linux/drivers/staging/lustre/lnet/libcfs/tracefile.c
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   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.gnu.org/licenses/gpl-2.0.html
  19 *
  20 * GPL HEADER END
  21 */
  22/*
  23 * Copyright (c) 2008, 2010, Oracle and/or its affiliates. All rights reserved.
  24 * Use is subject to license terms.
  25 *
  26 * Copyright (c) 2012, Intel Corporation.
  27 */
  28/*
  29 * This file is part of Lustre, http://www.lustre.org/
  30 * Lustre is a trademark of Sun Microsystems, Inc.
  31 *
  32 * libcfs/libcfs/tracefile.c
  33 *
  34 * Author: Zach Brown <zab@clusterfs.com>
  35 * Author: Phil Schwan <phil@clusterfs.com>
  36 */
  37
  38#define DEBUG_SUBSYSTEM S_LNET
  39#define LUSTRE_TRACEFILE_PRIVATE
  40#include "tracefile.h"
  41
  42#include "../../include/linux/libcfs/libcfs.h"
  43
  44/* XXX move things up to the top, comment */
  45union cfs_trace_data_union (*cfs_trace_data[TCD_MAX_TYPES])[NR_CPUS] __cacheline_aligned;
  46
  47char cfs_tracefile[TRACEFILE_NAME_SIZE];
  48long long cfs_tracefile_size = CFS_TRACEFILE_SIZE;
  49static struct tracefiled_ctl trace_tctl;
  50static DEFINE_MUTEX(cfs_trace_thread_mutex);
  51static int thread_running;
  52
  53static atomic_t cfs_tage_allocated = ATOMIC_INIT(0);
  54
  55struct page_collection {
  56        struct list_head        pc_pages;
  57        /*
  58         * if this flag is set, collect_pages() will spill both
  59         * ->tcd_daemon_pages and ->tcd_pages to the ->pc_pages. Otherwise,
  60         * only ->tcd_pages are spilled.
  61         */
  62        int                     pc_want_daemon_pages;
  63};
  64
  65struct tracefiled_ctl {
  66        struct completion       tctl_start;
  67        struct completion       tctl_stop;
  68        wait_queue_head_t       tctl_waitq;
  69        pid_t                   tctl_pid;
  70        atomic_t                tctl_shutdown;
  71};
  72
  73/*
  74 * small data-structure for each page owned by tracefiled.
  75 */
  76struct cfs_trace_page {
  77        /*
  78         * page itself
  79         */
  80        struct page             *page;
  81        /*
  82         * linkage into one of the lists in trace_data_union or
  83         * page_collection
  84         */
  85        struct list_head        linkage;
  86        /*
  87         * number of bytes used within this page
  88         */
  89        unsigned int            used;
  90        /*
  91         * cpu that owns this page
  92         */
  93        unsigned short          cpu;
  94        /*
  95         * type(context) of this page
  96         */
  97        unsigned short          type;
  98};
  99
 100static void put_pages_on_tcd_daemon_list(struct page_collection *pc,
 101                                         struct cfs_trace_cpu_data *tcd);
 102
 103static inline struct cfs_trace_page *
 104cfs_tage_from_list(struct list_head *list)
 105{
 106        return list_entry(list, struct cfs_trace_page, linkage);
 107}
 108
 109static struct cfs_trace_page *cfs_tage_alloc(gfp_t gfp)
 110{
 111        struct page *page;
 112        struct cfs_trace_page *tage;
 113
 114        /* My caller is trying to free memory */
 115        if (!in_interrupt() && memory_pressure_get())
 116                return NULL;
 117
 118        /*
 119         * Don't spam console with allocation failures: they will be reported
 120         * by upper layer anyway.
 121         */
 122        gfp |= __GFP_NOWARN;
 123        page = alloc_page(gfp);
 124        if (!page)
 125                return NULL;
 126
 127        tage = kmalloc(sizeof(*tage), gfp);
 128        if (!tage) {
 129                __free_page(page);
 130                return NULL;
 131        }
 132
 133        tage->page = page;
 134        atomic_inc(&cfs_tage_allocated);
 135        return tage;
 136}
 137
 138static void cfs_tage_free(struct cfs_trace_page *tage)
 139{
 140        __free_page(tage->page);
 141        kfree(tage);
 142        atomic_dec(&cfs_tage_allocated);
 143}
 144
 145static void cfs_tage_to_tail(struct cfs_trace_page *tage,
 146                             struct list_head *queue)
 147{
 148        list_move_tail(&tage->linkage, queue);
 149}
 150
 151int cfs_trace_refill_stock(struct cfs_trace_cpu_data *tcd, gfp_t gfp,
 152                           struct list_head *stock)
 153{
 154        int i;
 155
 156        /*
 157         * XXX nikita: do NOT call portals_debug_msg() (CDEBUG/ENTRY/EXIT)
 158         * from here: this will lead to infinite recursion.
 159         */
 160
 161        for (i = 0; i + tcd->tcd_cur_stock_pages < TCD_STOCK_PAGES ; ++i) {
 162                struct cfs_trace_page *tage;
 163
 164                tage = cfs_tage_alloc(gfp);
 165                if (!tage)
 166                        break;
 167                list_add_tail(&tage->linkage, stock);
 168        }
 169        return i;
 170}
 171
 172/* return a page that has 'len' bytes left at the end */
 173static struct cfs_trace_page *
 174cfs_trace_get_tage_try(struct cfs_trace_cpu_data *tcd, unsigned long len)
 175{
 176        struct cfs_trace_page *tage;
 177
 178        if (tcd->tcd_cur_pages > 0) {
 179                __LASSERT(!list_empty(&tcd->tcd_pages));
 180                tage = cfs_tage_from_list(tcd->tcd_pages.prev);
 181                if (tage->used + len <= PAGE_SIZE)
 182                        return tage;
 183        }
 184
 185        if (tcd->tcd_cur_pages < tcd->tcd_max_pages) {
 186                if (tcd->tcd_cur_stock_pages > 0) {
 187                        tage = cfs_tage_from_list(tcd->tcd_stock_pages.prev);
 188                        --tcd->tcd_cur_stock_pages;
 189                        list_del_init(&tage->linkage);
 190                } else {
 191                        tage = cfs_tage_alloc(GFP_ATOMIC);
 192                        if (unlikely(!tage)) {
 193                                if ((!memory_pressure_get() ||
 194                                     in_interrupt()) && printk_ratelimit())
 195                                        printk(KERN_WARNING
 196                                               "cannot allocate a tage (%ld)\n",
 197                                               tcd->tcd_cur_pages);
 198                                return NULL;
 199                        }
 200                }
 201
 202                tage->used = 0;
 203                tage->cpu = smp_processor_id();
 204                tage->type = tcd->tcd_type;
 205                list_add_tail(&tage->linkage, &tcd->tcd_pages);
 206                tcd->tcd_cur_pages++;
 207
 208                if (tcd->tcd_cur_pages > 8 && thread_running) {
 209                        struct tracefiled_ctl *tctl = &trace_tctl;
 210                        /*
 211                         * wake up tracefiled to process some pages.
 212                         */
 213                        wake_up(&tctl->tctl_waitq);
 214                }
 215                return tage;
 216        }
 217        return NULL;
 218}
 219
 220static void cfs_tcd_shrink(struct cfs_trace_cpu_data *tcd)
 221{
 222        int pgcount = tcd->tcd_cur_pages / 10;
 223        struct page_collection pc;
 224        struct cfs_trace_page *tage;
 225        struct cfs_trace_page *tmp;
 226
 227        /*
 228         * XXX nikita: do NOT call portals_debug_msg() (CDEBUG/ENTRY/EXIT)
 229         * from here: this will lead to infinite recursion.
 230         */
 231
 232        if (printk_ratelimit())
 233                printk(KERN_WARNING "debug daemon buffer overflowed; discarding 10%% of pages (%d of %ld)\n",
 234                       pgcount + 1, tcd->tcd_cur_pages);
 235
 236        INIT_LIST_HEAD(&pc.pc_pages);
 237
 238        list_for_each_entry_safe(tage, tmp, &tcd->tcd_pages, linkage) {
 239                if (!pgcount--)
 240                        break;
 241
 242                list_move_tail(&tage->linkage, &pc.pc_pages);
 243                tcd->tcd_cur_pages--;
 244        }
 245        put_pages_on_tcd_daemon_list(&pc, tcd);
 246}
 247
 248/* return a page that has 'len' bytes left at the end */
 249static struct cfs_trace_page *cfs_trace_get_tage(struct cfs_trace_cpu_data *tcd,
 250                                                 unsigned long len)
 251{
 252        struct cfs_trace_page *tage;
 253
 254        /*
 255         * XXX nikita: do NOT call portals_debug_msg() (CDEBUG/ENTRY/EXIT)
 256         * from here: this will lead to infinite recursion.
 257         */
 258
 259        if (len > PAGE_SIZE) {
 260                pr_err("cowardly refusing to write %lu bytes in a page\n", len);
 261                return NULL;
 262        }
 263
 264        tage = cfs_trace_get_tage_try(tcd, len);
 265        if (tage)
 266                return tage;
 267        if (thread_running)
 268                cfs_tcd_shrink(tcd);
 269        if (tcd->tcd_cur_pages > 0) {
 270                tage = cfs_tage_from_list(tcd->tcd_pages.next);
 271                tage->used = 0;
 272                cfs_tage_to_tail(tage, &tcd->tcd_pages);
 273        }
 274        return tage;
 275}
 276
 277int libcfs_debug_msg(struct libcfs_debug_msg_data *msgdata,
 278                     const char *format, ...)
 279{
 280        va_list args;
 281        int rc;
 282
 283        va_start(args, format);
 284        rc = libcfs_debug_vmsg2(msgdata, format, args, NULL);
 285        va_end(args);
 286
 287        return rc;
 288}
 289EXPORT_SYMBOL(libcfs_debug_msg);
 290
 291int libcfs_debug_vmsg2(struct libcfs_debug_msg_data *msgdata,
 292                       const char *format1, va_list args,
 293                       const char *format2, ...)
 294{
 295        struct cfs_trace_cpu_data *tcd = NULL;
 296        struct ptldebug_header header = { 0 };
 297        struct cfs_trace_page *tage;
 298        /* string_buf is used only if tcd != NULL, and is always set then */
 299        char *string_buf = NULL;
 300        char *debug_buf;
 301        int known_size;
 302        int needed = 85; /* average message length */
 303        int max_nob;
 304        va_list ap;
 305        int depth;
 306        int i;
 307        int remain;
 308        int mask = msgdata->msg_mask;
 309        const char *file = kbasename(msgdata->msg_file);
 310        struct cfs_debug_limit_state *cdls = msgdata->msg_cdls;
 311
 312        tcd = cfs_trace_get_tcd();
 313
 314        /* cfs_trace_get_tcd() grabs a lock, which disables preemption and
 315         * pins us to a particular CPU.  This avoids an smp_processor_id()
 316         * warning on Linux when debugging is enabled.
 317         */
 318        cfs_set_ptldebug_header(&header, msgdata, CDEBUG_STACK());
 319
 320        if (!tcd)               /* arch may not log in IRQ context */
 321                goto console;
 322
 323        if (!tcd->tcd_cur_pages)
 324                header.ph_flags |= PH_FLAG_FIRST_RECORD;
 325
 326        if (tcd->tcd_shutting_down) {
 327                cfs_trace_put_tcd(tcd);
 328                tcd = NULL;
 329                goto console;
 330        }
 331
 332        depth = __current_nesting_level();
 333        known_size = strlen(file) + 1 + depth;
 334        if (msgdata->msg_fn)
 335                known_size += strlen(msgdata->msg_fn) + 1;
 336
 337        if (libcfs_debug_binary)
 338                known_size += sizeof(header);
 339
 340        /*
 341         * '2' used because vsnprintf return real size required for output
 342         * _without_ terminating NULL.
 343         * if needed is to small for this format.
 344         */
 345        for (i = 0; i < 2; i++) {
 346                tage = cfs_trace_get_tage(tcd, needed + known_size + 1);
 347                if (!tage) {
 348                        if (needed + known_size > PAGE_SIZE)
 349                                mask |= D_ERROR;
 350
 351                        cfs_trace_put_tcd(tcd);
 352                        tcd = NULL;
 353                        goto console;
 354                }
 355
 356                string_buf = (char *)page_address(tage->page) +
 357                                        tage->used + known_size;
 358
 359                max_nob = PAGE_SIZE - tage->used - known_size;
 360                if (max_nob <= 0) {
 361                        printk(KERN_EMERG "negative max_nob: %d\n",
 362                               max_nob);
 363                        mask |= D_ERROR;
 364                        cfs_trace_put_tcd(tcd);
 365                        tcd = NULL;
 366                        goto console;
 367                }
 368
 369                needed = 0;
 370                if (format1) {
 371                        va_copy(ap, args);
 372                        needed = vsnprintf(string_buf, max_nob, format1, ap);
 373                        va_end(ap);
 374                }
 375
 376                if (format2) {
 377                        remain = max_nob - needed;
 378                        if (remain < 0)
 379                                remain = 0;
 380
 381                        va_start(ap, format2);
 382                        needed += vsnprintf(string_buf + needed, remain,
 383                                            format2, ap);
 384                        va_end(ap);
 385                }
 386
 387                if (needed < max_nob) /* well. printing ok.. */
 388                        break;
 389        }
 390
 391        if (*(string_buf + needed - 1) != '\n')
 392                printk(KERN_INFO "format at %s:%d:%s doesn't end in newline\n",
 393                       file, msgdata->msg_line, msgdata->msg_fn);
 394
 395        header.ph_len = known_size + needed;
 396        debug_buf = (char *)page_address(tage->page) + tage->used;
 397
 398        if (libcfs_debug_binary) {
 399                memcpy(debug_buf, &header, sizeof(header));
 400                tage->used += sizeof(header);
 401                debug_buf += sizeof(header);
 402        }
 403
 404        /* indent message according to the nesting level */
 405        while (depth-- > 0) {
 406                *(debug_buf++) = '.';
 407                ++tage->used;
 408        }
 409
 410        strcpy(debug_buf, file);
 411        tage->used += strlen(file) + 1;
 412        debug_buf += strlen(file) + 1;
 413
 414        if (msgdata->msg_fn) {
 415                strcpy(debug_buf, msgdata->msg_fn);
 416                tage->used += strlen(msgdata->msg_fn) + 1;
 417                debug_buf += strlen(msgdata->msg_fn) + 1;
 418        }
 419
 420        __LASSERT(debug_buf == string_buf);
 421
 422        tage->used += needed;
 423        __LASSERT(tage->used <= PAGE_SIZE);
 424
 425console:
 426        if (!(mask & libcfs_printk)) {
 427                /* no console output requested */
 428                if (tcd)
 429                        cfs_trace_put_tcd(tcd);
 430                return 1;
 431        }
 432
 433        if (cdls) {
 434                if (libcfs_console_ratelimit &&
 435                    cdls->cdls_next &&          /* not first time ever */
 436                    !cfs_time_after(cfs_time_current(), cdls->cdls_next)) {
 437                        /* skipping a console message */
 438                        cdls->cdls_count++;
 439                        if (tcd)
 440                                cfs_trace_put_tcd(tcd);
 441                        return 1;
 442                }
 443
 444                if (cfs_time_after(cfs_time_current(),
 445                                   cdls->cdls_next + libcfs_console_max_delay +
 446                                   cfs_time_seconds(10))) {
 447                        /* last timeout was a long time ago */
 448                        cdls->cdls_delay /= libcfs_console_backoff * 4;
 449                } else {
 450                        cdls->cdls_delay *= libcfs_console_backoff;
 451                }
 452
 453                if (cdls->cdls_delay < libcfs_console_min_delay)
 454                        cdls->cdls_delay = libcfs_console_min_delay;
 455                else if (cdls->cdls_delay > libcfs_console_max_delay)
 456                        cdls->cdls_delay = libcfs_console_max_delay;
 457
 458                /* ensure cdls_next is never zero after it's been seen */
 459                cdls->cdls_next = (cfs_time_current() + cdls->cdls_delay) | 1;
 460        }
 461
 462        if (tcd) {
 463                cfs_print_to_console(&header, mask, string_buf, needed, file,
 464                                     msgdata->msg_fn);
 465                cfs_trace_put_tcd(tcd);
 466        } else {
 467                string_buf = cfs_trace_get_console_buffer();
 468
 469                needed = 0;
 470                if (format1) {
 471                        va_copy(ap, args);
 472                        needed = vsnprintf(string_buf,
 473                                           CFS_TRACE_CONSOLE_BUFFER_SIZE,
 474                                           format1, ap);
 475                        va_end(ap);
 476                }
 477                if (format2) {
 478                        remain = CFS_TRACE_CONSOLE_BUFFER_SIZE - needed;
 479                        if (remain > 0) {
 480                                va_start(ap, format2);
 481                                needed += vsnprintf(string_buf + needed, remain,
 482                                                    format2, ap);
 483                                va_end(ap);
 484                        }
 485                }
 486                cfs_print_to_console(&header, mask,
 487                                     string_buf, needed, file, msgdata->msg_fn);
 488
 489                put_cpu();
 490        }
 491
 492        if (cdls && cdls->cdls_count) {
 493                string_buf = cfs_trace_get_console_buffer();
 494
 495                needed = snprintf(string_buf, CFS_TRACE_CONSOLE_BUFFER_SIZE,
 496                                  "Skipped %d previous similar message%s\n",
 497                                  cdls->cdls_count,
 498                                  (cdls->cdls_count > 1) ? "s" : "");
 499
 500                cfs_print_to_console(&header, mask,
 501                                     string_buf, needed, file, msgdata->msg_fn);
 502
 503                put_cpu();
 504                cdls->cdls_count = 0;
 505        }
 506
 507        return 0;
 508}
 509EXPORT_SYMBOL(libcfs_debug_vmsg2);
 510
 511void
 512cfs_trace_assertion_failed(const char *str,
 513                           struct libcfs_debug_msg_data *msgdata)
 514{
 515        struct ptldebug_header hdr;
 516
 517        libcfs_panic_in_progress = 1;
 518        libcfs_catastrophe = 1;
 519        mb();
 520
 521        cfs_set_ptldebug_header(&hdr, msgdata, CDEBUG_STACK());
 522
 523        cfs_print_to_console(&hdr, D_EMERG, str, strlen(str),
 524                             msgdata->msg_file, msgdata->msg_fn);
 525
 526        panic("Lustre debug assertion failure\n");
 527
 528        /* not reached */
 529}
 530
 531static void
 532panic_collect_pages(struct page_collection *pc)
 533{
 534        /* Do the collect_pages job on a single CPU: assumes that all other
 535         * CPUs have been stopped during a panic.  If this isn't true for some
 536         * arch, this will have to be implemented separately in each arch.
 537         */
 538        struct cfs_trace_cpu_data *tcd;
 539        int i;
 540        int j;
 541
 542        INIT_LIST_HEAD(&pc->pc_pages);
 543
 544        cfs_tcd_for_each(tcd, i, j) {
 545                list_splice_init(&tcd->tcd_pages, &pc->pc_pages);
 546                tcd->tcd_cur_pages = 0;
 547
 548                if (pc->pc_want_daemon_pages) {
 549                        list_splice_init(&tcd->tcd_daemon_pages, &pc->pc_pages);
 550                        tcd->tcd_cur_daemon_pages = 0;
 551                }
 552        }
 553}
 554
 555static void collect_pages_on_all_cpus(struct page_collection *pc)
 556{
 557        struct cfs_trace_cpu_data *tcd;
 558        int i, cpu;
 559
 560        for_each_possible_cpu(cpu) {
 561                cfs_tcd_for_each_type_lock(tcd, i, cpu) {
 562                        list_splice_init(&tcd->tcd_pages, &pc->pc_pages);
 563                        tcd->tcd_cur_pages = 0;
 564                        if (pc->pc_want_daemon_pages) {
 565                                list_splice_init(&tcd->tcd_daemon_pages,
 566                                                 &pc->pc_pages);
 567                                tcd->tcd_cur_daemon_pages = 0;
 568                        }
 569                }
 570        }
 571}
 572
 573static void collect_pages(struct page_collection *pc)
 574{
 575        INIT_LIST_HEAD(&pc->pc_pages);
 576
 577        if (libcfs_panic_in_progress)
 578                panic_collect_pages(pc);
 579        else
 580                collect_pages_on_all_cpus(pc);
 581}
 582
 583static void put_pages_back_on_all_cpus(struct page_collection *pc)
 584{
 585        struct cfs_trace_cpu_data *tcd;
 586        struct list_head *cur_head;
 587        struct cfs_trace_page *tage;
 588        struct cfs_trace_page *tmp;
 589        int i, cpu;
 590
 591        for_each_possible_cpu(cpu) {
 592                cfs_tcd_for_each_type_lock(tcd, i, cpu) {
 593                        cur_head = tcd->tcd_pages.next;
 594
 595                        list_for_each_entry_safe(tage, tmp, &pc->pc_pages,
 596                                                 linkage) {
 597                                __LASSERT_TAGE_INVARIANT(tage);
 598
 599                                if (tage->cpu != cpu || tage->type != i)
 600                                        continue;
 601
 602                                cfs_tage_to_tail(tage, cur_head);
 603                                tcd->tcd_cur_pages++;
 604                        }
 605                }
 606        }
 607}
 608
 609static void put_pages_back(struct page_collection *pc)
 610{
 611        if (!libcfs_panic_in_progress)
 612                put_pages_back_on_all_cpus(pc);
 613}
 614
 615/* Add pages to a per-cpu debug daemon ringbuffer.  This buffer makes sure that
 616 * we have a good amount of data at all times for dumping during an LBUG, even
 617 * if we have been steadily writing (and otherwise discarding) pages via the
 618 * debug daemon.
 619 */
 620static void put_pages_on_tcd_daemon_list(struct page_collection *pc,
 621                                         struct cfs_trace_cpu_data *tcd)
 622{
 623        struct cfs_trace_page *tage;
 624        struct cfs_trace_page *tmp;
 625
 626        list_for_each_entry_safe(tage, tmp, &pc->pc_pages, linkage) {
 627                __LASSERT_TAGE_INVARIANT(tage);
 628
 629                if (tage->cpu != tcd->tcd_cpu || tage->type != tcd->tcd_type)
 630                        continue;
 631
 632                cfs_tage_to_tail(tage, &tcd->tcd_daemon_pages);
 633                tcd->tcd_cur_daemon_pages++;
 634
 635                if (tcd->tcd_cur_daemon_pages > tcd->tcd_max_pages) {
 636                        struct cfs_trace_page *victim;
 637
 638                        __LASSERT(!list_empty(&tcd->tcd_daemon_pages));
 639                        victim = cfs_tage_from_list(tcd->tcd_daemon_pages.next);
 640
 641                        __LASSERT_TAGE_INVARIANT(victim);
 642
 643                        list_del(&victim->linkage);
 644                        cfs_tage_free(victim);
 645                        tcd->tcd_cur_daemon_pages--;
 646                }
 647        }
 648}
 649
 650static void put_pages_on_daemon_list(struct page_collection *pc)
 651{
 652        struct cfs_trace_cpu_data *tcd;
 653        int i, cpu;
 654
 655        for_each_possible_cpu(cpu) {
 656                cfs_tcd_for_each_type_lock(tcd, i, cpu)
 657                        put_pages_on_tcd_daemon_list(pc, tcd);
 658        }
 659}
 660
 661void cfs_trace_debug_print(void)
 662{
 663        struct page_collection pc;
 664        struct cfs_trace_page *tage;
 665        struct cfs_trace_page *tmp;
 666
 667        pc.pc_want_daemon_pages = 1;
 668        collect_pages(&pc);
 669        list_for_each_entry_safe(tage, tmp, &pc.pc_pages, linkage) {
 670                char *p, *file, *fn;
 671                struct page *page;
 672
 673                __LASSERT_TAGE_INVARIANT(tage);
 674
 675                page = tage->page;
 676                p = page_address(page);
 677                while (p < ((char *)page_address(page) + tage->used)) {
 678                        struct ptldebug_header *hdr;
 679                        int len;
 680
 681                        hdr = (void *)p;
 682                        p += sizeof(*hdr);
 683                        file = p;
 684                        p += strlen(file) + 1;
 685                        fn = p;
 686                        p += strlen(fn) + 1;
 687                        len = hdr->ph_len - (int)(p - (char *)hdr);
 688
 689                        cfs_print_to_console(hdr, D_EMERG, p, len, file, fn);
 690
 691                        p += len;
 692                }
 693
 694                list_del(&tage->linkage);
 695                cfs_tage_free(tage);
 696        }
 697}
 698
 699int cfs_tracefile_dump_all_pages(char *filename)
 700{
 701        struct page_collection pc;
 702        struct file *filp;
 703        struct cfs_trace_page *tage;
 704        struct cfs_trace_page *tmp;
 705        char *buf;
 706        mm_segment_t __oldfs;
 707        int rc;
 708
 709        cfs_tracefile_write_lock();
 710
 711        filp = filp_open(filename, O_CREAT | O_EXCL | O_WRONLY | O_LARGEFILE,
 712                         0600);
 713        if (IS_ERR(filp)) {
 714                rc = PTR_ERR(filp);
 715                filp = NULL;
 716                pr_err("LustreError: can't open %s for dump: rc %d\n",
 717                       filename, rc);
 718                goto out;
 719        }
 720
 721        pc.pc_want_daemon_pages = 1;
 722        collect_pages(&pc);
 723        if (list_empty(&pc.pc_pages)) {
 724                rc = 0;
 725                goto close;
 726        }
 727        __oldfs = get_fs();
 728        set_fs(get_ds());
 729
 730        /* ok, for now, just write the pages.  in the future we'll be building
 731         * iobufs with the pages and calling generic_direct_IO
 732         */
 733        list_for_each_entry_safe(tage, tmp, &pc.pc_pages, linkage) {
 734                __LASSERT_TAGE_INVARIANT(tage);
 735
 736                buf = kmap(tage->page);
 737                rc = vfs_write(filp, (__force const char __user *)buf,
 738                               tage->used, &filp->f_pos);
 739                kunmap(tage->page);
 740
 741                if (rc != (int)tage->used) {
 742                        printk(KERN_WARNING "wanted to write %u but wrote %d\n",
 743                               tage->used, rc);
 744                        put_pages_back(&pc);
 745                        __LASSERT(list_empty(&pc.pc_pages));
 746                        break;
 747                }
 748                list_del(&tage->linkage);
 749                cfs_tage_free(tage);
 750        }
 751        set_fs(__oldfs);
 752        rc = vfs_fsync(filp, 1);
 753        if (rc)
 754                pr_err("sync returns %d\n", rc);
 755close:
 756        filp_close(filp, NULL);
 757out:
 758        cfs_tracefile_write_unlock();
 759        return rc;
 760}
 761
 762void cfs_trace_flush_pages(void)
 763{
 764        struct page_collection pc;
 765        struct cfs_trace_page *tage;
 766        struct cfs_trace_page *tmp;
 767
 768        pc.pc_want_daemon_pages = 1;
 769        collect_pages(&pc);
 770        list_for_each_entry_safe(tage, tmp, &pc.pc_pages, linkage) {
 771                __LASSERT_TAGE_INVARIANT(tage);
 772
 773                list_del(&tage->linkage);
 774                cfs_tage_free(tage);
 775        }
 776}
 777
 778int cfs_trace_copyin_string(char *knl_buffer, int knl_buffer_nob,
 779                            const char __user *usr_buffer, int usr_buffer_nob)
 780{
 781        int nob;
 782
 783        if (usr_buffer_nob > knl_buffer_nob)
 784                return -EOVERFLOW;
 785
 786        if (copy_from_user((void *)knl_buffer,
 787                           usr_buffer, usr_buffer_nob))
 788                return -EFAULT;
 789
 790        nob = strnlen(knl_buffer, usr_buffer_nob);
 791        while (nob-- >= 0)                    /* strip trailing whitespace */
 792                if (!isspace(knl_buffer[nob]))
 793                        break;
 794
 795        if (nob < 0)                        /* empty string */
 796                return -EINVAL;
 797
 798        if (nob == knl_buffer_nob)            /* no space to terminate */
 799                return -EOVERFLOW;
 800
 801        knl_buffer[nob + 1] = 0;                /* terminate */
 802        return 0;
 803}
 804EXPORT_SYMBOL(cfs_trace_copyin_string);
 805
 806int cfs_trace_copyout_string(char __user *usr_buffer, int usr_buffer_nob,
 807                             const char *knl_buffer, char *append)
 808{
 809        /*
 810         * NB if 'append' != NULL, it's a single character to append to the
 811         * copied out string - usually "\n" or "" (i.e. a terminating zero byte)
 812         */
 813        int nob = strlen(knl_buffer);
 814
 815        if (nob > usr_buffer_nob)
 816                nob = usr_buffer_nob;
 817
 818        if (copy_to_user(usr_buffer, knl_buffer, nob))
 819                return -EFAULT;
 820
 821        if (append && nob < usr_buffer_nob) {
 822                if (copy_to_user(usr_buffer + nob, append, 1))
 823                        return -EFAULT;
 824
 825                nob++;
 826        }
 827
 828        return nob;
 829}
 830EXPORT_SYMBOL(cfs_trace_copyout_string);
 831
 832int cfs_trace_allocate_string_buffer(char **str, int nob)
 833{
 834        if (nob > 2 * PAGE_SIZE)            /* string must be "sensible" */
 835                return -EINVAL;
 836
 837        *str = kmalloc(nob, GFP_KERNEL | __GFP_ZERO);
 838        if (!*str)
 839                return -ENOMEM;
 840
 841        return 0;
 842}
 843
 844int cfs_trace_dump_debug_buffer_usrstr(void __user *usr_str, int usr_str_nob)
 845{
 846        char *str;
 847        int rc;
 848
 849        rc = cfs_trace_allocate_string_buffer(&str, usr_str_nob + 1);
 850        if (rc)
 851                return rc;
 852
 853        rc = cfs_trace_copyin_string(str, usr_str_nob + 1,
 854                                     usr_str, usr_str_nob);
 855        if (rc)
 856                goto out;
 857
 858        if (str[0] != '/') {
 859                rc = -EINVAL;
 860                goto out;
 861        }
 862        rc = cfs_tracefile_dump_all_pages(str);
 863out:
 864        kfree(str);
 865        return rc;
 866}
 867
 868int cfs_trace_daemon_command(char *str)
 869{
 870        int rc = 0;
 871
 872        cfs_tracefile_write_lock();
 873
 874        if (!strcmp(str, "stop")) {
 875                cfs_tracefile_write_unlock();
 876                cfs_trace_stop_thread();
 877                cfs_tracefile_write_lock();
 878                memset(cfs_tracefile, 0, sizeof(cfs_tracefile));
 879
 880        } else if (!strncmp(str, "size=", 5)) {
 881                unsigned long tmp;
 882
 883                rc = kstrtoul(str + 5, 10, &tmp);
 884                if (!rc) {
 885                        if (tmp < 10 || tmp > 20480)
 886                                cfs_tracefile_size = CFS_TRACEFILE_SIZE;
 887                        else
 888                                cfs_tracefile_size = tmp << 20;
 889                }
 890        } else if (strlen(str) >= sizeof(cfs_tracefile)) {
 891                rc = -ENAMETOOLONG;
 892        } else if (str[0] != '/') {
 893                rc = -EINVAL;
 894        } else {
 895                strcpy(cfs_tracefile, str);
 896
 897                printk(KERN_INFO
 898                       "Lustre: debug daemon will attempt to start writing to %s (%lukB max)\n",
 899                       cfs_tracefile,
 900                       (long)(cfs_tracefile_size >> 10));
 901
 902                cfs_trace_start_thread();
 903        }
 904
 905        cfs_tracefile_write_unlock();
 906        return rc;
 907}
 908
 909int cfs_trace_daemon_command_usrstr(void __user *usr_str, int usr_str_nob)
 910{
 911        char *str;
 912        int rc;
 913
 914        rc = cfs_trace_allocate_string_buffer(&str, usr_str_nob + 1);
 915        if (rc)
 916                return rc;
 917
 918        rc = cfs_trace_copyin_string(str, usr_str_nob + 1,
 919                                     usr_str, usr_str_nob);
 920        if (!rc)
 921                rc = cfs_trace_daemon_command(str);
 922
 923        kfree(str);
 924        return rc;
 925}
 926
 927int cfs_trace_set_debug_mb(int mb)
 928{
 929        int i;
 930        int j;
 931        int pages;
 932        int limit = cfs_trace_max_debug_mb();
 933        struct cfs_trace_cpu_data *tcd;
 934
 935        if (mb < num_possible_cpus()) {
 936                printk(KERN_WARNING
 937                       "Lustre: %d MB is too small for debug buffer size, setting it to %d MB.\n",
 938                       mb, num_possible_cpus());
 939                mb = num_possible_cpus();
 940        }
 941
 942        if (mb > limit) {
 943                printk(KERN_WARNING
 944                       "Lustre: %d MB is too large for debug buffer size, setting it to %d MB.\n",
 945                       mb, limit);
 946                mb = limit;
 947        }
 948
 949        mb /= num_possible_cpus();
 950        pages = mb << (20 - PAGE_SHIFT);
 951
 952        cfs_tracefile_write_lock();
 953
 954        cfs_tcd_for_each(tcd, i, j)
 955                tcd->tcd_max_pages = (pages * tcd->tcd_pages_factor) / 100;
 956
 957        cfs_tracefile_write_unlock();
 958
 959        return 0;
 960}
 961
 962int cfs_trace_get_debug_mb(void)
 963{
 964        int i;
 965        int j;
 966        struct cfs_trace_cpu_data *tcd;
 967        int total_pages = 0;
 968
 969        cfs_tracefile_read_lock();
 970
 971        cfs_tcd_for_each(tcd, i, j)
 972                total_pages += tcd->tcd_max_pages;
 973
 974        cfs_tracefile_read_unlock();
 975
 976        return (total_pages >> (20 - PAGE_SHIFT)) + 1;
 977}
 978
 979static int tracefiled(void *arg)
 980{
 981        struct page_collection pc;
 982        struct tracefiled_ctl *tctl = arg;
 983        struct cfs_trace_page *tage;
 984        struct cfs_trace_page *tmp;
 985        mm_segment_t __oldfs;
 986        struct file *filp;
 987        char *buf;
 988        int last_loop = 0;
 989        int rc;
 990
 991        /* we're started late enough that we pick up init's fs context */
 992        /* this is so broken in uml?  what on earth is going on? */
 993
 994        complete(&tctl->tctl_start);
 995
 996        while (1) {
 997                wait_queue_t __wait;
 998
 999                pc.pc_want_daemon_pages = 0;
1000                collect_pages(&pc);
1001                if (list_empty(&pc.pc_pages))
1002                        goto end_loop;
1003
1004                filp = NULL;
1005                cfs_tracefile_read_lock();
1006                if (cfs_tracefile[0]) {
1007                        filp = filp_open(cfs_tracefile,
1008                                         O_CREAT | O_RDWR | O_LARGEFILE,
1009                                         0600);
1010                        if (IS_ERR(filp)) {
1011                                rc = PTR_ERR(filp);
1012                                filp = NULL;
1013                                printk(KERN_WARNING "couldn't open %s: %d\n",
1014                                       cfs_tracefile, rc);
1015                        }
1016                }
1017                cfs_tracefile_read_unlock();
1018                if (!filp) {
1019                        put_pages_on_daemon_list(&pc);
1020                        __LASSERT(list_empty(&pc.pc_pages));
1021                        goto end_loop;
1022                }
1023                __oldfs = get_fs();
1024                set_fs(get_ds());
1025
1026                list_for_each_entry_safe(tage, tmp, &pc.pc_pages, linkage) {
1027                        static loff_t f_pos;
1028
1029                        __LASSERT_TAGE_INVARIANT(tage);
1030
1031                        if (f_pos >= (off_t)cfs_tracefile_size)
1032                                f_pos = 0;
1033                        else if (f_pos > i_size_read(file_inode(filp)))
1034                                f_pos = i_size_read(file_inode(filp));
1035
1036                        buf = kmap(tage->page);
1037                        rc = vfs_write(filp, (__force const char __user *)buf,
1038                                       tage->used, &f_pos);
1039                        kunmap(tage->page);
1040
1041                        if (rc != (int)tage->used) {
1042                                printk(KERN_WARNING "wanted to write %u but wrote %d\n",
1043                                       tage->used, rc);
1044                                put_pages_back(&pc);
1045                                __LASSERT(list_empty(&pc.pc_pages));
1046                                break;
1047                        }
1048                }
1049                set_fs(__oldfs);
1050
1051                filp_close(filp, NULL);
1052                put_pages_on_daemon_list(&pc);
1053                if (!list_empty(&pc.pc_pages)) {
1054                        int i;
1055
1056                        printk(KERN_ALERT "Lustre: trace pages aren't empty\n");
1057                        pr_err("total cpus(%d): ", num_possible_cpus());
1058                        for (i = 0; i < num_possible_cpus(); i++)
1059                                if (cpu_online(i))
1060                                        pr_cont("%d(on) ", i);
1061                                else
1062                                        pr_cont("%d(off) ", i);
1063                        pr_cont("\n");
1064
1065                        i = 0;
1066                        list_for_each_entry_safe(tage, tmp, &pc.pc_pages,
1067                                                 linkage)
1068                                pr_err("page %d belongs to cpu %d\n",
1069                                       ++i, tage->cpu);
1070                        pr_err("There are %d pages unwritten\n", i);
1071                }
1072                __LASSERT(list_empty(&pc.pc_pages));
1073end_loop:
1074                if (atomic_read(&tctl->tctl_shutdown)) {
1075                        if (!last_loop) {
1076                                last_loop = 1;
1077                                continue;
1078                        } else {
1079                                break;
1080                        }
1081                }
1082                init_waitqueue_entry(&__wait, current);
1083                add_wait_queue(&tctl->tctl_waitq, &__wait);
1084                set_current_state(TASK_INTERRUPTIBLE);
1085                schedule_timeout(cfs_time_seconds(1));
1086                remove_wait_queue(&tctl->tctl_waitq, &__wait);
1087        }
1088        complete(&tctl->tctl_stop);
1089        return 0;
1090}
1091
1092int cfs_trace_start_thread(void)
1093{
1094        struct tracefiled_ctl *tctl = &trace_tctl;
1095        struct task_struct *task;
1096        int rc = 0;
1097
1098        mutex_lock(&cfs_trace_thread_mutex);
1099        if (thread_running)
1100                goto out;
1101
1102        init_completion(&tctl->tctl_start);
1103        init_completion(&tctl->tctl_stop);
1104        init_waitqueue_head(&tctl->tctl_waitq);
1105        atomic_set(&tctl->tctl_shutdown, 0);
1106
1107        task = kthread_run(tracefiled, tctl, "ktracefiled");
1108        if (IS_ERR(task)) {
1109                rc = PTR_ERR(task);
1110                goto out;
1111        }
1112
1113        wait_for_completion(&tctl->tctl_start);
1114        thread_running = 1;
1115out:
1116        mutex_unlock(&cfs_trace_thread_mutex);
1117        return rc;
1118}
1119
1120void cfs_trace_stop_thread(void)
1121{
1122        struct tracefiled_ctl *tctl = &trace_tctl;
1123
1124        mutex_lock(&cfs_trace_thread_mutex);
1125        if (thread_running) {
1126                printk(KERN_INFO
1127                       "Lustre: shutting down debug daemon thread...\n");
1128                atomic_set(&tctl->tctl_shutdown, 1);
1129                wait_for_completion(&tctl->tctl_stop);
1130                thread_running = 0;
1131        }
1132        mutex_unlock(&cfs_trace_thread_mutex);
1133}
1134
1135int cfs_tracefile_init(int max_pages)
1136{
1137        struct cfs_trace_cpu_data *tcd;
1138        int i;
1139        int j;
1140        int rc;
1141        int factor;
1142
1143        rc = cfs_tracefile_init_arch();
1144        if (rc)
1145                return rc;
1146
1147        cfs_tcd_for_each(tcd, i, j) {
1148                /* tcd_pages_factor is initialized int tracefile_init_arch. */
1149                factor = tcd->tcd_pages_factor;
1150                INIT_LIST_HEAD(&tcd->tcd_pages);
1151                INIT_LIST_HEAD(&tcd->tcd_stock_pages);
1152                INIT_LIST_HEAD(&tcd->tcd_daemon_pages);
1153                tcd->tcd_cur_pages = 0;
1154                tcd->tcd_cur_stock_pages = 0;
1155                tcd->tcd_cur_daemon_pages = 0;
1156                tcd->tcd_max_pages = (max_pages * factor) / 100;
1157                LASSERT(tcd->tcd_max_pages > 0);
1158                tcd->tcd_shutting_down = 0;
1159        }
1160
1161        return 0;
1162}
1163
1164static void trace_cleanup_on_all_cpus(void)
1165{
1166        struct cfs_trace_cpu_data *tcd;
1167        struct cfs_trace_page *tage;
1168        struct cfs_trace_page *tmp;
1169        int i, cpu;
1170
1171        for_each_possible_cpu(cpu) {
1172                cfs_tcd_for_each_type_lock(tcd, i, cpu) {
1173                        tcd->tcd_shutting_down = 1;
1174
1175                        list_for_each_entry_safe(tage, tmp, &tcd->tcd_pages,
1176                                                 linkage) {
1177                                __LASSERT_TAGE_INVARIANT(tage);
1178
1179                                list_del(&tage->linkage);
1180                                cfs_tage_free(tage);
1181                        }
1182
1183                        tcd->tcd_cur_pages = 0;
1184                }
1185        }
1186}
1187
1188static void cfs_trace_cleanup(void)
1189{
1190        struct page_collection pc;
1191
1192        INIT_LIST_HEAD(&pc.pc_pages);
1193
1194        trace_cleanup_on_all_cpus();
1195
1196        cfs_tracefile_fini_arch();
1197}
1198
1199void cfs_tracefile_exit(void)
1200{
1201        cfs_trace_stop_thread();
1202        cfs_trace_cleanup();
1203}
1204