Home | History | Annotate | Line # | Download | only in coda
coda_vnops.c revision 1.23.2.10
      1        1.1       rvb /*
      2        1.3       rvb coda_create/vn_open
      3        1.2       rvb remove/unlink
      4        1.2       rvb link
      5        1.2       rvb mkdir
      6        1.2       rvb rmdir
      7        1.2       rvb symlink
      8        1.1       rvb */
      9  1.23.2.10   thorpej /*	$NetBSD: coda_vnops.c,v 1.23.2.10 2003/01/07 21:27:38 thorpej Exp $	*/
     10        1.1       rvb 
     11        1.2       rvb /*
     12        1.2       rvb  *
     13        1.2       rvb  *             Coda: an Experimental Distributed File System
     14        1.2       rvb  *                              Release 3.1
     15        1.2       rvb  *
     16        1.2       rvb  *           Copyright (c) 1987-1998 Carnegie Mellon University
     17        1.2       rvb  *                          All Rights Reserved
     18        1.2       rvb  *
     19        1.2       rvb  * Permission  to  use, copy, modify and distribute this software and its
     20        1.2       rvb  * documentation is hereby granted,  provided  that  both  the  copyright
     21        1.2       rvb  * notice  and  this  permission  notice  appear  in  all  copies  of the
     22        1.2       rvb  * software, derivative works or  modified  versions,  and  any  portions
     23        1.2       rvb  * thereof, and that both notices appear in supporting documentation, and
     24        1.2       rvb  * that credit is given to Carnegie Mellon University  in  all  documents
     25        1.2       rvb  * and publicity pertaining to direct or indirect use of this code or its
     26        1.2       rvb  * derivatives.
     27        1.2       rvb  *
     28        1.2       rvb  * CODA IS AN EXPERIMENTAL SOFTWARE SYSTEM AND IS  KNOWN  TO  HAVE  BUGS,
     29        1.2       rvb  * SOME  OF  WHICH MAY HAVE SERIOUS CONSEQUENCES.  CARNEGIE MELLON ALLOWS
     30        1.2       rvb  * FREE USE OF THIS SOFTWARE IN ITS "AS IS" CONDITION.   CARNEGIE  MELLON
     31        1.2       rvb  * DISCLAIMS  ANY  LIABILITY  OF  ANY  KIND  FOR  ANY  DAMAGES WHATSOEVER
     32        1.2       rvb  * RESULTING DIRECTLY OR INDIRECTLY FROM THE USE OF THIS SOFTWARE  OR  OF
     33        1.2       rvb  * ANY DERIVATIVE WORK.
     34        1.2       rvb  *
     35        1.2       rvb  * Carnegie  Mellon  encourages  users  of  this  software  to return any
     36        1.2       rvb  * improvements or extensions that  they  make,  and  to  grant  Carnegie
     37        1.2       rvb  * Mellon the rights to redistribute these changes without encumbrance.
     38        1.2       rvb  *
     39        1.4       rvb  * 	@(#) coda/coda_vnops.c,v 1.1.1.1 1998/08/29 21:26:46 rvb Exp $
     40        1.2       rvb  */
     41        1.1       rvb 
     42        1.1       rvb /*
     43        1.1       rvb  * Mach Operating System
     44        1.1       rvb  * Copyright (c) 1990 Carnegie-Mellon University
     45        1.1       rvb  * Copyright (c) 1989 Carnegie-Mellon University
     46        1.1       rvb  * All rights reserved.  The CMU software License Agreement specifies
     47        1.1       rvb  * the terms and conditions for use and redistribution.
     48        1.1       rvb  */
     49        1.1       rvb 
     50        1.1       rvb /*
     51        1.1       rvb  * This code was written for the Coda file system at Carnegie Mellon
     52        1.1       rvb  * University.  Contributers include David Steere, James Kistler, and
     53        1.1       rvb  * M. Satyanarayanan.
     54        1.1       rvb  */
     55   1.23.2.5   nathanw 
     56   1.23.2.5   nathanw #include <sys/cdefs.h>
     57  1.23.2.10   thorpej __KERNEL_RCSID(0, "$NetBSD: coda_vnops.c,v 1.23.2.10 2003/01/07 21:27:38 thorpej Exp $");
     58        1.1       rvb 
     59        1.1       rvb #include <sys/param.h>
     60        1.1       rvb #include <sys/systm.h>
     61        1.1       rvb #include <sys/malloc.h>
     62        1.1       rvb #include <sys/errno.h>
     63        1.1       rvb #include <sys/acct.h>
     64        1.1       rvb #include <sys/file.h>
     65        1.1       rvb #include <sys/uio.h>
     66        1.1       rvb #include <sys/namei.h>
     67        1.1       rvb #include <sys/ioctl.h>
     68        1.1       rvb #include <sys/mount.h>
     69        1.1       rvb #include <sys/proc.h>
     70        1.1       rvb #include <sys/select.h>
     71        1.1       rvb #include <sys/user.h>
     72        1.1       rvb #include <miscfs/genfs/genfs.h>
     73        1.1       rvb 
     74        1.4       rvb #include <coda/coda.h>
     75        1.4       rvb #include <coda/cnode.h>
     76        1.4       rvb #include <coda/coda_vnops.h>
     77        1.4       rvb #include <coda/coda_venus.h>
     78        1.4       rvb #include <coda/coda_opstats.h>
     79        1.4       rvb #include <coda/coda_subr.h>
     80        1.4       rvb #include <coda/coda_namecache.h>
     81        1.4       rvb #include <coda/coda_pioctl.h>
     82        1.1       rvb 
     83        1.1       rvb /*
     84        1.1       rvb  * These flags select various performance enhancements.
     85        1.1       rvb  */
     86        1.3       rvb int coda_attr_cache  = 1;       /* Set to cache attributes in the kernel */
     87        1.3       rvb int coda_symlink_cache = 1;     /* Set to cache symbolic link information */
     88        1.3       rvb int coda_access_cache = 1;      /* Set to handle some access checks directly */
     89        1.1       rvb 
     90        1.1       rvb /* structure to keep track of vfs calls */
     91        1.1       rvb 
     92        1.3       rvb struct coda_op_stats coda_vnodeopstats[CODA_VNODEOPS_SIZE];
     93        1.1       rvb 
     94        1.3       rvb #define MARK_ENTRY(op) (coda_vnodeopstats[op].entries++)
     95        1.3       rvb #define MARK_INT_SAT(op) (coda_vnodeopstats[op].sat_intrn++)
     96        1.3       rvb #define MARK_INT_FAIL(op) (coda_vnodeopstats[op].unsat_intrn++)
     97        1.3       rvb #define MARK_INT_GEN(op) (coda_vnodeopstats[op].gen_intrn++)
     98        1.1       rvb 
     99        1.1       rvb /* What we are delaying for in printf */
    100        1.3       rvb int coda_printf_delay = 0;  /* in microseconds */
    101        1.3       rvb int coda_vnop_print_entry = 0;
    102        1.3       rvb static int coda_lockdebug = 0;
    103        1.1       rvb 
    104        1.1       rvb /* Definition of the vfs operation vector */
    105        1.1       rvb 
    106        1.1       rvb /*
    107        1.1       rvb  * Some NetBSD details:
    108        1.1       rvb  *
    109        1.3       rvb  *   coda_start is called at the end of the mount syscall.
    110        1.3       rvb  *   coda_init is called at boot time.
    111        1.1       rvb  */
    112        1.1       rvb 
    113   1.23.2.6   nathanw #define ENTRY if(coda_vnop_print_entry) myprintf(("Entered %s\n",__func__))
    114        1.1       rvb 
    115        1.1       rvb /* Definition of the vnode operation vector */
    116        1.1       rvb 
    117       1.23  jdolecek const struct vnodeopv_entry_desc coda_vnodeop_entries[] = {
    118        1.3       rvb     { &vop_default_desc, coda_vop_error },
    119        1.3       rvb     { &vop_lookup_desc, coda_lookup },		/* lookup */
    120        1.3       rvb     { &vop_create_desc, coda_create },		/* create */
    121        1.5       rvb     { &vop_mknod_desc, coda_vop_error },	/* mknod */
    122        1.3       rvb     { &vop_open_desc, coda_open },		/* open */
    123        1.3       rvb     { &vop_close_desc, coda_close },		/* close */
    124        1.3       rvb     { &vop_access_desc, coda_access },		/* access */
    125        1.5       rvb     { &vop_getattr_desc, coda_getattr },	/* getattr */
    126        1.5       rvb     { &vop_setattr_desc, coda_setattr },	/* setattr */
    127        1.3       rvb     { &vop_read_desc, coda_read },		/* read */
    128        1.3       rvb     { &vop_write_desc, coda_write },		/* write */
    129       1.11  wrstuden     { &vop_fcntl_desc, genfs_fcntl },		/* fcntl */
    130        1.3       rvb     { &vop_ioctl_desc, coda_ioctl },		/* ioctl */
    131        1.3       rvb /* 1.3    { &vop_select_desc, coda_select },	select */
    132   1.23.2.2   nathanw     { &vop_mmap_desc, genfs_mmap },		/* mmap */
    133        1.3       rvb     { &vop_fsync_desc, coda_fsync },		/* fsync */
    134        1.3       rvb     { &vop_remove_desc, coda_remove },		/* remove */
    135        1.3       rvb     { &vop_link_desc, coda_link },		/* link */
    136        1.3       rvb     { &vop_rename_desc, coda_rename },		/* rename */
    137        1.3       rvb     { &vop_mkdir_desc, coda_mkdir },		/* mkdir */
    138        1.3       rvb     { &vop_rmdir_desc, coda_rmdir },		/* rmdir */
    139        1.5       rvb     { &vop_symlink_desc, coda_symlink },	/* symlink */
    140        1.5       rvb     { &vop_readdir_desc, coda_readdir },	/* readdir */
    141        1.3       rvb     { &vop_readlink_desc, coda_readlink },	/* readlink */
    142        1.5       rvb     { &vop_abortop_desc, coda_abortop },	/* abortop */
    143        1.3       rvb     { &vop_inactive_desc, coda_inactive },	/* inactive */
    144        1.5       rvb     { &vop_reclaim_desc, coda_reclaim },	/* reclaim */
    145        1.3       rvb     { &vop_lock_desc, coda_lock },		/* lock */
    146        1.3       rvb     { &vop_unlock_desc, coda_unlock },		/* unlock */
    147        1.3       rvb     { &vop_bmap_desc, coda_bmap },		/* bmap */
    148        1.3       rvb     { &vop_strategy_desc, coda_strategy },	/* strategy */
    149        1.5       rvb     { &vop_print_desc, coda_vop_error },	/* print */
    150        1.3       rvb     { &vop_islocked_desc, coda_islocked },	/* islocked */
    151        1.3       rvb     { &vop_pathconf_desc, coda_vop_error },	/* pathconf */
    152        1.5       rvb     { &vop_advlock_desc, coda_vop_nop },	/* advlock */
    153        1.3       rvb     { &vop_bwrite_desc, coda_vop_error },	/* bwrite */
    154        1.3       rvb     { &vop_lease_desc, coda_vop_nop },		/* lease */
    155        1.3       rvb     { &vop_blkatoff_desc, coda_vop_error },	/* blkatoff */
    156        1.3       rvb     { &vop_valloc_desc, coda_vop_error },	/* valloc */
    157        1.5       rvb     { &vop_vfree_desc, coda_vop_error },	/* vfree */
    158        1.3       rvb     { &vop_truncate_desc, coda_vop_error },	/* truncate */
    159        1.3       rvb     { &vop_update_desc, coda_vop_error },	/* update */
    160        1.1       rvb     { &vop_seek_desc, genfs_seek },		/* seek */
    161        1.5       rvb     { &vop_poll_desc, genfs_poll },		/* poll */
    162   1.23.2.3   nathanw     { &vop_getpages_desc, coda_getpages },	/* getpages */
    163   1.23.2.3   nathanw     { &vop_putpages_desc, coda_putpages },	/* putpages */
    164   1.23.2.2   nathanw     { NULL, NULL }
    165        1.1       rvb };
    166        1.1       rvb 
    167       1.23  jdolecek const struct vnodeopv_desc coda_vnodeop_opv_desc =
    168        1.3       rvb         { &coda_vnodeop_p, coda_vnodeop_entries };
    169        1.1       rvb 
    170        1.1       rvb /* Definitions of NetBSD vnodeop interfaces */
    171        1.1       rvb 
    172        1.1       rvb /* A generic panic: we were called with something we didn't define yet */
    173        1.1       rvb int
    174        1.3       rvb coda_vop_error(void *anon) {
    175        1.1       rvb     struct vnodeop_desc **desc = (struct vnodeop_desc **)anon;
    176        1.1       rvb 
    177        1.9       rvb     myprintf(("coda_vop_error: Vnode operation %s called, but not defined.\n",
    178        1.1       rvb 	      (*desc)->vdesc_name));
    179        1.9       rvb     /*
    180        1.3       rvb     panic("coda_nbsd_vop_error");
    181        1.1       rvb     return 0;
    182        1.9       rvb     */
    183        1.9       rvb     return EIO;
    184        1.1       rvb }
    185        1.1       rvb 
    186        1.1       rvb /* A generic do-nothing.  For lease_check, advlock */
    187        1.1       rvb int
    188        1.3       rvb coda_vop_nop(void *anon) {
    189        1.1       rvb     struct vnodeop_desc **desc = (struct vnodeop_desc **)anon;
    190        1.1       rvb 
    191        1.3       rvb     if (codadebug) {
    192        1.1       rvb 	myprintf(("Vnode operation %s called, but unsupported\n",
    193        1.1       rvb 		  (*desc)->vdesc_name));
    194        1.1       rvb     }
    195        1.1       rvb    return (0);
    196        1.1       rvb }
    197        1.1       rvb 
    198        1.1       rvb int
    199        1.3       rvb coda_vnodeopstats_init(void)
    200        1.1       rvb {
    201       1.17  augustss 	int i;
    202        1.1       rvb 
    203        1.3       rvb 	for(i=0;i<CODA_VNODEOPS_SIZE;i++) {
    204        1.3       rvb 		coda_vnodeopstats[i].opcode = i;
    205        1.3       rvb 		coda_vnodeopstats[i].entries = 0;
    206        1.3       rvb 		coda_vnodeopstats[i].sat_intrn = 0;
    207        1.3       rvb 		coda_vnodeopstats[i].unsat_intrn = 0;
    208        1.3       rvb 		coda_vnodeopstats[i].gen_intrn = 0;
    209        1.1       rvb 	}
    210        1.1       rvb 
    211        1.1       rvb 	return 0;
    212        1.1       rvb }
    213        1.1       rvb 
    214        1.1       rvb /*
    215        1.3       rvb  * coda_open calls Venus to return the device, inode pair of the cache
    216        1.3       rvb  * file holding the data. Using iget, coda_open finds the vnode of the
    217        1.1       rvb  * cache file, and then opens it.
    218        1.1       rvb  */
    219        1.1       rvb int
    220        1.3       rvb coda_open(v)
    221        1.1       rvb     void *v;
    222        1.1       rvb {
    223        1.1       rvb     /*
    224        1.1       rvb      * NetBSD can pass the O_EXCL flag in mode, even though the check
    225        1.1       rvb      * has already happened.  Venus defensively assumes that if open
    226        1.1       rvb      * is passed the EXCL, it must be a bug.  We strip the flag here.
    227        1.1       rvb      */
    228        1.1       rvb /* true args */
    229        1.1       rvb     struct vop_open_args *ap = v;
    230       1.17  augustss     struct vnode **vpp = &(ap->a_vp);
    231        1.1       rvb     struct cnode *cp = VTOC(*vpp);
    232        1.1       rvb     int flag = ap->a_mode & (~O_EXCL);
    233        1.1       rvb     struct ucred *cred = ap->a_cred;
    234        1.1       rvb     struct proc *p = ap->a_p;
    235        1.1       rvb /* locals */
    236        1.1       rvb     int error;
    237        1.1       rvb     struct vnode *vp;
    238        1.1       rvb     dev_t dev;
    239        1.1       rvb     ino_t inode;
    240        1.1       rvb 
    241        1.3       rvb     MARK_ENTRY(CODA_OPEN_STATS);
    242        1.1       rvb 
    243        1.1       rvb     /* Check for open of control file. */
    244        1.1       rvb     if (IS_CTL_VP(*vpp)) {
    245        1.1       rvb 	/* XXX */
    246  1.23.2.10   thorpej 	/* if (WRITABLE(flag)) */
    247        1.1       rvb 	if (flag & (FWRITE | O_TRUNC | O_CREAT | O_EXCL)) {
    248        1.3       rvb 	    MARK_INT_FAIL(CODA_OPEN_STATS);
    249        1.1       rvb 	    return(EACCES);
    250        1.1       rvb 	}
    251        1.3       rvb 	MARK_INT_SAT(CODA_OPEN_STATS);
    252        1.1       rvb 	return(0);
    253        1.1       rvb     }
    254        1.1       rvb 
    255        1.1       rvb     error = venus_open(vtomi((*vpp)), &cp->c_fid, flag, cred, p, &dev, &inode);
    256        1.1       rvb     if (error)
    257        1.1       rvb 	return (error);
    258        1.1       rvb     if (!error) {
    259        1.3       rvb 	CODADEBUG( CODA_OPEN,myprintf(("open: dev %d inode %d result %d\n",
    260        1.1       rvb 				  dev, inode, error)); )
    261        1.1       rvb     }
    262        1.1       rvb 
    263        1.1       rvb     /* Translate the <device, inode> pair for the cache file into
    264        1.1       rvb        an inode pointer. */
    265        1.3       rvb     error = coda_grab_vnode(dev, inode, &vp);
    266        1.1       rvb     if (error)
    267        1.1       rvb 	return (error);
    268        1.1       rvb 
    269        1.1       rvb     /* We get the vnode back locked in both Mach and NetBSD.  Needs unlocked */
    270        1.2       rvb     VOP_UNLOCK(vp, 0);
    271        1.1       rvb     /* Keep a reference until the close comes in. */
    272        1.1       rvb     vref(*vpp);
    273        1.1       rvb 
    274        1.1       rvb     /* Save the vnode pointer for the cache file. */
    275        1.1       rvb     if (cp->c_ovp == NULL) {
    276        1.1       rvb 	cp->c_ovp = vp;
    277        1.1       rvb     } else {
    278        1.1       rvb 	if (cp->c_ovp != vp)
    279        1.3       rvb 	    panic("coda_open:  cp->c_ovp != ITOV(ip)");
    280        1.1       rvb     }
    281        1.1       rvb     cp->c_ocount++;
    282        1.1       rvb 
    283        1.1       rvb     /* Flush the attribute cached if writing the file. */
    284        1.1       rvb     if (flag & FWRITE) {
    285        1.1       rvb 	cp->c_owrite++;
    286        1.1       rvb 	cp->c_flags &= ~C_VATTR;
    287        1.1       rvb     }
    288        1.1       rvb 
    289        1.1       rvb     /* Save the <device, inode> pair for the cache file to speed
    290        1.1       rvb        up subsequent page_read's. */
    291        1.1       rvb     cp->c_device = dev;
    292        1.1       rvb     cp->c_inode = inode;
    293        1.1       rvb 
    294        1.1       rvb     /* Open the cache file. */
    295        1.1       rvb     error = VOP_OPEN(vp, flag, cred, p);
    296        1.1       rvb     return(error);
    297        1.1       rvb }
    298        1.1       rvb 
    299        1.1       rvb /*
    300        1.1       rvb  * Close the cache file used for I/O and notify Venus.
    301        1.1       rvb  */
    302        1.1       rvb int
    303        1.3       rvb coda_close(v)
    304        1.1       rvb     void *v;
    305        1.1       rvb {
    306        1.1       rvb /* true args */
    307        1.1       rvb     struct vop_close_args *ap = v;
    308        1.1       rvb     struct vnode *vp = ap->a_vp;
    309        1.1       rvb     struct cnode *cp = VTOC(vp);
    310        1.1       rvb     int flag = ap->a_fflag;
    311        1.1       rvb     struct ucred *cred = ap->a_cred;
    312        1.1       rvb     struct proc *p = ap->a_p;
    313        1.1       rvb /* locals */
    314        1.1       rvb     int error;
    315        1.1       rvb 
    316        1.3       rvb     MARK_ENTRY(CODA_CLOSE_STATS);
    317        1.1       rvb 
    318        1.1       rvb     /* Check for close of control file. */
    319        1.1       rvb     if (IS_CTL_VP(vp)) {
    320        1.3       rvb 	MARK_INT_SAT(CODA_CLOSE_STATS);
    321        1.1       rvb 	return(0);
    322        1.1       rvb     }
    323        1.1       rvb 
    324        1.1       rvb     if (IS_UNMOUNTING(cp)) {
    325        1.1       rvb 	if (cp->c_ovp) {
    326        1.7       rvb #ifdef	CODA_VERBOSE
    327        1.3       rvb 	    printf("coda_close: destroying container ref %d, ufs vp %p of vp %p/cp %p\n",
    328        1.1       rvb 		    vp->v_usecount, cp->c_ovp, vp, cp);
    329        1.5       rvb #endif
    330        1.8       rvb #ifdef	hmm
    331        1.1       rvb 	    vgone(cp->c_ovp);
    332        1.8       rvb #else
    333       1.14  wrstuden 	    vn_lock(cp->c_ovp, LK_EXCLUSIVE | LK_RETRY);
    334        1.8       rvb 	    VOP_CLOSE(cp->c_ovp, flag, cred, p); /* Do errors matter here? */
    335       1.14  wrstuden 	    vput(cp->c_ovp);
    336        1.8       rvb #endif
    337        1.1       rvb 	} else {
    338        1.7       rvb #ifdef	CODA_VERBOSE
    339        1.3       rvb 	    printf("coda_close: NO container vp %p/cp %p\n", vp, cp);
    340        1.5       rvb #endif
    341        1.1       rvb 	}
    342        1.1       rvb 	return ENODEV;
    343        1.1       rvb     } else {
    344       1.14  wrstuden 	vn_lock(cp->c_ovp, LK_EXCLUSIVE | LK_RETRY);
    345        1.1       rvb 	VOP_CLOSE(cp->c_ovp, flag, cred, p); /* Do errors matter here? */
    346       1.14  wrstuden 	vput(cp->c_ovp);
    347        1.1       rvb     }
    348        1.1       rvb 
    349        1.1       rvb     if (--cp->c_ocount == 0)
    350        1.1       rvb 	cp->c_ovp = NULL;
    351        1.1       rvb 
    352        1.1       rvb     if (flag & FWRITE)                    /* file was opened for write */
    353        1.1       rvb 	--cp->c_owrite;
    354        1.1       rvb 
    355        1.1       rvb     error = venus_close(vtomi(vp), &cp->c_fid, flag, cred, p);
    356        1.1       rvb     vrele(CTOV(cp));
    357        1.1       rvb 
    358        1.3       rvb     CODADEBUG(CODA_CLOSE, myprintf(("close: result %d\n",error)); )
    359        1.1       rvb     return(error);
    360        1.1       rvb }
    361        1.1       rvb 
    362        1.1       rvb int
    363        1.3       rvb coda_read(v)
    364        1.1       rvb     void *v;
    365        1.1       rvb {
    366        1.1       rvb     struct vop_read_args *ap = v;
    367        1.1       rvb 
    368        1.1       rvb     ENTRY;
    369        1.3       rvb     return(coda_rdwr(ap->a_vp, ap->a_uio, UIO_READ,
    370        1.1       rvb 		    ap->a_ioflag, ap->a_cred, ap->a_uio->uio_procp));
    371        1.1       rvb }
    372        1.1       rvb 
    373        1.1       rvb int
    374        1.3       rvb coda_write(v)
    375        1.1       rvb     void *v;
    376        1.1       rvb {
    377        1.1       rvb     struct vop_write_args *ap = v;
    378        1.1       rvb 
    379        1.1       rvb     ENTRY;
    380        1.3       rvb     return(coda_rdwr(ap->a_vp, ap->a_uio, UIO_WRITE,
    381        1.1       rvb 		    ap->a_ioflag, ap->a_cred, ap->a_uio->uio_procp));
    382        1.1       rvb }
    383        1.1       rvb 
    384        1.1       rvb int
    385        1.3       rvb coda_rdwr(vp, uiop, rw, ioflag, cred, p)
    386        1.1       rvb     struct vnode *vp;
    387        1.1       rvb     struct uio *uiop;
    388        1.1       rvb     enum uio_rw rw;
    389        1.1       rvb     int ioflag;
    390        1.1       rvb     struct ucred *cred;
    391        1.1       rvb     struct proc *p;
    392        1.1       rvb {
    393        1.1       rvb /* upcall decl */
    394        1.1       rvb   /* NOTE: container file operation!!! */
    395        1.1       rvb /* locals */
    396        1.1       rvb     struct cnode *cp = VTOC(vp);
    397        1.1       rvb     struct vnode *cfvp = cp->c_ovp;
    398        1.1       rvb     int igot_internally = 0;
    399        1.1       rvb     int opened_internally = 0;
    400        1.1       rvb     int error = 0;
    401        1.1       rvb 
    402        1.3       rvb     MARK_ENTRY(CODA_RDWR_STATS);
    403        1.1       rvb 
    404       1.12      matt     CODADEBUG(CODA_RDWR, myprintf(("coda_rdwr(%d, %p, %lu, %lld, %d)\n", rw,
    405       1.12      matt 			      uiop->uio_iov->iov_base,
    406       1.12      matt 			      (unsigned long) uiop->uio_resid,
    407       1.12      matt 			      (long long) uiop->uio_offset, uiop->uio_segflg)); )
    408        1.1       rvb 
    409        1.1       rvb     /* Check for rdwr of control object. */
    410        1.1       rvb     if (IS_CTL_VP(vp)) {
    411        1.3       rvb 	MARK_INT_FAIL(CODA_RDWR_STATS);
    412        1.1       rvb 	return(EINVAL);
    413        1.1       rvb     }
    414        1.1       rvb 
    415        1.1       rvb     /* Redirect the request to UFS. */
    416        1.1       rvb 
    417        1.1       rvb     /*
    418        1.1       rvb      * If file is not already open this must be a page
    419        1.1       rvb      * {read,write} request.  Iget the cache file's inode
    420        1.1       rvb      * pointer if we still have its <device, inode> pair.
    421        1.1       rvb      * Otherwise, we must do an internal open to derive the
    422        1.1       rvb      * pair.
    423        1.1       rvb      */
    424        1.1       rvb     if (cfvp == NULL) {
    425        1.1       rvb 	/*
    426        1.1       rvb 	 * If we're dumping core, do the internal open. Otherwise
    427        1.1       rvb 	 * venus won't have the correct size of the core when
    428        1.1       rvb 	 * it's completely written.
    429        1.1       rvb 	 */
    430        1.1       rvb 	if (cp->c_inode != 0 && !(p && (p->p_acflag & ACORE))) {
    431        1.1       rvb 	    igot_internally = 1;
    432        1.3       rvb 	    error = coda_grab_vnode(cp->c_device, cp->c_inode, &cfvp);
    433        1.1       rvb 	    if (error) {
    434        1.3       rvb 		MARK_INT_FAIL(CODA_RDWR_STATS);
    435        1.1       rvb 		return(error);
    436        1.1       rvb 	    }
    437        1.1       rvb 	    /*
    438        1.1       rvb 	     * We get the vnode back locked in both Mach and
    439        1.1       rvb 	     * NetBSD.  Needs unlocked
    440        1.1       rvb 	     */
    441        1.2       rvb 	    VOP_UNLOCK(cfvp, 0);
    442        1.1       rvb 	}
    443        1.1       rvb 	else {
    444        1.1       rvb 	    opened_internally = 1;
    445        1.3       rvb 	    MARK_INT_GEN(CODA_OPEN_STATS);
    446        1.1       rvb 	    error = VOP_OPEN(vp, (rw == UIO_READ ? FREAD : FWRITE),
    447        1.1       rvb 			     cred, p);
    448       1.18      phil #ifdef	CODA_VERBOSE
    449        1.3       rvb printf("coda_rdwr: Internally Opening %p\n", vp);
    450       1.18      phil #endif
    451        1.1       rvb 	    if (error) {
    452        1.3       rvb 		MARK_INT_FAIL(CODA_RDWR_STATS);
    453        1.1       rvb 		return(error);
    454        1.1       rvb 	    }
    455        1.1       rvb 	    cfvp = cp->c_ovp;
    456        1.1       rvb 	}
    457        1.1       rvb     }
    458        1.1       rvb 
    459        1.1       rvb     /* Have UFS handle the call. */
    460       1.22       chs     CODADEBUG(CODA_RDWR, myprintf(("indirect rdwr: fid = (%lx.%lx.%lx), refcnt = %d\n",
    461        1.1       rvb 			      cp->c_fid.Volume, cp->c_fid.Vnode,
    462        1.1       rvb 			      cp->c_fid.Unique, CTOV(cp)->v_usecount)); )
    463        1.1       rvb 
    464        1.1       rvb     if (rw == UIO_READ) {
    465        1.1       rvb 	error = VOP_READ(cfvp, uiop, ioflag, cred);
    466        1.1       rvb     } else {
    467        1.1       rvb 	error = VOP_WRITE(cfvp, uiop, ioflag, cred);
    468        1.1       rvb     }
    469        1.1       rvb 
    470        1.1       rvb     if (error)
    471        1.3       rvb 	MARK_INT_FAIL(CODA_RDWR_STATS);
    472        1.1       rvb     else
    473        1.3       rvb 	MARK_INT_SAT(CODA_RDWR_STATS);
    474        1.1       rvb 
    475        1.1       rvb     /* Do an internal close if necessary. */
    476        1.1       rvb     if (opened_internally) {
    477        1.3       rvb 	MARK_INT_GEN(CODA_CLOSE_STATS);
    478        1.1       rvb 	(void)VOP_CLOSE(vp, (rw == UIO_READ ? FREAD : FWRITE), cred, p);
    479        1.1       rvb     }
    480        1.1       rvb 
    481        1.1       rvb     /* Invalidate cached attributes if writing. */
    482        1.1       rvb     if (rw == UIO_WRITE)
    483        1.1       rvb 	cp->c_flags &= ~C_VATTR;
    484        1.1       rvb     return(error);
    485        1.1       rvb }
    486        1.1       rvb 
    487        1.1       rvb int
    488        1.3       rvb coda_ioctl(v)
    489        1.1       rvb     void *v;
    490        1.1       rvb {
    491        1.1       rvb /* true args */
    492        1.1       rvb     struct vop_ioctl_args *ap = v;
    493        1.1       rvb     struct vnode *vp = ap->a_vp;
    494        1.1       rvb     int com = ap->a_command;
    495        1.1       rvb     caddr_t data = ap->a_data;
    496        1.1       rvb     int flag = ap->a_fflag;
    497        1.1       rvb     struct ucred *cred = ap->a_cred;
    498        1.1       rvb     struct proc  *p = ap->a_p;
    499        1.1       rvb /* locals */
    500        1.1       rvb     int error;
    501        1.1       rvb     struct vnode *tvp;
    502        1.1       rvb     struct nameidata ndp;
    503        1.1       rvb     struct PioctlData *iap = (struct PioctlData *)data;
    504        1.1       rvb 
    505        1.3       rvb     MARK_ENTRY(CODA_IOCTL_STATS);
    506        1.1       rvb 
    507        1.3       rvb     CODADEBUG(CODA_IOCTL, myprintf(("in coda_ioctl on %s\n", iap->path));)
    508        1.1       rvb 
    509        1.1       rvb     /* Don't check for operation on a dying object, for ctlvp it
    510        1.1       rvb        shouldn't matter */
    511        1.1       rvb 
    512        1.1       rvb     /* Must be control object to succeed. */
    513        1.1       rvb     if (!IS_CTL_VP(vp)) {
    514        1.3       rvb 	MARK_INT_FAIL(CODA_IOCTL_STATS);
    515        1.3       rvb 	CODADEBUG(CODA_IOCTL, myprintf(("coda_ioctl error: vp != ctlvp"));)
    516        1.1       rvb 	    return (EOPNOTSUPP);
    517        1.1       rvb     }
    518        1.1       rvb     /* Look up the pathname. */
    519        1.1       rvb 
    520        1.1       rvb     /* Should we use the name cache here? It would get it from
    521        1.1       rvb        lookupname sooner or later anyway, right? */
    522        1.1       rvb 
    523        1.1       rvb     NDINIT(&ndp, LOOKUP, (iap->follow ? FOLLOW : NOFOLLOW), UIO_USERSPACE, ((caddr_t)iap->path), p);
    524        1.1       rvb     error = namei(&ndp);
    525        1.1       rvb     tvp = ndp.ni_vp;
    526        1.1       rvb 
    527        1.1       rvb     if (error) {
    528        1.3       rvb 	MARK_INT_FAIL(CODA_IOCTL_STATS);
    529        1.3       rvb 	CODADEBUG(CODA_IOCTL, myprintf(("coda_ioctl error: lookup returns %d\n",
    530        1.1       rvb 				   error));)
    531        1.1       rvb 	return(error);
    532        1.1       rvb     }
    533        1.1       rvb 
    534        1.1       rvb     /*
    535        1.1       rvb      * Make sure this is a coda style cnode, but it may be a
    536        1.1       rvb      * different vfsp
    537        1.1       rvb      */
    538        1.1       rvb     /* XXX: this totally violates the comment about vtagtype in vnode.h */
    539        1.3       rvb     if (tvp->v_tag != VT_CODA) {
    540        1.1       rvb 	vrele(tvp);
    541        1.3       rvb 	MARK_INT_FAIL(CODA_IOCTL_STATS);
    542        1.3       rvb 	CODADEBUG(CODA_IOCTL,
    543        1.3       rvb 		 myprintf(("coda_ioctl error: %s not a coda object\n",
    544        1.1       rvb 			iap->path));)
    545        1.1       rvb 	return(EINVAL);
    546        1.1       rvb     }
    547        1.1       rvb 
    548        1.1       rvb     if (iap->vi.in_size > VC_MAXDATASIZE) {
    549        1.1       rvb 	vrele(tvp);
    550        1.1       rvb 	return(EINVAL);
    551        1.1       rvb     }
    552        1.1       rvb     error = venus_ioctl(vtomi(tvp), &((VTOC(tvp))->c_fid), com, flag, data, cred, p);
    553        1.1       rvb 
    554        1.1       rvb     if (error)
    555        1.3       rvb 	MARK_INT_FAIL(CODA_IOCTL_STATS);
    556        1.1       rvb     else
    557        1.3       rvb 	CODADEBUG(CODA_IOCTL, myprintf(("Ioctl returns %d \n", error)); )
    558        1.1       rvb 
    559        1.1       rvb     vrele(tvp);
    560        1.1       rvb     return(error);
    561        1.1       rvb }
    562        1.1       rvb 
    563        1.1       rvb /*
    564        1.1       rvb  * To reduce the cost of a user-level venus;we cache attributes in
    565        1.1       rvb  * the kernel.  Each cnode has storage allocated for an attribute. If
    566        1.1       rvb  * c_vattr is valid, return a reference to it. Otherwise, get the
    567        1.1       rvb  * attributes from venus and store them in the cnode.  There is some
    568        1.1       rvb  * question if this method is a security leak. But I think that in
    569        1.1       rvb  * order to make this call, the user must have done a lookup and
    570        1.1       rvb  * opened the file, and therefore should already have access.
    571        1.1       rvb  */
    572        1.1       rvb int
    573        1.3       rvb coda_getattr(v)
    574        1.1       rvb     void *v;
    575        1.1       rvb {
    576        1.1       rvb /* true args */
    577        1.1       rvb     struct vop_getattr_args *ap = v;
    578        1.1       rvb     struct vnode *vp = ap->a_vp;
    579        1.1       rvb     struct cnode *cp = VTOC(vp);
    580        1.1       rvb     struct vattr *vap = ap->a_vap;
    581        1.1       rvb     struct ucred *cred = ap->a_cred;
    582        1.1       rvb     struct proc *p = ap->a_p;
    583        1.1       rvb /* locals */
    584        1.1       rvb     int error;
    585        1.1       rvb 
    586        1.3       rvb     MARK_ENTRY(CODA_GETATTR_STATS);
    587        1.1       rvb 
    588        1.1       rvb     /* Check for getattr of control object. */
    589        1.1       rvb     if (IS_CTL_VP(vp)) {
    590        1.3       rvb 	MARK_INT_FAIL(CODA_GETATTR_STATS);
    591        1.1       rvb 	return(ENOENT);
    592        1.1       rvb     }
    593        1.1       rvb 
    594        1.1       rvb     /* Check to see if the attributes have already been cached */
    595        1.1       rvb     if (VALID_VATTR(cp)) {
    596        1.3       rvb 	CODADEBUG(CODA_GETATTR, { myprintf(("attr cache hit: (%lx.%lx.%lx)\n",
    597        1.1       rvb 				       cp->c_fid.Volume,
    598        1.1       rvb 				       cp->c_fid.Vnode,
    599        1.1       rvb 				       cp->c_fid.Unique));});
    600        1.3       rvb 	CODADEBUG(CODA_GETATTR, if (!(codadebug & ~CODA_GETATTR))
    601        1.1       rvb 		 print_vattr(&cp->c_vattr); );
    602        1.1       rvb 
    603        1.1       rvb 	*vap = cp->c_vattr;
    604        1.3       rvb 	MARK_INT_SAT(CODA_GETATTR_STATS);
    605        1.1       rvb 	return(0);
    606        1.1       rvb     }
    607        1.1       rvb 
    608        1.1       rvb     error = venus_getattr(vtomi(vp), &cp->c_fid, cred, p, vap);
    609        1.1       rvb 
    610        1.1       rvb     if (!error) {
    611        1.3       rvb 	CODADEBUG(CODA_GETATTR, myprintf(("getattr miss (%lx.%lx.%lx): result %d\n",
    612        1.1       rvb 				     cp->c_fid.Volume,
    613        1.1       rvb 				     cp->c_fid.Vnode,
    614        1.1       rvb 				     cp->c_fid.Unique,
    615        1.1       rvb 				     error)); )
    616        1.1       rvb 
    617        1.3       rvb 	CODADEBUG(CODA_GETATTR, if (!(codadebug & ~CODA_GETATTR))
    618        1.1       rvb 		 print_vattr(vap);	);
    619        1.1       rvb 
    620        1.1       rvb 	/* If not open for write, store attributes in cnode */
    621        1.3       rvb 	if ((cp->c_owrite == 0) && (coda_attr_cache)) {
    622        1.1       rvb 	    cp->c_vattr = *vap;
    623        1.1       rvb 	    cp->c_flags |= C_VATTR;
    624        1.1       rvb 	}
    625        1.1       rvb 
    626        1.1       rvb     }
    627        1.1       rvb     return(error);
    628        1.1       rvb }
    629        1.1       rvb 
    630        1.1       rvb int
    631        1.3       rvb coda_setattr(v)
    632        1.1       rvb     void *v;
    633        1.1       rvb {
    634        1.1       rvb /* true args */
    635        1.1       rvb     struct vop_setattr_args *ap = v;
    636       1.17  augustss     struct vnode *vp = ap->a_vp;
    637        1.1       rvb     struct cnode *cp = VTOC(vp);
    638       1.17  augustss     struct vattr *vap = ap->a_vap;
    639        1.1       rvb     struct ucred *cred = ap->a_cred;
    640        1.1       rvb     struct proc *p = ap->a_p;
    641        1.1       rvb /* locals */
    642        1.1       rvb     int error;
    643        1.1       rvb 
    644        1.3       rvb     MARK_ENTRY(CODA_SETATTR_STATS);
    645        1.1       rvb 
    646        1.1       rvb     /* Check for setattr of control object. */
    647        1.1       rvb     if (IS_CTL_VP(vp)) {
    648        1.3       rvb 	MARK_INT_FAIL(CODA_SETATTR_STATS);
    649        1.1       rvb 	return(ENOENT);
    650        1.1       rvb     }
    651        1.1       rvb 
    652        1.3       rvb     if (codadebug & CODADBGMSK(CODA_SETATTR)) {
    653        1.1       rvb 	print_vattr(vap);
    654        1.1       rvb     }
    655        1.1       rvb     error = venus_setattr(vtomi(vp), &cp->c_fid, vap, cred, p);
    656        1.1       rvb 
    657        1.1       rvb     if (!error)
    658        1.1       rvb 	cp->c_flags &= ~C_VATTR;
    659        1.1       rvb 
    660        1.3       rvb     CODADEBUG(CODA_SETATTR,	myprintf(("setattr %d\n", error)); )
    661        1.1       rvb     return(error);
    662        1.1       rvb }
    663        1.1       rvb 
    664        1.1       rvb int
    665        1.3       rvb coda_access(v)
    666        1.1       rvb     void *v;
    667        1.1       rvb {
    668        1.1       rvb /* true args */
    669        1.1       rvb     struct vop_access_args *ap = v;
    670        1.1       rvb     struct vnode *vp = ap->a_vp;
    671        1.1       rvb     struct cnode *cp = VTOC(vp);
    672        1.1       rvb     int mode = ap->a_mode;
    673        1.1       rvb     struct ucred *cred = ap->a_cred;
    674        1.1       rvb     struct proc *p = ap->a_p;
    675        1.1       rvb /* locals */
    676        1.1       rvb     int error;
    677        1.1       rvb 
    678        1.3       rvb     MARK_ENTRY(CODA_ACCESS_STATS);
    679        1.1       rvb 
    680        1.1       rvb     /* Check for access of control object.  Only read access is
    681        1.1       rvb        allowed on it. */
    682        1.1       rvb     if (IS_CTL_VP(vp)) {
    683        1.1       rvb 	/* bogus hack - all will be marked as successes */
    684        1.3       rvb 	MARK_INT_SAT(CODA_ACCESS_STATS);
    685        1.1       rvb 	return(((mode & VREAD) && !(mode & (VWRITE | VEXEC)))
    686        1.1       rvb 	       ? 0 : EACCES);
    687        1.1       rvb     }
    688        1.1       rvb 
    689        1.1       rvb     /*
    690        1.1       rvb      * if the file is a directory, and we are checking exec (eg lookup)
    691        1.1       rvb      * access, and the file is in the namecache, then the user must have
    692        1.1       rvb      * lookup access to it.
    693        1.1       rvb      */
    694        1.3       rvb     if (coda_access_cache) {
    695        1.1       rvb 	if ((vp->v_type == VDIR) && (mode & VEXEC)) {
    696        1.3       rvb 	    if (coda_nc_lookup(cp, ".", 1, cred)) {
    697        1.3       rvb 		MARK_INT_SAT(CODA_ACCESS_STATS);
    698        1.1       rvb 		return(0);                     /* it was in the cache */
    699        1.1       rvb 	    }
    700        1.1       rvb 	}
    701        1.1       rvb     }
    702        1.1       rvb 
    703        1.1       rvb     error = venus_access(vtomi(vp), &cp->c_fid, mode, cred, p);
    704        1.1       rvb 
    705        1.1       rvb     return(error);
    706        1.1       rvb }
    707        1.1       rvb 
    708        1.1       rvb /*
    709        1.3       rvb  * CODA abort op, called after namei() when a CREATE/DELETE isn't actually
    710        1.3       rvb  * done. If a buffer has been saved in anticipation of a coda_create or
    711        1.3       rvb  * a coda_remove, delete it.
    712        1.1       rvb  */
    713        1.1       rvb /* ARGSUSED */
    714        1.1       rvb int
    715        1.3       rvb coda_abortop(v)
    716        1.1       rvb     void *v;
    717        1.1       rvb {
    718        1.1       rvb /* true args */
    719        1.1       rvb     struct vop_abortop_args /* {
    720        1.1       rvb 	struct vnode *a_dvp;
    721        1.1       rvb 	struct componentname *a_cnp;
    722        1.1       rvb     } */ *ap = v;
    723        1.1       rvb /* upcall decl */
    724        1.1       rvb /* locals */
    725        1.1       rvb 
    726        1.1       rvb     if ((ap->a_cnp->cn_flags & (HASBUF | SAVESTART)) == HASBUF)
    727       1.20   thorpej 	PNBUF_PUT(ap->a_cnp->cn_pnbuf);
    728        1.1       rvb     return (0);
    729        1.1       rvb }
    730        1.1       rvb 
    731        1.1       rvb int
    732        1.3       rvb coda_readlink(v)
    733        1.1       rvb     void *v;
    734        1.1       rvb {
    735        1.1       rvb /* true args */
    736        1.1       rvb     struct vop_readlink_args *ap = v;
    737        1.1       rvb     struct vnode *vp = ap->a_vp;
    738        1.1       rvb     struct cnode *cp = VTOC(vp);
    739        1.1       rvb     struct uio *uiop = ap->a_uio;
    740        1.1       rvb     struct ucred *cred = ap->a_cred;
    741        1.1       rvb     struct proc *p = ap->a_uio->uio_procp;
    742        1.1       rvb /* locals */
    743        1.1       rvb     int error;
    744        1.1       rvb     char *str;
    745        1.1       rvb     int len;
    746        1.1       rvb 
    747        1.3       rvb     MARK_ENTRY(CODA_READLINK_STATS);
    748        1.1       rvb 
    749        1.1       rvb     /* Check for readlink of control object. */
    750        1.1       rvb     if (IS_CTL_VP(vp)) {
    751        1.3       rvb 	MARK_INT_FAIL(CODA_READLINK_STATS);
    752        1.1       rvb 	return(ENOENT);
    753        1.1       rvb     }
    754        1.1       rvb 
    755        1.3       rvb     if ((coda_symlink_cache) && (VALID_SYMLINK(cp))) { /* symlink was cached */
    756        1.1       rvb 	uiop->uio_rw = UIO_READ;
    757        1.1       rvb 	error = uiomove(cp->c_symlink, (int)cp->c_symlen, uiop);
    758        1.1       rvb 	if (error)
    759        1.3       rvb 	    MARK_INT_FAIL(CODA_READLINK_STATS);
    760        1.1       rvb 	else
    761        1.3       rvb 	    MARK_INT_SAT(CODA_READLINK_STATS);
    762        1.1       rvb 	return(error);
    763        1.1       rvb     }
    764        1.1       rvb 
    765        1.1       rvb     error = venus_readlink(vtomi(vp), &cp->c_fid, cred, p, &str, &len);
    766        1.1       rvb 
    767        1.1       rvb     if (!error) {
    768        1.1       rvb 	uiop->uio_rw = UIO_READ;
    769        1.1       rvb 	error = uiomove(str, len, uiop);
    770        1.1       rvb 
    771        1.3       rvb 	if (coda_symlink_cache) {
    772        1.1       rvb 	    cp->c_symlink = str;
    773        1.1       rvb 	    cp->c_symlen = len;
    774        1.1       rvb 	    cp->c_flags |= C_SYMLINK;
    775        1.1       rvb 	} else
    776        1.3       rvb 	    CODA_FREE(str, len);
    777        1.1       rvb     }
    778        1.1       rvb 
    779        1.3       rvb     CODADEBUG(CODA_READLINK, myprintf(("in readlink result %d\n",error));)
    780        1.1       rvb     return(error);
    781        1.1       rvb }
    782        1.1       rvb 
    783        1.1       rvb int
    784        1.3       rvb coda_fsync(v)
    785        1.1       rvb     void *v;
    786        1.1       rvb {
    787        1.1       rvb /* true args */
    788        1.1       rvb     struct vop_fsync_args *ap = v;
    789        1.1       rvb     struct vnode *vp = ap->a_vp;
    790        1.1       rvb     struct cnode *cp = VTOC(vp);
    791        1.1       rvb     struct ucred *cred = ap->a_cred;
    792        1.1       rvb     struct proc *p = ap->a_p;
    793        1.1       rvb /* locals */
    794        1.1       rvb     struct vnode *convp = cp->c_ovp;
    795        1.1       rvb     int error;
    796        1.1       rvb 
    797        1.3       rvb     MARK_ENTRY(CODA_FSYNC_STATS);
    798        1.1       rvb 
    799        1.1       rvb     /* Check for fsync on an unmounting object */
    800        1.1       rvb     /* The NetBSD kernel, in it's infinite wisdom, can try to fsync
    801        1.1       rvb      * after an unmount has been initiated.  This is a Bad Thing,
    802        1.1       rvb      * which we have to avoid.  Not a legitimate failure for stats.
    803        1.1       rvb      */
    804        1.1       rvb     if (IS_UNMOUNTING(cp)) {
    805        1.1       rvb 	return(ENODEV);
    806        1.1       rvb     }
    807        1.1       rvb 
    808        1.1       rvb     /* Check for fsync of control object. */
    809        1.1       rvb     if (IS_CTL_VP(vp)) {
    810        1.3       rvb 	MARK_INT_SAT(CODA_FSYNC_STATS);
    811        1.1       rvb 	return(0);
    812        1.1       rvb     }
    813        1.1       rvb 
    814        1.1       rvb     if (convp)
    815       1.21      fvdl     	VOP_FSYNC(convp, cred, MNT_WAIT, 0, 0, p);
    816        1.1       rvb 
    817        1.1       rvb     /*
    818        1.1       rvb      * We can expect fsync on any vnode at all if venus is pruging it.
    819        1.1       rvb      * Venus can't very well answer the fsync request, now can it?
    820        1.1       rvb      * Hopefully, it won't have to, because hopefully, venus preserves
    821        1.1       rvb      * the (possibly untrue) invariant that it never purges an open
    822        1.1       rvb      * vnode.  Hopefully.
    823        1.1       rvb      */
    824        1.1       rvb     if (cp->c_flags & C_PURGING) {
    825        1.1       rvb 	return(0);
    826        1.1       rvb     }
    827        1.1       rvb 
    828        1.1       rvb     error = venus_fsync(vtomi(vp), &cp->c_fid, cred, p);
    829        1.1       rvb 
    830        1.3       rvb     CODADEBUG(CODA_FSYNC, myprintf(("in fsync result %d\n",error)); );
    831        1.1       rvb     return(error);
    832        1.1       rvb }
    833        1.1       rvb 
    834        1.1       rvb int
    835        1.3       rvb coda_inactive(v)
    836        1.1       rvb     void *v;
    837        1.1       rvb {
    838        1.1       rvb     /* XXX - at the moment, inactive doesn't look at cred, and doesn't
    839        1.1       rvb        have a proc pointer.  Oops. */
    840        1.1       rvb /* true args */
    841        1.1       rvb     struct vop_inactive_args *ap = v;
    842        1.1       rvb     struct vnode *vp = ap->a_vp;
    843        1.1       rvb     struct cnode *cp = VTOC(vp);
    844        1.1       rvb     struct ucred *cred __attribute__((unused)) = NULL;
    845   1.23.2.7   nathanw     struct proc *p __attribute__((unused)) = curproc;
    846        1.1       rvb /* upcall decl */
    847        1.1       rvb /* locals */
    848        1.1       rvb 
    849        1.1       rvb     /* We don't need to send inactive to venus - DCS */
    850        1.3       rvb     MARK_ENTRY(CODA_INACTIVE_STATS);
    851        1.1       rvb 
    852        1.1       rvb     if (IS_CTL_VP(vp)) {
    853        1.3       rvb 	MARK_INT_SAT(CODA_INACTIVE_STATS);
    854        1.1       rvb 	return 0;
    855        1.1       rvb     }
    856        1.1       rvb 
    857        1.3       rvb     CODADEBUG(CODA_INACTIVE, myprintf(("in inactive, %lx.%lx.%lx. vfsp %p\n",
    858        1.1       rvb 				  cp->c_fid.Volume, cp->c_fid.Vnode,
    859        1.1       rvb 				  cp->c_fid.Unique, vp->v_mount));)
    860        1.1       rvb 
    861        1.1       rvb     /* If an array has been allocated to hold the symlink, deallocate it */
    862        1.3       rvb     if ((coda_symlink_cache) && (VALID_SYMLINK(cp))) {
    863        1.1       rvb 	if (cp->c_symlink == NULL)
    864        1.3       rvb 	    panic("coda_inactive: null symlink pointer in cnode");
    865        1.1       rvb 
    866        1.3       rvb 	CODA_FREE(cp->c_symlink, cp->c_symlen);
    867        1.1       rvb 	cp->c_flags &= ~C_SYMLINK;
    868        1.1       rvb 	cp->c_symlen = 0;
    869        1.1       rvb     }
    870        1.1       rvb 
    871        1.1       rvb     /* Remove it from the table so it can't be found. */
    872        1.3       rvb     coda_unsave(cp);
    873   1.23.2.8   nathanw     if (vp->v_mount->mnt_data == NULL) {
    874        1.1       rvb 	myprintf(("Help! vfsp->vfs_data was NULL, but vnode %p wasn't dying\n", vp));
    875   1.23.2.9   nathanw 	panic("badness in coda_inactive");
    876        1.1       rvb     }
    877        1.1       rvb 
    878        1.1       rvb     if (IS_UNMOUNTING(cp)) {
    879        1.1       rvb #ifdef	DEBUG
    880       1.22       chs 	printf("coda_inactive: IS_UNMOUNTING use %d: vp %p, cp %p\n", vp->v_usecount, vp, cp);
    881        1.1       rvb 	if (cp->c_ovp != NULL)
    882       1.22       chs 	    printf("coda_inactive: cp->ovp != NULL use %d: vp %p, cp %p\n",
    883        1.1       rvb 	    	   vp->v_usecount, vp, cp);
    884        1.1       rvb #endif
    885       1.10  wrstuden 	lockmgr(&vp->v_lock, LK_RELEASE, &vp->v_interlock);
    886        1.1       rvb     } else {
    887        1.5       rvb #ifdef OLD_DIAGNOSTIC
    888        1.1       rvb 	if (CTOV(cp)->v_usecount) {
    889        1.3       rvb 	    panic("coda_inactive: nonzero reference count");
    890        1.1       rvb 	}
    891        1.1       rvb 	if (cp->c_ovp != NULL) {
    892        1.3       rvb 	    panic("coda_inactive:  cp->ovp != NULL");
    893        1.1       rvb 	}
    894        1.1       rvb #endif
    895        1.2       rvb 	VOP_UNLOCK(vp, 0);
    896        1.1       rvb 	vgone(vp);
    897        1.1       rvb     }
    898        1.1       rvb 
    899        1.3       rvb     MARK_INT_SAT(CODA_INACTIVE_STATS);
    900        1.1       rvb     return(0);
    901        1.1       rvb }
    902        1.1       rvb 
    903        1.1       rvb /*
    904        1.1       rvb  * Remote file system operations having to do with directory manipulation.
    905        1.1       rvb  */
    906        1.1       rvb 
    907        1.1       rvb /*
    908        1.1       rvb  * It appears that in NetBSD, lookup is supposed to return the vnode locked
    909        1.1       rvb  */
    910        1.1       rvb int
    911        1.3       rvb coda_lookup(v)
    912        1.1       rvb     void *v;
    913        1.1       rvb {
    914        1.1       rvb /* true args */
    915        1.1       rvb     struct vop_lookup_args *ap = v;
    916        1.1       rvb     struct vnode *dvp = ap->a_dvp;
    917        1.1       rvb     struct cnode *dcp = VTOC(dvp);
    918        1.1       rvb     struct vnode **vpp = ap->a_vpp;
    919        1.1       rvb     /*
    920        1.1       rvb      * It looks as though ap->a_cnp->ni_cnd->cn_nameptr holds the rest
    921        1.1       rvb      * of the string to xlate, and that we must try to get at least
    922        1.1       rvb      * ap->a_cnp->ni_cnd->cn_namelen of those characters to macth.  I
    923        1.1       rvb      * could be wrong.
    924        1.1       rvb      */
    925        1.1       rvb     struct componentname  *cnp = ap->a_cnp;
    926        1.1       rvb     struct ucred *cred = cnp->cn_cred;
    927        1.1       rvb     struct proc *p = cnp->cn_proc;
    928        1.1       rvb /* locals */
    929        1.1       rvb     struct cnode *cp;
    930        1.1       rvb     const char *nm = cnp->cn_nameptr;
    931        1.1       rvb     int len = cnp->cn_namelen;
    932        1.1       rvb     ViceFid VFid;
    933        1.1       rvb     int	vtype;
    934        1.1       rvb     int error = 0;
    935        1.1       rvb 
    936       1.10  wrstuden     cnp->cn_flags &= ~PDIRUNLOCK;
    937       1.10  wrstuden 
    938        1.3       rvb     MARK_ENTRY(CODA_LOOKUP_STATS);
    939        1.1       rvb 
    940        1.3       rvb     CODADEBUG(CODA_LOOKUP, myprintf(("lookup: %s in %lx.%lx.%lx\n",
    941        1.1       rvb 				   nm, dcp->c_fid.Volume,
    942        1.1       rvb 				   dcp->c_fid.Vnode, dcp->c_fid.Unique)););
    943        1.1       rvb 
    944        1.1       rvb     /* Check for lookup of control object. */
    945        1.1       rvb     if (IS_CTL_NAME(dvp, nm, len)) {
    946        1.3       rvb 	*vpp = coda_ctlvp;
    947        1.1       rvb 	vref(*vpp);
    948        1.3       rvb 	MARK_INT_SAT(CODA_LOOKUP_STATS);
    949        1.1       rvb 	goto exit;
    950        1.1       rvb     }
    951        1.1       rvb 
    952        1.3       rvb     if (len+1 > CODA_MAXNAMLEN) {
    953        1.3       rvb 	MARK_INT_FAIL(CODA_LOOKUP_STATS);
    954        1.3       rvb 	CODADEBUG(CODA_LOOKUP, myprintf(("name too long: lookup, %lx.%lx.%lx(%s)\n",
    955        1.1       rvb 				    dcp->c_fid.Volume, dcp->c_fid.Vnode,
    956        1.1       rvb 				    dcp->c_fid.Unique, nm)););
    957        1.1       rvb 	*vpp = (struct vnode *)0;
    958        1.1       rvb 	error = EINVAL;
    959        1.1       rvb 	goto exit;
    960        1.1       rvb     }
    961        1.1       rvb     /* First try to look the file up in the cfs name cache */
    962        1.1       rvb     /* lock the parent vnode? */
    963        1.3       rvb     cp = coda_nc_lookup(dcp, nm, len, cred);
    964        1.1       rvb     if (cp) {
    965        1.1       rvb 	*vpp = CTOV(cp);
    966        1.1       rvb 	vref(*vpp);
    967        1.3       rvb 	CODADEBUG(CODA_LOOKUP,
    968        1.1       rvb 		 myprintf(("lookup result %d vpp %p\n",error,*vpp));)
    969        1.1       rvb     } else {
    970        1.1       rvb 
    971        1.1       rvb 	/* The name wasn't cached, so we need to contact Venus */
    972        1.1       rvb 	error = venus_lookup(vtomi(dvp), &dcp->c_fid, nm, len, cred, p, &VFid, &vtype);
    973        1.1       rvb 
    974        1.1       rvb 	if (error) {
    975        1.3       rvb 	    MARK_INT_FAIL(CODA_LOOKUP_STATS);
    976        1.3       rvb 	    CODADEBUG(CODA_LOOKUP, myprintf(("lookup error on %lx.%lx.%lx(%s)%d\n",
    977        1.1       rvb 					dcp->c_fid.Volume, dcp->c_fid.Vnode, dcp->c_fid.Unique, nm, error));)
    978        1.1       rvb 	    *vpp = (struct vnode *)0;
    979        1.1       rvb 	} else {
    980        1.3       rvb 	    MARK_INT_SAT(CODA_LOOKUP_STATS);
    981        1.3       rvb 	    CODADEBUG(CODA_LOOKUP,
    982        1.1       rvb 		     myprintf(("lookup: vol %lx vno %lx uni %lx type %o result %d\n",
    983        1.1       rvb 			    VFid.Volume, VFid.Vnode, VFid.Unique, vtype,
    984        1.1       rvb 			    error)); )
    985        1.1       rvb 
    986        1.3       rvb 	    cp = make_coda_node(&VFid, dvp->v_mount, vtype);
    987        1.1       rvb 	    *vpp = CTOV(cp);
    988        1.1       rvb 
    989        1.1       rvb 	    /* enter the new vnode in the Name Cache only if the top bit isn't set */
    990        1.1       rvb 	    /* And don't enter a new vnode for an invalid one! */
    991        1.3       rvb 	    if (!(vtype & CODA_NOCACHE))
    992        1.3       rvb 		coda_nc_enter(VTOC(dvp), nm, len, cred, VTOC(*vpp));
    993        1.1       rvb 	}
    994        1.1       rvb     }
    995        1.1       rvb 
    996        1.1       rvb  exit:
    997        1.1       rvb     /*
    998        1.1       rvb      * If we are creating, and this was the last name to be looked up,
    999        1.1       rvb      * and the error was ENOENT, then there really shouldn't be an
   1000        1.1       rvb      * error and we can make the leaf NULL and return success.  Since
   1001        1.1       rvb      * this is supposed to work under Mach as well as NetBSD, we're
   1002        1.1       rvb      * leaving this fn wrapped.  We also must tell lookup/namei that
   1003        1.1       rvb      * we need to save the last component of the name.  (Create will
   1004        1.1       rvb      * have to free the name buffer later...lucky us...)
   1005        1.1       rvb      */
   1006        1.1       rvb     if (((cnp->cn_nameiop == CREATE) || (cnp->cn_nameiop == RENAME))
   1007        1.1       rvb 	&& (cnp->cn_flags & ISLASTCN)
   1008        1.1       rvb 	&& (error == ENOENT))
   1009        1.1       rvb     {
   1010        1.1       rvb 	error = EJUSTRETURN;
   1011        1.1       rvb 	cnp->cn_flags |= SAVENAME;
   1012        1.1       rvb 	*ap->a_vpp = NULL;
   1013        1.1       rvb     }
   1014        1.1       rvb 
   1015        1.1       rvb     /*
   1016        1.1       rvb      * If we are removing, and we are at the last element, and we
   1017        1.1       rvb      * found it, then we need to keep the name around so that the
   1018        1.1       rvb      * removal will go ahead as planned.  Unfortunately, this will
   1019        1.1       rvb      * probably also lock the to-be-removed vnode, which may or may
   1020        1.1       rvb      * not be a good idea.  I'll have to look at the bits of
   1021        1.3       rvb      * coda_remove to make sure.  We'll only save the name if we did in
   1022        1.3       rvb      * fact find the name, otherwise coda_remove won't have a chance
   1023        1.1       rvb      * to free the pathname.
   1024        1.1       rvb      */
   1025        1.1       rvb     if ((cnp->cn_nameiop == DELETE)
   1026        1.1       rvb 	&& (cnp->cn_flags & ISLASTCN)
   1027        1.1       rvb 	&& !error)
   1028        1.1       rvb     {
   1029        1.1       rvb 	cnp->cn_flags |= SAVENAME;
   1030        1.1       rvb     }
   1031        1.1       rvb 
   1032        1.1       rvb     /*
   1033        1.1       rvb      * If the lookup went well, we need to (potentially?) unlock the
   1034        1.1       rvb      * parent, and lock the child.  We are only responsible for
   1035        1.1       rvb      * checking to see if the parent is supposed to be unlocked before
   1036        1.1       rvb      * we return.  We must always lock the child (provided there is
   1037        1.1       rvb      * one, and (the parent isn't locked or it isn't the same as the
   1038        1.1       rvb      * parent.)  Simple, huh?  We can never leave the parent locked unless
   1039        1.1       rvb      * we are ISLASTCN
   1040        1.1       rvb      */
   1041        1.1       rvb     if (!error || (error == EJUSTRETURN)) {
   1042        1.1       rvb 	if (!(cnp->cn_flags & LOCKPARENT) || !(cnp->cn_flags & ISLASTCN)) {
   1043        1.2       rvb 	    if ((error = VOP_UNLOCK(dvp, 0))) {
   1044        1.1       rvb 		return error;
   1045        1.1       rvb 	    }
   1046       1.10  wrstuden 	    cnp->cn_flags |= PDIRUNLOCK;
   1047        1.1       rvb 	    /*
   1048        1.1       rvb 	     * The parent is unlocked.  As long as there is a child,
   1049        1.1       rvb 	     * lock it without bothering to check anything else.
   1050        1.1       rvb 	     */
   1051        1.1       rvb 	    if (*ap->a_vpp) {
   1052        1.2       rvb 		if ((error = vn_lock(*ap->a_vpp, LK_EXCLUSIVE))) {
   1053        1.3       rvb 		    printf("coda_lookup: ");
   1054        1.1       rvb 		    panic("unlocked parent but couldn't lock child");
   1055        1.1       rvb 		}
   1056        1.1       rvb 	    }
   1057        1.1       rvb 	} else {
   1058        1.1       rvb 	    /* The parent is locked, and may be the same as the child */
   1059        1.1       rvb 	    if (*ap->a_vpp && (*ap->a_vpp != dvp)) {
   1060        1.1       rvb 		/* Different, go ahead and lock it. */
   1061        1.2       rvb 		if ((error = vn_lock(*ap->a_vpp, LK_EXCLUSIVE))) {
   1062        1.3       rvb 		    printf("coda_lookup: ");
   1063        1.1       rvb 		    panic("unlocked parent but couldn't lock child");
   1064        1.1       rvb 		}
   1065        1.1       rvb 	    }
   1066        1.1       rvb 	}
   1067        1.1       rvb     } else {
   1068        1.1       rvb 	/* If the lookup failed, we need to ensure that the leaf is NULL */
   1069        1.1       rvb 	/* Don't change any locking? */
   1070        1.1       rvb 	*ap->a_vpp = NULL;
   1071        1.1       rvb     }
   1072        1.1       rvb     return(error);
   1073        1.1       rvb }
   1074        1.1       rvb 
   1075        1.1       rvb /*ARGSUSED*/
   1076        1.1       rvb int
   1077        1.3       rvb coda_create(v)
   1078        1.1       rvb     void *v;
   1079        1.1       rvb {
   1080        1.1       rvb /* true args */
   1081        1.1       rvb     struct vop_create_args *ap = v;
   1082        1.1       rvb     struct vnode *dvp = ap->a_dvp;
   1083        1.1       rvb     struct cnode *dcp = VTOC(dvp);
   1084        1.1       rvb     struct vattr *va = ap->a_vap;
   1085        1.1       rvb     int exclusive = 1;
   1086        1.1       rvb     int mode = ap->a_vap->va_mode;
   1087        1.1       rvb     struct vnode **vpp = ap->a_vpp;
   1088        1.1       rvb     struct componentname  *cnp = ap->a_cnp;
   1089        1.1       rvb     struct ucred *cred = cnp->cn_cred;
   1090        1.1       rvb     struct proc *p = cnp->cn_proc;
   1091        1.1       rvb /* locals */
   1092        1.1       rvb     int error;
   1093        1.1       rvb     struct cnode *cp;
   1094        1.1       rvb     const char *nm = cnp->cn_nameptr;
   1095        1.1       rvb     int len = cnp->cn_namelen;
   1096        1.1       rvb     ViceFid VFid;
   1097        1.1       rvb     struct vattr attr;
   1098        1.1       rvb 
   1099        1.3       rvb     MARK_ENTRY(CODA_CREATE_STATS);
   1100        1.1       rvb 
   1101        1.1       rvb     /* All creates are exclusive XXX */
   1102        1.1       rvb     /* I'm assuming the 'mode' argument is the file mode bits XXX */
   1103        1.1       rvb 
   1104        1.1       rvb     /* Check for create of control object. */
   1105        1.1       rvb     if (IS_CTL_NAME(dvp, nm, len)) {
   1106        1.1       rvb 	*vpp = (struct vnode *)0;
   1107        1.3       rvb 	MARK_INT_FAIL(CODA_CREATE_STATS);
   1108        1.1       rvb 	return(EACCES);
   1109        1.1       rvb     }
   1110        1.1       rvb 
   1111        1.1       rvb     error = venus_create(vtomi(dvp), &dcp->c_fid, nm, len, exclusive, mode, va, cred, p, &VFid, &attr);
   1112        1.1       rvb 
   1113        1.1       rvb     if (!error) {
   1114        1.1       rvb 
   1115        1.1       rvb 	/* If this is an exclusive create, panic if the file already exists. */
   1116        1.1       rvb 	/* Venus should have detected the file and reported EEXIST. */
   1117        1.1       rvb 
   1118        1.1       rvb 	if ((exclusive == 1) &&
   1119        1.3       rvb 	    (coda_find(&VFid) != NULL))
   1120        1.1       rvb 	    panic("cnode existed for newly created file!");
   1121        1.1       rvb 
   1122        1.3       rvb 	cp = make_coda_node(&VFid, dvp->v_mount, attr.va_type);
   1123        1.1       rvb 	*vpp = CTOV(cp);
   1124        1.1       rvb 
   1125        1.1       rvb 	/* Update va to reflect the new attributes. */
   1126        1.1       rvb 	(*va) = attr;
   1127        1.1       rvb 
   1128        1.1       rvb 	/* Update the attribute cache and mark it as valid */
   1129        1.3       rvb 	if (coda_attr_cache) {
   1130        1.1       rvb 	    VTOC(*vpp)->c_vattr = attr;
   1131        1.1       rvb 	    VTOC(*vpp)->c_flags |= C_VATTR;
   1132        1.1       rvb 	}
   1133        1.1       rvb 
   1134        1.1       rvb 	/* Invalidate the parent's attr cache, the modification time has changed */
   1135        1.1       rvb 	VTOC(dvp)->c_flags &= ~C_VATTR;
   1136        1.1       rvb 
   1137        1.1       rvb 	/* enter the new vnode in the Name Cache */
   1138        1.3       rvb 	coda_nc_enter(VTOC(dvp), nm, len, cred, VTOC(*vpp));
   1139        1.1       rvb 
   1140        1.3       rvb 	CODADEBUG(CODA_CREATE,
   1141        1.1       rvb 		 myprintf(("create: (%lx.%lx.%lx), result %d\n",
   1142        1.1       rvb 			VFid.Volume, VFid.Vnode, VFid.Unique, error)); )
   1143        1.1       rvb     } else {
   1144        1.1       rvb 	*vpp = (struct vnode *)0;
   1145        1.3       rvb 	CODADEBUG(CODA_CREATE, myprintf(("create error %d\n", error));)
   1146        1.1       rvb     }
   1147        1.1       rvb 
   1148        1.1       rvb     /* Locking strategy. */
   1149        1.1       rvb     /*
   1150        1.1       rvb      * In NetBSD, all creates must explicitly vput their dvp's.  We'll
   1151        1.1       rvb      * go ahead and use the LOCKLEAF flag of the cnp argument.
   1152        1.1       rvb      * However, I'm pretty sure that create must return the leaf
   1153        1.1       rvb      * locked; so there is a DIAGNOSTIC check to ensure that this is
   1154        1.1       rvb      * true.
   1155        1.1       rvb      */
   1156        1.1       rvb     vput(dvp);
   1157        1.1       rvb     if (!error) {
   1158        1.1       rvb 	if (cnp->cn_flags & LOCKLEAF) {
   1159        1.2       rvb 	    if ((error = vn_lock(*ap->a_vpp, LK_EXCLUSIVE))) {
   1160        1.3       rvb 		printf("coda_create: ");
   1161        1.1       rvb 		panic("unlocked parent but couldn't lock child");
   1162        1.1       rvb 	    }
   1163        1.1       rvb 	}
   1164        1.7       rvb #ifdef OLD_DIAGNOSTIC
   1165        1.1       rvb 	else {
   1166        1.3       rvb 	    printf("coda_create: LOCKLEAF not set!\n");
   1167        1.1       rvb 	}
   1168        1.5       rvb #endif
   1169        1.1       rvb     }
   1170        1.1       rvb     /* Have to free the previously saved name */
   1171        1.1       rvb     /*
   1172        1.1       rvb      * This condition is stolen from ufs_makeinode.  I have no idea
   1173        1.1       rvb      * why it's here, but what the hey...
   1174        1.1       rvb      */
   1175        1.1       rvb     if ((cnp->cn_flags & SAVESTART) == 0) {
   1176       1.20   thorpej 	PNBUF_PUT(cnp->cn_pnbuf);
   1177        1.1       rvb     }
   1178        1.1       rvb     return(error);
   1179        1.1       rvb }
   1180        1.1       rvb 
   1181        1.1       rvb int
   1182        1.3       rvb coda_remove(v)
   1183        1.1       rvb     void *v;
   1184        1.1       rvb {
   1185        1.1       rvb /* true args */
   1186        1.1       rvb     struct vop_remove_args *ap = v;
   1187        1.1       rvb     struct vnode *dvp = ap->a_dvp;
   1188        1.1       rvb     struct cnode *cp = VTOC(dvp);
   1189        1.1       rvb     struct componentname  *cnp = ap->a_cnp;
   1190        1.1       rvb     struct ucred *cred = cnp->cn_cred;
   1191        1.1       rvb     struct proc *p = cnp->cn_proc;
   1192        1.1       rvb /* locals */
   1193        1.1       rvb     int error;
   1194        1.1       rvb     const char *nm = cnp->cn_nameptr;
   1195        1.1       rvb     int len = cnp->cn_namelen;
   1196        1.1       rvb     struct cnode *tp;
   1197        1.1       rvb 
   1198        1.3       rvb     MARK_ENTRY(CODA_REMOVE_STATS);
   1199        1.1       rvb 
   1200        1.3       rvb     CODADEBUG(CODA_REMOVE, myprintf(("remove: %s in %lx.%lx.%lx\n",
   1201        1.1       rvb 				   nm, cp->c_fid.Volume, cp->c_fid.Vnode,
   1202        1.1       rvb 				   cp->c_fid.Unique)););
   1203        1.1       rvb 
   1204        1.3       rvb     /* Remove the file's entry from the CODA Name Cache */
   1205        1.1       rvb     /* We're being conservative here, it might be that this person
   1206        1.1       rvb      * doesn't really have sufficient access to delete the file
   1207        1.1       rvb      * but we feel zapping the entry won't really hurt anyone -- dcs
   1208        1.1       rvb      */
   1209        1.1       rvb     /* I'm gonna go out on a limb here. If a file and a hardlink to it
   1210        1.1       rvb      * exist, and one is removed, the link count on the other will be
   1211        1.1       rvb      * off by 1. We could either invalidate the attrs if cached, or
   1212        1.1       rvb      * fix them. I'll try to fix them. DCS 11/8/94
   1213        1.1       rvb      */
   1214        1.3       rvb     tp = coda_nc_lookup(VTOC(dvp), nm, len, cred);
   1215        1.1       rvb     if (tp) {
   1216        1.1       rvb 	if (VALID_VATTR(tp)) {	/* If attrs are cached */
   1217        1.1       rvb 	    if (tp->c_vattr.va_nlink > 1) {	/* If it's a hard link */
   1218        1.1       rvb 		tp->c_vattr.va_nlink--;
   1219        1.1       rvb 	    }
   1220        1.1       rvb 	}
   1221        1.1       rvb 
   1222        1.3       rvb 	coda_nc_zapfile(VTOC(dvp), nm, len);
   1223        1.1       rvb 	/* No need to flush it if it doesn't exist! */
   1224        1.1       rvb     }
   1225        1.1       rvb     /* Invalidate the parent's attr cache, the modification time has changed */
   1226        1.1       rvb     VTOC(dvp)->c_flags &= ~C_VATTR;
   1227        1.1       rvb 
   1228        1.1       rvb     /* Check for remove of control object. */
   1229        1.1       rvb     if (IS_CTL_NAME(dvp, nm, len)) {
   1230        1.3       rvb 	MARK_INT_FAIL(CODA_REMOVE_STATS);
   1231        1.1       rvb 	return(ENOENT);
   1232        1.1       rvb     }
   1233        1.1       rvb 
   1234        1.1       rvb     error = venus_remove(vtomi(dvp), &cp->c_fid, nm, len, cred, p);
   1235        1.1       rvb 
   1236        1.3       rvb     CODADEBUG(CODA_REMOVE, myprintf(("in remove result %d\n",error)); )
   1237        1.1       rvb 
   1238        1.1       rvb     /*
   1239        1.1       rvb      * Regardless of what happens, we have to unconditionally drop
   1240        1.1       rvb      * locks/refs on parent and child.  (I hope).  This is based on
   1241        1.1       rvb      * what ufs_remove seems to be doing.
   1242        1.1       rvb      */
   1243        1.1       rvb     if (dvp == ap->a_vp) {
   1244        1.1       rvb 	vrele(ap->a_vp);
   1245        1.1       rvb     } else {
   1246        1.1       rvb 	vput(ap->a_vp);
   1247        1.1       rvb     }
   1248        1.1       rvb     vput(dvp);
   1249        1.1       rvb 
   1250        1.1       rvb     if ((cnp->cn_flags & SAVESTART) == 0) {
   1251       1.20   thorpej 	PNBUF_PUT(cnp->cn_pnbuf);
   1252        1.1       rvb     }
   1253        1.1       rvb     return(error);
   1254        1.1       rvb }
   1255        1.1       rvb 
   1256        1.1       rvb int
   1257        1.3       rvb coda_link(v)
   1258        1.1       rvb     void *v;
   1259        1.1       rvb {
   1260        1.1       rvb /* true args */
   1261        1.1       rvb     struct vop_link_args *ap = v;
   1262        1.1       rvb     struct vnode *vp = ap->a_vp;
   1263        1.1       rvb     struct cnode *cp = VTOC(vp);
   1264        1.1       rvb     struct vnode *tdvp = ap->a_dvp;
   1265        1.1       rvb     struct cnode *tdcp = VTOC(tdvp);
   1266        1.1       rvb     struct componentname *cnp = ap->a_cnp;
   1267        1.1       rvb     struct ucred *cred = cnp->cn_cred;
   1268        1.1       rvb     struct proc *p = cnp->cn_proc;
   1269        1.1       rvb /* locals */
   1270        1.1       rvb     int error;
   1271        1.1       rvb     const char *nm = cnp->cn_nameptr;
   1272        1.1       rvb     int len = cnp->cn_namelen;
   1273        1.1       rvb 
   1274        1.3       rvb     MARK_ENTRY(CODA_LINK_STATS);
   1275        1.1       rvb 
   1276        1.3       rvb     if (codadebug & CODADBGMSK(CODA_LINK)) {
   1277        1.1       rvb 
   1278        1.1       rvb 	myprintf(("nb_link:   vp fid: (%lx.%lx.%lx)\n",
   1279        1.1       rvb 		  cp->c_fid.Volume, cp->c_fid.Vnode, cp->c_fid.Unique));
   1280        1.1       rvb 	myprintf(("nb_link: tdvp fid: (%lx.%lx.%lx)\n",
   1281        1.1       rvb 		  tdcp->c_fid.Volume, tdcp->c_fid.Vnode, tdcp->c_fid.Unique));
   1282        1.1       rvb 
   1283        1.1       rvb     }
   1284        1.3       rvb     if (codadebug & CODADBGMSK(CODA_LINK)) {
   1285        1.1       rvb 	myprintf(("link:   vp fid: (%lx.%lx.%lx)\n",
   1286        1.1       rvb 		  cp->c_fid.Volume, cp->c_fid.Vnode, cp->c_fid.Unique));
   1287        1.1       rvb 	myprintf(("link: tdvp fid: (%lx.%lx.%lx)\n",
   1288        1.1       rvb 		  tdcp->c_fid.Volume, tdcp->c_fid.Vnode, tdcp->c_fid.Unique));
   1289        1.1       rvb 
   1290        1.1       rvb     }
   1291        1.1       rvb 
   1292        1.1       rvb     /* Check for link to/from control object. */
   1293        1.1       rvb     if (IS_CTL_NAME(tdvp, nm, len) || IS_CTL_VP(vp)) {
   1294        1.3       rvb 	MARK_INT_FAIL(CODA_LINK_STATS);
   1295        1.1       rvb 	return(EACCES);
   1296        1.1       rvb     }
   1297        1.1       rvb 
   1298        1.1       rvb     /*
   1299        1.1       rvb      * According to the ufs_link operation here's the locking situation:
   1300        1.1       rvb      *     We enter with the thing called "dvp" (the directory) locked.
   1301        1.1       rvb      *     We must unconditionally drop locks on "dvp"
   1302        1.1       rvb      *
   1303        1.1       rvb      *     We enter with the thing called "vp" (the linked-to) unlocked,
   1304        1.1       rvb      *       but ref'd (?)
   1305        1.3       rvb      *     We seem to need to lock it before calling coda_link, and
   1306        1.1       rvb      *       unconditionally unlock it after.
   1307        1.1       rvb      */
   1308        1.1       rvb 
   1309        1.2       rvb     if ((ap->a_vp != tdvp) && (error = vn_lock(ap->a_vp, LK_EXCLUSIVE))) {
   1310        1.1       rvb 	goto exit;
   1311        1.1       rvb     }
   1312        1.1       rvb 
   1313        1.1       rvb     error = venus_link(vtomi(vp), &cp->c_fid, &tdcp->c_fid, nm, len, cred, p);
   1314        1.1       rvb 
   1315        1.1       rvb     /* Invalidate the parent's attr cache, the modification time has changed */
   1316        1.1       rvb     VTOC(tdvp)->c_flags &= ~C_VATTR;
   1317        1.1       rvb     VTOC(vp)->c_flags &= ~C_VATTR;
   1318        1.1       rvb 
   1319        1.3       rvb     CODADEBUG(CODA_LINK,	myprintf(("in link result %d\n",error)); )
   1320        1.1       rvb 
   1321        1.1       rvb exit:
   1322        1.1       rvb 
   1323        1.1       rvb     if (ap->a_vp != tdvp) {
   1324        1.2       rvb 	VOP_UNLOCK(ap->a_vp, 0);
   1325        1.1       rvb     }
   1326        1.1       rvb     vput(tdvp);
   1327        1.1       rvb 
   1328        1.1       rvb     /* Drop the name buffer if we don't need to SAVESTART */
   1329        1.1       rvb     if ((cnp->cn_flags & SAVESTART) == 0) {
   1330       1.20   thorpej 	PNBUF_PUT(cnp->cn_pnbuf);
   1331        1.1       rvb     }
   1332        1.1       rvb     return(error);
   1333        1.1       rvb }
   1334        1.1       rvb 
   1335        1.1       rvb int
   1336        1.3       rvb coda_rename(v)
   1337        1.1       rvb     void *v;
   1338        1.1       rvb {
   1339        1.1       rvb /* true args */
   1340        1.1       rvb     struct vop_rename_args *ap = v;
   1341        1.1       rvb     struct vnode *odvp = ap->a_fdvp;
   1342        1.1       rvb     struct cnode *odcp = VTOC(odvp);
   1343        1.1       rvb     struct componentname  *fcnp = ap->a_fcnp;
   1344        1.1       rvb     struct vnode *ndvp = ap->a_tdvp;
   1345        1.1       rvb     struct cnode *ndcp = VTOC(ndvp);
   1346        1.1       rvb     struct componentname  *tcnp = ap->a_tcnp;
   1347        1.1       rvb     struct ucred *cred = fcnp->cn_cred;
   1348        1.1       rvb     struct proc *p = fcnp->cn_proc;
   1349        1.1       rvb /* true args */
   1350        1.1       rvb     int error;
   1351        1.1       rvb     const char *fnm = fcnp->cn_nameptr;
   1352        1.1       rvb     int flen = fcnp->cn_namelen;
   1353        1.1       rvb     const char *tnm = tcnp->cn_nameptr;
   1354        1.1       rvb     int tlen = tcnp->cn_namelen;
   1355        1.1       rvb 
   1356        1.3       rvb     MARK_ENTRY(CODA_RENAME_STATS);
   1357        1.1       rvb 
   1358        1.1       rvb     /* Hmmm.  The vnodes are already looked up.  Perhaps they are locked?
   1359        1.1       rvb        This could be Bad. XXX */
   1360        1.5       rvb #ifdef OLD_DIAGNOSTIC
   1361        1.1       rvb     if ((fcnp->cn_cred != tcnp->cn_cred)
   1362        1.1       rvb 	|| (fcnp->cn_proc != tcnp->cn_proc))
   1363        1.1       rvb     {
   1364        1.3       rvb 	panic("coda_rename: component names don't agree");
   1365        1.1       rvb     }
   1366        1.5       rvb #endif
   1367        1.1       rvb 
   1368        1.1       rvb     /* Check for rename involving control object. */
   1369        1.1       rvb     if (IS_CTL_NAME(odvp, fnm, flen) || IS_CTL_NAME(ndvp, tnm, tlen)) {
   1370        1.3       rvb 	MARK_INT_FAIL(CODA_RENAME_STATS);
   1371        1.1       rvb 	return(EACCES);
   1372        1.1       rvb     }
   1373        1.1       rvb 
   1374        1.1       rvb     /* Problem with moving directories -- need to flush entry for .. */
   1375        1.1       rvb     if (odvp != ndvp) {
   1376        1.3       rvb 	struct cnode *ovcp = coda_nc_lookup(VTOC(odvp), fnm, flen, cred);
   1377        1.1       rvb 	if (ovcp) {
   1378        1.1       rvb 	    struct vnode *ovp = CTOV(ovcp);
   1379        1.1       rvb 	    if ((ovp) &&
   1380        1.1       rvb 		(ovp->v_type == VDIR)) /* If it's a directory */
   1381        1.3       rvb 		coda_nc_zapfile(VTOC(ovp),"..", 2);
   1382        1.1       rvb 	}
   1383        1.1       rvb     }
   1384        1.1       rvb 
   1385        1.1       rvb     /* Remove the entries for both source and target files */
   1386        1.3       rvb     coda_nc_zapfile(VTOC(odvp), fnm, flen);
   1387        1.3       rvb     coda_nc_zapfile(VTOC(ndvp), tnm, tlen);
   1388        1.1       rvb 
   1389        1.1       rvb     /* Invalidate the parent's attr cache, the modification time has changed */
   1390        1.1       rvb     VTOC(odvp)->c_flags &= ~C_VATTR;
   1391        1.1       rvb     VTOC(ndvp)->c_flags &= ~C_VATTR;
   1392        1.1       rvb 
   1393        1.3       rvb     if (flen+1 > CODA_MAXNAMLEN) {
   1394        1.3       rvb 	MARK_INT_FAIL(CODA_RENAME_STATS);
   1395        1.1       rvb 	error = EINVAL;
   1396        1.1       rvb 	goto exit;
   1397        1.1       rvb     }
   1398        1.1       rvb 
   1399        1.3       rvb     if (tlen+1 > CODA_MAXNAMLEN) {
   1400        1.3       rvb 	MARK_INT_FAIL(CODA_RENAME_STATS);
   1401        1.1       rvb 	error = EINVAL;
   1402        1.1       rvb 	goto exit;
   1403        1.1       rvb     }
   1404        1.1       rvb 
   1405        1.1       rvb     error = venus_rename(vtomi(odvp), &odcp->c_fid, &ndcp->c_fid, fnm, flen, tnm, tlen, cred, p);
   1406        1.1       rvb 
   1407        1.1       rvb  exit:
   1408        1.3       rvb     CODADEBUG(CODA_RENAME, myprintf(("in rename result %d\n",error));)
   1409        1.1       rvb     /* XXX - do we need to call cache pureg on the moved vnode? */
   1410        1.1       rvb     cache_purge(ap->a_fvp);
   1411        1.1       rvb 
   1412        1.1       rvb     /* It seems to be incumbent on us to drop locks on all four vnodes */
   1413        1.1       rvb     /* From-vnodes are not locked, only ref'd.  To-vnodes are locked. */
   1414        1.1       rvb 
   1415        1.1       rvb     vrele(ap->a_fvp);
   1416        1.1       rvb     vrele(odvp);
   1417        1.1       rvb 
   1418        1.1       rvb     if (ap->a_tvp) {
   1419        1.1       rvb 	if (ap->a_tvp == ndvp) {
   1420        1.1       rvb 	    vrele(ap->a_tvp);
   1421        1.1       rvb 	} else {
   1422        1.1       rvb 	    vput(ap->a_tvp);
   1423        1.1       rvb 	}
   1424        1.1       rvb     }
   1425        1.1       rvb 
   1426        1.1       rvb     vput(ndvp);
   1427        1.1       rvb     return(error);
   1428        1.1       rvb }
   1429        1.1       rvb 
   1430        1.1       rvb int
   1431        1.3       rvb coda_mkdir(v)
   1432        1.1       rvb     void *v;
   1433        1.1       rvb {
   1434        1.1       rvb /* true args */
   1435        1.1       rvb     struct vop_mkdir_args *ap = v;
   1436        1.1       rvb     struct vnode *dvp = ap->a_dvp;
   1437        1.1       rvb     struct cnode *dcp = VTOC(dvp);
   1438        1.1       rvb     struct componentname  *cnp = ap->a_cnp;
   1439       1.17  augustss     struct vattr *va = ap->a_vap;
   1440        1.1       rvb     struct vnode **vpp = ap->a_vpp;
   1441        1.1       rvb     struct ucred *cred = cnp->cn_cred;
   1442        1.1       rvb     struct proc *p = cnp->cn_proc;
   1443        1.1       rvb /* locals */
   1444        1.1       rvb     int error;
   1445        1.1       rvb     const char *nm = cnp->cn_nameptr;
   1446        1.1       rvb     int len = cnp->cn_namelen;
   1447        1.1       rvb     struct cnode *cp;
   1448        1.1       rvb     ViceFid VFid;
   1449        1.1       rvb     struct vattr ova;
   1450        1.1       rvb 
   1451        1.3       rvb     MARK_ENTRY(CODA_MKDIR_STATS);
   1452        1.1       rvb 
   1453        1.1       rvb     /* Check for mkdir of target object. */
   1454        1.1       rvb     if (IS_CTL_NAME(dvp, nm, len)) {
   1455        1.1       rvb 	*vpp = (struct vnode *)0;
   1456        1.3       rvb 	MARK_INT_FAIL(CODA_MKDIR_STATS);
   1457        1.1       rvb 	return(EACCES);
   1458        1.1       rvb     }
   1459        1.1       rvb 
   1460        1.3       rvb     if (len+1 > CODA_MAXNAMLEN) {
   1461        1.1       rvb 	*vpp = (struct vnode *)0;
   1462        1.3       rvb 	MARK_INT_FAIL(CODA_MKDIR_STATS);
   1463        1.1       rvb 	return(EACCES);
   1464        1.1       rvb     }
   1465        1.1       rvb 
   1466        1.1       rvb     error = venus_mkdir(vtomi(dvp), &dcp->c_fid, nm, len, va, cred, p, &VFid, &ova);
   1467        1.1       rvb 
   1468        1.1       rvb     if (!error) {
   1469        1.3       rvb 	if (coda_find(&VFid) != NULL)
   1470        1.1       rvb 	    panic("cnode existed for newly created directory!");
   1471        1.1       rvb 
   1472        1.1       rvb 
   1473        1.3       rvb 	cp =  make_coda_node(&VFid, dvp->v_mount, va->va_type);
   1474        1.1       rvb 	*vpp = CTOV(cp);
   1475        1.1       rvb 
   1476        1.1       rvb 	/* enter the new vnode in the Name Cache */
   1477        1.3       rvb 	coda_nc_enter(VTOC(dvp), nm, len, cred, VTOC(*vpp));
   1478        1.1       rvb 
   1479        1.1       rvb 	/* as a side effect, enter "." and ".." for the directory */
   1480        1.3       rvb 	coda_nc_enter(VTOC(*vpp), ".", 1, cred, VTOC(*vpp));
   1481        1.3       rvb 	coda_nc_enter(VTOC(*vpp), "..", 2, cred, VTOC(dvp));
   1482        1.1       rvb 
   1483        1.3       rvb 	if (coda_attr_cache) {
   1484        1.1       rvb 	    VTOC(*vpp)->c_vattr = ova;		/* update the attr cache */
   1485        1.1       rvb 	    VTOC(*vpp)->c_flags |= C_VATTR;	/* Valid attributes in cnode */
   1486        1.1       rvb 	}
   1487        1.1       rvb 
   1488        1.1       rvb 	/* Invalidate the parent's attr cache, the modification time has changed */
   1489        1.1       rvb 	VTOC(dvp)->c_flags &= ~C_VATTR;
   1490        1.1       rvb 
   1491        1.3       rvb 	CODADEBUG( CODA_MKDIR, myprintf(("mkdir: (%lx.%lx.%lx) result %d\n",
   1492        1.1       rvb 				    VFid.Volume, VFid.Vnode, VFid.Unique, error)); )
   1493        1.1       rvb     } else {
   1494        1.1       rvb 	*vpp = (struct vnode *)0;
   1495        1.3       rvb 	CODADEBUG(CODA_MKDIR, myprintf(("mkdir error %d\n",error));)
   1496        1.1       rvb     }
   1497        1.1       rvb 
   1498        1.1       rvb     /*
   1499        1.1       rvb      * Currently, all mkdirs explicitly vput their dvp's.
   1500        1.1       rvb      * It also appears that we *must* lock the vpp, since
   1501        1.1       rvb      * lockleaf isn't set, but someone down the road is going
   1502        1.1       rvb      * to try to unlock the new directory.
   1503        1.1       rvb      */
   1504        1.1       rvb     vput(dvp);
   1505        1.1       rvb     if (!error) {
   1506        1.2       rvb 	if ((error = vn_lock(*ap->a_vpp, LK_EXCLUSIVE))) {
   1507        1.3       rvb 	    panic("coda_mkdir: couldn't lock child");
   1508        1.1       rvb 	}
   1509        1.1       rvb     }
   1510        1.1       rvb 
   1511        1.1       rvb     /* Have to free the previously saved name */
   1512        1.1       rvb     /*
   1513        1.1       rvb      * ufs_mkdir doesn't check for SAVESTART before freeing the
   1514        1.1       rvb      * pathname buffer, but ufs_create does.  For the moment, I'll
   1515        1.1       rvb      * follow their lead, but this seems like it is probably
   1516        1.1       rvb      * incorrect.
   1517        1.1       rvb      */
   1518       1.20   thorpej     PNBUF_PUT(cnp->cn_pnbuf);
   1519        1.1       rvb     return(error);
   1520        1.1       rvb }
   1521        1.1       rvb 
   1522        1.1       rvb int
   1523        1.3       rvb coda_rmdir(v)
   1524        1.1       rvb     void *v;
   1525        1.1       rvb {
   1526        1.1       rvb /* true args */
   1527        1.1       rvb     struct vop_rmdir_args *ap = v;
   1528        1.1       rvb     struct vnode *dvp = ap->a_dvp;
   1529        1.1       rvb     struct cnode *dcp = VTOC(dvp);
   1530        1.1       rvb     struct componentname  *cnp = ap->a_cnp;
   1531        1.1       rvb     struct ucred *cred = cnp->cn_cred;
   1532        1.1       rvb     struct proc *p = cnp->cn_proc;
   1533        1.1       rvb /* true args */
   1534        1.1       rvb     int error;
   1535        1.1       rvb     const char *nm = cnp->cn_nameptr;
   1536        1.1       rvb     int len = cnp->cn_namelen;
   1537        1.1       rvb     struct cnode *cp;
   1538        1.1       rvb 
   1539        1.3       rvb     MARK_ENTRY(CODA_RMDIR_STATS);
   1540        1.1       rvb 
   1541        1.1       rvb     /* Check for rmdir of control object. */
   1542        1.1       rvb     if (IS_CTL_NAME(dvp, nm, len)) {
   1543        1.3       rvb 	MARK_INT_FAIL(CODA_RMDIR_STATS);
   1544        1.1       rvb 	return(ENOENT);
   1545        1.1       rvb     }
   1546        1.1       rvb 
   1547        1.1       rvb     /* We're being conservative here, it might be that this person
   1548        1.1       rvb      * doesn't really have sufficient access to delete the file
   1549        1.1       rvb      * but we feel zapping the entry won't really hurt anyone -- dcs
   1550        1.1       rvb      */
   1551        1.1       rvb     /*
   1552        1.1       rvb      * As a side effect of the rmdir, remove any entries for children of
   1553        1.1       rvb      * the directory, especially "." and "..".
   1554        1.1       rvb      */
   1555        1.3       rvb     cp = coda_nc_lookup(dcp, nm, len, cred);
   1556        1.3       rvb     if (cp) coda_nc_zapParentfid(&(cp->c_fid), NOT_DOWNCALL);
   1557        1.1       rvb 
   1558        1.3       rvb     /* Remove the file's entry from the CODA Name Cache */
   1559        1.3       rvb     coda_nc_zapfile(dcp, nm, len);
   1560        1.1       rvb 
   1561        1.1       rvb     /* Invalidate the parent's attr cache, the modification time has changed */
   1562        1.1       rvb     dcp->c_flags &= ~C_VATTR;
   1563        1.1       rvb 
   1564        1.1       rvb     error = venus_rmdir(vtomi(dvp), &dcp->c_fid, nm, len, cred, p);
   1565        1.1       rvb 
   1566        1.3       rvb     CODADEBUG(CODA_RMDIR, myprintf(("in rmdir result %d\n", error)); )
   1567        1.1       rvb 
   1568        1.1       rvb     /*
   1569        1.1       rvb      * regardless of what happens, we need to drop locks/refs on the
   1570        1.1       rvb      * parent and child.  I think.
   1571        1.1       rvb      */
   1572        1.1       rvb     if (dvp == ap->a_vp) {
   1573        1.1       rvb 	vrele(ap->a_vp);
   1574        1.1       rvb     } else {
   1575        1.1       rvb 	vput(ap->a_vp);
   1576        1.1       rvb     }
   1577        1.1       rvb     vput(dvp);
   1578        1.1       rvb 
   1579        1.1       rvb     if ((cnp->cn_flags & SAVESTART) == 0) {
   1580       1.20   thorpej 	PNBUF_PUT(cnp->cn_pnbuf);
   1581        1.1       rvb     }
   1582        1.1       rvb     return(error);
   1583        1.1       rvb }
   1584        1.1       rvb 
   1585        1.1       rvb int
   1586        1.3       rvb coda_symlink(v)
   1587        1.1       rvb     void *v;
   1588        1.1       rvb {
   1589        1.1       rvb /* true args */
   1590        1.1       rvb     struct vop_symlink_args *ap = v;
   1591        1.1       rvb     struct vnode *tdvp = ap->a_dvp;
   1592        1.1       rvb     struct cnode *tdcp = VTOC(tdvp);
   1593        1.1       rvb     struct componentname *cnp = ap->a_cnp;
   1594        1.1       rvb     struct vattr *tva = ap->a_vap;
   1595        1.1       rvb     char *path = ap->a_target;
   1596        1.1       rvb     struct ucred *cred = cnp->cn_cred;
   1597        1.1       rvb     struct proc *p = cnp->cn_proc;
   1598        1.1       rvb /* locals */
   1599        1.1       rvb     int error;
   1600        1.1       rvb     /*
   1601        1.3       rvb      * XXX I'm assuming the following things about coda_symlink's
   1602        1.1       rvb      * arguments:
   1603        1.1       rvb      *       t(foo) is the new name/parent/etc being created.
   1604        1.1       rvb      *       lname is the contents of the new symlink.
   1605        1.1       rvb      */
   1606        1.2       rvb     const char *nm = cnp->cn_nameptr;
   1607        1.1       rvb     int len = cnp->cn_namelen;
   1608        1.1       rvb     int plen = strlen(path);
   1609        1.1       rvb 
   1610        1.1       rvb     /* XXX What about the vpp argument?  Do we need it? */
   1611        1.1       rvb     /*
   1612        1.1       rvb      * Here's the strategy for the moment: perform the symlink, then
   1613        1.1       rvb      * do a lookup to grab the resulting vnode.  I know this requires
   1614        1.1       rvb      * two communications with Venus for a new sybolic link, but
   1615        1.1       rvb      * that's the way the ball bounces.  I don't yet want to change
   1616        1.1       rvb      * the way the Mach symlink works.  When Mach support is
   1617        1.1       rvb      * deprecated, we should change symlink so that the common case
   1618        1.1       rvb      * returns the resultant vnode in a vpp argument.
   1619        1.1       rvb      */
   1620        1.1       rvb 
   1621        1.3       rvb     MARK_ENTRY(CODA_SYMLINK_STATS);
   1622        1.1       rvb 
   1623        1.1       rvb     /* Check for symlink of control object. */
   1624        1.1       rvb     if (IS_CTL_NAME(tdvp, nm, len)) {
   1625        1.3       rvb 	MARK_INT_FAIL(CODA_SYMLINK_STATS);
   1626        1.1       rvb 	return(EACCES);
   1627        1.1       rvb     }
   1628        1.1       rvb 
   1629        1.3       rvb     if (plen+1 > CODA_MAXPATHLEN) {
   1630        1.3       rvb 	MARK_INT_FAIL(CODA_SYMLINK_STATS);
   1631        1.1       rvb 	return(EINVAL);
   1632        1.1       rvb     }
   1633        1.1       rvb 
   1634        1.3       rvb     if (len+1 > CODA_MAXNAMLEN) {
   1635        1.3       rvb 	MARK_INT_FAIL(CODA_SYMLINK_STATS);
   1636        1.1       rvb 	error = EINVAL;
   1637        1.1       rvb 	goto exit;
   1638        1.1       rvb     }
   1639        1.1       rvb 
   1640        1.1       rvb     error = venus_symlink(vtomi(tdvp), &tdcp->c_fid, path, plen, nm, len, tva, cred, p);
   1641        1.1       rvb 
   1642        1.1       rvb     /* Invalidate the parent's attr cache, the modification time has changed */
   1643        1.1       rvb     tdcp->c_flags &= ~C_VATTR;
   1644        1.1       rvb 
   1645        1.1       rvb     if (!error)
   1646        1.1       rvb     {
   1647        1.1       rvb 	struct nameidata nd;
   1648        1.1       rvb 	NDINIT(&nd, LOOKUP, FOLLOW|LOCKLEAF, UIO_SYSSPACE, nm, p);
   1649        1.1       rvb 	nd.ni_cnd.cn_cred = cred;
   1650        1.1       rvb 	nd.ni_loopcnt = 0;
   1651        1.1       rvb 	nd.ni_startdir = tdvp;
   1652        1.1       rvb 	nd.ni_cnd.cn_pnbuf = (char *)nm;
   1653        1.1       rvb 	nd.ni_cnd.cn_nameptr = nd.ni_cnd.cn_pnbuf;
   1654        1.1       rvb 	nd.ni_pathlen = len;
   1655        1.1       rvb 	vput(tdvp);
   1656        1.1       rvb 	error = lookup(&nd);
   1657        1.1       rvb 	*ap->a_vpp = nd.ni_vp;
   1658        1.1       rvb     }
   1659        1.1       rvb 
   1660        1.1       rvb     /*
   1661        1.1       rvb      * Free the name buffer
   1662        1.1       rvb      */
   1663        1.1       rvb     if ((cnp->cn_flags & SAVESTART) == 0) {
   1664       1.20   thorpej 	PNBUF_PUT(cnp->cn_pnbuf);
   1665        1.1       rvb     }
   1666        1.1       rvb 
   1667        1.1       rvb  exit:
   1668        1.3       rvb     CODADEBUG(CODA_SYMLINK, myprintf(("in symlink result %d\n",error)); )
   1669        1.1       rvb     return(error);
   1670        1.1       rvb }
   1671        1.1       rvb 
   1672        1.1       rvb /*
   1673        1.1       rvb  * Read directory entries.
   1674        1.1       rvb  */
   1675        1.1       rvb int
   1676        1.3       rvb coda_readdir(v)
   1677        1.1       rvb     void *v;
   1678        1.1       rvb {
   1679        1.1       rvb /* true args */
   1680        1.1       rvb     struct vop_readdir_args *ap = v;
   1681        1.1       rvb     struct vnode *vp = ap->a_vp;
   1682        1.1       rvb     struct cnode *cp = VTOC(vp);
   1683       1.17  augustss     struct uio *uiop = ap->a_uio;
   1684        1.1       rvb     struct ucred *cred = ap->a_cred;
   1685        1.1       rvb     int *eofflag = ap->a_eofflag;
   1686        1.1       rvb     off_t **cookies = ap->a_cookies;
   1687        1.1       rvb     int *ncookies = ap->a_ncookies;
   1688        1.1       rvb     struct proc *p = ap->a_uio->uio_procp;
   1689        1.1       rvb /* upcall decl */
   1690        1.1       rvb /* locals */
   1691        1.1       rvb     int error = 0;
   1692        1.1       rvb 
   1693        1.3       rvb     MARK_ENTRY(CODA_READDIR_STATS);
   1694        1.1       rvb 
   1695       1.12      matt     CODADEBUG(CODA_READDIR, myprintf(("coda_readdir(%p, %lu, %lld, %d)\n", uiop->uio_iov->iov_base, (unsigned long) uiop->uio_resid, (long long) uiop->uio_offset, uiop->uio_segflg)); )
   1696        1.1       rvb 
   1697        1.1       rvb     /* Check for readdir of control object. */
   1698        1.1       rvb     if (IS_CTL_VP(vp)) {
   1699        1.3       rvb 	MARK_INT_FAIL(CODA_READDIR_STATS);
   1700        1.1       rvb 	return(ENOENT);
   1701        1.1       rvb     }
   1702        1.1       rvb 
   1703        1.2       rvb     {
   1704        1.1       rvb 	/* Redirect the request to UFS. */
   1705        1.1       rvb 
   1706        1.1       rvb 	/* If directory is not already open do an "internal open" on it. */
   1707        1.1       rvb 	int opened_internally = 0;
   1708        1.1       rvb 	if (cp->c_ovp == NULL) {
   1709        1.1       rvb 	    opened_internally = 1;
   1710        1.3       rvb 	    MARK_INT_GEN(CODA_OPEN_STATS);
   1711        1.1       rvb 	    error = VOP_OPEN(vp, FREAD, cred, p);
   1712       1.18      phil #ifdef	CODA_VERBOSE
   1713        1.3       rvb printf("coda_readdir: Internally Opening %p\n", vp);
   1714       1.18      phil #endif
   1715        1.1       rvb 	    if (error) return(error);
   1716        1.1       rvb 	}
   1717        1.1       rvb 
   1718        1.1       rvb 	/* Have UFS handle the call. */
   1719       1.22       chs 	CODADEBUG(CODA_READDIR, myprintf(("indirect readdir: fid = (%lx.%lx.%lx), refcnt = %d\n",cp->c_fid.Volume, cp->c_fid.Vnode, cp->c_fid.Unique, vp->v_usecount)); )
   1720        1.1       rvb 	error = VOP_READDIR(cp->c_ovp, uiop, cred, eofflag, cookies,
   1721        1.1       rvb 			       ncookies);
   1722        1.1       rvb 	if (error)
   1723        1.3       rvb 	    MARK_INT_FAIL(CODA_READDIR_STATS);
   1724        1.1       rvb 	else
   1725        1.3       rvb 	    MARK_INT_SAT(CODA_READDIR_STATS);
   1726        1.1       rvb 
   1727        1.1       rvb 	/* Do an "internal close" if necessary. */
   1728        1.1       rvb 	if (opened_internally) {
   1729        1.3       rvb 	    MARK_INT_GEN(CODA_CLOSE_STATS);
   1730        1.1       rvb 	    (void)VOP_CLOSE(vp, FREAD, cred, p);
   1731        1.1       rvb 	}
   1732        1.1       rvb     }
   1733        1.1       rvb 
   1734        1.1       rvb     return(error);
   1735        1.1       rvb }
   1736        1.1       rvb 
   1737        1.1       rvb /*
   1738        1.1       rvb  * Convert from file system blocks to device blocks
   1739        1.1       rvb  */
   1740        1.1       rvb int
   1741        1.3       rvb coda_bmap(v)
   1742        1.1       rvb     void *v;
   1743        1.1       rvb {
   1744        1.1       rvb     /* XXX on the global proc */
   1745        1.1       rvb /* true args */
   1746        1.1       rvb     struct vop_bmap_args *ap = v;
   1747        1.1       rvb     struct vnode *vp __attribute__((unused)) = ap->a_vp;	/* file's vnode */
   1748        1.1       rvb     daddr_t bn __attribute__((unused)) = ap->a_bn;	/* fs block number */
   1749        1.1       rvb     struct vnode **vpp = ap->a_vpp;			/* RETURN vp of device */
   1750        1.1       rvb     daddr_t *bnp __attribute__((unused)) = ap->a_bnp;	/* RETURN device block number */
   1751   1.23.2.7   nathanw     struct proc *p __attribute__((unused)) = curproc;
   1752        1.1       rvb /* upcall decl */
   1753        1.1       rvb /* locals */
   1754        1.1       rvb 
   1755        1.1       rvb 	*vpp = (struct vnode *)0;
   1756        1.3       rvb 	myprintf(("coda_bmap called!\n"));
   1757        1.1       rvb 	return(EINVAL);
   1758        1.1       rvb }
   1759        1.1       rvb 
   1760        1.1       rvb /*
   1761        1.1       rvb  * I don't think the following two things are used anywhere, so I've
   1762        1.1       rvb  * commented them out
   1763        1.1       rvb  *
   1764        1.1       rvb  * struct buf *async_bufhead;
   1765        1.1       rvb  * int async_daemon_count;
   1766        1.1       rvb  */
   1767        1.1       rvb int
   1768        1.3       rvb coda_strategy(v)
   1769        1.1       rvb     void *v;
   1770        1.1       rvb {
   1771        1.1       rvb /* true args */
   1772        1.1       rvb     struct vop_strategy_args *ap = v;
   1773       1.17  augustss     struct buf *bp __attribute__((unused)) = ap->a_bp;
   1774   1.23.2.7   nathanw     struct proc *p __attribute__((unused)) = curproc;
   1775        1.1       rvb /* upcall decl */
   1776        1.1       rvb /* locals */
   1777        1.1       rvb 
   1778        1.3       rvb 	myprintf(("coda_strategy called!  "));
   1779        1.1       rvb 	return(EINVAL);
   1780        1.1       rvb }
   1781        1.1       rvb 
   1782        1.1       rvb int
   1783        1.3       rvb coda_reclaim(v)
   1784        1.1       rvb     void *v;
   1785        1.1       rvb {
   1786        1.1       rvb /* true args */
   1787        1.1       rvb     struct vop_reclaim_args *ap = v;
   1788        1.1       rvb     struct vnode *vp = ap->a_vp;
   1789        1.1       rvb     struct cnode *cp = VTOC(vp);
   1790        1.1       rvb /* upcall decl */
   1791        1.1       rvb /* locals */
   1792        1.1       rvb 
   1793        1.1       rvb /*
   1794        1.1       rvb  * Forced unmount/flush will let vnodes with non zero use be destroyed!
   1795        1.1       rvb  */
   1796        1.1       rvb     ENTRY;
   1797        1.1       rvb 
   1798        1.1       rvb     if (IS_UNMOUNTING(cp)) {
   1799        1.1       rvb #ifdef	DEBUG
   1800        1.1       rvb 	if (VTOC(vp)->c_ovp) {
   1801        1.1       rvb 	    if (IS_UNMOUNTING(cp))
   1802        1.3       rvb 		printf("coda_reclaim: c_ovp not void: vp %p, cp %p\n", vp, cp);
   1803        1.1       rvb 	}
   1804        1.1       rvb #endif
   1805        1.1       rvb     } else {
   1806        1.5       rvb #ifdef OLD_DIAGNOSTIC
   1807        1.1       rvb 	if (vp->v_usecount != 0)
   1808        1.5       rvb 	    print("coda_reclaim: pushing active %p\n", vp);
   1809        1.1       rvb 	if (VTOC(vp)->c_ovp) {
   1810        1.3       rvb 	    panic("coda_reclaim: c_ovp not void");
   1811        1.2       rvb 	}
   1812        1.5       rvb #endif
   1813        1.1       rvb     }
   1814        1.1       rvb     cache_purge(vp);
   1815        1.3       rvb     coda_free(VTOC(vp));
   1816   1.23.2.6   nathanw     SET_VTOC(vp) = NULL;
   1817        1.1       rvb     return (0);
   1818        1.1       rvb }
   1819        1.1       rvb 
   1820        1.1       rvb int
   1821        1.3       rvb coda_lock(v)
   1822        1.1       rvb     void *v;
   1823        1.1       rvb {
   1824        1.1       rvb /* true args */
   1825        1.1       rvb     struct vop_lock_args *ap = v;
   1826        1.1       rvb     struct vnode *vp = ap->a_vp;
   1827        1.1       rvb     struct cnode *cp = VTOC(vp);
   1828        1.1       rvb /* upcall decl */
   1829        1.1       rvb /* locals */
   1830        1.1       rvb 
   1831        1.1       rvb     ENTRY;
   1832        1.1       rvb 
   1833        1.3       rvb     if (coda_lockdebug) {
   1834        1.1       rvb 	myprintf(("Attempting lock on %lx.%lx.%lx\n",
   1835        1.1       rvb 		  cp->c_fid.Volume, cp->c_fid.Vnode, cp->c_fid.Unique));
   1836        1.1       rvb     }
   1837        1.1       rvb 
   1838       1.10  wrstuden     return (lockmgr(&vp->v_lock, ap->a_flags, &vp->v_interlock));
   1839        1.1       rvb }
   1840        1.1       rvb 
   1841        1.1       rvb int
   1842        1.3       rvb coda_unlock(v)
   1843        1.1       rvb     void *v;
   1844        1.1       rvb {
   1845        1.1       rvb /* true args */
   1846        1.1       rvb     struct vop_unlock_args *ap = v;
   1847        1.1       rvb     struct vnode *vp = ap->a_vp;
   1848        1.1       rvb     struct cnode *cp = VTOC(vp);
   1849        1.1       rvb /* upcall decl */
   1850        1.1       rvb /* locals */
   1851        1.1       rvb 
   1852        1.1       rvb     ENTRY;
   1853        1.3       rvb     if (coda_lockdebug) {
   1854        1.1       rvb 	myprintf(("Attempting unlock on %lx.%lx.%lx\n",
   1855        1.1       rvb 		  cp->c_fid.Volume, cp->c_fid.Vnode, cp->c_fid.Unique));
   1856        1.1       rvb     }
   1857        1.1       rvb 
   1858       1.10  wrstuden     return (lockmgr(&vp->v_lock, ap->a_flags | LK_RELEASE, &vp->v_interlock));
   1859        1.1       rvb }
   1860        1.1       rvb 
   1861        1.1       rvb int
   1862        1.3       rvb coda_islocked(v)
   1863        1.1       rvb     void *v;
   1864        1.1       rvb {
   1865        1.1       rvb /* true args */
   1866        1.1       rvb     struct vop_islocked_args *ap = v;
   1867        1.1       rvb     ENTRY;
   1868        1.1       rvb 
   1869       1.10  wrstuden     return (lockstatus(&ap->a_vp->v_lock));
   1870        1.1       rvb }
   1871        1.1       rvb 
   1872        1.1       rvb /* How one looks up a vnode given a device/inode pair: */
   1873        1.1       rvb int
   1874        1.3       rvb coda_grab_vnode(dev_t dev, ino_t ino, struct vnode **vpp)
   1875        1.1       rvb {
   1876        1.1       rvb     /* This is like VFS_VGET() or igetinode()! */
   1877        1.1       rvb     int           error;
   1878        1.1       rvb     struct mount *mp;
   1879        1.1       rvb 
   1880        1.1       rvb     if (!(mp = devtomp(dev))) {
   1881        1.3       rvb 	myprintf(("coda_grab_vnode: devtomp(%d) returns NULL\n", dev));
   1882        1.1       rvb 	return(ENXIO);
   1883        1.1       rvb     }
   1884        1.1       rvb 
   1885        1.1       rvb     /* XXX - ensure that nonzero-return means failure */
   1886        1.1       rvb     error = VFS_VGET(mp,ino,vpp);
   1887        1.1       rvb     if (error) {
   1888        1.3       rvb 	myprintf(("coda_grab_vnode: iget/vget(%d, %d) returns %p, err %d\n",
   1889        1.1       rvb 		  dev, ino, *vpp, error));
   1890        1.1       rvb 	return(ENOENT);
   1891        1.1       rvb     }
   1892        1.1       rvb     return(0);
   1893        1.1       rvb }
   1894        1.1       rvb 
   1895        1.1       rvb void
   1896        1.1       rvb print_vattr( attr )
   1897        1.1       rvb 	struct vattr *attr;
   1898        1.1       rvb {
   1899        1.1       rvb     char *typestr;
   1900        1.1       rvb 
   1901        1.1       rvb     switch (attr->va_type) {
   1902        1.1       rvb     case VNON:
   1903        1.1       rvb 	typestr = "VNON";
   1904        1.1       rvb 	break;
   1905        1.1       rvb     case VREG:
   1906        1.1       rvb 	typestr = "VREG";
   1907        1.1       rvb 	break;
   1908        1.1       rvb     case VDIR:
   1909        1.1       rvb 	typestr = "VDIR";
   1910        1.1       rvb 	break;
   1911        1.1       rvb     case VBLK:
   1912        1.1       rvb 	typestr = "VBLK";
   1913        1.1       rvb 	break;
   1914        1.1       rvb     case VCHR:
   1915        1.1       rvb 	typestr = "VCHR";
   1916        1.1       rvb 	break;
   1917        1.1       rvb     case VLNK:
   1918        1.1       rvb 	typestr = "VLNK";
   1919        1.1       rvb 	break;
   1920        1.1       rvb     case VSOCK:
   1921        1.1       rvb 	typestr = "VSCK";
   1922        1.1       rvb 	break;
   1923        1.1       rvb     case VFIFO:
   1924        1.1       rvb 	typestr = "VFFO";
   1925        1.1       rvb 	break;
   1926        1.1       rvb     case VBAD:
   1927        1.1       rvb 	typestr = "VBAD";
   1928        1.1       rvb 	break;
   1929        1.1       rvb     default:
   1930        1.1       rvb 	typestr = "????";
   1931        1.1       rvb 	break;
   1932        1.1       rvb     }
   1933        1.1       rvb 
   1934        1.1       rvb 
   1935        1.1       rvb     myprintf(("attr: type %s mode %d uid %d gid %d fsid %d rdev %d\n",
   1936        1.1       rvb 	      typestr, (int)attr->va_mode, (int)attr->va_uid,
   1937        1.1       rvb 	      (int)attr->va_gid, (int)attr->va_fsid, (int)attr->va_rdev));
   1938        1.1       rvb 
   1939        1.1       rvb     myprintf(("      fileid %d nlink %d size %d blocksize %d bytes %d\n",
   1940        1.1       rvb 	      (int)attr->va_fileid, (int)attr->va_nlink,
   1941        1.1       rvb 	      (int)attr->va_size,
   1942        1.1       rvb 	      (int)attr->va_blocksize,(int)attr->va_bytes));
   1943        1.1       rvb     myprintf(("      gen %ld flags %ld vaflags %d\n",
   1944        1.1       rvb 	      attr->va_gen, attr->va_flags, attr->va_vaflags));
   1945        1.1       rvb     myprintf(("      atime sec %d nsec %d\n",
   1946        1.1       rvb 	      (int)attr->va_atime.tv_sec, (int)attr->va_atime.tv_nsec));
   1947        1.1       rvb     myprintf(("      mtime sec %d nsec %d\n",
   1948        1.1       rvb 	      (int)attr->va_mtime.tv_sec, (int)attr->va_mtime.tv_nsec));
   1949        1.1       rvb     myprintf(("      ctime sec %d nsec %d\n",
   1950        1.1       rvb 	      (int)attr->va_ctime.tv_sec, (int)attr->va_ctime.tv_nsec));
   1951        1.1       rvb }
   1952        1.1       rvb 
   1953        1.1       rvb /* How to print a ucred */
   1954        1.1       rvb void
   1955        1.1       rvb print_cred(cred)
   1956        1.1       rvb 	struct ucred *cred;
   1957        1.1       rvb {
   1958        1.1       rvb 
   1959        1.1       rvb 	int i;
   1960        1.1       rvb 
   1961        1.1       rvb 	myprintf(("ref %d\tuid %d\n",cred->cr_ref,cred->cr_uid));
   1962        1.1       rvb 
   1963        1.1       rvb 	for (i=0; i < cred->cr_ngroups; i++)
   1964        1.1       rvb 		myprintf(("\tgroup %d: (%d)\n",i,cred->cr_groups[i]));
   1965        1.1       rvb 	myprintf(("\n"));
   1966        1.1       rvb 
   1967        1.1       rvb }
   1968        1.1       rvb 
   1969        1.1       rvb /*
   1970        1.1       rvb  * Return a vnode for the given fid.
   1971        1.1       rvb  * If no cnode exists for this fid create one and put it
   1972        1.1       rvb  * in a table hashed by fid.Volume and fid.Vnode.  If the cnode for
   1973        1.1       rvb  * this fid is already in the table return it (ref count is
   1974        1.3       rvb  * incremented by coda_find.  The cnode will be flushed from the
   1975        1.3       rvb  * table when coda_inactive calls coda_unsave.
   1976        1.1       rvb  */
   1977        1.1       rvb struct cnode *
   1978        1.3       rvb make_coda_node(fid, vfsp, type)
   1979        1.1       rvb      ViceFid *fid; struct mount *vfsp; short type;
   1980        1.1       rvb {
   1981        1.1       rvb     struct cnode *cp;
   1982        1.1       rvb     int          err;
   1983        1.1       rvb 
   1984        1.3       rvb     if ((cp = coda_find(fid)) == NULL) {
   1985        1.1       rvb 	struct vnode *vp;
   1986        1.1       rvb 
   1987        1.3       rvb 	cp = coda_alloc();
   1988        1.1       rvb 	cp->c_fid = *fid;
   1989        1.1       rvb 
   1990        1.3       rvb 	err = getnewvnode(VT_CODA, vfsp, coda_vnodeop_p, &vp);
   1991        1.1       rvb 	if (err) {
   1992   1.23.2.9   nathanw 	    panic("coda: getnewvnode returned error %d", err);
   1993        1.1       rvb 	}
   1994        1.1       rvb 	vp->v_data = cp;
   1995        1.1       rvb 	vp->v_type = type;
   1996        1.1       rvb 	cp->c_vnode = vp;
   1997        1.3       rvb 	coda_save(cp);
   1998        1.1       rvb 
   1999        1.1       rvb     } else {
   2000        1.1       rvb 	vref(CTOV(cp));
   2001        1.1       rvb     }
   2002        1.1       rvb 
   2003        1.1       rvb     return cp;
   2004   1.23.2.3   nathanw }
   2005   1.23.2.3   nathanw 
   2006   1.23.2.3   nathanw int
   2007   1.23.2.3   nathanw coda_getpages(v)
   2008   1.23.2.3   nathanw 	void *v;
   2009   1.23.2.3   nathanw {
   2010   1.23.2.3   nathanw 	struct vop_getpages_args /* {
   2011   1.23.2.3   nathanw 		struct vnode *a_vp;
   2012   1.23.2.3   nathanw 		voff_t a_offset;
   2013   1.23.2.3   nathanw 		struct vm_page **a_m;
   2014   1.23.2.3   nathanw 		int *a_count;
   2015   1.23.2.3   nathanw 		int a_centeridx;
   2016   1.23.2.3   nathanw 		vm_prot_t a_access_type;
   2017   1.23.2.3   nathanw 		int a_advice;
   2018   1.23.2.3   nathanw 		int a_flags;
   2019   1.23.2.3   nathanw 	} */ *ap = v;
   2020   1.23.2.3   nathanw 	struct vnode *vp = ap->a_vp;
   2021   1.23.2.3   nathanw 	struct cnode *cp = VTOC(vp);
   2022   1.23.2.7   nathanw 	struct proc *p = curproc;
   2023   1.23.2.3   nathanw 	struct ucred *cred = p->p_ucred;
   2024   1.23.2.3   nathanw 	int error;
   2025   1.23.2.3   nathanw 
   2026   1.23.2.3   nathanw 	/* Check for control object. */
   2027   1.23.2.3   nathanw 	if (IS_CTL_VP(vp)) {
   2028   1.23.2.3   nathanw 		return(EINVAL);
   2029   1.23.2.3   nathanw 	}
   2030   1.23.2.3   nathanw 
   2031   1.23.2.3   nathanw 	error = VOP_OPEN(vp, FREAD, cred, p);
   2032   1.23.2.3   nathanw 	if (error) {
   2033   1.23.2.3   nathanw 		return error;
   2034   1.23.2.3   nathanw 	}
   2035   1.23.2.3   nathanw 	ap->a_vp = cp->c_ovp;
   2036   1.23.2.3   nathanw 	error = VOCALL(ap->a_vp->v_op, VOFFSET(vop_getpages), ap);
   2037   1.23.2.3   nathanw 	(void) VOP_CLOSE(vp, FREAD, cred, p);
   2038   1.23.2.3   nathanw 	return error;
   2039   1.23.2.3   nathanw }
   2040   1.23.2.3   nathanw 
   2041   1.23.2.3   nathanw int
   2042   1.23.2.3   nathanw coda_putpages(v)
   2043   1.23.2.3   nathanw 	void *v;
   2044   1.23.2.3   nathanw {
   2045   1.23.2.3   nathanw 	struct vop_putpages_args /* {
   2046   1.23.2.3   nathanw 		struct vnode *a_vp;
   2047   1.23.2.3   nathanw 		voff_t a_offlo;
   2048   1.23.2.3   nathanw 		voff_t a_offhi;
   2049   1.23.2.3   nathanw 		int a_flags;
   2050   1.23.2.3   nathanw 	} */ *ap = v;
   2051   1.23.2.3   nathanw 	struct vnode *vp = ap->a_vp;
   2052   1.23.2.6   nathanw 
   2053   1.23.2.6   nathanw 	simple_unlock(&vp->v_interlock);
   2054   1.23.2.3   nathanw 
   2055   1.23.2.3   nathanw 	/* Check for control object. */
   2056   1.23.2.3   nathanw 	if (IS_CTL_VP(vp)) {
   2057   1.23.2.3   nathanw 		return(EINVAL);
   2058   1.23.2.3   nathanw 	}
   2059   1.23.2.3   nathanw 
   2060   1.23.2.3   nathanw 	/*
   2061   1.23.2.3   nathanw 	 * XXX
   2062   1.23.2.3   nathanw 	 * we'd like to do something useful here for msync(),
   2063   1.23.2.3   nathanw 	 * but that turns out to be hard.
   2064   1.23.2.3   nathanw 	 */
   2065   1.23.2.3   nathanw 
   2066   1.23.2.3   nathanw 	return 0;
   2067        1.1       rvb }
   2068