/[rdesktop]/jpeg/rdesktop/trunk/disk.c
This is repository of my old source code which isn't updated any more. Go to git.rot13.org for current projects!
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Contents of /jpeg/rdesktop/trunk/disk.c

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Revision 786 - (show annotations)
Thu Oct 21 08:13:33 2004 UTC (19 years, 7 months ago) by astrand
Original Path: sourceforge.net/trunk/rdesktop/disk.c
File MIME type: text/plain
File size: 23486 byte(s)
Removed unused variables.

1 /* -*- c-basic-offset: 8 -*-
2 rdesktop: A Remote Desktop Protocol client.
3 Disk Redirection
4 Copyright (C) Jeroen Meijer 2003
5
6 This program is free software; you can redistribute it and/or modify
7 it under the terms of the GNU General Public License as published by
8 the Free Software Foundation; either version 2 of the License, or
9 (at your option) any later version.
10
11 This program is distributed in the hope that it will be useful,
12 but WITHOUT ANY WARRANTY; without even the implied warranty of
13 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 GNU General Public License for more details.
15
16 You should have received a copy of the GNU General Public License
17 along with this program; if not, write to the Free Software
18 Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
19 */
20
21 #include "disk.h"
22
23 #include <sys/types.h>
24 #include <sys/stat.h>
25 #include <unistd.h>
26 #include <fcntl.h> /* open, close */
27 #include <dirent.h> /* opendir, closedir, readdir */
28 #include <fnmatch.h>
29 #include <errno.h> /* errno */
30
31 #include <utime.h>
32 #include <time.h> /* ctime */
33
34 #if (defined(HAVE_DIRFD) || (HAVE_DECL_DIRFD == 1))
35 #define DIRFD(a) (dirfd(a))
36 #else
37 #define DIRFD(a) ((a)->DIR_FD_MEMBER_NAME)
38 #endif
39
40 /* TODO: let autoconf figure out everything below... */
41 #if (defined(sun) && (defined(__svr4__) || defined(__SVR4)))
42 #define SOLARIS
43 #endif
44
45 #if (defined(SOLARIS) || defined (__hpux) || defined(__BEOS__))
46 #include <sys/statvfs.h> /* solaris statvfs */
47 /* TODO: Fix mntent-handling for solaris/hpux
48 * #include <sys/mntent.h> */
49 #undef HAVE_MNTENT_H
50 #define MNTENT_PATH "/etc/mnttab"
51 #define STATFS_FN(path, buf) (statvfs(path,buf))
52 #define STATFS_T statvfs
53 #define F_NAMELEN(buf) ((buf).f_namemax)
54
55 #elif (defined(__OpenBSD__) || defined(__NetBSD__) || defined(__FreeBSD__) || defined(__APPLE__))
56 #include <sys/param.h>
57 #include <sys/mount.h>
58 #define STATFS_FN(path, buf) (statfs(path,buf))
59 #define STATFS_T statfs
60 #define F_NAMELEN(buf) (NAME_MAX)
61
62 #elif (defined(__SGI_IRIX__))
63 #include <sys/types.h>
64 #include <sys/statvfs.h>
65 #define STATFS_FN(path, buf) (statvfs(path,buf))
66 #define STATFS_T statvfs
67 #define F_NAMELEN(buf) ((buf).f_namemax)
68
69 #else
70 #include <sys/vfs.h> /* linux statfs */
71 #include <mntent.h>
72 #define HAVE_MNTENT_H
73 #define MNTENT_PATH "/etc/mtab"
74 #define STATFS_FN(path, buf) (statfs(path,buf))
75 #define STATFS_T statfs
76 #define F_NAMELEN(buf) ((buf).f_namelen)
77 #endif
78
79 #include "rdesktop.h"
80
81 extern RDPDR_DEVICE g_rdpdr_device[];
82
83 FILEINFO g_fileinfo[MAX_OPEN_FILES];
84
85 typedef struct
86 {
87 char name[256];
88 char label[256];
89 unsigned long serial;
90 char type[256];
91 } FsInfoType;
92
93
94 static time_t
95 get_create_time(struct stat *st)
96 {
97 time_t ret, ret1;
98
99 ret = MIN(st->st_ctime, st->st_mtime);
100 ret1 = MIN(ret, st->st_atime);
101
102 if (ret1 != (time_t) 0)
103 return ret1;
104
105 return ret;
106 }
107
108 /* Convert seconds since 1970 to a filetime */
109 static void
110 seconds_since_1970_to_filetime(time_t seconds, uint32 * high, uint32 * low)
111 {
112 unsigned long long ticks;
113
114 ticks = (seconds + 11644473600LL) * 10000000;
115 *low = (uint32) ticks;
116 *high = (uint32) (ticks >> 32);
117 }
118
119 /* Convert seconds since 1970 back to filetime */
120 static time_t
121 convert_1970_to_filetime(uint32 high, uint32 low)
122 {
123 unsigned long long ticks;
124 time_t val;
125
126 ticks = low + (((unsigned long long) high) << 32);
127 ticks /= 10000000;
128 ticks -= 11644473600LL;
129
130 val = (time_t) ticks;
131 return (val);
132
133 }
134
135 /* A wrapper for ftruncate which supports growing files, even if the
136 native ftruncate doesn't. This is needed on Linux FAT filesystems,
137 for example. */
138 static int
139 ftruncate_growable(int fd, off_t length)
140 {
141 int ret;
142 off_t pos;
143 static const char zero;
144
145 /* Try the simple method first */
146 if ((ret = ftruncate(fd, length)) != -1)
147 {
148 return ret;
149 }
150
151 /*
152 * Some kind of error. Perhaps we were trying to grow. Retry
153 * in a safe way.
154 */
155
156 /* Get current position */
157 if ((pos = lseek(fd, 0, SEEK_CUR)) == -1)
158 {
159 perror("lseek");
160 return -1;
161 }
162
163 /* Seek to new size */
164 if (lseek(fd, length, SEEK_SET) == -1)
165 {
166 perror("lseek");
167 return -1;
168 }
169
170 /* Write a zero */
171 if (write(fd, &zero, 1) == -1)
172 {
173 perror("write");
174 return -1;
175 }
176
177 /* Truncate. This shouldn't fail. */
178 if (ftruncate(fd, length) == -1)
179 {
180 perror("ftruncate");
181 return -1;
182 }
183
184 /* Restore position */
185 if (lseek(fd, pos, SEEK_SET) == -1)
186 {
187 perror("lseek");
188 return -1;
189 }
190
191 return 0;
192 }
193
194
195 /* Enumeration of devices from rdesktop.c */
196 /* returns numer of units found and initialized. */
197 /* optarg looks like ':h=/mnt/floppy,b=/mnt/usbdevice1' */
198 /* when it arrives to this function. */
199 int
200 disk_enum_devices(uint32 * id, char *optarg)
201 {
202 char *pos = optarg;
203 char *pos2;
204 int count = 0;
205
206 // skip the first colon
207 optarg++;
208 while ((pos = next_arg(optarg, ',')) && *id < RDPDR_MAX_DEVICES)
209 {
210 pos2 = next_arg(optarg, '=');
211
212 strncpy(g_rdpdr_device[*id].name, optarg, sizeof(g_rdpdr_device[*id].name));
213 if (strlen(optarg) > 8)
214 fprintf(stderr, "share name %s truncated to %s\n", optarg,
215 g_rdpdr_device[*id].name);
216
217 g_rdpdr_device[*id].local_path = xmalloc(strlen(pos2) + 1);
218 strcpy(g_rdpdr_device[*id].local_path, pos2);
219 g_rdpdr_device[*id].device_type = DEVICE_TYPE_DISK;
220 count++;
221 (*id)++;
222
223 optarg = pos;
224 }
225 return count;
226 }
227
228 /* Opens or creates a file or directory */
229 static NTSTATUS
230 disk_create(uint32 device_id, uint32 accessmask, uint32 sharemode, uint32 create_disposition,
231 uint32 flags_and_attributes, char *filename, NTHANDLE * phandle)
232 {
233 NTHANDLE handle;
234 DIR *dirp;
235 int flags, mode;
236 char path[256];
237 struct stat filestat;
238
239 handle = 0;
240 dirp = NULL;
241 flags = 0;
242 mode = S_IRWXU | S_IRGRP | S_IXGRP | S_IROTH | S_IXOTH;
243
244
245 if (filename[strlen(filename) - 1] == '/')
246 filename[strlen(filename) - 1] = 0;
247 sprintf(path, "%s%s", g_rdpdr_device[device_id].local_path, filename);
248
249 switch (create_disposition)
250 {
251 case CREATE_ALWAYS:
252
253 // Delete existing file/link.
254 unlink(path);
255 flags |= O_CREAT;
256 break;
257
258 case CREATE_NEW:
259
260 // If the file already exists, then fail.
261 flags |= O_CREAT | O_EXCL;
262 break;
263
264 case OPEN_ALWAYS:
265
266 // Create if not already exists.
267 flags |= O_CREAT;
268 break;
269
270 case OPEN_EXISTING:
271
272 // Default behaviour
273 break;
274
275 case TRUNCATE_EXISTING:
276
277 // If the file does not exist, then fail.
278 flags |= O_TRUNC;
279 break;
280 }
281
282 //printf("Open: \"%s\" flags: %u, accessmask: %u sharemode: %u create disp: %u\n", path, flags_and_attributes, accessmask, sharemode, create_disposition);
283
284 // Get information about file and set that flag ourselfs
285 if ((stat(path, &filestat) == 0) && (S_ISDIR(filestat.st_mode)))
286 {
287 if (flags_and_attributes & FILE_NON_DIRECTORY_FILE)
288 return STATUS_FILE_IS_A_DIRECTORY;
289 else
290 flags_and_attributes |= FILE_DIRECTORY_FILE;
291 }
292
293 if (flags_and_attributes & FILE_DIRECTORY_FILE)
294 {
295 if (flags & O_CREAT)
296 {
297 mkdir(path, mode);
298 }
299
300 dirp = opendir(path);
301 if (!dirp)
302 {
303 switch (errno)
304 {
305 case EACCES:
306
307 return STATUS_ACCESS_DENIED;
308
309 case ENOENT:
310
311 return STATUS_NO_SUCH_FILE;
312
313 default:
314
315 perror("opendir");
316 return STATUS_NO_SUCH_FILE;
317 }
318 }
319 handle = DIRFD(dirp);
320 }
321 else
322 {
323
324 if (accessmask & GENERIC_ALL
325 || (accessmask & GENERIC_READ && accessmask & GENERIC_WRITE))
326 {
327 flags |= O_RDWR;
328 }
329 else if ((accessmask & GENERIC_WRITE) && !(accessmask & GENERIC_READ))
330 {
331 flags |= O_WRONLY;
332 }
333 else
334 {
335 flags |= O_RDONLY;
336 }
337
338 handle = open(path, flags, mode);
339 if (handle == -1)
340 {
341 switch (errno)
342 {
343 case EISDIR:
344
345 return STATUS_FILE_IS_A_DIRECTORY;
346
347 case EACCES:
348
349 return STATUS_ACCESS_DENIED;
350
351 case ENOENT:
352
353 return STATUS_NO_SUCH_FILE;
354 case EEXIST:
355
356 return STATUS_OBJECT_NAME_COLLISION;
357 default:
358
359 perror("open");
360 return STATUS_NO_SUCH_FILE;
361 }
362 }
363
364 /* all read and writes of files should be non blocking */
365 if (fcntl(handle, F_SETFL, O_NONBLOCK) == -1)
366 perror("fcntl");
367 }
368
369 if (handle >= MAX_OPEN_FILES)
370 {
371 error("Maximum number of open files (%s) reached. Increase MAX_OPEN_FILES!\n",
372 handle);
373 exit(1);
374 }
375
376 if (dirp)
377 g_fileinfo[handle].pdir = dirp;
378 g_fileinfo[handle].device_id = device_id;
379 g_fileinfo[handle].flags_and_attributes = flags_and_attributes;
380 strncpy(g_fileinfo[handle].path, path, 255);
381
382 *phandle = handle;
383 return STATUS_SUCCESS;
384 }
385
386 static NTSTATUS
387 disk_close(NTHANDLE handle)
388 {
389 struct fileinfo *pfinfo;
390
391 pfinfo = &(g_fileinfo[handle]);
392
393 if (pfinfo->flags_and_attributes & FILE_DIRECTORY_FILE)
394 {
395 closedir(pfinfo->pdir);
396 //FIXME: Should check exit code
397 }
398 else
399 {
400 close(handle);
401 }
402
403 return STATUS_SUCCESS;
404 }
405
406 static NTSTATUS
407 disk_read(NTHANDLE handle, uint8 * data, uint32 length, uint32 offset, uint32 * result)
408 {
409 int n;
410
411 #if 0
412 /* browsing dir ???? */
413 /* each request is 24 bytes */
414 if (g_fileinfo[handle].flags_and_attributes & FILE_DIRECTORY_FILE)
415 {
416 *result = 0;
417 return STATUS_SUCCESS;
418 }
419 #endif
420
421 lseek(handle, offset, SEEK_SET);
422
423 n = read(handle, data, length);
424
425 if (n < 0)
426 {
427 *result = 0;
428 switch (errno)
429 {
430 case EISDIR:
431 return STATUS_FILE_IS_A_DIRECTORY;
432 default:
433 perror("read");
434 return STATUS_INVALID_PARAMETER;
435 }
436 }
437
438 *result = n;
439
440 return STATUS_SUCCESS;
441 }
442
443 static NTSTATUS
444 disk_write(NTHANDLE handle, uint8 * data, uint32 length, uint32 offset, uint32 * result)
445 {
446 int n;
447
448 lseek(handle, offset, SEEK_SET);
449
450 n = write(handle, data, length);
451
452 if (n < 0)
453 {
454 perror("write");
455 *result = 0;
456 switch (errno)
457 {
458 case ENOSPC:
459 return STATUS_DISK_FULL;
460 default:
461 return STATUS_ACCESS_DENIED;
462 }
463 }
464
465 *result = n;
466
467 return STATUS_SUCCESS;
468 }
469
470 NTSTATUS
471 disk_query_information(NTHANDLE handle, uint32 info_class, STREAM out)
472 {
473 uint32 file_attributes, ft_high, ft_low;
474 struct stat filestat;
475 char *path, *filename;
476
477 path = g_fileinfo[handle].path;
478
479 // Get information about file
480 if (fstat(handle, &filestat) != 0)
481 {
482 perror("stat");
483 out_uint8(out, 0);
484 return STATUS_ACCESS_DENIED;
485 }
486
487 // Set file attributes
488 file_attributes = 0;
489 if (S_ISDIR(filestat.st_mode))
490 file_attributes |= FILE_ATTRIBUTE_DIRECTORY;
491
492 filename = 1 + strrchr(path, '/');
493 if (filename && filename[0] == '.')
494 file_attributes |= FILE_ATTRIBUTE_HIDDEN;
495
496 if (!file_attributes)
497 file_attributes |= FILE_ATTRIBUTE_NORMAL;
498
499 if (!(filestat.st_mode & S_IWUSR))
500 file_attributes |= FILE_ATTRIBUTE_READONLY;
501
502 // Return requested data
503 switch (info_class)
504 {
505 case FileBasicInformation:
506 seconds_since_1970_to_filetime(get_create_time(&filestat), &ft_high,
507 &ft_low);
508 out_uint32_le(out, ft_low); //create_access_time
509 out_uint32_le(out, ft_high);
510
511 seconds_since_1970_to_filetime(filestat.st_atime, &ft_high, &ft_low);
512 out_uint32_le(out, ft_low); //last_access_time
513 out_uint32_le(out, ft_high);
514
515 seconds_since_1970_to_filetime(filestat.st_mtime, &ft_high, &ft_low);
516 out_uint32_le(out, ft_low); //last_write_time
517 out_uint32_le(out, ft_high);
518
519 seconds_since_1970_to_filetime(filestat.st_ctime, &ft_high, &ft_low);
520 out_uint32_le(out, ft_low); //last_change_time
521 out_uint32_le(out, ft_high);
522
523 out_uint32_le(out, file_attributes);
524 break;
525
526 case FileStandardInformation:
527
528 out_uint32_le(out, filestat.st_size); //Allocation size
529 out_uint32_le(out, 0);
530 out_uint32_le(out, filestat.st_size); //End of file
531 out_uint32_le(out, 0);
532 out_uint32_le(out, filestat.st_nlink); //Number of links
533 out_uint8(out, 0); //Delete pending
534 out_uint8(out, S_ISDIR(filestat.st_mode) ? 1 : 0); //Directory
535 break;
536
537 case FileObjectIdInformation:
538
539 out_uint32_le(out, file_attributes); /* File Attributes */
540 out_uint32_le(out, 0); /* Reparse Tag */
541 break;
542
543 default:
544
545 unimpl("IRP Query (File) Information class: 0x%x\n", info_class);
546 return STATUS_INVALID_PARAMETER;
547 }
548 return STATUS_SUCCESS;
549 }
550
551 NTSTATUS
552 disk_set_information(NTHANDLE handle, uint32 info_class, STREAM in, STREAM out)
553 {
554 uint32 length, file_attributes, ft_high, ft_low;
555 char newname[256], fullpath[256];
556 struct fileinfo *pfinfo;
557
558 int mode;
559 struct stat filestat;
560 time_t write_time, change_time, access_time, mod_time;
561 struct utimbuf tvs;
562 struct STATFS_T stat_fs;
563
564 pfinfo = &(g_fileinfo[handle]);
565
566 switch (info_class)
567 {
568 case FileBasicInformation:
569 write_time = change_time = access_time = 0;
570
571 in_uint8s(in, 4); /* Handle of root dir? */
572 in_uint8s(in, 24); /* unknown */
573
574 // CreationTime
575 in_uint32_le(in, ft_low);
576 in_uint32_le(in, ft_high);
577
578 // AccessTime
579 in_uint32_le(in, ft_low);
580 in_uint32_le(in, ft_high);
581 if (ft_low || ft_high)
582 access_time = convert_1970_to_filetime(ft_high, ft_low);
583
584 // WriteTime
585 in_uint32_le(in, ft_low);
586 in_uint32_le(in, ft_high);
587 if (ft_low || ft_high)
588 write_time = convert_1970_to_filetime(ft_high, ft_low);
589
590 // ChangeTime
591 in_uint32_le(in, ft_low);
592 in_uint32_le(in, ft_high);
593 if (ft_low || ft_high)
594 change_time = convert_1970_to_filetime(ft_high, ft_low);
595
596 in_uint32_le(in, file_attributes);
597
598 if (fstat(handle, &filestat))
599 return STATUS_ACCESS_DENIED;
600
601 tvs.modtime = filestat.st_mtime;
602 tvs.actime = filestat.st_atime;
603 if (access_time)
604 tvs.actime = access_time;
605
606
607 if (write_time || change_time)
608 mod_time = MIN(write_time, change_time);
609 else
610 mod_time = write_time ? write_time : change_time;
611
612 if (mod_time)
613 tvs.modtime = mod_time;
614
615
616 if (access_time || write_time || change_time)
617 {
618 #if WITH_DEBUG_RDP5
619 printf("FileBasicInformation access time %s",
620 ctime(&tvs.actime));
621 printf("FileBasicInformation modification time %s",
622 ctime(&tvs.modtime));
623 #endif
624 if (utime(pfinfo->path, &tvs))
625 return STATUS_ACCESS_DENIED;
626 }
627
628 if (!file_attributes)
629 break; // not valid
630
631 mode = filestat.st_mode;
632
633 if (file_attributes & FILE_ATTRIBUTE_READONLY)
634 mode &= ~(S_IWUSR | S_IWGRP | S_IWOTH);
635 else
636 mode |= S_IWUSR;
637
638 mode &= 0777;
639 #if WITH_DEBUG_RDP5
640 printf("FileBasicInformation set access mode 0%o", mode);
641 #endif
642
643 if (fchmod(handle, mode))
644 return STATUS_ACCESS_DENIED;
645
646 break;
647
648 case FileRenameInformation:
649
650 in_uint8s(in, 4); /* Handle of root dir? */
651 in_uint8s(in, 0x1a); /* unknown */
652 in_uint32_le(in, length);
653
654 if (length && (length / 2) < 256)
655 {
656 rdp_in_unistr(in, newname, length);
657 convert_to_unix_filename(newname);
658 }
659 else
660 {
661 return STATUS_INVALID_PARAMETER;
662 }
663
664 sprintf(fullpath, "%s%s", g_rdpdr_device[pfinfo->device_id].local_path,
665 newname);
666
667 if (rename(pfinfo->path, fullpath) != 0)
668 {
669 perror("rename");
670 return STATUS_ACCESS_DENIED;
671 }
672 break;
673
674 case FileDispositionInformation:
675 /* As far as I understand it, the correct
676 thing to do here is to *schedule* a delete,
677 so it will be deleted when the file is
678 closed. Subsequent
679 FileDispositionInformation requests with
680 DeleteFile set to FALSE should unschedule
681 the delete. See
682 http://www.osronline.com/article.cfm?article=245. Currently,
683 we are deleting the file immediately. I
684 guess this is a FIXME. */
685
686 //in_uint32_le(in, delete_on_close);
687
688 /* Make sure we close the file before
689 unlinking it. Not doing so would trigger
690 silly-delete if using NFS, which might fail
691 on FAT floppies, for example. */
692 disk_close(handle);
693
694 if ((pfinfo->flags_and_attributes & FILE_DIRECTORY_FILE)) // remove a directory
695 {
696 if (rmdir(pfinfo->path) < 0)
697 return STATUS_ACCESS_DENIED;
698 }
699 else if (unlink(pfinfo->path) < 0) // unlink a file
700 return STATUS_ACCESS_DENIED;
701
702 break;
703
704 case FileAllocationInformation:
705 /* Fall through to FileEndOfFileInformation,
706 which uses ftrunc. This is like Samba with
707 "strict allocation = false", and means that
708 we won't detect out-of-quota errors, for
709 example. */
710
711 case FileEndOfFileInformation:
712 in_uint8s(in, 28); /* unknown */
713 in_uint32_le(in, length); /* file size */
714
715 /* prevents start of writing if not enough space left on device */
716 if (STATFS_FN(g_rdpdr_device[pfinfo->device_id].local_path, &stat_fs) == 0)
717 if (stat_fs.f_bsize * stat_fs.f_bfree < length)
718 return STATUS_DISK_FULL;
719
720 if (ftruncate_growable(handle, length) != 0)
721 {
722 return STATUS_DISK_FULL;
723 }
724
725 break;
726 default:
727
728 unimpl("IRP Set File Information class: 0x%x\n", info_class);
729 return STATUS_INVALID_PARAMETER;
730 }
731 return STATUS_SUCCESS;
732 }
733
734 static FsInfoType *
735 FsVolumeInfo(char *fpath)
736 {
737
738 #ifdef HAVE_MNTENT_H
739 FILE *fdfs;
740 struct mntent *e;
741 static FsInfoType info;
742
743 /* initialize */
744 memset(&info, 0, sizeof(info));
745 strcpy(info.label, "RDESKTOP");
746 strcpy(info.type, "RDPFS");
747
748 fdfs = setmntent(MNTENT_PATH, "r");
749 if (!fdfs)
750 return &info;
751
752 while ((e = getmntent(fdfs)))
753 {
754 if (strncmp(fpath, e->mnt_dir, strlen(fpath)) == 0)
755 {
756 strcpy(info.type, e->mnt_type);
757 strcpy(info.name, e->mnt_fsname);
758 if (strstr(e->mnt_opts, "vfat") || strstr(e->mnt_opts, "iso9660"))
759 {
760 int fd = open(e->mnt_fsname, O_RDONLY);
761 if (fd >= 0)
762 {
763 unsigned char buf[512];
764 memset(buf, 0, sizeof(buf));
765 if (strstr(e->mnt_opts, "vfat"))
766 /*FAT*/
767 {
768 strcpy(info.type, "vfat");
769 read(fd, buf, sizeof(buf));
770 info.serial =
771 (buf[42] << 24) + (buf[41] << 16) +
772 (buf[40] << 8) + buf[39];
773 strncpy(info.label, buf + 43, 10);
774 info.label[10] = '\0';
775 }
776 else if (lseek(fd, 32767, SEEK_SET) >= 0) /* ISO9660 */
777 {
778 read(fd, buf, sizeof(buf));
779 strncpy(info.label, buf + 41, 32);
780 info.label[32] = '\0';
781 //info.Serial = (buf[128]<<24)+(buf[127]<<16)+(buf[126]<<8)+buf[125];
782 }
783 close(fd);
784 }
785 }
786 }
787 }
788 endmntent(fdfs);
789 #else
790 static FsInfoType info;
791
792 /* initialize */
793 memset(&info, 0, sizeof(info));
794 strcpy(info.label, "RDESKTOP");
795 strcpy(info.type, "RDPFS");
796
797 #endif
798 return &info;
799 }
800
801
802 NTSTATUS
803 disk_query_volume_information(NTHANDLE handle, uint32 info_class, STREAM out)
804 {
805 struct STATFS_T stat_fs;
806 struct fileinfo *pfinfo;
807 FsInfoType *fsinfo;
808
809 pfinfo = &(g_fileinfo[handle]);
810
811 if (STATFS_FN(pfinfo->path, &stat_fs) != 0)
812 {
813 perror("statfs");
814 return STATUS_ACCESS_DENIED;
815 }
816
817 fsinfo = FsVolumeInfo(pfinfo->path);
818
819 switch (info_class)
820 {
821 case FileFsVolumeInformation:
822
823 out_uint32_le(out, 0); /* volume creation time low */
824 out_uint32_le(out, 0); /* volume creation time high */
825 out_uint32_le(out, fsinfo->serial); /* serial */
826
827 out_uint32_le(out, 2 * strlen(fsinfo->label)); /* length of string */
828
829 out_uint8(out, 0); /* support objects? */
830 rdp_out_unistr(out, fsinfo->label, 2 * strlen(fsinfo->label) - 2);
831 break;
832
833 case FileFsSizeInformation:
834
835 out_uint32_le(out, stat_fs.f_blocks); /* Total allocation units low */
836 out_uint32_le(out, 0); /* Total allocation high units */
837 out_uint32_le(out, stat_fs.f_bfree); /* Available allocation units */
838 out_uint32_le(out, 0); /* Available allowcation units */
839 out_uint32_le(out, stat_fs.f_bsize / 0x200); /* Sectors per allocation unit */
840 out_uint32_le(out, 0x200); /* Bytes per sector */
841 break;
842
843 case FileFsAttributeInformation:
844
845 out_uint32_le(out, FS_CASE_SENSITIVE | FS_CASE_IS_PRESERVED); /* fs attributes */
846 out_uint32_le(out, F_NAMELEN(stat_fs)); /* max length of filename */
847
848 out_uint32_le(out, 2 * strlen(fsinfo->type)); /* length of fs_type */
849 rdp_out_unistr(out, fsinfo->type, 2 * strlen(fsinfo->type) - 2);
850 break;
851
852 case FileFsLabelInformation:
853 case FileFsDeviceInformation:
854 case FileFsControlInformation:
855 case FileFsFullSizeInformation:
856 case FileFsObjectIdInformation:
857 case FileFsMaximumInformation:
858
859 default:
860
861 unimpl("IRP Query Volume Information class: 0x%x\n", info_class);
862 return STATUS_INVALID_PARAMETER;
863 }
864 return STATUS_SUCCESS;
865 }
866
867 NTSTATUS
868 disk_query_directory(NTHANDLE handle, uint32 info_class, char *pattern, STREAM out)
869 {
870 uint32 file_attributes, ft_low, ft_high;
871 char *dirname, fullpath[256];
872 DIR *pdir;
873 struct dirent *pdirent;
874 struct stat fstat;
875 struct fileinfo *pfinfo;
876
877 pfinfo = &(g_fileinfo[handle]);
878 pdir = pfinfo->pdir;
879 dirname = pfinfo->path;
880 file_attributes = 0;
881
882 switch (info_class)
883 {
884 case FileBothDirectoryInformation:
885
886 // If a search pattern is received, remember this pattern, and restart search
887 if (pattern[0] != 0)
888 {
889 strncpy(pfinfo->pattern, 1 + strrchr(pattern, '/'), 64);
890 rewinddir(pdir);
891 }
892
893 // find next dirent matching pattern
894 pdirent = readdir(pdir);
895 while (pdirent && fnmatch(pfinfo->pattern, pdirent->d_name, 0) != 0)
896 pdirent = readdir(pdir);
897
898 if (pdirent == NULL)
899 return STATUS_NO_MORE_FILES;
900
901 // Get information for directory entry
902 sprintf(fullpath, "%s/%s", dirname, pdirent->d_name);
903
904 if (stat(fullpath, &fstat))
905 {
906 switch (errno)
907 {
908 case ENOENT:
909 case ELOOP:
910 case EACCES:
911 /* These are non-fatal errors. */
912 memset(&fstat, 0, sizeof(fstat));
913 break;
914 default:
915 /* Fatal error. By returning STATUS_NO_SUCH_FILE,
916 the directory list operation will be aborted */
917 perror(fullpath);
918 out_uint8(out, 0);
919 return STATUS_NO_SUCH_FILE;
920 }
921 }
922
923 if (S_ISDIR(fstat.st_mode))
924 file_attributes |= FILE_ATTRIBUTE_DIRECTORY;
925 if (pdirent->d_name[0] == '.')
926 file_attributes |= FILE_ATTRIBUTE_HIDDEN;
927 if (!file_attributes)
928 file_attributes |= FILE_ATTRIBUTE_NORMAL;
929 if (!(fstat.st_mode & S_IWUSR))
930 file_attributes |= FILE_ATTRIBUTE_READONLY;
931
932 // Return requested information
933 out_uint8s(out, 8); //unknown zero
934
935 seconds_since_1970_to_filetime(get_create_time(&fstat), &ft_high, &ft_low);
936 out_uint32_le(out, ft_low); // create time
937 out_uint32_le(out, ft_high);
938
939 seconds_since_1970_to_filetime(fstat.st_atime, &ft_high, &ft_low);
940 out_uint32_le(out, ft_low); //last_access_time
941 out_uint32_le(out, ft_high);
942
943 seconds_since_1970_to_filetime(fstat.st_mtime, &ft_high, &ft_low);
944 out_uint32_le(out, ft_low); //last_write_time
945 out_uint32_le(out, ft_high);
946
947 seconds_since_1970_to_filetime(fstat.st_ctime, &ft_high, &ft_low);
948 out_uint32_le(out, ft_low); //change_write_time
949 out_uint32_le(out, ft_high);
950
951 out_uint32_le(out, fstat.st_size); //filesize low
952 out_uint32_le(out, 0); //filesize high
953 out_uint32_le(out, fstat.st_size); //filesize low
954 out_uint32_le(out, 0); //filesize high
955 out_uint32_le(out, file_attributes);
956 out_uint8(out, 2 * strlen(pdirent->d_name) + 2); //unicode length
957 out_uint8s(out, 7); //pad?
958 out_uint8(out, 0); //8.3 file length
959 out_uint8s(out, 2 * 12); //8.3 unicode length
960 rdp_out_unistr(out, pdirent->d_name, 2 * strlen(pdirent->d_name));
961 break;
962
963 default:
964 /* FIXME: Support FileDirectoryInformation,
965 FileFullDirectoryInformation, and
966 FileNamesInformation */
967
968 unimpl("IRP Query Directory sub: 0x%x\n", info_class);
969 return STATUS_INVALID_PARAMETER;
970 }
971
972 return STATUS_SUCCESS;
973 }
974
975
976
977 static NTSTATUS
978 disk_device_control(NTHANDLE handle, uint32 request, STREAM in, STREAM out)
979 {
980 if (((request >> 16) != 20) || ((request >> 16) != 9))
981 return STATUS_INVALID_PARAMETER;
982
983 /* extract operation */
984 request >>= 2;
985 request &= 0xfff;
986
987 printf("DISK IOCTL %d\n", request);
988
989 switch (request)
990 {
991 case 25: // ?
992 case 42: // ?
993 default:
994 unimpl("DISK IOCTL %d\n", request);
995 return STATUS_INVALID_PARAMETER;
996 }
997
998 return STATUS_SUCCESS;
999 }
1000
1001 DEVICE_FNS disk_fns = {
1002 disk_create,
1003 disk_close,
1004 disk_read,
1005 disk_write,
1006 disk_device_control /* device_control */
1007 };

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