 0;
private->connectpath = talloc_strdup(conn->mem_ctx, lp_pathname(conn->service));
/* the directory must exist */
if (stat(private->connectpath, &st) != 0 || !S_ISDIR(st.st_mode)) {
DEBUG(0,("'%s' is not a directory, when connecting to [%s]\n",
private->connectpath, sharename));
return NT_STATUS_BAD_NETWORK_NAME;
}
conn->fs_type = talloc_strdup(conn->mem_ctx, "NTFS");
conn->dev_type = talloc_strdup(conn->mem_ctx, "A:");
return NT_STATUS_OK;
}
/*
disconnect from a share
*/
static NTSTATUS svfs_disconnect(struct tcon_context *req)
{
return NT_STATUS_OK;
}
/*
delete a file - the dirtype specifies the file types to include in the search.
The name can contain CIFS wildcards, but rarely does (except with OS/2 clients)
*/
static NTSTATUS svfs_unlink(struct request_context *req, struct smb_unlink *unl)
{
char *unix_path;
unix_path = svfs_unix_path(req, unl->in.pattern);
/* ignoring wildcards ... */
if (unlink(unix_path) == -1) {
return map_nt_error_from_unix(errno);
}
return NT_STATUS_OK;
}
/*
ioctl interface - we don't do any
*/
static NTSTATUS svfs_ioctl(struct request_context *req, union smb_ioctl *io)
{
return NT_STATUS_INVALID_PARAMETER;
}
/*
check if a directory exists
*/
static NTSTATUS svfs_chkpath(struct request_context *req, struct smb_chkpath *cp)
{
char *unix_path;
struct stat st;
unix_path = svfs_unix_path(req, cp->in.path);
if (stat(unix_path, &st) == -1) {
return map_nt_error_from_unix(errno);
}
if (!S_ISDIR(st.st_mode)) {
return NT_STATUS_NOT_A_DIRECTORY;
}
return NT_STATUS_OK;
}
/*
approximately map a struct stat to a generic fileinfo struct
*/
static NTSTATUS svfs_map_fileinfo(struct request_context *req, union smb_fileinfo *info, struct stat *st)
{
unix_to_nt_time(&info->generic.out.create_time, st->st_ctime);
unix_to_nt_time(&info->generic.out.access_time, st->st_atime);
unix_to_nt_time(&info->generic.out.write_time, st->st_mtime);
unix_to_nt_time(&info->generic.out.change_time, st->st_mtime);
info->generic.out.alloc_size = st->st_size;
info->generic.out.size = st->st_size;
info->generic.out.attrib = svfs_unix_to_dos_attrib(st->st_mode);
info->generic.out.alloc_size = st->st_blksize * st->st_blocks;
info->generic.out.nlink = st->st_nlink;
info->generic.out.directory = S_ISDIR(st->st_mode) ? 1 : 0;
info->generic.out.file_id = svfs_file_id(st);
/* REWRITE: TODO stuff in here */
info->generic.out.delete_pending = 0;
info->generic.out.ea_size = 0;
info->generic.out.num_eas = 0;
info->generic.out.fname.s = talloc_strdup(req->mem_ctx, "TODO - STORE FILENAME");
info->generic.out.alt_fname.s = talloc_strdup(req->mem_ctx, "TODO - STORE ALT_FN");
info->generic.out.ex_attrib = 0;
info->generic.out.compressed_size = 0;
info->generic.out.format = 0;
info->generic.out.unit_shift = 0;
info->generic.out.chunk_shift = 0;
info->generic.out.cluster_shift = 0;
info->generic.out.access_flags = 0;
info->generic.out.position = 0;
info->generic.out.mode = 0;
info->generic.out.alignment_requirement = 0;
info->generic.out.reparse_tag = 0;
info->generic.out.num_streams = 0;
/* setup a single data stream */
info->generic.out.num_streams = 1;
info->generic.out.streams = talloc(req->mem_ctx, sizeof(info->stream_info.out.streams[0]));
if (!info->generic.out.streams) {
return NT_STATUS_NO_MEMORY;
}
info->generic.out.streams[0].size = st->st_size;
info->generic.out.streams[0].alloc_size = st->st_size;
info->generic.out.streams[0].stream_name.s = talloc_strdup(req->mem_ctx,"::$DATA");
/* REWRITE: end */
return NT_STATUS_OK;
}
/*
return info on a pathname
*/
static NTSTATUS svfs_qpathinfo(struct request_context *req, union smb_fileinfo *info)
{
char *unix_path;
struct stat st;
DEBUG(19,("svfs_qpathinfo: file %s level 0x%x\n", info->generic.in.fname, info->generic.level));
if (info->generic.level != RAW_FILEINFO_GENERIC) {
return ntvfs_map_qpathinfo(req, info);
}
unix_path = svfs_unix_path(req, info->generic.in.fname);
DEBUG(19,("svfs_qpathinfo: file %s\n", unix_path));
if (stat(unix_path, &st) == -1) {
DEBUG(19,("svfs_qpathinfo: file %s errno=%d\n", unix_path, errno));
if (errno == 0)
errno = ENOENT;
return map_nt_error_from_unix(errno);
}
DEBUG(19,("svfs_qpathinfo: file %s, stat done\n", unix_path));
return svfs_map_fileinfo(req, info, &st);
}
/*
query info on a open file
*/
static NTSTATUS svfs_qfileinfo(struct request_context *req, union smb_fileinfo *info)
{
struct stat st;
if (info->generic.level != RAW_FILEINFO_GENERIC) {
return ntvfs_map_qfileinfo(req, info);
}
if (fstat(info->generic.in.fnum, &st) == -1) {
if (errno == 0)
errno = ENOENT;
return map_nt_error_from_unix(errno);
}
return svfs_map_fileinfo(req, info, &st);
}
/*
open a file
*/
static NTSTATUS svfs_open(struct request_context *req, union smb_open *io)
{
char *unix_path;
struct stat st;
int fd, flags;
if (io->generic.level != RAW_OPEN_GENERIC) {
return ntvfs_map_open(req, io);
}
unix_path = svfs_unix_path(req, io->ntcreatex.in.fname);
switch (io->generic.in.open_disposition) {
case NTCREATEX_DISP_SUPERSEDE:
flags = O_RDWR | O_CREAT | O_TRUNC;
break;
case NTCREATEX_DISP_OPEN:
flags = O_RDWR;
break;
case NTCREATEX_DISP_CREATE:
flags = O_RDWR | O_CREAT | O_EXCL;
break;
case NTCREATEX_DISP_OPEN_IF:
flags = O_RDWR | O_CREAT;
break;
case NTCREATEX_DISP_OVERWRITE:
flags = O_RDWR;
break;
case NTCREATEX_DISP_OVERWRITE_IF:
flags = O_RDWR | O_CREAT | O_TRUNC;
break;
default:
flags = O_RDWR;
break;
}
if (io->generic.in.create_options & NTCREATEX_OPTIONS_DIRECTORY) {
flags = O_RDONLY | O_DIRECTORY;
switch (io->generic.in.open_disposition) {
case NTCREATEX_DISP_CREATE:
if (mkdir(unix_path, 0755) == -1) {
DEBUG(9,("svfs_open: mkdir %s errno=%d\n", unix_path, errno));
return map_nt_error_from_unix(errno);
}
break;
case NTCREATEX_DISP_OPEN_IF:
if (mkdir(unix_path, 0755) == -1 && errno != EEXIST) {
DEBUG(9,("svfs_open: mkdir %s errno=%d\n", unix_path, errno));
return map_nt_error_from_unix(errno);
}
break;
}
}
DEBUG(9,("svfs_open: file %s flags=0x%x\n", unix_path, flags));
fd = open(unix_path, flags, 0644);
DEBUG(9,("svfs_open: fd=%d errno=%d\n", fd, errno));
if (fd == -1) {
if (errno == 0)
errno = ENOENT;
return map_nt_error_from_unix(errno);
}
if (fstat(fd, &st) == -1) {
DEBUG(9,("svfs_open: fstat errno=%d\n", errno));
if (errno == 0)
errno = ENOENT;
close(fd);
return map_nt_error_from_unix(errno);
}
ZERO_STRUCT(io->generic.out);
unix_to_nt_time(&io->generic.out.create_time, st.st_ctime);
unix_to_nt_time(&io->generic.out.access_time, st.st_atime);
unix_to_nt_time(&io->generic.out.write_time, st.st_mtime);
unix_to_nt_time(&io->generic.out.change_time, st.st_mtime);
io->generic.out.fnum = fd;
io->generic.out.alloc_size = st.st_size;
io->generic.out.size = st.st_size;
io->generic.out.attrib = svfs_unix_to_dos_attrib(st.st_mode);
io->generic.out.is_directory = S_ISDIR(st.st_mode) ? 1 : 0;
return NT_STATUS_OK;
}
/*
create a directory
*/
static NTSTATUS svfs_mkdir(struct request_context *req, union smb_mkdir *md)
{
char *unix_path;
if (md->generic.level != RAW_MKDIR_MKDIR) {
return NT_STATUS_INVALID_LEVEL;
}
unix_path = svfs_unix_path(req, md->mkdir.in.path);
if (mkdir(unix_path, 0777) == -1) {
return map_nt_error_from_unix(errno);
}
return NT_STATUS_OK;
}
/*
remove a directory
*/
static NTSTATUS svfs_rmdir(struct request_context *req, struct smb_rmdir *rd)
{
char *unix_path;
unix_path = svfs_unix_path(req, rd->in.path);
if (rmdir(unix_path) == -1) {
return map_nt_error_from_unix(errno);
}
return NT_STATUS_OK;
}
/*
rename a set of files
*/
static NTSTATUS svfs_rename(struct request_context *req, union smb_rename *ren)
{
char *unix_path1, *unix_path2;
if (ren->generic.level != RAW_RENAME_RENAME) {
return NT_STATUS_INVALID_LEVEL;
}
unix_path1 = svfs_unix_path(req, ren->rename.in.pattern1);
unix_path2 = svfs_unix_path(req, ren->rename.in.pattern2);
if (rename(unix_path1, unix_path2) != 0) {
return map_nt_error_from_unix(errno);
}
return NT_STATUS_OK;
}
/*
copy a set of files
*/
static NTSTATUS svfs_copy(struct request_context *req, struct smb_copy *cp)
{
return NT_STATUS_NOT_SUPPORTED;
}
/*
read from a file
*/
static NTSTATUS svfs_read(struct request_context *req, union smb_read *rd)
{
ssize_t ret;
if (rd->generic.level != RAW_READ_READX) {
return NT_STATUS_NOT_SUPPORTED;
}
ret = pread(rd->readx.in.fnum,
rd->readx.out.data,
rd->readx.in.maxcnt,
rd->readx.in.offset);
if (ret == -1) {
return map_nt_error_from_unix(errno);
}
rd->readx.out.nread = ret;
rd->readx.out.remaining = 0; /* should fill this in? */
rd->readx.out.compaction_mode = 0;
return NT_STATUS_OK;
}
/*
write to a file
*/
static NTSTATUS svfs_write(struct request_context *req, union smb_write *wr)
{
ssize_t ret;
switch (wr->generic.level) {
case RAW_WRITE_WRITEX:
ret = pwrite(wr->writex.in.fnum,
wr->writex.in.data,
wr->writex.in.count,
wr->writex.in.offset);
if (ret == -1) {
return map_nt_error_from_unix(errno);
}
wr->writex.out.nwritten = ret;
wr->writex.out.remaining = 0; /* should fill this in? */
return NT_STATUS_OK;
case RAW_WRITE_WRITE:
if (wr->write.in.count == 0) {
/* a truncate! */
ret = ftruncate(wr->write.in.fnum, wr->write.in.offset);
} else {
ret = pwrite(wr->write.in.fnum,
wr->write.in.data,
wr->write.in.count,
wr->write.in.offset);
}
if (ret == -1) {
return map_nt_error_from_unix(errno);
}
wr->write.out.nwritten = ret;
return NT_STATUS_OK;
}
return NT_STATUS_NOT_SUPPORTED;
}
/*
seek in a file
*/
static NTSTATUS svfs_seek(struct request_context *req, struct smb_seek *io)
{
return NT_STATUS_NOT_SUPPORTED;
}
/*
flush a file
*/
static NTSTATUS svfs_flush(struct request_context *req, struct smb_flush *io)
{
fsync(io->in.fnum);
return NT_STATUS_OK;
}
/*
close a file
*/
static NTSTATUS svfs_close(struct request_context *req, union smb_close *io)
{
if (io->generic.level != RAW_CLOSE_CLOSE) {
/* we need a mapping function */
return NT_STATUS_INVALID_LEVEL;
}
if (close(io->close.in.fnum) != 0) {
return map_nt_error_from_unix(errno);
}
return NT_STATUS_OK;
}
/*
exit - closing files?
*/
static NTSTATUS svfs_exit(struct request_context *req)
{
return NT_STATUS_NOT_SUPPORTED;
}
/*
lock a byte range
*/
static NTSTATUS svfs_lock(struct request_context *req, union smb_lock *lck)
{
DEBUG(0,("REWRITE: not doing byte range locking!\n"));
return NT_STATUS_OK;
}
/*
set info on a pathname
*/
static NTSTATUS svfs_setpathinfo(struct request_context *req, union smb_setfileinfo *st)
{
return NT_STATUS_NOT_SUPPORTED;
}
/*
set info on a open file
*/
static NTSTATUS svfs_setfileinfo(struct request_context *req,
union smb_setfileinfo *info)
{
struct utimbuf unix_times;
int fd;
switch (info->generic.level) {
case RAW_SFILEINFO_END_OF_FILE_INFO:
case RAW_SFILEINFO_END_OF_FILE_INFORMATION:
if (ftruncate(info->end_of_file_info.file.fnum,
info->end_of_file_info.in.size) != 0) {
return map_nt_error_from_unix(errno);
}
break;
case RAW_SFILEINFO_SETATTRE:
unix_times.actime = info->setattre.in.access_time;
unix_times.modtime = info->setattre.in.write_time;
fd = info->setattre.file.fnum;
if (unix_times.actime == 0 && unix_times.modtime == 0) {
break;
}
/* set modify time = to access time if modify time was 0 */
if (unix_times.actime != 0 && unix_times.modtime == 0) {
unix_times.modtime = unix_times.actime;
}
/* Set the date on this file */
if (svfs_file_utime(fd, &unix_times) != 0) {
return NT_STATUS_ACCESS_DENIED;
}
break;
}
return NT_STATUS_OK;
}
/*
return filesystem space info
*/
static NTSTATUS svfs_fsinfo(struct request_context *req, union smb_fsinfo *fs)
{
struct svfs_private *private = req->conn->ntvfs_private;
struct stat st;
if (fs->generic.level != RAW_QFS_GENERIC) {
return ntvfs_map_fsinfo(req, fs);
}
if (sys_fsusage(private->connectpath,
&fs->generic.out.blocks_free,
&fs->generic.out.blocks_total) == -1) {
return map_nt_error_from_unix(errno);
}
fs->generic.out.block_size = 512;
if (stat(private->connectpath, &st) != 0) {
return NT_STATUS_DISK_CORRUPT_ERROR;
}
fs->generic.out.fs_id = st.st_ino;
unix_to_nt_time(&fs->generic.out.create_time, st.st_ctime);
fs->generic.out.serial_number = st.st_ino;
fs->generic.out.fs_attr = 0;
fs->generic.out.max_file_component_length = 255;
fs->generic.out.device_type = 0;
fs->generic.out.device_characteristics = 0;
fs->generic.out.quota_soft = 0;
fs->generic.out.quota_hard = 0;
fs->generic.out.quota_flags = 0;
fs->generic.out.volume_name = talloc_strdup(req->mem_ctx, lp_servicename(req->conn->service));
fs->generic.out.fs_type = req->conn->fs_type;
return NT_STATUS_OK;
}
#if 0
/*
return filesystem attribute info
*/
static NTSTATUS svfs_fsattr(struct request_context *req, union smb_fsattr *fs)
{
struct stat st;
struct svfs_private *private = req->conn->ntvfs_private;
if (fs->generic.level != RAW_FSATTR_GENERIC) {
return ntvfs_map_fsattr(req, fs);
}
if (stat(private->connectpath, &st) != 0) {
return map_nt_error_from_unix(errno);
}
unix_to_nt_time(&fs->generic.out.create_time, st.st_ctime);
fs->generic.out.fs_attr =
FILE_CASE_PRESERVED_NAMES |
FILE_CASE_SENSITIVE_SEARCH |
FILE_PERSISTENT_ACLS;
fs->generic.out.max_file_component_length = 255;
fs->generic.out.serial_number = 1;
fs->generic.out.fs_type = talloc_strdup(req->mem_ctx, "NTFS");
fs->generic.out.volume_name = talloc_strdup(req->mem_ctx,
lp_servicename(req->conn->service));
return NT_STATUS_OK;
}
#endif
/*
return print queue info
*/
static NTSTATUS svfs_lpq(struct request_context *req, union smb_lpq *lpq)
{
return NT_STATUS_NOT_SUPPORTED;
}
/*
list files in a directory matching a wildcard pattern
*/
static NTSTATUS svfs_search_first(struct request_context *req, union smb_search_first *io,
void *search_private,
BOOL (*callback)(void *, union smb_search_data *))
{
struct svfs_dir *dir;
int i;
struct svfs_private *private = req->conn->ntvfs_private;
struct search_state *search;
union smb_search_data file;
TALLOC_CTX *mem_ctx;
uint_t max_count;
if (io->generic.level != RAW_SEARCH_BOTH_DIRECTORY_INFO) {
return NT_STATUS_NOT_SUPPORTED;
}
mem_ctx = talloc_init("svfs_search");
search = talloc_zero(mem_ctx, sizeof(struct search_state));
if (!search) {
return NT_STATUS_NO_MEMORY;
}
max_count = io->t2ffirst.in.max_count;
dir = svfs_list(mem_ctx, req, io->t2ffirst.in.pattern);
if (!dir) {
talloc_destroy_pool(mem_ctx);
return NT_STATUS_FOOBAR;
}
search->mem_ctx = mem_ctx;
search->handle = private->next_search_handle;
search->dir = dir;
if (dir->count < max_count) {
max_count = dir->count;
}
for (i=0; i < max_count;i++) {
ZERO_STRUCT(file);
unix_to_nt_time(&file.both_directory_info.create_time, dir->files[i].st.st_ctime);
unix_to_nt_time(&file.both_directory_info.access_time, dir->files[i].st.st_atime);
unix_to_nt_time(&file.both_directory_info.write_time, dir->files[i].st.st_mtime);
unix_to_nt_time(&file.both_directory_info.change_time, dir->files[i].st.st_mtime);
file.both_directory_info.name.s = dir->files[i].name;
file.both_directory_info.short_name.s = dir->files[i].name;
file.both_directory_info.size = dir->files[i].st.st_size;
file.both_directory_info.attrib = svfs_unix_to_dos_attrib(dir->files[i].st.st_mode);
if (!callback(search_private, &file)) {
break;
}
}
search->current_index = i;
io->t2ffirst.out.count = i;
io->t2ffirst.out.handle = search->handle;
io->t2ffirst.out.end_of_search = (i == dir->count) ? 1 : 0;
/* work out if we are going to keep the search state */
if ((io->t2ffirst.in.flags & FLAG_TRANS2_FIND_CLOSE) ||
((io->t2ffirst.in.flags & FLAG_TRANS2_FIND_CLOSE_IF_END) && (i == dir->count))) {
talloc_destroy(search->mem_ctx);
} else {
private->next_search_handle++;
DLIST_ADD(private->search, search);
}
return NT_STATUS_OK;
}
/* continue a search */
static NTSTATUS svfs_search_next(struct request_context *req, union smb_search_next *io,
void *search_private,
BOOL (*callback)(void *, union smb_search_data *))
{
struct svfs_dir *dir;
int i;
struct svfs_private *private = req->conn->ntvfs_private;
struct search_state *search;
union smb_search_data file;
uint_t max_count;
if (io->generic.level != RAW_SEARCH_BOTH_DIRECTORY_INFO) {
return NT_STATUS_NOT_SUPPORTED;
}
for (search=private->search; search; search = search->next) {
if (search->handle == io->t2fnext.in.handle) break;
}
if (!search) {
/* we didn't find the search handle */
return NT_STATUS_FOOBAR;
}
dir = search->dir;
/* the client might be asking for something other than just continuing
with the search */
if (!(io->t2fnext.in.flags & FLAG_TRANS2_FIND_CONTINUE) &&
(io->t2fnext.in.flags & FLAG_TRANS2_FIND_REQUIRE_RESUME) &&
io->t2fnext.in.last_name && *io->t2fnext.in.last_name) {
/* look backwards first */
for (i=search->current_index; i > 0; i--) {
if (strcmp(io->t2fnext.in.last_name, dir->files[i-1].name) == 0) {
search->current_index = i;
goto found;
}
}
/* then look forwards */
for (i=search->current_index+1; i <= dir->count; i++) {
if (strcmp(io->t2fnext.in.last_name, dir->files[i-1].name) == 0) {
search->current_index = i;
goto found;
}
}
}
found:
max_count = search->current_index + io->t2fnext.in.max_count;
if (max_count > dir->count) {
max_count = dir->count;
}
for (i = search->current_index; i < max_count;i++) {
ZERO_STRUCT(file);
unix_to_nt_time(&file.both_directory_info.create_time, dir->files[i].st.st_ctime);
unix_to_nt_time(&file.both_directory_info.access_time, dir->files[i].st.st_atime);
unix_to_nt_time(&file.both_directory_info.write_time, dir->files[i].st.st_mtime);
unix_to_nt_time(&file.both_directory_info.change_time, dir->files[i].st.st_mtime);
file.both_directory_info.name.s = dir->files[i].name;
file.both_directory_info.short_name.s = dir->files[i].name;
file.both_directory_info.size = dir->files[i].st.st_size;
file.both_directory_info.attrib = svfs_unix_to_dos_attrib(dir->files[i].st.st_mode);
if (!callback(search_private, &file)) {
break;
}
}
io->t2fnext.out.count = i - search->current_index;
io->t2fnext.out.end_of_search = (i == dir->count) ? 1 : 0;
search->current_index = i;
/* work out if we are going to keep the search state */
if ((io->t2fnext.in.flags & FLAG_TRANS2_FIND_CLOSE) ||
((io->t2fnext.in.flags & FLAG_TRANS2_FIND_CLOSE_IF_END) && (i == dir->count))) {
DLIST_REMOVE(private->search, search);
talloc_destroy(search->mem_ctx);
}
return NT_STATUS_OK;
}
/* close a search */
static NTSTATUS svfs_search_close(struct request_context *req, union smb_search_close *io)
{
struct svfs_private *private = req->conn->ntvfs_private;
struct search_state *search;
for (search=private->search; search; search = search->next) {
if (search->handle == io->findclose.in.handle) break;
}
if (!search) {
/* we didn't find the search handle */
return NT_STATUS_FOOBAR;
}
DLIST_REMOVE(private->search, search);
talloc_destroy(search->mem_ctx);
return NT_STATUS_OK;
}
/* SMBtrans - not used on file shares */
static NTSTATUS svfs_trans(struct request_context *req, struct smb_trans2 *trans2)
{
return NT_STATUS_ACCESS_DENIED;
}
/*
initialialise the POSIX disk backend, registering ourselves with the ntvfs subsystem
*/
NTSTATUS ntvfs_simple_init(void)
{
NTSTATUS ret;
struct ntvfs_ops ops;
ZERO_STRUCT(ops);
ops.name = "simple";
ops.type = NTVFS_DISK;
/* fill in all the operations */
ops.connect = svfs_connect;
ops.disconnect = svfs_disconnect;
ops.unlink = svfs_unlink;
ops.chkpath = svfs_chkpath;
ops.qpathinfo = svfs_qpathinfo;
ops.setpathinfo = svfs_setpathinfo;
ops.open = svfs_open;
ops.mkdir = svfs_mkdir;
ops.rmdir = svfs_rmdir;
ops.rename = svfs_rename;
ops.copy = svfs_copy;
ops.ioctl = svfs_ioctl;
ops.read = svfs_read;
ops.write = svfs_write;
ops.seek = svfs_seek;
ops.flush = svfs_flush;
ops.close = svfs_close;
ops.exit = svfs_exit;
ops.lock = svfs_lock;
ops.setfileinfo = svfs_setfileinfo;
ops.qfileinfo = svfs_qfileinfo;
ops.fsinfo = svfs_fsinfo;
ops.lpq = svfs_lpq;
ops.search_first = svfs_search_first;
ops.search_next = svfs_search_next;
ops.search_close = svfs_search_close;
ops.trans = svfs_trans;
/* register ourselves with the NTVFS subsystem. We register under the name 'default'
as we wish to be the default backend */
ret = register_backend("ntvfs", &ops);
if (!NT_STATUS_IS_OK(ret)) {
DEBUG(0,("Failed to register POSIX backend!\n"));
}
return ret;
}