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coda_subr.c revision 1.27.2.1
      1  1.27.2.1  jdolecek /*	$NetBSD: coda_subr.c,v 1.27.2.1 2017/12/03 11:36:52 jdolecek Exp $	*/
      2       1.2       rvb 
      3       1.1       rvb /*
      4      1.17     perry  *
      5       1.2       rvb  *             Coda: an Experimental Distributed File System
      6       1.2       rvb  *                              Release 3.1
      7      1.17     perry  *
      8       1.2       rvb  *           Copyright (c) 1987-1998 Carnegie Mellon University
      9       1.2       rvb  *                          All Rights Reserved
     10      1.17     perry  *
     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      1.17     perry  *
     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      1.17     perry  *
     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      1.17     perry  *
     31      1.17     perry  * 	@(#) coda/coda_subr.c,v 1.1.1.1 1998/08/29 21:26:45 rvb Exp $
     32       1.2       rvb  */
     33       1.1       rvb 
     34      1.17     perry /*
     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       1.1       rvb /* NOTES: rvb
     47       1.3       rvb  * 1.	Added coda_unmounting to mark all cnodes as being UNMOUNTING.  This has to
     48       1.1       rvb  *	 be done before dounmount is called.  Because some of the routines that
     49       1.3       rvb  *	 dounmount calls before coda_unmounted might try to force flushes to venus.
     50       1.1       rvb  *	 The vnode pager does this.
     51       1.3       rvb  * 2.	coda_unmounting marks all cnodes scanning coda_cache.
     52       1.1       rvb  * 3.	cfs_checkunmounting (under DEBUG) checks all cnodes by chasing the vnodes
     53       1.1       rvb  *	 under the /coda mount point.
     54       1.3       rvb  * 4.	coda_cacheprint (under DEBUG) prints names with vnode/cnode address
     55       1.1       rvb  */
     56      1.13     lukem 
     57      1.13     lukem #include <sys/cdefs.h>
     58  1.27.2.1  jdolecek __KERNEL_RCSID(0, "$NetBSD: coda_subr.c,v 1.27.2.1 2017/12/03 11:36:52 jdolecek Exp $");
     59       1.1       rvb 
     60       1.1       rvb #include <sys/param.h>
     61       1.1       rvb #include <sys/systm.h>
     62       1.1       rvb #include <sys/malloc.h>
     63       1.1       rvb #include <sys/proc.h>
     64       1.1       rvb #include <sys/select.h>
     65       1.1       rvb #include <sys/mount.h>
     66      1.27  christos #include <sys/kauth.h>
     67       1.1       rvb 
     68       1.4       rvb #include <coda/coda.h>
     69       1.4       rvb #include <coda/cnode.h>
     70       1.4       rvb #include <coda/coda_subr.h>
     71       1.4       rvb #include <coda/coda_namecache.h>
     72       1.1       rvb 
     73      1.26  christos int codadebug = 0;
     74      1.26  christos int coda_printf_delay = 0;  /* in microseconds */
     75      1.26  christos int coda_vnop_print_entry = 0;
     76      1.26  christos int coda_vfsop_print_entry = 0;
     77       1.1       rvb 
     78      1.15  drochner #ifdef CODA_COMPAT_5
     79       1.3       rvb #define coda_hash(fid) \
     80       1.3       rvb     (((fid)->Volume + (fid)->Vnode) & (CODA_CACHESIZE-1))
     81      1.15  drochner #define IS_DIR(cnode)        (cnode.Vnode & 0x1)
     82      1.15  drochner #else
     83      1.15  drochner #define coda_hash(fid) \
     84      1.15  drochner     (coda_f2i(fid) & (CODA_CACHESIZE-1))
     85      1.15  drochner #define IS_DIR(cnode)        (cnode.opaque[2] & 0x1)
     86      1.15  drochner #endif
     87       1.1       rvb 
     88      1.27  christos struct vnode *coda_ctlvp;
     89      1.27  christos 
     90       1.1       rvb /*
     91  1.27.2.1  jdolecek  * Lookup a cnode by fid. If the cnode is dying, it is bogus so skip it.
     92  1.27.2.1  jdolecek  * The cnode is returned locked with the vnode referenced.
     93       1.1       rvb  */
     94       1.1       rvb struct cnode *
     95  1.27.2.1  jdolecek coda_find(CodaFid *fid)
     96       1.1       rvb {
     97  1.27.2.1  jdolecek 	int i;
     98  1.27.2.1  jdolecek 	struct vnode *vp;
     99  1.27.2.1  jdolecek 	struct cnode *cp;
    100       1.1       rvb 
    101  1.27.2.1  jdolecek 	for (i = 0; i < NVCODA; i++) {
    102  1.27.2.1  jdolecek 		if (!coda_mnttbl[i].mi_started)
    103  1.27.2.1  jdolecek 			continue;
    104  1.27.2.1  jdolecek 		if (vcache_get(coda_mnttbl[i].mi_vfsp,
    105  1.27.2.1  jdolecek 		    fid, sizeof(CodaFid), &vp) != 0)
    106  1.27.2.1  jdolecek 			continue;
    107  1.27.2.1  jdolecek 		mutex_enter(vp->v_interlock);
    108  1.27.2.1  jdolecek 		cp = VTOC(vp);
    109  1.27.2.1  jdolecek 		if (vp->v_type == VNON || cp == NULL || IS_UNMOUNTING(cp)) {
    110  1.27.2.1  jdolecek 			mutex_exit(vp->v_interlock);
    111  1.27.2.1  jdolecek 			vrele(vp);
    112  1.27.2.1  jdolecek 			continue;
    113  1.27.2.1  jdolecek 		}
    114  1.27.2.1  jdolecek 		mutex_enter(&cp->c_lock);
    115  1.27.2.1  jdolecek 		mutex_exit(vp->v_interlock);
    116       1.1       rvb 
    117  1.27.2.1  jdolecek 		return cp;
    118  1.27.2.1  jdolecek 	}
    119       1.1       rvb 
    120  1.27.2.1  jdolecek 	return NULL;
    121       1.1       rvb }
    122       1.1       rvb 
    123       1.1       rvb /*
    124  1.27.2.1  jdolecek  * Iterate over all nodes attached to coda mounts.
    125       1.1       rvb  */
    126  1.27.2.1  jdolecek static void
    127  1.27.2.1  jdolecek coda_iterate(bool (*f)(void *, struct vnode *), void *cl)
    128       1.1       rvb {
    129  1.27.2.1  jdolecek 	int i;
    130  1.27.2.1  jdolecek 	struct vnode_iterator *marker;
    131  1.27.2.1  jdolecek 	struct vnode *vp;
    132      1.17     perry 
    133  1.27.2.1  jdolecek 	for (i = 0; i < NVCODA; i++) {
    134  1.27.2.1  jdolecek 		if (coda_mnttbl[i].mi_vfsp == NULL)
    135  1.27.2.1  jdolecek 			continue;
    136  1.27.2.1  jdolecek 		vfs_vnode_iterator_init(coda_mnttbl[i].mi_vfsp, &marker);
    137  1.27.2.1  jdolecek 		while ((vp = vfs_vnode_iterator_next(marker, f, cl)) != NULL)
    138  1.27.2.1  jdolecek 			vrele(vp);
    139  1.27.2.1  jdolecek 		vfs_vnode_iterator_destroy(marker);
    140      1.17     perry 	}
    141       1.1       rvb }
    142       1.1       rvb 
    143       1.1       rvb /*
    144       1.3       rvb  * coda_kill is called as a side effect to vcopen. To prevent any
    145       1.1       rvb  * cnodes left around from an earlier run of a venus or warden from
    146       1.1       rvb  * causing problems with the new instance, mark any outstanding cnodes
    147       1.1       rvb  * as dying. Future operations on these cnodes should fail (excepting
    148       1.3       rvb  * coda_inactive of course!). Since multiple venii/wardens can be
    149       1.1       rvb  * running, only kill the cnodes for a particular entry in the
    150       1.3       rvb  * coda_mnttbl. -- DCS 12/1/94 */
    151       1.1       rvb 
    152  1.27.2.1  jdolecek static bool
    153  1.27.2.1  jdolecek coda_kill_selector(void *cl, struct vnode *vp)
    154  1.27.2.1  jdolecek {
    155  1.27.2.1  jdolecek 	int *count = cl;
    156  1.27.2.1  jdolecek 
    157  1.27.2.1  jdolecek 	(*count)++;
    158  1.27.2.1  jdolecek 
    159  1.27.2.1  jdolecek 	return false;
    160  1.27.2.1  jdolecek }
    161  1.27.2.1  jdolecek 
    162       1.1       rvb int
    163      1.18   xtraeme coda_kill(struct mount *whoIam, enum dc_status dcstat)
    164       1.1       rvb {
    165  1.27.2.1  jdolecek 	int count = 0;
    166  1.27.2.1  jdolecek 	struct vnode_iterator *marker;
    167      1.17     perry 
    168      1.17     perry 	/*
    169      1.17     perry 	 * Algorithm is as follows:
    170       1.1       rvb 	 *     Second, flush whatever vnodes we can from the name cache.
    171       1.1       rvb 	 */
    172      1.17     perry 
    173       1.1       rvb 	/* This is slightly overkill, but should work. Eventually it'd be
    174       1.1       rvb 	 * nice to only flush those entries from the namecache that
    175       1.1       rvb 	 * reference a vnode in this vfs.  */
    176       1.3       rvb 	coda_nc_flush(dcstat);
    177      1.17     perry 
    178  1.27.2.1  jdolecek 
    179  1.27.2.1  jdolecek 	vfs_vnode_iterator_init(whoIam, &marker);
    180  1.27.2.1  jdolecek 	vfs_vnode_iterator_next(marker, coda_kill_selector, &count);
    181  1.27.2.1  jdolecek 	vfs_vnode_iterator_destroy(marker);
    182  1.27.2.1  jdolecek 
    183       1.1       rvb 	return count;
    184       1.1       rvb }
    185       1.1       rvb 
    186       1.1       rvb /*
    187       1.1       rvb  * There are two reasons why a cnode may be in use, it may be in the
    188      1.17     perry  * name cache or it may be executing.
    189       1.1       rvb  */
    190  1.27.2.1  jdolecek static bool
    191  1.27.2.1  jdolecek coda_flush_selector(void *cl, struct vnode *vp)
    192  1.27.2.1  jdolecek {
    193  1.27.2.1  jdolecek 	struct cnode *cp = VTOC(vp);
    194  1.27.2.1  jdolecek 
    195  1.27.2.1  jdolecek 	if (cp != NULL && !IS_DIR(cp->c_fid)) /* only files can be executed */
    196  1.27.2.1  jdolecek 		coda_vmflush(cp);
    197  1.27.2.1  jdolecek 
    198  1.27.2.1  jdolecek 	return false;
    199  1.27.2.1  jdolecek }
    200       1.1       rvb void
    201      1.18   xtraeme coda_flush(enum dc_status dcstat)
    202       1.1       rvb {
    203      1.17     perry 
    204       1.3       rvb     coda_clstat.ncalls++;
    205       1.3       rvb     coda_clstat.reqs[CODA_FLUSH]++;
    206      1.17     perry 
    207       1.3       rvb     coda_nc_flush(dcstat);	    /* flush files from the name cache */
    208       1.1       rvb 
    209  1.27.2.1  jdolecek     coda_iterate(coda_flush_selector, NULL);
    210       1.1       rvb }
    211       1.1       rvb 
    212       1.1       rvb /*
    213       1.1       rvb  * As a debugging measure, print out any cnodes that lived through a
    214      1.17     perry  * name cache flush.
    215       1.1       rvb  */
    216  1.27.2.1  jdolecek static bool
    217  1.27.2.1  jdolecek coda_testflush_selector(void *cl, struct vnode *vp)
    218  1.27.2.1  jdolecek {
    219  1.27.2.1  jdolecek 	struct cnode *cp = VTOC(vp);
    220  1.27.2.1  jdolecek 
    221  1.27.2.1  jdolecek 	if (cp != NULL)
    222  1.27.2.1  jdolecek 		myprintf(("Live cnode fid %s count %d\n",
    223  1.27.2.1  jdolecek 		     coda_f2s(&cp->c_fid), CTOV(cp)->v_usecount));
    224  1.27.2.1  jdolecek 
    225  1.27.2.1  jdolecek 	return false;
    226  1.27.2.1  jdolecek }
    227       1.1       rvb void
    228       1.3       rvb coda_testflush(void)
    229       1.1       rvb {
    230      1.17     perry 
    231  1.27.2.1  jdolecek 	coda_iterate(coda_testflush_selector, NULL);
    232       1.1       rvb }
    233       1.1       rvb 
    234       1.1       rvb /*
    235       1.1       rvb  *     First, step through all cnodes and mark them unmounting.
    236       1.1       rvb  *         NetBSD kernels may try to fsync them now that venus
    237       1.1       rvb  *         is dead, which would be a bad thing.
    238       1.1       rvb  *
    239       1.1       rvb  */
    240  1.27.2.1  jdolecek static bool
    241  1.27.2.1  jdolecek coda_unmounting_selector(void *cl, struct vnode *vp)
    242  1.27.2.1  jdolecek {
    243  1.27.2.1  jdolecek 	struct cnode *cp = VTOC(vp);
    244  1.27.2.1  jdolecek 
    245  1.27.2.1  jdolecek 	if (cp)
    246  1.27.2.1  jdolecek 		cp->c_flags |= C_UNMOUNTING;
    247  1.27.2.1  jdolecek 
    248  1.27.2.1  jdolecek 	return false;
    249  1.27.2.1  jdolecek }
    250       1.1       rvb void
    251      1.18   xtraeme coda_unmounting(struct mount *whoIam)
    252      1.17     perry {
    253  1.27.2.1  jdolecek 	struct vnode_iterator *marker;
    254       1.1       rvb 
    255  1.27.2.1  jdolecek 	vfs_vnode_iterator_init(whoIam, &marker);
    256  1.27.2.1  jdolecek 	vfs_vnode_iterator_next(marker, coda_unmounting_selector, NULL);
    257  1.27.2.1  jdolecek 	vfs_vnode_iterator_destroy(marker);
    258       1.1       rvb }
    259       1.1       rvb 
    260       1.1       rvb #ifdef	DEBUG
    261  1.27.2.1  jdolecek static bool
    262  1.27.2.1  jdolecek coda_checkunmounting_selector(void *cl, struct vnode *vp)
    263  1.27.2.1  jdolecek {
    264  1.27.2.1  jdolecek 	struct cnode *cp = VTOC(vp);
    265  1.27.2.1  jdolecek 
    266  1.27.2.1  jdolecek 	if (cp && !(cp->c_flags & C_UNMOUNTING)) {
    267  1.27.2.1  jdolecek 		printf("vp %p, cp %p missed\n", vp, cp);
    268  1.27.2.1  jdolecek 		cp->c_flags |= C_UNMOUNTING;
    269  1.27.2.1  jdolecek 	}
    270  1.27.2.1  jdolecek 
    271  1.27.2.1  jdolecek 	return false;
    272  1.27.2.1  jdolecek }
    273       1.5       rvb void
    274      1.18   xtraeme coda_checkunmounting(struct mount *mp)
    275      1.17     perry {
    276  1.27.2.1  jdolecek 	struct vnode_iterator *marker;
    277  1.27.2.1  jdolecek 
    278  1.27.2.1  jdolecek 	vfs_vnode_iterator_init(mp, &marker);
    279  1.27.2.1  jdolecek 	vfs_vnode_iterator_next(marker, coda_checkunmounting_selector, NULL);
    280  1.27.2.1  jdolecek 	vfs_vnode_iterator_destroy(marker);
    281       1.1       rvb }
    282       1.1       rvb 
    283       1.5       rvb void
    284      1.18   xtraeme coda_cacheprint(struct mount *whoIam)
    285      1.17     perry {
    286  1.27.2.1  jdolecek 	struct vnode *vp;
    287  1.27.2.1  jdolecek 	struct vnode_iterator *marker;
    288       1.1       rvb 	int count = 0;
    289       1.1       rvb 
    290       1.3       rvb 	printf("coda_cacheprint: coda_ctlvp %p, cp %p", coda_ctlvp, VTOC(coda_ctlvp));
    291       1.5       rvb 	coda_nc_name(VTOC(coda_ctlvp));
    292       1.1       rvb 	printf("\n");
    293       1.1       rvb 
    294  1.27.2.1  jdolecek 	vfs_vnode_iterator_init(whoIam, &marker);
    295  1.27.2.1  jdolecek 	while ((vp = vfs_vnode_iterator_next(marker, NULL, NULL)) != NULL) {
    296  1.27.2.1  jdolecek 		printf("coda_cacheprint: vp %p, cp %p", vp, VTOC(vp));
    297  1.27.2.1  jdolecek 		coda_nc_name(VTOC(vp));
    298  1.27.2.1  jdolecek 		printf("\n");
    299  1.27.2.1  jdolecek 		count++;
    300  1.27.2.1  jdolecek 		vrele(vp);
    301       1.1       rvb 	}
    302       1.3       rvb 	printf("coda_cacheprint: count %d\n", count);
    303  1.27.2.1  jdolecek 	vfs_vnode_iterator_destroy(marker);
    304       1.1       rvb }
    305       1.1       rvb #endif
    306       1.1       rvb 
    307       1.1       rvb /*
    308       1.1       rvb  * There are 6 cases where invalidations occur. The semantics of each
    309       1.1       rvb  * is listed here.
    310       1.1       rvb  *
    311       1.3       rvb  * CODA_FLUSH     -- flush all entries from the name cache and the cnode cache.
    312       1.3       rvb  * CODA_PURGEUSER -- flush all entries from the name cache for a specific user
    313       1.1       rvb  *                  This call is a result of token expiration.
    314       1.1       rvb  *
    315       1.1       rvb  * The next two are the result of callbacks on a file or directory.
    316       1.3       rvb  * CODA_ZAPDIR    -- flush the attributes for the dir from its cnode.
    317       1.1       rvb  *                  Zap all children of this directory from the namecache.
    318       1.3       rvb  * CODA_ZAPFILE   -- flush the attributes for a file.
    319       1.1       rvb  *
    320       1.1       rvb  * The fifth is a result of Venus detecting an inconsistent file.
    321       1.3       rvb  * CODA_PURGEFID  -- flush the attribute for the file
    322      1.17     perry  *                  If it is a dir (odd vnode), purge its
    323       1.1       rvb  *                  children from the namecache
    324       1.1       rvb  *                  remove the file from the namecache.
    325       1.1       rvb  *
    326       1.1       rvb  * The sixth allows Venus to replace local fids with global ones
    327       1.1       rvb  * during reintegration.
    328       1.1       rvb  *
    329      1.17     perry  * CODA_REPLACE -- replace one CodaFid with another throughout the name cache
    330       1.1       rvb  */
    331       1.1       rvb 
    332      1.18   xtraeme int handleDownCall(int opcode, union outputArgs *out)
    333       1.1       rvb {
    334       1.1       rvb     int error;
    335       1.1       rvb 
    336       1.1       rvb     /* Handle invalidate requests. */
    337       1.1       rvb     switch (opcode) {
    338       1.3       rvb       case CODA_FLUSH : {
    339       1.1       rvb 
    340       1.3       rvb 	  coda_flush(IS_DOWNCALL);
    341      1.17     perry 
    342       1.3       rvb 	  CODADEBUG(CODA_FLUSH,coda_testflush();)    /* print remaining cnodes */
    343       1.1       rvb 	      return(0);
    344       1.1       rvb       }
    345      1.17     perry 
    346       1.3       rvb       case CODA_PURGEUSER : {
    347       1.3       rvb 	  coda_clstat.ncalls++;
    348       1.3       rvb 	  coda_clstat.reqs[CODA_PURGEUSER]++;
    349      1.17     perry 
    350       1.1       rvb 	  /* XXX - need to prevent fsync's */
    351      1.15  drochner #ifdef CODA_COMPAT_5
    352       1.3       rvb 	  coda_nc_purge_user(out->coda_purgeuser.cred.cr_uid, IS_DOWNCALL);
    353      1.15  drochner #else
    354      1.15  drochner 	  coda_nc_purge_user(out->coda_purgeuser.uid, IS_DOWNCALL);
    355      1.15  drochner #endif
    356       1.1       rvb 	  return(0);
    357       1.1       rvb       }
    358      1.17     perry 
    359       1.3       rvb       case CODA_ZAPFILE : {
    360       1.1       rvb 	  struct cnode *cp;
    361       1.1       rvb 
    362       1.1       rvb 	  error = 0;
    363       1.3       rvb 	  coda_clstat.ncalls++;
    364       1.3       rvb 	  coda_clstat.reqs[CODA_ZAPFILE]++;
    365      1.17     perry 
    366      1.15  drochner 	  cp = coda_find(&out->coda_zapfile.Fid);
    367       1.1       rvb 	  if (cp != NULL) {
    368       1.1       rvb 	      cp->c_flags &= ~C_VATTR;
    369      1.24        ad 	      if (CTOV(cp)->v_iflag & VI_TEXT)
    370       1.3       rvb 		  error = coda_vmflush(cp);
    371      1.11     lukem 	      CODADEBUG(CODA_ZAPFILE, myprintf((
    372      1.15  drochner 		    "zapfile: fid = %s, refcnt = %d, error = %d\n",
    373      1.15  drochner 		    coda_f2s(&cp->c_fid), CTOV(cp)->v_usecount - 1, error)););
    374       1.1       rvb 	      if (CTOV(cp)->v_usecount == 1) {
    375       1.1       rvb 		  cp->c_flags |= C_PURGING;
    376       1.1       rvb 	      }
    377  1.27.2.1  jdolecek 	      mutex_exit(&cp->c_lock);
    378       1.1       rvb 	      vrele(CTOV(cp));
    379       1.1       rvb 	  }
    380      1.17     perry 
    381       1.1       rvb 	  return(error);
    382       1.1       rvb       }
    383      1.17     perry 
    384       1.3       rvb       case CODA_ZAPDIR : {
    385       1.1       rvb 	  struct cnode *cp;
    386       1.1       rvb 
    387       1.3       rvb 	  coda_clstat.ncalls++;
    388       1.3       rvb 	  coda_clstat.reqs[CODA_ZAPDIR]++;
    389      1.17     perry 
    390      1.15  drochner 	  cp = coda_find(&out->coda_zapdir.Fid);
    391       1.1       rvb 	  if (cp != NULL) {
    392       1.1       rvb 	      cp->c_flags &= ~C_VATTR;
    393      1.17     perry 	      coda_nc_zapParentfid(&out->coda_zapdir.Fid, IS_DOWNCALL);
    394      1.17     perry 
    395      1.11     lukem 	      CODADEBUG(CODA_ZAPDIR, myprintf((
    396      1.15  drochner 		    "zapdir: fid = %s, refcnt = %d\n",
    397      1.15  drochner 		    coda_f2s(&cp->c_fid), CTOV(cp)->v_usecount - 1)););
    398       1.1       rvb 	      if (CTOV(cp)->v_usecount == 1) {
    399       1.1       rvb 		  cp->c_flags |= C_PURGING;
    400       1.1       rvb 	      }
    401  1.27.2.1  jdolecek 	      mutex_exit(&cp->c_lock);
    402       1.1       rvb 	      vrele(CTOV(cp));
    403       1.1       rvb 	  }
    404      1.17     perry 
    405       1.1       rvb 	  return(0);
    406       1.1       rvb       }
    407      1.17     perry 
    408       1.3       rvb       case CODA_PURGEFID : {
    409       1.1       rvb 	  struct cnode *cp;
    410       1.1       rvb 
    411       1.1       rvb 	  error = 0;
    412       1.3       rvb 	  coda_clstat.ncalls++;
    413       1.3       rvb 	  coda_clstat.reqs[CODA_PURGEFID]++;
    414       1.1       rvb 
    415      1.15  drochner 	  cp = coda_find(&out->coda_purgefid.Fid);
    416       1.1       rvb 	  if (cp != NULL) {
    417      1.15  drochner 	      if (IS_DIR(out->coda_purgefid.Fid)) { /* Vnode is a directory */
    418      1.15  drochner 		  coda_nc_zapParentfid(&out->coda_purgefid.Fid,
    419      1.17     perry 				     IS_DOWNCALL);
    420       1.1       rvb 	      }
    421       1.1       rvb 	      cp->c_flags &= ~C_VATTR;
    422      1.15  drochner 	      coda_nc_zapfid(&out->coda_purgefid.Fid, IS_DOWNCALL);
    423      1.17     perry 	      if (!(IS_DIR(out->coda_purgefid.Fid))
    424      1.24        ad 		  && (CTOV(cp)->v_iflag & VI_TEXT)) {
    425      1.17     perry 
    426       1.3       rvb 		  error = coda_vmflush(cp);
    427       1.1       rvb 	      }
    428      1.15  drochner 	      CODADEBUG(CODA_PURGEFID, myprintf((
    429      1.15  drochner 			 "purgefid: fid = %s, refcnt = %d, error = %d\n",
    430      1.15  drochner 			 coda_f2s(&cp->c_fid), CTOV(cp)->v_usecount - 1, error)););
    431       1.1       rvb 	      if (CTOV(cp)->v_usecount == 1) {
    432       1.1       rvb 		  cp->c_flags |= C_PURGING;
    433       1.1       rvb 	      }
    434  1.27.2.1  jdolecek 	      mutex_exit(&cp->c_lock);
    435       1.1       rvb 	      vrele(CTOV(cp));
    436       1.1       rvb 	  }
    437       1.1       rvb 	  return(error);
    438       1.1       rvb       }
    439       1.1       rvb 
    440       1.3       rvb       case CODA_REPLACE : {
    441       1.1       rvb 	  struct cnode *cp = NULL;
    442       1.1       rvb 
    443       1.3       rvb 	  coda_clstat.ncalls++;
    444       1.3       rvb 	  coda_clstat.reqs[CODA_REPLACE]++;
    445      1.17     perry 
    446       1.3       rvb 	  cp = coda_find(&out->coda_replace.OldFid);
    447      1.17     perry 	  if (cp != NULL) {
    448  1.27.2.1  jdolecek 	      error = vcache_rekey_enter(CTOV(cp)->v_mount, CTOV(cp),
    449  1.27.2.1  jdolecek 		  &out->coda_replace.OldFid, sizeof(CodaFid),
    450  1.27.2.1  jdolecek 		  &out->coda_replace.NewFid, sizeof(CodaFid));
    451  1.27.2.1  jdolecek 	      if (error) {
    452  1.27.2.1  jdolecek 		  mutex_exit(&cp->c_lock);
    453  1.27.2.1  jdolecek 		  vrele(CTOV(cp));
    454  1.27.2.1  jdolecek 		  return error;
    455  1.27.2.1  jdolecek 	      }
    456       1.3       rvb 	      cp->c_fid = out->coda_replace.NewFid;
    457  1.27.2.1  jdolecek 	      vcache_rekey_exit(CTOV(cp)->v_mount, CTOV(cp),
    458  1.27.2.1  jdolecek 		  &out->coda_replace.OldFid, sizeof(CodaFid),
    459  1.27.2.1  jdolecek 		  &cp->c_fid, sizeof(CodaFid));
    460       1.3       rvb 
    461      1.15  drochner 	      CODADEBUG(CODA_REPLACE, myprintf((
    462      1.15  drochner 			"replace: oldfid = %s, newfid = %s, cp = %p\n",
    463      1.15  drochner 			coda_f2s(&out->coda_replace.OldFid),
    464      1.15  drochner 			coda_f2s(&cp->c_fid), cp));)
    465  1.27.2.1  jdolecek 	      mutex_exit(&cp->c_lock);
    466       1.1       rvb 	      vrele(CTOV(cp));
    467       1.1       rvb 	  }
    468       1.1       rvb 	  return (0);
    469       1.1       rvb       }
    470       1.1       rvb       default:
    471       1.1       rvb       	myprintf(("handleDownCall: unknown opcode %d\n", opcode));
    472       1.1       rvb 	return (EINVAL);
    473       1.1       rvb     }
    474       1.1       rvb }
    475       1.1       rvb 
    476       1.3       rvb /* coda_grab_vnode: lives in either cfs_mach.c or cfs_nbsd.c */
    477       1.1       rvb 
    478       1.1       rvb int
    479      1.22  christos coda_vmflush(struct cnode *cp)
    480       1.1       rvb {
    481       1.1       rvb     return 0;
    482       1.1       rvb }
    483       1.1       rvb 
    484       1.1       rvb 
    485      1.17     perry /*
    486       1.1       rvb  * kernel-internal debugging switches
    487       1.1       rvb  */
    488       1.1       rvb 
    489       1.3       rvb void coda_debugon(void)
    490       1.1       rvb {
    491       1.3       rvb     codadebug = -1;
    492       1.3       rvb     coda_nc_debug = -1;
    493       1.3       rvb     coda_vnop_print_entry = 1;
    494       1.3       rvb     coda_psdev_print_entry = 1;
    495       1.3       rvb     coda_vfsop_print_entry = 1;
    496       1.3       rvb }
    497       1.3       rvb 
    498       1.3       rvb void coda_debugoff(void)
    499       1.3       rvb {
    500       1.3       rvb     codadebug = 0;
    501       1.3       rvb     coda_nc_debug = 0;
    502       1.3       rvb     coda_vnop_print_entry = 0;
    503       1.3       rvb     coda_psdev_print_entry = 0;
    504       1.3       rvb     coda_vfsop_print_entry = 0;
    505       1.1       rvb }
    506       1.1       rvb 
    507      1.27  christos /* How to print a ucred */
    508      1.27  christos void
    509      1.27  christos coda_print_cred(kauth_cred_t cred)
    510      1.27  christos {
    511      1.27  christos 
    512      1.27  christos 	uint16_t ngroups;
    513      1.27  christos 	int i;
    514      1.27  christos 
    515      1.27  christos 	myprintf(("ref %d\tuid %d\n", kauth_cred_getrefcnt(cred),
    516      1.27  christos 		 kauth_cred_geteuid(cred)));
    517      1.27  christos 
    518      1.27  christos 	ngroups = kauth_cred_ngroups(cred);
    519      1.27  christos 	for (i=0; i < ngroups; i++)
    520      1.27  christos 		myprintf(("\tgroup %d: (%d)\n", i, kauth_cred_group(cred, i)));
    521      1.27  christos 	myprintf(("\n"));
    522      1.27  christos 
    523      1.27  christos }
    524      1.27  christos 
    525       1.1       rvb /*
    526       1.1       rvb  * Utilities used by both client and server
    527       1.1       rvb  * Standard levels:
    528       1.1       rvb  * 0) no debugging
    529       1.1       rvb  * 1) hard failures
    530       1.1       rvb  * 2) soft failures
    531       1.1       rvb  * 3) current test software
    532       1.1       rvb  * 4) main procedure entry points
    533       1.1       rvb  * 5) main procedure exit points
    534       1.1       rvb  * 6) utility procedure entry points
    535       1.1       rvb  * 7) utility procedure exit points
    536       1.1       rvb  * 8) obscure procedure entry points
    537       1.1       rvb  * 9) obscure procedure exit points
    538       1.1       rvb  * 10) random stuff
    539       1.1       rvb  * 11) all <= 1
    540       1.1       rvb  * 12) all <= 2
    541       1.1       rvb  * 13) all <= 3
    542       1.1       rvb  * ...
    543       1.1       rvb  */
    544