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[fs/lustre-release.git] / lustre / utils / obd.c
1 /*
2  * GPL HEADER START
3  *
4  * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
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 version 2 only,
8  * as published by the Free Software Foundation.
9  *
10  * This program is distributed in the hope that it will be useful, but
11  * WITHOUT ANY WARRANTY; without even the implied warranty of
12  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
13  * General Public License version 2 for more details (a copy is included
14  * in the LICENSE file that accompanied this code).
15  *
16  * You should have received a copy of the GNU General Public License
17  * version 2 along with this program; If not, see
18  * http://www.sun.com/software/products/lustre/docs/GPLv2.pdf
19  *
20  * Please contact Sun Microsystems, Inc., 4150 Network Circle, Santa Clara,
21  * CA 95054 USA or visit www.sun.com if you need additional information or
22  * have any questions.
23  *
24  * GPL HEADER END
25  */
26 /*
27  * Copyright (c) 2002, 2010, Oracle and/or its affiliates. All rights reserved.
28  * Use is subject to license terms.
29  *
30  * Copyright (c) 2011, 2013, Intel Corporation.
31  */
32 /*
33  * This file is part of Lustre, http://www.lustre.org/
34  * Lustre is a trademark of Sun Microsystems, Inc.
35  *
36  * lustre/utils/obd.c
37  *
38  * Author: Peter J. Braam <braam@clusterfs.com>
39  * Author: Phil Schwan <phil@clusterfs.com>
40  * Author: Andreas Dilger <adilger@clusterfs.com>
41  * Author: Robert Read <rread@clusterfs.com>
42  */
43
44 #include <sys/ioctl.h>
45 #include <sys/socket.h>
46 #include <sys/stat.h>
47 #include <sys/time.h>
48 #include <sys/types.h>
49 #include <sys/un.h>
50 #include <sys/wait.h>
51
52 #include <ctype.h>
53 #include <errno.h>
54 #include <fcntl.h>
55 #include <glob.h>
56 #include <signal.h>
57 #include <stdarg.h>
58 #include <stdbool.h>
59 #include <stdio.h>
60 #include <stdlib.h>
61 #include <string.h>
62 #include <time.h>
63 #include <unistd.h>
64
65 #include "obdctl.h"
66
67 #include <obd.h>          /* for struct lov_stripe_md */
68 #include <lustre/lustre_build_version.h>
69
70 #include <lnet/lnetctl.h>
71 #include <libcfs/libcfsutil.h>
72 #include <lustre/lustreapi.h>
73
74 #define MAX_STRING_SIZE 128
75 #define DEVICES_LIST "/proc/fs/lustre/devices"
76
77 #if HAVE_LIBPTHREAD
78 #include <sys/ipc.h>
79 #include <sys/shm.h>
80 #include <pthread.h>
81
82 #define MAX_THREADS 4096
83 #define MAX_BASE_ID 0xffffffff
84 struct shared_data {
85         l_mutex_t mutex;
86         l_cond_t  cond;
87         int       stopping;
88         struct {
89                 __u64 counters[MAX_THREADS];
90                 __u64 offsets[MAX_THREADS];
91                 int   thr_running;
92                 int   start_barrier;
93                 int   stop_barrier;
94                 struct timeval start_time;
95                 struct timeval end_time;
96         } body;
97 };
98
99 static struct shared_data *shared_data;
100 static __u64 counter_snapshot[2][MAX_THREADS];
101 static int prev_valid;
102 static struct timeval prev_time;
103 static int thread;
104 static int nthreads;
105 #else
106 const int thread = 0;
107 const int nthreads = 1;
108 #endif
109
110 static int cur_device = -1;
111
112 struct lov_oinfo lov_oinfos[LOV_MAX_STRIPE_COUNT];
113
114 struct lsm_buffer {
115         struct lov_stripe_md lsm;
116         struct lov_oinfo *ptrs[LOV_MAX_STRIPE_COUNT];
117 } lsm_buffer;
118
119 static int l2_ioctl(int dev_id, int opc, void *buf)
120 {
121         return l_ioctl(dev_id, opc, buf);
122 }
123
124 int lcfg_ioctl(char * func, int dev_id, struct lustre_cfg *lcfg)
125 {
126         struct obd_ioctl_data data;
127         char rawbuf[MAX_IOC_BUFLEN], *buf = rawbuf;
128         int rc;
129
130         memset(&data, 0, sizeof(data));
131         data.ioc_dev = cur_device;
132         data.ioc_type = LUSTRE_CFG_TYPE;
133         data.ioc_plen1 = lustre_cfg_len(lcfg->lcfg_bufcount,
134                                         lcfg->lcfg_buflens);
135         data.ioc_pbuf1 = (void *)lcfg;
136         memset(buf, 0, sizeof(rawbuf));
137         rc = obd_ioctl_pack(&data, &buf, sizeof(rawbuf));
138         if (rc) {
139                 fprintf(stderr, "error: %s: invalid ioctl\n",
140                         jt_cmdname(func));
141                 return rc;
142         }
143
144         rc =  l_ioctl(dev_id, OBD_IOC_PROCESS_CFG, buf);
145
146         return rc;
147 }
148
149 static int do_device(char *func, char *devname);
150
151 static int get_mgs_device()
152 {
153         char mgs[] = "$MGS";
154         static int mgs_device = -1;
155
156         if (mgs_device == -1) {
157                 int rc;
158                 do_disconnect(NULL, 1);
159                 rc = do_device("mgsioc", mgs);
160                 if (rc) {
161                         fprintf(stderr,
162                                 "This command must be run on the MGS.\n");
163                         errno = ENODEV;
164                         return -1;
165                 }
166                 mgs_device = cur_device;
167         }
168         return mgs_device;
169 }
170
171 /* Returns -1 on error with errno set */
172 int lcfg_mgs_ioctl(char *func, int dev_id, struct lustre_cfg *lcfg)
173 {
174         struct obd_ioctl_data data;
175         char rawbuf[MAX_IOC_BUFLEN], *buf = rawbuf;
176         int rc;
177
178         memset(&data, 0, sizeof(data));
179         rc = data.ioc_dev = get_mgs_device();
180         if (rc < 0)
181                 goto out;
182         data.ioc_type = LUSTRE_CFG_TYPE;
183         data.ioc_plen1 = lustre_cfg_len(lcfg->lcfg_bufcount,
184                                         lcfg->lcfg_buflens);
185         data.ioc_pbuf1 = (void *)lcfg;
186         memset(buf, 0, sizeof(rawbuf));
187         rc = obd_ioctl_pack(&data, &buf, sizeof(rawbuf));
188         if (rc) {
189                 fprintf(stderr, "error: %s: invalid ioctl\n",
190                         jt_cmdname(func));
191                 return rc;
192         }
193
194         rc = l_ioctl(dev_id, OBD_IOC_PARAM, buf);
195 out:
196         if (rc) {
197                 if (errno == ENOSYS)
198                         fprintf(stderr, "Make sure cfg_device is set first.\n");
199         }
200         return rc;
201 }
202
203 char *obdo_print(struct obdo *obd)
204 {
205         char buf[1024];
206
207         sprintf(buf, "id: "LPX64"\ngrp: "LPX64"\natime: "LPU64"\nmtime: "LPU64
208                 "\nctime: "LPU64"\nsize: "LPU64"\nblocks: "LPU64
209                 "\nblksize: %u\nmode: %o\nuid: %d\ngid: %d\nflags: %x\n"
210                 "misc: %x\nnlink: %d,\nvalid "LPX64"\n",
211                 ostid_id(&obd->o_oi), ostid_seq(&obd->o_oi), obd->o_atime,
212                 obd->o_mtime, obd->o_ctime,
213                 obd->o_size, obd->o_blocks, obd->o_blksize, obd->o_mode,
214                 obd->o_uid, obd->o_gid, obd->o_flags, obd->o_misc,
215                 obd->o_nlink, obd->o_valid);
216         return strdup(buf);
217 }
218
219
220 #define BAD_VERBOSE (-999999999)
221
222 #define N2D_OFF 0x100      /* So we can tell between error codes and devices */
223
224 static int do_name2dev(char *func, char *name)
225 {
226         struct obd_ioctl_data data;
227         char rawbuf[MAX_IOC_BUFLEN], *buf = rawbuf;
228         int rc;
229
230         memset(&data, 0, sizeof(data));
231         data.ioc_dev = cur_device;
232         data.ioc_inllen1 = strlen(name) + 1;
233         data.ioc_inlbuf1 = name;
234
235         memset(buf, 0, sizeof(rawbuf));
236         rc = obd_ioctl_pack(&data, &buf, sizeof(rawbuf));
237         if (rc < 0) {
238                 fprintf(stderr, "error: %s: invalid ioctl\n",
239                         jt_cmdname(func));
240                 return -rc;
241         }
242         rc = l2_ioctl(OBD_DEV_ID, OBD_IOC_NAME2DEV, buf);
243         if (rc < 0)
244                 return errno;
245         rc = obd_ioctl_unpack(&data, buf, sizeof(rawbuf));
246         if (rc) {
247                 fprintf(stderr, "error: %s: invalid reply\n",
248                         jt_cmdname(func));
249                 return rc;
250         }
251
252         return data.ioc_dev + N2D_OFF;
253 }
254
255 /*
256  * resolve a device name to a device number.
257  * supports a number, $name or %uuid.
258  */
259 int parse_devname(char *func, char *name)
260 {
261         int rc;
262         int ret = -1;
263
264         if (!name)
265                 return ret;
266         if (isdigit(name[0])) {
267                 ret = strtoul(name, NULL, 0);
268         } else {
269                 if (name[0] == '$' || name[0] == '%')
270                         name++;
271                 rc = do_name2dev(func, name);
272                 if (rc >= N2D_OFF) {
273                         ret = rc - N2D_OFF;
274                         // printf("Name %s is device %d\n", name, ret);
275                 } else {
276                         fprintf(stderr, "No device found for name %s: %s\n",
277                                 name, strerror(rc));
278                 }
279         }
280         return ret;
281 }
282
283 static void
284 reset_lsmb (struct lsm_buffer *lsmb)
285 {
286         memset (&lsmb->lsm, 0, sizeof (lsmb->lsm));
287         memset(lov_oinfos, 0, sizeof(lov_oinfos));
288         lsmb->lsm.lsm_magic = LOV_MAGIC;
289 }
290
291 static int
292 parse_lsm (struct lsm_buffer *lsmb, char *string)
293 {
294         struct lov_stripe_md *lsm = &lsmb->lsm;
295         char                 *end;
296         int                   i;
297
298         /*
299          * object_id[=size#count[@offset:id]*]
300          */
301
302         reset_lsmb (lsmb);
303
304         ostid_set_id(&lsm->lsm_oi, strtoull(string, &end, 0));
305         if (end == string)
306                 return -1;
307         string = end;
308
309         if (*string == 0)
310                 return (0);
311
312         if (*string != '=')
313                 return (-1);
314         string++;
315
316         lsm->lsm_stripe_size = strtoul (string, &end, 0);
317         if (end == string)
318                 return (-1);
319         string = end;
320
321         if (*string != '#')
322                 return (-1);
323         string++;
324
325         lsm->lsm_stripe_count = strtoul (string, &end, 0);
326         if (end == string)
327                 return (-1);
328         string = end;
329
330         if (*string == 0)               /* don't have to specify obj ids */
331                 return (0);
332
333         for (i = 0; i < lsm->lsm_stripe_count; i++) {
334                 if (*string != '@')
335                         return (-1);
336                 string++;
337                 lsm->lsm_oinfo[i]->loi_ost_idx = strtoul(string, &end, 0);
338                 if (*end != ':')
339                         return (-1);
340                 string = end + 1;
341                 ostid_set_id(&lsm->lsm_oinfo[i]->loi_oi,
342                              strtoull(string, &end, 0));
343                 string = end;
344         }
345
346         if (*string != 0)
347                 return (-1);
348
349         return (0);
350 }
351
352 char *jt_cmdname(char *func)
353 {
354         static char buf[512];
355
356         if (thread) {
357                 sprintf(buf, "%s-%d", func, thread);
358                 return buf;
359         }
360
361         return func;
362 }
363
364 #define difftime(a, b)                                  \
365         ((a)->tv_sec - (b)->tv_sec +                    \
366          ((a)->tv_usec - (b)->tv_usec) / 1000000.0)
367
368 static int be_verbose(int verbose, struct timeval *next_time,
369                       __u64 num, __u64 *next_num, int num_total)
370 {
371         struct timeval now;
372
373         if (!verbose)
374                 return 0;
375
376         if (next_time != NULL)
377                 gettimeofday(&now, NULL);
378
379         /* A positive verbosity means to print every X iterations */
380         if (verbose > 0 && (num >= *next_num || num >= num_total)) {
381                 *next_num += verbose;
382                 if (next_time) {
383                         next_time->tv_sec = now.tv_sec - verbose;
384                         next_time->tv_usec = now.tv_usec;
385                 }
386                 return 1;
387         }
388
389         /* A negative verbosity means to print at most each X seconds */
390         if (verbose < 0 && next_time != NULL &&
391             difftime(&now, next_time) >= 0.0){
392                 next_time->tv_sec = now.tv_sec - verbose;
393                 next_time->tv_usec = now.tv_usec;
394                 *next_num = num;
395                 return 1;
396         }
397
398         return 0;
399 }
400
401 static int get_verbose(char *func, const char *arg)
402 {
403         int verbose;
404         char *end;
405
406         if (!arg || arg[0] == 'v')
407                 verbose = 1;
408         else if (arg[0] == 's' || arg[0] == 'q')
409                 verbose = 0;
410         else {
411                 verbose = (int)strtoul(arg, &end, 0);
412                 if (*end) {
413                         fprintf(stderr, "error: %s: bad verbose option '%s'\n",
414                                 jt_cmdname(func), arg);
415                         return BAD_VERBOSE;
416                 }
417         }
418
419         if (verbose < 0)
420                 printf("Print status every %d seconds\n", -verbose);
421         else if (verbose == 1)
422                 printf("Print status every operation\n");
423         else if (verbose > 1)
424                 printf("Print status every %d operations\n", verbose);
425
426         return verbose;
427 }
428
429 int do_disconnect(char *func, int verbose)
430 {
431         lcfg_set_devname(NULL);
432         cur_device = -1;
433         return 0;
434 }
435
436 #ifdef MAX_THREADS
437 static int shmem_setup(void)
438 {
439         pthread_mutexattr_t mattr;
440         pthread_condattr_t  cattr;
441         int                 rc;
442         int                 shmid;
443
444         /* Create new segment */
445         shmid = shmget(IPC_PRIVATE, sizeof(*shared_data), 0600);
446         if (shmid == -1) {
447                 fprintf(stderr, "Can't create shared data: %s\n",
448                         strerror(errno));
449                 return errno;
450         }
451
452         /* Attatch to new segment */
453         shared_data = (struct shared_data *)shmat(shmid, NULL, 0);
454
455         if (shared_data == (struct shared_data *)(-1)) {
456                 fprintf(stderr, "Can't attach shared data: %s\n",
457                         strerror(errno));
458                 shared_data = NULL;
459                 return errno;
460         }
461
462         /* Mark segment as destroyed, so it will disappear when we exit.
463          * Forks will inherit attached segments, so we should be OK.
464          */
465         if (shmctl(shmid, IPC_RMID, NULL) == -1) {
466                 fprintf(stderr, "Can't destroy shared data: %s\n",
467                         strerror(errno));
468                 return errno;
469         }
470
471         pthread_mutexattr_init(&mattr);
472         pthread_condattr_init(&cattr);
473
474         rc = pthread_mutexattr_setpshared(&mattr, PTHREAD_PROCESS_SHARED);
475         if (rc != 0) {
476                 fprintf(stderr, "Can't set shared mutex attr\n");
477                 return rc;
478         }
479
480         rc = pthread_condattr_setpshared(&cattr, PTHREAD_PROCESS_SHARED);
481         if (rc != 0) {
482                 fprintf(stderr, "Can't set shared cond attr\n");
483                 return rc;
484         }
485
486         pthread_mutex_init(&shared_data->mutex, &mattr);
487         pthread_cond_init(&shared_data->cond, &cattr);
488
489         pthread_mutexattr_destroy(&mattr);
490         pthread_condattr_destroy(&cattr);
491
492         return 0;
493 }
494
495 static inline void shmem_lock(void)
496 {
497         l_mutex_lock(&shared_data->mutex);
498 }
499
500 static inline void shmem_unlock(void)
501 {
502         l_mutex_unlock(&shared_data->mutex);
503 }
504
505 static inline void shmem_wait(void)
506 {
507         l_cond_wait(&shared_data->cond, &shared_data->mutex);
508 }
509
510 static inline void shmem_wakeup_all(void)
511 {
512         l_cond_broadcast(&shared_data->cond);
513 }
514
515 static inline void shmem_reset(int total_threads)
516 {
517         if (shared_data == NULL)
518                 return;
519
520         memset(&shared_data->body, 0, sizeof(shared_data->body));
521         memset(counter_snapshot, 0, sizeof(counter_snapshot));
522         prev_valid = 0;
523         shared_data->stopping = 0;
524         shared_data->body.start_barrier = total_threads;
525         shared_data->body.stop_barrier = total_threads;
526 }
527
528 static inline void shmem_bump(__u32 counter)
529 {
530         static bool running_not_bumped = true;
531
532         if (shared_data == NULL || thread <= 0 || thread > MAX_THREADS)
533                 return;
534
535         shmem_lock();
536         shared_data->body.counters[thread - 1] += counter;
537         if (running_not_bumped) {
538                 shared_data->body.thr_running++;
539                 running_not_bumped = false;
540         }
541         shmem_unlock();
542 }
543
544 static void shmem_total(int total_threads)
545 {
546         __u64 total = 0;
547         double secs;
548         int i;
549
550         if (shared_data == NULL || total_threads > MAX_THREADS)
551                 return;
552
553         shmem_lock();
554         for (i = 0; i < total_threads; i++)
555                 total += shared_data->body.counters[i];
556
557         secs = difftime(&shared_data->body.end_time,
558                         &shared_data->body.start_time);
559         shmem_unlock();
560
561         printf("Total: total "LPU64" threads %d sec %f %f/second\n",
562                total, total_threads, secs, total / secs);
563
564         return;
565 }
566
567 static void shmem_snap(int total_threads, int live_threads)
568 {
569         struct timeval this_time;
570         int non_zero = 0;
571         __u64 total = 0;
572         double secs;
573         int running;
574         int i;
575
576         if (shared_data == NULL || total_threads > MAX_THREADS)
577                 return;
578
579         shmem_lock();
580         memcpy(counter_snapshot[0], shared_data->body.counters,
581                total_threads * sizeof(counter_snapshot[0][0]));
582         running = shared_data->body.thr_running;
583         shmem_unlock();
584
585         gettimeofday(&this_time, NULL);
586
587         for (i = 0; i < total_threads; i++) {
588                 long long this_count =
589                         counter_snapshot[0][i] - counter_snapshot[1][i];
590
591                 if (this_count != 0) {
592                         non_zero++;
593                         total += this_count;
594                 }
595         }
596
597         secs = difftime(&this_time, &prev_time);
598         if (prev_valid && secs > 1.0)    /* someone screwed with the time? */
599                 printf("%d/%d Total: %f/second\n", non_zero, total_threads,
600                        total / secs);
601
602         memcpy(counter_snapshot[1], counter_snapshot[0],
603                total_threads * sizeof(counter_snapshot[0][0]));
604         prev_time = this_time;
605         if (!prev_valid &&
606             running == total_threads)
607                 prev_valid = 1;
608 }
609
610 static void shmem_stop(void)
611 {
612         if (shared_data == NULL)
613                 return;
614
615         shared_data->stopping = 1;
616 }
617
618 static void shmem_cleanup(void)
619 {
620         if (shared_data == NULL)
621                 return;
622
623         shmem_stop();
624
625         pthread_mutex_destroy(&shared_data->mutex);
626         pthread_cond_destroy(&shared_data->cond);
627 }
628
629 static int shmem_running(void)
630 {
631         return (shared_data == NULL || !shared_data->stopping);
632 }
633
634 static void shmem_end_time_locked(void)
635 {
636         shared_data->body.stop_barrier--;
637         if (shared_data->body.stop_barrier == 0)
638                 gettimeofday(&shared_data->body.end_time, NULL);
639 }
640
641 static void shmem_start_time_locked(void)
642 {
643         shared_data->body.start_barrier--;
644         if (shared_data->body.start_barrier == 0) {
645                 shmem_wakeup_all();
646                 gettimeofday(&shared_data->body.start_time, NULL);
647         } else {
648                 shmem_wait();
649         }
650 }
651
652 #else
653 static int shmem_setup(void)
654 {
655         return 0;
656 }
657
658 static inline void shmem_reset(int total_threads)
659 {
660 }
661
662 static inline void shmem_bump(__u32 counters)
663 {
664 }
665
666 static void shmem_lock()
667 {
668 }
669
670 static void shmem_unlock()
671 {
672 }
673
674 static void shmem_cleanup(void)
675 {
676 }
677
678 static int shmem_running(void)
679 {
680         return 1;
681 }
682 #endif
683
684 extern command_t cmdlist[];
685
686 static int do_device(char *func, char *devname)
687 {
688         int dev;
689
690         dev = parse_devname(func, devname);
691         if (dev < 0)
692                 return -1;
693
694         lcfg_set_devname(devname);
695         cur_device = dev;
696         return 0;
697 }
698
699 int jt_obd_get_device()
700 {
701         return cur_device;
702 }
703
704 int jt_obd_device(int argc, char **argv)
705 {
706         int rc;
707
708         if (argc > 2)
709                 return CMD_HELP;
710
711         if (argc == 1) {
712                 printf("current device is %d - %s\n",
713                        cur_device, lcfg_get_devname() ? : "not set");
714                 return 0;
715         }
716         rc = do_device("device", argv[1]);
717         return rc;
718 }
719
720 int jt_opt_device(int argc, char **argv)
721 {
722         int ret;
723         int rc;
724
725         if (argc < 3)
726                 return CMD_HELP;
727
728         rc = do_device("device", argv[1]);
729
730         if (!rc)
731                 rc = Parser_execarg(argc - 2, argv + 2, cmdlist);
732
733         ret = do_disconnect(argv[0], 0);
734         if (!rc)
735                 rc = ret;
736
737         return rc;
738 }
739
740 #ifdef MAX_THREADS
741 static void parent_sighandler (int sig)
742 {
743         return;
744 }
745
746 int jt_opt_threads(int argc, char **argv)
747 {
748         static char      cmdstr[128];
749         sigset_t         saveset;
750         sigset_t         sigset;
751         struct sigaction sigact;
752         struct sigaction saveact1;
753         struct sigaction saveact2;
754         unsigned long    threads;
755         __u64            next_thread;
756         int verbose;
757         int rc = 0;
758         int report_count = -1;
759         char *end;
760         int i;
761
762         if (argc < 5)
763                 return CMD_HELP;
764
765         threads = strtoul(argv[1], &end, 0);
766
767         if (*end == '.')
768                 report_count = strtoul(end + 1, &end, 0);
769
770         if (*end || threads > MAX_THREADS) {
771                 fprintf(stderr, "error: %s: invalid thread count '%s'\n",
772                         jt_cmdname(argv[0]), argv[1]);
773                 return CMD_HELP;
774         }
775
776         verbose = get_verbose(argv[0], argv[2]);
777         if (verbose == BAD_VERBOSE)
778                 return CMD_HELP;
779
780         if (verbose != 0) {
781                 snprintf(cmdstr, sizeof(cmdstr), "%s", argv[4]);
782                 for (i = 5; i < argc; i++)
783                         snprintf(cmdstr + strlen(cmdstr), sizeof(cmdstr),
784                                  " %s", argv[i]);
785
786                 printf("%s: starting %ld threads on device %s running %s\n",
787                        argv[0], threads, argv[3], cmdstr);
788         }
789
790         shmem_reset(threads);
791
792         sigemptyset(&sigset);
793         sigaddset(&sigset, SIGALRM);
794         sigaddset(&sigset, SIGCHLD);
795         sigprocmask(SIG_BLOCK, &sigset, &saveset);
796
797         nthreads = threads;
798
799         for (i = 1, next_thread = verbose; i <= threads; i++) {
800                 rc = fork();
801                 if (rc < 0) {
802                         fprintf(stderr, "error: %s: #%d - %s\n", argv[0], i,
803                                 strerror(rc = errno));
804                         break;
805                 } else if (rc == 0) {
806                         sigprocmask(SIG_SETMASK, &saveset, NULL);
807
808                         thread = i;
809                         argv[2] = "--device";
810                         exit(jt_opt_device(argc - 2, argv + 2));
811                 } else if (be_verbose(verbose, NULL, i, &next_thread, threads))
812                         printf("%s: thread #%d (PID %d) started\n",
813                                argv[0], i, rc);
814                 rc = 0;
815         }
816
817         if (!thread) {          /* parent process */
818                 int live_threads = threads;
819
820                 sigemptyset(&sigset);
821                 sigemptyset(&sigact.sa_mask);
822                 sigact.sa_handler = parent_sighandler;
823                 sigact.sa_flags = 0;
824
825                 sigaction(SIGALRM, &sigact, &saveact1);
826                 sigaction(SIGCHLD, &sigact, &saveact2);
827
828                 while (live_threads > 0) {
829                         int status;
830                         pid_t ret;
831
832                         if (verbose < 0)        /* periodic stats */
833                                 alarm(-verbose);
834
835                         sigsuspend(&sigset);
836                         alarm(0);
837
838                         while (live_threads > 0) {
839                                 ret = waitpid(0, &status, WNOHANG);
840                                 if (ret == 0)
841                                         break;
842
843                                 if (ret < 0) {
844                                         fprintf(stderr, "error: %s: wait - %s\n",
845                                                 argv[0], strerror(errno));
846                                         if (!rc)
847                                                 rc = errno;
848                                         continue;
849                                 } else {
850                                         /*
851                                          * This is a hack.  We _should_ be able
852                                          * to use WIFEXITED(status) to see if
853                                          * there was an error, but it appears
854                                          * to be broken and it always returns 1
855                                          * (OK).  See wait(2).
856                                          */
857                                         int err = WEXITSTATUS(status);
858                                         if (err || WIFSIGNALED(status))
859                                                 fprintf(stderr,
860                                                         "%s: PID %d had rc=%d\n",
861                                                         argv[0], ret, err);
862                                         if (!rc)
863                                                 rc = err;
864
865                                         live_threads--;
866                                 }
867                         }
868
869                         /* Show stats while all threads running */
870                         if (verbose < 0) {
871                                 shmem_snap(threads, live_threads);
872                                 if (report_count > 0 && --report_count == 0)
873                                         shmem_stop();
874                         }
875                 }
876                 sigaction(SIGCHLD, &saveact2, NULL);
877                 sigaction(SIGALRM, &saveact1, NULL);
878         }
879
880         shmem_total(threads);
881         sigprocmask(SIG_SETMASK, &saveset, NULL);
882
883         return rc;
884 }
885 #else
886 int jt_opt_threads(int argc, char **argv)
887 {
888         fprintf(stderr, "%s not-supported in a single-threaded runtime\n",
889                 jt_cmdname(argv[0]));
890         return CMD_HELP;
891 }
892 #endif
893
894 int jt_opt_net(int argc, char **argv)
895 {
896         char *arg2[3];
897         int rc;
898
899         if (argc < 3)
900                 return CMD_HELP;
901
902         arg2[0] = argv[0];
903         arg2[1] = argv[1];
904         arg2[2] = NULL;
905         rc = jt_ptl_network (2, arg2);
906
907         if (!rc)
908                 rc = Parser_execarg(argc - 2, argv + 2, cmdlist);
909
910         return rc;
911 }
912
913 int jt_obd_no_transno(int argc, char **argv)
914 {
915         struct obd_ioctl_data data;
916         char rawbuf[MAX_IOC_BUFLEN], *buf = rawbuf;
917         int rc;
918
919         memset(&data, 0, sizeof(data));
920         data.ioc_dev = cur_device;
921
922         if (argc != 1)
923                 return CMD_HELP;
924
925         memset(buf, 0, sizeof(rawbuf));
926         rc = obd_ioctl_pack(&data, &buf, sizeof(rawbuf));
927         if (rc) {
928                 fprintf(stderr, "error: %s: invalid ioctl\n",
929                         jt_cmdname(argv[0]));
930                 return rc;
931         }
932         rc = l2_ioctl(OBD_DEV_ID, OBD_IOC_NO_TRANSNO, buf);
933         if (rc < 0)
934                 fprintf(stderr, "error: %s: %s\n", jt_cmdname(argv[0]),
935                         strerror(rc = errno));
936
937         return rc;
938 }
939
940 int jt_obd_set_readonly(int argc, char **argv)
941 {
942         struct obd_ioctl_data data;
943         char rawbuf[MAX_IOC_BUFLEN], *buf = rawbuf;
944         int rc;
945
946         memset(&data, 0, sizeof(data));
947         data.ioc_dev = cur_device;
948
949         if (argc != 1)
950                 return CMD_HELP;
951
952         memset(buf, 0, sizeof(rawbuf));
953         rc = obd_ioctl_pack(&data, &buf, sizeof(rawbuf));
954         if (rc) {
955                 fprintf(stderr, "error: %s: invalid ioctl\n",
956                         jt_cmdname(argv[0]));
957                 return rc;
958         }
959         rc = l2_ioctl(OBD_DEV_ID, OBD_IOC_SET_READONLY, buf);
960         if (rc < 0)
961                 fprintf(stderr, "error: %s: %s\n", jt_cmdname(argv[0]),
962                         strerror(rc = errno));
963
964         return rc;
965 }
966
967 int jt_obd_abort_recovery(int argc, char **argv)
968 {
969         struct obd_ioctl_data data;
970         char rawbuf[MAX_IOC_BUFLEN], *buf = rawbuf;
971         int rc;
972
973         memset(&data, 0, sizeof(data));
974         data.ioc_dev = cur_device;
975
976         if (argc != 1)
977                 return CMD_HELP;
978
979         memset(buf, 0, sizeof(rawbuf));
980         rc = obd_ioctl_pack(&data, &buf, sizeof(rawbuf));
981         if (rc) {
982                 fprintf(stderr, "error: %s: invalid ioctl\n",
983                         jt_cmdname(argv[0]));
984                 return rc;
985         }
986         rc = l2_ioctl(OBD_DEV_ID, OBD_IOC_ABORT_RECOVERY, buf);
987         if (rc < 0)
988                 fprintf(stderr, "error: %s: %s\n", jt_cmdname(argv[0]),
989                         strerror(rc = errno));
990
991         return rc;
992 }
993
994 int jt_get_version(int argc, char **argv)
995 {
996         int rc;
997         char rawbuf[MAX_IOC_BUFLEN];
998         char *version;
999
1000         if (argc != 1)
1001                 return CMD_HELP;
1002
1003         rc = llapi_get_version(rawbuf, MAX_IOC_BUFLEN, &version);
1004         if (rc)
1005                 fprintf(stderr, "error: %s: %s\n", jt_cmdname(argv[0]),
1006                         strerror(-rc));
1007         else
1008                 printf("Lustre version: %s\n", version);
1009
1010         printf("lctl   version: %s\n", BUILD_VERSION);
1011         return rc;
1012 }
1013
1014 /*
1015  * Print an obd device line with the ost_conn_uuid inserted, if the obd
1016  * is an osc.
1017  */
1018 static void print_obd_line(char *s)
1019 {
1020         char buf[MAX_STRING_SIZE];
1021         char obd_name[MAX_OBD_NAME];
1022         FILE *fp = NULL;
1023         char *ptr;
1024
1025         if (sscanf(s, " %*d %*s osc %s %*s %*d ", obd_name) == 0)
1026                 goto try_mdc;
1027         snprintf(buf, sizeof(buf),
1028                  "/proc/fs/lustre/osc/%s/ost_conn_uuid", obd_name);
1029         if ((fp = fopen(buf, "r")) == NULL)
1030                 goto try_mdc;
1031         goto got_one;
1032
1033 try_mdc:
1034         if (sscanf(s, " %*d %*s mdc %s %*s %*d ", obd_name) == 0)
1035                 goto fail;
1036         snprintf(buf, sizeof(buf),
1037                  "/proc/fs/lustre/mdc/%s/mds_conn_uuid", obd_name);
1038         if ((fp = fopen(buf, "r")) == NULL)
1039                 goto fail;
1040
1041 got_one:
1042         /* should not ignore fgets(3)'s return value */
1043         if (!fgets(buf, sizeof(buf), fp)) {
1044                 fprintf(stderr, "reading from %s: %s", buf, strerror(errno));
1045                 fclose(fp);
1046                 return;
1047         }
1048         fclose(fp);
1049
1050         /* trim trailing newlines */
1051         ptr = strrchr(buf, '\n');
1052         if (ptr) *ptr = '\0';
1053         ptr = strrchr(s, '\n');
1054         if (ptr) *ptr = '\0';
1055
1056         printf("%s %s\n", s, buf);
1057         return;
1058
1059 fail:
1060         printf("%s", s);
1061         return;
1062 }
1063
1064 /* get device list by ioctl */
1065 int jt_obd_list_ioctl(int argc, char **argv)
1066 {
1067         int rc, index;
1068         char rawbuf[MAX_IOC_BUFLEN], *buf = rawbuf;
1069         struct obd_ioctl_data *data = (struct obd_ioctl_data *)buf;
1070
1071         if (argc > 2)
1072                 return CMD_HELP;
1073         /* Just ignore a -t option.  Only supported with /proc. */
1074         else if (argc == 2 && strcmp(argv[1], "-t") != 0)
1075                 return CMD_HELP;
1076
1077         for (index = 0;; index++) {
1078                 memset(buf, 0, sizeof(rawbuf));
1079                 data->ioc_version = OBD_IOCTL_VERSION;
1080                 data->ioc_inllen1 =
1081                         sizeof(rawbuf) - cfs_size_round(sizeof(*data));
1082                 data->ioc_inlbuf1 = buf + cfs_size_round(sizeof(*data));
1083                 data->ioc_len = obd_ioctl_packlen(data);
1084                 data->ioc_count = index;
1085
1086                 rc = l2_ioctl(OBD_DEV_ID, OBD_IOC_GETDEVICE, buf);
1087                 if (rc != 0)
1088                         break;
1089                 printf("%s\n", (char *)data->ioc_bulk);
1090         }
1091         if (rc != 0) {
1092                 if (errno == ENOENT)
1093                         /* no device or the last device */
1094                         rc = 0;
1095                 else
1096                         fprintf(stderr, "Error getting device list: %s: "
1097                                 "check dmesg.\n", strerror(errno));
1098         }
1099         return rc;
1100 }
1101
1102 int jt_obd_list(int argc, char **argv)
1103 {
1104         int rc;
1105         char buf[MAX_STRING_SIZE];
1106         FILE *fp = NULL;
1107         int print_obd = 0;
1108
1109         if (argc > 2)
1110                 return CMD_HELP;
1111         else if (argc == 2) {
1112                 if (strcmp(argv[1], "-t") == 0)
1113                         print_obd = 1;
1114                 else
1115                         return CMD_HELP;
1116         }
1117
1118         fp = fopen(DEVICES_LIST, "r");
1119         if (fp == NULL) {
1120                 fprintf(stderr, "error: %s: %s opening "DEVICES_LIST"\n",
1121                         jt_cmdname(argv[0]), strerror(rc =  errno));
1122                 return jt_obd_list_ioctl(argc, argv);
1123         }
1124
1125         while (fgets(buf, sizeof(buf), fp) != NULL)
1126                 if (print_obd)
1127                         print_obd_line(buf);
1128                 else
1129                         printf("%s", buf);
1130
1131         fclose(fp);
1132         return 0;
1133 }
1134
1135 struct jt_fid_space {
1136         obd_seq jt_seq;
1137         obd_id  jt_id;
1138         int     jt_width;
1139 };
1140
1141 int jt_obd_alloc_fids(struct jt_fid_space *space, struct lu_fid *fid,
1142                       __u64 *count)
1143 {
1144         int rc;
1145
1146         if (space->jt_seq == 0 || space->jt_id == space->jt_width) {
1147                 struct obd_ioctl_data  data;
1148                 char rawbuf[MAX_IOC_BUFLEN];
1149                 char *buf = rawbuf;
1150                 __u64 seqnr;
1151                 int max_count;
1152
1153                 memset(&data, 0, sizeof(data));
1154                 data.ioc_dev = cur_device;
1155
1156                 data.ioc_pbuf1 = (char *)&seqnr;
1157                 data.ioc_plen1 = sizeof(seqnr);
1158
1159                 data.ioc_pbuf2 = (char *)&max_count;
1160                 data.ioc_plen2 = sizeof(max_count);
1161
1162                 memset(buf, 0, sizeof(rawbuf));
1163                 rc = obd_ioctl_pack(&data, &buf, sizeof(rawbuf));
1164                 if (rc) {
1165                         fprintf(stderr, "error: invalid ioctl rc = %d\n", rc);
1166                         return rc;
1167                 }
1168
1169                 rc = l2_ioctl(OBD_DEV_ID, OBD_IOC_ECHO_ALLOC_SEQ, buf);
1170                 if (rc) {
1171                         fprintf(stderr, "ioctl error: rc = %d\n", rc);
1172                         return rc;
1173                 }
1174
1175                 space->jt_seq = *(__u64 *)data.ioc_pbuf1;
1176                 space->jt_width = *(int *)data.ioc_pbuf2;
1177                 space->jt_id = 1;
1178         }
1179         fid->f_seq = space->jt_seq;
1180         fid->f_oid = space->jt_id;
1181         fid->f_ver = 0;
1182
1183         space->jt_id = min(space->jt_id + *count, space->jt_width);
1184
1185         *count = space->jt_id - fid->f_oid;
1186         return 0;
1187 }
1188
1189 #define MD_STEP_COUNT 1000
1190 int jt_obd_md_common(int argc, char **argv, int cmd)
1191 {
1192         struct obd_ioctl_data  data;
1193         struct timeval         start;
1194         struct timeval         end_time;
1195         char                   rawbuf[MAX_IOC_BUFLEN];
1196         char                  *buf = rawbuf;
1197         int                    mode = 0000644;
1198         int                    create_mode;
1199         int                    rc = 0;
1200         char                  *parent_basedir = NULL;
1201         char                   dirname[4096];
1202         int                    parent_base_id = 0;
1203         int                    parent_count = 1;
1204         __u64                  child_base_id = -1;
1205         int                    stripe_count = 0;
1206         int                    stripe_index = -1;
1207         int                    count = 0;
1208         char                  *end;
1209         __u64                  seconds = 0;
1210         double                 diff;
1211         int                    c;
1212         __u64                  total_count = 0;
1213         char                  *name = NULL;
1214         struct jt_fid_space    fid_space = {0};
1215         int                    version = 0;
1216         struct option          long_opts[] = {
1217                 {"child_base_id",     required_argument, 0, 'b'},
1218                 {"stripe_count",      required_argument, 0, 'c'},
1219                 {"parent_basedir",    required_argument, 0, 'd'},
1220                 {"parent_dircount",   required_argument, 0, 'D'},
1221                 {"stripe_index",      required_argument, 0, 'i'},
1222                 {"mode",              required_argument, 0, 'm'},
1223                 {"count",             required_argument, 0, 'n'},
1224                 {"time",              required_argument, 0, 't'},
1225                 {"version",           no_argument,       0, 'v'},
1226                 {0, 0, 0, 0}
1227         };
1228
1229         optind = 0;
1230         while ((c = getopt_long(argc, argv, "b:c:d:D:m:n:t:v",
1231                                 long_opts, NULL)) >= 0) {
1232                 switch (c) {
1233                 case 'b':
1234                         child_base_id = strtoull(optarg, &end, 0);
1235                         if (*end) {
1236                                 fprintf(stderr, "error: %s: bad child_base_id"
1237                                         " '%s'\n", jt_cmdname(argv[0]), optarg);
1238                                 return CMD_HELP;
1239                         }
1240                         break;
1241                 case 'c':
1242                         stripe_count = strtoul(optarg, &end, 0);
1243                         if (*end) {
1244                                 fprintf(stderr, "error: %s: bad stripe count"
1245                                         " '%s'\n", jt_cmdname(argv[0]), optarg);
1246                                 return CMD_HELP;
1247                         }
1248                         break;
1249                 case 'd':
1250                         parent_basedir = optarg;
1251                         break;
1252                 case 'D':
1253                         parent_count = strtoul(optarg, &end, 0);
1254                         if (*end) {
1255                                 fprintf(stderr, "error: %s: bad parent count"
1256                                         " '%s'\n", jt_cmdname(argv[0]), optarg);
1257                                 return CMD_HELP;
1258                         }
1259                         break;
1260                 case 'i':
1261                         stripe_index = strtoul(optarg, &end, 0);
1262                         if (*end) {
1263                                 fprintf(stderr, "error: %s: bad stripe index"
1264                                         " '%s'\n", jt_cmdname(argv[0]), optarg);
1265                                 return CMD_HELP;
1266                         }
1267                         break;
1268                 case 'm':
1269                         mode = strtoul(optarg, &end, 0);
1270                         if (*end) {
1271                                 fprintf(stderr, "error: %s: bad mode '%s'\n",
1272                                         jt_cmdname(argv[0]), optarg);
1273                                 return CMD_HELP;
1274                         }
1275                         break;
1276                 case 'n':
1277                         total_count = strtoul(optarg, &end, 0);
1278                         if (*end || total_count == 0) {
1279                                 fprintf(stderr, "%s: bad child count '%s'\n",
1280                                         jt_cmdname(argv[0]), optarg);
1281                                 return CMD_HELP;
1282                         }
1283                         break;
1284                 case 't':
1285                         seconds = strtoull(optarg, &end, 0);
1286                         if (*end) {
1287                                 fprintf(stderr, "error: %s: seconds '%s'\n",
1288                                         jt_cmdname(argv[0]), optarg);
1289                                 return CMD_HELP;
1290                         }
1291                         break;
1292                 case 'v':
1293                         version = 1;
1294                         break;
1295                 default:
1296                         fprintf(stderr, "error: %s: option '%s' "
1297                                 "unrecognized\n", argv[0], argv[optind - 1]);
1298                         return CMD_HELP;
1299                 }
1300         }
1301
1302         memset(&data, 0, sizeof(data));
1303         data.ioc_dev = cur_device;
1304         if (child_base_id == -1) {
1305                 if (optind >= argc)
1306                         return CMD_HELP;
1307                 name = argv[optind];
1308                 total_count = 1;
1309         } else {
1310                 if (optind < argc) {
1311                         fprintf(stderr, "child_base_id and name can not"
1312                                         " specified at the same time\n");
1313                         return CMD_HELP;
1314                 }
1315         }
1316
1317         if (stripe_count == 0 && stripe_index != -1) {
1318                 fprintf(stderr, "If stripe_count is 0, stripe_index can not"
1319                                 "be specified\n");
1320                 return CMD_HELP;
1321         }
1322
1323         if (total_count == 0 && seconds == 0) {
1324                 fprintf(stderr, "count or seconds needs to be indicated\n");
1325                 return CMD_HELP;
1326         }
1327
1328         if (parent_count <= 0) {
1329                 fprintf(stderr, "parent count must < 0\n");
1330                 return CMD_HELP;
1331         }
1332
1333 #ifdef MAX_THREADS
1334         if (thread) {
1335                 shmem_lock();
1336                 /* threads interleave */
1337                 if (parent_base_id != -1)
1338                         parent_base_id += (thread - 1) % parent_count;
1339
1340                 if (child_base_id != -1)
1341                         child_base_id +=  (thread - 1) * \
1342                                           (MAX_BASE_ID / nthreads);
1343
1344                 shmem_start_time_locked();
1345                 shmem_unlock();
1346         }
1347 #endif
1348         /* If parent directory is not specified, try to get the directory
1349          * from name */
1350         if (parent_basedir == NULL) {
1351                 char *last_lash;
1352                 if (name == NULL) {
1353                         fprintf(stderr, "parent_basedir or name must be"
1354                                         "indicated!\n");
1355                         return CMD_HELP;
1356                 }
1357                 /*Get directory and name from name*/
1358                 last_lash = strrchr(name, '/');
1359                 if (last_lash == NULL || name[0] != '/') {
1360                         fprintf(stderr, "Can not locate %s\n", name);
1361                         return CMD_HELP;
1362                 }
1363
1364                 if (last_lash == name) {
1365                         sprintf(dirname, "%s", "/");
1366                         name++;
1367                 } else {
1368                         int namelen = (unsigned long)last_lash -
1369                                       (unsigned long)name;
1370                         snprintf(dirname, namelen, "%s", name);
1371                 }
1372
1373                 data.ioc_pbuf1 = dirname;
1374                 data.ioc_plen1 = strlen(dirname);
1375
1376                 data.ioc_pbuf2 = name;
1377                 data.ioc_plen2 = strlen(name);
1378         } else {
1379                 if (name != NULL) {
1380                         data.ioc_pbuf2 = name;
1381                         data.ioc_plen2 = strlen(name);
1382                 } else {
1383                         if (parent_base_id > 0)
1384                                 sprintf(dirname, "%s%d", parent_basedir,
1385                                         parent_base_id);
1386                         else
1387                                 sprintf(dirname, "%s", parent_basedir);
1388                 }
1389                 data.ioc_pbuf1 = dirname;
1390                 data.ioc_plen1 = strlen(dirname);
1391         }
1392
1393         if (cmd == ECHO_MD_MKDIR || cmd == ECHO_MD_RMDIR)
1394                 create_mode = S_IFDIR;
1395         else
1396                 create_mode = S_IFREG;
1397
1398         data.ioc_obdo1.o_mode = mode | S_IFDIR;
1399         data.ioc_obdo1.o_valid = OBD_MD_FLID | OBD_MD_FLTYPE | OBD_MD_FLMODE |
1400                                  OBD_MD_FLFLAGS | OBD_MD_FLGROUP;
1401         data.ioc_command = cmd;
1402
1403         gettimeofday(&start, NULL);
1404         while (shmem_running()) {
1405                 struct lu_fid fid = { 0 };
1406
1407                 ostid_set_id(&data.ioc_obdo2.o_oi, child_base_id);
1408                 data.ioc_obdo2.o_mode = mode | create_mode;
1409                 data.ioc_obdo2.o_valid = OBD_MD_FLID | OBD_MD_FLTYPE |
1410                                          OBD_MD_FLMODE | OBD_MD_FLFLAGS |
1411                                          OBD_MD_FLGROUP;
1412                 data.ioc_obdo2.o_misc = stripe_count;
1413                 data.ioc_obdo2.o_stripe_idx = stripe_index;
1414
1415                 if (total_count > 0) {
1416                         if ((total_count - count) > MD_STEP_COUNT)
1417                                 data.ioc_count = MD_STEP_COUNT;
1418                         else
1419                                 data.ioc_count = total_count - count;
1420                 } else {
1421                         data.ioc_count = MD_STEP_COUNT;
1422                 }
1423
1424                 if (cmd == ECHO_MD_CREATE || cmd == ECHO_MD_MKDIR) {
1425                         /*Allocate fids for the create */
1426                         rc = jt_obd_alloc_fids(&fid_space, &fid,
1427                                                &data.ioc_count);
1428                         if (rc) {
1429                                 fprintf(stderr, "Allocate fids error %d.\n",rc);
1430                                 return rc;
1431                         }
1432                         fid_to_ostid(&fid, &data.ioc_obdo1.o_oi);
1433                 }
1434
1435                 child_base_id += data.ioc_count;
1436                 count += data.ioc_count;
1437
1438                 memset(buf, 0, sizeof(rawbuf));
1439                 rc = obd_ioctl_pack(&data, &buf, sizeof(rawbuf));
1440                 if (rc) {
1441                         fprintf(stderr, "error: %s: invalid ioctl %d\n",
1442                                 jt_cmdname(argv[0]), rc);
1443                         return rc;
1444                 }
1445
1446                 rc = l2_ioctl(OBD_DEV_ID, OBD_IOC_ECHO_MD, buf);
1447                 if (rc) {
1448                         fprintf(stderr, "error: %s: %s\n",
1449                                 jt_cmdname(argv[0]), strerror(rc = errno));
1450                         return rc;
1451                 }
1452                 shmem_bump(data.ioc_count);
1453
1454                 gettimeofday(&end_time, NULL);
1455                 diff = difftime(&end_time, &start);
1456                 if (seconds > 0 && (__u64)diff > seconds)
1457                         break;
1458
1459                 if (count >= total_count && total_count > 0)
1460                         break;
1461         }
1462
1463         if (count > 0 && version) {
1464                 gettimeofday(&end_time, NULL);
1465                 diff = difftime(&end_time, &start);
1466                 printf("%s: %d in %.3fs (%.3f /s): %s",
1467                         jt_cmdname(argv[0]), count, diff,
1468                         (double)count/diff, ctime(&end_time.tv_sec));
1469         }
1470
1471 #ifdef MAX_THREADS
1472         if (thread) {
1473                 shmem_lock();
1474                 shmem_end_time_locked();
1475                 shmem_unlock();
1476         }
1477 #endif
1478         return rc;
1479 }
1480
1481 int jt_obd_test_create(int argc, char **argv)
1482 {
1483         return jt_obd_md_common(argc, argv, ECHO_MD_CREATE);
1484 }
1485
1486 int jt_obd_test_mkdir(int argc, char **argv)
1487 {
1488         return jt_obd_md_common(argc, argv, ECHO_MD_MKDIR);
1489 }
1490
1491 int jt_obd_test_destroy(int argc, char **argv)
1492 {
1493         return jt_obd_md_common(argc, argv, ECHO_MD_DESTROY);
1494 }
1495
1496 int jt_obd_test_rmdir(int argc, char **argv)
1497 {
1498         return jt_obd_md_common(argc, argv, ECHO_MD_RMDIR);
1499 }
1500
1501 int jt_obd_test_lookup(int argc, char **argv)
1502 {
1503         return jt_obd_md_common(argc, argv, ECHO_MD_LOOKUP);
1504 }
1505
1506 int jt_obd_test_setxattr(int argc, char **argv)
1507 {
1508         return jt_obd_md_common(argc, argv, ECHO_MD_SETATTR);
1509 }
1510
1511 int jt_obd_test_md_getattr(int argc, char **argv)
1512 {
1513         return jt_obd_md_common(argc, argv, ECHO_MD_GETATTR);
1514 }
1515
1516 /* Create one or more objects, arg[4] may describe stripe meta-data.  If
1517  * not, defaults assumed.  This echo-client instance stashes the stripe
1518  * object ids.  Use get_stripe on this node to print full lsm and
1519  * set_stripe on another node to cut/paste between nodes.
1520  */
1521 /* create <count> [<file_create_mode>] [q|v|# verbosity] [striping] */
1522 int jt_obd_create(int argc, char **argv)
1523 {
1524         char rawbuf[MAX_IOC_BUFLEN], *buf = rawbuf;
1525         struct obd_ioctl_data data;
1526         struct timeval next_time;
1527         __u64 count = 1, next_count, base_id = 1;
1528         int verbose = 1, mode = 0100644, rc = 0, i, valid_lsm = 0;
1529         char *end;
1530
1531         memset(&data, 0, sizeof(data));
1532         data.ioc_dev = cur_device;
1533         if (argc < 2 || argc > 5)
1534                 return CMD_HELP;
1535
1536         count = strtoull(argv[1], &end, 0);
1537         if (*end) {
1538                 fprintf(stderr, "error: %s: invalid iteration count '%s'\n",
1539                         jt_cmdname(argv[0]), argv[1]);
1540                 return CMD_HELP;
1541         }
1542
1543         if (argc > 2) {
1544                 mode = strtoul(argv[2], &end, 0);
1545                 if (*end) {
1546                         fprintf(stderr, "error: %s: invalid mode '%s'\n",
1547                                 jt_cmdname(argv[0]), argv[2]);
1548                         return CMD_HELP;
1549                 }
1550                 if (!(mode & S_IFMT))
1551                         mode |= S_IFREG;
1552         }
1553
1554         if (argc > 3) {
1555                 verbose = get_verbose(argv[0], argv[3]);
1556                 if (verbose == BAD_VERBOSE)
1557                         return CMD_HELP;
1558         }
1559
1560         if (argc < 5) {
1561                 reset_lsmb(&lsm_buffer);       /* will set default */
1562         } else {
1563                 rc = parse_lsm(&lsm_buffer, argv[4]);
1564                 if (rc != 0) {
1565                         fprintf(stderr, "error: %s: invalid lsm '%s'\n",
1566                                 jt_cmdname(argv[0]), argv[4]);
1567                         return CMD_HELP;
1568                 }
1569                 base_id = ostid_id(&lsm_buffer.lsm.lsm_oi);
1570                 valid_lsm = 1;
1571         }
1572
1573         printf("%s: "LPD64" objects\n", jt_cmdname(argv[0]), count);
1574         gettimeofday(&next_time, NULL);
1575         next_time.tv_sec -= verbose;
1576
1577         ostid_set_seq_echo(&data.ioc_obdo1.o_oi);
1578         for (i = 1, next_count = verbose; i <= count && shmem_running(); i++) {
1579                 data.ioc_obdo1.o_mode = mode;
1580                 ostid_set_id(&data.ioc_obdo1.o_oi, base_id);
1581                 data.ioc_obdo1.o_uid = 0;
1582                 data.ioc_obdo1.o_gid = 0;
1583                 data.ioc_obdo1.o_valid = OBD_MD_FLTYPE | OBD_MD_FLMODE |
1584                                          OBD_MD_FLID | OBD_MD_FLUID |
1585                                          OBD_MD_FLGID | OBD_MD_FLGROUP;
1586                 if (valid_lsm) {
1587                         data.ioc_plen1 = sizeof lsm_buffer;
1588                         data.ioc_pbuf1 = (char *)&lsm_buffer;
1589                 }
1590
1591                 memset(buf, 0, sizeof(rawbuf));
1592                 rc = obd_ioctl_pack(&data, &buf, sizeof(rawbuf));
1593                 if (rc) {
1594                         fprintf(stderr, "error: %s: invalid ioctl\n",
1595                                 jt_cmdname(argv[0]));
1596                         return rc;
1597                 }
1598                 rc = l2_ioctl(OBD_DEV_ID, OBD_IOC_CREATE, buf);
1599                 obd_ioctl_unpack(&data, buf, sizeof(rawbuf));
1600                 shmem_bump(1);
1601                 if (rc < 0) {
1602                         fprintf(stderr, "error: %s: #%d - %s\n",
1603                                 jt_cmdname(argv[0]), i, strerror(rc = errno));
1604                         break;
1605                 }
1606                 if (!(data.ioc_obdo1.o_valid & OBD_MD_FLID)) {
1607                         fprintf(stderr,"error: %s: oid not valid #%d:"LPX64"\n",
1608                                 jt_cmdname(argv[0]), i, data.ioc_obdo1.o_valid);
1609                         rc = EINVAL;
1610                         break;
1611                 }
1612
1613                 if (be_verbose(verbose, &next_time, i, &next_count, count))
1614                         printf("%s: #%d is object id "LPX64"\n",
1615                                jt_cmdname(argv[0]), i,
1616                                ostid_id(&data.ioc_obdo1.o_oi));
1617         }
1618         return rc;
1619 }
1620
1621 int jt_obd_setattr(int argc, char **argv)
1622 {
1623         struct obd_ioctl_data data;
1624         char rawbuf[MAX_IOC_BUFLEN], *buf = rawbuf;
1625         char *end;
1626         int rc;
1627
1628         memset(&data, 0, sizeof(data));
1629         data.ioc_dev = cur_device;
1630         if (argc != 2)
1631                 return CMD_HELP;
1632
1633         ostid_set_seq_echo(&data.ioc_obdo1.o_oi);
1634         ostid_set_id(&data.ioc_obdo1.o_oi, strtoull(argv[1], &end, 0));
1635         if (*end) {
1636                 fprintf(stderr, "error: %s: invalid objid '%s'\n",
1637                         jt_cmdname(argv[0]), argv[1]);
1638                 return CMD_HELP;
1639         }
1640         data.ioc_obdo1.o_mode = S_IFREG | strtoul(argv[2], &end, 0);
1641         if (*end) {
1642                 fprintf(stderr, "error: %s: invalid mode '%s'\n",
1643                         jt_cmdname(argv[0]), argv[2]);
1644                 return CMD_HELP;
1645         }
1646         data.ioc_obdo1.o_valid = OBD_MD_FLID | OBD_MD_FLTYPE | OBD_MD_FLMODE;
1647
1648         memset(buf, 0, sizeof(rawbuf));
1649         rc = obd_ioctl_pack(&data, &buf, sizeof(rawbuf));
1650         if (rc) {
1651                 fprintf(stderr, "error: %s: invalid ioctl\n",
1652                         jt_cmdname(argv[0]));
1653                 return rc;
1654         }
1655         rc = l2_ioctl(OBD_DEV_ID, OBD_IOC_SETATTR, buf);
1656         if (rc < 0)
1657                 fprintf(stderr, "error: %s: %s\n", jt_cmdname(argv[0]),
1658                         strerror(rc = errno));
1659
1660         return rc;
1661 }
1662
1663 int jt_obd_test_setattr(int argc, char **argv)
1664 {
1665         struct obd_ioctl_data data;
1666         struct timeval start, next_time;
1667         __u64 i, count, next_count;
1668         char rawbuf[MAX_IOC_BUFLEN], *buf = rawbuf;
1669         int verbose = 1;
1670         obd_id objid = 3;
1671         char *end;
1672         int rc = 0;
1673
1674         if (argc < 2 || argc > 4)
1675                 return CMD_HELP;
1676
1677         memset(&data, 0, sizeof(data));
1678         data.ioc_dev = cur_device;
1679         count = strtoull(argv[1], &end, 0);
1680         if (*end) {
1681                 fprintf(stderr, "error: %s: invalid iteration count '%s'\n",
1682                         jt_cmdname(argv[0]), argv[1]);
1683                 return CMD_HELP;
1684         }
1685
1686         if (argc >= 3) {
1687                 verbose = get_verbose(argv[0], argv[2]);
1688                 if (verbose == BAD_VERBOSE)
1689                         return CMD_HELP;
1690         }
1691
1692         if (argc >= 4) {
1693                 if (argv[3][0] == 't') {
1694                         objid = strtoull(argv[3] + 1, &end, 0);
1695                         if (thread)
1696                                 objid += thread - 1;
1697                 } else
1698                         objid = strtoull(argv[3], &end, 0);
1699                 if (*end) {
1700                         fprintf(stderr, "error: %s: invalid objid '%s'\n",
1701                                 jt_cmdname(argv[0]), argv[3]);
1702                         return CMD_HELP;
1703                 }
1704         }
1705
1706         gettimeofday(&start, NULL);
1707         next_time.tv_sec = start.tv_sec - verbose;
1708         next_time.tv_usec = start.tv_usec;
1709         if (verbose != 0)
1710                 printf("%s: setting "LPD64" attrs (objid "LPX64"): %s",
1711                        jt_cmdname(argv[0]), count, objid, ctime(&start.tv_sec));
1712
1713         ostid_set_seq_echo(&data.ioc_obdo1.o_oi);
1714         for (i = 1, next_count = verbose; i <= count && shmem_running(); i++) {
1715                 ostid_set_id(&data.ioc_obdo1.o_oi, objid);
1716                 data.ioc_obdo1.o_mode = S_IFREG;
1717                 data.ioc_obdo1.o_valid = OBD_MD_FLID | OBD_MD_FLTYPE | OBD_MD_FLMODE;
1718                 memset(buf, 0, sizeof(rawbuf));
1719                 rc = obd_ioctl_pack(&data, &buf, sizeof(rawbuf));
1720                 if (rc) {
1721                         fprintf(stderr, "error: %s: invalid ioctl\n",
1722                                 jt_cmdname(argv[0]));
1723                         return rc;
1724                 }
1725                 rc = l2_ioctl(OBD_DEV_ID, OBD_IOC_SETATTR, &data);
1726                 shmem_bump(1);
1727                 if (rc < 0) {
1728                         fprintf(stderr, "error: %s: #"LPD64" - %d:%s\n",
1729                                 jt_cmdname(argv[0]), i, errno, strerror(rc = errno));
1730                         break;
1731                 } else {
1732                         if (be_verbose
1733                             (verbose, &next_time, i, &next_count, count))
1734                                 printf("%s: set attr #"LPD64"\n",
1735                                        jt_cmdname(argv[0]), i);
1736                 }
1737         }
1738
1739         if (!rc) {
1740                 struct timeval end;
1741                 double diff;
1742
1743                 gettimeofday(&end, NULL);
1744
1745                 diff = difftime(&end, &start);
1746
1747                 --i;
1748                 if (verbose != 0)
1749                         printf("%s: "LPD64" attrs in %.3fs (%.3f attr/s): %s",
1750                                jt_cmdname(argv[0]), i, diff, i / diff,
1751                                ctime(&end.tv_sec));
1752         }
1753         return rc;
1754 }
1755
1756 int jt_obd_destroy(int argc, char **argv)
1757 {
1758         struct obd_ioctl_data data;
1759         struct timeval next_time;
1760         char rawbuf[MAX_IOC_BUFLEN], *buf = rawbuf;
1761         __u64 count = 1, next_count;
1762         int verbose = 1;
1763         __u64 id;
1764         char *end;
1765         int rc = 0, i;
1766
1767         memset(&data, 0, sizeof(data));
1768         data.ioc_dev = cur_device;
1769         if (argc < 2 || argc > 4)
1770                 return CMD_HELP;
1771
1772         id = strtoull(argv[1], &end, 0);
1773         if (*end || id == 0 || errno != 0) {
1774                 fprintf(stderr, "error: %s: invalid objid '%s'\n",
1775                         jt_cmdname(argv[0]), argv[1]);
1776                 return CMD_HELP;
1777         }
1778         if (argc > 2) {
1779                 count = strtoull(argv[2], &end, 0);
1780                 if (*end) {
1781                         fprintf(stderr,
1782                                 "error: %s: invalid iteration count '%s'\n",
1783                                 jt_cmdname(argv[0]), argv[2]);
1784                         return CMD_HELP;
1785                 }
1786         }
1787
1788         if (argc > 3) {
1789                 verbose = get_verbose(argv[0], argv[3]);
1790                 if (verbose == BAD_VERBOSE)
1791                         return CMD_HELP;
1792         }
1793
1794         printf("%s: "LPD64" objects\n", jt_cmdname(argv[0]), count);
1795         gettimeofday(&next_time, NULL);
1796         next_time.tv_sec -= verbose;
1797
1798         ostid_set_seq_echo(&data.ioc_obdo1.o_oi);
1799         for (i = 1, next_count = verbose; i <= count && shmem_running(); i++, id++) {
1800                 ostid_set_id(&data.ioc_obdo1.o_oi, id);
1801                 data.ioc_obdo1.o_mode = S_IFREG | 0644;
1802                 data.ioc_obdo1.o_valid = OBD_MD_FLID | OBD_MD_FLMODE;
1803
1804                 memset(buf, 0, sizeof(rawbuf));
1805                 rc = obd_ioctl_pack(&data, &buf, sizeof(rawbuf));
1806                 if (rc) {
1807                         fprintf(stderr, "error: %s: invalid ioctl\n",
1808                                 jt_cmdname(argv[0]));
1809                         return rc;
1810                 }
1811                 rc = l2_ioctl(OBD_DEV_ID, OBD_IOC_DESTROY, buf);
1812                 obd_ioctl_unpack(&data, buf, sizeof(rawbuf));
1813                 shmem_bump(1);
1814                 if (rc < 0) {
1815                         fprintf(stderr, "error: %s: objid "LPX64": %s\n",
1816                                 jt_cmdname(argv[0]), id, strerror(rc = errno));
1817                         break;
1818                 }
1819
1820                 if (be_verbose(verbose, &next_time, i, &next_count, count))
1821                         printf("%s: #%d is object id "LPX64"\n",
1822                                jt_cmdname(argv[0]), i, id);
1823         }
1824
1825         return rc;
1826 }
1827
1828 int jt_obd_getattr(int argc, char **argv)
1829 {
1830         struct obd_ioctl_data data;
1831         char rawbuf[MAX_IOC_BUFLEN], *buf = rawbuf;
1832         char *end;
1833         int rc;
1834
1835         if (argc != 2)
1836                 return CMD_HELP;
1837
1838         memset(&data, 0, sizeof(data));
1839         data.ioc_dev = cur_device;
1840         ostid_set_seq_echo(&data.ioc_obdo1.o_oi);
1841         ostid_set_id(&data.ioc_obdo1.o_oi, strtoull(argv[1], &end, 0));
1842         if (*end) {
1843                 fprintf(stderr, "error: %s: invalid objid '%s'\n",
1844                         jt_cmdname(argv[0]), argv[1]);
1845                 return CMD_HELP;
1846         }
1847         /* to help obd filter */
1848         data.ioc_obdo1.o_mode = 0100644;
1849         data.ioc_obdo1.o_valid = 0xffffffff;
1850         printf("%s: object id "LPX64"\n", jt_cmdname(argv[0]),
1851                ostid_id(&data.ioc_obdo1.o_oi));
1852
1853         memset(buf, 0, sizeof(rawbuf));
1854         rc = obd_ioctl_pack(&data, &buf, sizeof(rawbuf));
1855         if (rc) {
1856                 fprintf(stderr, "error: %s: invalid ioctl\n",
1857                         jt_cmdname(argv[0]));
1858                 return rc;
1859         }
1860         rc = l2_ioctl(OBD_DEV_ID, OBD_IOC_GETATTR, buf);
1861         obd_ioctl_unpack(&data, buf, sizeof(rawbuf));
1862         if (rc) {
1863                 fprintf(stderr, "error: %s: %s\n", jt_cmdname(argv[0]),
1864                         strerror(rc = errno));
1865         } else {
1866                 printf("%s: object id "LPU64", mode %o\n", jt_cmdname(argv[0]),
1867                        ostid_id(&data.ioc_obdo1.o_oi), data.ioc_obdo1.o_mode);
1868         }
1869         return rc;
1870 }
1871
1872 int jt_obd_test_getattr(int argc, char **argv)
1873 {
1874         struct obd_ioctl_data data;
1875         struct timeval start, next_time;
1876         char rawbuf[MAX_IOC_BUFLEN], *buf = rawbuf;
1877         __u64 i, count, next_count;
1878         int verbose = 1;
1879         obd_id objid = 3;
1880         char *end;
1881         int rc = 0;
1882
1883         if (argc < 2 || argc > 4)
1884                 return CMD_HELP;
1885
1886         memset(&data, 0, sizeof(data));
1887         data.ioc_dev = cur_device;
1888         count = strtoull(argv[1], &end, 0);
1889         if (*end) {
1890                 fprintf(stderr, "error: %s: invalid iteration count '%s'\n",
1891                         jt_cmdname(argv[0]), argv[1]);
1892                 return CMD_HELP;
1893         }
1894
1895         if (argc >= 3) {
1896                 verbose = get_verbose(argv[0], argv[2]);
1897                 if (verbose == BAD_VERBOSE)
1898                         return CMD_HELP;
1899         }
1900
1901         if (argc >= 4) {
1902                 if (argv[3][0] == 't') {
1903                         objid = strtoull(argv[3] + 1, &end, 0);
1904                         if (thread)
1905                                 objid += thread - 1;
1906                 } else
1907                         objid = strtoull(argv[3], &end, 0);
1908                 if (*end) {
1909                         fprintf(stderr, "error: %s: invalid objid '%s'\n",
1910                                 jt_cmdname(argv[0]), argv[3]);
1911                         return CMD_HELP;
1912                 }
1913         }
1914
1915         gettimeofday(&start, NULL);
1916         next_time.tv_sec = start.tv_sec - verbose;
1917         next_time.tv_usec = start.tv_usec;
1918         if (verbose != 0)
1919                 printf("%s: getting "LPD64" attrs (objid "LPX64"): %s",
1920                        jt_cmdname(argv[0]), count, objid, ctime(&start.tv_sec));
1921
1922         ostid_set_seq_echo(&data.ioc_obdo1.o_oi);
1923         for (i = 1, next_count = verbose; i <= count && shmem_running(); i++) {
1924                 ostid_set_id(&data.ioc_obdo1.o_oi, objid);
1925                 data.ioc_obdo1.o_mode = S_IFREG;
1926                 data.ioc_obdo1.o_valid = 0xffffffff;
1927                 memset(buf, 0, sizeof(rawbuf));
1928                 rc = obd_ioctl_pack(&data, &buf, sizeof(rawbuf));
1929                 if (rc) {
1930                         fprintf(stderr, "error: %s: invalid ioctl\n",
1931                                 jt_cmdname(argv[0]));
1932                         return rc;
1933                 }
1934                 rc = l2_ioctl(OBD_DEV_ID, OBD_IOC_GETATTR, &data);
1935                 shmem_bump(1);
1936                 if (rc < 0) {
1937                         fprintf(stderr, "error: %s: #"LPD64" - %d:%s\n",
1938                                 jt_cmdname(argv[0]), i, errno, strerror(rc = errno));
1939                         break;
1940                 } else {
1941                         if (be_verbose
1942                             (verbose, &next_time, i, &next_count, count))
1943                                 printf("%s: got attr #"LPD64"\n",
1944                                        jt_cmdname(argv[0]), i);
1945                 }
1946         }
1947
1948         if (!rc) {
1949                 struct timeval end;
1950                 double diff;
1951
1952                 gettimeofday(&end, NULL);
1953
1954                 diff = difftime(&end, &start);
1955
1956                 --i;
1957                 if (verbose != 0)
1958                         printf("%s: "LPD64" attrs in %.3fs (%.3f attr/s): %s",
1959                                jt_cmdname(argv[0]), i, diff, i / diff,
1960                                ctime(&end.tv_sec));
1961         }
1962         return rc;
1963 }
1964
1965 /* test_brw <cnt>                                               count
1966         <r|w[r(repeat)x(noverify)]>                             mode
1967         <q|v|#(print interval)>                                 verbosity
1968         <npages[+offset]>                                       blocksize
1969         <[[<interleave_threads>]t(inc obj by thread#)]obj>      object
1970         [p|g<args>]                                             batch */
1971 int jt_obd_test_brw(int argc, char **argv)
1972 {
1973         struct obd_ioctl_data data;
1974         struct timeval start, next_time;
1975         char rawbuf[MAX_IOC_BUFLEN], *buf = rawbuf;
1976         __u64 count, next_count, len, stride, thr_offset = 0, objid = 3;
1977         int write = 0, verbose = 1, cmd, i, rc = 0, pages = 1;
1978         int offset_pages = 0;
1979         long n;
1980         int repeat_offset = 0;
1981         unsigned long long ull;
1982         int  nthr_per_obj = 0;
1983         int  verify = 1;
1984         int  obj_idx = 0;
1985         char *end;
1986
1987         if (argc < 2 || argc > 7) {
1988                 fprintf(stderr, "error: %s: bad number of arguments: %d\n",
1989                         jt_cmdname(argv[0]), argc);
1990                 return CMD_HELP;
1991         }
1992
1993         count = strtoull(argv[1], &end, 0);
1994         if (*end) {
1995                 fprintf(stderr, "error: %s: bad iteration count '%s'\n",
1996                         jt_cmdname(argv[0]), argv[1]);
1997                 return CMD_HELP;
1998         }
1999
2000         if (argc >= 3) {
2001                 if (argv[2][0] == 'w' || argv[2][0] == '1')
2002                         write = 1;
2003                 /* else it's a read */
2004
2005                 if (argv[2][0] != 0)
2006                         for (i = 1; argv[2][i] != 0; i++)
2007                                 switch (argv[2][i]) {
2008                                 case 'r':
2009                                         repeat_offset = 1;
2010                                         break;
2011
2012                                 case 'x':
2013                                         verify = 0;
2014                                         break;
2015
2016                                 default:
2017                                         fprintf (stderr, "Can't parse cmd '%s'\n",
2018                                                  argv[2]);
2019                                         return CMD_HELP;
2020                                 }
2021         }
2022
2023         if (argc >= 4) {
2024                 verbose = get_verbose(argv[0], argv[3]);
2025                 if (verbose == BAD_VERBOSE)
2026                         return CMD_HELP;
2027         }
2028
2029         if (argc >= 5) {
2030                 pages = strtoul(argv[4], &end, 0);
2031
2032                 if (*end == '+')
2033                         offset_pages = strtoul(end + 1, &end, 0);
2034
2035                 if (*end != 0 ||
2036                     offset_pages < 0 || offset_pages >= pages) {
2037                         fprintf(stderr, "error: %s: bad npages[+offset] parameter '%s'\n",
2038                                 jt_cmdname(argv[0]), argv[4]);
2039                         return CMD_HELP;
2040                 }
2041         }
2042
2043         if (argc >= 6) {
2044                 if (thread &&
2045                     (n = strtol(argv[5], &end, 0)) > 0 &&
2046                     *end == 't' &&
2047                     (ull = strtoull(end + 1, &end, 0)) > 0 &&
2048                     *end == 0) {
2049                         nthr_per_obj = n;
2050                         objid = ull;
2051                 } else if (thread &&
2052                            argv[5][0] == 't') {
2053                         nthr_per_obj = 1;
2054                         objid = strtoull(argv[5] + 1, &end, 0);
2055                 } else {
2056                         nthr_per_obj = 0;
2057                         objid = strtoull(argv[5], &end, 0);
2058                 }
2059                 if (*end) {
2060                         fprintf(stderr, "error: %s: bad objid '%s'\n",
2061                                 jt_cmdname(argv[0]), argv[5]);
2062                         return CMD_HELP;
2063                 }
2064         }
2065
2066         memset(&data, 0, sizeof(data));
2067         data.ioc_dev = cur_device;
2068
2069         /* communicate the 'type' of brw test and batching to echo_client.
2070          * don't start.  we'd love to refactor this lctl->echo_client
2071          * interface */
2072         data.ioc_pbuf1 = (void *)1;
2073         data.ioc_plen1 = 1;
2074
2075         if (argc >= 7) {
2076                 switch(argv[6][0]) {
2077                         case 'g': /* plug and unplug */
2078                                 data.ioc_pbuf1 = (void *)2;
2079                                 data.ioc_plen1 = strtoull(argv[6] + 1, &end,
2080                                                           0);
2081                                 break;
2082                         case 'p': /* prep and commit */
2083                                 data.ioc_pbuf1 = (void *)3;
2084                                 data.ioc_plen1 = strtoull(argv[6] + 1, &end,
2085                                                           0);
2086                                 break;
2087                         default:
2088                                 fprintf(stderr, "error: %s: batching '%s' "
2089                                         "needs to specify 'p' or 'g'\n",
2090                                         jt_cmdname(argv[0]), argv[6]);
2091                                 return CMD_HELP;
2092                 }
2093
2094                 if (*end) {
2095                         fprintf(stderr, "error: %s: bad batching '%s'\n",
2096                                 jt_cmdname(argv[0]), argv[6]);
2097                         return CMD_HELP;
2098                 }
2099                 data.ioc_plen1 *= getpagesize();
2100         }
2101
2102         len = pages * getpagesize();
2103         thr_offset = offset_pages * getpagesize();
2104         stride = len;
2105
2106 #ifdef MAX_THREADS
2107         if (thread) {
2108                 shmem_lock ();
2109                 if (nthr_per_obj != 0) {
2110                         /* threads interleave */
2111                         obj_idx = (thread - 1)/nthr_per_obj;
2112                         objid += obj_idx;
2113                         stride *= nthr_per_obj;
2114                         if ((thread - 1) % nthr_per_obj == 0) {
2115                                 shared_data->body.offsets[obj_idx] =
2116                                         stride + thr_offset;
2117                         }
2118                         thr_offset += ((thread - 1) % nthr_per_obj) * len;
2119                 } else {
2120                         /* threads disjoint */
2121                         thr_offset += (thread - 1) * len;
2122                 }
2123
2124                 shmem_start_time_locked();
2125                 shmem_unlock ();
2126         }
2127 #endif
2128
2129         ostid_set_seq_echo(&data.ioc_obdo1.o_oi);
2130         ostid_set_id(&data.ioc_obdo1.o_oi, objid);
2131         data.ioc_obdo1.o_mode = S_IFREG;
2132         data.ioc_obdo1.o_valid = OBD_MD_FLID | OBD_MD_FLTYPE | OBD_MD_FLMODE |
2133                                  OBD_MD_FLFLAGS | OBD_MD_FLGROUP;
2134         data.ioc_obdo1.o_flags = (verify ? OBD_FL_DEBUG_CHECK : 0);
2135         data.ioc_count = len;
2136         data.ioc_offset = (repeat_offset ? 0 : thr_offset);
2137
2138         gettimeofday(&start, NULL);
2139         next_time.tv_sec = start.tv_sec - verbose;
2140         next_time.tv_usec = start.tv_usec;
2141
2142         if (verbose != 0)
2143                 printf("%s: %s "LPU64"x%d pages (obj "LPX64", off "LPU64"): %s",
2144                        jt_cmdname(argv[0]), write ? "writing" : "reading", count,
2145                        pages, objid, data.ioc_offset, ctime(&start.tv_sec));
2146
2147         cmd = write ? OBD_IOC_BRW_WRITE : OBD_IOC_BRW_READ;
2148         for (i = 1, next_count = verbose; i <= count && shmem_running(); i++) {
2149                 data.ioc_obdo1.o_valid &= ~(OBD_MD_FLBLOCKS|OBD_MD_FLGRANT);
2150                 memset(buf, 0, sizeof(rawbuf));
2151                 rc = obd_ioctl_pack(&data, &buf, sizeof(rawbuf));
2152                 if (rc) {
2153                         fprintf(stderr, "error: %s: invalid ioctl\n",
2154                                 jt_cmdname(argv[0]));
2155                         return rc;
2156                 }
2157                 rc = l2_ioctl(OBD_DEV_ID, cmd, buf);
2158                 shmem_bump(1);
2159                 if (rc) {
2160                         fprintf(stderr, "error: %s: #%d - %s on %s\n",
2161                                 jt_cmdname(argv[0]), i, strerror(rc = errno),
2162                                 write ? "write" : "read");
2163                         break;
2164                 } else if (be_verbose(verbose, &next_time,i, &next_count,count)) {
2165                         shmem_lock ();
2166                         printf("%s: %s number %d @ "LPD64":"LPU64" for %d\n",
2167                                jt_cmdname(argv[0]), write ? "write" : "read", i,
2168                                ostid_id(&data.ioc_obdo1.o_oi), data.ioc_offset,
2169                                (int)(pages * getpagesize()));
2170                         shmem_unlock ();
2171                 }
2172
2173                 if (!repeat_offset) {
2174 #ifdef MAX_THREADS
2175                         if (stride == len) {
2176                                 data.ioc_offset += stride;
2177                         } else if (i < count) {
2178                                 shmem_lock ();
2179                                 data.ioc_offset =
2180                                         shared_data->body.offsets[obj_idx];
2181                                 shared_data->body.offsets[obj_idx] += len;
2182                                 shmem_unlock ();
2183                         }
2184 #else
2185                         data.ioc_offset += len;
2186                         obj_idx = 0; /* avoids an unused var warning */
2187 #endif
2188                 }
2189         }
2190
2191         if (!rc) {
2192                 struct timeval end;
2193                 double diff;
2194
2195                 gettimeofday(&end, NULL);
2196
2197                 diff = difftime(&end, &start);
2198
2199                 --i;
2200                 if (verbose != 0)
2201                         printf("%s: %s %dx%d pages in %.3fs (%.3f MB/s): %s",
2202                                jt_cmdname(argv[0]), write ? "wrote" : "read",
2203                                i, pages, diff,
2204                                ((double)i * pages * getpagesize()) /
2205                                (diff * 1048576.0),
2206                                ctime(&end.tv_sec));
2207         }
2208
2209 #ifdef MAX_THREADS
2210         if (thread) {
2211                 shmem_lock();
2212                 shmem_end_time_locked();
2213                 shmem_unlock();
2214         }
2215 #endif
2216         return rc;
2217 }
2218
2219 int jt_obd_lov_getconfig(int argc, char **argv)
2220 {
2221         struct obd_ioctl_data data;
2222         struct lov_desc desc;
2223         struct obd_uuid *uuidarray;
2224         char rawbuf[MAX_IOC_BUFLEN], *buf = rawbuf;
2225         __u32 *obdgens;
2226         char *path;
2227         int rc, fd;
2228
2229         memset(&data, 0, sizeof(data));
2230         data.ioc_dev = cur_device;
2231
2232         if (argc != 2)
2233                 return CMD_HELP;
2234
2235         path = argv[1];
2236         fd = open(path, O_RDONLY);
2237         if (fd < 0) {
2238                 fprintf(stderr, "open \"%s\" failed: %s\n", path,
2239                         strerror(errno));
2240                 return -errno;
2241         }
2242
2243         memset(&desc, 0, sizeof(desc));
2244         obd_str2uuid(&desc.ld_uuid, argv[1]);
2245         desc.ld_tgt_count = ((OBD_MAX_IOCTL_BUFFER-sizeof(data)-sizeof(desc)) /
2246                              (sizeof(*uuidarray) + sizeof(*obdgens)));
2247
2248 repeat:
2249         uuidarray = calloc(desc.ld_tgt_count, sizeof(*uuidarray));
2250         if (!uuidarray) {
2251                 fprintf(stderr, "error: %s: no memory for %d uuid's\n",
2252                         jt_cmdname(argv[0]), desc.ld_tgt_count);
2253                 rc = -ENOMEM;
2254                 goto out;
2255         }
2256         obdgens = calloc(desc.ld_tgt_count, sizeof(*obdgens));
2257         if (!obdgens) {
2258                 fprintf(stderr, "error: %s: no memory for %d generation #'s\n",
2259                         jt_cmdname(argv[0]), desc.ld_tgt_count);
2260                 rc = -ENOMEM;
2261                 goto out_uuidarray;
2262         }
2263
2264         memset(buf, 0, sizeof(rawbuf));
2265         data.ioc_inllen1 = sizeof(desc);
2266         data.ioc_inlbuf1 = (char *)&desc;
2267         data.ioc_inllen2 = desc.ld_tgt_count * sizeof(*uuidarray);
2268         data.ioc_inlbuf2 = (char *)uuidarray;
2269         data.ioc_inllen3 = desc.ld_tgt_count * sizeof(*obdgens);
2270         data.ioc_inlbuf3 = (char *)obdgens;
2271
2272         if (obd_ioctl_pack(&data, &buf, sizeof(rawbuf))) {
2273                 fprintf(stderr, "error: %s: invalid ioctl\n",
2274                         jt_cmdname(argv[0]));
2275                 rc = -EINVAL;
2276                 goto out_obdgens;
2277         }
2278         rc = ioctl(fd, OBD_IOC_LOV_GET_CONFIG, buf);
2279         if (rc == -ENOSPC) {
2280                 free(uuidarray);
2281                 free(obdgens);
2282                 goto repeat;
2283         } else if (rc) {
2284                 fprintf(stderr, "error: %s: ioctl error: %s\n",
2285                         jt_cmdname(argv[0]), strerror(rc = errno));
2286         } else {
2287                 struct obd_uuid *uuidp;
2288                 __u32 *genp;
2289                 int i;
2290
2291                 if (obd_ioctl_unpack(&data, buf, sizeof(rawbuf))) {
2292                         fprintf(stderr, "error: %s: invalid reply\n",
2293                                 jt_cmdname(argv[0]));
2294                         rc = -EINVAL;
2295                         goto out;
2296                 }
2297                 if (desc.ld_default_stripe_count == (__u32)-1)
2298                         printf("default_stripe_count: %d\n", -1);
2299                 else
2300                         printf("default_stripe_count: %u\n",
2301                                desc.ld_default_stripe_count);
2302                 printf("default_stripe_size: "LPU64"\n",
2303                        desc.ld_default_stripe_size);
2304                 printf("default_stripe_offset: "LPU64"\n",
2305                        desc.ld_default_stripe_offset);
2306                 printf("default_stripe_pattern: %u\n", desc.ld_pattern);
2307                 printf("obd_count: %u\n", desc.ld_tgt_count);
2308                 printf("OBDS:\tobdidx\t\tobdgen\t\t obduuid\n");
2309                 uuidp = uuidarray;
2310                 genp = obdgens;
2311                 for (i = 0; i < desc.ld_tgt_count; i++, uuidp++, genp++)
2312                         printf("\t%6u\t%14u\t\t %s\n", i, *genp, (char *)uuidp);
2313         }
2314 out_obdgens:
2315         free(obdgens);
2316 out_uuidarray:
2317         free(uuidarray);
2318 out:
2319         close(fd);
2320         return rc;
2321 }
2322
2323 int jt_obd_ldlm_regress_start(int argc, char **argv)
2324 {
2325         int rc;
2326         struct obd_ioctl_data data;
2327         char rawbuf[MAX_IOC_BUFLEN], *buf = rawbuf;
2328         char argstring[200];
2329         int i, count = sizeof(argstring) - 1;
2330
2331         memset(&data, 0, sizeof(data));
2332         data.ioc_dev = cur_device;
2333         if (argc > 5)
2334                 return CMD_HELP;
2335
2336         argstring[0] = '\0';
2337         for (i = 1; i < argc; i++) {
2338                 strncat(argstring, " ", count);
2339                 count--;
2340                 strncat(argstring, argv[i], count);
2341                 count -= strlen(argv[i]);
2342         }
2343
2344         if (strlen(argstring)) {
2345                 data.ioc_inlbuf1 = argstring;
2346                 data.ioc_inllen1 = strlen(argstring) + 1;
2347         }
2348
2349         memset(buf, 0, sizeof(rawbuf));
2350         rc = obd_ioctl_pack(&data, &buf, sizeof(rawbuf));
2351         if (rc) {
2352                 fprintf(stderr, "error: %s: invalid ioctl\n",
2353                         jt_cmdname(argv[0]));
2354                 return rc;
2355         }
2356         rc = l2_ioctl(OBD_DEV_ID, IOC_LDLM_REGRESS_START, buf);
2357         if (rc)
2358                 fprintf(stderr, "error: %s: test failed: %s\n",
2359                         jt_cmdname(argv[0]), strerror(rc = errno));
2360
2361         return rc;
2362 }
2363
2364 int jt_obd_ldlm_regress_stop(int argc, char **argv)
2365 {
2366         int rc;
2367         char rawbuf[MAX_IOC_BUFLEN], *buf = rawbuf;
2368         struct obd_ioctl_data data;
2369
2370         memset(&data, 0, sizeof(data));
2371         data.ioc_dev = cur_device;
2372
2373         if (argc != 1)
2374                 return CMD_HELP;
2375
2376         memset(buf, 0, sizeof(rawbuf));
2377         rc = obd_ioctl_pack(&data, &buf, sizeof(rawbuf));
2378         if (rc) {
2379                 fprintf(stderr, "error: %s: invalid ioctl\n",
2380                         jt_cmdname(argv[0]));
2381                 return rc;
2382         }
2383         rc = l2_ioctl(OBD_DEV_ID, IOC_LDLM_REGRESS_STOP, buf);
2384
2385         if (rc)
2386                 fprintf(stderr, "error: %s: test failed: %s\n",
2387                         jt_cmdname(argv[0]), strerror(rc = errno));
2388         return rc;
2389 }
2390
2391 static int do_activate(int argc, char **argv, int flag)
2392 {
2393         struct obd_ioctl_data data;
2394         char rawbuf[MAX_IOC_BUFLEN], *buf = rawbuf;
2395         int rc;
2396
2397         memset(&data, 0, sizeof(data));
2398         data.ioc_dev = cur_device;
2399         if (argc != 1)
2400                 return CMD_HELP;
2401
2402         /* reuse offset for 'active' */
2403         data.ioc_offset = flag;
2404
2405         memset(buf, 0, sizeof(rawbuf));
2406         rc = obd_ioctl_pack(&data, &buf, sizeof(rawbuf));
2407         if (rc) {
2408                 fprintf(stderr, "error: %s: invalid ioctl\n",
2409                         jt_cmdname(argv[0]));
2410                 return rc;
2411         }
2412         rc = l2_ioctl(OBD_DEV_ID, IOC_OSC_SET_ACTIVE, buf);
2413         if (rc)
2414                 fprintf(stderr, "error: %s: failed: %s\n",
2415                         jt_cmdname(argv[0]), strerror(rc = errno));
2416
2417         return rc;
2418 }
2419
2420 /**
2421  * Replace nids for given device.
2422  * lctl replace_nids <devicename> <nid1>[,nid2,nid3]
2423  * Command should be started on MGS server.
2424  * Only MGS server should be started (command execution
2425  * returns error in another cases). Command mount
2426  * -t lustre <MDT partition> -o nosvc <mount point>
2427  * can be used for that.
2428  *
2429  * llogs for MDTs and clients are processed. All
2430  * records copied as is except add_uuid and setup. This records
2431  * are skipped and recorded with new nids and uuid.
2432  *
2433  * \see mgs_replace_nids
2434  * \see mgs_replace_nids_log
2435  * \see mgs_replace_handler
2436  */
2437 int jt_replace_nids(int argc, char **argv)
2438 {
2439         int rc;
2440         char rawbuf[MAX_IOC_BUFLEN], *buf = rawbuf;
2441         struct obd_ioctl_data data;
2442
2443         memset(&data, 0, sizeof(data));
2444         data.ioc_dev = get_mgs_device();
2445         if (argc != 3)
2446                 return CMD_HELP;
2447
2448         data.ioc_inllen1 = strlen(argv[1]) + 1;
2449         data.ioc_inlbuf1 = argv[1];
2450
2451         data.ioc_inllen2 = strlen(argv[2]) + 1;
2452         data.ioc_inlbuf2 = argv[2];
2453         memset(buf, 0, sizeof(rawbuf));
2454         rc = obd_ioctl_pack(&data, &buf, sizeof(rawbuf));
2455         if (rc) {
2456                 fprintf(stderr, "error: %s: invalid ioctl\n",
2457                         jt_cmdname(argv[0]));
2458                 return rc;
2459         }
2460
2461         rc = l2_ioctl(OBD_DEV_ID, OBD_IOC_REPLACE_NIDS, buf);
2462         if (rc < 0) {
2463                 fprintf(stderr, "error: %s: %s\n", jt_cmdname(argv[0]),
2464                         strerror(rc = errno));
2465         }
2466
2467         return rc;
2468 }
2469
2470 int jt_obd_deactivate(int argc, char **argv)
2471 {
2472         return do_activate(argc, argv, 0);
2473 }
2474
2475 int jt_obd_activate(int argc, char **argv)
2476 {
2477         return do_activate(argc, argv, 1);
2478 }
2479
2480 int jt_obd_recover(int argc, char **argv)
2481 {
2482         int rc;
2483         char rawbuf[MAX_IOC_BUFLEN], *buf = rawbuf;
2484         struct obd_ioctl_data data;
2485
2486         memset(&data, 0, sizeof(data));
2487         data.ioc_dev = cur_device;
2488         if (argc > 2)
2489                 return CMD_HELP;
2490
2491         if (argc == 2) {
2492                 data.ioc_inllen1 = strlen(argv[1]) + 1;
2493                 data.ioc_inlbuf1 = argv[1];
2494         }
2495
2496         memset(buf, 0, sizeof(rawbuf));
2497         rc = obd_ioctl_pack(&data, &buf, sizeof(rawbuf));
2498         if (rc) {
2499                 fprintf(stderr, "error: %s: invalid ioctl\n",
2500                         jt_cmdname(argv[0]));
2501                 return rc;
2502         }
2503         rc = l2_ioctl(OBD_DEV_ID, OBD_IOC_CLIENT_RECOVER, buf);
2504         if (rc < 0) {
2505                 fprintf(stderr, "error: %s: %s\n", jt_cmdname(argv[0]),
2506                         strerror(rc = errno));
2507         }
2508
2509         return rc;
2510 }
2511
2512 int jt_obd_mdc_lookup(int argc, char **argv)
2513 {
2514         struct obd_ioctl_data data;
2515         char rawbuf[MAX_IOC_BUFLEN], *buf = rawbuf;
2516         char *parent, *child;
2517         int rc, fd, verbose = 1;
2518
2519         if (argc < 3 || argc > 4)
2520                 return CMD_HELP;
2521
2522         parent = argv[1];
2523         child = argv[2];
2524         if (argc == 4)
2525                 verbose = get_verbose(argv[0], argv[3]);
2526
2527         memset(&data, 0, sizeof(data));
2528         data.ioc_dev = cur_device;
2529
2530         data.ioc_inllen1 = strlen(child) + 1;
2531         data.ioc_inlbuf1 = child;
2532
2533         memset(buf, 0, sizeof(rawbuf));
2534         rc = obd_ioctl_pack(&data, &buf, sizeof(rawbuf));
2535         if (rc) {
2536                 fprintf(stderr, "error: %s: invalid ioctl\n",
2537                         jt_cmdname(argv[0]));
2538                 return rc;
2539         }
2540
2541         fd = open(parent, O_RDONLY);
2542         if (fd < 0) {
2543                 fprintf(stderr, "open \"%s\" failed: %s\n", parent,
2544                         strerror(errno));
2545                 return -1;
2546         }
2547
2548         rc = ioctl(fd, IOC_MDC_LOOKUP, buf);
2549         if (rc < 0) {
2550                 fprintf(stderr, "error: %s: ioctl error: %s\n",
2551                         jt_cmdname(argv[0]), strerror(rc = errno));
2552         }
2553         close(fd);
2554
2555         if (verbose) {
2556                 rc = obd_ioctl_unpack(&data, buf, sizeof(rawbuf));
2557                 if (rc) {
2558                         fprintf(stderr, "error: %s: invalid reply\n",
2559                                 jt_cmdname(argv[0]));
2560                         return rc;
2561                 }
2562                 printf("%s: mode %o uid %d gid %d\n", child,
2563                        data.ioc_obdo1.o_mode, data.ioc_obdo1.o_uid,
2564                        data.ioc_obdo1.o_gid);
2565         }
2566
2567         return rc;
2568 }
2569
2570 int jt_cfg_dump_log(int argc, char **argv)
2571 {
2572         struct obd_ioctl_data data;
2573         char rawbuf[MAX_IOC_BUFLEN], *buf = rawbuf;
2574         int rc;
2575
2576         if (argc != 2)
2577                 return CMD_HELP;
2578
2579         memset(&data, 0, sizeof(data));
2580         data.ioc_dev = cur_device;
2581         data.ioc_inllen1 = strlen(argv[1]) + 1;
2582         data.ioc_inlbuf1 = argv[1];
2583
2584         memset(buf, 0, sizeof(rawbuf));
2585         rc = obd_ioctl_pack(&data, &buf, sizeof(rawbuf));
2586         if (rc) {
2587                 fprintf(stderr, "error: %s: invalid ioctl\n",
2588                         jt_cmdname(argv[0]));
2589                 return rc;
2590         }
2591         rc = l_ioctl(OBD_DEV_ID, OBD_IOC_DUMP_LOG, buf);
2592         if (rc < 0)
2593                 fprintf(stderr, "OBD_IOC_DUMP_LOG failed: %s\n",
2594                         strerror(errno));
2595
2596         return rc;
2597 }
2598
2599 int jt_llog_catlist(int argc, char **argv)
2600 {
2601         struct obd_ioctl_data data;
2602         char rawbuf[MAX_IOC_BUFLEN], *buf = rawbuf;
2603         int rc;
2604
2605         if (argc != 1)
2606                 return CMD_HELP;
2607
2608         memset(&data, 0, sizeof(data));
2609         data.ioc_dev = cur_device;
2610         data.ioc_inllen1 = sizeof(rawbuf) - cfs_size_round(sizeof(data));
2611         memset(buf, 0, sizeof(rawbuf));
2612         rc = obd_ioctl_pack(&data, &buf, sizeof(rawbuf));
2613         if (rc) {
2614                 fprintf(stderr, "error: %s: invalid ioctl\n",
2615                         jt_cmdname(argv[0]));
2616                 return rc;
2617         }
2618         rc = l_ioctl(OBD_DEV_ID, OBD_IOC_CATLOGLIST, buf);
2619         if (rc == 0)
2620                 fprintf(stdout, "%s", ((struct obd_ioctl_data*)buf)->ioc_bulk);
2621         else
2622                 fprintf(stderr, "OBD_IOC_CATLOGLIST failed: %s\n",
2623                         strerror(errno));
2624
2625         return rc;
2626 }
2627
2628 int jt_llog_info(int argc, char **argv)
2629 {
2630         struct obd_ioctl_data data;
2631         char rawbuf[MAX_IOC_BUFLEN], *buf = rawbuf;
2632         int rc;
2633
2634         if (argc != 2)
2635                 return CMD_HELP;
2636
2637         memset(&data, 0, sizeof(data));
2638         data.ioc_dev = cur_device;
2639         data.ioc_inllen1 = strlen(argv[1]) + 1;
2640         data.ioc_inlbuf1 = argv[1];
2641         data.ioc_inllen2 = sizeof(rawbuf) - cfs_size_round(sizeof(data)) -
2642                 cfs_size_round(data.ioc_inllen1);
2643         memset(buf, 0, sizeof(rawbuf));
2644         rc = obd_ioctl_pack(&data, &buf, sizeof(rawbuf));
2645         if (rc) {
2646                 fprintf(stderr, "error: %s: invalid ioctl\n",
2647                         jt_cmdname(argv[0]));
2648                 return rc;
2649         }
2650
2651         rc = l_ioctl(OBD_DEV_ID, OBD_IOC_LLOG_INFO, buf);
2652         if (rc == 0)
2653                 fprintf(stdout, "%s", ((struct obd_ioctl_data*)buf)->ioc_bulk);
2654         else
2655                 fprintf(stderr, "OBD_IOC_LLOG_INFO failed: %s\n",
2656                         strerror(errno));
2657
2658         return rc;
2659 }
2660
2661 int jt_llog_print(int argc, char **argv)
2662 {
2663         struct obd_ioctl_data data;
2664         char rawbuf[MAX_IOC_BUFLEN], *buf = rawbuf;
2665         int rc;
2666
2667         if (argc != 2 && argc != 4)
2668                 return CMD_HELP;
2669
2670         memset(&data, 0, sizeof(data));
2671         data.ioc_dev = cur_device;
2672         data.ioc_inllen1 = strlen(argv[1]) + 1;
2673         data.ioc_inlbuf1 = argv[1];
2674         if (argc == 4) {
2675                 data.ioc_inllen2 = strlen(argv[2]) + 1;
2676                 data.ioc_inlbuf2 = argv[2];
2677                 data.ioc_inllen3 = strlen(argv[3]) + 1;
2678                 data.ioc_inlbuf3 = argv[3];
2679         } else {
2680                 char from[2] = "1", to[3] = "-1";
2681                 data.ioc_inllen2 = strlen(from) + 1;
2682                 data.ioc_inlbuf2 = from;
2683                 data.ioc_inllen3 = strlen(to) + 1;
2684                 data.ioc_inlbuf3 = to;
2685         }
2686         data.ioc_inllen4 = sizeof(rawbuf) - cfs_size_round(sizeof(data)) -
2687                 cfs_size_round(data.ioc_inllen1) -
2688                 cfs_size_round(data.ioc_inllen2) -
2689                 cfs_size_round(data.ioc_inllen3);
2690         memset(buf, 0, sizeof(rawbuf));
2691         rc = obd_ioctl_pack(&data, &buf, sizeof(rawbuf));
2692         if (rc) {
2693                 fprintf(stderr, "error: %s: invalid ioctl\n",
2694                         jt_cmdname(argv[0]));
2695                 return rc;
2696         }
2697
2698         rc = l_ioctl(OBD_DEV_ID, OBD_IOC_LLOG_PRINT, buf);
2699         if (rc == 0)
2700                 fprintf(stdout, "%s", ((struct obd_ioctl_data*)buf)->ioc_bulk);
2701         else
2702                 fprintf(stderr, "OBD_IOC_LLOG_PRINT failed: %s\n",
2703                         strerror(errno));
2704
2705         return rc;
2706 }
2707
2708 int jt_llog_cancel(int argc, char **argv)
2709 {
2710         struct obd_ioctl_data data;
2711         char rawbuf[MAX_IOC_BUFLEN], *buf = rawbuf;
2712         int rc;
2713
2714         if (argc != 4)
2715                 return CMD_HELP;
2716
2717         memset(&data, 0, sizeof(data));
2718         data.ioc_dev = cur_device;
2719         data.ioc_inllen1 = strlen(argv[1]) + 1;
2720         data.ioc_inlbuf1 = argv[1];
2721         data.ioc_inllen2 = strlen(argv[2]) + 1;
2722         data.ioc_inlbuf2 = argv[2];
2723         data.ioc_inllen3 = strlen(argv[3]) + 1;
2724         data.ioc_inlbuf3 = argv[3];
2725         memset(buf, 0, sizeof(rawbuf));
2726         rc = obd_ioctl_pack(&data, &buf, sizeof(rawbuf));
2727         if (rc) {
2728                 fprintf(stderr, "error: %s: invalid ioctl\n",
2729                         jt_cmdname(argv[0]));
2730                 return rc;
2731         }
2732
2733         rc = l_ioctl(OBD_DEV_ID, OBD_IOC_LLOG_CANCEL, buf);
2734         if (rc == 0)
2735                 fprintf(stdout, "index %s be canceled.\n", argv[3]);
2736         else
2737                 fprintf(stderr, "OBD_IOC_LLOG_CANCEL failed: %s\n",
2738                         strerror(errno));
2739
2740         return rc;
2741
2742 }
2743 int jt_llog_check(int argc, char **argv)
2744 {
2745         struct obd_ioctl_data data;
2746         char rawbuf[MAX_IOC_BUFLEN], *buf = rawbuf;
2747         int rc;
2748
2749         if (argc != 2 && argc != 4)
2750                 return CMD_HELP;
2751
2752         memset(&data, 0, sizeof(data));
2753         data.ioc_dev = cur_device;
2754         data.ioc_inllen1 = strlen(argv[1]) + 1;
2755         data.ioc_inlbuf1 = argv[1];
2756         if (argc == 4) {
2757                 data.ioc_inllen2 = strlen(argv[2]) + 1;
2758                 data.ioc_inlbuf2 = argv[2];
2759                 data.ioc_inllen3 = strlen(argv[3]) + 1;
2760                 data.ioc_inlbuf3 = argv[3];
2761         } else {
2762                 char from[2] = "1", to[3] = "-1";
2763                 data.ioc_inllen2 = strlen(from) + 1;
2764                 data.ioc_inlbuf2 = from;
2765                 data.ioc_inllen3 = strlen(to) + 1;
2766                 data.ioc_inlbuf3 = to;
2767         }
2768         data.ioc_inllen4 = sizeof(rawbuf) - cfs_size_round(sizeof(data)) -
2769                 cfs_size_round(data.ioc_inllen1) -
2770                 cfs_size_round(data.ioc_inllen2) -
2771                 cfs_size_round(data.ioc_inllen3);
2772         memset(buf, 0, sizeof(rawbuf));
2773         rc = obd_ioctl_pack(&data, &buf, sizeof(rawbuf));
2774         if (rc) {
2775                 fprintf(stderr, "error: %s: invalid ioctl\n",
2776                         jt_cmdname(argv[0]));
2777                 return rc;
2778         }
2779
2780         rc = l_ioctl(OBD_DEV_ID, OBD_IOC_LLOG_CHECK, buf);
2781         if (rc == 0)
2782                 fprintf(stdout, "%s", ((struct obd_ioctl_data*)buf)->ioc_bulk);
2783         else
2784                 fprintf(stderr, "OBD_IOC_LLOG_CHECK failed: %s\n",
2785                         strerror(errno));
2786         return rc;
2787 }
2788
2789 int jt_llog_remove(int argc, char **argv)
2790 {
2791         struct obd_ioctl_data data;
2792         char rawbuf[MAX_IOC_BUFLEN], *buf = rawbuf;
2793         int rc;
2794
2795         if (argc != 3 && argc != 2)
2796                 return CMD_HELP;
2797
2798         memset(&data, 0, sizeof(data));
2799         data.ioc_dev = cur_device;
2800         data.ioc_inllen1 = strlen(argv[1]) + 1;
2801         data.ioc_inlbuf1 = argv[1];
2802         if (argc == 3){
2803                 data.ioc_inllen2 = strlen(argv[2]) + 1;
2804                 data.ioc_inlbuf2 = argv[2];
2805         }
2806         memset(buf, 0, sizeof(rawbuf));
2807         rc = obd_ioctl_pack(&data, &buf, sizeof(rawbuf));
2808         if (rc) {
2809                 fprintf(stderr, "error: %s: invalid ioctl\n",
2810                         jt_cmdname(argv[0]));
2811                 return rc;
2812         }
2813
2814         rc = l_ioctl(OBD_DEV_ID, OBD_IOC_LLOG_REMOVE, buf);
2815         if (rc == 0) {
2816                 if (argc == 3)
2817                         fprintf(stdout, "log %s are removed.\n", argv[2]);
2818                 else
2819                         fprintf(stdout, "the log in catalog %s are removed. \n", argv[1]);
2820         } else
2821                 fprintf(stderr, "OBD_IOC_LLOG_REMOVE failed: %s\n",
2822                         strerror(errno));
2823
2824         return rc;
2825 }
2826
2827 /* attach a regular file to virtual block device.
2828  * return vaule:
2829  *  -1: fatal error
2830  *  1: error, it always means the command run failed
2831  *  0: success
2832  */
2833 static int jt_blockdev_run_process(const char *file, char *argv[])
2834 {
2835         pid_t pid;
2836         int rc;
2837
2838         pid = vfork();
2839         if (pid == 0) { /* child process */
2840                 /* don't print error messages */
2841                 close(1), close(2);
2842                 (void)execvp(file, argv);
2843                 exit(-1);
2844         } else if (pid > 0) {
2845                 int status;
2846
2847                 rc = waitpid(pid, &status, 0);
2848                 if (rc < 0 || !WIFEXITED(status))
2849                         return -1;
2850
2851                 return WEXITSTATUS(status);
2852         }
2853
2854         return -1;
2855 }
2856
2857 static int jt_blockdev_find_module(const char *module)
2858 {
2859         FILE *fp;
2860         int found = 0;
2861         char buf[1024];
2862         char *ptr;
2863
2864         fp = fopen("/proc/modules", "r");
2865         if (fp == NULL)
2866                 return -1;
2867
2868         while (fgets(buf, 1024, fp) != NULL) {
2869                 ptr = strchr(buf, ' ');
2870                 if (ptr != NULL)
2871                         *ptr = 0;
2872                 if (strcmp(module, buf) == 0) {
2873                         found = 1;
2874                         break;
2875                 }
2876         }
2877         fclose(fp);
2878
2879         return found;
2880 }
2881
2882 static int jt_blockdev_probe_module(const char *module)
2883 {
2884         char buf[1024];
2885         char *argv[10];
2886         int c, rc;
2887
2888         if (jt_blockdev_find_module(module) == 1)
2889                 return 0;
2890
2891         /* run modprobe first */
2892         c = 0;
2893         argv[c++] = "/sbin/modprobe";
2894         argv[c++] = "-q";
2895         argv[c++] = (char *)module;
2896         argv[c++] = NULL;
2897         rc = jt_blockdev_run_process("modprobe", argv);
2898         if (rc != 1)
2899                 return rc;
2900
2901         /* cannot find the module in default directory ... */
2902         sprintf(buf, "../llite/%s.ko", module);
2903         c = 0;
2904         argv[c++] = "/sbin/insmod";
2905         argv[c++] = buf;
2906         argv[c++] = NULL;
2907         rc = jt_blockdev_run_process("insmod", argv);
2908         return rc ? -1 : 0;
2909 }
2910
2911 int jt_blockdev_attach(int argc, char **argv)
2912 {
2913         int rc, fd;
2914         struct stat st;
2915         char *filename, *devname;
2916         unsigned long dev;
2917
2918         if (argc != 3)
2919                 return CMD_HELP;
2920
2921         if (jt_blockdev_probe_module("llite_lloop") < 0) {
2922                 fprintf(stderr, "error: cannot find module llite_lloop.(k)o\n");
2923                 return ENOENT;
2924         }
2925
2926         filename = argv[1];
2927         devname = argv[2];
2928
2929         fd = open(filename, O_RDWR);
2930         if (fd < 0) {
2931                 fprintf(stderr, "file %s can't be opened(%s)\n\n",
2932                         filename, strerror(errno));
2933                 return CMD_HELP;
2934         }
2935
2936         rc = ioctl(fd, LL_IOC_LLOOP_ATTACH, &dev);
2937         if (rc < 0) {
2938                 rc = errno;
2939                 fprintf(stderr, "attach error(%s)\n", strerror(rc));
2940                 goto out;
2941         }
2942
2943         rc = stat(devname, &st);
2944         if (rc == 0 && (!S_ISBLK(st.st_mode) || st.st_rdev != dev)) {
2945                 rc = EEXIST;
2946         } else if (rc < 0) {
2947                 if (errno == ENOENT &&
2948                     !mknod(devname, S_IFBLK|S_IRUSR|S_IWUSR, dev))
2949                         rc = 0;
2950                 else
2951                         rc = errno;
2952         }
2953
2954         if (rc) {
2955                 fprintf(stderr, "error: the file %s could be attached to block "
2956                                 "device %X but creating %s failed: %s\n"
2957                                 "now detaching the block device..",
2958                         filename, (int)dev, devname, strerror(rc));
2959
2960                 (void)ioctl(fd, LL_IOC_LLOOP_DETACH_BYDEV, dev);
2961                 fprintf(stderr, "%s\n", strerror(errno));
2962         }
2963 out:
2964         close(fd);
2965         return -rc;
2966 }
2967
2968 int jt_blockdev_detach(int argc, char **argv)
2969 {
2970         char *filename;
2971         int rc, fd;
2972
2973         if (argc != 2)
2974                 return CMD_HELP;
2975
2976         filename = argv[1];
2977         fd = open(filename, O_RDONLY);
2978         if (fd < 0) {
2979                 fprintf(stderr, "cannot open file %s error %s\n",
2980                         filename, strerror(errno));
2981                 return CMD_HELP;
2982         }
2983
2984         rc = ioctl(fd, LL_IOC_LLOOP_DETACH, 0);
2985         if (rc < 0) {
2986                 rc = errno;
2987                 fprintf(stderr, "detach error(%s)\n", strerror(rc));
2988         } else {
2989                 (void)unlink(filename);
2990         }
2991
2992         close(fd);
2993         return -rc;
2994 }
2995
2996 int jt_blockdev_info(int argc, char **argv)
2997 {
2998         char *filename;
2999         int rc, fd;
3000         struct lu_fid fid;
3001
3002         if (argc != 2)
3003                 return CMD_HELP;
3004
3005         filename = argv[1];
3006         fd = open(filename, O_RDONLY);
3007         if (fd < 0) {
3008                 fprintf(stderr, "cannot open file %s error: %s\n",
3009                         filename, strerror(errno));
3010                 return CMD_HELP;
3011         }
3012
3013         rc = ioctl(fd, LL_IOC_LLOOP_INFO, &fid);
3014         if (rc < 0) {
3015                 rc = errno;
3016                 fprintf(stderr, "error: %s\n", strerror(errno));
3017                 goto out;
3018         }
3019         fprintf(stdout, "lloop device info: ");
3020         if (fid_is_zero(&fid))
3021                 fprintf(stdout, "Not attached\n");
3022         else
3023                 fprintf(stdout, "attached to inode "DFID"\n", PFID(&fid));
3024 out:
3025         close(fd);
3026         return -rc;
3027 }
3028
3029 static void signal_server(int sig)
3030 {
3031         if (sig == SIGINT) {
3032                 do_disconnect("sigint", 1);
3033                 exit(1);
3034         } else
3035                 fprintf(stderr, "%s: got signal %d\n", jt_cmdname("sigint"), sig);
3036 }
3037
3038 int obd_initialize(int argc, char **argv)
3039 {
3040         int i;
3041
3042         for (i = 0; i < LOV_MAX_STRIPE_COUNT; i++)
3043                 lsm_buffer.lsm.lsm_oinfo[i] = lov_oinfos + i;
3044
3045         if (shmem_setup() != 0)
3046                 return -1;
3047
3048         register_ioc_dev(OBD_DEV_ID, OBD_DEV_PATH,
3049                          OBD_DEV_MAJOR, OBD_DEV_MINOR);
3050
3051         return 0;
3052 }
3053
3054 void obd_finalize(int argc, char **argv)
3055 {
3056         struct sigaction sigact;
3057
3058         /* sigact initialization */
3059         sigact.sa_handler = signal_server;
3060         sigfillset(&sigact.sa_mask);
3061         sigact.sa_flags = SA_RESTART;
3062         /* coverity[uninit_use_in_call] */
3063         sigaction(SIGINT, &sigact, NULL);
3064
3065         shmem_cleanup();
3066         do_disconnect(argv[0], 1);
3067 }
3068
3069 static int check_pool_cmd(enum lcfg_command_type cmd,
3070                           char *fsname, char *poolname,
3071                           char *ostname)
3072 {
3073         int rc;
3074
3075         rc = llapi_search_ost(fsname, poolname, ostname);
3076         if (rc < 0 && (cmd != LCFG_POOL_NEW)) {
3077                 fprintf(stderr, "Pool %s.%s not found\n",
3078                         fsname, poolname);
3079                 return rc;
3080         }
3081
3082         switch (cmd) {
3083         case LCFG_POOL_NEW: {
3084                 LASSERT(ostname == NULL);
3085                 if (rc >= 0) {
3086                         fprintf(stderr, "Pool %s.%s already exists\n",
3087                                 fsname, poolname);
3088                         return -EEXIST;
3089                 }
3090                 return 0;
3091         }
3092         case LCFG_POOL_DEL: {
3093                 LASSERT(ostname == NULL);
3094                 if (rc == 1) {
3095                         fprintf(stderr, "Pool %s.%s not empty, "
3096                                 "please remove all members\n",
3097                                 fsname, poolname);
3098                         return -ENOTEMPTY;
3099                 }
3100                 return 0;
3101         }
3102         case LCFG_POOL_ADD: {
3103                 if (rc == 1) {
3104                         fprintf(stderr, "OST %s is already in pool %s.%s\n",
3105                                 ostname, fsname, poolname);
3106                         return -EEXIST;
3107                 }
3108                 rc = llapi_search_ost(fsname, NULL, ostname);
3109                 if (rc == 0) {
3110                         fprintf(stderr, "OST %s is not part of the '%s' fs.\n",
3111                                 ostname, fsname);
3112                         return -ENOENT;
3113                 }
3114                 return 0;
3115         }
3116         case LCFG_POOL_REM: {
3117                 if (rc == 0) {
3118                         fprintf(stderr, "OST %s not found in pool %s.%s\n",
3119                                 ostname, fsname, poolname);
3120                         return -ENOENT;
3121                 }
3122                 return 0;
3123         }
3124         default:
3125                 break;
3126         } /* switch */
3127         return -EINVAL;
3128 }
3129
3130 /* This check only verifies that the changes have been "pushed out" to
3131    the client successfully.  This involves waiting for a config update,
3132    and so may fail because of problems in that code or post-command
3133    network loss. So reporting a warning is appropriate, but not a failure.
3134 */
3135 static int check_pool_cmd_result(enum lcfg_command_type cmd,
3136                                  char *fsname, char *poolname,
3137                                  char *ostname)
3138 {
3139         int cpt = 10;
3140         int rc = 0;
3141
3142         switch (cmd) {
3143         case LCFG_POOL_NEW: {
3144                 do {
3145                         rc = llapi_search_ost(fsname, poolname, NULL);
3146                         if (rc == -ENODEV)
3147                                 return rc;
3148                         if (rc < 0)
3149                                 sleep(2);
3150                         cpt--;
3151                 } while ((rc < 0) && (cpt > 0));
3152                 if (rc >= 0) {
3153                         fprintf(stderr, "Pool %s.%s created\n",
3154                                 fsname, poolname);
3155                         return 0;
3156                 } else {
3157                         fprintf(stderr, "Warning, pool %s.%s not found\n",
3158                                 fsname, poolname);
3159                         return -ENOENT;
3160                 }
3161         }
3162         case LCFG_POOL_DEL: {
3163                 do {
3164                         rc = llapi_search_ost(fsname, poolname, NULL);
3165                         if (rc == -ENODEV)
3166                                 return rc;
3167                         if (rc >= 0)
3168                                 sleep(2);
3169                         cpt--;
3170                 } while ((rc >= 0) && (cpt > 0));
3171                 if (rc < 0) {
3172                         fprintf(stderr, "Pool %s.%s destroyed\n",
3173                                 fsname, poolname);
3174                         return 0;
3175                 } else {
3176                         fprintf(stderr, "Warning, pool %s.%s still found\n",
3177                                 fsname, poolname);
3178                         return -EEXIST;
3179                 }
3180         }
3181         case LCFG_POOL_ADD: {
3182                 do {
3183                         rc = llapi_search_ost(fsname, poolname, ostname);
3184                         if (rc == -ENODEV)
3185                                 return rc;
3186                         if (rc != 1)
3187                                 sleep(2);
3188                         cpt--;
3189                 } while ((rc != 1) && (cpt > 0));
3190                 if (rc == 1) {
3191                         fprintf(stderr, "OST %s added to pool %s.%s\n",
3192                                 ostname, fsname, poolname);
3193                         return 0;
3194                 } else {
3195                         fprintf(stderr, "Warning, OST %s not found in pool %s.%s\n",
3196                                 ostname, fsname, poolname);
3197                         return -ENOENT;
3198                 }
3199         }
3200         case LCFG_POOL_REM: {
3201                 do {
3202                         rc = llapi_search_ost(fsname, poolname, ostname);
3203                         if (rc == -ENODEV)
3204                                 return rc;
3205                         if (rc == 1)
3206                                 sleep(2);
3207                         cpt--;
3208                 } while ((rc == 1) && (cpt > 0));
3209                 if (rc != 1) {
3210                         fprintf(stderr, "OST %s removed from pool %s.%s\n",
3211                                 ostname, fsname, poolname);
3212                         return 0;
3213                 } else {
3214                         fprintf(stderr, "Warning, OST %s still found in pool %s.%s\n",
3215                                 ostname, fsname, poolname);
3216                         return -EEXIST;
3217                 }
3218         }
3219         default:
3220                 break;
3221         }
3222         return -EINVAL;
3223 }
3224
3225 static int check_and_complete_ostname(char *fsname, char *ostname)
3226 {
3227         char *ptr;
3228         char real_ostname[MAX_OBD_NAME + 1];
3229         char i;
3230
3231         /* if OST name does not start with fsname, we add it */
3232         /* if not check if the fsname is the right one */
3233         ptr = strchr(ostname, '-');
3234         if (ptr == NULL) {
3235                 sprintf(real_ostname, "%s-%s", fsname, ostname);
3236         } else if (strncmp(ostname, fsname, strlen(fsname)) != 0) {
3237                 fprintf(stderr, "%s does not start with fsname %s\n",
3238                         ostname, fsname);
3239                 return -EINVAL;
3240         } else {
3241              strcpy(real_ostname, ostname);
3242         }
3243         /* real_ostname is fsname-????? */
3244         ptr = real_ostname + strlen(fsname) + 1;
3245         if (strncmp(ptr, "OST", 3) != 0) {
3246                 fprintf(stderr, "%s does not start by %s-OST nor OST\n",
3247                         ostname, fsname);
3248                 return -EINVAL;
3249         }
3250         /* real_ostname is fsname-OST????? */
3251         ptr += 3;
3252         for (i = 0; i < 4; i++) {
3253                 if (!isxdigit(*ptr)) {
3254                         fprintf(stderr,
3255                                 "ost's index in %s is not an hexa number\n",
3256                                 ostname);
3257                         return -EINVAL;
3258                 }
3259                 ptr++;
3260         }
3261         /* real_ostname is fsname-OSTXXXX????? */
3262         /* if OST name does not end with _UUID, we add it */
3263         if (*ptr == '\0') {
3264                 strcat(real_ostname, "_UUID");
3265         } else if (strcmp(ptr, "_UUID") != 0) {
3266                 fprintf(stderr,
3267                         "ostname %s does not end with _UUID\n", ostname);
3268                 return -EINVAL;
3269         }
3270         /* real_ostname is fsname-OSTXXXX_UUID */
3271         strcpy(ostname, real_ostname);
3272         return 0;
3273 }
3274
3275 /* returns 0 or -errno */
3276 static int pool_cmd(enum lcfg_command_type cmd,
3277                     char *cmdname, char *fullpoolname,
3278                     char *fsname, char *poolname, char *ostname)
3279 {
3280         int rc = 0;
3281         struct obd_ioctl_data data;
3282         struct lustre_cfg_bufs bufs;
3283         struct lustre_cfg *lcfg;
3284         char rawbuf[MAX_IOC_BUFLEN], *buf = rawbuf;
3285
3286         rc = check_pool_cmd(cmd, fsname, poolname, ostname);
3287         if (rc == -ENODEV)
3288                 fprintf(stderr, "Can't verify pool command since there "
3289                         "is no local MDT or client, proceeding anyhow...\n");
3290         else if (rc)
3291                 return rc;
3292
3293         lustre_cfg_bufs_reset(&bufs, NULL);
3294         lustre_cfg_bufs_set_string(&bufs, 0, cmdname);
3295         lustre_cfg_bufs_set_string(&bufs, 1, fullpoolname);
3296         if (ostname != NULL)
3297                 lustre_cfg_bufs_set_string(&bufs, 2, ostname);
3298
3299         lcfg = lustre_cfg_new(cmd, &bufs);
3300         if (IS_ERR(lcfg)) {
3301                 rc = PTR_ERR(lcfg);
3302                 return rc;
3303         }
3304
3305         memset(&data, 0, sizeof(data));
3306         rc = data.ioc_dev = get_mgs_device();
3307         if (rc < 0)
3308                 goto out;
3309
3310         data.ioc_type = LUSTRE_CFG_TYPE;
3311         data.ioc_plen1 = lustre_cfg_len(lcfg->lcfg_bufcount,
3312                                         lcfg->lcfg_buflens);
3313         data.ioc_pbuf1 = (void *)lcfg;
3314
3315         memset(buf, 0, sizeof(rawbuf));
3316         rc = obd_ioctl_pack(&data, &buf, sizeof(rawbuf));
3317         if (rc) {
3318                 fprintf(stderr, "error: %s: invalid ioctl\n",
3319                         jt_cmdname(cmdname));
3320                 return rc;
3321         }
3322         rc = l_ioctl(OBD_DEV_ID, OBD_IOC_POOL, buf);
3323 out:
3324         if (rc)
3325                 rc = -errno;
3326         lustre_cfg_free(lcfg);
3327         return rc;
3328 }
3329
3330 /*
3331  * this function tranforms a rule [start-end/step] into an array
3332  * of matching numbers
3333  * supported forms are:
3334  * [start]                : just this number
3335  * [start-end]            : all numbers from start to end
3336  * [start-end/step]       : numbers from start to end with increment of step
3337  * on return, format contains a printf format string which can be used
3338  * to generate all the strings
3339  */
3340 static int get_array_idx(char *rule, char *format, int **array)
3341 {
3342         char *start, *end, *ptr;
3343         unsigned int lo, hi, step;
3344         int array_sz = 0;
3345         int i, array_idx;
3346         int rc;
3347
3348         start = strchr(rule, '[');
3349         end = strchr(rule, ']');
3350         if ((start == NULL) || (end == NULL)) {
3351                 *array = malloc(sizeof(int));
3352                 if (*array == NULL)
3353                         return 0;
3354                 strcpy(format, rule);
3355                 array_sz = 1;
3356                 return array_sz;
3357         }
3358         *start = '\0';
3359         *end = '\0';
3360         end++;
3361         start++;
3362         /* put in format the printf format (the rule without the range) */
3363         sprintf(format, "%s%%.4x%s", rule, end);
3364
3365         array_idx = 0;
3366         array_sz = 0;
3367         *array = NULL;
3368         /* loop on , separator */
3369         do {
3370                 /* extract the 3 fields */
3371                 rc = sscanf(start, "%x-%x/%u", &lo, &hi, &step);
3372                 switch (rc) {
3373                 case 0: {
3374                         return 0;
3375                 }
3376                 case 1: {
3377                         array_sz++;
3378                         *array = realloc(*array, array_sz * sizeof(int));
3379                         if (*array == NULL)
3380                                 return 0;
3381                         (*array)[array_idx] = lo;
3382                         array_idx++;
3383                         break;
3384                 }
3385                 case 2: {
3386                         step = 1;
3387                         /* do not break to share code with case 3: */
3388                 }
3389                 case 3: {
3390                         if ((hi < lo) || (step == 0))
3391                                 return 0;
3392                         array_sz += (hi - lo) / step + 1;
3393                         *array = realloc(*array, sizeof(int) * array_sz);
3394                         if (*array == NULL)
3395                                 return 0;
3396                         for (i = lo; i <= hi; i+=step, array_idx++)
3397                                 (*array)[array_idx] = i;
3398                         break;
3399                 }
3400                 }
3401                 ptr = strchr(start, ',');
3402                 if (ptr != NULL)
3403                         start = ptr + 1;
3404
3405         } while (ptr != NULL);
3406         return array_sz;
3407 }
3408
3409 static int extract_fsname_poolname(char *arg, char *fsname, char *poolname)
3410 {
3411         char *ptr;
3412         int len;
3413         int rc;
3414
3415         strcpy(fsname, arg);
3416         ptr = strchr(fsname, '.');
3417         if (ptr == NULL) {
3418                 fprintf(stderr, ". is missing in %s\n", fsname);
3419                 rc = -EINVAL;
3420                 goto err;
3421         }
3422
3423         len = ptr - fsname;
3424         if (len == 0) {
3425                 fprintf(stderr, "fsname is empty\n");
3426                 rc = -EINVAL;
3427                 goto err;
3428         }
3429
3430         len = strlen(ptr + 1);
3431         if (len == 0) {
3432                 fprintf(stderr, "poolname is empty\n");
3433                 rc = -EINVAL;
3434                 goto err;
3435         }
3436         if (len > LOV_MAXPOOLNAME) {
3437                 fprintf(stderr,
3438                         "poolname %s is too long (length is %d max is %d)\n",
3439                         ptr + 1, len, LOV_MAXPOOLNAME);
3440                 rc = -ENAMETOOLONG;
3441                 goto err;
3442         }
3443         strncpy(poolname, ptr + 1, LOV_MAXPOOLNAME);
3444         poolname[LOV_MAXPOOLNAME] = '\0';
3445         *ptr = '\0';
3446         return 0;
3447
3448 err:
3449         fprintf(stderr, "argument %s must be <fsname>.<poolname>\n", arg);
3450         return rc;
3451 }
3452
3453 int jt_pool_cmd(int argc, char **argv)
3454 {
3455         enum lcfg_command_type cmd;
3456         char fsname[PATH_MAX + 1];
3457         char poolname[LOV_MAXPOOLNAME + 1];
3458         char *ostnames_buf = NULL;
3459         int i, rc;
3460         int *array = NULL, array_sz;
3461         struct {
3462                 int     rc;
3463                 char   *ostname;
3464         } *cmds = NULL;
3465
3466         switch (argc) {
3467         case 0:
3468         case 1: return CMD_HELP;
3469         case 2: {
3470                 if (strcmp("pool_new", argv[0]) == 0)
3471                         cmd = LCFG_POOL_NEW;
3472                 else if (strcmp("pool_destroy", argv[0]) == 0)
3473                         cmd = LCFG_POOL_DEL;
3474                 else if (strcmp("pool_list", argv[0]) == 0)
3475                          return llapi_poollist(argv[1]);
3476                 else return CMD_HELP;
3477
3478                 rc = extract_fsname_poolname(argv[1], fsname, poolname);
3479                 if (rc)
3480                         break;
3481
3482                 rc = pool_cmd(cmd, argv[0], argv[1], fsname, poolname, NULL);
3483                 if (rc)
3484                         break;
3485
3486                 check_pool_cmd_result(cmd, fsname, poolname, NULL);
3487                 break;
3488         }
3489         default: {
3490                 char format[2*MAX_OBD_NAME];
3491
3492                 if (strcmp("pool_remove", argv[0]) == 0) {
3493                         cmd = LCFG_POOL_REM;
3494                 } else if (strcmp("pool_add", argv[0]) == 0) {
3495                         cmd = LCFG_POOL_ADD;
3496                 } else {
3497                         return CMD_HELP;
3498                 }
3499
3500                 rc = extract_fsname_poolname(argv[1], fsname, poolname);
3501                 if (rc)
3502                         break;
3503
3504                 for (i = 2; i < argc; i++) {
3505                         int j;
3506
3507                         array_sz = get_array_idx(argv[i], format, &array);
3508                         if (array_sz == 0)
3509                                 return CMD_HELP;
3510
3511                         cmds = malloc(array_sz * sizeof(cmds[0]));
3512                         if (cmds != NULL) {
3513                                 ostnames_buf = malloc(array_sz *
3514                                                       (MAX_OBD_NAME + 1));
3515                         } else {
3516                                 free(array);
3517                                 rc = -ENOMEM;
3518                                 goto out;
3519                         }
3520
3521                         for (j = 0; j < array_sz; j++) {
3522                                 char ostname[MAX_OBD_NAME + 1];
3523
3524                                 snprintf(ostname, MAX_OBD_NAME, format,
3525                                          array[j]);
3526                                 ostname[MAX_OBD_NAME] = '\0';
3527
3528                                 rc = check_and_complete_ostname(fsname,ostname);
3529                                 if (rc) {
3530                                         free(array);
3531                                         free(cmds);
3532                                         if (ostnames_buf)
3533                                                 free(ostnames_buf);
3534                                         goto out;
3535                                 }
3536                                 if (ostnames_buf != NULL) {
3537                                         cmds[j].ostname =
3538                                           &ostnames_buf[(MAX_OBD_NAME + 1) * j];
3539                                         strcpy(cmds[j].ostname, ostname);
3540                                 } else {
3541                                         cmds[j].ostname = NULL;
3542                                 }
3543                                 cmds[j].rc = pool_cmd(cmd, argv[0], argv[1],
3544                                                       fsname, poolname,
3545                                                       ostname);
3546                                 /* Return an err if any of the add/dels fail */
3547                                 if (!rc)
3548                                         rc = cmds[j].rc;
3549                         }
3550                         for (j = 0; j < array_sz; j++) {
3551                                 if (!cmds[j].rc) {
3552                                         char ostname[MAX_OBD_NAME + 1];
3553
3554                                         if (!cmds[j].ostname) {
3555                                                 snprintf(ostname, MAX_OBD_NAME,
3556                                                          format, array[j]);
3557                                                 ostname[MAX_OBD_NAME] = '\0';
3558                                                 check_and_complete_ostname(
3559                                                         fsname, ostname);
3560                                         } else {
3561                                                 strcpy(ostname,
3562                                                        cmds[j].ostname);
3563                                         }
3564                                         check_pool_cmd_result(cmd, fsname,
3565                                                               poolname,ostname);
3566                                 }
3567                         }
3568                         if (array_sz > 0)
3569                                 free(array);
3570                         if (cmds)
3571                                 free(cmds);
3572                         if (ostnames_buf != NULL)
3573                                 free(ostnames_buf);
3574                 }
3575                 /* fall through */
3576         }
3577         } /* switch */
3578
3579 out:
3580         if (rc != 0) {
3581                 errno = -rc;
3582                 perror(argv[0]);
3583         }
3584
3585         return rc;
3586 }
3587
3588 int jt_get_obj_version(int argc, char **argv)
3589 {
3590         struct lu_fid fid;
3591         struct obd_ioctl_data data;
3592         __u64 version, id = ULLONG_MAX, group = ULLONG_MAX;
3593         char rawbuf[MAX_IOC_BUFLEN], *buf = rawbuf, *fidstr;
3594         int rc, c;
3595
3596         while ((c = getopt(argc, argv, "i:g:")) != -1) {
3597                 switch (c) {
3598                 case 'i':
3599                         id = strtoull(optarg, NULL, 0);
3600                         break;
3601                 case 'g':
3602                         group = strtoull(optarg, NULL, 0);
3603                         break;
3604                 default:
3605                         return CMD_HELP;
3606                 }
3607         }
3608
3609         argc -= optind;
3610         argv += optind;
3611
3612         if (!(id != ULLONG_MAX && group != ULLONG_MAX && argc == 0) &&
3613             !(id == ULLONG_MAX && group == ULLONG_MAX && argc == 1))
3614                 return CMD_HELP;
3615
3616         memset(&data, 0, sizeof data);
3617         data.ioc_dev = cur_device;
3618         if (argc == 1) {
3619                 fidstr = *argv;
3620                 while (*fidstr == '[')
3621                         fidstr++;
3622                 sscanf(fidstr, SFID, RFID(&fid));
3623
3624                 data.ioc_inlbuf1 = (char *) &fid;
3625                 data.ioc_inllen1 = sizeof fid;
3626         } else {
3627                 data.ioc_inlbuf3 = (char *) &id;
3628                 data.ioc_inllen3 = sizeof id;
3629                 data.ioc_inlbuf4 = (char *) &group;
3630                 data.ioc_inllen4 = sizeof group;
3631         }
3632         data.ioc_inlbuf2 = (char *) &version;
3633         data.ioc_inllen2 = sizeof version;
3634
3635         memset(buf, 0, sizeof *buf);
3636         rc = obd_ioctl_pack(&data, &buf, sizeof rawbuf);
3637         if (rc) {
3638                 fprintf(stderr, "error: %s: packing ioctl arguments: %s\n",
3639                         jt_cmdname(argv[0]), strerror(-rc));
3640                 return rc;
3641         }
3642
3643         rc = l2_ioctl(OBD_DEV_ID, OBD_IOC_GET_OBJ_VERSION, buf);
3644         if (rc == -1) {
3645                 fprintf(stderr, "error: %s: ioctl: %s\n",
3646                         jt_cmdname(argv[0]), strerror(errno));
3647                 return -errno;
3648         }
3649
3650         obd_ioctl_unpack(&data, buf, sizeof rawbuf);
3651         printf(LPX64"\n", version);
3652         return 0;
3653 }
3654
3655 void  llapi_ping_target(char *obd_type, char *obd_name,
3656                         char *obd_uuid, void *args)
3657 {
3658         int  rc;
3659         struct obd_ioctl_data data;
3660         char rawbuf[MAX_IOC_BUFLEN], *buf = rawbuf;
3661
3662         memset(&data, 0, sizeof(data));
3663         data.ioc_inlbuf4 = obd_name;
3664         data.ioc_inllen4 = strlen(obd_name) + 1;
3665         data.ioc_dev = OBD_DEV_BY_DEVNAME;
3666         memset(buf, 0, sizeof(rawbuf));
3667         if (obd_ioctl_pack(&data, &buf, sizeof(rawbuf))) {
3668                 fprintf(stderr, "error: invalid ioctl\n");
3669                 return;
3670         }
3671         rc = l_ioctl(OBD_DEV_ID, OBD_IOC_PING_TARGET, buf);
3672         if (rc)
3673                 rc = errno;
3674         if (rc == ENOTCONN || rc == ESHUTDOWN) {
3675                 printf("%s: INACTIVE\n", obd_name);
3676         } else if (rc) {
3677                 printf("%s: check error: %s\n",
3678                         obd_name, strerror(errno));
3679         } else {
3680                 printf("%s: active\n", obd_name);
3681         }
3682 }
3683
3684 int jt_changelog_register(int argc, char **argv)
3685 {
3686         char rawbuf[MAX_IOC_BUFLEN], *buf = rawbuf;
3687         struct obd_ioctl_data data;
3688         char devname[30];
3689         int rc;
3690
3691         if (argc > 2)
3692                 return CMD_HELP;
3693         else if (argc == 2 && strcmp(argv[1], "-n") != 0)
3694                 return CMD_HELP;
3695         if (cur_device < 0)
3696                 return CMD_HELP;
3697
3698         memset(&data, 0, sizeof(data));
3699         data.ioc_dev = cur_device;
3700         memset(buf, 0, sizeof(rawbuf));
3701         rc = obd_ioctl_pack(&data, &buf, sizeof(rawbuf));
3702         if (rc) {
3703                 fprintf(stderr, "error: %s: invalid ioctl\n",
3704                         jt_cmdname(argv[0]));
3705                return rc;
3706         }
3707
3708         rc = l2_ioctl(OBD_DEV_ID, OBD_IOC_CHANGELOG_REG, buf);
3709         if (rc < 0) {
3710                 fprintf(stderr, "error: %s: %s\n", jt_cmdname(argv[0]),
3711                         strerror(rc = errno));
3712                 return rc;
3713         }
3714         obd_ioctl_unpack(&data, buf, sizeof(rawbuf));
3715
3716         if (data.ioc_u32_1 == 0) {
3717                 fprintf(stderr, "received invalid userid!\n");
3718                 return EPROTO;
3719         }
3720
3721         if (lcfg_get_devname() != NULL)
3722                 strcpy(devname, lcfg_get_devname());
3723         else
3724                 sprintf(devname, "dev %d", cur_device);
3725
3726         if (argc == 2)
3727                 /* -n means bare name */
3728                 printf(CHANGELOG_USER_PREFIX"%u\n", data.ioc_u32_1);
3729         else
3730                 printf("%s: Registered changelog userid '"CHANGELOG_USER_PREFIX
3731                        "%u'\n", devname, data.ioc_u32_1);
3732         return 0;
3733 }
3734
3735 int jt_changelog_deregister(int argc, char **argv)
3736 {
3737         char rawbuf[MAX_IOC_BUFLEN], *buf = rawbuf;
3738         struct obd_ioctl_data data;
3739         char devname[30];
3740         int id, rc;
3741
3742         if (argc != 2 || cur_device < 0)
3743                 return CMD_HELP;
3744
3745         id = strtol(argv[1] + strlen(CHANGELOG_USER_PREFIX), NULL, 10);
3746         if ((id == 0) || (strncmp(argv[1], CHANGELOG_USER_PREFIX,
3747                                   strlen(CHANGELOG_USER_PREFIX)) != 0)) {
3748                 fprintf(stderr, "expecting id of the form '"
3749                         CHANGELOG_USER_PREFIX"<num>'; got '%s'\n", argv[1]);
3750                 return CMD_HELP;
3751         }
3752
3753         memset(&data, 0, sizeof(data));
3754         data.ioc_dev = cur_device;
3755         data.ioc_u32_1 = id;
3756         memset(buf, 0, sizeof(rawbuf));
3757         rc = obd_ioctl_pack(&data, &buf, sizeof(rawbuf));
3758         if (rc) {
3759                 fprintf(stderr, "error: %s: invalid ioctl\n",
3760                         jt_cmdname(argv[0]));
3761                 return rc;
3762         }
3763
3764         rc = l2_ioctl(OBD_DEV_ID, OBD_IOC_CHANGELOG_DEREG, buf);
3765         if (rc < 0) {
3766                 fprintf(stderr, "error: %s: %s\n", jt_cmdname(argv[0]),
3767                         strerror(rc = errno));
3768                 return rc;
3769         }
3770         obd_ioctl_unpack(&data, buf, sizeof(rawbuf));
3771
3772         if (data.ioc_u32_1 != id) {
3773                 fprintf(stderr, "No changelog user '%s'.  Blocking user"
3774                         " is '"CHANGELOG_USER_PREFIX"%d'.\n", argv[1],
3775                         data.ioc_u32_1);
3776                 return ENOENT;
3777         }
3778
3779         if (lcfg_get_devname() != NULL)
3780                 strcpy(devname, lcfg_get_devname());
3781         else
3782                 sprintf(devname, "dev %d", cur_device);
3783
3784         printf("%s: Deregistered changelog user '"CHANGELOG_USER_PREFIX"%d'\n",
3785                devname, data.ioc_u32_1);
3786         return 0;
3787 }
3788
3789