ld_ataraid.c revision 1.36 1 1.36 bsh /* $NetBSD: ld_ataraid.c,v 1.36 2010/07/06 17:56:14 bsh Exp $ */
2 1.1 thorpej
3 1.1 thorpej /*
4 1.1 thorpej * Copyright (c) 2003 Wasabi Systems, Inc.
5 1.1 thorpej * All rights reserved.
6 1.1 thorpej *
7 1.1 thorpej * Written by Jason R. Thorpe for Wasabi Systems, Inc.
8 1.1 thorpej *
9 1.1 thorpej * Redistribution and use in source and binary forms, with or without
10 1.1 thorpej * modification, are permitted provided that the following conditions
11 1.1 thorpej * are met:
12 1.1 thorpej * 1. Redistributions of source code must retain the above copyright
13 1.1 thorpej * notice, this list of conditions and the following disclaimer.
14 1.1 thorpej * 2. Redistributions in binary form must reproduce the above copyright
15 1.1 thorpej * notice, this list of conditions and the following disclaimer in the
16 1.1 thorpej * documentation and/or other materials provided with the distribution.
17 1.1 thorpej * 3. All advertising materials mentioning features or use of this software
18 1.1 thorpej * must display the following acknowledgement:
19 1.1 thorpej * This product includes software developed for the NetBSD Project by
20 1.1 thorpej * Wasabi Systems, Inc.
21 1.1 thorpej * 4. The name of Wasabi Systems, Inc. may not be used to endorse
22 1.1 thorpej * or promote products derived from this software without specific prior
23 1.1 thorpej * written permission.
24 1.1 thorpej *
25 1.1 thorpej * THIS SOFTWARE IS PROVIDED BY WASABI SYSTEMS, INC. ``AS IS'' AND
26 1.1 thorpej * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
27 1.1 thorpej * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
28 1.1 thorpej * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL WASABI SYSTEMS, INC
29 1.1 thorpej * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
30 1.1 thorpej * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
31 1.1 thorpej * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
32 1.1 thorpej * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
33 1.1 thorpej * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
34 1.1 thorpej * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
35 1.1 thorpej * POSSIBILITY OF SUCH DAMAGE.
36 1.1 thorpej */
37 1.1 thorpej
38 1.1 thorpej /*
39 1.1 thorpej * Support for ATA RAID logical disks.
40 1.1 thorpej *
41 1.1 thorpej * Note that all the RAID happens in software here; the ATA RAID
42 1.1 thorpej * controllers we're dealing with (Promise, etc.) only support
43 1.1 thorpej * configuration data on the component disks, with the BIOS supporting
44 1.1 thorpej * booting from the RAID volumes.
45 1.33 wrstuden *
46 1.30 tron * bio(4) support was written by Juan Romero Pardines <xtraeme (at) gmail.com>.
47 1.1 thorpej */
48 1.8 lukem
49 1.8 lukem #include <sys/cdefs.h>
50 1.36 bsh __KERNEL_RCSID(0, "$NetBSD: ld_ataraid.c,v 1.36 2010/07/06 17:56:14 bsh Exp $");
51 1.1 thorpej
52 1.30 tron #include "bio.h"
53 1.1 thorpej #include "rnd.h"
54 1.1 thorpej
55 1.1 thorpej #include <sys/param.h>
56 1.1 thorpej #include <sys/systm.h>
57 1.1 thorpej #include <sys/conf.h>
58 1.1 thorpej #include <sys/kernel.h>
59 1.1 thorpej #include <sys/device.h>
60 1.1 thorpej #include <sys/buf.h>
61 1.13 yamt #include <sys/bufq.h>
62 1.1 thorpej #include <sys/dkio.h>
63 1.1 thorpej #include <sys/disk.h>
64 1.1 thorpej #include <sys/disklabel.h>
65 1.1 thorpej #include <sys/fcntl.h>
66 1.1 thorpej #include <sys/malloc.h>
67 1.1 thorpej #include <sys/vnode.h>
68 1.16 elad #include <sys/kauth.h>
69 1.1 thorpej #if NRND > 0
70 1.1 thorpej #include <sys/rnd.h>
71 1.1 thorpej #endif
72 1.30 tron #if NBIO > 0
73 1.30 tron #include <dev/ata/atavar.h>
74 1.30 tron #include <dev/ata/atareg.h>
75 1.30 tron #include <dev/ata/wdvar.h>
76 1.30 tron #include <dev/biovar.h>
77 1.30 tron #include <dev/scsipi/scsipiconf.h> /* for scsipi_strvis() */
78 1.30 tron #endif
79 1.1 thorpej
80 1.1 thorpej #include <miscfs/specfs/specdev.h>
81 1.1 thorpej
82 1.1 thorpej #include <dev/ldvar.h>
83 1.1 thorpej
84 1.1 thorpej #include <dev/ata/ata_raidvar.h>
85 1.1 thorpej
86 1.1 thorpej struct ld_ataraid_softc {
87 1.1 thorpej struct ld_softc sc_ld;
88 1.1 thorpej
89 1.1 thorpej struct ataraid_array_info *sc_aai;
90 1.1 thorpej struct vnode *sc_vnodes[ATA_RAID_MAX_DISKS];
91 1.1 thorpej
92 1.1 thorpej void (*sc_iodone)(struct buf *);
93 1.36 bsh
94 1.36 bsh pool_cache_t sc_cbufpool;
95 1.36 bsh
96 1.36 bsh SIMPLEQ_HEAD(, cbuf) sc_cbufq;
97 1.36 bsh
98 1.36 bsh void *sc_sih_cookie;
99 1.1 thorpej };
100 1.1 thorpej
101 1.35 cegger static int ld_ataraid_match(device_t, cfdata_t, void *);
102 1.35 cegger static void ld_ataraid_attach(device_t, device_t, void *);
103 1.1 thorpej
104 1.1 thorpej static int ld_ataraid_dump(struct ld_softc *, void *, int, int);
105 1.1 thorpej
106 1.36 bsh static int cbufpool_ctor(void *, void *, int);
107 1.36 bsh static void cbufpool_dtor(void *, void *);
108 1.36 bsh
109 1.36 bsh static void ld_ataraid_start_vstrategy(void *);
110 1.1 thorpej static int ld_ataraid_start_span(struct ld_softc *, struct buf *);
111 1.1 thorpej
112 1.1 thorpej static int ld_ataraid_start_raid0(struct ld_softc *, struct buf *);
113 1.1 thorpej static void ld_ataraid_iodone_raid0(struct buf *);
114 1.1 thorpej
115 1.30 tron #if NBIO > 0
116 1.30 tron static int ld_ataraid_bioctl(device_t, u_long, void *);
117 1.30 tron static int ld_ataraid_bioinq(struct ld_ataraid_softc *, struct bioc_inq *);
118 1.30 tron static int ld_ataraid_biovol(struct ld_ataraid_softc *, struct bioc_vol *);
119 1.30 tron static int ld_ataraid_biodisk(struct ld_ataraid_softc *,
120 1.30 tron struct bioc_disk *);
121 1.30 tron #endif
122 1.30 tron
123 1.27 xtraeme CFATTACH_DECL_NEW(ld_ataraid, sizeof(struct ld_ataraid_softc),
124 1.1 thorpej ld_ataraid_match, ld_ataraid_attach, NULL, NULL);
125 1.1 thorpej
126 1.1 thorpej struct cbuf {
127 1.1 thorpej struct buf cb_buf; /* new I/O buf */
128 1.1 thorpej struct buf *cb_obp; /* ptr. to original I/O buf */
129 1.1 thorpej struct ld_ataraid_softc *cb_sc; /* pointer to ld softc */
130 1.1 thorpej u_int cb_comp; /* target component */
131 1.1 thorpej SIMPLEQ_ENTRY(cbuf) cb_q; /* fifo of component buffers */
132 1.12 enami struct cbuf *cb_other; /* other cbuf in case of mirror */
133 1.12 enami int cb_flags;
134 1.12 enami #define CBUF_IODONE 0x00000001 /* I/O is already successfully done */
135 1.1 thorpej };
136 1.1 thorpej
137 1.36 bsh #define CBUF_GET() pool_cache_get(sc->sc_cbufpool, PR_NOWAIT);
138 1.36 bsh #define CBUF_PUT(cbp) pool_cache_put(sc->sc_cbufpool, (cbp))
139 1.1 thorpej
140 1.1 thorpej static int
141 1.27 xtraeme ld_ataraid_match(device_t parent, cfdata_t match, void *aux)
142 1.1 thorpej {
143 1.1 thorpej
144 1.1 thorpej return (1);
145 1.1 thorpej }
146 1.1 thorpej
147 1.1 thorpej static void
148 1.27 xtraeme ld_ataraid_attach(device_t parent, device_t self, void *aux)
149 1.1 thorpej {
150 1.27 xtraeme struct ld_ataraid_softc *sc = device_private(self);
151 1.1 thorpej struct ld_softc *ld = &sc->sc_ld;
152 1.1 thorpej struct ataraid_array_info *aai = aux;
153 1.32 tron struct ataraid_disk_info *adi = NULL;
154 1.1 thorpej const char *level;
155 1.1 thorpej struct vnode *vp;
156 1.1 thorpej char unklev[32];
157 1.1 thorpej u_int i;
158 1.1 thorpej
159 1.29 tron ld->sc_dv = self;
160 1.29 tron
161 1.36 bsh sc->sc_cbufpool = pool_cache_init(sizeof(struct cbuf), 0,
162 1.36 bsh 0, 0, "ldcbuf", NULL, IPL_BIO, cbufpool_ctor, cbufpool_dtor, sc);
163 1.36 bsh sc->sc_sih_cookie = softint_establish(SOFTINT_BIO,
164 1.36 bsh ld_ataraid_start_vstrategy, sc);
165 1.1 thorpej
166 1.1 thorpej sc->sc_aai = aai; /* this data persists */
167 1.1 thorpej
168 1.1 thorpej ld->sc_maxxfer = MAXPHYS * aai->aai_width; /* XXX */
169 1.1 thorpej ld->sc_secperunit = aai->aai_capacity;
170 1.1 thorpej ld->sc_secsize = 512; /* XXX */
171 1.1 thorpej ld->sc_maxqueuecnt = 128; /* XXX */
172 1.1 thorpej ld->sc_dump = ld_ataraid_dump;
173 1.1 thorpej
174 1.1 thorpej switch (aai->aai_level) {
175 1.1 thorpej case AAI_L_SPAN:
176 1.1 thorpej level = "SPAN";
177 1.1 thorpej ld->sc_start = ld_ataraid_start_span;
178 1.1 thorpej sc->sc_iodone = ld_ataraid_iodone_raid0;
179 1.1 thorpej break;
180 1.1 thorpej
181 1.1 thorpej case AAI_L_RAID0:
182 1.9 thorpej level = "RAID-0";
183 1.1 thorpej ld->sc_start = ld_ataraid_start_raid0;
184 1.1 thorpej sc->sc_iodone = ld_ataraid_iodone_raid0;
185 1.1 thorpej break;
186 1.1 thorpej
187 1.1 thorpej case AAI_L_RAID1:
188 1.9 thorpej level = "RAID-1";
189 1.12 enami ld->sc_start = ld_ataraid_start_raid0;
190 1.12 enami sc->sc_iodone = ld_ataraid_iodone_raid0;
191 1.1 thorpej break;
192 1.1 thorpej
193 1.1 thorpej case AAI_L_RAID0 | AAI_L_RAID1:
194 1.9 thorpej level = "RAID-10";
195 1.12 enami ld->sc_start = ld_ataraid_start_raid0;
196 1.12 enami sc->sc_iodone = ld_ataraid_iodone_raid0;
197 1.1 thorpej break;
198 1.1 thorpej
199 1.1 thorpej default:
200 1.11 itojun snprintf(unklev, sizeof(unklev), "<unknown level 0x%x>",
201 1.11 itojun aai->aai_level);
202 1.1 thorpej level = unklev;
203 1.1 thorpej }
204 1.1 thorpej
205 1.1 thorpej aprint_naive(": ATA %s array\n", level);
206 1.1 thorpej aprint_normal(": %s ATA %s array\n",
207 1.1 thorpej ata_raid_type_name(aai->aai_type), level);
208 1.1 thorpej
209 1.1 thorpej if (ld->sc_start == NULL) {
210 1.29 tron aprint_error_dev(ld->sc_dv, "unsupported array type\n");
211 1.1 thorpej return;
212 1.1 thorpej }
213 1.1 thorpej
214 1.1 thorpej /*
215 1.1 thorpej * We get a geometry from the device; use it.
216 1.1 thorpej */
217 1.1 thorpej ld->sc_nheads = aai->aai_heads;
218 1.1 thorpej ld->sc_nsectors = aai->aai_sectors;
219 1.1 thorpej ld->sc_ncylinders = aai->aai_cylinders;
220 1.1 thorpej
221 1.1 thorpej /*
222 1.1 thorpej * Configure all the component disks.
223 1.1 thorpej */
224 1.1 thorpej for (i = 0; i < aai->aai_ndisks; i++) {
225 1.32 tron adi = &aai->aai_disks[i];
226 1.32 tron vp = ata_raid_disk_vnode_find(adi);
227 1.32 tron if (vp == NULL) {
228 1.1 thorpej /*
229 1.1 thorpej * XXX This is bogus. We should just mark the
230 1.1 thorpej * XXX component as FAILED, and write-back new
231 1.1 thorpej * XXX config blocks.
232 1.1 thorpej */
233 1.3 thorpej break;
234 1.1 thorpej }
235 1.1 thorpej sc->sc_vnodes[i] = vp;
236 1.1 thorpej }
237 1.3 thorpej if (i == aai->aai_ndisks) {
238 1.3 thorpej ld->sc_flags = LDF_ENABLED;
239 1.3 thorpej goto finish;
240 1.3 thorpej }
241 1.1 thorpej
242 1.1 thorpej for (i = 0; i < aai->aai_ndisks; i++) {
243 1.1 thorpej vp = sc->sc_vnodes[i];
244 1.1 thorpej sc->sc_vnodes[i] = NULL;
245 1.3 thorpej if (vp != NULL)
246 1.25 ad (void) vn_close(vp, FREAD|FWRITE, NOCRED);
247 1.1 thorpej }
248 1.3 thorpej
249 1.3 thorpej finish:
250 1.30 tron #if NBIO > 0
251 1.30 tron if (bio_register(self, ld_ataraid_bioctl) != 0)
252 1.30 tron panic("%s: bioctl registration failed\n",
253 1.30 tron device_xname(ld->sc_dv));
254 1.30 tron #endif
255 1.36 bsh SIMPLEQ_INIT(&sc->sc_cbufq);
256 1.3 thorpej ldattach(ld);
257 1.1 thorpej }
258 1.1 thorpej
259 1.36 bsh static int
260 1.36 bsh cbufpool_ctor(void *arg, void *obj, int flags)
261 1.36 bsh {
262 1.36 bsh struct ld_ataraid_softc *sc = arg;
263 1.36 bsh struct ld_softc *ld = &sc->sc_ld;
264 1.36 bsh struct cbuf *cbp = obj;
265 1.36 bsh
266 1.36 bsh /* We release/reacquire the spinlock before calling buf_init() */
267 1.36 bsh mutex_exit(&ld->sc_mutex);
268 1.36 bsh buf_init(&cbp->cb_buf);
269 1.36 bsh mutex_enter(&ld->sc_mutex);
270 1.36 bsh
271 1.36 bsh return 0;
272 1.36 bsh }
273 1.36 bsh
274 1.36 bsh static void
275 1.36 bsh cbufpool_dtor(void *arg, void *obj)
276 1.36 bsh {
277 1.36 bsh struct cbuf *cbp = obj;
278 1.36 bsh
279 1.36 bsh buf_destroy(&cbp->cb_buf);
280 1.36 bsh }
281 1.36 bsh
282 1.1 thorpej static struct cbuf *
283 1.1 thorpej ld_ataraid_make_cbuf(struct ld_ataraid_softc *sc, struct buf *bp,
284 1.19 christos u_int comp, daddr_t bn, void *addr, long bcount)
285 1.1 thorpej {
286 1.1 thorpej struct cbuf *cbp;
287 1.1 thorpej
288 1.1 thorpej cbp = CBUF_GET();
289 1.1 thorpej if (cbp == NULL)
290 1.36 bsh return NULL;
291 1.23 ad cbp->cb_buf.b_flags = bp->b_flags;
292 1.23 ad cbp->cb_buf.b_oflags = bp->b_oflags;
293 1.23 ad cbp->cb_buf.b_cflags = bp->b_cflags;
294 1.1 thorpej cbp->cb_buf.b_iodone = sc->sc_iodone;
295 1.1 thorpej cbp->cb_buf.b_proc = bp->b_proc;
296 1.1 thorpej cbp->cb_buf.b_vp = sc->sc_vnodes[comp];
297 1.24 ad cbp->cb_buf.b_objlock = &sc->sc_vnodes[comp]->v_interlock;
298 1.1 thorpej cbp->cb_buf.b_blkno = bn + sc->sc_aai->aai_offset;
299 1.1 thorpej cbp->cb_buf.b_data = addr;
300 1.1 thorpej cbp->cb_buf.b_bcount = bcount;
301 1.1 thorpej
302 1.1 thorpej /* Context for iodone */
303 1.1 thorpej cbp->cb_obp = bp;
304 1.1 thorpej cbp->cb_sc = sc;
305 1.1 thorpej cbp->cb_comp = comp;
306 1.12 enami cbp->cb_other = NULL;
307 1.12 enami cbp->cb_flags = 0;
308 1.1 thorpej
309 1.36 bsh return cbp;
310 1.36 bsh }
311 1.36 bsh
312 1.36 bsh static void
313 1.36 bsh ld_ataraid_start_vstrategy(void *arg)
314 1.36 bsh {
315 1.36 bsh struct ld_ataraid_softc *sc = arg;
316 1.36 bsh struct cbuf *cbp;
317 1.36 bsh
318 1.36 bsh while ((cbp = SIMPLEQ_FIRST(&sc->sc_cbufq)) != NULL) {
319 1.36 bsh SIMPLEQ_REMOVE_HEAD(&sc->sc_cbufq, cb_q);
320 1.36 bsh if ((cbp->cb_buf.b_flags & B_READ) == 0) {
321 1.36 bsh mutex_enter(&cbp->cb_buf.b_vp->v_interlock);
322 1.36 bsh cbp->cb_buf.b_vp->v_numoutput++;
323 1.36 bsh mutex_exit(&cbp->cb_buf.b_vp->v_interlock);
324 1.36 bsh }
325 1.36 bsh VOP_STRATEGY(cbp->cb_buf.b_vp, &cbp->cb_buf);
326 1.36 bsh }
327 1.1 thorpej }
328 1.1 thorpej
329 1.1 thorpej static int
330 1.1 thorpej ld_ataraid_start_span(struct ld_softc *ld, struct buf *bp)
331 1.1 thorpej {
332 1.1 thorpej struct ld_ataraid_softc *sc = (void *) ld;
333 1.1 thorpej struct ataraid_array_info *aai = sc->sc_aai;
334 1.1 thorpej struct ataraid_disk_info *adi;
335 1.1 thorpej struct cbuf *cbp;
336 1.19 christos char *addr;
337 1.1 thorpej daddr_t bn;
338 1.1 thorpej long bcount, rcount;
339 1.1 thorpej u_int comp;
340 1.1 thorpej
341 1.1 thorpej /* Allocate component buffers. */
342 1.1 thorpej addr = bp->b_data;
343 1.1 thorpej
344 1.1 thorpej /* Find the first component. */
345 1.1 thorpej comp = 0;
346 1.1 thorpej adi = &aai->aai_disks[comp];
347 1.1 thorpej bn = bp->b_rawblkno;
348 1.1 thorpej while (bn >= adi->adi_compsize) {
349 1.1 thorpej bn -= adi->adi_compsize;
350 1.1 thorpej adi = &aai->aai_disks[++comp];
351 1.1 thorpej }
352 1.1 thorpej
353 1.1 thorpej bp->b_resid = bp->b_bcount;
354 1.1 thorpej
355 1.1 thorpej for (bcount = bp->b_bcount; bcount > 0; bcount -= rcount) {
356 1.1 thorpej rcount = bp->b_bcount;
357 1.1 thorpej if ((adi->adi_compsize - bn) < btodb(rcount))
358 1.1 thorpej rcount = dbtob(adi->adi_compsize - bn);
359 1.1 thorpej
360 1.1 thorpej cbp = ld_ataraid_make_cbuf(sc, bp, comp, bn, addr, rcount);
361 1.1 thorpej if (cbp == NULL) {
362 1.1 thorpej /* Free the already allocated component buffers. */
363 1.36 bsh while ((cbp = SIMPLEQ_FIRST(&sc->sc_cbufq)) != NULL) {
364 1.36 bsh SIMPLEQ_REMOVE_HEAD(&sc->sc_cbufq, cb_q);
365 1.1 thorpej CBUF_PUT(cbp);
366 1.1 thorpej }
367 1.36 bsh return EAGAIN;
368 1.1 thorpej }
369 1.1 thorpej
370 1.1 thorpej /*
371 1.1 thorpej * For a span, we always know we advance to the next disk,
372 1.1 thorpej * and always start at offset 0 on that disk.
373 1.1 thorpej */
374 1.1 thorpej adi = &aai->aai_disks[++comp];
375 1.1 thorpej bn = 0;
376 1.1 thorpej
377 1.36 bsh SIMPLEQ_INSERT_TAIL(&sc->sc_cbufq, cbp, cb_q);
378 1.1 thorpej addr += rcount;
379 1.1 thorpej }
380 1.1 thorpej
381 1.1 thorpej /* Now fire off the requests. */
382 1.36 bsh softint_schedule(sc->sc_sih_cookie);
383 1.1 thorpej
384 1.36 bsh return 0;
385 1.1 thorpej }
386 1.1 thorpej
387 1.1 thorpej static int
388 1.1 thorpej ld_ataraid_start_raid0(struct ld_softc *ld, struct buf *bp)
389 1.1 thorpej {
390 1.36 bsh struct ld_ataraid_softc *sc = (void *)ld;
391 1.1 thorpej struct ataraid_array_info *aai = sc->sc_aai;
392 1.12 enami struct ataraid_disk_info *adi;
393 1.12 enami struct cbuf *cbp, *other_cbp;
394 1.19 christos char *addr;
395 1.1 thorpej daddr_t bn, cbn, tbn, off;
396 1.1 thorpej long bcount, rcount;
397 1.1 thorpej u_int comp;
398 1.12 enami const int read = bp->b_flags & B_READ;
399 1.12 enami const int mirror = aai->aai_level & AAI_L_RAID1;
400 1.36 bsh int error = 0;
401 1.1 thorpej
402 1.1 thorpej /* Allocate component buffers. */
403 1.1 thorpej addr = bp->b_data;
404 1.1 thorpej bn = bp->b_rawblkno;
405 1.1 thorpej
406 1.1 thorpej bp->b_resid = bp->b_bcount;
407 1.1 thorpej
408 1.1 thorpej for (bcount = bp->b_bcount; bcount > 0; bcount -= rcount) {
409 1.1 thorpej tbn = bn / aai->aai_interleave;
410 1.1 thorpej off = bn % aai->aai_interleave;
411 1.1 thorpej
412 1.1 thorpej if (__predict_false(tbn == aai->aai_capacity /
413 1.1 thorpej aai->aai_interleave)) {
414 1.1 thorpej /* Last stripe. */
415 1.1 thorpej daddr_t sz = (aai->aai_capacity -
416 1.1 thorpej (tbn * aai->aai_interleave)) /
417 1.1 thorpej aai->aai_width;
418 1.1 thorpej comp = off / sz;
419 1.1 thorpej cbn = ((tbn / aai->aai_width) * aai->aai_interleave) +
420 1.1 thorpej (off % sz);
421 1.1 thorpej rcount = min(bcount, dbtob(sz));
422 1.1 thorpej } else {
423 1.1 thorpej comp = tbn % aai->aai_width;
424 1.1 thorpej cbn = ((tbn / aai->aai_width) * aai->aai_interleave) +
425 1.1 thorpej off;
426 1.1 thorpej rcount = min(bcount, dbtob(aai->aai_interleave - off));
427 1.1 thorpej }
428 1.1 thorpej
429 1.12 enami /*
430 1.12 enami * See if a component is valid.
431 1.12 enami */
432 1.12 enami try_mirror:
433 1.12 enami adi = &aai->aai_disks[comp];
434 1.12 enami if ((adi->adi_status & ADI_S_ONLINE) == 0) {
435 1.12 enami if (mirror && comp < aai->aai_width) {
436 1.12 enami comp += aai->aai_width;
437 1.12 enami goto try_mirror;
438 1.12 enami }
439 1.12 enami
440 1.12 enami /*
441 1.12 enami * No component available.
442 1.12 enami */
443 1.12 enami error = EIO;
444 1.12 enami goto free_and_exit;
445 1.12 enami }
446 1.12 enami
447 1.1 thorpej cbp = ld_ataraid_make_cbuf(sc, bp, comp, cbn, addr, rcount);
448 1.1 thorpej if (cbp == NULL) {
449 1.12 enami resource_shortage:
450 1.12 enami error = EAGAIN;
451 1.12 enami free_and_exit:
452 1.1 thorpej /* Free the already allocated component buffers. */
453 1.36 bsh while ((cbp = SIMPLEQ_FIRST(&sc->sc_cbufq)) != NULL) {
454 1.36 bsh SIMPLEQ_REMOVE_HEAD(&sc->sc_cbufq, cb_q);
455 1.1 thorpej CBUF_PUT(cbp);
456 1.1 thorpej }
457 1.36 bsh return error;
458 1.1 thorpej }
459 1.36 bsh SIMPLEQ_INSERT_TAIL(&sc->sc_cbufq, cbp, cb_q);
460 1.12 enami if (mirror && !read && comp < aai->aai_width) {
461 1.12 enami comp += aai->aai_width;
462 1.12 enami adi = &aai->aai_disks[comp];
463 1.12 enami if (adi->adi_status & ADI_S_ONLINE) {
464 1.12 enami other_cbp = ld_ataraid_make_cbuf(sc, bp,
465 1.12 enami comp, cbn, addr, rcount);
466 1.12 enami if (other_cbp == NULL)
467 1.12 enami goto resource_shortage;
468 1.36 bsh SIMPLEQ_INSERT_TAIL(&sc->sc_cbufq,
469 1.36 bsh other_cbp, cb_q);
470 1.12 enami other_cbp->cb_other = cbp;
471 1.12 enami cbp->cb_other = other_cbp;
472 1.12 enami }
473 1.12 enami }
474 1.1 thorpej bn += btodb(rcount);
475 1.1 thorpej addr += rcount;
476 1.1 thorpej }
477 1.1 thorpej
478 1.1 thorpej /* Now fire off the requests. */
479 1.36 bsh softint_schedule(sc->sc_sih_cookie);
480 1.1 thorpej
481 1.36 bsh return error;
482 1.1 thorpej }
483 1.1 thorpej
484 1.1 thorpej /*
485 1.1 thorpej * Called at interrupt time. Mark the component as done and if all
486 1.1 thorpej * components are done, take an "interrupt".
487 1.1 thorpej */
488 1.1 thorpej static void
489 1.1 thorpej ld_ataraid_iodone_raid0(struct buf *vbp)
490 1.1 thorpej {
491 1.12 enami struct cbuf *cbp = (struct cbuf *) vbp, *other_cbp;
492 1.1 thorpej struct buf *bp = cbp->cb_obp;
493 1.1 thorpej struct ld_ataraid_softc *sc = cbp->cb_sc;
494 1.12 enami struct ataraid_array_info *aai = sc->sc_aai;
495 1.12 enami struct ataraid_disk_info *adi;
496 1.1 thorpej long count;
497 1.12 enami int s, iodone;
498 1.1 thorpej
499 1.1 thorpej s = splbio();
500 1.1 thorpej
501 1.12 enami iodone = cbp->cb_flags & CBUF_IODONE;
502 1.12 enami other_cbp = cbp->cb_other;
503 1.12 enami if (other_cbp != NULL)
504 1.12 enami /* You are alone */
505 1.12 enami other_cbp->cb_other = NULL;
506 1.12 enami
507 1.21 ad if (cbp->cb_buf.b_error != 0) {
508 1.12 enami /*
509 1.12 enami * Mark this component broken.
510 1.12 enami */
511 1.12 enami adi = &aai->aai_disks[cbp->cb_comp];
512 1.12 enami adi->adi_status &= ~ADI_S_ONLINE;
513 1.12 enami
514 1.12 enami printf("%s: error %d on component %d (%s)\n",
515 1.29 tron device_xname(sc->sc_ld.sc_dv), bp->b_error, cbp->cb_comp,
516 1.26 cegger device_xname(adi->adi_dev));
517 1.12 enami
518 1.12 enami /*
519 1.12 enami * If we didn't see an error yet and we are reading
520 1.12 enami * RAID1 disk, try another component.
521 1.12 enami */
522 1.21 ad if (bp->b_error == 0 &&
523 1.12 enami (cbp->cb_buf.b_flags & B_READ) != 0 &&
524 1.12 enami (aai->aai_level & AAI_L_RAID1) != 0 &&
525 1.12 enami cbp->cb_comp < aai->aai_width) {
526 1.12 enami cbp->cb_comp += aai->aai_width;
527 1.12 enami adi = &aai->aai_disks[cbp->cb_comp];
528 1.12 enami if (adi->adi_status & ADI_S_ONLINE) {
529 1.21 ad cbp->cb_buf.b_error = 0;
530 1.12 enami VOP_STRATEGY(cbp->cb_buf.b_vp, &cbp->cb_buf);
531 1.12 enami goto out;
532 1.12 enami }
533 1.12 enami }
534 1.12 enami
535 1.12 enami if (iodone || other_cbp != NULL)
536 1.12 enami /*
537 1.12 enami * If I/O on other component successfully done
538 1.12 enami * or the I/O is still in progress, no need
539 1.12 enami * to tell an error to upper layer.
540 1.12 enami */
541 1.12 enami ;
542 1.12 enami else {
543 1.12 enami bp->b_error = cbp->cb_buf.b_error ?
544 1.12 enami cbp->cb_buf.b_error : EIO;
545 1.12 enami }
546 1.1 thorpej
547 1.1 thorpej /* XXX Update component config blocks. */
548 1.1 thorpej
549 1.12 enami } else {
550 1.12 enami /*
551 1.12 enami * If other I/O is still in progress, tell it that
552 1.12 enami * our I/O is successfully done.
553 1.12 enami */
554 1.12 enami if (other_cbp != NULL)
555 1.12 enami other_cbp->cb_flags |= CBUF_IODONE;
556 1.1 thorpej }
557 1.1 thorpej count = cbp->cb_buf.b_bcount;
558 1.1 thorpej CBUF_PUT(cbp);
559 1.1 thorpej
560 1.12 enami if (other_cbp != NULL)
561 1.12 enami goto out;
562 1.12 enami
563 1.1 thorpej /* If all done, "interrupt". */
564 1.1 thorpej bp->b_resid -= count;
565 1.1 thorpej if (bp->b_resid < 0)
566 1.1 thorpej panic("ld_ataraid_iodone_raid0: count");
567 1.1 thorpej if (bp->b_resid == 0)
568 1.1 thorpej lddone(&sc->sc_ld, bp);
569 1.12 enami
570 1.12 enami out:
571 1.1 thorpej splx(s);
572 1.1 thorpej }
573 1.1 thorpej
574 1.1 thorpej static int
575 1.18 christos ld_ataraid_dump(struct ld_softc *sc, void *data,
576 1.18 christos int blkno, int blkcnt)
577 1.1 thorpej {
578 1.1 thorpej
579 1.1 thorpej return (EIO);
580 1.1 thorpej }
581 1.30 tron
582 1.30 tron #if NBIO > 0
583 1.30 tron static int
584 1.30 tron ld_ataraid_bioctl(device_t self, u_long cmd, void *addr)
585 1.30 tron {
586 1.30 tron struct ld_ataraid_softc *sc = device_private(self);
587 1.30 tron int error = 0;
588 1.30 tron
589 1.30 tron switch (cmd) {
590 1.30 tron case BIOCINQ:
591 1.30 tron error = ld_ataraid_bioinq(sc, (struct bioc_inq *)addr);
592 1.30 tron break;
593 1.30 tron case BIOCVOL:
594 1.30 tron error = ld_ataraid_biovol(sc, (struct bioc_vol *)addr);
595 1.30 tron break;
596 1.30 tron case BIOCDISK:
597 1.30 tron error = ld_ataraid_biodisk(sc, (struct bioc_disk *)addr);
598 1.30 tron break;
599 1.30 tron default:
600 1.30 tron error = ENOTTY;
601 1.30 tron break;
602 1.30 tron }
603 1.30 tron
604 1.30 tron return error;
605 1.30 tron }
606 1.30 tron
607 1.30 tron static int
608 1.30 tron ld_ataraid_bioinq(struct ld_ataraid_softc *sc, struct bioc_inq *bi)
609 1.30 tron {
610 1.30 tron struct ataraid_array_info *aai = sc->sc_aai;
611 1.30 tron
612 1.30 tron /* there's always one volume per ld device */
613 1.30 tron bi->bi_novol = 1;
614 1.30 tron bi->bi_nodisk = aai->aai_ndisks;
615 1.30 tron
616 1.30 tron return 0;
617 1.30 tron }
618 1.30 tron
619 1.30 tron static int
620 1.30 tron ld_ataraid_biovol(struct ld_ataraid_softc *sc, struct bioc_vol *bv)
621 1.30 tron {
622 1.30 tron struct ataraid_array_info *aai = sc->sc_aai;
623 1.30 tron struct ld_softc *ld = &sc->sc_ld;
624 1.30 tron
625 1.30 tron /* Fill in data for _this_ volume */
626 1.30 tron bv->bv_percent = -1;
627 1.30 tron bv->bv_seconds = 0;
628 1.30 tron
629 1.30 tron switch (aai->aai_status) {
630 1.30 tron case AAI_S_READY:
631 1.30 tron bv->bv_status = BIOC_SVONLINE;
632 1.30 tron break;
633 1.30 tron case AAI_S_DEGRADED:
634 1.30 tron bv->bv_status = BIOC_SVDEGRADED;
635 1.30 tron break;
636 1.30 tron }
637 1.30 tron
638 1.30 tron bv->bv_size = ld->sc_secsize * ld->sc_secperunit;
639 1.30 tron
640 1.30 tron switch (aai->aai_level) {
641 1.30 tron case AAI_L_SPAN:
642 1.30 tron case AAI_L_RAID0:
643 1.30 tron bv->bv_stripe_size = aai->aai_interleave;
644 1.30 tron bv->bv_level = 0;
645 1.30 tron break;
646 1.30 tron case AAI_L_RAID1:
647 1.30 tron bv->bv_stripe_size = 0;
648 1.30 tron bv->bv_level = 1;
649 1.30 tron break;
650 1.30 tron case AAI_L_RAID5:
651 1.30 tron bv->bv_stripe_size = aai->aai_interleave;
652 1.30 tron bv->bv_level = 5;
653 1.30 tron break;
654 1.30 tron }
655 1.30 tron
656 1.30 tron bv->bv_nodisk = aai->aai_ndisks;
657 1.30 tron strlcpy(bv->bv_dev, device_xname(ld->sc_dv), sizeof(bv->bv_dev));
658 1.31 tron if (aai->aai_name[0] != '\0')
659 1.31 tron strlcpy(bv->bv_vendor, aai->aai_name, sizeof(bv->bv_vendor));
660 1.30 tron
661 1.30 tron return 0;
662 1.30 tron }
663 1.30 tron
664 1.30 tron static int
665 1.30 tron ld_ataraid_biodisk(struct ld_ataraid_softc *sc, struct bioc_disk *bd)
666 1.30 tron {
667 1.30 tron struct ataraid_array_info *aai = sc->sc_aai;
668 1.30 tron struct ataraid_disk_info *adi;
669 1.30 tron struct ld_softc *ld = &sc->sc_ld;
670 1.30 tron struct atabus_softc *atabus;
671 1.30 tron struct wd_softc *wd;
672 1.30 tron char model[81], serial[41], rev[17];
673 1.30 tron
674 1.30 tron /* sanity check */
675 1.30 tron if (bd->bd_diskid > aai->aai_ndisks)
676 1.30 tron return EINVAL;
677 1.30 tron
678 1.30 tron adi = &aai->aai_disks[bd->bd_diskid];
679 1.30 tron atabus = device_private(device_parent(adi->adi_dev));
680 1.30 tron wd = device_private(adi->adi_dev);
681 1.30 tron
682 1.30 tron /* fill in data for _this_ disk */
683 1.30 tron switch (adi->adi_status) {
684 1.30 tron case ADI_S_ONLINE | ADI_S_ASSIGNED:
685 1.30 tron bd->bd_status = BIOC_SDONLINE;
686 1.30 tron break;
687 1.30 tron case ADI_S_SPARE:
688 1.30 tron bd->bd_status = BIOC_SDHOTSPARE;
689 1.30 tron break;
690 1.30 tron default:
691 1.30 tron bd->bd_status = BIOC_SDOFFLINE;
692 1.30 tron break;
693 1.30 tron }
694 1.30 tron
695 1.30 tron bd->bd_channel = 0;
696 1.30 tron bd->bd_target = atabus->sc_chan->ch_channel;
697 1.30 tron bd->bd_lun = 0;
698 1.30 tron bd->bd_size = (wd->sc_capacity * ld->sc_secsize) - aai->aai_reserved;
699 1.30 tron
700 1.30 tron strlcpy(bd->bd_procdev, device_xname(adi->adi_dev),
701 1.30 tron sizeof(bd->bd_procdev));
702 1.30 tron
703 1.30 tron scsipi_strvis(serial, sizeof(serial), wd->sc_params.atap_serial,
704 1.30 tron sizeof(wd->sc_params.atap_serial));
705 1.30 tron scsipi_strvis(model, sizeof(model), wd->sc_params.atap_model,
706 1.30 tron sizeof(wd->sc_params.atap_model));
707 1.30 tron scsipi_strvis(rev, sizeof(rev), wd->sc_params.atap_revision,
708 1.30 tron sizeof(wd->sc_params.atap_revision));
709 1.30 tron
710 1.30 tron snprintf(bd->bd_vendor, sizeof(bd->bd_vendor), "%s %s", model, rev);
711 1.30 tron strlcpy(bd->bd_serial, serial, sizeof(bd->bd_serial));
712 1.30 tron
713 1.30 tron return 0;
714 1.30 tron }
715 1.30 tron #endif /* NBIO > 0 */
716