ld_aac.c revision 1.22 1 1.22 sborrill /* $NetBSD: ld_aac.c,v 1.22 2008/10/02 08:21:57 sborrill Exp $ */
2 1.1 ad
3 1.1 ad /*-
4 1.1 ad * Copyright (c) 2002 The NetBSD Foundation, Inc.
5 1.1 ad * All rights reserved.
6 1.1 ad *
7 1.1 ad * This code is derived from software contributed to The NetBSD Foundation
8 1.1 ad * by Andrew Doran.
9 1.1 ad *
10 1.1 ad * Redistribution and use in source and binary forms, with or without
11 1.1 ad * modification, are permitted provided that the following conditions
12 1.1 ad * are met:
13 1.1 ad * 1. Redistributions of source code must retain the above copyright
14 1.1 ad * notice, this list of conditions and the following disclaimer.
15 1.1 ad * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 ad * notice, this list of conditions and the following disclaimer in the
17 1.1 ad * documentation and/or other materials provided with the distribution.
18 1.1 ad *
19 1.1 ad * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
20 1.1 ad * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
21 1.1 ad * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
22 1.1 ad * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
23 1.1 ad * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
24 1.1 ad * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
25 1.1 ad * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26 1.1 ad * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
27 1.1 ad * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
28 1.1 ad * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
29 1.1 ad * POSSIBILITY OF SUCH DAMAGE.
30 1.1 ad */
31 1.1 ad
32 1.1 ad #include <sys/cdefs.h>
33 1.22 sborrill __KERNEL_RCSID(0, "$NetBSD: ld_aac.c,v 1.22 2008/10/02 08:21:57 sborrill Exp $");
34 1.1 ad
35 1.1 ad #include "rnd.h"
36 1.1 ad
37 1.1 ad #include <sys/param.h>
38 1.1 ad #include <sys/systm.h>
39 1.1 ad #include <sys/kernel.h>
40 1.1 ad #include <sys/device.h>
41 1.1 ad #include <sys/buf.h>
42 1.6 yamt #include <sys/bufq.h>
43 1.1 ad #include <sys/endian.h>
44 1.1 ad #include <sys/dkio.h>
45 1.1 ad #include <sys/disk.h>
46 1.1 ad #if NRND > 0
47 1.1 ad #include <sys/rnd.h>
48 1.1 ad #endif
49 1.1 ad
50 1.17 ad #include <sys/bus.h>
51 1.1 ad
52 1.1 ad #include <uvm/uvm_extern.h>
53 1.1 ad
54 1.1 ad #include <dev/ldvar.h>
55 1.1 ad
56 1.1 ad #include <dev/ic/aacreg.h>
57 1.1 ad #include <dev/ic/aacvar.h>
58 1.1 ad
59 1.1 ad struct ld_aac_softc {
60 1.1 ad struct ld_softc sc_ld;
61 1.1 ad int sc_hwunit;
62 1.1 ad };
63 1.1 ad
64 1.21 tron static void ld_aac_attach(device_t, device_t, void *);
65 1.1 ad static void ld_aac_intr(struct aac_ccb *);
66 1.22 sborrill static int ld_aac_dobio(struct ld_aac_softc *, void *, int, daddr_t, int,
67 1.1 ad struct buf *);
68 1.1 ad static int ld_aac_dump(struct ld_softc *, void *, int, int);
69 1.21 tron static int ld_aac_match(device_t, cfdata_t, void *);
70 1.1 ad static int ld_aac_start(struct ld_softc *, struct buf *);
71 1.1 ad
72 1.21 tron CFATTACH_DECL_NEW(ld_aac, sizeof(struct ld_aac_softc),
73 1.5 thorpej ld_aac_match, ld_aac_attach, NULL, NULL);
74 1.1 ad
75 1.1 ad static int
76 1.21 tron ld_aac_match(device_t parent, cfdata_t match, void *aux)
77 1.1 ad {
78 1.1 ad
79 1.1 ad return (1);
80 1.1 ad }
81 1.1 ad
82 1.1 ad static void
83 1.21 tron ld_aac_attach(device_t parent, device_t self, void *aux)
84 1.1 ad {
85 1.21 tron struct aac_attach_args *aaca = aux;
86 1.21 tron struct ld_aac_softc *sc = device_private(self);
87 1.21 tron struct ld_softc *ld = &sc->sc_ld;
88 1.21 tron struct aac_softc *aac = device_private(parent);
89 1.21 tron struct aac_drive *hdr = &aac->sc_hdr[aaca->aaca_unit];
90 1.1 ad
91 1.21 tron ld->sc_dv = self;
92 1.1 ad
93 1.1 ad sc->sc_hwunit = aaca->aaca_unit;
94 1.1 ad ld->sc_flags = LDF_ENABLED;
95 1.15 briggs ld->sc_maxxfer = AAC_MAX_XFER(aac);
96 1.1 ad ld->sc_secperunit = hdr->hd_size;
97 1.1 ad ld->sc_secsize = AAC_SECTOR_SIZE;
98 1.21 tron ld->sc_maxqueuecnt =
99 1.21 tron (aac->sc_max_fibs - AAC_NCCBS_RESERVE) / aac->sc_nunits;
100 1.1 ad ld->sc_start = ld_aac_start;
101 1.1 ad ld->sc_dump = ld_aac_dump;
102 1.1 ad
103 1.8 perry aprint_normal(": %s\n",
104 1.1 ad aac_describe_code(aac_container_types, hdr->hd_devtype));
105 1.1 ad ldattach(ld);
106 1.1 ad }
107 1.1 ad
108 1.1 ad static int
109 1.22 sborrill ld_aac_dobio(struct ld_aac_softc *sc, void *data, int datasize, daddr_t blkno,
110 1.1 ad int dowrite, struct buf *bp)
111 1.1 ad {
112 1.1 ad struct aac_blockread_response *brr;
113 1.1 ad struct aac_blockwrite_response *bwr;
114 1.1 ad struct aac_ccb *ac;
115 1.1 ad struct aac_softc *aac;
116 1.1 ad struct aac_fib *fib;
117 1.1 ad bus_dmamap_t xfer;
118 1.1 ad u_int32_t status;
119 1.1 ad u_int16_t size;
120 1.1 ad int s, rv, i;
121 1.1 ad
122 1.21 tron aac = device_private(device_parent(sc->sc_ld.sc_dv));
123 1.1 ad
124 1.1 ad /*
125 1.1 ad * Allocate a command control block and map the data transfer.
126 1.1 ad */
127 1.1 ad ac = aac_ccb_alloc(aac, (dowrite ? AAC_CCB_DATA_OUT : AAC_CCB_DATA_IN));
128 1.15 briggs if (ac == NULL)
129 1.15 briggs return EBUSY;
130 1.1 ad ac->ac_data = data;
131 1.1 ad ac->ac_datalen = datasize;
132 1.1 ad
133 1.1 ad if ((rv = aac_ccb_map(aac, ac)) != 0) {
134 1.1 ad aac_ccb_free(aac, ac);
135 1.1 ad return (rv);
136 1.1 ad }
137 1.1 ad
138 1.1 ad /*
139 1.1 ad * Build the command.
140 1.1 ad */
141 1.1 ad fib = ac->ac_fib;
142 1.1 ad
143 1.1 ad fib->Header.XferState = htole32(AAC_FIBSTATE_HOSTOWNED |
144 1.1 ad AAC_FIBSTATE_INITIALISED | AAC_FIBSTATE_FROMHOST |
145 1.14 briggs AAC_FIBSTATE_REXPECTED | AAC_FIBSTATE_NORM |
146 1.14 briggs AAC_FIBSTATE_ASYNC | AAC_FIBSTATE_FAST_RESPONSE );
147 1.1 ad
148 1.22 sborrill if (aac->sc_quirks & AAC_QUIRK_RAW_IO) {
149 1.22 sborrill struct aac_raw_io *raw;
150 1.22 sborrill struct aac_sg_entryraw *sge;
151 1.22 sborrill struct aac_sg_tableraw *sgt;
152 1.22 sborrill
153 1.22 sborrill raw = (struct aac_raw_io *)&fib->data[0];
154 1.22 sborrill fib->Header.Command = htole16(RawIo);
155 1.22 sborrill raw->BlockNumber = htole64(blkno);
156 1.22 sborrill raw->ByteCount = htole32(datasize);
157 1.22 sborrill raw->ContainerId = htole16(sc->sc_hwunit);
158 1.22 sborrill raw->BpTotal = 0;
159 1.22 sborrill raw->BpComplete = 0;
160 1.22 sborrill size = sizeof(struct aac_raw_io);
161 1.22 sborrill sgt = &raw->SgMapRaw;
162 1.22 sborrill raw->Flags = (dowrite ? 0 : 1);
163 1.22 sborrill
164 1.22 sborrill xfer = ac->ac_dmamap_xfer;
165 1.22 sborrill sgt->SgCount = xfer->dm_nsegs;
166 1.22 sborrill sge = sgt->SgEntryRaw;
167 1.22 sborrill
168 1.22 sborrill for (i = 0; i < xfer->dm_nsegs; i++, sge++) {
169 1.22 sborrill sge->SgAddress = htole64(xfer->dm_segs[i].ds_addr);
170 1.22 sborrill sge->SgByteCount = htole32(xfer->dm_segs[i].ds_len);
171 1.22 sborrill sge->Next = 0;
172 1.22 sborrill sge->Prev = 0;
173 1.22 sborrill sge->Flags = 0;
174 1.22 sborrill }
175 1.22 sborrill size += xfer->dm_nsegs * sizeof(struct aac_sg_entryraw);
176 1.22 sborrill size = sizeof(fib->Header) + size;
177 1.22 sborrill fib->Header.Size = htole16(size);
178 1.22 sborrill } else if ((aac->sc_quirks & AAC_QUIRK_SG_64BIT) == 0) {
179 1.15 briggs struct aac_blockread *br;
180 1.15 briggs struct aac_blockwrite *bw;
181 1.15 briggs struct aac_sg_entry *sge;
182 1.15 briggs struct aac_sg_table *sgt;
183 1.15 briggs
184 1.15 briggs fib->Header.Command = htole16(ContainerCommand);
185 1.15 briggs if (dowrite) {
186 1.15 briggs bw = (struct aac_blockwrite *)&fib->data[0];
187 1.15 briggs bw->Command = htole32(VM_CtBlockWrite);
188 1.15 briggs bw->ContainerId = htole32(sc->sc_hwunit);
189 1.15 briggs bw->BlockNumber = htole32(blkno);
190 1.15 briggs bw->ByteCount = htole32(datasize);
191 1.15 briggs bw->Stable = htole32(CUNSTABLE);
192 1.15 briggs /* CSTABLE sometimes? FUA? */
193 1.15 briggs
194 1.15 briggs size = sizeof(struct aac_blockwrite);
195 1.15 briggs sgt = &bw->SgMap;
196 1.15 briggs } else {
197 1.15 briggs br = (struct aac_blockread *)&fib->data[0];
198 1.15 briggs br->Command = htole32(VM_CtBlockRead);
199 1.15 briggs br->ContainerId = htole32(sc->sc_hwunit);
200 1.15 briggs br->BlockNumber = htole32(blkno);
201 1.15 briggs br->ByteCount = htole32(datasize);
202 1.1 ad
203 1.15 briggs size = sizeof(struct aac_blockread);
204 1.15 briggs sgt = &br->SgMap;
205 1.15 briggs }
206 1.15 briggs
207 1.15 briggs xfer = ac->ac_dmamap_xfer;
208 1.15 briggs sgt->SgCount = xfer->dm_nsegs;
209 1.15 briggs sge = sgt->SgEntry;
210 1.15 briggs
211 1.15 briggs for (i = 0; i < xfer->dm_nsegs; i++, sge++) {
212 1.15 briggs sge->SgAddress = htole32(xfer->dm_segs[i].ds_addr);
213 1.15 briggs sge->SgByteCount = htole32(xfer->dm_segs[i].ds_len);
214 1.15 briggs AAC_DPRINTF(AAC_D_IO,
215 1.15 briggs ("#%d va %p pa %lx len %lx\n", i, data,
216 1.15 briggs (u_long)xfer->dm_segs[i].ds_addr,
217 1.15 briggs (u_long)xfer->dm_segs[i].ds_len));
218 1.15 briggs }
219 1.15 briggs
220 1.15 briggs size += xfer->dm_nsegs * sizeof(struct aac_sg_entry);
221 1.22 sborrill size = sizeof(fib->Header) + size;
222 1.15 briggs fib->Header.Size = htole16(size);
223 1.1 ad } else {
224 1.15 briggs struct aac_blockread64 *br;
225 1.15 briggs struct aac_blockwrite64 *bw;
226 1.15 briggs struct aac_sg_entry64 *sge;
227 1.15 briggs struct aac_sg_table64 *sgt;
228 1.15 briggs
229 1.15 briggs fib->Header.Command = htole16(ContainerCommand64);
230 1.15 briggs if (dowrite) {
231 1.15 briggs bw = (struct aac_blockwrite64 *)&fib->data[0];
232 1.15 briggs bw->Command = htole32(VM_CtHostWrite64);
233 1.15 briggs bw->BlockNumber = htole32(blkno);
234 1.15 briggs bw->ContainerId = htole16(sc->sc_hwunit);
235 1.15 briggs bw->SectorCount = htole16(datasize / AAC_BLOCK_SIZE);
236 1.15 briggs bw->Pad = 0;
237 1.15 briggs bw->Flags = 0;
238 1.15 briggs
239 1.15 briggs size = sizeof(struct aac_blockwrite64);
240 1.15 briggs sgt = &bw->SgMap64;
241 1.15 briggs } else {
242 1.15 briggs br = (struct aac_blockread64 *)&fib->data[0];
243 1.15 briggs br->Command = htole32(VM_CtHostRead64);
244 1.15 briggs br->BlockNumber = htole32(blkno);
245 1.15 briggs br->ContainerId = htole16(sc->sc_hwunit);
246 1.15 briggs br->SectorCount = htole16(datasize / AAC_BLOCK_SIZE);
247 1.15 briggs br->Pad = 0;
248 1.15 briggs br->Flags = 0;
249 1.1 ad
250 1.15 briggs size = sizeof(struct aac_blockread64);
251 1.15 briggs sgt = &br->SgMap64;
252 1.15 briggs }
253 1.1 ad
254 1.15 briggs xfer = ac->ac_dmamap_xfer;
255 1.15 briggs sgt->SgCount = xfer->dm_nsegs;
256 1.15 briggs sge = sgt->SgEntry64;
257 1.15 briggs
258 1.15 briggs for (i = 0; i < xfer->dm_nsegs; i++, sge++) {
259 1.15 briggs /*
260 1.15 briggs * XXX - This is probably an alignment issue on non-x86
261 1.15 briggs * platforms since this is a packed array of 64/32-bit
262 1.15 briggs * tuples, so every other SgAddress is 32-bit, but not
263 1.15 briggs * 64-bit aligned.
264 1.15 briggs */
265 1.15 briggs sge->SgAddress = htole64(xfer->dm_segs[i].ds_addr);
266 1.15 briggs sge->SgByteCount = htole32(xfer->dm_segs[i].ds_len);
267 1.15 briggs AAC_DPRINTF(AAC_D_IO,
268 1.20 ad ("#%d va %p pa %llx len %lx\n", i, data,
269 1.15 briggs (u_int64_t)xfer->dm_segs[i].ds_addr,
270 1.15 briggs (u_long)xfer->dm_segs[i].ds_len));
271 1.15 briggs }
272 1.15 briggs size += xfer->dm_nsegs * sizeof(struct aac_sg_entry64);
273 1.22 sborrill size = sizeof(fib->Header) + size;
274 1.15 briggs fib->Header.Size = htole16(size);
275 1.1 ad }
276 1.1 ad
277 1.1 ad if (bp == NULL) {
278 1.1 ad /*
279 1.1 ad * Polled commands must not sit on the software queue. Wait
280 1.1 ad * up to 30 seconds for the command to complete.
281 1.1 ad */
282 1.1 ad s = splbio();
283 1.1 ad rv = aac_ccb_poll(aac, ac, 30000);
284 1.1 ad aac_ccb_unmap(aac, ac);
285 1.1 ad aac_ccb_free(aac, ac);
286 1.1 ad splx(s);
287 1.1 ad
288 1.1 ad if (rv == 0) {
289 1.1 ad if (dowrite) {
290 1.1 ad bwr = (struct aac_blockwrite_response *)
291 1.1 ad &ac->ac_fib->data[0];
292 1.1 ad status = le32toh(bwr->Status);
293 1.1 ad } else {
294 1.1 ad brr = (struct aac_blockread_response *)
295 1.1 ad &ac->ac_fib->data[0];
296 1.1 ad status = le32toh(brr->Status);
297 1.1 ad }
298 1.1 ad
299 1.1 ad if (status != ST_OK) {
300 1.21 tron aprint_error_dev(sc->sc_ld.sc_dv,
301 1.21 tron "I/O error: %s\n",
302 1.1 ad aac_describe_code(aac_command_status_table,
303 1.1 ad status));
304 1.1 ad rv = EIO;
305 1.1 ad }
306 1.1 ad }
307 1.1 ad } else {
308 1.1 ad ac->ac_device = (struct device *)sc;
309 1.1 ad ac->ac_context = bp;
310 1.1 ad ac->ac_intr = ld_aac_intr;
311 1.1 ad aac_ccb_enqueue(aac, ac);
312 1.1 ad rv = 0;
313 1.1 ad }
314 1.1 ad
315 1.1 ad return (rv);
316 1.1 ad }
317 1.1 ad
318 1.1 ad static int
319 1.1 ad ld_aac_start(struct ld_softc *ld, struct buf *bp)
320 1.1 ad {
321 1.1 ad
322 1.1 ad return (ld_aac_dobio((struct ld_aac_softc *)ld, bp->b_data,
323 1.1 ad bp->b_bcount, bp->b_rawblkno, (bp->b_flags & B_READ) == 0, bp));
324 1.1 ad }
325 1.1 ad
326 1.1 ad static void
327 1.1 ad ld_aac_intr(struct aac_ccb *ac)
328 1.1 ad {
329 1.1 ad struct aac_blockread_response *brr;
330 1.1 ad struct aac_blockwrite_response *bwr;
331 1.1 ad struct ld_aac_softc *sc;
332 1.1 ad struct aac_softc *aac;
333 1.1 ad struct buf *bp;
334 1.1 ad u_int32_t status;
335 1.1 ad
336 1.1 ad bp = ac->ac_context;
337 1.1 ad sc = (struct ld_aac_softc *)ac->ac_device;
338 1.21 tron aac = device_private(device_parent(sc->sc_ld.sc_dv));
339 1.1 ad
340 1.1 ad if ((bp->b_flags & B_READ) != 0) {
341 1.1 ad brr = (struct aac_blockread_response *)&ac->ac_fib->data[0];
342 1.1 ad status = le32toh(brr->Status);
343 1.1 ad } else {
344 1.1 ad bwr = (struct aac_blockwrite_response *)&ac->ac_fib->data[0];
345 1.1 ad status = le32toh(bwr->Status);
346 1.1 ad }
347 1.1 ad
348 1.1 ad aac_ccb_unmap(aac, ac);
349 1.1 ad aac_ccb_free(aac, ac);
350 1.1 ad
351 1.1 ad if (status != ST_OK) {
352 1.1 ad bp->b_error = EIO;
353 1.1 ad bp->b_resid = bp->b_bcount;
354 1.1 ad
355 1.21 tron aprint_error_dev(sc->sc_ld.sc_dv, "I/O error: %s\n",
356 1.1 ad aac_describe_code(aac_command_status_table, status));
357 1.1 ad } else
358 1.1 ad bp->b_resid = 0;
359 1.1 ad
360 1.1 ad lddone(&sc->sc_ld, bp);
361 1.1 ad }
362 1.1 ad
363 1.1 ad static int
364 1.1 ad ld_aac_dump(struct ld_softc *ld, void *data, int blkno, int blkcnt)
365 1.1 ad {
366 1.1 ad
367 1.1 ad return (ld_aac_dobio((struct ld_aac_softc *)ld, data,
368 1.1 ad blkcnt * ld->sc_secsize, blkno, 1, NULL));
369 1.1 ad }
370