RHEL4/kernel/acct.c
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   1/*
   2 *  linux/kernel/acct.c
   3 *
   4 *  BSD Process Accounting for Linux
   5 *
   6 *  Author: Marco van Wieringen <mvw@planets.elm.net>
   7 *
   8 *  Some code based on ideas and code from:
   9 *  Thomas K. Dyas <tdyas@eden.rutgers.edu>
  10 *
  11 *  This file implements BSD-style process accounting. Whenever any
  12 *  process exits, an accounting record of type "struct acct" is
  13 *  written to the file specified with the acct() system call. It is
  14 *  up to user-level programs to do useful things with the accounting
  15 *  log. The kernel just provides the raw accounting information.
  16 *
  17 * (C) Copyright 1995 - 1997 Marco van Wieringen - ELM Consultancy B.V.
  18 *
  19 *  Plugged two leaks. 1) It didn't return acct_file into the free_filps if
  20 *  the file happened to be read-only. 2) If the accounting was suspended
  21 *  due to the lack of space it happily allowed to reopen it and completely
  22 *  lost the old acct_file. 3/10/98, Al Viro.
  23 *
  24 *  Now we silently close acct_file on attempt to reopen. Cleaned sys_acct().
  25 *  XTerms and EMACS are manifestations of pure evil. 21/10/98, AV.
  26 *
  27 *  Fixed a nasty interaction with with sys_umount(). If the accointing
  28 *  was suspeneded we failed to stop it on umount(). Messy.
  29 *  Another one: remount to readonly didn't stop accounting.
  30 *      Question: what should we do if we have CAP_SYS_ADMIN but not
  31 *  CAP_SYS_PACCT? Current code does the following: umount returns -EBUSY
  32 *  unless we are messing with the root. In that case we are getting a
  33 *  real mess with do_remount_sb(). 9/11/98, AV.
  34 *
  35 *  Fixed a bunch of races (and pair of leaks). Probably not the best way,
  36 *  but this one obviously doesn't introduce deadlocks. Later. BTW, found
  37 *  one race (and leak) in BSD implementation.
  38 *  OK, that's better. ANOTHER race and leak in BSD variant. There always
  39 *  is one more bug... 10/11/98, AV.
  40 *
  41 *      Oh, fsck... Oopsable SMP race in do_process_acct() - we must hold
  42 * ->mmap_sem to walk the vma list of current->mm. Nasty, since it leaks
  43 * a struct file opened for write. Fixed. 2/6/2000, AV.
  44 */
  45
  46#include <linux/config.h>
  47#include <linux/mm.h>
  48#include <linux/slab.h>
  49#include <linux/acct.h>
  50#include <linux/file.h>
  51#include <linux/tty.h>
  52#include <linux/security.h>
  53#include <linux/vfs.h>
  54#include <linux/jiffies.h>
  55#include <linux/times.h>
  56#include <asm/uaccess.h>
  57#include <asm/div64.h>
  58#include <linux/blkdev.h> /* sector_div */
  59
  60/*
  61 * These constants control the amount of freespace that suspend and
  62 * resume the process accounting system, and the time delay between
  63 * each check.
  64 * Turned into sysctl-controllable parameters. AV, 12/11/98
  65 */
  66
  67int acct_parm[3] = {4, 2, 30};
  68#define RESUME          (acct_parm[0])  /* >foo% free space - resume */
  69#define SUSPEND         (acct_parm[1])  /* <foo% free space - suspend */
  70#define ACCT_TIMEOUT    (acct_parm[2])  /* foo second timeout between checks */
  71
  72/*
  73 * External references and all of the globals.
  74 */
  75static void do_acct_process(long, struct file *);
  76
  77/*
  78 * This structure is used so that all the data protected by lock
  79 * can be placed in the same cache line as the lock.  This primes
  80 * the cache line to have the data after getting the lock.
  81 */
  82struct acct_glbs {
  83        spinlock_t              lock;
  84        volatile int            active;
  85        volatile int            needcheck;
  86        struct file             *file;
  87        struct timer_list       timer;
  88};
  89
  90static struct acct_glbs acct_globals __cacheline_aligned = {SPIN_LOCK_UNLOCKED};
  91
  92/*
  93 * Called whenever the timer says to check the free space.
  94 */
  95static void acct_timeout(unsigned long unused)
  96{
  97        acct_globals.needcheck = 1;
  98}
  99
 100/*
 101 * Check the amount of free space and suspend/resume accordingly.
 102 */
 103static int check_free_space(struct file *file)
 104{
 105        struct kstatfs sbuf;
 106        int res;
 107        int act;
 108        sector_t resume;
 109        sector_t suspend;
 110
 111        spin_lock(&acct_globals.lock);
 112        res = acct_globals.active;
 113        if (!file || !acct_globals.needcheck)
 114                goto out;
 115        spin_unlock(&acct_globals.lock);
 116
 117        /* May block */
 118        if (vfs_statfs(file->f_dentry->d_inode->i_sb, &sbuf))
 119                return res;
 120        suspend = sbuf.f_blocks * SUSPEND;
 121        resume = sbuf.f_blocks * RESUME;
 122
 123        sector_div(suspend, 100);
 124        sector_div(resume, 100);
 125
 126        if (sbuf.f_bavail <= suspend)
 127                act = -1;
 128        else if (sbuf.f_bavail >= resume)
 129                act = 1;
 130        else
 131                act = 0;
 132
 133        /*
 134         * If some joker switched acct_globals.file under us we'ld better be
 135         * silent and _not_ touch anything.
 136         */
 137        spin_lock(&acct_globals.lock);
 138        if (file != acct_globals.file) {
 139                if (act)
 140                        res = act>0;
 141                goto out;
 142        }
 143
 144        if (acct_globals.active) {
 145                if (act < 0) {
 146                        acct_globals.active = 0;
 147                        printk(KERN_INFO "Process accounting paused\n");
 148                }
 149        } else {
 150                if (act > 0) {
 151                        acct_globals.active = 1;
 152                        printk(KERN_INFO "Process accounting resumed\n");
 153                }
 154        }
 155
 156        del_timer(&acct_globals.timer);
 157        acct_globals.needcheck = 0;
 158        acct_globals.timer.expires = jiffies + ACCT_TIMEOUT*HZ;
 159        add_timer(&acct_globals.timer);
 160        res = acct_globals.active;
 161out:
 162        spin_unlock(&acct_globals.lock);
 163        return res;
 164}
 165
 166/*
 167 * Close the old accouting file (if currently open) and then replace
 168 * it with file (if non-NULL).
 169 *
 170 * NOTE: acct_globals.lock MUST be held on entry and exit.
 171 */
 172void acct_file_reopen(struct file *file)
 173{
 174        struct file *old_acct = NULL;
 175
 176        if (acct_globals.file) {
 177                old_acct = acct_globals.file;
 178                del_timer(&acct_globals.timer);
 179                acct_globals.active = 0;
 180                acct_globals.needcheck = 0;
 181                acct_globals.file = NULL;
 182        }
 183        if (file) {
 184                acct_globals.file = file;
 185                acct_globals.needcheck = 0;
 186                acct_globals.active = 1;
 187                /* It's been deleted if it was used before so this is safe */
 188                init_timer(&acct_globals.timer);
 189                acct_globals.timer.function = acct_timeout;
 190                acct_globals.timer.expires = jiffies + ACCT_TIMEOUT*HZ;
 191                add_timer(&acct_globals.timer);
 192        }
 193        if (old_acct) {
 194                spin_unlock(&acct_globals.lock);
 195                do_acct_process(0, old_acct);
 196                filp_close(old_acct, NULL);
 197                spin_lock(&acct_globals.lock);
 198        }
 199}
 200
 201/*
 202 *  sys_acct() is the only system call needed to implement process
 203 *  accounting. It takes the name of the file where accounting records
 204 *  should be written. If the filename is NULL, accounting will be
 205 *  shutdown.
 206 */
 207asmlinkage long sys_acct(const char __user *name)
 208{
 209        struct file *file = NULL;
 210        char *tmp;
 211        int error;
 212
 213        if (!capable(CAP_SYS_PACCT))
 214                return -EPERM;
 215
 216        if (name) {
 217                tmp = getname(name);
 218                if (IS_ERR(tmp)) {
 219                        return (PTR_ERR(tmp));
 220                }
 221                /* Difference from BSD - they don't do O_APPEND */
 222                file = filp_open(tmp, O_WRONLY | O_APPEND | O_LARGEFILE, 0);
 223                putname(tmp);
 224                if (IS_ERR(file)) {
 225                        return (PTR_ERR(file));
 226                }
 227                if (!S_ISREG(file->f_dentry->d_inode->i_mode)) {
 228                        filp_close(file, NULL);
 229                        return (-EACCES);
 230                }
 231
 232                if (!file->f_op->write) {
 233                        filp_close(file, NULL);
 234                        return (-EIO);
 235                }
 236        }
 237
 238        error = security_acct(file);
 239        if (error) {
 240                if (file)
 241                        filp_close(file, NULL);
 242                return error;
 243        }
 244
 245        spin_lock(&acct_globals.lock);
 246        acct_file_reopen(file);
 247        spin_unlock(&acct_globals.lock);
 248
 249        return (0);
 250}
 251
 252/*
 253 * If the accouting is turned on for a file in the filesystem pointed
 254 * to by sb, turn accouting off.
 255 */
 256void acct_auto_close(struct super_block *sb)
 257{
 258        spin_lock(&acct_globals.lock);
 259        if (acct_globals.file &&
 260            acct_globals.file->f_dentry->d_inode->i_sb == sb) {
 261                acct_file_reopen((struct file *)NULL);
 262        }
 263        spin_unlock(&acct_globals.lock);
 264}
 265
 266/*
 267 *  encode an unsigned long into a comp_t
 268 *
 269 *  This routine has been adopted from the encode_comp_t() function in
 270 *  the kern_acct.c file of the FreeBSD operating system. The encoding
 271 *  is a 13-bit fraction with a 3-bit (base 8) exponent.
 272 */
 273
 274#define MANTSIZE        13                      /* 13 bit mantissa. */
 275#define EXPSIZE         3                       /* Base 8 (3 bit) exponent. */
 276#define MAXFRACT        ((1 << MANTSIZE) - 1)   /* Maximum fractional value. */
 277
 278static comp_t encode_comp_t(unsigned long value)
 279{
 280        int exp, rnd;
 281
 282        exp = rnd = 0;
 283        while (value > MAXFRACT) {
 284                rnd = value & (1 << (EXPSIZE - 1));     /* Round up? */
 285                value >>= EXPSIZE;      /* Base 8 exponent == 3 bit shift. */
 286                exp++;
 287        }
 288
 289        /*
 290         * If we need to round up, do it (and handle overflow correctly).
 291         */
 292        if (rnd && (++value > MAXFRACT)) {
 293                value >>= EXPSIZE;
 294                exp++;
 295        }
 296
 297        /*
 298         * Clean it up and polish it off.
 299         */
 300        exp <<= MANTSIZE;               /* Shift the exponent into place */
 301        exp += value;                   /* and add on the mantissa. */
 302        return exp;
 303}
 304
 305#if ACCT_VERSION==1 || ACCT_VERSION==2
 306/*
 307 * encode an u64 into a comp2_t (24 bits)
 308 *
 309 * Format: 5 bit base 2 exponent, 20 bits mantissa.
 310 * The leading bit of the mantissa is not stored, but implied for
 311 * non-zero exponents.
 312 * Largest encodable value is 50 bits.
 313 */
 314
 315#define MANTSIZE2       20                      /* 20 bit mantissa. */
 316#define EXPSIZE2        5                       /* 5 bit base 2 exponent. */
 317#define MAXFRACT2       ((1ul << MANTSIZE2) - 1) /* Maximum fractional value. */
 318#define MAXEXP2         ((1 <<EXPSIZE2) - 1)    /* Maximum exponent. */
 319
 320static comp2_t encode_comp2_t(u64 value)
 321{
 322        int exp, rnd;
 323
 324        exp = (value > (MAXFRACT2>>1));
 325        rnd = 0;
 326        while (value > MAXFRACT2) {
 327                rnd = value & 1;
 328                value >>= 1;
 329                exp++;
 330        }
 331
 332        /*
 333         * If we need to round up, do it (and handle overflow correctly).
 334         */
 335        if (rnd && (++value > MAXFRACT2)) {
 336                value >>= 1;
 337                exp++;
 338        }
 339
 340        if (exp > MAXEXP2) {
 341                /* Overflow. Return largest representable number instead. */
 342                return (1ul << (MANTSIZE2+EXPSIZE2-1)) - 1;
 343        } else {
 344                return (value & (MAXFRACT2>>1)) | (exp << (MANTSIZE2-1));
 345        }
 346}
 347#endif
 348
 349#if ACCT_VERSION==3
 350/*
 351 * encode an u64 into a 32 bit IEEE float
 352 */
 353static u32 encode_float(u64 value)
 354{
 355        unsigned exp = 190;
 356        unsigned u;
 357
 358        if (value==0) return 0;
 359        while ((s64)value > 0){
 360                value <<= 1;
 361                exp--;
 362        }
 363        u = (u32)(value >> 40) & 0x7fffffu;
 364        return u | (exp << 23);
 365}
 366#endif
 367
 368/*
 369 *  Write an accounting entry for an exiting process
 370 *
 371 *  The acct_process() call is the workhorse of the process
 372 *  accounting system. The struct acct is built here and then written
 373 *  into the accounting file. This function should only be called from
 374 *  do_exit().
 375 */
 376
 377/*
 378 *  do_acct_process does all actual work. Caller holds the reference to file.
 379 */
 380static void do_acct_process(long exitcode, struct file *file)
 381{
 382        acct_t ac;
 383        mm_segment_t fs;
 384        unsigned long vsize;
 385        unsigned long flim;
 386        u64 elapsed;
 387        u64 run_time;
 388        struct timespec uptime;
 389
 390        /*
 391         * First check to see if there is enough free_space to continue
 392         * the process accounting system.
 393         */
 394        if (!check_free_space(file))
 395                return;
 396
 397        /*
 398         * Fill the accounting struct with the needed info as recorded
 399         * by the different kernel functions.
 400         */
 401        memset((caddr_t)&ac, 0, sizeof(acct_t));
 402
 403        ac.ac_version = ACCT_VERSION | ACCT_BYTEORDER;
 404        strlcpy(ac.ac_comm, current->comm, sizeof(ac.ac_comm));
 405
 406        /* calculate run_time in nsec*/
 407        do_posix_clock_monotonic_gettime(&uptime);
 408        run_time = (u64)uptime.tv_sec*NSEC_PER_SEC + uptime.tv_nsec;
 409        run_time -= (u64)current->start_time.tv_sec*NSEC_PER_SEC
 410                                        + current->start_time.tv_nsec;
 411        /* convert nsec -> AHZ */
 412        elapsed = nsec_to_AHZ(run_time);
 413#if ACCT_VERSION==3
 414        ac.ac_etime = encode_float(elapsed);
 415#else
 416        ac.ac_etime = encode_comp_t(elapsed < (unsigned long) -1l ?
 417                               (unsigned long) elapsed : (unsigned long) -1l);
 418#endif
 419#if ACCT_VERSION==1 || ACCT_VERSION==2
 420        {
 421                /* new enlarged etime field */
 422                comp2_t etime = encode_comp2_t(elapsed);
 423                ac.ac_etime_hi = etime >> 16;
 424                ac.ac_etime_lo = (u16) etime;
 425        }
 426#endif
 427        do_div(elapsed, AHZ);
 428        ac.ac_btime = xtime.tv_sec - elapsed;
 429        ac.ac_utime = encode_comp_t(jiffies_to_AHZ(current->utime));
 430        ac.ac_stime = encode_comp_t(jiffies_to_AHZ(current->stime));
 431        /* we really need to bite the bullet and change layout */
 432        ac.ac_uid = current->uid;
 433        ac.ac_gid = current->gid;
 434#if ACCT_VERSION==2
 435        ac.ac_ahz = AHZ;
 436#endif
 437#if ACCT_VERSION==1 || ACCT_VERSION==2
 438        /* backward-compatible 16 bit fields */
 439        ac.ac_uid16 = current->uid;
 440        ac.ac_gid16 = current->gid;
 441#endif
 442#if ACCT_VERSION==3
 443        ac.ac_pid = current->pid;
 444        ac.ac_ppid = current->parent->pid;
 445#endif
 446
 447        write_lock_irq(&tasklist_lock); /* pin signal->tty */
 448        ac.ac_tty = current->signal->tty ?
 449                old_encode_dev(tty_devnum(current->signal->tty)) : 0;
 450        write_unlock_irq(&tasklist_lock);
 451
 452        ac.ac_flag = 0;
 453        if (current->flags & PF_FORKNOEXEC)
 454                ac.ac_flag |= AFORK;
 455        if (current->flags & PF_SUPERPRIV)
 456                ac.ac_flag |= ASU;
 457        if (current->flags & PF_DUMPCORE)
 458                ac.ac_flag |= ACORE;
 459        if (current->flags & PF_SIGNALED)
 460                ac.ac_flag |= AXSIG;
 461
 462        vsize = 0;
 463        if (current->mm) {
 464                struct vm_area_struct *vma;
 465                down_read(&current->mm->mmap_sem);
 466                vma = current->mm->mmap;
 467                while (vma) {
 468                        vsize += vma->vm_end - vma->vm_start;
 469                        vma = vma->vm_next;
 470                }
 471                up_read(&current->mm->mmap_sem);
 472        }
 473        vsize = vsize / 1024;
 474        ac.ac_mem = encode_comp_t(vsize);
 475        ac.ac_io = encode_comp_t(0 /* current->io_usage */);    /* %% */
 476        ac.ac_rw = encode_comp_t(ac.ac_io / 1024);
 477        ac.ac_minflt = encode_comp_t(current->min_flt);
 478        ac.ac_majflt = encode_comp_t(current->maj_flt);
 479        ac.ac_swaps = encode_comp_t(0);
 480        ac.ac_exitcode = exitcode;
 481
 482        /*
 483         * Kernel segment override to datasegment and write it
 484         * to the accounting file.
 485         */
 486        fs = get_fs();
 487        set_fs(KERNEL_DS);
 488        /*
 489         * Accounting records are not subject to resource limits.
 490         */
 491        flim = current->rlim[RLIMIT_FSIZE].rlim_cur;
 492        current->rlim[RLIMIT_FSIZE].rlim_cur = RLIM_INFINITY;
 493        file->f_op->write(file, (char *)&ac,
 494                               sizeof(acct_t), &file->f_pos);
 495        current->rlim[RLIMIT_FSIZE].rlim_cur = flim;
 496        set_fs(fs);
 497}
 498
 499/*
 500 * acct_process - now just a wrapper around do_acct_process
 501 */
 502void acct_process(long exitcode)
 503{
 504        struct file *file = NULL;
 505
 506        /*
 507         * accelerate the common fastpath:
 508         */
 509        if (!acct_globals.file)
 510                return;
 511
 512        spin_lock(&acct_globals.lock);
 513        file = acct_globals.file;
 514        if (unlikely(!file)) {
 515                spin_unlock(&acct_globals.lock);
 516                return;
 517        }
 518        get_file(file);
 519        spin_unlock(&acct_globals.lock);
 520
 521        do_acct_process(exitcode, file);
 522        fput(file);
 523}
 524