kernfs_vnops.c revision 1.6 1 1.1 cgd /*
2 1.1 cgd * Copyright (c) 1990, 1992 Jan-Simon Pendry
3 1.1 cgd * All rights reserved.
4 1.1 cgd *
5 1.2 cgd * This code is derived from software contributed to Berkeley by
6 1.1 cgd * Jan-Simon Pendry.
7 1.1 cgd *
8 1.2 cgd * Redistribution and use in source and binary forms, with or without
9 1.2 cgd * modification, are permitted provided that the following conditions
10 1.2 cgd * are met:
11 1.2 cgd * 1. Redistributions of source code must retain the above copyright
12 1.2 cgd * notice, this list of conditions and the following disclaimer.
13 1.2 cgd * 2. Redistributions in binary form must reproduce the above copyright
14 1.2 cgd * notice, this list of conditions and the following disclaimer in the
15 1.2 cgd * documentation and/or other materials provided with the distribution.
16 1.2 cgd * 3. All advertising materials mentioning features or use of this software
17 1.2 cgd * must display the following acknowledgement:
18 1.2 cgd * This product includes software developed by the University of
19 1.2 cgd * California, Berkeley and its contributors.
20 1.2 cgd * 4. Neither the name of the University nor the names of its contributors
21 1.2 cgd * may be used to endorse or promote products derived from this software
22 1.2 cgd * without specific prior written permission.
23 1.1 cgd *
24 1.2 cgd * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
25 1.2 cgd * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
26 1.2 cgd * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
27 1.2 cgd * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
28 1.2 cgd * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
29 1.2 cgd * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
30 1.2 cgd * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
31 1.2 cgd * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
32 1.2 cgd * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
33 1.2 cgd * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
34 1.2 cgd * SUCH DAMAGE.
35 1.1 cgd *
36 1.6 cgd * $Id: kernfs_vnops.c,v 1.6 1993/04/27 10:06:10 cgd Exp $
37 1.1 cgd */
38 1.1 cgd
39 1.1 cgd /*
40 1.1 cgd * Kernel parameter filesystem
41 1.1 cgd */
42 1.1 cgd
43 1.1 cgd #include "param.h"
44 1.1 cgd #include "systm.h"
45 1.1 cgd #include "kernel.h"
46 1.1 cgd #include "types.h"
47 1.1 cgd #include "time.h"
48 1.1 cgd #include "proc.h"
49 1.1 cgd #include "file.h"
50 1.1 cgd #include "vnode.h"
51 1.1 cgd #include "stat.h"
52 1.1 cgd #include "mount.h"
53 1.1 cgd #include "namei.h"
54 1.1 cgd #include "buf.h"
55 1.1 cgd #include "miscfs/kernfs/kernfs.h"
56 1.1 cgd
57 1.1 cgd #include "../ufs/dir.h" /* For readdir() XXX */
58 1.1 cgd
59 1.1 cgd #define KSTRING 256 /* Largest I/O available via this filesystem */
60 1.1 cgd #define UIO_MX 32
61 1.1 cgd
62 1.1 cgd struct kern_target {
63 1.1 cgd char *kt_name;
64 1.1 cgd void *kt_data;
65 1.1 cgd #define KTT_NULL 1
66 1.1 cgd #define KTT_TIME 5
67 1.1 cgd #define KTT_INT 17
68 1.1 cgd #define KTT_STRING 31
69 1.1 cgd #define KTT_HOSTNAME 47
70 1.1 cgd #define KTT_AVENRUN 53
71 1.1 cgd int kt_tag;
72 1.1 cgd #define KTM_RO 0
73 1.1 cgd #define KTM_RO_MODE (S_IRUSR|S_IRGRP|S_IROTH)
74 1.1 cgd #define KTM_RW 43
75 1.1 cgd #define KTM_RW_MODE (S_IWUSR|S_IRUSR|S_IRGRP|S_IROTH)
76 1.1 cgd #define KTM_DIR_MODE (S_IRUSR|S_IXUSR|S_IRGRP|S_IXGRP|S_IROTH|S_IXOTH)
77 1.1 cgd int kt_rw;
78 1.1 cgd int kt_vtype;
79 1.1 cgd } kern_targets[] = {
80 1.1 cgd /* NOTE: The name must be less than UIO_MX-16 chars in length */
81 1.1 cgd /* name data tag ro/rw */
82 1.1 cgd { ".", 0, KTT_NULL, KTM_RO, VDIR },
83 1.4 cgd { "..", 0, KTT_NULL, KTM_RO, VDIR },
84 1.1 cgd { "copyright", copyright, KTT_STRING, KTM_RO, VREG },
85 1.1 cgd { "hostname", 0, KTT_HOSTNAME, KTM_RW, VREG },
86 1.1 cgd { "hz", &hz, KTT_INT, KTM_RO, VREG },
87 1.1 cgd { "loadavg", 0, KTT_AVENRUN, KTM_RO, VREG },
88 1.1 cgd { "physmem", &physmem, KTT_INT, KTM_RO, VREG },
89 1.1 cgd { "root", 0, KTT_NULL, KTM_RO, VDIR },
90 1.1 cgd { "rootdev", 0, KTT_NULL, KTM_RO, VBLK },
91 1.4 cgd { "rrootdev", 0, KTT_NULL, KTM_RO, VCHR },
92 1.1 cgd { "time", 0, KTT_TIME, KTM_RO, VREG },
93 1.1 cgd { "version", version, KTT_STRING, KTM_RO, VREG },
94 1.1 cgd };
95 1.1 cgd
96 1.1 cgd static int nkern_targets = sizeof(kern_targets) / sizeof(kern_targets[0]);
97 1.1 cgd
98 1.1 cgd static int
99 1.1 cgd kernfs_xread(kt, buf, len, lenp)
100 1.1 cgd struct kern_target *kt;
101 1.1 cgd char *buf;
102 1.1 cgd int len;
103 1.1 cgd int *lenp;
104 1.1 cgd {
105 1.1 cgd int xlen;
106 1.1 cgd
107 1.1 cgd switch (kt->kt_tag) {
108 1.1 cgd case KTT_TIME: {
109 1.1 cgd struct timeval tv;
110 1.1 cgd microtime(&tv);
111 1.1 cgd sprintf(buf, "%d %d\n", tv.tv_sec, tv.tv_usec);
112 1.1 cgd break;
113 1.1 cgd }
114 1.1 cgd
115 1.1 cgd case KTT_INT: {
116 1.1 cgd int *ip = kt->kt_data;
117 1.1 cgd sprintf(buf, "%d\n", *ip);
118 1.1 cgd break;
119 1.1 cgd }
120 1.1 cgd
121 1.1 cgd case KTT_STRING: {
122 1.1 cgd char *cp = kt->kt_data;
123 1.1 cgd int xlen = strlen(cp) + 1;
124 1.1 cgd
125 1.1 cgd if (xlen >= len)
126 1.1 cgd return (EINVAL);
127 1.1 cgd
128 1.1 cgd bcopy(cp, buf, xlen);
129 1.1 cgd break;
130 1.1 cgd }
131 1.1 cgd
132 1.1 cgd case KTT_HOSTNAME: {
133 1.1 cgd char *cp = hostname;
134 1.1 cgd int xlen = hostnamelen;
135 1.1 cgd
136 1.6 cgd if (xlen + 2 > len) /* extra space for null and newline */
137 1.1 cgd return (EINVAL);
138 1.1 cgd
139 1.6 cgd bcopy(cp, buf, xlen); /* safer than sprintf */
140 1.6 cgd buf[xlen] = '\n';
141 1.6 cgd buf[xlen+1] = '\0';
142 1.1 cgd break;
143 1.1 cgd }
144 1.1 cgd
145 1.1 cgd case KTT_AVENRUN:
146 1.1 cgd sprintf(buf, "%d %d %d %d\n",
147 1.1 cgd averunnable[0],
148 1.1 cgd averunnable[1],
149 1.1 cgd averunnable[2],
150 1.1 cgd FSCALE);
151 1.1 cgd break;
152 1.1 cgd
153 1.1 cgd default:
154 1.1 cgd return (EINVAL);
155 1.1 cgd }
156 1.1 cgd
157 1.1 cgd *lenp = strlen(buf);
158 1.1 cgd return (0);
159 1.1 cgd }
160 1.1 cgd
161 1.1 cgd static int
162 1.1 cgd kernfs_xwrite(kt, buf, len)
163 1.1 cgd struct kern_target *kt;
164 1.1 cgd char *buf;
165 1.1 cgd int len;
166 1.1 cgd {
167 1.1 cgd switch (kt->kt_tag) {
168 1.1 cgd case KTT_HOSTNAME: {
169 1.1 cgd if (buf[len-1] == '\n')
170 1.1 cgd --len;
171 1.1 cgd bcopy(buf, hostname, len);
172 1.6 cgd /* kernfs_write set buf[value_passed_as_len] = \0.
173 1.6 cgd * therefore, buf len (hostnamelen) = len.
174 1.6 cgd */
175 1.6 cgd hostnamelen = len;
176 1.6 cgd hostname[hostnamelen] = '\0'; /* null end of string. */
177 1.1 cgd return (0);
178 1.1 cgd }
179 1.1 cgd
180 1.1 cgd default:
181 1.1 cgd return (EIO);
182 1.1 cgd }
183 1.1 cgd }
184 1.1 cgd
185 1.1 cgd /*
186 1.1 cgd * vp is the current namei directory
187 1.1 cgd * ndp is the name to locate in that directory...
188 1.1 cgd */
189 1.1 cgd kernfs_lookup(dvp, ndp, p)
190 1.1 cgd struct vnode *dvp;
191 1.1 cgd struct nameidata *ndp;
192 1.1 cgd struct proc *p;
193 1.1 cgd {
194 1.1 cgd char *pname = ndp->ni_ptr;
195 1.1 cgd int error = ENOENT;
196 1.1 cgd int i;
197 1.1 cgd struct vnode *fvp;
198 1.1 cgd
199 1.1 cgd #ifdef KERNFS_DIAGNOSTIC
200 1.1 cgd printf("kernfs_lookup(%s)\n", pname);
201 1.1 cgd #endif
202 1.1 cgd if (ndp->ni_namelen == 1 && *pname == '.') {
203 1.1 cgd ndp->ni_dvp = dvp;
204 1.1 cgd ndp->ni_vp = dvp;
205 1.1 cgd VREF(dvp);
206 1.1 cgd /*VOP_LOCK(dvp);*/
207 1.1 cgd return (0);
208 1.1 cgd }
209 1.1 cgd
210 1.1 cgd if (ndp->ni_namelen == 4 && bcmp(pname, "root", 4) == 0) {
211 1.3 cgd ndp->ni_dvp = dvp;
212 1.1 cgd ndp->ni_vp = rootdir;
213 1.1 cgd VREF(rootdir);
214 1.1 cgd VOP_LOCK(rootdir);
215 1.1 cgd return (0);
216 1.1 cgd }
217 1.1 cgd
218 1.1 cgd /*
219 1.1 cgd * /kern/rootdev is the root device
220 1.1 cgd */
221 1.1 cgd if (ndp->ni_namelen == 7 && bcmp(pname, "rootdev", 7) == 0) {
222 1.1 cgd if (vfinddev(rootdev, VBLK, &fvp))
223 1.1 cgd return (ENXIO);
224 1.1 cgd ndp->ni_dvp = dvp;
225 1.1 cgd ndp->ni_vp = fvp;
226 1.1 cgd VREF(fvp);
227 1.1 cgd VOP_LOCK(fvp);
228 1.4 cgd return (0);
229 1.4 cgd }
230 1.4 cgd
231 1.4 cgd /*
232 1.4 cgd * /kern/rrootdev is the root device
233 1.4 cgd */
234 1.4 cgd if (ndp->ni_namelen == 8 && bcmp(pname, "rrootdev", 7) == 0) {
235 1.4 cgd ndp->ni_dvp = dvp;
236 1.4 cgd ndp->ni_vp = rrootdevvp;
237 1.4 cgd VREF(rrootdevvp);
238 1.4 cgd VOP_LOCK(rrootdevvp);
239 1.1 cgd return (0);
240 1.1 cgd }
241 1.1 cgd
242 1.1 cgd for (i = 0; i < nkern_targets; i++) {
243 1.1 cgd struct kern_target *kt = &kern_targets[i];
244 1.1 cgd if (ndp->ni_namelen == strlen(kt->kt_name) &&
245 1.1 cgd bcmp(kt->kt_name, pname, ndp->ni_namelen) == 0) {
246 1.1 cgd error = 0;
247 1.1 cgd break;
248 1.1 cgd }
249 1.1 cgd }
250 1.1 cgd
251 1.1 cgd #ifdef KERNFS_DIAGNOSTIC
252 1.1 cgd printf("kernfs_lookup: i = %d, error = %d\n", i, error);
253 1.1 cgd #endif
254 1.1 cgd
255 1.1 cgd if (error)
256 1.1 cgd goto bad;
257 1.1 cgd
258 1.1 cgd #ifdef KERNFS_DIAGNOSTIC
259 1.1 cgd printf("kernfs_lookup: allocate new vnode\n");
260 1.1 cgd #endif
261 1.1 cgd error = getnewvnode(VT_UFS, dvp->v_mount, &kernfs_vnodeops, &fvp);
262 1.1 cgd if (error)
263 1.1 cgd goto bad;
264 1.1 cgd VTOKERN(fvp)->kf_kt = &kern_targets[i];
265 1.1 cgd fvp->v_type = VTOKERN(fvp)->kf_kt->kt_vtype;
266 1.1 cgd ndp->ni_dvp = dvp;
267 1.1 cgd ndp->ni_vp = fvp;
268 1.1 cgd #ifdef KERNFS_DIAGNOSTIC
269 1.1 cgd printf("kernfs_lookup: newvp = %x\n", fvp);
270 1.1 cgd #endif
271 1.1 cgd return (0);
272 1.1 cgd
273 1.1 cgd bad:;
274 1.1 cgd ndp->ni_dvp = dvp;
275 1.1 cgd ndp->ni_vp = NULL;
276 1.1 cgd #ifdef KERNFS_DIAGNOSTIC
277 1.1 cgd printf("kernfs_lookup: error = %d\n", error);
278 1.1 cgd #endif
279 1.1 cgd return (error);
280 1.1 cgd }
281 1.1 cgd
282 1.1 cgd kernfs_open(vp, mode, cred, p)
283 1.1 cgd struct vnode *vp;
284 1.1 cgd int mode;
285 1.1 cgd struct ucred *cred;
286 1.1 cgd struct proc *p;
287 1.1 cgd {
288 1.1 cgd int error;
289 1.1 cgd struct filedesc *fdp;
290 1.1 cgd struct file *fp;
291 1.1 cgd int dfd;
292 1.1 cgd int fd;
293 1.1 cgd
294 1.1 cgd #ifdef KERNFS_DIAGNOSTIC
295 1.1 cgd printf("kernfs_open\n");
296 1.1 cgd #endif
297 1.1 cgd
298 1.1 cgd /*
299 1.1 cgd * Can always open the root (modulo perms)
300 1.1 cgd */
301 1.1 cgd if (vp->v_flag & VROOT)
302 1.1 cgd return (0);
303 1.1 cgd
304 1.1 cgd #ifdef KERNFS_DIAGNOSTIC
305 1.1 cgd printf("kernfs_open, mode = %x, file = %s\n",
306 1.1 cgd mode, VTOKERN(vp)->kf_kt->kt_name);
307 1.1 cgd #endif
308 1.1 cgd
309 1.1 cgd if ((mode & FWRITE) && VTOKERN(vp)->kf_kt->kt_rw != KTM_RW)
310 1.5 mycroft return (EPERM);
311 1.1 cgd
312 1.1 cgd return (0);
313 1.1 cgd }
314 1.1 cgd
315 1.1 cgd kernfs_getattr(vp, vap, cred, p)
316 1.1 cgd struct vnode *vp;
317 1.1 cgd struct vattr *vap;
318 1.1 cgd struct ucred *cred;
319 1.1 cgd struct proc *p;
320 1.1 cgd {
321 1.1 cgd int error = 0;
322 1.1 cgd char strbuf[KSTRING];
323 1.1 cgd struct kern_target *kt = VTOKERN(vp)->kf_kt;
324 1.1 cgd
325 1.1 cgd bzero((caddr_t) vap, sizeof(*vap));
326 1.1 cgd vattr_null(vap);
327 1.1 cgd vap->va_uid = 0;
328 1.1 cgd vap->va_gid = 0;
329 1.1 cgd vap->va_fsid = vp->v_mount->mnt_stat.f_fsid.val[0];
330 1.1 cgd /* vap->va_qsize = 0; */
331 1.1 cgd vap->va_blocksize = DEV_BSIZE;
332 1.1 cgd microtime(&vap->va_atime);
333 1.1 cgd vap->va_mtime = vap->va_atime;
334 1.1 cgd vap->va_ctime = vap->va_ctime;
335 1.1 cgd vap->va_gen = 0;
336 1.1 cgd vap->va_flags = 0;
337 1.1 cgd vap->va_rdev = 0;
338 1.1 cgd /* vap->va_qbytes = 0; */
339 1.1 cgd vap->va_bytes = 0;
340 1.1 cgd
341 1.1 cgd if (vp->v_flag & VROOT) {
342 1.1 cgd #ifdef KERNFS_DIAGNOSTIC
343 1.1 cgd printf("kernfs_getattr: stat rootdir\n");
344 1.1 cgd #endif
345 1.1 cgd vap->va_type = VDIR;
346 1.1 cgd vap->va_mode = KTM_DIR_MODE;
347 1.1 cgd vap->va_nlink = 2;
348 1.1 cgd vap->va_fileid = 2;
349 1.1 cgd vap->va_size = DEV_BSIZE;
350 1.1 cgd } else {
351 1.1 cgd #ifdef KERNFS_DIAGNOSTIC
352 1.1 cgd printf("kernfs_getattr: stat target %s\n", kt->kt_name);
353 1.1 cgd #endif
354 1.1 cgd vap->va_type = kt->kt_vtype;
355 1.1 cgd vap->va_mode = (kt->kt_rw ? KTM_RW_MODE : KTM_RO_MODE);
356 1.1 cgd vap->va_nlink = 1;
357 1.1 cgd vap->va_fileid = 3 + (kt - kern_targets) / sizeof(*kt);
358 1.1 cgd error = kernfs_xread(kt, strbuf, sizeof(strbuf), &vap->va_size);
359 1.1 cgd }
360 1.1 cgd
361 1.1 cgd vp->v_type = vap->va_type;
362 1.1 cgd #ifdef KERNFS_DIAGNOSTIC
363 1.1 cgd printf("kernfs_getattr: return error %d\n", error);
364 1.1 cgd #endif
365 1.1 cgd return (error);
366 1.1 cgd }
367 1.1 cgd
368 1.1 cgd kernfs_setattr(vp, vap, cred, p)
369 1.1 cgd struct vnode *vp;
370 1.1 cgd struct vattr *vap;
371 1.1 cgd struct ucred *cred;
372 1.1 cgd struct proc *p;
373 1.1 cgd {
374 1.1 cgd
375 1.1 cgd /*
376 1.1 cgd * Silently ignore attribute changes.
377 1.1 cgd * This allows for open with truncate to have no
378 1.1 cgd * effect until some data is written. I want to
379 1.1 cgd * do it this way because all writes are atomic.
380 1.1 cgd */
381 1.1 cgd return (0);
382 1.1 cgd }
383 1.1 cgd
384 1.1 cgd static int
385 1.1 cgd kernfs_read(vp, uio, ioflag, cred)
386 1.1 cgd struct vnode *vp;
387 1.1 cgd struct uio *uio;
388 1.1 cgd int ioflag;
389 1.1 cgd struct ucred *cred;
390 1.1 cgd {
391 1.1 cgd struct kern_target *kt = VTOKERN(vp)->kf_kt;
392 1.1 cgd char strbuf[KSTRING];
393 1.1 cgd int off = uio->uio_offset;
394 1.1 cgd int len = 0;
395 1.1 cgd char *cp = strbuf;
396 1.1 cgd int error;
397 1.1 cgd #ifdef KERNFS_DIAGNOSTIC
398 1.1 cgd printf("kern_read %s\n", kt->kt_name);
399 1.1 cgd #endif
400 1.1 cgd
401 1.1 cgd error = kernfs_xread(kt, strbuf, sizeof(strbuf), &len);
402 1.1 cgd if (error)
403 1.1 cgd return (error);
404 1.1 cgd cp = strbuf + off;
405 1.1 cgd len -= off;
406 1.1 cgd return (uiomove(cp, len, uio));
407 1.1 cgd }
408 1.1 cgd
409 1.1 cgd static int
410 1.1 cgd kernfs_write(vp, uio, ioflag, cred)
411 1.1 cgd struct vnode *vp;
412 1.1 cgd struct uio *uio;
413 1.1 cgd int ioflag;
414 1.1 cgd struct ucred *cred;
415 1.1 cgd {
416 1.1 cgd struct kern_target *kt = VTOKERN(vp)->kf_kt;
417 1.1 cgd char strbuf[KSTRING];
418 1.1 cgd int len = uio->uio_resid;
419 1.1 cgd char *cp = strbuf;
420 1.1 cgd int xlen;
421 1.1 cgd int error;
422 1.1 cgd
423 1.1 cgd if (uio->uio_offset != 0)
424 1.1 cgd return (EINVAL);
425 1.1 cgd
426 1.1 cgd xlen = min(uio->uio_resid, KSTRING-1);
427 1.1 cgd error = uiomove(strbuf, xlen, uio);
428 1.1 cgd if (error)
429 1.1 cgd return (error);
430 1.1 cgd
431 1.1 cgd if (uio->uio_resid != 0)
432 1.1 cgd return (EIO);
433 1.1 cgd
434 1.1 cgd strbuf[xlen] = '\0';
435 1.1 cgd return (kernfs_xwrite(kt, strbuf, xlen));
436 1.1 cgd }
437 1.1 cgd
438 1.1 cgd kernfs_readdir(vp, uio, cred, eofflagp)
439 1.1 cgd struct vnode *vp;
440 1.1 cgd struct uio *uio;
441 1.1 cgd struct ucred *cred;
442 1.1 cgd int *eofflagp;
443 1.1 cgd {
444 1.1 cgd struct filedesc *fdp;
445 1.1 cgd int i;
446 1.1 cgd int error;
447 1.1 cgd
448 1.1 cgd i = uio->uio_offset / UIO_MX;
449 1.1 cgd error = 0;
450 1.1 cgd while (uio->uio_resid > 0) {
451 1.1 cgd #ifdef KERNFS_DIAGNOSTIC
452 1.1 cgd printf("kernfs_readdir: i = %d\n", i);
453 1.1 cgd #endif
454 1.1 cgd if (i >= nkern_targets) {
455 1.1 cgd *eofflagp = 1;
456 1.1 cgd break;
457 1.1 cgd }
458 1.1 cgd {
459 1.1 cgd struct direct d;
460 1.1 cgd struct direct *dp = &d;
461 1.1 cgd struct kern_target *kt = &kern_targets[i];
462 1.1 cgd
463 1.1 cgd bzero((caddr_t) dp, UIO_MX);
464 1.1 cgd
465 1.1 cgd dp->d_namlen = strlen(kt->kt_name);
466 1.1 cgd bcopy(kt->kt_name, dp->d_name, dp->d_namlen+1);
467 1.1 cgd
468 1.1 cgd #ifdef KERNFS_DIAGNOSTIC
469 1.1 cgd printf("kernfs_readdir: name = %s, len = %d\n",
470 1.1 cgd dp->d_name, dp->d_namlen);
471 1.1 cgd #endif
472 1.1 cgd /*
473 1.1 cgd * Fill in the remaining fields
474 1.1 cgd */
475 1.1 cgd dp->d_reclen = UIO_MX;
476 1.1 cgd dp->d_ino = i + 3;
477 1.1 cgd /*
478 1.1 cgd * And ship to userland
479 1.1 cgd */
480 1.1 cgd error = uiomove((caddr_t) dp, UIO_MX, uio);
481 1.1 cgd if (error)
482 1.1 cgd break;
483 1.1 cgd }
484 1.1 cgd i++;
485 1.1 cgd }
486 1.1 cgd
487 1.1 cgd uio->uio_offset = i * UIO_MX;
488 1.1 cgd
489 1.1 cgd return (error);
490 1.1 cgd }
491 1.1 cgd
492 1.1 cgd kernfs_inactive(vp, p)
493 1.1 cgd struct vnode *vp;
494 1.1 cgd struct proc *p;
495 1.1 cgd {
496 1.1 cgd /*
497 1.1 cgd * Clear out the v_type field to avoid
498 1.1 cgd * nasty things happening in vgone().
499 1.1 cgd */
500 1.1 cgd vp->v_type = VNON;
501 1.1 cgd #ifdef KERNFS_DIAGNOSTIC
502 1.1 cgd printf("kernfs_inactive(%x)\n", vp);
503 1.1 cgd #endif
504 1.1 cgd return (0);
505 1.1 cgd }
506 1.1 cgd
507 1.1 cgd /*
508 1.1 cgd * Print out the contents of a kernfs vnode.
509 1.1 cgd */
510 1.1 cgd /* ARGSUSED */
511 1.1 cgd kernfs_print(vp)
512 1.1 cgd struct vnode *vp;
513 1.1 cgd {
514 1.1 cgd printf("tag VT_NON, kernfs vnode\n");
515 1.1 cgd }
516 1.1 cgd
517 1.1 cgd /*
518 1.1 cgd * kernfs vnode unsupported operation
519 1.1 cgd */
520 1.1 cgd kernfs_enotsupp()
521 1.1 cgd {
522 1.1 cgd return (EOPNOTSUPP);
523 1.1 cgd }
524 1.1 cgd
525 1.1 cgd /*
526 1.1 cgd * kernfs "should never get here" operation
527 1.1 cgd */
528 1.1 cgd kernfs_badop()
529 1.1 cgd {
530 1.1 cgd panic("kernfs: bad op");
531 1.1 cgd /* NOTREACHED */
532 1.1 cgd }
533 1.1 cgd
534 1.1 cgd /*
535 1.1 cgd * kernfs vnode null operation
536 1.1 cgd */
537 1.1 cgd kernfs_nullop()
538 1.1 cgd {
539 1.1 cgd return (0);
540 1.1 cgd }
541 1.1 cgd
542 1.1 cgd #define kernfs_create ((int (*) __P(( \
543 1.1 cgd struct nameidata *ndp, \
544 1.1 cgd struct vattr *vap, \
545 1.1 cgd struct proc *p))) kernfs_enotsupp)
546 1.1 cgd #define kernfs_mknod ((int (*) __P(( \
547 1.1 cgd struct nameidata *ndp, \
548 1.1 cgd struct vattr *vap, \
549 1.1 cgd struct ucred *cred, \
550 1.1 cgd struct proc *p))) kernfs_enotsupp)
551 1.1 cgd #define kernfs_close ((int (*) __P(( \
552 1.1 cgd struct vnode *vp, \
553 1.1 cgd int fflag, \
554 1.1 cgd struct ucred *cred, \
555 1.1 cgd struct proc *p))) nullop)
556 1.1 cgd #define kernfs_access ((int (*) __P(( \
557 1.1 cgd struct vnode *vp, \
558 1.1 cgd int mode, \
559 1.1 cgd struct ucred *cred, \
560 1.1 cgd struct proc *p))) nullop)
561 1.1 cgd #define kernfs_ioctl ((int (*) __P(( \
562 1.1 cgd struct vnode *vp, \
563 1.1 cgd int command, \
564 1.1 cgd caddr_t data, \
565 1.1 cgd int fflag, \
566 1.1 cgd struct ucred *cred, \
567 1.1 cgd struct proc *p))) kernfs_enotsupp)
568 1.1 cgd #define kernfs_select ((int (*) __P(( \
569 1.1 cgd struct vnode *vp, \
570 1.1 cgd int which, \
571 1.1 cgd int fflags, \
572 1.1 cgd struct ucred *cred, \
573 1.1 cgd struct proc *p))) kernfs_enotsupp)
574 1.1 cgd #define kernfs_mmap ((int (*) __P(( \
575 1.1 cgd struct vnode *vp, \
576 1.1 cgd int fflags, \
577 1.1 cgd struct ucred *cred, \
578 1.1 cgd struct proc *p))) kernfs_enotsupp)
579 1.1 cgd #define kernfs_fsync ((int (*) __P(( \
580 1.1 cgd struct vnode *vp, \
581 1.1 cgd int fflags, \
582 1.1 cgd struct ucred *cred, \
583 1.1 cgd int waitfor, \
584 1.1 cgd struct proc *p))) nullop)
585 1.1 cgd #define kernfs_seek ((int (*) __P(( \
586 1.1 cgd struct vnode *vp, \
587 1.1 cgd off_t oldoff, \
588 1.1 cgd off_t newoff, \
589 1.1 cgd struct ucred *cred))) nullop)
590 1.1 cgd #define kernfs_remove ((int (*) __P(( \
591 1.1 cgd struct nameidata *ndp, \
592 1.1 cgd struct proc *p))) kernfs_enotsupp)
593 1.1 cgd #define kernfs_link ((int (*) __P(( \
594 1.1 cgd struct vnode *vp, \
595 1.1 cgd struct nameidata *ndp, \
596 1.1 cgd struct proc *p))) kernfs_enotsupp)
597 1.1 cgd #define kernfs_rename ((int (*) __P(( \
598 1.1 cgd struct nameidata *fndp, \
599 1.1 cgd struct nameidata *tdnp, \
600 1.1 cgd struct proc *p))) kernfs_enotsupp)
601 1.1 cgd #define kernfs_mkdir ((int (*) __P(( \
602 1.1 cgd struct nameidata *ndp, \
603 1.1 cgd struct vattr *vap, \
604 1.1 cgd struct proc *p))) kernfs_enotsupp)
605 1.1 cgd #define kernfs_rmdir ((int (*) __P(( \
606 1.1 cgd struct nameidata *ndp, \
607 1.1 cgd struct proc *p))) kernfs_enotsupp)
608 1.1 cgd #define kernfs_symlink ((int (*) __P(( \
609 1.1 cgd struct nameidata *ndp, \
610 1.1 cgd struct vattr *vap, \
611 1.1 cgd char *target, \
612 1.1 cgd struct proc *p))) kernfs_enotsupp)
613 1.1 cgd #define kernfs_readlink ((int (*) __P(( \
614 1.1 cgd struct vnode *vp, \
615 1.1 cgd struct uio *uio, \
616 1.1 cgd struct ucred *cred))) kernfs_enotsupp)
617 1.1 cgd #define kernfs_abortop ((int (*) __P(( \
618 1.1 cgd struct nameidata *ndp))) nullop)
619 1.1 cgd #ifdef KERNFS_DIAGNOSTIC
620 1.1 cgd int kernfs_reclaim(vp)
621 1.1 cgd struct vnode *vp;
622 1.1 cgd {
623 1.1 cgd printf("kernfs_reclaim(%x)\n", vp);
624 1.1 cgd return (0);
625 1.1 cgd }
626 1.1 cgd #else
627 1.1 cgd #define kernfs_reclaim ((int (*) __P(( \
628 1.1 cgd struct vnode *vp))) nullop)
629 1.1 cgd #endif
630 1.1 cgd #define kernfs_lock ((int (*) __P(( \
631 1.1 cgd struct vnode *vp))) nullop)
632 1.1 cgd #define kernfs_unlock ((int (*) __P(( \
633 1.1 cgd struct vnode *vp))) nullop)
634 1.1 cgd #define kernfs_bmap ((int (*) __P(( \
635 1.1 cgd struct vnode *vp, \
636 1.1 cgd daddr_t bn, \
637 1.1 cgd struct vnode **vpp, \
638 1.1 cgd daddr_t *bnp))) kernfs_badop)
639 1.1 cgd #define kernfs_strategy ((int (*) __P(( \
640 1.1 cgd struct buf *bp))) kernfs_badop)
641 1.1 cgd #define kernfs_islocked ((int (*) __P(( \
642 1.1 cgd struct vnode *vp))) nullop)
643 1.1 cgd #define kernfs_advlock ((int (*) __P(( \
644 1.1 cgd struct vnode *vp, \
645 1.1 cgd caddr_t id, \
646 1.1 cgd int op, \
647 1.1 cgd struct flock *fl, \
648 1.1 cgd int flags))) kernfs_enotsupp)
649 1.1 cgd
650 1.1 cgd struct vnodeops kernfs_vnodeops = {
651 1.1 cgd kernfs_lookup, /* lookup */
652 1.1 cgd kernfs_create, /* create */
653 1.1 cgd kernfs_mknod, /* mknod */
654 1.1 cgd kernfs_open, /* open */
655 1.1 cgd kernfs_close, /* close */
656 1.1 cgd kernfs_access, /* access */
657 1.1 cgd kernfs_getattr, /* getattr */
658 1.1 cgd kernfs_setattr, /* setattr */
659 1.1 cgd kernfs_read, /* read */
660 1.1 cgd kernfs_write, /* write */
661 1.1 cgd kernfs_ioctl, /* ioctl */
662 1.1 cgd kernfs_select, /* select */
663 1.1 cgd kernfs_mmap, /* mmap */
664 1.1 cgd kernfs_fsync, /* fsync */
665 1.1 cgd kernfs_seek, /* seek */
666 1.1 cgd kernfs_remove, /* remove */
667 1.1 cgd kernfs_link, /* link */
668 1.1 cgd kernfs_rename, /* rename */
669 1.1 cgd kernfs_mkdir, /* mkdir */
670 1.1 cgd kernfs_rmdir, /* rmdir */
671 1.1 cgd kernfs_symlink, /* symlink */
672 1.1 cgd kernfs_readdir, /* readdir */
673 1.1 cgd kernfs_readlink, /* readlink */
674 1.1 cgd kernfs_abortop, /* abortop */
675 1.1 cgd kernfs_inactive, /* inactive */
676 1.1 cgd kernfs_reclaim, /* reclaim */
677 1.1 cgd kernfs_lock, /* lock */
678 1.1 cgd kernfs_unlock, /* unlock */
679 1.1 cgd kernfs_bmap, /* bmap */
680 1.1 cgd kernfs_strategy, /* strategy */
681 1.1 cgd kernfs_print, /* print */
682 1.1 cgd kernfs_islocked, /* islocked */
683 1.1 cgd kernfs_advlock, /* advlock */
684 1.1 cgd };
685