kernfs_vnops.c revision 1.110 1 1.110 xtraeme /* $NetBSD: kernfs_vnops.c,v 1.110 2005/08/30 20:08:01 xtraeme Exp $ */
2 1.27 cgd
3 1.1 cgd /*
4 1.23 mycroft * Copyright (c) 1992, 1993
5 1.23 mycroft * The Regents of the University of California. All rights reserved.
6 1.1 cgd *
7 1.17 cgd * This code is derived from software donated to Berkeley by
8 1.1 cgd * Jan-Simon Pendry.
9 1.1 cgd *
10 1.2 cgd * Redistribution and use in source and binary forms, with or without
11 1.2 cgd * modification, are permitted provided that the following conditions
12 1.2 cgd * are met:
13 1.2 cgd * 1. Redistributions of source code must retain the above copyright
14 1.2 cgd * notice, this list of conditions and the following disclaimer.
15 1.2 cgd * 2. Redistributions in binary form must reproduce the above copyright
16 1.2 cgd * notice, this list of conditions and the following disclaimer in the
17 1.2 cgd * documentation and/or other materials provided with the distribution.
18 1.89 agc * 3. Neither the name of the University nor the names of its contributors
19 1.2 cgd * may be used to endorse or promote products derived from this software
20 1.2 cgd * without specific prior written permission.
21 1.1 cgd *
22 1.2 cgd * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
23 1.2 cgd * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
24 1.2 cgd * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
25 1.2 cgd * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
26 1.2 cgd * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
27 1.2 cgd * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
28 1.2 cgd * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
29 1.2 cgd * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
30 1.2 cgd * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
31 1.2 cgd * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
32 1.2 cgd * SUCH DAMAGE.
33 1.1 cgd *
34 1.57 fvdl * @(#)kernfs_vnops.c 8.15 (Berkeley) 5/21/95
35 1.1 cgd */
36 1.1 cgd
37 1.1 cgd /*
38 1.23 mycroft * Kernel parameter filesystem (/kern)
39 1.1 cgd */
40 1.77 lukem
41 1.77 lukem #include <sys/cdefs.h>
42 1.110 xtraeme __KERNEL_RCSID(0, "$NetBSD: kernfs_vnops.c,v 1.110 2005/08/30 20:08:01 xtraeme Exp $");
43 1.90 itojun
44 1.90 itojun #ifdef _KERNEL_OPT
45 1.90 itojun #include "opt_ipsec.h"
46 1.90 itojun #endif
47 1.55 mrg
48 1.14 mycroft #include <sys/param.h>
49 1.14 mycroft #include <sys/systm.h>
50 1.14 mycroft #include <sys/kernel.h>
51 1.23 mycroft #include <sys/vmmeter.h>
52 1.14 mycroft #include <sys/time.h>
53 1.14 mycroft #include <sys/proc.h>
54 1.23 mycroft #include <sys/vnode.h>
55 1.23 mycroft #include <sys/malloc.h>
56 1.14 mycroft #include <sys/file.h>
57 1.14 mycroft #include <sys/stat.h>
58 1.14 mycroft #include <sys/mount.h>
59 1.14 mycroft #include <sys/namei.h>
60 1.14 mycroft #include <sys/buf.h>
61 1.23 mycroft #include <sys/dirent.h>
62 1.28 mycroft #include <sys/msgbuf.h>
63 1.44 mycroft
64 1.44 mycroft #include <miscfs/genfs/genfs.h>
65 1.17 cgd #include <miscfs/kernfs/kernfs.h>
66 1.63 mrg
67 1.90 itojun #ifdef IPSEC
68 1.90 itojun #include <sys/mbuf.h>
69 1.90 itojun #include <net/route.h>
70 1.90 itojun #include <netinet/in.h>
71 1.90 itojun #include <netinet6/ipsec.h>
72 1.90 itojun #include <netkey/key.h>
73 1.90 itojun #endif
74 1.90 itojun
75 1.54 mrg #include <uvm/uvm_extern.h>
76 1.54 mrg
77 1.17 cgd #define KSTRING 256 /* Largest I/O available via this filesystem */
78 1.17 cgd #define UIO_MX 32
79 1.1 cgd
80 1.23 mycroft #define READ_MODE (S_IRUSR|S_IRGRP|S_IROTH)
81 1.23 mycroft #define WRITE_MODE (S_IWUSR|S_IRUSR|S_IRGRP|S_IROTH)
82 1.101 cl #define UREAD_MODE (S_IRUSR)
83 1.102 cl #define DIR_MODE (S_IRUSR|S_IXUSR|S_IRGRP|S_IXGRP|S_IROTH|S_IXOTH)
84 1.102 cl #define UDIR_MODE (S_IRUSR|S_IXUSR)
85 1.23 mycroft
86 1.90 itojun #define N(s) sizeof(s)-1, s
87 1.75 jdolecek const struct kern_target kern_targets[] = {
88 1.1 cgd /* NOTE: The name must be less than UIO_MX-16 chars in length */
89 1.23 mycroft /* name data tag type ro/rw */
90 1.98 darcy { DT_DIR, N("."), 0, KFSkern, VDIR, DIR_MODE },
91 1.98 darcy { DT_DIR, N(".."), 0, KFSroot, VDIR, DIR_MODE },
92 1.98 darcy { DT_REG, N("boottime"), &boottime.tv_sec, KFSint, VREG, READ_MODE },
93 1.109 christos /* XXXUNCONST */
94 1.109 christos { DT_REG, N("copyright"), __UNCONST(copyright),
95 1.98 darcy KFSstring, VREG, READ_MODE },
96 1.98 darcy { DT_REG, N("hostname"), 0, KFShostname, VREG, WRITE_MODE },
97 1.98 darcy { DT_REG, N("hz"), &hz, KFSint, VREG, READ_MODE },
98 1.90 itojun #ifdef IPSEC
99 1.98 darcy { DT_DIR, N("ipsecsa"), 0, KFSipsecsadir, VDIR, UDIR_MODE },
100 1.98 darcy { DT_DIR, N("ipsecsp"), 0, KFSipsecspdir, VDIR, UDIR_MODE },
101 1.90 itojun #endif
102 1.98 darcy { DT_REG, N("loadavg"), 0, KFSavenrun, VREG, READ_MODE },
103 1.98 darcy { DT_REG, N("msgbuf"), 0, KFSmsgbuf, VREG, READ_MODE },
104 1.98 darcy { DT_REG, N("pagesize"), &uvmexp.pagesize, KFSint, VREG, READ_MODE },
105 1.98 darcy { DT_REG, N("physmem"), &physmem, KFSint, VREG, READ_MODE },
106 1.17 cgd #if 0
107 1.98 darcy { DT_DIR, N("root"), 0, KFSnull, VDIR, DIR_MODE },
108 1.17 cgd #endif
109 1.98 darcy { DT_BLK, N("rootdev"), &rootdev, KFSdevice, VBLK, READ_MODE },
110 1.98 darcy { DT_CHR, N("rrootdev"), &rrootdev, KFSdevice, VCHR, READ_MODE },
111 1.98 darcy { DT_REG, N("time"), 0, KFStime, VREG, READ_MODE },
112 1.109 christos /* XXXUNCONST */
113 1.109 christos { DT_REG, N("version"), __UNCONST(version),
114 1.98 darcy KFSstring, VREG, READ_MODE },
115 1.90 itojun };
116 1.102 cl const struct kern_target subdir_targets[] = {
117 1.102 cl /* NOTE: The name must be less than UIO_MX-16 chars in length */
118 1.102 cl /* name data tag type ro/rw */
119 1.102 cl { DT_DIR, N("."), 0, KFSsubdir, VDIR, DIR_MODE },
120 1.102 cl { DT_DIR, N(".."), 0, KFSkern, VDIR, DIR_MODE },
121 1.102 cl };
122 1.90 itojun #ifdef IPSEC
123 1.90 itojun const struct kern_target ipsecsa_targets[] = {
124 1.90 itojun /* NOTE: The name must be less than UIO_MX-16 chars in length */
125 1.90 itojun /* name data tag type ro/rw */
126 1.98 darcy { DT_DIR, N("."), 0, KFSipsecsadir, VDIR, DIR_MODE },
127 1.98 darcy { DT_DIR, N(".."), 0, KFSkern, VDIR, DIR_MODE },
128 1.90 itojun };
129 1.90 itojun const struct kern_target ipsecsp_targets[] = {
130 1.90 itojun /* NOTE: The name must be less than UIO_MX-16 chars in length */
131 1.90 itojun /* name data tag type ro/rw */
132 1.98 darcy { DT_DIR, N("."), 0, KFSipsecspdir, VDIR, DIR_MODE },
133 1.98 darcy { DT_DIR, N(".."), 0, KFSkern, VDIR, DIR_MODE },
134 1.90 itojun };
135 1.101 cl const struct kern_target ipsecsa_kt =
136 1.101 cl { DT_DIR, N(""), 0, KFSipsecsa, VREG, UREAD_MODE };
137 1.101 cl const struct kern_target ipsecsp_kt =
138 1.101 cl { DT_DIR, N(""), 0, KFSipsecsp, VREG, UREAD_MODE };
139 1.90 itojun #endif
140 1.23 mycroft #undef N
141 1.102 cl SIMPLEQ_HEAD(,dyn_kern_target) dyn_kern_targets =
142 1.102 cl SIMPLEQ_HEAD_INITIALIZER(dyn_kern_targets);
143 1.90 itojun int nkern_targets = sizeof(kern_targets) / sizeof(kern_targets[0]);
144 1.102 cl const int static_nkern_targets = sizeof(kern_targets) / sizeof(kern_targets[0]);
145 1.90 itojun #ifdef IPSEC
146 1.90 itojun int nipsecsa_targets = sizeof(ipsecsa_targets) / sizeof(ipsecsa_targets[0]);
147 1.90 itojun int nipsecsp_targets = sizeof(ipsecsp_targets) / sizeof(ipsecsp_targets[0]);
148 1.102 cl int nkern_dirs = 4; /* 2 extra subdirs */
149 1.102 cl #else
150 1.102 cl int nkern_dirs = 2;
151 1.90 itojun #endif
152 1.90 itojun
153 1.102 cl int kernfs_try_fileop(kfstype, kfsfileop, void *, int);
154 1.102 cl int kernfs_try_xwrite(kfstype, const struct kernfs_node *, char *,
155 1.102 cl size_t, int);
156 1.102 cl
157 1.102 cl static int kernfs_default_xwrite(void *v);
158 1.102 cl static int kernfs_default_fileop_getattr(void *);
159 1.102 cl
160 1.102 cl /* must include all fileop's */
161 1.102 cl const struct kernfs_fileop kernfs_default_fileops[] = {
162 1.102 cl { .kf_fileop = KERNFS_XWRITE },
163 1.102 cl { .kf_fileop = KERNFS_FILEOP_OPEN },
164 1.102 cl { .kf_fileop = KERNFS_FILEOP_GETATTR,
165 1.104 cl .kf_genop = {kernfs_default_fileop_getattr} },
166 1.102 cl { .kf_fileop = KERNFS_FILEOP_IOCTL },
167 1.102 cl { .kf_fileop = KERNFS_FILEOP_CLOSE },
168 1.104 cl { .kf_fileop = KERNFS_FILEOP_WRITE, .kf_genop = {kernfs_default_xwrite} },
169 1.102 cl };
170 1.1 cgd
171 1.110 xtraeme int kernfs_lookup(void *);
172 1.85 jdolecek #define kernfs_create genfs_eopnotsupp
173 1.85 jdolecek #define kernfs_mknod genfs_eopnotsupp
174 1.110 xtraeme int kernfs_open(void *);
175 1.110 xtraeme int kernfs_close(void *);
176 1.110 xtraeme int kernfs_access(void *);
177 1.110 xtraeme int kernfs_getattr(void *);
178 1.110 xtraeme int kernfs_setattr(void *);
179 1.110 xtraeme int kernfs_read(void *);
180 1.110 xtraeme int kernfs_write(void *);
181 1.65 wrstuden #define kernfs_fcntl genfs_fcntl
182 1.110 xtraeme int kernfs_ioctl(void *);
183 1.45 mycroft #define kernfs_poll genfs_poll
184 1.57 fvdl #define kernfs_revoke genfs_revoke
185 1.44 mycroft #define kernfs_fsync genfs_nullop
186 1.44 mycroft #define kernfs_seek genfs_nullop
187 1.85 jdolecek #define kernfs_remove genfs_eopnotsupp
188 1.110 xtraeme int kernfs_link(void *);
189 1.85 jdolecek #define kernfs_rename genfs_eopnotsupp
190 1.85 jdolecek #define kernfs_mkdir genfs_eopnotsupp
191 1.85 jdolecek #define kernfs_rmdir genfs_eopnotsupp
192 1.110 xtraeme int kernfs_symlink(void *);
193 1.110 xtraeme int kernfs_readdir(void *);
194 1.44 mycroft #define kernfs_readlink genfs_eopnotsupp
195 1.44 mycroft #define kernfs_abortop genfs_abortop
196 1.110 xtraeme int kernfs_inactive(void *);
197 1.110 xtraeme int kernfs_reclaim(void *);
198 1.64 wrstuden #define kernfs_lock genfs_lock
199 1.64 wrstuden #define kernfs_unlock genfs_unlock
200 1.44 mycroft #define kernfs_bmap genfs_badop
201 1.44 mycroft #define kernfs_strategy genfs_badop
202 1.110 xtraeme int kernfs_print(void *);
203 1.64 wrstuden #define kernfs_islocked genfs_islocked
204 1.110 xtraeme int kernfs_pathconf(void *);
205 1.62 kleink #define kernfs_advlock genfs_einval
206 1.44 mycroft #define kernfs_blkatoff genfs_eopnotsupp
207 1.44 mycroft #define kernfs_valloc genfs_eopnotsupp
208 1.44 mycroft #define kernfs_vfree genfs_nullop
209 1.44 mycroft #define kernfs_truncate genfs_eopnotsupp
210 1.44 mycroft #define kernfs_update genfs_nullop
211 1.44 mycroft #define kernfs_bwrite genfs_eopnotsupp
212 1.79 chs #define kernfs_putpages genfs_putpages
213 1.41 christos
214 1.110 xtraeme static int kernfs_xread(struct kernfs_node *, int, char **,
215 1.110 xtraeme size_t, size_t *);
216 1.110 xtraeme static int kernfs_xwrite(const struct kernfs_node *, char *, size_t);
217 1.41 christos
218 1.110 xtraeme int (**kernfs_vnodeop_p)(void *);
219 1.71 jdolecek const struct vnodeopv_entry_desc kernfs_vnodeop_entries[] = {
220 1.41 christos { &vop_default_desc, vn_default_error },
221 1.44 mycroft { &vop_lookup_desc, kernfs_lookup }, /* lookup */
222 1.44 mycroft { &vop_create_desc, kernfs_create }, /* create */
223 1.44 mycroft { &vop_mknod_desc, kernfs_mknod }, /* mknod */
224 1.44 mycroft { &vop_open_desc, kernfs_open }, /* open */
225 1.44 mycroft { &vop_close_desc, kernfs_close }, /* close */
226 1.44 mycroft { &vop_access_desc, kernfs_access }, /* access */
227 1.44 mycroft { &vop_getattr_desc, kernfs_getattr }, /* getattr */
228 1.44 mycroft { &vop_setattr_desc, kernfs_setattr }, /* setattr */
229 1.44 mycroft { &vop_read_desc, kernfs_read }, /* read */
230 1.44 mycroft { &vop_write_desc, kernfs_write }, /* write */
231 1.65 wrstuden { &vop_fcntl_desc, kernfs_fcntl }, /* fcntl */
232 1.44 mycroft { &vop_ioctl_desc, kernfs_ioctl }, /* ioctl */
233 1.45 mycroft { &vop_poll_desc, kernfs_poll }, /* poll */
234 1.57 fvdl { &vop_revoke_desc, kernfs_revoke }, /* revoke */
235 1.44 mycroft { &vop_fsync_desc, kernfs_fsync }, /* fsync */
236 1.44 mycroft { &vop_seek_desc, kernfs_seek }, /* seek */
237 1.44 mycroft { &vop_remove_desc, kernfs_remove }, /* remove */
238 1.44 mycroft { &vop_link_desc, kernfs_link }, /* link */
239 1.44 mycroft { &vop_rename_desc, kernfs_rename }, /* rename */
240 1.44 mycroft { &vop_mkdir_desc, kernfs_mkdir }, /* mkdir */
241 1.44 mycroft { &vop_rmdir_desc, kernfs_rmdir }, /* rmdir */
242 1.44 mycroft { &vop_symlink_desc, kernfs_symlink }, /* symlink */
243 1.44 mycroft { &vop_readdir_desc, kernfs_readdir }, /* readdir */
244 1.44 mycroft { &vop_readlink_desc, kernfs_readlink }, /* readlink */
245 1.44 mycroft { &vop_abortop_desc, kernfs_abortop }, /* abortop */
246 1.44 mycroft { &vop_inactive_desc, kernfs_inactive }, /* inactive */
247 1.44 mycroft { &vop_reclaim_desc, kernfs_reclaim }, /* reclaim */
248 1.44 mycroft { &vop_lock_desc, kernfs_lock }, /* lock */
249 1.44 mycroft { &vop_unlock_desc, kernfs_unlock }, /* unlock */
250 1.44 mycroft { &vop_bmap_desc, kernfs_bmap }, /* bmap */
251 1.44 mycroft { &vop_strategy_desc, kernfs_strategy }, /* strategy */
252 1.44 mycroft { &vop_print_desc, kernfs_print }, /* print */
253 1.44 mycroft { &vop_islocked_desc, kernfs_islocked }, /* islocked */
254 1.44 mycroft { &vop_pathconf_desc, kernfs_pathconf }, /* pathconf */
255 1.44 mycroft { &vop_advlock_desc, kernfs_advlock }, /* advlock */
256 1.44 mycroft { &vop_blkatoff_desc, kernfs_blkatoff }, /* blkatoff */
257 1.44 mycroft { &vop_valloc_desc, kernfs_valloc }, /* valloc */
258 1.44 mycroft { &vop_vfree_desc, kernfs_vfree }, /* vfree */
259 1.44 mycroft { &vop_truncate_desc, kernfs_truncate }, /* truncate */
260 1.44 mycroft { &vop_update_desc, kernfs_update }, /* update */
261 1.44 mycroft { &vop_bwrite_desc, kernfs_bwrite }, /* bwrite */
262 1.79 chs { &vop_putpages_desc, kernfs_putpages }, /* putpages */
263 1.76 chs { NULL, NULL }
264 1.41 christos };
265 1.71 jdolecek const struct vnodeopv_desc kernfs_vnodeop_opv_desc =
266 1.41 christos { &kernfs_vnodeop_p, kernfs_vnodeop_entries };
267 1.41 christos
268 1.102 cl static __inline int
269 1.102 cl kernfs_fileop_compare(struct kernfs_fileop *a, struct kernfs_fileop *b)
270 1.102 cl {
271 1.102 cl if (a->kf_type < b->kf_type)
272 1.102 cl return -1;
273 1.102 cl if (a->kf_type > b->kf_type)
274 1.102 cl return 1;
275 1.102 cl if (a->kf_fileop < b->kf_fileop)
276 1.102 cl return -1;
277 1.102 cl if (a->kf_fileop > b->kf_fileop)
278 1.102 cl return 1;
279 1.102 cl return (0);
280 1.102 cl }
281 1.102 cl
282 1.102 cl SPLAY_HEAD(kfsfileoptree, kernfs_fileop) kfsfileoptree =
283 1.102 cl SPLAY_INITIALIZER(kfsfileoptree);
284 1.102 cl SPLAY_PROTOTYPE(kfsfileoptree, kernfs_fileop, kf_node, kernfs_fileop_compare);
285 1.102 cl SPLAY_GENERATE(kfsfileoptree, kernfs_fileop, kf_node, kernfs_fileop_compare);
286 1.102 cl
287 1.102 cl kfstype
288 1.102 cl kernfs_alloctype(int nkf, const struct kernfs_fileop *kf)
289 1.102 cl {
290 1.102 cl static u_char nextfreetype = KFSlasttype;
291 1.102 cl struct kernfs_fileop *dkf, *fkf, skf;
292 1.102 cl int i;
293 1.102 cl
294 1.102 cl /* XXX need to keep track of dkf's memory if we support
295 1.102 cl deallocating types */
296 1.102 cl dkf = malloc(sizeof(kernfs_default_fileops), M_TEMP, M_WAITOK);
297 1.102 cl memcpy(dkf, kernfs_default_fileops, sizeof(kernfs_default_fileops));
298 1.102 cl
299 1.102 cl for (i = 0; i < sizeof(kernfs_default_fileops) /
300 1.102 cl sizeof(kernfs_default_fileops[0]); i++) {
301 1.102 cl dkf[i].kf_type = nextfreetype;
302 1.102 cl SPLAY_INSERT(kfsfileoptree, &kfsfileoptree, &dkf[i]);
303 1.102 cl }
304 1.102 cl
305 1.102 cl for (i = 0; i < nkf; i++) {
306 1.102 cl skf.kf_type = nextfreetype;
307 1.102 cl skf.kf_fileop = kf[i].kf_fileop;
308 1.102 cl if ((fkf = SPLAY_FIND(kfsfileoptree, &kfsfileoptree, &skf)))
309 1.102 cl fkf->kf_genop = kf[i].kf_genop;
310 1.102 cl }
311 1.102 cl
312 1.102 cl return nextfreetype++;
313 1.102 cl }
314 1.102 cl
315 1.102 cl int
316 1.102 cl kernfs_try_fileop(kfstype type, kfsfileop fileop, void *v, int error)
317 1.102 cl {
318 1.102 cl struct kernfs_fileop *kf, skf;
319 1.102 cl
320 1.102 cl skf.kf_type = type;
321 1.102 cl skf.kf_fileop = fileop;
322 1.102 cl if ((kf = SPLAY_FIND(kfsfileoptree, &kfsfileoptree, &skf)))
323 1.102 cl if (kf->kf_vop)
324 1.102 cl return kf->kf_vop(v);
325 1.102 cl return error;
326 1.102 cl }
327 1.102 cl
328 1.102 cl int
329 1.109 christos kernfs_try_xwrite(kfstype type, const struct kernfs_node *kfs, char *bf,
330 1.102 cl size_t len, int error)
331 1.102 cl {
332 1.102 cl struct kernfs_fileop *kf, skf;
333 1.102 cl
334 1.102 cl skf.kf_type = type;
335 1.102 cl skf.kf_fileop = KERNFS_XWRITE;
336 1.102 cl if ((kf = SPLAY_FIND(kfsfileoptree, &kfsfileoptree, &skf)))
337 1.102 cl if (kf->kf_xwrite)
338 1.109 christos return kf->kf_xwrite(kfs, bf, len);
339 1.102 cl return error;
340 1.102 cl }
341 1.102 cl
342 1.102 cl int
343 1.102 cl kernfs_addentry(kernfs_parentdir_t *pkt, kernfs_entry_t *dkt)
344 1.102 cl {
345 1.102 cl struct kernfs_subdir *ks, *parent;
346 1.102 cl
347 1.102 cl if (pkt == NULL) {
348 1.102 cl SIMPLEQ_INSERT_TAIL(&dyn_kern_targets, dkt, dkt_queue);
349 1.102 cl nkern_targets++;
350 1.102 cl if (dkt->dkt_kt.kt_vtype == VDIR)
351 1.102 cl nkern_dirs++;
352 1.102 cl } else {
353 1.102 cl parent = (struct kernfs_subdir *)pkt->kt_data;
354 1.102 cl SIMPLEQ_INSERT_TAIL(&parent->ks_entries, dkt, dkt_queue);
355 1.102 cl parent->ks_nentries++;
356 1.102 cl if (dkt->dkt_kt.kt_vtype == VDIR)
357 1.102 cl parent->ks_dirs++;
358 1.102 cl }
359 1.102 cl if (dkt->dkt_kt.kt_vtype == VDIR && dkt->dkt_kt.kt_data == NULL) {
360 1.102 cl ks = malloc(sizeof(struct kernfs_subdir),
361 1.102 cl M_TEMP, M_WAITOK);
362 1.102 cl SIMPLEQ_INIT(&ks->ks_entries);
363 1.102 cl ks->ks_nentries = 2; /* . and .. */
364 1.102 cl ks->ks_dirs = 2;
365 1.102 cl ks->ks_parent = pkt ? pkt : &kern_targets[0];
366 1.102 cl dkt->dkt_kt.kt_data = ks;
367 1.102 cl }
368 1.102 cl return 0;
369 1.102 cl }
370 1.102 cl
371 1.82 jdolecek static int
372 1.90 itojun kernfs_xread(kfs, off, bufp, len, wrlen)
373 1.90 itojun struct kernfs_node *kfs;
374 1.28 mycroft int off;
375 1.28 mycroft char **bufp;
376 1.82 jdolecek size_t len;
377 1.82 jdolecek size_t *wrlen;
378 1.1 cgd {
379 1.90 itojun const struct kern_target *kt;
380 1.90 itojun #ifdef IPSEC
381 1.90 itojun struct mbuf *m;
382 1.90 itojun #endif
383 1.90 itojun
384 1.90 itojun kt = kfs->kfs_kt;
385 1.1 cgd
386 1.90 itojun switch (kfs->kfs_type) {
387 1.98 darcy case KFStime: {
388 1.1 cgd struct timeval tv;
389 1.28 mycroft
390 1.1 cgd microtime(&tv);
391 1.90 itojun snprintf(*bufp, len, "%ld %ld\n", tv.tv_sec, tv.tv_usec);
392 1.1 cgd break;
393 1.1 cgd }
394 1.1 cgd
395 1.98 darcy case KFSint: {
396 1.1 cgd int *ip = kt->kt_data;
397 1.28 mycroft
398 1.90 itojun snprintf(*bufp, len, "%d\n", *ip);
399 1.1 cgd break;
400 1.1 cgd }
401 1.1 cgd
402 1.98 darcy case KFSstring: {
403 1.1 cgd char *cp = kt->kt_data;
404 1.1 cgd
405 1.28 mycroft *bufp = cp;
406 1.28 mycroft break;
407 1.28 mycroft }
408 1.1 cgd
409 1.98 darcy case KFSmsgbuf: {
410 1.28 mycroft long n;
411 1.28 mycroft
412 1.52 leo /*
413 1.52 leo * deal with cases where the message buffer has
414 1.52 leo * become corrupted.
415 1.52 leo */
416 1.52 leo if (!msgbufenabled || msgbufp->msg_magic != MSG_MAGIC) {
417 1.52 leo msgbufenabled = 0;
418 1.52 leo return (ENXIO);
419 1.52 leo }
420 1.52 leo
421 1.52 leo /*
422 1.52 leo * Note that reads of /kern/msgbuf won't necessarily yield
423 1.52 leo * consistent results, if the message buffer is modified
424 1.52 leo * while the read is in progress. The worst that can happen
425 1.52 leo * is that incorrect data will be read. There's no way
426 1.52 leo * that this can crash the system unless the values in the
427 1.52 leo * message buffer header are corrupted, but that'll cause
428 1.52 leo * the system to die anyway.
429 1.52 leo */
430 1.82 jdolecek if (off >= msgbufp->msg_bufs) {
431 1.82 jdolecek *wrlen = 0;
432 1.28 mycroft return (0);
433 1.82 jdolecek }
434 1.28 mycroft n = msgbufp->msg_bufx + off;
435 1.52 leo if (n >= msgbufp->msg_bufs)
436 1.52 leo n -= msgbufp->msg_bufs;
437 1.52 leo len = min(msgbufp->msg_bufs - n, msgbufp->msg_bufs - off);
438 1.28 mycroft *bufp = msgbufp->msg_bufc + n;
439 1.82 jdolecek *wrlen = len;
440 1.82 jdolecek return (0);
441 1.1 cgd }
442 1.1 cgd
443 1.98 darcy case KFShostname: {
444 1.1 cgd char *cp = hostname;
445 1.1 cgd int xlen = hostnamelen;
446 1.1 cgd
447 1.90 itojun if (xlen >= (len - 2))
448 1.1 cgd return (EINVAL);
449 1.1 cgd
450 1.60 perry memcpy(*bufp, cp, xlen);
451 1.28 mycroft (*bufp)[xlen] = '\n';
452 1.28 mycroft (*bufp)[xlen+1] = '\0';
453 1.90 itojun len = strlen(*bufp);
454 1.1 cgd break;
455 1.1 cgd }
456 1.1 cgd
457 1.98 darcy case KFSavenrun:
458 1.31 mycroft averunnable.fscale = FSCALE;
459 1.90 itojun snprintf(*bufp, len, "%d %d %d %ld\n",
460 1.23 mycroft averunnable.ldavg[0], averunnable.ldavg[1],
461 1.23 mycroft averunnable.ldavg[2], averunnable.fscale);
462 1.1 cgd break;
463 1.1 cgd
464 1.90 itojun #ifdef IPSEC
465 1.98 darcy case KFSipsecsa:
466 1.90 itojun /*
467 1.90 itojun * Note that SA configuration could be changed during the
468 1.90 itojun * read operation, resulting in garbled output.
469 1.90 itojun */
470 1.90 itojun m = key_setdumpsa_spi(htonl(kfs->kfs_value));
471 1.90 itojun if (!m)
472 1.90 itojun return (ENOBUFS);
473 1.90 itojun if (off >= m->m_pkthdr.len) {
474 1.90 itojun *wrlen = 0;
475 1.90 itojun m_freem(m);
476 1.90 itojun return (0);
477 1.90 itojun }
478 1.90 itojun if (len > m->m_pkthdr.len - off)
479 1.90 itojun len = m->m_pkthdr.len - off;
480 1.90 itojun m_copydata(m, off, len, *bufp);
481 1.90 itojun *wrlen = len;
482 1.90 itojun m_freem(m);
483 1.90 itojun return (0);
484 1.90 itojun
485 1.98 darcy case KFSipsecsp:
486 1.90 itojun /*
487 1.90 itojun * Note that SP configuration could be changed during the
488 1.90 itojun * read operation, resulting in garbled output.
489 1.90 itojun */
490 1.90 itojun if (!kfs->kfs_v) {
491 1.90 itojun struct secpolicy *sp;
492 1.90 itojun
493 1.90 itojun sp = key_getspbyid(kfs->kfs_value);
494 1.90 itojun if (sp)
495 1.90 itojun kfs->kfs_v = sp;
496 1.90 itojun else
497 1.90 itojun return (ENOENT);
498 1.90 itojun }
499 1.90 itojun m = key_setdumpsp((struct secpolicy *)kfs->kfs_v,
500 1.90 itojun SADB_X_SPDGET, 0, 0);
501 1.90 itojun if (!m)
502 1.90 itojun return (ENOBUFS);
503 1.90 itojun if (off >= m->m_pkthdr.len) {
504 1.90 itojun *wrlen = 0;
505 1.90 itojun m_freem(m);
506 1.90 itojun return (0);
507 1.90 itojun }
508 1.90 itojun if (len > m->m_pkthdr.len - off)
509 1.90 itojun len = m->m_pkthdr.len - off;
510 1.90 itojun m_copydata(m, off, len, *bufp);
511 1.90 itojun *wrlen = len;
512 1.90 itojun m_freem(m);
513 1.90 itojun return (0);
514 1.90 itojun #endif
515 1.90 itojun
516 1.1 cgd default:
517 1.82 jdolecek *wrlen = 0;
518 1.28 mycroft return (0);
519 1.1 cgd }
520 1.1 cgd
521 1.28 mycroft len = strlen(*bufp);
522 1.28 mycroft if (len <= off)
523 1.82 jdolecek *wrlen = 0;
524 1.82 jdolecek else {
525 1.82 jdolecek *bufp += off;
526 1.82 jdolecek *wrlen = len - off;
527 1.82 jdolecek }
528 1.82 jdolecek return (0);
529 1.1 cgd }
530 1.1 cgd
531 1.82 jdolecek static int
532 1.109 christos kernfs_xwrite(kfs, bf, len)
533 1.90 itojun const struct kernfs_node *kfs;
534 1.109 christos char *bf;
535 1.82 jdolecek size_t len;
536 1.1 cgd {
537 1.23 mycroft
538 1.90 itojun switch (kfs->kfs_type) {
539 1.98 darcy case KFShostname:
540 1.109 christos if (bf[len-1] == '\n')
541 1.1 cgd --len;
542 1.109 christos memcpy(hostname, bf, len);
543 1.17 cgd hostname[len] = '\0';
544 1.82 jdolecek hostnamelen = (size_t) len;
545 1.1 cgd return (0);
546 1.1 cgd
547 1.1 cgd default:
548 1.109 christos return kernfs_try_xwrite(kfs->kfs_type, kfs, bf, len, EIO);
549 1.1 cgd }
550 1.1 cgd }
551 1.1 cgd
552 1.17 cgd
553 1.17 cgd /*
554 1.1 cgd * vp is the current namei directory
555 1.1 cgd * ndp is the name to locate in that directory...
556 1.1 cgd */
557 1.41 christos int
558 1.41 christos kernfs_lookup(v)
559 1.41 christos void *v;
560 1.41 christos {
561 1.23 mycroft struct vop_lookup_args /* {
562 1.23 mycroft struct vnode * a_dvp;
563 1.23 mycroft struct vnode ** a_vpp;
564 1.23 mycroft struct componentname * a_cnp;
565 1.41 christos } */ *ap = v;
566 1.23 mycroft struct componentname *cnp = ap->a_cnp;
567 1.23 mycroft struct vnode **vpp = ap->a_vpp;
568 1.23 mycroft struct vnode *dvp = ap->a_dvp;
569 1.48 cgd const char *pname = cnp->cn_nameptr;
570 1.90 itojun const struct kernfs_node *kfs;
571 1.75 jdolecek const struct kern_target *kt;
572 1.102 cl const struct dyn_kern_target *dkt;
573 1.102 cl const struct kernfs_subdir *ks;
574 1.64 wrstuden int error, i, wantpunlock;
575 1.90 itojun #ifdef IPSEC
576 1.90 itojun char *ep;
577 1.90 itojun u_int32_t id;
578 1.1 cgd #endif
579 1.23 mycroft
580 1.35 mycroft *vpp = NULLVP;
581 1.64 wrstuden cnp->cn_flags &= ~PDIRUNLOCK;
582 1.35 mycroft
583 1.35 mycroft if (cnp->cn_nameiop == DELETE || cnp->cn_nameiop == RENAME)
584 1.35 mycroft return (EROFS);
585 1.35 mycroft
586 1.23 mycroft if (cnp->cn_namelen == 1 && *pname == '.') {
587 1.23 mycroft *vpp = dvp;
588 1.1 cgd VREF(dvp);
589 1.1 cgd return (0);
590 1.1 cgd }
591 1.13 cgd
592 1.90 itojun wantpunlock = (~cnp->cn_flags & (LOCKPARENT | ISLASTCN));
593 1.90 itojun kfs = VTOKERN(dvp);
594 1.90 itojun switch (kfs->kfs_type) {
595 1.98 darcy case KFSkern:
596 1.90 itojun /*
597 1.90 itojun * Shouldn't get here with .. in the root node.
598 1.90 itojun */
599 1.90 itojun if (cnp->cn_flags & ISDOTDOT)
600 1.90 itojun return (EIO);
601 1.64 wrstuden
602 1.102 cl for (i = 0; i < static_nkern_targets; i++) {
603 1.90 itojun kt = &kern_targets[i];
604 1.90 itojun if (cnp->cn_namelen == kt->kt_namlen &&
605 1.90 itojun memcmp(kt->kt_name, pname, cnp->cn_namelen) == 0)
606 1.90 itojun goto found;
607 1.90 itojun }
608 1.102 cl SIMPLEQ_FOREACH(dkt, &dyn_kern_targets, dkt_queue) {
609 1.102 cl if (cnp->cn_namelen == dkt->dkt_kt.kt_namlen &&
610 1.102 cl memcmp(dkt->dkt_kt.kt_name, pname, cnp->cn_namelen) == 0) {
611 1.102 cl kt = &dkt->dkt_kt;
612 1.102 cl goto found;
613 1.102 cl }
614 1.102 cl }
615 1.90 itojun break;
616 1.25 mycroft
617 1.90 itojun found:
618 1.90 itojun error = kernfs_allocvp(dvp->v_mount, vpp, kt->kt_tag, kt, 0);
619 1.90 itojun if ((error == 0) && wantpunlock) {
620 1.90 itojun VOP_UNLOCK(dvp, 0);
621 1.90 itojun cnp->cn_flags |= PDIRUNLOCK;
622 1.90 itojun }
623 1.90 itojun return (error);
624 1.64 wrstuden
625 1.102 cl case KFSsubdir:
626 1.102 cl ks = (struct kernfs_subdir *)kfs->kfs_kt->kt_data;
627 1.102 cl if (cnp->cn_flags & ISDOTDOT) {
628 1.102 cl kt = ks->ks_parent;
629 1.102 cl goto found;
630 1.102 cl }
631 1.102 cl
632 1.102 cl SIMPLEQ_FOREACH(dkt, &ks->ks_entries, dkt_queue) {
633 1.102 cl if (cnp->cn_namelen == dkt->dkt_kt.kt_namlen &&
634 1.102 cl memcmp(dkt->dkt_kt.kt_name, pname, cnp->cn_namelen) == 0) {
635 1.102 cl kt = &dkt->dkt_kt;
636 1.102 cl goto found;
637 1.102 cl }
638 1.102 cl }
639 1.102 cl break;
640 1.102 cl
641 1.90 itojun #ifdef IPSEC
642 1.98 darcy case KFSipsecsadir:
643 1.100 cl if (cnp->cn_flags & ISDOTDOT) {
644 1.100 cl kt = &kern_targets[0];
645 1.100 cl goto found;
646 1.100 cl }
647 1.100 cl
648 1.100 cl for (i = 2; i < nipsecsa_targets; i++) {
649 1.90 itojun kt = &ipsecsa_targets[i];
650 1.90 itojun if (cnp->cn_namelen == kt->kt_namlen &&
651 1.100 cl memcmp(kt->kt_name, pname, cnp->cn_namelen) == 0)
652 1.100 cl goto found;
653 1.90 itojun }
654 1.1 cgd
655 1.90 itojun ep = NULL;
656 1.90 itojun id = strtoul(pname, &ep, 10);
657 1.90 itojun if (!ep || *ep || ep == pname)
658 1.90 itojun break;
659 1.1 cgd
660 1.101 cl error = kernfs_allocvp(dvp->v_mount, vpp, KFSipsecsa, &ipsecsa_kt, id);
661 1.90 itojun if ((error == 0) && wantpunlock) {
662 1.90 itojun VOP_UNLOCK(dvp, 0);
663 1.90 itojun cnp->cn_flags |= PDIRUNLOCK;
664 1.90 itojun }
665 1.90 itojun return (error);
666 1.23 mycroft
667 1.98 darcy case KFSipsecspdir:
668 1.100 cl if (cnp->cn_flags & ISDOTDOT) {
669 1.100 cl kt = &kern_targets[0];
670 1.100 cl goto found;
671 1.100 cl }
672 1.100 cl
673 1.100 cl for (i = 2; i < nipsecsp_targets; i++) {
674 1.90 itojun kt = &ipsecsp_targets[i];
675 1.90 itojun if (cnp->cn_namelen == kt->kt_namlen &&
676 1.100 cl memcmp(kt->kt_name, pname, cnp->cn_namelen) == 0)
677 1.100 cl goto found;
678 1.57 fvdl }
679 1.90 itojun
680 1.90 itojun ep = NULL;
681 1.90 itojun id = strtoul(pname, &ep, 10);
682 1.90 itojun if (!ep || *ep || ep == pname)
683 1.90 itojun break;
684 1.90 itojun
685 1.101 cl error = kernfs_allocvp(dvp->v_mount, vpp, KFSipsecsp, &ipsecsp_kt, id);
686 1.90 itojun if ((error == 0) && wantpunlock) {
687 1.64 wrstuden VOP_UNLOCK(dvp, 0);
688 1.64 wrstuden cnp->cn_flags |= PDIRUNLOCK;
689 1.64 wrstuden }
690 1.90 itojun return (error);
691 1.90 itojun #endif
692 1.90 itojun
693 1.90 itojun default:
694 1.90 itojun return (ENOTDIR);
695 1.90 itojun }
696 1.90 itojun
697 1.90 itojun return (cnp->cn_nameiop == LOOKUP ? ENOENT : EROFS);
698 1.90 itojun }
699 1.90 itojun
700 1.90 itojun int
701 1.90 itojun kernfs_open(v)
702 1.90 itojun void *v;
703 1.90 itojun {
704 1.90 itojun struct vop_open_args /* {
705 1.90 itojun struct vnode *a_vp;
706 1.90 itojun int a_mode;
707 1.90 itojun struct ucred *a_cred;
708 1.90 itojun struct proc *a_p;
709 1.90 itojun } */ *ap = v;
710 1.90 itojun struct kernfs_node *kfs = VTOKERN(ap->a_vp);
711 1.90 itojun #ifdef IPSEC
712 1.90 itojun struct mbuf *m;
713 1.90 itojun struct secpolicy *sp;
714 1.90 itojun #endif
715 1.90 itojun
716 1.90 itojun switch (kfs->kfs_type) {
717 1.90 itojun #ifdef IPSEC
718 1.98 darcy case KFSipsecsa:
719 1.90 itojun m = key_setdumpsa_spi(htonl(kfs->kfs_value));
720 1.90 itojun if (m) {
721 1.90 itojun m_freem(m);
722 1.90 itojun return (0);
723 1.90 itojun } else
724 1.90 itojun return (ENOENT);
725 1.90 itojun
726 1.98 darcy case KFSipsecsp:
727 1.90 itojun sp = key_getspbyid(kfs->kfs_value);
728 1.90 itojun if (sp) {
729 1.90 itojun kfs->kfs_v = sp;
730 1.90 itojun return (0);
731 1.90 itojun } else
732 1.90 itojun return (ENOENT);
733 1.90 itojun #endif
734 1.90 itojun
735 1.90 itojun default:
736 1.102 cl return kernfs_try_fileop(kfs->kfs_type, KERNFS_FILEOP_OPEN,
737 1.102 cl v, 0);
738 1.23 mycroft }
739 1.90 itojun }
740 1.1 cgd
741 1.90 itojun int
742 1.90 itojun kernfs_close(v)
743 1.90 itojun void *v;
744 1.90 itojun {
745 1.90 itojun struct vop_close_args /* {
746 1.90 itojun struct vnode *a_vp;
747 1.90 itojun int a_fflag;
748 1.90 itojun struct ucred *a_cred;
749 1.90 itojun struct proc *a_p;
750 1.90 itojun } */ *ap = v;
751 1.90 itojun struct kernfs_node *kfs = VTOKERN(ap->a_vp);
752 1.90 itojun
753 1.90 itojun switch (kfs->kfs_type) {
754 1.90 itojun #ifdef IPSEC
755 1.98 darcy case KFSipsecsp:
756 1.90 itojun key_freesp((struct secpolicy *)kfs->kfs_v);
757 1.90 itojun break;
758 1.1 cgd #endif
759 1.90 itojun
760 1.90 itojun default:
761 1.102 cl return kernfs_try_fileop(kfs->kfs_type, KERNFS_FILEOP_CLOSE,
762 1.102 cl v, 0);
763 1.57 fvdl }
764 1.23 mycroft
765 1.1 cgd return (0);
766 1.1 cgd }
767 1.1 cgd
768 1.28 mycroft int
769 1.41 christos kernfs_access(v)
770 1.41 christos void *v;
771 1.41 christos {
772 1.23 mycroft struct vop_access_args /* {
773 1.23 mycroft struct vnode *a_vp;
774 1.34 mycroft int a_mode;
775 1.23 mycroft struct ucred *a_cred;
776 1.23 mycroft struct proc *a_p;
777 1.41 christos } */ *ap = v;
778 1.90 itojun struct vattr va;
779 1.90 itojun int error;
780 1.17 cgd
781 1.90 itojun if ((error = VOP_GETATTR(ap->a_vp, &va, ap->a_cred, ap->a_p)) != 0)
782 1.90 itojun return (error);
783 1.49 mycroft
784 1.90 itojun return (vaccess(va.va_type, va.va_mode, va.va_uid, va.va_gid,
785 1.90 itojun ap->a_mode, ap->a_cred));
786 1.23 mycroft }
787 1.23 mycroft
788 1.102 cl static int
789 1.102 cl kernfs_default_fileop_getattr(v)
790 1.102 cl void *v;
791 1.102 cl {
792 1.102 cl struct vop_getattr_args /* {
793 1.102 cl struct vnode *a_vp;
794 1.102 cl struct vattr *a_vap;
795 1.102 cl struct ucred *a_cred;
796 1.102 cl struct proc *a_p;
797 1.102 cl } */ *ap = v;
798 1.102 cl struct vattr *vap = ap->a_vap;
799 1.102 cl
800 1.102 cl vap->va_nlink = 1;
801 1.102 cl vap->va_bytes = vap->va_size = 0;
802 1.102 cl
803 1.102 cl return 0;
804 1.102 cl }
805 1.102 cl
806 1.41 christos int
807 1.41 christos kernfs_getattr(v)
808 1.41 christos void *v;
809 1.41 christos {
810 1.23 mycroft struct vop_getattr_args /* {
811 1.23 mycroft struct vnode *a_vp;
812 1.23 mycroft struct vattr *a_vap;
813 1.23 mycroft struct ucred *a_cred;
814 1.23 mycroft struct proc *a_p;
815 1.41 christos } */ *ap = v;
816 1.90 itojun struct kernfs_node *kfs = VTOKERN(ap->a_vp);
817 1.102 cl struct kernfs_subdir *ks;
818 1.23 mycroft struct vattr *vap = ap->a_vap;
819 1.1 cgd int error = 0;
820 1.109 christos char strbuf[KSTRING], *bf;
821 1.90 itojun size_t nread, total;
822 1.1 cgd
823 1.90 itojun VATTR_NULL(vap);
824 1.90 itojun vap->va_type = ap->a_vp->v_type;
825 1.17 cgd vap->va_uid = 0;
826 1.17 cgd vap->va_gid = 0;
827 1.90 itojun vap->va_mode = kfs->kfs_mode;
828 1.90 itojun vap->va_fileid = kfs->kfs_fileno;
829 1.90 itojun vap->va_flags = 0;
830 1.23 mycroft vap->va_size = 0;
831 1.1 cgd vap->va_blocksize = DEV_BSIZE;
832 1.81 lukem /*
833 1.92 dan * Make all times be current TOD, except for the "boottime" node.
834 1.93 simonb * Avoid microtime(9), it's slow.
835 1.83 simonb * We don't guard the read from time(9) with splclock(9) since we
836 1.107 perry * don't actually need to be THAT sure the access is atomic.
837 1.81 lukem */
838 1.107 perry if (kfs->kfs_kt && kfs->kfs_kt->kt_namlen == 8 &&
839 1.92 dan !memcmp(kfs->kfs_kt->kt_name, "boottime", 8)) {
840 1.92 dan TIMEVAL_TO_TIMESPEC(&boottime, &vap->va_ctime);
841 1.92 dan } else {
842 1.92 dan TIMEVAL_TO_TIMESPEC(&time, &vap->va_ctime);
843 1.92 dan }
844 1.81 lukem vap->va_atime = vap->va_mtime = vap->va_ctime;
845 1.1 cgd vap->va_gen = 0;
846 1.1 cgd vap->va_flags = 0;
847 1.1 cgd vap->va_rdev = 0;
848 1.1 cgd vap->va_bytes = 0;
849 1.1 cgd
850 1.90 itojun switch (kfs->kfs_type) {
851 1.98 darcy case KFSkern:
852 1.102 cl vap->va_nlink = nkern_dirs;
853 1.90 itojun vap->va_bytes = vap->va_size = DEV_BSIZE;
854 1.90 itojun break;
855 1.90 itojun
856 1.98 darcy case KFSroot:
857 1.90 itojun vap->va_nlink = 1;
858 1.90 itojun vap->va_bytes = vap->va_size = DEV_BSIZE;
859 1.90 itojun break;
860 1.90 itojun
861 1.102 cl case KFSsubdir:
862 1.102 cl ks = (struct kernfs_subdir *)kfs->kfs_kt->kt_data;
863 1.102 cl vap->va_nlink = ks->ks_dirs;
864 1.102 cl vap->va_bytes = vap->va_size = DEV_BSIZE;
865 1.102 cl break;
866 1.102 cl
867 1.98 darcy case KFSnull:
868 1.98 darcy case KFStime:
869 1.98 darcy case KFSint:
870 1.98 darcy case KFSstring:
871 1.98 darcy case KFShostname:
872 1.98 darcy case KFSavenrun:
873 1.98 darcy case KFSdevice:
874 1.98 darcy case KFSmsgbuf:
875 1.90 itojun #ifdef IPSEC
876 1.98 darcy case KFSipsecsa:
877 1.98 darcy case KFSipsecsp:
878 1.1 cgd #endif
879 1.1 cgd vap->va_nlink = 1;
880 1.84 jdolecek total = 0;
881 1.84 jdolecek do {
882 1.109 christos bf = strbuf;
883 1.109 christos error = kernfs_xread(kfs, total, &bf,
884 1.90 itojun sizeof(strbuf), &nread);
885 1.84 jdolecek total += nread;
886 1.84 jdolecek } while (error == 0 && nread != 0);
887 1.90 itojun vap->va_bytes = vap->va_size = total;
888 1.90 itojun break;
889 1.90 itojun
890 1.90 itojun #ifdef IPSEC
891 1.98 darcy case KFSipsecsadir:
892 1.98 darcy case KFSipsecspdir:
893 1.90 itojun vap->va_nlink = 2;
894 1.90 itojun vap->va_bytes = vap->va_size = DEV_BSIZE;
895 1.90 itojun break;
896 1.90 itojun #endif
897 1.90 itojun
898 1.90 itojun default:
899 1.102 cl error = kernfs_try_fileop(kfs->kfs_type,
900 1.102 cl KERNFS_FILEOP_GETATTR, v, EINVAL);
901 1.90 itojun break;
902 1.1 cgd }
903 1.1 cgd
904 1.1 cgd return (error);
905 1.1 cgd }
906 1.1 cgd
907 1.41 christos /*ARGSUSED*/
908 1.41 christos int
909 1.41 christos kernfs_setattr(v)
910 1.41 christos void *v;
911 1.1 cgd {
912 1.90 itojun
913 1.1 cgd /*
914 1.17 cgd * Silently ignore attribute changes.
915 1.17 cgd * This allows for open with truncate to have no
916 1.17 cgd * effect until some data is written. I want to
917 1.17 cgd * do it this way because all writes are atomic.
918 1.1 cgd */
919 1.17 cgd return (0);
920 1.1 cgd }
921 1.1 cgd
922 1.28 mycroft int
923 1.41 christos kernfs_read(v)
924 1.41 christos void *v;
925 1.41 christos {
926 1.23 mycroft struct vop_read_args /* {
927 1.23 mycroft struct vnode *a_vp;
928 1.23 mycroft struct uio *a_uio;
929 1.23 mycroft int a_ioflag;
930 1.23 mycroft struct ucred *a_cred;
931 1.41 christos } */ *ap = v;
932 1.23 mycroft struct uio *uio = ap->a_uio;
933 1.90 itojun struct kernfs_node *kfs = VTOKERN(ap->a_vp);
934 1.109 christos char strbuf[KSTRING], *bf;
935 1.82 jdolecek off_t off;
936 1.82 jdolecek size_t len;
937 1.28 mycroft int error;
938 1.23 mycroft
939 1.90 itojun if (ap->a_vp->v_type == VDIR)
940 1.23 mycroft return (EOPNOTSUPP);
941 1.23 mycroft
942 1.28 mycroft off = uio->uio_offset;
943 1.109 christos bf = strbuf;
944 1.109 christos if ((error = kernfs_xread(kfs, off, &bf, sizeof(strbuf), &len)) == 0)
945 1.109 christos error = uiomove(bf, len, uio);
946 1.82 jdolecek return (error);
947 1.1 cgd }
948 1.1 cgd
949 1.102 cl static int
950 1.102 cl kernfs_default_xwrite(v)
951 1.41 christos void *v;
952 1.41 christos {
953 1.23 mycroft struct vop_write_args /* {
954 1.23 mycroft struct vnode *a_vp;
955 1.23 mycroft struct uio *a_uio;
956 1.23 mycroft int a_ioflag;
957 1.23 mycroft struct ucred *a_cred;
958 1.41 christos } */ *ap = v;
959 1.90 itojun struct kernfs_node *kfs = VTOKERN(ap->a_vp);
960 1.23 mycroft struct uio *uio = ap->a_uio;
961 1.23 mycroft int error, xlen;
962 1.1 cgd char strbuf[KSTRING];
963 1.23 mycroft
964 1.1 cgd if (uio->uio_offset != 0)
965 1.1 cgd return (EINVAL);
966 1.1 cgd
967 1.1 cgd xlen = min(uio->uio_resid, KSTRING-1);
968 1.41 christos if ((error = uiomove(strbuf, xlen, uio)) != 0)
969 1.1 cgd return (error);
970 1.1 cgd
971 1.1 cgd if (uio->uio_resid != 0)
972 1.1 cgd return (EIO);
973 1.1 cgd
974 1.1 cgd strbuf[xlen] = '\0';
975 1.17 cgd xlen = strlen(strbuf);
976 1.90 itojun return (kernfs_xwrite(kfs, strbuf, xlen));
977 1.1 cgd }
978 1.1 cgd
979 1.102 cl int
980 1.102 cl kernfs_write(v)
981 1.102 cl void *v;
982 1.102 cl {
983 1.102 cl struct vop_write_args /* {
984 1.102 cl struct vnode *a_vp;
985 1.102 cl struct uio *a_uio;
986 1.102 cl int a_ioflag;
987 1.102 cl struct ucred *a_cred;
988 1.102 cl } */ *ap = v;
989 1.102 cl struct kernfs_node *kfs = VTOKERN(ap->a_vp);
990 1.102 cl
991 1.102 cl return kernfs_try_fileop(kfs->kfs_type, KERNFS_FILEOP_WRITE, v, 0);
992 1.102 cl }
993 1.102 cl
994 1.102 cl int
995 1.102 cl kernfs_ioctl(v)
996 1.102 cl void *v;
997 1.102 cl {
998 1.102 cl struct vop_ioctl_args /* {
999 1.102 cl const struct vnodeop_desc *a_desc;
1000 1.102 cl struct vnode *a_vp;
1001 1.102 cl u_long a_command;
1002 1.102 cl void *a_data;
1003 1.102 cl int a_fflag;
1004 1.102 cl struct ucred *a_cred;
1005 1.102 cl struct proc *a_p;
1006 1.102 cl } */ *ap = v;
1007 1.102 cl struct kernfs_node *kfs = VTOKERN(ap->a_vp);
1008 1.102 cl
1009 1.102 cl return kernfs_try_fileop(kfs->kfs_type, KERNFS_FILEOP_IOCTL, v,
1010 1.102 cl EPASSTHROUGH);
1011 1.102 cl }
1012 1.102 cl
1013 1.101 cl static int
1014 1.101 cl kernfs_setdirentfileno_kt(struct dirent *d, const struct kern_target *kt,
1015 1.101 cl u_int32_t value, struct vop_readdir_args *ap)
1016 1.101 cl {
1017 1.101 cl struct kernfs_node *kfs;
1018 1.101 cl struct vnode *vp;
1019 1.101 cl int error;
1020 1.101 cl
1021 1.101 cl if ((error = kernfs_allocvp(ap->a_vp->v_mount, &vp, kt->kt_tag, kt,
1022 1.101 cl value)) != 0)
1023 1.101 cl return error;
1024 1.101 cl if (kt->kt_tag == KFSdevice) {
1025 1.101 cl struct vattr va;
1026 1.101 cl if ((error = VOP_GETATTR(vp, &va, ap->a_cred,
1027 1.101 cl ap->a_uio->uio_segflg == UIO_USERSPACE ?
1028 1.106 skrll ap->a_uio->uio_procp : &proc0)) != 0)
1029 1.101 cl return (error);
1030 1.101 cl d->d_fileno = va.va_fileid;
1031 1.101 cl } else {
1032 1.101 cl kfs = VTOKERN(vp);
1033 1.101 cl d->d_fileno = kfs->kfs_fileno;
1034 1.101 cl }
1035 1.101 cl vput(vp);
1036 1.101 cl return 0;
1037 1.101 cl }
1038 1.101 cl
1039 1.101 cl static int
1040 1.101 cl kernfs_setdirentfileno(struct dirent *d, off_t entry,
1041 1.101 cl struct kernfs_node *thisdir_kfs, const struct kern_target *parent_kt,
1042 1.101 cl const struct kern_target *kt, struct vop_readdir_args *ap)
1043 1.101 cl {
1044 1.101 cl const struct kern_target *ikt;
1045 1.101 cl int error;
1046 1.101 cl
1047 1.101 cl switch (entry) {
1048 1.101 cl case 0:
1049 1.101 cl d->d_fileno = thisdir_kfs->kfs_fileno;
1050 1.101 cl return 0;
1051 1.101 cl case 1:
1052 1.101 cl ikt = parent_kt;
1053 1.101 cl break;
1054 1.101 cl default:
1055 1.101 cl ikt = kt;
1056 1.101 cl break;
1057 1.101 cl }
1058 1.101 cl if (ikt != thisdir_kfs->kfs_kt) {
1059 1.101 cl if ((error = kernfs_setdirentfileno_kt(d, ikt, 0, ap)) != 0)
1060 1.101 cl return error;
1061 1.101 cl } else
1062 1.101 cl d->d_fileno = thisdir_kfs->kfs_fileno;
1063 1.101 cl return 0;
1064 1.101 cl }
1065 1.101 cl
1066 1.41 christos int
1067 1.41 christos kernfs_readdir(v)
1068 1.41 christos void *v;
1069 1.41 christos {
1070 1.23 mycroft struct vop_readdir_args /* {
1071 1.23 mycroft struct vnode *a_vp;
1072 1.23 mycroft struct uio *a_uio;
1073 1.23 mycroft struct ucred *a_cred;
1074 1.26 mycroft int *a_eofflag;
1075 1.57 fvdl off_t **a_cookies;
1076 1.57 fvdl int a_*ncookies;
1077 1.41 christos } */ *ap = v;
1078 1.23 mycroft struct uio *uio = ap->a_uio;
1079 1.37 mycroft struct dirent d;
1080 1.90 itojun struct kernfs_node *kfs = VTOKERN(ap->a_vp);
1081 1.75 jdolecek const struct kern_target *kt;
1082 1.102 cl const struct dyn_kern_target *dkt = NULL;
1083 1.102 cl const struct kernfs_subdir *ks;
1084 1.102 cl off_t i, j;
1085 1.1 cgd int error;
1086 1.57 fvdl off_t *cookies = NULL;
1087 1.90 itojun int ncookies = 0, n;
1088 1.90 itojun #ifdef IPSEC
1089 1.90 itojun struct secasvar *sav, *sav2;
1090 1.90 itojun struct secpolicy *sp;
1091 1.90 itojun #endif
1092 1.23 mycroft
1093 1.37 mycroft if (uio->uio_resid < UIO_MX)
1094 1.37 mycroft return (EINVAL);
1095 1.38 mycroft if (uio->uio_offset < 0)
1096 1.37 mycroft return (EINVAL);
1097 1.26 mycroft
1098 1.1 cgd error = 0;
1099 1.38 mycroft i = uio->uio_offset;
1100 1.90 itojun memset(&d, 0, sizeof(d));
1101 1.90 itojun d.d_reclen = UIO_MX;
1102 1.90 itojun ncookies = uio->uio_resid / UIO_MX;
1103 1.90 itojun
1104 1.90 itojun switch (kfs->kfs_type) {
1105 1.98 darcy case KFSkern:
1106 1.90 itojun if (i >= nkern_targets)
1107 1.90 itojun return (0);
1108 1.66 sommerfe
1109 1.90 itojun if (ap->a_ncookies) {
1110 1.90 itojun ncookies = min(ncookies, (nkern_targets - i));
1111 1.90 itojun cookies = malloc(ncookies * sizeof(off_t), M_TEMP,
1112 1.90 itojun M_WAITOK);
1113 1.90 itojun *ap->a_cookies = cookies;
1114 1.90 itojun }
1115 1.90 itojun
1116 1.90 itojun n = 0;
1117 1.90 itojun for (; i < nkern_targets && uio->uio_resid >= UIO_MX; i++) {
1118 1.102 cl if (i < static_nkern_targets)
1119 1.102 cl kt = &kern_targets[i];
1120 1.102 cl else {
1121 1.102 cl if (dkt == NULL) {
1122 1.102 cl dkt = SIMPLEQ_FIRST(&dyn_kern_targets);
1123 1.102 cl for (j = static_nkern_targets; j < i &&
1124 1.102 cl dkt != NULL; j++)
1125 1.102 cl dkt = SIMPLEQ_NEXT(dkt, dkt_queue);
1126 1.102 cl if (j != i)
1127 1.102 cl break;
1128 1.102 cl } else {
1129 1.102 cl dkt = SIMPLEQ_NEXT(dkt, dkt_queue);
1130 1.102 cl if (dkt == NULL)
1131 1.102 cl break;
1132 1.102 cl }
1133 1.102 cl kt = &dkt->dkt_kt;
1134 1.102 cl }
1135 1.98 darcy if (kt->kt_tag == KFSdevice) {
1136 1.94 itojun dev_t *dp = kt->kt_data;
1137 1.94 itojun struct vnode *fvp;
1138 1.94 itojun
1139 1.94 itojun if (*dp == NODEV ||
1140 1.94 itojun !vfinddev(*dp, kt->kt_vtype, &fvp))
1141 1.94 itojun continue;
1142 1.94 itojun }
1143 1.90 itojun d.d_namlen = kt->kt_namlen;
1144 1.101 cl if ((error = kernfs_setdirentfileno(&d, i, kfs,
1145 1.101 cl &kern_targets[0], kt, ap)) != 0)
1146 1.101 cl break;
1147 1.90 itojun memcpy(d.d_name, kt->kt_name, kt->kt_namlen + 1);
1148 1.90 itojun d.d_type = kt->kt_type;
1149 1.99 jrf if ((error = uiomove(&d, UIO_MX, uio)) != 0)
1150 1.90 itojun break;
1151 1.90 itojun if (cookies)
1152 1.90 itojun *cookies++ = i + 1;
1153 1.90 itojun n++;
1154 1.90 itojun }
1155 1.90 itojun ncookies = n;
1156 1.90 itojun break;
1157 1.90 itojun
1158 1.98 darcy case KFSroot:
1159 1.90 itojun if (i >= 2)
1160 1.90 itojun return 0;
1161 1.90 itojun
1162 1.90 itojun if (ap->a_ncookies) {
1163 1.90 itojun ncookies = min(ncookies, (2 - i));
1164 1.90 itojun cookies = malloc(ncookies * sizeof(off_t), M_TEMP,
1165 1.90 itojun M_WAITOK);
1166 1.90 itojun *ap->a_cookies = cookies;
1167 1.90 itojun }
1168 1.90 itojun
1169 1.90 itojun n = 0;
1170 1.90 itojun for (; i < 2 && uio->uio_resid >= UIO_MX; i++) {
1171 1.90 itojun kt = &kern_targets[i];
1172 1.90 itojun d.d_namlen = kt->kt_namlen;
1173 1.90 itojun d.d_fileno = KERNFS_FILENO(kt, kt->kt_tag, 0);
1174 1.90 itojun memcpy(d.d_name, kt->kt_name, kt->kt_namlen + 1);
1175 1.90 itojun d.d_type = kt->kt_type;
1176 1.99 jrf if ((error = uiomove(&d, UIO_MX, uio)) != 0)
1177 1.90 itojun break;
1178 1.90 itojun if (cookies)
1179 1.90 itojun *cookies++ = i + 1;
1180 1.90 itojun n++;
1181 1.90 itojun }
1182 1.90 itojun ncookies = n;
1183 1.90 itojun break;
1184 1.90 itojun
1185 1.102 cl case KFSsubdir:
1186 1.102 cl ks = (struct kernfs_subdir *)kfs->kfs_kt->kt_data;
1187 1.102 cl if (i >= ks->ks_nentries)
1188 1.102 cl return (0);
1189 1.102 cl
1190 1.102 cl if (ap->a_ncookies) {
1191 1.102 cl ncookies = min(ncookies, (ks->ks_nentries - i));
1192 1.102 cl cookies = malloc(ncookies * sizeof(off_t), M_TEMP,
1193 1.102 cl M_WAITOK);
1194 1.102 cl *ap->a_cookies = cookies;
1195 1.102 cl }
1196 1.102 cl
1197 1.102 cl dkt = SIMPLEQ_FIRST(&ks->ks_entries);
1198 1.102 cl for (j = 0; j < i && dkt != NULL; j++)
1199 1.102 cl dkt = SIMPLEQ_NEXT(dkt, dkt_queue);
1200 1.102 cl n = 0;
1201 1.102 cl for (; i < ks->ks_nentries && uio->uio_resid >= UIO_MX; i++) {
1202 1.102 cl if (i < 2)
1203 1.102 cl kt = &subdir_targets[i];
1204 1.102 cl else {
1205 1.102 cl /* check if ks_nentries lied to us */
1206 1.102 cl if (dkt == NULL)
1207 1.102 cl break;
1208 1.102 cl kt = &dkt->dkt_kt;
1209 1.102 cl dkt = SIMPLEQ_NEXT(dkt, dkt_queue);
1210 1.102 cl }
1211 1.102 cl if (kt->kt_tag == KFSdevice) {
1212 1.102 cl dev_t *dp = kt->kt_data;
1213 1.102 cl struct vnode *fvp;
1214 1.102 cl
1215 1.102 cl if (*dp == NODEV ||
1216 1.102 cl !vfinddev(*dp, kt->kt_vtype, &fvp))
1217 1.102 cl continue;
1218 1.102 cl }
1219 1.102 cl d.d_namlen = kt->kt_namlen;
1220 1.102 cl if ((error = kernfs_setdirentfileno(&d, i, kfs,
1221 1.102 cl ks->ks_parent, kt, ap)) != 0)
1222 1.102 cl break;
1223 1.102 cl memcpy(d.d_name, kt->kt_name, kt->kt_namlen + 1);
1224 1.102 cl d.d_type = kt->kt_type;
1225 1.103 jrf if ((error = uiomove(&d, UIO_MX, uio)) != 0)
1226 1.102 cl break;
1227 1.102 cl if (cookies)
1228 1.102 cl *cookies++ = i + 1;
1229 1.102 cl n++;
1230 1.102 cl }
1231 1.102 cl ncookies = n;
1232 1.102 cl break;
1233 1.102 cl
1234 1.90 itojun #ifdef IPSEC
1235 1.98 darcy case KFSipsecsadir:
1236 1.90 itojun /* count SA in the system */
1237 1.90 itojun n = 0;
1238 1.90 itojun TAILQ_FOREACH(sav, &satailq, tailq) {
1239 1.90 itojun for (sav2 = TAILQ_FIRST(&satailq);
1240 1.90 itojun sav2 != sav;
1241 1.90 itojun sav2 = TAILQ_NEXT(sav2, tailq)) {
1242 1.90 itojun if (sav->spi == sav2->spi) {
1243 1.90 itojun /* multiple SA with same SPI */
1244 1.90 itojun break;
1245 1.90 itojun }
1246 1.90 itojun }
1247 1.90 itojun if (sav == sav2 || sav->spi != sav2->spi)
1248 1.90 itojun n++;
1249 1.90 itojun }
1250 1.37 mycroft
1251 1.90 itojun if (i >= nipsecsa_targets + n)
1252 1.90 itojun return (0);
1253 1.57 fvdl
1254 1.90 itojun if (ap->a_ncookies) {
1255 1.90 itojun ncookies = min(ncookies, (n - i));
1256 1.90 itojun cookies = malloc(ncookies * sizeof(off_t), M_TEMP,
1257 1.90 itojun M_WAITOK);
1258 1.90 itojun *ap->a_cookies = cookies;
1259 1.90 itojun }
1260 1.26 mycroft
1261 1.90 itojun n = 0;
1262 1.90 itojun for (; i < nipsecsa_targets && uio->uio_resid >= UIO_MX; i++) {
1263 1.90 itojun kt = &ipsecsa_targets[i];
1264 1.90 itojun d.d_namlen = kt->kt_namlen;
1265 1.101 cl if ((error = kernfs_setdirentfileno(&d, i, kfs,
1266 1.101 cl &kern_targets[0], kt, ap)) != 0)
1267 1.101 cl break;
1268 1.90 itojun memcpy(d.d_name, kt->kt_name, kt->kt_namlen + 1);
1269 1.90 itojun d.d_type = kt->kt_type;
1270 1.99 jrf if ((error = uiomove(&d, UIO_MX, uio)) != 0)
1271 1.90 itojun break;
1272 1.90 itojun if (cookies)
1273 1.90 itojun *cookies++ = i + 1;
1274 1.90 itojun n++;
1275 1.90 itojun }
1276 1.90 itojun if (error) {
1277 1.90 itojun ncookies = n;
1278 1.90 itojun break;
1279 1.90 itojun }
1280 1.26 mycroft
1281 1.90 itojun TAILQ_FOREACH(sav, &satailq, tailq) {
1282 1.90 itojun for (sav2 = TAILQ_FIRST(&satailq);
1283 1.90 itojun sav2 != sav;
1284 1.90 itojun sav2 = TAILQ_NEXT(sav2, tailq)) {
1285 1.90 itojun if (sav->spi == sav2->spi) {
1286 1.90 itojun /* multiple SA with same SPI */
1287 1.90 itojun break;
1288 1.90 itojun }
1289 1.90 itojun }
1290 1.90 itojun if (sav != sav2 && sav->spi == sav2->spi)
1291 1.23 mycroft continue;
1292 1.90 itojun if (uio->uio_resid < UIO_MX)
1293 1.90 itojun break;
1294 1.101 cl if ((error = kernfs_setdirentfileno_kt(&d, &ipsecsa_kt,
1295 1.101 cl sav->spi, ap)) != 0)
1296 1.101 cl break;
1297 1.90 itojun d.d_namlen = snprintf(d.d_name, sizeof(d.d_name),
1298 1.90 itojun "%u", ntohl(sav->spi));
1299 1.90 itojun d.d_type = DT_REG;
1300 1.99 jrf if ((error = uiomove(&d, UIO_MX, uio)) != 0)
1301 1.90 itojun break;
1302 1.90 itojun if (cookies)
1303 1.90 itojun *cookies++ = i + 1;
1304 1.90 itojun n++;
1305 1.90 itojun i++;
1306 1.23 mycroft }
1307 1.90 itojun ncookies = n;
1308 1.90 itojun break;
1309 1.90 itojun
1310 1.98 darcy case KFSipsecspdir:
1311 1.90 itojun /* count SP in the system */
1312 1.90 itojun n = 0;
1313 1.90 itojun TAILQ_FOREACH(sp, &sptailq, tailq)
1314 1.90 itojun n++;
1315 1.26 mycroft
1316 1.102 cl if (i >= nipsecsp_targets + n)
1317 1.90 itojun return (0);
1318 1.90 itojun
1319 1.90 itojun if (ap->a_ncookies) {
1320 1.90 itojun ncookies = min(ncookies, (n - i));
1321 1.90 itojun cookies = malloc(ncookies * sizeof(off_t), M_TEMP,
1322 1.90 itojun M_WAITOK);
1323 1.90 itojun *ap->a_cookies = cookies;
1324 1.90 itojun }
1325 1.26 mycroft
1326 1.90 itojun n = 0;
1327 1.90 itojun for (; i < nipsecsp_targets && uio->uio_resid >= UIO_MX; i++) {
1328 1.90 itojun kt = &ipsecsp_targets[i];
1329 1.90 itojun d.d_namlen = kt->kt_namlen;
1330 1.101 cl if ((error = kernfs_setdirentfileno(&d, i, kfs,
1331 1.101 cl &kern_targets[0], kt, ap)) != 0)
1332 1.101 cl break;
1333 1.90 itojun memcpy(d.d_name, kt->kt_name, kt->kt_namlen + 1);
1334 1.90 itojun d.d_type = kt->kt_type;
1335 1.99 jrf if ((error = uiomove(&d, UIO_MX, uio)) != 0)
1336 1.90 itojun break;
1337 1.90 itojun if (cookies)
1338 1.90 itojun *cookies++ = i + 1;
1339 1.90 itojun n++;
1340 1.90 itojun }
1341 1.90 itojun if (error) {
1342 1.90 itojun ncookies = n;
1343 1.1 cgd break;
1344 1.57 fvdl }
1345 1.90 itojun
1346 1.90 itojun TAILQ_FOREACH(sp, &sptailq, tailq) {
1347 1.90 itojun if (uio->uio_resid < UIO_MX)
1348 1.90 itojun break;
1349 1.101 cl if ((error = kernfs_setdirentfileno_kt(&d, &ipsecsp_kt,
1350 1.101 cl sp->id, ap)) != 0)
1351 1.101 cl break;
1352 1.90 itojun d.d_namlen = snprintf(d.d_name, sizeof(d.d_name),
1353 1.90 itojun "%u", sp->id);
1354 1.90 itojun d.d_type = DT_REG;
1355 1.99 jrf if ((error = uiomove(&d, UIO_MX, uio)) != 0)
1356 1.90 itojun break;
1357 1.90 itojun if (cookies)
1358 1.90 itojun *cookies++ = i + 1;
1359 1.90 itojun n++;
1360 1.90 itojun i++;
1361 1.90 itojun }
1362 1.90 itojun ncookies = n;
1363 1.90 itojun break;
1364 1.90 itojun #endif
1365 1.90 itojun
1366 1.90 itojun default:
1367 1.90 itojun error = ENOTDIR;
1368 1.90 itojun break;
1369 1.57 fvdl }
1370 1.57 fvdl
1371 1.57 fvdl if (ap->a_ncookies) {
1372 1.57 fvdl if (error) {
1373 1.90 itojun if (cookies)
1374 1.90 itojun free(*ap->a_cookies, M_TEMP);
1375 1.57 fvdl *ap->a_ncookies = 0;
1376 1.57 fvdl *ap->a_cookies = NULL;
1377 1.57 fvdl } else
1378 1.57 fvdl *ap->a_ncookies = ncookies;
1379 1.1 cgd }
1380 1.1 cgd
1381 1.38 mycroft uio->uio_offset = i;
1382 1.1 cgd return (error);
1383 1.1 cgd }
1384 1.1 cgd
1385 1.41 christos int
1386 1.41 christos kernfs_inactive(v)
1387 1.41 christos void *v;
1388 1.41 christos {
1389 1.23 mycroft struct vop_inactive_args /* {
1390 1.23 mycroft struct vnode *a_vp;
1391 1.57 fvdl struct proc *a_p;
1392 1.41 christos } */ *ap = v;
1393 1.23 mycroft struct vnode *vp = ap->a_vp;
1394 1.90 itojun const struct kernfs_node *kfs = VTOKERN(ap->a_vp);
1395 1.90 itojun #ifdef IPSEC
1396 1.90 itojun struct mbuf *m;
1397 1.90 itojun struct secpolicy *sp;
1398 1.90 itojun #endif
1399 1.23 mycroft
1400 1.90 itojun VOP_UNLOCK(vp, 0);
1401 1.90 itojun switch (kfs->kfs_type) {
1402 1.90 itojun #ifdef IPSEC
1403 1.98 darcy case KFSipsecsa:
1404 1.90 itojun m = key_setdumpsa_spi(htonl(kfs->kfs_value));
1405 1.90 itojun if (m)
1406 1.90 itojun m_freem(m);
1407 1.91 itojun else
1408 1.90 itojun vgone(vp);
1409 1.90 itojun break;
1410 1.98 darcy case KFSipsecsp:
1411 1.90 itojun sp = key_getspbyid(kfs->kfs_value);
1412 1.90 itojun if (sp)
1413 1.90 itojun key_freesp(sp);
1414 1.90 itojun else {
1415 1.90 itojun /* should never happen as we hold a refcnt */
1416 1.90 itojun vgone(vp);
1417 1.90 itojun }
1418 1.90 itojun break;
1419 1.23 mycroft #endif
1420 1.90 itojun default:
1421 1.90 itojun break;
1422 1.90 itojun }
1423 1.23 mycroft return (0);
1424 1.23 mycroft }
1425 1.23 mycroft
1426 1.41 christos int
1427 1.41 christos kernfs_reclaim(v)
1428 1.41 christos void *v;
1429 1.41 christos {
1430 1.23 mycroft struct vop_reclaim_args /* {
1431 1.23 mycroft struct vnode *a_vp;
1432 1.41 christos } */ *ap = v;
1433 1.23 mycroft
1434 1.90 itojun return (kernfs_freevp(ap->a_vp));
1435 1.1 cgd }
1436 1.1 cgd
1437 1.1 cgd /*
1438 1.23 mycroft * Return POSIX pathconf information applicable to special devices.
1439 1.23 mycroft */
1440 1.41 christos int
1441 1.41 christos kernfs_pathconf(v)
1442 1.41 christos void *v;
1443 1.41 christos {
1444 1.23 mycroft struct vop_pathconf_args /* {
1445 1.23 mycroft struct vnode *a_vp;
1446 1.23 mycroft int a_name;
1447 1.29 cgd register_t *a_retval;
1448 1.41 christos } */ *ap = v;
1449 1.23 mycroft
1450 1.23 mycroft switch (ap->a_name) {
1451 1.23 mycroft case _PC_LINK_MAX:
1452 1.23 mycroft *ap->a_retval = LINK_MAX;
1453 1.23 mycroft return (0);
1454 1.23 mycroft case _PC_MAX_CANON:
1455 1.23 mycroft *ap->a_retval = MAX_CANON;
1456 1.23 mycroft return (0);
1457 1.23 mycroft case _PC_MAX_INPUT:
1458 1.23 mycroft *ap->a_retval = MAX_INPUT;
1459 1.23 mycroft return (0);
1460 1.23 mycroft case _PC_PIPE_BUF:
1461 1.23 mycroft *ap->a_retval = PIPE_BUF;
1462 1.23 mycroft return (0);
1463 1.23 mycroft case _PC_CHOWN_RESTRICTED:
1464 1.23 mycroft *ap->a_retval = 1;
1465 1.23 mycroft return (0);
1466 1.23 mycroft case _PC_VDISABLE:
1467 1.23 mycroft *ap->a_retval = _POSIX_VDISABLE;
1468 1.59 kleink return (0);
1469 1.59 kleink case _PC_SYNC_IO:
1470 1.59 kleink *ap->a_retval = 1;
1471 1.23 mycroft return (0);
1472 1.23 mycroft default:
1473 1.23 mycroft return (EINVAL);
1474 1.23 mycroft }
1475 1.23 mycroft /* NOTREACHED */
1476 1.23 mycroft }
1477 1.23 mycroft
1478 1.23 mycroft /*
1479 1.23 mycroft * Print out the contents of a /dev/fd vnode.
1480 1.1 cgd */
1481 1.1 cgd /* ARGSUSED */
1482 1.41 christos int
1483 1.41 christos kernfs_print(v)
1484 1.41 christos void *v;
1485 1.23 mycroft {
1486 1.23 mycroft
1487 1.47 christos printf("tag VT_KERNFS, kernfs vnode\n");
1488 1.23 mycroft return (0);
1489 1.23 mycroft }
1490 1.23 mycroft
1491 1.40 mycroft int
1492 1.107 perry kernfs_link(v)
1493 1.41 christos void *v;
1494 1.41 christos {
1495 1.40 mycroft struct vop_link_args /* {
1496 1.40 mycroft struct vnode *a_dvp;
1497 1.107 perry struct vnode *a_vp;
1498 1.40 mycroft struct componentname *a_cnp;
1499 1.41 christos } */ *ap = v;
1500 1.107 perry
1501 1.40 mycroft VOP_ABORTOP(ap->a_dvp, ap->a_cnp);
1502 1.40 mycroft vput(ap->a_dvp);
1503 1.40 mycroft return (EROFS);
1504 1.40 mycroft }
1505 1.40 mycroft
1506 1.40 mycroft int
1507 1.41 christos kernfs_symlink(v)
1508 1.41 christos void *v;
1509 1.41 christos {
1510 1.40 mycroft struct vop_symlink_args /* {
1511 1.40 mycroft struct vnode *a_dvp;
1512 1.40 mycroft struct vnode **a_vpp;
1513 1.40 mycroft struct componentname *a_cnp;
1514 1.40 mycroft struct vattr *a_vap;
1515 1.40 mycroft char *a_target;
1516 1.41 christos } */ *ap = v;
1517 1.107 perry
1518 1.40 mycroft VOP_ABORTOP(ap->a_dvp, ap->a_cnp);
1519 1.40 mycroft vput(ap->a_dvp);
1520 1.40 mycroft return (EROFS);
1521 1.1 cgd }
1522