487 lines
14 KiB
C++
487 lines
14 KiB
C++
/* fhandler_procsys.cc: fhandler for native NT namespace.
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This file is part of Cygwin.
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This software is a copyrighted work licensed under the terms of the
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Cygwin license. Please consult the file "CYGWIN_LICENSE" for
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details. */
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#include "winsup.h"
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#include <stdlib.h>
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#include "cygerrno.h"
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#include "security.h"
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#include "path.h"
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#include "fhandler.h"
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#include "dtable.h"
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#include "cygheap.h"
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#include <winioctl.h>
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#include "ntdll.h"
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#include "tls_pbuf.h"
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#include <dirent.h>
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/* Path of the /proc/sys filesystem */
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const char procsys[] = "/proc/sys";
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const size_t procsys_len = sizeof (procsys) - 1;
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#define mk_unicode_path(p) \
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WCHAR namebuf[strlen (get_name ()) + 1]; \
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{ \
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const char *from; \
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PWCHAR to; \
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for (to = namebuf, from = get_name () + procsys_len; *from; \
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to++, from++) \
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/* The NT device namespace is ASCII only. */ \
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*to = (*from == '/') ? L'\\' : (WCHAR) *from; \
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if (to == namebuf) \
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*to++ = L'\\'; \
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*to = L'\0'; \
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RtlInitUnicodeString ((p), namebuf); \
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}
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virtual_ftype_t
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fhandler_procsys::exists (struct stat *buf)
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{
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UNICODE_STRING path;
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UNICODE_STRING dir;
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OBJECT_ATTRIBUTES attr;
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IO_STATUS_BLOCK io;
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NTSTATUS status;
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HANDLE h;
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FILE_BASIC_INFORMATION fbi;
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bool internal = false;
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bool desperate_parent_check = false;
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/* Default device type is character device. */
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virtual_ftype_t file_type = virt_chr;
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if (strlen (get_name ()) == procsys_len)
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return virt_rootdir;
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mk_unicode_path (&path);
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/* Try to open parent dir. If it works, the object is definitely
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an object within the internal namespace. We don't need to test
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it for being a file or dir on the filesystem anymore. If the
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error is STATUS_OBJECT_TYPE_MISMATCH, we know that the file
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itself is external. Otherwise we don't know. */
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RtlSplitUnicodePath (&path, &dir, NULL);
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/* RtlSplitUnicodePath preserves the trailing backslash in dir. Don't
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preserve it to open the dir, unless it's the object root. */
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if (dir.Length > sizeof (WCHAR))
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dir.Length -= sizeof (WCHAR);
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InitializeObjectAttributes (&attr, &dir, OBJ_CASE_INSENSITIVE, NULL, NULL);
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status = NtOpenDirectoryObject (&h, DIRECTORY_QUERY, &attr);
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debug_printf ("NtOpenDirectoryObject: %y", status);
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if (NT_SUCCESS (status))
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{
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internal = true;
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NtClose (h);
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}
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/* First check if the object is a symlink. */
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InitializeObjectAttributes (&attr, &path, OBJ_CASE_INSENSITIVE, NULL, NULL);
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status = NtOpenSymbolicLinkObject (&h, READ_CONTROL | SYMBOLIC_LINK_QUERY,
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&attr);
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debug_printf ("NtOpenSymbolicLinkObject: %y", status);
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if (NT_SUCCESS (status))
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{
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/* If requested, check permissions. */
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if (buf)
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get_object_attribute (h, &buf->st_uid, &buf->st_gid, &buf->st_mode);
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NtClose (h);
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return virt_symlink;
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}
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else if (status == STATUS_ACCESS_DENIED)
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return virt_symlink;
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/* Then check if it's an object directory. */
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status = NtOpenDirectoryObject (&h, READ_CONTROL | DIRECTORY_QUERY, &attr);
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debug_printf ("NtOpenDirectoryObject: %y", status);
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if (NT_SUCCESS (status))
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{
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/* If requested, check permissions. */
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if (buf)
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get_object_attribute (h, &buf->st_uid, &buf->st_gid, &buf->st_mode);
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NtClose (h);
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return virt_directory;
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}
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else if (status == STATUS_ACCESS_DENIED)
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return virt_directory;
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/* Next try to open as file/device. */
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status = NtOpenFile (&h, READ_CONTROL | FILE_READ_ATTRIBUTES, &attr, &io,
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FILE_SHARE_VALID_FLAGS, FILE_OPEN_FOR_BACKUP_INTENT);
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debug_printf ("NtOpenFile: %y", status);
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/* Name is invalid, that's nothing. */
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if (status == STATUS_OBJECT_NAME_INVALID)
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return virt_none;
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/* If no media is found, or we get this dreaded sharing violation, let
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the caller immediately try again as normal file. */
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if (status == STATUS_NO_MEDIA_IN_DEVICE
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|| status == STATUS_SHARING_VIOLATION)
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return virt_fsfile; /* Just try again as normal file. */
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/* If file or path can't be found, let caller try again as normal file. */
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if (status == STATUS_OBJECT_PATH_NOT_FOUND
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|| status == STATUS_OBJECT_NAME_NOT_FOUND)
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return virt_fsfile;
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/* Check for pipe errors, which make a good hint... */
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if (status >= STATUS_PIPE_NOT_AVAILABLE && status <= STATUS_PIPE_BUSY)
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return virt_pipe;
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if (status == STATUS_ACCESS_DENIED && !internal)
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{
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/* Check if this is just some file or dir on a real FS to circumvent
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most permission problems. Don't try that on internal objects,
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since NtQueryAttributesFile might crash the machine if the underlying
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driver is badly written. */
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status = NtQueryAttributesFile (&attr, &fbi);
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debug_printf ("NtQueryAttributesFile: %y", status);
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if (NT_SUCCESS (status))
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return (fbi.FileAttributes & FILE_ATTRIBUTE_DIRECTORY)
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? virt_fsdir : virt_fsfile;
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/* Ok, so we're desperate and the file still maybe on some filesystem.
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To check this, we now split the path until we can finally access any
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of the parent's. Then we fall through to check the parent type. In
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contrast to the first parent check, we now check explicitely with
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trailing backslash. This will fail for directories in the internal
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namespace, so we won't accidentally test those. */
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dir = path;
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InitializeObjectAttributes (&attr, &dir, OBJ_CASE_INSENSITIVE,
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NULL, NULL);
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do
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{
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RtlSplitUnicodePath (&dir, &dir, NULL);
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status = NtOpenFile (&h, READ_CONTROL | FILE_READ_ATTRIBUTES,
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&attr, &io, FILE_SHARE_VALID_FLAGS,
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FILE_OPEN_FOR_BACKUP_INTENT);
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debug_printf ("NtOpenDirectoryObject: %y", status);
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if (dir.Length > sizeof (WCHAR))
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dir.Length -= sizeof (WCHAR);
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}
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while (dir.Length > sizeof (WCHAR) && !NT_SUCCESS (status));
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desperate_parent_check = true;
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}
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if (NT_SUCCESS (status))
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{
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FILE_FS_DEVICE_INFORMATION ffdi;
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/* If requested, check permissions. If this is a parent handle from
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the above desperate parent check, skip. */
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if (buf && !desperate_parent_check)
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get_object_attribute (h, &buf->st_uid, &buf->st_gid, &buf->st_mode);
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/* Check for the device type. */
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status = NtQueryVolumeInformationFile (h, &io, &ffdi, sizeof ffdi,
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FileFsDeviceInformation);
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debug_printf ("NtQueryVolumeInformationFile: %y", status);
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/* Don't call NtQueryInformationFile unless we know it's a safe type.
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The call is known to crash machines, if the underlying driver is
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badly written. */
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if (NT_SUCCESS (status))
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{
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if (ffdi.DeviceType == FILE_DEVICE_NAMED_PIPE)
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file_type = internal ? virt_blk : virt_pipe;
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else if (ffdi.DeviceType == FILE_DEVICE_DISK
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|| ffdi.DeviceType == FILE_DEVICE_CD_ROM
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|| ffdi.DeviceType == FILE_DEVICE_VIRTUAL_DISK)
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{
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/* Check for file attributes. If we get them, we peeked
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into a real FS through /proc/sys. */
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status = NtQueryInformationFile (h, &io, &fbi, sizeof fbi,
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FileBasicInformation);
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debug_printf ("NtQueryInformationFile: %y", status);
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if (!NT_SUCCESS (status))
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file_type = virt_blk;
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else
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file_type = (fbi.FileAttributes & FILE_ATTRIBUTE_DIRECTORY)
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? virt_fsdir : virt_fsfile;
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}
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}
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NtClose (h);
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}
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/* That's it. Return type we found above. */
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return file_type;
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}
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virtual_ftype_t
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fhandler_procsys::exists ()
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{
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return exists (NULL);
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}
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fhandler_procsys::fhandler_procsys ():
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fhandler_virtual ()
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{
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}
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#define UNREADABLE_SYMLINK_CONTENT "<access denied>"
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bool
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fhandler_procsys::fill_filebuf ()
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{
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char *fnamep;
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UNICODE_STRING path, target;
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OBJECT_ATTRIBUTES attr;
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NTSTATUS status;
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HANDLE h;
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tmp_pathbuf tp;
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size_t len;
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mk_unicode_path (&path);
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if (path.Buffer[path.Length / sizeof (WCHAR) - 1] == L'\\')
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path.Length -= sizeof (WCHAR);
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InitializeObjectAttributes (&attr, &path, OBJ_CASE_INSENSITIVE, NULL, NULL);
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status = NtOpenSymbolicLinkObject (&h, SYMBOLIC_LINK_QUERY, &attr);
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if (!NT_SUCCESS (status))
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goto unreadable;
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RtlInitEmptyUnicodeString (&target, tp.w_get (),
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(NT_MAX_PATH - 1) * sizeof (WCHAR));
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status = NtQuerySymbolicLinkObject (h, &target, NULL);
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NtClose (h);
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if (!NT_SUCCESS (status))
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goto unreadable;
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len = sys_wcstombs (NULL, 0, target.Buffer, target.Length / sizeof (WCHAR));
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filebuf = (char *) crealloc_abort (filebuf, procsys_len + len + 1);
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sys_wcstombs (fnamep = stpcpy (filebuf, procsys), len + 1, target.Buffer,
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target.Length / sizeof (WCHAR));
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while ((fnamep = strchr (fnamep, '\\')))
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*fnamep = '/';
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return true;
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unreadable:
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filebuf = (char *) crealloc_abort (filebuf,
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sizeof (UNREADABLE_SYMLINK_CONTENT));
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strcpy (filebuf, UNREADABLE_SYMLINK_CONTENT);
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return false;
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}
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int __reg2
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fhandler_procsys::fstat (struct stat *buf)
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{
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const char *path = get_name ();
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debug_printf ("fstat (%s)", path);
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fhandler_base::fstat (buf);
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/* Best bet. */
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buf->st_mode = S_IRUSR | S_IWUSR | S_IRGRP | S_IWGRP;
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buf->st_uid = 544;
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buf->st_gid = 18;
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buf->st_dev = buf->st_rdev = dev ();
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buf->st_ino = get_ino ();
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switch (exists (buf))
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{
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case virt_directory:
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case virt_rootdir:
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case virt_fsdir:
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buf->st_mode |= S_IFDIR;
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if (buf->st_mode & S_IRUSR)
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buf->st_mode |= S_IXUSR;
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if (buf->st_mode & S_IRGRP)
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buf->st_mode |= S_IXGRP;
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if (buf->st_mode & S_IROTH)
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buf->st_mode |= S_IXOTH;
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break;
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case virt_file:
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case virt_fsfile:
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buf->st_mode |= S_IFREG;
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break;
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case virt_symlink:
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buf->st_mode |= S_IFLNK;
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break;
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case virt_pipe:
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buf->st_mode |= S_IFIFO;
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break;
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case virt_socket:
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buf->st_mode |= S_IFSOCK;
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break;
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case virt_chr:
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buf->st_mode |= S_IFCHR;
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break;
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case virt_blk:
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buf->st_mode |= S_IFBLK;
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break;
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default:
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set_errno (ENOENT);
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return -1;
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}
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return 0;
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}
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DIR *
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fhandler_procsys::opendir (int fd)
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{
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UNICODE_STRING path;
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OBJECT_ATTRIBUTES attr;
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NTSTATUS status;
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HANDLE dir_hdl;
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DIR *dir;
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mk_unicode_path (&path);
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InitializeObjectAttributes (&attr, &path, OBJ_CASE_INSENSITIVE, NULL, NULL);
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status = NtOpenDirectoryObject (&dir_hdl, DIRECTORY_QUERY, &attr);
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if (!NT_SUCCESS (status))
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{
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__seterrno_from_nt_status (status);
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return NULL;
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}
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void *dbi_buf = NULL;
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ULONG size = 65536;
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ULONG context = 0;
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int iter;
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for (iter = 0; iter <= 3; ++iter) /* Allows for a 512K buffer */
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{
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void *new_buf = realloc (dbi_buf, size);
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if (!new_buf)
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goto err;
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dbi_buf = new_buf;
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status = NtQueryDirectoryObject (dir_hdl, dbi_buf, size, FALSE, TRUE,
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&context, NULL);
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if (!NT_SUCCESS (status))
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{
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__seterrno_from_nt_status (status);
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goto err;
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}
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if (status != STATUS_MORE_ENTRIES)
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break;
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size <<= 1;
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}
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if (iter > 3)
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{
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__seterrno_from_nt_status (STATUS_INSUFFICIENT_RESOURCES);
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goto err;
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}
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if (!(dir = fhandler_virtual::opendir (fd)))
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goto err;
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/* Note that dir->__handle points to the buffer, it does NOT contain an
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actual handle! */
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dir->__handle = dbi_buf;
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/* dir->__d_internal contains the number of objects returned in the buffer. */
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dir->__d_internal = context;
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return dir;
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err:
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NtClose (dir_hdl);
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free (dbi_buf);
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return NULL;
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}
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int
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fhandler_procsys::readdir (DIR *dir, dirent *de)
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{
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PDIRECTORY_BASIC_INFORMATION dbi;
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int res = EBADF;
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if (dir->__handle != INVALID_HANDLE_VALUE)
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{
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dbi = ((PDIRECTORY_BASIC_INFORMATION) dir->__handle);
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dbi += dir->__d_position;
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if (dir->__d_position >= (__int32_t) dir->__d_internal
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|| dbi->ObjectName.Length == 0)
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res = ENMFILE;
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else
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{
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sys_wcstombs (de->d_name, NAME_MAX + 1, dbi->ObjectName.Buffer,
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dbi->ObjectName.Length / sizeof (WCHAR));
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de->d_ino = hash_path_name (get_ino (), de->d_name);
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if (RtlEqualUnicodeString (&dbi->ObjectTypeName, &ro_u_natdir, FALSE))
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de->d_type = DT_DIR;
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else if (RtlEqualUnicodeString (&dbi->ObjectTypeName, &ro_u_natsyml,
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FALSE))
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de->d_type = DT_LNK;
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else if (!RtlEqualUnicodeString (&dbi->ObjectTypeName, &ro_u_natdev,
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FALSE))
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de->d_type = DT_CHR;
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else /* Can't nail down "Device" objects without further testing. */
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de->d_type = DT_UNKNOWN;
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++dir->__d_position;
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res = 0;
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}
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}
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syscall_printf ("%d = readdir(%p, %p)", res, dir, de);
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return res;
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}
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long
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fhandler_procsys::telldir (DIR *dir)
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{
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return dir->__d_position;
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}
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void
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fhandler_procsys::seekdir (DIR *dir, long pos)
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{
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if (pos < 0)
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dir->__d_position = 0;
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else if (pos > (__int32_t) dir->__d_internal)
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dir->__d_position = (__int32_t) dir->__d_internal;
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else
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dir->__d_position = pos;
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}
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int
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fhandler_procsys::closedir (DIR *dir)
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{
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if (dir->__handle != INVALID_HANDLE_VALUE)
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{
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free (dir->__handle);
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dir->__handle = INVALID_HANDLE_VALUE;
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}
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return fhandler_virtual::closedir (dir);
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}
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void __reg3
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fhandler_procsys::read (void *ptr, size_t& len)
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{
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fhandler_base::raw_read (ptr, len);
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}
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ssize_t __stdcall
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fhandler_procsys::write (const void *ptr, size_t len)
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{
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return fhandler_base::raw_write (ptr, len);
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}
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int
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fhandler_procsys::open (int flags, mode_t mode)
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{
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int res = 0;
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if ((flags & (O_CREAT | O_EXCL)) == (O_CREAT | O_EXCL))
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set_errno (EINVAL);
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else
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{
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switch (exists (NULL))
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{
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case virt_directory:
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case virt_rootdir:
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if ((flags & O_ACCMODE) != O_RDONLY)
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set_errno (EISDIR);
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else
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{
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nohandle (true);
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res = 1;
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}
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break;
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case virt_none:
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set_errno (ENOENT);
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break;
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default:
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res = fhandler_base::open (flags, mode);
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break;
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}
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}
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syscall_printf ("%d = fhandler_procsys::open(%p, 0%o)", res, flags, mode);
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return res;
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}
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int
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fhandler_procsys::close ()
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{
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if (!nohandle ())
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NtClose (get_handle ());
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return fhandler_virtual::close ();
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}
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#if 0
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int
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fhandler_procsys::ioctl (unsigned int cmd, void *)
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{
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}
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#endif
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