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coda_psdev.c revision 1.50
      1  1.50  christos /*	$NetBSD: coda_psdev.c,v 1.50 2013/10/17 20:54:24 christos Exp $	*/
      2   1.2       rvb 
      3   1.1       rvb /*
      4  1.27     perry  *
      5   1.2       rvb  *             Coda: an Experimental Distributed File System
      6   1.2       rvb  *                              Release 3.1
      7  1.27     perry  *
      8   1.2       rvb  *           Copyright (c) 1987-1998 Carnegie Mellon University
      9   1.2       rvb  *                          All Rights Reserved
     10  1.27     perry  *
     11   1.2       rvb  * Permission  to  use, copy, modify and distribute this software and its
     12   1.2       rvb  * documentation is hereby granted,  provided  that  both  the  copyright
     13   1.2       rvb  * notice  and  this  permission  notice  appear  in  all  copies  of the
     14   1.2       rvb  * software, derivative works or  modified  versions,  and  any  portions
     15   1.2       rvb  * thereof, and that both notices appear in supporting documentation, and
     16   1.2       rvb  * that credit is given to Carnegie Mellon University  in  all  documents
     17   1.2       rvb  * and publicity pertaining to direct or indirect use of this code or its
     18   1.2       rvb  * derivatives.
     19  1.27     perry  *
     20   1.2       rvb  * CODA IS AN EXPERIMENTAL SOFTWARE SYSTEM AND IS  KNOWN  TO  HAVE  BUGS,
     21   1.2       rvb  * SOME  OF  WHICH MAY HAVE SERIOUS CONSEQUENCES.  CARNEGIE MELLON ALLOWS
     22   1.2       rvb  * FREE USE OF THIS SOFTWARE IN ITS "AS IS" CONDITION.   CARNEGIE  MELLON
     23   1.2       rvb  * DISCLAIMS  ANY  LIABILITY  OF  ANY  KIND  FOR  ANY  DAMAGES WHATSOEVER
     24   1.2       rvb  * RESULTING DIRECTLY OR INDIRECTLY FROM THE USE OF THIS SOFTWARE  OR  OF
     25   1.2       rvb  * ANY DERIVATIVE WORK.
     26  1.27     perry  *
     27   1.2       rvb  * Carnegie  Mellon  encourages  users  of  this  software  to return any
     28   1.2       rvb  * improvements or extensions that  they  make,  and  to  grant  Carnegie
     29   1.2       rvb  * Mellon the rights to redistribute these changes without encumbrance.
     30  1.27     perry  *
     31  1.27     perry  * 	@(#) coda/coda_psdev.c,v 1.1.1.1 1998/08/29 21:26:45 rvb Exp $
     32   1.2       rvb  */
     33   1.1       rvb 
     34  1.27     perry /*
     35   1.1       rvb  * Mach Operating System
     36   1.1       rvb  * Copyright (c) 1989 Carnegie-Mellon University
     37   1.1       rvb  * All rights reserved.  The CMU software License Agreement specifies
     38   1.1       rvb  * the terms and conditions for use and redistribution.
     39   1.1       rvb  */
     40   1.1       rvb 
     41   1.1       rvb /*
     42   1.1       rvb  * This code was written for the Coda file system at Carnegie Mellon
     43   1.1       rvb  * University.  Contributers include David Steere, James Kistler, and
     44   1.1       rvb  * M. Satyanarayanan.  */
     45   1.1       rvb 
     46  1.24  jdolecek /* These routines define the pseudo device for communication between
     47  1.27     perry  * Coda's Venus and Minicache in Mach 2.6. They used to be in cfs_subr.c,
     48  1.27     perry  * but I moved them to make it easier to port the Minicache without
     49   1.1       rvb  * porting coda. -- DCS 10/12/94
     50  1.24  jdolecek  *
     51  1.24  jdolecek  * Following code depends on file-system CODA.
     52   1.1       rvb  */
     53   1.1       rvb 
     54   1.1       rvb /* These routines are the device entry points for Venus. */
     55  1.18     lukem 
     56  1.18     lukem #include <sys/cdefs.h>
     57  1.50  christos __KERNEL_RCSID(0, "$NetBSD: coda_psdev.c,v 1.50 2013/10/17 20:54:24 christos Exp $");
     58   1.1       rvb 
     59   1.3       rvb extern int coda_nc_initialized;    /* Set if cache has been initialized */
     60   1.1       rvb 
     61  1.46     pooka #ifndef _KERNEL_OPT
     62   1.5       rvb #define	NVCODA 4
     63   1.5       rvb #else
     64   1.3       rvb #include <vcoda.h>
     65   1.5       rvb #endif
     66   1.5       rvb 
     67   1.1       rvb #include <sys/param.h>
     68   1.1       rvb #include <sys/systm.h>
     69   1.1       rvb #include <sys/kernel.h>
     70   1.1       rvb #include <sys/malloc.h>
     71   1.1       rvb #include <sys/proc.h>
     72   1.1       rvb #include <sys/mount.h>
     73   1.1       rvb #include <sys/file.h>
     74   1.1       rvb #include <sys/ioctl.h>
     75   1.1       rvb #include <sys/poll.h>
     76   1.1       rvb #include <sys/select.h>
     77  1.20   gehenna #include <sys/conf.h>
     78  1.45        ad #include <sys/atomic.h>
     79  1.48  christos #include <sys/module.h>
     80   1.1       rvb 
     81  1.16   thorpej #include <miscfs/syncfs/syncfs.h>
     82  1.16   thorpej 
     83   1.4       rvb #include <coda/coda.h>
     84   1.4       rvb #include <coda/cnode.h>
     85   1.4       rvb #include <coda/coda_namecache.h>
     86   1.4       rvb #include <coda/coda_io.h>
     87   1.1       rvb 
     88   1.2       rvb #define CTL_C
     89   1.2       rvb 
     90   1.3       rvb int coda_psdev_print_entry = 0;
     91   1.8       rvb static
     92   1.8       rvb int outstanding_upcalls = 0;
     93   1.8       rvb int coda_call_sleep = PZERO - 1;
     94   1.8       rvb #ifdef	CTL_C
     95   1.8       rvb int coda_pcatch = PCATCH;
     96   1.8       rvb #else
     97   1.8       rvb #endif
     98   1.3       rvb 
     99  1.48  christos int coda_kernel_version = CODA_KERNEL_VERSION;
    100  1.48  christos 
    101  1.19     perry #define ENTRY if(coda_psdev_print_entry) myprintf(("Entered %s\n",__func__))
    102   1.1       rvb 
    103   1.3       rvb void vcodaattach(int n);
    104  1.20   gehenna 
    105  1.20   gehenna dev_type_open(vc_nb_open);
    106  1.20   gehenna dev_type_close(vc_nb_close);
    107  1.20   gehenna dev_type_read(vc_nb_read);
    108  1.20   gehenna dev_type_write(vc_nb_write);
    109  1.20   gehenna dev_type_ioctl(vc_nb_ioctl);
    110  1.20   gehenna dev_type_poll(vc_nb_poll);
    111  1.21  jdolecek dev_type_kqfilter(vc_nb_kqfilter);
    112  1.20   gehenna 
    113  1.20   gehenna const struct cdevsw vcoda_cdevsw = {
    114  1.20   gehenna 	vc_nb_open, vc_nb_close, vc_nb_read, vc_nb_write, vc_nb_ioctl,
    115  1.32  christos 	nostop, notty, vc_nb_poll, nommap, vc_nb_kqfilter, D_OTHER,
    116  1.20   gehenna };
    117   1.1       rvb 
    118   1.1       rvb struct vmsg {
    119  1.41    plunky     TAILQ_ENTRY(vmsg) vm_chain;
    120  1.36  christos     void *	 vm_data;
    121   1.1       rvb     u_short	 vm_flags;
    122   1.1       rvb     u_short      vm_inSize;	/* Size is at most 5000 bytes */
    123   1.1       rvb     u_short	 vm_outSize;
    124   1.1       rvb     u_short	 vm_opcode; 	/* copied from data to save ptr lookup */
    125   1.1       rvb     int		 vm_unique;
    126  1.36  christos     void *	 vm_sleep;	/* Not used by Mach. */
    127   1.1       rvb };
    128   1.1       rvb 
    129  1.48  christos struct coda_mntinfo coda_mnttbl[NVCODA];
    130  1.48  christos 
    131   1.1       rvb #define	VM_READ	    1
    132   1.1       rvb #define	VM_WRITE    2
    133   1.1       rvb #define	VM_INTR	    4
    134   1.1       rvb 
    135   1.3       rvb /* vcodaattach: do nothing */
    136   1.1       rvb void
    137  1.34  christos vcodaattach(int n)
    138   1.1       rvb {
    139   1.1       rvb }
    140   1.1       rvb 
    141  1.27     perry /*
    142   1.1       rvb  * These functions are written for NetBSD.
    143   1.1       rvb  */
    144  1.27     perry int
    145  1.34  christos vc_nb_open(dev_t dev, int flag, int mode,
    146  1.34  christos     struct lwp *l)
    147   1.1       rvb {
    148  1.13  augustss     struct vcomm *vcp;
    149  1.27     perry 
    150   1.1       rvb     ENTRY;
    151   1.1       rvb 
    152  1.47  christos     if (minor(dev) >= NVCODA)
    153   1.1       rvb 	return(ENXIO);
    154  1.27     perry 
    155   1.3       rvb     if (!coda_nc_initialized)
    156   1.3       rvb 	coda_nc_init();
    157  1.27     perry 
    158   1.3       rvb     vcp = &coda_mnttbl[minor(dev)].mi_vcomm;
    159   1.1       rvb     if (VC_OPEN(vcp))
    160   1.1       rvb 	return(EBUSY);
    161  1.27     perry 
    162  1.39     rmind     selinit(&vcp->vc_selproc);
    163  1.41    plunky     TAILQ_INIT(&vcp->vc_requests);
    164  1.41    plunky     TAILQ_INIT(&vcp->vc_replies);
    165   1.1       rvb     MARK_VC_OPEN(vcp);
    166  1.27     perry 
    167   1.3       rvb     coda_mnttbl[minor(dev)].mi_vfsp = NULL;
    168   1.3       rvb     coda_mnttbl[minor(dev)].mi_rootvp = NULL;
    169   1.1       rvb 
    170   1.1       rvb     return(0);
    171   1.1       rvb }
    172   1.1       rvb 
    173  1.27     perry int
    174  1.34  christos vc_nb_close(dev_t dev, int flag, int mode, struct lwp *l)
    175   1.1       rvb {
    176  1.13  augustss     struct vcomm *vcp;
    177  1.41    plunky     struct vmsg *vmp;
    178   1.3       rvb     struct coda_mntinfo *mi;
    179   1.1       rvb     int                 err;
    180  1.27     perry 
    181   1.1       rvb     ENTRY;
    182   1.1       rvb 
    183  1.47  christos     if (minor(dev) >= NVCODA)
    184   1.1       rvb 	return(ENXIO);
    185   1.1       rvb 
    186   1.3       rvb     mi = &coda_mnttbl[minor(dev)];
    187   1.1       rvb     vcp = &(mi->mi_vcomm);
    188  1.27     perry 
    189   1.1       rvb     if (!VC_OPEN(vcp))
    190   1.1       rvb 	panic("vcclose: not open");
    191  1.27     perry 
    192   1.1       rvb     /* prevent future operations on this vfs from succeeding by auto-
    193   1.1       rvb      * unmounting any vfs mounted via this device. This frees user or
    194   1.1       rvb      * sysadm from having to remember where all mount points are located.
    195   1.1       rvb      * Put this before WAKEUPs to avoid queuing new messages between
    196   1.1       rvb      * the WAKEUP and the unmount (which can happen if we're unlucky)
    197   1.1       rvb      */
    198   1.8       rvb     if (!mi->mi_rootvp) {
    199   1.8       rvb 	/* just a simple open/close w no mount */
    200   1.8       rvb 	MARK_VC_CLOSED(vcp);
    201   1.8       rvb 	return 0;
    202   1.1       rvb     }
    203   1.8       rvb 
    204   1.8       rvb     /* Let unmount know this is for real */
    205   1.8       rvb     VTOC(mi->mi_rootvp)->c_flags |= C_UNMOUNTING;
    206   1.8       rvb     coda_unmounting(mi->mi_vfsp);
    207  1.27     perry 
    208   1.1       rvb     /* Wakeup clients so they can return. */
    209  1.41    plunky     while ((vmp = TAILQ_FIRST(&vcp->vc_requests)) != NULL) {
    210  1.41    plunky 	TAILQ_REMOVE(&vcp->vc_requests, vmp, vm_chain);
    211  1.41    plunky 
    212   1.1       rvb 	/* Free signal request messages and don't wakeup cause
    213   1.1       rvb 	   no one is waiting. */
    214   1.3       rvb 	if (vmp->vm_opcode == CODA_SIGNAL) {
    215  1.40    plunky 	    CODA_FREE(vmp->vm_data, VC_IN_NO_DATA);
    216  1.40    plunky 	    CODA_FREE(vmp, sizeof(struct vmsg));
    217   1.1       rvb 	    continue;
    218   1.1       rvb 	}
    219  1.27     perry 	outstanding_upcalls++;
    220   1.1       rvb 	wakeup(&vmp->vm_sleep);
    221   1.1       rvb     }
    222   1.8       rvb 
    223  1.41    plunky     while ((vmp = TAILQ_FIRST(&vcp->vc_replies)) != NULL) {
    224  1.41    plunky 	TAILQ_REMOVE(&vcp->vc_replies, vmp, vm_chain);
    225  1.41    plunky 
    226  1.27     perry 	outstanding_upcalls++;
    227   1.1       rvb 	wakeup(&vmp->vm_sleep);
    228   1.1       rvb     }
    229   1.8       rvb 
    230   1.1       rvb     MARK_VC_CLOSED(vcp);
    231   1.8       rvb 
    232   1.8       rvb     if (outstanding_upcalls) {
    233   1.8       rvb #ifdef	CODA_VERBOSE
    234   1.8       rvb 	printf("presleep: outstanding_upcalls = %d\n", outstanding_upcalls);
    235   1.8       rvb     	(void) tsleep(&outstanding_upcalls, coda_call_sleep, "coda_umount", 0);
    236   1.8       rvb 	printf("postsleep: outstanding_upcalls = %d\n", outstanding_upcalls);
    237   1.8       rvb #else
    238   1.8       rvb     	(void) tsleep(&outstanding_upcalls, coda_call_sleep, "coda_umount", 0);
    239   1.8       rvb #endif
    240   1.8       rvb     }
    241   1.8       rvb 
    242  1.31  christos     err = dounmount(mi->mi_vfsp, flag, l);
    243   1.8       rvb     if (err)
    244  1.47  christos 	myprintf(("Error %d unmounting vfs in vcclose(%llu)\n",
    245  1.47  christos 	           err, (unsigned long long)minor(dev)));
    246  1.39     rmind     seldestroy(&vcp->vc_selproc);
    247   1.1       rvb     return 0;
    248   1.1       rvb }
    249   1.1       rvb 
    250  1.27     perry int
    251  1.34  christos vc_nb_read(dev_t dev, struct uio *uiop, int flag)
    252   1.1       rvb {
    253  1.13  augustss     struct vcomm *	vcp;
    254  1.13  augustss     struct vmsg *vmp;
    255   1.1       rvb     int error = 0;
    256  1.27     perry 
    257   1.1       rvb     ENTRY;
    258   1.1       rvb 
    259  1.47  christos     if (minor(dev) >= NVCODA)
    260   1.1       rvb 	return(ENXIO);
    261  1.27     perry 
    262   1.3       rvb     vcp = &coda_mnttbl[minor(dev)].mi_vcomm;
    263  1.41    plunky 
    264   1.1       rvb     /* Get message at head of request queue. */
    265  1.41    plunky     vmp = TAILQ_FIRST(&vcp->vc_requests);
    266  1.41    plunky     if (vmp == NULL)
    267   1.1       rvb 	return(0);	/* Nothing to read */
    268  1.27     perry 
    269   1.1       rvb     /* Move the input args into userspace */
    270   1.1       rvb     uiop->uio_rw = UIO_READ;
    271   1.1       rvb     error = uiomove(vmp->vm_data, vmp->vm_inSize, uiop);
    272   1.1       rvb     if (error) {
    273   1.1       rvb 	myprintf(("vcread: error (%d) on uiomove\n", error));
    274   1.1       rvb 	error = EINVAL;
    275   1.1       rvb     }
    276   1.1       rvb 
    277  1.41    plunky     TAILQ_REMOVE(&vcp->vc_requests, vmp, vm_chain);
    278  1.27     perry 
    279   1.1       rvb     /* If request was a signal, free up the message and don't
    280   1.1       rvb        enqueue it in the reply queue. */
    281   1.3       rvb     if (vmp->vm_opcode == CODA_SIGNAL) {
    282   1.3       rvb 	if (codadebug)
    283  1.27     perry 	    myprintf(("vcread: signal msg (%d, %d)\n",
    284   1.1       rvb 		      vmp->vm_opcode, vmp->vm_unique));
    285  1.40    plunky 	CODA_FREE(vmp->vm_data, VC_IN_NO_DATA);
    286  1.40    plunky 	CODA_FREE(vmp, sizeof(struct vmsg));
    287   1.1       rvb 	return(error);
    288   1.1       rvb     }
    289  1.27     perry 
    290   1.1       rvb     vmp->vm_flags |= VM_READ;
    291  1.41    plunky     TAILQ_INSERT_TAIL(&vcp->vc_replies, vmp, vm_chain);
    292  1.27     perry 
    293   1.1       rvb     return(error);
    294   1.1       rvb }
    295   1.1       rvb 
    296   1.1       rvb int
    297  1.34  christos vc_nb_write(dev_t dev, struct uio *uiop, int flag)
    298   1.1       rvb {
    299  1.13  augustss     struct vcomm *	vcp;
    300  1.13  augustss     struct vmsg *vmp;
    301   1.3       rvb     struct coda_out_hdr *out;
    302   1.1       rvb     u_long seq;
    303   1.1       rvb     u_long opcode;
    304  1.28  christos     int tbuf[2];
    305   1.1       rvb     int error = 0;
    306   1.1       rvb 
    307   1.1       rvb     ENTRY;
    308   1.1       rvb 
    309  1.47  christos     if (minor(dev) >= NVCODA)
    310   1.1       rvb 	return(ENXIO);
    311  1.27     perry 
    312   1.3       rvb     vcp = &coda_mnttbl[minor(dev)].mi_vcomm;
    313  1.27     perry 
    314   1.1       rvb     /* Peek at the opcode, unique without transfering the data. */
    315   1.1       rvb     uiop->uio_rw = UIO_WRITE;
    316  1.40    plunky     error = uiomove(tbuf, sizeof(int) * 2, uiop);
    317   1.1       rvb     if (error) {
    318   1.1       rvb 	myprintf(("vcwrite: error (%d) on uiomove\n", error));
    319   1.1       rvb 	return(EINVAL);
    320   1.1       rvb     }
    321  1.27     perry 
    322  1.28  christos     opcode = tbuf[0];
    323  1.28  christos     seq = tbuf[1];
    324  1.27     perry 
    325   1.3       rvb     if (codadebug)
    326   1.1       rvb 	myprintf(("vcwrite got a call for %ld.%ld\n", opcode, seq));
    327  1.27     perry 
    328   1.1       rvb     if (DOWNCALL(opcode)) {
    329   1.1       rvb 	union outputArgs pbuf;
    330  1.27     perry 
    331   1.1       rvb 	/* get the rest of the data. */
    332   1.1       rvb 	uiop->uio_rw = UIO_WRITE;
    333  1.40    plunky 	error = uiomove(&pbuf.coda_purgeuser.oh.result, sizeof(pbuf) - (sizeof(int)*2), uiop);
    334   1.1       rvb 	if (error) {
    335  1.27     perry 	    myprintf(("vcwrite: error (%d) on uiomove (Op %ld seq %ld)\n",
    336   1.1       rvb 		      error, opcode, seq));
    337   1.1       rvb 	    return(EINVAL);
    338   1.1       rvb 	    }
    339  1.27     perry 
    340   1.1       rvb 	return handleDownCall(opcode, &pbuf);
    341   1.1       rvb     }
    342  1.27     perry 
    343   1.1       rvb     /* Look for the message on the (waiting for) reply queue. */
    344  1.41    plunky     TAILQ_FOREACH(vmp, &vcp->vc_replies, vm_chain) {
    345   1.1       rvb 	if (vmp->vm_unique == seq) break;
    346   1.1       rvb     }
    347  1.27     perry 
    348  1.41    plunky     if (vmp == NULL) {
    349   1.3       rvb 	if (codadebug)
    350   1.1       rvb 	    myprintf(("vcwrite: msg (%ld, %ld) not found\n", opcode, seq));
    351  1.27     perry 
    352   1.1       rvb 	return(ESRCH);
    353  1.41    plunky     }
    354  1.27     perry 
    355   1.1       rvb     /* Remove the message from the reply queue */
    356  1.41    plunky     TAILQ_REMOVE(&vcp->vc_replies, vmp, vm_chain);
    357  1.27     perry 
    358   1.1       rvb     /* move data into response buffer. */
    359   1.3       rvb     out = (struct coda_out_hdr *)vmp->vm_data;
    360   1.1       rvb     /* Don't need to copy opcode and uniquifier. */
    361  1.27     perry 
    362   1.1       rvb     /* get the rest of the data. */
    363   1.1       rvb     if (vmp->vm_outSize < uiop->uio_resid) {
    364  1.11      matt 	myprintf(("vcwrite: more data than asked for (%d < %lu)\n",
    365  1.11      matt 		  vmp->vm_outSize, (unsigned long) uiop->uio_resid));
    366   1.1       rvb 	wakeup(&vmp->vm_sleep); 	/* Notify caller of the error. */
    367   1.1       rvb 	return(EINVAL);
    368  1.27     perry     }
    369  1.27     perry 
    370  1.28  christos     tbuf[0] = uiop->uio_resid; 	/* Save this value. */
    371   1.1       rvb     uiop->uio_rw = UIO_WRITE;
    372  1.40    plunky     error = uiomove(&out->result, vmp->vm_outSize - (sizeof(int) * 2), uiop);
    373   1.1       rvb     if (error) {
    374  1.27     perry 	myprintf(("vcwrite: error (%d) on uiomove (op %ld seq %ld)\n",
    375   1.1       rvb 		  error, opcode, seq));
    376   1.1       rvb 	return(EINVAL);
    377   1.1       rvb     }
    378  1.27     perry 
    379   1.1       rvb     /* I don't think these are used, but just in case. */
    380   1.1       rvb     /* XXX - aren't these two already correct? -bnoble */
    381   1.1       rvb     out->opcode = opcode;
    382   1.1       rvb     out->unique = seq;
    383  1.28  christos     vmp->vm_outSize	= tbuf[0];	/* Amount of data transferred? */
    384   1.1       rvb     vmp->vm_flags |= VM_WRITE;
    385   1.1       rvb     wakeup(&vmp->vm_sleep);
    386  1.27     perry 
    387   1.1       rvb     return(0);
    388   1.1       rvb }
    389   1.1       rvb 
    390   1.1       rvb int
    391  1.36  christos vc_nb_ioctl(dev_t dev, u_long cmd, void *addr, int flag,
    392  1.34  christos     struct lwp *l)
    393   1.1       rvb {
    394   1.1       rvb     ENTRY;
    395   1.1       rvb 
    396   1.1       rvb     switch(cmd) {
    397   1.3       rvb     case CODARESIZE: {
    398   1.3       rvb 	struct coda_resize *data = (struct coda_resize *)addr;
    399   1.3       rvb 	return(coda_nc_resize(data->hashsize, data->heapsize, IS_DOWNCALL));
    400   1.1       rvb 	break;
    401   1.1       rvb     }
    402   1.3       rvb     case CODASTATS:
    403   1.3       rvb 	if (coda_nc_use) {
    404   1.3       rvb 	    coda_nc_gather_stats();
    405   1.1       rvb 	    return(0);
    406   1.1       rvb 	} else {
    407   1.1       rvb 	    return(ENODEV);
    408   1.1       rvb 	}
    409   1.1       rvb 	break;
    410   1.3       rvb     case CODAPRINT:
    411   1.3       rvb 	if (coda_nc_use) {
    412   1.3       rvb 	    print_coda_nc();
    413   1.1       rvb 	    return(0);
    414   1.1       rvb 	} else {
    415   1.1       rvb 	    return(ENODEV);
    416   1.1       rvb 	}
    417   1.1       rvb 	break;
    418   1.9       rvb     case CIOC_KERNEL_VERSION:
    419   1.9       rvb 	switch (*(u_int *)addr) {
    420   1.9       rvb 	case 0:
    421   1.9       rvb 		*(u_int *)addr = coda_kernel_version;
    422   1.9       rvb 		return 0;
    423   1.9       rvb 		break;
    424   1.9       rvb 	case 1:
    425   1.9       rvb 	case 2:
    426   1.9       rvb 		if (coda_kernel_version != *(u_int *)addr)
    427   1.9       rvb 		    return ENOENT;
    428   1.9       rvb 		else
    429   1.9       rvb 		    return 0;
    430   1.9       rvb 	default:
    431   1.9       rvb 		return ENOENT;
    432   1.9       rvb 	}
    433   1.9       rvb     	break;
    434   1.1       rvb     default :
    435   1.1       rvb 	return(EINVAL);
    436   1.1       rvb 	break;
    437   1.1       rvb     }
    438   1.1       rvb }
    439   1.1       rvb 
    440   1.1       rvb int
    441  1.31  christos vc_nb_poll(dev_t dev, int events, struct lwp *l)
    442   1.1       rvb {
    443  1.13  augustss     struct vcomm *vcp;
    444   1.1       rvb     int event_msk = 0;
    445   1.1       rvb 
    446   1.1       rvb     ENTRY;
    447  1.27     perry 
    448  1.47  christos     if (minor(dev) >= NVCODA)
    449   1.1       rvb 	return(ENXIO);
    450  1.27     perry 
    451   1.3       rvb     vcp = &coda_mnttbl[minor(dev)].mi_vcomm;
    452  1.27     perry 
    453   1.1       rvb     event_msk = events & (POLLIN|POLLRDNORM);
    454   1.1       rvb     if (!event_msk)
    455   1.1       rvb 	return(0);
    456  1.27     perry 
    457  1.41    plunky     if (!TAILQ_EMPTY(&vcp->vc_requests))
    458   1.1       rvb 	return(events & (POLLIN|POLLRDNORM));
    459   1.1       rvb 
    460  1.31  christos     selrecord(l, &(vcp->vc_selproc));
    461  1.27     perry 
    462   1.1       rvb     return(0);
    463   1.1       rvb }
    464   1.1       rvb 
    465  1.21  jdolecek static void
    466  1.21  jdolecek filt_vc_nb_detach(struct knote *kn)
    467  1.21  jdolecek {
    468  1.21  jdolecek 	struct vcomm *vcp = kn->kn_hook;
    469  1.21  jdolecek 
    470  1.22  christos 	SLIST_REMOVE(&vcp->vc_selproc.sel_klist, kn, knote, kn_selnext);
    471  1.21  jdolecek }
    472  1.21  jdolecek 
    473  1.21  jdolecek static int
    474  1.34  christos filt_vc_nb_read(struct knote *kn, long hint)
    475  1.21  jdolecek {
    476  1.27     perry 	struct vcomm *vcp = kn->kn_hook;
    477  1.21  jdolecek 	struct vmsg *vmp;
    478  1.21  jdolecek 
    479  1.41    plunky 	vmp = TAILQ_FIRST(&vcp->vc_requests);
    480  1.41    plunky 	if (vmp == NULL)
    481  1.21  jdolecek 		return (0);
    482  1.21  jdolecek 
    483  1.21  jdolecek 	kn->kn_data = vmp->vm_inSize;
    484  1.21  jdolecek 	return (1);
    485  1.21  jdolecek }
    486  1.21  jdolecek 
    487  1.21  jdolecek static const struct filterops vc_nb_read_filtops =
    488  1.21  jdolecek 	{ 1, NULL, filt_vc_nb_detach, filt_vc_nb_read };
    489  1.21  jdolecek 
    490  1.21  jdolecek int
    491  1.21  jdolecek vc_nb_kqfilter(dev_t dev, struct knote *kn)
    492  1.21  jdolecek {
    493  1.21  jdolecek 	struct vcomm *vcp;
    494  1.21  jdolecek 	struct klist *klist;
    495  1.21  jdolecek 
    496  1.21  jdolecek 	ENTRY;
    497  1.27     perry 
    498  1.47  christos 	if (minor(dev) >= NVCODA)
    499  1.21  jdolecek 		return(ENXIO);
    500  1.27     perry 
    501  1.21  jdolecek 	vcp = &coda_mnttbl[minor(dev)].mi_vcomm;
    502  1.21  jdolecek 
    503  1.21  jdolecek 	switch (kn->kn_filter) {
    504  1.21  jdolecek 	case EVFILT_READ:
    505  1.22  christos 		klist = &vcp->vc_selproc.sel_klist;
    506  1.21  jdolecek 		kn->kn_fop = &vc_nb_read_filtops;
    507  1.21  jdolecek 		break;
    508  1.21  jdolecek 
    509  1.21  jdolecek 	default:
    510  1.37     pooka 		return (EINVAL);
    511  1.21  jdolecek 	}
    512  1.21  jdolecek 
    513  1.21  jdolecek 	kn->kn_hook = vcp;
    514  1.21  jdolecek 
    515  1.21  jdolecek 	SLIST_INSERT_HEAD(klist, kn, kn_selnext);
    516  1.21  jdolecek 
    517  1.21  jdolecek 	return (0);
    518  1.21  jdolecek }
    519  1.21  jdolecek 
    520   1.1       rvb /*
    521   1.1       rvb  * Statistics
    522   1.1       rvb  */
    523   1.3       rvb struct coda_clstat coda_clstat;
    524   1.1       rvb 
    525  1.27     perry /*
    526  1.23       wiz  * Key question: whether to sleep interruptably or uninterruptably when
    527   1.1       rvb  * waiting for Venus.  The former seems better (cause you can ^C a
    528   1.1       rvb  * job), but then GNU-EMACS completion breaks. Use tsleep with no
    529   1.1       rvb  * timeout, and no longjmp happens. But, when sleeping
    530   1.1       rvb  * "uninterruptibly", we don't get told if it returns abnormally
    531  1.27     perry  * (e.g. kill -9).
    532   1.1       rvb  */
    533   1.1       rvb 
    534   1.1       rvb int
    535  1.30   xtraeme coda_call(struct coda_mntinfo *mntinfo, int inSize, int *outSize,
    536  1.36  christos 	void *buffer)
    537   1.1       rvb {
    538   1.1       rvb 	struct vcomm *vcp;
    539   1.1       rvb 	struct vmsg *vmp;
    540   1.1       rvb 	int error;
    541   1.1       rvb #ifdef	CTL_C
    542  1.31  christos 	struct lwp *l = curlwp;
    543  1.31  christos 	struct proc *p = l->l_proc;
    544   1.4       rvb 	sigset_t psig_omask;
    545   1.1       rvb 	int i;
    546  1.35        ad 	psig_omask = l->l_sigmask;	/* XXXSA */
    547   1.1       rvb #endif
    548   1.1       rvb 	if (mntinfo == NULL) {
    549   1.1       rvb 	    /* Unlikely, but could be a race condition with a dying warden */
    550   1.1       rvb 	    return ENODEV;
    551   1.1       rvb 	}
    552   1.1       rvb 
    553   1.1       rvb 	vcp = &(mntinfo->mi_vcomm);
    554  1.27     perry 
    555   1.3       rvb 	coda_clstat.ncalls++;
    556   1.3       rvb 	coda_clstat.reqs[((struct coda_in_hdr *)buffer)->opcode]++;
    557   1.1       rvb 
    558   1.1       rvb 	if (!VC_OPEN(vcp))
    559   1.1       rvb 	    return(ENODEV);
    560   1.1       rvb 
    561   1.3       rvb 	CODA_ALLOC(vmp,struct vmsg *,sizeof(struct vmsg));
    562   1.1       rvb 	/* Format the request message. */
    563   1.1       rvb 	vmp->vm_data = buffer;
    564   1.1       rvb 	vmp->vm_flags = 0;
    565   1.1       rvb 	vmp->vm_inSize = inSize;
    566  1.27     perry 	vmp->vm_outSize
    567   1.1       rvb 	    = *outSize ? *outSize : inSize; /* |buffer| >= inSize */
    568   1.3       rvb 	vmp->vm_opcode = ((struct coda_in_hdr *)buffer)->opcode;
    569   1.1       rvb 	vmp->vm_unique = ++vcp->vc_seq;
    570   1.3       rvb 	if (codadebug)
    571  1.27     perry 	    myprintf(("Doing a call for %d.%d\n",
    572   1.1       rvb 		      vmp->vm_opcode, vmp->vm_unique));
    573  1.27     perry 
    574   1.1       rvb 	/* Fill in the common input args. */
    575   1.3       rvb 	((struct coda_in_hdr *)buffer)->unique = vmp->vm_unique;
    576   1.1       rvb 
    577   1.1       rvb 	/* Append msg to request queue and poke Venus. */
    578  1.41    plunky 	TAILQ_INSERT_TAIL(&vcp->vc_requests, vmp, vm_chain);
    579  1.39     rmind 	selnotify(&(vcp->vc_selproc), 0, 0);
    580   1.1       rvb 
    581   1.1       rvb 	/* We can be interrupted while we wait for Venus to process
    582   1.1       rvb 	 * our request.  If the interrupt occurs before Venus has read
    583   1.1       rvb 	 * the request, we dequeue and return. If it occurs after the
    584   1.1       rvb 	 * read but before the reply, we dequeue, send a signal
    585   1.1       rvb 	 * message, and return. If it occurs after the reply we ignore
    586   1.1       rvb 	 * it. In no case do we want to restart the syscall.  If it
    587   1.1       rvb 	 * was interrupted by a venus shutdown (vcclose), return
    588   1.1       rvb 	 * ENODEV.  */
    589   1.1       rvb 
    590   1.1       rvb 	/* Ignore return, We have to check anyway */
    591   1.1       rvb #ifdef	CTL_C
    592   1.3       rvb 	/* This is work in progress.  Setting coda_pcatch lets tsleep reawaken
    593   1.1       rvb 	   on a ^c or ^z.  The problem is that emacs sets certain interrupts
    594   1.1       rvb 	   as SA_RESTART.  This means that we should exit sleep handle the
    595   1.1       rvb 	   "signal" and then go to sleep again.  Mostly this is done by letting
    596  1.27     perry 	   the syscall complete and be restarted.  We are not idempotent and
    597   1.1       rvb 	   can not do this.  A better solution is necessary.
    598   1.1       rvb 	 */
    599   1.1       rvb 	i = 0;
    600   1.1       rvb 	do {
    601   1.3       rvb 	    error = tsleep(&vmp->vm_sleep, (coda_call_sleep|coda_pcatch), "coda_call", hz*2);
    602   1.1       rvb 	    if (error == 0)
    603   1.1       rvb 	    	break;
    604  1.43        ad 	    mutex_enter(p->p_lock);
    605  1.35        ad 	    if (error == EWOULDBLOCK) {
    606   1.7       rvb #ifdef	CODA_VERBOSE
    607   1.3       rvb 		    printf("coda_call: tsleep TIMEOUT %d sec\n", 2+2*i);
    608   1.5       rvb #endif
    609  1.35        ad     	    } else if (sigispending(l, SIGIO)) {
    610  1.35        ad 		    sigaddset(&l->l_sigmask, SIGIO);
    611   1.7       rvb #ifdef	CODA_VERBOSE
    612   1.3       rvb 		    printf("coda_call: tsleep returns %d SIGIO, cnt %d\n", error, i);
    613   1.5       rvb #endif
    614  1.35        ad     	    } else if (sigispending(l, SIGALRM)) {
    615  1.35        ad 		    sigaddset(&l->l_sigmask, SIGALRM);
    616   1.8       rvb #ifdef	CODA_VERBOSE
    617   1.8       rvb 		    printf("coda_call: tsleep returns %d SIGALRM, cnt %d\n", error, i);
    618   1.8       rvb #endif
    619   1.1       rvb 	    } else {
    620   1.4       rvb 		    sigset_t tmp;
    621  1.35        ad 		    tmp = p->p_sigpend.sp_set;	/* array assignment */
    622  1.35        ad 		    sigminusset(&l->l_sigmask, &tmp);
    623   1.4       rvb 
    624   1.7       rvb #ifdef	CODA_VERBOSE
    625   1.3       rvb 		    printf("coda_call: tsleep returns %d, cnt %d\n", error, i);
    626   1.4       rvb 		    printf("coda_call: siglist = %x.%x.%x.%x, sigmask = %x.%x.%x.%x, mask %x.%x.%x.%x\n",
    627  1.35        ad 			    p->p_sigpend.sp_set.__bits[0], p->p_sigpend.sp_set.__bits[1],
    628  1.35        ad 			    p->p_sigpend.sp_set.__bits[2], p->p_sigpend.sp_set.__bits[3],
    629  1.35        ad 			    l->l_sigmask.__bits[0], l->l_sigmask.__bits[1],
    630  1.35        ad 			    l->l_sigmask.__bits[2], l->l_sigmask.__bits[3],
    631   1.4       rvb 			    tmp.__bits[0], tmp.__bits[1], tmp.__bits[2], tmp.__bits[3]);
    632   1.5       rvb #endif
    633  1.43        ad 		    mutex_exit(p->p_lock);
    634   1.1       rvb 		    break;
    635   1.5       rvb #ifdef	notyet
    636  1.35        ad 		    sigminusset(&l->l_sigmask, &p->p_sigpend.sp_set);
    637  1.27     perry 		    printf("coda_call: siglist = %x.%x.%x.%x, sigmask = %x.%x.%x.%x\n",
    638  1.35        ad 			    p->p_sigpend.sp_set.__bits[0], p->p_sigpend.sp_set.__bits[1],
    639  1.35        ad 			    p->p_sigpend.sp_set.__bits[2], p->p_sigpend.sp_set.__bits[3],
    640  1.35        ad 			    l->l_sigmask.__bits[0], l->l_sigmask.__bits[1],
    641  1.35        ad 			    l->l_sigmask.__bits[2], l->l_sigmask.__bits[3]);
    642   1.5       rvb #endif
    643   1.1       rvb 	    }
    644  1.43        ad 	    mutex_exit(p->p_lock);
    645   1.8       rvb 	} while (error && i++ < 128 && VC_OPEN(vcp));
    646  1.35        ad 	l->l_sigmask = psig_omask;	/* XXXSA */
    647   1.1       rvb #else
    648   1.3       rvb 	(void) tsleep(&vmp->vm_sleep, coda_call_sleep, "coda_call", 0);
    649   1.1       rvb #endif
    650   1.1       rvb 	if (VC_OPEN(vcp)) {	/* Venus is still alive */
    651   1.1       rvb  	/* Op went through, interrupt or not... */
    652   1.1       rvb 	    if (vmp->vm_flags & VM_WRITE) {
    653   1.1       rvb 		error = 0;
    654   1.1       rvb 		*outSize = vmp->vm_outSize;
    655   1.1       rvb 	    }
    656   1.1       rvb 
    657  1.27     perry 	    else if (!(vmp->vm_flags & VM_READ)) {
    658   1.1       rvb 		/* Interrupted before venus read it. */
    659   1.7       rvb #ifdef	CODA_VERBOSE
    660   1.7       rvb 		if (1)
    661   1.7       rvb #else
    662   1.5       rvb 		if (codadebug)
    663   1.5       rvb #endif
    664   1.1       rvb 		    myprintf(("interrupted before read: op = %d.%d, flags = %x\n",
    665   1.1       rvb 			   vmp->vm_opcode, vmp->vm_unique, vmp->vm_flags));
    666  1.41    plunky 
    667  1.41    plunky 		TAILQ_REMOVE(&vcp->vc_requests, vmp, vm_chain);
    668   1.1       rvb 		error = EINTR;
    669   1.1       rvb 	    }
    670  1.27     perry 
    671  1.27     perry 	    else {
    672   1.1       rvb 		/* (!(vmp->vm_flags & VM_WRITE)) means interrupted after
    673   1.1       rvb                    upcall started */
    674   1.1       rvb 		/* Interrupted after start of upcall, send venus a signal */
    675   1.3       rvb 		struct coda_in_hdr *dog;
    676   1.1       rvb 		struct vmsg *svmp;
    677  1.27     perry 
    678   1.7       rvb #ifdef	CODA_VERBOSE
    679   1.7       rvb 		if (1)
    680   1.7       rvb #else
    681   1.5       rvb 		if (codadebug)
    682   1.5       rvb #endif
    683   1.1       rvb 		    myprintf(("Sending Venus a signal: op = %d.%d, flags = %x\n",
    684   1.1       rvb 			   vmp->vm_opcode, vmp->vm_unique, vmp->vm_flags));
    685  1.27     perry 
    686  1.41    plunky 		TAILQ_REMOVE(&vcp->vc_replies, vmp, vm_chain);
    687   1.1       rvb 		error = EINTR;
    688  1.27     perry 
    689   1.3       rvb 		CODA_ALLOC(svmp, struct vmsg *, sizeof (struct vmsg));
    690   1.1       rvb 
    691   1.3       rvb 		CODA_ALLOC((svmp->vm_data), char *, sizeof (struct coda_in_hdr));
    692   1.3       rvb 		dog = (struct coda_in_hdr *)svmp->vm_data;
    693  1.27     perry 
    694   1.1       rvb 		svmp->vm_flags = 0;
    695   1.3       rvb 		dog->opcode = svmp->vm_opcode = CODA_SIGNAL;
    696   1.1       rvb 		dog->unique = svmp->vm_unique = vmp->vm_unique;
    697   1.3       rvb 		svmp->vm_inSize = sizeof (struct coda_in_hdr);
    698   1.3       rvb /*??? rvb */	svmp->vm_outSize = sizeof (struct coda_in_hdr);
    699  1.27     perry 
    700   1.3       rvb 		if (codadebug)
    701   1.3       rvb 		    myprintf(("coda_call: enqueing signal msg (%d, %d)\n",
    702   1.1       rvb 			   svmp->vm_opcode, svmp->vm_unique));
    703  1.27     perry 
    704  1.42    plunky 		/* insert at head of queue */
    705  1.42    plunky 		TAILQ_INSERT_HEAD(&vcp->vc_requests, svmp, vm_chain);
    706  1.39     rmind 		selnotify(&(vcp->vc_selproc), 0, 0);
    707   1.1       rvb 	    }
    708   1.1       rvb 	}
    709   1.1       rvb 
    710   1.1       rvb 	else {	/* If venus died (!VC_OPEN(vcp)) */
    711   1.3       rvb 	    if (codadebug)
    712   1.1       rvb 		myprintf(("vcclose woke op %d.%d flags %d\n",
    713   1.1       rvb 		       vmp->vm_opcode, vmp->vm_unique, vmp->vm_flags));
    714  1.27     perry 
    715   1.1       rvb 		error = ENODEV;
    716   1.1       rvb 	}
    717   1.1       rvb 
    718   1.3       rvb 	CODA_FREE(vmp, sizeof(struct vmsg));
    719   1.8       rvb 
    720   1.8       rvb 	if (outstanding_upcalls > 0 && (--outstanding_upcalls == 0))
    721   1.8       rvb 		wakeup(&outstanding_upcalls);
    722   1.1       rvb 
    723   1.1       rvb 	if (!error)
    724   1.3       rvb 		error = ((struct coda_out_hdr *)buffer)->result;
    725   1.1       rvb 	return(error);
    726   1.1       rvb }
    727   1.4       rvb 
    728  1.48  christos MODULE(MODULE_CLASS_DRIVER, vcoda, NULL);
    729  1.48  christos 
    730  1.48  christos static int
    731  1.48  christos vcoda_modcmd(modcmd_t cmd, void *arg)
    732  1.48  christos {
    733  1.50  christos 	int error = 0;
    734  1.48  christos 
    735  1.48  christos 	switch (cmd) {
    736  1.48  christos 	case MODULE_CMD_INIT:
    737  1.48  christos #ifdef _MODULE
    738  1.50  christos 		int cmajor, dmajor;
    739  1.48  christos 		vcodaattach(NVCODA);
    740  1.48  christos 
    741  1.50  christos 		dmajor = cmajor = -1;
    742  1.48  christos 		return devsw_attach("vcoda", NULL, &dmajor,
    743  1.48  christos 		    &vcoda_cdevsw, &cmajor);
    744  1.48  christos #endif
    745  1.48  christos 		break;
    746  1.48  christos 
    747  1.48  christos 	case MODULE_CMD_FINI:
    748  1.48  christos #ifdef _MODULE
    749  1.48  christos 		{
    750  1.48  christos 			for  (size_t i = 0; i < NVCODA; i++) {
    751  1.48  christos 				struct vcomm *vcp = &coda_mnttbl[i].mi_vcomm;
    752  1.48  christos 				if (VC_OPEN(vcp))
    753  1.48  christos 					return EBUSY;
    754  1.48  christos 			}
    755  1.48  christos 			return devsw_detach(NULL, &vcoda_cdevsw);
    756  1.48  christos 		}
    757  1.48  christos #endif
    758  1.48  christos 		break;
    759  1.48  christos 
    760  1.48  christos 	case MODULE_CMD_STAT:
    761  1.48  christos 		return ENOTTY;
    762  1.48  christos 
    763  1.48  christos 	default:
    764  1.48  christos 		return ENOTTY;
    765  1.48  christos 	}
    766  1.48  christos 	return error;
    767  1.48  christos }
    768