hdc9224.c revision 1.29 1 1.29 drochner /* $NetBSD: hdc9224.c,v 1.29 2003/06/18 08:58:42 drochner Exp $ */
2 1.1 ragge /*
3 1.1 ragge * Copyright (c) 1996 Ludd, University of Lule}, Sweden.
4 1.1 ragge * All rights reserved.
5 1.1 ragge *
6 1.1 ragge * This code is derived from software contributed to Ludd by Bertram Barth.
7 1.1 ragge *
8 1.1 ragge * Redistribution and use in source and binary forms, with or without
9 1.1 ragge * modification, are permitted provided that the following conditions
10 1.1 ragge * are met:
11 1.1 ragge * 1. Redistributions of source code must retain the above copyright
12 1.1 ragge * notice, this list of conditions and the following disclaimer.
13 1.1 ragge * 2. Redistributions in binary form must reproduce the above copyright
14 1.1 ragge * notice, this list of conditions and the following disclaimer in the
15 1.1 ragge * documentation and/or other materials provided with the distribution.
16 1.1 ragge * 3. All advertising materials mentioning features or use of this software
17 1.1 ragge * must display the following acknowledgement:
18 1.1 ragge * This product includes software developed at Ludd, University of
19 1.1 ragge * Lule}, Sweden and its contributors.
20 1.1 ragge * 4. The name of the author may not be used to endorse or promote products
21 1.1 ragge * derived from this software without specific prior written permission
22 1.1 ragge *
23 1.1 ragge * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
24 1.1 ragge * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
25 1.1 ragge * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
26 1.1 ragge * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
27 1.1 ragge * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
28 1.1 ragge * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
29 1.1 ragge * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
30 1.1 ragge * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
31 1.1 ragge * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
32 1.1 ragge * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
33 1.1 ragge */
34 1.1 ragge
35 1.1 ragge /*
36 1.1 ragge * with much help from (in alphabetical order):
37 1.1 ragge * Jeremy
38 1.1 ragge * Roger Ivie
39 1.1 ragge * Rick Macklem
40 1.1 ragge * Mike Young
41 1.10 ragge *
42 1.10 ragge * Rewritten by Ragge 25 Jun 2000. New features:
43 1.10 ragge * - Uses interrupts instead of polling to signal ready.
44 1.10 ragge * - Can cooperate with the SCSI routines WRT. the DMA area.
45 1.10 ragge *
46 1.10 ragge * TODO:
47 1.10 ragge * - Floppy support missing.
48 1.10 ragge * - Bad block forwarding missing.
49 1.10 ragge * - Statistics collection.
50 1.1 ragge */
51 1.10 ragge #undef RDDEBUG
52 1.1 ragge
53 1.1 ragge #include <sys/param.h>
54 1.1 ragge #include <sys/systm.h>
55 1.1 ragge #include <sys/kernel.h>
56 1.1 ragge #include <sys/conf.h>
57 1.1 ragge #include <sys/file.h>
58 1.1 ragge #include <sys/stat.h>
59 1.1 ragge #include <sys/ioctl.h>
60 1.1 ragge #include <sys/buf.h>
61 1.1 ragge #include <sys/proc.h>
62 1.1 ragge #include <sys/user.h>
63 1.1 ragge #include <sys/device.h>
64 1.1 ragge #include <sys/disklabel.h>
65 1.1 ragge #include <sys/disk.h>
66 1.1 ragge #include <sys/syslog.h>
67 1.6 ragge #include <sys/reboot.h>
68 1.1 ragge
69 1.13 mrg #include <uvm/uvm_extern.h>
70 1.10 ragge
71 1.10 ragge #include <ufs/ufs/dinode.h> /* For BBSIZE */
72 1.10 ragge #include <ufs/ffs/fs.h>
73 1.10 ragge
74 1.1 ragge #include <machine/pte.h>
75 1.1 ragge #include <machine/sid.h>
76 1.1 ragge #include <machine/cpu.h>
77 1.1 ragge #include <machine/uvax.h>
78 1.1 ragge #include <machine/ka410.h>
79 1.1 ragge #include <machine/vsbus.h>
80 1.6 ragge #include <machine/rpb.h>
81 1.10 ragge #include <machine/scb.h>
82 1.10 ragge
83 1.10 ragge #include <dev/mscp/mscp.h> /* For DEC disk encoding */
84 1.1 ragge
85 1.1 ragge #include <vax/vsa/hdc9224.h>
86 1.1 ragge
87 1.10 ragge #include "ioconf.h"
88 1.10 ragge #include "locators.h"
89 1.1 ragge
90 1.1 ragge
91 1.1 ragge /*
92 1.1 ragge * on-disk geometry block
93 1.1 ragge */
94 1.1 ragge #define _aP __attribute__ ((packed)) /* force byte-alignment */
95 1.1 ragge struct rdgeom {
96 1.10 ragge char mbz[10]; /* 10 bytes of zero */
97 1.10 ragge long xbn_count _aP; /* number of XBNs */
98 1.10 ragge long dbn_count _aP; /* number of DBNs */
99 1.10 ragge long lbn_count _aP; /* number of LBNs (Logical-Block-Numbers) */
100 1.10 ragge long rbn_count _aP; /* number of RBNs (Replacement-Block-Numbers) */
101 1.10 ragge short nspt; /* number of sectors per track */
102 1.10 ragge short ntracks; /* number of tracks */
103 1.10 ragge short ncylinders; /* number of cylinders */
104 1.10 ragge short precomp; /* first cylinder for write precompensation */
105 1.10 ragge short reduced; /* first cylinder for reduced write current */
106 1.10 ragge short seek_rate; /* seek rate or zero for buffered seeks */
107 1.10 ragge short crc_eec; /* 0 if CRC, 1 if ECC is being used */
108 1.10 ragge short rct; /* "replacement control table" (RCT) */
109 1.10 ragge short rct_ncopies; /* number of copies of the RCT */
110 1.10 ragge long media_id _aP; /* media identifier */
111 1.10 ragge short interleave; /* sector-to-sector interleave */
112 1.10 ragge short headskew; /* head-to-head skew */
113 1.10 ragge short cylskew; /* cylinder-to-cylinder skew */
114 1.10 ragge short gap0_size; /* size of GAP 0 in the MFM format */
115 1.10 ragge short gap1_size; /* size of GAP 1 in the MFM format */
116 1.10 ragge short gap2_size; /* size of GAP 2 in the MFM format */
117 1.10 ragge short gap3_size; /* size of GAP 3 in the MFM format */
118 1.10 ragge short sync_value; /* sync value used when formatting */
119 1.10 ragge char reserved[32]; /* reserved for use by the RQDX formatter */
120 1.10 ragge short serial_number; /* serial number */
121 1.1 ragge #if 0 /* we don't need these 412 useless bytes ... */
122 1.10 ragge char fill[412-2]; /* Filler bytes to the end of the block */
123 1.10 ragge short checksum; /* checksum over the XBN */
124 1.1 ragge #endif
125 1.1 ragge };
126 1.1 ragge
127 1.1 ragge /*
128 1.1 ragge * Software status
129 1.1 ragge */
130 1.1 ragge struct rdsoftc {
131 1.10 ragge struct device sc_dev; /* must be here! (pseudo-OOP:) */
132 1.10 ragge struct disk sc_disk; /* disklabel etc. */
133 1.10 ragge struct rdgeom sc_xbn; /* on-disk geometry information */
134 1.10 ragge int sc_drive; /* physical unit number */
135 1.1 ragge };
136 1.1 ragge
137 1.1 ragge struct hdcsoftc {
138 1.1 ragge struct device sc_dev; /* must be here (pseudo-OOP:) */
139 1.10 ragge struct evcnt sc_intrcnt;
140 1.10 ragge struct vsbus_dma sc_vd;
141 1.10 ragge vaddr_t sc_regs; /* register addresses */
142 1.18 hannken struct bufq_state sc_q;
143 1.10 ragge struct buf *sc_active;
144 1.1 ragge struct hdc9224_UDCreg sc_creg; /* (command) registers to be written */
145 1.1 ragge struct hdc9224_UDCreg sc_sreg; /* (status) registers being read */
146 1.10 ragge caddr_t sc_dmabase; /* */
147 1.10 ragge int sc_dmasize;
148 1.10 ragge caddr_t sc_bufaddr; /* Current in-core address */
149 1.10 ragge int sc_diskblk; /* Current block on disk */
150 1.10 ragge int sc_bytecnt; /* How much left to transfer */
151 1.10 ragge int sc_xfer; /* Current transfer size */
152 1.12 ragge int sc_retries;
153 1.10 ragge volatile u_char sc_status; /* last status from interrupt */
154 1.12 ragge char sc_intbit;
155 1.10 ragge };
156 1.10 ragge
157 1.10 ragge struct hdc_attach_args {
158 1.10 ragge int ha_drive;
159 1.1 ragge };
160 1.1 ragge
161 1.1 ragge /*
162 1.10 ragge * prototypes for (almost) all the internal routines
163 1.1 ragge */
164 1.10 ragge static int hdcmatch(struct device *, struct cfdata *, void *);
165 1.10 ragge static void hdcattach(struct device *, struct device *, void *);
166 1.10 ragge static int hdcprint(void *, const char *);
167 1.10 ragge static int rdmatch(struct device *, struct cfdata *, void *);
168 1.10 ragge static void rdattach(struct device *, struct device *, void *);
169 1.10 ragge static void hdcintr(void *);
170 1.10 ragge static int hdc_command(struct hdcsoftc *, int);
171 1.10 ragge static void rd_readgeom(struct hdcsoftc *, struct rdsoftc *);
172 1.10 ragge #ifdef RDDEBUG
173 1.10 ragge static void hdc_printgeom( struct rdgeom *);
174 1.10 ragge #endif
175 1.10 ragge static void hdc_writeregs(struct hdcsoftc *);
176 1.10 ragge static void hdcstart(struct hdcsoftc *, struct buf *);
177 1.10 ragge static int hdc_rdselect(struct hdcsoftc *, int);
178 1.10 ragge static void rdmakelabel(struct disklabel *, struct rdgeom *);
179 1.10 ragge static void hdc_writeregs(struct hdcsoftc *);
180 1.10 ragge static void hdc_readregs(struct hdcsoftc *);
181 1.10 ragge static void hdc_qstart(void *);
182 1.10 ragge
183 1.22 thorpej CFATTACH_DECL(hdc, sizeof(struct hdcsoftc),
184 1.23 thorpej hdcmatch, hdcattach, NULL, NULL);
185 1.1 ragge
186 1.22 thorpej CFATTACH_DECL(rd, sizeof(struct rdsoftc),
187 1.23 thorpej rdmatch, rdattach, NULL, NULL);
188 1.7 thorpej
189 1.19 gehenna dev_type_open(rdopen);
190 1.19 gehenna dev_type_close(rdclose);
191 1.19 gehenna dev_type_read(rdread);
192 1.19 gehenna dev_type_write(rdwrite);
193 1.19 gehenna dev_type_ioctl(rdioctl);
194 1.19 gehenna dev_type_strategy(rdstrategy);
195 1.19 gehenna dev_type_size(rdsize);
196 1.19 gehenna
197 1.19 gehenna const struct bdevsw rd_bdevsw = {
198 1.19 gehenna rdopen, rdclose, rdstrategy, rdioctl, nulldump, rdsize, D_DISK
199 1.19 gehenna };
200 1.19 gehenna
201 1.19 gehenna const struct cdevsw rd_cdevsw = {
202 1.19 gehenna rdopen, rdclose, rdread, rdwrite, rdioctl,
203 1.24 jdolecek nostop, notty, nopoll, nommap, nokqfilter, D_DISK
204 1.19 gehenna };
205 1.1 ragge
206 1.10 ragge /* At least 0.7 uS between register accesses */
207 1.10 ragge static int rd_dmasize, inq = 0;
208 1.10 ragge static int u;
209 1.17 matt #define WAIT asm("movl %0,%0;movl %0,%0;movl %0,%0; movl %0,%0" :: "m"(u))
210 1.10 ragge
211 1.10 ragge #define HDC_WREG(x) *(volatile char *)(sc->sc_regs) = (x)
212 1.10 ragge #define HDC_RREG *(volatile char *)(sc->sc_regs)
213 1.10 ragge #define HDC_WCMD(x) *(volatile char *)(sc->sc_regs + 4) = (x)
214 1.10 ragge #define HDC_RSTAT *(volatile char *)(sc->sc_regs + 4)
215 1.1 ragge
216 1.1 ragge /*
217 1.1 ragge * new-config's hdcmatch() is similiar to old-config's hdcprobe(),
218 1.1 ragge * thus we probe for the existence of the controller and reset it.
219 1.1 ragge * NB: we can't initialize the controller yet, since space for hdcsoftc
220 1.1 ragge * is not yet allocated. Thus we do this in hdcattach()...
221 1.1 ragge */
222 1.1 ragge int
223 1.10 ragge hdcmatch(struct device *parent, struct cfdata *cf, void *aux)
224 1.1 ragge {
225 1.10 ragge struct vsbus_attach_args *va = aux;
226 1.10 ragge volatile char *hdc_csr = (char *)va->va_addr;
227 1.10 ragge int i;
228 1.1 ragge
229 1.10 ragge u = 8; /* !!! - GCC */
230 1.1 ragge
231 1.10 ragge if (vax_boardtype == VAX_BTYP_49 || vax_boardtype == VAX_BTYP_46
232 1.14 ragge || vax_boardtype == VAX_BTYP_48 || vax_boardtype == VAX_BTYP_53)
233 1.10 ragge return 0;
234 1.10 ragge
235 1.10 ragge hdc_csr[4] = DKC_CMD_RESET; /* reset chip */
236 1.10 ragge for (i = 0; i < 1000; i++) {
237 1.10 ragge DELAY(1000);
238 1.10 ragge if (hdc_csr[4] & DKC_ST_DONE)
239 1.10 ragge break;
240 1.1 ragge }
241 1.10 ragge if (i == 100)
242 1.10 ragge return 0; /* No response to reset */
243 1.1 ragge
244 1.10 ragge hdc_csr[4] = DKC_CMD_SETREGPTR|UDC_TERM;
245 1.10 ragge WAIT;
246 1.10 ragge hdc_csr[0] = UDC_TC_CRCPRE|UDC_TC_INTDONE;
247 1.10 ragge WAIT;
248 1.10 ragge hdc_csr[4] = DKC_CMD_DRDESELECT; /* Should be harmless */
249 1.10 ragge DELAY(1000);
250 1.1 ragge return (1);
251 1.1 ragge }
252 1.1 ragge
253 1.1 ragge int
254 1.10 ragge hdcprint(void *aux, const char *name)
255 1.1 ragge {
256 1.1 ragge struct hdc_attach_args *ha = aux;
257 1.1 ragge
258 1.10 ragge if (name)
259 1.25 thorpej aprint_normal ("RD?? at %s drive %d", name, ha->ha_drive);
260 1.10 ragge return UNCONF;
261 1.1 ragge }
262 1.1 ragge
263 1.1 ragge /*
264 1.1 ragge * hdc_attach() probes for all possible devices
265 1.1 ragge */
266 1.1 ragge void
267 1.10 ragge hdcattach(struct device *parent, struct device *self, void *aux)
268 1.1 ragge {
269 1.10 ragge struct vsbus_attach_args *va = aux;
270 1.10 ragge struct hdcsoftc *sc = (void *)self;
271 1.1 ragge struct hdc_attach_args ha;
272 1.10 ragge int status, i;
273 1.1 ragge
274 1.4 christos printf ("\n");
275 1.1 ragge /*
276 1.10 ragge * Get interrupt vector, enable instrumentation.
277 1.1 ragge */
278 1.10 ragge scb_vecalloc(va->va_cvec, hdcintr, sc, SCB_ISTACK, &sc->sc_intrcnt);
279 1.10 ragge evcnt_attach_dynamic(&sc->sc_intrcnt, EVCNT_TYPE_INTR, NULL,
280 1.10 ragge self->dv_xname, "intr");
281 1.10 ragge
282 1.10 ragge sc->sc_regs = vax_map_physmem(va->va_paddr, 1);
283 1.10 ragge sc->sc_dmabase = (caddr_t)va->va_dmaaddr;
284 1.10 ragge sc->sc_dmasize = va->va_dmasize;
285 1.12 ragge sc->sc_intbit = va->va_maskno;
286 1.10 ragge rd_dmasize = min(MAXPHYS, sc->sc_dmasize); /* Used in rd_minphys */
287 1.10 ragge
288 1.10 ragge sc->sc_vd.vd_go = hdc_qstart;
289 1.10 ragge sc->sc_vd.vd_arg = sc;
290 1.10 ragge /*
291 1.10 ragge * Reset controller.
292 1.10 ragge */
293 1.10 ragge HDC_WCMD(DKC_CMD_RESET);
294 1.10 ragge DELAY(1000);
295 1.10 ragge status = HDC_RSTAT;
296 1.10 ragge if (status != (DKC_ST_DONE|DKC_TC_SUCCESS)) {
297 1.10 ragge printf("%s: RESET failed, status 0x%x\n",
298 1.10 ragge sc->sc_dev.dv_xname, status);
299 1.10 ragge return;
300 1.10 ragge }
301 1.18 hannken bufq_alloc(&sc->sc_q, BUFQ_DISKSORT|BUFQ_SORT_CYLINDER);
302 1.10 ragge
303 1.10 ragge /*
304 1.10 ragge * now probe for all possible hard drives
305 1.10 ragge */
306 1.10 ragge for (i = 0; i < 4; i++) {
307 1.10 ragge if (i == 2) /* Floppy, needs special handling */
308 1.10 ragge continue;
309 1.10 ragge HDC_WCMD(DKC_CMD_DRSELECT | i);
310 1.10 ragge DELAY(1000);
311 1.10 ragge status = HDC_RSTAT;
312 1.10 ragge ha.ha_drive = i;
313 1.10 ragge if ((status & DKC_ST_TERMCOD) == DKC_TC_SUCCESS)
314 1.10 ragge config_found(self, (void *)&ha, hdcprint);
315 1.1 ragge }
316 1.1 ragge }
317 1.1 ragge
318 1.1 ragge /*
319 1.1 ragge * rdmatch() probes for the existence of a RD-type disk/floppy
320 1.1 ragge */
321 1.1 ragge int
322 1.8 ragge rdmatch(parent, cf, aux)
323 1.1 ragge struct device *parent;
324 1.8 ragge struct cfdata *cf;
325 1.8 ragge void *aux;
326 1.1 ragge {
327 1.1 ragge struct hdc_attach_args *ha = aux;
328 1.1 ragge
329 1.10 ragge if (cf->cf_loc[HDCCF_DRIVE] != HDCCF_DRIVE_DEFAULT &&
330 1.10 ragge cf->cf_loc[HDCCF_DRIVE] != ha->ha_drive)
331 1.10 ragge return 0;
332 1.1 ragge
333 1.10 ragge if (ha->ha_drive == 2) /* Always floppy, not supported */
334 1.10 ragge return 0;
335 1.1 ragge
336 1.10 ragge return 1;
337 1.10 ragge }
338 1.1 ragge
339 1.1 ragge void
340 1.10 ragge rdattach(struct device *parent, struct device *self, void *aux)
341 1.1 ragge {
342 1.10 ragge struct hdcsoftc *sc = (void*)parent;
343 1.1 ragge struct rdsoftc *rd = (void*)self;
344 1.1 ragge struct hdc_attach_args *ha = aux;
345 1.10 ragge struct disklabel *dl;
346 1.27 dsl const char *msg;
347 1.1 ragge
348 1.1 ragge rd->sc_drive = ha->ha_drive;
349 1.1 ragge /*
350 1.1 ragge * Initialize and attach the disk structure.
351 1.1 ragge */
352 1.10 ragge rd->sc_disk.dk_name = rd->sc_dev.dv_xname;
353 1.10 ragge disk_attach(&rd->sc_disk);
354 1.10 ragge
355 1.1 ragge /*
356 1.1 ragge * if it's not a floppy then evaluate the on-disk geometry.
357 1.16 wiz * if necessary correct the label...
358 1.1 ragge */
359 1.10 ragge rd_readgeom(sc, rd);
360 1.10 ragge disk_printtype(rd->sc_drive, rd->sc_xbn.media_id);
361 1.10 ragge dl = rd->sc_disk.dk_label;
362 1.10 ragge rdmakelabel(dl, &rd->sc_xbn);
363 1.10 ragge printf("%s", rd->sc_dev.dv_xname);
364 1.19 gehenna msg = readdisklabel(MAKEDISKDEV(cdevsw_lookup_major(&rd_cdevsw),
365 1.19 gehenna rd->sc_dev.dv_unit, RAW_PART),
366 1.19 gehenna rdstrategy, dl, NULL);
367 1.10 ragge if (msg)
368 1.10 ragge printf(": %s", msg);
369 1.10 ragge printf(": size %d sectors\n", dl->d_secperunit);
370 1.10 ragge #ifdef RDDEBUG
371 1.10 ragge hdc_printgeom(&rd->sc_xbn);
372 1.10 ragge #endif
373 1.10 ragge }
374 1.10 ragge
375 1.10 ragge void
376 1.10 ragge hdcintr(void *arg)
377 1.10 ragge {
378 1.10 ragge struct hdcsoftc *sc = arg;
379 1.10 ragge struct buf *bp;
380 1.10 ragge
381 1.10 ragge sc->sc_status = HDC_RSTAT;
382 1.10 ragge if (sc->sc_active == 0)
383 1.10 ragge return; /* Complain? */
384 1.10 ragge
385 1.10 ragge if ((sc->sc_status & (DKC_ST_INTPEND|DKC_ST_DONE)) !=
386 1.10 ragge (DKC_ST_INTPEND|DKC_ST_DONE))
387 1.10 ragge return; /* Why spurious ints sometimes??? */
388 1.10 ragge
389 1.10 ragge bp = sc->sc_active;
390 1.10 ragge sc->sc_active = 0;
391 1.10 ragge if ((sc->sc_status & DKC_ST_TERMCOD) != DKC_TC_SUCCESS) {
392 1.10 ragge int i;
393 1.10 ragge u_char *g = (u_char *)&sc->sc_sreg;
394 1.12 ragge
395 1.12 ragge if (sc->sc_retries++ < 3) { /* Allow 3 retries */
396 1.12 ragge hdcstart(sc, bp);
397 1.12 ragge return;
398 1.12 ragge }
399 1.10 ragge printf("%s: failed, status 0x%x\n",
400 1.10 ragge sc->sc_dev.dv_xname, sc->sc_status);
401 1.10 ragge hdc_readregs(sc);
402 1.10 ragge for (i = 0; i < 10; i++)
403 1.10 ragge printf("%i: %x\n", i, g[i]);
404 1.10 ragge bp->b_flags |= B_ERROR;
405 1.10 ragge bp->b_error = ENXIO;
406 1.10 ragge bp->b_resid = bp->b_bcount;
407 1.10 ragge biodone(bp);
408 1.10 ragge vsbus_dma_intr();
409 1.10 ragge return;
410 1.10 ragge }
411 1.10 ragge
412 1.10 ragge if (bp->b_flags & B_READ) {
413 1.10 ragge vsbus_copytoproc(bp->b_proc, sc->sc_dmabase, sc->sc_bufaddr,
414 1.10 ragge sc->sc_xfer);
415 1.10 ragge }
416 1.12 ragge sc->sc_diskblk += (sc->sc_xfer/DEV_BSIZE);
417 1.12 ragge sc->sc_bytecnt -= sc->sc_xfer;
418 1.10 ragge sc->sc_bufaddr += sc->sc_xfer;
419 1.10 ragge
420 1.10 ragge if (sc->sc_bytecnt == 0) { /* Finished transfer */
421 1.10 ragge biodone(bp);
422 1.10 ragge vsbus_dma_intr();
423 1.10 ragge } else
424 1.10 ragge hdcstart(sc, bp);
425 1.1 ragge }
426 1.1 ragge
427 1.1 ragge /*
428 1.10 ragge *
429 1.1 ragge */
430 1.1 ragge void
431 1.10 ragge rdstrategy(struct buf *bp)
432 1.1 ragge {
433 1.10 ragge struct rdsoftc *rd;
434 1.10 ragge struct hdcsoftc *sc;
435 1.10 ragge struct disklabel *lp;
436 1.10 ragge int unit, s;
437 1.1 ragge
438 1.10 ragge unit = DISKUNIT(bp->b_dev);
439 1.10 ragge if (unit > rd_cd.cd_ndevs || (rd = rd_cd.cd_devs[unit]) == NULL) {
440 1.10 ragge bp->b_error = ENXIO;
441 1.10 ragge bp->b_flags |= B_ERROR;
442 1.10 ragge goto done;
443 1.10 ragge }
444 1.10 ragge sc = (void *)rd->sc_dev.dv_parent;
445 1.1 ragge
446 1.10 ragge lp = rd->sc_disk.dk_label;
447 1.28 thorpej if ((bounds_check_with_label(&rd->sc_disk, bp, 1)) <= 0)
448 1.10 ragge goto done;
449 1.1 ragge
450 1.1 ragge if (bp->b_bcount == 0)
451 1.1 ragge goto done;
452 1.10 ragge
453 1.10 ragge bp->b_rawblkno =
454 1.10 ragge bp->b_blkno + lp->d_partitions[DISKPART(bp->b_dev)].p_offset;
455 1.10 ragge bp->b_cylinder = bp->b_rawblkno / lp->d_secpercyl;
456 1.10 ragge
457 1.15 thorpej s = splbio();
458 1.18 hannken BUFQ_PUT(&sc->sc_q, bp);
459 1.10 ragge if (inq == 0) {
460 1.10 ragge inq = 1;
461 1.10 ragge vsbus_dma_start(&sc->sc_vd);
462 1.10 ragge }
463 1.10 ragge splx(s);
464 1.10 ragge return;
465 1.10 ragge
466 1.10 ragge done: biodone(bp);
467 1.1 ragge }
468 1.1 ragge
469 1.10 ragge void
470 1.10 ragge hdc_qstart(void *arg)
471 1.1 ragge {
472 1.10 ragge struct hdcsoftc *sc = arg;
473 1.1 ragge
474 1.10 ragge inq = 0;
475 1.1 ragge
476 1.10 ragge hdcstart(sc, 0);
477 1.18 hannken if (BUFQ_PEEK(&sc->sc_q)) {
478 1.10 ragge vsbus_dma_start(&sc->sc_vd); /* More to go */
479 1.10 ragge inq = 1;
480 1.10 ragge }
481 1.10 ragge }
482 1.1 ragge
483 1.10 ragge void
484 1.10 ragge hdcstart(struct hdcsoftc *sc, struct buf *ob)
485 1.10 ragge {
486 1.10 ragge struct hdc9224_UDCreg *p = &sc->sc_creg;
487 1.10 ragge struct disklabel *lp;
488 1.10 ragge struct rdsoftc *rd;
489 1.10 ragge struct buf *bp;
490 1.10 ragge int cn, sn, tn, bn, blks;
491 1.12 ragge volatile char ch;
492 1.1 ragge
493 1.10 ragge if (sc->sc_active)
494 1.10 ragge return; /* Already doing something */
495 1.1 ragge
496 1.1 ragge
497 1.10 ragge if (ob == 0) {
498 1.18 hannken bp = BUFQ_GET(&sc->sc_q);
499 1.10 ragge if (bp == NULL)
500 1.10 ragge return; /* Nothing to do */
501 1.10 ragge sc->sc_bufaddr = bp->b_data;
502 1.10 ragge sc->sc_diskblk = bp->b_rawblkno;
503 1.10 ragge sc->sc_bytecnt = bp->b_bcount;
504 1.12 ragge sc->sc_retries = 0;
505 1.10 ragge bp->b_resid = 0;
506 1.10 ragge } else
507 1.10 ragge bp = ob;
508 1.10 ragge
509 1.10 ragge rd = rd_cd.cd_devs[DISKUNIT(bp->b_dev)];
510 1.10 ragge hdc_rdselect(sc, rd->sc_drive);
511 1.10 ragge sc->sc_active = bp;
512 1.10 ragge
513 1.10 ragge bn = sc->sc_diskblk;
514 1.10 ragge lp = rd->sc_disk.dk_label;
515 1.10 ragge if (bn) {
516 1.10 ragge cn = bn / lp->d_secpercyl;
517 1.10 ragge sn = bn % lp->d_secpercyl;
518 1.10 ragge tn = sn / lp->d_nsectors;
519 1.10 ragge sn = sn % lp->d_nsectors;
520 1.10 ragge } else
521 1.10 ragge cn = sn = tn = 0;
522 1.10 ragge
523 1.10 ragge cn++; /* first cylinder is reserved */
524 1.10 ragge
525 1.10 ragge bzero(p, sizeof(struct hdc9224_UDCreg));
526 1.10 ragge
527 1.10 ragge /*
528 1.10 ragge * Tricky thing: the controller do itself only increase the sector
529 1.10 ragge * number, not the track or cylinder number. Therefore the driver
530 1.10 ragge * is not allowed to have transfers that crosses track boundaries.
531 1.10 ragge */
532 1.10 ragge blks = sc->sc_bytecnt/DEV_BSIZE;
533 1.10 ragge if ((sn + blks) > lp->d_nsectors)
534 1.10 ragge blks = lp->d_nsectors - sn;
535 1.10 ragge
536 1.10 ragge p->udc_dsect = sn;
537 1.10 ragge p->udc_dcyl = cn & 0xff;
538 1.10 ragge p->udc_dhead = ((cn >> 4) & 0x70) | tn;
539 1.10 ragge p->udc_scnt = blks;
540 1.10 ragge
541 1.10 ragge p->udc_rtcnt = UDC_RC_RTRYCNT;
542 1.10 ragge p->udc_mode = UDC_MD_HDD;
543 1.10 ragge p->udc_term = UDC_TC_CRCPRE|UDC_TC_INTDONE|UDC_TC_TDELDAT|UDC_TC_TWRFLT;
544 1.10 ragge hdc_writeregs(sc);
545 1.10 ragge
546 1.10 ragge /* Count up vars */
547 1.10 ragge sc->sc_xfer = blks * DEV_BSIZE;
548 1.12 ragge
549 1.12 ragge ch = HDC_RSTAT; /* Avoid pending interrupts */
550 1.12 ragge WAIT;
551 1.12 ragge vsbus_clrintr(sc->sc_intbit); /* Clear pending int's */
552 1.10 ragge
553 1.10 ragge if (bp->b_flags & B_READ) {
554 1.10 ragge HDC_WCMD(DKC_CMD_READ_HDD);
555 1.10 ragge } else {
556 1.10 ragge vsbus_copyfromproc(bp->b_proc, sc->sc_bufaddr, sc->sc_dmabase,
557 1.10 ragge sc->sc_xfer);
558 1.10 ragge HDC_WCMD(DKC_CMD_WRITE_HDD);
559 1.10 ragge }
560 1.10 ragge }
561 1.1 ragge
562 1.10 ragge void
563 1.10 ragge rd_readgeom(struct hdcsoftc *sc, struct rdsoftc *rd)
564 1.10 ragge {
565 1.10 ragge struct hdc9224_UDCreg *p = &sc->sc_creg;
566 1.1 ragge
567 1.10 ragge hdc_rdselect(sc, rd->sc_drive); /* select drive right now */
568 1.1 ragge
569 1.10 ragge bzero(p, sizeof(struct hdc9224_UDCreg));
570 1.1 ragge
571 1.10 ragge p->udc_scnt = 1;
572 1.10 ragge p->udc_rtcnt = UDC_RC_RTRYCNT;
573 1.10 ragge p->udc_mode = UDC_MD_HDD;
574 1.10 ragge p->udc_term = UDC_TC_CRCPRE|UDC_TC_INTDONE|UDC_TC_TDELDAT|UDC_TC_TWPROT;
575 1.10 ragge hdc_writeregs(sc);
576 1.10 ragge sc->sc_status = 0;
577 1.10 ragge HDC_WCMD(DKC_CMD_READ_HDD|2);
578 1.10 ragge while ((sc->sc_status & DKC_ST_INTPEND) == 0)
579 1.10 ragge ;
580 1.10 ragge bcopy(sc->sc_dmabase, &rd->sc_xbn, sizeof(struct rdgeom));
581 1.1 ragge }
582 1.1 ragge
583 1.10 ragge #ifdef RDDEBUG
584 1.1 ragge /*
585 1.1 ragge * display the contents of the on-disk geometry structure
586 1.1 ragge */
587 1.9 ragge void
588 1.1 ragge hdc_printgeom(p)
589 1.1 ragge struct rdgeom *p;
590 1.1 ragge {
591 1.9 ragge printf ("**DiskData** XBNs: %ld, DBNs: %ld, LBNs: %ld, RBNs: %ld\n",
592 1.1 ragge p->xbn_count, p->dbn_count, p->lbn_count, p->rbn_count);
593 1.4 christos printf ("sec/track: %d, tracks: %d, cyl: %d, precomp/reduced: %d/%d\n",
594 1.1 ragge p->nspt, p->ntracks, p->ncylinders, p->precomp, p->reduced);
595 1.4 christos printf ("seek-rate: %d, crc/eec: %s, RCT: %d, RCT-copies: %d\n",
596 1.1 ragge p->seek_rate, p->crc_eec?"EEC":"CRC", p->rct, p->rct_ncopies);
597 1.10 ragge printf ("media-ID: %lx, interleave: %d, headskew: %d, cylskew: %d\n",
598 1.10 ragge p->media_id, p->interleave, p->headskew, p->cylskew);
599 1.4 christos printf ("gap0: %d, gap1: %d, gap2: %d, gap3: %d, sync-value: %d\n",
600 1.1 ragge p->gap0_size, p->gap1_size, p->gap2_size, p->gap3_size,
601 1.1 ragge p->sync_value);
602 1.1 ragge }
603 1.1 ragge #endif
604 1.1 ragge
605 1.1 ragge /*
606 1.10 ragge * Return the size of a partition, if known, or -1 if not.
607 1.1 ragge */
608 1.1 ragge int
609 1.10 ragge rdsize(dev_t dev)
610 1.1 ragge {
611 1.1 ragge struct rdsoftc *rd;
612 1.10 ragge int unit = DISKUNIT(dev);
613 1.1 ragge int size;
614 1.1 ragge
615 1.10 ragge if (unit >= rd_cd.cd_ndevs || rd_cd.cd_devs[unit] == 0)
616 1.10 ragge return -1;
617 1.10 ragge rd = rd_cd.cd_devs[unit];
618 1.10 ragge size = rd->sc_disk.dk_label->d_partitions[DISKPART(dev)].p_size *
619 1.10 ragge (rd->sc_disk.dk_label->d_secsize / DEV_BSIZE);
620 1.1 ragge
621 1.1 ragge return (size);
622 1.1 ragge }
623 1.1 ragge
624 1.1 ragge /*
625 1.1 ragge *
626 1.1 ragge */
627 1.1 ragge int
628 1.10 ragge rdopen(dev_t dev, int flag, int fmt, struct proc *p)
629 1.1 ragge {
630 1.1 ragge struct rdsoftc *rd;
631 1.10 ragge int unit, part;
632 1.1 ragge
633 1.10 ragge unit = DISKUNIT(dev);
634 1.10 ragge if (unit >= rd_cd.cd_ndevs)
635 1.10 ragge return ENXIO;
636 1.10 ragge rd = rd_cd.cd_devs[unit];
637 1.10 ragge if (rd == 0)
638 1.10 ragge return ENXIO;
639 1.1 ragge
640 1.10 ragge part = DISKPART(dev);
641 1.10 ragge if (part >= rd->sc_disk.dk_label->d_npartitions)
642 1.1 ragge return ENXIO;
643 1.10 ragge
644 1.10 ragge switch (fmt) {
645 1.10 ragge case S_IFCHR:
646 1.10 ragge rd->sc_disk.dk_copenmask |= (1 << part);
647 1.10 ragge break;
648 1.10 ragge case S_IFBLK:
649 1.10 ragge rd->sc_disk.dk_bopenmask |= (1 << part);
650 1.10 ragge break;
651 1.1 ragge }
652 1.10 ragge rd->sc_disk.dk_openmask =
653 1.10 ragge rd->sc_disk.dk_copenmask | rd->sc_disk.dk_bopenmask;
654 1.1 ragge
655 1.10 ragge return 0;
656 1.1 ragge }
657 1.1 ragge
658 1.1 ragge /*
659 1.1 ragge *
660 1.1 ragge */
661 1.1 ragge int
662 1.10 ragge rdclose(dev_t dev, int flag, int fmt, struct proc *p)
663 1.1 ragge {
664 1.10 ragge struct rdsoftc *rd;
665 1.10 ragge int part;
666 1.10 ragge
667 1.10 ragge rd = rd_cd.cd_devs[DISKUNIT(dev)];
668 1.10 ragge part = DISKPART(dev);
669 1.10 ragge
670 1.10 ragge switch (fmt) {
671 1.10 ragge case S_IFCHR:
672 1.10 ragge rd->sc_disk.dk_copenmask &= ~(1 << part);
673 1.10 ragge break;
674 1.10 ragge case S_IFBLK:
675 1.10 ragge rd->sc_disk.dk_bopenmask &= ~(1 << part);
676 1.10 ragge break;
677 1.10 ragge }
678 1.10 ragge rd->sc_disk.dk_openmask =
679 1.10 ragge rd->sc_disk.dk_copenmask | rd->sc_disk.dk_bopenmask;
680 1.10 ragge
681 1.1 ragge return (0);
682 1.1 ragge }
683 1.1 ragge
684 1.1 ragge /*
685 1.1 ragge *
686 1.1 ragge */
687 1.1 ragge int
688 1.10 ragge rdioctl(dev_t dev, u_long cmd, caddr_t addr, int flag, struct proc *p)
689 1.1 ragge {
690 1.10 ragge struct rdsoftc *rd = rd_cd.cd_devs[DISKUNIT(dev)];
691 1.10 ragge struct disklabel *lp = rd->sc_disk.dk_label;
692 1.10 ragge int err = 0;
693 1.1 ragge
694 1.1 ragge switch (cmd) {
695 1.1 ragge case DIOCGDINFO:
696 1.10 ragge bcopy(lp, addr, sizeof (struct disklabel));
697 1.10 ragge break;
698 1.1 ragge
699 1.1 ragge case DIOCGPART:
700 1.10 ragge ((struct partinfo *)addr)->disklab = lp;
701 1.10 ragge ((struct partinfo *)addr)->part =
702 1.10 ragge &lp->d_partitions[DISKPART(dev)];
703 1.10 ragge break;
704 1.1 ragge
705 1.1 ragge case DIOCWDINFO:
706 1.1 ragge case DIOCSDINFO:
707 1.1 ragge if ((flag & FWRITE) == 0)
708 1.1 ragge return EBADF;
709 1.10 ragge else
710 1.10 ragge err = (cmd == DIOCSDINFO ?
711 1.10 ragge setdisklabel(lp, (struct disklabel *)addr, 0, 0) :
712 1.10 ragge writedisklabel(dev, rdstrategy, lp, 0));
713 1.10 ragge break;
714 1.1 ragge
715 1.10 ragge case DIOCGDEFLABEL:
716 1.10 ragge bzero(lp, sizeof(struct disklabel));
717 1.10 ragge rdmakelabel(lp, &rd->sc_xbn);
718 1.10 ragge break;
719 1.1 ragge
720 1.1 ragge case DIOCWLABEL:
721 1.1 ragge if ((flag & FWRITE) == 0)
722 1.10 ragge err = EBADF;
723 1.10 ragge break;
724 1.10 ragge
725 1.1 ragge default:
726 1.10 ragge err = ENOTTY;
727 1.1 ragge }
728 1.10 ragge return err;
729 1.1 ragge }
730 1.1 ragge
731 1.1 ragge /*
732 1.1 ragge *
733 1.1 ragge */
734 1.1 ragge int
735 1.10 ragge rdread(dev_t dev, struct uio *uio, int flag)
736 1.1 ragge {
737 1.10 ragge return (physio (rdstrategy, NULL, dev, B_READ, minphys, uio));
738 1.1 ragge }
739 1.1 ragge
740 1.1 ragge /*
741 1.1 ragge *
742 1.1 ragge */
743 1.1 ragge int
744 1.10 ragge rdwrite(dev_t dev, struct uio *uio, int flag)
745 1.1 ragge {
746 1.10 ragge return (physio (rdstrategy, NULL, dev, B_WRITE, minphys, uio));
747 1.1 ragge }
748 1.1 ragge
749 1.1 ragge /*
750 1.1 ragge * we have to wait 0.7 usec between two accesses to any of the
751 1.1 ragge * dkc-registers, on a VS2000 with 1 MIPS, this is roughly one
752 1.1 ragge * instruction. Thus the loop-overhead will be enough...
753 1.1 ragge */
754 1.10 ragge static void
755 1.10 ragge hdc_readregs(struct hdcsoftc *sc)
756 1.1 ragge {
757 1.1 ragge int i;
758 1.1 ragge char *p;
759 1.1 ragge
760 1.10 ragge HDC_WCMD(DKC_CMD_SETREGPTR);
761 1.10 ragge WAIT;
762 1.1 ragge p = (void*)&sc->sc_sreg;
763 1.10 ragge for (i=0; i<10; i++) {
764 1.10 ragge *p++ = HDC_RREG; /* dkc_reg auto-increments */
765 1.10 ragge WAIT;
766 1.10 ragge }
767 1.1 ragge }
768 1.1 ragge
769 1.10 ragge static void
770 1.10 ragge hdc_writeregs(struct hdcsoftc *sc)
771 1.1 ragge {
772 1.1 ragge int i;
773 1.1 ragge char *p;
774 1.1 ragge
775 1.10 ragge HDC_WCMD(DKC_CMD_SETREGPTR);
776 1.1 ragge p = (void*)&sc->sc_creg;
777 1.10 ragge for (i=0; i<10; i++) {
778 1.10 ragge HDC_WREG(*p++); /* dkc_reg auto-increments */
779 1.10 ragge WAIT;
780 1.10 ragge }
781 1.1 ragge }
782 1.1 ragge
783 1.1 ragge /*
784 1.1 ragge * hdc_command() issues a command and polls the intreq-register
785 1.1 ragge * to find when command has completed
786 1.1 ragge */
787 1.1 ragge int
788 1.10 ragge hdc_command(struct hdcsoftc *sc, int cmd)
789 1.1 ragge {
790 1.1 ragge hdc_writeregs(sc); /* write the prepared registers */
791 1.10 ragge HDC_WCMD(cmd);
792 1.10 ragge WAIT;
793 1.1 ragge return (0);
794 1.1 ragge }
795 1.1 ragge
796 1.1 ragge int
797 1.10 ragge hdc_rdselect(struct hdcsoftc *sc, int unit)
798 1.1 ragge {
799 1.10 ragge struct hdc9224_UDCreg *p = &sc->sc_creg;
800 1.1 ragge int error;
801 1.1 ragge
802 1.1 ragge /*
803 1.1 ragge * bring "creg" in some known-to-work state and
804 1.1 ragge * select the drive with the DRIVE SELECT command.
805 1.1 ragge */
806 1.10 ragge bzero(p, sizeof(struct hdc9224_UDCreg));
807 1.1 ragge
808 1.1 ragge p->udc_rtcnt = UDC_RC_HDD_READ;
809 1.1 ragge p->udc_mode = UDC_MD_HDD;
810 1.1 ragge p->udc_term = UDC_TC_HDD;
811 1.1 ragge
812 1.10 ragge error = hdc_command(sc, DKC_CMD_DRSEL_HDD | unit);
813 1.10 ragge
814 1.1 ragge return (error);
815 1.1 ragge }
816 1.1 ragge
817 1.10 ragge void
818 1.10 ragge rdmakelabel(struct disklabel *dl, struct rdgeom *g)
819 1.1 ragge {
820 1.10 ragge int n, p = 0;
821 1.1 ragge
822 1.10 ragge dl->d_bbsize = BBSIZE;
823 1.26 he dl->d_sbsize = SBLOCKSIZE;
824 1.10 ragge dl->d_typename[p++] = MSCP_MID_CHAR(2, g->media_id);
825 1.10 ragge dl->d_typename[p++] = MSCP_MID_CHAR(1, g->media_id);
826 1.10 ragge if (MSCP_MID_ECH(0, g->media_id))
827 1.10 ragge dl->d_typename[p++] = MSCP_MID_CHAR(0, g->media_id);
828 1.10 ragge n = MSCP_MID_NUM(g->media_id);
829 1.10 ragge if (n > 99) {
830 1.10 ragge dl->d_typename[p++] = '1';
831 1.10 ragge n -= 100;
832 1.10 ragge }
833 1.10 ragge if (n > 9) {
834 1.10 ragge dl->d_typename[p++] = (n / 10) + '0';
835 1.10 ragge n %= 10;
836 1.10 ragge }
837 1.10 ragge dl->d_typename[p++] = n + '0';
838 1.10 ragge dl->d_typename[p] = 0;
839 1.10 ragge dl->d_type = DTYPE_MSCP; /* XXX - what to use here??? */
840 1.10 ragge dl->d_rpm = 3600;
841 1.10 ragge dl->d_secsize = DEV_BSIZE;
842 1.10 ragge
843 1.10 ragge dl->d_secperunit = g->lbn_count;
844 1.10 ragge dl->d_nsectors = g->nspt;
845 1.10 ragge dl->d_ntracks = g->ntracks;
846 1.10 ragge dl->d_secpercyl = dl->d_nsectors * dl->d_ntracks;
847 1.10 ragge dl->d_ncylinders = dl->d_secperunit / dl->d_secpercyl;
848 1.10 ragge
849 1.10 ragge dl->d_npartitions = MAXPARTITIONS;
850 1.10 ragge dl->d_partitions[0].p_size = dl->d_partitions[2].p_size =
851 1.10 ragge dl->d_secperunit;
852 1.10 ragge dl->d_partitions[0].p_offset = dl->d_partitions[2].p_offset = 0;
853 1.10 ragge dl->d_interleave = dl->d_headswitch = 1;
854 1.10 ragge dl->d_magic = dl->d_magic2 = DISKMAGIC;
855 1.10 ragge dl->d_checksum = dkcksum(dl);
856 1.1 ragge }
857