rd.c revision 1.14 1 1.14 thorpej /* $NetBSD: rd.c,v 1.14 1995/11/19 19:07:18 thorpej Exp $ */
2 1.10 cgd
3 1.1 cgd /*
4 1.1 cgd * Copyright (c) 1988 University of Utah.
5 1.8 mycroft * Copyright (c) 1982, 1990, 1993
6 1.8 mycroft * The Regents of the University of California. All rights reserved.
7 1.1 cgd *
8 1.1 cgd * This code is derived from software contributed to Berkeley by
9 1.1 cgd * the Systems Programming Group of the University of Utah Computer
10 1.1 cgd * Science Department.
11 1.1 cgd *
12 1.1 cgd * Redistribution and use in source and binary forms, with or without
13 1.1 cgd * modification, are permitted provided that the following conditions
14 1.1 cgd * are met:
15 1.1 cgd * 1. Redistributions of source code must retain the above copyright
16 1.1 cgd * notice, this list of conditions and the following disclaimer.
17 1.1 cgd * 2. Redistributions in binary form must reproduce the above copyright
18 1.1 cgd * notice, this list of conditions and the following disclaimer in the
19 1.1 cgd * documentation and/or other materials provided with the distribution.
20 1.1 cgd * 3. All advertising materials mentioning features or use of this software
21 1.1 cgd * must display the following acknowledgement:
22 1.1 cgd * This product includes software developed by the University of
23 1.1 cgd * California, Berkeley and its contributors.
24 1.1 cgd * 4. Neither the name of the University nor the names of its contributors
25 1.1 cgd * may be used to endorse or promote products derived from this software
26 1.1 cgd * without specific prior written permission.
27 1.1 cgd *
28 1.1 cgd * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
29 1.1 cgd * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
30 1.1 cgd * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
31 1.1 cgd * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
32 1.1 cgd * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
33 1.1 cgd * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
34 1.1 cgd * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
35 1.1 cgd * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
36 1.1 cgd * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
37 1.1 cgd * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
38 1.1 cgd * SUCH DAMAGE.
39 1.1 cgd *
40 1.8 mycroft * from: Utah $Hdr: rd.c 1.44 92/12/26$
41 1.8 mycroft *
42 1.10 cgd * @(#)rd.c 8.2 (Berkeley) 5/19/94
43 1.1 cgd */
44 1.1 cgd
45 1.1 cgd /*
46 1.1 cgd * CS80/SS80 disk driver
47 1.1 cgd */
48 1.1 cgd #include "rd.h"
49 1.1 cgd #if NRD > 0
50 1.1 cgd
51 1.5 mycroft #include <sys/param.h>
52 1.5 mycroft #include <sys/systm.h>
53 1.5 mycroft #include <sys/buf.h>
54 1.5 mycroft #include <sys/stat.h>
55 1.5 mycroft #include <sys/dkstat.h>
56 1.5 mycroft #include <sys/disklabel.h>
57 1.8 mycroft #include <sys/ioctl.h>
58 1.8 mycroft #include <sys/fcntl.h>
59 1.1 cgd
60 1.5 mycroft #include <hp300/dev/device.h>
61 1.5 mycroft #include <hp300/dev/rdreg.h>
62 1.8 mycroft #include <hp300/dev/rdvar.h>
63 1.8 mycroft #ifdef USELEDS
64 1.8 mycroft #include <hp300/hp300/led.h>
65 1.8 mycroft #endif
66 1.1 cgd
67 1.8 mycroft #include <vm/vm_param.h>
68 1.8 mycroft #include <vm/lock.h>
69 1.8 mycroft #include <vm/vm_prot.h>
70 1.8 mycroft #include <vm/pmap.h>
71 1.1 cgd
72 1.1 cgd int rdinit(), rdstart(), rdgo(), rdintr();
73 1.8 mycroft void rdstrategy();
74 1.1 cgd struct driver rddriver = {
75 1.1 cgd rdinit, "rd", rdstart, rdgo, rdintr,
76 1.1 cgd };
77 1.1 cgd
78 1.8 mycroft struct rd_softc rd_softc[NRD];
79 1.8 mycroft struct buf rdtab[NRD];
80 1.8 mycroft int rderrthresh = RDRETRY-1; /* when to start reporting errors */
81 1.1 cgd
82 1.1 cgd #ifdef DEBUG
83 1.1 cgd /* error message tables */
84 1.1 cgd char *err_reject[] = {
85 1.1 cgd 0, 0,
86 1.1 cgd "channel parity error", /* 0x2000 */
87 1.1 cgd 0, 0,
88 1.1 cgd "illegal opcode", /* 0x0400 */
89 1.1 cgd "module addressing", /* 0x0200 */
90 1.1 cgd "address bounds", /* 0x0100 */
91 1.1 cgd "parameter bounds", /* 0x0080 */
92 1.1 cgd "illegal parameter", /* 0x0040 */
93 1.1 cgd "message sequence", /* 0x0020 */
94 1.1 cgd 0,
95 1.1 cgd "message length", /* 0x0008 */
96 1.1 cgd 0, 0, 0
97 1.1 cgd };
98 1.1 cgd
99 1.1 cgd char *err_fault[] = {
100 1.1 cgd 0,
101 1.1 cgd "cross unit", /* 0x4000 */
102 1.1 cgd 0,
103 1.1 cgd "controller fault", /* 0x1000 */
104 1.1 cgd 0, 0,
105 1.1 cgd "unit fault", /* 0x0200 */
106 1.1 cgd 0,
107 1.1 cgd "diagnostic result", /* 0x0080 */
108 1.1 cgd 0,
109 1.1 cgd "operator release request", /* 0x0020 */
110 1.1 cgd "diagnostic release request", /* 0x0010 */
111 1.1 cgd "internal maintenance release request", /* 0x0008 */
112 1.1 cgd 0,
113 1.1 cgd "power fail", /* 0x0002 */
114 1.1 cgd "retransmit" /* 0x0001 */
115 1.1 cgd };
116 1.1 cgd
117 1.1 cgd char *err_access[] = {
118 1.1 cgd "illegal parallel operation", /* 0x8000 */
119 1.1 cgd "uninitialized media", /* 0x4000 */
120 1.1 cgd "no spares available", /* 0x2000 */
121 1.1 cgd "not ready", /* 0x1000 */
122 1.1 cgd "write protect", /* 0x0800 */
123 1.1 cgd "no data found", /* 0x0400 */
124 1.1 cgd 0, 0,
125 1.1 cgd "unrecoverable data overflow", /* 0x0080 */
126 1.1 cgd "unrecoverable data", /* 0x0040 */
127 1.1 cgd 0,
128 1.1 cgd "end of file", /* 0x0010 */
129 1.1 cgd "end of volume", /* 0x0008 */
130 1.1 cgd 0, 0, 0
131 1.1 cgd };
132 1.1 cgd
133 1.1 cgd char *err_info[] = {
134 1.1 cgd "operator release request", /* 0x8000 */
135 1.1 cgd "diagnostic release request", /* 0x4000 */
136 1.1 cgd "internal maintenance release request", /* 0x2000 */
137 1.1 cgd "media wear", /* 0x1000 */
138 1.1 cgd "latency induced", /* 0x0800 */
139 1.1 cgd 0, 0,
140 1.1 cgd "auto sparing invoked", /* 0x0100 */
141 1.1 cgd 0,
142 1.1 cgd "recoverable data overflow", /* 0x0040 */
143 1.1 cgd "marginal data", /* 0x0020 */
144 1.1 cgd "recoverable data", /* 0x0010 */
145 1.1 cgd 0,
146 1.1 cgd "maintenance track overflow", /* 0x0004 */
147 1.1 cgd 0, 0
148 1.1 cgd };
149 1.8 mycroft
150 1.8 mycroft struct rdstats rdstats[NRD];
151 1.8 mycroft int rddebug = 0x80;
152 1.8 mycroft #define RDB_FOLLOW 0x01
153 1.8 mycroft #define RDB_STATUS 0x02
154 1.8 mycroft #define RDB_IDENT 0x04
155 1.8 mycroft #define RDB_IO 0x08
156 1.8 mycroft #define RDB_ASYNC 0x10
157 1.8 mycroft #define RDB_ERROR 0x80
158 1.1 cgd #endif
159 1.1 cgd
160 1.1 cgd /*
161 1.8 mycroft * Misc. HW description, indexed by sc_type.
162 1.8 mycroft * Nothing really critical here, could do without it.
163 1.1 cgd */
164 1.8 mycroft struct rdidentinfo rdidentinfo[] = {
165 1.14 thorpej { RD7946AID, 0, "7945A", NRD7945ABPT,
166 1.14 thorpej NRD7945ATRK, 968, 108416 },
167 1.14 thorpej
168 1.14 thorpej { RD9134DID, 1, "9134D", NRD9134DBPT,
169 1.14 thorpej NRD9134DTRK, 303, 29088 },
170 1.14 thorpej
171 1.14 thorpej { RD9134LID, 1, "9122S", NRD9122SBPT,
172 1.14 thorpej NRD9122STRK, 77, 1232 },
173 1.14 thorpej
174 1.14 thorpej { RD7912PID, 0, "7912P", NRD7912PBPT,
175 1.14 thorpej NRD7912PTRK, 572, 128128 },
176 1.14 thorpej
177 1.14 thorpej { RD7914PID, 0, "7914P", NRD7914PBPT,
178 1.14 thorpej NRD7914PTRK, 1152, 258048 },
179 1.14 thorpej
180 1.14 thorpej { RD7958AID, 0, "7958A", NRD7958ABPT,
181 1.14 thorpej NRD7958ATRK, 1013, 255276 },
182 1.14 thorpej
183 1.14 thorpej { RD7957AID, 0, "7957A", NRD7957ABPT,
184 1.14 thorpej NRD7957ATRK, 1036, 159544 },
185 1.14 thorpej
186 1.14 thorpej { RD7933HID, 0, "7933H", NRD7933HBPT,
187 1.14 thorpej NRD7933HTRK, 1321, 789958 },
188 1.14 thorpej
189 1.14 thorpej { RD9134LID, 1, "9134L", NRD9134LBPT,
190 1.14 thorpej NRD9134LTRK, 973, 77840 },
191 1.14 thorpej
192 1.14 thorpej { RD7936HID, 0, "7936H", NRD7936HBPT,
193 1.14 thorpej NRD7936HTRK, 698, 600978 },
194 1.14 thorpej
195 1.14 thorpej { RD7937HID, 0, "7937H", NRD7937HBPT,
196 1.14 thorpej NRD7937HTRK, 698, 1116102 },
197 1.14 thorpej
198 1.14 thorpej { RD7914CTID, 0, "7914CT", NRD7914PBPT,
199 1.14 thorpej NRD7914PTRK, 1152, 258048 },
200 1.14 thorpej
201 1.14 thorpej { RD7946AID, 0, "7946A", NRD7945ABPT,
202 1.14 thorpej NRD7945ATRK, 968, 108416 },
203 1.14 thorpej
204 1.14 thorpej { RD9134LID, 1, "9122D", NRD9122SBPT,
205 1.14 thorpej NRD9122STRK, 77, 1232 },
206 1.14 thorpej
207 1.14 thorpej { RD7957BID, 0, "7957B", NRD7957BBPT,
208 1.14 thorpej NRD7957BTRK, 1269, 159894 },
209 1.14 thorpej
210 1.14 thorpej { RD7958BID, 0, "7958B", NRD7958BBPT,
211 1.14 thorpej NRD7958BTRK, 786, 297108 },
212 1.14 thorpej
213 1.14 thorpej { RD7959BID, 0, "7959B", NRD7959BBPT,
214 1.14 thorpej NRD7959BTRK, 1572, 594216 },
215 1.14 thorpej
216 1.14 thorpej { RD2200AID, 0, "2200A", NRD2200ABPT,
217 1.14 thorpej NRD2200ATRK, 1449, 654948 },
218 1.14 thorpej
219 1.14 thorpej { RD2203AID, 0, "2203A", NRD2203ABPT,
220 1.14 thorpej NRD2203ATRK, 1449, 1309896 }
221 1.1 cgd };
222 1.8 mycroft int numrdidentinfo = sizeof(rdidentinfo) / sizeof(rdidentinfo[0]);
223 1.1 cgd
224 1.1 cgd rdinit(hd)
225 1.1 cgd register struct hp_device *hd;
226 1.1 cgd {
227 1.1 cgd register struct rd_softc *rs = &rd_softc[hd->hp_unit];
228 1.1 cgd
229 1.1 cgd rs->sc_hd = hd;
230 1.1 cgd rs->sc_punit = rdpunit(hd->hp_flags);
231 1.1 cgd rs->sc_type = rdident(rs, hd);
232 1.1 cgd if (rs->sc_type < 0)
233 1.1 cgd return(0);
234 1.1 cgd rs->sc_dq.dq_ctlr = hd->hp_ctlr;
235 1.1 cgd rs->sc_dq.dq_unit = hd->hp_unit;
236 1.1 cgd rs->sc_dq.dq_slave = hd->hp_slave;
237 1.1 cgd rs->sc_dq.dq_driver = &rddriver;
238 1.1 cgd rs->sc_flags = RDF_ALIVE;
239 1.1 cgd #ifdef DEBUG
240 1.1 cgd /* always report errors */
241 1.1 cgd if (rddebug & RDB_ERROR)
242 1.1 cgd rderrthresh = 0;
243 1.1 cgd #endif
244 1.1 cgd return(1);
245 1.1 cgd }
246 1.1 cgd
247 1.1 cgd rdident(rs, hd)
248 1.1 cgd struct rd_softc *rs;
249 1.1 cgd struct hp_device *hd;
250 1.1 cgd {
251 1.14 thorpej struct rd_describe *desc = &rs->sc_rddesc;
252 1.1 cgd u_char stat, cmd[3];
253 1.1 cgd int unit, lunit;
254 1.1 cgd char name[7];
255 1.1 cgd register int ctlr, slave, id, i;
256 1.1 cgd
257 1.1 cgd ctlr = hd->hp_ctlr;
258 1.1 cgd slave = hd->hp_slave;
259 1.1 cgd unit = rs->sc_punit;
260 1.1 cgd lunit = hd->hp_unit;
261 1.1 cgd
262 1.1 cgd /*
263 1.1 cgd * Grab device id and make sure:
264 1.1 cgd * 1. It is a CS80 device.
265 1.1 cgd * 2. It is one of the types we support.
266 1.1 cgd * 3. If it is a 7946, we are accessing the disk unit (0)
267 1.1 cgd */
268 1.1 cgd id = hpibid(ctlr, slave);
269 1.1 cgd #ifdef DEBUG
270 1.1 cgd if (rddebug & RDB_IDENT)
271 1.1 cgd printf("hpibid(%d, %d) -> %x\n", ctlr, slave, id);
272 1.1 cgd #endif
273 1.1 cgd if ((id & 0x200) == 0)
274 1.1 cgd return(-1);
275 1.8 mycroft for (i = 0; i < numrdidentinfo; i++)
276 1.8 mycroft if (id == rdidentinfo[i].ri_hwid)
277 1.1 cgd break;
278 1.8 mycroft if (i == numrdidentinfo || unit > rdidentinfo[i].ri_maxunum)
279 1.1 cgd return(-1);
280 1.1 cgd id = i;
281 1.1 cgd
282 1.1 cgd /*
283 1.1 cgd * Reset drive and collect device description.
284 1.1 cgd * Don't really use the description info right now but
285 1.1 cgd * might come in handy in the future (for disk labels).
286 1.1 cgd */
287 1.1 cgd rdreset(rs, hd);
288 1.1 cgd cmd[0] = C_SUNIT(unit);
289 1.1 cgd cmd[1] = C_SVOL(0);
290 1.1 cgd cmd[2] = C_DESC;
291 1.1 cgd hpibsend(ctlr, slave, C_CMD, cmd, sizeof(cmd));
292 1.14 thorpej hpibrecv(ctlr, slave, C_EXEC, desc, 37);
293 1.1 cgd hpibrecv(ctlr, slave, C_QSTAT, &stat, sizeof(stat));
294 1.1 cgd bzero(name, sizeof(name));
295 1.1 cgd if (!stat) {
296 1.14 thorpej register int n = desc->d_name;
297 1.1 cgd for (i = 5; i >= 0; i--) {
298 1.1 cgd name[i] = (n & 0xf) + '0';
299 1.1 cgd n >>= 4;
300 1.1 cgd }
301 1.1 cgd /* use drive characteristics to calculate xfer rate */
302 1.14 thorpej rs->sc_wpms = 1000000 * (desc->d_sectsize/2) /
303 1.14 thorpej desc->d_blocktime;
304 1.1 cgd }
305 1.1 cgd #ifdef DEBUG
306 1.1 cgd if (rddebug & RDB_IDENT) {
307 1.1 cgd printf("rd%d: name: %x ('%s')\n",
308 1.14 thorpej lunit, desc->d_name, name);
309 1.1 cgd printf(" iuw %x, maxxfr %d, ctype %d\n",
310 1.14 thorpej desc->d_iuw, desc->d_cmaxxfr, desc->d_ctype);
311 1.1 cgd printf(" utype %d, bps %d, blkbuf %d, burst %d, blktime %d\n",
312 1.14 thorpej desc->d_utype, desc->d_sectsize,
313 1.14 thorpej desc->d_blkbuf, desc->d_burstsize, desc->d_blocktime);
314 1.1 cgd printf(" avxfr %d, ort %d, atp %d, maxint %d, fv %x, rv %x\n",
315 1.14 thorpej desc->d_uavexfr, desc->d_retry, desc->d_access,
316 1.14 thorpej desc->d_maxint, desc->d_fvbyte, desc->d_rvbyte);
317 1.1 cgd printf(" maxcyl/head/sect %d/%d/%d, maxvsect %d, inter %d\n",
318 1.14 thorpej desc->d_maxcyl, desc->d_maxhead, desc->d_maxsect,
319 1.14 thorpej desc->d_maxvsectl, desc->d_interleave);
320 1.1 cgd }
321 1.1 cgd #endif
322 1.1 cgd /*
323 1.1 cgd * Take care of a couple of anomolies:
324 1.1 cgd * 1. 7945A and 7946A both return same HW id
325 1.1 cgd * 2. 9122S and 9134D both return same HW id
326 1.1 cgd * 3. 9122D and 9134L both return same HW id
327 1.1 cgd */
328 1.8 mycroft switch (rdidentinfo[id].ri_hwid) {
329 1.1 cgd case RD7946AID:
330 1.1 cgd if (bcmp(name, "079450", 6) == 0)
331 1.1 cgd id = RD7945A;
332 1.1 cgd else
333 1.1 cgd id = RD7946A;
334 1.1 cgd break;
335 1.1 cgd
336 1.1 cgd case RD9134LID:
337 1.1 cgd if (bcmp(name, "091340", 6) == 0)
338 1.1 cgd id = RD9134L;
339 1.1 cgd else
340 1.1 cgd id = RD9122D;
341 1.1 cgd break;
342 1.1 cgd
343 1.1 cgd case RD9134DID:
344 1.1 cgd if (bcmp(name, "091220", 6) == 0)
345 1.1 cgd id = RD9122S;
346 1.1 cgd else
347 1.1 cgd id = RD9134D;
348 1.1 cgd break;
349 1.1 cgd }
350 1.14 thorpej /*
351 1.14 thorpej * XXX We use DEV_BSIZE instead of the sector size value pulled
352 1.14 thorpej * off the driver because all of this code assumes 512 byte
353 1.14 thorpej * blocks. ICK!
354 1.14 thorpej */
355 1.14 thorpej printf("rd%d: %s, %d cylinders, %d heads, %d blocks, %d bytes/block\n",
356 1.14 thorpej lunit, rdidentinfo[id].ri_desc, rdidentinfo[id].ri_ncyl,
357 1.14 thorpej rdidentinfo[id].ri_ntpc, rdidentinfo[id].ri_nblocks,
358 1.14 thorpej DEV_BSIZE);
359 1.1 cgd return(id);
360 1.1 cgd }
361 1.1 cgd
362 1.1 cgd rdreset(rs, hd)
363 1.1 cgd register struct rd_softc *rs;
364 1.1 cgd register struct hp_device *hd;
365 1.1 cgd {
366 1.1 cgd u_char stat;
367 1.1 cgd
368 1.1 cgd rs->sc_clear.c_unit = C_SUNIT(rs->sc_punit);
369 1.1 cgd rs->sc_clear.c_cmd = C_CLEAR;
370 1.1 cgd hpibsend(hd->hp_ctlr, hd->hp_slave, C_TCMD, &rs->sc_clear,
371 1.1 cgd sizeof(rs->sc_clear));
372 1.1 cgd hpibswait(hd->hp_ctlr, hd->hp_slave);
373 1.1 cgd hpibrecv(hd->hp_ctlr, hd->hp_slave, C_QSTAT, &stat, sizeof(stat));
374 1.1 cgd rs->sc_src.c_unit = C_SUNIT(RDCTLR);
375 1.1 cgd rs->sc_src.c_nop = C_NOP;
376 1.1 cgd rs->sc_src.c_cmd = C_SREL;
377 1.1 cgd rs->sc_src.c_param = C_REL;
378 1.1 cgd hpibsend(hd->hp_ctlr, hd->hp_slave, C_CMD, &rs->sc_src,
379 1.1 cgd sizeof(rs->sc_src));
380 1.1 cgd hpibswait(hd->hp_ctlr, hd->hp_slave);
381 1.1 cgd hpibrecv(hd->hp_ctlr, hd->hp_slave, C_QSTAT, &stat, sizeof(stat));
382 1.1 cgd rs->sc_ssmc.c_unit = C_SUNIT(rs->sc_punit);
383 1.1 cgd rs->sc_ssmc.c_cmd = C_SSM;
384 1.1 cgd rs->sc_ssmc.c_refm = REF_MASK;
385 1.1 cgd rs->sc_ssmc.c_fefm = FEF_MASK;
386 1.1 cgd rs->sc_ssmc.c_aefm = AEF_MASK;
387 1.1 cgd rs->sc_ssmc.c_iefm = IEF_MASK;
388 1.1 cgd hpibsend(hd->hp_ctlr, hd->hp_slave, C_CMD, &rs->sc_ssmc,
389 1.1 cgd sizeof(rs->sc_ssmc));
390 1.1 cgd hpibswait(hd->hp_ctlr, hd->hp_slave);
391 1.1 cgd hpibrecv(hd->hp_ctlr, hd->hp_slave, C_QSTAT, &stat, sizeof(stat));
392 1.1 cgd #ifdef DEBUG
393 1.1 cgd rdstats[hd->hp_unit].rdresets++;
394 1.1 cgd #endif
395 1.1 cgd }
396 1.1 cgd
397 1.8 mycroft /*
398 1.8 mycroft * Read or constuct a disklabel
399 1.8 mycroft */
400 1.8 mycroft int
401 1.8 mycroft rdgetinfo(dev)
402 1.8 mycroft dev_t dev;
403 1.8 mycroft {
404 1.8 mycroft int unit = rdunit(dev);
405 1.8 mycroft register struct rd_softc *rs = &rd_softc[unit];
406 1.8 mycroft register struct disklabel *lp = &rs->sc_info.ri_label;
407 1.8 mycroft register struct partition *pi;
408 1.8 mycroft char *msg, *readdisklabel();
409 1.8 mycroft
410 1.8 mycroft /*
411 1.8 mycroft * Set some default values to use while reading the label
412 1.8 mycroft * or to use if there isn't a label.
413 1.8 mycroft */
414 1.8 mycroft bzero((caddr_t)lp, sizeof *lp);
415 1.8 mycroft lp->d_type = DTYPE_HPIB;
416 1.8 mycroft lp->d_secsize = DEV_BSIZE;
417 1.8 mycroft lp->d_nsectors = 32;
418 1.8 mycroft lp->d_ntracks = 20;
419 1.8 mycroft lp->d_ncylinders = 1;
420 1.8 mycroft lp->d_secpercyl = 32*20;
421 1.8 mycroft lp->d_npartitions = 3;
422 1.8 mycroft lp->d_partitions[2].p_offset = 0;
423 1.8 mycroft lp->d_partitions[2].p_size = LABELSECTOR+1;
424 1.8 mycroft
425 1.8 mycroft /*
426 1.8 mycroft * Now try to read the disklabel
427 1.8 mycroft */
428 1.8 mycroft msg = readdisklabel(rdlabdev(dev), rdstrategy, lp);
429 1.8 mycroft if (msg == NULL)
430 1.8 mycroft return(0);
431 1.8 mycroft
432 1.8 mycroft pi = lp->d_partitions;
433 1.8 mycroft printf("rd%d: WARNING: %s, ", unit, msg);
434 1.8 mycroft #ifdef COMPAT_NOLABEL
435 1.8 mycroft printf("using old default partitioning\n");
436 1.8 mycroft rdmakedisklabel(unit, lp);
437 1.8 mycroft #else
438 1.8 mycroft printf("defining `c' partition as entire disk\n");
439 1.8 mycroft pi[2].p_size = rdidentinfo[rs->sc_type].ri_nblocks;
440 1.9 mycroft /* XXX reset other info since readdisklabel screws with it */
441 1.9 mycroft lp->d_npartitions = 3;
442 1.9 mycroft pi[0].p_size = 0;
443 1.8 mycroft #endif
444 1.8 mycroft return(0);
445 1.8 mycroft }
446 1.8 mycroft
447 1.1 cgd int
448 1.1 cgd rdopen(dev, flags, mode, p)
449 1.1 cgd dev_t dev;
450 1.1 cgd int flags, mode;
451 1.1 cgd struct proc *p;
452 1.1 cgd {
453 1.1 cgd register int unit = rdunit(dev);
454 1.1 cgd register struct rd_softc *rs = &rd_softc[unit];
455 1.8 mycroft int error, mask;
456 1.1 cgd
457 1.1 cgd if (unit >= NRD || (rs->sc_flags & RDF_ALIVE) == 0)
458 1.1 cgd return(ENXIO);
459 1.8 mycroft
460 1.8 mycroft /*
461 1.8 mycroft * Wait for any pending opens/closes to complete
462 1.8 mycroft */
463 1.8 mycroft while (rs->sc_flags & (RDF_OPENING|RDF_CLOSING))
464 1.8 mycroft sleep((caddr_t)rs, PRIBIO);
465 1.8 mycroft
466 1.8 mycroft /*
467 1.8 mycroft * On first open, get label and partition info.
468 1.8 mycroft * We may block reading the label, so be careful
469 1.8 mycroft * to stop any other opens.
470 1.8 mycroft */
471 1.8 mycroft if (rs->sc_info.ri_open == 0) {
472 1.8 mycroft rs->sc_flags |= RDF_OPENING;
473 1.8 mycroft error = rdgetinfo(dev);
474 1.8 mycroft rs->sc_flags &= ~RDF_OPENING;
475 1.8 mycroft wakeup((caddr_t)rs);
476 1.8 mycroft if (error)
477 1.8 mycroft return(error);
478 1.8 mycroft }
479 1.1 cgd if (rs->sc_hd->hp_dk >= 0) {
480 1.1 cgd /* guess at xfer rate based on 3600 rpm (60 rps) */
481 1.1 cgd if (rs->sc_wpms == 0)
482 1.8 mycroft rs->sc_wpms = 60 * rs->sc_info.ri_label.d_nsectors
483 1.8 mycroft * DEV_BSIZE / 2;
484 1.1 cgd dk_wpms[rs->sc_hd->hp_dk] = rs->sc_wpms;
485 1.1 cgd }
486 1.8 mycroft
487 1.8 mycroft mask = 1 << rdpart(dev);
488 1.8 mycroft if (mode == S_IFCHR)
489 1.8 mycroft rs->sc_info.ri_copen |= mask;
490 1.8 mycroft else
491 1.8 mycroft rs->sc_info.ri_bopen |= mask;
492 1.8 mycroft rs->sc_info.ri_open |= mask;
493 1.8 mycroft return(0);
494 1.8 mycroft }
495 1.8 mycroft
496 1.8 mycroft int
497 1.8 mycroft rdclose(dev, flag, mode, p)
498 1.8 mycroft dev_t dev;
499 1.8 mycroft int flag, mode;
500 1.8 mycroft struct proc *p;
501 1.8 mycroft {
502 1.8 mycroft int unit = rdunit(dev);
503 1.8 mycroft register struct rd_softc *rs = &rd_softc[unit];
504 1.8 mycroft register struct rdinfo *ri = &rs->sc_info;
505 1.8 mycroft int mask, s;
506 1.8 mycroft
507 1.8 mycroft mask = 1 << rdpart(dev);
508 1.8 mycroft if (mode == S_IFCHR)
509 1.8 mycroft ri->ri_copen &= ~mask;
510 1.8 mycroft else
511 1.8 mycroft ri->ri_bopen &= ~mask;
512 1.8 mycroft ri->ri_open = ri->ri_bopen | ri->ri_copen;
513 1.8 mycroft /*
514 1.8 mycroft * On last close, we wait for all activity to cease since
515 1.8 mycroft * the label/parition info will become invalid. Since we
516 1.8 mycroft * might sleep, we must block any opens while we are here.
517 1.8 mycroft * Note we don't have to about other closes since we know
518 1.8 mycroft * we are the last one.
519 1.8 mycroft */
520 1.8 mycroft if (ri->ri_open == 0) {
521 1.8 mycroft rs->sc_flags |= RDF_CLOSING;
522 1.8 mycroft s = splbio();
523 1.8 mycroft while (rdtab[unit].b_active) {
524 1.8 mycroft rs->sc_flags |= RDF_WANTED;
525 1.8 mycroft sleep((caddr_t)&rdtab[unit], PRIBIO);
526 1.8 mycroft }
527 1.8 mycroft splx(s);
528 1.8 mycroft rs->sc_flags &= ~(RDF_CLOSING|RDF_WLABEL);
529 1.8 mycroft wakeup((caddr_t)rs);
530 1.8 mycroft }
531 1.1 cgd return(0);
532 1.1 cgd }
533 1.1 cgd
534 1.4 mycroft void
535 1.1 cgd rdstrategy(bp)
536 1.1 cgd register struct buf *bp;
537 1.1 cgd {
538 1.8 mycroft int unit = rdunit(bp->b_dev);
539 1.1 cgd register struct rd_softc *rs = &rd_softc[unit];
540 1.1 cgd register struct buf *dp = &rdtab[unit];
541 1.8 mycroft register struct partition *pinfo;
542 1.1 cgd register daddr_t bn;
543 1.1 cgd register int sz, s;
544 1.1 cgd
545 1.1 cgd #ifdef DEBUG
546 1.1 cgd if (rddebug & RDB_FOLLOW)
547 1.1 cgd printf("rdstrategy(%x): dev %x, bn %x, bcount %x, %c\n",
548 1.1 cgd bp, bp->b_dev, bp->b_blkno, bp->b_bcount,
549 1.1 cgd (bp->b_flags & B_READ) ? 'R' : 'W');
550 1.1 cgd #endif
551 1.1 cgd bn = bp->b_blkno;
552 1.1 cgd sz = howmany(bp->b_bcount, DEV_BSIZE);
553 1.8 mycroft pinfo = &rs->sc_info.ri_label.d_partitions[rdpart(bp->b_dev)];
554 1.8 mycroft if (bn < 0 || bn + sz > pinfo->p_size) {
555 1.8 mycroft sz = pinfo->p_size - bn;
556 1.1 cgd if (sz == 0) {
557 1.1 cgd bp->b_resid = bp->b_bcount;
558 1.1 cgd goto done;
559 1.1 cgd }
560 1.1 cgd if (sz < 0) {
561 1.1 cgd bp->b_error = EINVAL;
562 1.8 mycroft goto bad;
563 1.1 cgd }
564 1.1 cgd bp->b_bcount = dbtob(sz);
565 1.1 cgd }
566 1.8 mycroft /*
567 1.8 mycroft * Check for write to write protected label
568 1.8 mycroft */
569 1.8 mycroft if (bn + pinfo->p_offset <= LABELSECTOR &&
570 1.8 mycroft #if LABELSECTOR != 0
571 1.8 mycroft bn + pinfo->p_offset + sz > LABELSECTOR &&
572 1.8 mycroft #endif
573 1.8 mycroft !(bp->b_flags & B_READ) && !(rs->sc_flags & RDF_WLABEL)) {
574 1.8 mycroft bp->b_error = EROFS;
575 1.8 mycroft goto bad;
576 1.8 mycroft }
577 1.8 mycroft bp->b_cylin = bn + pinfo->p_offset;
578 1.1 cgd s = splbio();
579 1.1 cgd disksort(dp, bp);
580 1.1 cgd if (dp->b_active == 0) {
581 1.1 cgd dp->b_active = 1;
582 1.1 cgd rdustart(unit);
583 1.1 cgd }
584 1.1 cgd splx(s);
585 1.1 cgd return;
586 1.8 mycroft bad:
587 1.8 mycroft bp->b_flags |= B_ERROR;
588 1.1 cgd done:
589 1.1 cgd biodone(bp);
590 1.1 cgd }
591 1.1 cgd
592 1.1 cgd /*
593 1.1 cgd * Called from timeout() when handling maintenance releases
594 1.1 cgd */
595 1.8 mycroft void
596 1.6 mycroft rdrestart(arg)
597 1.6 mycroft void *arg;
598 1.1 cgd {
599 1.1 cgd int s = splbio();
600 1.6 mycroft rdustart((int)arg);
601 1.1 cgd splx(s);
602 1.1 cgd }
603 1.1 cgd
604 1.1 cgd rdustart(unit)
605 1.1 cgd register int unit;
606 1.1 cgd {
607 1.1 cgd register struct buf *bp;
608 1.1 cgd register struct rd_softc *rs = &rd_softc[unit];
609 1.1 cgd
610 1.1 cgd bp = rdtab[unit].b_actf;
611 1.1 cgd rs->sc_addr = bp->b_un.b_addr;
612 1.1 cgd rs->sc_resid = bp->b_bcount;
613 1.1 cgd if (hpibreq(&rs->sc_dq))
614 1.1 cgd rdstart(unit);
615 1.1 cgd }
616 1.1 cgd
617 1.8 mycroft struct buf *
618 1.8 mycroft rdfinish(unit, rs, bp)
619 1.8 mycroft int unit;
620 1.8 mycroft register struct rd_softc *rs;
621 1.8 mycroft register struct buf *bp;
622 1.8 mycroft {
623 1.8 mycroft register struct buf *dp = &rdtab[unit];
624 1.8 mycroft
625 1.8 mycroft dp->b_errcnt = 0;
626 1.8 mycroft dp->b_actf = bp->b_actf;
627 1.8 mycroft bp->b_resid = 0;
628 1.8 mycroft biodone(bp);
629 1.8 mycroft hpibfree(&rs->sc_dq);
630 1.8 mycroft if (dp->b_actf)
631 1.8 mycroft return(dp->b_actf);
632 1.8 mycroft dp->b_active = 0;
633 1.8 mycroft if (rs->sc_flags & RDF_WANTED) {
634 1.8 mycroft rs->sc_flags &= ~RDF_WANTED;
635 1.8 mycroft wakeup((caddr_t)dp);
636 1.8 mycroft }
637 1.8 mycroft return(NULL);
638 1.8 mycroft }
639 1.8 mycroft
640 1.1 cgd rdstart(unit)
641 1.1 cgd register int unit;
642 1.1 cgd {
643 1.1 cgd register struct rd_softc *rs = &rd_softc[unit];
644 1.1 cgd register struct buf *bp = rdtab[unit].b_actf;
645 1.1 cgd register struct hp_device *hp = rs->sc_hd;
646 1.1 cgd register int part;
647 1.1 cgd
648 1.1 cgd again:
649 1.1 cgd #ifdef DEBUG
650 1.1 cgd if (rddebug & RDB_FOLLOW)
651 1.1 cgd printf("rdstart(%d): bp %x, %c\n", unit, bp,
652 1.1 cgd (bp->b_flags & B_READ) ? 'R' : 'W');
653 1.1 cgd #endif
654 1.1 cgd part = rdpart(bp->b_dev);
655 1.1 cgd rs->sc_flags |= RDF_SEEK;
656 1.1 cgd rs->sc_ioc.c_unit = C_SUNIT(rs->sc_punit);
657 1.1 cgd rs->sc_ioc.c_volume = C_SVOL(0);
658 1.1 cgd rs->sc_ioc.c_saddr = C_SADDR;
659 1.1 cgd rs->sc_ioc.c_hiaddr = 0;
660 1.8 mycroft rs->sc_ioc.c_addr = RDBTOS(bp->b_cylin);
661 1.1 cgd rs->sc_ioc.c_nop2 = C_NOP;
662 1.1 cgd rs->sc_ioc.c_slen = C_SLEN;
663 1.1 cgd rs->sc_ioc.c_len = rs->sc_resid;
664 1.1 cgd rs->sc_ioc.c_cmd = bp->b_flags & B_READ ? C_READ : C_WRITE;
665 1.1 cgd #ifdef DEBUG
666 1.1 cgd if (rddebug & RDB_IO)
667 1.1 cgd printf("rdstart: hpibsend(%x, %x, %x, %x, %x)\n",
668 1.1 cgd hp->hp_ctlr, hp->hp_slave, C_CMD,
669 1.1 cgd &rs->sc_ioc.c_unit, sizeof(rs->sc_ioc)-2);
670 1.1 cgd #endif
671 1.1 cgd if (hpibsend(hp->hp_ctlr, hp->hp_slave, C_CMD, &rs->sc_ioc.c_unit,
672 1.1 cgd sizeof(rs->sc_ioc)-2) == sizeof(rs->sc_ioc)-2) {
673 1.1 cgd if (hp->hp_dk >= 0) {
674 1.1 cgd dk_busy |= 1 << hp->hp_dk;
675 1.1 cgd dk_seek[hp->hp_dk]++;
676 1.1 cgd }
677 1.1 cgd #ifdef DEBUG
678 1.1 cgd if (rddebug & RDB_IO)
679 1.1 cgd printf("rdstart: hpibawait(%x)\n", hp->hp_ctlr);
680 1.1 cgd #endif
681 1.1 cgd hpibawait(hp->hp_ctlr);
682 1.1 cgd return;
683 1.1 cgd }
684 1.1 cgd /*
685 1.1 cgd * Experience has shown that the hpibwait in this hpibsend will
686 1.1 cgd * occasionally timeout. It appears to occur mostly on old 7914
687 1.1 cgd * drives with full maintenance tracks. We should probably
688 1.1 cgd * integrate this with the backoff code in rderror.
689 1.1 cgd */
690 1.1 cgd #ifdef DEBUG
691 1.1 cgd if (rddebug & RDB_ERROR)
692 1.1 cgd printf("rd%d: rdstart: cmd %x adr %d blk %d len %d ecnt %d\n",
693 1.1 cgd unit, rs->sc_ioc.c_cmd, rs->sc_ioc.c_addr,
694 1.1 cgd bp->b_blkno, rs->sc_resid, rdtab[unit].b_errcnt);
695 1.1 cgd rdstats[unit].rdretries++;
696 1.1 cgd #endif
697 1.1 cgd rs->sc_flags &= ~RDF_SEEK;
698 1.1 cgd rdreset(rs, hp);
699 1.1 cgd if (rdtab[unit].b_errcnt++ < RDRETRY)
700 1.1 cgd goto again;
701 1.1 cgd printf("rd%d: rdstart err: cmd 0x%x sect %d blk %d len %d\n",
702 1.1 cgd unit, rs->sc_ioc.c_cmd, rs->sc_ioc.c_addr,
703 1.1 cgd bp->b_blkno, rs->sc_resid);
704 1.1 cgd bp->b_flags |= B_ERROR;
705 1.1 cgd bp->b_error = EIO;
706 1.8 mycroft bp = rdfinish(unit, rs, bp);
707 1.8 mycroft if (bp) {
708 1.8 mycroft rs->sc_addr = bp->b_un.b_addr;
709 1.8 mycroft rs->sc_resid = bp->b_bcount;
710 1.8 mycroft if (hpibreq(&rs->sc_dq))
711 1.8 mycroft goto again;
712 1.1 cgd }
713 1.1 cgd }
714 1.1 cgd
715 1.1 cgd rdgo(unit)
716 1.1 cgd register int unit;
717 1.1 cgd {
718 1.1 cgd register struct rd_softc *rs = &rd_softc[unit];
719 1.1 cgd register struct hp_device *hp = rs->sc_hd;
720 1.1 cgd struct buf *bp = rdtab[unit].b_actf;
721 1.13 thorpej int rw;
722 1.13 thorpej
723 1.13 thorpej rw = bp->b_flags & B_READ;
724 1.1 cgd
725 1.1 cgd if (hp->hp_dk >= 0) {
726 1.1 cgd dk_busy |= 1 << hp->hp_dk;
727 1.1 cgd dk_xfer[hp->hp_dk]++;
728 1.1 cgd dk_wds[hp->hp_dk] += rs->sc_resid >> 6;
729 1.1 cgd }
730 1.8 mycroft #ifdef USELEDS
731 1.8 mycroft if (inledcontrol == 0)
732 1.8 mycroft ledcontrol(0, 0, LED_DISK);
733 1.8 mycroft #endif
734 1.1 cgd hpibgo(hp->hp_ctlr, hp->hp_slave, C_EXEC,
735 1.13 thorpej rs->sc_addr, rs->sc_resid, rw, rw != 0);
736 1.1 cgd }
737 1.1 cgd
738 1.1 cgd rdintr(unit)
739 1.1 cgd register int unit;
740 1.1 cgd {
741 1.1 cgd register struct rd_softc *rs = &rd_softc[unit];
742 1.1 cgd register struct buf *bp = rdtab[unit].b_actf;
743 1.1 cgd register struct hp_device *hp = rs->sc_hd;
744 1.1 cgd u_char stat = 13; /* in case hpibrecv fails */
745 1.1 cgd int rv, restart;
746 1.1 cgd
747 1.1 cgd #ifdef DEBUG
748 1.1 cgd if (rddebug & RDB_FOLLOW)
749 1.1 cgd printf("rdintr(%d): bp %x, %c, flags %x\n", unit, bp,
750 1.1 cgd (bp->b_flags & B_READ) ? 'R' : 'W', rs->sc_flags);
751 1.1 cgd if (bp == NULL) {
752 1.1 cgd printf("rd%d: bp == NULL\n", unit);
753 1.1 cgd return;
754 1.1 cgd }
755 1.1 cgd #endif
756 1.1 cgd if (hp->hp_dk >= 0)
757 1.1 cgd dk_busy &= ~(1 << hp->hp_dk);
758 1.1 cgd if (rs->sc_flags & RDF_SEEK) {
759 1.1 cgd rs->sc_flags &= ~RDF_SEEK;
760 1.1 cgd if (hpibustart(hp->hp_ctlr))
761 1.1 cgd rdgo(unit);
762 1.1 cgd return;
763 1.1 cgd }
764 1.1 cgd if ((rs->sc_flags & RDF_SWAIT) == 0) {
765 1.1 cgd #ifdef DEBUG
766 1.1 cgd rdstats[unit].rdpolltries++;
767 1.1 cgd #endif
768 1.1 cgd if (hpibpptest(hp->hp_ctlr, hp->hp_slave) == 0) {
769 1.1 cgd #ifdef DEBUG
770 1.1 cgd rdstats[unit].rdpollwaits++;
771 1.1 cgd #endif
772 1.1 cgd if (hp->hp_dk >= 0)
773 1.1 cgd dk_busy |= 1 << hp->hp_dk;
774 1.1 cgd rs->sc_flags |= RDF_SWAIT;
775 1.1 cgd hpibawait(hp->hp_ctlr);
776 1.1 cgd return;
777 1.1 cgd }
778 1.1 cgd } else
779 1.1 cgd rs->sc_flags &= ~RDF_SWAIT;
780 1.1 cgd rv = hpibrecv(hp->hp_ctlr, hp->hp_slave, C_QSTAT, &stat, 1);
781 1.1 cgd if (rv != 1 || stat) {
782 1.1 cgd #ifdef DEBUG
783 1.1 cgd if (rddebug & RDB_ERROR)
784 1.1 cgd printf("rdintr: recv failed or bad stat %d\n", stat);
785 1.1 cgd #endif
786 1.1 cgd restart = rderror(unit);
787 1.1 cgd #ifdef DEBUG
788 1.1 cgd rdstats[unit].rdretries++;
789 1.1 cgd #endif
790 1.1 cgd if (rdtab[unit].b_errcnt++ < RDRETRY) {
791 1.1 cgd if (restart)
792 1.1 cgd rdstart(unit);
793 1.1 cgd return;
794 1.1 cgd }
795 1.1 cgd bp->b_flags |= B_ERROR;
796 1.1 cgd bp->b_error = EIO;
797 1.1 cgd }
798 1.8 mycroft if (rdfinish(unit, rs, bp))
799 1.1 cgd rdustart(unit);
800 1.1 cgd }
801 1.1 cgd
802 1.1 cgd rdstatus(rs)
803 1.1 cgd register struct rd_softc *rs;
804 1.1 cgd {
805 1.1 cgd register int c, s;
806 1.1 cgd u_char stat;
807 1.1 cgd int rv;
808 1.1 cgd
809 1.1 cgd c = rs->sc_hd->hp_ctlr;
810 1.1 cgd s = rs->sc_hd->hp_slave;
811 1.1 cgd rs->sc_rsc.c_unit = C_SUNIT(rs->sc_punit);
812 1.1 cgd rs->sc_rsc.c_sram = C_SRAM;
813 1.1 cgd rs->sc_rsc.c_ram = C_RAM;
814 1.1 cgd rs->sc_rsc.c_cmd = C_STATUS;
815 1.1 cgd bzero((caddr_t)&rs->sc_stat, sizeof(rs->sc_stat));
816 1.1 cgd rv = hpibsend(c, s, C_CMD, &rs->sc_rsc, sizeof(rs->sc_rsc));
817 1.1 cgd if (rv != sizeof(rs->sc_rsc)) {
818 1.1 cgd #ifdef DEBUG
819 1.1 cgd if (rddebug & RDB_STATUS)
820 1.1 cgd printf("rdstatus: send C_CMD failed %d != %d\n",
821 1.1 cgd rv, sizeof(rs->sc_rsc));
822 1.1 cgd #endif
823 1.1 cgd return(1);
824 1.1 cgd }
825 1.1 cgd rv = hpibrecv(c, s, C_EXEC, &rs->sc_stat, sizeof(rs->sc_stat));
826 1.1 cgd if (rv != sizeof(rs->sc_stat)) {
827 1.1 cgd #ifdef DEBUG
828 1.1 cgd if (rddebug & RDB_STATUS)
829 1.1 cgd printf("rdstatus: send C_EXEC failed %d != %d\n",
830 1.1 cgd rv, sizeof(rs->sc_stat));
831 1.1 cgd #endif
832 1.1 cgd return(1);
833 1.1 cgd }
834 1.1 cgd rv = hpibrecv(c, s, C_QSTAT, &stat, 1);
835 1.1 cgd if (rv != 1 || stat) {
836 1.1 cgd #ifdef DEBUG
837 1.1 cgd if (rddebug & RDB_STATUS)
838 1.1 cgd printf("rdstatus: recv failed %d or bad stat %d\n",
839 1.1 cgd rv, stat);
840 1.1 cgd #endif
841 1.1 cgd return(1);
842 1.1 cgd }
843 1.1 cgd return(0);
844 1.1 cgd }
845 1.1 cgd
846 1.1 cgd /*
847 1.1 cgd * Deal with errors.
848 1.1 cgd * Returns 1 if request should be restarted,
849 1.1 cgd * 0 if we should just quietly give up.
850 1.1 cgd */
851 1.1 cgd rderror(unit)
852 1.1 cgd int unit;
853 1.1 cgd {
854 1.1 cgd struct rd_softc *rs = &rd_softc[unit];
855 1.1 cgd register struct rd_stat *sp;
856 1.1 cgd struct buf *bp;
857 1.1 cgd daddr_t hwbn, pbn;
858 1.1 cgd
859 1.1 cgd if (rdstatus(rs)) {
860 1.1 cgd #ifdef DEBUG
861 1.1 cgd printf("rd%d: couldn't get status\n", unit);
862 1.1 cgd #endif
863 1.1 cgd rdreset(rs, rs->sc_hd);
864 1.1 cgd return(1);
865 1.1 cgd }
866 1.1 cgd sp = &rs->sc_stat;
867 1.1 cgd if (sp->c_fef & FEF_REXMT)
868 1.1 cgd return(1);
869 1.1 cgd if (sp->c_fef & FEF_PF) {
870 1.1 cgd rdreset(rs, rs->sc_hd);
871 1.1 cgd return(1);
872 1.1 cgd }
873 1.1 cgd /*
874 1.1 cgd * Unit requests release for internal maintenance.
875 1.1 cgd * We just delay awhile and try again later. Use expontially
876 1.1 cgd * increasing backoff ala ethernet drivers since we don't really
877 1.1 cgd * know how long the maintenance will take. With RDWAITC and
878 1.1 cgd * RDRETRY as defined, the range is 1 to 32 seconds.
879 1.1 cgd */
880 1.1 cgd if (sp->c_fef & FEF_IMR) {
881 1.1 cgd extern int hz;
882 1.1 cgd int rdtimo = RDWAITC << rdtab[unit].b_errcnt;
883 1.1 cgd #ifdef DEBUG
884 1.1 cgd printf("rd%d: internal maintenance, %d second timeout\n",
885 1.1 cgd unit, rdtimo);
886 1.1 cgd rdstats[unit].rdtimeouts++;
887 1.1 cgd #endif
888 1.1 cgd hpibfree(&rs->sc_dq);
889 1.8 mycroft timeout(rdrestart, (void *)unit, rdtimo * hz);
890 1.1 cgd return(0);
891 1.1 cgd }
892 1.1 cgd /*
893 1.1 cgd * Only report error if we have reached the error reporting
894 1.1 cgd * threshhold. By default, this will only report after the
895 1.1 cgd * retry limit has been exceeded.
896 1.1 cgd */
897 1.1 cgd if (rdtab[unit].b_errcnt < rderrthresh)
898 1.1 cgd return(1);
899 1.1 cgd
900 1.1 cgd /*
901 1.1 cgd * First conjure up the block number at which the error occured.
902 1.1 cgd * Note that not all errors report a block number, in that case
903 1.1 cgd * we just use b_blkno.
904 1.1 cgd */
905 1.1 cgd bp = rdtab[unit].b_actf;
906 1.8 mycroft pbn = rs->sc_info.ri_label.d_partitions[rdpart(bp->b_dev)].p_offset;
907 1.1 cgd if ((sp->c_fef & FEF_CU) || (sp->c_fef & FEF_DR) ||
908 1.1 cgd (sp->c_ief & IEF_RRMASK)) {
909 1.1 cgd hwbn = RDBTOS(pbn + bp->b_blkno);
910 1.1 cgd pbn = bp->b_blkno;
911 1.1 cgd } else {
912 1.1 cgd hwbn = sp->c_blk;
913 1.1 cgd pbn = RDSTOB(hwbn) - pbn;
914 1.1 cgd }
915 1.1 cgd /*
916 1.1 cgd * Now output a generic message suitable for badsect.
917 1.1 cgd * Note that we don't use harderr cuz it just prints
918 1.1 cgd * out b_blkno which is just the beginning block number
919 1.1 cgd * of the transfer, not necessary where the error occured.
920 1.1 cgd */
921 1.1 cgd printf("rd%d%c: hard error sn%d\n",
922 1.1 cgd rdunit(bp->b_dev), 'a'+rdpart(bp->b_dev), pbn);
923 1.1 cgd /*
924 1.1 cgd * Now report the status as returned by the hardware with
925 1.1 cgd * attempt at interpretation (unless debugging).
926 1.1 cgd */
927 1.1 cgd printf("rd%d %s error:",
928 1.1 cgd unit, (bp->b_flags & B_READ) ? "read" : "write");
929 1.1 cgd #ifdef DEBUG
930 1.1 cgd if (rddebug & RDB_ERROR) {
931 1.1 cgd /* status info */
932 1.1 cgd printf("\n volume: %d, unit: %d\n",
933 1.1 cgd (sp->c_vu>>4)&0xF, sp->c_vu&0xF);
934 1.1 cgd rdprinterr("reject", sp->c_ref, err_reject);
935 1.1 cgd rdprinterr("fault", sp->c_fef, err_fault);
936 1.1 cgd rdprinterr("access", sp->c_aef, err_access);
937 1.1 cgd rdprinterr("info", sp->c_ief, err_info);
938 1.1 cgd printf(" block: %d, P1-P10: ", hwbn);
939 1.1 cgd printf("%s", hexstr(*(u_int *)&sp->c_raw[0], 8));
940 1.1 cgd printf("%s", hexstr(*(u_int *)&sp->c_raw[4], 8));
941 1.1 cgd printf("%s\n", hexstr(*(u_short *)&sp->c_raw[8], 4));
942 1.1 cgd /* command */
943 1.1 cgd printf(" ioc: ");
944 1.1 cgd printf("%s", hexstr(*(u_int *)&rs->sc_ioc.c_pad, 8));
945 1.1 cgd printf("%s", hexstr(*(u_short *)&rs->sc_ioc.c_hiaddr, 4));
946 1.1 cgd printf("%s", hexstr(*(u_int *)&rs->sc_ioc.c_addr, 8));
947 1.1 cgd printf("%s", hexstr(*(u_short *)&rs->sc_ioc.c_nop2, 4));
948 1.1 cgd printf("%s", hexstr(*(u_int *)&rs->sc_ioc.c_len, 8));
949 1.1 cgd printf("%s\n", hexstr(*(u_short *)&rs->sc_ioc.c_cmd, 4));
950 1.1 cgd return(1);
951 1.1 cgd }
952 1.1 cgd #endif
953 1.1 cgd printf(" v%d u%d, R0x%x F0x%x A0x%x I0x%x\n",
954 1.1 cgd (sp->c_vu>>4)&0xF, sp->c_vu&0xF,
955 1.1 cgd sp->c_ref, sp->c_fef, sp->c_aef, sp->c_ief);
956 1.1 cgd printf("P1-P10: ");
957 1.1 cgd printf("%s", hexstr(*(u_int *)&sp->c_raw[0], 8));
958 1.1 cgd printf("%s", hexstr(*(u_int *)&sp->c_raw[4], 8));
959 1.1 cgd printf("%s\n", hexstr(*(u_short *)&sp->c_raw[8], 4));
960 1.1 cgd return(1);
961 1.12 thorpej }
962 1.12 thorpej
963 1.12 thorpej int
964 1.12 thorpej rdread(dev, uio, flags)
965 1.12 thorpej dev_t dev;
966 1.12 thorpej struct uio *uio;
967 1.12 thorpej int flags;
968 1.12 thorpej {
969 1.12 thorpej
970 1.12 thorpej return (physio(rdstrategy, NULL, dev, B_READ, minphys, uio));
971 1.12 thorpej }
972 1.12 thorpej
973 1.12 thorpej int
974 1.12 thorpej rdwrite(dev, uio, flags)
975 1.12 thorpej dev_t dev;
976 1.12 thorpej struct uio *uio;
977 1.12 thorpej int flags;
978 1.12 thorpej {
979 1.12 thorpej
980 1.12 thorpej return (physio(rdstrategy, NULL, dev, B_WRITE, minphys, uio));
981 1.1 cgd }
982 1.1 cgd
983 1.1 cgd int
984 1.1 cgd rdioctl(dev, cmd, data, flag, p)
985 1.1 cgd dev_t dev;
986 1.1 cgd int cmd;
987 1.1 cgd caddr_t data;
988 1.1 cgd int flag;
989 1.1 cgd struct proc *p;
990 1.1 cgd {
991 1.8 mycroft int unit = rdunit(dev);
992 1.8 mycroft register struct rd_softc *sc = &rd_softc[unit];
993 1.8 mycroft register struct disklabel *lp = &sc->sc_info.ri_label;
994 1.8 mycroft int error, flags;
995 1.8 mycroft
996 1.8 mycroft switch (cmd) {
997 1.8 mycroft case DIOCGDINFO:
998 1.8 mycroft *(struct disklabel *)data = *lp;
999 1.8 mycroft return (0);
1000 1.8 mycroft
1001 1.8 mycroft case DIOCGPART:
1002 1.8 mycroft ((struct partinfo *)data)->disklab = lp;
1003 1.8 mycroft ((struct partinfo *)data)->part =
1004 1.8 mycroft &lp->d_partitions[rdpart(dev)];
1005 1.8 mycroft return (0);
1006 1.8 mycroft
1007 1.8 mycroft case DIOCWLABEL:
1008 1.8 mycroft if ((flag & FWRITE) == 0)
1009 1.8 mycroft return (EBADF);
1010 1.8 mycroft if (*(int *)data)
1011 1.8 mycroft sc->sc_flags |= RDF_WLABEL;
1012 1.8 mycroft else
1013 1.8 mycroft sc->sc_flags &= ~RDF_WLABEL;
1014 1.8 mycroft return (0);
1015 1.8 mycroft
1016 1.8 mycroft case DIOCSDINFO:
1017 1.8 mycroft if ((flag & FWRITE) == 0)
1018 1.8 mycroft return (EBADF);
1019 1.8 mycroft return (setdisklabel(lp, (struct disklabel *)data,
1020 1.8 mycroft (sc->sc_flags & RDF_WLABEL) ? 0
1021 1.8 mycroft : sc->sc_info.ri_open,
1022 1.8 mycroft (struct cpu_disklabel *)0));
1023 1.8 mycroft
1024 1.8 mycroft case DIOCWDINFO:
1025 1.8 mycroft if ((flag & FWRITE) == 0)
1026 1.8 mycroft return (EBADF);
1027 1.8 mycroft error = setdisklabel(lp, (struct disklabel *)data,
1028 1.8 mycroft (sc->sc_flags & RDF_WLABEL) ? 0
1029 1.8 mycroft : sc->sc_info.ri_open,
1030 1.8 mycroft (struct cpu_disklabel *)0);
1031 1.8 mycroft if (error)
1032 1.8 mycroft return (error);
1033 1.8 mycroft flags = sc->sc_flags;
1034 1.8 mycroft sc->sc_flags = RDF_ALIVE | RDF_WLABEL;
1035 1.8 mycroft error = writedisklabel(rdlabdev(dev), rdstrategy, lp,
1036 1.8 mycroft (struct cpu_disklabel *)0);
1037 1.8 mycroft sc->sc_flags = flags;
1038 1.8 mycroft return (error);
1039 1.8 mycroft }
1040 1.1 cgd return(EINVAL);
1041 1.1 cgd }
1042 1.1 cgd
1043 1.1 cgd int
1044 1.1 cgd rdsize(dev)
1045 1.1 cgd dev_t dev;
1046 1.1 cgd {
1047 1.1 cgd register int unit = rdunit(dev);
1048 1.1 cgd register struct rd_softc *rs = &rd_softc[unit];
1049 1.8 mycroft int psize, didopen = 0;
1050 1.1 cgd
1051 1.1 cgd if (unit >= NRD || (rs->sc_flags & RDF_ALIVE) == 0)
1052 1.1 cgd return(-1);
1053 1.8 mycroft
1054 1.8 mycroft /*
1055 1.8 mycroft * We get called very early on (via swapconf)
1056 1.8 mycroft * without the device being open so we may need
1057 1.8 mycroft * to handle it here.
1058 1.8 mycroft */
1059 1.8 mycroft if (rs->sc_info.ri_open == 0) {
1060 1.8 mycroft if (rdopen(dev, FREAD|FWRITE, S_IFBLK, NULL))
1061 1.8 mycroft return(-1);
1062 1.8 mycroft didopen = 1;
1063 1.8 mycroft }
1064 1.8 mycroft psize = rs->sc_info.ri_label.d_partitions[rdpart(dev)].p_size;
1065 1.8 mycroft if (didopen)
1066 1.8 mycroft (void) rdclose(dev, FREAD|FWRITE, S_IFBLK, NULL);
1067 1.8 mycroft return (psize);
1068 1.1 cgd }
1069 1.1 cgd
1070 1.1 cgd #ifdef DEBUG
1071 1.1 cgd rdprinterr(str, err, tab)
1072 1.1 cgd char *str;
1073 1.1 cgd short err;
1074 1.1 cgd char *tab[];
1075 1.1 cgd {
1076 1.1 cgd register int i;
1077 1.1 cgd int printed;
1078 1.1 cgd
1079 1.1 cgd if (err == 0)
1080 1.1 cgd return;
1081 1.1 cgd printf(" %s error field:", str, err);
1082 1.1 cgd printed = 0;
1083 1.1 cgd for (i = 0; i < 16; i++)
1084 1.1 cgd if (err & (0x8000 >> i))
1085 1.1 cgd printf("%s%s", printed++ ? " + " : " ", tab[i]);
1086 1.1 cgd printf("\n");
1087 1.1 cgd }
1088 1.1 cgd #endif
1089 1.1 cgd
1090 1.1 cgd /*
1091 1.1 cgd * Non-interrupt driven, non-dma dump routine.
1092 1.1 cgd */
1093 1.1 cgd int
1094 1.1 cgd rddump(dev)
1095 1.1 cgd dev_t dev;
1096 1.1 cgd {
1097 1.1 cgd int part = rdpart(dev);
1098 1.1 cgd int unit = rdunit(dev);
1099 1.1 cgd register struct rd_softc *rs = &rd_softc[unit];
1100 1.1 cgd register struct hp_device *hp = rs->sc_hd;
1101 1.8 mycroft register struct partition *pinfo;
1102 1.1 cgd register daddr_t baddr;
1103 1.1 cgd register int maddr, pages, i;
1104 1.1 cgd char stat;
1105 1.1 cgd extern int lowram, dumpsize;
1106 1.1 cgd #ifdef DEBUG
1107 1.1 cgd extern int pmapdebug;
1108 1.1 cgd pmapdebug = 0;
1109 1.1 cgd #endif
1110 1.1 cgd
1111 1.1 cgd /* is drive ok? */
1112 1.1 cgd if (unit >= NRD || (rs->sc_flags & RDF_ALIVE) == 0)
1113 1.1 cgd return (ENXIO);
1114 1.8 mycroft pinfo = &rs->sc_info.ri_label.d_partitions[part];
1115 1.8 mycroft /* dump parameters in range? */
1116 1.8 mycroft if (dumplo < 0 || dumplo >= pinfo->p_size ||
1117 1.8 mycroft pinfo->p_fstype != FS_SWAP)
1118 1.8 mycroft return (EINVAL);
1119 1.8 mycroft pages = dumpsize;
1120 1.8 mycroft if (dumplo + ctod(pages) > pinfo->p_size)
1121 1.8 mycroft pages = dtoc(pinfo->p_size - dumplo);
1122 1.8 mycroft maddr = lowram;
1123 1.8 mycroft baddr = dumplo + pinfo->p_offset;
1124 1.1 cgd /* HPIB idle? */
1125 1.1 cgd if (!hpibreq(&rs->sc_dq)) {
1126 1.1 cgd hpibreset(hp->hp_ctlr);
1127 1.1 cgd rdreset(rs, rs->sc_hd);
1128 1.1 cgd printf("[ drive %d reset ] ", unit);
1129 1.1 cgd }
1130 1.1 cgd for (i = 0; i < pages; i++) {
1131 1.1 cgd #define NPGMB (1024*1024/NBPG)
1132 1.1 cgd /* print out how many Mbs we have dumped */
1133 1.1 cgd if (i && (i % NPGMB) == 0)
1134 1.1 cgd printf("%d ", i / NPGMB);
1135 1.1 cgd #undef NPBMG
1136 1.1 cgd rs->sc_ioc.c_unit = C_SUNIT(rs->sc_punit);
1137 1.1 cgd rs->sc_ioc.c_volume = C_SVOL(0);
1138 1.1 cgd rs->sc_ioc.c_saddr = C_SADDR;
1139 1.1 cgd rs->sc_ioc.c_hiaddr = 0;
1140 1.1 cgd rs->sc_ioc.c_addr = RDBTOS(baddr);
1141 1.1 cgd rs->sc_ioc.c_nop2 = C_NOP;
1142 1.1 cgd rs->sc_ioc.c_slen = C_SLEN;
1143 1.1 cgd rs->sc_ioc.c_len = NBPG;
1144 1.1 cgd rs->sc_ioc.c_cmd = C_WRITE;
1145 1.1 cgd hpibsend(hp->hp_ctlr, hp->hp_slave, C_CMD,
1146 1.1 cgd &rs->sc_ioc.c_unit, sizeof(rs->sc_ioc)-2);
1147 1.8 mycroft if (hpibswait(hp->hp_ctlr, hp->hp_slave))
1148 1.1 cgd return (EIO);
1149 1.11 mycroft pmap_enter(pmap_kernel(), (vm_offset_t)vmmap, maddr,
1150 1.8 mycroft VM_PROT_READ, TRUE);
1151 1.1 cgd hpibsend(hp->hp_ctlr, hp->hp_slave, C_EXEC, vmmap, NBPG);
1152 1.8 mycroft (void) hpibswait(hp->hp_ctlr, hp->hp_slave);
1153 1.1 cgd hpibrecv(hp->hp_ctlr, hp->hp_slave, C_QSTAT, &stat, 1);
1154 1.8 mycroft if (stat)
1155 1.1 cgd return (EIO);
1156 1.1 cgd maddr += NBPG;
1157 1.1 cgd baddr += ctod(1);
1158 1.1 cgd }
1159 1.1 cgd return (0);
1160 1.1 cgd }
1161 1.1 cgd #endif
1162