2 Unix SMB/CIFS implementation.
4 generic testing tool - version with both SMB and SMB2 support
6 Copyright (C) Andrew Tridgell 2003-2008
8 This program is free software; you can redistribute it and/or modify
9 it under the terms of the GNU General Public License as published by
10 the Free Software Foundation; either version 3 of the License, or
11 (at your option) any later version.
13 This program is distributed in the hope that it will be useful,
14 but WITHOUT ANY WARRANTY; without even the implied warranty of
15 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 GNU General Public License for more details.
18 You should have received a copy of the GNU General Public License
19 along with this program. If not, see <http://www.gnu.org/licenses/>.
23 #include "lib/cmdline/cmdline.h"
24 #include "lib/events/events.h"
25 #include "system/time.h"
26 #include "system/filesys.h"
27 #include "libcli/raw/request.h"
28 #include "libcli/libcli.h"
29 #include "libcli/raw/libcliraw.h"
30 #include "libcli/smb2/smb2.h"
31 #include "libcli/smb2/smb2_calls.h"
32 #include "librpc/gen_ndr/security.h"
33 #include "librpc/gen_ndr/ndr_security.h"
34 #include "auth/credentials/credentials.h"
35 #include "libcli/resolve/resolve.h"
36 #include "auth/gensec/gensec.h"
37 #include "param/param.h"
38 #include "dynconfig/dynconfig.h"
39 #include "libcli/security/security.h"
40 #include "libcli/raw/raw_proto.h"
41 #include "../libcli/smb/smbXcli_base.h"
47 static struct gentest_options
{
51 int analyze_continuous
;
52 unsigned int max_open_handles
;
56 char **ignore_patterns
;
57 const char *seeds_file
;
68 /* mapping between open handles on the server and local handles */
71 unsigned int instance
;
72 struct smb2_handle smb2_handle
[NSERVERS
]; /* SMB2 */
73 uint16_t smb_handle
[NSERVERS
]; /* SMB */
76 static unsigned int num_open_handles
;
78 /* state information for the servers. We open NINSTANCES connections to
81 struct smb2_tree
*smb2_tree
[NINSTANCES
];
82 struct smbcli_tree
*smb_tree
[NINSTANCES
];
85 struct cli_credentials
*credentials
;
88 /* the seeds and flags for each operation */
95 /* oplock break info */
98 struct smb2_handle smb2_handle
;
103 } oplocks
[NSERVERS
][NINSTANCES
];
105 /* change notify reply info */
109 union smb_notify notify
;
110 } notifies
[NSERVERS
][NINSTANCES
];
112 /* info relevant to the current operation */
119 const char *mismatch
;
122 static struct smb2_handle bad_smb2_handle
;
125 #define BAD_HANDLE 0xFFFE
127 static bool oplock_handler_smb2(struct smb2_transport
*transport
, const struct smb2_handle
*handle
,
128 uint8_t level
, void *private_data
);
129 static void idle_func_smb2(struct smb2_transport
*transport
, void *private_data
);
130 static bool oplock_handler_smb(struct smbcli_transport
*transport
, uint16_t tid
, uint16_t fnum
, uint8_t level
, void *private_data
);
131 static void idle_func_smb(struct smbcli_transport
*transport
, void *private_data
);
134 check if a string should be ignored. This is used as the basis
135 for all error ignore settings
137 static bool ignore_pattern(const char *str
)
140 if (!options
.ignore_patterns
) return false;
142 for (i
=0;options
.ignore_patterns
[i
];i
++) {
143 if (strcmp(options
.ignore_patterns
[i
], str
) == 0 ||
144 gen_fnmatch(options
.ignore_patterns
[i
], str
) == 0) {
145 DEBUG(2,("Ignoring '%s'\n", str
));
152 /*****************************************************
153 connect to the servers
154 *******************************************************/
155 static bool connect_servers_fast(void)
159 /* close all open files */
160 for (h
=0;h
<options
.max_open_handles
;h
++) {
161 if (!open_handles
[h
].active
) continue;
162 for (i
=0;i
<NSERVERS
;i
++) {
165 status
= smb2_util_close(servers
[i
].smb2_tree
[open_handles
[h
].instance
],
166 open_handles
[h
].smb2_handle
[i
]);
168 status
= smbcli_close(servers
[i
].smb_tree
[open_handles
[h
].instance
],
169 open_handles
[h
].smb_handle
[i
]);
171 if (NT_STATUS_IS_ERR(status
)) {
174 open_handles
[h
].active
= false;
184 /*****************************************************
185 connect to the servers
186 *******************************************************/
187 static bool connect_servers(struct tevent_context
*ev
,
188 struct loadparm_context
*lp_ctx
)
192 if (options
.fast_reconnect
&& servers
[0].smb2_tree
[0]) {
193 if (connect_servers_fast()) {
198 /* close any existing connections */
199 for (i
=0;i
<NSERVERS
;i
++) {
200 for (j
=0;j
<NINSTANCES
;j
++) {
201 if (servers
[i
].smb2_tree
[j
]) {
202 smb2_tdis(servers
[i
].smb2_tree
[j
]);
203 talloc_free(servers
[i
].smb2_tree
[j
]);
204 servers
[i
].smb2_tree
[j
] = NULL
;
206 if (servers
[i
].smb_tree
[j
]) {
207 smb_tree_disconnect(servers
[i
].smb_tree
[j
]);
208 talloc_free(servers
[i
].smb_tree
[j
]);
209 servers
[i
].smb_tree
[j
] = NULL
;
214 for (i
=0;i
<NSERVERS
;i
++) {
215 for (j
=0;j
<NINSTANCES
;j
++) {
217 struct smbcli_options smb_options
;
218 struct smbcli_session_options smb_session_options
;
219 lpcfg_smbcli_options(lp_ctx
, &smb_options
);
220 lpcfg_smbcli_session_options(lp_ctx
, &smb_session_options
);
222 printf("Connecting to \\\\%s\\%s as %s - instance %d\n",
223 servers
[i
].server_name
, servers
[i
].share_name
,
224 cli_credentials_get_username(servers
[i
].credentials
),
227 cli_credentials_set_workstation(servers
[i
].credentials
,
228 "gentest", CRED_SPECIFIED
);
231 status
= smb2_connect(NULL
, servers
[i
].server_name
,
232 lpcfg_smb_ports(lp_ctx
),
233 servers
[i
].share_name
,
234 lpcfg_resolve_context(lp_ctx
),
235 servers
[i
].credentials
,
236 &servers
[i
].smb2_tree
[j
],
238 lpcfg_socket_options(lp_ctx
),
239 lpcfg_gensec_settings(lp_ctx
, lp_ctx
)
242 status
= smbcli_tree_full_connection(NULL
,
243 &servers
[i
].smb_tree
[j
],
244 servers
[i
].server_name
,
245 lpcfg_smb_ports(lp_ctx
),
246 servers
[i
].share_name
, "A:",
247 lpcfg_socket_options(lp_ctx
),
248 servers
[i
].credentials
,
249 lpcfg_resolve_context(lp_ctx
), ev
,
251 &smb_session_options
,
252 lpcfg_gensec_settings(lp_ctx
, lp_ctx
));
254 if (!NT_STATUS_IS_OK(status
)) {
255 printf("Failed to connect to \\\\%s\\%s - %s\n",
256 servers
[i
].server_name
, servers
[i
].share_name
,
262 servers
[i
].smb2_tree
[j
]->session
->transport
->oplock
.handler
= oplock_handler_smb2
;
263 servers
[i
].smb2_tree
[j
]->session
->transport
->oplock
.private_data
= (void *)(uintptr_t)((i
<<8)|j
);
264 smb2_transport_idle_handler(servers
[i
].smb2_tree
[j
]->session
->transport
,
265 idle_func_smb2
, 50000, NULL
);
267 smbcli_oplock_handler(servers
[i
].smb_tree
[j
]->session
->transport
, oplock_handler_smb
,
268 (void *)(uintptr_t)((i
<<8)|j
));
269 smbcli_transport_idle_handler(servers
[i
].smb_tree
[j
]->session
->transport
, idle_func_smb
,
270 50000, (void *)(uintptr_t)((i
<<8)|j
));
279 work out the time skew between the servers - be conservative
281 static unsigned int time_skew(void)
287 struct smbXcli_conn
*c0
, *c1
;
289 c0
= servers
[0].smb2_tree
[0]->session
->transport
->conn
;
290 c1
= servers
[1].smb2_tree
[0]->session
->transport
->conn
;
292 nt0
= smbXcli_conn_server_system_time(c0
);
293 nt1
= smbXcli_conn_server_system_time(c1
);
295 nt0
= servers
[0].smb_tree
[0]->session
->transport
->negotiate
.server_time
;
296 nt1
= servers
[1].smb_tree
[0]->session
->transport
->negotiate
.server_time
;
298 /* Samba's NTTIME is unsigned, abs() won't work! */
308 static bool smb2_handle_equal(const struct smb2_handle
*h1
, const struct smb2_handle
*h2
)
310 return memcmp(h1
, h2
, sizeof(struct smb2_handle
)) == 0;
314 turn a server handle into a local handle
316 static unsigned int fnum_to_handle_smb2(int server
, int instance
, struct smb2_handle server_handle
)
319 for (i
=0;i
<options
.max_open_handles
;i
++) {
320 if (!open_handles
[i
].active
||
321 instance
!= open_handles
[i
].instance
) continue;
322 if (smb2_handle_equal(&open_handles
[i
].smb2_handle
[server
], &server_handle
)) {
326 printf("Invalid server handle in fnum_to_handle on server %d instance %d\n",
332 turn a server handle into a local handle
334 static unsigned int fnum_to_handle_smb(int server
, int instance
, uint16_t server_handle
)
337 for (i
=0;i
<options
.max_open_handles
;i
++) {
338 if (!open_handles
[i
].active
||
339 instance
!= open_handles
[i
].instance
) continue;
340 if (open_handles
[i
].smb_handle
[server
] == server_handle
) {
344 printf("Invalid server handle in fnum_to_handle on server %d instance %d\n",
350 add some newly opened handles
352 static void gen_add_handle_smb2(int instance
, const char *name
, struct smb2_handle handles
[NSERVERS
])
355 for (h
=0;h
<options
.max_open_handles
;h
++) {
356 if (!open_handles
[h
].active
) break;
358 if (h
== options
.max_open_handles
) {
359 /* we have to force close a random handle */
360 h
= random() % options
.max_open_handles
;
361 for (i
=0;i
<NSERVERS
;i
++) {
363 status
= smb2_util_close(servers
[i
].smb2_tree
[open_handles
[h
].instance
],
364 open_handles
[h
].smb2_handle
[i
]);
365 if (NT_STATUS_IS_ERR(status
)) {
366 printf("INTERNAL ERROR: Close failed when recovering handle! - %s\n",
370 printf("Recovered handle %d\n", h
);
373 for (i
=0;i
<NSERVERS
;i
++) {
374 open_handles
[h
].smb2_handle
[i
] = handles
[i
];
375 open_handles
[h
].instance
= instance
;
376 open_handles
[h
].active
= true;
377 open_handles
[h
].name
= name
;
381 printf("OPEN num_open_handles=%d h=%d (%s)\n",
382 num_open_handles
, h
, name
);
386 add some newly opened handles
388 static void gen_add_handle_smb(int instance
, const char *name
, uint16_t handles
[NSERVERS
])
391 for (h
=0;h
<options
.max_open_handles
;h
++) {
392 if (!open_handles
[h
].active
) break;
394 if (h
== options
.max_open_handles
) {
395 /* we have to force close a random handle */
396 h
= random() % options
.max_open_handles
;
397 for (i
=0;i
<NSERVERS
;i
++) {
399 status
= smbcli_close(servers
[i
].smb_tree
[open_handles
[h
].instance
],
400 open_handles
[h
].smb_handle
[i
]);
401 if (NT_STATUS_IS_ERR(status
)) {
402 printf("INTERNAL ERROR: Close failed when recovering handle! - %s\n",
406 printf("Recovered handle %d\n", h
);
409 for (i
=0;i
<NSERVERS
;i
++) {
410 open_handles
[h
].smb_handle
[i
] = handles
[i
];
411 open_handles
[h
].instance
= instance
;
412 open_handles
[h
].active
= true;
413 open_handles
[h
].name
= name
;
417 printf("OPEN num_open_handles=%d h=%d (%s)\n",
418 num_open_handles
, h
, name
);
423 remove a closed handle
425 static void gen_remove_handle_smb2(int instance
, struct smb2_handle handles
[NSERVERS
])
428 for (h
=0;h
<options
.max_open_handles
;h
++) {
429 if (instance
== open_handles
[h
].instance
&&
430 smb2_handle_equal(&open_handles
[h
].smb2_handle
[0], &handles
[0])) {
431 open_handles
[h
].active
= false;
433 printf("CLOSE num_open_handles=%d h=%d (%s)\n",
435 open_handles
[h
].name
);
439 printf("Removing invalid handle!?\n");
444 remove a closed handle
446 static void gen_remove_handle_smb(int instance
, uint16_t handles
[NSERVERS
])
449 for (h
=0;h
<options
.max_open_handles
;h
++) {
450 if (instance
== open_handles
[h
].instance
&&
451 open_handles
[h
].smb_handle
[0] == handles
[0]) {
452 open_handles
[h
].active
= false;
454 printf("CLOSE num_open_handles=%d h=%d (%s)\n",
456 open_handles
[h
].name
);
460 printf("Removing invalid handle!?\n");
465 return true with 'chance' probability as a percentage
467 static bool gen_chance(unsigned int chance
)
469 return ((random() % 100) <= chance
);
473 map an internal handle number to a server handle
475 static struct smb2_handle
gen_lookup_handle_smb2(int server
, uint16_t handle
)
477 if (handle
== BAD_HANDLE
) return bad_smb2_handle
;
478 return open_handles
[handle
].smb2_handle
[server
];
482 map an internal handle number to a server handle
484 static uint16_t gen_lookup_handle_smb(int server
, uint16_t handle
)
486 if (handle
== BAD_HANDLE
) return BAD_HANDLE
;
487 return open_handles
[handle
].smb_handle
[server
];
493 static uint16_t gen_fnum(int instance
)
498 if (gen_chance(20)) return BAD_HANDLE
;
500 while (num_open_handles
> 0 && count
++ < 10*options
.max_open_handles
) {
501 h
= random() % options
.max_open_handles
;
502 if (open_handles
[h
].active
&&
503 open_handles
[h
].instance
== instance
) {
511 return a file handle, but skewed so we don't close the last
512 couple of handles too readily
514 static uint16_t gen_fnum_close(int instance
)
516 if (num_open_handles
< 5) {
517 if (gen_chance(90)) return BAD_HANDLE
;
520 return gen_fnum(instance
);
524 generate an integer in a specified range
526 static int gen_int_range(uint64_t min
, uint64_t max
)
528 unsigned int r
= random();
529 return min
+ (r
% (1+max
-min
));
533 return a fnum for use as a root fid
534 be careful to call GEN_SET_FNUM() when you use this!
536 static uint16_t gen_root_fid(int instance
)
538 if (gen_chance(5)) return gen_fnum(instance
);
543 generate a file offset
545 static int gen_offset(void)
547 if (gen_chance(20)) return 0;
548 // if (gen_chance(5)) return gen_int_range(0, 0xFFFFFFFF);
549 return gen_int_range(0, 1024*1024);
555 static int gen_io_count(void)
557 if (gen_chance(20)) return 0;
558 // if (gen_chance(5)) return gen_int_range(0, 0xFFFFFFFF);
559 return gen_int_range(0, 4096);
565 static const char *gen_fname(void)
567 const char *names
[] = {"gentest\\gentest.dat",
572 "gentest\\foo4:teststream1",
573 "gentest\\foo4:teststream2",
575 "gentest\\foo5.exe:teststream3",
576 "gentest\\foo5.exe:teststream4",
579 "gentest\\blah\\blergh.txt",
580 "gentest\\blah\\blergh2",
581 "gentest\\blah\\blergh3.txt",
582 "gentest\\blah\\blergh4",
583 "gentest\\blah\\blergh5.txt",
584 "gentest\\blah\\blergh5",
587 "gentest\\a_very_long_name.bin",
593 i
= gen_int_range(0, ARRAY_SIZE(names
)-1);
594 } while (ignore_pattern(names
[i
]));
600 generate a filename with a higher chance of choosing an already
603 static const char *gen_fname_open(int instance
)
606 h
= gen_fnum(instance
);
607 if (h
== BAD_HANDLE
) {
610 return open_handles
[h
].name
;
614 generate a wildcard pattern
616 static const char *gen_pattern(void)
619 const char *names
[] = {"gentest\\*.dat",
622 "gentest\\blah\\*.*",
626 if (gen_chance(50)) return gen_fname();
629 i
= gen_int_range(0, ARRAY_SIZE(names
)-1);
630 } while (ignore_pattern(names
[i
]));
635 static uint32_t gen_bits_levels(int nlevels
, ...)
641 va_start(ap
, nlevels
);
642 for (i
=0;i
<nlevels
;i
++) {
643 pct
= va_arg(ap
, uint32_t);
644 mask
= va_arg(ap
, uint32_t);
645 if (pct
== 100 || gen_chance(pct
)) {
647 return mask
& random();
657 static uint32_t gen_bits_mask(unsigned int mask
)
659 unsigned int ret
= random();
664 generate a bitmask with high probability of the first mask
665 and low of the second
667 static uint32_t gen_bits_mask2(uint32_t mask1
, uint32_t mask2
)
669 if (!options
.valid
&& gen_chance(10)) return gen_bits_mask(mask2
);
670 return gen_bits_mask(mask1
);
674 generate reserved values
676 static uint64_t gen_reserved8(void)
678 if (options
.valid
) return 0;
679 return gen_bits_mask(0xFF);
682 static uint64_t gen_reserved16(void)
684 if (options
.valid
) return 0;
685 return gen_bits_mask(0xFFFF);
688 static uint64_t gen_reserved32(void)
690 if (options
.valid
) return 0;
691 return gen_bits_mask(0xFFFFFFFF);
694 static uint64_t gen_reserved64(void)
696 if (options
.valid
) return 0;
697 return gen_bits_mask(0xFFFFFFFF) | (((uint64_t)gen_bits_mask(0xFFFFFFFF))<<32);
705 static bool gen_bool(void)
707 return gen_bits_mask2(0x1, 0xFF);
711 generate ntrename flags
713 static uint16_t gen_rename_flags(void)
715 if (gen_chance(30)) return RENAME_FLAG_RENAME
;
716 if (gen_chance(30)) return RENAME_FLAG_HARD_LINK
;
717 if (gen_chance(30)) return RENAME_FLAG_COPY
;
718 return gen_bits_mask(0xFFFF);
724 static uint16_t gen_pid(void)
726 if (gen_chance(10)) return gen_bits_mask(0xFFFF);
731 return a set of lock flags
733 static uint16_t gen_lock_flags_smb2(void)
735 if (!options
.valid
&& gen_chance(5)) return gen_bits_mask(0xFFFF);
736 if (gen_chance(20)) return gen_bits_mask(0x1F);
737 if (gen_chance(50)) return SMB2_LOCK_FLAG_UNLOCK
;
738 return gen_bits_mask(SMB2_LOCK_FLAG_SHARED
|
739 SMB2_LOCK_FLAG_EXCLUSIVE
|
740 SMB2_LOCK_FLAG_FAIL_IMMEDIATELY
);
744 generate a lock count
746 static off_t
gen_lock_count(void)
748 return gen_int_range(0, 3);
752 generate a NT access mask
754 static uint32_t gen_access_mask(void)
757 if (gen_chance(70)) return SEC_FLAG_MAXIMUM_ALLOWED
;
758 if (gen_chance(70)) return SEC_FILE_ALL
;
759 ret
= gen_bits_mask(0xFFFFFFFF);
760 if (options
.valid
) ret
&= ~SEC_MASK_INVALID
;
765 return a lockingx lock mode
767 static uint16_t gen_lock_mode(void)
769 if (!options
.valid
&& gen_chance(5)) return gen_bits_mask(0xFFFF);
770 if (gen_chance(20)) return gen_bits_mask(0x1F);
771 return gen_bits_mask(LOCKING_ANDX_SHARED_LOCK
| LOCKING_ANDX_LARGE_FILES
);
775 generate a ntcreatex flags field
777 static uint32_t gen_ntcreatex_flags(void)
779 if (gen_chance(70)) return NTCREATEX_FLAGS_EXTENDED
;
780 return gen_bits_mask2(0x1F, 0xFFFFFFFF);
784 generate a ntcreatex create options bitfield
786 static uint32_t gen_create_options(void)
788 if (!options
.valid
&& gen_chance(20)) return gen_bits_mask(0xFFFFFFFF);
789 if (gen_chance(50)) return 0;
790 return gen_bits_mask(NTCREATEX_OPTIONS_DELETE_ON_CLOSE
| NTCREATEX_OPTIONS_DIRECTORY
);
794 generate a ntcreatex open disposition
796 static uint32_t gen_open_disp(void)
798 if (gen_chance(50)) return NTCREATEX_DISP_OPEN_IF
;
799 if (!options
.valid
&& gen_chance(10)) return gen_bits_mask(0xFFFFFFFF);
800 return gen_int_range(0, 5);
804 generate an openx open mode
806 static uint16_t gen_openx_mode(void)
808 if (!options
.valid
&& gen_chance(20)) return gen_bits_mask(0xFFFF);
809 if (gen_chance(20)) return gen_bits_mask(0xFF);
810 return OPENX_MODE_DENY_NONE
| gen_bits_mask(0x3);
814 generate an openx flags field
816 static uint16_t gen_openx_flags(void)
818 if (!options
.valid
&& gen_chance(20)) return gen_bits_mask(0xFFFF);
819 return gen_bits_mask(0x7);
823 generate an openx open function
825 static uint16_t gen_openx_func(void)
827 if (!options
.valid
&& gen_chance(20)) return gen_bits_mask(0xFFFF);
828 return gen_bits_mask(0x13);
832 generate a file attrib combination
834 static uint32_t gen_attrib(void)
837 if (gen_chance(20)) {
838 ret
= gen_bits_mask(0xFFFFFFFF);
839 if (options
.valid
) ret
&= FILE_ATTRIBUTE_ALL_MASK
;
842 return gen_bits_mask(FILE_ATTRIBUTE_NORMAL
| FILE_ATTRIBUTE_DIRECTORY
);
846 generate a unix timestamp
848 static time_t gen_timet(void)
850 if (gen_chance(30)) return 0;
851 return (time_t)random();
855 generate a milliseconds protocol timeout
857 static uint32_t gen_timeout(void)
859 if (gen_chance(98)) return 0;
860 return random() % 50;
866 static NTTIME
gen_nttime(void)
869 unix_to_nt_time(&ret
, gen_timet());
874 generate a timewarp value
876 static NTTIME
gen_timewarp(void)
878 NTTIME ret
= gen_nttime();
879 if (gen_chance(98)) ret
= 0;
884 generate a file allocation size
886 static unsigned int gen_alloc_size(void)
890 if (gen_chance(30)) return 0;
892 ret
= random() % 4*1024*1024;
893 /* give a high chance of a round number */
894 if (gen_chance(60)) {
895 ret
&= ~(1024*1024 - 1);
901 generate an ea_struct
903 static struct ea_struct
gen_ea_struct(void)
906 const char *names
[] = {"EAONE",
911 "AVERYLONGATTRIBUTENAME"};
912 const char *values
[] = {"VALUE1",
917 "ASOMEWHATLONGERATTRIBUTEVALUE"};
923 i
= gen_int_range(0, ARRAY_SIZE(names
)-1);
924 } while (ignore_pattern(names
[i
]));
926 ea
.name
.s
= names
[i
];
929 i
= gen_int_range(0, ARRAY_SIZE(values
)-1);
930 } while (ignore_pattern(values
[i
]));
932 ea
.value
= data_blob(values
[i
], strlen(values
[i
]));
934 if (gen_chance(10)) ea
.flags
= gen_bits_mask(0xFF);
941 generate an ea_struct
943 static struct smb_ea_list
gen_ea_list(void)
945 struct smb_ea_list eas
;
947 if (options
.no_eas
) {
951 eas
.num_eas
= gen_int_range(0, 3);
952 eas
.eas
= talloc_array(current_op
.mem_ctx
, struct ea_struct
, eas
.num_eas
);
953 for (i
=0;i
<eas
.num_eas
;i
++) {
954 eas
.eas
[i
] = gen_ea_struct();
959 /* generate a security descriptor */
960 static struct security_descriptor
*gen_sec_desc(void)
962 struct security_descriptor
*sd
;
963 if (options
.no_acls
|| gen_chance(90)) return NULL
;
965 sd
= security_descriptor_dacl_create(current_op
.mem_ctx
,
968 SEC_ACE_TYPE_ACCESS_ALLOWED
,
969 SEC_FILE_WRITE_DATA
| SEC_STD_WRITE_DAC
,
970 SEC_ACE_FLAG_OBJECT_INHERIT
,
972 SEC_ACE_TYPE_ACCESS_ALLOWED
,
973 SEC_FILE_ALL
| SEC_STD_ALL
,
980 static void oplock_handler_close_recv_smb(struct smbcli_request
*req
)
983 status
= smbcli_request_simple_recv(req
);
984 if (!NT_STATUS_IS_OK(status
)) {
985 printf("close failed in oplock_handler\n");
986 smb_panic("close failed in oplock_handler");
991 the oplock handler will either ack the break or close the file
993 static bool oplock_handler_smb(struct smbcli_transport
*transport
, uint16_t tid
, uint16_t fnum
, uint8_t level
, void *private_data
)
998 struct smbcli_tree
*tree
= NULL
;
999 struct smbcli_request
*req
;
1001 srandom(current_op
.seed
);
1002 do_close
= gen_chance(50);
1004 for (i
=0;i
<NSERVERS
;i
++) {
1005 for (j
=0;j
<NINSTANCES
;j
++) {
1006 if (transport
== servers
[i
].smb_tree
[j
]->session
->transport
&&
1007 tid
== servers
[i
].smb_tree
[j
]->tid
) {
1008 oplocks
[i
][j
].got_break
= true;
1009 oplocks
[i
][j
].smb_handle
= fnum
;
1010 oplocks
[i
][j
].handle
= fnum_to_handle_smb(i
, j
, fnum
);
1011 oplocks
[i
][j
].level
= level
;
1012 oplocks
[i
][j
].do_close
= do_close
;
1013 tree
= servers
[i
].smb_tree
[j
];
1019 printf("Oplock break not for one of our trees!?\n");
1024 printf("oplock ack fnum=%d\n", fnum
);
1025 return smbcli_oplock_ack(tree
, fnum
, level
);
1028 printf("oplock close fnum=%d\n", fnum
);
1030 io
.close
.level
= RAW_CLOSE_CLOSE
;
1031 io
.close
.in
.file
.fnum
= fnum
;
1032 io
.close
.in
.write_time
= 0;
1033 req
= smb_raw_close_send(tree
, &io
);
1036 printf("WARNING: close failed in oplock_handler_close\n");
1040 req
->async
.fn
= oplock_handler_close_recv_smb
;
1041 req
->async
.private_data
= NULL
;
1048 the idle function tries to cope with getting an oplock break on a connection, and
1049 an operation on another connection blocking until that break is acked
1050 we check for operations on all transports in the idle function
1052 static void idle_func_smb(struct smbcli_transport
*transport
, void *private_data
)
1055 for (i
=0;i
<NSERVERS
;i
++) {
1056 for (j
=0;j
<NINSTANCES
;j
++) {
1057 if (servers
[i
].smb_tree
[j
] &&
1058 transport
!= servers
[i
].smb_tree
[j
]->session
->transport
) {
1059 smbcli_transport_process(servers
[i
].smb_tree
[j
]->session
->transport
);
1066 static void oplock_handler_close_recv_smb2(struct smb2_request
*req
)
1069 struct smb2_close io
;
1070 status
= smb2_close_recv(req
, &io
);
1071 if (!NT_STATUS_IS_OK(status
)) {
1072 printf("close failed in oplock_handler\n");
1073 smb_panic("close failed in oplock_handler");
1077 static void oplock_handler_ack_callback_smb2(struct smb2_request
*req
)
1080 struct smb2_break br
;
1082 status
= smb2_break_recv(req
, &br
);
1083 if (!NT_STATUS_IS_OK(status
)) {
1084 printf("oplock break ack failed in oplock_handler\n");
1085 smb_panic("oplock break ack failed in oplock_handler");
1089 static bool send_oplock_ack_smb2(struct smb2_tree
*tree
, struct smb2_handle handle
,
1092 struct smb2_break br
;
1093 struct smb2_request
*req
;
1096 br
.in
.file
.handle
= handle
;
1097 br
.in
.oplock_level
= level
;
1098 br
.in
.reserved
= gen_reserved8();
1099 br
.in
.reserved2
= gen_reserved32();
1101 req
= smb2_break_send(tree
, &br
);
1102 if (req
== NULL
) return false;
1103 req
->async
.fn
= oplock_handler_ack_callback_smb2
;
1104 req
->async
.private_data
= NULL
;
1109 the oplock handler will either ack the break or close the file
1111 static bool oplock_handler_smb2(struct smb2_transport
*transport
, const struct smb2_handle
*handle
,
1112 uint8_t level
, void *private_data
)
1114 struct smb2_close io
;
1117 struct smb2_tree
*tree
= NULL
;
1118 struct smb2_request
*req
;
1120 srandom(current_op
.seed
);
1121 do_close
= gen_chance(50);
1123 i
= ((uintptr_t)private_data
) >> 8;
1124 j
= ((uintptr_t)private_data
) & 0xFF;
1126 if (i
>= NSERVERS
|| j
>= NINSTANCES
) {
1127 printf("Bad private_data in oplock_handler\n");
1131 oplocks
[i
][j
].got_break
= true;
1132 oplocks
[i
][j
].smb2_handle
= *handle
;
1133 oplocks
[i
][j
].handle
= fnum_to_handle_smb2(i
, j
, *handle
);
1134 oplocks
[i
][j
].level
= level
;
1135 oplocks
[i
][j
].do_close
= do_close
;
1136 tree
= talloc_get_type(servers
[i
].smb2_tree
[j
], struct smb2_tree
);
1139 printf("Oplock break not for one of our trees!?\n");
1144 printf("oplock ack handle=%d\n", oplocks
[i
][j
].handle
);
1145 return send_oplock_ack_smb2(tree
, *handle
, level
);
1148 printf("oplock close fnum=%d\n", oplocks
[i
][j
].handle
);
1151 io
.in
.file
.handle
= *handle
;
1153 req
= smb2_close_send(tree
, &io
);
1156 printf("WARNING: close failed in oplock_handler_close\n");
1160 req
->async
.fn
= oplock_handler_close_recv_smb2
;
1161 req
->async
.private_data
= NULL
;
1168 the idle function tries to cope with getting an oplock break on a connection, and
1169 an operation on another connection blocking until that break is acked
1170 we check for operations on all transports in the idle function
1172 static void idle_func_smb2(struct smb2_transport
*transport
, void *private_data
)
1175 for (i
=0;i
<NSERVERS
;i
++) {
1176 for (j
=0;j
<NINSTANCES
;j
++) {
1177 if (servers
[i
].smb2_tree
[j
] &&
1178 transport
!= servers
[i
].smb2_tree
[j
]->session
->transport
) {
1179 // smb2_transport_process(servers[i].smb2_tree[j]->session->transport);
1188 compare NTSTATUS, using checking ignored patterns
1190 static bool compare_status(NTSTATUS status1
, NTSTATUS status2
)
1194 if (NT_STATUS_EQUAL(status1
, status2
)) return true;
1196 /* one code being an error and the other OK is always an error */
1197 if (NT_STATUS_IS_OK(status1
) || NT_STATUS_IS_OK(status2
)) {
1198 current_op
.mismatch
= nt_errstr(status1
);
1202 /* if we are ignoring one of the status codes then consider this a match */
1203 if (ignore_pattern(nt_errstr(status1
)) ||
1204 ignore_pattern(nt_errstr(status2
))) {
1208 /* also support ignore patterns of the form NT_STATUS_XX:NT_STATUS_YY
1209 meaning that the first server returns NT_STATUS_XX and the 2nd
1210 returns NT_STATUS_YY */
1211 s
= talloc_asprintf(current_op
.mem_ctx
, "%s:%s",
1213 nt_errstr(status2
));
1214 if (ignore_pattern(s
)) {
1218 current_op
.mismatch
= nt_errstr(status1
);
1223 check for pending packets on all connections
1225 static void check_pending(void)
1231 for (j
=0;j
<NINSTANCES
;j
++) {
1232 for (i
=0;i
<NSERVERS
;i
++) {
1233 // smb2_transport_process(servers[i].smb2_tree[j]->session->transport);
1239 check that the same oplock breaks have been received by all instances
1241 static bool check_oplocks(const char *call
)
1246 if (!options
.use_oplocks
|| options
.smb2
) {
1247 /* no smb2 oplocks in gentest yet */
1254 for (j
=0;j
<NINSTANCES
;j
++) {
1255 for (i
=1;i
<NSERVERS
;i
++) {
1256 if (oplocks
[0][j
].got_break
!= oplocks
[i
][j
].got_break
||
1257 oplocks
[0][j
].handle
!= oplocks
[i
][j
].handle
||
1258 oplocks
[0][j
].level
!= oplocks
[i
][j
].level
) {
1259 if (tries
++ < 10) goto again
;
1260 printf("oplock break inconsistent - %d/%d/%d vs %d/%d/%d\n",
1261 oplocks
[0][j
].got_break
,
1262 oplocks
[0][j
].handle
,
1263 oplocks
[0][j
].level
,
1264 oplocks
[i
][j
].got_break
,
1265 oplocks
[i
][j
].handle
,
1266 oplocks
[i
][j
].level
);
1267 current_op
.mismatch
= "oplock break";
1273 /* if we got a break and closed then remove the handle */
1274 for (j
=0;j
<NINSTANCES
;j
++) {
1275 if (oplocks
[0][j
].got_break
&&
1276 oplocks
[0][j
].do_close
) {
1277 uint16_t fnums
[NSERVERS
];
1278 for (i
=0;i
<NSERVERS
;i
++) {
1279 fnums
[i
] = oplocks
[i
][j
].smb_handle
;
1281 gen_remove_handle_smb(j
, fnums
);
1290 check that the same change notify info has been received by all instances
1292 static bool check_notifies(const char *call
)
1298 /* no smb2 notifies in gentest yet */
1305 for (j
=0;j
<NINSTANCES
;j
++) {
1306 for (i
=1;i
<NSERVERS
;i
++) {
1308 union smb_notify not1
, not2
;
1310 if (notifies
[0][j
].notify_count
!= notifies
[i
][j
].notify_count
) {
1311 if (tries
++ < 10) goto again
;
1312 printf("Notify count inconsistent %d %d\n",
1313 notifies
[0][j
].notify_count
,
1314 notifies
[i
][j
].notify_count
);
1315 current_op
.mismatch
= "notify count";
1319 if (notifies
[0][j
].notify_count
== 0) continue;
1321 if (!NT_STATUS_EQUAL(notifies
[0][j
].status
,
1322 notifies
[i
][j
].status
)) {
1323 printf("Notify status mismatch - %s - %s\n",
1324 nt_errstr(notifies
[0][j
].status
),
1325 nt_errstr(notifies
[i
][j
].status
));
1326 current_op
.mismatch
= "Notify status";
1330 if (!NT_STATUS_IS_OK(notifies
[0][j
].status
)) {
1334 not1
= notifies
[0][j
].notify
;
1335 not2
= notifies
[i
][j
].notify
;
1337 for (n
=0;n
<not1
.nttrans
.out
.num_changes
;n
++) {
1338 if (not1
.nttrans
.out
.changes
[n
].action
!=
1339 not2
.nttrans
.out
.changes
[n
].action
) {
1340 printf("Notify action %d inconsistent %d %d\n", n
,
1341 not1
.nttrans
.out
.changes
[n
].action
,
1342 not2
.nttrans
.out
.changes
[n
].action
);
1343 current_op
.mismatch
= "notify action";
1346 if (strcmp(not1
.nttrans
.out
.changes
[n
].name
.s
,
1347 not2
.nttrans
.out
.changes
[n
].name
.s
)) {
1348 printf("Notify name %d inconsistent %s %s\n", n
,
1349 not1
.nttrans
.out
.changes
[n
].name
.s
,
1350 not2
.nttrans
.out
.changes
[n
].name
.s
);
1351 current_op
.mismatch
= "notify name";
1354 if (not1
.nttrans
.out
.changes
[n
].name
.private_length
!=
1355 not2
.nttrans
.out
.changes
[n
].name
.private_length
) {
1356 printf("Notify name length %d inconsistent %d %d\n", n
,
1357 not1
.nttrans
.out
.changes
[n
].name
.private_length
,
1358 not2
.nttrans
.out
.changes
[n
].name
.private_length
);
1359 current_op
.mismatch
= "notify name length";
1366 ZERO_STRUCT(notifies
);
1371 #define GEN_COPY_PARM do { \
1373 for (i=1;i<NSERVERS;i++) { \
1374 parm[i] = parm[0]; \
1378 #define GEN_CALL(call, treetype, treefield) do { \
1380 ZERO_STRUCT(oplocks); \
1381 ZERO_STRUCT(notifies); \
1382 for (i=0;i<NSERVERS;i++) { \
1383 struct treetype *tree = servers[i].treefield[instance]; \
1386 current_op.status = status[0]; \
1387 for (i=1;i<NSERVERS;i++) { \
1388 if (!compare_status(status[0], status[1])) { \
1389 printf("status different in %s - %s %s\n", #call, \
1390 nt_errstr(status[0]), nt_errstr(status[i])); \
1391 current_op.mismatch = nt_errstr(status[0]); \
1395 if (!check_oplocks(#call)) return false; \
1396 if (!check_notifies(#call)) return false; \
1397 if (!NT_STATUS_IS_OK(status[0])) { \
1402 #define GEN_CALL_SMB(call) GEN_CALL(call, smbcli_tree, smb_tree)
1403 #define GEN_CALL_SMB2(call) GEN_CALL(call, smb2_tree, smb2_tree)
1405 #define ADD_HANDLE_SMB2(name, field) do { \
1406 struct smb2_handle handles[NSERVERS]; \
1408 for (i=0;i<NSERVERS;i++) { \
1409 handles[i] = parm[i].field; \
1411 gen_add_handle_smb2(instance, name, handles); \
1414 #define REMOVE_HANDLE_SMB2(field) do { \
1415 struct smb2_handle handles[NSERVERS]; \
1417 for (i=0;i<NSERVERS;i++) { \
1418 handles[i] = parm[i].field; \
1420 gen_remove_handle_smb2(instance, handles); \
1423 #define ADD_HANDLE_SMB(name, field) do { \
1424 uint16_t handles[NSERVERS]; \
1426 for (i=0;i<NSERVERS;i++) { \
1427 handles[i] = parm[i].field; \
1429 gen_add_handle_smb(instance, name, handles); \
1432 #define REMOVE_HANDLE_SMB(field) do { \
1433 uint16_t handles[NSERVERS]; \
1435 for (i=0;i<NSERVERS;i++) { \
1436 handles[i] = parm[i].field; \
1438 gen_remove_handle_smb(instance, handles); \
1441 #define GEN_SET_FNUM_SMB2(field) do { \
1443 for (i=0;i<NSERVERS;i++) { \
1444 parm[i].field = gen_lookup_handle_smb2(i, parm[i].field.data[0]); \
1448 #define GEN_SET_FNUM_SMB(field) do { \
1450 for (i=0;i<NSERVERS;i++) { \
1451 parm[i].field = gen_lookup_handle_smb(i, parm[i].field); \
1455 #define CHECK_EQUAL(field) do { \
1456 if (parm[0].field != parm[1].field && !ignore_pattern(#field)) { \
1457 current_op.mismatch = #field; \
1458 printf("Mismatch in %s - 0x%llx 0x%llx\n", #field, \
1459 (unsigned long long)parm[0].field, (unsigned long long)parm[1].field); \
1464 #define CHECK_SECDESC(field) do { \
1465 if (!security_acl_equal(parm[0].field->dacl, parm[1].field->dacl) && !ignore_pattern(#field)) { \
1466 current_op.mismatch = #field; \
1467 printf("Mismatch in %s\n", #field); \
1472 #define CHECK_ATTRIB(field) do { \
1473 if (!options.mask_indexing) { \
1474 CHECK_EQUAL(field); \
1475 } else if ((~FILE_ATTRIBUTE_NONINDEXED & parm[0].field) != (~FILE_ATTRIBUTE_NONINDEXED & parm[1].field) && !ignore_pattern(#field)) { \
1476 current_op.mismatch = #field; \
1477 printf("Mismatch in %s - 0x%x 0x%x\n", #field, \
1478 (int)parm[0].field, (int)parm[1].field); \
1483 #define CHECK_WSTR_EQUAL(field) do { \
1484 if ((!parm[0].field.s && parm[1].field.s) || (parm[0].field.s && !parm[1].field.s)) { \
1485 current_op.mismatch = #field; \
1486 printf("%s is NULL!\n", #field); \
1489 if (parm[0].field.s && strcmp(parm[0].field.s, parm[1].field.s) != 0 && !ignore_pattern(#field)) { \
1490 current_op.mismatch = #field; \
1491 printf("Mismatch in %s - %s %s\n", #field, \
1492 parm[0].field.s, parm[1].field.s); \
1495 CHECK_EQUAL(field.private_length); \
1498 #define CHECK_BLOB_EQUAL(field) do { \
1499 if (((parm[0].field.data == NULL && parm[1].field.data != NULL) || \
1500 (parm[1].field.data == NULL && parm[0].field.data != NULL) || \
1501 (memcmp(parm[0].field.data, parm[1].field.data, parm[0].field.length) != 0)) && !ignore_pattern(#field)) { \
1502 current_op.mismatch = #field; \
1503 printf("Mismatch in %s\n", #field); \
1506 CHECK_EQUAL(field.length); \
1509 #define CHECK_TIMES_EQUAL(field) do { \
1510 if (labs(parm[0].field - parm[1].field) > time_skew() && \
1511 !ignore_pattern(#field)) { \
1512 current_op.mismatch = #field; \
1513 printf("Mismatch in %s - 0x%x 0x%x\n", #field, \
1514 (int)parm[0].field, (int)parm[1].field); \
1519 #define CHECK_NTTIMES_EQUAL(field) do { \
1520 if (labs(nt_time_to_unix(parm[0].field) - \
1521 nt_time_to_unix(parm[1].field)) > time_skew() && \
1522 !ignore_pattern(#field)) { \
1523 current_op.mismatch = #field; \
1524 printf("Mismatch in %s - 0x%x 0x%x\n", #field, \
1525 (int)nt_time_to_unix(parm[0].field), \
1526 (int)nt_time_to_unix(parm[1].field)); \
1533 compare returned fileinfo structures
1535 static bool cmp_fileinfo(int instance
,
1536 union smb_fileinfo parm
[NSERVERS
],
1537 NTSTATUS status
[NSERVERS
])
1540 enum smb_fileinfo_level level
= parm
[0].generic
.level
;
1542 if (level
== RAW_FILEINFO_ALL_INFORMATION
&&
1544 level
= RAW_FILEINFO_SMB2_ALL_INFORMATION
;
1548 case RAW_FILEINFO_GENERIC
:
1551 case RAW_FILEINFO_GETATTR
:
1552 CHECK_ATTRIB(getattr
.out
.attrib
);
1553 CHECK_EQUAL(getattr
.out
.size
);
1554 CHECK_TIMES_EQUAL(getattr
.out
.write_time
);
1557 case RAW_FILEINFO_GETATTRE
:
1558 CHECK_TIMES_EQUAL(getattre
.out
.create_time
);
1559 CHECK_TIMES_EQUAL(getattre
.out
.access_time
);
1560 CHECK_TIMES_EQUAL(getattre
.out
.write_time
);
1561 CHECK_EQUAL(getattre
.out
.size
);
1562 CHECK_EQUAL(getattre
.out
.alloc_size
);
1563 CHECK_ATTRIB(getattre
.out
.attrib
);
1566 case RAW_FILEINFO_STANDARD
:
1567 CHECK_TIMES_EQUAL(standard
.out
.create_time
);
1568 CHECK_TIMES_EQUAL(standard
.out
.access_time
);
1569 CHECK_TIMES_EQUAL(standard
.out
.write_time
);
1570 CHECK_EQUAL(standard
.out
.size
);
1571 CHECK_EQUAL(standard
.out
.alloc_size
);
1572 CHECK_ATTRIB(standard
.out
.attrib
);
1575 case RAW_FILEINFO_EA_SIZE
:
1576 CHECK_TIMES_EQUAL(ea_size
.out
.create_time
);
1577 CHECK_TIMES_EQUAL(ea_size
.out
.access_time
);
1578 CHECK_TIMES_EQUAL(ea_size
.out
.write_time
);
1579 CHECK_EQUAL(ea_size
.out
.size
);
1580 CHECK_EQUAL(ea_size
.out
.alloc_size
);
1581 CHECK_ATTRIB(ea_size
.out
.attrib
);
1582 CHECK_EQUAL(ea_size
.out
.ea_size
);
1585 case RAW_FILEINFO_ALL_EAS
:
1586 CHECK_EQUAL(all_eas
.out
.num_eas
);
1587 for (i
=0;i
<parm
[0].all_eas
.out
.num_eas
;i
++) {
1588 CHECK_EQUAL(all_eas
.out
.eas
[i
].flags
);
1589 CHECK_WSTR_EQUAL(all_eas
.out
.eas
[i
].name
);
1590 CHECK_BLOB_EQUAL(all_eas
.out
.eas
[i
].value
);
1594 case RAW_FILEINFO_IS_NAME_VALID
:
1597 case RAW_FILEINFO_BASIC_INFO
:
1598 case RAW_FILEINFO_BASIC_INFORMATION
:
1599 CHECK_NTTIMES_EQUAL(basic_info
.out
.create_time
);
1600 CHECK_NTTIMES_EQUAL(basic_info
.out
.access_time
);
1601 CHECK_NTTIMES_EQUAL(basic_info
.out
.write_time
);
1602 CHECK_NTTIMES_EQUAL(basic_info
.out
.change_time
);
1603 CHECK_ATTRIB(basic_info
.out
.attrib
);
1606 case RAW_FILEINFO_STANDARD_INFO
:
1607 case RAW_FILEINFO_STANDARD_INFORMATION
:
1608 CHECK_EQUAL(standard_info
.out
.alloc_size
);
1609 CHECK_EQUAL(standard_info
.out
.size
);
1610 CHECK_EQUAL(standard_info
.out
.nlink
);
1611 CHECK_EQUAL(standard_info
.out
.delete_pending
);
1612 CHECK_EQUAL(standard_info
.out
.directory
);
1615 case RAW_FILEINFO_EA_INFO
:
1616 case RAW_FILEINFO_EA_INFORMATION
:
1617 CHECK_EQUAL(ea_info
.out
.ea_size
);
1620 case RAW_FILEINFO_NAME_INFO
:
1621 case RAW_FILEINFO_NAME_INFORMATION
:
1622 CHECK_WSTR_EQUAL(name_info
.out
.fname
);
1625 case RAW_FILEINFO_ALL_INFO
:
1626 case RAW_FILEINFO_ALL_INFORMATION
:
1627 CHECK_NTTIMES_EQUAL(all_info
.out
.create_time
);
1628 CHECK_NTTIMES_EQUAL(all_info
.out
.access_time
);
1629 CHECK_NTTIMES_EQUAL(all_info
.out
.write_time
);
1630 CHECK_NTTIMES_EQUAL(all_info
.out
.change_time
);
1631 CHECK_ATTRIB(all_info
.out
.attrib
);
1632 CHECK_EQUAL(all_info
.out
.alloc_size
);
1633 CHECK_EQUAL(all_info
.out
.size
);
1634 CHECK_EQUAL(all_info
.out
.nlink
);
1635 CHECK_EQUAL(all_info
.out
.delete_pending
);
1636 CHECK_EQUAL(all_info
.out
.directory
);
1637 CHECK_EQUAL(all_info
.out
.ea_size
);
1638 CHECK_WSTR_EQUAL(all_info
.out
.fname
);
1641 case RAW_FILEINFO_ALT_NAME_INFO
:
1642 case RAW_FILEINFO_ALT_NAME_INFORMATION
:
1643 case RAW_FILEINFO_SMB2_ALT_NAME_INFORMATION
:
1644 CHECK_WSTR_EQUAL(alt_name_info
.out
.fname
);
1647 case RAW_FILEINFO_STREAM_INFO
:
1648 case RAW_FILEINFO_STREAM_INFORMATION
:
1649 CHECK_EQUAL(stream_info
.out
.num_streams
);
1650 for (i
=0;i
<parm
[0].stream_info
.out
.num_streams
;i
++) {
1651 CHECK_EQUAL(stream_info
.out
.streams
[i
].size
);
1652 CHECK_EQUAL(stream_info
.out
.streams
[i
].alloc_size
);
1653 CHECK_WSTR_EQUAL(stream_info
.out
.streams
[i
].stream_name
);
1657 case RAW_FILEINFO_COMPRESSION_INFO
:
1658 case RAW_FILEINFO_COMPRESSION_INFORMATION
:
1659 CHECK_EQUAL(compression_info
.out
.compressed_size
);
1660 CHECK_EQUAL(compression_info
.out
.format
);
1661 CHECK_EQUAL(compression_info
.out
.unit_shift
);
1662 CHECK_EQUAL(compression_info
.out
.chunk_shift
);
1663 CHECK_EQUAL(compression_info
.out
.cluster_shift
);
1666 case RAW_FILEINFO_INTERNAL_INFORMATION
:
1667 CHECK_EQUAL(internal_information
.out
.file_id
);
1670 case RAW_FILEINFO_ACCESS_INFORMATION
:
1671 CHECK_EQUAL(access_information
.out
.access_flags
);
1674 case RAW_FILEINFO_POSITION_INFORMATION
:
1675 CHECK_EQUAL(position_information
.out
.position
);
1678 case RAW_FILEINFO_MODE_INFORMATION
:
1679 CHECK_EQUAL(mode_information
.out
.mode
);
1682 case RAW_FILEINFO_ALIGNMENT_INFORMATION
:
1683 CHECK_EQUAL(alignment_information
.out
.alignment_requirement
);
1686 case RAW_FILEINFO_NETWORK_OPEN_INFORMATION
:
1687 CHECK_NTTIMES_EQUAL(network_open_information
.out
.create_time
);
1688 CHECK_NTTIMES_EQUAL(network_open_information
.out
.access_time
);
1689 CHECK_NTTIMES_EQUAL(network_open_information
.out
.write_time
);
1690 CHECK_NTTIMES_EQUAL(network_open_information
.out
.change_time
);
1691 CHECK_EQUAL(network_open_information
.out
.alloc_size
);
1692 CHECK_EQUAL(network_open_information
.out
.size
);
1693 CHECK_ATTRIB(network_open_information
.out
.attrib
);
1696 case RAW_FILEINFO_ATTRIBUTE_TAG_INFORMATION
:
1697 CHECK_ATTRIB(attribute_tag_information
.out
.attrib
);
1698 CHECK_EQUAL(attribute_tag_information
.out
.reparse_tag
);
1701 case RAW_FILEINFO_NORMALIZED_NAME_INFORMATION
:
1702 CHECK_WSTR_EQUAL(normalized_name_info
.out
.fname
);
1705 case RAW_FILEINFO_SMB2_ALL_INFORMATION
:
1706 CHECK_NTTIMES_EQUAL(all_info2
.out
.create_time
);
1707 CHECK_NTTIMES_EQUAL(all_info2
.out
.access_time
);
1708 CHECK_NTTIMES_EQUAL(all_info2
.out
.write_time
);
1709 CHECK_NTTIMES_EQUAL(all_info2
.out
.change_time
);
1710 CHECK_ATTRIB(all_info2
.out
.attrib
);
1711 CHECK_EQUAL(all_info2
.out
.unknown1
);
1712 CHECK_EQUAL(all_info2
.out
.alloc_size
);
1713 CHECK_EQUAL(all_info2
.out
.size
);
1714 CHECK_EQUAL(all_info2
.out
.nlink
);
1715 CHECK_EQUAL(all_info2
.out
.delete_pending
);
1716 CHECK_EQUAL(all_info2
.out
.directory
);
1717 CHECK_EQUAL(all_info2
.out
.file_id
);
1718 CHECK_EQUAL(all_info2
.out
.ea_size
);
1719 CHECK_EQUAL(all_info2
.out
.access_mask
);
1720 CHECK_EQUAL(all_info2
.out
.position
);
1721 CHECK_EQUAL(all_info2
.out
.mode
);
1722 CHECK_EQUAL(all_info2
.out
.alignment_requirement
);
1723 CHECK_WSTR_EQUAL(all_info2
.out
.fname
);
1726 case RAW_FILEINFO_SMB2_ALL_EAS
:
1727 CHECK_EQUAL(all_eas
.out
.num_eas
);
1728 for (i
=0;i
<parm
[0].all_eas
.out
.num_eas
;i
++) {
1729 CHECK_EQUAL(all_eas
.out
.eas
[i
].flags
);
1730 CHECK_WSTR_EQUAL(all_eas
.out
.eas
[i
].name
);
1731 CHECK_BLOB_EQUAL(all_eas
.out
.eas
[i
].value
);
1735 case RAW_FILEINFO_SEC_DESC
:
1736 CHECK_SECDESC(query_secdesc
.out
.sd
);
1739 /* Unhandled levels */
1740 case RAW_FILEINFO_EA_LIST
:
1741 case RAW_FILEINFO_UNIX_BASIC
:
1742 case RAW_FILEINFO_UNIX_LINK
:
1743 case RAW_FILEINFO_UNIX_INFO2
:
1753 generate openx operations
1755 static bool handler_smb_openx(int instance
)
1757 union smb_open parm
[NSERVERS
];
1758 NTSTATUS status
[NSERVERS
];
1760 parm
[0].openx
.level
= RAW_OPEN_OPENX
;
1761 parm
[0].openx
.in
.flags
= gen_openx_flags();
1762 parm
[0].openx
.in
.open_mode
= gen_openx_mode();
1763 parm
[0].openx
.in
.search_attrs
= gen_attrib();
1764 parm
[0].openx
.in
.file_attrs
= gen_attrib();
1765 parm
[0].openx
.in
.write_time
= gen_timet();
1766 parm
[0].openx
.in
.open_func
= gen_openx_func();
1767 parm
[0].openx
.in
.size
= gen_io_count();
1768 parm
[0].openx
.in
.timeout
= gen_timeout();
1769 parm
[0].openx
.in
.fname
= gen_fname_open(instance
);
1771 if (!options
.use_oplocks
) {
1772 /* mask out oplocks */
1773 parm
[0].openx
.in
.flags
&= ~(OPENX_FLAGS_REQUEST_OPLOCK
|
1774 OPENX_FLAGS_REQUEST_BATCH_OPLOCK
);
1778 GEN_CALL_SMB(smb_raw_open(tree
, current_op
.mem_ctx
, &parm
[i
]));
1780 CHECK_ATTRIB(openx
.out
.attrib
);
1781 CHECK_EQUAL(openx
.out
.size
);
1782 CHECK_EQUAL(openx
.out
.access
);
1783 CHECK_EQUAL(openx
.out
.ftype
);
1784 CHECK_EQUAL(openx
.out
.devstate
);
1785 CHECK_EQUAL(openx
.out
.action
);
1786 CHECK_EQUAL(openx
.out
.access_mask
);
1787 CHECK_EQUAL(openx
.out
.unknown
);
1788 CHECK_TIMES_EQUAL(openx
.out
.write_time
);
1790 /* open creates a new file handle */
1791 ADD_HANDLE_SMB(parm
[0].openx
.in
.fname
, openx
.out
.file
.fnum
);
1798 generate open operations
1800 static bool handler_smb_open(int instance
)
1802 union smb_open parm
[NSERVERS
];
1803 NTSTATUS status
[NSERVERS
];
1805 parm
[0].openold
.level
= RAW_OPEN_OPEN
;
1806 parm
[0].openold
.in
.open_mode
= gen_bits_mask2(0xF, 0xFFFF);
1807 parm
[0].openold
.in
.search_attrs
= gen_attrib();
1808 parm
[0].openold
.in
.fname
= gen_fname_open(instance
);
1810 if (!options
.use_oplocks
) {
1811 /* mask out oplocks */
1812 parm
[0].openold
.in
.open_mode
&= ~(OPENX_FLAGS_REQUEST_OPLOCK
|
1813 OPENX_FLAGS_REQUEST_BATCH_OPLOCK
);
1817 GEN_CALL_SMB(smb_raw_open(tree
, current_op
.mem_ctx
, &parm
[i
]));
1819 CHECK_ATTRIB(openold
.out
.attrib
);
1820 CHECK_TIMES_EQUAL(openold
.out
.write_time
);
1821 CHECK_EQUAL(openold
.out
.size
);
1822 CHECK_EQUAL(openold
.out
.rmode
);
1824 /* open creates a new file handle */
1825 ADD_HANDLE_SMB(parm
[0].openold
.in
.fname
, openold
.out
.file
.fnum
);
1832 generate ntcreatex operations
1834 static bool handler_smb_ntcreatex(int instance
)
1836 union smb_open parm
[NSERVERS
];
1837 NTSTATUS status
[NSERVERS
];
1839 parm
[0].ntcreatex
.level
= RAW_OPEN_NTCREATEX
;
1840 parm
[0].ntcreatex
.in
.flags
= gen_ntcreatex_flags();
1841 parm
[0].ntcreatex
.in
.root_fid
.fnum
= gen_root_fid(instance
);
1842 parm
[0].ntcreatex
.in
.access_mask
= gen_access_mask();
1843 parm
[0].ntcreatex
.in
.alloc_size
= gen_alloc_size();
1844 parm
[0].ntcreatex
.in
.file_attr
= gen_attrib();
1845 parm
[0].ntcreatex
.in
.share_access
= gen_bits_mask2(0x7, 0xFFFFFFFF);
1846 parm
[0].ntcreatex
.in
.open_disposition
= gen_open_disp();
1847 parm
[0].ntcreatex
.in
.create_options
= gen_create_options();
1848 parm
[0].ntcreatex
.in
.impersonation
= gen_bits_mask2(0, 0xFFFFFFFF);
1849 parm
[0].ntcreatex
.in
.security_flags
= gen_bits_mask2(0, 0xFF);
1850 parm
[0].ntcreatex
.in
.fname
= gen_fname_open(instance
);
1852 if (!options
.use_oplocks
) {
1853 /* mask out oplocks */
1854 parm
[0].ntcreatex
.in
.flags
&= ~(NTCREATEX_FLAGS_REQUEST_OPLOCK
|
1855 NTCREATEX_FLAGS_REQUEST_BATCH_OPLOCK
);
1859 if (parm
[0].ntcreatex
.in
.root_fid
.fnum
!= 0) {
1860 GEN_SET_FNUM_SMB(ntcreatex
.in
.root_fid
.fnum
);
1862 GEN_CALL_SMB(smb_raw_open(tree
, current_op
.mem_ctx
, &parm
[i
]));
1864 CHECK_EQUAL(ntcreatex
.out
.oplock_level
);
1865 CHECK_EQUAL(ntcreatex
.out
.create_action
);
1866 CHECK_NTTIMES_EQUAL(ntcreatex
.out
.create_time
);
1867 CHECK_NTTIMES_EQUAL(ntcreatex
.out
.access_time
);
1868 CHECK_NTTIMES_EQUAL(ntcreatex
.out
.write_time
);
1869 CHECK_NTTIMES_EQUAL(ntcreatex
.out
.change_time
);
1870 CHECK_ATTRIB(ntcreatex
.out
.attrib
);
1871 CHECK_EQUAL(ntcreatex
.out
.alloc_size
);
1872 CHECK_EQUAL(ntcreatex
.out
.size
);
1873 CHECK_EQUAL(ntcreatex
.out
.file_type
);
1874 CHECK_EQUAL(ntcreatex
.out
.ipc_state
);
1875 CHECK_EQUAL(ntcreatex
.out
.is_directory
);
1877 /* ntcreatex creates a new file handle */
1878 ADD_HANDLE_SMB(parm
[0].ntcreatex
.in
.fname
, ntcreatex
.out
.file
.fnum
);
1884 generate close operations
1886 static bool handler_smb_close(int instance
)
1888 union smb_close parm
[NSERVERS
];
1889 NTSTATUS status
[NSERVERS
];
1891 parm
[0].close
.level
= RAW_CLOSE_CLOSE
;
1892 parm
[0].close
.in
.file
.fnum
= gen_fnum_close(instance
);
1893 parm
[0].close
.in
.write_time
= gen_timet();
1896 GEN_SET_FNUM_SMB(close
.in
.file
.fnum
);
1897 GEN_CALL_SMB(smb_raw_close(tree
, &parm
[i
]));
1899 REMOVE_HANDLE_SMB(close
.in
.file
.fnum
);
1905 generate unlink operations
1907 static bool handler_smb_unlink(int instance
)
1909 union smb_unlink parm
[NSERVERS
];
1910 NTSTATUS status
[NSERVERS
];
1912 parm
[0].unlink
.in
.pattern
= gen_pattern();
1913 parm
[0].unlink
.in
.attrib
= gen_attrib();
1916 GEN_CALL_SMB(smb_raw_unlink(tree
, &parm
[i
]));
1922 generate chkpath operations
1924 static bool handler_smb_chkpath(int instance
)
1926 union smb_chkpath parm
[NSERVERS
];
1927 NTSTATUS status
[NSERVERS
];
1929 parm
[0].chkpath
.in
.path
= gen_fname_open(instance
);
1932 GEN_CALL_SMB(smb_raw_chkpath(tree
, &parm
[i
]));
1938 generate mkdir operations
1940 static bool handler_smb_mkdir(int instance
)
1942 union smb_mkdir parm
[NSERVERS
];
1943 NTSTATUS status
[NSERVERS
];
1945 parm
[0].mkdir
.level
= RAW_MKDIR_MKDIR
;
1946 parm
[0].mkdir
.in
.path
= gen_fname_open(instance
);
1949 GEN_CALL_SMB(smb_raw_mkdir(tree
, &parm
[i
]));
1955 generate rmdir operations
1957 static bool handler_smb_rmdir(int instance
)
1959 struct smb_rmdir parm
[NSERVERS
];
1960 NTSTATUS status
[NSERVERS
];
1962 parm
[0].in
.path
= gen_fname_open(instance
);
1965 GEN_CALL_SMB(smb_raw_rmdir(tree
, &parm
[i
]));
1971 generate rename operations
1973 static bool handler_smb_rename(int instance
)
1975 union smb_rename parm
[NSERVERS
];
1976 NTSTATUS status
[NSERVERS
];
1978 parm
[0].generic
.level
= RAW_RENAME_RENAME
;
1979 parm
[0].rename
.in
.pattern1
= gen_pattern();
1980 parm
[0].rename
.in
.pattern2
= gen_pattern();
1981 parm
[0].rename
.in
.attrib
= gen_attrib();
1984 GEN_CALL_SMB(smb_raw_rename(tree
, &parm
[i
]));
1990 generate ntrename operations
1992 static bool handler_smb_ntrename(int instance
)
1994 union smb_rename parm
[NSERVERS
];
1995 NTSTATUS status
[NSERVERS
];
1997 parm
[0].generic
.level
= RAW_RENAME_NTRENAME
;
1998 parm
[0].ntrename
.in
.old_name
= gen_fname();
1999 parm
[0].ntrename
.in
.new_name
= gen_fname();
2000 parm
[0].ntrename
.in
.attrib
= gen_attrib();
2001 parm
[0].ntrename
.in
.cluster_size
= gen_bits_mask2(0, 0xFFFFFFF);
2002 parm
[0].ntrename
.in
.flags
= gen_rename_flags();
2005 GEN_CALL_SMB(smb_raw_rename(tree
, &parm
[i
]));
2012 generate seek operations
2014 static bool handler_smb_seek(int instance
)
2016 union smb_seek parm
[NSERVERS
];
2017 NTSTATUS status
[NSERVERS
];
2019 parm
[0].lseek
.in
.file
.fnum
= gen_fnum(instance
);
2020 parm
[0].lseek
.in
.mode
= gen_bits_mask2(0x3, 0xFFFF);
2021 parm
[0].lseek
.in
.offset
= gen_offset();
2024 GEN_SET_FNUM_SMB(lseek
.in
.file
.fnum
);
2025 GEN_CALL_SMB(smb_raw_seek(tree
, &parm
[i
]));
2027 CHECK_EQUAL(lseek
.out
.offset
);
2034 generate readx operations
2036 static bool handler_smb_readx(int instance
)
2038 union smb_read parm
[NSERVERS
];
2039 NTSTATUS status
[NSERVERS
];
2041 parm
[0].readx
.level
= RAW_READ_READX
;
2042 parm
[0].readx
.in
.file
.fnum
= gen_fnum(instance
);
2043 parm
[0].readx
.in
.offset
= gen_offset();
2044 parm
[0].readx
.in
.mincnt
= gen_io_count();
2045 parm
[0].readx
.in
.maxcnt
= gen_io_count();
2046 parm
[0].readx
.in
.remaining
= gen_io_count();
2047 parm
[0].readx
.in
.read_for_execute
= gen_bool();
2048 parm
[0].readx
.out
.data
= talloc_array(current_op
.mem_ctx
, uint8_t,
2049 MAX(parm
[0].readx
.in
.mincnt
, parm
[0].readx
.in
.maxcnt
));
2052 GEN_SET_FNUM_SMB(readx
.in
.file
.fnum
);
2053 GEN_CALL_SMB(smb_raw_read(tree
, &parm
[i
]));
2055 CHECK_EQUAL(readx
.out
.remaining
);
2056 CHECK_EQUAL(readx
.out
.compaction_mode
);
2057 CHECK_EQUAL(readx
.out
.nread
);
2063 generate writex operations
2065 static bool handler_smb_writex(int instance
)
2067 union smb_write parm
[NSERVERS
];
2068 NTSTATUS status
[NSERVERS
];
2070 parm
[0].writex
.level
= RAW_WRITE_WRITEX
;
2071 parm
[0].writex
.in
.file
.fnum
= gen_fnum(instance
);
2072 parm
[0].writex
.in
.offset
= gen_offset();
2073 parm
[0].writex
.in
.wmode
= gen_bits_mask(0xFFFF);
2074 parm
[0].writex
.in
.remaining
= gen_io_count();
2075 parm
[0].writex
.in
.count
= gen_io_count();
2076 parm
[0].writex
.in
.data
= talloc_zero_array(current_op
.mem_ctx
, uint8_t, parm
[0].writex
.in
.count
);
2079 GEN_SET_FNUM_SMB(writex
.in
.file
.fnum
);
2080 GEN_CALL_SMB(smb_raw_write(tree
, &parm
[i
]));
2082 CHECK_EQUAL(writex
.out
.nwritten
);
2083 CHECK_EQUAL(writex
.out
.remaining
);
2089 generate lockingx operations
2091 static bool handler_smb_lockingx(int instance
)
2093 union smb_lock parm
[NSERVERS
];
2094 NTSTATUS status
[NSERVERS
];
2097 parm
[0].lockx
.level
= RAW_LOCK_LOCKX
;
2098 parm
[0].lockx
.in
.file
.fnum
= gen_fnum(instance
);
2099 parm
[0].lockx
.in
.mode
= gen_lock_mode();
2100 parm
[0].lockx
.in
.timeout
= gen_timeout();
2102 /* make sure we don't accidentally generate an oplock
2103 break ack - otherwise the server can just block forever */
2104 parm
[0].lockx
.in
.ulock_cnt
= gen_lock_count();
2105 parm
[0].lockx
.in
.lock_cnt
= gen_lock_count();
2106 nlocks
= parm
[0].lockx
.in
.ulock_cnt
+ parm
[0].lockx
.in
.lock_cnt
;
2107 } while (nlocks
== 0);
2110 parm
[0].lockx
.in
.locks
= talloc_array(current_op
.mem_ctx
,
2111 struct smb_lock_entry
,
2113 for (n
=0;n
<nlocks
;n
++) {
2114 parm
[0].lockx
.in
.locks
[n
].pid
= gen_pid();
2115 parm
[0].lockx
.in
.locks
[n
].offset
= gen_offset();
2116 parm
[0].lockx
.in
.locks
[n
].count
= gen_io_count();
2121 GEN_SET_FNUM_SMB(lockx
.in
.file
.fnum
);
2122 GEN_CALL_SMB(smb_raw_lock(tree
, &parm
[i
]));
2129 generate a fileinfo query structure
2131 static void gen_setfileinfo(int instance
, union smb_setfileinfo
*info
)
2135 #define LVL(v) {RAW_SFILEINFO_ ## v, "RAW_SFILEINFO_" #v}
2137 enum smb_setfileinfo_level level
;
2141 /* disabled until win2003 can handle them ... */
2142 LVL(EA_SET
), LVL(BASIC_INFO
), LVL(DISPOSITION_INFO
),
2143 LVL(STANDARD
), LVL(ALLOCATION_INFO
), LVL(END_OF_FILE_INFO
),
2145 LVL(SETATTR
), LVL(SETATTRE
), LVL(BASIC_INFORMATION
),
2146 LVL(RENAME_INFORMATION
), LVL(DISPOSITION_INFORMATION
),
2147 LVL(POSITION_INFORMATION
), LVL(MODE_INFORMATION
),
2148 LVL(ALLOCATION_INFORMATION
), LVL(END_OF_FILE_INFORMATION
),
2149 LVL(1023), LVL(1025), LVL(1029), LVL(1032), LVL(1039), LVL(1040)
2152 i
= gen_int_range(0, ARRAY_SIZE(levels
)-1);
2153 } while (ignore_pattern(levels
[i
].name
));
2155 info
->generic
.level
= levels
[i
].level
;
2157 switch (info
->generic
.level
) {
2158 case RAW_SFILEINFO_SETATTR
:
2159 info
->setattr
.in
.attrib
= gen_attrib();
2160 info
->setattr
.in
.write_time
= gen_timet();
2162 case RAW_SFILEINFO_SETATTRE
:
2163 info
->setattre
.in
.create_time
= gen_timet();
2164 info
->setattre
.in
.access_time
= gen_timet();
2165 info
->setattre
.in
.write_time
= gen_timet();
2167 case RAW_SFILEINFO_STANDARD
:
2168 info
->standard
.in
.create_time
= gen_timet();
2169 info
->standard
.in
.access_time
= gen_timet();
2170 info
->standard
.in
.write_time
= gen_timet();
2172 case RAW_SFILEINFO_EA_SET
: {
2173 static struct ea_struct ea
;
2174 info
->ea_set
.in
.num_eas
= 1;
2175 info
->ea_set
.in
.eas
= &ea
;
2176 info
->ea_set
.in
.eas
[0] = gen_ea_struct();
2179 case RAW_SFILEINFO_BASIC_INFO
:
2180 case RAW_SFILEINFO_BASIC_INFORMATION
:
2181 info
->basic_info
.in
.create_time
= gen_nttime();
2182 info
->basic_info
.in
.access_time
= gen_nttime();
2183 info
->basic_info
.in
.write_time
= gen_nttime();
2184 info
->basic_info
.in
.change_time
= gen_nttime();
2185 info
->basic_info
.in
.attrib
= gen_attrib();
2187 case RAW_SFILEINFO_DISPOSITION_INFO
:
2188 case RAW_SFILEINFO_DISPOSITION_INFORMATION
:
2189 info
->disposition_info
.in
.delete_on_close
= gen_bool();
2191 case RAW_SFILEINFO_ALLOCATION_INFO
:
2192 case RAW_SFILEINFO_ALLOCATION_INFORMATION
:
2193 info
->allocation_info
.in
.alloc_size
= gen_alloc_size();
2195 case RAW_SFILEINFO_END_OF_FILE_INFO
:
2196 case RAW_SFILEINFO_END_OF_FILE_INFORMATION
:
2197 info
->end_of_file_info
.in
.size
= gen_offset();
2199 case RAW_SFILEINFO_RENAME_INFORMATION
:
2200 case RAW_SFILEINFO_RENAME_INFORMATION_SMB2
:
2201 info
->rename_information
.in
.overwrite
= gen_bool();
2202 info
->rename_information
.in
.root_fid
= gen_root_fid(instance
);
2203 info
->rename_information
.in
.new_name
= gen_fname_open(instance
);
2205 case RAW_SFILEINFO_POSITION_INFORMATION
:
2206 info
->position_information
.in
.position
= gen_offset();
2208 case RAW_SFILEINFO_MODE_INFORMATION
:
2209 info
->mode_information
.in
.mode
= gen_bits_mask(0xFFFFFFFF);
2211 case RAW_SFILEINFO_FULL_EA_INFORMATION
:
2212 info
->full_ea_information
.in
.eas
= gen_ea_list();
2214 case RAW_SFILEINFO_GENERIC
:
2215 case RAW_SFILEINFO_SEC_DESC
:
2216 case RAW_SFILEINFO_UNIX_BASIC
:
2217 case RAW_SFILEINFO_UNIX_LINK
:
2218 case RAW_SFILEINFO_UNIX_HLINK
:
2219 case RAW_SFILEINFO_1023
:
2220 case RAW_SFILEINFO_1025
:
2221 case RAW_SFILEINFO_1029
:
2222 case RAW_SFILEINFO_1032
:
2223 case RAW_SFILEINFO_1039
:
2224 case RAW_SFILEINFO_1040
:
2225 case RAW_SFILEINFO_UNIX_INFO2
:
2233 generate a fileinfo query structure
2235 static void gen_setfileinfo(int instance
, union smb_setfileinfo
*info
)
2239 #define LVL(v) {RAW_SFILEINFO_ ## v, "RAW_SFILEINFO_" #v}
2241 enum smb_setfileinfo_level level
;
2244 struct levels smb_levels
[] = {
2245 LVL(EA_SET
), LVL(BASIC_INFO
), LVL(DISPOSITION_INFO
),
2246 LVL(STANDARD
), LVL(ALLOCATION_INFO
), LVL(END_OF_FILE_INFO
),
2247 LVL(SETATTR
), LVL(SETATTRE
), LVL(BASIC_INFORMATION
),
2248 LVL(RENAME_INFORMATION
), LVL(DISPOSITION_INFORMATION
),
2249 LVL(POSITION_INFORMATION
), LVL(FULL_EA_INFORMATION
), LVL(MODE_INFORMATION
),
2250 LVL(ALLOCATION_INFORMATION
), LVL(END_OF_FILE_INFORMATION
),
2251 LVL(PIPE_INFORMATION
), LVL(VALID_DATA_INFORMATION
), LVL(SHORT_NAME_INFORMATION
),
2252 LVL(1025), LVL(1027), LVL(1029), LVL(1030), LVL(1031), LVL(1032), LVL(1036),
2253 LVL(1041), LVL(1042), LVL(1043), LVL(1044),
2255 struct levels smb2_levels
[] = {
2256 LVL(BASIC_INFORMATION
),
2257 LVL(RENAME_INFORMATION
), LVL(DISPOSITION_INFORMATION
),
2258 LVL(POSITION_INFORMATION
), LVL(FULL_EA_INFORMATION
), LVL(MODE_INFORMATION
),
2259 LVL(ALLOCATION_INFORMATION
), LVL(END_OF_FILE_INFORMATION
),
2260 LVL(PIPE_INFORMATION
), LVL(VALID_DATA_INFORMATION
), LVL(SHORT_NAME_INFORMATION
),
2261 LVL(1025), LVL(1027), LVL(1029), LVL(1030), LVL(1031), LVL(1032), LVL(1036),
2262 LVL(1041), LVL(1042), LVL(1043), LVL(1044),
2264 struct levels
*levels
= options
.smb2
?smb2_levels
:smb_levels
;
2265 uint32_t num_levels
= options
.smb2
?ARRAY_SIZE(smb2_levels
):ARRAY_SIZE(smb_levels
);
2268 i
= gen_int_range(0, num_levels
-1);
2269 } while (ignore_pattern(levels
[i
].name
));
2272 info
->generic
.level
= levels
[i
].level
;
2274 switch (info
->generic
.level
) {
2275 case RAW_SFILEINFO_SETATTR
:
2276 info
->setattr
.in
.attrib
= gen_attrib();
2277 info
->setattr
.in
.write_time
= gen_timet();
2279 case RAW_SFILEINFO_SETATTRE
:
2280 info
->setattre
.in
.create_time
= gen_timet();
2281 info
->setattre
.in
.access_time
= gen_timet();
2282 info
->setattre
.in
.write_time
= gen_timet();
2284 case RAW_SFILEINFO_STANDARD
:
2285 info
->standard
.in
.create_time
= gen_timet();
2286 info
->standard
.in
.access_time
= gen_timet();
2287 info
->standard
.in
.write_time
= gen_timet();
2289 case RAW_SFILEINFO_EA_SET
: {
2290 static struct ea_struct ea
;
2291 info
->ea_set
.in
.num_eas
= 1;
2292 info
->ea_set
.in
.eas
= &ea
;
2293 info
->ea_set
.in
.eas
[0] = gen_ea_struct();
2296 case RAW_SFILEINFO_BASIC_INFO
:
2297 case RAW_SFILEINFO_BASIC_INFORMATION
:
2298 info
->basic_info
.in
.create_time
= gen_nttime();
2299 info
->basic_info
.in
.access_time
= gen_nttime();
2300 info
->basic_info
.in
.write_time
= gen_nttime();
2301 info
->basic_info
.in
.change_time
= gen_nttime();
2302 info
->basic_info
.in
.attrib
= gen_attrib();
2304 case RAW_SFILEINFO_DISPOSITION_INFO
:
2305 case RAW_SFILEINFO_DISPOSITION_INFORMATION
:
2306 info
->disposition_info
.in
.delete_on_close
= gen_bool();
2308 case RAW_SFILEINFO_ALLOCATION_INFO
:
2309 case RAW_SFILEINFO_ALLOCATION_INFORMATION
:
2310 info
->allocation_info
.in
.alloc_size
= gen_alloc_size();
2312 case RAW_SFILEINFO_END_OF_FILE_INFO
:
2313 case RAW_SFILEINFO_END_OF_FILE_INFORMATION
:
2314 info
->end_of_file_info
.in
.size
= gen_offset();
2316 case RAW_SFILEINFO_RENAME_INFORMATION
:
2317 case RAW_SFILEINFO_RENAME_INFORMATION_SMB2
:
2318 info
->rename_information
.in
.overwrite
= gen_bool();
2319 info
->rename_information
.in
.root_fid
= gen_root_fid(instance
);
2320 info
->rename_information
.in
.new_name
= gen_fname_open(instance
);
2322 case RAW_SFILEINFO_POSITION_INFORMATION
:
2323 info
->position_information
.in
.position
= gen_offset();
2325 case RAW_SFILEINFO_MODE_INFORMATION
:
2326 info
->mode_information
.in
.mode
= gen_bits_mask(0xFFFFFFFF);
2328 case RAW_SFILEINFO_FULL_EA_INFORMATION
:
2329 info
->full_ea_information
.in
.eas
= gen_ea_list();
2332 case RAW_SFILEINFO_GENERIC
:
2333 case RAW_SFILEINFO_SEC_DESC
:
2334 case RAW_SFILEINFO_1025
:
2335 case RAW_SFILEINFO_1029
:
2336 case RAW_SFILEINFO_1032
:
2337 case RAW_SFILEINFO_UNIX_BASIC
:
2338 case RAW_SFILEINFO_UNIX_INFO2
:
2339 case RAW_SFILEINFO_UNIX_LINK
:
2340 case RAW_SFILEINFO_UNIX_HLINK
:
2341 case RAW_SFILEINFO_LINK_INFORMATION
:
2342 case RAW_SFILEINFO_PIPE_INFORMATION
:
2343 case RAW_SFILEINFO_VALID_DATA_INFORMATION
:
2344 case RAW_SFILEINFO_SHORT_NAME_INFORMATION
:
2345 case RAW_SFILEINFO_1027
:
2346 case RAW_SFILEINFO_1030
:
2347 case RAW_SFILEINFO_1031
:
2348 case RAW_SFILEINFO_1036
:
2349 case RAW_SFILEINFO_1041
:
2350 case RAW_SFILEINFO_1042
:
2351 case RAW_SFILEINFO_1043
:
2352 case RAW_SFILEINFO_1044
:
2361 generate a fileinfo query structure
2363 static void gen_fileinfo_smb(int instance
, union smb_fileinfo
*info
)
2367 #define LVL(v) {RAW_FILEINFO_ ## v, "RAW_FILEINFO_" #v}
2369 enum smb_fileinfo_level level
;
2372 LVL(GETATTR
), LVL(GETATTRE
), LVL(STANDARD
),
2373 LVL(EA_SIZE
), LVL(ALL_EAS
), LVL(IS_NAME_VALID
),
2374 LVL(BASIC_INFO
), LVL(STANDARD_INFO
), LVL(EA_INFO
),
2375 LVL(NAME_INFO
), LVL(ALL_INFO
), LVL(ALT_NAME_INFO
),
2376 LVL(STREAM_INFO
), LVL(COMPRESSION_INFO
), LVL(BASIC_INFORMATION
),
2377 LVL(STANDARD_INFORMATION
), LVL(INTERNAL_INFORMATION
), LVL(EA_INFORMATION
),
2378 LVL(ACCESS_INFORMATION
), LVL(NAME_INFORMATION
), LVL(POSITION_INFORMATION
),
2379 LVL(MODE_INFORMATION
), LVL(ALIGNMENT_INFORMATION
), LVL(ALL_INFORMATION
),
2380 LVL(ALT_NAME_INFORMATION
), LVL(STREAM_INFORMATION
), LVL(COMPRESSION_INFORMATION
),
2381 LVL(NETWORK_OPEN_INFORMATION
), LVL(ATTRIBUTE_TAG_INFORMATION
)
2384 i
= gen_int_range(0, ARRAY_SIZE(levels
)-1);
2385 } while (ignore_pattern(levels
[i
].name
));
2387 info
->generic
.level
= levels
[i
].level
;
2391 generate qpathinfo operations
2393 static bool handler_smb_qpathinfo(int instance
)
2395 union smb_fileinfo parm
[NSERVERS
];
2396 NTSTATUS status
[NSERVERS
];
2398 parm
[0].generic
.in
.file
.path
= gen_fname_open(instance
);
2400 gen_fileinfo_smb(instance
, &parm
[0]);
2403 GEN_CALL_SMB(smb_raw_pathinfo(tree
, current_op
.mem_ctx
, &parm
[i
]));
2405 return cmp_fileinfo(instance
, parm
, status
);
2409 generate qfileinfo operations
2411 static bool handler_smb_qfileinfo(int instance
)
2413 union smb_fileinfo parm
[NSERVERS
];
2414 NTSTATUS status
[NSERVERS
];
2416 parm
[0].generic
.in
.file
.fnum
= gen_fnum(instance
);
2418 gen_fileinfo_smb(instance
, &parm
[0]);
2421 GEN_SET_FNUM_SMB(generic
.in
.file
.fnum
);
2422 GEN_CALL_SMB(smb_raw_fileinfo(tree
, current_op
.mem_ctx
, &parm
[i
]));
2424 return cmp_fileinfo(instance
, parm
, status
);
2429 generate setpathinfo operations
2431 static bool handler_smb_spathinfo(int instance
)
2433 union smb_setfileinfo parm
[NSERVERS
];
2434 NTSTATUS status
[NSERVERS
];
2436 gen_setfileinfo(instance
, &parm
[0]);
2437 parm
[0].generic
.in
.file
.path
= gen_fname_open(instance
);
2441 /* a special case for the fid in a RENAME */
2442 if (parm
[0].generic
.level
== RAW_SFILEINFO_RENAME_INFORMATION
&&
2443 parm
[0].rename_information
.in
.root_fid
!= 0) {
2444 GEN_SET_FNUM_SMB(rename_information
.in
.root_fid
);
2447 GEN_CALL_SMB(smb_raw_setpathinfo(tree
, &parm
[i
]));
2454 generate setfileinfo operations
2456 static bool handler_smb_sfileinfo(int instance
)
2458 union smb_setfileinfo parm
[NSERVERS
];
2459 NTSTATUS status
[NSERVERS
];
2461 parm
[0].generic
.in
.file
.fnum
= gen_fnum(instance
);
2463 gen_setfileinfo(instance
, &parm
[0]);
2466 GEN_SET_FNUM_SMB(generic
.in
.file
.fnum
);
2467 GEN_CALL_SMB(smb_raw_setfileinfo(tree
, &parm
[i
]));
2474 this is called when a change notify reply comes in
2476 static void async_notify_smb(struct smbcli_request
*req
)
2478 union smb_notify notify
;
2482 struct smbcli_transport
*transport
= req
->transport
;
2485 tid
= req
->tree
->tid
;
2488 notify
.nttrans
.level
= RAW_NOTIFY_NTTRANS
;
2489 status
= smb_raw_changenotify_recv(req
, current_op
.mem_ctx
, ¬ify
);
2490 if (NT_STATUS_IS_OK(status
) && notify
.nttrans
.out
.num_changes
> 0) {
2491 printf("notify tid=%d num_changes=%d action=%d name=%s\n",
2493 notify
.nttrans
.out
.num_changes
,
2494 notify
.nttrans
.out
.changes
[0].action
,
2495 notify
.nttrans
.out
.changes
[0].name
.s
);
2498 for (i
=0;i
<NSERVERS
;i
++) {
2499 for (j
=0;j
<NINSTANCES
;j
++) {
2500 if (transport
== servers
[i
].smb_tree
[j
]->session
->transport
&&
2501 tid
== servers
[i
].smb_tree
[j
]->tid
) {
2502 notifies
[i
][j
].notify_count
++;
2503 notifies
[i
][j
].status
= status
;
2504 notifies
[i
][j
].notify
= notify
;
2511 generate change notify operations
2513 static bool handler_smb_notify(int instance
)
2515 union smb_notify parm
[NSERVERS
];
2518 ZERO_STRUCT(parm
[0]);
2519 parm
[0].nttrans
.level
= RAW_NOTIFY_NTTRANS
;
2520 parm
[0].nttrans
.in
.buffer_size
= gen_io_count();
2521 parm
[0].nttrans
.in
.completion_filter
= gen_bits_mask(0xFF);
2522 parm
[0].nttrans
.in
.file
.fnum
= gen_fnum(instance
);
2523 parm
[0].nttrans
.in
.recursive
= gen_bool();
2526 GEN_SET_FNUM_SMB(nttrans
.in
.file
.fnum
);
2528 for (n
=0;n
<NSERVERS
;n
++) {
2529 struct smbcli_request
*req
;
2530 req
= smb_raw_changenotify_send(servers
[n
].smb_tree
[instance
], &parm
[n
]);
2531 req
->async
.fn
= async_notify_smb
;
2539 generate ntcreatex operations
2541 static bool handler_smb2_create(int instance
)
2543 struct smb2_create parm
[NSERVERS
];
2544 NTSTATUS status
[NSERVERS
];
2546 ZERO_STRUCT(parm
[0]);
2547 parm
[0].in
.security_flags
= gen_bits_levels(3, 90, 0x0, 70, 0x3, 100, 0xFF);
2548 parm
[0].in
.oplock_level
= gen_bits_levels(3, 90, 0x0, 70, 0x9, 100, 0xFF);
2549 parm
[0].in
.impersonation_level
= gen_bits_levels(3, 90, 0x0, 70, 0x3, 100, 0xFFFFFFFF);
2550 parm
[0].in
.create_flags
= gen_reserved64();
2551 parm
[0].in
.reserved
= gen_reserved64();
2552 parm
[0].in
.desired_access
= gen_access_mask();
2553 parm
[0].in
.file_attributes
= gen_attrib();
2554 parm
[0].in
.share_access
= gen_bits_mask2(0x7, 0xFFFFFFFF);
2555 parm
[0].in
.create_disposition
= gen_open_disp();
2556 parm
[0].in
.create_options
= gen_create_options();
2557 parm
[0].in
.fname
= gen_fname_open(instance
);
2558 parm
[0].in
.eas
= gen_ea_list();
2559 parm
[0].in
.alloc_size
= gen_alloc_size();
2560 parm
[0].in
.durable_open
= gen_bool();
2561 parm
[0].in
.query_maximal_access
= gen_bool();
2562 parm
[0].in
.timewarp
= gen_timewarp();
2563 parm
[0].in
.query_on_disk_id
= gen_bool();
2564 parm
[0].in
.sec_desc
= gen_sec_desc();
2566 if (!options
.use_oplocks
) {
2567 /* mask out oplocks */
2568 parm
[0].in
.oplock_level
= 0;
2571 if (options
.valid
) {
2572 parm
[0].in
.security_flags
&= 3;
2573 parm
[0].in
.oplock_level
&= 9;
2574 parm
[0].in
.impersonation_level
&= 3;
2578 GEN_CALL_SMB2(smb2_create(tree
, current_op
.mem_ctx
, &parm
[i
]));
2580 CHECK_EQUAL(out
.oplock_level
);
2581 CHECK_EQUAL(out
.reserved
);
2582 CHECK_EQUAL(out
.create_action
);
2583 CHECK_NTTIMES_EQUAL(out
.create_time
);
2584 CHECK_NTTIMES_EQUAL(out
.access_time
);
2585 CHECK_NTTIMES_EQUAL(out
.write_time
);
2586 CHECK_NTTIMES_EQUAL(out
.change_time
);
2587 CHECK_EQUAL(out
.alloc_size
);
2588 CHECK_EQUAL(out
.size
);
2589 CHECK_ATTRIB(out
.file_attr
);
2590 CHECK_EQUAL(out
.reserved2
);
2591 CHECK_EQUAL(out
.maximal_access
);
2593 /* ntcreatex creates a new file handle */
2594 ADD_HANDLE_SMB2(parm
[0].in
.fname
, out
.file
.handle
);
2600 generate close operations
2602 static bool handler_smb2_close(int instance
)
2604 struct smb2_close parm
[NSERVERS
];
2605 NTSTATUS status
[NSERVERS
];
2607 ZERO_STRUCT(parm
[0]);
2608 parm
[0].in
.file
.handle
.data
[0] = gen_fnum_close(instance
);
2609 parm
[0].in
.flags
= gen_bits_mask2(0x1, 0xFFFF);
2612 GEN_SET_FNUM_SMB2(in
.file
.handle
);
2613 GEN_CALL_SMB2(smb2_close(tree
, &parm
[i
]));
2615 CHECK_EQUAL(out
.flags
);
2616 CHECK_EQUAL(out
._pad
);
2617 CHECK_NTTIMES_EQUAL(out
.create_time
);
2618 CHECK_NTTIMES_EQUAL(out
.access_time
);
2619 CHECK_NTTIMES_EQUAL(out
.write_time
);
2620 CHECK_NTTIMES_EQUAL(out
.change_time
);
2621 CHECK_EQUAL(out
.alloc_size
);
2622 CHECK_EQUAL(out
.size
);
2623 CHECK_ATTRIB(out
.file_attr
);
2625 REMOVE_HANDLE_SMB2(in
.file
.handle
);
2631 generate read operations
2633 static bool handler_smb2_read(int instance
)
2635 struct smb2_read parm
[NSERVERS
];
2636 NTSTATUS status
[NSERVERS
];
2638 parm
[0].in
.file
.handle
.data
[0] = gen_fnum(instance
);
2639 parm
[0].in
.reserved
= gen_reserved8();
2640 parm
[0].in
.length
= gen_io_count();
2641 parm
[0].in
.offset
= gen_offset();
2642 parm
[0].in
.min_count
= gen_io_count();
2643 parm
[0].in
.channel
= gen_bits_mask2(0x0, 0xFFFFFFFF);
2644 parm
[0].in
.remaining
= gen_bits_mask2(0x0, 0xFFFFFFFF);
2645 parm
[0].in
.channel_offset
= gen_bits_mask2(0x0, 0xFFFF);
2646 parm
[0].in
.channel_length
= gen_bits_mask2(0x0, 0xFFFF);
2649 GEN_SET_FNUM_SMB2(in
.file
.handle
);
2650 GEN_CALL_SMB2(smb2_read(tree
, current_op
.mem_ctx
, &parm
[i
]));
2652 CHECK_EQUAL(out
.remaining
);
2653 CHECK_EQUAL(out
.reserved
);
2654 CHECK_EQUAL(out
.data
.length
);
2660 generate write operations
2662 static bool handler_smb2_write(int instance
)
2664 struct smb2_write parm
[NSERVERS
];
2665 NTSTATUS status
[NSERVERS
];
2667 parm
[0].in
.file
.handle
.data
[0] = gen_fnum(instance
);
2668 parm
[0].in
.offset
= gen_offset();
2669 parm
[0].in
.unknown1
= gen_bits_mask2(0, 0xFFFFFFFF);
2670 parm
[0].in
.unknown2
= gen_bits_mask2(0, 0xFFFFFFFF);
2671 parm
[0].in
.data
= data_blob_talloc(current_op
.mem_ctx
, NULL
,
2675 GEN_SET_FNUM_SMB2(in
.file
.handle
);
2676 GEN_CALL_SMB2(smb2_write(tree
, &parm
[i
]));
2678 CHECK_EQUAL(out
._pad
);
2679 CHECK_EQUAL(out
.nwritten
);
2680 CHECK_EQUAL(out
.unknown1
);
2686 generate lockingx operations
2688 static bool handler_smb2_lock(int instance
)
2690 struct smb2_lock parm
[NSERVERS
];
2691 NTSTATUS status
[NSERVERS
];
2694 parm
[0].level
= RAW_LOCK_LOCKX
;
2695 parm
[0].in
.file
.handle
.data
[0] = gen_fnum(instance
);
2696 parm
[0].in
.lock_count
= gen_lock_count();
2697 parm
[0].in
.lock_sequence
= gen_reserved32();
2699 parm
[0].in
.locks
= talloc_array(current_op
.mem_ctx
,
2700 struct smb2_lock_element
,
2701 parm
[0].in
.lock_count
);
2702 for (n
=0;n
<parm
[0].in
.lock_count
;n
++) {
2703 parm
[0].in
.locks
[n
].offset
= gen_offset();
2704 parm
[0].in
.locks
[n
].length
= gen_io_count();
2705 /* don't yet cope with async replies */
2706 parm
[0].in
.locks
[n
].flags
= gen_lock_flags_smb2() |
2707 SMB2_LOCK_FLAG_FAIL_IMMEDIATELY
;
2708 parm
[0].in
.locks
[n
].reserved
= gen_bits_mask2(0x0, 0xFFFFFFFF);
2712 GEN_SET_FNUM_SMB2(in
.file
.handle
);
2713 GEN_CALL_SMB2(smb2_lock(tree
, &parm
[i
]));
2719 generate flush operations
2721 static bool handler_smb2_flush(int instance
)
2723 struct smb2_flush parm
[NSERVERS
];
2724 NTSTATUS status
[NSERVERS
];
2726 ZERO_STRUCT(parm
[0]);
2727 parm
[0].in
.file
.handle
.data
[0] = gen_fnum(instance
);
2728 parm
[0].in
.reserved1
= gen_reserved16();
2729 parm
[0].in
.reserved2
= gen_reserved32();
2732 GEN_SET_FNUM_SMB2(in
.file
.handle
);
2733 GEN_CALL_SMB2(smb2_flush(tree
, &parm
[i
]));
2735 CHECK_EQUAL(out
.reserved
);
2741 generate echo operations
2743 static bool handler_smb2_echo(int instance
)
2745 NTSTATUS status
[NSERVERS
];
2747 GEN_CALL_SMB2(smb2_keepalive(tree
->session
->transport
));
2755 generate a fileinfo query structure
2757 static void gen_fileinfo_smb2(int instance
, union smb_fileinfo
*info
)
2760 #define LVL(v) {RAW_FILEINFO_ ## v, "RAW_FILEINFO_" #v}
2762 enum smb_fileinfo_level level
;
2765 LVL(BASIC_INFORMATION
),
2766 LVL(STANDARD_INFORMATION
), LVL(INTERNAL_INFORMATION
), LVL(EA_INFORMATION
),
2767 LVL(ACCESS_INFORMATION
), LVL(NAME_INFORMATION
), LVL(POSITION_INFORMATION
),
2768 LVL(MODE_INFORMATION
), LVL(ALIGNMENT_INFORMATION
), LVL(SMB2_ALL_INFORMATION
),
2769 LVL(ALT_NAME_INFORMATION
), LVL(STREAM_INFORMATION
), LVL(COMPRESSION_INFORMATION
),
2770 LVL(NETWORK_OPEN_INFORMATION
), LVL(ATTRIBUTE_TAG_INFORMATION
),
2771 LVL(SMB2_ALL_EAS
), LVL(SMB2_ALL_INFORMATION
), LVL(SEC_DESC
),
2774 i
= gen_int_range(0, ARRAY_SIZE(levels
)-1);
2775 } while (ignore_pattern(levels
[i
].name
));
2777 info
->generic
.level
= levels
[i
].level
;
2781 generate qfileinfo operations
2783 static bool handler_smb2_qfileinfo(int instance
)
2785 union smb_fileinfo parm
[NSERVERS
];
2786 NTSTATUS status
[NSERVERS
];
2788 parm
[0].generic
.in
.file
.handle
.data
[0] = gen_fnum(instance
);
2790 gen_fileinfo_smb2(instance
, &parm
[0]);
2793 GEN_SET_FNUM_SMB2(generic
.in
.file
.handle
);
2794 GEN_CALL_SMB2(smb2_getinfo_file(tree
, current_op
.mem_ctx
, &parm
[i
]));
2796 return cmp_fileinfo(instance
, parm
, status
);
2801 generate setfileinfo operations
2803 static bool handler_smb2_sfileinfo(int instance
)
2805 union smb_setfileinfo parm
[NSERVERS
];
2806 NTSTATUS status
[NSERVERS
];
2808 gen_setfileinfo(instance
, &parm
[0]);
2809 parm
[0].generic
.in
.file
.fnum
= gen_fnum(instance
);
2812 GEN_SET_FNUM_SMB2(generic
.in
.file
.handle
);
2813 GEN_CALL_SMB2(smb2_setinfo_file(tree
, &parm
[i
]));
2819 wipe any relevant files
2821 static void wipe_files(void)
2826 if (options
.skip_cleanup
) {
2830 for (i
=0;i
<NSERVERS
;i
++) {
2833 n
= smb2_deltree(servers
[i
].smb2_tree
[0], "gentest");
2835 n
= smbcli_deltree(servers
[i
].smb_tree
[0], "gentest");
2838 printf("Failed to wipe tree on server %d\n", i
);
2842 status
= smb2_util_mkdir(servers
[i
].smb2_tree
[0], "gentest");
2844 status
= smbcli_mkdir(servers
[i
].smb_tree
[0], "gentest");
2846 if (NT_STATUS_IS_ERR(status
)) {
2847 printf("Failed to create gentest on server %d - %s\n", i
, nt_errstr(status
));
2851 printf("Deleted %d files on server %d\n", n
, i
);
2857 dump the current seeds - useful for continuing a backtrack
2859 static void dump_seeds(void)
2864 if (!options
.seeds_file
) {
2867 f
= fopen("seeds.tmp", "w");
2870 for (i
=0;i
<options
.numops
;i
++) {
2871 fprintf(f
, "%u\n", op_parms
[i
].seed
);
2874 rename("seeds.tmp", options
.seeds_file
);
2880 the list of top-level operations that we will generate
2884 bool (*handler
)(int instance
);
2886 int count
, success_count
;
2890 .handler
= handler_smb2_create
,
2895 .handler
= handler_smb2_close
,
2900 .handler
= handler_smb2_read
,
2905 .handler
= handler_smb2_write
,
2910 .handler
= handler_smb2_lock
,
2915 .handler
= handler_smb2_flush
,
2920 .handler
= handler_smb2_echo
,
2924 .name
= "QFILEINFO",
2925 .handler
= handler_smb2_qfileinfo
,
2929 .name
= "SFILEINFO",
2930 .handler
= handler_smb2_sfileinfo
,
2936 .handler
= handler_smb_open
,
2941 .handler
= handler_smb_openx
,
2945 .name
= "NTCREATEX",
2946 .handler
= handler_smb_ntcreatex
,
2951 .handler
= handler_smb_close
,
2956 .handler
= handler_smb_unlink
,
2961 .handler
= handler_smb_mkdir
,
2966 .handler
= handler_smb_rmdir
,
2971 .handler
= handler_smb_rename
,
2976 .handler
= handler_smb_ntrename
,
2981 .handler
= handler_smb_readx
,
2986 .handler
= handler_smb_writex
,
2991 .handler
= handler_smb_chkpath
,
2996 .handler
= handler_smb_seek
,
3001 .handler
= handler_smb_lockingx
,
3005 .name
= "QPATHINFO",
3006 .handler
= handler_smb_qpathinfo
,
3010 .name
= "QFILEINFO",
3011 .handler
= handler_smb_qfileinfo
,
3015 .name
= "SPATHINFO",
3016 .handler
= handler_smb_spathinfo
,
3020 .name
= "SFILEINFO",
3021 .handler
= handler_smb_sfileinfo
,
3026 .handler
= handler_smb_notify
,
3031 .handler
= handler_smb_seek
,
3038 run the test with the current set of op_parms parameters
3039 return the number of operations that completed successfully
3041 static int run_test(struct tevent_context
*ev
, struct loadparm_context
*lp_ctx
)
3045 if (!connect_servers(ev
, lp_ctx
)) {
3046 printf("Failed to connect to servers\n");
3052 /* wipe any leftover files from old runs */
3055 /* reset the open handles array */
3056 memset(open_handles
, 0, options
.max_open_handles
* sizeof(open_handles
[0]));
3057 num_open_handles
= 0;
3059 for (i
=0;i
<ARRAY_SIZE(gen_ops
);i
++) {
3060 gen_ops
[i
].count
= 0;
3061 gen_ops
[i
].success_count
= 0;
3064 for (op
=0; op
<options
.numops
; op
++) {
3065 int instance
, which_op
;
3068 if (op_parms
[op
].disabled
) continue;
3070 srandom(op_parms
[op
].seed
);
3072 instance
= gen_int_range(0, NINSTANCES
-1);
3074 /* generate a non-ignored operation */
3076 which_op
= gen_int_range(0, ARRAY_SIZE(gen_ops
)-1);
3077 } while (ignore_pattern(gen_ops
[which_op
].name
) ||
3078 gen_ops
[which_op
].smb2
!= options
.smb2
);
3080 DEBUG(3,("Generating op %s on instance %d\n",
3081 gen_ops
[which_op
].name
, instance
));
3083 current_op
.seed
= op_parms
[op
].seed
;
3084 current_op
.opnum
= op
;
3085 current_op
.name
= gen_ops
[which_op
].name
;
3086 current_op
.status
= NT_STATUS_OK
;
3087 talloc_free(current_op
.mem_ctx
);
3088 current_op
.mem_ctx
= talloc_named(NULL
, 0, "%s", current_op
.name
);
3090 ret
= gen_ops
[which_op
].handler(instance
);
3092 gen_ops
[which_op
].count
++;
3093 if (NT_STATUS_IS_OK(current_op
.status
)) {
3094 gen_ops
[which_op
].success_count
++;
3098 printf("Failed at operation %d - %s\n",
3099 op
, gen_ops
[which_op
].name
);
3103 if (op
% 100 == 0) {
3108 for (i
=0;i
<ARRAY_SIZE(gen_ops
);i
++) {
3109 printf("Op %-10s got %d/%d success\n",
3111 gen_ops
[i
].success_count
,
3119 perform a backtracking analysis of the minimal set of operations
3120 to generate an error
3122 static void backtrack_analyze(struct tevent_context
*ev
,
3123 struct loadparm_context
*lp_ctx
)
3126 const char *mismatch
= current_op
.mismatch
;
3128 chunk
= options
.numops
/ 2;
3133 chunk
> 0 && base
+chunk
< options
.numops
&& options
.numops
> 1; ) {
3136 chunk
= MIN(chunk
, options
.numops
/ 2);
3138 /* mark this range as disabled */
3139 max
= MIN(options
.numops
, base
+chunk
);
3140 for (i
=base
;i
<max
; i
++) {
3141 op_parms
[i
].disabled
= true;
3143 printf("Testing %d ops with %d-%d disabled\n",
3144 options
.numops
, base
, max
-1);
3145 ret
= run_test(ev
, lp_ctx
);
3146 printf("Completed %d of %d ops\n", ret
, options
.numops
);
3147 for (i
=base
;i
<max
; i
++) {
3148 op_parms
[i
].disabled
= false;
3150 if (ret
== options
.numops
) {
3151 /* this chunk is needed */
3153 } else if (mismatch
!= current_op
.mismatch
&&
3154 strcmp(mismatch
, current_op
.mismatch
)) {
3156 printf("Different error in backtracking\n");
3157 } else if (ret
< base
) {
3158 printf("damn - inconsistent errors! found early error\n");
3159 options
.numops
= ret
+1;
3162 /* it failed - this chunk isn't needed for a failure */
3163 memmove(&op_parms
[base
], &op_parms
[max
],
3164 sizeof(op_parms
[0]) * (options
.numops
- max
));
3165 options
.numops
= (ret
+1) - (max
- base
);
3175 if (options
.analyze_continuous
&& chunk
== 0 && options
.numops
!= 1) {
3178 } while (chunk
> 0);
3180 printf("Reduced to %d ops\n", options
.numops
);
3181 ret
= run_test(ev
, lp_ctx
);
3182 if (ret
!= options
.numops
- 1) {
3183 printf("Inconsistent result? ret=%d numops=%d\n", ret
, options
.numops
);
3188 start the main gentest process
3190 static bool start_gentest(struct tevent_context
*ev
,
3191 struct loadparm_context
*lp_ctx
)
3196 /* allocate the open_handles array */
3197 open_handles
= calloc(options
.max_open_handles
, sizeof(open_handles
[0]));
3198 if (open_handles
== NULL
) {
3199 printf("Unable to allocate memory for open_handles array.\n");
3203 srandom(options
.seed
);
3204 op_parms
= calloc(options
.numops
, sizeof(op_parms
[0]));
3205 if (op_parms
== NULL
) {
3206 printf("Unable to allocate memory for op_parms.\n");
3210 /* generate the seeds - after this everything is deterministic */
3211 if (options
.use_preset_seeds
) {
3213 char **preset
= file_lines_load(options
.seeds_file
, &numops
, 0, NULL
);
3215 printf("Failed to load %s - %s\n", options
.seeds_file
, strerror(errno
));
3218 if (numops
< options
.numops
) {
3219 options
.numops
= numops
;
3221 for (op
=0;op
<options
.numops
;op
++) {
3223 printf("Not enough seeds in %s\n", options
.seeds_file
);
3226 op_parms
[op
].seed
= atoi(preset
[op
]);
3228 printf("Loaded %d seeds from %s\n", options
.numops
, options
.seeds_file
);
3230 for (op
=0; op
<options
.numops
; op
++) {
3231 op_parms
[op
].seed
= random();
3235 ret
= run_test(ev
, lp_ctx
);
3237 if (ret
!= options
.numops
&& options
.analyze
) {
3238 options
.numops
= ret
+1;
3239 backtrack_analyze(ev
, lp_ctx
);
3240 } else if (options
.analyze_always
) {
3241 backtrack_analyze(ev
, lp_ctx
);
3242 } else if (options
.analyze_continuous
) {
3243 while (run_test(ev
, lp_ctx
) == options
.numops
) ;
3246 return ret
== options
.numops
;
3250 static void usage(poptContext pc
)
3254 gentest //server1/share1 //server2/share2 [options..]\n\
3256 poptPrintUsage(pc
, stdout
, 0);
3260 split a UNC name into server and share names
3262 static bool split_unc_name(const char *unc
, char **server
, char **share
)
3264 char *p
= strdup(unc
);
3265 if (!p
) return false;
3266 all_string_sub(p
, "\\", "/", 0);
3267 if (strncmp(p
, "//", 2) != 0) return false;
3270 p
= strchr(*server
, '/');
3271 if (!p
) return false;
3281 /****************************************************************************
3283 ****************************************************************************/
3284 int main(int argc
, const char *argv
[])
3287 int i
, username_count
=0;
3289 char *ignore_file
=NULL
;
3290 struct tevent_context
*ev
;
3291 struct loadparm_context
*lp_ctx
;
3300 struct poptOption long_options
[] = {
3302 {"smb2", 0, POPT_ARG_NONE
, &options
.smb2
, 0, "use SMB2 protocol", NULL
},
3303 {"seed", 0, POPT_ARG_INT
, &options
.seed
, 0, "Seed to use for randomizer", NULL
},
3304 {"num-ops", 0, POPT_ARG_INT
, &options
.numops
, 0, "num ops", NULL
},
3305 {"oplocks", 0, POPT_ARG_NONE
, &options
.use_oplocks
,0, "use oplocks", NULL
},
3306 {"showall", 0, POPT_ARG_NONE
, &options
.showall
, 0, "display all operations", NULL
},
3307 {"analyse", 0, POPT_ARG_NONE
, &options
.analyze
, 0, "do backtrack analysis", NULL
},
3308 {"analysealways", 0, POPT_ARG_NONE
, &options
.analyze_always
, 0, "analysis always", NULL
},
3309 {"analysecontinuous", 0, POPT_ARG_NONE
, &options
.analyze_continuous
, 0, "analysis continuous", NULL
},
3310 {"ignore", 0, POPT_ARG_STRING
, &ignore_file
, 0, "ignore from file", NULL
},
3311 {"preset", 0, POPT_ARG_NONE
, &options
.use_preset_seeds
, 0, "use preset seeds", NULL
},
3312 {"fast", 0, POPT_ARG_NONE
, &options
.fast_reconnect
, 0, "use fast reconnect", NULL
},
3313 {"unclist", 0, POPT_ARG_STRING
, NULL
, OPT_UNCLIST
, "unclist", NULL
},
3314 {"seedsfile", 0, POPT_ARG_STRING
, &options
.seeds_file
, 0, "seed file", NULL
},
3315 {"user1", 0, POPT_ARG_STRING
, NULL
, OPT_USER1
, "Set first network username", "[DOMAIN/]USERNAME[%PASSWORD]" },
3316 {"user2", 0, POPT_ARG_STRING
, NULL
, OPT_USER2
, "Set second network username", "[DOMAIN/]USERNAME[%PASSWORD]" },
3317 {"maskindexing", 0, POPT_ARG_NONE
, &options
.mask_indexing
, 0, "mask out the indexed file attrib", NULL
},
3318 {"noeas", 0, POPT_ARG_NONE
, &options
.no_eas
, 0, "don't use extended attributes", NULL
},
3319 {"noacls", 0, POPT_ARG_NONE
, &options
.no_acls
, 0, "don't use ACLs", NULL
},
3320 {"skip-cleanup", 0, POPT_ARG_NONE
, &options
.skip_cleanup
, 0, "don't delete files at start", NULL
},
3321 {"valid", 0, POPT_ARG_NONE
, &options
.valid
, 0, "generate only valid fields", NULL
},
3323 POPT_COMMON_CONNECTION
3324 POPT_COMMON_CREDENTIALS
3329 TALLOC_CTX
*mem_ctx
= NULL
;
3332 memset(&bad_smb2_handle
, 0xFF, sizeof(bad_smb2_handle
));
3335 options
.seed
= time(NULL
);
3336 options
.numops
= 1000;
3337 options
.max_open_handles
= 20;
3338 options
.seeds_file
= "gentest_seeds.dat";
3340 mem_ctx
= talloc_named_const(NULL
, 0, "gentest_ctx");
3341 if (mem_ctx
== NULL
) {
3342 printf("Unable to allocate gentest_ctx\n");
3346 ok
= samba_cmdline_init(mem_ctx
,
3347 SAMBA_CMDLINE_CONFIG_CLIENT
,
3348 false /* require_smbconf */);
3350 DBG_ERR("Failed to init cmdline parser!\n");
3351 TALLOC_FREE(mem_ctx
);
3355 pc
= samba_popt_get_context(getprogname(),
3359 POPT_CONTEXT_KEEP_FIRST
);
3361 DBG_ERR("Failed to setup popt context!\n");
3362 TALLOC_FREE(mem_ctx
);
3366 poptSetOtherOptionHelp(pc
, "<unc1> <unc2>");
3368 lp_ctx
= samba_cmdline_get_lp_ctx();
3369 servers
[0].credentials
= cli_credentials_init(mem_ctx
);
3370 servers
[1].credentials
= cli_credentials_init(mem_ctx
);
3371 cli_credentials_guess(servers
[0].credentials
, lp_ctx
);
3372 cli_credentials_guess(servers
[1].credentials
, lp_ctx
);
3374 while((opt
= poptGetNextOpt(pc
)) != -1) {
3377 lpcfg_set_cmdline(lp_ctx
, "torture:unclist", poptGetOptArg(pc
));
3380 cli_credentials_parse_string(servers
[0].credentials
,
3386 cli_credentials_parse_string(servers
[1].credentials
,
3391 case POPT_ERROR_BADOPT
:
3392 fprintf(stderr
, "\nInvalid option %s: %s\n\n",
3393 poptBadOption(pc
, 0), poptStrerror(opt
));
3394 poptPrintUsage(pc
, stderr
, 0);
3400 options
.ignore_patterns
= file_lines_load(ignore_file
, NULL
, 0, NULL
);
3403 argv_new
= discard_const_p(char *, poptGetArgs(pc
));
3405 for (i
=0; i
<argc
; i
++) {
3406 if (argv_new
[i
] == NULL
) {
3412 if (!(argc_new
>= 3)) {
3414 talloc_free(mem_ctx
);
3420 setup_logging("gentest", DEBUG_STDOUT
);
3422 if (argc
< 3 || argv
[1][0] == '-') {
3424 talloc_free(mem_ctx
);
3428 setup_logging(argv
[0], DEBUG_STDOUT
);
3430 for (i
=0;i
<NSERVERS
;i
++) {
3431 const char *share
= argv
[1+i
];
3432 if (!split_unc_name(share
, &servers
[i
].server_name
, &servers
[i
].share_name
)) {
3433 printf("Invalid share name '%s'\n", share
);
3434 poptFreeContext(pc
);
3435 talloc_free(mem_ctx
);
3440 if (username_count
== 0) {
3442 poptFreeContext(pc
);
3443 talloc_free(mem_ctx
);
3446 if (username_count
== 1) {
3447 servers
[1].credentials
= servers
[0].credentials
;
3450 printf("seed=%u\n", options
.seed
);
3452 ev
= s4_event_context_init(mem_ctx
);
3456 ret
= start_gentest(ev
, lp_ctx
);
3459 printf("gentest completed - no errors\n");
3461 printf("gentest failed\n");
3464 poptFreeContext(pc
);
3465 talloc_free(mem_ctx
);