coda_psdev.c revision 1.41 1 1.41 plunky /* $NetBSD: coda_psdev.c,v 1.41 2008/03/21 17:59:57 plunky 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 1.41 plunky __KERNEL_RCSID(0, "$NetBSD: coda_psdev.c,v 1.41 2008/03/21 17:59:57 plunky 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 1.5 rvb #ifdef _LKM
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 1.1 rvb
79 1.16 thorpej #include <miscfs/syncfs/syncfs.h>
80 1.16 thorpej
81 1.4 rvb #include <coda/coda.h>
82 1.4 rvb #include <coda/cnode.h>
83 1.4 rvb #include <coda/coda_namecache.h>
84 1.4 rvb #include <coda/coda_io.h>
85 1.1 rvb
86 1.2 rvb #define CTL_C
87 1.2 rvb
88 1.3 rvb int coda_psdev_print_entry = 0;
89 1.8 rvb static
90 1.8 rvb int outstanding_upcalls = 0;
91 1.8 rvb int coda_call_sleep = PZERO - 1;
92 1.8 rvb #ifdef CTL_C
93 1.8 rvb int coda_pcatch = PCATCH;
94 1.8 rvb #else
95 1.8 rvb #endif
96 1.3 rvb
97 1.19 perry #define ENTRY if(coda_psdev_print_entry) myprintf(("Entered %s\n",__func__))
98 1.1 rvb
99 1.3 rvb void vcodaattach(int n);
100 1.20 gehenna
101 1.20 gehenna dev_type_open(vc_nb_open);
102 1.20 gehenna dev_type_close(vc_nb_close);
103 1.20 gehenna dev_type_read(vc_nb_read);
104 1.20 gehenna dev_type_write(vc_nb_write);
105 1.20 gehenna dev_type_ioctl(vc_nb_ioctl);
106 1.20 gehenna dev_type_poll(vc_nb_poll);
107 1.21 jdolecek dev_type_kqfilter(vc_nb_kqfilter);
108 1.20 gehenna
109 1.20 gehenna const struct cdevsw vcoda_cdevsw = {
110 1.20 gehenna vc_nb_open, vc_nb_close, vc_nb_read, vc_nb_write, vc_nb_ioctl,
111 1.32 christos nostop, notty, vc_nb_poll, nommap, vc_nb_kqfilter, D_OTHER,
112 1.20 gehenna };
113 1.1 rvb
114 1.1 rvb struct vmsg {
115 1.41 plunky TAILQ_ENTRY(vmsg) vm_chain;
116 1.36 christos void * vm_data;
117 1.1 rvb u_short vm_flags;
118 1.1 rvb u_short vm_inSize; /* Size is at most 5000 bytes */
119 1.1 rvb u_short vm_outSize;
120 1.1 rvb u_short vm_opcode; /* copied from data to save ptr lookup */
121 1.1 rvb int vm_unique;
122 1.36 christos void * vm_sleep; /* Not used by Mach. */
123 1.1 rvb };
124 1.1 rvb
125 1.1 rvb #define VM_READ 1
126 1.1 rvb #define VM_WRITE 2
127 1.1 rvb #define VM_INTR 4
128 1.1 rvb
129 1.3 rvb /* vcodaattach: do nothing */
130 1.1 rvb void
131 1.34 christos vcodaattach(int n)
132 1.1 rvb {
133 1.1 rvb }
134 1.1 rvb
135 1.27 perry /*
136 1.1 rvb * These functions are written for NetBSD.
137 1.1 rvb */
138 1.27 perry int
139 1.34 christos vc_nb_open(dev_t dev, int flag, int mode,
140 1.34 christos struct lwp *l)
141 1.1 rvb {
142 1.13 augustss struct vcomm *vcp;
143 1.27 perry
144 1.1 rvb ENTRY;
145 1.1 rvb
146 1.3 rvb if (minor(dev) >= NVCODA || minor(dev) < 0)
147 1.1 rvb return(ENXIO);
148 1.27 perry
149 1.3 rvb if (!coda_nc_initialized)
150 1.3 rvb coda_nc_init();
151 1.27 perry
152 1.3 rvb vcp = &coda_mnttbl[minor(dev)].mi_vcomm;
153 1.1 rvb if (VC_OPEN(vcp))
154 1.1 rvb return(EBUSY);
155 1.27 perry
156 1.39 rmind selinit(&vcp->vc_selproc);
157 1.41 plunky TAILQ_INIT(&vcp->vc_requests);
158 1.41 plunky TAILQ_INIT(&vcp->vc_replies);
159 1.1 rvb MARK_VC_OPEN(vcp);
160 1.27 perry
161 1.3 rvb coda_mnttbl[minor(dev)].mi_vfsp = NULL;
162 1.3 rvb coda_mnttbl[minor(dev)].mi_rootvp = NULL;
163 1.1 rvb
164 1.1 rvb return(0);
165 1.1 rvb }
166 1.1 rvb
167 1.27 perry int
168 1.34 christos vc_nb_close(dev_t dev, int flag, int mode, struct lwp *l)
169 1.1 rvb {
170 1.13 augustss struct vcomm *vcp;
171 1.41 plunky struct vmsg *vmp;
172 1.3 rvb struct coda_mntinfo *mi;
173 1.1 rvb int err;
174 1.27 perry
175 1.1 rvb ENTRY;
176 1.1 rvb
177 1.3 rvb if (minor(dev) >= NVCODA || minor(dev) < 0)
178 1.1 rvb return(ENXIO);
179 1.1 rvb
180 1.3 rvb mi = &coda_mnttbl[minor(dev)];
181 1.1 rvb vcp = &(mi->mi_vcomm);
182 1.27 perry
183 1.1 rvb if (!VC_OPEN(vcp))
184 1.1 rvb panic("vcclose: not open");
185 1.27 perry
186 1.1 rvb /* prevent future operations on this vfs from succeeding by auto-
187 1.1 rvb * unmounting any vfs mounted via this device. This frees user or
188 1.1 rvb * sysadm from having to remember where all mount points are located.
189 1.1 rvb * Put this before WAKEUPs to avoid queuing new messages between
190 1.1 rvb * the WAKEUP and the unmount (which can happen if we're unlucky)
191 1.1 rvb */
192 1.8 rvb if (!mi->mi_rootvp) {
193 1.8 rvb /* just a simple open/close w no mount */
194 1.8 rvb MARK_VC_CLOSED(vcp);
195 1.8 rvb return 0;
196 1.1 rvb }
197 1.8 rvb
198 1.8 rvb /* Let unmount know this is for real */
199 1.16 thorpej /*
200 1.16 thorpej * XXX Freeze syncer. Must do this before locking the
201 1.16 thorpej * mount point. See dounmount for details().
202 1.16 thorpej */
203 1.35 ad mutex_enter(&syncer_mutex);
204 1.8 rvb VTOC(mi->mi_rootvp)->c_flags |= C_UNMOUNTING;
205 1.38 ad if (vfs_busy(mi->mi_vfsp, RW_WRITER, NULL)) {
206 1.35 ad mutex_exit(&syncer_mutex);
207 1.8 rvb return (EBUSY);
208 1.16 thorpej }
209 1.8 rvb coda_unmounting(mi->mi_vfsp);
210 1.27 perry
211 1.1 rvb /* Wakeup clients so they can return. */
212 1.41 plunky while ((vmp = TAILQ_FIRST(&vcp->vc_requests)) != NULL) {
213 1.41 plunky TAILQ_REMOVE(&vcp->vc_requests, vmp, vm_chain);
214 1.41 plunky
215 1.1 rvb /* Free signal request messages and don't wakeup cause
216 1.1 rvb no one is waiting. */
217 1.3 rvb if (vmp->vm_opcode == CODA_SIGNAL) {
218 1.40 plunky CODA_FREE(vmp->vm_data, VC_IN_NO_DATA);
219 1.40 plunky CODA_FREE(vmp, sizeof(struct vmsg));
220 1.1 rvb continue;
221 1.1 rvb }
222 1.27 perry outstanding_upcalls++;
223 1.1 rvb wakeup(&vmp->vm_sleep);
224 1.1 rvb }
225 1.8 rvb
226 1.41 plunky while ((vmp = TAILQ_FIRST(&vcp->vc_replies)) != NULL) {
227 1.41 plunky TAILQ_REMOVE(&vcp->vc_replies, vmp, vm_chain);
228 1.41 plunky
229 1.27 perry outstanding_upcalls++;
230 1.1 rvb wakeup(&vmp->vm_sleep);
231 1.1 rvb }
232 1.8 rvb
233 1.1 rvb MARK_VC_CLOSED(vcp);
234 1.8 rvb
235 1.8 rvb if (outstanding_upcalls) {
236 1.8 rvb #ifdef CODA_VERBOSE
237 1.8 rvb printf("presleep: outstanding_upcalls = %d\n", outstanding_upcalls);
238 1.8 rvb (void) tsleep(&outstanding_upcalls, coda_call_sleep, "coda_umount", 0);
239 1.8 rvb printf("postsleep: outstanding_upcalls = %d\n", outstanding_upcalls);
240 1.8 rvb #else
241 1.8 rvb (void) tsleep(&outstanding_upcalls, coda_call_sleep, "coda_umount", 0);
242 1.8 rvb #endif
243 1.8 rvb }
244 1.8 rvb
245 1.31 christos err = dounmount(mi->mi_vfsp, flag, l);
246 1.8 rvb if (err)
247 1.27 perry myprintf(("Error %d unmounting vfs in vcclose(%d)\n",
248 1.8 rvb err, minor(dev)));
249 1.39 rmind seldestroy(&vcp->vc_selproc);
250 1.1 rvb return 0;
251 1.1 rvb }
252 1.1 rvb
253 1.27 perry int
254 1.34 christos vc_nb_read(dev_t dev, struct uio *uiop, int flag)
255 1.1 rvb {
256 1.13 augustss struct vcomm * vcp;
257 1.13 augustss struct vmsg *vmp;
258 1.1 rvb int error = 0;
259 1.27 perry
260 1.1 rvb ENTRY;
261 1.1 rvb
262 1.3 rvb if (minor(dev) >= NVCODA || minor(dev) < 0)
263 1.1 rvb return(ENXIO);
264 1.27 perry
265 1.3 rvb vcp = &coda_mnttbl[minor(dev)].mi_vcomm;
266 1.41 plunky
267 1.1 rvb /* Get message at head of request queue. */
268 1.41 plunky vmp = TAILQ_FIRST(&vcp->vc_requests);
269 1.41 plunky if (vmp == NULL)
270 1.1 rvb return(0); /* Nothing to read */
271 1.27 perry
272 1.1 rvb /* Move the input args into userspace */
273 1.1 rvb uiop->uio_rw = UIO_READ;
274 1.1 rvb error = uiomove(vmp->vm_data, vmp->vm_inSize, uiop);
275 1.1 rvb if (error) {
276 1.1 rvb myprintf(("vcread: error (%d) on uiomove\n", error));
277 1.1 rvb error = EINVAL;
278 1.1 rvb }
279 1.1 rvb
280 1.41 plunky TAILQ_REMOVE(&vcp->vc_requests, vmp, vm_chain);
281 1.27 perry
282 1.1 rvb /* If request was a signal, free up the message and don't
283 1.1 rvb enqueue it in the reply queue. */
284 1.3 rvb if (vmp->vm_opcode == CODA_SIGNAL) {
285 1.3 rvb if (codadebug)
286 1.27 perry myprintf(("vcread: signal msg (%d, %d)\n",
287 1.1 rvb vmp->vm_opcode, vmp->vm_unique));
288 1.40 plunky CODA_FREE(vmp->vm_data, VC_IN_NO_DATA);
289 1.40 plunky CODA_FREE(vmp, sizeof(struct vmsg));
290 1.1 rvb return(error);
291 1.1 rvb }
292 1.27 perry
293 1.1 rvb vmp->vm_flags |= VM_READ;
294 1.41 plunky TAILQ_INSERT_TAIL(&vcp->vc_replies, vmp, vm_chain);
295 1.27 perry
296 1.1 rvb return(error);
297 1.1 rvb }
298 1.1 rvb
299 1.1 rvb int
300 1.34 christos vc_nb_write(dev_t dev, struct uio *uiop, int flag)
301 1.1 rvb {
302 1.13 augustss struct vcomm * vcp;
303 1.13 augustss struct vmsg *vmp;
304 1.3 rvb struct coda_out_hdr *out;
305 1.1 rvb u_long seq;
306 1.1 rvb u_long opcode;
307 1.28 christos int tbuf[2];
308 1.1 rvb int error = 0;
309 1.1 rvb
310 1.1 rvb ENTRY;
311 1.1 rvb
312 1.3 rvb if (minor(dev) >= NVCODA || minor(dev) < 0)
313 1.1 rvb return(ENXIO);
314 1.27 perry
315 1.3 rvb vcp = &coda_mnttbl[minor(dev)].mi_vcomm;
316 1.27 perry
317 1.1 rvb /* Peek at the opcode, unique without transfering the data. */
318 1.1 rvb uiop->uio_rw = UIO_WRITE;
319 1.40 plunky error = uiomove(tbuf, sizeof(int) * 2, uiop);
320 1.1 rvb if (error) {
321 1.1 rvb myprintf(("vcwrite: error (%d) on uiomove\n", error));
322 1.1 rvb return(EINVAL);
323 1.1 rvb }
324 1.27 perry
325 1.28 christos opcode = tbuf[0];
326 1.28 christos seq = tbuf[1];
327 1.27 perry
328 1.3 rvb if (codadebug)
329 1.1 rvb myprintf(("vcwrite got a call for %ld.%ld\n", opcode, seq));
330 1.27 perry
331 1.1 rvb if (DOWNCALL(opcode)) {
332 1.1 rvb union outputArgs pbuf;
333 1.27 perry
334 1.1 rvb /* get the rest of the data. */
335 1.1 rvb uiop->uio_rw = UIO_WRITE;
336 1.40 plunky error = uiomove(&pbuf.coda_purgeuser.oh.result, sizeof(pbuf) - (sizeof(int)*2), uiop);
337 1.1 rvb if (error) {
338 1.27 perry myprintf(("vcwrite: error (%d) on uiomove (Op %ld seq %ld)\n",
339 1.1 rvb error, opcode, seq));
340 1.1 rvb return(EINVAL);
341 1.1 rvb }
342 1.27 perry
343 1.1 rvb return handleDownCall(opcode, &pbuf);
344 1.1 rvb }
345 1.27 perry
346 1.1 rvb /* Look for the message on the (waiting for) reply queue. */
347 1.41 plunky TAILQ_FOREACH(vmp, &vcp->vc_replies, vm_chain) {
348 1.1 rvb if (vmp->vm_unique == seq) break;
349 1.1 rvb }
350 1.27 perry
351 1.41 plunky if (vmp == NULL) {
352 1.3 rvb if (codadebug)
353 1.1 rvb myprintf(("vcwrite: msg (%ld, %ld) not found\n", opcode, seq));
354 1.27 perry
355 1.1 rvb return(ESRCH);
356 1.41 plunky }
357 1.27 perry
358 1.1 rvb /* Remove the message from the reply queue */
359 1.41 plunky TAILQ_REMOVE(&vcp->vc_replies, vmp, vm_chain);
360 1.27 perry
361 1.1 rvb /* move data into response buffer. */
362 1.3 rvb out = (struct coda_out_hdr *)vmp->vm_data;
363 1.1 rvb /* Don't need to copy opcode and uniquifier. */
364 1.27 perry
365 1.1 rvb /* get the rest of the data. */
366 1.1 rvb if (vmp->vm_outSize < uiop->uio_resid) {
367 1.11 matt myprintf(("vcwrite: more data than asked for (%d < %lu)\n",
368 1.11 matt vmp->vm_outSize, (unsigned long) uiop->uio_resid));
369 1.1 rvb wakeup(&vmp->vm_sleep); /* Notify caller of the error. */
370 1.1 rvb return(EINVAL);
371 1.27 perry }
372 1.27 perry
373 1.28 christos tbuf[0] = uiop->uio_resid; /* Save this value. */
374 1.1 rvb uiop->uio_rw = UIO_WRITE;
375 1.40 plunky error = uiomove(&out->result, vmp->vm_outSize - (sizeof(int) * 2), uiop);
376 1.1 rvb if (error) {
377 1.27 perry myprintf(("vcwrite: error (%d) on uiomove (op %ld seq %ld)\n",
378 1.1 rvb error, opcode, seq));
379 1.1 rvb return(EINVAL);
380 1.1 rvb }
381 1.27 perry
382 1.1 rvb /* I don't think these are used, but just in case. */
383 1.1 rvb /* XXX - aren't these two already correct? -bnoble */
384 1.1 rvb out->opcode = opcode;
385 1.1 rvb out->unique = seq;
386 1.28 christos vmp->vm_outSize = tbuf[0]; /* Amount of data transferred? */
387 1.1 rvb vmp->vm_flags |= VM_WRITE;
388 1.1 rvb wakeup(&vmp->vm_sleep);
389 1.27 perry
390 1.1 rvb return(0);
391 1.1 rvb }
392 1.1 rvb
393 1.1 rvb int
394 1.36 christos vc_nb_ioctl(dev_t dev, u_long cmd, void *addr, int flag,
395 1.34 christos struct lwp *l)
396 1.1 rvb {
397 1.1 rvb ENTRY;
398 1.1 rvb
399 1.1 rvb switch(cmd) {
400 1.3 rvb case CODARESIZE: {
401 1.3 rvb struct coda_resize *data = (struct coda_resize *)addr;
402 1.3 rvb return(coda_nc_resize(data->hashsize, data->heapsize, IS_DOWNCALL));
403 1.1 rvb break;
404 1.1 rvb }
405 1.3 rvb case CODASTATS:
406 1.3 rvb if (coda_nc_use) {
407 1.3 rvb coda_nc_gather_stats();
408 1.1 rvb return(0);
409 1.1 rvb } else {
410 1.1 rvb return(ENODEV);
411 1.1 rvb }
412 1.1 rvb break;
413 1.3 rvb case CODAPRINT:
414 1.3 rvb if (coda_nc_use) {
415 1.3 rvb print_coda_nc();
416 1.1 rvb return(0);
417 1.1 rvb } else {
418 1.1 rvb return(ENODEV);
419 1.1 rvb }
420 1.1 rvb break;
421 1.9 rvb case CIOC_KERNEL_VERSION:
422 1.9 rvb switch (*(u_int *)addr) {
423 1.9 rvb case 0:
424 1.9 rvb *(u_int *)addr = coda_kernel_version;
425 1.9 rvb return 0;
426 1.9 rvb break;
427 1.9 rvb case 1:
428 1.9 rvb case 2:
429 1.9 rvb if (coda_kernel_version != *(u_int *)addr)
430 1.9 rvb return ENOENT;
431 1.9 rvb else
432 1.9 rvb return 0;
433 1.9 rvb default:
434 1.9 rvb return ENOENT;
435 1.9 rvb }
436 1.9 rvb break;
437 1.1 rvb default :
438 1.1 rvb return(EINVAL);
439 1.1 rvb break;
440 1.1 rvb }
441 1.1 rvb }
442 1.1 rvb
443 1.1 rvb int
444 1.31 christos vc_nb_poll(dev_t dev, int events, struct lwp *l)
445 1.1 rvb {
446 1.13 augustss struct vcomm *vcp;
447 1.1 rvb int event_msk = 0;
448 1.1 rvb
449 1.1 rvb ENTRY;
450 1.27 perry
451 1.3 rvb if (minor(dev) >= NVCODA || minor(dev) < 0)
452 1.1 rvb return(ENXIO);
453 1.27 perry
454 1.3 rvb vcp = &coda_mnttbl[minor(dev)].mi_vcomm;
455 1.27 perry
456 1.1 rvb event_msk = events & (POLLIN|POLLRDNORM);
457 1.1 rvb if (!event_msk)
458 1.1 rvb return(0);
459 1.27 perry
460 1.41 plunky if (!TAILQ_EMPTY(&vcp->vc_requests))
461 1.1 rvb return(events & (POLLIN|POLLRDNORM));
462 1.1 rvb
463 1.31 christos selrecord(l, &(vcp->vc_selproc));
464 1.27 perry
465 1.1 rvb return(0);
466 1.1 rvb }
467 1.1 rvb
468 1.21 jdolecek static void
469 1.21 jdolecek filt_vc_nb_detach(struct knote *kn)
470 1.21 jdolecek {
471 1.21 jdolecek struct vcomm *vcp = kn->kn_hook;
472 1.21 jdolecek
473 1.22 christos SLIST_REMOVE(&vcp->vc_selproc.sel_klist, kn, knote, kn_selnext);
474 1.21 jdolecek }
475 1.21 jdolecek
476 1.21 jdolecek static int
477 1.34 christos filt_vc_nb_read(struct knote *kn, long hint)
478 1.21 jdolecek {
479 1.27 perry struct vcomm *vcp = kn->kn_hook;
480 1.21 jdolecek struct vmsg *vmp;
481 1.21 jdolecek
482 1.41 plunky vmp = TAILQ_FIRST(&vcp->vc_requests);
483 1.41 plunky if (vmp == NULL)
484 1.21 jdolecek return (0);
485 1.21 jdolecek
486 1.21 jdolecek kn->kn_data = vmp->vm_inSize;
487 1.21 jdolecek return (1);
488 1.21 jdolecek }
489 1.21 jdolecek
490 1.21 jdolecek static const struct filterops vc_nb_read_filtops =
491 1.21 jdolecek { 1, NULL, filt_vc_nb_detach, filt_vc_nb_read };
492 1.21 jdolecek
493 1.21 jdolecek int
494 1.21 jdolecek vc_nb_kqfilter(dev_t dev, struct knote *kn)
495 1.21 jdolecek {
496 1.21 jdolecek struct vcomm *vcp;
497 1.21 jdolecek struct klist *klist;
498 1.21 jdolecek
499 1.21 jdolecek ENTRY;
500 1.27 perry
501 1.21 jdolecek if (minor(dev) >= NVCODA || minor(dev) < 0)
502 1.21 jdolecek return(ENXIO);
503 1.27 perry
504 1.21 jdolecek vcp = &coda_mnttbl[minor(dev)].mi_vcomm;
505 1.21 jdolecek
506 1.21 jdolecek switch (kn->kn_filter) {
507 1.21 jdolecek case EVFILT_READ:
508 1.22 christos klist = &vcp->vc_selproc.sel_klist;
509 1.21 jdolecek kn->kn_fop = &vc_nb_read_filtops;
510 1.21 jdolecek break;
511 1.21 jdolecek
512 1.21 jdolecek default:
513 1.37 pooka return (EINVAL);
514 1.21 jdolecek }
515 1.21 jdolecek
516 1.21 jdolecek kn->kn_hook = vcp;
517 1.21 jdolecek
518 1.21 jdolecek SLIST_INSERT_HEAD(klist, kn, kn_selnext);
519 1.21 jdolecek
520 1.21 jdolecek return (0);
521 1.21 jdolecek }
522 1.21 jdolecek
523 1.1 rvb /*
524 1.1 rvb * Statistics
525 1.1 rvb */
526 1.3 rvb struct coda_clstat coda_clstat;
527 1.1 rvb
528 1.27 perry /*
529 1.23 wiz * Key question: whether to sleep interruptably or uninterruptably when
530 1.1 rvb * waiting for Venus. The former seems better (cause you can ^C a
531 1.1 rvb * job), but then GNU-EMACS completion breaks. Use tsleep with no
532 1.1 rvb * timeout, and no longjmp happens. But, when sleeping
533 1.1 rvb * "uninterruptibly", we don't get told if it returns abnormally
534 1.27 perry * (e.g. kill -9).
535 1.1 rvb */
536 1.1 rvb
537 1.1 rvb int
538 1.30 xtraeme coda_call(struct coda_mntinfo *mntinfo, int inSize, int *outSize,
539 1.36 christos void *buffer)
540 1.1 rvb {
541 1.1 rvb struct vcomm *vcp;
542 1.1 rvb struct vmsg *vmp;
543 1.1 rvb int error;
544 1.1 rvb #ifdef CTL_C
545 1.31 christos struct lwp *l = curlwp;
546 1.31 christos struct proc *p = l->l_proc;
547 1.4 rvb sigset_t psig_omask;
548 1.1 rvb int i;
549 1.35 ad psig_omask = l->l_sigmask; /* XXXSA */
550 1.1 rvb #endif
551 1.1 rvb if (mntinfo == NULL) {
552 1.1 rvb /* Unlikely, but could be a race condition with a dying warden */
553 1.1 rvb return ENODEV;
554 1.1 rvb }
555 1.1 rvb
556 1.1 rvb vcp = &(mntinfo->mi_vcomm);
557 1.27 perry
558 1.3 rvb coda_clstat.ncalls++;
559 1.3 rvb coda_clstat.reqs[((struct coda_in_hdr *)buffer)->opcode]++;
560 1.1 rvb
561 1.1 rvb if (!VC_OPEN(vcp))
562 1.1 rvb return(ENODEV);
563 1.1 rvb
564 1.3 rvb CODA_ALLOC(vmp,struct vmsg *,sizeof(struct vmsg));
565 1.1 rvb /* Format the request message. */
566 1.1 rvb vmp->vm_data = buffer;
567 1.1 rvb vmp->vm_flags = 0;
568 1.1 rvb vmp->vm_inSize = inSize;
569 1.27 perry vmp->vm_outSize
570 1.1 rvb = *outSize ? *outSize : inSize; /* |buffer| >= inSize */
571 1.3 rvb vmp->vm_opcode = ((struct coda_in_hdr *)buffer)->opcode;
572 1.1 rvb vmp->vm_unique = ++vcp->vc_seq;
573 1.3 rvb if (codadebug)
574 1.27 perry myprintf(("Doing a call for %d.%d\n",
575 1.1 rvb vmp->vm_opcode, vmp->vm_unique));
576 1.27 perry
577 1.1 rvb /* Fill in the common input args. */
578 1.3 rvb ((struct coda_in_hdr *)buffer)->unique = vmp->vm_unique;
579 1.1 rvb
580 1.1 rvb /* Append msg to request queue and poke Venus. */
581 1.41 plunky TAILQ_INSERT_TAIL(&vcp->vc_requests, vmp, vm_chain);
582 1.39 rmind selnotify(&(vcp->vc_selproc), 0, 0);
583 1.1 rvb
584 1.1 rvb /* We can be interrupted while we wait for Venus to process
585 1.1 rvb * our request. If the interrupt occurs before Venus has read
586 1.1 rvb * the request, we dequeue and return. If it occurs after the
587 1.1 rvb * read but before the reply, we dequeue, send a signal
588 1.1 rvb * message, and return. If it occurs after the reply we ignore
589 1.1 rvb * it. In no case do we want to restart the syscall. If it
590 1.1 rvb * was interrupted by a venus shutdown (vcclose), return
591 1.1 rvb * ENODEV. */
592 1.1 rvb
593 1.1 rvb /* Ignore return, We have to check anyway */
594 1.1 rvb #ifdef CTL_C
595 1.3 rvb /* This is work in progress. Setting coda_pcatch lets tsleep reawaken
596 1.1 rvb on a ^c or ^z. The problem is that emacs sets certain interrupts
597 1.1 rvb as SA_RESTART. This means that we should exit sleep handle the
598 1.1 rvb "signal" and then go to sleep again. Mostly this is done by letting
599 1.27 perry the syscall complete and be restarted. We are not idempotent and
600 1.1 rvb can not do this. A better solution is necessary.
601 1.1 rvb */
602 1.1 rvb i = 0;
603 1.1 rvb do {
604 1.3 rvb error = tsleep(&vmp->vm_sleep, (coda_call_sleep|coda_pcatch), "coda_call", hz*2);
605 1.1 rvb if (error == 0)
606 1.1 rvb break;
607 1.35 ad mutex_enter(&p->p_smutex);
608 1.35 ad if (error == EWOULDBLOCK) {
609 1.7 rvb #ifdef CODA_VERBOSE
610 1.3 rvb printf("coda_call: tsleep TIMEOUT %d sec\n", 2+2*i);
611 1.5 rvb #endif
612 1.35 ad } else if (sigispending(l, SIGIO)) {
613 1.35 ad sigaddset(&l->l_sigmask, SIGIO);
614 1.7 rvb #ifdef CODA_VERBOSE
615 1.3 rvb printf("coda_call: tsleep returns %d SIGIO, cnt %d\n", error, i);
616 1.5 rvb #endif
617 1.35 ad } else if (sigispending(l, SIGALRM)) {
618 1.35 ad sigaddset(&l->l_sigmask, SIGALRM);
619 1.8 rvb #ifdef CODA_VERBOSE
620 1.8 rvb printf("coda_call: tsleep returns %d SIGALRM, cnt %d\n", error, i);
621 1.8 rvb #endif
622 1.1 rvb } else {
623 1.4 rvb sigset_t tmp;
624 1.35 ad tmp = p->p_sigpend.sp_set; /* array assignment */
625 1.35 ad sigminusset(&l->l_sigmask, &tmp);
626 1.4 rvb
627 1.7 rvb #ifdef CODA_VERBOSE
628 1.3 rvb printf("coda_call: tsleep returns %d, cnt %d\n", error, i);
629 1.4 rvb printf("coda_call: siglist = %x.%x.%x.%x, sigmask = %x.%x.%x.%x, mask %x.%x.%x.%x\n",
630 1.35 ad p->p_sigpend.sp_set.__bits[0], p->p_sigpend.sp_set.__bits[1],
631 1.35 ad p->p_sigpend.sp_set.__bits[2], p->p_sigpend.sp_set.__bits[3],
632 1.35 ad l->l_sigmask.__bits[0], l->l_sigmask.__bits[1],
633 1.35 ad l->l_sigmask.__bits[2], l->l_sigmask.__bits[3],
634 1.4 rvb tmp.__bits[0], tmp.__bits[1], tmp.__bits[2], tmp.__bits[3]);
635 1.5 rvb #endif
636 1.35 ad mutex_exit(&p->p_smutex);
637 1.1 rvb break;
638 1.5 rvb #ifdef notyet
639 1.35 ad sigminusset(&l->l_sigmask, &p->p_sigpend.sp_set);
640 1.27 perry printf("coda_call: siglist = %x.%x.%x.%x, sigmask = %x.%x.%x.%x\n",
641 1.35 ad p->p_sigpend.sp_set.__bits[0], p->p_sigpend.sp_set.__bits[1],
642 1.35 ad p->p_sigpend.sp_set.__bits[2], p->p_sigpend.sp_set.__bits[3],
643 1.35 ad l->l_sigmask.__bits[0], l->l_sigmask.__bits[1],
644 1.35 ad l->l_sigmask.__bits[2], l->l_sigmask.__bits[3]);
645 1.5 rvb #endif
646 1.1 rvb }
647 1.35 ad mutex_exit(&p->p_smutex);
648 1.8 rvb } while (error && i++ < 128 && VC_OPEN(vcp));
649 1.35 ad l->l_sigmask = psig_omask; /* XXXSA */
650 1.1 rvb #else
651 1.3 rvb (void) tsleep(&vmp->vm_sleep, coda_call_sleep, "coda_call", 0);
652 1.1 rvb #endif
653 1.1 rvb if (VC_OPEN(vcp)) { /* Venus is still alive */
654 1.1 rvb /* Op went through, interrupt or not... */
655 1.1 rvb if (vmp->vm_flags & VM_WRITE) {
656 1.1 rvb error = 0;
657 1.1 rvb *outSize = vmp->vm_outSize;
658 1.1 rvb }
659 1.1 rvb
660 1.27 perry else if (!(vmp->vm_flags & VM_READ)) {
661 1.1 rvb /* Interrupted before venus read it. */
662 1.7 rvb #ifdef CODA_VERBOSE
663 1.7 rvb if (1)
664 1.7 rvb #else
665 1.5 rvb if (codadebug)
666 1.5 rvb #endif
667 1.1 rvb myprintf(("interrupted before read: op = %d.%d, flags = %x\n",
668 1.1 rvb vmp->vm_opcode, vmp->vm_unique, vmp->vm_flags));
669 1.41 plunky
670 1.41 plunky TAILQ_REMOVE(&vcp->vc_requests, vmp, vm_chain);
671 1.1 rvb error = EINTR;
672 1.1 rvb }
673 1.27 perry
674 1.27 perry else {
675 1.1 rvb /* (!(vmp->vm_flags & VM_WRITE)) means interrupted after
676 1.1 rvb upcall started */
677 1.1 rvb /* Interrupted after start of upcall, send venus a signal */
678 1.3 rvb struct coda_in_hdr *dog;
679 1.1 rvb struct vmsg *svmp;
680 1.27 perry
681 1.7 rvb #ifdef CODA_VERBOSE
682 1.7 rvb if (1)
683 1.7 rvb #else
684 1.5 rvb if (codadebug)
685 1.5 rvb #endif
686 1.1 rvb myprintf(("Sending Venus a signal: op = %d.%d, flags = %x\n",
687 1.1 rvb vmp->vm_opcode, vmp->vm_unique, vmp->vm_flags));
688 1.27 perry
689 1.41 plunky TAILQ_REMOVE(&vcp->vc_replies, vmp, vm_chain);
690 1.1 rvb error = EINTR;
691 1.27 perry
692 1.3 rvb CODA_ALLOC(svmp, struct vmsg *, sizeof (struct vmsg));
693 1.1 rvb
694 1.3 rvb CODA_ALLOC((svmp->vm_data), char *, sizeof (struct coda_in_hdr));
695 1.3 rvb dog = (struct coda_in_hdr *)svmp->vm_data;
696 1.27 perry
697 1.1 rvb svmp->vm_flags = 0;
698 1.3 rvb dog->opcode = svmp->vm_opcode = CODA_SIGNAL;
699 1.1 rvb dog->unique = svmp->vm_unique = vmp->vm_unique;
700 1.3 rvb svmp->vm_inSize = sizeof (struct coda_in_hdr);
701 1.3 rvb /*??? rvb */ svmp->vm_outSize = sizeof (struct coda_in_hdr);
702 1.27 perry
703 1.3 rvb if (codadebug)
704 1.3 rvb myprintf(("coda_call: enqueing signal msg (%d, %d)\n",
705 1.1 rvb svmp->vm_opcode, svmp->vm_unique));
706 1.27 perry
707 1.1 rvb /* insert at head of queue! */
708 1.41 plunky TAILQ_INSERT_TAIL(&vcp->vc_requests, svmp, vm_chain);
709 1.39 rmind selnotify(&(vcp->vc_selproc), 0, 0);
710 1.1 rvb }
711 1.1 rvb }
712 1.1 rvb
713 1.1 rvb else { /* If venus died (!VC_OPEN(vcp)) */
714 1.3 rvb if (codadebug)
715 1.1 rvb myprintf(("vcclose woke op %d.%d flags %d\n",
716 1.1 rvb vmp->vm_opcode, vmp->vm_unique, vmp->vm_flags));
717 1.27 perry
718 1.1 rvb error = ENODEV;
719 1.1 rvb }
720 1.1 rvb
721 1.3 rvb CODA_FREE(vmp, sizeof(struct vmsg));
722 1.8 rvb
723 1.8 rvb if (outstanding_upcalls > 0 && (--outstanding_upcalls == 0))
724 1.8 rvb wakeup(&outstanding_upcalls);
725 1.1 rvb
726 1.1 rvb if (!error)
727 1.3 rvb error = ((struct coda_out_hdr *)buffer)->result;
728 1.1 rvb return(error);
729 1.1 rvb }
730 1.4 rvb
731