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[fs/lustre-release.git] / libcfs / libcfs / tracefile.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) 2008, 2010, Oracle and/or its affiliates. All rights reserved.
28  * Use is subject to license terms.
29  *
30  * Copyright (c) 2012, 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  * libcfs/libcfs/tracefile.c
37  *
38  * Author: Zach Brown <zab@clusterfs.com>
39  * Author: Phil Schwan <phil@clusterfs.com>
40  */
41
42
43 #define DEBUG_SUBSYSTEM S_LNET
44 #define LUSTRE_TRACEFILE_PRIVATE
45 #include "tracefile.h"
46
47 #include <libcfs/libcfs.h>
48
49 /* XXX move things up to the top, comment */
50 union cfs_trace_data_union (*cfs_trace_data[TCD_MAX_TYPES])[CFS_NR_CPUS] __cacheline_aligned;
51
52 char cfs_tracefile[TRACEFILE_NAME_SIZE];
53 long long cfs_tracefile_size = CFS_TRACEFILE_SIZE;
54 static struct tracefiled_ctl trace_tctl;
55 struct mutex cfs_trace_thread_mutex;
56 static int thread_running = 0;
57
58 cfs_atomic_t cfs_tage_allocated = CFS_ATOMIC_INIT(0);
59
60 static void put_pages_on_tcd_daemon_list(struct page_collection *pc,
61                                          struct cfs_trace_cpu_data *tcd);
62
63 static inline struct cfs_trace_page *
64 cfs_tage_from_list(cfs_list_t *list)
65 {
66         return cfs_list_entry(list, struct cfs_trace_page, linkage);
67 }
68
69 static struct cfs_trace_page *cfs_tage_alloc(int gfp)
70 {
71         cfs_page_t            *page;
72         struct cfs_trace_page *tage;
73
74         /* My caller is trying to free memory */
75         if (!cfs_in_interrupt() && cfs_memory_pressure_get())
76                 return NULL;
77
78         /*
79          * Don't spam console with allocation failures: they will be reported
80          * by upper layer anyway.
81          */
82         gfp |= CFS_ALLOC_NOWARN;
83         page = cfs_alloc_page(gfp);
84         if (page == NULL)
85                 return NULL;
86
87         tage = cfs_alloc(sizeof(*tage), gfp);
88         if (tage == NULL) {
89                 cfs_free_page(page);
90                 return NULL;
91         }
92
93         tage->page = page;
94         cfs_atomic_inc(&cfs_tage_allocated);
95         return tage;
96 }
97
98 static void cfs_tage_free(struct cfs_trace_page *tage)
99 {
100         __LASSERT(tage != NULL);
101         __LASSERT(tage->page != NULL);
102
103         cfs_free_page(tage->page);
104         cfs_free(tage);
105         cfs_atomic_dec(&cfs_tage_allocated);
106 }
107
108 static void cfs_tage_to_tail(struct cfs_trace_page *tage,
109                              cfs_list_t *queue)
110 {
111         __LASSERT(tage != NULL);
112         __LASSERT(queue != NULL);
113
114         cfs_list_move_tail(&tage->linkage, queue);
115 }
116
117 int cfs_trace_refill_stock(struct cfs_trace_cpu_data *tcd, int gfp,
118                            cfs_list_t *stock)
119 {
120         int i;
121
122         /*
123          * XXX nikita: do NOT call portals_debug_msg() (CDEBUG/ENTRY/EXIT)
124          * from here: this will lead to infinite recursion.
125          */
126
127         for (i = 0; i + tcd->tcd_cur_stock_pages < TCD_STOCK_PAGES ; ++ i) {
128                 struct cfs_trace_page *tage;
129
130                 tage = cfs_tage_alloc(gfp);
131                 if (tage == NULL)
132                         break;
133                 cfs_list_add_tail(&tage->linkage, stock);
134         }
135         return i;
136 }
137
138 /* return a page that has 'len' bytes left at the end */
139 static struct cfs_trace_page *
140 cfs_trace_get_tage_try(struct cfs_trace_cpu_data *tcd, unsigned long len)
141 {
142         struct cfs_trace_page *tage;
143
144         if (tcd->tcd_cur_pages > 0) {
145                 __LASSERT(!cfs_list_empty(&tcd->tcd_pages));
146                 tage = cfs_tage_from_list(tcd->tcd_pages.prev);
147                 if (tage->used + len <= CFS_PAGE_SIZE)
148                         return tage;
149         }
150
151         if (tcd->tcd_cur_pages < tcd->tcd_max_pages) {
152                 if (tcd->tcd_cur_stock_pages > 0) {
153                         tage = cfs_tage_from_list(tcd->tcd_stock_pages.prev);
154                         -- tcd->tcd_cur_stock_pages;
155                         cfs_list_del_init(&tage->linkage);
156                 } else {
157                         tage = cfs_tage_alloc(CFS_ALLOC_ATOMIC);
158                         if (tage == NULL) {
159                                 if (printk_ratelimit())
160                                         printk(CFS_KERN_WARNING
161                                                "cannot allocate a tage (%ld)\n",
162                                        tcd->tcd_cur_pages);
163                                 return NULL;
164                         }
165                 }
166
167                 tage->used = 0;
168                 tage->cpu = cfs_smp_processor_id();
169                 tage->type = tcd->tcd_type;
170                 cfs_list_add_tail(&tage->linkage, &tcd->tcd_pages);
171                 tcd->tcd_cur_pages++;
172
173                 if (tcd->tcd_cur_pages > 8 && thread_running) {
174                         struct tracefiled_ctl *tctl = &trace_tctl;
175                         /*
176                          * wake up tracefiled to process some pages.
177                          */
178                         cfs_waitq_signal(&tctl->tctl_waitq);
179                 }
180                 return tage;
181         }
182         return NULL;
183 }
184
185 static void cfs_tcd_shrink(struct cfs_trace_cpu_data *tcd)
186 {
187         int pgcount = tcd->tcd_cur_pages / 10;
188         struct page_collection pc;
189         struct cfs_trace_page *tage;
190         struct cfs_trace_page *tmp;
191
192         /*
193          * XXX nikita: do NOT call portals_debug_msg() (CDEBUG/ENTRY/EXIT)
194          * from here: this will lead to infinite recursion.
195          */
196
197         if (printk_ratelimit())
198                 printk(CFS_KERN_WARNING "debug daemon buffer overflowed; "
199                        "discarding 10%% of pages (%d of %ld)\n",
200                        pgcount + 1, tcd->tcd_cur_pages);
201
202         CFS_INIT_LIST_HEAD(&pc.pc_pages);
203         spin_lock_init(&pc.pc_lock);
204
205         cfs_list_for_each_entry_safe_typed(tage, tmp, &tcd->tcd_pages,
206                                            struct cfs_trace_page, linkage) {
207                 if (pgcount-- == 0)
208                         break;
209
210                 cfs_list_move_tail(&tage->linkage, &pc.pc_pages);
211                 tcd->tcd_cur_pages--;
212         }
213         put_pages_on_tcd_daemon_list(&pc, tcd);
214 }
215
216 /* return a page that has 'len' bytes left at the end */
217 static struct cfs_trace_page *cfs_trace_get_tage(struct cfs_trace_cpu_data *tcd,
218                                                  unsigned long len)
219 {
220         struct cfs_trace_page *tage;
221
222         /*
223          * XXX nikita: do NOT call portals_debug_msg() (CDEBUG/ENTRY/EXIT)
224          * from here: this will lead to infinite recursion.
225          */
226
227         if (len > CFS_PAGE_SIZE) {
228                 printk(CFS_KERN_ERR
229                        "cowardly refusing to write %lu bytes in a page\n", len);
230                 return NULL;
231         }
232
233         tage = cfs_trace_get_tage_try(tcd, len);
234         if (tage != NULL)
235                 return tage;
236         if (thread_running)
237                 cfs_tcd_shrink(tcd);
238         if (tcd->tcd_cur_pages > 0) {
239                 tage = cfs_tage_from_list(tcd->tcd_pages.next);
240                 tage->used = 0;
241                 cfs_tage_to_tail(tage, &tcd->tcd_pages);
242         }
243         return tage;
244 }
245
246 int libcfs_debug_msg(struct libcfs_debug_msg_data *msgdata,
247                      const char *format, ...)
248 {
249         va_list args;
250         int     rc;
251
252         va_start(args, format);
253         rc = libcfs_debug_vmsg2(msgdata, format, args, NULL);
254         va_end(args);
255
256         return rc;
257 }
258 EXPORT_SYMBOL(libcfs_debug_msg);
259
260 int libcfs_debug_vmsg2(struct libcfs_debug_msg_data *msgdata,
261                        const char *format1, va_list args,
262                        const char *format2, ...)
263 {
264         struct cfs_trace_cpu_data *tcd = NULL;
265         struct ptldebug_header     header = {0};
266         struct cfs_trace_page     *tage;
267         /* string_buf is used only if tcd != NULL, and is always set then */
268         char                      *string_buf = NULL;
269         char                      *debug_buf;
270         int                        known_size;
271         int                        needed = 85; /* average message length */
272         int                        max_nob;
273         va_list                    ap;
274         int                        depth;
275         int                        i;
276         int                        remain;
277         int                        mask = msgdata->msg_mask;
278         char                      *file = (char *)msgdata->msg_file;
279         cfs_debug_limit_state_t   *cdls = msgdata->msg_cdls;
280
281         if (strchr(file, '/'))
282                 file = strrchr(file, '/') + 1;
283
284         tcd = cfs_trace_get_tcd();
285
286         /* cfs_trace_get_tcd() grabs a lock, which disables preemption and
287          * pins us to a particular CPU.  This avoids an smp_processor_id()
288          * warning on Linux when debugging is enabled. */
289         cfs_set_ptldebug_header(&header, msgdata, CDEBUG_STACK());
290
291         if (tcd == NULL)                /* arch may not log in IRQ context */
292                 goto console;
293
294         if (tcd->tcd_cur_pages == 0)
295                 header.ph_flags |= PH_FLAG_FIRST_RECORD;
296
297         if (tcd->tcd_shutting_down) {
298                 cfs_trace_put_tcd(tcd);
299                 tcd = NULL;
300                 goto console;
301         }
302
303         depth = __current_nesting_level();
304         known_size = strlen(file) + 1 + depth;
305         if (msgdata->msg_fn)
306                 known_size += strlen(msgdata->msg_fn) + 1;
307
308         if (libcfs_debug_binary)
309                 known_size += sizeof(header);
310
311         /*/
312          * '2' used because vsnprintf return real size required for output
313          * _without_ terminating NULL.
314          * if needed is to small for this format.
315          */
316         for (i = 0; i < 2; i++) {
317                 tage = cfs_trace_get_tage(tcd, needed + known_size + 1);
318                 if (tage == NULL) {
319                         if (needed + known_size > CFS_PAGE_SIZE)
320                                 mask |= D_ERROR;
321
322                         cfs_trace_put_tcd(tcd);
323                         tcd = NULL;
324                         goto console;
325                 }
326
327                 string_buf = (char *)cfs_page_address(tage->page) +
328                                         tage->used + known_size;
329
330                 max_nob = CFS_PAGE_SIZE - tage->used - known_size;
331                 if (max_nob <= 0) {
332                         printk(CFS_KERN_EMERG "negative max_nob: %d\n",
333                                max_nob);
334                         mask |= D_ERROR;
335                         cfs_trace_put_tcd(tcd);
336                         tcd = NULL;
337                         goto console;
338                 }
339
340                 needed = 0;
341                 if (format1) {
342                         va_copy(ap, args);
343                         needed = vsnprintf(string_buf, max_nob, format1, ap);
344                         va_end(ap);
345                 }
346
347                 if (format2) {
348                         remain = max_nob - needed;
349                         if (remain < 0)
350                                 remain = 0;
351
352                         va_start(ap, format2);
353                         needed += vsnprintf(string_buf + needed, remain,
354                                             format2, ap);
355                         va_end(ap);
356                 }
357
358                 if (needed < max_nob) /* well. printing ok.. */
359                         break;
360         }
361
362         if (*(string_buf+needed-1) != '\n')
363                 printk(CFS_KERN_INFO "format at %s:%d:%s doesn't end in "
364                        "newline\n", file, msgdata->msg_line, msgdata->msg_fn);
365
366         header.ph_len = known_size + needed;
367         debug_buf = (char *)cfs_page_address(tage->page) + tage->used;
368
369         if (libcfs_debug_binary) {
370                 memcpy(debug_buf, &header, sizeof(header));
371                 tage->used += sizeof(header);
372                 debug_buf += sizeof(header);
373         }
374
375         /* indent message according to the nesting level */
376         while (depth-- > 0) {
377                 *(debug_buf++) = '.';
378                 ++ tage->used;
379         }
380
381         strcpy(debug_buf, file);
382         tage->used += strlen(file) + 1;
383         debug_buf += strlen(file) + 1;
384
385         if (msgdata->msg_fn) {
386                 strcpy(debug_buf, msgdata->msg_fn);
387                 tage->used += strlen(msgdata->msg_fn) + 1;
388                 debug_buf += strlen(msgdata->msg_fn) + 1;
389         }
390
391         __LASSERT(debug_buf == string_buf);
392
393         tage->used += needed;
394         __LASSERT (tage->used <= CFS_PAGE_SIZE);
395
396 console:
397         if ((mask & libcfs_printk) == 0) {
398                 /* no console output requested */
399                 if (tcd != NULL)
400                         cfs_trace_put_tcd(tcd);
401                 return 1;
402         }
403
404         if (cdls != NULL) {
405                 if (libcfs_console_ratelimit &&
406                     cdls->cdls_next != 0 &&     /* not first time ever */
407                     !cfs_time_after(cfs_time_current(), cdls->cdls_next)) {
408                         /* skipping a console message */
409                         cdls->cdls_count++;
410                         if (tcd != NULL)
411                                 cfs_trace_put_tcd(tcd);
412                         return 1;
413                 }
414
415                 if (cfs_time_after(cfs_time_current(), cdls->cdls_next +
416                                                        libcfs_console_max_delay
417                                                        + cfs_time_seconds(10))) {
418                         /* last timeout was a long time ago */
419                         cdls->cdls_delay /= libcfs_console_backoff * 4;
420                 } else {
421                         cdls->cdls_delay *= libcfs_console_backoff;
422
423                         if (cdls->cdls_delay < libcfs_console_min_delay)
424                                 cdls->cdls_delay = libcfs_console_min_delay;
425                         else if (cdls->cdls_delay > libcfs_console_max_delay)
426                                 cdls->cdls_delay = libcfs_console_max_delay;
427                 }
428
429                 /* ensure cdls_next is never zero after it's been seen */
430                 cdls->cdls_next = (cfs_time_current() + cdls->cdls_delay) | 1;
431         }
432
433         if (tcd != NULL) {
434                 cfs_print_to_console(&header, mask, string_buf, needed, file,
435                                      msgdata->msg_fn);
436                 cfs_trace_put_tcd(tcd);
437         } else {
438                 string_buf = cfs_trace_get_console_buffer();
439
440                 needed = 0;
441                 if (format1 != NULL) {
442                         va_copy(ap, args);
443                         needed = vsnprintf(string_buf,
444                                            CFS_TRACE_CONSOLE_BUFFER_SIZE,
445                                            format1, ap);
446                         va_end(ap);
447                 }
448                 if (format2 != NULL) {
449                         remain = CFS_TRACE_CONSOLE_BUFFER_SIZE - needed;
450                         if (remain > 0) {
451                                 va_start(ap, format2);
452                                 needed += vsnprintf(string_buf+needed, remain,
453                                                     format2, ap);
454                                 va_end(ap);
455                         }
456                 }
457                 cfs_print_to_console(&header, mask,
458                                      string_buf, needed, file, msgdata->msg_fn);
459
460                 cfs_trace_put_console_buffer(string_buf);
461         }
462
463         if (cdls != NULL && cdls->cdls_count != 0) {
464                 string_buf = cfs_trace_get_console_buffer();
465
466                 needed = snprintf(string_buf, CFS_TRACE_CONSOLE_BUFFER_SIZE,
467                                   "Skipped %d previous similar message%s\n",
468                                   cdls->cdls_count,
469                                   (cdls->cdls_count > 1) ? "s" : "");
470
471                 cfs_print_to_console(&header, mask,
472                                      string_buf, needed, file, msgdata->msg_fn);
473
474                 cfs_trace_put_console_buffer(string_buf);
475                 cdls->cdls_count = 0;
476         }
477
478         return 0;
479 }
480 EXPORT_SYMBOL(libcfs_debug_vmsg2);
481
482 void
483 cfs_trace_assertion_failed(const char *str,
484                            struct libcfs_debug_msg_data *msgdata)
485 {
486         struct ptldebug_header hdr;
487
488         libcfs_panic_in_progress = 1;
489         libcfs_catastrophe = 1;
490         cfs_mb();
491
492         cfs_set_ptldebug_header(&hdr, msgdata, CDEBUG_STACK());
493
494         cfs_print_to_console(&hdr, D_EMERG, str, strlen(str),
495                              msgdata->msg_file, msgdata->msg_fn);
496
497         LIBCFS_PANIC("Lustre debug assertion failure\n");
498
499         /* not reached */
500 }
501
502 static void
503 panic_collect_pages(struct page_collection *pc)
504 {
505         /* Do the collect_pages job on a single CPU: assumes that all other
506          * CPUs have been stopped during a panic.  If this isn't true for some
507          * arch, this will have to be implemented separately in each arch.  */
508         int                        i;
509         int                        j;
510         struct cfs_trace_cpu_data *tcd;
511
512         CFS_INIT_LIST_HEAD(&pc->pc_pages);
513
514         cfs_tcd_for_each(tcd, i, j) {
515                 cfs_list_splice_init(&tcd->tcd_pages, &pc->pc_pages);
516                 tcd->tcd_cur_pages = 0;
517
518                 if (pc->pc_want_daemon_pages) {
519                         cfs_list_splice_init(&tcd->tcd_daemon_pages,
520                                              &pc->pc_pages);
521                         tcd->tcd_cur_daemon_pages = 0;
522                 }
523         }
524 }
525
526 static void collect_pages_on_all_cpus(struct page_collection *pc)
527 {
528         struct cfs_trace_cpu_data *tcd;
529         int i, cpu;
530
531         spin_lock(&pc->pc_lock);
532         cfs_for_each_possible_cpu(cpu) {
533                 cfs_tcd_for_each_type_lock(tcd, i, cpu) {
534                         cfs_list_splice_init(&tcd->tcd_pages, &pc->pc_pages);
535                         tcd->tcd_cur_pages = 0;
536                         if (pc->pc_want_daemon_pages) {
537                                 cfs_list_splice_init(&tcd->tcd_daemon_pages,
538                                                      &pc->pc_pages);
539                                 tcd->tcd_cur_daemon_pages = 0;
540                         }
541                 }
542         }
543         spin_unlock(&pc->pc_lock);
544 }
545
546 static void collect_pages(struct page_collection *pc)
547 {
548         CFS_INIT_LIST_HEAD(&pc->pc_pages);
549
550         if (libcfs_panic_in_progress)
551                 panic_collect_pages(pc);
552         else
553                 collect_pages_on_all_cpus(pc);
554 }
555
556 static void put_pages_back_on_all_cpus(struct page_collection *pc)
557 {
558         struct cfs_trace_cpu_data *tcd;
559         cfs_list_t *cur_head;
560         struct cfs_trace_page *tage;
561         struct cfs_trace_page *tmp;
562         int i, cpu;
563
564         spin_lock(&pc->pc_lock);
565         cfs_for_each_possible_cpu(cpu) {
566                 cfs_tcd_for_each_type_lock(tcd, i, cpu) {
567                         cur_head = tcd->tcd_pages.next;
568
569                         cfs_list_for_each_entry_safe_typed(tage, tmp,
570                                                            &pc->pc_pages,
571                                                            struct cfs_trace_page,
572                                                            linkage) {
573
574                                 __LASSERT_TAGE_INVARIANT(tage);
575
576                                 if (tage->cpu != cpu || tage->type != i)
577                                         continue;
578
579                                 cfs_tage_to_tail(tage, cur_head);
580                                 tcd->tcd_cur_pages++;
581                         }
582                 }
583         }
584         spin_unlock(&pc->pc_lock);
585 }
586
587 static void put_pages_back(struct page_collection *pc)
588 {
589         if (!libcfs_panic_in_progress)
590                 put_pages_back_on_all_cpus(pc);
591 }
592
593 /* Add pages to a per-cpu debug daemon ringbuffer.  This buffer makes sure that
594  * we have a good amount of data at all times for dumping during an LBUG, even
595  * if we have been steadily writing (and otherwise discarding) pages via the
596  * debug daemon. */
597 static void put_pages_on_tcd_daemon_list(struct page_collection *pc,
598                                          struct cfs_trace_cpu_data *tcd)
599 {
600         struct cfs_trace_page *tage;
601         struct cfs_trace_page *tmp;
602
603         spin_lock(&pc->pc_lock);
604         cfs_list_for_each_entry_safe_typed(tage, tmp, &pc->pc_pages,
605                                            struct cfs_trace_page, linkage) {
606
607                 __LASSERT_TAGE_INVARIANT(tage);
608
609                 if (tage->cpu != tcd->tcd_cpu || tage->type != tcd->tcd_type)
610                         continue;
611
612                 cfs_tage_to_tail(tage, &tcd->tcd_daemon_pages);
613                 tcd->tcd_cur_daemon_pages++;
614
615                 if (tcd->tcd_cur_daemon_pages > tcd->tcd_max_pages) {
616                         struct cfs_trace_page *victim;
617
618                         __LASSERT(!cfs_list_empty(&tcd->tcd_daemon_pages));
619                         victim = cfs_tage_from_list(tcd->tcd_daemon_pages.next);
620
621                         __LASSERT_TAGE_INVARIANT(victim);
622
623                         cfs_list_del(&victim->linkage);
624                         cfs_tage_free(victim);
625                         tcd->tcd_cur_daemon_pages--;
626                 }
627         }
628         spin_unlock(&pc->pc_lock);
629 }
630
631 static void put_pages_on_daemon_list(struct page_collection *pc)
632 {
633         struct cfs_trace_cpu_data *tcd;
634         int i, cpu;
635
636         cfs_for_each_possible_cpu(cpu) {
637                 cfs_tcd_for_each_type_lock(tcd, i, cpu)
638                         put_pages_on_tcd_daemon_list(pc, tcd);
639         }
640 }
641
642 void cfs_trace_debug_print(void)
643 {
644         struct page_collection pc;
645         struct cfs_trace_page *tage;
646         struct cfs_trace_page *tmp;
647
648         spin_lock_init(&pc.pc_lock);
649
650         pc.pc_want_daemon_pages = 1;
651         collect_pages(&pc);
652         cfs_list_for_each_entry_safe_typed(tage, tmp, &pc.pc_pages,
653                                            struct cfs_trace_page, linkage) {
654                 char *p, *file, *fn;
655                 cfs_page_t *page;
656
657                 __LASSERT_TAGE_INVARIANT(tage);
658
659                 page = tage->page;
660                 p = cfs_page_address(page);
661                 while (p < ((char *)cfs_page_address(page) + tage->used)) {
662                         struct ptldebug_header *hdr;
663                         int len;
664                         hdr = (void *)p;
665                         p += sizeof(*hdr);
666                         file = p;
667                         p += strlen(file) + 1;
668                         fn = p;
669                         p += strlen(fn) + 1;
670                         len = hdr->ph_len - (int)(p - (char *)hdr);
671
672                         cfs_print_to_console(hdr, D_EMERG, p, len, file, fn);
673
674                         p += len;
675                 }
676
677                 cfs_list_del(&tage->linkage);
678                 cfs_tage_free(tage);
679         }
680 }
681
682 int cfs_tracefile_dump_all_pages(char *filename)
683 {
684         struct page_collection pc;
685         cfs_file_t *filp;
686         struct cfs_trace_page *tage;
687         struct cfs_trace_page *tmp;
688         int rc;
689
690         CFS_DECL_MMSPACE;
691
692         cfs_tracefile_write_lock();
693
694         filp = cfs_filp_open(filename,
695                              O_CREAT|O_EXCL|O_WRONLY|O_LARGEFILE, 0600, &rc);
696         if (!filp) {
697                 if (rc != -EEXIST)
698                         printk(CFS_KERN_ERR
699                                "LustreError: can't open %s for dump: rc %d\n",
700                                filename, rc);
701                 goto out;
702         }
703
704         spin_lock_init(&pc.pc_lock);
705         pc.pc_want_daemon_pages = 1;
706         collect_pages(&pc);
707         if (cfs_list_empty(&pc.pc_pages)) {
708                 rc = 0;
709                 goto close;
710         }
711
712         /* ok, for now, just write the pages.  in the future we'll be building
713          * iobufs with the pages and calling generic_direct_IO */
714         CFS_MMSPACE_OPEN;
715         cfs_list_for_each_entry_safe_typed(tage, tmp, &pc.pc_pages,
716                                            struct cfs_trace_page, linkage) {
717
718                 __LASSERT_TAGE_INVARIANT(tage);
719
720                 rc = cfs_filp_write(filp, cfs_page_address(tage->page),
721                                     tage->used, cfs_filp_poff(filp));
722                 if (rc != (int)tage->used) {
723                         printk(CFS_KERN_WARNING "wanted to write %u but wrote "
724                                "%d\n", tage->used, rc);
725                         put_pages_back(&pc);
726                         __LASSERT(cfs_list_empty(&pc.pc_pages));
727                         break;
728                 }
729                 cfs_list_del(&tage->linkage);
730                 cfs_tage_free(tage);
731         }
732         CFS_MMSPACE_CLOSE;
733         rc = cfs_filp_fsync(filp);
734         if (rc)
735                 printk(CFS_KERN_ERR "sync returns %d\n", rc);
736  close:
737         cfs_filp_close(filp);
738  out:
739         cfs_tracefile_write_unlock();
740         return rc;
741 }
742
743 void cfs_trace_flush_pages(void)
744 {
745         struct page_collection pc;
746         struct cfs_trace_page *tage;
747         struct cfs_trace_page *tmp;
748
749         spin_lock_init(&pc.pc_lock);
750
751         pc.pc_want_daemon_pages = 1;
752         collect_pages(&pc);
753         cfs_list_for_each_entry_safe_typed(tage, tmp, &pc.pc_pages,
754                                            struct cfs_trace_page, linkage) {
755
756                 __LASSERT_TAGE_INVARIANT(tage);
757
758                 cfs_list_del(&tage->linkage);
759                 cfs_tage_free(tage);
760         }
761 }
762
763 int cfs_trace_copyin_string(char *knl_buffer, int knl_buffer_nob,
764                             const char *usr_buffer, int usr_buffer_nob)
765 {
766         int    nob;
767
768         if (usr_buffer_nob > knl_buffer_nob)
769                 return -EOVERFLOW;
770
771         if (cfs_copy_from_user((void *)knl_buffer,
772                            (void *)usr_buffer, usr_buffer_nob))
773                 return -EFAULT;
774
775         nob = strnlen(knl_buffer, usr_buffer_nob);
776         while (nob-- >= 0)                      /* strip trailing whitespace */
777                 if (!isspace(knl_buffer[nob]))
778                         break;
779
780         if (nob < 0)                            /* empty string */
781                 return -EINVAL;
782
783         if (nob == knl_buffer_nob)              /* no space to terminate */
784                 return -EOVERFLOW;
785
786         knl_buffer[nob + 1] = 0;                /* terminate */
787         return 0;
788 }
789 EXPORT_SYMBOL(cfs_trace_copyin_string);
790
791 int cfs_trace_copyout_string(char *usr_buffer, int usr_buffer_nob,
792                              const char *knl_buffer, char *append)
793 {
794         /* NB if 'append' != NULL, it's a single character to append to the
795          * copied out string - usually "\n", for /proc entries and "" (i.e. a
796          * terminating zero byte) for sysctl entries */
797         int   nob = strlen(knl_buffer);
798
799         if (nob > usr_buffer_nob)
800                 nob = usr_buffer_nob;
801
802         if (cfs_copy_to_user(usr_buffer, knl_buffer, nob))
803                 return -EFAULT;
804
805         if (append != NULL && nob < usr_buffer_nob) {
806                 if (cfs_copy_to_user(usr_buffer + nob, append, 1))
807                         return -EFAULT;
808
809                 nob++;
810         }
811
812         return nob;
813 }
814 EXPORT_SYMBOL(cfs_trace_copyout_string);
815
816 int cfs_trace_allocate_string_buffer(char **str, int nob)
817 {
818         if (nob > 2 * CFS_PAGE_SIZE)            /* string must be "sensible" */
819                 return -EINVAL;
820
821         *str = cfs_alloc(nob, CFS_ALLOC_STD | CFS_ALLOC_ZERO);
822         if (*str == NULL)
823                 return -ENOMEM;
824
825         return 0;
826 }
827
828 void cfs_trace_free_string_buffer(char *str, int nob)
829 {
830         cfs_free(str);
831 }
832
833 int cfs_trace_dump_debug_buffer_usrstr(void *usr_str, int usr_str_nob)
834 {
835         char         *str;
836         int           rc;
837
838         rc = cfs_trace_allocate_string_buffer(&str, usr_str_nob + 1);
839         if (rc != 0)
840                 return rc;
841
842         rc = cfs_trace_copyin_string(str, usr_str_nob + 1,
843                                      usr_str, usr_str_nob);
844         if (rc != 0)
845                 goto out;
846
847 #if !defined(__WINNT__)
848         if (str[0] != '/') {
849                 rc = -EINVAL;
850                 goto out;
851         }
852 #endif
853         rc = cfs_tracefile_dump_all_pages(str);
854 out:
855         cfs_trace_free_string_buffer(str, usr_str_nob + 1);
856         return rc;
857 }
858
859 int cfs_trace_daemon_command(char *str)
860 {
861         int       rc = 0;
862
863         cfs_tracefile_write_lock();
864
865         if (strcmp(str, "stop") == 0) {
866                 cfs_tracefile_write_unlock();
867                 cfs_trace_stop_thread();
868                 cfs_tracefile_write_lock();
869                 memset(cfs_tracefile, 0, sizeof(cfs_tracefile));
870
871         } else if (strncmp(str, "size=", 5) == 0) {
872                 cfs_tracefile_size = simple_strtoul(str + 5, NULL, 0);
873                 if (cfs_tracefile_size < 10 || cfs_tracefile_size > 20480)
874                         cfs_tracefile_size = CFS_TRACEFILE_SIZE;
875                 else
876                         cfs_tracefile_size <<= 20;
877
878         } else if (strlen(str) >= sizeof(cfs_tracefile)) {
879                 rc = -ENAMETOOLONG;
880 #ifndef __WINNT__
881         } else if (str[0] != '/') {
882                 rc = -EINVAL;
883 #endif
884         } else {
885                 strcpy(cfs_tracefile, str);
886
887                 printk(CFS_KERN_INFO
888                        "Lustre: debug daemon will attempt to start writing "
889                        "to %s (%lukB max)\n", cfs_tracefile,
890                        (long)(cfs_tracefile_size >> 10));
891
892                 cfs_trace_start_thread();
893         }
894
895         cfs_tracefile_write_unlock();
896         return rc;
897 }
898
899 int cfs_trace_daemon_command_usrstr(void *usr_str, int usr_str_nob)
900 {
901         char *str;
902         int   rc;
903
904         rc = cfs_trace_allocate_string_buffer(&str, usr_str_nob + 1);
905         if (rc != 0)
906                 return rc;
907
908         rc = cfs_trace_copyin_string(str, usr_str_nob + 1,
909                                  usr_str, usr_str_nob);
910         if (rc == 0)
911                 rc = cfs_trace_daemon_command(str);
912
913         cfs_trace_free_string_buffer(str, usr_str_nob + 1);
914         return rc;
915 }
916
917 int cfs_trace_set_debug_mb(int mb)
918 {
919         int i;
920         int j;
921         int pages;
922         int limit = cfs_trace_max_debug_mb();
923         struct cfs_trace_cpu_data *tcd;
924
925         if (mb < cfs_num_possible_cpus()) {
926                 printk(CFS_KERN_WARNING
927                        "Lustre: %d MB is too small for debug buffer size, "
928                        "setting it to %d MB.\n", mb, cfs_num_possible_cpus());
929                 mb = cfs_num_possible_cpus();
930         }
931
932         if (mb > limit) {
933                 printk(CFS_KERN_WARNING
934                        "Lustre: %d MB is too large for debug buffer size, "
935                        "setting it to %d MB.\n", mb, limit);
936                 mb = limit;
937         }
938
939         mb /= cfs_num_possible_cpus();
940         pages = mb << (20 - CFS_PAGE_SHIFT);
941
942         cfs_tracefile_write_lock();
943
944         cfs_tcd_for_each(tcd, i, j)
945                 tcd->tcd_max_pages = (pages * tcd->tcd_pages_factor) / 100;
946
947         cfs_tracefile_write_unlock();
948
949         return 0;
950 }
951
952 int cfs_trace_set_debug_mb_usrstr(void *usr_str, int usr_str_nob)
953 {
954         char     str[32];
955         int      rc;
956
957         rc = cfs_trace_copyin_string(str, sizeof(str), usr_str, usr_str_nob);
958         if (rc < 0)
959                 return rc;
960
961         return cfs_trace_set_debug_mb(simple_strtoul(str, NULL, 0));
962 }
963
964 int cfs_trace_get_debug_mb(void)
965 {
966         int i;
967         int j;
968         struct cfs_trace_cpu_data *tcd;
969         int total_pages = 0;
970
971         cfs_tracefile_read_lock();
972
973         cfs_tcd_for_each(tcd, i, j)
974                 total_pages += tcd->tcd_max_pages;
975
976         cfs_tracefile_read_unlock();
977
978         return (total_pages >> (20 - CFS_PAGE_SHIFT)) + 1;
979 }
980
981 static int tracefiled(void *arg)
982 {
983         struct page_collection pc;
984         struct tracefiled_ctl *tctl = arg;
985         struct cfs_trace_page *tage;
986         struct cfs_trace_page *tmp;
987         cfs_file_t *filp;
988         int last_loop = 0;
989         int rc;
990
991         CFS_DECL_MMSPACE;
992
993         /* we're started late enough that we pick up init's fs context */
994         /* this is so broken in uml?  what on earth is going on? */
995         cfs_daemonize("ktracefiled");
996
997         spin_lock_init(&pc.pc_lock);
998         complete(&tctl->tctl_start);
999
1000         while (1) {
1001                 cfs_waitlink_t __wait;
1002
1003                 pc.pc_want_daemon_pages = 0;
1004                 collect_pages(&pc);
1005                 if (cfs_list_empty(&pc.pc_pages))
1006                         goto end_loop;
1007
1008                 filp = NULL;
1009                 cfs_tracefile_read_lock();
1010                 if (cfs_tracefile[0] != 0) {
1011                         filp = cfs_filp_open(cfs_tracefile,
1012                                              O_CREAT | O_RDWR | O_LARGEFILE,
1013                                              0600, &rc);
1014                         if (!(filp))
1015                                 printk(CFS_KERN_WARNING "couldn't open %s: "
1016                                        "%d\n", cfs_tracefile, rc);
1017                 }
1018                 cfs_tracefile_read_unlock();
1019                 if (filp == NULL) {
1020                         put_pages_on_daemon_list(&pc);
1021                         __LASSERT(cfs_list_empty(&pc.pc_pages));
1022                         goto end_loop;
1023                 }
1024
1025                 CFS_MMSPACE_OPEN;
1026
1027                 cfs_list_for_each_entry_safe_typed(tage, tmp, &pc.pc_pages,
1028                                                    struct cfs_trace_page,
1029                                                    linkage) {
1030                         static loff_t f_pos;
1031
1032                         __LASSERT_TAGE_INVARIANT(tage);
1033
1034                         if (f_pos >= (off_t)cfs_tracefile_size)
1035                                 f_pos = 0;
1036                         else if (f_pos > (off_t)cfs_filp_size(filp))
1037                                 f_pos = cfs_filp_size(filp);
1038
1039                         rc = cfs_filp_write(filp, cfs_page_address(tage->page),
1040                                             tage->used, &f_pos);
1041                         if (rc != (int)tage->used) {
1042                                 printk(CFS_KERN_WARNING "wanted to write %u "
1043                                        "but wrote %d\n", tage->used, rc);
1044                                 put_pages_back(&pc);
1045                                 __LASSERT(cfs_list_empty(&pc.pc_pages));
1046                         }
1047                 }
1048                 CFS_MMSPACE_CLOSE;
1049
1050                 cfs_filp_close(filp);
1051                 put_pages_on_daemon_list(&pc);
1052                 if (!cfs_list_empty(&pc.pc_pages)) {
1053                         int i;
1054
1055                         printk(CFS_KERN_ALERT "Lustre: trace pages aren't "
1056                                " empty\n");
1057                         printk(CFS_KERN_ERR "total cpus(%d): ",
1058                                cfs_num_possible_cpus());
1059                         for (i = 0; i < cfs_num_possible_cpus(); i++)
1060                                 if (cpu_online(i))
1061                                         printk(CFS_KERN_ERR "%d(on) ", i);
1062                                 else
1063                                         printk(CFS_KERN_ERR "%d(off) ", i);
1064                         printk(CFS_KERN_ERR "\n");
1065
1066                         i = 0;
1067                         cfs_list_for_each_entry_safe(tage, tmp, &pc.pc_pages,
1068                                                      linkage)
1069                                 printk(CFS_KERN_ERR "page %d belongs to cpu "
1070                                        "%d\n", ++i, tage->cpu);
1071                         printk(CFS_KERN_ERR "There are %d pages unwritten\n",
1072                                i);
1073                 }
1074                 __LASSERT(cfs_list_empty(&pc.pc_pages));
1075 end_loop:
1076                 if (cfs_atomic_read(&tctl->tctl_shutdown)) {
1077                         if (last_loop == 0) {
1078                                 last_loop = 1;
1079                                 continue;
1080                         } else {
1081                                 break;
1082                         }
1083                 }
1084                 cfs_waitlink_init(&__wait);
1085                 cfs_waitq_add(&tctl->tctl_waitq, &__wait);
1086                 cfs_set_current_state(CFS_TASK_INTERRUPTIBLE);
1087                 cfs_waitq_timedwait(&__wait, CFS_TASK_INTERRUPTIBLE,
1088                                     cfs_time_seconds(1));
1089                 cfs_waitq_del(&tctl->tctl_waitq, &__wait);
1090         }
1091         complete(&tctl->tctl_stop);
1092         return 0;
1093 }
1094
1095 int cfs_trace_start_thread(void)
1096 {
1097         struct tracefiled_ctl *tctl = &trace_tctl;
1098         int rc = 0;
1099
1100         mutex_lock(&cfs_trace_thread_mutex);
1101         if (thread_running)
1102                 goto out;
1103
1104         init_completion(&tctl->tctl_start);
1105         init_completion(&tctl->tctl_stop);
1106         cfs_waitq_init(&tctl->tctl_waitq);
1107         cfs_atomic_set(&tctl->tctl_shutdown, 0);
1108
1109         if (cfs_create_thread(tracefiled, tctl, 0) < 0) {
1110                 rc = -ECHILD;
1111                 goto out;
1112         }
1113
1114         wait_for_completion(&tctl->tctl_start);
1115         thread_running = 1;
1116 out:
1117         mutex_unlock(&cfs_trace_thread_mutex);
1118         return rc;
1119 }
1120
1121 void cfs_trace_stop_thread(void)
1122 {
1123         struct tracefiled_ctl *tctl = &trace_tctl;
1124
1125         mutex_lock(&cfs_trace_thread_mutex);
1126         if (thread_running) {
1127                 printk(CFS_KERN_INFO
1128                        "Lustre: shutting down debug daemon thread...\n");
1129                 cfs_atomic_set(&tctl->tctl_shutdown, 1);
1130                 wait_for_completion(&tctl->tctl_stop);
1131                 thread_running = 0;
1132         }
1133         mutex_unlock(&cfs_trace_thread_mutex);
1134 }
1135
1136 int cfs_tracefile_init(int max_pages)
1137 {
1138         struct cfs_trace_cpu_data *tcd;
1139         int                    i;
1140         int                    j;
1141         int                    rc;
1142         int                    factor;
1143
1144         rc = cfs_tracefile_init_arch();
1145         if (rc != 0)
1146                 return rc;
1147
1148         cfs_tcd_for_each(tcd, i, j) {
1149                 /* tcd_pages_factor is initialized int tracefile_init_arch. */
1150                 factor = tcd->tcd_pages_factor;
1151                 CFS_INIT_LIST_HEAD(&tcd->tcd_pages);
1152                 CFS_INIT_LIST_HEAD(&tcd->tcd_stock_pages);
1153                 CFS_INIT_LIST_HEAD(&tcd->tcd_daemon_pages);
1154                 tcd->tcd_cur_pages = 0;
1155                 tcd->tcd_cur_stock_pages = 0;
1156                 tcd->tcd_cur_daemon_pages = 0;
1157                 tcd->tcd_max_pages = (max_pages * factor) / 100;
1158                 LASSERT(tcd->tcd_max_pages > 0);
1159                 tcd->tcd_shutting_down = 0;
1160         }
1161
1162         return 0;
1163 }
1164
1165 static void trace_cleanup_on_all_cpus(void)
1166 {
1167         struct cfs_trace_cpu_data *tcd;
1168         struct cfs_trace_page *tage;
1169         struct cfs_trace_page *tmp;
1170         int i, cpu;
1171
1172         cfs_for_each_possible_cpu(cpu) {
1173                 cfs_tcd_for_each_type_lock(tcd, i, cpu) {
1174                         tcd->tcd_shutting_down = 1;
1175
1176                         cfs_list_for_each_entry_safe_typed(tage, tmp,
1177                                                            &tcd->tcd_pages,
1178                                                            struct cfs_trace_page,
1179                                                            linkage) {
1180                                 __LASSERT_TAGE_INVARIANT(tage);
1181
1182                                 cfs_list_del(&tage->linkage);
1183                                 cfs_tage_free(tage);
1184                         }
1185
1186                         tcd->tcd_cur_pages = 0;
1187                 }
1188         }
1189 }
1190
1191 static void cfs_trace_cleanup(void)
1192 {
1193         struct page_collection pc;
1194
1195         CFS_INIT_LIST_HEAD(&pc.pc_pages);
1196         spin_lock_init(&pc.pc_lock);
1197
1198         trace_cleanup_on_all_cpus();
1199
1200         cfs_tracefile_fini_arch();
1201 }
1202
1203 void cfs_tracefile_exit(void)
1204 {
1205         cfs_trace_stop_thread();
1206         cfs_trace_cleanup();
1207 }