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1 /*-
2  * SPDX-License-Identifier: BSD-4-Clause
3  *
4  * Copyright (c) 2000 Dag-Erling Coïdan Smørgrav
5  * Copyright (c) 1999 Pierre Beyssac
6  * Copyright (c) 1993 Jan-Simon Pendry
7  * Copyright (c) 1993
8  *      The Regents of the University of California.  All rights reserved.
9  *
10  * This code is derived from software contributed to Berkeley by
11  * Jan-Simon Pendry.
12  *
13  * Redistribution and use in source and binary forms, with or without
14  * modification, are permitted provided that the following conditions
15  * are met:
16  * 1. Redistributions of source code must retain the above copyright
17  *    notice, this list of conditions and the following disclaimer.
18  * 2. Redistributions in binary form must reproduce the above copyright
19  *    notice, this list of conditions and the following disclaimer in the
20  *    documentation and/or other materials provided with the distribution.
21  * 3. All advertising materials mentioning features or use of this software
22  *    must display the following acknowledgement:
23  *      This product includes software developed by the University of
24  *      California, Berkeley and its contributors.
25  * 4. Neither the name of the University nor the names of its contributors
26  *    may be used to endorse or promote products derived from this software
27  *    without specific prior written permission.
28  *
29  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
30  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
31  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
32  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
33  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
34  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
35  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
36  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
37  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
38  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
39  * SUCH DAMAGE.
40  *
41  *      @(#)procfs_status.c     8.4 (Berkeley) 6/15/94
42  */
43
44 #include <sys/cdefs.h>
45 __FBSDID("$FreeBSD$");
46
47 #include <sys/param.h>
48 #include <sys/queue.h>
49 #include <sys/blist.h>
50 #include <sys/conf.h>
51 #include <sys/exec.h>
52 #include <sys/fcntl.h>
53 #include <sys/filedesc.h>
54 #include <sys/jail.h>
55 #include <sys/kernel.h>
56 #include <sys/limits.h>
57 #include <sys/linker.h>
58 #include <sys/lock.h>
59 #include <sys/malloc.h>
60 #include <sys/msg.h>
61 #include <sys/mutex.h>
62 #include <sys/namei.h>
63 #include <sys/proc.h>
64 #include <sys/ptrace.h>
65 #include <sys/resourcevar.h>
66 #include <sys/resource.h>
67 #include <sys/sbuf.h>
68 #include <sys/sem.h>
69 #include <sys/smp.h>
70 #include <sys/socket.h>
71 #include <sys/syscallsubr.h>
72 #include <sys/sysctl.h>
73 #include <sys/sysent.h>
74 #include <sys/systm.h>
75 #include <sys/time.h>
76 #include <sys/tty.h>
77 #include <sys/user.h>
78 #include <sys/uuid.h>
79 #include <sys/vmmeter.h>
80 #include <sys/vnode.h>
81 #include <sys/bus.h>
82
83 #include <net/if.h>
84 #include <net/if_var.h>
85 #include <net/if_types.h>
86
87 #include <vm/vm.h>
88 #include <vm/vm_extern.h>
89 #include <vm/pmap.h>
90 #include <vm/vm_map.h>
91 #include <vm/vm_param.h>
92 #include <vm/vm_object.h>
93 #include <vm/swap_pager.h>
94
95 #include <machine/clock.h>
96
97 #include <geom/geom.h>
98 #include <geom/geom_int.h>
99
100 #if defined(__i386__) || defined(__amd64__)
101 #include <machine/cputypes.h>
102 #include <machine/md_var.h>
103 #endif /* __i386__ || __amd64__ */
104
105 #include <compat/linux/linux.h>
106 #include <compat/linux/linux_mib.h>
107 #include <compat/linux/linux_misc.h>
108 #include <compat/linux/linux_util.h>
109 #include <fs/pseudofs/pseudofs.h>
110 #include <fs/procfs/procfs.h>
111
112 /*
113  * Various conversion macros
114  */
115 #define T2J(x) ((long)(((x) * 100ULL) / (stathz ? stathz : hz)))        /* ticks to jiffies */
116 #define T2CS(x) ((unsigned long)(((x) * 100ULL) / (stathz ? stathz : hz)))      /* ticks to centiseconds */
117 #define T2S(x) ((x) / (stathz ? stathz : hz))           /* ticks to seconds */
118 #define B2K(x) ((x) >> 10)                              /* bytes to kbytes */
119 #define B2P(x) ((x) >> PAGE_SHIFT)                      /* bytes to pages */
120 #define P2B(x) ((x) << PAGE_SHIFT)                      /* pages to bytes */
121 #define P2K(x) ((x) << (PAGE_SHIFT - 10))               /* pages to kbytes */
122 #define TV2J(x) ((x)->tv_sec * 100UL + (x)->tv_usec / 10000)
123
124 /**
125  * @brief Mapping of ki_stat in struct kinfo_proc to the linux state
126  *
127  * The linux procfs state field displays one of the characters RSDZTW to
128  * denote running, sleeping in an interruptible wait, waiting in an
129  * uninterruptible disk sleep, a zombie process, process is being traced
130  * or stopped, or process is paging respectively.
131  *
132  * Our struct kinfo_proc contains the variable ki_stat which contains a
133  * value out of SIDL, SRUN, SSLEEP, SSTOP, SZOMB, SWAIT and SLOCK.
134  *
135  * This character array is used with ki_stati-1 as an index and tries to
136  * map our states to suitable linux states.
137  */
138 static char linux_state[] = "RRSTZDD";
139
140 /*
141  * Filler function for proc/meminfo
142  */
143 static int
144 linprocfs_domeminfo(PFS_FILL_ARGS)
145 {
146         unsigned long memtotal;         /* total memory in bytes */
147         unsigned long memused;          /* used memory in bytes */
148         unsigned long memfree;          /* free memory in bytes */
149         unsigned long buffers, cached;  /* buffer / cache memory ??? */
150         unsigned long long swaptotal;   /* total swap space in bytes */
151         unsigned long long swapused;    /* used swap space in bytes */
152         unsigned long long swapfree;    /* free swap space in bytes */
153         int i, j;
154
155         memtotal = physmem * PAGE_SIZE;
156         /*
157          * The correct thing here would be:
158          *
159         memfree = vm_free_count() * PAGE_SIZE;
160         memused = memtotal - memfree;
161          *
162          * but it might mislead linux binaries into thinking there
163          * is very little memory left, so we cheat and tell them that
164          * all memory that isn't wired down is free.
165          */
166         memused = vm_wire_count() * PAGE_SIZE;
167         memfree = memtotal - memused;
168         swap_pager_status(&i, &j);
169         swaptotal = (unsigned long long)i * PAGE_SIZE;
170         swapused = (unsigned long long)j * PAGE_SIZE;
171         swapfree = swaptotal - swapused;
172         /*
173          * We'd love to be able to write:
174          *
175         buffers = bufspace;
176          *
177          * but bufspace is internal to vfs_bio.c and we don't feel
178          * like unstaticizing it just for linprocfs's sake.
179          */
180         buffers = 0;
181         cached = vm_inactive_count() * PAGE_SIZE;
182
183         sbuf_printf(sb,
184             "MemTotal: %9lu kB\n"
185             "MemFree:  %9lu kB\n"
186             "Buffers:  %9lu kB\n"
187             "Cached:   %9lu kB\n"
188             "SwapTotal:%9llu kB\n"
189             "SwapFree: %9llu kB\n",
190             B2K(memtotal), B2K(memfree), B2K(buffers),
191             B2K(cached), B2K(swaptotal), B2K(swapfree));
192
193         return (0);
194 }
195
196 #if defined(__i386__) || defined(__amd64__)
197 /*
198  * Filler function for proc/cpuinfo (i386 & amd64 version)
199  */
200 static int
201 linprocfs_docpuinfo(PFS_FILL_ARGS)
202 {
203         int hw_model[2];
204         char model[128];
205         uint64_t freq;
206         size_t size;
207         u_int cache_size[4];
208         int fqmhz, fqkhz;
209         int i, j;
210
211         /*
212          * We default the flags to include all non-conflicting flags,
213          * and the Intel versions of conflicting flags.
214          */
215         static char *cpu_feature_names[] = {
216                 /*  0 */ "fpu", "vme", "de", "pse",
217                 /*  4 */ "tsc", "msr", "pae", "mce",
218                 /*  8 */ "cx8", "apic", "", "sep",
219                 /* 12 */ "mtrr", "pge", "mca", "cmov",
220                 /* 16 */ "pat", "pse36", "pn", "clflush",
221                 /* 20 */ "", "dts", "acpi", "mmx",
222                 /* 24 */ "fxsr", "sse", "sse2", "ss",
223                 /* 28 */ "ht", "tm", "ia64", "pbe"
224         };
225
226         static char *amd_feature_names[] = {
227                 /*  0 */ "", "", "", "",
228                 /*  4 */ "", "", "", "",
229                 /*  8 */ "", "", "", "syscall",
230                 /* 12 */ "", "", "", "",
231                 /* 16 */ "", "", "", "mp",
232                 /* 20 */ "nx", "", "mmxext", "",
233                 /* 24 */ "", "fxsr_opt", "pdpe1gb", "rdtscp",
234                 /* 28 */ "", "lm", "3dnowext", "3dnow"
235         };
236
237         static char *cpu_feature2_names[] = {
238                 /*  0 */ "pni", "pclmulqdq", "dtes3", "monitor",
239                 /*  4 */ "ds_cpl", "vmx", "smx", "est",
240                 /*  8 */ "tm2", "ssse3", "cid", "sdbg",
241                 /* 12 */ "fma", "cx16", "xptr", "pdcm",
242                 /* 16 */ "", "pcid", "dca", "sse4_1",
243                 /* 20 */ "sse4_2", "x2apic", "movbe", "popcnt",
244                 /* 24 */ "tsc_deadline_timer", "aes", "xsave", "",
245                 /* 28 */ "avx", "f16c", "rdrand", "hypervisor"
246         };
247
248         static char *amd_feature2_names[] = {
249                 /*  0 */ "lahf_lm", "cmp_legacy", "svm", "extapic",
250                 /*  4 */ "cr8_legacy", "abm", "sse4a", "misalignsse",
251                 /*  8 */ "3dnowprefetch", "osvw", "ibs", "xop",
252                 /* 12 */ "skinit", "wdt", "", "lwp",
253                 /* 16 */ "fma4", "tce", "", "nodeid_msr",
254                 /* 20 */ "", "tbm", "topoext", "perfctr_core",
255                 /* 24 */ "perfctr_nb", "", "bpext", "ptsc",
256                 /* 28 */ "perfctr_llc", "mwaitx", "", ""
257         };
258
259         static char *cpu_stdext_feature_names[] = {
260                 /*  0 */ "fsgsbase", "tsc_adjust", "", "bmi1",
261                 /*  4 */ "hle", "avx2", "", "smep",
262                 /*  8 */ "bmi2", "erms", "invpcid", "rtm",
263                 /* 12 */ "cqm", "", "mpx", "rdt_a",
264                 /* 16 */ "avx512f", "avx512dq", "rdseed", "adx",
265                 /* 20 */ "smap", "avx512ifma", "", "clflushopt",
266                 /* 24 */ "clwb", "intel_pt", "avx512pf", "avx512er",
267                 /* 28 */ "avx512cd", "sha_ni", "avx512bw", "avx512vl"
268         };
269
270         static char *power_flags[] = {
271                 "ts",           "fid",          "vid",
272                 "ttp",          "tm",           "stc",
273                 "100mhzsteps",  "hwpstate",     "",
274                 "cpb",          "eff_freq_ro",  "proc_feedback",
275                 "acc_power",
276         };
277
278         hw_model[0] = CTL_HW;
279         hw_model[1] = HW_MODEL;
280         model[0] = '\0';
281         size = sizeof(model);
282         if (kernel_sysctl(td, hw_model, 2, &model, &size, 0, 0, 0, 0) != 0)
283                 strcpy(model, "unknown");
284 #ifdef __i386__
285         switch (cpu_vendor_id) {
286         case CPU_VENDOR_AMD:
287                 if (cpu_class < CPUCLASS_686)
288                         cpu_feature_names[16] = "fcmov";
289                 break;
290         case CPU_VENDOR_CYRIX:
291                 cpu_feature_names[24] = "cxmmx";
292                 break;
293         }
294 #endif
295         if (cpu_exthigh >= 0x80000006)
296                 do_cpuid(0x80000006, cache_size);
297         else
298                 memset(cache_size, 0, sizeof(cache_size));
299         for (i = 0; i < mp_ncpus; ++i) {
300                 fqmhz = 0;
301                 fqkhz = 0;
302                 freq = atomic_load_acq_64(&tsc_freq);
303                 if (freq != 0) {
304                         fqmhz = (freq + 4999) / 1000000;
305                         fqkhz = ((freq + 4999) / 10000) % 100;
306                 }
307                 sbuf_printf(sb,
308                     "processor\t: %d\n"
309                     "vendor_id\t: %.20s\n"
310                     "cpu family\t: %u\n"
311                     "model\t\t: %u\n"
312                     "model name\t: %s\n"
313                     "stepping\t: %u\n"
314                     "cpu MHz\t\t: %d.%02d\n"
315                     "cache size\t: %d KB\n"
316                     "physical id\t: %d\n"
317                     "siblings\t: %d\n"
318                     "core id\t\t: %d\n"
319                     "cpu cores\t: %d\n"
320                     "apicid\t\t: %d\n"
321                     "initial apicid\t: %d\n"
322                     "fpu\t\t: %s\n"
323                     "fpu_exception\t: %s\n"
324                     "cpuid level\t: %d\n"
325                     "wp\t\t: %s\n",
326                     i, cpu_vendor, CPUID_TO_FAMILY(cpu_id),
327                     CPUID_TO_MODEL(cpu_id), model, cpu_id & CPUID_STEPPING,
328                     fqmhz, fqkhz,
329                     (cache_size[2] >> 16), 0, mp_ncpus, i, mp_ncpus,
330                     i, i, /*cpu_id & CPUID_LOCAL_APIC_ID ??*/
331                     (cpu_feature & CPUID_FPU) ? "yes" : "no", "yes",
332                     CPUID_TO_FAMILY(cpu_id), "yes");
333                 sbuf_cat(sb, "flags\t\t:");
334                 for (j = 0; j < nitems(cpu_feature_names); j++)
335                         if (cpu_feature & (1 << j) &&
336                             cpu_feature_names[j][0] != '\0')
337                                 sbuf_printf(sb, " %s", cpu_feature_names[j]);
338                 for (j = 0; j < nitems(amd_feature_names); j++)
339                         if (amd_feature & (1 << j) &&
340                             amd_feature_names[j][0] != '\0')
341                                 sbuf_printf(sb, " %s", amd_feature_names[j]);
342                 for (j = 0; j < nitems(cpu_feature2_names); j++)
343                         if (cpu_feature2 & (1 << j) &&
344                             cpu_feature2_names[j][0] != '\0')
345                                 sbuf_printf(sb, " %s", cpu_feature2_names[j]);
346                 for (j = 0; j < nitems(amd_feature2_names); j++)
347                         if (amd_feature2 & (1 << j) &&
348                             amd_feature2_names[j][0] != '\0')
349                                 sbuf_printf(sb, " %s", amd_feature2_names[j]);
350                 for (j = 0; j < nitems(cpu_stdext_feature_names); j++)
351                         if (cpu_stdext_feature & (1 << j) &&
352                             cpu_stdext_feature_names[j][0] != '\0')
353                                 sbuf_printf(sb, " %s",
354                                     cpu_stdext_feature_names[j]);
355                 sbuf_cat(sb, "\n");
356                 sbuf_printf(sb,
357                     "bugs\t\t: %s\n"
358                     "bogomips\t: %d.%02d\n"
359                     "clflush size\t: %d\n"
360                     "cache_alignment\t: %d\n"
361                     "address sizes\t: %d bits physical, %d bits virtual\n",
362 #if defined(I586_CPU) && !defined(NO_F00F_HACK)
363                     (has_f00f_bug) ? "Intel F00F" : "",
364 #else
365                     "",
366 #endif
367                     fqmhz, fqkhz,
368                     cpu_clflush_line_size, cpu_clflush_line_size,
369                     cpu_maxphyaddr,
370                     (cpu_maxphyaddr > 32) ? 48 : 0);
371                 sbuf_cat(sb, "power management: ");
372                 for (j = 0; j < nitems(power_flags); j++)
373                         if (amd_pminfo & (1 << j))
374                                 sbuf_printf(sb, " %s", power_flags[j]);
375                 sbuf_cat(sb, "\n\n");
376
377                 /* XXX per-cpu vendor / class / model / id? */
378         }
379         sbuf_cat(sb, "\n");
380
381         return (0);
382 }
383 #else
384 /* ARM64TODO: implement non-stubbed linprocfs_docpuinfo */
385 static int
386 linprocfs_docpuinfo(PFS_FILL_ARGS)
387 {
388         int i;
389
390         for (i = 0; i < mp_ncpus; ++i) {
391                 sbuf_printf(sb,
392                     "processor\t: %d\n"
393                     "BogoMIPS\t: %d.%02d\n",
394                     i, 0, 0);
395                 sbuf_cat(sb, "Features\t: ");
396                 sbuf_cat(sb, "\n");
397                 sbuf_printf(sb,
398                     "CPU implementer\t: \n"
399                     "CPU architecture: \n"
400                     "CPU variant\t: 0x%x\n"
401                     "CPU part\t: 0x%x\n"
402                     "CPU revision\t: %d\n",
403                     0, 0, 0);
404                 sbuf_cat(sb, "\n");
405         }
406
407         return (0);
408 }
409 #endif /* __i386__ || __amd64__ */
410
411 /*
412  * Filler function for proc/mtab
413  *
414  * This file doesn't exist in Linux' procfs, but is included here so
415  * users can symlink /compat/linux/etc/mtab to /proc/mtab
416  */
417 static int
418 linprocfs_domtab(PFS_FILL_ARGS)
419 {
420         struct nameidata nd;
421         const char *lep;
422         char *dlep, *flep, *mntto, *mntfrom, *fstype;
423         size_t lep_len;
424         int error;
425         struct statfs *buf, *sp;
426         size_t count;
427
428         /* resolve symlinks etc. in the emulation tree prefix */
429         NDINIT(&nd, LOOKUP, FOLLOW, UIO_SYSSPACE, linux_emul_path, td);
430         flep = NULL;
431         error = namei(&nd);
432         lep = linux_emul_path;
433         if (error == 0) {
434                 if (vn_fullpath(td, nd.ni_vp, &dlep, &flep) == 0)
435                         lep = dlep;
436                 vrele(nd.ni_vp);
437         }
438         lep_len = strlen(lep);
439
440         buf = NULL;
441         error = kern_getfsstat(td, &buf, SIZE_T_MAX, &count,
442             UIO_SYSSPACE, MNT_WAIT);
443         if (error != 0) {
444                 free(buf, M_TEMP);
445                 free(flep, M_TEMP);
446                 return (error);
447         }
448
449         for (sp = buf; count > 0; sp++, count--) {
450                 /* determine device name */
451                 mntfrom = sp->f_mntfromname;
452
453                 /* determine mount point */
454                 mntto = sp->f_mntonname;
455                 if (strncmp(mntto, lep, lep_len) == 0 && mntto[lep_len] == '/')
456                         mntto += lep_len;
457
458                 /* determine fs type */
459                 fstype = sp->f_fstypename;
460                 if (strcmp(fstype, pn->pn_info->pi_name) == 0)
461                         mntfrom = fstype = "proc";
462                 else if (strcmp(fstype, "procfs") == 0)
463                         continue;
464
465                 if (strcmp(fstype, "autofs") == 0) {
466                         /*
467                          * FreeBSD uses eg "map -hosts", whereas Linux
468                          * expects just "-hosts".
469                          */
470                         if (strncmp(mntfrom, "map ", 4) == 0)
471                                 mntfrom += 4;
472                 }
473
474                 if (strcmp(fstype, "linsysfs") == 0) {
475                         sbuf_printf(sb, "/sys %s sysfs %s", mntto,
476                             sp->f_flags & MNT_RDONLY ? "ro" : "rw");
477                 } else {
478                         /* For Linux msdosfs is called vfat */
479                         if (strcmp(fstype, "msdosfs") == 0)
480                                 fstype = "vfat";
481                         sbuf_printf(sb, "%s %s %s %s", mntfrom, mntto, fstype,
482                             sp->f_flags & MNT_RDONLY ? "ro" : "rw");
483                 }
484 #define ADD_OPTION(opt, name) \
485         if (sp->f_flags & (opt)) sbuf_printf(sb, "," name);
486                 ADD_OPTION(MNT_SYNCHRONOUS,     "sync");
487                 ADD_OPTION(MNT_NOEXEC,          "noexec");
488                 ADD_OPTION(MNT_NOSUID,          "nosuid");
489                 ADD_OPTION(MNT_UNION,           "union");
490                 ADD_OPTION(MNT_ASYNC,           "async");
491                 ADD_OPTION(MNT_SUIDDIR,         "suiddir");
492                 ADD_OPTION(MNT_NOSYMFOLLOW,     "nosymfollow");
493                 ADD_OPTION(MNT_NOATIME,         "noatime");
494 #undef ADD_OPTION
495                 /* a real Linux mtab will also show NFS options */
496                 sbuf_printf(sb, " 0 0\n");
497         }
498
499         free(buf, M_TEMP);
500         free(flep, M_TEMP);
501         return (error);
502 }
503
504 /*
505  * Filler function for proc/partitions
506  */
507 static int
508 linprocfs_dopartitions(PFS_FILL_ARGS)
509 {
510         struct g_class *cp;
511         struct g_geom *gp;
512         struct g_provider *pp;
513         int major, minor;
514
515         g_topology_lock();
516         sbuf_printf(sb, "major minor  #blocks  name rio rmerge rsect "
517             "ruse wio wmerge wsect wuse running use aveq\n");
518
519         LIST_FOREACH(cp, &g_classes, class) {
520                 if (strcmp(cp->name, "DISK") == 0 ||
521                     strcmp(cp->name, "PART") == 0)
522                         LIST_FOREACH(gp, &cp->geom, geom) {
523                                 LIST_FOREACH(pp, &gp->provider, provider) {
524                                         if (linux_driver_get_major_minor(
525                                             pp->name, &major, &minor) != 0) {
526                                                 major = 0;
527                                                 minor = 0;
528                                         }
529                                         sbuf_printf(sb, "%d %d %lld %s "
530                                             "%d %d %d %d %d "
531                                              "%d %d %d %d %d %d\n",
532                                              major, minor,
533                                              (long long)pp->mediasize, pp->name,
534                                              0, 0, 0, 0, 0,
535                                              0, 0, 0, 0, 0, 0);
536                                 }
537                         }
538         }
539         g_topology_unlock();
540
541         return (0);
542 }
543
544 /*
545  * Filler function for proc/stat
546  *
547  * Output depends on kernel version:
548  *
549  * v2.5.40 <=
550  *   user nice system idle
551  * v2.5.41
552  *   user nice system idle iowait
553  * v2.6.11
554  *   user nice system idle iowait irq softirq steal
555  * v2.6.24
556  *   user nice system idle iowait irq softirq steal guest
557  * v2.6.33 >=
558  *   user nice system idle iowait irq softirq steal guest guest_nice
559  */
560 static int
561 linprocfs_dostat(PFS_FILL_ARGS)
562 {
563         struct pcpu *pcpu;
564         long cp_time[CPUSTATES];
565         long *cp;
566         struct timeval boottime;
567         int i;
568         char *zero_pad;
569         bool has_intr = true;
570
571         if (linux_kernver(td) >= LINUX_KERNVER(2,6,33)) {
572                 zero_pad = " 0 0 0 0\n";
573         } else if (linux_kernver(td) >= LINUX_KERNVER(2,6,24)) {
574                 zero_pad = " 0 0 0\n";
575         } else if (linux_kernver(td) >= LINUX_KERNVER(2,6,11)) {
576                 zero_pad = " 0 0\n";
577         } else if (linux_kernver(td) >= LINUX_KERNVER(2,5,41)) {
578                 has_intr = false;
579                 zero_pad = " 0\n";
580         } else {
581                 has_intr = false;
582                 zero_pad = "\n";
583         }
584
585         read_cpu_time(cp_time);
586         getboottime(&boottime);
587         /* Parameters common to all versions */
588         sbuf_printf(sb, "cpu %lu %lu %lu %lu",
589             T2J(cp_time[CP_USER]),
590             T2J(cp_time[CP_NICE]),
591             T2J(cp_time[CP_SYS]),
592             T2J(cp_time[CP_IDLE]));
593
594         /* Print interrupt stats if available */
595         if (has_intr) {
596                 sbuf_printf(sb, " 0 %lu", T2J(cp_time[CP_INTR]));
597         }
598
599         /* Pad out remaining fields depending on version */
600         sbuf_printf(sb, "%s", zero_pad);
601
602         CPU_FOREACH(i) {
603                 pcpu = pcpu_find(i);
604                 cp = pcpu->pc_cp_time;
605                 sbuf_printf(sb, "cpu%d %lu %lu %lu %lu", i,
606                     T2J(cp[CP_USER]),
607                     T2J(cp[CP_NICE]),
608                     T2J(cp[CP_SYS]),
609                     T2J(cp[CP_IDLE]));
610
611                 if (has_intr) {
612                         sbuf_printf(sb, " 0 %lu", T2J(cp[CP_INTR]));
613                 }
614
615                 sbuf_printf(sb, "%s", zero_pad);
616         }
617         sbuf_printf(sb,
618             "disk 0 0 0 0\n"
619             "page %ju %ju\n"
620             "swap %ju %ju\n"
621             "intr %ju\n"
622             "ctxt %ju\n"
623             "btime %lld\n",
624             (uintmax_t)VM_CNT_FETCH(v_vnodepgsin),
625             (uintmax_t)VM_CNT_FETCH(v_vnodepgsout),
626             (uintmax_t)VM_CNT_FETCH(v_swappgsin),
627             (uintmax_t)VM_CNT_FETCH(v_swappgsout),
628             (uintmax_t)VM_CNT_FETCH(v_intr),
629             (uintmax_t)VM_CNT_FETCH(v_swtch),
630             (long long)boottime.tv_sec);
631         return (0);
632 }
633
634 static int
635 linprocfs_doswaps(PFS_FILL_ARGS)
636 {
637         struct xswdev xsw;
638         uintmax_t total, used;
639         int n;
640         char devname[SPECNAMELEN + 1];
641
642         sbuf_printf(sb, "Filename\t\t\t\tType\t\tSize\tUsed\tPriority\n");
643         for (n = 0; ; n++) {
644                 if (swap_dev_info(n, &xsw, devname, sizeof(devname)) != 0)
645                         break;
646                 total = (uintmax_t)xsw.xsw_nblks * PAGE_SIZE / 1024;
647                 used  = (uintmax_t)xsw.xsw_used * PAGE_SIZE / 1024;
648
649                 /*
650                  * The space and not tab after the device name is on
651                  * purpose.  Linux does so.
652                  */
653                 sbuf_printf(sb, "/dev/%-34s unknown\t\t%jd\t%jd\t-1\n",
654                     devname, total, used);
655         }
656         return (0);
657 }
658
659 /*
660  * Filler function for proc/uptime
661  */
662 static int
663 linprocfs_douptime(PFS_FILL_ARGS)
664 {
665         long cp_time[CPUSTATES];
666         struct timeval tv;
667
668         getmicrouptime(&tv);
669         read_cpu_time(cp_time);
670         sbuf_printf(sb, "%lld.%02ld %ld.%02lu\n",
671             (long long)tv.tv_sec, tv.tv_usec / 10000,
672             T2S(cp_time[CP_IDLE] / mp_ncpus),
673             T2CS(cp_time[CP_IDLE] / mp_ncpus) % 100);
674         return (0);
675 }
676
677 /*
678  * Get OS build date
679  */
680 static void
681 linprocfs_osbuild(struct thread *td, struct sbuf *sb)
682 {
683 #if 0
684         char osbuild[256];
685         char *cp1, *cp2;
686
687         strncpy(osbuild, version, 256);
688         osbuild[255] = '\0';
689         cp1 = strstr(osbuild, "\n");
690         cp2 = strstr(osbuild, ":");
691         if (cp1 && cp2) {
692                 *cp1 = *cp2 = '\0';
693                 cp1 = strstr(osbuild, "#");
694         } else
695                 cp1 = NULL;
696         if (cp1)
697                 sbuf_printf(sb, "%s%s", cp1, cp2 + 1);
698         else
699 #endif
700                 sbuf_cat(sb, "#4 Sun Dec 18 04:30:00 CET 1977");
701 }
702
703 /*
704  * Get OS builder
705  */
706 static void
707 linprocfs_osbuilder(struct thread *td, struct sbuf *sb)
708 {
709 #if 0
710         char builder[256];
711         char *cp;
712
713         cp = strstr(version, "\n    ");
714         if (cp) {
715                 strncpy(builder, cp + 5, 256);
716                 builder[255] = '\0';
717                 cp = strstr(builder, ":");
718                 if (cp)
719                         *cp = '\0';
720         }
721         if (cp)
722                 sbuf_cat(sb, builder);
723         else
724 #endif
725                 sbuf_cat(sb, "des@freebsd.org");
726 }
727
728 /*
729  * Filler function for proc/version
730  */
731 static int
732 linprocfs_doversion(PFS_FILL_ARGS)
733 {
734         char osname[LINUX_MAX_UTSNAME];
735         char osrelease[LINUX_MAX_UTSNAME];
736
737         linux_get_osname(td, osname);
738         linux_get_osrelease(td, osrelease);
739         sbuf_printf(sb, "%s version %s (", osname, osrelease);
740         linprocfs_osbuilder(td, sb);
741         sbuf_cat(sb, ") (gcc version " __VERSION__ ") ");
742         linprocfs_osbuild(td, sb);
743         sbuf_cat(sb, "\n");
744
745         return (0);
746 }
747
748 /*
749  * Filler function for proc/loadavg
750  */
751 static int
752 linprocfs_doloadavg(PFS_FILL_ARGS)
753 {
754
755         sbuf_printf(sb,
756             "%d.%02d %d.%02d %d.%02d %d/%d %d\n",
757             (int)(averunnable.ldavg[0] / averunnable.fscale),
758             (int)(averunnable.ldavg[0] * 100 / averunnable.fscale % 100),
759             (int)(averunnable.ldavg[1] / averunnable.fscale),
760             (int)(averunnable.ldavg[1] * 100 / averunnable.fscale % 100),
761             (int)(averunnable.ldavg[2] / averunnable.fscale),
762             (int)(averunnable.ldavg[2] * 100 / averunnable.fscale % 100),
763             1,                          /* number of running tasks */
764             nprocs,                     /* number of tasks */
765             lastpid                     /* the last pid */
766         );
767         return (0);
768 }
769
770 /*
771  * Filler function for proc/pid/stat
772  */
773 static int
774 linprocfs_doprocstat(PFS_FILL_ARGS)
775 {
776         struct kinfo_proc kp;
777         struct timeval boottime;
778         char state;
779         static int ratelimit = 0;
780         vm_offset_t startcode, startdata;
781
782         getboottime(&boottime);
783         sx_slock(&proctree_lock);
784         PROC_LOCK(p);
785         fill_kinfo_proc(p, &kp);
786         sx_sunlock(&proctree_lock);
787         if (p->p_vmspace) {
788            startcode = (vm_offset_t)p->p_vmspace->vm_taddr;
789            startdata = (vm_offset_t)p->p_vmspace->vm_daddr;
790         } else {
791            startcode = 0;
792            startdata = 0;
793         }
794         sbuf_printf(sb, "%d", p->p_pid);
795 #define PS_ADD(name, fmt, arg) sbuf_printf(sb, " " fmt, arg)
796         PS_ADD("comm",          "(%s)", p->p_comm);
797         if (kp.ki_stat > sizeof(linux_state)) {
798                 state = 'R';
799
800                 if (ratelimit == 0) {
801                         printf("linprocfs: don't know how to handle unknown FreeBSD state %d/%zd, mapping to R\n",
802                             kp.ki_stat, sizeof(linux_state));
803                         ++ratelimit;
804                 }
805         } else
806                 state = linux_state[kp.ki_stat - 1];
807         PS_ADD("state",         "%c",   state);
808         PS_ADD("ppid",          "%d",   p->p_pptr ? p->p_pptr->p_pid : 0);
809         PS_ADD("pgrp",          "%d",   p->p_pgid);
810         PS_ADD("session",       "%d",   p->p_session->s_sid);
811         PROC_UNLOCK(p);
812         PS_ADD("tty",           "%ju",  (uintmax_t)kp.ki_tdev);
813         PS_ADD("tpgid",         "%d",   kp.ki_tpgid);
814         PS_ADD("flags",         "%u",   0); /* XXX */
815         PS_ADD("minflt",        "%lu",  kp.ki_rusage.ru_minflt);
816         PS_ADD("cminflt",       "%lu",  kp.ki_rusage_ch.ru_minflt);
817         PS_ADD("majflt",        "%lu",  kp.ki_rusage.ru_majflt);
818         PS_ADD("cmajflt",       "%lu",  kp.ki_rusage_ch.ru_majflt);
819         PS_ADD("utime",         "%ld",  TV2J(&kp.ki_rusage.ru_utime));
820         PS_ADD("stime",         "%ld",  TV2J(&kp.ki_rusage.ru_stime));
821         PS_ADD("cutime",        "%ld",  TV2J(&kp.ki_rusage_ch.ru_utime));
822         PS_ADD("cstime",        "%ld",  TV2J(&kp.ki_rusage_ch.ru_stime));
823         PS_ADD("priority",      "%d",   kp.ki_pri.pri_user);
824         PS_ADD("nice",          "%d",   kp.ki_nice); /* 19 (nicest) to -19 */
825         PS_ADD("0",             "%d",   0); /* removed field */
826         PS_ADD("itrealvalue",   "%d",   0); /* XXX */
827         PS_ADD("starttime",     "%lu",  TV2J(&kp.ki_start) - TV2J(&boottime));
828         PS_ADD("vsize",         "%ju",  P2K((uintmax_t)kp.ki_size));
829         PS_ADD("rss",           "%ju",  (uintmax_t)kp.ki_rssize);
830         PS_ADD("rlim",          "%lu",  kp.ki_rusage.ru_maxrss);
831         PS_ADD("startcode",     "%ju",  (uintmax_t)startcode);
832         PS_ADD("endcode",       "%ju",  (uintmax_t)startdata);
833         PS_ADD("startstack",    "%u",   0); /* XXX */
834         PS_ADD("kstkesp",       "%u",   0); /* XXX */
835         PS_ADD("kstkeip",       "%u",   0); /* XXX */
836         PS_ADD("signal",        "%u",   0); /* XXX */
837         PS_ADD("blocked",       "%u",   0); /* XXX */
838         PS_ADD("sigignore",     "%u",   0); /* XXX */
839         PS_ADD("sigcatch",      "%u",   0); /* XXX */
840         PS_ADD("wchan",         "%u",   0); /* XXX */
841         PS_ADD("nswap",         "%lu",  kp.ki_rusage.ru_nswap);
842         PS_ADD("cnswap",        "%lu",  kp.ki_rusage_ch.ru_nswap);
843         PS_ADD("exitsignal",    "%d",   0); /* XXX */
844         PS_ADD("processor",     "%u",   kp.ki_lastcpu);
845         PS_ADD("rt_priority",   "%u",   0); /* XXX */ /* >= 2.5.19 */
846         PS_ADD("policy",        "%u",   kp.ki_pri.pri_class); /* >= 2.5.19 */
847 #undef PS_ADD
848         sbuf_putc(sb, '\n');
849
850         return (0);
851 }
852
853 /*
854  * Filler function for proc/pid/statm
855  */
856 static int
857 linprocfs_doprocstatm(PFS_FILL_ARGS)
858 {
859         struct kinfo_proc kp;
860         segsz_t lsize;
861
862         sx_slock(&proctree_lock);
863         PROC_LOCK(p);
864         fill_kinfo_proc(p, &kp);
865         PROC_UNLOCK(p);
866         sx_sunlock(&proctree_lock);
867
868         /*
869          * See comments in linprocfs_doprocstatus() regarding the
870          * computation of lsize.
871          */
872         /* size resident share trs drs lrs dt */
873         sbuf_printf(sb, "%ju ", B2P((uintmax_t)kp.ki_size));
874         sbuf_printf(sb, "%ju ", (uintmax_t)kp.ki_rssize);
875         sbuf_printf(sb, "%ju ", (uintmax_t)0); /* XXX */
876         sbuf_printf(sb, "%ju ", (uintmax_t)kp.ki_tsize);
877         sbuf_printf(sb, "%ju ", (uintmax_t)(kp.ki_dsize + kp.ki_ssize));
878         lsize = B2P(kp.ki_size) - kp.ki_dsize -
879             kp.ki_ssize - kp.ki_tsize - 1;
880         sbuf_printf(sb, "%ju ", (uintmax_t)lsize);
881         sbuf_printf(sb, "%ju\n", (uintmax_t)0); /* XXX */
882
883         return (0);
884 }
885
886 /*
887  * Filler function for proc/pid/status
888  */
889 static int
890 linprocfs_doprocstatus(PFS_FILL_ARGS)
891 {
892         struct kinfo_proc kp;
893         char *state;
894         segsz_t lsize;
895         struct thread *td2;
896         struct sigacts *ps;
897         l_sigset_t siglist, sigignore, sigcatch;
898         int i;
899
900         sx_slock(&proctree_lock);
901         PROC_LOCK(p);
902         td2 = FIRST_THREAD_IN_PROC(p); /* XXXKSE pretend only one thread */
903
904         if (P_SHOULDSTOP(p)) {
905                 state = "T (stopped)";
906         } else {
907                 switch(p->p_state) {
908                 case PRS_NEW:
909                         state = "I (idle)";
910                         break;
911                 case PRS_NORMAL:
912                         if (p->p_flag & P_WEXIT) {
913                                 state = "X (exiting)";
914                                 break;
915                         }
916                         switch(td2->td_state) {
917                         case TDS_INHIBITED:
918                                 state = "S (sleeping)";
919                                 break;
920                         case TDS_RUNQ:
921                         case TDS_RUNNING:
922                                 state = "R (running)";
923                                 break;
924                         default:
925                                 state = "? (unknown)";
926                                 break;
927                         }
928                         break;
929                 case PRS_ZOMBIE:
930                         state = "Z (zombie)";
931                         break;
932                 default:
933                         state = "? (unknown)";
934                         break;
935                 }
936         }
937
938         fill_kinfo_proc(p, &kp);
939         sx_sunlock(&proctree_lock);
940
941         sbuf_printf(sb, "Name:\t%s\n",          p->p_comm); /* XXX escape */
942         sbuf_printf(sb, "State:\t%s\n",         state);
943
944         /*
945          * Credentials
946          */
947         sbuf_printf(sb, "Tgid:\t%d\n",          p->p_pid);
948         sbuf_printf(sb, "Pid:\t%d\n",           p->p_pid);
949         sbuf_printf(sb, "PPid:\t%d\n",          kp.ki_ppid );
950         sbuf_printf(sb, "TracerPid:\t%d\n",     kp.ki_tracer );
951         sbuf_printf(sb, "Uid:\t%d %d %d %d\n",  p->p_ucred->cr_ruid,
952                                                 p->p_ucred->cr_uid,
953                                                 p->p_ucred->cr_svuid,
954                                                 /* FreeBSD doesn't have fsuid */
955                                                 p->p_ucred->cr_uid);
956         sbuf_printf(sb, "Gid:\t%d %d %d %d\n",  p->p_ucred->cr_rgid,
957                                                 p->p_ucred->cr_gid,
958                                                 p->p_ucred->cr_svgid,
959                                                 /* FreeBSD doesn't have fsgid */
960                                                 p->p_ucred->cr_gid);
961         sbuf_cat(sb, "Groups:\t");
962         for (i = 0; i < p->p_ucred->cr_ngroups; i++)
963                 sbuf_printf(sb, "%d ",          p->p_ucred->cr_groups[i]);
964         PROC_UNLOCK(p);
965         sbuf_putc(sb, '\n');
966
967         /*
968          * Memory
969          *
970          * While our approximation of VmLib may not be accurate (I
971          * don't know of a simple way to verify it, and I'm not sure
972          * it has much meaning anyway), I believe it's good enough.
973          *
974          * The same code that could (I think) accurately compute VmLib
975          * could also compute VmLck, but I don't really care enough to
976          * implement it. Submissions are welcome.
977          */
978         sbuf_printf(sb, "VmSize:\t%8ju kB\n",   B2K((uintmax_t)kp.ki_size));
979         sbuf_printf(sb, "VmLck:\t%8u kB\n",     P2K(0)); /* XXX */
980         sbuf_printf(sb, "VmRSS:\t%8ju kB\n",    P2K((uintmax_t)kp.ki_rssize));
981         sbuf_printf(sb, "VmData:\t%8ju kB\n",   P2K((uintmax_t)kp.ki_dsize));
982         sbuf_printf(sb, "VmStk:\t%8ju kB\n",    P2K((uintmax_t)kp.ki_ssize));
983         sbuf_printf(sb, "VmExe:\t%8ju kB\n",    P2K((uintmax_t)kp.ki_tsize));
984         lsize = B2P(kp.ki_size) - kp.ki_dsize -
985             kp.ki_ssize - kp.ki_tsize - 1;
986         sbuf_printf(sb, "VmLib:\t%8ju kB\n",    P2K((uintmax_t)lsize));
987
988         /*
989          * Signal masks
990          */
991         PROC_LOCK(p);
992         bsd_to_linux_sigset(&p->p_siglist, &siglist);
993         ps = p->p_sigacts;
994         mtx_lock(&ps->ps_mtx);
995         bsd_to_linux_sigset(&ps->ps_sigignore, &sigignore);
996         bsd_to_linux_sigset(&ps->ps_sigcatch, &sigcatch);
997         mtx_unlock(&ps->ps_mtx);
998         PROC_UNLOCK(p);
999
1000         sbuf_printf(sb, "SigPnd:\t%016jx\n",    siglist.__mask);
1001         /*
1002          * XXX. SigBlk - target thread's signal mask, td_sigmask.
1003          * To implement SigBlk pseudofs should support proc/tid dir entries.
1004          */
1005         sbuf_printf(sb, "SigBlk:\t%016x\n",     0);
1006         sbuf_printf(sb, "SigIgn:\t%016jx\n",    sigignore.__mask);
1007         sbuf_printf(sb, "SigCgt:\t%016jx\n",    sigcatch.__mask);
1008
1009         /*
1010          * Linux also prints the capability masks, but we don't have
1011          * capabilities yet, and when we do get them they're likely to
1012          * be meaningless to Linux programs, so we lie. XXX
1013          */
1014         sbuf_printf(sb, "CapInh:\t%016x\n",     0);
1015         sbuf_printf(sb, "CapPrm:\t%016x\n",     0);
1016         sbuf_printf(sb, "CapEff:\t%016x\n",     0);
1017
1018         return (0);
1019 }
1020
1021
1022 /*
1023  * Filler function for proc/pid/cwd
1024  */
1025 static int
1026 linprocfs_doproccwd(PFS_FILL_ARGS)
1027 {
1028         struct filedesc *fdp;
1029         struct vnode *vp;
1030         char *fullpath = "unknown";
1031         char *freepath = NULL;
1032
1033         fdp = p->p_fd;
1034         FILEDESC_SLOCK(fdp);
1035         vp = fdp->fd_cdir;
1036         if (vp != NULL)
1037                 VREF(vp);
1038         FILEDESC_SUNLOCK(fdp);
1039         vn_fullpath(td, vp, &fullpath, &freepath);
1040         if (vp != NULL)
1041                 vrele(vp);
1042         sbuf_printf(sb, "%s", fullpath);
1043         if (freepath)
1044                 free(freepath, M_TEMP);
1045         return (0);
1046 }
1047
1048 /*
1049  * Filler function for proc/pid/root
1050  */
1051 static int
1052 linprocfs_doprocroot(PFS_FILL_ARGS)
1053 {
1054         struct filedesc *fdp;
1055         struct vnode *vp;
1056         char *fullpath = "unknown";
1057         char *freepath = NULL;
1058
1059         fdp = p->p_fd;
1060         FILEDESC_SLOCK(fdp);
1061         vp = jailed(p->p_ucred) ? fdp->fd_jdir : fdp->fd_rdir;
1062         if (vp != NULL)
1063                 VREF(vp);
1064         FILEDESC_SUNLOCK(fdp);
1065         vn_fullpath(td, vp, &fullpath, &freepath);
1066         if (vp != NULL)
1067                 vrele(vp);
1068         sbuf_printf(sb, "%s", fullpath);
1069         if (freepath)
1070                 free(freepath, M_TEMP);
1071         return (0);
1072 }
1073
1074 /*
1075  * Filler function for proc/pid/cmdline
1076  */
1077 static int
1078 linprocfs_doproccmdline(PFS_FILL_ARGS)
1079 {
1080         int ret;
1081
1082         PROC_LOCK(p);
1083         if ((ret = p_cansee(td, p)) != 0) {
1084                 PROC_UNLOCK(p);
1085                 return (ret);
1086         }
1087
1088         /*
1089          * Mimic linux behavior and pass only processes with usermode
1090          * address space as valid.  Return zero silently otherwize.
1091          */
1092         if (p->p_vmspace == &vmspace0) {
1093                 PROC_UNLOCK(p);
1094                 return (0);
1095         }
1096         if (p->p_args != NULL) {
1097                 sbuf_bcpy(sb, p->p_args->ar_args, p->p_args->ar_length);
1098                 PROC_UNLOCK(p);
1099                 return (0);
1100         }
1101
1102         if ((p->p_flag & P_SYSTEM) != 0) {
1103                 PROC_UNLOCK(p);
1104                 return (0);
1105         }
1106
1107         PROC_UNLOCK(p);
1108
1109         ret = proc_getargv(td, p, sb);
1110         return (ret);
1111 }
1112
1113 /*
1114  * Filler function for proc/pid/environ
1115  */
1116 static int
1117 linprocfs_doprocenviron(PFS_FILL_ARGS)
1118 {
1119
1120         /*
1121          * Mimic linux behavior and pass only processes with usermode
1122          * address space as valid.  Return zero silently otherwize.
1123          */
1124         if (p->p_vmspace == &vmspace0)
1125                 return (0);
1126
1127         return (proc_getenvv(td, p, sb));
1128 }
1129
1130 static char l32_map_str[] = "%08lx-%08lx %s%s%s%s %08lx %02x:%02x %lu%s%s\n";
1131 static char l64_map_str[] = "%016lx-%016lx %s%s%s%s %08lx %02x:%02x %lu%s%s\n";
1132 static char vdso_str[] = "      [vdso]";
1133 static char stack_str[] = "      [stack]";
1134
1135 /*
1136  * Filler function for proc/pid/maps
1137  */
1138 static int
1139 linprocfs_doprocmaps(PFS_FILL_ARGS)
1140 {
1141         struct vmspace *vm;
1142         vm_map_t map;
1143         vm_map_entry_t entry, tmp_entry;
1144         vm_object_t obj, tobj, lobj;
1145         vm_offset_t e_start, e_end;
1146         vm_ooffset_t off = 0;
1147         vm_prot_t e_prot;
1148         unsigned int last_timestamp;
1149         char *name = "", *freename = NULL;
1150         const char *l_map_str;
1151         ino_t ino;
1152         int ref_count, shadow_count, flags;
1153         int error;
1154         struct vnode *vp;
1155         struct vattr vat;
1156
1157         PROC_LOCK(p);
1158         error = p_candebug(td, p);
1159         PROC_UNLOCK(p);
1160         if (error)
1161                 return (error);
1162
1163         if (uio->uio_rw != UIO_READ)
1164                 return (EOPNOTSUPP);
1165
1166         error = 0;
1167         vm = vmspace_acquire_ref(p);
1168         if (vm == NULL)
1169                 return (ESRCH);
1170
1171         if (SV_CURPROC_FLAG(SV_LP64))
1172                 l_map_str = l64_map_str;
1173         else
1174                 l_map_str = l32_map_str;
1175         map = &vm->vm_map;
1176         vm_map_lock_read(map);
1177         for (entry = map->header.next; entry != &map->header;
1178             entry = entry->next) {
1179                 name = "";
1180                 freename = NULL;
1181                 if (entry->eflags & MAP_ENTRY_IS_SUB_MAP)
1182                         continue;
1183                 e_prot = entry->protection;
1184                 e_start = entry->start;
1185                 e_end = entry->end;
1186                 obj = entry->object.vm_object;
1187                 for (lobj = tobj = obj; tobj; tobj = tobj->backing_object) {
1188                         VM_OBJECT_RLOCK(tobj);
1189                         if (lobj != obj)
1190                                 VM_OBJECT_RUNLOCK(lobj);
1191                         lobj = tobj;
1192                 }
1193                 last_timestamp = map->timestamp;
1194                 vm_map_unlock_read(map);
1195                 ino = 0;
1196                 if (lobj) {
1197                         off = IDX_TO_OFF(lobj->size);
1198                         vp = vm_object_vnode(lobj);
1199                         if (vp != NULL)
1200                                 vref(vp);
1201                         if (lobj != obj)
1202                                 VM_OBJECT_RUNLOCK(lobj);
1203                         flags = obj->flags;
1204                         ref_count = obj->ref_count;
1205                         shadow_count = obj->shadow_count;
1206                         VM_OBJECT_RUNLOCK(obj);
1207                         if (vp != NULL) {
1208                                 vn_fullpath(td, vp, &name, &freename);
1209                                 vn_lock(vp, LK_SHARED | LK_RETRY);
1210                                 VOP_GETATTR(vp, &vat, td->td_ucred);
1211                                 ino = vat.va_fileid;
1212                                 vput(vp);
1213                         } else if (SV_PROC_ABI(p) == SV_ABI_LINUX) {
1214                                 if (e_start == p->p_sysent->sv_shared_page_base)
1215                                         name = vdso_str;
1216                                 if (e_end == p->p_sysent->sv_usrstack)
1217                                         name = stack_str;
1218                         }
1219                 } else {
1220                         flags = 0;
1221                         ref_count = 0;
1222                         shadow_count = 0;
1223                 }
1224
1225                 /*
1226                  * format:
1227                  *  start, end, access, offset, major, minor, inode, name.
1228                  */
1229                 error = sbuf_printf(sb, l_map_str,
1230                     (u_long)e_start, (u_long)e_end,
1231                     (e_prot & VM_PROT_READ)?"r":"-",
1232                     (e_prot & VM_PROT_WRITE)?"w":"-",
1233                     (e_prot & VM_PROT_EXECUTE)?"x":"-",
1234                     "p",
1235                     (u_long)off,
1236                     0,
1237                     0,
1238                     (u_long)ino,
1239                     *name ? "     " : "",
1240                     name
1241                     );
1242                 if (freename)
1243                         free(freename, M_TEMP);
1244                 vm_map_lock_read(map);
1245                 if (error == -1) {
1246                         error = 0;
1247                         break;
1248                 }
1249                 if (last_timestamp != map->timestamp) {
1250                         /*
1251                          * Look again for the entry because the map was
1252                          * modified while it was unlocked.  Specifically,
1253                          * the entry may have been clipped, merged, or deleted.
1254                          */
1255                         vm_map_lookup_entry(map, e_end - 1, &tmp_entry);
1256                         entry = tmp_entry;
1257                 }
1258         }
1259         vm_map_unlock_read(map);
1260         vmspace_free(vm);
1261
1262         return (error);
1263 }
1264
1265 /*
1266  * Criteria for interface name translation
1267  */
1268 #define IFP_IS_ETH(ifp) (ifp->if_type == IFT_ETHER)
1269
1270 static int
1271 linux_ifname(struct ifnet *ifp, char *buffer, size_t buflen)
1272 {
1273         struct ifnet *ifscan;
1274         int ethno;
1275
1276         IFNET_RLOCK_ASSERT();
1277
1278         /* Short-circuit non ethernet interfaces */
1279         if (!IFP_IS_ETH(ifp))
1280                 return (strlcpy(buffer, ifp->if_xname, buflen));
1281
1282         /* Determine the (relative) unit number for ethernet interfaces */
1283         ethno = 0;
1284         CK_STAILQ_FOREACH(ifscan, &V_ifnet, if_link) {
1285                 if (ifscan == ifp)
1286                         return (snprintf(buffer, buflen, "eth%d", ethno));
1287                 if (IFP_IS_ETH(ifscan))
1288                         ethno++;
1289         }
1290
1291         return (0);
1292 }
1293
1294 /*
1295  * Filler function for proc/net/dev
1296  */
1297 static int
1298 linprocfs_donetdev(PFS_FILL_ARGS)
1299 {
1300         char ifname[16]; /* XXX LINUX_IFNAMSIZ */
1301         struct ifnet *ifp;
1302
1303         sbuf_printf(sb, "%6s|%58s|%s\n"
1304             "%6s|%58s|%58s\n",
1305             "Inter-", "   Receive", "  Transmit",
1306             " face",
1307             "bytes    packets errs drop fifo frame compressed multicast",
1308             "bytes    packets errs drop fifo colls carrier compressed");
1309
1310         CURVNET_SET(TD_TO_VNET(curthread));
1311         IFNET_RLOCK();
1312         CK_STAILQ_FOREACH(ifp, &V_ifnet, if_link) {
1313                 linux_ifname(ifp, ifname, sizeof ifname);
1314                 sbuf_printf(sb, "%6.6s: ", ifname);
1315                 sbuf_printf(sb, "%7ju %7ju %4ju %4ju %4lu %5lu %10lu %9ju ",
1316                     (uintmax_t )ifp->if_get_counter(ifp, IFCOUNTER_IBYTES),
1317                     (uintmax_t )ifp->if_get_counter(ifp, IFCOUNTER_IPACKETS),
1318                     (uintmax_t )ifp->if_get_counter(ifp, IFCOUNTER_IERRORS),
1319                     (uintmax_t )ifp->if_get_counter(ifp, IFCOUNTER_IQDROPS),
1320                                                         /* rx_missed_errors */
1321                     0UL,                                /* rx_fifo_errors */
1322                     0UL,                                /* rx_length_errors +
1323                                                          * rx_over_errors +
1324                                                          * rx_crc_errors +
1325                                                          * rx_frame_errors */
1326                     0UL,                                /* rx_compressed */
1327                     (uintmax_t )ifp->if_get_counter(ifp, IFCOUNTER_IMCASTS));
1328                                                         /* XXX-BZ rx only? */
1329                 sbuf_printf(sb, "%8ju %7ju %4ju %4ju %4lu %5ju %7lu %10lu\n",
1330                     (uintmax_t )ifp->if_get_counter(ifp, IFCOUNTER_OBYTES),
1331                     (uintmax_t )ifp->if_get_counter(ifp, IFCOUNTER_OPACKETS),
1332                     (uintmax_t )ifp->if_get_counter(ifp, IFCOUNTER_OERRORS),
1333                     (uintmax_t )ifp->if_get_counter(ifp, IFCOUNTER_OQDROPS),
1334                     0UL,                                /* tx_fifo_errors */
1335                     (uintmax_t )ifp->if_get_counter(ifp, IFCOUNTER_COLLISIONS),
1336                     0UL,                                /* tx_carrier_errors +
1337                                                          * tx_aborted_errors +
1338                                                          * tx_window_errors +
1339                                                          * tx_heartbeat_errors*/
1340                     0UL);                               /* tx_compressed */
1341         }
1342         IFNET_RUNLOCK();
1343         CURVNET_RESTORE();
1344
1345         return (0);
1346 }
1347
1348 /*
1349  * Filler function for proc/sys/kernel/osrelease
1350  */
1351 static int
1352 linprocfs_doosrelease(PFS_FILL_ARGS)
1353 {
1354         char osrelease[LINUX_MAX_UTSNAME];
1355
1356         linux_get_osrelease(td, osrelease);
1357         sbuf_printf(sb, "%s\n", osrelease);
1358
1359         return (0);
1360 }
1361
1362 /*
1363  * Filler function for proc/sys/kernel/ostype
1364  */
1365 static int
1366 linprocfs_doostype(PFS_FILL_ARGS)
1367 {
1368         char osname[LINUX_MAX_UTSNAME];
1369
1370         linux_get_osname(td, osname);
1371         sbuf_printf(sb, "%s\n", osname);
1372
1373         return (0);
1374 }
1375
1376 /*
1377  * Filler function for proc/sys/kernel/version
1378  */
1379 static int
1380 linprocfs_doosbuild(PFS_FILL_ARGS)
1381 {
1382
1383         linprocfs_osbuild(td, sb);
1384         sbuf_cat(sb, "\n");
1385         return (0);
1386 }
1387
1388 /*
1389  * Filler function for proc/sys/kernel/msgmni
1390  */
1391 static int
1392 linprocfs_domsgmni(PFS_FILL_ARGS)
1393 {
1394
1395         sbuf_printf(sb, "%d\n", msginfo.msgmni);
1396         return (0);
1397 }
1398
1399 /*
1400  * Filler function for proc/sys/kernel/pid_max
1401  */
1402 static int
1403 linprocfs_dopid_max(PFS_FILL_ARGS)
1404 {
1405
1406         sbuf_printf(sb, "%i\n", PID_MAX);
1407         return (0);
1408 }
1409
1410 /*
1411  * Filler function for proc/sys/kernel/sem
1412  */
1413 static int
1414 linprocfs_dosem(PFS_FILL_ARGS)
1415 {
1416
1417         sbuf_printf(sb, "%d %d %d %d\n", seminfo.semmsl, seminfo.semmns,
1418             seminfo.semopm, seminfo.semmni);
1419         return (0);
1420 }
1421
1422 /*
1423  * Filler function for proc/sys/vm/min_free_kbytes
1424  *
1425  * This mirrors the approach in illumos to return zero for reads. Effectively,
1426  * it says, no memory is kept in reserve for "atomic allocations". This class
1427  * of allocation can be used at times when a thread cannot be suspended.
1428  */
1429 static int
1430 linprocfs_dominfree(PFS_FILL_ARGS)
1431 {
1432
1433         sbuf_printf(sb, "%d\n", 0);
1434         return (0);
1435 }
1436
1437 /*
1438  * Filler function for proc/scsi/device_info
1439  */
1440 static int
1441 linprocfs_doscsidevinfo(PFS_FILL_ARGS)
1442 {
1443
1444         return (0);
1445 }
1446
1447 /*
1448  * Filler function for proc/scsi/scsi
1449  */
1450 static int
1451 linprocfs_doscsiscsi(PFS_FILL_ARGS)
1452 {
1453
1454         return (0);
1455 }
1456
1457 /*
1458  * Filler function for proc/devices
1459  */
1460 static int
1461 linprocfs_dodevices(PFS_FILL_ARGS)
1462 {
1463         char *char_devices;
1464         sbuf_printf(sb, "Character devices:\n");
1465
1466         char_devices = linux_get_char_devices();
1467         sbuf_printf(sb, "%s", char_devices);
1468         linux_free_get_char_devices(char_devices);
1469
1470         sbuf_printf(sb, "\nBlock devices:\n");
1471
1472         return (0);
1473 }
1474
1475 /*
1476  * Filler function for proc/cmdline
1477  */
1478 static int
1479 linprocfs_docmdline(PFS_FILL_ARGS)
1480 {
1481
1482         sbuf_printf(sb, "BOOT_IMAGE=%s", kernelname);
1483         sbuf_printf(sb, " ro root=302\n");
1484         return (0);
1485 }
1486
1487 /*
1488  * Filler function for proc/filesystems
1489  */
1490 static int
1491 linprocfs_dofilesystems(PFS_FILL_ARGS)
1492 {
1493         struct vfsconf *vfsp;
1494
1495         vfsconf_slock();
1496         TAILQ_FOREACH(vfsp, &vfsconf, vfc_list) {
1497                 if (vfsp->vfc_flags & VFCF_SYNTHETIC)
1498                         sbuf_printf(sb, "nodev");
1499                 sbuf_printf(sb, "\t%s\n", vfsp->vfc_name);
1500         }
1501         vfsconf_sunlock();
1502         return(0);
1503 }
1504
1505 #if 0
1506 /*
1507  * Filler function for proc/modules
1508  */
1509 static int
1510 linprocfs_domodules(PFS_FILL_ARGS)
1511 {
1512         struct linker_file *lf;
1513
1514         TAILQ_FOREACH(lf, &linker_files, link) {
1515                 sbuf_printf(sb, "%-20s%8lu%4d\n", lf->filename,
1516                     (unsigned long)lf->size, lf->refs);
1517         }
1518         return (0);
1519 }
1520 #endif
1521
1522 /*
1523  * Filler function for proc/pid/fd
1524  */
1525 static int
1526 linprocfs_dofdescfs(PFS_FILL_ARGS)
1527 {
1528
1529         if (p == curproc)
1530                 sbuf_printf(sb, "/dev/fd");
1531         else
1532                 sbuf_printf(sb, "unknown");
1533         return (0);
1534 }
1535
1536 /*
1537  * Filler function for proc/pid/limits
1538  */
1539 static const struct linux_rlimit_ident {
1540         const char      *desc;
1541         const char      *unit;
1542         unsigned int    rlim_id;
1543 } linux_rlimits_ident[] = {
1544         { "Max cpu time",       "seconds",      RLIMIT_CPU },
1545         { "Max file size",      "bytes",        RLIMIT_FSIZE },
1546         { "Max data size",      "bytes",        RLIMIT_DATA },
1547         { "Max stack size",     "bytes",        RLIMIT_STACK },
1548         { "Max core file size",  "bytes",       RLIMIT_CORE },
1549         { "Max resident set",   "bytes",        RLIMIT_RSS },
1550         { "Max processes",      "processes",    RLIMIT_NPROC },
1551         { "Max open files",     "files",        RLIMIT_NOFILE },
1552         { "Max locked memory",  "bytes",        RLIMIT_MEMLOCK },
1553         { "Max address space",  "bytes",        RLIMIT_AS },
1554         { "Max file locks",     "locks",        LINUX_RLIMIT_LOCKS },
1555         { "Max pending signals", "signals",     LINUX_RLIMIT_SIGPENDING },
1556         { "Max msgqueue size",  "bytes",        LINUX_RLIMIT_MSGQUEUE },
1557         { "Max nice priority",          "",     LINUX_RLIMIT_NICE },
1558         { "Max realtime priority",      "",     LINUX_RLIMIT_RTPRIO },
1559         { "Max realtime timeout",       "us",   LINUX_RLIMIT_RTTIME },
1560         { 0, 0, 0 }
1561 };
1562
1563 static int
1564 linprocfs_doproclimits(PFS_FILL_ARGS)
1565 {
1566         const struct linux_rlimit_ident *li;
1567         struct plimit *limp;
1568         struct rlimit rl;
1569         ssize_t size;
1570         int res, error;
1571
1572         error = 0;
1573
1574         PROC_LOCK(p);
1575         limp = lim_hold(p->p_limit);
1576         PROC_UNLOCK(p);
1577         size = sizeof(res);
1578         sbuf_printf(sb, "%-26s%-21s%-21s%-21s\n", "Limit", "Soft Limit",
1579                         "Hard Limit", "Units");
1580         for (li = linux_rlimits_ident; li->desc != NULL; ++li) {
1581                 switch (li->rlim_id)
1582                 {
1583                 case LINUX_RLIMIT_LOCKS:
1584                         /* FALLTHROUGH */
1585                 case LINUX_RLIMIT_RTTIME:
1586                         rl.rlim_cur = RLIM_INFINITY;
1587                         break;
1588                 case LINUX_RLIMIT_SIGPENDING:
1589                         error = kernel_sysctlbyname(td,
1590                             "kern.sigqueue.max_pending_per_proc",
1591                             &res, &size, 0, 0, 0, 0);
1592                         if (error != 0)
1593                                 goto out;
1594                         rl.rlim_cur = res;
1595                         rl.rlim_max = res;
1596                         break;
1597                 case LINUX_RLIMIT_MSGQUEUE:
1598                         error = kernel_sysctlbyname(td,
1599                             "kern.ipc.msgmnb", &res, &size, 0, 0, 0, 0);
1600                         if (error != 0)
1601                                 goto out;
1602                         rl.rlim_cur = res;
1603                         rl.rlim_max = res;
1604                         break;
1605                 case LINUX_RLIMIT_NICE:
1606                         /* FALLTHROUGH */
1607                 case LINUX_RLIMIT_RTPRIO:
1608                         rl.rlim_cur = 0;
1609                         rl.rlim_max = 0;
1610                         break;
1611                 default:
1612                         rl = limp->pl_rlimit[li->rlim_id];
1613                         break;
1614                 }
1615                 if (rl.rlim_cur == RLIM_INFINITY)
1616                         sbuf_printf(sb, "%-26s%-21s%-21s%-10s\n",
1617                             li->desc, "unlimited", "unlimited", li->unit);
1618                 else
1619                         sbuf_printf(sb, "%-26s%-21llu%-21llu%-10s\n",
1620                             li->desc, (unsigned long long)rl.rlim_cur,
1621                             (unsigned long long)rl.rlim_max, li->unit);
1622         }
1623 out:
1624         lim_free(limp);
1625         return (error);
1626 }
1627
1628 /*
1629  * Filler function for proc/sys/kernel/random/uuid
1630  */
1631 static int
1632 linprocfs_douuid(PFS_FILL_ARGS)
1633 {
1634         struct uuid uuid;
1635
1636         kern_uuidgen(&uuid, 1);
1637         sbuf_printf_uuid(sb, &uuid);
1638         sbuf_printf(sb, "\n");
1639         return(0);
1640 }
1641
1642 /*
1643  * Filler function for proc/pid/auxv
1644  */
1645 static int
1646 linprocfs_doauxv(PFS_FILL_ARGS)
1647 {
1648         struct sbuf *asb;
1649         off_t buflen, resid;
1650         int error;
1651
1652         /*
1653          * Mimic linux behavior and pass only processes with usermode
1654          * address space as valid. Return zero silently otherwise.
1655          */
1656         if (p->p_vmspace == &vmspace0)
1657                 return (0);
1658
1659         if (uio->uio_resid == 0)
1660                 return (0);
1661         if (uio->uio_offset < 0 || uio->uio_resid < 0)
1662                 return (EINVAL);
1663
1664         asb = sbuf_new_auto();
1665         if (asb == NULL)
1666                 return (ENOMEM);
1667         error = proc_getauxv(td, p, asb);
1668         if (error == 0)
1669                 error = sbuf_finish(asb);
1670
1671         resid = sbuf_len(asb) - uio->uio_offset;
1672         if (resid > uio->uio_resid)
1673                 buflen = uio->uio_resid;
1674         else
1675                 buflen = resid;
1676         if (buflen > IOSIZE_MAX)
1677                 return (EINVAL);
1678         if (buflen > MAXPHYS)
1679                 buflen = MAXPHYS;
1680         if (resid <= 0)
1681                 return (0);
1682
1683         if (error == 0)
1684                 error = uiomove(sbuf_data(asb) + uio->uio_offset, buflen, uio);
1685         sbuf_delete(asb);
1686         return (error);
1687 }
1688
1689 /*
1690  * Constructor
1691  */
1692 static int
1693 linprocfs_init(PFS_INIT_ARGS)
1694 {
1695         struct pfs_node *root;
1696         struct pfs_node *dir;
1697         struct pfs_node *sys;
1698
1699         root = pi->pi_root;
1700
1701         /* /proc/... */
1702         pfs_create_file(root, "cmdline", &linprocfs_docmdline,
1703             NULL, NULL, NULL, PFS_RD);
1704         pfs_create_file(root, "cpuinfo", &linprocfs_docpuinfo,
1705             NULL, NULL, NULL, PFS_RD);
1706         pfs_create_file(root, "devices", &linprocfs_dodevices,
1707             NULL, NULL, NULL, PFS_RD);
1708         pfs_create_file(root, "filesystems", &linprocfs_dofilesystems,
1709             NULL, NULL, NULL, PFS_RD);
1710         pfs_create_file(root, "loadavg", &linprocfs_doloadavg,
1711             NULL, NULL, NULL, PFS_RD);
1712         pfs_create_file(root, "meminfo", &linprocfs_domeminfo,
1713             NULL, NULL, NULL, PFS_RD);
1714 #if 0
1715         pfs_create_file(root, "modules", &linprocfs_domodules,
1716             NULL, NULL, NULL, PFS_RD);
1717 #endif
1718         pfs_create_file(root, "mounts", &linprocfs_domtab,
1719             NULL, NULL, NULL, PFS_RD);
1720         pfs_create_file(root, "mtab", &linprocfs_domtab,
1721             NULL, NULL, NULL, PFS_RD);
1722         pfs_create_file(root, "partitions", &linprocfs_dopartitions,
1723             NULL, NULL, NULL, PFS_RD);
1724         pfs_create_link(root, "self", &procfs_docurproc,
1725             NULL, NULL, NULL, 0);
1726         pfs_create_file(root, "stat", &linprocfs_dostat,
1727             NULL, NULL, NULL, PFS_RD);
1728         pfs_create_file(root, "swaps", &linprocfs_doswaps,
1729             NULL, NULL, NULL, PFS_RD);
1730         pfs_create_file(root, "uptime", &linprocfs_douptime,
1731             NULL, NULL, NULL, PFS_RD);
1732         pfs_create_file(root, "version", &linprocfs_doversion,
1733             NULL, NULL, NULL, PFS_RD);
1734
1735         /* /proc/net/... */
1736         dir = pfs_create_dir(root, "net", NULL, NULL, NULL, 0);
1737         pfs_create_file(dir, "dev", &linprocfs_donetdev,
1738             NULL, NULL, NULL, PFS_RD);
1739
1740         /* /proc/<pid>/... */
1741         dir = pfs_create_dir(root, "pid", NULL, NULL, NULL, PFS_PROCDEP);
1742         pfs_create_file(dir, "cmdline", &linprocfs_doproccmdline,
1743             NULL, NULL, NULL, PFS_RD);
1744         pfs_create_link(dir, "cwd", &linprocfs_doproccwd,
1745             NULL, NULL, NULL, 0);
1746         pfs_create_file(dir, "environ", &linprocfs_doprocenviron,
1747             NULL, &procfs_candebug, NULL, PFS_RD);
1748         pfs_create_link(dir, "exe", &procfs_doprocfile,
1749             NULL, &procfs_notsystem, NULL, 0);
1750         pfs_create_file(dir, "maps", &linprocfs_doprocmaps,
1751             NULL, NULL, NULL, PFS_RD);
1752         pfs_create_file(dir, "mem", &procfs_doprocmem,
1753             procfs_attr_rw, &procfs_candebug, NULL, PFS_RDWR | PFS_RAW);
1754         pfs_create_file(dir, "mounts", &linprocfs_domtab,
1755             NULL, NULL, NULL, PFS_RD);
1756         pfs_create_link(dir, "root", &linprocfs_doprocroot,
1757             NULL, NULL, NULL, 0);
1758         pfs_create_file(dir, "stat", &linprocfs_doprocstat,
1759             NULL, NULL, NULL, PFS_RD);
1760         pfs_create_file(dir, "statm", &linprocfs_doprocstatm,
1761             NULL, NULL, NULL, PFS_RD);
1762         pfs_create_file(dir, "status", &linprocfs_doprocstatus,
1763             NULL, NULL, NULL, PFS_RD);
1764         pfs_create_link(dir, "fd", &linprocfs_dofdescfs,
1765             NULL, NULL, NULL, 0);
1766         pfs_create_file(dir, "auxv", &linprocfs_doauxv,
1767             NULL, &procfs_candebug, NULL, PFS_RD|PFS_RAWRD);
1768         pfs_create_file(dir, "limits", &linprocfs_doproclimits,
1769             NULL, NULL, NULL, PFS_RD);
1770
1771         /* /proc/scsi/... */
1772         dir = pfs_create_dir(root, "scsi", NULL, NULL, NULL, 0);
1773         pfs_create_file(dir, "device_info", &linprocfs_doscsidevinfo,
1774             NULL, NULL, NULL, PFS_RD);
1775         pfs_create_file(dir, "scsi", &linprocfs_doscsiscsi,
1776             NULL, NULL, NULL, PFS_RD);
1777
1778         /* /proc/sys/... */
1779         sys = pfs_create_dir(root, "sys", NULL, NULL, NULL, 0);
1780         /* /proc/sys/kernel/... */
1781         dir = pfs_create_dir(sys, "kernel", NULL, NULL, NULL, 0);
1782         pfs_create_file(dir, "osrelease", &linprocfs_doosrelease,
1783             NULL, NULL, NULL, PFS_RD);
1784         pfs_create_file(dir, "ostype", &linprocfs_doostype,
1785             NULL, NULL, NULL, PFS_RD);
1786         pfs_create_file(dir, "version", &linprocfs_doosbuild,
1787             NULL, NULL, NULL, PFS_RD);
1788         pfs_create_file(dir, "msgmni", &linprocfs_domsgmni,
1789             NULL, NULL, NULL, PFS_RD);
1790         pfs_create_file(dir, "pid_max", &linprocfs_dopid_max,
1791             NULL, NULL, NULL, PFS_RD);
1792         pfs_create_file(dir, "sem", &linprocfs_dosem,
1793             NULL, NULL, NULL, PFS_RD);
1794
1795         /* /proc/sys/kernel/random/... */
1796         dir = pfs_create_dir(dir, "random", NULL, NULL, NULL, 0);
1797         pfs_create_file(dir, "uuid", &linprocfs_douuid,
1798             NULL, NULL, NULL, PFS_RD);
1799
1800         /* /proc/sys/vm/.... */
1801         dir = pfs_create_dir(sys, "vm", NULL, NULL, NULL, 0);
1802         pfs_create_file(dir, "min_free_kbytes", &linprocfs_dominfree,
1803             NULL, NULL, NULL, PFS_RD);
1804
1805         return (0);
1806 }
1807
1808 /*
1809  * Destructor
1810  */
1811 static int
1812 linprocfs_uninit(PFS_INIT_ARGS)
1813 {
1814
1815         /* nothing to do, pseudofs will GC */
1816         return (0);
1817 }
1818
1819 PSEUDOFS(linprocfs, 1, VFCF_JAIL);
1820 #if defined(__aarch64__) || defined(__amd64__)
1821 MODULE_DEPEND(linprocfs, linux_common, 1, 1, 1);
1822 #else
1823 MODULE_DEPEND(linprocfs, linux, 1, 1, 1);
1824 #endif
1825 MODULE_DEPEND(linprocfs, procfs, 1, 1, 1);
1826 MODULE_DEPEND(linprocfs, sysvmsg, 1, 1, 1);
1827 MODULE_DEPEND(linprocfs, sysvsem, 1, 1, 1);