md.c revision 1.5 1 1.5 leo /* $NetBSD: md.c,v 1.5 1996/03/07 10:26:29 leo Exp $ */
2 1.1 gwr
3 1.1 gwr /*
4 1.1 gwr * Copyright (c) 1995 Gordon W. Ross, Leo Weppelman.
5 1.1 gwr * All rights reserved.
6 1.1 gwr *
7 1.1 gwr * Redistribution and use in source and binary forms, with or without
8 1.1 gwr * modification, are permitted provided that the following conditions
9 1.1 gwr * are met:
10 1.1 gwr * 1. Redistributions of source code must retain the above copyright
11 1.1 gwr * notice, this list of conditions and the following disclaimer.
12 1.1 gwr * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 gwr * notice, this list of conditions and the following disclaimer in the
14 1.1 gwr * documentation and/or other materials provided with the distribution.
15 1.1 gwr * 3. The name of the author may not be used to endorse or promote products
16 1.1 gwr * derived from this software without specific prior written permission.
17 1.1 gwr * 4. All advertising materials mentioning features or use of this software
18 1.1 gwr * must display the following acknowledgement:
19 1.1 gwr * This product includes software developed by
20 1.1 gwr * Gordon W. Ross and Leo Weppelman.
21 1.1 gwr *
22 1.1 gwr * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
23 1.1 gwr * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
24 1.1 gwr * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
25 1.1 gwr * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
26 1.1 gwr * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
27 1.1 gwr * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
28 1.1 gwr * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
29 1.1 gwr * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
30 1.1 gwr * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
31 1.1 gwr * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
32 1.1 gwr */
33 1.1 gwr
34 1.1 gwr /*
35 1.1 gwr * This implements a general-puspose RAM-disk.
36 1.1 gwr * See ramdisk.h for notes on the config types.
37 1.1 gwr *
38 1.1 gwr * Note that this driver provides the same functionality
39 1.1 gwr * as the MFS filesystem hack, but this is better because
40 1.1 gwr * you can use this for any filesystem type you'd like!
41 1.1 gwr *
42 1.1 gwr * Credit for most of the kmem ramdisk code goes to:
43 1.1 gwr * Leo Weppelman (atari) and Phil Nelson (pc532)
44 1.1 gwr * Credit for the ideas behind the "user space RAM" code goes
45 1.1 gwr * to the authors of the MFS implementation.
46 1.1 gwr */
47 1.1 gwr
48 1.1 gwr #include <sys/param.h>
49 1.1 gwr #include <sys/systm.h>
50 1.1 gwr #include <sys/buf.h>
51 1.1 gwr #include <sys/device.h>
52 1.4 thorpej #include <sys/disk.h>
53 1.1 gwr
54 1.1 gwr #include <vm/vm.h>
55 1.1 gwr #include <vm/vm_kern.h>
56 1.1 gwr /* Don't want all those other VM headers... */
57 1.1 gwr extern vm_offset_t kmem_alloc __P((vm_map_t, vm_size_t));
58 1.1 gwr
59 1.1 gwr #include <dev/ramdisk.h>
60 1.1 gwr
61 1.1 gwr /*
62 1.1 gwr * By default, include the user-space functionality.
63 1.1 gwr * Use: option RAMDISK_SERVER=0 to turn it off.
64 1.1 gwr */
65 1.1 gwr #ifndef RAMDISK_SERVER
66 1.1 gwr #define RAMDISK_SERVER 1
67 1.1 gwr #endif
68 1.1 gwr
69 1.1 gwr /*
70 1.1 gwr * XXX: the "control" unit is (base unit + 16).
71 1.1 gwr * We should just use the cdev as the "control", but
72 1.1 gwr * that interferes with the security stuff preventing
73 1.1 gwr * simulatneous use of raw and block devices.
74 1.1 gwr *
75 1.1 gwr * XXX Assumption: 16 RAM-disks are enough!
76 1.1 gwr */
77 1.1 gwr #define RD_IS_CTRL(unit) (unit & 0x10)
78 1.1 gwr #define RD_UNIT(unit) (unit & 0xF)
79 1.1 gwr
80 1.1 gwr /*
81 1.1 gwr * XXX - This is just for a sanity check. Only
82 1.1 gwr * applies to kernel-space RAM disk allocations.
83 1.1 gwr */
84 1.1 gwr #define RD_KMEM_MAX_SIZE 0x100000 /* 1MB */
85 1.1 gwr
86 1.1 gwr /* autoconfig stuff... */
87 1.1 gwr
88 1.1 gwr struct rd_softc {
89 1.1 gwr struct device sc_dev; /* REQUIRED first entry */
90 1.4 thorpej struct disk sc_dkdev; /* hook for generic disk handling */
91 1.1 gwr struct rd_conf sc_rd;
92 1.1 gwr struct buf *sc_buflist;
93 1.1 gwr int sc_flags;
94 1.1 gwr };
95 1.1 gwr /* shorthand for fields in sc_rd: */
96 1.1 gwr #define sc_addr sc_rd.rd_addr
97 1.1 gwr #define sc_size sc_rd.rd_size
98 1.1 gwr #define sc_type sc_rd.rd_type
99 1.1 gwr /* flags */
100 1.1 gwr #define RD_ISOPEN 0x01
101 1.1 gwr #define RD_SERVED 0x02
102 1.1 gwr
103 1.1 gwr static int rd_match (struct device *, void *self, void *);
104 1.1 gwr static void rd_attach(struct device *, struct device *self, void *);
105 1.1 gwr
106 1.1 gwr struct cfdriver rdcd = {
107 1.1 gwr NULL, "rd", rd_match, rd_attach,
108 1.3 gwr DV_DULL, sizeof(struct rd_softc), NULL, 0 };
109 1.1 gwr
110 1.4 thorpej void rdstrategy __P((struct buf *bp));
111 1.4 thorpej
112 1.4 thorpej struct dkdriver rddkdriver = { rdstrategy };
113 1.4 thorpej
114 1.1 gwr static int
115 1.1 gwr rd_match(parent, self, aux)
116 1.1 gwr struct device *parent;
117 1.1 gwr void *self;
118 1.1 gwr void *aux;
119 1.1 gwr {
120 1.5 leo #ifdef RAMDISK_HOOKS
121 1.5 leo /*
122 1.5 leo * This external function allows for a machine dependent
123 1.5 leo * match function.
124 1.5 leo */
125 1.5 leo return (rd_match_hook(parent, self, aux));
126 1.5 leo #else
127 1.1 gwr return(1);
128 1.5 leo #endif
129 1.1 gwr }
130 1.1 gwr
131 1.1 gwr static void
132 1.1 gwr rd_attach(parent, self, aux)
133 1.1 gwr struct device *parent, *self;
134 1.1 gwr void *aux;
135 1.1 gwr {
136 1.1 gwr struct rd_softc *sc = (struct rd_softc *)self;
137 1.1 gwr
138 1.1 gwr /* XXX - Could accept aux info here to set the config. */
139 1.1 gwr #ifdef RAMDISK_HOOKS
140 1.1 gwr /*
141 1.1 gwr * This external function might setup a pre-loaded disk.
142 1.1 gwr * All it would need to do is setup the rd_conf struct.
143 1.1 gwr * See sys/arch/sun3/dev/rd_root.c for an example.
144 1.1 gwr */
145 1.1 gwr rd_attach_hook(sc->sc_dev.dv_unit, &sc->sc_rd);
146 1.1 gwr #endif
147 1.1 gwr printf("\n");
148 1.4 thorpej
149 1.4 thorpej /*
150 1.4 thorpej * Initialize and attach the disk structure.
151 1.4 thorpej */
152 1.4 thorpej bzero(&sc->sc_dkdev, sizeof(sc->sc_dkdev));
153 1.4 thorpej sc->sc_dkdev.dk_driver = &rddkdriver;
154 1.4 thorpej sc->sc_dkdev.dk_name = sc->sc_dev.dv_xname;
155 1.4 thorpej disk_attach(&sc->sc_dkdev);
156 1.1 gwr }
157 1.1 gwr
158 1.1 gwr /*
159 1.1 gwr * operational routines:
160 1.1 gwr * open, close, read, write, strategy,
161 1.1 gwr * ioctl, dump, size
162 1.1 gwr */
163 1.1 gwr
164 1.1 gwr #if RAMDISK_SERVER
165 1.1 gwr static int rd_server_loop __P((struct rd_softc *sc));
166 1.1 gwr static int rd_ioctl_server __P((struct rd_softc *sc,
167 1.1 gwr struct rd_conf *urd, struct proc *proc));
168 1.1 gwr #endif
169 1.1 gwr
170 1.1 gwr int rddump(dev, blkno, va, size)
171 1.1 gwr dev_t dev;
172 1.1 gwr daddr_t blkno;
173 1.1 gwr caddr_t va;
174 1.1 gwr size_t size;
175 1.1 gwr {
176 1.1 gwr return ENODEV;
177 1.1 gwr }
178 1.1 gwr
179 1.1 gwr int rdsize(dev_t dev)
180 1.1 gwr {
181 1.1 gwr int unit;
182 1.1 gwr struct rd_softc *sc;
183 1.1 gwr
184 1.1 gwr /* Disallow control units. */
185 1.1 gwr unit = minor(dev);
186 1.1 gwr if (unit >= rdcd.cd_ndevs)
187 1.1 gwr return 0;
188 1.1 gwr sc = rdcd.cd_devs[unit];
189 1.1 gwr if (sc == NULL)
190 1.1 gwr return 0;
191 1.1 gwr
192 1.1 gwr if (sc->sc_type == RD_UNCONFIGURED)
193 1.1 gwr return 0;
194 1.1 gwr
195 1.1 gwr return (sc->sc_size >> DEV_BSHIFT);
196 1.1 gwr }
197 1.1 gwr
198 1.1 gwr int rdopen(dev, flag, fmt, proc)
199 1.1 gwr dev_t dev;
200 1.1 gwr int flag, fmt;
201 1.1 gwr struct proc *proc;
202 1.1 gwr {
203 1.1 gwr int md, unit;
204 1.1 gwr struct rd_softc *sc;
205 1.1 gwr
206 1.1 gwr md = minor(dev);
207 1.1 gwr unit = RD_UNIT(md);
208 1.1 gwr if (unit >= rdcd.cd_ndevs)
209 1.1 gwr return ENXIO;
210 1.1 gwr sc = rdcd.cd_devs[unit];
211 1.1 gwr if (sc == NULL)
212 1.1 gwr return ENXIO;
213 1.1 gwr
214 1.1 gwr /*
215 1.1 gwr * The control device is not exclusive, and can
216 1.1 gwr * open uninitialized units (so you can setconf).
217 1.1 gwr */
218 1.1 gwr if (RD_IS_CTRL(md))
219 1.1 gwr return 0;
220 1.1 gwr
221 1.1 gwr #ifdef RAMDISK_HOOKS
222 1.1 gwr /* Call the open hook to allow loading the device. */
223 1.1 gwr rd_open_hook(unit, &sc->sc_rd);
224 1.1 gwr #endif
225 1.1 gwr
226 1.1 gwr /*
227 1.1 gwr * This is a normal, "slave" device, so
228 1.1 gwr * enforce initialized, exclusive open.
229 1.1 gwr */
230 1.1 gwr if (sc->sc_type == RD_UNCONFIGURED)
231 1.1 gwr return ENXIO;
232 1.1 gwr if (sc->sc_flags & RD_ISOPEN)
233 1.1 gwr return EBUSY;
234 1.1 gwr
235 1.1 gwr return 0;
236 1.1 gwr }
237 1.1 gwr
238 1.1 gwr int rdclose(dev, flag, fmt, proc)
239 1.1 gwr dev_t dev;
240 1.1 gwr int flag, fmt;
241 1.1 gwr struct proc *proc;
242 1.1 gwr {
243 1.1 gwr int md, unit;
244 1.1 gwr struct rd_softc *sc;
245 1.1 gwr
246 1.1 gwr md = minor(dev);
247 1.1 gwr unit = RD_UNIT(md);
248 1.1 gwr sc = rdcd.cd_devs[unit];
249 1.1 gwr
250 1.1 gwr if (RD_IS_CTRL(md))
251 1.1 gwr return 0;
252 1.1 gwr
253 1.1 gwr /* Normal device. */
254 1.1 gwr sc->sc_flags = 0;
255 1.1 gwr
256 1.1 gwr return 0;
257 1.1 gwr }
258 1.1 gwr
259 1.1 gwr int
260 1.1 gwr rdread(dev, uio)
261 1.1 gwr dev_t dev;
262 1.1 gwr struct uio *uio;
263 1.1 gwr {
264 1.1 gwr return (physio(rdstrategy, NULL, dev, B_READ, minphys, uio));
265 1.1 gwr }
266 1.1 gwr
267 1.1 gwr int
268 1.1 gwr rdwrite(dev, uio)
269 1.1 gwr dev_t dev;
270 1.1 gwr struct uio *uio;
271 1.1 gwr {
272 1.1 gwr return (physio(rdstrategy, NULL, dev, B_WRITE, minphys, uio));
273 1.1 gwr }
274 1.1 gwr
275 1.1 gwr /*
276 1.1 gwr * Handle I/O requests, either directly, or
277 1.1 gwr * by passing them to the server process.
278 1.1 gwr */
279 1.1 gwr void
280 1.1 gwr rdstrategy(bp)
281 1.1 gwr struct buf *bp;
282 1.1 gwr {
283 1.1 gwr int md, unit;
284 1.1 gwr struct rd_softc *sc;
285 1.1 gwr caddr_t addr;
286 1.1 gwr size_t off, xfer;
287 1.1 gwr
288 1.1 gwr md = minor(bp->b_dev);
289 1.1 gwr unit = RD_UNIT(md);
290 1.1 gwr sc = rdcd.cd_devs[unit];
291 1.1 gwr
292 1.1 gwr switch (sc->sc_type) {
293 1.1 gwr #if RAMDISK_SERVER
294 1.1 gwr case RD_UMEM_SERVER:
295 1.1 gwr /* Just add this job to the server's queue. */
296 1.1 gwr bp->b_actf = sc->sc_buflist;
297 1.1 gwr sc->sc_buflist = bp;
298 1.1 gwr if (bp->b_actf == NULL) {
299 1.1 gwr /* server queue was empty. */
300 1.1 gwr wakeup((caddr_t)sc);
301 1.1 gwr /* see rd_server_loop() */
302 1.1 gwr }
303 1.1 gwr /* no biodone in this case */
304 1.1 gwr return;
305 1.1 gwr #endif /* RAMDISK_SERVER */
306 1.1 gwr
307 1.1 gwr case RD_KMEM_FIXED:
308 1.1 gwr case RD_KMEM_ALLOCATED:
309 1.1 gwr /* These are in kernel space. Access directly. */
310 1.1 gwr bp->b_resid = bp->b_bcount;
311 1.1 gwr off = (bp->b_blkno << DEV_BSHIFT);
312 1.1 gwr if (off >= sc->sc_size) {
313 1.1 gwr if (bp->b_flags & B_READ)
314 1.1 gwr break; /* EOF */
315 1.1 gwr goto set_eio;
316 1.1 gwr }
317 1.1 gwr xfer = bp->b_resid;
318 1.1 gwr if (xfer > (sc->sc_size - off))
319 1.1 gwr xfer = (sc->sc_size - off);
320 1.1 gwr addr = sc->sc_addr + off;
321 1.1 gwr if (bp->b_flags & B_READ)
322 1.1 gwr bcopy(addr, bp->b_data, xfer);
323 1.1 gwr else
324 1.1 gwr bcopy(bp->b_data, addr, xfer);
325 1.1 gwr bp->b_resid -= xfer;
326 1.1 gwr break;
327 1.1 gwr
328 1.1 gwr default:
329 1.1 gwr bp->b_resid = bp->b_bcount;
330 1.1 gwr set_eio:
331 1.1 gwr bp->b_error = EIO;
332 1.1 gwr bp->b_flags |= B_ERROR;
333 1.1 gwr break;
334 1.1 gwr }
335 1.1 gwr biodone(bp);
336 1.1 gwr }
337 1.1 gwr
338 1.1 gwr int
339 1.1 gwr rdioctl(dev, cmd, data, flag, proc)
340 1.1 gwr dev_t dev;
341 1.1 gwr u_long cmd;
342 1.1 gwr int flag;
343 1.1 gwr caddr_t data;
344 1.1 gwr struct proc *proc;
345 1.1 gwr {
346 1.1 gwr int md, unit;
347 1.1 gwr struct rd_softc *sc;
348 1.1 gwr struct rd_conf *urd;
349 1.1 gwr
350 1.1 gwr md = minor(dev);
351 1.1 gwr unit = RD_UNIT(md);
352 1.1 gwr sc = rdcd.cd_devs[unit];
353 1.1 gwr
354 1.1 gwr /* If this is not the control device, punt! */
355 1.1 gwr if (RD_IS_CTRL(md) == 0)
356 1.1 gwr return ENOTTY;
357 1.1 gwr
358 1.1 gwr urd = (struct rd_conf *)data;
359 1.1 gwr switch (cmd) {
360 1.1 gwr case RD_GETCONF:
361 1.1 gwr *urd = sc->sc_rd;
362 1.1 gwr return 0;
363 1.1 gwr
364 1.1 gwr case RD_SETCONF:
365 1.1 gwr /* Can only set it once. */
366 1.1 gwr if (sc->sc_type != RD_UNCONFIGURED)
367 1.1 gwr break;
368 1.1 gwr switch (urd->rd_type) {
369 1.1 gwr case RD_KMEM_ALLOCATED:
370 1.1 gwr return rd_ioctl_kalloc(sc, urd, proc);
371 1.1 gwr #if RAMDISK_SERVER
372 1.1 gwr case RD_UMEM_SERVER:
373 1.1 gwr return rd_ioctl_server(sc, urd, proc);
374 1.1 gwr #endif
375 1.1 gwr default:
376 1.1 gwr break;
377 1.1 gwr }
378 1.1 gwr break;
379 1.1 gwr }
380 1.1 gwr return EINVAL;
381 1.1 gwr }
382 1.1 gwr
383 1.1 gwr /*
384 1.1 gwr * Handle ioctl RD_SETCONF for (sc_type == RD_KMEM_ALLOCATED)
385 1.1 gwr * Just allocate some kernel memory and return.
386 1.1 gwr */
387 1.1 gwr int
388 1.1 gwr rd_ioctl_kalloc(sc, urd, proc)
389 1.1 gwr struct rd_softc *sc;
390 1.1 gwr struct rd_conf *urd;
391 1.1 gwr struct proc *proc;
392 1.1 gwr {
393 1.1 gwr vm_offset_t addr;
394 1.1 gwr vm_size_t size;
395 1.1 gwr
396 1.1 gwr /* Sanity check the size. */
397 1.1 gwr size = urd->rd_size;
398 1.1 gwr if (size > RD_KMEM_MAX_SIZE)
399 1.1 gwr return EINVAL;
400 1.1 gwr addr = kmem_alloc(kernel_map, size);
401 1.1 gwr if (!addr)
402 1.1 gwr return ENOMEM;
403 1.1 gwr
404 1.1 gwr /* This unit is now configured. */
405 1.1 gwr sc->sc_addr = (caddr_t)addr; /* kernel space */
406 1.1 gwr sc->sc_size = (size_t)size;
407 1.1 gwr sc->sc_type = RD_KMEM_ALLOCATED;
408 1.1 gwr return 0;
409 1.1 gwr }
410 1.1 gwr
411 1.1 gwr #if RAMDISK_SERVER
412 1.1 gwr
413 1.1 gwr /*
414 1.2 gwr * Handle ioctl RD_SETCONF for (sc_type == RD_UMEM_SERVER)
415 1.1 gwr * Set config, then become the I/O server for this unit.
416 1.1 gwr */
417 1.1 gwr int
418 1.1 gwr rd_ioctl_server(sc, urd, proc)
419 1.1 gwr struct rd_softc *sc;
420 1.1 gwr struct rd_conf *urd;
421 1.1 gwr struct proc *proc;
422 1.1 gwr {
423 1.1 gwr vm_offset_t end;
424 1.1 gwr int error;
425 1.1 gwr
426 1.1 gwr /* Sanity check addr, size. */
427 1.1 gwr end = (vm_offset_t) (urd->rd_addr + urd->rd_size);
428 1.1 gwr
429 1.1 gwr if ((end >= VM_MAXUSER_ADDRESS) ||
430 1.1 gwr (end < ((vm_offset_t) urd->rd_addr)) )
431 1.1 gwr return EINVAL;
432 1.1 gwr
433 1.1 gwr /* This unit is now configured. */
434 1.1 gwr sc->sc_addr = urd->rd_addr; /* user space */
435 1.1 gwr sc->sc_size = urd->rd_size;
436 1.1 gwr sc->sc_type = RD_UMEM_SERVER;
437 1.1 gwr
438 1.1 gwr /* Become the server daemon */
439 1.1 gwr error = rd_server_loop(sc);
440 1.1 gwr
441 1.1 gwr /* This server is now going away! */
442 1.1 gwr sc->sc_type = RD_UNCONFIGURED;
443 1.1 gwr sc->sc_addr = 0;
444 1.1 gwr sc->sc_size = 0;
445 1.1 gwr
446 1.1 gwr return (error);
447 1.1 gwr }
448 1.1 gwr
449 1.1 gwr int rd_sleep_pri = PWAIT | PCATCH;
450 1.1 gwr
451 1.1 gwr static int
452 1.1 gwr rd_server_loop(sc)
453 1.1 gwr struct rd_softc *sc;
454 1.1 gwr {
455 1.1 gwr struct buf *bp;
456 1.1 gwr caddr_t addr; /* user space address */
457 1.1 gwr size_t off; /* offset into "device" */
458 1.1 gwr size_t xfer; /* amount to transfer */
459 1.1 gwr int error;
460 1.1 gwr
461 1.1 gwr for (;;) {
462 1.1 gwr /* Wait for some work to arrive. */
463 1.1 gwr while (sc->sc_buflist == NULL) {
464 1.1 gwr error = tsleep((caddr_t)sc, rd_sleep_pri, "rd_idle", 0);
465 1.1 gwr if (error)
466 1.1 gwr return error;
467 1.1 gwr }
468 1.1 gwr
469 1.1 gwr /* Unlink buf from head of list. */
470 1.1 gwr bp = sc->sc_buflist;
471 1.1 gwr sc->sc_buflist = bp->b_actf;
472 1.1 gwr bp->b_actf = NULL;
473 1.1 gwr
474 1.1 gwr /* Do the transfer to/from user space. */
475 1.1 gwr error = 0;
476 1.1 gwr bp->b_resid = bp->b_bcount;
477 1.1 gwr off = (bp->b_blkno << DEV_BSHIFT);
478 1.1 gwr if (off >= sc->sc_size) {
479 1.1 gwr if (bp->b_flags & B_READ)
480 1.1 gwr goto done; /* EOF (not an error) */
481 1.1 gwr error = EIO;
482 1.1 gwr goto done;
483 1.1 gwr }
484 1.1 gwr xfer = bp->b_resid;
485 1.1 gwr if (xfer > (sc->sc_size - off))
486 1.1 gwr xfer = (sc->sc_size - off);
487 1.1 gwr addr = sc->sc_addr + off;
488 1.1 gwr if (bp->b_flags & B_READ)
489 1.1 gwr error = copyin(addr, bp->b_data, xfer);
490 1.1 gwr else
491 1.1 gwr error = copyout(bp->b_data, addr, xfer);
492 1.1 gwr if (!error)
493 1.1 gwr bp->b_resid -= xfer;
494 1.1 gwr
495 1.1 gwr done:
496 1.1 gwr if (error) {
497 1.1 gwr bp->b_error = error;
498 1.1 gwr bp->b_flags |= B_ERROR;
499 1.1 gwr }
500 1.1 gwr biodone(bp);
501 1.1 gwr }
502 1.1 gwr }
503 1.1 gwr
504 1.1 gwr #endif /* RAMDISK_SERVER */
505