xy.c revision 1.27 1 1.27 fvdl /* $NetBSD: xy.c,v 1.27 2000/06/29 19:27:56 fvdl Exp $ */
2 1.1 pk
3 1.1 pk /*
4 1.1 pk *
5 1.1 pk * Copyright (c) 1995 Charles D. Cranor
6 1.1 pk * All rights reserved.
7 1.1 pk *
8 1.1 pk * Redistribution and use in source and binary forms, with or without
9 1.1 pk * modification, are permitted provided that the following conditions
10 1.1 pk * are met:
11 1.1 pk * 1. Redistributions of source code must retain the above copyright
12 1.1 pk * notice, this list of conditions and the following disclaimer.
13 1.1 pk * 2. Redistributions in binary form must reproduce the above copyright
14 1.1 pk * notice, this list of conditions and the following disclaimer in the
15 1.1 pk * documentation and/or other materials provided with the distribution.
16 1.1 pk * 3. All advertising materials mentioning features or use of this software
17 1.1 pk * must display the following acknowledgement:
18 1.1 pk * This product includes software developed by Charles D. Cranor.
19 1.1 pk * 4. The name of the author may not be used to endorse or promote products
20 1.1 pk * derived from this software without specific prior written permission.
21 1.1 pk *
22 1.1 pk * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
23 1.1 pk * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
24 1.1 pk * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
25 1.1 pk * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
26 1.1 pk * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
27 1.1 pk * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
28 1.1 pk * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
29 1.1 pk * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
30 1.1 pk * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
31 1.1 pk * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
32 1.1 pk */
33 1.1 pk
34 1.1 pk /*
35 1.1 pk *
36 1.1 pk * x y . c x y l o g i c s 4 5 0 / 4 5 1 s m d d r i v e r
37 1.1 pk *
38 1.1 pk * author: Chuck Cranor <chuck (at) ccrc.wustl.edu>
39 1.1 pk * started: 14-Sep-95
40 1.1 pk * references: [1] Xylogics Model 753 User's Manual
41 1.1 pk * part number: 166-753-001, Revision B, May 21, 1988.
42 1.1 pk * "Your Partner For Performance"
43 1.1 pk * [2] other NetBSD disk device drivers
44 1.1 pk * [3] Xylogics Model 450 User's Manual
45 1.1 pk * part number: 166-017-001, Revision B, 1983.
46 1.1 pk * [4] Addendum to Xylogics Model 450 Disk Controller User's
47 1.1 pk * Manual, Jan. 1985.
48 1.1 pk * [5] The 451 Controller, Rev. B3, September 2, 1986.
49 1.1 pk * [6] David Jones <dej (at) achilles.net>'s unfinished 450/451 driver
50 1.1 pk *
51 1.1 pk */
52 1.1 pk
53 1.1 pk #undef XYC_DEBUG /* full debug */
54 1.1 pk #undef XYC_DIAG /* extra sanity checks */
55 1.1 pk #if defined(DIAGNOSTIC) && !defined(XYC_DIAG)
56 1.1 pk #define XYC_DIAG /* link in with master DIAG option */
57 1.1 pk #endif
58 1.1 pk
59 1.1 pk #include <sys/param.h>
60 1.1 pk #include <sys/proc.h>
61 1.1 pk #include <sys/systm.h>
62 1.1 pk #include <sys/kernel.h>
63 1.1 pk #include <sys/file.h>
64 1.1 pk #include <sys/stat.h>
65 1.1 pk #include <sys/ioctl.h>
66 1.1 pk #include <sys/buf.h>
67 1.1 pk #include <sys/uio.h>
68 1.1 pk #include <sys/malloc.h>
69 1.1 pk #include <sys/device.h>
70 1.1 pk #include <sys/disklabel.h>
71 1.1 pk #include <sys/disk.h>
72 1.1 pk #include <sys/syslog.h>
73 1.1 pk #include <sys/dkbad.h>
74 1.1 pk #include <sys/conf.h>
75 1.1 pk
76 1.27 fvdl #include <uvm/uvm_extern.h>
77 1.1 pk
78 1.1 pk #include <machine/bus.h>
79 1.12 drochner #include <machine/intr.h>
80 1.9 mrg
81 1.25 chs #if defined(__sparc__) || defined(sun3)
82 1.9 mrg #include <dev/sun/disklabel.h>
83 1.11 pk #endif
84 1.1 pk
85 1.1 pk #include <dev/vme/vmevar.h>
86 1.12 drochner
87 1.1 pk #include <dev/vme/xyreg.h>
88 1.1 pk #include <dev/vme/xyvar.h>
89 1.1 pk #include <dev/vme/xio.h>
90 1.1 pk
91 1.1 pk #include "locators.h"
92 1.1 pk
93 1.1 pk /*
94 1.1 pk * macros
95 1.1 pk */
96 1.1 pk
97 1.1 pk /*
98 1.1 pk * XYC_GO: start iopb ADDR (DVMA addr in a u_long) on XYC
99 1.1 pk */
100 1.1 pk #define XYC_GO(XYC, ADDR) { \
101 1.1 pk (XYC)->xyc_addr_lo = ((ADDR) & 0xff); \
102 1.1 pk (ADDR) = ((ADDR) >> 8); \
103 1.1 pk (XYC)->xyc_addr_hi = ((ADDR) & 0xff); \
104 1.1 pk (ADDR) = ((ADDR) >> 8); \
105 1.1 pk (XYC)->xyc_reloc_lo = ((ADDR) & 0xff); \
106 1.1 pk (ADDR) = ((ADDR) >> 8); \
107 1.1 pk (XYC)->xyc_reloc_hi = (ADDR); \
108 1.1 pk (XYC)->xyc_csr = XYC_GBSY; /* go! */ \
109 1.1 pk }
110 1.1 pk
111 1.1 pk /*
112 1.1 pk * XYC_DONE: don't need IORQ, get error code and free (done after xyc_cmd)
113 1.1 pk */
114 1.1 pk
115 1.1 pk #define XYC_DONE(SC,ER) { \
116 1.1 pk if ((ER) == XY_ERR_AOK) { \
117 1.1 pk (ER) = (SC)->ciorq->errno; \
118 1.1 pk (SC)->ciorq->mode = XY_SUB_FREE; \
119 1.1 pk wakeup((SC)->ciorq); \
120 1.1 pk } \
121 1.1 pk }
122 1.1 pk
123 1.1 pk /*
124 1.1 pk * XYC_ADVANCE: advance iorq's pointers by a number of sectors
125 1.1 pk */
126 1.1 pk
127 1.1 pk #define XYC_ADVANCE(IORQ, N) { \
128 1.1 pk if (N) { \
129 1.1 pk (IORQ)->sectcnt -= (N); \
130 1.1 pk (IORQ)->blockno += (N); \
131 1.1 pk (IORQ)->dbuf += ((N)*XYFM_BPS); \
132 1.1 pk } \
133 1.1 pk }
134 1.1 pk
135 1.1 pk /*
136 1.1 pk * note - addresses you can sleep on:
137 1.1 pk * [1] & of xy_softc's "state" (waiting for a chance to attach a drive)
138 1.1 pk * [2] & an iorq (waiting for an XY_SUB_WAIT iorq to finish)
139 1.1 pk */
140 1.1 pk
141 1.1 pk
142 1.1 pk /*
143 1.1 pk * function prototypes
144 1.1 pk * "xyc_*" functions are internal, all others are external interfaces
145 1.1 pk */
146 1.1 pk
147 1.1 pk extern int pil_to_vme[]; /* from obio.c */
148 1.1 pk
149 1.1 pk /* internals */
150 1.1 pk struct xy_iopb *xyc_chain __P((struct xyc_softc *, struct xy_iorq *));
151 1.1 pk int xyc_cmd __P((struct xyc_softc *, int, int, int, int, int, char *, int));
152 1.1 pk char *xyc_e2str __P((int));
153 1.1 pk int xyc_entoact __P((int));
154 1.1 pk int xyc_error __P((struct xyc_softc *, struct xy_iorq *,
155 1.1 pk struct xy_iopb *, int));
156 1.1 pk int xyc_ioctlcmd __P((struct xy_softc *, dev_t dev, struct xd_iocmd *));
157 1.1 pk void xyc_perror __P((struct xy_iorq *, struct xy_iopb *, int));
158 1.1 pk int xyc_piodriver __P((struct xyc_softc *, struct xy_iorq *));
159 1.1 pk int xyc_remove_iorq __P((struct xyc_softc *));
160 1.1 pk int xyc_reset __P((struct xyc_softc *, int, struct xy_iorq *, int,
161 1.1 pk struct xy_softc *));
162 1.1 pk inline void xyc_rqinit __P((struct xy_iorq *, struct xyc_softc *,
163 1.1 pk struct xy_softc *, int, u_long, int,
164 1.1 pk caddr_t, struct buf *));
165 1.1 pk void xyc_rqtopb __P((struct xy_iorq *, struct xy_iopb *, int, int));
166 1.1 pk void xyc_start __P((struct xyc_softc *, struct xy_iorq *));
167 1.1 pk int xyc_startbuf __P((struct xyc_softc *, struct xy_softc *, struct buf *));
168 1.1 pk int xyc_submit_iorq __P((struct xyc_softc *, struct xy_iorq *, int));
169 1.1 pk void xyc_tick __P((void *));
170 1.1 pk int xyc_unbusy __P((struct xyc *, int));
171 1.1 pk void xyc_xyreset __P((struct xyc_softc *, struct xy_softc *));
172 1.19 pk int xy_dmamem_alloc(bus_dma_tag_t, bus_dmamap_t, bus_dma_segment_t *,
173 1.19 pk int *, bus_size_t, caddr_t *, bus_addr_t *);
174 1.19 pk void xy_dmamem_free(bus_dma_tag_t, bus_dmamap_t, bus_dma_segment_t *,
175 1.19 pk int, bus_size_t, caddr_t);
176 1.1 pk
177 1.1 pk /* machine interrupt hook */
178 1.1 pk int xycintr __P((void *));
179 1.1 pk
180 1.1 pk /* autoconf */
181 1.1 pk int xycmatch __P((struct device *, struct cfdata *, void *));
182 1.1 pk void xycattach __P((struct device *, struct device *, void *));
183 1.1 pk int xymatch __P((struct device *, struct cfdata *, void *));
184 1.1 pk void xyattach __P((struct device *, struct device *, void *));
185 1.12 drochner static int xyc_probe __P((void *, bus_space_tag_t, bus_space_handle_t));
186 1.1 pk
187 1.1 pk static void xydummystrat __P((struct buf *));
188 1.1 pk int xygetdisklabel __P((struct xy_softc *, void *));
189 1.1 pk
190 1.12 drochner bdev_decl(xy);
191 1.12 drochner cdev_decl(xy);
192 1.12 drochner
193 1.1 pk /*
194 1.3 thorpej * cfattach's: device driver interface to autoconfig
195 1.1 pk */
196 1.1 pk
197 1.1 pk struct cfattach xyc_ca = {
198 1.1 pk sizeof(struct xyc_softc), xycmatch, xycattach
199 1.1 pk };
200 1.1 pk
201 1.1 pk struct cfattach xy_ca = {
202 1.1 pk sizeof(struct xy_softc), xymatch, xyattach
203 1.1 pk };
204 1.1 pk
205 1.3 thorpej extern struct cfdriver xy_cd;
206 1.1 pk
207 1.1 pk struct xyc_attach_args { /* this is the "aux" args to xyattach */
208 1.1 pk int driveno; /* unit number */
209 1.1 pk int fullmode; /* submit mode */
210 1.1 pk int booting; /* are we booting or not? */
211 1.1 pk };
212 1.1 pk
213 1.1 pk /*
214 1.1 pk * dkdriver
215 1.1 pk */
216 1.1 pk
217 1.1 pk struct dkdriver xydkdriver = { xystrategy };
218 1.1 pk
219 1.1 pk /*
220 1.1 pk * start: disk label fix code (XXX)
221 1.1 pk */
222 1.1 pk
223 1.1 pk static void *xy_labeldata;
224 1.1 pk
225 1.1 pk static void
226 1.1 pk xydummystrat(bp)
227 1.1 pk struct buf *bp;
228 1.1 pk {
229 1.1 pk if (bp->b_bcount != XYFM_BPS)
230 1.1 pk panic("xydummystrat");
231 1.22 thorpej bcopy(xy_labeldata, bp->b_data, XYFM_BPS);
232 1.1 pk bp->b_flags |= B_DONE;
233 1.1 pk bp->b_flags &= ~B_BUSY;
234 1.1 pk }
235 1.1 pk
236 1.1 pk int
237 1.1 pk xygetdisklabel(xy, b)
238 1.1 pk struct xy_softc *xy;
239 1.1 pk void *b;
240 1.1 pk {
241 1.1 pk char *err;
242 1.25 chs #if defined(__sparc__) || defined(sun3)
243 1.1 pk struct sun_disklabel *sdl;
244 1.11 pk #endif
245 1.1 pk
246 1.1 pk /* We already have the label data in `b'; setup for dummy strategy */
247 1.1 pk xy_labeldata = b;
248 1.1 pk
249 1.1 pk /* Required parameter for readdisklabel() */
250 1.1 pk xy->sc_dk.dk_label->d_secsize = XYFM_BPS;
251 1.1 pk
252 1.1 pk err = readdisklabel(MAKEDISKDEV(0, xy->sc_dev.dv_unit, RAW_PART),
253 1.1 pk xydummystrat,
254 1.1 pk xy->sc_dk.dk_label, xy->sc_dk.dk_cpulabel);
255 1.1 pk if (err) {
256 1.1 pk printf("%s: %s\n", xy->sc_dev.dv_xname, err);
257 1.1 pk return(XY_ERR_FAIL);
258 1.1 pk }
259 1.1 pk
260 1.25 chs #if defined(__sparc__) || defined(sun3)
261 1.1 pk /* Ok, we have the label; fill in `pcyl' if there's SunOS magic */
262 1.1 pk sdl = (struct sun_disklabel *)xy->sc_dk.dk_cpulabel->cd_block;
263 1.11 pk if (sdl->sl_magic == SUN_DKMAGIC) {
264 1.1 pk xy->pcyl = sdl->sl_pcylinders;
265 1.11 pk } else
266 1.14 drochner #endif
267 1.11 pk {
268 1.1 pk printf("%s: WARNING: no `pcyl' in disk label.\n",
269 1.1 pk xy->sc_dev.dv_xname);
270 1.1 pk xy->pcyl = xy->sc_dk.dk_label->d_ncylinders +
271 1.1 pk xy->sc_dk.dk_label->d_acylinders;
272 1.1 pk printf("%s: WARNING: guessing pcyl=%d (ncyl+acyl)\n",
273 1.1 pk xy->sc_dev.dv_xname, xy->pcyl);
274 1.1 pk }
275 1.1 pk
276 1.1 pk xy->ncyl = xy->sc_dk.dk_label->d_ncylinders;
277 1.1 pk xy->acyl = xy->sc_dk.dk_label->d_acylinders;
278 1.1 pk xy->nhead = xy->sc_dk.dk_label->d_ntracks;
279 1.1 pk xy->nsect = xy->sc_dk.dk_label->d_nsectors;
280 1.1 pk xy->sectpercyl = xy->nhead * xy->nsect;
281 1.1 pk xy->sc_dk.dk_label->d_secsize = XYFM_BPS; /* not handled by
282 1.1 pk * sun->bsd */
283 1.1 pk return(XY_ERR_AOK);
284 1.1 pk }
285 1.1 pk
286 1.1 pk /*
287 1.1 pk * end: disk label fix code (XXX)
288 1.1 pk */
289 1.1 pk
290 1.1 pk /*
291 1.19 pk * Shorthand for allocating, mapping and loading a DMA buffer
292 1.19 pk */
293 1.19 pk int
294 1.19 pk xy_dmamem_alloc(tag, map, seg, nsegp, len, kvap, dmap)
295 1.19 pk bus_dma_tag_t tag;
296 1.19 pk bus_dmamap_t map;
297 1.19 pk bus_dma_segment_t *seg;
298 1.19 pk int *nsegp;
299 1.19 pk bus_size_t len;
300 1.19 pk caddr_t *kvap;
301 1.19 pk bus_addr_t *dmap;
302 1.19 pk {
303 1.19 pk int nseg;
304 1.19 pk int error;
305 1.19 pk
306 1.20 pk if ((error = bus_dmamem_alloc(tag, len, 0, 0,
307 1.19 pk seg, 1, &nseg, BUS_DMA_NOWAIT)) != 0) {
308 1.19 pk return (error);
309 1.19 pk }
310 1.19 pk
311 1.19 pk if ((error = bus_dmamap_load_raw(tag, map,
312 1.19 pk seg, nseg, len, BUS_DMA_NOWAIT)) != 0) {
313 1.19 pk bus_dmamem_free(tag, seg, nseg);
314 1.19 pk return (error);
315 1.19 pk }
316 1.19 pk
317 1.19 pk if ((error = bus_dmamem_map(tag, seg, nseg,
318 1.19 pk len, kvap,
319 1.19 pk BUS_DMA_NOWAIT|BUS_DMA_COHERENT)) != 0) {
320 1.19 pk bus_dmamap_unload(tag, map);
321 1.19 pk bus_dmamem_free(tag, seg, nseg);
322 1.19 pk return (error);
323 1.19 pk }
324 1.19 pk
325 1.19 pk *dmap = map->dm_segs[0].ds_addr;
326 1.19 pk *nsegp = nseg;
327 1.19 pk return (0);
328 1.19 pk }
329 1.19 pk
330 1.19 pk void
331 1.19 pk xy_dmamem_free(tag, map, seg, nseg, len, kva)
332 1.19 pk bus_dma_tag_t tag;
333 1.19 pk bus_dmamap_t map;
334 1.19 pk bus_dma_segment_t *seg;
335 1.19 pk int nseg;
336 1.19 pk bus_size_t len;
337 1.19 pk caddr_t kva;
338 1.19 pk {
339 1.19 pk
340 1.19 pk bus_dmamap_unload(tag, map);
341 1.19 pk bus_dmamem_unmap(tag, kva, len);
342 1.19 pk bus_dmamem_free(tag, seg, nseg);
343 1.19 pk }
344 1.19 pk
345 1.19 pk
346 1.19 pk /*
347 1.1 pk * a u t o c o n f i g f u n c t i o n s
348 1.1 pk */
349 1.1 pk
350 1.1 pk /*
351 1.1 pk * xycmatch: determine if xyc is present or not. we do a
352 1.1 pk * soft reset to detect the xyc.
353 1.1 pk */
354 1.6 pk int
355 1.12 drochner xyc_probe(arg, tag, handle)
356 1.6 pk void *arg;
357 1.12 drochner bus_space_tag_t tag;
358 1.12 drochner bus_space_handle_t handle;
359 1.6 pk {
360 1.12 drochner struct xyc *xyc = (void *)handle; /* XXX */
361 1.6 pk
362 1.12 drochner return ((xyc_unbusy(xyc, XYC_RESETUSEC) != XY_ERR_FAIL) ? 0 : EIO);
363 1.6 pk }
364 1.1 pk
365 1.1 pk int xycmatch(parent, cf, aux)
366 1.1 pk struct device *parent;
367 1.1 pk struct cfdata *cf;
368 1.1 pk void *aux;
369 1.1 pk {
370 1.1 pk struct vme_attach_args *va = aux;
371 1.12 drochner vme_chipset_tag_t ct = va->va_vct;
372 1.12 drochner vme_am_t mod;
373 1.12 drochner int error;
374 1.12 drochner
375 1.12 drochner mod = 0x2d; /* VME_AM_A16 | VME_AM_MBO | VME_AM_SUPER | VME_AM_DATA */
376 1.12 drochner if (vme_space_alloc(va->va_vct, va->r[0].offset, sizeof(struct xyc),
377 1.12 drochner mod))
378 1.12 drochner return (0);
379 1.12 drochner error = vme_probe(ct, va->r[0].offset, sizeof(struct xyc),
380 1.12 drochner mod, VME_D32, xyc_probe, 0);
381 1.12 drochner vme_space_free(va->va_vct, va->r[0].offset, sizeof(struct xyc), mod);
382 1.12 drochner
383 1.12 drochner return (error == 0);
384 1.1 pk }
385 1.1 pk
386 1.1 pk /*
387 1.1 pk * xycattach: attach controller
388 1.1 pk */
389 1.1 pk void
390 1.1 pk xycattach(parent, self, aux)
391 1.1 pk struct device *parent, *self;
392 1.1 pk void *aux;
393 1.1 pk
394 1.1 pk {
395 1.1 pk struct vme_attach_args *va = aux;
396 1.12 drochner vme_chipset_tag_t ct = va->va_vct;
397 1.12 drochner bus_space_tag_t bt;
398 1.1 pk bus_space_handle_t bh;
399 1.1 pk vme_intr_handle_t ih;
400 1.12 drochner vme_am_t mod;
401 1.1 pk struct xyc_softc *xyc = (void *) self;
402 1.1 pk struct xyc_attach_args xa;
403 1.19 pk int lcv, res, error;
404 1.2 pk bus_dma_segment_t seg;
405 1.2 pk int rseg;
406 1.12 drochner vme_mapresc_t resc;
407 1.1 pk
408 1.1 pk /* get addressing and intr level stuff from autoconfig and load it
409 1.1 pk * into our xyc_softc. */
410 1.1 pk
411 1.12 drochner mod = 0x2d; /* VME_AM_A16 | VME_AM_MBO | VME_AM_SUPER | VME_AM_DATA */
412 1.1 pk
413 1.12 drochner if (vme_space_alloc(va->va_vct, va->r[0].offset, sizeof(struct xyc),
414 1.12 drochner mod))
415 1.12 drochner panic("xyc: vme alloc");
416 1.12 drochner if (vme_space_map(ct, va->r[0].offset, sizeof(struct xyc),
417 1.12 drochner mod, VME_D32, 0, &bt, &bh, &resc) != 0)
418 1.1 pk panic("xyc: vme_map");
419 1.1 pk
420 1.12 drochner xyc->xyc = (struct xyc *) bh; /* XXX */
421 1.12 drochner xyc->ipl = va->ilevel;
422 1.12 drochner xyc->vector = va->ivector;
423 1.1 pk xyc->no_ols = 0; /* XXX should be from config */
424 1.1 pk
425 1.1 pk for (lcv = 0; lcv < XYC_MAXDEV; lcv++)
426 1.1 pk xyc->sc_drives[lcv] = (struct xy_softc *) 0;
427 1.1 pk
428 1.1 pk /*
429 1.1 pk * allocate and zero buffers
430 1.1 pk * check boundaries of the KVA's ... all IOPBs must reside in
431 1.1 pk * the same 64K region.
432 1.1 pk */
433 1.1 pk
434 1.19 pk /* Get DMA handle for misc. transfers */
435 1.19 pk if ((error = bus_dmamap_create(
436 1.19 pk xyc->dmatag,
437 1.19 pk MAXPHYS,
438 1.19 pk 1, /* nsegments */
439 1.19 pk MAXPHYS,
440 1.19 pk 0, /* boundary */
441 1.19 pk BUS_DMA_NOWAIT,
442 1.19 pk &xyc->auxmap)) != 0) {
443 1.19 pk printf("%s: DMA buffer map create error %d\n",
444 1.19 pk xyc->sc_dev.dv_xname, error);
445 1.19 pk return;
446 1.19 pk }
447 1.2 pk
448 1.19 pk /* Get DMA handle for mapping iorq descriptors */
449 1.19 pk if ((error = bus_dmamap_create(
450 1.19 pk xyc->dmatag,
451 1.19 pk XYC_MAXIOPB * sizeof(struct xy_iopb),
452 1.19 pk 1, /* nsegments */
453 1.19 pk XYC_MAXIOPB * sizeof(struct xy_iopb),
454 1.19 pk 64*1024, /* boundary */
455 1.19 pk BUS_DMA_NOWAIT,
456 1.19 pk &xyc->iopmap)) != 0) {
457 1.19 pk printf("%s: DMA buffer map create error %d\n",
458 1.2 pk xyc->sc_dev.dv_xname, error);
459 1.2 pk return;
460 1.2 pk }
461 1.2 pk
462 1.19 pk /* Get DMA buffer for iorq descriptors */
463 1.19 pk if ((error = xy_dmamem_alloc(xyc->dmatag, xyc->iopmap, &seg, &rseg,
464 1.19 pk XYC_MAXIOPB * sizeof(struct xy_iopb),
465 1.19 pk (caddr_t *)&xyc->iopbase,
466 1.19 pk (bus_addr_t *)&xyc->dvmaiopb)) != 0) {
467 1.19 pk printf("%s: DMA buffer alloc error %d\n",
468 1.2 pk xyc->sc_dev.dv_xname, error);
469 1.2 pk return;
470 1.1 pk }
471 1.19 pk
472 1.19 pk bzero(xyc->iopbase, XYC_MAXIOPB * sizeof(struct xy_iopb));
473 1.2 pk
474 1.1 pk xyc->reqs = (struct xy_iorq *)
475 1.1 pk malloc(XYC_MAXIOPB * sizeof(struct xy_iorq), M_DEVBUF, M_NOWAIT);
476 1.1 pk if (xyc->reqs == NULL)
477 1.1 pk panic("xyc malloc");
478 1.1 pk bzero(xyc->reqs, XYC_MAXIOPB * sizeof(struct xy_iorq));
479 1.1 pk
480 1.1 pk /*
481 1.1 pk * init iorq to iopb pointers, and non-zero fields in the
482 1.1 pk * iopb which never change.
483 1.1 pk */
484 1.1 pk
485 1.1 pk for (lcv = 0; lcv < XYC_MAXIOPB; lcv++) {
486 1.1 pk xyc->xy_chain[lcv] = NULL;
487 1.1 pk xyc->reqs[lcv].iopb = &xyc->iopbase[lcv];
488 1.10 pk xyc->reqs[lcv].dmaiopb = &xyc->dvmaiopb[lcv];
489 1.1 pk xyc->iopbase[lcv].asr = 1; /* always the same */
490 1.1 pk xyc->iopbase[lcv].eef = 1; /* always the same */
491 1.1 pk xyc->iopbase[lcv].ecm = XY_ECM; /* always the same */
492 1.1 pk xyc->iopbase[lcv].aud = 1; /* always the same */
493 1.1 pk xyc->iopbase[lcv].relo = 1; /* always the same */
494 1.1 pk xyc->iopbase[lcv].thro = XY_THRO;/* always the same */
495 1.2 pk
496 1.2 pk error = bus_dmamap_create(
497 1.2 pk xyc->dmatag,
498 1.2 pk MAXPHYS, /* size */
499 1.2 pk 1, /* nsegments */
500 1.2 pk MAXPHYS, /* maxsegsz */
501 1.2 pk 0, /* boundary */
502 1.2 pk BUS_DMA_NOWAIT,
503 1.2 pk &xyc->reqs[lcv].dmamap);
504 1.2 pk if (error) {
505 1.2 pk printf("%s: DMA buffer map create error %d\n",
506 1.2 pk xyc->sc_dev.dv_xname, error);
507 1.2 pk return;
508 1.2 pk }
509 1.1 pk }
510 1.1 pk xyc->ciorq = &xyc->reqs[XYC_CTLIOPB]; /* short hand name */
511 1.1 pk xyc->ciopb = &xyc->iopbase[XYC_CTLIOPB]; /* short hand name */
512 1.1 pk xyc->xy_hand = 0;
513 1.1 pk
514 1.1 pk /* read controller parameters and insure we have a 450/451 */
515 1.1 pk
516 1.2 pk error = xyc_cmd(xyc, XYCMD_ST, 0, 0, 0, 0, 0, XY_SUB_POLL);
517 1.1 pk res = xyc->ciopb->ctyp;
518 1.2 pk XYC_DONE(xyc, error);
519 1.1 pk if (res != XYCT_450) {
520 1.2 pk if (error)
521 1.2 pk printf(": %s: ", xyc_e2str(error));
522 1.1 pk printf(": doesn't identify as a 450/451\n");
523 1.1 pk return;
524 1.1 pk }
525 1.1 pk printf(": Xylogics 450/451");
526 1.1 pk if (xyc->no_ols)
527 1.1 pk printf(" [OLS disabled]"); /* 450 doesn't overlap seek right */
528 1.1 pk printf("\n");
529 1.2 pk if (error) {
530 1.1 pk printf("%s: error: %s\n", xyc->sc_dev.dv_xname,
531 1.2 pk xyc_e2str(error));
532 1.1 pk return;
533 1.1 pk }
534 1.1 pk if ((xyc->xyc->xyc_csr & XYC_ADRM) == 0) {
535 1.1 pk printf("%s: 24 bit addressing turned off\n",
536 1.1 pk xyc->sc_dev.dv_xname);
537 1.1 pk printf("please set hardware jumpers JM1-JM2=in, JM3-JM4=out\n");
538 1.1 pk printf("to enable 24 bit mode and this driver\n");
539 1.1 pk return;
540 1.1 pk }
541 1.1 pk
542 1.1 pk /* link in interrupt with higher level software */
543 1.12 drochner vme_intr_map(ct, va->ivector, va->ilevel, &ih);
544 1.12 drochner vme_intr_establish(ct, ih, IPL_BIO, xycintr, xyc);
545 1.24 cgd evcnt_attach_dynamic(&xyc->sc_intrcnt, EVCNT_TYPE_INTR, NULL,
546 1.24 cgd xyc->sc_dev.dv_xname, "intr");
547 1.1 pk
548 1.17 thorpej callout_init(&xyc->sc_tick_ch);
549 1.1 pk
550 1.1 pk /* now we must look for disks using autoconfig */
551 1.1 pk xa.fullmode = XY_SUB_POLL;
552 1.1 pk xa.booting = 1;
553 1.1 pk
554 1.1 pk for (xa.driveno = 0; xa.driveno < XYC_MAXDEV; xa.driveno++)
555 1.1 pk (void) config_found(self, (void *) &xa, NULL);
556 1.1 pk
557 1.1 pk /* start the watchdog clock */
558 1.17 thorpej callout_reset(&xyc->sc_tick_ch, XYC_TICKCNT, xyc_tick, xyc);
559 1.1 pk
560 1.1 pk }
561 1.1 pk
562 1.1 pk /*
563 1.1 pk * xymatch: probe for disk.
564 1.1 pk *
565 1.1 pk * note: we almost always say disk is present. this allows us to
566 1.1 pk * spin up and configure a disk after the system is booted (we can
567 1.1 pk * call xyattach!).
568 1.1 pk */
569 1.1 pk int
570 1.1 pk xymatch(parent, cf, aux)
571 1.1 pk struct device *parent;
572 1.1 pk struct cfdata *cf;
573 1.1 pk void *aux;
574 1.1 pk {
575 1.1 pk struct xyc_attach_args *xa = aux;
576 1.1 pk
577 1.1 pk /* looking for autoconf wildcard or exact match */
578 1.1 pk
579 1.1 pk if (cf->cf_loc[XYCCF_DRIVE] != XYCCF_DRIVE_DEFAULT &&
580 1.1 pk cf->cf_loc[XYCCF_DRIVE] != xa->driveno)
581 1.1 pk return 0;
582 1.1 pk
583 1.1 pk return 1;
584 1.1 pk
585 1.1 pk }
586 1.1 pk
587 1.1 pk /*
588 1.1 pk * xyattach: attach a disk. this can be called from autoconf and also
589 1.1 pk * from xyopen/xystrategy.
590 1.1 pk */
591 1.1 pk void
592 1.1 pk xyattach(parent, self, aux)
593 1.1 pk struct device *parent, *self;
594 1.1 pk void *aux;
595 1.1 pk
596 1.1 pk {
597 1.1 pk struct xy_softc *xy = (void *) self, *oxy;
598 1.1 pk struct xyc_softc *xyc = (void *) parent;
599 1.1 pk struct xyc_attach_args *xa = aux;
600 1.2 pk int spt, mb, blk, lcv, fmode, s = 0, newstate;
601 1.1 pk struct dkbad *dkb;
602 1.2 pk int rseg, error;
603 1.2 pk bus_dma_segment_t seg;
604 1.2 pk caddr_t dmaddr;
605 1.2 pk caddr_t buf;
606 1.1 pk
607 1.1 pk /*
608 1.1 pk * Always re-initialize the disk structure. We want statistics
609 1.1 pk * to start with a clean slate.
610 1.1 pk */
611 1.1 pk bzero(&xy->sc_dk, sizeof(xy->sc_dk));
612 1.1 pk xy->sc_dk.dk_driver = &xydkdriver;
613 1.1 pk xy->sc_dk.dk_name = xy->sc_dev.dv_xname;
614 1.1 pk
615 1.1 pk /* if booting, init the xy_softc */
616 1.1 pk
617 1.1 pk if (xa->booting) {
618 1.1 pk xy->state = XY_DRIVE_UNKNOWN; /* to start */
619 1.1 pk xy->flags = 0;
620 1.1 pk xy->parent = xyc;
621 1.1 pk
622 1.1 pk /* init queue of waiting bufs */
623 1.1 pk
624 1.15 thorpej BUFQ_INIT(&xy->xyq);
625 1.1 pk
626 1.1 pk xy->xyrq = &xyc->reqs[xa->driveno];
627 1.1 pk
628 1.1 pk }
629 1.1 pk xy->xy_drive = xa->driveno;
630 1.1 pk fmode = xa->fullmode;
631 1.1 pk xyc->sc_drives[xa->driveno] = xy;
632 1.1 pk
633 1.1 pk /* if not booting, make sure we are the only process in the attach for
634 1.1 pk * this drive. if locked out, sleep on it. */
635 1.1 pk
636 1.1 pk if (!xa->booting) {
637 1.1 pk s = splbio();
638 1.1 pk while (xy->state == XY_DRIVE_ATTACHING) {
639 1.1 pk if (tsleep(&xy->state, PRIBIO, "xyattach", 0)) {
640 1.1 pk splx(s);
641 1.1 pk return;
642 1.1 pk }
643 1.1 pk }
644 1.1 pk printf("%s at %s",
645 1.1 pk xy->sc_dev.dv_xname, xy->parent->sc_dev.dv_xname);
646 1.1 pk }
647 1.2 pk
648 1.1 pk /* we now have control */
649 1.1 pk xy->state = XY_DRIVE_ATTACHING;
650 1.1 pk newstate = XY_DRIVE_UNKNOWN;
651 1.1 pk
652 1.2 pk buf = NULL;
653 1.19 pk if ((error = xy_dmamem_alloc(xyc->dmatag, xyc->auxmap, &seg, &rseg,
654 1.19 pk XYFM_BPS,
655 1.19 pk (caddr_t *)&buf,
656 1.19 pk (bus_addr_t *)&dmaddr)) != 0) {
657 1.2 pk printf("%s: DMA buffer alloc error %d\n",
658 1.19 pk xyc->sc_dev.dv_xname, error);
659 1.19 pk return;
660 1.2 pk }
661 1.2 pk
662 1.1 pk /* first try and reset the drive */
663 1.2 pk error = xyc_cmd(xyc, XYCMD_RST, 0, xy->xy_drive, 0, 0, 0, fmode);
664 1.2 pk XYC_DONE(xyc, error);
665 1.2 pk if (error == XY_ERR_DNRY) {
666 1.1 pk printf(" drive %d: off-line\n", xa->driveno);
667 1.1 pk goto done;
668 1.1 pk }
669 1.2 pk if (error) {
670 1.2 pk printf(": ERROR 0x%02x (%s)\n", error, xyc_e2str(error));
671 1.1 pk goto done;
672 1.1 pk }
673 1.1 pk printf(" drive %d: ready", xa->driveno);
674 1.1 pk
675 1.1 pk /*
676 1.1 pk * now set drive parameters (to semi-bogus values) so we can read the
677 1.1 pk * disk label.
678 1.1 pk */
679 1.1 pk xy->pcyl = xy->ncyl = 1;
680 1.1 pk xy->acyl = 0;
681 1.1 pk xy->nhead = 1;
682 1.1 pk xy->nsect = 1;
683 1.1 pk xy->sectpercyl = 1;
684 1.1 pk for (lcv = 0; lcv < 126; lcv++) /* init empty bad144 table */
685 1.1 pk xy->dkb.bt_bad[lcv].bt_cyl =
686 1.1 pk xy->dkb.bt_bad[lcv].bt_trksec = 0xffff;
687 1.1 pk
688 1.1 pk /* read disk label */
689 1.1 pk for (xy->drive_type = 0 ; xy->drive_type <= XYC_MAXDT ;
690 1.1 pk xy->drive_type++) {
691 1.2 pk error = xyc_cmd(xyc, XYCMD_RD, 0, xy->xy_drive, 0, 1,
692 1.2 pk dmaddr, fmode);
693 1.2 pk XYC_DONE(xyc, error);
694 1.2 pk if (error == XY_ERR_AOK) break;
695 1.1 pk }
696 1.1 pk
697 1.2 pk if (error != XY_ERR_AOK) {
698 1.1 pk printf("\n%s: reading disk label failed: %s\n",
699 1.2 pk xy->sc_dev.dv_xname, xyc_e2str(error));
700 1.1 pk goto done;
701 1.1 pk }
702 1.1 pk printf(" (drive type %d)\n", xy->drive_type);
703 1.1 pk
704 1.1 pk newstate = XY_DRIVE_NOLABEL;
705 1.1 pk
706 1.1 pk xy->hw_spt = spt = 0; /* XXX needed ? */
707 1.1 pk /* Attach the disk: must be before getdisklabel to malloc label */
708 1.1 pk disk_attach(&xy->sc_dk);
709 1.1 pk
710 1.2 pk if (xygetdisklabel(xy, buf) != XY_ERR_AOK)
711 1.1 pk goto done;
712 1.1 pk
713 1.1 pk /* inform the user of what is up */
714 1.1 pk printf("%s: <%s>, pcyl %d\n", xy->sc_dev.dv_xname,
715 1.2 pk buf, xy->pcyl);
716 1.1 pk mb = xy->ncyl * (xy->nhead * xy->nsect) / (1048576 / XYFM_BPS);
717 1.1 pk printf("%s: %dMB, %d cyl, %d head, %d sec, %d bytes/sec\n",
718 1.1 pk xy->sc_dev.dv_xname, mb, xy->ncyl, xy->nhead, xy->nsect,
719 1.1 pk XYFM_BPS);
720 1.1 pk
721 1.1 pk /*
722 1.1 pk * 450/451 stupidity: the drive type is encoded into the format
723 1.1 pk * of the disk. the drive type in the IOPB must match the drive
724 1.1 pk * type in the format, or you will not be able to do I/O to the
725 1.1 pk * disk (you get header not found errors). if you have two drives
726 1.1 pk * of different sizes that have the same drive type in their
727 1.1 pk * formatting then you are out of luck.
728 1.1 pk *
729 1.1 pk * this problem was corrected in the 753/7053.
730 1.1 pk */
731 1.1 pk
732 1.1 pk for (lcv = 0 ; lcv < XYC_MAXDEV ; lcv++) {
733 1.1 pk oxy = xyc->sc_drives[lcv];
734 1.1 pk if (oxy == NULL || oxy == xy) continue;
735 1.1 pk if (oxy->drive_type != xy->drive_type) continue;
736 1.1 pk if (xy->nsect != oxy->nsect || xy->pcyl != oxy->pcyl ||
737 1.1 pk xy->nhead != oxy->nhead) {
738 1.1 pk printf("%s: %s and %s must be the same size!\n",
739 1.1 pk xyc->sc_dev.dv_xname, xy->sc_dev.dv_xname,
740 1.1 pk oxy->sc_dev.dv_xname);
741 1.1 pk panic("xy drive size mismatch");
742 1.1 pk }
743 1.1 pk }
744 1.1 pk
745 1.1 pk
746 1.1 pk /* now set the real drive parameters! */
747 1.1 pk
748 1.1 pk blk = (xy->nsect - 1) +
749 1.1 pk ((xy->nhead - 1) * xy->nsect) +
750 1.1 pk ((xy->pcyl - 1) * xy->nsect * xy->nhead);
751 1.2 pk error = xyc_cmd(xyc, XYCMD_SDS, 0, xy->xy_drive, blk, 0, 0, fmode);
752 1.2 pk XYC_DONE(xyc, error);
753 1.2 pk if (error) {
754 1.1 pk printf("%s: write drive size failed: %s\n",
755 1.2 pk xy->sc_dev.dv_xname, xyc_e2str(error));
756 1.1 pk goto done;
757 1.1 pk }
758 1.1 pk newstate = XY_DRIVE_ONLINE;
759 1.1 pk
760 1.1 pk /*
761 1.1 pk * read bad144 table. this table resides on the first sector of the
762 1.1 pk * last track of the disk (i.e. second cyl of "acyl" area).
763 1.1 pk */
764 1.1 pk
765 1.1 pk blk = (xy->ncyl + xy->acyl - 1) * (xy->nhead * xy->nsect) +
766 1.1 pk /* last cyl */
767 1.1 pk (xy->nhead - 1) * xy->nsect; /* last head */
768 1.2 pk error = xyc_cmd(xyc, XYCMD_RD, 0, xy->xy_drive, blk, 1,
769 1.2 pk dmaddr, fmode);
770 1.2 pk XYC_DONE(xyc, error);
771 1.2 pk if (error) {
772 1.1 pk printf("%s: reading bad144 failed: %s\n",
773 1.2 pk xy->sc_dev.dv_xname, xyc_e2str(error));
774 1.1 pk goto done;
775 1.1 pk }
776 1.1 pk
777 1.1 pk /* check dkbad for sanity */
778 1.2 pk dkb = (struct dkbad *) buf;
779 1.1 pk for (lcv = 0; lcv < 126; lcv++) {
780 1.1 pk if ((dkb->bt_bad[lcv].bt_cyl == 0xffff ||
781 1.1 pk dkb->bt_bad[lcv].bt_cyl == 0) &&
782 1.1 pk dkb->bt_bad[lcv].bt_trksec == 0xffff)
783 1.1 pk continue; /* blank */
784 1.1 pk if (dkb->bt_bad[lcv].bt_cyl >= xy->ncyl)
785 1.1 pk break;
786 1.1 pk if ((dkb->bt_bad[lcv].bt_trksec >> 8) >= xy->nhead)
787 1.1 pk break;
788 1.1 pk if ((dkb->bt_bad[lcv].bt_trksec & 0xff) >= xy->nsect)
789 1.1 pk break;
790 1.1 pk }
791 1.1 pk if (lcv != 126) {
792 1.1 pk printf("%s: warning: invalid bad144 sector!\n",
793 1.1 pk xy->sc_dev.dv_xname);
794 1.1 pk } else {
795 1.2 pk bcopy(buf, &xy->dkb, XYFM_BPS);
796 1.1 pk }
797 1.1 pk
798 1.1 pk done:
799 1.2 pk if (buf != NULL) {
800 1.19 pk xy_dmamem_free(xyc->dmatag, xyc->auxmap,
801 1.19 pk &seg, rseg, XYFM_BPS, buf);
802 1.2 pk }
803 1.2 pk
804 1.1 pk xy->state = newstate;
805 1.1 pk if (!xa->booting) {
806 1.1 pk wakeup(&xy->state);
807 1.1 pk splx(s);
808 1.1 pk }
809 1.1 pk }
810 1.1 pk
811 1.1 pk /*
812 1.1 pk * end of autoconfig functions
813 1.1 pk */
814 1.1 pk
815 1.1 pk /*
816 1.1 pk * { b , c } d e v s w f u n c t i o n s
817 1.1 pk */
818 1.1 pk
819 1.1 pk /*
820 1.1 pk * xyclose: close device
821 1.1 pk */
822 1.1 pk int
823 1.1 pk xyclose(dev, flag, fmt, p)
824 1.1 pk dev_t dev;
825 1.1 pk int flag, fmt;
826 1.1 pk struct proc *p;
827 1.1 pk
828 1.1 pk {
829 1.1 pk struct xy_softc *xy = xy_cd.cd_devs[DISKUNIT(dev)];
830 1.1 pk int part = DISKPART(dev);
831 1.1 pk
832 1.1 pk /* clear mask bits */
833 1.1 pk
834 1.1 pk switch (fmt) {
835 1.1 pk case S_IFCHR:
836 1.1 pk xy->sc_dk.dk_copenmask &= ~(1 << part);
837 1.1 pk break;
838 1.1 pk case S_IFBLK:
839 1.1 pk xy->sc_dk.dk_bopenmask &= ~(1 << part);
840 1.1 pk break;
841 1.1 pk }
842 1.1 pk xy->sc_dk.dk_openmask = xy->sc_dk.dk_copenmask | xy->sc_dk.dk_bopenmask;
843 1.1 pk
844 1.1 pk return 0;
845 1.1 pk }
846 1.1 pk
847 1.1 pk /*
848 1.1 pk * xydump: crash dump system
849 1.1 pk */
850 1.1 pk int
851 1.1 pk xydump(dev, blkno, va, size)
852 1.1 pk dev_t dev;
853 1.1 pk daddr_t blkno;
854 1.1 pk caddr_t va;
855 1.1 pk size_t size;
856 1.1 pk {
857 1.1 pk int unit, part;
858 1.1 pk struct xy_softc *xy;
859 1.1 pk
860 1.1 pk unit = DISKUNIT(dev);
861 1.1 pk if (unit >= xy_cd.cd_ndevs)
862 1.1 pk return ENXIO;
863 1.1 pk part = DISKPART(dev);
864 1.1 pk
865 1.1 pk xy = xy_cd.cd_devs[unit];
866 1.1 pk
867 1.1 pk printf("%s%c: crash dump not supported (yet)\n", xy->sc_dev.dv_xname,
868 1.1 pk 'a' + part);
869 1.1 pk
870 1.1 pk return ENXIO;
871 1.1 pk
872 1.1 pk /* outline: globals: "dumplo" == sector number of partition to start
873 1.1 pk * dump at (convert to physical sector with partition table)
874 1.1 pk * "dumpsize" == size of dump in clicks "physmem" == size of physical
875 1.1 pk * memory (clicks, ctob() to get bytes) (normal case: dumpsize ==
876 1.1 pk * physmem)
877 1.1 pk *
878 1.1 pk * dump a copy of physical memory to the dump device starting at sector
879 1.1 pk * "dumplo" in the swap partition (make sure > 0). map in pages as
880 1.1 pk * we go. use polled I/O.
881 1.1 pk *
882 1.1 pk * XXX how to handle NON_CONTIG? */
883 1.1 pk
884 1.1 pk }
885 1.1 pk
886 1.1 pk /*
887 1.1 pk * xyioctl: ioctls on XY drives. based on ioctl's of other netbsd disks.
888 1.1 pk */
889 1.1 pk int
890 1.1 pk xyioctl(dev, command, addr, flag, p)
891 1.1 pk dev_t dev;
892 1.1 pk u_long command;
893 1.1 pk caddr_t addr;
894 1.1 pk int flag;
895 1.1 pk struct proc *p;
896 1.1 pk
897 1.1 pk {
898 1.1 pk struct xy_softc *xy;
899 1.1 pk struct xd_iocmd *xio;
900 1.1 pk int error, s, unit;
901 1.1 pk
902 1.1 pk unit = DISKUNIT(dev);
903 1.1 pk
904 1.1 pk if (unit >= xy_cd.cd_ndevs || (xy = xy_cd.cd_devs[unit]) == NULL)
905 1.1 pk return (ENXIO);
906 1.1 pk
907 1.1 pk /* switch on ioctl type */
908 1.1 pk
909 1.1 pk switch (command) {
910 1.1 pk case DIOCSBAD: /* set bad144 info */
911 1.1 pk if ((flag & FWRITE) == 0)
912 1.1 pk return EBADF;
913 1.1 pk s = splbio();
914 1.1 pk bcopy(addr, &xy->dkb, sizeof(xy->dkb));
915 1.1 pk splx(s);
916 1.1 pk return 0;
917 1.1 pk
918 1.1 pk case DIOCGDINFO: /* get disk label */
919 1.1 pk bcopy(xy->sc_dk.dk_label, addr, sizeof(struct disklabel));
920 1.1 pk return 0;
921 1.1 pk
922 1.1 pk case DIOCGPART: /* get partition info */
923 1.1 pk ((struct partinfo *) addr)->disklab = xy->sc_dk.dk_label;
924 1.1 pk ((struct partinfo *) addr)->part =
925 1.1 pk &xy->sc_dk.dk_label->d_partitions[DISKPART(dev)];
926 1.1 pk return 0;
927 1.1 pk
928 1.1 pk case DIOCSDINFO: /* set disk label */
929 1.1 pk if ((flag & FWRITE) == 0)
930 1.1 pk return EBADF;
931 1.1 pk error = setdisklabel(xy->sc_dk.dk_label,
932 1.1 pk (struct disklabel *) addr, /* xy->sc_dk.dk_openmask : */ 0,
933 1.1 pk xy->sc_dk.dk_cpulabel);
934 1.1 pk if (error == 0) {
935 1.1 pk if (xy->state == XY_DRIVE_NOLABEL)
936 1.1 pk xy->state = XY_DRIVE_ONLINE;
937 1.1 pk }
938 1.1 pk return error;
939 1.1 pk
940 1.1 pk case DIOCWLABEL: /* change write status of disk label */
941 1.1 pk if ((flag & FWRITE) == 0)
942 1.1 pk return EBADF;
943 1.1 pk if (*(int *) addr)
944 1.1 pk xy->flags |= XY_WLABEL;
945 1.1 pk else
946 1.1 pk xy->flags &= ~XY_WLABEL;
947 1.1 pk return 0;
948 1.1 pk
949 1.1 pk case DIOCWDINFO: /* write disk label */
950 1.1 pk if ((flag & FWRITE) == 0)
951 1.1 pk return EBADF;
952 1.1 pk error = setdisklabel(xy->sc_dk.dk_label,
953 1.1 pk (struct disklabel *) addr, /* xy->sc_dk.dk_openmask : */ 0,
954 1.1 pk xy->sc_dk.dk_cpulabel);
955 1.1 pk if (error == 0) {
956 1.1 pk if (xy->state == XY_DRIVE_NOLABEL)
957 1.1 pk xy->state = XY_DRIVE_ONLINE;
958 1.1 pk
959 1.1 pk /* Simulate opening partition 0 so write succeeds. */
960 1.1 pk xy->sc_dk.dk_openmask |= (1 << 0);
961 1.1 pk error = writedisklabel(MAKEDISKDEV(major(dev), DISKUNIT(dev), RAW_PART),
962 1.1 pk xystrategy, xy->sc_dk.dk_label,
963 1.1 pk xy->sc_dk.dk_cpulabel);
964 1.1 pk xy->sc_dk.dk_openmask =
965 1.1 pk xy->sc_dk.dk_copenmask | xy->sc_dk.dk_bopenmask;
966 1.1 pk }
967 1.1 pk return error;
968 1.1 pk
969 1.1 pk case DIOSXDCMD:
970 1.1 pk xio = (struct xd_iocmd *) addr;
971 1.1 pk if ((error = suser(p->p_ucred, &p->p_acflag)) != 0)
972 1.1 pk return (error);
973 1.1 pk return (xyc_ioctlcmd(xy, dev, xio));
974 1.1 pk
975 1.1 pk default:
976 1.1 pk return ENOTTY;
977 1.1 pk }
978 1.1 pk }
979 1.1 pk
980 1.1 pk /*
981 1.1 pk * xyopen: open drive
982 1.1 pk */
983 1.1 pk
984 1.1 pk int
985 1.1 pk xyopen(dev, flag, fmt, p)
986 1.1 pk dev_t dev;
987 1.1 pk int flag, fmt;
988 1.1 pk struct proc *p;
989 1.1 pk {
990 1.1 pk int unit, part;
991 1.1 pk struct xy_softc *xy;
992 1.1 pk struct xyc_attach_args xa;
993 1.1 pk
994 1.1 pk /* first, could it be a valid target? */
995 1.1 pk
996 1.1 pk unit = DISKUNIT(dev);
997 1.1 pk if (unit >= xy_cd.cd_ndevs || (xy = xy_cd.cd_devs[unit]) == NULL)
998 1.1 pk return (ENXIO);
999 1.1 pk part = DISKPART(dev);
1000 1.1 pk
1001 1.1 pk /* do we need to attach the drive? */
1002 1.1 pk
1003 1.1 pk if (xy->state == XY_DRIVE_UNKNOWN) {
1004 1.1 pk xa.driveno = xy->xy_drive;
1005 1.1 pk xa.fullmode = XY_SUB_WAIT;
1006 1.1 pk xa.booting = 0;
1007 1.1 pk xyattach((struct device *) xy->parent,
1008 1.1 pk (struct device *) xy, &xa);
1009 1.1 pk if (xy->state == XY_DRIVE_UNKNOWN) {
1010 1.1 pk return (EIO);
1011 1.1 pk }
1012 1.1 pk }
1013 1.1 pk /* check for partition */
1014 1.1 pk
1015 1.1 pk if (part != RAW_PART &&
1016 1.1 pk (part >= xy->sc_dk.dk_label->d_npartitions ||
1017 1.1 pk xy->sc_dk.dk_label->d_partitions[part].p_fstype == FS_UNUSED)) {
1018 1.1 pk return (ENXIO);
1019 1.1 pk }
1020 1.1 pk /* set open masks */
1021 1.1 pk
1022 1.1 pk switch (fmt) {
1023 1.1 pk case S_IFCHR:
1024 1.1 pk xy->sc_dk.dk_copenmask |= (1 << part);
1025 1.1 pk break;
1026 1.1 pk case S_IFBLK:
1027 1.1 pk xy->sc_dk.dk_bopenmask |= (1 << part);
1028 1.1 pk break;
1029 1.1 pk }
1030 1.1 pk xy->sc_dk.dk_openmask = xy->sc_dk.dk_copenmask | xy->sc_dk.dk_bopenmask;
1031 1.1 pk
1032 1.1 pk return 0;
1033 1.1 pk }
1034 1.1 pk
1035 1.1 pk int
1036 1.1 pk xyread(dev, uio, flags)
1037 1.1 pk dev_t dev;
1038 1.1 pk struct uio *uio;
1039 1.1 pk int flags;
1040 1.1 pk {
1041 1.1 pk
1042 1.1 pk return (physio(xystrategy, NULL, dev, B_READ, minphys, uio));
1043 1.1 pk }
1044 1.1 pk
1045 1.1 pk int
1046 1.1 pk xywrite(dev, uio, flags)
1047 1.1 pk dev_t dev;
1048 1.1 pk struct uio *uio;
1049 1.1 pk int flags;
1050 1.1 pk {
1051 1.1 pk
1052 1.1 pk return (physio(xystrategy, NULL, dev, B_WRITE, minphys, uio));
1053 1.1 pk }
1054 1.1 pk
1055 1.1 pk
1056 1.1 pk /*
1057 1.1 pk * xysize: return size of a partition for a dump
1058 1.1 pk */
1059 1.1 pk
1060 1.1 pk int
1061 1.1 pk xysize(dev)
1062 1.1 pk dev_t dev;
1063 1.1 pk
1064 1.1 pk {
1065 1.1 pk struct xy_softc *xysc;
1066 1.1 pk int unit, part, size, omask;
1067 1.1 pk
1068 1.1 pk /* valid unit? */
1069 1.1 pk unit = DISKUNIT(dev);
1070 1.1 pk if (unit >= xy_cd.cd_ndevs || (xysc = xy_cd.cd_devs[unit]) == NULL)
1071 1.1 pk return (-1);
1072 1.1 pk
1073 1.1 pk part = DISKPART(dev);
1074 1.1 pk omask = xysc->sc_dk.dk_openmask & (1 << part);
1075 1.1 pk
1076 1.1 pk if (omask == 0 && xyopen(dev, 0, S_IFBLK, NULL) != 0)
1077 1.1 pk return (-1);
1078 1.1 pk
1079 1.1 pk /* do it */
1080 1.1 pk if (xysc->sc_dk.dk_label->d_partitions[part].p_fstype != FS_SWAP)
1081 1.1 pk size = -1; /* only give valid size for swap partitions */
1082 1.1 pk else
1083 1.1 pk size = xysc->sc_dk.dk_label->d_partitions[part].p_size *
1084 1.1 pk (xysc->sc_dk.dk_label->d_secsize / DEV_BSIZE);
1085 1.1 pk if (omask == 0 && xyclose(dev, 0, S_IFBLK, NULL) != 0)
1086 1.1 pk return (-1);
1087 1.1 pk return (size);
1088 1.1 pk }
1089 1.1 pk
1090 1.1 pk /*
1091 1.1 pk * xystrategy: buffering system interface to xy.
1092 1.1 pk */
1093 1.1 pk
1094 1.1 pk void
1095 1.1 pk xystrategy(bp)
1096 1.1 pk struct buf *bp;
1097 1.1 pk
1098 1.1 pk {
1099 1.1 pk struct xy_softc *xy;
1100 1.1 pk int s, unit;
1101 1.1 pk struct xyc_attach_args xa;
1102 1.16 thorpej struct disklabel *lp;
1103 1.16 thorpej daddr_t blkno;
1104 1.1 pk
1105 1.1 pk unit = DISKUNIT(bp->b_dev);
1106 1.1 pk
1107 1.1 pk /* check for live device */
1108 1.1 pk
1109 1.1 pk if (unit >= xy_cd.cd_ndevs || (xy = xy_cd.cd_devs[unit]) == 0 ||
1110 1.1 pk bp->b_blkno < 0 ||
1111 1.1 pk (bp->b_bcount % xy->sc_dk.dk_label->d_secsize) != 0) {
1112 1.1 pk bp->b_error = EINVAL;
1113 1.1 pk goto bad;
1114 1.1 pk }
1115 1.1 pk /* do we need to attach the drive? */
1116 1.1 pk
1117 1.1 pk if (xy->state == XY_DRIVE_UNKNOWN) {
1118 1.1 pk xa.driveno = xy->xy_drive;
1119 1.1 pk xa.fullmode = XY_SUB_WAIT;
1120 1.1 pk xa.booting = 0;
1121 1.1 pk xyattach((struct device *)xy->parent, (struct device *)xy, &xa);
1122 1.1 pk if (xy->state == XY_DRIVE_UNKNOWN) {
1123 1.1 pk bp->b_error = EIO;
1124 1.1 pk goto bad;
1125 1.1 pk }
1126 1.1 pk }
1127 1.1 pk if (xy->state != XY_DRIVE_ONLINE && DISKPART(bp->b_dev) != RAW_PART) {
1128 1.1 pk /* no I/O to unlabeled disks, unless raw partition */
1129 1.1 pk bp->b_error = EIO;
1130 1.1 pk goto bad;
1131 1.1 pk }
1132 1.1 pk /* short circuit zero length request */
1133 1.1 pk
1134 1.1 pk if (bp->b_bcount == 0)
1135 1.1 pk goto done;
1136 1.1 pk
1137 1.1 pk /* check bounds with label (disksubr.c). Determine the size of the
1138 1.1 pk * transfer, and make sure it is within the boundaries of the
1139 1.1 pk * partition. Adjust transfer if needed, and signal errors or early
1140 1.1 pk * completion. */
1141 1.1 pk
1142 1.16 thorpej lp = xy->sc_dk.dk_label;
1143 1.16 thorpej
1144 1.16 thorpej if (bounds_check_with_label(bp, lp,
1145 1.1 pk (xy->flags & XY_WLABEL) != 0) <= 0)
1146 1.1 pk goto done;
1147 1.1 pk
1148 1.1 pk /*
1149 1.16 thorpej * Now convert the block number to absolute and put it in
1150 1.16 thorpej * terms of the device's logical block size.
1151 1.16 thorpej */
1152 1.16 thorpej blkno = bp->b_blkno / (lp->d_secsize / DEV_BSIZE);
1153 1.16 thorpej if (DISKPART(bp->b_dev) != RAW_PART)
1154 1.16 thorpej blkno += lp->d_partitions[DISKPART(bp->b_dev)].p_offset;
1155 1.16 thorpej
1156 1.16 thorpej bp->b_rawblkno = blkno;
1157 1.16 thorpej
1158 1.16 thorpej /*
1159 1.1 pk * now we know we have a valid buf structure that we need to do I/O
1160 1.1 pk * on.
1161 1.1 pk */
1162 1.1 pk s = splbio(); /* protect the queues */
1163 1.1 pk
1164 1.16 thorpej disksort_blkno(&xy->xyq, bp);
1165 1.1 pk
1166 1.1 pk /* start 'em up */
1167 1.1 pk
1168 1.1 pk xyc_start(xy->parent, NULL);
1169 1.1 pk
1170 1.1 pk /* done! */
1171 1.1 pk
1172 1.1 pk splx(s);
1173 1.1 pk return;
1174 1.1 pk
1175 1.1 pk bad: /* tells upper layers we have an error */
1176 1.1 pk bp->b_flags |= B_ERROR;
1177 1.1 pk done: /* tells upper layers we are done with this
1178 1.1 pk * buf */
1179 1.1 pk bp->b_resid = bp->b_bcount;
1180 1.1 pk biodone(bp);
1181 1.1 pk }
1182 1.1 pk /*
1183 1.1 pk * end of {b,c}devsw functions
1184 1.1 pk */
1185 1.1 pk
1186 1.1 pk /*
1187 1.1 pk * i n t e r r u p t f u n c t i o n
1188 1.1 pk *
1189 1.1 pk * xycintr: hardware interrupt.
1190 1.1 pk */
1191 1.1 pk int
1192 1.1 pk xycintr(v)
1193 1.1 pk void *v;
1194 1.1 pk
1195 1.1 pk {
1196 1.1 pk struct xyc_softc *xycsc = v;
1197 1.1 pk
1198 1.1 pk /* kick the event counter */
1199 1.1 pk
1200 1.1 pk xycsc->sc_intrcnt.ev_count++;
1201 1.1 pk
1202 1.1 pk /* remove as many done IOPBs as possible */
1203 1.1 pk
1204 1.1 pk xyc_remove_iorq(xycsc);
1205 1.1 pk
1206 1.1 pk /* start any iorq's already waiting */
1207 1.1 pk
1208 1.1 pk xyc_start(xycsc, NULL);
1209 1.1 pk
1210 1.1 pk return (1);
1211 1.1 pk }
1212 1.1 pk /*
1213 1.1 pk * end of interrupt function
1214 1.1 pk */
1215 1.1 pk
1216 1.1 pk /*
1217 1.1 pk * i n t e r n a l f u n c t i o n s
1218 1.1 pk */
1219 1.1 pk
1220 1.1 pk /*
1221 1.1 pk * xyc_rqinit: fill out the fields of an I/O request
1222 1.1 pk */
1223 1.1 pk
1224 1.1 pk inline void
1225 1.1 pk xyc_rqinit(rq, xyc, xy, md, blk, cnt, db, bp)
1226 1.1 pk struct xy_iorq *rq;
1227 1.1 pk struct xyc_softc *xyc;
1228 1.1 pk struct xy_softc *xy;
1229 1.1 pk int md;
1230 1.1 pk u_long blk;
1231 1.1 pk int cnt;
1232 1.1 pk caddr_t db;
1233 1.1 pk struct buf *bp;
1234 1.1 pk {
1235 1.1 pk rq->xyc = xyc;
1236 1.1 pk rq->xy = xy;
1237 1.1 pk rq->ttl = XYC_MAXTTL + 10;
1238 1.1 pk rq->mode = md;
1239 1.1 pk rq->tries = rq->errno = rq->lasterror = 0;
1240 1.1 pk rq->blockno = blk;
1241 1.1 pk rq->sectcnt = cnt;
1242 1.2 pk rq->dbuf = db;
1243 1.1 pk rq->buf = bp;
1244 1.1 pk }
1245 1.1 pk
1246 1.1 pk /*
1247 1.1 pk * xyc_rqtopb: load up an IOPB based on an iorq
1248 1.1 pk */
1249 1.1 pk
1250 1.1 pk void
1251 1.1 pk xyc_rqtopb(iorq, iopb, cmd, subfun)
1252 1.1 pk struct xy_iorq *iorq;
1253 1.1 pk struct xy_iopb *iopb;
1254 1.1 pk int cmd, subfun;
1255 1.1 pk
1256 1.1 pk {
1257 1.1 pk u_long block, dp;
1258 1.1 pk
1259 1.1 pk /* normal IOPB case, standard stuff */
1260 1.1 pk
1261 1.1 pk /* chain bit handled later */
1262 1.1 pk iopb->ien = (XY_STATE(iorq->mode) == XY_SUB_POLL) ? 0 : 1;
1263 1.1 pk iopb->com = cmd;
1264 1.1 pk iopb->errno = 0;
1265 1.1 pk iopb->errs = 0;
1266 1.1 pk iopb->done = 0;
1267 1.1 pk if (iorq->xy) {
1268 1.1 pk iopb->unit = iorq->xy->xy_drive;
1269 1.1 pk iopb->dt = iorq->xy->drive_type;
1270 1.1 pk } else {
1271 1.1 pk iopb->unit = 0;
1272 1.1 pk iopb->dt = 0;
1273 1.1 pk }
1274 1.1 pk block = iorq->blockno;
1275 1.1 pk if (iorq->xy == NULL || block == 0) {
1276 1.1 pk iopb->sect = iopb->head = iopb->cyl = 0;
1277 1.1 pk } else {
1278 1.1 pk iopb->sect = block % iorq->xy->nsect;
1279 1.1 pk block = block / iorq->xy->nsect;
1280 1.1 pk iopb->head = block % iorq->xy->nhead;
1281 1.1 pk block = block / iorq->xy->nhead;
1282 1.1 pk iopb->cyl = block;
1283 1.1 pk }
1284 1.1 pk iopb->scnt = iorq->sectcnt;
1285 1.2 pk dp = (u_long) iorq->dbuf;
1286 1.1 pk if (iorq->dbuf == NULL) {
1287 1.1 pk iopb->dataa = 0;
1288 1.1 pk iopb->datar = 0;
1289 1.1 pk } else {
1290 1.1 pk iopb->dataa = (dp & 0xffff);
1291 1.1 pk iopb->datar = ((dp & 0xff0000) >> 16);
1292 1.1 pk }
1293 1.1 pk iopb->subfn = subfun;
1294 1.1 pk }
1295 1.1 pk
1296 1.1 pk
1297 1.1 pk /*
1298 1.1 pk * xyc_unbusy: wait for the xyc to go unbusy, or timeout.
1299 1.1 pk */
1300 1.1 pk
1301 1.1 pk int
1302 1.1 pk xyc_unbusy(xyc, del)
1303 1.1 pk
1304 1.1 pk struct xyc *xyc;
1305 1.1 pk int del;
1306 1.1 pk
1307 1.1 pk {
1308 1.1 pk while (del-- > 0) {
1309 1.1 pk if ((xyc->xyc_csr & XYC_GBSY) == 0)
1310 1.1 pk break;
1311 1.1 pk DELAY(1);
1312 1.1 pk }
1313 1.1 pk return(del == 0 ? XY_ERR_FAIL : XY_ERR_AOK);
1314 1.1 pk }
1315 1.1 pk
1316 1.1 pk /*
1317 1.1 pk * xyc_cmd: front end for POLL'd and WAIT'd commands. Returns 0 or error.
1318 1.1 pk * note that NORM requests are handled seperately.
1319 1.1 pk */
1320 1.1 pk int
1321 1.1 pk xyc_cmd(xycsc, cmd, subfn, unit, block, scnt, dptr, fullmode)
1322 1.1 pk struct xyc_softc *xycsc;
1323 1.1 pk int cmd, subfn, unit, block, scnt;
1324 1.1 pk char *dptr;
1325 1.1 pk int fullmode;
1326 1.1 pk
1327 1.1 pk {
1328 1.1 pk int submode = XY_STATE(fullmode);
1329 1.1 pk struct xy_iorq *iorq = xycsc->ciorq;
1330 1.1 pk struct xy_iopb *iopb = xycsc->ciopb;
1331 1.1 pk
1332 1.1 pk /*
1333 1.1 pk * is someone else using the control iopq wait for it if we can
1334 1.1 pk */
1335 1.1 pk start:
1336 1.1 pk if (submode == XY_SUB_WAIT && XY_STATE(iorq->mode) != XY_SUB_FREE) {
1337 1.1 pk if (tsleep(iorq, PRIBIO, "xyc_cmd", 0))
1338 1.1 pk return(XY_ERR_FAIL);
1339 1.1 pk goto start;
1340 1.1 pk }
1341 1.1 pk
1342 1.1 pk if (XY_STATE(iorq->mode) != XY_SUB_FREE) {
1343 1.1 pk DELAY(1000000); /* XY_SUB_POLL: steal the iorq */
1344 1.1 pk iorq->mode = XY_SUB_FREE;
1345 1.1 pk printf("%s: stole control iopb\n", xycsc->sc_dev.dv_xname);
1346 1.1 pk }
1347 1.1 pk
1348 1.1 pk /* init iorq/iopb */
1349 1.1 pk
1350 1.1 pk xyc_rqinit(iorq, xycsc,
1351 1.1 pk (unit == XYC_NOUNIT) ? NULL : xycsc->sc_drives[unit],
1352 1.1 pk fullmode, block, scnt, dptr, NULL);
1353 1.1 pk
1354 1.1 pk /* load IOPB from iorq */
1355 1.1 pk
1356 1.1 pk xyc_rqtopb(iorq, iopb, cmd, subfn);
1357 1.1 pk
1358 1.1 pk /* submit it for processing */
1359 1.1 pk
1360 1.1 pk xyc_submit_iorq(xycsc, iorq, fullmode); /* error code will be in iorq */
1361 1.1 pk
1362 1.1 pk return(XY_ERR_AOK);
1363 1.1 pk }
1364 1.1 pk
1365 1.1 pk /*
1366 1.1 pk * xyc_startbuf
1367 1.1 pk * start a buffer for running
1368 1.1 pk */
1369 1.1 pk
1370 1.1 pk int
1371 1.1 pk xyc_startbuf(xycsc, xysc, bp)
1372 1.1 pk struct xyc_softc *xycsc;
1373 1.1 pk struct xy_softc *xysc;
1374 1.1 pk struct buf *bp;
1375 1.1 pk
1376 1.1 pk {
1377 1.2 pk int partno, error;
1378 1.1 pk struct xy_iorq *iorq;
1379 1.1 pk struct xy_iopb *iopb;
1380 1.1 pk u_long block;
1381 1.1 pk
1382 1.1 pk iorq = xysc->xyrq;
1383 1.1 pk iopb = iorq->iopb;
1384 1.1 pk
1385 1.1 pk /* get buf */
1386 1.1 pk
1387 1.1 pk if (bp == NULL)
1388 1.1 pk panic("xyc_startbuf null buf");
1389 1.1 pk
1390 1.1 pk partno = DISKPART(bp->b_dev);
1391 1.1 pk #ifdef XYC_DEBUG
1392 1.1 pk printf("xyc_startbuf: %s%c: %s block %d\n", xysc->sc_dev.dv_xname,
1393 1.1 pk 'a' + partno, (bp->b_flags & B_READ) ? "read" : "write", bp->b_blkno);
1394 1.1 pk printf("xyc_startbuf: b_bcount %d, b_data 0x%x\n",
1395 1.1 pk bp->b_bcount, bp->b_data);
1396 1.1 pk #endif
1397 1.1 pk
1398 1.1 pk /*
1399 1.16 thorpej * load request.
1400 1.1 pk *
1401 1.1 pk * note that iorq points to the buffer as mapped into DVMA space,
1402 1.1 pk * where as the bp->b_data points to its non-DVMA mapping.
1403 1.1 pk */
1404 1.1 pk
1405 1.16 thorpej block = bp->b_rawblkno;
1406 1.1 pk
1407 1.2 pk error = bus_dmamap_load(xycsc->dmatag, iorq->dmamap,
1408 1.2 pk bp->b_data, bp->b_bcount, 0, BUS_DMA_NOWAIT);
1409 1.10 pk if (error != 0) {
1410 1.2 pk printf("%s: warning: cannot load DMA map\n",
1411 1.1 pk xycsc->sc_dev.dv_xname);
1412 1.1 pk return (XY_ERR_FAIL); /* XXX: need some sort of
1413 1.1 pk * call-back scheme here? */
1414 1.1 pk }
1415 1.1 pk
1416 1.7 thorpej bus_dmamap_sync(xycsc->dmatag, iorq->dmamap, 0,
1417 1.7 thorpej iorq->dmamap->dm_mapsize, (bp->b_flags & B_READ)
1418 1.2 pk ? BUS_DMASYNC_PREREAD
1419 1.2 pk : BUS_DMASYNC_PREWRITE);
1420 1.2 pk
1421 1.1 pk /* init iorq and load iopb from it */
1422 1.1 pk xyc_rqinit(iorq, xycsc, xysc, XY_SUB_NORM | XY_MODE_VERBO, block,
1423 1.2 pk bp->b_bcount / XYFM_BPS,
1424 1.2 pk (caddr_t)iorq->dmamap->dm_segs[0].ds_addr,
1425 1.2 pk bp);
1426 1.1 pk
1427 1.1 pk xyc_rqtopb(iorq, iopb, (bp->b_flags & B_READ) ? XYCMD_RD : XYCMD_WR, 0);
1428 1.1 pk
1429 1.1 pk /* Instrumentation. */
1430 1.1 pk disk_busy(&xysc->sc_dk);
1431 1.1 pk
1432 1.1 pk return (XY_ERR_AOK);
1433 1.1 pk }
1434 1.1 pk
1435 1.1 pk
1436 1.1 pk /*
1437 1.1 pk * xyc_submit_iorq: submit an iorq for processing. returns XY_ERR_AOK
1438 1.1 pk * if ok. if it fail returns an error code. type is XY_SUB_*.
1439 1.1 pk *
1440 1.1 pk * note: caller frees iorq in all cases except NORM
1441 1.1 pk *
1442 1.1 pk * return value:
1443 1.1 pk * NORM: XY_AOK (req pending), XY_FAIL (couldn't submit request)
1444 1.1 pk * WAIT: XY_AOK (success), <error-code> (failed)
1445 1.1 pk * POLL: <same as WAIT>
1446 1.1 pk * NOQ : <same as NORM>
1447 1.1 pk *
1448 1.1 pk * there are three sources for i/o requests:
1449 1.1 pk * [1] xystrategy: normal block I/O, using "struct buf" system.
1450 1.1 pk * [2] autoconfig/crash dump: these are polled I/O requests, no interrupts.
1451 1.1 pk * [3] open/ioctl: these are I/O requests done in the context of a process,
1452 1.1 pk * and the process should block until they are done.
1453 1.1 pk *
1454 1.1 pk * software state is stored in the iorq structure. each iorq has an
1455 1.1 pk * iopb structure. the hardware understands the iopb structure.
1456 1.1 pk * every command must go through an iopb. a 450 handles one iopb at a
1457 1.1 pk * time, where as a 451 can take them in chains. [the 450 claims it
1458 1.1 pk * can handle chains, but is appears to be buggy...] iopb are allocated
1459 1.1 pk * in DVMA space at boot up time. each disk gets one iopb, and the
1460 1.1 pk * controller gets one (for POLL and WAIT commands). what happens if
1461 1.1 pk * the iopb is busy? for i/o type [1], the buffers are queued at the
1462 1.1 pk * "buff" layer and * picked up later by the interrupt routine. for case
1463 1.1 pk * [2] we can only be blocked if there is a WAIT type I/O request being
1464 1.1 pk * run. since this can only happen when we are crashing, we wait a sec
1465 1.1 pk * and then steal the IOPB. for case [3] the process can sleep
1466 1.1 pk * on the iorq free list until some iopbs are avaliable.
1467 1.1 pk */
1468 1.1 pk
1469 1.1 pk
1470 1.1 pk int
1471 1.1 pk xyc_submit_iorq(xycsc, iorq, type)
1472 1.1 pk struct xyc_softc *xycsc;
1473 1.1 pk struct xy_iorq *iorq;
1474 1.1 pk int type;
1475 1.1 pk
1476 1.1 pk {
1477 1.10 pk struct xy_iopb *dmaiopb;
1478 1.1 pk
1479 1.1 pk #ifdef XYC_DEBUG
1480 1.1 pk printf("xyc_submit_iorq(%s, addr=0x%x, type=%d)\n",
1481 1.1 pk xycsc->sc_dev.dv_xname, iorq, type);
1482 1.1 pk #endif
1483 1.1 pk
1484 1.1 pk /* first check and see if controller is busy */
1485 1.1 pk if ((xycsc->xyc->xyc_csr & XYC_GBSY) != 0) {
1486 1.1 pk #ifdef XYC_DEBUG
1487 1.1 pk printf("xyc_submit_iorq: XYC not ready (BUSY)\n");
1488 1.1 pk #endif
1489 1.1 pk if (type == XY_SUB_NOQ)
1490 1.1 pk return (XY_ERR_FAIL); /* failed */
1491 1.1 pk switch (type) {
1492 1.1 pk case XY_SUB_NORM:
1493 1.1 pk return XY_ERR_AOK; /* success */
1494 1.1 pk case XY_SUB_WAIT:
1495 1.1 pk while (iorq->iopb->done == 0) {
1496 1.23 thorpej (void) tsleep(iorq, PRIBIO, "xyciorq", 0);
1497 1.1 pk }
1498 1.1 pk return (iorq->errno);
1499 1.1 pk case XY_SUB_POLL: /* steal controller */
1500 1.10 pk (void)xycsc->xyc->xyc_rsetup; /* RESET */
1501 1.1 pk if (xyc_unbusy(xycsc->xyc,XYC_RESETUSEC) == XY_ERR_FAIL)
1502 1.1 pk panic("xyc_submit_iorq: stuck xyc");
1503 1.1 pk printf("%s: stole controller\n",
1504 1.1 pk xycsc->sc_dev.dv_xname);
1505 1.1 pk break;
1506 1.1 pk default:
1507 1.1 pk panic("xyc_submit_iorq adding");
1508 1.1 pk }
1509 1.1 pk }
1510 1.1 pk
1511 1.10 pk dmaiopb = xyc_chain(xycsc, iorq); /* build chain */
1512 1.10 pk if (dmaiopb == NULL) { /* nothing doing? */
1513 1.1 pk if (type == XY_SUB_NORM || type == XY_SUB_NOQ)
1514 1.1 pk return(XY_ERR_AOK);
1515 1.1 pk panic("xyc_submit_iorq: xyc_chain failed!\n");
1516 1.1 pk }
1517 1.1 pk
1518 1.10 pk XYC_GO(xycsc->xyc, (u_long)dmaiopb);
1519 1.1 pk
1520 1.1 pk /* command now running, wrap it up */
1521 1.1 pk switch (type) {
1522 1.1 pk case XY_SUB_NORM:
1523 1.1 pk case XY_SUB_NOQ:
1524 1.1 pk return (XY_ERR_AOK); /* success */
1525 1.1 pk case XY_SUB_WAIT:
1526 1.1 pk while (iorq->iopb->done == 0) {
1527 1.23 thorpej (void) tsleep(iorq, PRIBIO, "xyciorq", 0);
1528 1.1 pk }
1529 1.1 pk return (iorq->errno);
1530 1.1 pk case XY_SUB_POLL:
1531 1.1 pk return (xyc_piodriver(xycsc, iorq));
1532 1.1 pk default:
1533 1.1 pk panic("xyc_submit_iorq wrap up");
1534 1.1 pk }
1535 1.1 pk panic("xyc_submit_iorq");
1536 1.1 pk return 0; /* not reached */
1537 1.1 pk }
1538 1.1 pk
1539 1.1 pk
1540 1.1 pk /*
1541 1.1 pk * xyc_chain: build a chain. return dvma address of first element in
1542 1.1 pk * the chain. iorq != NULL: means we only want that item on the chain.
1543 1.1 pk */
1544 1.1 pk
1545 1.1 pk struct xy_iopb *
1546 1.1 pk xyc_chain(xycsc, iorq)
1547 1.10 pk struct xyc_softc *xycsc;
1548 1.10 pk struct xy_iorq *iorq;
1549 1.10 pk
1550 1.10 pk {
1551 1.10 pk int togo, chain, hand;
1552 1.10 pk
1553 1.10 pk bzero(xycsc->xy_chain, sizeof(xycsc->xy_chain));
1554 1.10 pk
1555 1.10 pk /*
1556 1.10 pk * promote control IOPB to the top
1557 1.10 pk */
1558 1.10 pk if (iorq == NULL) {
1559 1.10 pk if ((XY_STATE(xycsc->reqs[XYC_CTLIOPB].mode) == XY_SUB_POLL ||
1560 1.10 pk XY_STATE(xycsc->reqs[XYC_CTLIOPB].mode) == XY_SUB_WAIT) &&
1561 1.10 pk xycsc->iopbase[XYC_CTLIOPB].done == 0)
1562 1.10 pk iorq = &xycsc->reqs[XYC_CTLIOPB];
1563 1.10 pk }
1564 1.10 pk
1565 1.10 pk /*
1566 1.10 pk * special case: if iorq != NULL then we have a POLL or WAIT request.
1567 1.10 pk * we let these take priority and do them first.
1568 1.10 pk */
1569 1.10 pk if (iorq) {
1570 1.10 pk xycsc->xy_chain[0] = iorq;
1571 1.10 pk iorq->iopb->chen = 0;
1572 1.10 pk return(iorq->dmaiopb);
1573 1.10 pk }
1574 1.1 pk
1575 1.10 pk /*
1576 1.10 pk * NORM case: do round robin and maybe chain (if allowed and possible)
1577 1.10 pk */
1578 1.10 pk chain = 0;
1579 1.10 pk hand = xycsc->xy_hand;
1580 1.10 pk xycsc->xy_hand = (xycsc->xy_hand + 1) % XYC_MAXIOPB;
1581 1.10 pk
1582 1.10 pk for (togo = XYC_MAXIOPB; togo > 0;
1583 1.10 pk togo--, hand = (hand + 1) % XYC_MAXIOPB) {
1584 1.10 pk struct xy_iopb *iopb, *prev_iopb, *dmaiopb;
1585 1.10 pk
1586 1.10 pk if (XY_STATE(xycsc->reqs[hand].mode) != XY_SUB_NORM ||
1587 1.10 pk xycsc->iopbase[hand].done)
1588 1.10 pk continue; /* not ready-for-i/o */
1589 1.10 pk
1590 1.10 pk xycsc->xy_chain[chain] = &xycsc->reqs[hand];
1591 1.10 pk iopb = xycsc->xy_chain[chain]->iopb;
1592 1.10 pk iopb->chen = 0;
1593 1.10 pk if (chain != 0) {
1594 1.10 pk /* adding a link to a chain */
1595 1.10 pk prev_iopb = xycsc->xy_chain[chain-1]->iopb;
1596 1.10 pk prev_iopb->chen = 1;
1597 1.10 pk dmaiopb = xycsc->xy_chain[chain]->dmaiopb;
1598 1.10 pk prev_iopb->nxtiopb = ((u_long)dmaiopb) & 0xffff;
1599 1.10 pk } else {
1600 1.10 pk /* head of chain */
1601 1.10 pk iorq = xycsc->xy_chain[chain];
1602 1.10 pk }
1603 1.10 pk chain++;
1604 1.10 pk
1605 1.10 pk /* quit if chaining dis-allowed */
1606 1.10 pk if (xycsc->no_ols)
1607 1.10 pk break;
1608 1.10 pk }
1609 1.1 pk
1610 1.10 pk return(iorq ? iorq->dmaiopb : NULL);
1611 1.1 pk }
1612 1.1 pk
1613 1.1 pk /*
1614 1.1 pk * xyc_piodriver
1615 1.1 pk *
1616 1.1 pk * programmed i/o driver. this function takes over the computer
1617 1.1 pk * and drains off the polled i/o request. it returns the status of the iorq
1618 1.1 pk * the caller is interesting in.
1619 1.1 pk */
1620 1.1 pk int
1621 1.1 pk xyc_piodriver(xycsc, iorq)
1622 1.1 pk struct xyc_softc *xycsc;
1623 1.1 pk struct xy_iorq *iorq;
1624 1.1 pk
1625 1.1 pk {
1626 1.1 pk int nreset = 0;
1627 1.1 pk int retval = 0;
1628 1.1 pk u_long res;
1629 1.1 pk #ifdef XYC_DEBUG
1630 1.1 pk printf("xyc_piodriver(%s, 0x%x)\n", xycsc->sc_dev.dv_xname, iorq);
1631 1.1 pk #endif
1632 1.1 pk
1633 1.1 pk while (iorq->iopb->done == 0) {
1634 1.1 pk
1635 1.1 pk res = xyc_unbusy(xycsc->xyc, XYC_MAXTIME);
1636 1.1 pk
1637 1.1 pk /* we expect some progress soon */
1638 1.1 pk if (res == XY_ERR_FAIL && nreset >= 2) {
1639 1.1 pk xyc_reset(xycsc, 0, XY_RSET_ALL, XY_ERR_FAIL, 0);
1640 1.1 pk #ifdef XYC_DEBUG
1641 1.1 pk printf("xyc_piodriver: timeout\n");
1642 1.1 pk #endif
1643 1.1 pk return (XY_ERR_FAIL);
1644 1.1 pk }
1645 1.1 pk if (res == XY_ERR_FAIL) {
1646 1.1 pk if (xyc_reset(xycsc, 0,
1647 1.1 pk (nreset++ == 0) ? XY_RSET_NONE : iorq,
1648 1.1 pk XY_ERR_FAIL,
1649 1.1 pk 0) == XY_ERR_FAIL)
1650 1.1 pk return (XY_ERR_FAIL); /* flushes all but POLL
1651 1.1 pk * requests, resets */
1652 1.1 pk continue;
1653 1.1 pk }
1654 1.1 pk
1655 1.1 pk xyc_remove_iorq(xycsc); /* may resubmit request */
1656 1.1 pk
1657 1.1 pk if (iorq->iopb->done == 0)
1658 1.1 pk xyc_start(xycsc, iorq);
1659 1.1 pk }
1660 1.1 pk
1661 1.1 pk /* get return value */
1662 1.1 pk
1663 1.1 pk retval = iorq->errno;
1664 1.1 pk
1665 1.1 pk #ifdef XYC_DEBUG
1666 1.1 pk printf("xyc_piodriver: done, retval = 0x%x (%s)\n",
1667 1.1 pk iorq->errno, xyc_e2str(iorq->errno));
1668 1.1 pk #endif
1669 1.1 pk
1670 1.1 pk /* start up any bufs that have queued */
1671 1.1 pk
1672 1.1 pk xyc_start(xycsc, NULL);
1673 1.1 pk
1674 1.1 pk return (retval);
1675 1.1 pk }
1676 1.1 pk
1677 1.1 pk /*
1678 1.1 pk * xyc_xyreset: reset one drive. NOTE: assumes xyc was just reset.
1679 1.1 pk * we steal iopb[XYC_CTLIOPB] for this, but we put it back when we are done.
1680 1.1 pk */
1681 1.1 pk void
1682 1.1 pk xyc_xyreset(xycsc, xysc)
1683 1.1 pk struct xyc_softc *xycsc;
1684 1.1 pk struct xy_softc *xysc;
1685 1.1 pk
1686 1.1 pk {
1687 1.1 pk struct xy_iopb tmpiopb;
1688 1.10 pk struct xy_iopb *iopb;
1689 1.1 pk int del;
1690 1.1 pk
1691 1.10 pk iopb = xycsc->ciopb;
1692 1.10 pk
1693 1.10 pk /* Save contents */
1694 1.10 pk bcopy(iopb, &tmpiopb, sizeof(struct xy_iopb));
1695 1.10 pk
1696 1.10 pk iopb->chen = iopb->done = iopb->errs = 0;
1697 1.10 pk iopb->ien = 0;
1698 1.10 pk iopb->com = XYCMD_RST;
1699 1.10 pk iopb->unit = xysc->xy_drive;
1700 1.10 pk
1701 1.10 pk XYC_GO(xycsc->xyc, (u_long)xycsc->ciorq->dmaiopb);
1702 1.1 pk
1703 1.1 pk del = XYC_RESETUSEC;
1704 1.1 pk while (del > 0) {
1705 1.10 pk if ((xycsc->xyc->xyc_csr & XYC_GBSY) == 0)
1706 1.10 pk break;
1707 1.1 pk DELAY(1);
1708 1.1 pk del--;
1709 1.1 pk }
1710 1.1 pk
1711 1.10 pk if (del <= 0 || iopb->errs) {
1712 1.1 pk printf("%s: off-line: %s\n", xycsc->sc_dev.dv_xname,
1713 1.10 pk xyc_e2str(iopb->errno));
1714 1.1 pk del = xycsc->xyc->xyc_rsetup;
1715 1.1 pk if (xyc_unbusy(xycsc->xyc, XYC_RESETUSEC) == XY_ERR_FAIL)
1716 1.1 pk panic("xyc_reset");
1717 1.1 pk } else {
1718 1.1 pk xycsc->xyc->xyc_csr = XYC_IPND; /* clear IPND */
1719 1.1 pk }
1720 1.10 pk
1721 1.10 pk /* Restore contents */
1722 1.10 pk bcopy(&tmpiopb, iopb, sizeof(struct xy_iopb));
1723 1.1 pk }
1724 1.1 pk
1725 1.1 pk
1726 1.1 pk /*
1727 1.1 pk * xyc_reset: reset everything: requests are marked as errors except
1728 1.1 pk * a polled request (which is resubmitted)
1729 1.1 pk */
1730 1.1 pk int
1731 1.1 pk xyc_reset(xycsc, quiet, blastmode, error, xysc)
1732 1.1 pk struct xyc_softc *xycsc;
1733 1.1 pk int quiet, error;
1734 1.1 pk struct xy_iorq *blastmode;
1735 1.1 pk struct xy_softc *xysc;
1736 1.1 pk
1737 1.1 pk {
1738 1.1 pk int del = 0, lcv, retval = XY_ERR_AOK;
1739 1.1 pk
1740 1.1 pk /* soft reset hardware */
1741 1.1 pk
1742 1.1 pk if (!quiet)
1743 1.1 pk printf("%s: soft reset\n", xycsc->sc_dev.dv_xname);
1744 1.1 pk del = xycsc->xyc->xyc_rsetup;
1745 1.1 pk del = xyc_unbusy(xycsc->xyc, XYC_RESETUSEC);
1746 1.1 pk if (del == XY_ERR_FAIL) {
1747 1.1 pk blastmode = XY_RSET_ALL; /* dead, flush all requests */
1748 1.1 pk retval = XY_ERR_FAIL;
1749 1.1 pk }
1750 1.1 pk if (xysc)
1751 1.1 pk xyc_xyreset(xycsc, xysc);
1752 1.1 pk
1753 1.1 pk /* fix queues based on "blast-mode" */
1754 1.1 pk
1755 1.1 pk for (lcv = 0; lcv < XYC_MAXIOPB; lcv++) {
1756 1.1 pk register struct xy_iorq *iorq = &xycsc->reqs[lcv];
1757 1.1 pk
1758 1.1 pk if (XY_STATE(iorq->mode) != XY_SUB_POLL &&
1759 1.1 pk XY_STATE(iorq->mode) != XY_SUB_WAIT &&
1760 1.1 pk XY_STATE(iorq->mode) != XY_SUB_NORM)
1761 1.1 pk /* is it active? */
1762 1.1 pk continue;
1763 1.1 pk
1764 1.1 pk if (blastmode == XY_RSET_ALL ||
1765 1.1 pk blastmode != iorq) {
1766 1.1 pk /* failed */
1767 1.1 pk iorq->errno = error;
1768 1.1 pk xycsc->iopbase[lcv].done = xycsc->iopbase[lcv].errs = 1;
1769 1.1 pk switch (XY_STATE(iorq->mode)) {
1770 1.1 pk case XY_SUB_NORM:
1771 1.1 pk iorq->buf->b_error = EIO;
1772 1.1 pk iorq->buf->b_flags |= B_ERROR;
1773 1.1 pk iorq->buf->b_resid = iorq->sectcnt * XYFM_BPS;
1774 1.2 pk
1775 1.7 thorpej bus_dmamap_sync(xycsc->dmatag, iorq->dmamap, 0,
1776 1.7 thorpej iorq->dmamap->dm_mapsize,
1777 1.2 pk (iorq->buf->b_flags & B_READ)
1778 1.2 pk ? BUS_DMASYNC_POSTREAD
1779 1.2 pk : BUS_DMASYNC_POSTWRITE);
1780 1.2 pk
1781 1.2 pk bus_dmamap_unload(xycsc->dmatag, iorq->dmamap);
1782 1.2 pk
1783 1.15 thorpej BUFQ_REMOVE(&iorq->xy->xyq, iorq->buf);
1784 1.1 pk disk_unbusy(&xycsc->reqs[lcv].xy->sc_dk,
1785 1.1 pk (xycsc->reqs[lcv].buf->b_bcount -
1786 1.1 pk xycsc->reqs[lcv].buf->b_resid));
1787 1.1 pk biodone(iorq->buf);
1788 1.1 pk iorq->mode = XY_SUB_FREE;
1789 1.1 pk break;
1790 1.1 pk case XY_SUB_WAIT:
1791 1.1 pk wakeup(iorq);
1792 1.1 pk case XY_SUB_POLL:
1793 1.1 pk iorq->mode =
1794 1.1 pk XY_NEWSTATE(iorq->mode, XY_SUB_DONE);
1795 1.1 pk break;
1796 1.1 pk }
1797 1.1 pk
1798 1.1 pk } else {
1799 1.1 pk
1800 1.1 pk /* resubmit, no need to do anything here */
1801 1.1 pk }
1802 1.1 pk }
1803 1.1 pk
1804 1.1 pk /*
1805 1.1 pk * now, if stuff is waiting, start it.
1806 1.1 pk * since we just reset it should go
1807 1.1 pk */
1808 1.1 pk xyc_start(xycsc, NULL);
1809 1.1 pk
1810 1.1 pk return (retval);
1811 1.1 pk }
1812 1.1 pk
1813 1.1 pk /*
1814 1.1 pk * xyc_start: start waiting buffers
1815 1.1 pk */
1816 1.1 pk
1817 1.1 pk void
1818 1.1 pk xyc_start(xycsc, iorq)
1819 1.1 pk struct xyc_softc *xycsc;
1820 1.1 pk struct xy_iorq *iorq;
1821 1.1 pk
1822 1.1 pk {
1823 1.1 pk int lcv;
1824 1.1 pk struct xy_softc *xy;
1825 1.1 pk
1826 1.1 pk if (iorq == NULL) {
1827 1.1 pk for (lcv = 0; lcv < XYC_MAXDEV ; lcv++) {
1828 1.1 pk if ((xy = xycsc->sc_drives[lcv]) == NULL) continue;
1829 1.15 thorpej if (BUFQ_FIRST(&xy->xyq) == NULL) continue;
1830 1.1 pk if (xy->xyrq->mode != XY_SUB_FREE) continue;
1831 1.15 thorpej xyc_startbuf(xycsc, xy, BUFQ_FIRST(&xy->xyq));
1832 1.1 pk }
1833 1.1 pk }
1834 1.1 pk xyc_submit_iorq(xycsc, iorq, XY_SUB_NOQ);
1835 1.1 pk }
1836 1.1 pk
1837 1.1 pk /*
1838 1.1 pk * xyc_remove_iorq: remove "done" IOPB's.
1839 1.1 pk */
1840 1.1 pk
1841 1.1 pk int
1842 1.1 pk xyc_remove_iorq(xycsc)
1843 1.1 pk struct xyc_softc *xycsc;
1844 1.1 pk
1845 1.1 pk {
1846 1.1 pk int errno, rq, comm, errs;
1847 1.1 pk struct xyc *xyc = xycsc->xyc;
1848 1.1 pk u_long addr;
1849 1.1 pk struct xy_iopb *iopb;
1850 1.1 pk struct xy_iorq *iorq;
1851 1.1 pk struct buf *bp;
1852 1.1 pk
1853 1.1 pk if (xyc->xyc_csr & XYC_DERR) {
1854 1.1 pk /*
1855 1.1 pk * DOUBLE ERROR: should never happen under normal use. This
1856 1.1 pk * error is so bad, you can't even tell which IOPB is bad, so
1857 1.1 pk * we dump them all.
1858 1.1 pk */
1859 1.1 pk errno = XY_ERR_DERR;
1860 1.1 pk printf("%s: DOUBLE ERROR!\n", xycsc->sc_dev.dv_xname);
1861 1.1 pk if (xyc_reset(xycsc, 0, XY_RSET_ALL, errno, 0) != XY_ERR_AOK) {
1862 1.1 pk printf("%s: soft reset failed!\n",
1863 1.1 pk xycsc->sc_dev.dv_xname);
1864 1.1 pk panic("xyc_remove_iorq: controller DEAD");
1865 1.1 pk }
1866 1.1 pk return (XY_ERR_AOK);
1867 1.1 pk }
1868 1.1 pk
1869 1.1 pk /*
1870 1.1 pk * get iopb that is done, loop down the chain
1871 1.1 pk */
1872 1.1 pk
1873 1.1 pk if (xyc->xyc_csr & XYC_ERR) {
1874 1.1 pk xyc->xyc_csr = XYC_ERR; /* clear error condition */
1875 1.1 pk }
1876 1.1 pk if (xyc->xyc_csr & XYC_IPND) {
1877 1.1 pk xyc->xyc_csr = XYC_IPND; /* clear interrupt */
1878 1.1 pk }
1879 1.1 pk
1880 1.1 pk for (rq = 0; rq < XYC_MAXIOPB; rq++) {
1881 1.1 pk iorq = xycsc->xy_chain[rq];
1882 1.1 pk if (iorq == NULL) break; /* done ! */
1883 1.1 pk if (iorq->mode == 0 || XY_STATE(iorq->mode) == XY_SUB_DONE)
1884 1.1 pk continue; /* free, or done */
1885 1.1 pk iopb = iorq->iopb;
1886 1.1 pk if (iopb->done == 0)
1887 1.1 pk continue; /* not done yet */
1888 1.1 pk
1889 1.1 pk comm = iopb->com;
1890 1.1 pk errs = iopb->errs;
1891 1.1 pk
1892 1.1 pk if (errs)
1893 1.1 pk iorq->errno = iopb->errno;
1894 1.1 pk else
1895 1.1 pk iorq->errno = 0;
1896 1.1 pk
1897 1.1 pk /* handle non-fatal errors */
1898 1.1 pk
1899 1.1 pk if (errs &&
1900 1.1 pk xyc_error(xycsc, iorq, iopb, comm) == XY_ERR_AOK)
1901 1.1 pk continue; /* AOK: we resubmitted it */
1902 1.1 pk
1903 1.1 pk
1904 1.1 pk /* this iorq is now done (hasn't been restarted or anything) */
1905 1.1 pk
1906 1.1 pk if ((iorq->mode & XY_MODE_VERBO) && iorq->lasterror)
1907 1.1 pk xyc_perror(iorq, iopb, 0);
1908 1.1 pk
1909 1.1 pk /* now, if read/write check to make sure we got all the data
1910 1.1 pk * we needed. (this may not be the case if we got an error in
1911 1.1 pk * the middle of a multisector request). */
1912 1.1 pk
1913 1.1 pk if ((iorq->mode & XY_MODE_B144) != 0 && errs == 0 &&
1914 1.1 pk (comm == XYCMD_RD || comm == XYCMD_WR)) {
1915 1.1 pk /* we just successfully processed a bad144 sector
1916 1.1 pk * note: if we are in bad 144 mode, the pointers have
1917 1.1 pk * been advanced already (see above) and are pointing
1918 1.1 pk * at the bad144 sector. to exit bad144 mode, we
1919 1.1 pk * must advance the pointers 1 sector and issue a new
1920 1.1 pk * request if there are still sectors left to process
1921 1.1 pk *
1922 1.1 pk */
1923 1.1 pk XYC_ADVANCE(iorq, 1); /* advance 1 sector */
1924 1.1 pk
1925 1.1 pk /* exit b144 mode */
1926 1.1 pk iorq->mode = iorq->mode & (~XY_MODE_B144);
1927 1.1 pk
1928 1.1 pk if (iorq->sectcnt) { /* more to go! */
1929 1.1 pk iorq->lasterror = iorq->errno = iopb->errno = 0;
1930 1.1 pk iopb->errs = iopb->done = 0;
1931 1.1 pk iorq->tries = 0;
1932 1.1 pk iopb->scnt = iorq->sectcnt;
1933 1.1 pk iopb->cyl = iorq->blockno /
1934 1.1 pk iorq->xy->sectpercyl;
1935 1.1 pk iopb->head =
1936 1.1 pk (iorq->blockno / iorq->xy->nhead) %
1937 1.1 pk iorq->xy->nhead;
1938 1.1 pk iopb->sect = iorq->blockno % XYFM_BPS;
1939 1.2 pk addr = (u_long) iorq->dbuf;
1940 1.1 pk iopb->dataa = (addr & 0xffff);
1941 1.1 pk iopb->datar = ((addr & 0xff0000) >> 16);
1942 1.1 pk /* will resubit at end */
1943 1.1 pk continue;
1944 1.1 pk }
1945 1.1 pk }
1946 1.1 pk /* final cleanup, totally done with this request */
1947 1.1 pk
1948 1.1 pk switch (XY_STATE(iorq->mode)) {
1949 1.1 pk case XY_SUB_NORM:
1950 1.1 pk bp = iorq->buf;
1951 1.1 pk if (errs) {
1952 1.1 pk bp->b_error = EIO;
1953 1.1 pk bp->b_flags |= B_ERROR;
1954 1.1 pk bp->b_resid = iorq->sectcnt * XYFM_BPS;
1955 1.1 pk } else {
1956 1.1 pk bp->b_resid = 0; /* done */
1957 1.1 pk }
1958 1.7 thorpej bus_dmamap_sync(xycsc->dmatag, iorq->dmamap, 0,
1959 1.7 thorpej iorq->dmamap->dm_mapsize,
1960 1.2 pk (iorq->buf->b_flags & B_READ)
1961 1.2 pk ? BUS_DMASYNC_POSTREAD
1962 1.2 pk : BUS_DMASYNC_POSTWRITE);
1963 1.2 pk
1964 1.2 pk bus_dmamap_unload(xycsc->dmatag, iorq->dmamap);
1965 1.2 pk
1966 1.15 thorpej BUFQ_REMOVE(&iorq->xy->xyq, bp);
1967 1.1 pk disk_unbusy(&iorq->xy->sc_dk,
1968 1.1 pk (bp->b_bcount - bp->b_resid));
1969 1.1 pk iorq->mode = XY_SUB_FREE;
1970 1.1 pk biodone(bp);
1971 1.1 pk break;
1972 1.1 pk case XY_SUB_WAIT:
1973 1.1 pk iorq->mode = XY_NEWSTATE(iorq->mode, XY_SUB_DONE);
1974 1.1 pk wakeup(iorq);
1975 1.1 pk break;
1976 1.1 pk case XY_SUB_POLL:
1977 1.1 pk iorq->mode = XY_NEWSTATE(iorq->mode, XY_SUB_DONE);
1978 1.1 pk break;
1979 1.1 pk }
1980 1.1 pk }
1981 1.1 pk
1982 1.1 pk return (XY_ERR_AOK);
1983 1.1 pk }
1984 1.1 pk
1985 1.1 pk /*
1986 1.1 pk * xyc_perror: print error.
1987 1.1 pk * - if still_trying is true: we got an error, retried and got a
1988 1.1 pk * different error. in that case lasterror is the old error,
1989 1.1 pk * and errno is the new one.
1990 1.1 pk * - if still_trying is not true, then if we ever had an error it
1991 1.1 pk * is in lasterror. also, if iorq->errno == 0, then we recovered
1992 1.1 pk * from that error (otherwise iorq->errno == iorq->lasterror).
1993 1.1 pk */
1994 1.1 pk void
1995 1.1 pk xyc_perror(iorq, iopb, still_trying)
1996 1.1 pk struct xy_iorq *iorq;
1997 1.1 pk struct xy_iopb *iopb;
1998 1.1 pk int still_trying;
1999 1.1 pk
2000 1.1 pk {
2001 1.1 pk
2002 1.1 pk int error = iorq->lasterror;
2003 1.1 pk
2004 1.1 pk printf("%s", (iorq->xy) ? iorq->xy->sc_dev.dv_xname
2005 1.1 pk : iorq->xyc->sc_dev.dv_xname);
2006 1.1 pk if (iorq->buf)
2007 1.1 pk printf("%c: ", 'a' + DISKPART(iorq->buf->b_dev));
2008 1.1 pk if (iopb->com == XYCMD_RD || iopb->com == XYCMD_WR)
2009 1.1 pk printf("%s %d/%d/%d: ",
2010 1.1 pk (iopb->com == XYCMD_RD) ? "read" : "write",
2011 1.1 pk iopb->cyl, iopb->head, iopb->sect);
2012 1.1 pk printf("%s", xyc_e2str(error));
2013 1.1 pk
2014 1.1 pk if (still_trying)
2015 1.1 pk printf(" [still trying, new error=%s]", xyc_e2str(iorq->errno));
2016 1.1 pk else
2017 1.1 pk if (iorq->errno == 0)
2018 1.1 pk printf(" [recovered in %d tries]", iorq->tries);
2019 1.1 pk
2020 1.1 pk printf("\n");
2021 1.1 pk }
2022 1.1 pk
2023 1.1 pk /*
2024 1.1 pk * xyc_error: non-fatal error encountered... recover.
2025 1.1 pk * return AOK if resubmitted, return FAIL if this iopb is done
2026 1.1 pk */
2027 1.1 pk int
2028 1.1 pk xyc_error(xycsc, iorq, iopb, comm)
2029 1.1 pk struct xyc_softc *xycsc;
2030 1.1 pk struct xy_iorq *iorq;
2031 1.1 pk struct xy_iopb *iopb;
2032 1.1 pk int comm;
2033 1.1 pk
2034 1.1 pk {
2035 1.1 pk int errno = iorq->errno;
2036 1.1 pk int erract = xyc_entoact(errno);
2037 1.12 drochner int oldmode, advance;
2038 1.18 chs #ifdef __sparc__
2039 1.12 drochner int i;
2040 1.12 drochner #endif
2041 1.1 pk
2042 1.1 pk if (erract == XY_ERA_RSET) { /* some errors require a reset */
2043 1.1 pk oldmode = iorq->mode;
2044 1.1 pk iorq->mode = XY_SUB_DONE | (~XY_SUB_MASK & oldmode);
2045 1.1 pk /* make xyc_start ignore us */
2046 1.1 pk xyc_reset(xycsc, 1, XY_RSET_NONE, errno, iorq->xy);
2047 1.1 pk iorq->mode = oldmode;
2048 1.1 pk }
2049 1.1 pk /* check for read/write to a sector in bad144 table if bad: redirect
2050 1.1 pk * request to bad144 area */
2051 1.1 pk
2052 1.1 pk if ((comm == XYCMD_RD || comm == XYCMD_WR) &&
2053 1.1 pk (iorq->mode & XY_MODE_B144) == 0) {
2054 1.1 pk advance = iorq->sectcnt - iopb->scnt;
2055 1.1 pk XYC_ADVANCE(iorq, advance);
2056 1.18 chs #ifdef __sparc__
2057 1.1 pk if ((i = isbad(&iorq->xy->dkb, iorq->blockno / iorq->xy->sectpercyl,
2058 1.1 pk (iorq->blockno / iorq->xy->nsect) % iorq->xy->nhead,
2059 1.1 pk iorq->blockno % iorq->xy->nsect)) != -1) {
2060 1.1 pk iorq->mode |= XY_MODE_B144; /* enter bad144 mode &
2061 1.1 pk * redirect */
2062 1.1 pk iopb->errno = iopb->done = iopb->errs = 0;
2063 1.1 pk iopb->scnt = 1;
2064 1.1 pk iopb->cyl = (iorq->xy->ncyl + iorq->xy->acyl) - 2;
2065 1.1 pk /* second to last acyl */
2066 1.1 pk i = iorq->xy->sectpercyl - 1 - i; /* follow bad144
2067 1.1 pk * standard */
2068 1.1 pk iopb->head = i / iorq->xy->nhead;
2069 1.1 pk iopb->sect = i % iorq->xy->nhead;
2070 1.1 pk /* will resubmit when we come out of remove_iorq */
2071 1.1 pk return (XY_ERR_AOK); /* recovered! */
2072 1.1 pk }
2073 1.12 drochner #endif
2074 1.1 pk }
2075 1.1 pk
2076 1.1 pk /*
2077 1.1 pk * it isn't a bad144 sector, must be real error! see if we can retry
2078 1.1 pk * it?
2079 1.1 pk */
2080 1.1 pk if ((iorq->mode & XY_MODE_VERBO) && iorq->lasterror)
2081 1.1 pk xyc_perror(iorq, iopb, 1); /* inform of error state
2082 1.1 pk * change */
2083 1.1 pk iorq->lasterror = errno;
2084 1.1 pk
2085 1.1 pk if ((erract == XY_ERA_RSET || erract == XY_ERA_HARD)
2086 1.1 pk && iorq->tries < XYC_MAXTRIES) { /* retry? */
2087 1.1 pk iorq->tries++;
2088 1.1 pk iorq->errno = iopb->errno = iopb->done = iopb->errs = 0;
2089 1.1 pk /* will resubmit at end of remove_iorq */
2090 1.1 pk return (XY_ERR_AOK); /* recovered! */
2091 1.1 pk }
2092 1.1 pk
2093 1.1 pk /* failed to recover from this error */
2094 1.1 pk return (XY_ERR_FAIL);
2095 1.1 pk }
2096 1.1 pk
2097 1.1 pk /*
2098 1.1 pk * xyc_tick: make sure xy is still alive and ticking (err, kicking).
2099 1.1 pk */
2100 1.1 pk void
2101 1.1 pk xyc_tick(arg)
2102 1.1 pk void *arg;
2103 1.1 pk
2104 1.1 pk {
2105 1.1 pk struct xyc_softc *xycsc = arg;
2106 1.1 pk int lcv, s, reset = 0;
2107 1.1 pk
2108 1.1 pk /* reduce ttl for each request if one goes to zero, reset xyc */
2109 1.1 pk s = splbio();
2110 1.1 pk for (lcv = 0; lcv < XYC_MAXIOPB; lcv++) {
2111 1.1 pk if (xycsc->reqs[lcv].mode == 0 ||
2112 1.1 pk XY_STATE(xycsc->reqs[lcv].mode) == XY_SUB_DONE)
2113 1.1 pk continue;
2114 1.1 pk xycsc->reqs[lcv].ttl--;
2115 1.1 pk if (xycsc->reqs[lcv].ttl == 0)
2116 1.1 pk reset = 1;
2117 1.1 pk }
2118 1.1 pk if (reset) {
2119 1.1 pk printf("%s: watchdog timeout\n", xycsc->sc_dev.dv_xname);
2120 1.1 pk xyc_reset(xycsc, 0, XY_RSET_NONE, XY_ERR_FAIL, NULL);
2121 1.1 pk }
2122 1.1 pk splx(s);
2123 1.1 pk
2124 1.1 pk /* until next time */
2125 1.1 pk
2126 1.17 thorpej callout_reset(&xycsc->sc_tick_ch, XYC_TICKCNT, xyc_tick, xycsc);
2127 1.1 pk }
2128 1.1 pk
2129 1.1 pk /*
2130 1.1 pk * xyc_ioctlcmd: this function provides a user level interface to the
2131 1.1 pk * controller via ioctl. this allows "format" programs to be written
2132 1.1 pk * in user code, and is also useful for some debugging. we return
2133 1.1 pk * an error code. called at user priority.
2134 1.1 pk *
2135 1.1 pk * XXX missing a few commands (see the 7053 driver for ideas)
2136 1.1 pk */
2137 1.1 pk int
2138 1.1 pk xyc_ioctlcmd(xy, dev, xio)
2139 1.1 pk struct xy_softc *xy;
2140 1.1 pk dev_t dev;
2141 1.1 pk struct xd_iocmd *xio;
2142 1.1 pk
2143 1.1 pk {
2144 1.2 pk int s, rqno, dummy = 0;
2145 1.1 pk caddr_t dvmabuf = NULL, buf = NULL;
2146 1.1 pk struct xyc_softc *xycsc;
2147 1.2 pk int rseg, error;
2148 1.2 pk bus_dma_segment_t seg;
2149 1.1 pk
2150 1.1 pk /* check sanity of requested command */
2151 1.1 pk
2152 1.1 pk switch (xio->cmd) {
2153 1.1 pk
2154 1.1 pk case XYCMD_NOP: /* no op: everything should be zero */
2155 1.1 pk if (xio->subfn || xio->dptr || xio->dlen ||
2156 1.1 pk xio->block || xio->sectcnt)
2157 1.1 pk return (EINVAL);
2158 1.1 pk break;
2159 1.1 pk
2160 1.1 pk case XYCMD_RD: /* read / write sectors (up to XD_IOCMD_MAXS) */
2161 1.1 pk case XYCMD_WR:
2162 1.1 pk if (xio->subfn || xio->sectcnt > XD_IOCMD_MAXS ||
2163 1.1 pk xio->sectcnt * XYFM_BPS != xio->dlen || xio->dptr == NULL)
2164 1.1 pk return (EINVAL);
2165 1.1 pk break;
2166 1.1 pk
2167 1.1 pk case XYCMD_SK: /* seek: doesn't seem useful to export this */
2168 1.1 pk return (EINVAL);
2169 1.1 pk
2170 1.1 pk break;
2171 1.1 pk
2172 1.1 pk default:
2173 1.1 pk return (EINVAL);/* ??? */
2174 1.1 pk }
2175 1.1 pk
2176 1.2 pk xycsc = xy->parent;
2177 1.2 pk
2178 1.1 pk /* create DVMA buffer for request if needed */
2179 1.2 pk if (xio->dlen) {
2180 1.19 pk if ((error = xy_dmamem_alloc(xycsc->dmatag, xycsc->auxmap,
2181 1.19 pk &seg, &rseg,
2182 1.19 pk xio->dlen, &buf,
2183 1.19 pk (bus_addr_t *)&dvmabuf)) != 0) {
2184 1.2 pk return (error);
2185 1.2 pk }
2186 1.1 pk
2187 1.1 pk if (xio->cmd == XYCMD_WR) {
2188 1.2 pk if ((error = copyin(xio->dptr, buf, xio->dlen)) != 0) {
2189 1.2 pk bus_dmamem_unmap(xycsc->dmatag, buf, xio->dlen);
2190 1.2 pk bus_dmamem_free(xycsc->dmatag, &seg, rseg);
2191 1.2 pk return (error);
2192 1.1 pk }
2193 1.1 pk }
2194 1.1 pk }
2195 1.1 pk /* do it! */
2196 1.1 pk
2197 1.2 pk error = 0;
2198 1.1 pk s = splbio();
2199 1.1 pk rqno = xyc_cmd(xycsc, xio->cmd, xio->subfn, xy->xy_drive, xio->block,
2200 1.1 pk xio->sectcnt, dvmabuf, XY_SUB_WAIT);
2201 1.1 pk if (rqno == XY_ERR_FAIL) {
2202 1.2 pk error = EIO;
2203 1.1 pk goto done;
2204 1.1 pk }
2205 1.1 pk xio->errno = xycsc->ciorq->errno;
2206 1.1 pk xio->tries = xycsc->ciorq->tries;
2207 1.1 pk XYC_DONE(xycsc, dummy);
2208 1.1 pk
2209 1.1 pk if (xio->cmd == XYCMD_RD)
2210 1.2 pk error = copyout(buf, xio->dptr, xio->dlen);
2211 1.1 pk
2212 1.1 pk done:
2213 1.1 pk splx(s);
2214 1.2 pk if (dvmabuf) {
2215 1.19 pk xy_dmamem_free(xycsc->dmatag, xycsc->auxmap, &seg, rseg,
2216 1.19 pk xio->dlen, buf);
2217 1.2 pk }
2218 1.2 pk return (error);
2219 1.1 pk }
2220 1.1 pk
2221 1.1 pk /*
2222 1.1 pk * xyc_e2str: convert error code number into an error string
2223 1.1 pk */
2224 1.1 pk char *
2225 1.1 pk xyc_e2str(no)
2226 1.1 pk int no;
2227 1.1 pk {
2228 1.1 pk switch (no) {
2229 1.1 pk case XY_ERR_FAIL:
2230 1.1 pk return ("Software fatal error");
2231 1.1 pk case XY_ERR_DERR:
2232 1.1 pk return ("DOUBLE ERROR");
2233 1.1 pk case XY_ERR_AOK:
2234 1.1 pk return ("Successful completion");
2235 1.1 pk case XY_ERR_IPEN:
2236 1.1 pk return("Interrupt pending");
2237 1.1 pk case XY_ERR_BCFL:
2238 1.1 pk return("Busy conflict");
2239 1.1 pk case XY_ERR_TIMO:
2240 1.1 pk return("Operation timeout");
2241 1.1 pk case XY_ERR_NHDR:
2242 1.1 pk return("Header not found");
2243 1.1 pk case XY_ERR_HARD:
2244 1.1 pk return("Hard ECC error");
2245 1.1 pk case XY_ERR_ICYL:
2246 1.1 pk return("Illegal cylinder address");
2247 1.1 pk case XY_ERR_ISEC:
2248 1.1 pk return("Illegal sector address");
2249 1.1 pk case XY_ERR_SMAL:
2250 1.1 pk return("Last sector too small");
2251 1.1 pk case XY_ERR_SACK:
2252 1.1 pk return("Slave ACK error (non-existent memory)");
2253 1.1 pk case XY_ERR_CHER:
2254 1.1 pk return("Cylinder and head/header error");
2255 1.1 pk case XY_ERR_SRTR:
2256 1.1 pk return("Auto-seek retry successful");
2257 1.1 pk case XY_ERR_WPRO:
2258 1.1 pk return("Write-protect error");
2259 1.1 pk case XY_ERR_UIMP:
2260 1.1 pk return("Unimplemented command");
2261 1.1 pk case XY_ERR_DNRY:
2262 1.1 pk return("Drive not ready");
2263 1.1 pk case XY_ERR_SZER:
2264 1.1 pk return("Sector count zero");
2265 1.1 pk case XY_ERR_DFLT:
2266 1.1 pk return("Drive faulted");
2267 1.1 pk case XY_ERR_ISSZ:
2268 1.1 pk return("Illegal sector size");
2269 1.1 pk case XY_ERR_SLTA:
2270 1.1 pk return("Self test A");
2271 1.1 pk case XY_ERR_SLTB:
2272 1.1 pk return("Self test B");
2273 1.1 pk case XY_ERR_SLTC:
2274 1.1 pk return("Self test C");
2275 1.1 pk case XY_ERR_SOFT:
2276 1.1 pk return("Soft ECC error");
2277 1.1 pk case XY_ERR_SFOK:
2278 1.1 pk return("Soft ECC error recovered");
2279 1.1 pk case XY_ERR_IHED:
2280 1.1 pk return("Illegal head");
2281 1.1 pk case XY_ERR_DSEQ:
2282 1.1 pk return("Disk sequencer error");
2283 1.1 pk case XY_ERR_SEEK:
2284 1.1 pk return("Seek error");
2285 1.1 pk default:
2286 1.1 pk return ("Unknown error");
2287 1.1 pk }
2288 1.1 pk }
2289 1.1 pk
2290 1.1 pk int
2291 1.1 pk xyc_entoact(errno)
2292 1.1 pk
2293 1.1 pk int errno;
2294 1.1 pk
2295 1.1 pk {
2296 1.1 pk switch (errno) {
2297 1.1 pk case XY_ERR_FAIL: case XY_ERR_DERR: case XY_ERR_IPEN:
2298 1.1 pk case XY_ERR_BCFL: case XY_ERR_ICYL: case XY_ERR_ISEC:
2299 1.1 pk case XY_ERR_UIMP: case XY_ERR_SZER: case XY_ERR_ISSZ:
2300 1.1 pk case XY_ERR_SLTA: case XY_ERR_SLTB: case XY_ERR_SLTC:
2301 1.1 pk case XY_ERR_IHED: case XY_ERR_SACK: case XY_ERR_SMAL:
2302 1.1 pk
2303 1.1 pk return(XY_ERA_PROG); /* program error ! */
2304 1.1 pk
2305 1.1 pk case XY_ERR_TIMO: case XY_ERR_NHDR: case XY_ERR_HARD:
2306 1.1 pk case XY_ERR_DNRY: case XY_ERR_CHER: case XY_ERR_SEEK:
2307 1.1 pk case XY_ERR_SOFT:
2308 1.1 pk
2309 1.1 pk return(XY_ERA_HARD); /* hard error, retry */
2310 1.1 pk
2311 1.1 pk case XY_ERR_DFLT: case XY_ERR_DSEQ:
2312 1.1 pk
2313 1.1 pk return(XY_ERA_RSET); /* hard error reset */
2314 1.1 pk
2315 1.1 pk case XY_ERR_SRTR: case XY_ERR_SFOK: case XY_ERR_AOK:
2316 1.1 pk
2317 1.1 pk return(XY_ERA_SOFT); /* an FYI error */
2318 1.1 pk
2319 1.1 pk case XY_ERR_WPRO:
2320 1.1 pk
2321 1.1 pk return(XY_ERA_WPRO); /* write protect */
2322 1.1 pk }
2323 1.1 pk
2324 1.1 pk return(XY_ERA_PROG); /* ??? */
2325 1.1 pk }
2326