coda_vfsops.c revision 1.33 1 1.33 atatat /* $NetBSD: coda_vfsops.c,v 1.33 2004/03/24 15:34:52 atatat Exp $ */
2 1.2 rvb
3 1.1 rvb /*
4 1.2 rvb *
5 1.2 rvb * Coda: an Experimental Distributed File System
6 1.2 rvb * Release 3.1
7 1.2 rvb *
8 1.2 rvb * Copyright (c) 1987-1998 Carnegie Mellon University
9 1.2 rvb * All Rights Reserved
10 1.2 rvb *
11 1.2 rvb * Permission to use, copy, modify and distribute this software and its
12 1.2 rvb * documentation is hereby granted, provided that both the copyright
13 1.2 rvb * notice and this permission notice appear in all copies of the
14 1.2 rvb * software, derivative works or modified versions, and any portions
15 1.2 rvb * thereof, and that both notices appear in supporting documentation, and
16 1.2 rvb * that credit is given to Carnegie Mellon University in all documents
17 1.2 rvb * and publicity pertaining to direct or indirect use of this code or its
18 1.2 rvb * derivatives.
19 1.2 rvb *
20 1.2 rvb * CODA IS AN EXPERIMENTAL SOFTWARE SYSTEM AND IS KNOWN TO HAVE BUGS,
21 1.2 rvb * SOME OF WHICH MAY HAVE SERIOUS CONSEQUENCES. CARNEGIE MELLON ALLOWS
22 1.2 rvb * FREE USE OF THIS SOFTWARE IN ITS "AS IS" CONDITION. CARNEGIE MELLON
23 1.2 rvb * DISCLAIMS ANY LIABILITY OF ANY KIND FOR ANY DAMAGES WHATSOEVER
24 1.2 rvb * RESULTING DIRECTLY OR INDIRECTLY FROM THE USE OF THIS SOFTWARE OR OF
25 1.2 rvb * ANY DERIVATIVE WORK.
26 1.2 rvb *
27 1.2 rvb * Carnegie Mellon encourages users of this software to return any
28 1.2 rvb * improvements or extensions that they make, and to grant Carnegie
29 1.2 rvb * Mellon the rights to redistribute these changes without encumbrance.
30 1.2 rvb *
31 1.3 rvb * @(#) cfs/coda_vfsops.c,v 1.1.1.1 1998/08/29 21:26:45 rvb Exp $
32 1.2 rvb */
33 1.1 rvb
34 1.1 rvb /*
35 1.1 rvb * Mach Operating System
36 1.1 rvb * Copyright (c) 1989 Carnegie-Mellon University
37 1.1 rvb * All rights reserved. The CMU software License Agreement specifies
38 1.1 rvb * the terms and conditions for use and redistribution.
39 1.1 rvb */
40 1.1 rvb
41 1.1 rvb /*
42 1.1 rvb * This code was written for the Coda file system at Carnegie Mellon
43 1.1 rvb * University. Contributers include David Steere, James Kistler, and
44 1.1 rvb * M. Satyanarayanan.
45 1.1 rvb */
46 1.14 lukem
47 1.14 lukem #include <sys/cdefs.h>
48 1.33 atatat __KERNEL_RCSID(0, "$NetBSD: coda_vfsops.c,v 1.33 2004/03/24 15:34:52 atatat Exp $");
49 1.2 rvb
50 1.5 rvb #ifdef _LKM
51 1.5 rvb #define NVCODA 4
52 1.5 rvb #else
53 1.3 rvb #include <vcoda.h>
54 1.5 rvb #endif
55 1.1 rvb
56 1.1 rvb #include <sys/param.h>
57 1.1 rvb #include <sys/systm.h>
58 1.31 atatat #include <sys/sysctl.h>
59 1.1 rvb #include <sys/malloc.h>
60 1.1 rvb #include <sys/conf.h>
61 1.1 rvb #include <sys/namei.h>
62 1.1 rvb #include <sys/mount.h>
63 1.1 rvb #include <sys/proc.h>
64 1.1 rvb #include <sys/select.h>
65 1.1 rvb
66 1.4 rvb #include <coda/coda.h>
67 1.4 rvb #include <coda/cnode.h>
68 1.4 rvb #include <coda/coda_vfsops.h>
69 1.4 rvb #include <coda/coda_venus.h>
70 1.4 rvb #include <coda/coda_subr.h>
71 1.4 rvb #include <coda/coda_opstats.h>
72 1.1 rvb /* for VN_RDEV */
73 1.1 rvb #include <miscfs/specfs/specdev.h>
74 1.21 thorpej
75 1.21 thorpej MALLOC_DEFINE(M_CODA, "coda", "Coda file system structures and tables");
76 1.1 rvb
77 1.3 rvb int codadebug = 0;
78 1.1 rvb
79 1.3 rvb int coda_vfsop_print_entry = 0;
80 1.15 perry #define ENTRY if(coda_vfsop_print_entry) myprintf(("Entered %s\n",__func__))
81 1.1 rvb
82 1.3 rvb struct vnode *coda_ctlvp;
83 1.3 rvb struct coda_mntinfo coda_mnttbl[NVCODA]; /* indexed by minor device number */
84 1.1 rvb
85 1.1 rvb /* structure to keep statistics of internally generated/satisfied calls */
86 1.1 rvb
87 1.3 rvb struct coda_op_stats coda_vfsopstats[CODA_VFSOPS_SIZE];
88 1.1 rvb
89 1.3 rvb #define MARK_ENTRY(op) (coda_vfsopstats[op].entries++)
90 1.3 rvb #define MARK_INT_SAT(op) (coda_vfsopstats[op].sat_intrn++)
91 1.3 rvb #define MARK_INT_FAIL(op) (coda_vfsopstats[op].unsat_intrn++)
92 1.3 rvb #define MRAK_INT_GEN(op) (coda_vfsopstats[op].gen_intrn++)
93 1.1 rvb
94 1.18 gehenna extern const struct cdevsw vcoda_cdevsw;
95 1.11 jdolecek extern const struct vnodeopv_desc coda_vnodeop_opv_desc;
96 1.1 rvb
97 1.11 jdolecek const struct vnodeopv_desc * const coda_vnodeopv_descs[] = {
98 1.3 rvb &coda_vnodeop_opv_desc,
99 1.1 rvb NULL,
100 1.1 rvb };
101 1.1 rvb
102 1.3 rvb struct vfsops coda_vfsops = {
103 1.3 rvb MOUNT_CODA,
104 1.3 rvb coda_mount,
105 1.3 rvb coda_start,
106 1.3 rvb coda_unmount,
107 1.3 rvb coda_root,
108 1.3 rvb coda_quotactl,
109 1.3 rvb coda_nb_statfs,
110 1.3 rvb coda_sync,
111 1.3 rvb coda_vget,
112 1.26 fvdl (int (*) (struct mount *, struct fid *, struct vnode ** ))
113 1.1 rvb eopnotsupp,
114 1.1 rvb (int (*) (struct vnode *, struct fid *)) eopnotsupp,
115 1.3 rvb coda_init,
116 1.13 chs NULL,
117 1.9 jdolecek coda_done,
118 1.31 atatat NULL,
119 1.1 rvb (int (*)(void)) eopnotsupp,
120 1.7 wrstuden (int (*)(struct mount *, struct mbuf *, int *, struct ucred **))
121 1.7 wrstuden eopnotsupp,
122 1.3 rvb coda_vnodeopv_descs,
123 1.1 rvb 0
124 1.1 rvb };
125 1.1 rvb
126 1.29 drochner
127 1.1 rvb int
128 1.3 rvb coda_vfsopstats_init(void)
129 1.1 rvb {
130 1.10 augustss int i;
131 1.1 rvb
132 1.3 rvb for (i=0;i<CODA_VFSOPS_SIZE;i++) {
133 1.3 rvb coda_vfsopstats[i].opcode = i;
134 1.3 rvb coda_vfsopstats[i].entries = 0;
135 1.3 rvb coda_vfsopstats[i].sat_intrn = 0;
136 1.3 rvb coda_vfsopstats[i].unsat_intrn = 0;
137 1.3 rvb coda_vfsopstats[i].gen_intrn = 0;
138 1.1 rvb }
139 1.1 rvb
140 1.1 rvb return 0;
141 1.1 rvb }
142 1.1 rvb
143 1.1 rvb /*
144 1.1 rvb * cfs mount vfsop
145 1.1 rvb * Set up mount info record and attach it to vfs struct.
146 1.1 rvb */
147 1.1 rvb /*ARGSUSED*/
148 1.1 rvb int
149 1.26 fvdl coda_mount(vfsp, path, data, ndp, p)
150 1.1 rvb struct mount *vfsp; /* Allocated and initialized by mount(2) */
151 1.1 rvb const char *path; /* path covered: ignored by the fs-layer */
152 1.1 rvb void *data; /* Need to define a data type for this in netbsd? */
153 1.1 rvb struct nameidata *ndp; /* Clobber this to lookup the device name */
154 1.26 fvdl struct proc *p; /* The ever-famous proc pointer */
155 1.1 rvb {
156 1.1 rvb struct vnode *dvp;
157 1.1 rvb struct cnode *cp;
158 1.1 rvb dev_t dev;
159 1.3 rvb struct coda_mntinfo *mi;
160 1.1 rvb struct vnode *rootvp;
161 1.18 gehenna const struct cdevsw *cdev;
162 1.29 drochner CodaFid rootfid = INVAL_FID;
163 1.29 drochner CodaFid ctlfid = CTL_FID;
164 1.1 rvb int error;
165 1.1 rvb
166 1.19 christos if (vfsp->mnt_flag & MNT_GETARGS)
167 1.19 christos return 0;
168 1.1 rvb ENTRY;
169 1.1 rvb
170 1.3 rvb coda_vfsopstats_init();
171 1.3 rvb coda_vnodeopstats_init();
172 1.1 rvb
173 1.3 rvb MARK_ENTRY(CODA_MOUNT_STATS);
174 1.3 rvb if (CODA_MOUNTED(vfsp)) {
175 1.3 rvb MARK_INT_FAIL(CODA_MOUNT_STATS);
176 1.1 rvb return(EBUSY);
177 1.1 rvb }
178 1.1 rvb
179 1.1 rvb /* Validate mount device. Similar to getmdev(). */
180 1.1 rvb
181 1.26 fvdl NDINIT(ndp, LOOKUP, FOLLOW, UIO_USERSPACE, data, p);
182 1.1 rvb error = namei(ndp);
183 1.1 rvb dvp = ndp->ni_vp;
184 1.1 rvb
185 1.1 rvb if (error) {
186 1.3 rvb MARK_INT_FAIL(CODA_MOUNT_STATS);
187 1.1 rvb return (error);
188 1.1 rvb }
189 1.1 rvb if (dvp->v_type != VCHR) {
190 1.3 rvb MARK_INT_FAIL(CODA_MOUNT_STATS);
191 1.1 rvb vrele(dvp);
192 1.1 rvb return(ENXIO);
193 1.1 rvb }
194 1.1 rvb dev = dvp->v_specinfo->si_rdev;
195 1.1 rvb vrele(dvp);
196 1.18 gehenna cdev = cdevsw_lookup(dev);
197 1.18 gehenna if (cdev == NULL) {
198 1.3 rvb MARK_INT_FAIL(CODA_MOUNT_STATS);
199 1.1 rvb return(ENXIO);
200 1.1 rvb }
201 1.1 rvb
202 1.1 rvb /*
203 1.1 rvb * See if the device table matches our expectations.
204 1.1 rvb */
205 1.18 gehenna if (cdev != &vcoda_cdevsw)
206 1.1 rvb {
207 1.3 rvb MARK_INT_FAIL(CODA_MOUNT_STATS);
208 1.1 rvb return(ENXIO);
209 1.1 rvb }
210 1.1 rvb
211 1.3 rvb if (minor(dev) >= NVCODA || minor(dev) < 0) {
212 1.3 rvb MARK_INT_FAIL(CODA_MOUNT_STATS);
213 1.1 rvb return(ENXIO);
214 1.1 rvb }
215 1.1 rvb
216 1.1 rvb /*
217 1.1 rvb * Initialize the mount record and link it to the vfs struct
218 1.1 rvb */
219 1.3 rvb mi = &coda_mnttbl[minor(dev)];
220 1.1 rvb
221 1.1 rvb if (!VC_OPEN(&mi->mi_vcomm)) {
222 1.3 rvb MARK_INT_FAIL(CODA_MOUNT_STATS);
223 1.1 rvb return(ENODEV);
224 1.1 rvb }
225 1.1 rvb
226 1.1 rvb /* No initialization (here) of mi_vcomm! */
227 1.17 soren vfsp->mnt_data = mi;
228 1.1 rvb vfsp->mnt_stat.f_fsid.val[0] = 0;
229 1.3 rvb vfsp->mnt_stat.f_fsid.val[1] = makefstype(MOUNT_CODA);
230 1.1 rvb mi->mi_vfsp = vfsp;
231 1.1 rvb
232 1.1 rvb /*
233 1.1 rvb * Make a root vnode to placate the Vnode interface, but don't
234 1.3 rvb * actually make the CODA_ROOT call to venus until the first call
235 1.3 rvb * to coda_root in case a server is down while venus is starting.
236 1.1 rvb */
237 1.3 rvb cp = make_coda_node(&rootfid, vfsp, VDIR);
238 1.1 rvb rootvp = CTOV(cp);
239 1.1 rvb rootvp->v_flag |= VROOT;
240 1.1 rvb
241 1.3 rvb /* cp = make_coda_node(&ctlfid, vfsp, VCHR);
242 1.1 rvb The above code seems to cause a loop in the cnode links.
243 1.1 rvb I don't totally understand when it happens, it is caught
244 1.1 rvb when closing down the system.
245 1.1 rvb */
246 1.3 rvb cp = make_coda_node(&ctlfid, 0, VCHR);
247 1.1 rvb
248 1.3 rvb coda_ctlvp = CTOV(cp);
249 1.1 rvb
250 1.1 rvb /* Add vfs and rootvp to chain of vfs hanging off mntinfo */
251 1.1 rvb mi->mi_vfsp = vfsp;
252 1.1 rvb mi->mi_rootvp = rootvp;
253 1.1 rvb
254 1.1 rvb /* set filesystem block size */
255 1.1 rvb vfsp->mnt_stat.f_bsize = 8192; /* XXX -JJK */
256 1.1 rvb
257 1.1 rvb /* error is currently guaranteed to be zero, but in case some
258 1.1 rvb code changes... */
259 1.3 rvb CODADEBUG(1,
260 1.3 rvb myprintf(("coda_mount returned %d\n",error)););
261 1.1 rvb if (error)
262 1.3 rvb MARK_INT_FAIL(CODA_MOUNT_STATS);
263 1.1 rvb else
264 1.3 rvb MARK_INT_SAT(CODA_MOUNT_STATS);
265 1.22 christos
266 1.22 christos return set_statfs_info("/coda", UIO_SYSSPACE, "CODA", UIO_SYSSPACE, vfsp,
267 1.26 fvdl p);
268 1.1 rvb }
269 1.1 rvb
270 1.1 rvb int
271 1.26 fvdl coda_start(vfsp, flags, p)
272 1.1 rvb struct mount *vfsp;
273 1.1 rvb int flags;
274 1.26 fvdl struct proc *p;
275 1.1 rvb {
276 1.1 rvb ENTRY;
277 1.28 drochner vftomi(vfsp)->mi_started = 1;
278 1.1 rvb return (0);
279 1.1 rvb }
280 1.1 rvb
281 1.1 rvb int
282 1.26 fvdl coda_unmount(vfsp, mntflags, p)
283 1.1 rvb struct mount *vfsp;
284 1.1 rvb int mntflags;
285 1.26 fvdl struct proc *p;
286 1.1 rvb {
287 1.3 rvb struct coda_mntinfo *mi = vftomi(vfsp);
288 1.1 rvb int active, error = 0;
289 1.1 rvb
290 1.1 rvb ENTRY;
291 1.3 rvb MARK_ENTRY(CODA_UMOUNT_STATS);
292 1.3 rvb if (!CODA_MOUNTED(vfsp)) {
293 1.3 rvb MARK_INT_FAIL(CODA_UMOUNT_STATS);
294 1.1 rvb return(EINVAL);
295 1.1 rvb }
296 1.1 rvb
297 1.1 rvb if (mi->mi_vfsp == vfsp) { /* We found the victim */
298 1.1 rvb if (!IS_UNMOUNTING(VTOC(mi->mi_rootvp)))
299 1.1 rvb return (EBUSY); /* Venus is still running */
300 1.1 rvb
301 1.1 rvb #ifdef DEBUG
302 1.3 rvb printf("coda_unmount: ROOT: vp %p, cp %p\n", mi->mi_rootvp, VTOC(mi->mi_rootvp));
303 1.1 rvb #endif
304 1.28 drochner mi->mi_started = 0;
305 1.28 drochner
306 1.1 rvb vrele(mi->mi_rootvp);
307 1.1 rvb
308 1.3 rvb active = coda_kill(vfsp, NOT_DOWNCALL);
309 1.6 rvb mi->mi_rootvp->v_flag &= ~VROOT;
310 1.1 rvb error = vflush(mi->mi_vfsp, NULLVP, FORCECLOSE);
311 1.3 rvb printf("coda_unmount: active = %d, vflush active %d\n", active, error);
312 1.1 rvb error = 0;
313 1.2 rvb
314 1.1 rvb /* I'm going to take this out to allow lookups to go through. I'm
315 1.1 rvb * not sure it's important anyway. -- DCS 2/2/94
316 1.1 rvb */
317 1.1 rvb /* vfsp->VFS_DATA = NULL; */
318 1.1 rvb
319 1.1 rvb /* No more vfsp's to hold onto */
320 1.1 rvb mi->mi_vfsp = NULL;
321 1.1 rvb mi->mi_rootvp = NULL;
322 1.1 rvb
323 1.1 rvb if (error)
324 1.3 rvb MARK_INT_FAIL(CODA_UMOUNT_STATS);
325 1.1 rvb else
326 1.3 rvb MARK_INT_SAT(CODA_UMOUNT_STATS);
327 1.1 rvb
328 1.1 rvb return(error);
329 1.1 rvb }
330 1.1 rvb return (EINVAL);
331 1.1 rvb }
332 1.1 rvb
333 1.1 rvb /*
334 1.1 rvb * find root of cfs
335 1.1 rvb */
336 1.1 rvb int
337 1.25 thorpej coda_root(vfsp, vpp)
338 1.1 rvb struct mount *vfsp;
339 1.1 rvb struct vnode **vpp;
340 1.1 rvb {
341 1.3 rvb struct coda_mntinfo *mi = vftomi(vfsp);
342 1.1 rvb int error;
343 1.26 fvdl struct proc *p = curproc; /* XXX - bnoble */
344 1.29 drochner CodaFid VFid;
345 1.29 drochner static const CodaFid invalfid = INVAL_FID;
346 1.1 rvb
347 1.1 rvb ENTRY;
348 1.3 rvb MARK_ENTRY(CODA_ROOT_STATS);
349 1.1 rvb
350 1.1 rvb if (vfsp == mi->mi_vfsp) {
351 1.29 drochner if (memcmp(&VTOC(mi->mi_rootvp)->c_fid, &invalfid, sizeof(CodaFid)))
352 1.1 rvb { /* Found valid root. */
353 1.1 rvb *vpp = mi->mi_rootvp;
354 1.1 rvb /* On Mach, this is vref. On NetBSD, VOP_LOCK */
355 1.1 rvb vref(*vpp);
356 1.2 rvb vn_lock(*vpp, LK_EXCLUSIVE);
357 1.3 rvb MARK_INT_SAT(CODA_ROOT_STATS);
358 1.1 rvb return(0);
359 1.1 rvb }
360 1.1 rvb }
361 1.1 rvb
362 1.26 fvdl error = venus_root(vftomi(vfsp), p->p_cred->pc_ucred, p, &VFid);
363 1.1 rvb
364 1.1 rvb if (!error) {
365 1.1 rvb /*
366 1.1 rvb * Save the new rootfid in the cnode, and rehash the cnode into the
367 1.1 rvb * cnode hash with the new fid key.
368 1.1 rvb */
369 1.3 rvb coda_unsave(VTOC(mi->mi_rootvp));
370 1.1 rvb VTOC(mi->mi_rootvp)->c_fid = VFid;
371 1.3 rvb coda_save(VTOC(mi->mi_rootvp));
372 1.1 rvb
373 1.1 rvb *vpp = mi->mi_rootvp;
374 1.1 rvb vref(*vpp);
375 1.2 rvb vn_lock(*vpp, LK_EXCLUSIVE);
376 1.3 rvb MARK_INT_SAT(CODA_ROOT_STATS);
377 1.1 rvb goto exit;
378 1.6 rvb } else if (error == ENODEV || error == EINTR) {
379 1.1 rvb /* Gross hack here! */
380 1.1 rvb /*
381 1.3 rvb * If Venus fails to respond to the CODA_ROOT call, coda_call returns
382 1.1 rvb * ENODEV. Return the uninitialized root vnode to allow vfs
383 1.1 rvb * operations such as unmount to continue. Without this hack,
384 1.1 rvb * there is no way to do an unmount if Venus dies before a
385 1.3 rvb * successful CODA_ROOT call is done. All vnode operations
386 1.1 rvb * will fail.
387 1.1 rvb */
388 1.1 rvb *vpp = mi->mi_rootvp;
389 1.1 rvb vref(*vpp);
390 1.2 rvb vn_lock(*vpp, LK_EXCLUSIVE);
391 1.3 rvb MARK_INT_FAIL(CODA_ROOT_STATS);
392 1.1 rvb error = 0;
393 1.1 rvb goto exit;
394 1.1 rvb } else {
395 1.3 rvb CODADEBUG( CODA_ROOT, myprintf(("error %d in CODA_ROOT\n", error)); );
396 1.3 rvb MARK_INT_FAIL(CODA_ROOT_STATS);
397 1.1 rvb
398 1.1 rvb goto exit;
399 1.1 rvb }
400 1.1 rvb exit:
401 1.1 rvb return(error);
402 1.1 rvb }
403 1.1 rvb
404 1.1 rvb int
405 1.26 fvdl coda_quotactl(vfsp, cmd, uid, arg, p)
406 1.1 rvb struct mount *vfsp;
407 1.1 rvb int cmd;
408 1.1 rvb uid_t uid;
409 1.1 rvb caddr_t arg;
410 1.26 fvdl struct proc *p;
411 1.1 rvb {
412 1.1 rvb ENTRY;
413 1.1 rvb return (EOPNOTSUPP);
414 1.1 rvb }
415 1.1 rvb
416 1.1 rvb /*
417 1.1 rvb * Get file system statistics.
418 1.1 rvb */
419 1.1 rvb int
420 1.26 fvdl coda_nb_statfs(vfsp, sbp, p)
421 1.10 augustss struct mount *vfsp;
422 1.1 rvb struct statfs *sbp;
423 1.26 fvdl struct proc *p;
424 1.1 rvb {
425 1.16 phil struct coda_statfs fsstat;
426 1.16 phil int error;
427 1.16 phil
428 1.1 rvb ENTRY;
429 1.16 phil MARK_ENTRY(CODA_STATFS_STATS);
430 1.3 rvb if (!CODA_MOUNTED(vfsp)) {
431 1.16 phil /* MARK_INT_FAIL(CODA_STATFS_STATS); */
432 1.1 rvb return(EINVAL);
433 1.1 rvb }
434 1.1 rvb
435 1.1 rvb /* XXX - what to do about f_flags, others? --bnoble */
436 1.1 rvb /* Below This is what AFS does
437 1.1 rvb #define NB_SFS_SIZ 0x895440
438 1.1 rvb */
439 1.1 rvb /* Note: Normal fs's have a bsize of 0x400 == 1024 */
440 1.16 phil
441 1.26 fvdl error = venus_statfs(vftomi(vfsp), p->p_cred->pc_ucred, p, &fsstat);
442 1.16 phil
443 1.16 phil if (!error) {
444 1.16 phil sbp->f_type = 0;
445 1.16 phil sbp->f_bsize = 8192; /* XXX */
446 1.16 phil sbp->f_iosize = 8192; /* XXX */
447 1.16 phil sbp->f_blocks = fsstat.f_blocks;
448 1.16 phil sbp->f_bfree = fsstat.f_bfree;
449 1.16 phil sbp->f_bavail = fsstat.f_bavail;
450 1.16 phil sbp->f_files = fsstat.f_files;
451 1.16 phil sbp->f_ffree = fsstat.f_ffree;
452 1.22 christos copy_statfs_info(sbp, vfsp);
453 1.16 phil }
454 1.16 phil
455 1.16 phil MARK_INT_SAT(CODA_STATFS_STATS);
456 1.16 phil return(error);
457 1.1 rvb }
458 1.1 rvb
459 1.1 rvb /*
460 1.1 rvb * Flush any pending I/O.
461 1.1 rvb */
462 1.1 rvb int
463 1.26 fvdl coda_sync(vfsp, waitfor, cred, p)
464 1.1 rvb struct mount *vfsp;
465 1.1 rvb int waitfor;
466 1.1 rvb struct ucred *cred;
467 1.26 fvdl struct proc *p;
468 1.1 rvb {
469 1.1 rvb ENTRY;
470 1.3 rvb MARK_ENTRY(CODA_SYNC_STATS);
471 1.3 rvb MARK_INT_SAT(CODA_SYNC_STATS);
472 1.1 rvb return(0);
473 1.1 rvb }
474 1.1 rvb
475 1.1 rvb int
476 1.25 thorpej coda_vget(vfsp, ino, vpp)
477 1.1 rvb struct mount *vfsp;
478 1.1 rvb ino_t ino;
479 1.1 rvb struct vnode **vpp;
480 1.1 rvb {
481 1.1 rvb ENTRY;
482 1.1 rvb return (EOPNOTSUPP);
483 1.1 rvb }
484 1.1 rvb
485 1.1 rvb /*
486 1.1 rvb * fhtovp is now what vget used to be in 4.3-derived systems. For
487 1.1 rvb * some silly reason, vget is now keyed by a 32 bit ino_t, rather than
488 1.1 rvb * a type-specific fid.
489 1.1 rvb */
490 1.1 rvb int
491 1.25 thorpej coda_fhtovp(vfsp, fhp, nam, vpp, exflagsp, creadanonp)
492 1.10 augustss struct mount *vfsp;
493 1.1 rvb struct fid *fhp;
494 1.1 rvb struct mbuf *nam;
495 1.1 rvb struct vnode **vpp;
496 1.1 rvb int *exflagsp;
497 1.1 rvb struct ucred **creadanonp;
498 1.1 rvb {
499 1.1 rvb struct cfid *cfid = (struct cfid *)fhp;
500 1.1 rvb struct cnode *cp = 0;
501 1.1 rvb int error;
502 1.26 fvdl struct proc *p = curproc; /* XXX -mach */
503 1.29 drochner CodaFid VFid;
504 1.1 rvb int vtype;
505 1.1 rvb
506 1.1 rvb ENTRY;
507 1.1 rvb
508 1.3 rvb MARK_ENTRY(CODA_VGET_STATS);
509 1.1 rvb /* Check for vget of control object. */
510 1.1 rvb if (IS_CTL_FID(&cfid->cfid_fid)) {
511 1.3 rvb *vpp = coda_ctlvp;
512 1.3 rvb vref(coda_ctlvp);
513 1.3 rvb MARK_INT_SAT(CODA_VGET_STATS);
514 1.1 rvb return(0);
515 1.1 rvb }
516 1.1 rvb
517 1.26 fvdl error = venus_fhtovp(vftomi(vfsp), &cfid->cfid_fid, p->p_cred->pc_ucred, p, &VFid, &vtype);
518 1.1 rvb
519 1.1 rvb if (error) {
520 1.3 rvb CODADEBUG(CODA_VGET, myprintf(("vget error %d\n",error));)
521 1.1 rvb *vpp = (struct vnode *)0;
522 1.1 rvb } else {
523 1.3 rvb CODADEBUG(CODA_VGET,
524 1.29 drochner myprintf(("vget: %s type %d result %d\n",
525 1.29 drochner coda_f2s(&VFid), vtype, error)); )
526 1.1 rvb
527 1.3 rvb cp = make_coda_node(&VFid, vfsp, vtype);
528 1.1 rvb *vpp = CTOV(cp);
529 1.1 rvb }
530 1.1 rvb return(error);
531 1.1 rvb }
532 1.1 rvb
533 1.1 rvb int
534 1.3 rvb coda_vptofh(vnp, fidp)
535 1.1 rvb struct vnode *vnp;
536 1.1 rvb struct fid *fidp;
537 1.1 rvb {
538 1.1 rvb ENTRY;
539 1.1 rvb return (EOPNOTSUPP);
540 1.1 rvb }
541 1.1 rvb
542 1.1 rvb void
543 1.3 rvb coda_init(void)
544 1.1 rvb {
545 1.1 rvb ENTRY;
546 1.1 rvb }
547 1.9 jdolecek
548 1.9 jdolecek void
549 1.9 jdolecek coda_done(void)
550 1.9 jdolecek {
551 1.9 jdolecek ENTRY;
552 1.9 jdolecek }
553 1.1 rvb
554 1.31 atatat SYSCTL_SETUP(sysctl_vfs_coda_setup, "sysctl vfs.coda subtree setup")
555 1.1 rvb {
556 1.33 atatat sysctl_createv(clog, 0, NULL, NULL,
557 1.33 atatat CTLFLAG_PERMANENT,
558 1.31 atatat CTLTYPE_NODE, "vfs", NULL,
559 1.31 atatat NULL, 0, NULL, 0,
560 1.31 atatat CTL_VFS, CTL_EOL);
561 1.33 atatat sysctl_createv(clog, 0, NULL, NULL,
562 1.33 atatat CTLFLAG_PERMANENT,
563 1.31 atatat CTLTYPE_NODE, "coda", NULL,
564 1.31 atatat NULL, 0, NULL, 0,
565 1.31 atatat CTL_VFS, 18, CTL_EOL);
566 1.31 atatat /*
567 1.31 atatat * XXX the "18" above could be dynamic, thereby eliminating
568 1.31 atatat * one more instance of the "number to vfs" mapping problem,
569 1.31 atatat * but "18" is the order as taken from sys/mount.h
570 1.31 atatat */
571 1.1 rvb
572 1.1 rvb /*
573 1.33 atatat sysctl_createv(clog, 0, NULL, NULL,
574 1.33 atatat CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
575 1.31 atatat CTLTYPE_INT, "clusterread", NULL,
576 1.31 atatat NULL, 0, &doclusterread, 0,
577 1.31 atatat CTL_VFS, 18, FFS_CLUSTERREAD, CTL_EOL);
578 1.31 atatat */
579 1.1 rvb }
580 1.1 rvb
581 1.1 rvb /*
582 1.1 rvb * To allow for greater ease of use, some vnodes may be orphaned when
583 1.1 rvb * Venus dies. Certain operations should still be allowed to go
584 1.32 atatat * through, but without propagating orphan-ness. So this function will
585 1.32 atatat * get a new vnode for the file from the current run of Venus.
586 1.32 atatat */
587 1.1 rvb
588 1.1 rvb int
589 1.1 rvb getNewVnode(vpp)
590 1.1 rvb struct vnode **vpp;
591 1.1 rvb {
592 1.1 rvb struct cfid cfid;
593 1.3 rvb struct coda_mntinfo *mi = vftomi((*vpp)->v_mount);
594 1.1 rvb
595 1.1 rvb ENTRY;
596 1.1 rvb
597 1.29 drochner cfid.cfid_len = (short)sizeof(CodaFid);
598 1.1 rvb cfid.cfid_fid = VTOC(*vpp)->c_fid; /* Structure assignment. */
599 1.1 rvb /* XXX ? */
600 1.1 rvb
601 1.1 rvb /* We're guessing that if set, the 1st element on the list is a
602 1.1 rvb * valid vnode to use. If not, return ENODEV as venus is dead.
603 1.1 rvb */
604 1.1 rvb if (mi->mi_vfsp == NULL)
605 1.1 rvb return ENODEV;
606 1.1 rvb
607 1.3 rvb return coda_fhtovp(mi->mi_vfsp, (struct fid*)&cfid, NULL, vpp,
608 1.25 thorpej NULL, NULL);
609 1.1 rvb }
610 1.1 rvb
611 1.1 rvb #include <ufs/ufs/quota.h>
612 1.1 rvb #include <ufs/ufs/ufsmount.h>
613 1.1 rvb /* get the mount structure corresponding to a given device. Assume
614 1.1 rvb * device corresponds to a UFS. Return NULL if no device is found.
615 1.1 rvb */
616 1.1 rvb struct mount *devtomp(dev)
617 1.1 rvb dev_t dev;
618 1.1 rvb {
619 1.1 rvb struct mount *mp, *nmp;
620 1.1 rvb
621 1.1 rvb for (mp = mountlist.cqh_first; mp != (void*)&mountlist; mp = nmp) {
622 1.1 rvb nmp = mp->mnt_list.cqe_next;
623 1.2 rvb if ((!strcmp(mp->mnt_op->vfs_name, MOUNT_UFS)) &&
624 1.1 rvb ((VFSTOUFS(mp))->um_dev == (dev_t) dev)) {
625 1.1 rvb /* mount corresponds to UFS and the device matches one we want */
626 1.1 rvb return(mp);
627 1.1 rvb }
628 1.1 rvb }
629 1.1 rvb /* mount structure wasn't found */
630 1.1 rvb return(NULL);
631 1.1 rvb }
632