Christopher Faylor 23771fa1f7 * cygerrno.h (__set_errno): Modify debugging output to make searching strace
logs easier.  Throughout, change /dev/tty* to /dev/pty*.  Throughout, add flags
argument to fhandler_*::dup methods.
* devices.in: Rename (temporarily?) /dev/ttyN to /dev/ptyN.  Add /dev/ptymN
devices for pty masters.
* devices.cc: Regenerate.
* devices.h (MAX_CONSOLES): Set to max number supported by devices.in.
(fh_devices::FH_PTMX): Rename from FH_PTYM.
(device::operator int): Return by reference.
* dtable.cc (fh_alloc): Take pc as an argument rather than just the device.
This makes debugging easier since more information is available.  Actually
implement handling for already-allocated pty master devices.  Make different
decisions when generating fhandler for not-opened devices.  Add kludge to deal
with opening /dev/tty.
(cnew_no_ctor): New macro.
(build_fh_pc): Make debugging output more verbose.  Use new clone() fhandler
interface to duplicate archetypes.  Reset last term opened.
(dtable::dup_worker): Use Use new clone() fhandler interface to duplicate
archetypes.  Pass flags to child dup handler.
(dtable::dup3): Set O_NOCTTY flag if newfd is not stdin/stdout/stderr.
* fhandler.cc (fhandler_base::reset): Rename from operator =() and reduce
functionality and sense of copy direction.
(fhandler_base::open_with_arch): Use published interface to query io_handle().
Use new copyto() fhandler method to copy from/to found archetype.
* fhandler.h: Throughout, delete size(), add copyout, clone, and fhandler_*
(void *) methods.
(fhandler_base::reset): Rename from operator =().
(fhandler_termios::is_dev_tty): Delete.
(fhandler_termios): change "protected" region to "private".
(fhandler_termios::is_dev_tty): Delete.
(fhandler_termios): Rearrange protected/public.
(fhandler_termios::fhandler_termios): Remember last fhandler_termios "opened".
(fhandler_termios::~fhandler_termios): Forget last fhandler_termios opened.
(ioctl): Rename from ioctl_termios.  Take a void * argument.  Reflect argument
change in pinfo::set_ctty.
(fhandler_console::dup): Declare new function.  Set ctty here if appropriate.
(fhandler_pty_master::from_master): Privatize.
(fhandler_pty_master::to_master): Ditto.
(fhandler_pty_master::dwProcessId): Ditto.
(fhandler_pty_master::fhandler_pty_master): Add an `int' argument.
(fhandler_pty_master::open_setup): Declare new function.
(fhandler_pty_master::~fhandler_pty_master): Declare new method.
(fhandler_nodevice): Remove commented out function declaration.
* fhandler_console.cc: Use get_ttyp() instead of tc() throughout.
(fhandler_console::dup): Define new function to set controlling ctty on dup, as
appropriate.
(fhandler_console::ioctl): Reflect ioctl_termios name change.
(fhandler_console::setup): Rename from get_tty_stuff.
(fhandler_console::open_setup): Reflect argument change in pinfo::set_ctty.
(fhandler_console::fhandler_console): Set _tc here.
* fhandler_termios.cc (handler_termios::ioctl): Rename.  Take a void * arg like
other ioctl functions.
* fhandler_tty.cc (fhandler_pty_slave::dup): Call myself->set_ctty to
potentially reset the controlling terminal.
(fhandler_pty_slave::ioctl): Reflect name/arg change for ioctl_termios.
(fhandler_pty_slave::fhandler_pty_slave): Take a "unit" argument.  Call setup()
here so that we will know the unit number of this fhandler as soon as possible.
Set the unit as appropriate.
(handler_pty_master::open): Move most stuff to constructor and open_setup.
(handler_pty_slave::open_setup): Reflect argument change in pinfo::set_ctty.
(handler_pty_master::open_setup): Define new function.
(fhandler_pty_master::cleanup): Clear handles as a flag that the destructor
does not have to do "close" operations.
(fhandler_pty_master::close): Ditto.
(fhandler_pty_master::~fhandler_pty_master): Define new method.
(fhandler_pty_master::ioctl): Reflect name/arg change for ioctl_termios.
(fhandler_pty_master::setup): Allocate tty here.  Rely on handles being
returned from allocated test rather than opening them here.  Avoid setting
_need_nl here since it is already zeroed in the constructor.  Set up device
information with DEV_TTYM_MAJOR.
* path.h (path_conv &operator =): Take a const argument.
(path_conv::dup): Ditto.
(pathconv_arg::PC_OPEN): New enum.
(pathconv_arg::PC_CTTY): Ditto.
(path_types::PATH_CTTY): Ditto.
(path_types::PATH_OPEN): Ditto.
(path_conv::isopen): New method.
(path_conv::isctty_capable): Ditto.
* path.cc (path_conv::check): Set PATH_OPEN and PATH_CTTY as appropriate.
* pipe.cc (fhandler_pipe::open): Use copyto to copy pipe handle.
* syscall.cc (open): Reinstate fd > 2 check to disallow resetting ctty on
non-std* handles.
* tty.cc (tty_list::allocate): Pass out handles for allocated tty.  use
`not_allocated' to find unallocated ttys.  Avoid keeping the lock since the
allocation of the tty should be sufficient to prevent multiple access.
(tty::not_allocated): Clarify comment.  Rename.  Return handles when an unused
tty is found.  Simply test for existing tty.
(tty::exists): Rewrite to use `not_allocated'.
* tty.h (NTTYS): Reset down to actual number supported by devices.in.
(tty::not_allocated): Declare new function.
(tty_list::allocate): Pass out read/write tty handles.  Zero them when not
found.
* fhandler_proc.cc: Reflect name change from FH_PTYM -> FH_PTMX.
* pinfo.h (pinfo::set_ctty): Reduce/reorder arguments passed in.
* pinfo.cc (pinfo::set_ctty): Ditto.  Just use tc() built into the passed-in
fhandler_termios pointer.  Return true if ctty is assigned.
* syscalls.cc (open): Call build_fh_pc with PC_OPEN flag.  Set PC_CTTY if
appropriate.
(stat_worker): Remove is_dev_tty () stuff.
2011-10-15 22:37:30 +00:00

412 lines
13 KiB
C++

/* path.h: path data structures
Copyright 1996, 1997, 1998, 2000, 2001, 2002, 2003, 2004, 2005,
2006, 2007, 2008, 2009, 2010, 2011 Red Hat, Inc.
This file is part of Cygwin.
This software is a copyrighted work licensed under the terms of the
Cygwin license. Please consult the file "CYGWIN_LICENSE" for
details. */
#include "devices.h"
#include "mount.h"
#include "cygheap_malloc.h"
#include "nfs.h"
#include <sys/ioctl.h>
#include <fcntl.h>
inline bool
has_attribute (DWORD attributes, DWORD attribs_to_test)
{
return attributes != INVALID_FILE_ATTRIBUTES
&& (attributes & attribs_to_test);
}
enum executable_states
{
is_executable,
dont_care_if_executable,
not_executable = dont_care_if_executable,
dont_know_if_executable
};
struct suffix_info
{
const char *name;
int addon;
suffix_info (const char *s, int addit = 0): name (s), addon (addit) {}
};
extern suffix_info stat_suffixes[];
enum pathconv_arg
{
PC_SYM_FOLLOW = 0x0001,
PC_SYM_NOFOLLOW = 0x0002,
PC_SYM_NOFOLLOW_REP = 0x0004,
PC_SYM_CONTENTS = 0x0008,
PC_NOFULL = 0x0010,
PC_NULLEMPTY = 0x0020,
PC_POSIX = 0x0080,
PC_NOWARN = 0x0100,
PC_OPEN = 0x0200, /* use open semantics */
PC_CTTY = 0x0400, /* could later be used as ctty */
PC_KEEP_HANDLE = 0x00400000,
PC_NO_ACCESS_CHECK = 0x00800000
};
#define PC_NONULLEMPTY -1
#include "sys/mount.h"
enum path_types
{
PATH_NOTHING = 0,
PATH_SYMLINK = MOUNT_SYMLINK,
PATH_BINARY = MOUNT_BINARY,
PATH_EXEC = MOUNT_EXEC,
PATH_NOTEXEC = MOUNT_NOTEXEC,
PATH_CYGWIN_EXEC = MOUNT_CYGWIN_EXEC,
PATH_RO = MOUNT_RO,
PATH_NOACL = MOUNT_NOACL,
PATH_NOPOSIX = MOUNT_NOPOSIX,
PATH_DOS = MOUNT_DOS,
PATH_IHASH = MOUNT_IHASH,
PATH_ALL_EXEC = (PATH_CYGWIN_EXEC | PATH_EXEC),
PATH_NO_ACCESS_CHECK = PC_NO_ACCESS_CHECK,
PATH_CTTY = 0x00400000, /* could later be used as ctty */
PATH_OPEN = 0x00800000, /* use open semantics */
PATH_LNK = 0x01000000,
PATH_TEXT = 0x02000000,
PATH_REP = 0x04000000,
PATH_HAS_SYMLINKS = 0x10000000,
PATH_SOCKET = 0x40000000
};
class symlink_info;
struct _FILE_NETWORK_OPEN_INFORMATION;
class path_conv_handle
{
HANDLE hdl;
union {
/* Identical to FILE_NETWORK_OPEN_INFORMATION. We don't want to pull in
ntdll.h here, though. */
struct {
LARGE_INTEGER CreationTime;
LARGE_INTEGER LastAccessTime;
LARGE_INTEGER LastWriteTime;
LARGE_INTEGER ChangeTime;
LARGE_INTEGER AllocationSize;
LARGE_INTEGER EndOfFile;
ULONG FileAttributes;
} _fnoi;
/* For NFS. */
fattr3 _fattr3;
} attribs;
public:
path_conv_handle () : hdl (NULL) {}
inline void set (HANDLE h) { hdl = h; }
inline void close ()
{
if (hdl)
CloseHandle (hdl);
set (NULL);
}
inline void dup (const path_conv_handle &pch)
{
if (!DuplicateHandle (GetCurrentProcess (), pch.handle (),
GetCurrentProcess (), &hdl,
0, TRUE, DUPLICATE_SAME_ACCESS))
hdl = NULL;
}
inline HANDLE handle () const { return hdl; }
inline struct _FILE_NETWORK_OPEN_INFORMATION *fnoi ()
{ return (struct _FILE_NETWORK_OPEN_INFORMATION *) &attribs._fnoi; }
inline struct fattr3 *nfsattr ()
{ return (struct fattr3 *) &attribs._fattr3; }
};
class path_conv
{
DWORD fileattr;
ULONG caseinsensitive;
fs_info fs;
PWCHAR wide_path;
UNICODE_STRING uni_path;
void add_ext_from_sym (symlink_info&);
DWORD symlink_length;
const char *path;
path_conv_handle conv_handle;
public:
unsigned path_flags;
const char *known_suffix;
const char *normalized_path;
int error;
device dev;
bool isremote () const {return fs.is_remote_drive ();}
ULONG objcaseinsensitive () const {return caseinsensitive;}
bool has_acls () const {return !(path_flags & PATH_NOACL) && fs.has_acls (); }
bool hasgood_inode () const {return !(path_flags & PATH_IHASH); }
bool isgood_inode (__ino64_t ino) const;
int has_symlinks () const {return path_flags & PATH_HAS_SYMLINKS;}
int has_dos_filenames_only () const {return path_flags & PATH_DOS;}
int has_buggy_open () const {return fs.has_buggy_open ();}
int has_buggy_reopen () const {return fs.has_buggy_reopen ();}
int has_buggy_fileid_dirinfo () const {return fs.has_buggy_fileid_dirinfo ();}
int has_buggy_basic_info () const {return fs.has_buggy_basic_info ();}
int binmode () const
{
if (path_flags & PATH_BINARY)
return O_BINARY;
if (path_flags & PATH_TEXT)
return O_TEXT;
return 0;
}
int issymlink () const {return path_flags & PATH_SYMLINK;}
int is_lnk_symlink () const {return path_flags & PATH_LNK;}
int is_rep_symlink () const {return path_flags & PATH_REP;}
int isdevice () const {return dev.not_device (FH_FS) && dev.not_device (FH_FIFO);}
int isfifo () const {return dev.is_device (FH_FIFO);}
int isspecial () const {return dev.not_device (FH_FS);}
int iscygdrive () const {return dev.is_device (FH_CYGDRIVE);}
int is_auto_device () const {return isdevice () && !is_fs_special ();}
int is_fs_device () const {return isdevice () && is_fs_special ();}
int is_fs_special () const {return dev.is_fs_special ();}
int is_lnk_special () const {return is_fs_device () || isfifo () || is_lnk_symlink ();}
int issocket () const {return dev.is_device (FH_UNIX);}
int iscygexec () const {return path_flags & PATH_CYGWIN_EXEC;}
int isopen () const {return path_flags & PATH_OPEN;}
int isctty_capable () const {return path_flags & PATH_CTTY;}
void set_cygexec (bool isset)
{
if (isset)
path_flags |= PATH_CYGWIN_EXEC;
else
path_flags &= ~PATH_CYGWIN_EXEC;
}
bool isro () const {return !!(path_flags & PATH_RO);}
bool exists () const {return fileattr != INVALID_FILE_ATTRIBUTES;}
bool has_attribute (DWORD x) const {return exists () && (fileattr & x);}
int isdir () const {return has_attribute (FILE_ATTRIBUTE_DIRECTORY);}
executable_states exec_state ()
{
extern int _check_for_executable;
if (path_flags & PATH_ALL_EXEC)
return is_executable;
if (path_flags & PATH_NOTEXEC)
return not_executable;
if (!_check_for_executable)
return dont_care_if_executable;
return dont_know_if_executable;
}
void set_symlink (DWORD n) {path_flags |= PATH_SYMLINK; symlink_length = n;}
void set_has_symlinks () {path_flags |= PATH_HAS_SYMLINKS;}
void set_exec (int x = 1) {path_flags |= x ? PATH_EXEC : PATH_NOTEXEC;}
void check (const UNICODE_STRING *upath, unsigned opt = PC_SYM_FOLLOW,
const suffix_info *suffixes = NULL) __attribute__ ((regparm(3)));
void check (const char *src, unsigned opt = PC_SYM_FOLLOW,
const suffix_info *suffixes = NULL) __attribute__ ((regparm(3)));
path_conv (const device& in_dev)
: fileattr (INVALID_FILE_ATTRIBUTES), wide_path (NULL), path (NULL),
path_flags (0), known_suffix (NULL), normalized_path (NULL), error (0),
dev (in_dev)
{
set_path (in_dev.native);
}
path_conv (int, const char *src, unsigned opt = PC_SYM_FOLLOW,
const suffix_info *suffixes = NULL)
: fileattr (INVALID_FILE_ATTRIBUTES), wide_path (NULL), path (NULL),
path_flags (0), known_suffix (NULL), normalized_path (NULL), error (0)
{
check (src, opt, suffixes);
}
path_conv (const UNICODE_STRING *src, unsigned opt = PC_SYM_FOLLOW,
const suffix_info *suffixes = NULL)
: fileattr (INVALID_FILE_ATTRIBUTES), wide_path (NULL), path (NULL),
path_flags (0), known_suffix (NULL), normalized_path (NULL), error (0)
{
check (src, opt | PC_NULLEMPTY, suffixes);
}
path_conv (const char *src, unsigned opt = PC_SYM_FOLLOW,
const suffix_info *suffixes = NULL)
: fileattr (INVALID_FILE_ATTRIBUTES), wide_path (NULL), path (NULL),
path_flags (0), known_suffix (NULL), normalized_path (NULL), error (0)
{
check (src, opt | PC_NULLEMPTY, suffixes);
}
path_conv ()
: fileattr (INVALID_FILE_ATTRIBUTES), wide_path (NULL), path (NULL),
path_flags (0), known_suffix (NULL), normalized_path (NULL), error (0)
{}
~path_conv ();
inline const char *get_win32 () { return path; }
PUNICODE_STRING get_nt_native_path ();
inline POBJECT_ATTRIBUTES get_object_attr (OBJECT_ATTRIBUTES &attr,
SECURITY_ATTRIBUTES &sa)
{
if (!get_nt_native_path ())
return NULL;
InitializeObjectAttributes (&attr, &uni_path,
objcaseinsensitive ()
| (sa.bInheritHandle ? OBJ_INHERIT : 0),
NULL, sa.lpSecurityDescriptor);
return &attr;
}
inline void init_reopen_attr (POBJECT_ATTRIBUTES attr, HANDLE h)
{
if (has_buggy_reopen ())
InitializeObjectAttributes (attr, get_nt_native_path (),
objcaseinsensitive (), NULL, NULL)
else
InitializeObjectAttributes (attr, &ro_u_empty, objcaseinsensitive (),
h, NULL);
}
inline size_t get_wide_win32_path_len ()
{
get_nt_native_path ();
return uni_path.Length / sizeof (WCHAR);
}
PWCHAR get_wide_win32_path (PWCHAR wc);
operator DWORD &() {return fileattr;}
operator int () {return fileattr; }
path_conv &operator =(const path_conv& pc)
{
memcpy (this, &pc, sizeof pc);
path = cstrdup (pc.path);
conv_handle.dup (pc.conv_handle);
normalized_path = cstrdup(pc.normalized_path);
if (pc.wide_path)
{
wide_path = cwcsdup (uni_path.Buffer);
if (!wide_path)
api_fatal ("cwcsdup would have returned NULL");
uni_path.Buffer = wide_path;
}
return *this;
}
void free_strings ()
{
cfree (modifiable_path ());
cfree ((char *) normalized_path);
}
DWORD get_devn () {return (DWORD) dev;}
short get_unitn () const {return dev.get_minor ();}
DWORD file_attributes () const {return fileattr;}
void file_attributes (DWORD new_attr) {fileattr = new_attr;}
DWORD fs_flags () {return fs.flags ();}
DWORD fs_name_len () {return fs.name_len ();}
bool fs_is_fat () const {return fs.is_fat ();}
bool fs_is_ntfs () const {return fs.is_ntfs ();}
bool fs_is_samba () const {return fs.is_samba ();}
bool fs_is_nfs () const {return fs.is_nfs ();}
bool fs_is_netapp () const {return fs.is_netapp ();}
bool fs_is_cdrom () const {return fs.is_cdrom ();}
bool fs_is_mvfs () const {return fs.is_mvfs ();}
bool fs_is_cifs () const {return fs.is_cifs ();}
bool fs_is_nwfs () const {return fs.is_nwfs ();}
ULONG fs_serial_number () const {return fs.serial_number ();}
inline const char *set_path (const char *p)
{
if (path)
cfree (modifiable_path ());
char *new_path = (char *) cmalloc_abort (HEAP_STR, strlen (p) + 7);
strcpy (new_path, p);
return path = new_path;
}
bool is_binary ();
HANDLE handle () const { return conv_handle.handle (); }
struct _FILE_NETWORK_OPEN_INFORMATION *fnoi () { return conv_handle.fnoi (); }
struct fattr3 *nfsattr () { return conv_handle.nfsattr (); }
void reset_conv_handle () { conv_handle.set (NULL); }
void close_conv_handle () { conv_handle.close (); }
__ino64_t get_ino_by_handle (HANDLE h);
#if 0 /* obsolete, method still exists in fhandler_disk_file.cc */
unsigned __stdcall ndisk_links (DWORD);
#endif
void set_normalized_path (const char *) __attribute__ ((regparm (2)));
DWORD get_symlink_length () { return symlink_length; };
private:
char *modifiable_path () {return (char *) path;}
};
/* Symlink marker */
#define SYMLINK_COOKIE "!<symlink>"
/* Socket marker */
#define SOCKET_COOKIE "!<socket >"
/* Interix symlink marker */
#define INTERIX_SYMLINK_COOKIE "IntxLNK\1"
enum fe_types
{
FE_NADA = 0, /* Nothing special */
FE_NNF = 1, /* Return NULL if not found */
FE_NATIVE = 2, /* Return native path in path_conv struct */
FE_CWD = 4, /* Search CWD for program */
FE_DLL = 8 /* Search for DLLs, not executables. */
};
const char *__stdcall find_exec (const char *name, path_conv& buf,
const char *winenv = "PATH=",
unsigned opt = FE_NADA,
const char **known_suffix = NULL)
__attribute__ ((regparm(3)));
/* Common macros for checking for invalid path names */
#define isdrive(s) (isalpha (*(s)) && (s)[1] == ':')
#define iswdrive(s) (iswalpha (*(s)) && (s)[1] == L':')
static inline bool
has_exec_chars (const char *buf, int len)
{
return len >= 2 &&
((buf[0] == '#' && buf[1] == '!') ||
(buf[0] == ':' && buf[1] == '\n') ||
(buf[0] == 'M' && buf[1] == 'Z'));
}
int pathmatch (const char *path1, const char *path2, bool caseinsensitive) __attribute__ ((regparm (3)));
int pathnmatch (const char *path1, const char *path2, int len, bool caseinsensitive) __attribute__ ((regparm (3)));
bool has_dot_last_component (const char *dir, bool test_dot_dot) __attribute__ ((regparm (2)));
int path_prefix_p (const char *path1, const char *path2, int len1,
bool caseinsensitive) __attribute__ ((regparm (3)));
bool is_floppy (const char *);
int normalize_win32_path (const char *, char *, char *&);
int normalize_posix_path (const char *, char *, char *&);
PUNICODE_STRING get_nt_native_path (const char *, UNICODE_STRING&, bool) __attribute__ ((regparm (3)));
/* FIXME: Move to own include file eventually */
#define MAX_ETC_FILES 2
class etc
{
friend class dtable;
static int curr_ix;
static HANDLE changed_h;
static bool change_possible[MAX_ETC_FILES + 1];
static OBJECT_ATTRIBUTES fn[MAX_ETC_FILES + 1];
static LARGE_INTEGER last_modified[MAX_ETC_FILES + 1];
static bool dir_changed (int);
static int init (int, POBJECT_ATTRIBUTES);
static bool file_changed (int);
static bool test_file_change (int);
friend class pwdgrp;
};